summaryrefslogtreecommitdiff
path: root/servers
diff options
context:
space:
mode:
Diffstat (limited to 'servers')
-rw-r--r--servers/SCsub2
-rw-r--r--servers/audio/audio_driver_dummy.cpp6
-rw-r--r--servers/audio/audio_driver_dummy.h6
-rw-r--r--servers/audio/audio_effect.cpp35
-rw-r--r--servers/audio/audio_effect.h22
-rw-r--r--servers/audio/audio_filter_sw.cpp13
-rw-r--r--servers/audio/audio_filter_sw.h40
-rw-r--r--servers/audio/audio_rb_resampler.cpp4
-rw-r--r--servers/audio/audio_rb_resampler.h8
-rw-r--r--servers/audio/audio_stream.cpp406
-rw-r--r--servers/audio/audio_stream.h98
-rw-r--r--servers/audio/effects/audio_effect_amplify.cpp4
-rw-r--r--servers/audio/effects/audio_effect_amplify.h4
-rw-r--r--servers/audio/effects/audio_effect_capture.cpp4
-rw-r--r--servers/audio/effects/audio_effect_capture.h4
-rw-r--r--servers/audio/effects/audio_effect_chorus.cpp4
-rw-r--r--servers/audio/effects/audio_effect_chorus.h4
-rw-r--r--servers/audio/effects/audio_effect_compressor.cpp4
-rw-r--r--servers/audio/effects/audio_effect_compressor.h4
-rw-r--r--servers/audio/effects/audio_effect_delay.cpp7
-rw-r--r--servers/audio/effects/audio_effect_delay.h4
-rw-r--r--servers/audio/effects/audio_effect_distortion.cpp4
-rw-r--r--servers/audio/effects/audio_effect_distortion.h4
-rw-r--r--servers/audio/effects/audio_effect_eq.cpp4
-rw-r--r--servers/audio/effects/audio_effect_eq.h4
-rw-r--r--servers/audio/effects/audio_effect_filter.cpp4
-rw-r--r--servers/audio/effects/audio_effect_filter.h4
-rw-r--r--servers/audio/effects/audio_effect_limiter.cpp4
-rw-r--r--servers/audio/effects/audio_effect_limiter.h4
-rw-r--r--servers/audio/effects/audio_effect_panner.cpp4
-rw-r--r--servers/audio/effects/audio_effect_panner.h4
-rw-r--r--servers/audio/effects/audio_effect_phaser.cpp4
-rw-r--r--servers/audio/effects/audio_effect_phaser.h4
-rw-r--r--servers/audio/effects/audio_effect_pitch_shift.cpp4
-rw-r--r--servers/audio/effects/audio_effect_pitch_shift.h4
-rw-r--r--servers/audio/effects/audio_effect_record.cpp17
-rw-r--r--servers/audio/effects/audio_effect_record.h5
-rw-r--r--servers/audio/effects/audio_effect_reverb.cpp4
-rw-r--r--servers/audio/effects/audio_effect_reverb.h4
-rw-r--r--servers/audio/effects/audio_effect_spectrum_analyzer.cpp4
-rw-r--r--servers/audio/effects/audio_effect_spectrum_analyzer.h4
-rw-r--r--servers/audio/effects/audio_effect_stereo_enhance.cpp13
-rw-r--r--servers/audio/effects/audio_effect_stereo_enhance.h24
-rw-r--r--servers/audio/effects/audio_stream_generator.cpp6
-rw-r--r--servers/audio/effects/audio_stream_generator.h6
-rw-r--r--servers/audio/effects/eq.cpp4
-rw-r--r--servers/audio/effects/eq.h12
-rw-r--r--servers/audio/effects/reverb.cpp6
-rw-r--r--servers/audio/effects/reverb.h17
-rw-r--r--servers/audio_server.cpp37
-rw-r--r--servers/audio_server.h96
-rw-r--r--servers/camera/camera_feed.cpp6
-rw-r--r--servers/camera/camera_feed.h8
-rw-r--r--servers/camera_server.cpp4
-rw-r--r--servers/camera_server.h8
-rw-r--r--servers/debugger/SCsub5
-rw-r--r--servers/debugger/servers_debugger.cpp463
-rw-r--r--servers/debugger/servers_debugger.h132
-rw-r--r--servers/display_server.cpp296
-rw-r--r--servers/display_server.h117
-rw-r--r--servers/display_server_headless.h7
-rw-r--r--servers/extensions/SCsub7
-rw-r--r--servers/extensions/physics_server_3d_extension.cpp322
-rw-r--r--servers/extensions/physics_server_3d_extension.h548
-rw-r--r--servers/navigation_server_2d.cpp17
-rw-r--r--servers/navigation_server_2d.h16
-rw-r--r--servers/navigation_server_3d.cpp12
-rw-r--r--servers/navigation_server_3d.h16
-rw-r--r--servers/physics_2d/godot_area_2d.cpp4
-rw-r--r--servers/physics_2d/godot_area_2d.h8
-rw-r--r--servers/physics_2d/godot_area_pair_2d.cpp4
-rw-r--r--servers/physics_2d/godot_area_pair_2d.h4
-rw-r--r--servers/physics_2d/godot_body_2d.cpp4
-rw-r--r--servers/physics_2d/godot_body_2d.h8
-rw-r--r--servers/physics_2d/godot_body_direct_state_2d.cpp4
-rw-r--r--servers/physics_2d/godot_body_direct_state_2d.h4
-rw-r--r--servers/physics_2d/godot_body_pair_2d.cpp21
-rw-r--r--servers/physics_2d/godot_body_pair_2d.h4
-rw-r--r--servers/physics_2d/godot_broad_phase_2d.cpp4
-rw-r--r--servers/physics_2d/godot_broad_phase_2d.h4
-rw-r--r--servers/physics_2d/godot_broad_phase_2d_bvh.cpp30
-rw-r--r--servers/physics_2d/godot_broad_phase_2d_bvh.h57
-rw-r--r--servers/physics_2d/godot_collision_object_2d.cpp4
-rw-r--r--servers/physics_2d/godot_collision_object_2d.h10
-rw-r--r--servers/physics_2d/godot_collision_solver_2d.cpp12
-rw-r--r--servers/physics_2d/godot_collision_solver_2d.h4
-rw-r--r--servers/physics_2d/godot_collision_solver_2d_sat.cpp76
-rw-r--r--servers/physics_2d/godot_collision_solver_2d_sat.h4
-rw-r--r--servers/physics_2d/godot_constraint_2d.h4
-rw-r--r--servers/physics_2d/godot_joints_2d.cpp24
-rw-r--r--servers/physics_2d/godot_joints_2d.h4
-rw-r--r--servers/physics_2d/godot_physics_server_2d.cpp25
-rw-r--r--servers/physics_2d/godot_physics_server_2d.h4
-rw-r--r--servers/physics_2d/godot_shape_2d.cpp12
-rw-r--r--servers/physics_2d/godot_shape_2d.h6
-rw-r--r--servers/physics_2d/godot_space_2d.cpp40
-rw-r--r--servers/physics_2d/godot_space_2d.h4
-rw-r--r--servers/physics_2d/godot_step_2d.cpp6
-rw-r--r--servers/physics_2d/godot_step_2d.h4
-rw-r--r--servers/physics_3d/gjk_epa.cpp24
-rw-r--r--servers/physics_3d/gjk_epa.h4
-rw-r--r--servers/physics_3d/godot_area_3d.cpp4
-rw-r--r--servers/physics_3d/godot_area_3d.h8
-rw-r--r--servers/physics_3d/godot_area_pair_3d.cpp4
-rw-r--r--servers/physics_3d/godot_area_pair_3d.h16
-rw-r--r--servers/physics_3d/godot_body_3d.cpp4
-rw-r--r--servers/physics_3d/godot_body_3d.h8
-rw-r--r--servers/physics_3d/godot_body_direct_state_3d.cpp4
-rw-r--r--servers/physics_3d/godot_body_direct_state_3d.h4
-rw-r--r--servers/physics_3d/godot_body_pair_3d.cpp8
-rw-r--r--servers/physics_3d/godot_body_pair_3d.h4
-rw-r--r--servers/physics_3d/godot_broad_phase_3d.cpp4
-rw-r--r--servers/physics_3d/godot_broad_phase_3d.h4
-rw-r--r--servers/physics_3d/godot_broad_phase_3d_bvh.cpp32
-rw-r--r--servers/physics_3d/godot_broad_phase_3d_bvh.h59
-rw-r--r--servers/physics_3d/godot_collision_object_3d.cpp4
-rw-r--r--servers/physics_3d/godot_collision_object_3d.h10
-rw-r--r--servers/physics_3d/godot_collision_solver_3d.cpp50
-rw-r--r--servers/physics_3d/godot_collision_solver_3d.h4
-rw-r--r--servers/physics_3d/godot_collision_solver_3d_sat.cpp88
-rw-r--r--servers/physics_3d/godot_collision_solver_3d_sat.h4
-rw-r--r--servers/physics_3d/godot_constraint_3d.h4
-rw-r--r--servers/physics_3d/godot_joint_3d.h4
-rw-r--r--servers/physics_3d/godot_physics_server_3d.cpp29
-rw-r--r--servers/physics_3d/godot_physics_server_3d.h10
-rw-r--r--servers/physics_3d/godot_shape_3d.cpp50
-rw-r--r--servers/physics_3d/godot_shape_3d.h4
-rw-r--r--servers/physics_3d/godot_soft_body_3d.cpp10
-rw-r--r--servers/physics_3d/godot_soft_body_3d.h14
-rw-r--r--servers/physics_3d/godot_space_3d.cpp30
-rw-r--r--servers/physics_3d/godot_space_3d.h6
-rw-r--r--servers/physics_3d/godot_step_3d.cpp8
-rw-r--r--servers/physics_3d/godot_step_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_cone_twist_joint_3d.cpp14
-rw-r--r--servers/physics_3d/joints/godot_cone_twist_joint_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_generic_6dof_joint_3d.cpp16
-rw-r--r--servers/physics_3d/joints/godot_generic_6dof_joint_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_hinge_joint_3d.cpp36
-rw-r--r--servers/physics_3d/joints/godot_hinge_joint_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_jacobian_entry_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_pin_joint_3d.cpp4
-rw-r--r--servers/physics_3d/joints/godot_pin_joint_3d.h4
-rw-r--r--servers/physics_3d/joints/godot_slider_joint_3d.cpp26
-rw-r--r--servers/physics_3d/joints/godot_slider_joint_3d.h4
-rw-r--r--servers/physics_server_2d.cpp10
-rw-r--r--servers/physics_server_2d.h10
-rw-r--r--servers/physics_server_2d_wrap_mt.cpp26
-rw-r--r--servers/physics_server_2d_wrap_mt.h26
-rw-r--r--servers/physics_server_3d.cpp26
-rw-r--r--servers/physics_server_3d.h35
-rw-r--r--servers/physics_server_3d_wrap_mt.cpp26
-rw-r--r--servers/physics_server_3d_wrap_mt.h28
-rw-r--r--servers/register_server_types.cpp77
-rw-r--r--servers/register_server_types.h4
-rw-r--r--servers/rendering/SCsub1
-rw-r--r--servers/rendering/dummy/rasterizer_canvas_dummy.h63
-rw-r--r--servers/rendering/dummy/rasterizer_dummy.h108
-rw-r--r--servers/rendering/dummy/rasterizer_scene_dummy.h217
-rw-r--r--servers/rendering/dummy/rasterizer_storage_dummy.h147
-rw-r--r--servers/rendering/dummy/storage/light_storage.h135
-rw-r--r--servers/rendering/dummy/storage/material_storage.h95
-rw-r--r--servers/rendering/dummy/storage/mesh_storage.h129
-rw-r--r--servers/rendering/dummy/storage/particles_storage.h126
-rw-r--r--servers/rendering/dummy/storage/texture_storage.h172
-rw-r--r--servers/rendering/rasterizer_dummy.h797
-rw-r--r--servers/rendering/renderer_canvas_cull.cpp450
-rw-r--r--servers/rendering/renderer_canvas_cull.h8
-rw-r--r--servers/rendering/renderer_canvas_render.cpp4
-rw-r--r--servers/rendering/renderer_canvas_render.h48
-rw-r--r--servers/rendering/renderer_compositor.cpp6
-rw-r--r--servers/rendering/renderer_compositor.h18
-rw-r--r--servers/rendering/renderer_rd/SCsub2
-rw-r--r--servers/rendering/renderer_rd/cluster_builder_rd.cpp34
-rw-r--r--servers/rendering/renderer_rd/cluster_builder_rd.h12
-rw-r--r--servers/rendering/renderer_rd/effects/SCsub5
-rw-r--r--servers/rendering/renderer_rd/effects/tone_mapper.cpp280
-rw-r--r--servers/rendering/renderer_rd/effects/tone_mapper.h155
-rw-r--r--servers/rendering/renderer_rd/effects_rd.cpp1045
-rw-r--r--servers/rendering/renderer_rd/effects_rd.h305
-rw-r--r--servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.cpp797
-rw-r--r--servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.h54
-rw-r--r--servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.cpp280
-rw-r--r--servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.h105
-rw-r--r--servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.cpp379
-rw-r--r--servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.h25
-rw-r--r--servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.cpp106
-rw-r--r--servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.h73
-rw-r--r--servers/rendering/renderer_rd/pipeline_cache_rd.cpp6
-rw-r--r--servers/rendering/renderer_rd/pipeline_cache_rd.h8
-rw-r--r--servers/rendering/renderer_rd/renderer_canvas_render_rd.cpp419
-rw-r--r--servers/rendering/renderer_rd/renderer_canvas_render_rd.h43
-rw-r--r--servers/rendering/renderer_rd/renderer_compositor_rd.cpp47
-rw-r--r--servers/rendering/renderer_rd/renderer_compositor_rd.h31
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_environment_rd.cpp10
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_environment_rd.h26
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_gi_rd.cpp482
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_gi_rd.h46
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_render_rd.cpp1218
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_render_rd.h210
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_sky_rd.cpp331
-rw-r--r--servers/rendering/renderer_rd/renderer_scene_sky_rd.h52
-rw-r--r--servers/rendering/renderer_rd/renderer_storage_rd.cpp9666
-rw-r--r--servers/rendering/renderer_rd/renderer_storage_rd.h2198
-rw-r--r--servers/rendering/renderer_rd/shader_rd.cpp18
-rw-r--r--servers/rendering/renderer_rd/shader_rd.h11
-rw-r--r--servers/rendering/renderer_rd/shaders/SCsub2
-rw-r--r--servers/rendering/renderer_rd/shaders/blit.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/blur_raster_inc.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/bokeh_dof_inc.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/canvas.glsl10
-rw-r--r--servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/canvas_sdf.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/canvas_uniforms_inc.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/cluster_debug.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/cluster_render.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/cluster_store.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/copy.glsl113
-rw-r--r--servers/rendering/renderer_rd/shaders/copy_to_fb.glsl66
-rw-r--r--servers/rendering/renderer_rd/shaders/cube_to_dp.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/cubemap_downsampler_inc.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/cubemap_filter_raster.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/cubemap_roughness.glsl26
-rw-r--r--servers/rendering/renderer_rd/shaders/cubemap_roughness_inc.glsl23
-rw-r--r--servers/rendering/renderer_rd/shaders/cubemap_roughness_raster.glsl24
-rw-r--r--servers/rendering/renderer_rd/shaders/effects/SCsub17
-rw-r--r--servers/rendering/renderer_rd/shaders/effects/tonemap.glsl (renamed from servers/rendering/renderer_rd/shaders/tonemap.glsl)12
-rw-r--r--servers/rendering/renderer_rd/shaders/fsr_upscale.glsl6
-rw-r--r--servers/rendering/renderer_rd/shaders/gi.glsl20
-rw-r--r--servers/rendering/renderer_rd/shaders/giprobe_write.glsl3
-rw-r--r--servers/rendering/renderer_rd/shaders/light_data_inc.glsl8
-rw-r--r--servers/rendering/renderer_rd/shaders/luminance_reduce.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/luminance_reduce_raster_inc.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/particles.glsl20
-rw-r--r--servers/rendering/renderer_rd/shaders/particles_copy.glsl46
-rw-r--r--servers/rendering/renderer_rd/shaders/resolve.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/roughness_limiter.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/scene_forward_clustered.glsl202
-rw-r--r--servers/rendering/renderer_rd/shaders/scene_forward_clustered_inc.glsl41
-rw-r--r--servers/rendering/renderer_rd/shaders/scene_forward_lights_inc.glsl143
-rw-r--r--servers/rendering/renderer_rd/shaders/scene_forward_mobile.glsl157
-rw-r--r--servers/rendering/renderer_rd/shaders/scene_forward_mobile_inc.glsl8
-rw-r--r--servers/rendering/renderer_rd/shaders/screen_space_reflection.glsl6
-rw-r--r--servers/rendering/renderer_rd/shaders/screen_space_reflection_filter.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/sdfgi_debug.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/sdfgi_debug_probes.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/sdfgi_direct_light.glsl4
-rw-r--r--servers/rendering/renderer_rd/shaders/sdfgi_integrate.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/sdfgi_preprocess.glsl6
-rw-r--r--servers/rendering/renderer_rd/shaders/skeleton.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/sky.glsl13
-rw-r--r--servers/rendering/renderer_rd/shaders/sort.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/ss_effects_downsample.glsl (renamed from servers/rendering/renderer_rd/shaders/ssao_downsample.glsl)25
-rw-r--r--servers/rendering/renderer_rd/shaders/ssao.glsl5
-rw-r--r--servers/rendering/renderer_rd/shaders/ssao_blur.glsl16
-rw-r--r--servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl9
-rw-r--r--servers/rendering/renderer_rd/shaders/ssao_interleave.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/ssil.glsl444
-rw-r--r--servers/rendering/renderer_rd/shaders/ssil_blur.glsl124
-rw-r--r--servers/rendering/renderer_rd/shaders/ssil_importance_map.glsl124
-rw-r--r--servers/rendering/renderer_rd/shaders/ssil_interleave.glsl102
-rw-r--r--servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/volumetric_fog.glsl2
-rw-r--r--servers/rendering/renderer_rd/shaders/volumetric_fog_process.glsl22
-rw-r--r--servers/rendering/renderer_rd/shaders/voxel_gi.glsl5
-rw-r--r--servers/rendering/renderer_rd/shaders/voxel_gi_debug.glsl58
-rw-r--r--servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl9
-rw-r--r--servers/rendering/renderer_rd/storage_rd/SCsub5
-rw-r--r--servers/rendering/renderer_rd/storage_rd/light_storage.cpp788
-rw-r--r--servers/rendering/renderer_rd/storage_rd/light_storage.h370
-rw-r--r--servers/rendering/renderer_rd/storage_rd/material_storage.cpp2626
-rw-r--r--servers/rendering/renderer_rd/storage_rd/material_storage.h333
-rw-r--r--servers/rendering/renderer_rd/storage_rd/mesh_storage.cpp1921
-rw-r--r--servers/rendering/renderer_rd/storage_rd/mesh_storage.h706
-rw-r--r--servers/rendering/renderer_rd/storage_rd/particles_storage.cpp1893
-rw-r--r--servers/rendering/renderer_rd/storage_rd/particles_storage.h564
-rw-r--r--servers/rendering/renderer_rd/storage_rd/texture_storage.cpp2752
-rw-r--r--servers/rendering/renderer_rd/storage_rd/texture_storage.h566
-rw-r--r--servers/rendering/renderer_rd/uniform_set_cache_rd.cpp64
-rw-r--r--servers/rendering/renderer_rd/uniform_set_cache_rd.h221
-rw-r--r--servers/rendering/renderer_scene.cpp4
-rw-r--r--servers/rendering/renderer_scene.h21
-rw-r--r--servers/rendering/renderer_scene_cull.cpp404
-rw-r--r--servers/rendering/renderer_scene_cull.h66
-rw-r--r--servers/rendering/renderer_scene_occlusion_cull.cpp4
-rw-r--r--servers/rendering/renderer_scene_occlusion_cull.h4
-rw-r--r--servers/rendering/renderer_scene_render.cpp14
-rw-r--r--servers/rendering/renderer_scene_render.h30
-rw-r--r--servers/rendering/renderer_storage.cpp4
-rw-r--r--servers/rendering/renderer_storage.h428
-rw-r--r--servers/rendering/renderer_thread_pool.cpp4
-rw-r--r--servers/rendering/renderer_thread_pool.h4
-rw-r--r--servers/rendering/renderer_viewport.cpp199
-rw-r--r--servers/rendering/renderer_viewport.h14
-rw-r--r--servers/rendering/rendering_device.cpp27
-rw-r--r--servers/rendering/rendering_device.h101
-rw-r--r--servers/rendering/rendering_device_binds.cpp8
-rw-r--r--servers/rendering/rendering_device_binds.h16
-rw-r--r--servers/rendering/rendering_server_default.cpp25
-rw-r--r--servers/rendering/rendering_server_default.h195
-rw-r--r--servers/rendering/rendering_server_globals.cpp9
-rw-r--r--servers/rendering/rendering_server_globals.h14
-rw-r--r--servers/rendering/shader_compiler.cpp (renamed from servers/rendering/renderer_rd/shader_compiler_rd.cpp)416
-rw-r--r--servers/rendering/shader_compiler.h (renamed from servers/rendering/renderer_rd/shader_compiler_rd.h)21
-rw-r--r--servers/rendering/shader_language.cpp2556
-rw-r--r--servers/rendering/shader_language.h139
-rw-r--r--servers/rendering/shader_types.cpp49
-rw-r--r--servers/rendering/shader_types.h4
-rw-r--r--servers/rendering/shader_warnings.cpp30
-rw-r--r--servers/rendering/shader_warnings.h11
-rw-r--r--servers/rendering/storage/SCsub5
-rw-r--r--servers/rendering/storage/light_storage.h139
-rw-r--r--servers/rendering/storage/material_storage.h101
-rw-r--r--servers/rendering/storage/mesh_storage.h136
-rw-r--r--servers/rendering/storage/particles_storage.h129
-rw-r--r--servers/rendering/storage/texture_storage.h142
-rw-r--r--servers/rendering_server.cpp128
-rw-r--r--servers/rendering_server.h70
-rw-r--r--servers/server_wrap_mt_common.h4
-rw-r--r--servers/text/text_server_dummy.h48
-rw-r--r--servers/text/text_server_extension.cpp1242
-rw-r--r--servers/text/text_server_extension.h804
-rw-r--r--servers/text_server.cpp319
-rw-r--r--servers/text_server.h473
-rw-r--r--servers/xr/xr_interface.cpp7
-rw-r--r--servers/xr/xr_interface.h19
-rw-r--r--servers/xr/xr_interface_extension.cpp47
-rw-r--r--servers/xr/xr_interface_extension.h15
-rw-r--r--servers/xr/xr_pose.cpp22
-rw-r--r--servers/xr/xr_pose.h17
-rw-r--r--servers/xr/xr_positional_tracker.cpp53
-rw-r--r--servers/xr/xr_positional_tracker.h23
-rw-r--r--servers/xr_server.cpp65
-rw-r--r--servers/xr_server.h26
334 files changed, 28269 insertions, 20676 deletions
diff --git a/servers/SCsub b/servers/SCsub
index 76c11724d3..66a1b9b26f 100644
--- a/servers/SCsub
+++ b/servers/SCsub
@@ -12,6 +12,8 @@ SConscript("physics_2d/SCsub")
SConscript("rendering/SCsub")
SConscript("audio/SCsub")
SConscript("text/SCsub")
+SConscript("debugger/SCsub")
+SConscript("extensions/SCsub")
lib = env.add_library("servers", env.servers_sources)
diff --git a/servers/audio/audio_driver_dummy.cpp b/servers/audio/audio_driver_dummy.cpp
index 47799dce96..635e4601c7 100644
--- a/servers/audio/audio_driver_dummy.cpp
+++ b/servers/audio/audio_driver_dummy.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -54,7 +54,7 @@ Error AudioDriverDummy::init() {
};
void AudioDriverDummy::thread_func(void *p_udata) {
- AudioDriverDummy *ad = (AudioDriverDummy *)p_udata;
+ AudioDriverDummy *ad = static_cast<AudioDriverDummy *>(p_udata);
uint64_t usdelay = (ad->buffer_frames / float(ad->mix_rate)) * 1000000;
diff --git a/servers/audio/audio_driver_dummy.h b/servers/audio/audio_driver_dummy.h
index 7d84e7ffc8..68b523e086 100644
--- a/servers/audio/audio_driver_dummy.h
+++ b/servers/audio/audio_driver_dummy.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -40,7 +40,7 @@ class AudioDriverDummy : public AudioDriver {
Thread thread;
Mutex mutex;
- int32_t *samples_in;
+ int32_t *samples_in = nullptr;
static void thread_func(void *p_udata);
diff --git a/servers/audio/audio_effect.cpp b/servers/audio/audio_effect.cpp
index 3035828c95..f38d0adfb2 100644
--- a/servers/audio/audio_effect.cpp
+++ b/servers/audio/audio_effect.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,5 +30,36 @@
#include "audio_effect.h"
+void AudioEffectInstance::process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count) {
+ if (GDVIRTUAL_REQUIRED_CALL(_process, p_src_frames, p_dst_frames, p_frame_count)) {
+ return;
+ }
+}
+bool AudioEffectInstance::process_silence() const {
+ bool ret;
+ if (GDVIRTUAL_CALL(_process_silence, ret)) {
+ return ret;
+ }
+ return false;
+}
+
+void AudioEffectInstance::_bind_methods() {
+ GDVIRTUAL_BIND(_process, "src_buffer", "dst_buffer", "frame_count");
+ GDVIRTUAL_BIND(_process_silence);
+}
+
+////
+
+Ref<AudioEffectInstance> AudioEffect::instantiate() {
+ Ref<AudioEffectInstance> ret;
+ if (GDVIRTUAL_REQUIRED_CALL(_instantiate, ret)) {
+ return ret;
+ }
+ return Ref<AudioEffectInstance>();
+}
+void AudioEffect::_bind_methods() {
+ GDVIRTUAL_BIND(_instantiate);
+}
+
AudioEffect::AudioEffect() {
}
diff --git a/servers/audio/audio_effect.h b/servers/audio/audio_effect.h
index bea7292b8e..3a0578679d 100644
--- a/servers/audio/audio_effect.h
+++ b/servers/audio/audio_effect.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,20 +33,32 @@
#include "core/io/resource.h"
#include "core/math/audio_frame.h"
+#include "core/object/gdvirtual.gen.inc"
+#include "core/object/script_language.h"
+#include "core/variant/native_ptr.h"
class AudioEffectInstance : public RefCounted {
GDCLASS(AudioEffectInstance, RefCounted);
+protected:
+ GDVIRTUAL3(_process, GDNativeConstPtr<AudioFrame>, GDNativePtr<AudioFrame>, int)
+ GDVIRTUAL0RC(bool, _process_silence)
+ static void _bind_methods();
+
public:
- virtual void process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count) = 0;
- virtual bool process_silence() const { return false; }
+ virtual void process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count);
+ virtual bool process_silence() const;
};
class AudioEffect : public Resource {
GDCLASS(AudioEffect, Resource);
+protected:
+ GDVIRTUAL0R(Ref<AudioEffectInstance>, _instantiate)
+ static void _bind_methods();
+
public:
- virtual Ref<AudioEffectInstance> instantiate() = 0;
+ virtual Ref<AudioEffectInstance> instantiate();
AudioEffect();
};
diff --git a/servers/audio/audio_filter_sw.cpp b/servers/audio/audio_filter_sw.cpp
index b31014bd21..003275f302 100644
--- a/servers/audio/audio_filter_sw.cpp
+++ b/servers/audio/audio_filter_sw.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -211,15 +211,6 @@ float AudioFilterSW::get_response(float p_freq, Coeffs *p_coeffs) {
return H;
}
-AudioFilterSW::AudioFilterSW() {
- sampling_rate = 44100;
- resonance = 0.5;
- cutoff = 5000;
- gain = 1.0;
- mode = LOWPASS;
- stages = 1;
-}
-
AudioFilterSW::Processor::Processor() {
set_filter(nullptr);
}
diff --git a/servers/audio/audio_filter_sw.h b/servers/audio/audio_filter_sw.h
index 540d6368e3..e3f8188997 100644
--- a/servers/audio/audio_filter_sw.h
+++ b/servers/audio/audio_filter_sw.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -36,11 +36,11 @@
class AudioFilterSW {
public:
struct Coeffs {
- float a1, a2;
- float b0, b1, b2;
-
- //bool operator==(const Coeffs &p_rv) { return (FLOATS_EQ(a1,p_rv.a1) && FLOATS_EQ(a2,p_rv.a2) && FLOATS_EQ(b1,p_rv.b1) && FLOATS_EQ(b2,p_rv.b2) && FLOATS_EQ(b0,p_rv.b0) ); }
- Coeffs() { a1 = a2 = b0 = b1 = b2 = 0.0; }
+ float a1 = 0.0f;
+ float a2 = 0.0f;
+ float b0 = 0.0f;
+ float b1 = 0.0f;
+ float b2 = 0.0f;
};
enum Mode {
@@ -52,14 +52,16 @@ public:
BANDLIMIT,
LOWSHELF,
HIGHSHELF
-
};
- class Processor { // simple filter processor
-
- AudioFilterSW *filter;
+ class Processor { // Simple filter processor.
+ AudioFilterSW *filter = nullptr;
Coeffs coeffs;
- float ha1, ha2, hb1, hb2; //history
+ // History.
+ float ha1 = 0.0f;
+ float ha2 = 0.0f;
+ float hb1 = 0.0f;
+ float hb2 = 0.0f;
Coeffs incr_coeffs;
public:
@@ -73,12 +75,12 @@ public:
};
private:
- float cutoff;
- float resonance;
- float gain;
- float sampling_rate;
- int stages;
- Mode mode;
+ float cutoff = 5000.0f;
+ float resonance = 0.5f;
+ float gain = 1.0f;
+ float sampling_rate = 44100.0f;
+ int stages = 1;
+ Mode mode = LOWPASS;
public:
float get_response(float p_freq, Coeffs *p_coeffs);
@@ -92,7 +94,7 @@ public:
void prepare_coefficients(Coeffs *p_coeffs);
- AudioFilterSW();
+ AudioFilterSW() {}
};
/* inline methods */
diff --git a/servers/audio/audio_rb_resampler.cpp b/servers/audio/audio_rb_resampler.cpp
index b37965a988..0cfba17563 100644
--- a/servers/audio/audio_rb_resampler.cpp
+++ b/servers/audio/audio_rb_resampler.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/audio_rb_resampler.h b/servers/audio/audio_rb_resampler.h
index c0f981704b..81ac6332e2 100644
--- a/servers/audio/audio_rb_resampler.h
+++ b/servers/audio/audio_rb_resampler.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -55,8 +55,8 @@ struct AudioRBResampler {
MIX_FRAC_MASK = MIX_FRAC_LEN - 1,
};
- float *read_buf;
- float *rb;
+ float *read_buf = nullptr;
+ float *rb = nullptr;
template <int C>
uint32_t _resample(AudioFrame *p_dest, int p_todo, int32_t p_increment);
diff --git a/servers/audio/audio_stream.cpp b/servers/audio/audio_stream.cpp
index c098a97906..9a9b9815ae 100644
--- a/servers/audio/audio_stream.cpp
+++ b/servers/audio/audio_stream.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -76,10 +76,10 @@ void AudioStreamPlayback::seek(float p_time) {
int AudioStreamPlayback::mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) {
int ret;
- if (GDVIRTUAL_CALL(_mix, p_buffer, p_rate_scale, p_frames, ret)) {
+ if (GDVIRTUAL_REQUIRED_CALL(_mix, p_buffer, p_rate_scale, p_frames, ret)) {
return ret;
}
- WARN_PRINT_ONCE("AudioStreamPlayback::mix unimplemented!");
+
return 0;
}
@@ -94,7 +94,7 @@ void AudioStreamPlayback::_bind_methods() {
}
//////////////////////////////
-void AudioStreamPlaybackResampled::_begin_resample() {
+void AudioStreamPlaybackResampled::begin_resample() {
//clear cubic interpolation history
internal_buffer[0] = AudioFrame(0.0, 0.0);
internal_buffer[1] = AudioFrame(0.0, 0.0);
@@ -105,6 +105,30 @@ void AudioStreamPlaybackResampled::_begin_resample() {
mix_offset = 0;
}
+int AudioStreamPlaybackResampled::_mix_internal(AudioFrame *p_buffer, int p_frames) {
+ int ret;
+ if (GDVIRTUAL_REQUIRED_CALL(_mix_resampled, p_buffer, p_frames, ret)) {
+ return ret;
+ }
+
+ return 0;
+}
+float AudioStreamPlaybackResampled::get_stream_sampling_rate() {
+ float ret;
+ if (GDVIRTUAL_REQUIRED_CALL(_get_stream_sampling_rate, ret)) {
+ return ret;
+ }
+
+ return 0;
+}
+
+void AudioStreamPlaybackResampled::_bind_methods() {
+ ClassDB::bind_method(D_METHOD("begin_resample"), &AudioStreamPlaybackResampled::begin_resample);
+
+ GDVIRTUAL_BIND(_mix_resampled, "dst_buffer", "frame_count");
+ GDVIRTUAL_BIND(_get_stream_sampling_rate);
+}
+
int AudioStreamPlaybackResampled::mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) {
float target_rate = AudioServer::get_singleton()->get_mix_rate();
float playback_speed_scale = AudioServer::get_singleton()->get_playback_speed_scale();
@@ -200,6 +224,7 @@ bool AudioStream::is_monophonic() const {
void AudioStream::_bind_methods() {
ClassDB::bind_method(D_METHOD("get_length"), &AudioStream::get_length);
ClassDB::bind_method(D_METHOD("is_monophonic"), &AudioStream::is_monophonic);
+ ClassDB::bind_method(D_METHOD("instance_playback"), &AudioStream::instance_playback);
GDVIRTUAL_BIND(_instance_playback);
GDVIRTUAL_BIND(_get_stream_name);
GDVIRTUAL_BIND(_get_length);
@@ -314,7 +339,7 @@ void AudioStreamPlaybackMicrophone::start(float p_from_pos) {
if (AudioDriver::get_singleton()->capture_start() == OK) {
active = true;
- _begin_resample();
+ begin_resample();
}
}
@@ -351,100 +376,369 @@ AudioStreamPlaybackMicrophone::AudioStreamPlaybackMicrophone() {
////////////////////////////////
-void AudioStreamRandomPitch::set_audio_stream(const Ref<AudioStream> &p_audio_stream) {
- audio_stream = p_audio_stream;
- if (audio_stream.is_valid()) {
- for (Set<AudioStreamPlaybackRandomPitch *>::Element *E = playbacks.front(); E; E = E->next()) {
- E->get()->playback = audio_stream->instance_playback();
- }
+void AudioStreamRandomizer::add_stream(int p_index) {
+ if (p_index < 0) {
+ p_index = audio_stream_pool.size();
+ }
+ ERR_FAIL_COND(p_index > audio_stream_pool.size());
+ PoolEntry entry{ nullptr, 1.0f };
+ audio_stream_pool.insert(p_index, entry);
+ emit_signal(SNAME("changed"));
+ notify_property_list_changed();
+}
+
+void AudioStreamRandomizer::move_stream(int p_index_from, int p_index_to) {
+ ERR_FAIL_COND(p_index_from < 0);
+ ERR_FAIL_COND(p_index_from >= audio_stream_pool.size());
+ ERR_FAIL_COND(p_index_to < 0);
+ ERR_FAIL_COND(p_index_to > audio_stream_pool.size());
+ audio_stream_pool.insert(p_index_to, audio_stream_pool[p_index_from]);
+ // If 'from' is strictly after 'to' we need to increment the index by one because of the insertion.
+ if (p_index_from > p_index_to) {
+ p_index_from++;
}
+ audio_stream_pool.remove_at(p_index_from);
+ emit_signal(SNAME("changed"));
+ notify_property_list_changed();
}
-Ref<AudioStream> AudioStreamRandomPitch::get_audio_stream() const {
- return audio_stream;
+void AudioStreamRandomizer::remove_stream(int p_index) {
+ ERR_FAIL_COND(p_index < 0);
+ ERR_FAIL_COND(p_index >= audio_stream_pool.size());
+ audio_stream_pool.remove_at(p_index);
+ emit_signal(SNAME("changed"));
+ notify_property_list_changed();
}
-void AudioStreamRandomPitch::set_random_pitch(float p_pitch) {
+void AudioStreamRandomizer::set_stream(int p_index, Ref<AudioStream> p_stream) {
+ ERR_FAIL_COND(p_index < 0);
+ ERR_FAIL_COND(p_index >= audio_stream_pool.size());
+ audio_stream_pool.write[p_index].stream = p_stream;
+ emit_signal(SNAME("changed"));
+}
+
+Ref<AudioStream> AudioStreamRandomizer::get_stream(int p_index) const {
+ ERR_FAIL_COND_V(p_index < 0, nullptr);
+ ERR_FAIL_COND_V(p_index >= audio_stream_pool.size(), nullptr);
+ return audio_stream_pool[p_index].stream;
+}
+
+void AudioStreamRandomizer::set_stream_probability_weight(int p_index, float p_weight) {
+ ERR_FAIL_COND(p_index < 0);
+ ERR_FAIL_COND(p_index >= audio_stream_pool.size());
+ audio_stream_pool.write[p_index].weight = p_weight;
+ emit_signal(SNAME("changed"));
+}
+
+float AudioStreamRandomizer::get_stream_probability_weight(int p_index) const {
+ ERR_FAIL_COND_V(p_index < 0, 0);
+ ERR_FAIL_COND_V(p_index >= audio_stream_pool.size(), 0);
+ return audio_stream_pool[p_index].weight;
+}
+
+void AudioStreamRandomizer::set_streams_count(int p_count) {
+ audio_stream_pool.resize(p_count);
+}
+
+int AudioStreamRandomizer::get_streams_count() const {
+ return audio_stream_pool.size();
+}
+
+void AudioStreamRandomizer::set_random_pitch(float p_pitch) {
if (p_pitch < 1) {
p_pitch = 1;
}
- random_pitch = p_pitch;
+ random_pitch_scale = p_pitch;
}
-float AudioStreamRandomPitch::get_random_pitch() const {
- return random_pitch;
+float AudioStreamRandomizer::get_random_pitch() const {
+ return random_pitch_scale;
}
-Ref<AudioStreamPlayback> AudioStreamRandomPitch::instance_playback() {
- Ref<AudioStreamPlaybackRandomPitch> playback;
+void AudioStreamRandomizer::set_random_volume_offset_db(float p_volume_offset_db) {
+ if (p_volume_offset_db < 0) {
+ p_volume_offset_db = 0;
+ }
+ random_volume_offset_db = p_volume_offset_db;
+}
+
+float AudioStreamRandomizer::get_random_volume_offset_db() const {
+ return random_volume_offset_db;
+}
+
+void AudioStreamRandomizer::set_playback_mode(PlaybackMode p_playback_mode) {
+ playback_mode = p_playback_mode;
+}
+
+AudioStreamRandomizer::PlaybackMode AudioStreamRandomizer::get_playback_mode() const {
+ return playback_mode;
+}
+
+Ref<AudioStreamPlayback> AudioStreamRandomizer::instance_playback_random() {
+ Ref<AudioStreamPlaybackRandomizer> playback;
playback.instantiate();
- if (audio_stream.is_valid()) {
- playback->playback = audio_stream->instance_playback();
+ playbacks.insert(playback.ptr());
+ playback->randomizer = Ref<AudioStreamRandomizer>((AudioStreamRandomizer *)this);
+
+ double total_weight = 0;
+ Vector<PoolEntry> local_pool;
+ for (const PoolEntry &entry : audio_stream_pool) {
+ if (entry.stream.is_valid() && entry.weight > 0) {
+ local_pool.push_back(entry);
+ total_weight += entry.weight;
+ }
+ }
+ if (local_pool.is_empty()) {
+ return playback;
+ }
+ double chosen_cumulative_weight = Math::random(0.0, total_weight);
+ double cumulative_weight = 0;
+ for (PoolEntry &entry : local_pool) {
+ cumulative_weight += entry.weight;
+ if (cumulative_weight > chosen_cumulative_weight) {
+ playback->playback = entry.stream->instance_playback();
+ last_playback = entry.stream;
+ break;
+ }
}
+ if (playback->playback.is_null()) {
+ // This indicates a floating point error. Take the last element.
+ last_playback = local_pool[local_pool.size() - 1].stream;
+ playback->playback = local_pool.write[local_pool.size() - 1].stream->instance_playback();
+ }
+ return playback;
+}
+Ref<AudioStreamPlayback> AudioStreamRandomizer::instance_playback_no_repeats() {
+ Ref<AudioStreamPlaybackRandomizer> playback;
+
+ double total_weight = 0;
+ Vector<PoolEntry> local_pool;
+ for (const PoolEntry &entry : audio_stream_pool) {
+ if (entry.stream == last_playback) {
+ continue;
+ }
+ if (entry.stream.is_valid() && entry.weight > 0) {
+ local_pool.push_back(entry);
+ total_weight += entry.weight;
+ }
+ }
+ if (local_pool.is_empty()) {
+ playback = instance_playback_random();
+ WARN_PRINT("Playback stream pool is too small to prevent repeats.");
+ return playback;
+ }
+
+ playback.instantiate();
playbacks.insert(playback.ptr());
- playback->random_pitch = Ref<AudioStreamRandomPitch>((AudioStreamRandomPitch *)this);
+ playback->randomizer = Ref<AudioStreamRandomizer>((AudioStreamRandomizer *)this);
+ double chosen_cumulative_weight = Math::random(0.0, total_weight);
+ double cumulative_weight = 0;
+ for (PoolEntry &entry : local_pool) {
+ cumulative_weight += entry.weight;
+ if (cumulative_weight > chosen_cumulative_weight) {
+ last_playback = entry.stream;
+ playback->playback = entry.stream->instance_playback();
+ break;
+ }
+ }
+ if (playback->playback.is_null()) {
+ // This indicates a floating point error. Take the last element.
+ last_playback = local_pool[local_pool.size() - 1].stream;
+ playback->playback = local_pool.write[local_pool.size() - 1].stream->instance_playback();
+ }
return playback;
}
-String AudioStreamRandomPitch::get_stream_name() const {
- if (audio_stream.is_valid()) {
- return "Random: " + audio_stream->get_name();
+Ref<AudioStreamPlayback> AudioStreamRandomizer::instance_playback_sequential() {
+ Ref<AudioStreamPlaybackRandomizer> playback;
+ playback.instantiate();
+ playbacks.insert(playback.ptr());
+ playback->randomizer = Ref<AudioStreamRandomizer>((AudioStreamRandomizer *)this);
+
+ Vector<Ref<AudioStream>> local_pool;
+ for (const PoolEntry &entry : audio_stream_pool) {
+ if (entry.stream.is_null()) {
+ continue;
+ }
+ if (local_pool.find(entry.stream) != -1) {
+ WARN_PRINT("Duplicate stream in sequential playback pool");
+ continue;
+ }
+ local_pool.push_back(entry.stream);
+ }
+ if (local_pool.is_empty()) {
+ return playback;
}
- return "RandomPitch";
+ bool found_last_stream = false;
+ for (Ref<AudioStream> &entry : local_pool) {
+ if (found_last_stream) {
+ last_playback = entry;
+ playback->playback = entry->instance_playback();
+ break;
+ }
+ if (entry == last_playback) {
+ found_last_stream = true;
+ }
+ }
+ if (playback->playback.is_null()) {
+ // Wrap around
+ last_playback = local_pool[0];
+ playback->playback = local_pool.write[0]->instance_playback();
+ }
+ return playback;
}
-float AudioStreamRandomPitch::get_length() const {
- if (audio_stream.is_valid()) {
- return audio_stream->get_length();
+Ref<AudioStreamPlayback> AudioStreamRandomizer::instance_playback() {
+ switch (playback_mode) {
+ case PLAYBACK_RANDOM:
+ return instance_playback_random();
+ case PLAYBACK_RANDOM_NO_REPEATS:
+ return instance_playback_no_repeats();
+ case PLAYBACK_SEQUENTIAL:
+ return instance_playback_sequential();
+ default:
+ ERR_FAIL_V_MSG(nullptr, "Unhandled playback mode.");
}
+}
+String AudioStreamRandomizer::get_stream_name() const {
+ return "Randomizer";
+}
+
+float AudioStreamRandomizer::get_length() const {
return 0;
}
-bool AudioStreamRandomPitch::is_monophonic() const {
- if (audio_stream.is_valid()) {
- return audio_stream->is_monophonic();
+bool AudioStreamRandomizer::is_monophonic() const {
+ for (const PoolEntry &entry : audio_stream_pool) {
+ if (entry.stream.is_valid() && entry.stream->is_monophonic()) {
+ return true;
+ }
+ }
+ return false;
+}
+
+bool AudioStreamRandomizer::_get(const StringName &p_name, Variant &r_ret) const {
+ if (AudioStream::_get(p_name, r_ret)) {
+ return true;
}
+ Vector<String> components = String(p_name).split("/", true, 2);
+ if (components.size() == 2 && components[0].begins_with("stream_") && components[0].trim_prefix("stream_").is_valid_int()) {
+ int index = components[0].trim_prefix("stream_").to_int();
+ if (index < 0 || index >= (int)audio_stream_pool.size()) {
+ return false;
+ }
- return true; // It doesn't really matter what we return here, but no sense instancing a many playbacks of a null stream.
+ if (components[1] == "stream") {
+ r_ret = get_stream(index);
+ return true;
+ } else if (components[1] == "weight") {
+ r_ret = get_stream_probability_weight(index);
+ return true;
+ } else {
+ return false;
+ }
+ }
+ return false;
}
-void AudioStreamRandomPitch::_bind_methods() {
- ClassDB::bind_method(D_METHOD("set_audio_stream", "stream"), &AudioStreamRandomPitch::set_audio_stream);
- ClassDB::bind_method(D_METHOD("get_audio_stream"), &AudioStreamRandomPitch::get_audio_stream);
+bool AudioStreamRandomizer::_set(const StringName &p_name, const Variant &p_value) {
+ if (AudioStream::_set(p_name, p_value)) {
+ return true;
+ }
+ Vector<String> components = String(p_name).split("/", true, 2);
+ if (components.size() == 2 && components[0].begins_with("stream_") && components[0].trim_prefix("stream_").is_valid_int()) {
+ int index = components[0].trim_prefix("stream_").to_int();
+ if (index < 0 || index >= (int)audio_stream_pool.size()) {
+ return false;
+ }
- ClassDB::bind_method(D_METHOD("set_random_pitch", "scale"), &AudioStreamRandomPitch::set_random_pitch);
- ClassDB::bind_method(D_METHOD("get_random_pitch"), &AudioStreamRandomPitch::get_random_pitch);
+ if (components[1] == "stream") {
+ set_stream(index, p_value);
+ return true;
+ } else if (components[1] == "weight") {
+ set_stream_probability_weight(index, p_value);
+ return true;
+ } else {
+ return false;
+ }
+ }
+ return false;
+}
- ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "audio_stream", PROPERTY_HINT_RESOURCE_TYPE, "AudioStream"), "set_audio_stream", "get_audio_stream");
- ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "random_pitch", PROPERTY_HINT_RANGE, "1,16,0.01"), "set_random_pitch", "get_random_pitch");
+void AudioStreamRandomizer::_get_property_list(List<PropertyInfo> *p_list) const {
+ AudioStream::_get_property_list(p_list); // Define the trivial scalar properties.
+ p_list->push_back(PropertyInfo(Variant::NIL, "Streams", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_GROUP));
+ for (int i = 0; i < audio_stream_pool.size(); i++) {
+ p_list->push_back(PropertyInfo(Variant::OBJECT, vformat("stream_%d/stream", i), PROPERTY_HINT_RESOURCE_TYPE, "AudioStream"));
+ p_list->push_back(PropertyInfo(Variant::FLOAT, vformat("stream_%d/weight", i), PROPERTY_HINT_RANGE, "0,100,0.001,or_greater"));
+ }
}
-AudioStreamRandomPitch::AudioStreamRandomPitch() {
- random_pitch = 1.1;
+void AudioStreamRandomizer::_bind_methods() {
+ ClassDB::bind_method(D_METHOD("add_stream", "index"), &AudioStreamRandomizer::add_stream);
+ ClassDB::bind_method(D_METHOD("move_stream", "index_from", "index_to"), &AudioStreamRandomizer::move_stream);
+ ClassDB::bind_method(D_METHOD("remove_stream", "index"), &AudioStreamRandomizer::remove_stream);
+
+ ClassDB::bind_method(D_METHOD("set_stream", "index", "stream"), &AudioStreamRandomizer::set_stream);
+ ClassDB::bind_method(D_METHOD("get_stream", "index"), &AudioStreamRandomizer::get_stream);
+ ClassDB::bind_method(D_METHOD("set_stream_probability_weight", "index", "weight"), &AudioStreamRandomizer::set_stream_probability_weight);
+ ClassDB::bind_method(D_METHOD("get_stream_probability_weight", "index"), &AudioStreamRandomizer::get_stream_probability_weight);
+
+ ClassDB::bind_method(D_METHOD("set_streams_count", "count"), &AudioStreamRandomizer::set_streams_count);
+ ClassDB::bind_method(D_METHOD("get_streams_count"), &AudioStreamRandomizer::get_streams_count);
+
+ ClassDB::bind_method(D_METHOD("set_random_pitch", "scale"), &AudioStreamRandomizer::set_random_pitch);
+ ClassDB::bind_method(D_METHOD("get_random_pitch"), &AudioStreamRandomizer::get_random_pitch);
+
+ ClassDB::bind_method(D_METHOD("set_random_volume_offset_db", "db_offset"), &AudioStreamRandomizer::set_random_volume_offset_db);
+ ClassDB::bind_method(D_METHOD("get_random_volume_offset_db"), &AudioStreamRandomizer::get_random_volume_offset_db);
+
+ ClassDB::bind_method(D_METHOD("set_playback_mode", "mode"), &AudioStreamRandomizer::set_playback_mode);
+ ClassDB::bind_method(D_METHOD("get_playback_mode"), &AudioStreamRandomizer::get_playback_mode);
+
+ ADD_ARRAY("streams", "stream_");
+ ADD_PROPERTY(PropertyInfo(Variant::INT, "streams_count", PROPERTY_HINT_NONE, "", PROPERTY_USAGE_NO_EDITOR), "set_streams_count", "get_streams_count");
+ ADD_PROPERTY(PropertyInfo(Variant::INT, "playback_mode", PROPERTY_HINT_ENUM, "Random (Avoid Repeats),Random,Sequential"), "set_playback_mode", "get_playback_mode");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "random_pitch", PROPERTY_HINT_RANGE, "1,16,0.01"), "set_random_pitch", "get_random_pitch");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "random_volume_offset_db", PROPERTY_HINT_RANGE, "0,40,0"), "set_random_volume_offset_db", "get_random_volume_offset_db");
+
+ BIND_ENUM_CONSTANT(PLAYBACK_RANDOM_NO_REPEATS);
+ BIND_ENUM_CONSTANT(PLAYBACK_RANDOM);
+ BIND_ENUM_CONSTANT(PLAYBACK_SEQUENTIAL);
}
-void AudioStreamPlaybackRandomPitch::start(float p_from_pos) {
+AudioStreamRandomizer::AudioStreamRandomizer() {}
+
+void AudioStreamPlaybackRandomizer::start(float p_from_pos) {
playing = playback;
- float range_from = 1.0 / random_pitch->random_pitch;
- float range_to = random_pitch->random_pitch;
+ {
+ float range_from = 1.0 / randomizer->random_pitch_scale;
+ float range_to = randomizer->random_pitch_scale;
- pitch_scale = range_from + Math::randf() * (range_to - range_from);
+ pitch_scale = range_from + Math::randf() * (range_to - range_from);
+ }
+ {
+ float range_from = -randomizer->random_volume_offset_db;
+ float range_to = randomizer->random_volume_offset_db;
+
+ float volume_offset_db = range_from + Math::randf() * (range_to - range_from);
+ volume_scale = Math::db2linear(volume_offset_db);
+ }
if (playing.is_valid()) {
playing->start(p_from_pos);
}
}
-void AudioStreamPlaybackRandomPitch::stop() {
+void AudioStreamPlaybackRandomizer::stop() {
if (playing.is_valid()) {
playing->stop();
- ;
}
}
-bool AudioStreamPlaybackRandomPitch::is_playing() const {
+bool AudioStreamPlaybackRandomizer::is_playing() const {
if (playing.is_valid()) {
return playing->is_playing();
}
@@ -452,7 +746,7 @@ bool AudioStreamPlaybackRandomPitch::is_playing() const {
return false;
}
-int AudioStreamPlaybackRandomPitch::get_loop_count() const {
+int AudioStreamPlaybackRandomizer::get_loop_count() const {
if (playing.is_valid()) {
return playing->get_loop_count();
}
@@ -460,7 +754,7 @@ int AudioStreamPlaybackRandomPitch::get_loop_count() const {
return 0;
}
-float AudioStreamPlaybackRandomPitch::get_playback_position() const {
+float AudioStreamPlaybackRandomizer::get_playback_position() const {
if (playing.is_valid()) {
return playing->get_playback_position();
}
@@ -468,13 +762,13 @@ float AudioStreamPlaybackRandomPitch::get_playback_position() const {
return 0;
}
-void AudioStreamPlaybackRandomPitch::seek(float p_time) {
+void AudioStreamPlaybackRandomizer::seek(float p_time) {
if (playing.is_valid()) {
playing->seek(p_time);
}
}
-int AudioStreamPlaybackRandomPitch::mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) {
+int AudioStreamPlaybackRandomizer::mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) {
if (playing.is_valid()) {
return playing->mix(p_buffer, p_rate_scale * pitch_scale, p_frames);
} else {
@@ -485,7 +779,7 @@ int AudioStreamPlaybackRandomPitch::mix(AudioFrame *p_buffer, float p_rate_scale
}
}
-AudioStreamPlaybackRandomPitch::~AudioStreamPlaybackRandomPitch() {
- random_pitch->playbacks.erase(this);
+AudioStreamPlaybackRandomizer::~AudioStreamPlaybackRandomizer() {
+ randomizer->playbacks.erase(this);
}
/////////////////////////////////////////////
diff --git a/servers/audio/audio_stream.h b/servers/audio/audio_stream.h
index 12d4343f5c..9800707849 100644
--- a/servers/audio/audio_stream.h
+++ b/servers/audio/audio_stream.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -78,13 +78,18 @@ class AudioStreamPlaybackResampled : public AudioStreamPlayback {
AudioFrame internal_buffer[INTERNAL_BUFFER_LEN + CUBIC_INTERP_HISTORY];
unsigned int internal_buffer_end = -1;
- uint64_t mix_offset;
+ uint64_t mix_offset = 0;
protected:
- void _begin_resample();
+ void begin_resample();
// Returns the number of frames that were mixed.
- virtual int _mix_internal(AudioFrame *p_buffer, int p_frames) = 0;
- virtual float get_stream_sampling_rate() = 0;
+ virtual int _mix_internal(AudioFrame *p_buffer, int p_frames);
+ virtual float get_stream_sampling_rate();
+
+ GDVIRTUAL2R(int, _mix_resampled, GDNativePtr<AudioFrame>, int)
+ GDVIRTUAL0RC(float, _get_stream_sampling_rate)
+
+ static void _bind_methods();
public:
virtual int mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) override;
@@ -140,8 +145,8 @@ class AudioStreamPlaybackMicrophone : public AudioStreamPlaybackResampled {
GDCLASS(AudioStreamPlaybackMicrophone, AudioStreamPlaybackResampled);
friend class AudioStreamMicrophone;
- bool active;
- unsigned int input_ofs;
+ bool active = false;
+ unsigned int input_ofs = 0;
Ref<AudioStreamMicrophone> microphone;
@@ -167,43 +172,86 @@ public:
//
-class AudioStreamPlaybackRandomPitch;
+class AudioStreamPlaybackRandomizer;
+
+class AudioStreamRandomizer : public AudioStream {
+ GDCLASS(AudioStreamRandomizer, AudioStream);
+
+public:
+ enum PlaybackMode {
+ PLAYBACK_RANDOM_NO_REPEATS,
+ PLAYBACK_RANDOM,
+ PLAYBACK_SEQUENTIAL,
+ };
+
+private:
+ friend class AudioStreamPlaybackRandomizer;
+
+ struct PoolEntry {
+ Ref<AudioStream> stream;
+ float weight;
+ };
+
+ Set<AudioStreamPlaybackRandomizer *> playbacks;
+ Vector<PoolEntry> audio_stream_pool;
+ float random_pitch_scale = 1.1f;
+ float random_volume_offset_db = 5.0f;
-class AudioStreamRandomPitch : public AudioStream {
- GDCLASS(AudioStreamRandomPitch, AudioStream);
- friend class AudioStreamPlaybackRandomPitch;
+ Ref<AudioStreamPlayback> instance_playback_random();
+ Ref<AudioStreamPlayback> instance_playback_no_repeats();
+ Ref<AudioStreamPlayback> instance_playback_sequential();
- Set<AudioStreamPlaybackRandomPitch *> playbacks;
- Ref<AudioStream> audio_stream;
- float random_pitch;
+ Ref<AudioStream> last_playback = nullptr;
+ PlaybackMode playback_mode = PLAYBACK_RANDOM_NO_REPEATS;
protected:
static void _bind_methods();
+ bool _set(const StringName &p_name, const Variant &p_value);
+ bool _get(const StringName &p_name, Variant &r_ret) const;
+ void _get_property_list(List<PropertyInfo> *p_list) const;
+
public:
- void set_audio_stream(const Ref<AudioStream> &p_audio_stream);
- Ref<AudioStream> get_audio_stream() const;
+ void add_stream(int p_index);
+ void move_stream(int p_index_from, int p_index_to);
+ void remove_stream(int p_index);
+
+ void set_stream(int p_index, Ref<AudioStream> p_stream);
+ Ref<AudioStream> get_stream(int p_index) const;
+ void set_stream_probability_weight(int p_index, float p_weight);
+ float get_stream_probability_weight(int p_index) const;
+
+ void set_streams_count(int p_count);
+ int get_streams_count() const;
- void set_random_pitch(float p_pitch);
+ void set_random_pitch(float p_pitch_scale);
float get_random_pitch() const;
+ void set_random_volume_offset_db(float p_volume_offset_db);
+ float get_random_volume_offset_db() const;
+
+ void set_playback_mode(PlaybackMode p_playback_mode);
+ PlaybackMode get_playback_mode() const;
+
virtual Ref<AudioStreamPlayback> instance_playback() override;
virtual String get_stream_name() const override;
virtual float get_length() const override; //if supported, otherwise return 0
virtual bool is_monophonic() const override;
- AudioStreamRandomPitch();
+ AudioStreamRandomizer();
};
-class AudioStreamPlaybackRandomPitch : public AudioStreamPlayback {
- GDCLASS(AudioStreamPlaybackRandomPitch, AudioStreamPlayback);
- friend class AudioStreamRandomPitch;
+class AudioStreamPlaybackRandomizer : public AudioStreamPlayback {
+ GDCLASS(AudioStreamPlaybackRandomizer, AudioStreamPlayback);
+ friend class AudioStreamRandomizer;
- Ref<AudioStreamRandomPitch> random_pitch;
+ Ref<AudioStreamRandomizer> randomizer;
Ref<AudioStreamPlayback> playback;
Ref<AudioStreamPlayback> playing;
+
float pitch_scale;
+ float volume_scale;
public:
virtual void start(float p_from_pos = 0.0) override;
@@ -217,7 +265,9 @@ public:
virtual int mix(AudioFrame *p_buffer, float p_rate_scale, int p_frames) override;
- ~AudioStreamPlaybackRandomPitch();
+ ~AudioStreamPlaybackRandomizer();
};
+VARIANT_ENUM_CAST(AudioStreamRandomizer::PlaybackMode);
+
#endif // AUDIO_STREAM_H
diff --git a/servers/audio/effects/audio_effect_amplify.cpp b/servers/audio/effects/audio_effect_amplify.cpp
index 79788d334b..b01160ea5c 100644
--- a/servers/audio/effects/audio_effect_amplify.cpp
+++ b/servers/audio/effects/audio_effect_amplify.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_amplify.h b/servers/audio/effects/audio_effect_amplify.h
index 9d3facc230..bd0fcaa94d 100644
--- a/servers/audio/effects/audio_effect_amplify.h
+++ b/servers/audio/effects/audio_effect_amplify.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_capture.cpp b/servers/audio/effects/audio_effect_capture.cpp
index 065065042e..f605cfc9d4 100644
--- a/servers/audio/effects/audio_effect_capture.cpp
+++ b/servers/audio/effects/audio_effect_capture.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_capture.h b/servers/audio/effects/audio_effect_capture.h
index bb1d03be8c..3935f7d473 100644
--- a/servers/audio/effects/audio_effect_capture.h
+++ b/servers/audio/effects/audio_effect_capture.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_chorus.cpp b/servers/audio/effects/audio_effect_chorus.cpp
index 9af3ed30cc..8b1fe9cfd2 100644
--- a/servers/audio/effects/audio_effect_chorus.cpp
+++ b/servers/audio/effects/audio_effect_chorus.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_chorus.h b/servers/audio/effects/audio_effect_chorus.h
index f81bebb0ae..19035222c5 100644
--- a/servers/audio/effects/audio_effect_chorus.h
+++ b/servers/audio/effects/audio_effect_chorus.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_compressor.cpp b/servers/audio/effects/audio_effect_compressor.cpp
index cfa2ae6f79..f75d092dd3 100644
--- a/servers/audio/effects/audio_effect_compressor.cpp
+++ b/servers/audio/effects/audio_effect_compressor.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_compressor.h b/servers/audio/effects/audio_effect_compressor.h
index dae4618a64..53c448e5db 100644
--- a/servers/audio/effects/audio_effect_compressor.h
+++ b/servers/audio/effects/audio_effect_compressor.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_delay.cpp b/servers/audio/effects/audio_effect_delay.cpp
index 07475e1ed4..1909ab6eae 100644
--- a/servers/audio/effects/audio_effect_delay.cpp
+++ b/servers/audio/effects/audio_effect_delay.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -54,15 +54,12 @@ void AudioEffectDelayInstance::_process_chunk(const AudioFrame *p_src_frames, Au
float tap_1_level_f = base->tap_1_active ? Math::db2linear(base->tap_1_level) : 0.0;
int tap_1_delay_frames = int((base->tap_1_delay_ms / 1000.0) * mix_rate);
- ;
float tap_2_level_f = base->tap_2_active ? Math::db2linear(base->tap_2_level) : 0.0;
int tap_2_delay_frames = int((base->tap_2_delay_ms / 1000.0) * mix_rate);
- ;
float feedback_level_f = base->feedback_active ? Math::db2linear(base->feedback_level) : 0.0;
unsigned int feedback_delay_frames = int((base->feedback_delay_ms / 1000.0) * mix_rate);
- ;
AudioFrame tap1_vol = AudioFrame(tap_1_level_f, tap_1_level_f);
diff --git a/servers/audio/effects/audio_effect_delay.h b/servers/audio/effects/audio_effect_delay.h
index 50a2233e5f..5cc6d72c99 100644
--- a/servers/audio/effects/audio_effect_delay.h
+++ b/servers/audio/effects/audio_effect_delay.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_distortion.cpp b/servers/audio/effects/audio_effect_distortion.cpp
index 188b7a3301..afc4353bd7 100644
--- a/servers/audio/effects/audio_effect_distortion.cpp
+++ b/servers/audio/effects/audio_effect_distortion.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_distortion.h b/servers/audio/effects/audio_effect_distortion.h
index 3a762f8cf6..487babbdda 100644
--- a/servers/audio/effects/audio_effect_distortion.h
+++ b/servers/audio/effects/audio_effect_distortion.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_eq.cpp b/servers/audio/effects/audio_effect_eq.cpp
index e87944b74b..cc317031d4 100644
--- a/servers/audio/effects/audio_effect_eq.cpp
+++ b/servers/audio/effects/audio_effect_eq.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_eq.h b/servers/audio/effects/audio_effect_eq.h
index b99727d7c0..252f931e6c 100644
--- a/servers/audio/effects/audio_effect_eq.h
+++ b/servers/audio/effects/audio_effect_eq.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_filter.cpp b/servers/audio/effects/audio_effect_filter.cpp
index 1db8b1f1b5..06e66f22b1 100644
--- a/servers/audio/effects/audio_effect_filter.cpp
+++ b/servers/audio/effects/audio_effect_filter.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_filter.h b/servers/audio/effects/audio_effect_filter.h
index 1fa3df1570..d5d58ddaa3 100644
--- a/servers/audio/effects/audio_effect_filter.h
+++ b/servers/audio/effects/audio_effect_filter.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_limiter.cpp b/servers/audio/effects/audio_effect_limiter.cpp
index 280411641b..5923cf8cf5 100644
--- a/servers/audio/effects/audio_effect_limiter.cpp
+++ b/servers/audio/effects/audio_effect_limiter.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_limiter.h b/servers/audio/effects/audio_effect_limiter.h
index 398613aa44..f84a0ae103 100644
--- a/servers/audio/effects/audio_effect_limiter.h
+++ b/servers/audio/effects/audio_effect_limiter.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_panner.cpp b/servers/audio/effects/audio_effect_panner.cpp
index e2062609b9..278acda86c 100644
--- a/servers/audio/effects/audio_effect_panner.cpp
+++ b/servers/audio/effects/audio_effect_panner.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_panner.h b/servers/audio/effects/audio_effect_panner.h
index d75bcaeb95..d05c9902af 100644
--- a/servers/audio/effects/audio_effect_panner.h
+++ b/servers/audio/effects/audio_effect_panner.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_phaser.cpp b/servers/audio/effects/audio_effect_phaser.cpp
index c76692eed7..af5dce707e 100644
--- a/servers/audio/effects/audio_effect_phaser.cpp
+++ b/servers/audio/effects/audio_effect_phaser.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_phaser.h b/servers/audio/effects/audio_effect_phaser.h
index 2a0ed64805..80b7742835 100644
--- a/servers/audio/effects/audio_effect_phaser.h
+++ b/servers/audio/effects/audio_effect_phaser.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_pitch_shift.cpp b/servers/audio/effects/audio_effect_pitch_shift.cpp
index d6c396e0a5..3c53887931 100644
--- a/servers/audio/effects/audio_effect_pitch_shift.cpp
+++ b/servers/audio/effects/audio_effect_pitch_shift.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_pitch_shift.h b/servers/audio/effects/audio_effect_pitch_shift.h
index 3ed096cd94..0478d05ceb 100644
--- a/servers/audio/effects/audio_effect_pitch_shift.h
+++ b/servers/audio/effects/audio_effect_pitch_shift.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_record.cpp b/servers/audio/effects/audio_effect_record.cpp
index f71679d30f..d68522e5b9 100644
--- a/servers/audio/effects/audio_effect_record.cpp
+++ b/servers/audio/effects/audio_effect_record.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,6 +30,11 @@
#include "audio_effect_record.h"
+#ifdef TOOLS_ENABLED
+// FIXME: This file shouldn't depend on editor stuff.
+#include "editor/import/resource_importer_wav.h"
+#endif
+
void AudioEffectRecordInstance::process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count) {
if (!is_recording) {
for (int i = 0; i < p_frame_count; i++) {
@@ -57,7 +62,7 @@ void AudioEffectRecordInstance::_update_buffer() {
}
void AudioEffectRecordInstance::_update(void *userdata) {
- AudioEffectRecordInstance *ins = (AudioEffectRecordInstance *)userdata;
+ AudioEffectRecordInstance *ins = static_cast<AudioEffectRecordInstance *>(userdata);
ins->_update_buffer();
}
@@ -112,7 +117,7 @@ void AudioEffectRecordInstance::init() {
ring_buffer_read_pos = 0;
//We start a new recording
- recording_data.resize(0); //Clear data completely and reset length
+ recording_data.clear(); //Clear data completely and reset length
is_recording = true;
#ifdef NO_THREADS
@@ -250,8 +255,12 @@ Ref<AudioStreamSample> AudioEffectRecord::get_recording() const {
Vector<uint8_t> bleft;
Vector<uint8_t> bright;
+#ifdef TOOLS_ENABLED
ResourceImporterWAV::_compress_ima_adpcm(left, bleft);
ResourceImporterWAV::_compress_ima_adpcm(right, bright);
+#else
+ ERR_PRINT("AudioEffectRecord cannot do IMA ADPCM compression at runtime.");
+#endif
int dl = bleft.size();
dst_data.resize(dl * 2);
diff --git a/servers/audio/effects/audio_effect_record.h b/servers/audio/effects/audio_effect_record.h
index 6e862b1377..305484d1cb 100644
--- a/servers/audio/effects/audio_effect_record.h
+++ b/servers/audio/effects/audio_effect_record.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -35,7 +35,6 @@
#include "core/io/marshalls.h"
#include "core/os/os.h"
#include "core/os/thread.h"
-#include "editor/import/resource_importer_wav.h"
#include "scene/resources/audio_stream_sample.h"
#include "servers/audio/audio_effect.h"
#include "servers/audio_server.h"
diff --git a/servers/audio/effects/audio_effect_reverb.cpp b/servers/audio/effects/audio_effect_reverb.cpp
index 819f906773..0d4eb14e6a 100644
--- a/servers/audio/effects/audio_effect_reverb.cpp
+++ b/servers/audio/effects/audio_effect_reverb.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_reverb.h b/servers/audio/effects/audio_effect_reverb.h
index eaa66352f6..90694c5492 100644
--- a/servers/audio/effects/audio_effect_reverb.h
+++ b/servers/audio/effects/audio_effect_reverb.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_spectrum_analyzer.cpp b/servers/audio/effects/audio_effect_spectrum_analyzer.cpp
index 6f9e7ac67d..10627be74c 100644
--- a/servers/audio/effects/audio_effect_spectrum_analyzer.cpp
+++ b/servers/audio/effects/audio_effect_spectrum_analyzer.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_spectrum_analyzer.h b/servers/audio/effects/audio_effect_spectrum_analyzer.h
index 3c5ae4a5e8..982c20d4a4 100644
--- a/servers/audio/effects/audio_effect_spectrum_analyzer.h
+++ b/servers/audio/effects/audio_effect_spectrum_analyzer.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/audio_effect_stereo_enhance.cpp b/servers/audio/effects/audio_effect_stereo_enhance.cpp
index 3a016b06b8..7bb62bcbed 100644
--- a/servers/audio/effects/audio_effect_stereo_enhance.cpp
+++ b/servers/audio/effects/audio_effect_stereo_enhance.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -29,7 +29,9 @@
/*************************************************************************/
#include "audio_effect_stereo_enhance.h"
+
#include "servers/audio_server.h"
+
void AudioEffectStereoEnhanceInstance::process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count) {
float intensity = base->pan_pullout;
bool surround_mode = base->surround > 0;
@@ -61,7 +63,6 @@ void AudioEffectStereoEnhanceInstance::process(const AudioFrame *p_src_frames, A
//r is delayed
r = delay_ringbuff[(ringbuff_pos - delay_frames) & ringbuff_mask];
- ;
}
p_dst_frames[i].l = l;
@@ -141,8 +142,4 @@ void AudioEffectStereoEnhance::_bind_methods() {
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "surround", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_surround", "get_surround");
}
-AudioEffectStereoEnhance::AudioEffectStereoEnhance() {
- pan_pullout = 1;
- time_pullout = 0;
- surround = 0;
-}
+AudioEffectStereoEnhance::AudioEffectStereoEnhance() {}
diff --git a/servers/audio/effects/audio_effect_stereo_enhance.h b/servers/audio/effects/audio_effect_stereo_enhance.h
index e0f9d79a94..30ea11f625 100644
--- a/servers/audio/effects/audio_effect_stereo_enhance.h
+++ b/servers/audio/effects/audio_effect_stereo_enhance.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,8 +28,8 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-#ifndef AUDIOEFFECTSTEREOENHANCE_H
-#define AUDIOEFFECTSTEREOENHANCE_H
+#ifndef AUDIO_EFFECT_STEREO_ENHANCE_H
+#define AUDIO_EFFECT_STEREO_ENHANCE_H
#include "servers/audio/audio_effect.h"
@@ -44,9 +44,9 @@ class AudioEffectStereoEnhanceInstance : public AudioEffectInstance {
MAX_DELAY_MS = 50
};
- float *delay_ringbuff;
- unsigned int ringbuff_pos;
- unsigned int ringbuff_mask;
+ float *delay_ringbuff = nullptr;
+ unsigned int ringbuff_pos = 0;
+ unsigned int ringbuff_mask = 0;
public:
virtual void process(const AudioFrame *p_src_frames, AudioFrame *p_dst_frames, int p_frame_count) override;
@@ -58,11 +58,11 @@ class AudioEffectStereoEnhance : public AudioEffect {
GDCLASS(AudioEffectStereoEnhance, AudioEffect);
friend class AudioEffectStereoEnhanceInstance;
- float volume_db;
+ float volume_db = 0.0f;
- float pan_pullout;
- float time_pullout;
- float surround;
+ float pan_pullout = 1.0f;
+ float time_pullout = 0.0f;
+ float surround = 0.0f;
protected:
static void _bind_methods();
@@ -82,4 +82,4 @@ public:
AudioEffectStereoEnhance();
};
-#endif // AUDIOEFFECTSTEREOENHANCE_H
+#endif // AUDIO_EFFECT_STEREO_ENHANCE_H
diff --git a/servers/audio/effects/audio_stream_generator.cpp b/servers/audio/effects/audio_stream_generator.cpp
index 447acf53a4..a3d615b925 100644
--- a/servers/audio/effects/audio_stream_generator.cpp
+++ b/servers/audio/effects/audio_stream_generator.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -169,7 +169,7 @@ float AudioStreamGeneratorPlayback::get_stream_sampling_rate() {
void AudioStreamGeneratorPlayback::start(float p_from_pos) {
if (mixed == 0.0) {
- _begin_resample();
+ begin_resample();
}
skips = 0;
active = true;
diff --git a/servers/audio/effects/audio_stream_generator.h b/servers/audio/effects/audio_stream_generator.h
index 918589f6d0..2ce4b95fcf 100644
--- a/servers/audio/effects/audio_stream_generator.h
+++ b/servers/audio/effects/audio_stream_generator.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -65,7 +65,7 @@ class AudioStreamGeneratorPlayback : public AudioStreamPlaybackResampled {
int skips;
bool active;
float mixed;
- AudioStreamGenerator *generator;
+ AudioStreamGenerator *generator = nullptr;
protected:
virtual int _mix_internal(AudioFrame *p_buffer, int p_frames) override;
diff --git a/servers/audio/effects/eq.cpp b/servers/audio/effects/eq.cpp
index e0c3eb6d3a..2123284b3b 100644
--- a/servers/audio/effects/eq.cpp
+++ b/servers/audio/effects/eq.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/audio/effects/eq.h b/servers/audio/effects/eq.h
index afd5bf5334..d6293bf875 100644
--- a/servers/audio/effects/eq.h
+++ b/servers/audio/effects/eq.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,18 +28,12 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-// Author: reduzio@gmail.com (C) 2006
-
#ifndef EQ_FILTER_H
#define EQ_FILTER_H
#include "core/templates/vector.h"
#include "core/typedefs.h"
-/**
-@author Juan Linietsky
-*/
-
class EQ {
public:
enum Preset {
@@ -105,4 +99,4 @@ inline void EQ::BandProcess::process_one(float &p_data) {
history.b2 = history.b1;
}
-#endif
+#endif // EQ_FILTER_H
diff --git a/servers/audio/effects/reverb.cpp b/servers/audio/effects/reverb.cpp
index 1d97de5205..adfd648514 100644
--- a/servers/audio/effects/reverb.cpp
+++ b/servers/audio/effects/reverb.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,8 +28,6 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-// Author: Juan Linietsky <reduzio@gmail.com>, (C) 2006
-
#include "reverb.h"
#include "core/math/math_funcs.h"
diff --git a/servers/audio/effects/reverb.h b/servers/audio/effects/reverb.h
index e7ce55098d..c9602c5b5a 100644
--- a/servers/audio/effects/reverb.h
+++ b/servers/audio/effects/reverb.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,8 +28,6 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-// Author: Juan Linietsky <reduzio@gmail.com>, (C) 2006
-
#ifndef REVERB_H
#define REVERB_H
@@ -77,12 +75,13 @@ private:
Comb comb[MAX_COMBS];
AllPass allpass[MAX_ALLPASS];
- float *input_buffer;
+ float *input_buffer = nullptr;
float *echo_buffer = nullptr;
- int echo_buffer_size;
- int echo_buffer_pos;
+ int echo_buffer_size = 0;
+ int echo_buffer_pos = 0;
- float hpf_h1, hpf_h2 = 0;
+ float hpf_h1 = 0.0f;
+ float hpf_h2 = 0.0f;
struct Parameters {
float room_size;
@@ -120,4 +119,4 @@ public:
~Reverb();
};
-#endif
+#endif // REVERB_H
diff --git a/servers/audio_server.cpp b/servers/audio_server.cpp
index f7c8f0921c..c8f48207e4 100644
--- a/servers/audio_server.cpp
+++ b/servers/audio_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -164,17 +164,6 @@ Array AudioDriver::capture_get_device_list() {
return list;
}
-AudioDriver::AudioDriver() {
- _last_mix_time = 0;
- _last_mix_frames = 0;
- input_position = 0;
- input_size = 0;
-
-#ifdef DEBUG_ENABLED
- prof_time = 0;
-#endif
-}
-
AudioDriverDummy AudioDriverManager::dummy_driver;
AudioDriver *AudioDriverManager::drivers[MAX_DRIVERS] = {
&AudioDriverManager::dummy_driver,
@@ -456,10 +445,12 @@ void AudioServer::_mix_step() {
case AudioStreamPlaybackListNode::AWAITING_DELETION:
case AudioStreamPlaybackListNode::FADE_OUT_TO_DELETION:
playback_list.erase(playback, [](AudioStreamPlaybackListNode *p) {
- if (p->prev_bus_details)
+ if (p->prev_bus_details) {
delete p->prev_bus_details;
- if (p->bus_details)
+ }
+ if (p->bus_details) {
delete p->bus_details;
+ }
p->stream_playback.unref();
delete p;
});
@@ -1341,6 +1332,7 @@ void AudioServer::init_channels_and_buffers() {
for (int j = 0; j < channel_count; j++) {
buses.write[i]->channels.write[j].buffer.resize(buffer_size);
}
+ _update_bus_effects(i);
}
}
@@ -1591,7 +1583,7 @@ void AudioServer::set_bus_layout(const Ref<AudioBusLayout> &p_bus_layout) {
Bus::Effect bfx;
bfx.effect = fx;
bfx.enabled = p_bus_layout->buses[i].effects[j].enabled;
-#if DEBUG_ENABLED
+#ifdef DEBUG_ENABLED
bfx.prof_time = 0;
#endif
bus->effects.push_back(bfx);
@@ -1729,6 +1721,10 @@ void AudioServer::_bind_methods() {
ADD_PROPERTY(PropertyInfo(Variant::INT, "bus_count"), "set_bus_count", "get_bus_count");
ADD_PROPERTY(PropertyInfo(Variant::STRING, "device"), "set_device", "get_device");
+ ADD_PROPERTY(PropertyInfo(Variant::STRING, "capture_device"), "capture_set_device", "capture_get_device");
+ // The default value may be set to an empty string by the platform-specific audio driver.
+ // Override for class reference generation purposes.
+ ADD_PROPERTY_DEFAULT("capture_device", "Default");
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "playback_speed_scale"), "set_playback_speed_scale", "get_playback_speed_scale");
ADD_SIGNAL(MethodInfo("bus_layout_changed"));
@@ -1741,15 +1737,6 @@ void AudioServer::_bind_methods() {
AudioServer::AudioServer() {
singleton = this;
- mix_frames = 0;
- channel_count = 0;
- to_mix = 0;
-#ifdef DEBUG_ENABLED
- prof_time = 0;
-#endif
- mix_time = 0;
- mix_size = 0;
- playback_speed_scale = 1;
}
AudioServer::~AudioServer() {
diff --git a/servers/audio_server.h b/servers/audio_server.h
index 46873845dc..3d8755071a 100644
--- a/servers/audio_server.h
+++ b/servers/audio_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -48,18 +48,18 @@ class AudioStreamPlayback;
class AudioDriver {
static AudioDriver *singleton;
- uint64_t _last_mix_time;
- uint64_t _last_mix_frames;
+ uint64_t _last_mix_time = 0;
+ uint64_t _last_mix_frames = 0;
#ifdef DEBUG_ENABLED
- uint64_t prof_ticks;
- uint64_t prof_time;
+ uint64_t prof_ticks = 0;
+ uint64_t prof_time = 0;
#endif
protected:
Vector<int32_t> input_buffer;
- unsigned int input_position;
- unsigned int input_size;
+ unsigned int input_position = 0;
+ unsigned int input_size = 0;
void audio_server_process(int p_frames, int32_t *p_buffer, bool p_update_mix_time = true);
void update_mix_time(int p_frames);
@@ -121,7 +121,7 @@ public:
void reset_profiling_time() { prof_time = 0; }
#endif
- AudioDriver();
+ AudioDriver() {}
virtual ~AudioDriver() {}
};
@@ -169,66 +169,61 @@ public:
typedef void (*AudioCallback)(void *p_userdata);
private:
- uint64_t mix_time;
- int mix_size;
+ uint64_t mix_time = 0;
+ int mix_size = 0;
- uint32_t buffer_size;
- uint64_t mix_count;
- uint64_t mix_frames;
+ uint32_t buffer_size = 0;
+ uint64_t mix_count = 0;
+ uint64_t mix_frames = 0;
#ifdef DEBUG_ENABLED
- uint64_t prof_time;
+ uint64_t prof_time = 0;
#endif
- float channel_disable_threshold_db;
- uint32_t channel_disable_frames;
+ float channel_disable_threshold_db = 0.0f;
+ uint32_t channel_disable_frames = 0;
- int channel_count;
- int to_mix;
+ int channel_count = 0;
+ int to_mix = 0;
- float playback_speed_scale;
+ float playback_speed_scale = 1.0f;
struct Bus {
StringName name;
- bool solo;
- bool mute;
- bool bypass;
+ bool solo = false;
+ bool mute = false;
+ bool bypass = false;
- bool soloed;
+ bool soloed = false;
- //Each channel is a stereo pair.
+ // Each channel is a stereo pair.
struct Channel {
- bool used;
- bool active;
- AudioFrame peak_volume;
+ bool used = false;
+ bool active = false;
+ AudioFrame peak_volume = AudioFrame(AUDIO_MIN_PEAK_DB, AUDIO_MIN_PEAK_DB);
Vector<AudioFrame> buffer;
Vector<Ref<AudioEffectInstance>> effect_instances;
- uint64_t last_mix_with_audio;
- Channel() {
- last_mix_with_audio = 0;
- used = false;
- active = false;
- peak_volume = AudioFrame(AUDIO_MIN_PEAK_DB, AUDIO_MIN_PEAK_DB);
- }
+ uint64_t last_mix_with_audio = 0;
+ Channel() {}
};
Vector<Channel> channels;
struct Effect {
Ref<AudioEffect> effect;
- bool enabled;
+ bool enabled = false;
#ifdef DEBUG_ENABLED
- uint64_t prof_time;
+ uint64_t prof_time = 0;
#endif
};
Vector<Effect> effects;
- float volume_db;
+ float volume_db = 0.0f;
StringName send;
- int index_cache;
+ int index_cache = 0;
};
struct AudioStreamPlaybackBusDetails {
- bool bus_active[MAX_BUSES_PER_PLAYBACK] = { false, false, false, false, false, false };
+ bool bus_active[MAX_BUSES_PER_PLAYBACK] = {};
StringName bus[MAX_BUSES_PER_PLAYBACK];
AudioFrame volume[MAX_BUSES_PER_PLAYBACK][MAX_CHANNELS_PER_BUS];
};
@@ -284,7 +279,7 @@ private:
struct CallbackItem {
AudioCallback callback;
- void *userdata;
+ void *userdata = nullptr;
};
SafeList<CallbackItem *> update_callback_list;
@@ -312,7 +307,7 @@ public:
ERR_FAIL_V(1);
}
- //do not use from outside audio thread
+ // Do not use from outside audio thread.
bool thread_has_channel_mix_buffer(int p_bus, int p_buffer) const;
AudioFrame *thread_get_channel_mix_buffer(int p_bus, int p_buffer);
int thread_get_mix_buffer_size() const;
@@ -442,26 +437,21 @@ class AudioBusLayout : public Resource {
struct Bus {
StringName name;
- bool solo;
- bool mute;
- bool bypass;
+ bool solo = false;
+ bool mute = false;
+ bool bypass = false;
struct Effect {
Ref<AudioEffect> effect;
- bool enabled;
+ bool enabled = false;
};
Vector<Effect> effects;
- float volume_db;
+ float volume_db = 0.0f;
StringName send;
- Bus() {
- solo = false;
- mute = false;
- bypass = false;
- volume_db = 0;
- }
+ Bus() {}
};
Vector<Bus> buses;
diff --git a/servers/camera/camera_feed.cpp b/servers/camera/camera_feed.cpp
index 9f8e8a8106..624c06ecf1 100644
--- a/servers/camera/camera_feed.cpp
+++ b/servers/camera/camera_feed.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,7 +33,7 @@
#include "servers/rendering_server.h"
void CameraFeed::_bind_methods() {
- // The setters prefixed with _ are only exposed so we can have feeds through GDNative!
+ // The setters prefixed with _ are only exposed so we can have feeds through GDExtension!
// They should not be called by the end user.
ClassDB::bind_method(D_METHOD("get_id"), &CameraFeed::get_id);
diff --git a/servers/camera/camera_feed.h b/servers/camera/camera_feed.h
index 1f80d15e30..e86605a89b 100644
--- a/servers/camera/camera_feed.h
+++ b/servers/camera/camera_feed.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,8 +37,6 @@
#include "servers/rendering_server.h"
/**
- @author Bastiaan Olij <mux213@gmail.com>
-
The camera server is a singleton object that gives access to the various
camera feeds that can be used as the background for our environment.
**/
@@ -111,4 +109,4 @@ public:
VARIANT_ENUM_CAST(CameraFeed::FeedDataType);
VARIANT_ENUM_CAST(CameraFeed::FeedPosition);
-#endif /* !CAMERA_FEED_H */
+#endif // CAMERA_FEED_H
diff --git a/servers/camera_server.cpp b/servers/camera_server.cpp
index 8391a2ee2e..91df3afadd 100644
--- a/servers/camera_server.cpp
+++ b/servers/camera_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/camera_server.h b/servers/camera_server.h
index 7390129df9..b70938c34f 100644
--- a/servers/camera_server.h
+++ b/servers/camera_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -38,8 +38,6 @@
#include "core/variant/variant.h"
/**
- @author Bastiaan Olij <mux213@gmail.com>
-
The camera server is a singleton object that gives access to the various
camera feeds that can be used as the background for our environment.
**/
@@ -113,4 +111,4 @@ public:
VARIANT_ENUM_CAST(CameraServer::FeedImage);
-#endif /* CAMERA_SERVER_H */
+#endif // CAMERA_SERVER_H
diff --git a/servers/debugger/SCsub b/servers/debugger/SCsub
new file mode 100644
index 0000000000..86681f9c74
--- /dev/null
+++ b/servers/debugger/SCsub
@@ -0,0 +1,5 @@
+#!/usr/bin/env python
+
+Import("env")
+
+env.add_source_files(env.servers_sources, "*.cpp")
diff --git a/servers/debugger/servers_debugger.cpp b/servers/debugger/servers_debugger.cpp
new file mode 100644
index 0000000000..02703cacbf
--- /dev/null
+++ b/servers/debugger/servers_debugger.cpp
@@ -0,0 +1,463 @@
+/*************************************************************************/
+/* servers_debugger.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "servers_debugger.h"
+
+#include "core/config/project_settings.h"
+#include "core/debugger/engine_debugger.h"
+#include "core/debugger/engine_profiler.h"
+#include "core/io/marshalls.h"
+#include "servers/display_server.h"
+
+#define CHECK_SIZE(arr, expected, what) ERR_FAIL_COND_V_MSG((uint32_t)arr.size() < (uint32_t)(expected), false, String("Malformed ") + what + " message from script debugger, message too short. Expected size: " + itos(expected) + ", actual size: " + itos(arr.size()))
+#define CHECK_END(arr, expected, what) ERR_FAIL_COND_V_MSG((uint32_t)arr.size() > (uint32_t)expected, false, String("Malformed ") + what + " message from script debugger, message too long. Expected size: " + itos(expected) + ", actual size: " + itos(arr.size()))
+
+Array ServersDebugger::ResourceUsage::serialize() {
+ infos.sort();
+
+ Array arr;
+ arr.push_back(infos.size() * 4);
+ for (const ResourceInfo &E : infos) {
+ arr.push_back(E.path);
+ arr.push_back(E.format);
+ arr.push_back(E.type);
+ arr.push_back(E.vram);
+ }
+ return arr;
+}
+
+bool ServersDebugger::ResourceUsage::deserialize(const Array &p_arr) {
+ CHECK_SIZE(p_arr, 1, "ResourceUsage");
+ uint32_t size = p_arr[0];
+ CHECK_SIZE(p_arr, size, "ResourceUsage");
+ int idx = 1;
+ for (uint32_t i = 0; i < size / 4; i++) {
+ ResourceInfo info;
+ info.path = p_arr[idx];
+ info.format = p_arr[idx + 1];
+ info.type = p_arr[idx + 2];
+ info.vram = p_arr[idx + 3];
+ infos.push_back(info);
+ }
+ CHECK_END(p_arr, idx, "ResourceUsage");
+ return true;
+}
+
+Array ServersDebugger::ScriptFunctionSignature::serialize() {
+ Array arr;
+ arr.push_back(name);
+ arr.push_back(id);
+ return arr;
+}
+
+bool ServersDebugger::ScriptFunctionSignature::deserialize(const Array &p_arr) {
+ CHECK_SIZE(p_arr, 2, "ScriptFunctionSignature");
+ name = p_arr[0];
+ id = p_arr[1];
+ CHECK_END(p_arr, 2, "ScriptFunctionSignature");
+ return true;
+}
+
+Array ServersDebugger::ServersProfilerFrame::serialize() {
+ Array arr;
+ arr.push_back(frame_number);
+ arr.push_back(frame_time);
+ arr.push_back(process_time);
+ arr.push_back(physics_time);
+ arr.push_back(physics_frame_time);
+ arr.push_back(script_time);
+
+ arr.push_back(servers.size());
+ for (int i = 0; i < servers.size(); i++) {
+ ServerInfo &s = servers[i];
+ arr.push_back(s.name);
+ arr.push_back(s.functions.size() * 2);
+ for (int j = 0; j < s.functions.size(); j++) {
+ ServerFunctionInfo &f = s.functions[j];
+ arr.push_back(f.name);
+ arr.push_back(f.time);
+ }
+ }
+
+ arr.push_back(script_functions.size() * 4);
+ for (int i = 0; i < script_functions.size(); i++) {
+ arr.push_back(script_functions[i].sig_id);
+ arr.push_back(script_functions[i].call_count);
+ arr.push_back(script_functions[i].self_time);
+ arr.push_back(script_functions[i].total_time);
+ }
+ return arr;
+}
+
+bool ServersDebugger::ServersProfilerFrame::deserialize(const Array &p_arr) {
+ CHECK_SIZE(p_arr, 7, "ServersProfilerFrame");
+ frame_number = p_arr[0];
+ frame_time = p_arr[1];
+ process_time = p_arr[2];
+ physics_time = p_arr[3];
+ physics_frame_time = p_arr[4];
+ script_time = p_arr[5];
+ int servers_size = p_arr[6];
+ int idx = 7;
+ while (servers_size) {
+ CHECK_SIZE(p_arr, idx + 2, "ServersProfilerFrame");
+ servers_size--;
+ ServerInfo si;
+ si.name = p_arr[idx];
+ int sub_data_size = p_arr[idx + 1];
+ idx += 2;
+ CHECK_SIZE(p_arr, idx + sub_data_size, "ServersProfilerFrame");
+ for (int j = 0; j < sub_data_size / 2; j++) {
+ ServerFunctionInfo sf;
+ sf.name = p_arr[idx];
+ sf.time = p_arr[idx + 1];
+ idx += 2;
+ si.functions.push_back(sf);
+ }
+ servers.push_back(si);
+ }
+ CHECK_SIZE(p_arr, idx + 1, "ServersProfilerFrame");
+ int func_size = p_arr[idx];
+ idx += 1;
+ CHECK_SIZE(p_arr, idx + func_size, "ServersProfilerFrame");
+ for (int i = 0; i < func_size / 4; i++) {
+ ScriptFunctionInfo fi;
+ fi.sig_id = p_arr[idx];
+ fi.call_count = p_arr[idx + 1];
+ fi.self_time = p_arr[idx + 2];
+ fi.total_time = p_arr[idx + 3];
+ script_functions.push_back(fi);
+ idx += 4;
+ }
+ CHECK_END(p_arr, idx, "ServersProfilerFrame");
+ return true;
+}
+
+Array ServersDebugger::VisualProfilerFrame::serialize() {
+ Array arr;
+ arr.push_back(frame_number);
+ arr.push_back(areas.size() * 3);
+ for (int i = 0; i < areas.size(); i++) {
+ arr.push_back(areas[i].name);
+ arr.push_back(areas[i].cpu_msec);
+ arr.push_back(areas[i].gpu_msec);
+ }
+ return arr;
+}
+
+bool ServersDebugger::VisualProfilerFrame::deserialize(const Array &p_arr) {
+ CHECK_SIZE(p_arr, 2, "VisualProfilerFrame");
+ frame_number = p_arr[0];
+ int size = p_arr[1];
+ CHECK_SIZE(p_arr, size, "VisualProfilerFrame");
+ int idx = 2;
+ areas.resize(size / 3);
+ RS::FrameProfileArea *w = areas.ptrw();
+ for (int i = 0; i < size / 3; i++) {
+ w[i].name = p_arr[idx];
+ w[i].cpu_msec = p_arr[idx + 1];
+ w[i].gpu_msec = p_arr[idx + 2];
+ idx += 3;
+ }
+ CHECK_END(p_arr, idx, "VisualProfilerFrame");
+ return true;
+}
+class ServersDebugger::ScriptsProfiler : public EngineProfiler {
+ typedef ServersDebugger::ScriptFunctionSignature FunctionSignature;
+ typedef ServersDebugger::ScriptFunctionInfo FunctionInfo;
+ struct ProfileInfoSort {
+ bool operator()(ScriptLanguage::ProfilingInfo *A, ScriptLanguage::ProfilingInfo *B) const {
+ return A->total_time < B->total_time;
+ }
+ };
+ Vector<ScriptLanguage::ProfilingInfo> info;
+ Vector<ScriptLanguage::ProfilingInfo *> ptrs;
+ Map<StringName, int> sig_map;
+ int max_frame_functions = 16;
+
+public:
+ void toggle(bool p_enable, const Array &p_opts) {
+ if (p_enable) {
+ sig_map.clear();
+ for (int i = 0; i < ScriptServer::get_language_count(); i++) {
+ ScriptServer::get_language(i)->profiling_start();
+ }
+ if (p_opts.size() == 1 && p_opts[0].get_type() == Variant::INT) {
+ max_frame_functions = MAX(0, int(p_opts[0]));
+ }
+ } else {
+ for (int i = 0; i < ScriptServer::get_language_count(); i++) {
+ ScriptServer::get_language(i)->profiling_stop();
+ }
+ }
+ }
+
+ void write_frame_data(Vector<FunctionInfo> &r_funcs, uint64_t &r_total, bool p_accumulated) {
+ int ofs = 0;
+ for (int i = 0; i < ScriptServer::get_language_count(); i++) {
+ if (p_accumulated) {
+ ofs += ScriptServer::get_language(i)->profiling_get_accumulated_data(&info.write[ofs], info.size() - ofs);
+ } else {
+ ofs += ScriptServer::get_language(i)->profiling_get_frame_data(&info.write[ofs], info.size() - ofs);
+ }
+ }
+
+ for (int i = 0; i < ofs; i++) {
+ ptrs.write[i] = &info.write[i];
+ }
+
+ SortArray<ScriptLanguage::ProfilingInfo *, ProfileInfoSort> sa;
+ sa.sort(ptrs.ptrw(), ofs);
+
+ int to_send = MIN(ofs, max_frame_functions);
+
+ // Check signatures first, and compute total time.
+ r_total = 0;
+ for (int i = 0; i < to_send; i++) {
+ if (!sig_map.has(ptrs[i]->signature)) {
+ int idx = sig_map.size();
+ FunctionSignature sig;
+ sig.name = ptrs[i]->signature;
+ sig.id = idx;
+ EngineDebugger::get_singleton()->send_message("servers:function_signature", sig.serialize());
+ sig_map[ptrs[i]->signature] = idx;
+ }
+ r_total += ptrs[i]->self_time;
+ }
+
+ // Send frame, script time, functions information then
+ r_funcs.resize(to_send);
+
+ FunctionInfo *w = r_funcs.ptrw();
+ for (int i = 0; i < to_send; i++) {
+ if (sig_map.has(ptrs[i]->signature)) {
+ w[i].sig_id = sig_map[ptrs[i]->signature];
+ }
+ w[i].call_count = ptrs[i]->call_count;
+ w[i].total_time = ptrs[i]->total_time / 1000000.0;
+ w[i].self_time = ptrs[i]->self_time / 1000000.0;
+ }
+ }
+
+ ScriptsProfiler() {
+ info.resize(GLOBAL_GET("debug/settings/profiler/max_functions"));
+ ptrs.resize(info.size());
+ }
+};
+
+class ServersDebugger::ServersProfiler : public EngineProfiler {
+ bool skip_profile_frame = false;
+ typedef ServersDebugger::ServerInfo ServerInfo;
+ typedef ServersDebugger::ServerFunctionInfo ServerFunctionInfo;
+
+ Map<StringName, ServerInfo> server_data;
+ ScriptsProfiler scripts_profiler;
+
+ double frame_time = 0;
+ double process_time = 0;
+ double physics_time = 0;
+ double physics_frame_time = 0;
+
+ void _send_frame_data(bool p_final) {
+ ServersDebugger::ServersProfilerFrame frame;
+ frame.frame_number = Engine::get_singleton()->get_process_frames();
+ frame.frame_time = frame_time;
+ frame.process_time = process_time;
+ frame.physics_time = physics_time;
+ frame.physics_frame_time = physics_frame_time;
+ Map<StringName, ServerInfo>::Element *E = server_data.front();
+ while (E) {
+ if (!p_final) {
+ frame.servers.push_back(E->get());
+ }
+ E->get().functions.clear();
+ E = E->next();
+ }
+ uint64_t time = 0;
+ scripts_profiler.write_frame_data(frame.script_functions, time, p_final);
+ frame.script_time = USEC_TO_SEC(time);
+ if (skip_profile_frame) {
+ skip_profile_frame = false;
+ return;
+ }
+ if (p_final) {
+ EngineDebugger::get_singleton()->send_message("servers:profile_total", frame.serialize());
+ } else {
+ EngineDebugger::get_singleton()->send_message("servers:profile_frame", frame.serialize());
+ }
+ }
+
+public:
+ void toggle(bool p_enable, const Array &p_opts) {
+ skip_profile_frame = false;
+ if (p_enable) {
+ server_data.clear(); // Clear old profiling data.
+ } else {
+ _send_frame_data(true); // Send final frame.
+ }
+ scripts_profiler.toggle(p_enable, p_opts);
+ }
+
+ void add(const Array &p_data) {
+ String name = p_data[0];
+ if (!server_data.has(name)) {
+ ServerInfo info;
+ info.name = name;
+ server_data[name] = info;
+ }
+ ServerInfo &srv = server_data[name];
+
+ ServerFunctionInfo fi;
+ fi.name = p_data[1];
+ fi.time = p_data[2];
+ srv.functions.push_back(fi);
+ }
+
+ void tick(double p_frame_time, double p_process_time, double p_physics_time, double p_physics_frame_time) {
+ frame_time = p_frame_time;
+ process_time = p_process_time;
+ physics_time = p_physics_time;
+ physics_frame_time = p_physics_frame_time;
+ _send_frame_data(false);
+ }
+
+ void skip_frame() {
+ skip_profile_frame = true;
+ }
+};
+
+class ServersDebugger::VisualProfiler : public EngineProfiler {
+ typedef ServersDebugger::ServerInfo ServerInfo;
+ typedef ServersDebugger::ServerFunctionInfo ServerFunctionInfo;
+
+ Map<StringName, ServerInfo> server_data;
+
+public:
+ void toggle(bool p_enable, const Array &p_opts) {
+ RS::get_singleton()->set_frame_profiling_enabled(p_enable);
+ }
+
+ void add(const Array &p_data) {}
+
+ void tick(double p_frame_time, double p_process_time, double p_physics_time, double p_physics_frame_time) {
+ Vector<RS::FrameProfileArea> profile_areas = RS::get_singleton()->get_frame_profile();
+ ServersDebugger::VisualProfilerFrame frame;
+ if (!profile_areas.size()) {
+ return;
+ }
+
+ frame.frame_number = RS::get_singleton()->get_frame_profile_frame();
+ frame.areas.append_array(profile_areas);
+ EngineDebugger::get_singleton()->send_message("visual:profile_frame", frame.serialize());
+ }
+};
+
+ServersDebugger *ServersDebugger::singleton = nullptr;
+
+void ServersDebugger::initialize() {
+ if (EngineDebugger::is_active()) {
+ memnew(ServersDebugger);
+ }
+}
+
+void ServersDebugger::deinitialize() {
+ if (singleton) {
+ memdelete(singleton);
+ }
+}
+
+Error ServersDebugger::_capture(void *p_user, const String &p_cmd, const Array &p_data, bool &r_captured) {
+ ERR_FAIL_COND_V(!singleton, ERR_BUG);
+ r_captured = true;
+ if (p_cmd == "memory") {
+ singleton->_send_resource_usage();
+ } else if (p_cmd == "draw") { // Forced redraw.
+ // For camera override to stay live when the game is paused from the editor.
+ double delta = 0.0;
+ if (singleton->last_draw_time) {
+ delta = (OS::get_singleton()->get_ticks_usec() - singleton->last_draw_time) / 1000000.0;
+ }
+ singleton->last_draw_time = OS::get_singleton()->get_ticks_usec();
+ RenderingServer::get_singleton()->sync();
+ if (RenderingServer::get_singleton()->has_changed()) {
+ RenderingServer::get_singleton()->draw(true, delta);
+ }
+ } else if (p_cmd == "foreground") {
+ singleton->last_draw_time = 0.0;
+ DisplayServer::get_singleton()->window_move_to_foreground();
+ singleton->servers_profiler->skip_frame();
+ } else {
+ r_captured = false;
+ }
+ return OK;
+}
+
+void ServersDebugger::_send_resource_usage() {
+ ServersDebugger::ResourceUsage usage;
+
+ List<RS::TextureInfo> tinfo;
+ RS::get_singleton()->texture_debug_usage(&tinfo);
+
+ for (const RS::TextureInfo &E : tinfo) {
+ ServersDebugger::ResourceInfo info;
+ info.path = E.path;
+ info.vram = E.bytes;
+ info.id = E.texture;
+ info.type = "Texture";
+ if (E.depth == 0) {
+ info.format = itos(E.width) + "x" + itos(E.height) + " " + Image::get_format_name(E.format);
+ } else {
+ info.format = itos(E.width) + "x" + itos(E.height) + "x" + itos(E.depth) + " " + Image::get_format_name(E.format);
+ }
+ usage.infos.push_back(info);
+ }
+
+ EngineDebugger::get_singleton()->send_message("servers:memory_usage", usage.serialize());
+}
+
+ServersDebugger::ServersDebugger() {
+ singleton = this;
+
+ // Generic servers profiler (audio/physics/...)
+ servers_profiler.instantiate();
+ servers_profiler->bind("servers");
+
+ // Visual Profiler (cpu/gpu times)
+ visual_profiler.instantiate();
+ visual_profiler->bind("visual");
+
+ EngineDebugger::Capture servers_cap(nullptr, &_capture);
+ EngineDebugger::register_message_capture("servers", servers_cap);
+}
+
+ServersDebugger::~ServersDebugger() {
+ EngineDebugger::unregister_message_capture("servers");
+ singleton = nullptr;
+}
diff --git a/servers/debugger/servers_debugger.h b/servers/debugger/servers_debugger.h
new file mode 100644
index 0000000000..f949c436e7
--- /dev/null
+++ b/servers/debugger/servers_debugger.h
@@ -0,0 +1,132 @@
+/*************************************************************************/
+/* servers_debugger.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef SERVER_DEBUGGER_H
+#define SERVER_DEBUGGER_H
+
+#include "core/debugger/debugger_marshalls.h"
+
+#include "servers/rendering_server.h"
+
+class ServersDebugger {
+public:
+ // Memory usage
+ struct ResourceInfo {
+ String path;
+ String format;
+ String type;
+ RID id;
+ int vram = 0;
+ bool operator<(const ResourceInfo &p_img) const { return vram == p_img.vram ? id < p_img.id : vram > p_img.vram; }
+ };
+
+ struct ResourceUsage {
+ List<ResourceInfo> infos;
+
+ Array serialize();
+ bool deserialize(const Array &p_arr);
+ };
+
+ // Script Profiler
+ struct ScriptFunctionSignature {
+ StringName name;
+ int id = -1;
+
+ Array serialize();
+ bool deserialize(const Array &p_arr);
+ };
+
+ struct ScriptFunctionInfo {
+ StringName name;
+ int sig_id = -1;
+ int call_count = 0;
+ double self_time = 0;
+ double total_time = 0;
+ };
+
+ // Servers profiler
+ struct ServerFunctionInfo {
+ StringName name;
+ double time = 0;
+ };
+
+ struct ServerInfo {
+ StringName name;
+ List<ServerFunctionInfo> functions;
+ };
+
+ struct ServersProfilerFrame {
+ int frame_number = 0;
+ double frame_time = 0;
+ double process_time = 0;
+ double physics_time = 0;
+ double physics_frame_time = 0;
+ double script_time = 0;
+ List<ServerInfo> servers;
+ Vector<ScriptFunctionInfo> script_functions;
+
+ Array serialize();
+ bool deserialize(const Array &p_arr);
+ };
+
+ // Visual Profiler
+ struct VisualProfilerFrame {
+ uint64_t frame_number = 0;
+ Vector<RS::FrameProfileArea> areas;
+
+ Array serialize();
+ bool deserialize(const Array &p_arr);
+ };
+
+private:
+ class ScriptsProfiler;
+ class ServersProfiler;
+ class VisualProfiler;
+
+ double last_draw_time = 0.0;
+ Ref<ServersProfiler> servers_profiler;
+ Ref<VisualProfiler> visual_profiler;
+
+ static ServersDebugger *singleton;
+
+ static Error _capture(void *p_user, const String &p_cmd, const Array &p_data, bool &r_captured);
+
+ void _send_resource_usage();
+
+ ServersDebugger();
+
+public:
+ static void initialize();
+ static void deinitialize();
+
+ ~ServersDebugger();
+};
+
+#endif // SERVERS_DEBUGGER_H
diff --git a/servers/display_server.cpp b/servers/display_server.cpp
index 8b5a965738..59f88844e9 100644
--- a/servers/display_server.cpp
+++ b/servers/display_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -44,22 +44,52 @@ DisplayServer::DisplayServerCreate DisplayServer::server_create_functions[Displa
int DisplayServer::server_create_count = 1;
-void DisplayServer::global_menu_add_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag) {
+void DisplayServer::global_menu_add_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
WARN_PRINT("Global menus not supported by this display server.");
}
-void DisplayServer::global_menu_add_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag) {
+void DisplayServer::global_menu_add_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
WARN_PRINT("Global menus not supported by this display server.");
}
-void DisplayServer::global_menu_add_submenu_item(const String &p_menu_root, const String &p_label, const String &p_submenu) {
+void DisplayServer::global_menu_add_icon_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
WARN_PRINT("Global menus not supported by this display server.");
}
-void DisplayServer::global_menu_add_separator(const String &p_menu_root) {
+void DisplayServer::global_menu_add_icon_check_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
WARN_PRINT("Global menus not supported by this display server.");
}
+void DisplayServer::global_menu_add_radio_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_add_icon_radio_check_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_add_multistate_item(const String &p_menu_root, const String &p_label, int p_max_states, int p_default_state, const Callable &p_callback, const Variant &p_tag, Key p_accel, int p_index) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_add_submenu_item(const String &p_menu_root, const String &p_label, const String &p_submenu, int p_index) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_add_separator(const String &p_menu_root, int p_index) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+int DisplayServer::global_menu_get_item_index_from_text(const String &p_menu_root, const String &p_text) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return -1;
+}
+
+int DisplayServer::global_menu_get_item_index_from_tag(const String &p_menu_root, const Variant &p_tag) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return -1;
+}
+
void DisplayServer::global_menu_set_item_callback(const String &p_menu_root, int p_idx, const Callable &p_callback) {
WARN_PRINT("Global menus not supported by this display server.");
}
@@ -74,26 +104,61 @@ bool DisplayServer::global_menu_is_item_checkable(const String &p_menu_root, int
return false;
}
-Callable DisplayServer::global_menu_get_item_callback(const String &p_menu_root, int p_idx) {
+bool DisplayServer::global_menu_is_item_radio_checkable(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return false;
+}
+
+Callable DisplayServer::global_menu_get_item_callback(const String &p_menu_root, int p_idx) const {
WARN_PRINT("Global menus not supported by this display server.");
return Callable();
}
-Variant DisplayServer::global_menu_get_item_tag(const String &p_menu_root, int p_idx) {
+Variant DisplayServer::global_menu_get_item_tag(const String &p_menu_root, int p_idx) const {
WARN_PRINT("Global menus not supported by this display server.");
return Variant();
}
-String DisplayServer::global_menu_get_item_text(const String &p_menu_root, int p_idx) {
+String DisplayServer::global_menu_get_item_text(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return String();
+}
+
+String DisplayServer::global_menu_get_item_submenu(const String &p_menu_root, int p_idx) const {
WARN_PRINT("Global menus not supported by this display server.");
return String();
}
-String DisplayServer::global_menu_get_item_submenu(const String &p_menu_root, int p_idx) {
+Key DisplayServer::global_menu_get_item_accelerator(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return Key::NONE;
+}
+
+bool DisplayServer::global_menu_is_item_disabled(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return false;
+}
+
+String DisplayServer::global_menu_get_item_tooltip(const String &p_menu_root, int p_idx) const {
WARN_PRINT("Global menus not supported by this display server.");
return String();
}
+int DisplayServer::global_menu_get_item_state(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return -1;
+}
+
+int DisplayServer::global_menu_get_item_max_states(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return -1;
+}
+
+Ref<Texture2D> DisplayServer::global_menu_get_item_icon(const String &p_menu_root, int p_idx) const {
+ WARN_PRINT("Global menus not supported by this display server.");
+ return Ref<Texture2D>();
+}
+
void DisplayServer::global_menu_set_item_checked(const String &p_menu_root, int p_idx, bool p_checked) {
WARN_PRINT("Global menus not supported by this display server.");
}
@@ -102,6 +167,10 @@ void DisplayServer::global_menu_set_item_checkable(const String &p_menu_root, in
WARN_PRINT("Global menus not supported by this display server.");
}
+void DisplayServer::global_menu_set_item_radio_checkable(const String &p_menu_root, int p_idx, bool p_checkable) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
void DisplayServer::global_menu_set_item_tag(const String &p_menu_root, int p_idx, const Variant &p_tag) {
WARN_PRINT("Global menus not supported by this display server.");
}
@@ -114,6 +183,30 @@ void DisplayServer::global_menu_set_item_submenu(const String &p_menu_root, int
WARN_PRINT("Global menus not supported by this display server.");
}
+void DisplayServer::global_menu_set_item_accelerator(const String &p_menu_root, int p_idx, Key p_keycode) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_set_item_disabled(const String &p_menu_root, int p_idx, bool p_disabled) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_set_item_tooltip(const String &p_menu_root, int p_idx, const String &p_tooltip) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_set_item_state(const String &p_menu_root, int p_idx, int p_state) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_set_item_max_states(const String &p_menu_root, int p_idx, int p_max_states) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
+void DisplayServer::global_menu_set_item_icon(const String &p_menu_root, int p_idx, const Ref<Texture2D> &p_icon) {
+ WARN_PRINT("Global menus not supported by this display server.");
+}
+
int DisplayServer::global_menu_get_item_count(const String &p_menu_root) const {
WARN_PRINT("Global menus not supported by this display server.");
return 0;
@@ -127,6 +220,81 @@ void DisplayServer::global_menu_clear(const String &p_menu_root) {
WARN_PRINT("Global menus not supported by this display server.");
}
+bool DisplayServer::tts_is_speaking() const {
+ WARN_PRINT("TTS is not supported by this display server.");
+ return false;
+}
+
+bool DisplayServer::tts_is_paused() const {
+ WARN_PRINT("TTS is not supported by this display server.");
+ return false;
+}
+
+void DisplayServer::tts_pause() {
+ WARN_PRINT("TTS is not supported by this display server.");
+}
+
+void DisplayServer::tts_resume() {
+ WARN_PRINT("TTS is not supported by this display server.");
+}
+
+Array DisplayServer::tts_get_voices() const {
+ WARN_PRINT("TTS is not supported by this display server.");
+ return Array();
+}
+
+PackedStringArray DisplayServer::tts_get_voices_for_language(const String &p_language) const {
+ PackedStringArray ret;
+ Array voices = tts_get_voices();
+ for (int i = 0; i < voices.size(); i++) {
+ const Dictionary &voice = voices[i];
+ if (voice.has("id") && voice.has("language") && voice["language"].operator String().begins_with(p_language)) {
+ ret.push_back(voice["id"]);
+ }
+ }
+ return ret;
+}
+
+void DisplayServer::tts_speak(const String &p_text, const String &p_voice, int p_volume, float p_pitch, float p_rate, int p_utterance_id, bool p_interrupt) {
+ WARN_PRINT("TTS is not supported by this display server.");
+}
+
+void DisplayServer::tts_stop() {
+ WARN_PRINT("TTS is not supported by this display server.");
+}
+
+void DisplayServer::tts_set_utterance_callback(TTSUtteranceEvent p_event, const Callable &p_callable) {
+ ERR_FAIL_INDEX(p_event, DisplayServer::TTS_UTTERANCE_MAX);
+ utterance_callback[p_event] = p_callable;
+}
+
+void DisplayServer::tts_post_utterance_event(TTSUtteranceEvent p_event, int p_id, int p_pos) {
+ ERR_FAIL_INDEX(p_event, DisplayServer::TTS_UTTERANCE_MAX);
+ switch (p_event) {
+ case DisplayServer::TTS_UTTERANCE_STARTED:
+ case DisplayServer::TTS_UTTERANCE_ENDED:
+ case DisplayServer::TTS_UTTERANCE_CANCELED: {
+ if (utterance_callback[p_event].is_valid()) {
+ Variant args[1];
+ args[0] = p_id;
+ const Variant *argp[] = { &args[0] };
+ utterance_callback[p_event].call_deferred(argp, 1); // Should be deferred, on some platforms utterance events can be called from different threads in a rapid succession.
+ }
+ } break;
+ case DisplayServer::TTS_UTTERANCE_BOUNDARY: {
+ if (utterance_callback[p_event].is_valid()) {
+ Variant args[2];
+ args[0] = p_pos;
+ args[1] = p_id;
+ const Variant *argp[] = { &args[0], &args[1] };
+ utterance_callback[p_event].call_deferred(argp, 2); // Should be deferred, on some platforms utterance events can be called from different threads in a rapid succession.
+ }
+ } break;
+ default:
+ break;
+ }
+}
+
void DisplayServer::mouse_set_mode(MouseMode p_mode) {
WARN_PRINT("Mouse is not supported by this display server.");
}
@@ -135,14 +303,10 @@ DisplayServer::MouseMode DisplayServer::mouse_get_mode() const {
return MOUSE_MODE_VISIBLE;
}
-void DisplayServer::mouse_warp_to_position(const Point2i &p_to) {
+void DisplayServer::warp_mouse(const Point2i &p_position) {
WARN_PRINT("Mouse warping is not supported by this display server.");
}
-Point2i DisplayServer::mouse_get_absolute_position() const {
- ERR_FAIL_V_MSG(Point2i(), "Mouse is not supported by this display server.");
-}
-
Point2i DisplayServer::mouse_get_position() const {
ERR_FAIL_V_MSG(Point2i(), "Mouse is not supported by this display server.");
}
@@ -159,6 +323,10 @@ String DisplayServer::clipboard_get() const {
ERR_FAIL_V_MSG(String(), "Clipboard is not supported by this display server.");
}
+bool DisplayServer::clipboard_has() const {
+ return !clipboard_get().is_empty();
+}
+
void DisplayServer::clipboard_set_primary(const String &p_text) {
WARN_PRINT("Primary clipboard is not supported by this display server.");
}
@@ -204,6 +372,10 @@ void DisplayServer::delete_sub_window(WindowID p_id) {
ERR_FAIL_MSG("Sub-windows not supported by this display server.");
}
+void DisplayServer::window_set_exclusive(WindowID p_window, bool p_exclusive) {
+ // Do nothing, if not supported.
+}
+
void DisplayServer::window_set_mouse_passthrough(const Vector<Vector2> &p_region, WindowID p_window) {
ERR_FAIL_MSG("Mouse passthrough not supported by this display server.");
}
@@ -228,14 +400,6 @@ String DisplayServer::ime_get_text() const {
ERR_FAIL_V_MSG(String(), "IME or NOTIFICATION_WM_IME_UPDATEnot supported by this display server.");
}
-void DisplayServer::console_set_visible(bool p_enabled) {
- WARN_PRINT("Console window not supported by this display server.");
-}
-
-bool DisplayServer::is_console_visible() const {
- return false;
-}
-
void DisplayServer::virtual_keyboard_show(const String &p_existing_text, const Rect2 &p_screen_rect, bool p_multiline, int p_max_length, int p_cursor_start, int p_cursor_end) {
WARN_PRINT("Virtual keyboard not supported by this display server.");
}
@@ -257,7 +421,7 @@ DisplayServer::CursorShape DisplayServer::cursor_get_shape() const {
return CURSOR_ARROW;
}
-void DisplayServer::cursor_set_custom_image(const RES &p_cursor, CursorShape p_shape, const Vector2 &p_hotspot) {
+void DisplayServer::cursor_set_custom_image(const Ref<Resource> &p_cursor, CursorShape p_shape, const Vector2 &p_hotspot) {
WARN_PRINT("Custom cursor shape not supported by this display server.");
}
@@ -324,6 +488,11 @@ void DisplayServer::set_icon(const Ref<Image> &p_icon) {
WARN_PRINT("Icon not supported by this display server.");
}
+int64_t DisplayServer::window_get_native_handle(HandleType p_handle_type, WindowID p_window) const {
+ WARN_PRINT("Native handle not supported by this display server.");
+ return 0;
+}
+
void DisplayServer::window_set_vsync_mode(DisplayServer::VSyncMode p_vsync_mode, WindowID p_window) {
WARN_PRINT("Changing the VSync mode is not supported by this display server.");
}
@@ -340,41 +509,79 @@ void DisplayServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("has_feature", "feature"), &DisplayServer::has_feature);
ClassDB::bind_method(D_METHOD("get_name"), &DisplayServer::get_name);
- ClassDB::bind_method(D_METHOD("global_menu_add_item", "menu_root", "label", "callback", "tag"), &DisplayServer::global_menu_add_item, DEFVAL(Variant()));
- ClassDB::bind_method(D_METHOD("global_menu_add_check_item", "menu_root", "label", "callback", "tag"), &DisplayServer::global_menu_add_check_item, DEFVAL(Variant()));
- ClassDB::bind_method(D_METHOD("global_menu_add_submenu_item", "menu_root", "label", "submenu"), &DisplayServer::global_menu_add_submenu_item);
- ClassDB::bind_method(D_METHOD("global_menu_add_separator", "menu_root"), &DisplayServer::global_menu_add_separator);
+ ClassDB::bind_method(D_METHOD("global_menu_add_item", "menu_root", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_check_item", "menu_root", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_check_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_icon_item", "menu_root", "icon", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_icon_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_icon_check_item", "menu_root", "icon", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_icon_check_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_radio_check_item", "menu_root", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_radio_check_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_icon_radio_check_item", "menu_root", "icon", "label", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_icon_radio_check_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_multistate_item", "menu_root", "labe", "max_states", "default_state", "callback", "tag", "accelerator", "index"), &DisplayServer::global_menu_add_multistate_item, DEFVAL(Callable()), DEFVAL(Variant()), DEFVAL(Key::NONE), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_submenu_item", "menu_root", "label", "submenu", "index"), &DisplayServer::global_menu_add_submenu_item, DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("global_menu_add_separator", "menu_root", "index"), &DisplayServer::global_menu_add_separator, DEFVAL(-1));
+
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_index_from_text", "menu_root", "text"), &DisplayServer::global_menu_get_item_index_from_text);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_index_from_tag", "menu_root", "tag"), &DisplayServer::global_menu_get_item_index_from_tag);
ClassDB::bind_method(D_METHOD("global_menu_is_item_checked", "menu_root", "idx"), &DisplayServer::global_menu_is_item_checked);
ClassDB::bind_method(D_METHOD("global_menu_is_item_checkable", "menu_root", "idx"), &DisplayServer::global_menu_is_item_checkable);
+ ClassDB::bind_method(D_METHOD("global_menu_is_item_radio_checkable", "menu_root", "idx"), &DisplayServer::global_menu_is_item_radio_checkable);
ClassDB::bind_method(D_METHOD("global_menu_get_item_callback", "menu_root", "idx"), &DisplayServer::global_menu_get_item_callback);
ClassDB::bind_method(D_METHOD("global_menu_get_item_tag", "menu_root", "idx"), &DisplayServer::global_menu_get_item_tag);
ClassDB::bind_method(D_METHOD("global_menu_get_item_text", "menu_root", "idx"), &DisplayServer::global_menu_get_item_text);
ClassDB::bind_method(D_METHOD("global_menu_get_item_submenu", "menu_root", "idx"), &DisplayServer::global_menu_get_item_submenu);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_accelerator", "menu_root", "idx"), &DisplayServer::global_menu_get_item_accelerator);
+ ClassDB::bind_method(D_METHOD("global_menu_is_item_disabled", "menu_root", "idx"), &DisplayServer::global_menu_is_item_disabled);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_tooltip", "menu_root", "idx"), &DisplayServer::global_menu_get_item_tooltip);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_state", "menu_root", "idx"), &DisplayServer::global_menu_get_item_state);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_max_states", "menu_root", "idx"), &DisplayServer::global_menu_get_item_max_states);
+ ClassDB::bind_method(D_METHOD("global_menu_get_item_icon", "menu_root", "idx"), &DisplayServer::global_menu_get_item_icon);
ClassDB::bind_method(D_METHOD("global_menu_set_item_checked", "menu_root", "idx", "checked"), &DisplayServer::global_menu_set_item_checked);
ClassDB::bind_method(D_METHOD("global_menu_set_item_checkable", "menu_root", "idx", "checkable"), &DisplayServer::global_menu_set_item_checkable);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_radio_checkable", "menu_root", "idx", "checkable"), &DisplayServer::global_menu_set_item_radio_checkable);
ClassDB::bind_method(D_METHOD("global_menu_set_item_callback", "menu_root", "idx", "callback"), &DisplayServer::global_menu_set_item_callback);
ClassDB::bind_method(D_METHOD("global_menu_set_item_tag", "menu_root", "idx", "tag"), &DisplayServer::global_menu_set_item_tag);
ClassDB::bind_method(D_METHOD("global_menu_set_item_text", "menu_root", "idx", "text"), &DisplayServer::global_menu_set_item_text);
ClassDB::bind_method(D_METHOD("global_menu_set_item_submenu", "menu_root", "idx", "submenu"), &DisplayServer::global_menu_set_item_submenu);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_accelerator", "menu_root", "idx", "keycode"), &DisplayServer::global_menu_set_item_accelerator);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_disabled", "menu_root", "idx", "disabled"), &DisplayServer::global_menu_set_item_disabled);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_tooltip", "menu_root", "idx", "tooltip"), &DisplayServer::global_menu_set_item_tooltip);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_state", "menu_root", "idx", "state"), &DisplayServer::global_menu_set_item_state);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_max_states", "menu_root", "idx", "max_states"), &DisplayServer::global_menu_set_item_max_states);
+ ClassDB::bind_method(D_METHOD("global_menu_set_item_icon", "menu_root", "idx", "icon"), &DisplayServer::global_menu_set_item_icon);
ClassDB::bind_method(D_METHOD("global_menu_remove_item", "menu_root", "idx"), &DisplayServer::global_menu_remove_item);
ClassDB::bind_method(D_METHOD("global_menu_clear", "menu_root"), &DisplayServer::global_menu_clear);
+ ClassDB::bind_method(D_METHOD("tts_is_speaking"), &DisplayServer::tts_is_speaking);
+ ClassDB::bind_method(D_METHOD("tts_is_paused"), &DisplayServer::tts_is_paused);
+ ClassDB::bind_method(D_METHOD("tts_get_voices"), &DisplayServer::tts_get_voices);
+ ClassDB::bind_method(D_METHOD("tts_get_voices_for_language", "language"), &DisplayServer::tts_get_voices_for_language);
+
+ ClassDB::bind_method(D_METHOD("tts_speak", "text", "voice", "volume", "pitch", "rate", "utterance_id", "interrupt"), &DisplayServer::tts_speak, DEFVAL(50), DEFVAL(1.f), DEFVAL(1.f), DEFVAL(0), DEFVAL(false));
+ ClassDB::bind_method(D_METHOD("tts_pause"), &DisplayServer::tts_pause);
+ ClassDB::bind_method(D_METHOD("tts_resume"), &DisplayServer::tts_resume);
+ ClassDB::bind_method(D_METHOD("tts_stop"), &DisplayServer::tts_stop);
+
+ ClassDB::bind_method(D_METHOD("tts_set_utterance_callback", "event", "callable"), &DisplayServer::tts_set_utterance_callback);
+ ClassDB::bind_method(D_METHOD("_tts_post_utterance_event", "event", "id", "char_pos"), &DisplayServer::tts_post_utterance_event);
+
ClassDB::bind_method(D_METHOD("mouse_set_mode", "mouse_mode"), &DisplayServer::mouse_set_mode);
ClassDB::bind_method(D_METHOD("mouse_get_mode"), &DisplayServer::mouse_get_mode);
- ClassDB::bind_method(D_METHOD("mouse_warp_to_position", "position"), &DisplayServer::mouse_warp_to_position);
+ ClassDB::bind_method(D_METHOD("warp_mouse", "position"), &DisplayServer::warp_mouse);
ClassDB::bind_method(D_METHOD("mouse_get_position"), &DisplayServer::mouse_get_position);
- ClassDB::bind_method(D_METHOD("mouse_get_absolute_position"), &DisplayServer::mouse_get_absolute_position);
ClassDB::bind_method(D_METHOD("mouse_get_button_state"), &DisplayServer::mouse_get_button_state);
ClassDB::bind_method(D_METHOD("clipboard_set", "clipboard"), &DisplayServer::clipboard_set);
ClassDB::bind_method(D_METHOD("clipboard_get"), &DisplayServer::clipboard_get);
+ ClassDB::bind_method(D_METHOD("clipboard_has"), &DisplayServer::clipboard_has);
ClassDB::bind_method(D_METHOD("clipboard_set_primary", "clipboard_primary"), &DisplayServer::clipboard_set_primary);
ClassDB::bind_method(D_METHOD("clipboard_get_primary"), &DisplayServer::clipboard_get_primary);
+ ClassDB::bind_method(D_METHOD("get_display_cutouts"), &DisplayServer::get_display_cutouts);
+ ClassDB::bind_method(D_METHOD("get_display_safe_area"), &DisplayServer::get_display_safe_area);
+
ClassDB::bind_method(D_METHOD("get_screen_count"), &DisplayServer::get_screen_count);
ClassDB::bind_method(D_METHOD("screen_get_position", "screen"), &DisplayServer::screen_get_position, DEFVAL(SCREEN_OF_MAIN_WINDOW));
ClassDB::bind_method(D_METHOD("screen_get_size", "screen"), &DisplayServer::screen_get_size, DEFVAL(SCREEN_OF_MAIN_WINDOW));
@@ -383,6 +590,7 @@ void DisplayServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("screen_get_scale", "screen"), &DisplayServer::screen_get_scale, DEFVAL(SCREEN_OF_MAIN_WINDOW));
ClassDB::bind_method(D_METHOD("screen_is_touchscreen", "screen"), &DisplayServer::screen_is_touchscreen, DEFVAL(SCREEN_OF_MAIN_WINDOW));
ClassDB::bind_method(D_METHOD("screen_get_max_scale"), &DisplayServer::screen_get_max_scale);
+ ClassDB::bind_method(D_METHOD("screen_get_refresh_rate", "screen"), &DisplayServer::screen_get_refresh_rate, DEFVAL(SCREEN_OF_MAIN_WINDOW));
ClassDB::bind_method(D_METHOD("screen_set_orientation", "orientation", "screen"), &DisplayServer::screen_set_orientation, DEFVAL(SCREEN_OF_MAIN_WINDOW));
ClassDB::bind_method(D_METHOD("screen_get_orientation", "screen"), &DisplayServer::screen_get_orientation, DEFVAL(SCREEN_OF_MAIN_WINDOW));
@@ -396,6 +604,11 @@ void DisplayServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("create_sub_window", "mode", "vsync_mode", "flags", "rect"), &DisplayServer::create_sub_window, DEFVAL(Rect2i()));
ClassDB::bind_method(D_METHOD("delete_sub_window", "window_id"), &DisplayServer::delete_sub_window);
+ ClassDB::bind_method(D_METHOD("window_get_native_handle", "handle_type", "window_id"), &DisplayServer::window_get_native_handle, DEFVAL(MAIN_WINDOW_ID));
+ ClassDB::bind_method(D_METHOD("window_get_active_popup"), &DisplayServer::window_get_active_popup);
+ ClassDB::bind_method(D_METHOD("window_set_popup_safe_rect", "window", "rect"), &DisplayServer::window_set_popup_safe_rect);
+ ClassDB::bind_method(D_METHOD("window_get_popup_safe_rect", "window"), &DisplayServer::window_get_popup_safe_rect);
+
ClassDB::bind_method(D_METHOD("window_set_title", "title", "window_id"), &DisplayServer::window_set_title, DEFVAL(MAIN_WINDOW_ID));
ClassDB::bind_method(D_METHOD("window_set_mouse_passthrough", "region", "window_id"), &DisplayServer::window_set_mouse_passthrough, DEFVAL(MAIN_WINDOW_ID));
@@ -436,6 +649,7 @@ void DisplayServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("window_can_draw", "window_id"), &DisplayServer::window_can_draw, DEFVAL(MAIN_WINDOW_ID));
ClassDB::bind_method(D_METHOD("window_set_transient", "window_id", "parent_window_id"), &DisplayServer::window_set_transient);
+ ClassDB::bind_method(D_METHOD("window_set_exclusive", "window_id", "exclusive"), &DisplayServer::window_set_exclusive);
ClassDB::bind_method(D_METHOD("window_set_ime_active", "active", "window_id"), &DisplayServer::window_set_ime_active, DEFVAL(MAIN_WINDOW_ID));
ClassDB::bind_method(D_METHOD("window_set_ime_position", "position", "window_id"), &DisplayServer::window_set_ime_position, DEFVAL(MAIN_WINDOW_ID));
@@ -446,10 +660,7 @@ void DisplayServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("ime_get_selection"), &DisplayServer::ime_get_selection);
ClassDB::bind_method(D_METHOD("ime_get_text"), &DisplayServer::ime_get_text);
- ClassDB::bind_method(D_METHOD("console_set_visible", "console_visible"), &DisplayServer::console_set_visible);
- ClassDB::bind_method(D_METHOD("is_console_visible"), &DisplayServer::is_console_visible);
-
- ClassDB::bind_method(D_METHOD("virtual_keyboard_show", "existing_text", "position", "multiline", "max_length", "cursor_start", "cursor_end"), &DisplayServer::virtual_keyboard_show, DEFVAL(Rect2i()), DEFVAL(false), DEFVAL(-1), DEFVAL(-1), DEFVAL(-1));
+ ClassDB::bind_method(D_METHOD("virtual_keyboard_show", "existing_text", "position", "multiline", "max_length", "cursor_start", "cursor_end"), &DisplayServer::virtual_keyboard_show, DEFVAL(Rect2()), DEFVAL(false), DEFVAL(-1), DEFVAL(-1), DEFVAL(-1));
ClassDB::bind_method(D_METHOD("virtual_keyboard_hide"), &DisplayServer::virtual_keyboard_hide);
ClassDB::bind_method(D_METHOD("virtual_keyboard_get_height"), &DisplayServer::virtual_keyboard_get_height);
@@ -493,7 +704,6 @@ void DisplayServer::_bind_methods() {
BIND_ENUM_CONSTANT(FEATURE_CURSOR_SHAPE);
BIND_ENUM_CONSTANT(FEATURE_CUSTOM_CURSOR_SHAPE);
BIND_ENUM_CONSTANT(FEATURE_NATIVE_DIALOG);
- BIND_ENUM_CONSTANT(FEATURE_CONSOLE_WINDOW);
BIND_ENUM_CONSTANT(FEATURE_IME);
BIND_ENUM_CONSTANT(FEATURE_WINDOW_TRANSPARENCY);
BIND_ENUM_CONSTANT(FEATURE_HIDPI);
@@ -502,6 +712,7 @@ void DisplayServer::_bind_methods() {
BIND_ENUM_CONSTANT(FEATURE_ORIENTATION);
BIND_ENUM_CONSTANT(FEATURE_SWAP_BUFFERS);
BIND_ENUM_CONSTANT(FEATURE_CLIPBOARD_PRIMARY);
+ BIND_ENUM_CONSTANT(FEATURE_TEXT_TO_SPEECH);
BIND_ENUM_CONSTANT(MOUSE_MODE_VISIBLE);
BIND_ENUM_CONSTANT(MOUSE_MODE_HIDDEN);
@@ -544,12 +755,14 @@ void DisplayServer::_bind_methods() {
BIND_ENUM_CONSTANT(WINDOW_MODE_MINIMIZED);
BIND_ENUM_CONSTANT(WINDOW_MODE_MAXIMIZED);
BIND_ENUM_CONSTANT(WINDOW_MODE_FULLSCREEN);
+ BIND_ENUM_CONSTANT(WINDOW_MODE_EXCLUSIVE_FULLSCREEN);
BIND_ENUM_CONSTANT(WINDOW_FLAG_RESIZE_DISABLED);
BIND_ENUM_CONSTANT(WINDOW_FLAG_BORDERLESS);
BIND_ENUM_CONSTANT(WINDOW_FLAG_ALWAYS_ON_TOP);
BIND_ENUM_CONSTANT(WINDOW_FLAG_TRANSPARENT);
BIND_ENUM_CONSTANT(WINDOW_FLAG_NO_FOCUS);
+ BIND_ENUM_CONSTANT(WINDOW_FLAG_POPUP);
BIND_ENUM_CONSTANT(WINDOW_FLAG_MAX);
BIND_ENUM_CONSTANT(WINDOW_EVENT_MOUSE_ENTER);
@@ -564,6 +777,15 @@ void DisplayServer::_bind_methods() {
BIND_ENUM_CONSTANT(VSYNC_ENABLED);
BIND_ENUM_CONSTANT(VSYNC_ADAPTIVE);
BIND_ENUM_CONSTANT(VSYNC_MAILBOX);
+
+ BIND_ENUM_CONSTANT(DISPLAY_HANDLE);
+ BIND_ENUM_CONSTANT(WINDOW_HANDLE);
+ BIND_ENUM_CONSTANT(WINDOW_VIEW);
+
+ BIND_ENUM_CONSTANT(TTS_UTTERANCE_STARTED);
+ BIND_ENUM_CONSTANT(TTS_UTTERANCE_ENDED);
+ BIND_ENUM_CONSTANT(TTS_UTTERANCE_CANCELED);
+ BIND_ENUM_CONSTANT(TTS_UTTERANCE_BOUNDARY);
}
void DisplayServer::register_create_function(const char *p_name, CreateFunction p_function, GetRenderingDriversFunction p_get_drivers) {
@@ -604,14 +826,14 @@ Input::MouseMode DisplayServer::_input_get_mouse_mode() {
}
void DisplayServer::_input_warp(const Vector2 &p_to_pos) {
- singleton->mouse_warp_to_position(p_to_pos);
+ singleton->warp_mouse(p_to_pos);
}
Input::CursorShape DisplayServer::_input_get_current_cursor_shape() {
return (Input::CursorShape)singleton->cursor_get_shape();
}
-void DisplayServer::_input_set_custom_mouse_cursor_func(const RES &p_image, Input::CursorShape p_shape, const Vector2 &p_hostspot) {
+void DisplayServer::_input_set_custom_mouse_cursor_func(const Ref<Resource> &p_image, Input::CursorShape p_shape, const Vector2 &p_hostspot) {
singleton->cursor_set_custom_image(p_image, (CursorShape)p_shape, p_hostspot);
}
diff --git a/servers/display_server.h b/servers/display_server.h
index 2d837dbef9..7a15df2f92 100644
--- a/servers/display_server.h
+++ b/servers/display_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -53,7 +53,8 @@ public:
WINDOW_MODE_WINDOWED,
WINDOW_MODE_MINIMIZED,
WINDOW_MODE_MAXIMIZED,
- WINDOW_MODE_FULLSCREEN
+ WINDOW_MODE_FULLSCREEN,
+ WINDOW_MODE_EXCLUSIVE_FULLSCREEN,
};
// Keep the VSyncMode enum values in sync with the `display/window/vsync/vsync_mode`
@@ -65,6 +66,12 @@ public:
VSYNC_MAILBOX
};
+ enum HandleType {
+ DISPLAY_HANDLE,
+ WINDOW_HANDLE,
+ WINDOW_VIEW,
+ };
+
typedef DisplayServer *(*CreateFunction)(const String &, WindowMode, VSyncMode, uint32_t, const Size2i &, Error &r_error);
typedef Vector<String> (*GetRenderingDriversFunction)();
@@ -73,7 +80,7 @@ private:
static Input::MouseMode _input_get_mouse_mode();
static void _input_warp(const Vector2 &p_to_pos);
static Input::CursorShape _input_get_current_cursor_shape();
- static void _input_set_custom_mouse_cursor_func(const RES &, Input::CursorShape, const Vector2 &p_hostspot);
+ static void _input_set_custom_mouse_cursor_func(const Ref<Resource> &, Input::CursorShape, const Vector2 &p_hostspot);
protected:
static void _bind_methods();
@@ -105,7 +112,6 @@ public:
FEATURE_CURSOR_SHAPE,
FEATURE_CUSTOM_CURSOR_SHAPE,
FEATURE_NATIVE_DIALOG,
- FEATURE_CONSOLE_WINDOW,
FEATURE_IME,
FEATURE_WINDOW_TRANSPARENCY,
FEATURE_HIDPI,
@@ -115,35 +121,92 @@ public:
FEATURE_SWAP_BUFFERS,
FEATURE_KEEP_SCREEN_ON,
FEATURE_CLIPBOARD_PRIMARY,
+ FEATURE_TEXT_TO_SPEECH,
};
virtual bool has_feature(Feature p_feature) const = 0;
virtual String get_name() const = 0;
- virtual void global_menu_add_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag = Variant());
- virtual void global_menu_add_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback, const Variant &p_tag = Variant());
- virtual void global_menu_add_submenu_item(const String &p_menu_root, const String &p_label, const String &p_submenu);
- virtual void global_menu_add_separator(const String &p_menu_root);
+ virtual void global_menu_add_item(const String &p_menu_root, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_icon_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_icon_check_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_radio_check_item(const String &p_menu_root, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_icon_radio_check_item(const String &p_menu_root, const Ref<Texture2D> &p_icon, const String &p_label, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_multistate_item(const String &p_menu_root, const String &p_label, int p_max_states, int p_default_state, const Callable &p_callback = Callable(), const Variant &p_tag = Variant(), Key p_accel = Key::NONE, int p_index = -1);
+ virtual void global_menu_add_submenu_item(const String &p_menu_root, const String &p_label, const String &p_submenu, int p_index = -1);
+ virtual void global_menu_add_separator(const String &p_menu_root, int p_index = -1);
+
+ virtual int global_menu_get_item_index_from_text(const String &p_menu_root, const String &p_text) const;
+ virtual int global_menu_get_item_index_from_tag(const String &p_menu_root, const Variant &p_tag) const;
virtual bool global_menu_is_item_checked(const String &p_menu_root, int p_idx) const;
virtual bool global_menu_is_item_checkable(const String &p_menu_root, int p_idx) const;
- virtual Callable global_menu_get_item_callback(const String &p_menu_root, int p_idx);
- virtual Variant global_menu_get_item_tag(const String &p_menu_root, int p_idx);
- virtual String global_menu_get_item_text(const String &p_menu_root, int p_idx);
- virtual String global_menu_get_item_submenu(const String &p_menu_root, int p_idx);
+ virtual bool global_menu_is_item_radio_checkable(const String &p_menu_root, int p_idx) const;
+ virtual Callable global_menu_get_item_callback(const String &p_menu_root, int p_idx) const;
+ virtual Variant global_menu_get_item_tag(const String &p_menu_root, int p_idx) const;
+ virtual String global_menu_get_item_text(const String &p_menu_root, int p_idx) const;
+ virtual String global_menu_get_item_submenu(const String &p_menu_root, int p_idx) const;
+ virtual Key global_menu_get_item_accelerator(const String &p_menu_root, int p_idx) const;
+ virtual bool global_menu_is_item_disabled(const String &p_menu_root, int p_idx) const;
+ virtual String global_menu_get_item_tooltip(const String &p_menu_root, int p_idx) const;
+ virtual int global_menu_get_item_state(const String &p_menu_root, int p_idx) const;
+ virtual int global_menu_get_item_max_states(const String &p_menu_root, int p_idx) const;
+ virtual Ref<Texture2D> global_menu_get_item_icon(const String &p_menu_root, int p_idx) const;
virtual void global_menu_set_item_checked(const String &p_menu_root, int p_idx, bool p_checked);
virtual void global_menu_set_item_checkable(const String &p_menu_root, int p_idx, bool p_checkable);
+ virtual void global_menu_set_item_radio_checkable(const String &p_menu_root, int p_idx, bool p_checkable);
virtual void global_menu_set_item_callback(const String &p_menu_root, int p_idx, const Callable &p_callback);
virtual void global_menu_set_item_tag(const String &p_menu_root, int p_idx, const Variant &p_tag);
virtual void global_menu_set_item_text(const String &p_menu_root, int p_idx, const String &p_text);
virtual void global_menu_set_item_submenu(const String &p_menu_root, int p_idx, const String &p_submenu);
+ virtual void global_menu_set_item_accelerator(const String &p_menu_root, int p_idx, Key p_keycode);
+ virtual void global_menu_set_item_disabled(const String &p_menu_root, int p_idx, bool p_disabled);
+ virtual void global_menu_set_item_tooltip(const String &p_menu_root, int p_idx, const String &p_tooltip);
+ virtual void global_menu_set_item_state(const String &p_menu_root, int p_idx, int p_state);
+ virtual void global_menu_set_item_max_states(const String &p_menu_root, int p_idx, int p_max_states);
+ virtual void global_menu_set_item_icon(const String &p_menu_root, int p_idx, const Ref<Texture2D> &p_icon);
virtual int global_menu_get_item_count(const String &p_menu_root) const;
virtual void global_menu_remove_item(const String &p_menu_root, int p_idx);
virtual void global_menu_clear(const String &p_menu_root);
+ struct TTSUtterance {
+ String text;
+ String voice;
+ int volume = 50;
+ float pitch = 1.f;
+ float rate = 1.f;
+ int id = 0;
+ };
+
+ enum TTSUtteranceEvent {
+ TTS_UTTERANCE_STARTED,
+ TTS_UTTERANCE_ENDED,
+ TTS_UTTERANCE_CANCELED,
+ TTS_UTTERANCE_BOUNDARY,
+ TTS_UTTERANCE_MAX,
+ };
+
+private:
+ Callable utterance_callback[TTS_UTTERANCE_MAX];
+
+public:
+ virtual bool tts_is_speaking() const;
+ virtual bool tts_is_paused() const;
+ virtual Array tts_get_voices() const;
+ virtual PackedStringArray tts_get_voices_for_language(const String &p_language) const;
+
+ virtual void tts_speak(const String &p_text, const String &p_voice, int p_volume = 50, float p_pitch = 1.f, float p_rate = 1.f, int p_utterance_id = 0, bool p_interrupt = false);
+ virtual void tts_pause();
+ virtual void tts_resume();
+ virtual void tts_stop();
+
+ virtual void tts_set_utterance_callback(TTSUtteranceEvent p_event, const Callable &p_callable);
+ virtual void tts_post_utterance_event(TTSUtteranceEvent p_event, int p_id, int p_pos = 0);
+
enum MouseMode {
MOUSE_MODE_VISIBLE,
MOUSE_MODE_HIDDEN,
@@ -155,20 +218,25 @@ public:
virtual void mouse_set_mode(MouseMode p_mode);
virtual MouseMode mouse_get_mode() const;
- virtual void mouse_warp_to_position(const Point2i &p_to);
+ virtual void warp_mouse(const Point2i &p_position);
virtual Point2i mouse_get_position() const;
- virtual Point2i mouse_get_absolute_position() const;
virtual MouseButton mouse_get_button_state() const;
virtual void clipboard_set(const String &p_text);
virtual String clipboard_get() const;
+ virtual bool clipboard_has() const;
virtual void clipboard_set_primary(const String &p_text);
virtual String clipboard_get_primary() const;
+ virtual Array get_display_cutouts() const { return Array(); }
+ virtual Rect2i get_display_safe_area() const { return screen_get_usable_rect(); }
+
enum {
SCREEN_OF_MAIN_WINDOW = -1
};
+ const float SCREEN_REFRESH_RATE_FALLBACK = -1.0; // Returned by screen_get_refresh_rate if the method fails.
+
virtual int get_screen_count() const = 0;
virtual Point2i screen_get_position(int p_screen = SCREEN_OF_MAIN_WINDOW) const = 0;
virtual Size2i screen_get_size(int p_screen = SCREEN_OF_MAIN_WINDOW) const = 0;
@@ -183,6 +251,7 @@ public:
}
return scale;
}
+ virtual float screen_get_refresh_rate(int p_screen = SCREEN_OF_MAIN_WINDOW) const = 0;
virtual bool screen_is_touchscreen(int p_screen = SCREEN_OF_MAIN_WINDOW) const;
// Keep the ScreenOrientation enum values in sync with the `display/window/handheld/orientation`
@@ -217,6 +286,7 @@ public:
WINDOW_FLAG_ALWAYS_ON_TOP,
WINDOW_FLAG_TRANSPARENT,
WINDOW_FLAG_NO_FOCUS,
+ WINDOW_FLAG_POPUP,
WINDOW_FLAG_MAX,
};
@@ -226,13 +296,20 @@ public:
WINDOW_FLAG_BORDERLESS_BIT = (1 << WINDOW_FLAG_BORDERLESS),
WINDOW_FLAG_ALWAYS_ON_TOP_BIT = (1 << WINDOW_FLAG_ALWAYS_ON_TOP),
WINDOW_FLAG_TRANSPARENT_BIT = (1 << WINDOW_FLAG_TRANSPARENT),
- WINDOW_FLAG_NO_FOCUS_BIT = (1 << WINDOW_FLAG_NO_FOCUS)
+ WINDOW_FLAG_NO_FOCUS_BIT = (1 << WINDOW_FLAG_NO_FOCUS),
+ WINDOW_FLAG_POPUP_BIT = (1 << WINDOW_FLAG_POPUP),
};
virtual WindowID create_sub_window(WindowMode p_mode, VSyncMode p_vsync_mode, uint32_t p_flags, const Rect2i &p_rect = Rect2i());
virtual void show_window(WindowID p_id);
virtual void delete_sub_window(WindowID p_id);
+ virtual WindowID window_get_active_popup() const { return INVALID_WINDOW_ID; };
+ virtual void window_set_popup_safe_rect(WindowID p_window, const Rect2i &p_rect){};
+ virtual Rect2i window_get_popup_safe_rect(WindowID p_window) const { return Rect2i(); };
+
+ virtual int64_t window_get_native_handle(HandleType p_handle_type, WindowID p_window = MAIN_WINDOW_ID) const;
+
virtual WindowID get_window_at_screen_position(const Point2i &p_position) const = 0;
virtual void window_attach_instance_id(ObjectID p_instance, WindowID p_window = MAIN_WINDOW_ID) = 0;
@@ -266,6 +343,7 @@ public:
virtual void window_set_position(const Point2i &p_position, WindowID p_window = MAIN_WINDOW_ID) = 0;
virtual void window_set_transient(WindowID p_window, WindowID p_parent) = 0;
+ virtual void window_set_exclusive(WindowID p_window, bool p_exclusive);
virtual void window_set_max_size(const Size2i p_size, WindowID p_window = MAIN_WINDOW_ID) = 0;
virtual Size2i window_get_max_size(WindowID p_window = MAIN_WINDOW_ID) const = 0;
@@ -304,9 +382,6 @@ public:
virtual Point2i ime_get_selection() const;
virtual String ime_get_text() const;
- virtual void console_set_visible(bool p_enabled);
- virtual bool is_console_visible() const;
-
virtual void virtual_keyboard_show(const String &p_existing_text, const Rect2 &p_screen_rect = Rect2(), bool p_multiline = false, int p_max_length = -1, int p_cursor_start = -1, int p_cursor_end = -1);
virtual void virtual_keyboard_hide();
@@ -335,7 +410,7 @@ public:
};
virtual void cursor_set_shape(CursorShape p_shape);
virtual CursorShape cursor_get_shape() const;
- virtual void cursor_set_custom_image(const RES &p_cursor, CursorShape p_shape = CURSOR_ARROW, const Vector2 &p_hotspot = Vector2());
+ virtual void cursor_set_custom_image(const Ref<Resource> &p_cursor, CursorShape p_shape = CURSOR_ARROW, const Vector2 &p_hotspot = Vector2());
virtual bool get_swap_cancel_ok();
@@ -391,7 +466,9 @@ VARIANT_ENUM_CAST(DisplayServer::MouseMode)
VARIANT_ENUM_CAST(DisplayServer::ScreenOrientation)
VARIANT_ENUM_CAST(DisplayServer::WindowMode)
VARIANT_ENUM_CAST(DisplayServer::WindowFlags)
+VARIANT_ENUM_CAST(DisplayServer::HandleType)
VARIANT_ENUM_CAST(DisplayServer::CursorShape)
VARIANT_ENUM_CAST(DisplayServer::VSyncMode)
+VARIANT_ENUM_CAST(DisplayServer::TTSUtteranceEvent)
#endif // DISPLAY_SERVER_H
diff --git a/servers/display_server_headless.h b/servers/display_server_headless.h
index 0837e41db8..3853ff4fdc 100644
--- a/servers/display_server_headless.h
+++ b/servers/display_server_headless.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,7 +33,7 @@
#include "servers/display_server.h"
-#include "servers/rendering/rasterizer_dummy.h"
+#include "servers/rendering/dummy/rasterizer_dummy.h"
class DisplayServerHeadless : public DisplayServer {
private:
@@ -62,6 +62,7 @@ public:
int screen_get_dpi(int p_screen = SCREEN_OF_MAIN_WINDOW) const override { return 96; /* 0 might cause issues */ }
float screen_get_scale(int p_screen = SCREEN_OF_MAIN_WINDOW) const override { return 1; }
float screen_get_max_scale() const override { return 1; }
+ float screen_get_refresh_rate(int p_screen = SCREEN_OF_MAIN_WINDOW) const override { return SCREEN_REFRESH_RATE_FALLBACK; }
Vector<DisplayServer::WindowID> get_window_list() const override { return Vector<DisplayServer::WindowID>(); }
diff --git a/servers/extensions/SCsub b/servers/extensions/SCsub
new file mode 100644
index 0000000000..ba73353f2a
--- /dev/null
+++ b/servers/extensions/SCsub
@@ -0,0 +1,7 @@
+#!/usr/bin/env python
+
+Import("env")
+
+env_object = env.Clone()
+
+env_object.add_source_files(env.servers_sources, "*.cpp")
diff --git a/servers/extensions/physics_server_3d_extension.cpp b/servers/extensions/physics_server_3d_extension.cpp
new file mode 100644
index 0000000000..b2a9273538
--- /dev/null
+++ b/servers/extensions/physics_server_3d_extension.cpp
@@ -0,0 +1,322 @@
+/*************************************************************************/
+/* physics_server_3d_extension.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "physics_server_3d_extension.h"
+
+bool PhysicsDirectSpaceState3DExtension::is_body_excluded_from_query(const RID &p_body) const {
+ return exclude && exclude->has(p_body);
+}
+
+thread_local const Set<RID> *PhysicsDirectSpaceState3DExtension::exclude = nullptr;
+
+void PhysicsDirectSpaceState3DExtension::_bind_methods() {
+ GDVIRTUAL_BIND(_intersect_ray, "from", "to", "collision_mask", "collide_with_bodies", "collide_with_areas", "hit_from_inside", "hit_back_faces", "result");
+ GDVIRTUAL_BIND(_intersect_point, "position", "collision_mask", "collide_with_bodies", "collide_with_areas", "results", "max_results");
+ GDVIRTUAL_BIND(_intersect_shape, "shape_rid", "transform", "motion", "margin", "collision_mask", "collide_with_bodies", "collide_with_areas", "result_count", "max_results");
+ GDVIRTUAL_BIND(_cast_motion, "shape_rid", "transform", "motion", "margin", "collision_mask", "collide_with_bodies", "collide_with_areas", "closest_safe", "closest_unsafe", "info");
+ GDVIRTUAL_BIND(_collide_shape, "shape_rid", "transform", "motion", "margin", "collision_mask", "collide_with_bodies", "collide_with_areas", "results", "max_results", "result_count");
+ GDVIRTUAL_BIND(_rest_info, "shape_rid", "transform", "motion", "margin", "collision_mask", "collide_with_bodies", "collide_with_areas", "rest_info");
+ GDVIRTUAL_BIND(_get_closest_point_to_object_volume, "object", "point");
+}
+
+PhysicsDirectSpaceState3DExtension::PhysicsDirectSpaceState3DExtension() {
+}
+
+void PhysicsDirectBodyState3DExtension::_bind_methods() {
+ GDVIRTUAL_BIND(_get_total_gravity);
+ GDVIRTUAL_BIND(_get_total_linear_damp);
+ GDVIRTUAL_BIND(_get_total_angular_damp);
+
+ GDVIRTUAL_BIND(_get_center_of_mass);
+ GDVIRTUAL_BIND(_get_center_of_mass_local);
+ GDVIRTUAL_BIND(_get_principal_inertia_axes);
+
+ GDVIRTUAL_BIND(_get_inverse_mass);
+ GDVIRTUAL_BIND(_get_inverse_inertia);
+
+ GDVIRTUAL_BIND(_set_linear_velocity, "velocity");
+ GDVIRTUAL_BIND(_get_linear_velocity);
+
+ GDVIRTUAL_BIND(_set_angular_velocity, "velocity");
+ GDVIRTUAL_BIND(_get_angular_velocity);
+
+ GDVIRTUAL_BIND(_set_transform, "transform");
+ GDVIRTUAL_BIND(_get_transform);
+
+ GDVIRTUAL_BIND(_get_velocity_at_local_position, "local_position");
+
+ GDVIRTUAL_BIND(_apply_central_impulse, "impulse");
+ GDVIRTUAL_BIND(_apply_impulse, "impulse", "position");
+ GDVIRTUAL_BIND(_apply_torque_impulse, "impulse");
+
+ GDVIRTUAL_BIND(_apply_central_force, "force");
+ GDVIRTUAL_BIND(_apply_force, "force", "position");
+ GDVIRTUAL_BIND(_apply_torque, "torque");
+
+ GDVIRTUAL_BIND(_add_constant_central_force, "force");
+ GDVIRTUAL_BIND(_add_constant_force, "force", "position");
+ GDVIRTUAL_BIND(_add_constant_torque, "torque");
+
+ GDVIRTUAL_BIND(_set_constant_force, "force");
+ GDVIRTUAL_BIND(_get_constant_force);
+
+ GDVIRTUAL_BIND(_set_constant_torque, "torque");
+ GDVIRTUAL_BIND(_get_constant_torque);
+
+ GDVIRTUAL_BIND(_set_sleep_state, "enabled");
+ GDVIRTUAL_BIND(_is_sleeping);
+
+ GDVIRTUAL_BIND(_get_contact_count);
+
+ GDVIRTUAL_BIND(_get_contact_local_position, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_local_normal, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_impulse, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_local_shape, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider_position, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider_id, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider_object, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider_shape, "contact_idx");
+ GDVIRTUAL_BIND(_get_contact_collider_velocity_at_position, "contact_idx");
+ GDVIRTUAL_BIND(_get_step);
+ GDVIRTUAL_BIND(_integrate_forces);
+ GDVIRTUAL_BIND(_get_space_state);
+}
+
+PhysicsDirectBodyState3DExtension::PhysicsDirectBodyState3DExtension() {
+}
+
+thread_local const Set<RID> *PhysicsServer3DExtension::exclude_bodies = nullptr;
+thread_local const Set<ObjectID> *PhysicsServer3DExtension::exclude_objects = nullptr;
+
+bool PhysicsServer3DExtension::body_test_motion_is_excluding_body(RID p_body) const {
+ return exclude_bodies && exclude_bodies->has(p_body);
+}
+
+bool PhysicsServer3DExtension::body_test_motion_is_excluding_object(ObjectID p_object) const {
+ return exclude_objects && exclude_objects->has(p_object);
+}
+
+void PhysicsServer3DExtension::_bind_methods() {
+ GDVIRTUAL_BIND(_world_boundary_shape_create);
+ GDVIRTUAL_BIND(_separation_ray_shape_create);
+ GDVIRTUAL_BIND(_sphere_shape_create);
+ GDVIRTUAL_BIND(_box_shape_create);
+ GDVIRTUAL_BIND(_capsule_shape_create);
+ GDVIRTUAL_BIND(_cylinder_shape_create);
+ GDVIRTUAL_BIND(_convex_polygon_shape_create);
+ GDVIRTUAL_BIND(_concave_polygon_shape_create);
+ GDVIRTUAL_BIND(_heightmap_shape_create);
+ GDVIRTUAL_BIND(_custom_shape_create);
+
+ GDVIRTUAL_BIND(_shape_set_data, "shape", "data");
+
+ GDVIRTUAL_BIND(_shape_get_type, "shape");
+ GDVIRTUAL_BIND(_shape_get_data, "shape");
+
+ GDVIRTUAL_BIND(_space_create);
+ GDVIRTUAL_BIND(_space_set_active, "space", "active");
+ GDVIRTUAL_BIND(_space_is_active, "space");
+ GDVIRTUAL_BIND(_space_set_param, "space", "param", "value");
+ GDVIRTUAL_BIND(_space_get_param, "space", "param");
+ GDVIRTUAL_BIND(_space_get_direct_state, "space");
+
+ GDVIRTUAL_BIND(_area_create);
+ GDVIRTUAL_BIND(_area_set_space, "area", "space");
+ GDVIRTUAL_BIND(_area_get_space, "area");
+
+ GDVIRTUAL_BIND(_area_add_shape, "area", "shape", "transform", "disabled");
+ GDVIRTUAL_BIND(_area_set_shape, "area", "shape_idx", "shape");
+ GDVIRTUAL_BIND(_area_set_shape_transform, "area", "shape_idx", "transform");
+ GDVIRTUAL_BIND(_area_set_shape_disabled, "area", "shape_idx", "disabled");
+
+ GDVIRTUAL_BIND(_area_get_shape_count, "area");
+ GDVIRTUAL_BIND(_area_get_shape, "area", "shape_idx");
+ GDVIRTUAL_BIND(_area_get_shape_transform, "area", "shape_idx");
+
+ GDVIRTUAL_BIND(_area_remove_shape, "area", "shape_idx");
+ GDVIRTUAL_BIND(_area_clear_shapes, "area");
+
+ GDVIRTUAL_BIND(_area_set_collision_layer, "area", "layer");
+ GDVIRTUAL_BIND(_area_set_collision_mask, "area", "mask");
+
+ GDVIRTUAL_BIND(_area_set_param, "area", "param", "value");
+ GDVIRTUAL_BIND(_area_set_transform, "area", "transform");
+
+ GDVIRTUAL_BIND(_area_get_param, "area", "param");
+ GDVIRTUAL_BIND(_area_get_transform, "area");
+
+ GDVIRTUAL_BIND(_area_attach_object_instance_id, "area", "id");
+ GDVIRTUAL_BIND(_area_get_object_instance_id, "area");
+
+ GDVIRTUAL_BIND(_area_set_monitor_callback, "area", "callback");
+ GDVIRTUAL_BIND(_area_set_area_monitor_callback, "area", "callback");
+ GDVIRTUAL_BIND(_area_set_monitorable, "area", "monitorable");
+
+ GDVIRTUAL_BIND(_area_set_ray_pickable, "area", "enable");
+
+ GDVIRTUAL_BIND(_body_create);
+
+ GDVIRTUAL_BIND(_body_set_space, "body", "space");
+ GDVIRTUAL_BIND(_body_get_space, "body");
+
+ GDVIRTUAL_BIND(_body_set_mode, "body", "mode");
+ GDVIRTUAL_BIND(_body_get_mode, "body");
+
+ GDVIRTUAL_BIND(_body_set_collision_layer, "body", "layer");
+ GDVIRTUAL_BIND(_body_get_collision_layer, "body");
+
+ GDVIRTUAL_BIND(_body_set_collision_mask, "body", "mask");
+ GDVIRTUAL_BIND(_body_get_collision_mask, "body");
+
+ GDVIRTUAL_BIND(_body_add_shape, "body", "shape", "transform", "disabled");
+ GDVIRTUAL_BIND(_body_set_shape, "body", "shape_idx", "shape");
+ GDVIRTUAL_BIND(_body_set_shape_transform, "body", "shape_idx", "transform");
+ GDVIRTUAL_BIND(_body_set_shape_disabled, "body", "shape_idx", "disabled");
+
+ GDVIRTUAL_BIND(_body_get_shape_count, "body");
+ GDVIRTUAL_BIND(_body_get_shape, "body", "shape_idx");
+ GDVIRTUAL_BIND(_body_get_shape_transform, "body", "shape_idx");
+
+ GDVIRTUAL_BIND(_body_remove_shape, "body", "shape_idx");
+ GDVIRTUAL_BIND(_body_clear_shapes, "body");
+
+ GDVIRTUAL_BIND(_body_attach_object_instance_id, "body", "id");
+ GDVIRTUAL_BIND(_body_get_object_instance_id, "body");
+
+ GDVIRTUAL_BIND(_body_set_enable_continuous_collision_detection, "body", "enable");
+ GDVIRTUAL_BIND(_body_is_continuous_collision_detection_enabled, "body");
+
+ GDVIRTUAL_BIND(_body_set_param, "body", "param", "value");
+ GDVIRTUAL_BIND(_body_get_param, "body", "param");
+
+ GDVIRTUAL_BIND(_body_reset_mass_properties, "body");
+
+ GDVIRTUAL_BIND(_body_set_state, "body", "state", "value");
+ GDVIRTUAL_BIND(_body_get_state, "body", "state");
+
+ GDVIRTUAL_BIND(_body_apply_central_impulse, "body", "impulse");
+ GDVIRTUAL_BIND(_body_apply_impulse, "body", "impulse", "position");
+ GDVIRTUAL_BIND(_body_apply_torque_impulse, "body", "impulse");
+
+ GDVIRTUAL_BIND(_body_apply_central_force, "body", "force");
+ GDVIRTUAL_BIND(_body_apply_force, "body", "force", "position");
+ GDVIRTUAL_BIND(_body_apply_torque, "body", "torque");
+
+ GDVIRTUAL_BIND(_body_add_constant_central_force, "body", "force");
+ GDVIRTUAL_BIND(_body_add_constant_force, "body", "force", "position");
+ GDVIRTUAL_BIND(_body_add_constant_torque, "body", "torque");
+
+ GDVIRTUAL_BIND(_body_set_constant_force, "body", "force");
+ GDVIRTUAL_BIND(_body_get_constant_force, "body");
+
+ GDVIRTUAL_BIND(_body_set_constant_torque, "body", "torque");
+ GDVIRTUAL_BIND(_body_get_constant_torque, "body");
+
+ GDVIRTUAL_BIND(_body_set_axis_velocity, "body", "axis_velocity");
+
+ GDVIRTUAL_BIND(_body_set_axis_lock, "body", "axis", "lock");
+ GDVIRTUAL_BIND(_body_is_axis_locked, "body", "axis");
+
+ GDVIRTUAL_BIND(_body_add_collision_exception, "body", "excepted_body");
+ GDVIRTUAL_BIND(_body_remove_collision_exception, "body", "excepted_body");
+
+ GDVIRTUAL_BIND(_body_set_max_contacts_reported, "body", "amount");
+ GDVIRTUAL_BIND(_body_get_max_contacts_reported, "body");
+
+ GDVIRTUAL_BIND(_body_set_omit_force_integration, "body", "enable");
+ GDVIRTUAL_BIND(_body_is_omitting_force_integration, "body");
+
+ GDVIRTUAL_BIND(_body_set_force_integration_callback, "body", "callable", "userdata");
+
+ GDVIRTUAL_BIND(_body_set_ray_pickable, "body", "enable");
+
+ GDVIRTUAL_BIND(_body_test_motion, "body", "from", "motion", "margin", "max_collisions", "collide_separation_ray", "result");
+
+ GDVIRTUAL_BIND(_body_get_direct_state, "body");
+
+ GDVIRTUAL_BIND(_soft_body_get_bounds, "body");
+
+ GDVIRTUAL_BIND(_joint_create);
+ GDVIRTUAL_BIND(_joint_clear, "joint");
+
+ GDVIRTUAL_BIND(_joint_make_pin, "joint", "body_A", "local_A", "body_B", "local_B");
+ GDVIRTUAL_BIND(_pin_joint_set_param, "joint", "param", "value");
+ GDVIRTUAL_BIND(_pin_joint_get_param, "joint", "param");
+
+ GDVIRTUAL_BIND(_pin_joint_set_local_a, "joint", "local_A");
+ GDVIRTUAL_BIND(_pin_joint_get_local_a, "joint");
+
+ GDVIRTUAL_BIND(_pin_joint_set_local_b, "joint", "local_B");
+ GDVIRTUAL_BIND(_pin_joint_get_local_b, "joint");
+
+ GDVIRTUAL_BIND(_joint_make_hinge, "joint", "body_A", "hinge_A", "body_B", "hinge_B");
+
+ GDVIRTUAL_BIND(_hinge_joint_set_param, "joint", "param", "value");
+ GDVIRTUAL_BIND(_hinge_joint_get_param, "joint", "param");
+
+ GDVIRTUAL_BIND(_hinge_joint_set_flag, "joint", "flag", "enabled");
+ GDVIRTUAL_BIND(_hinge_joint_get_flag, "joint", "flag");
+
+ GDVIRTUAL_BIND(_joint_make_slider, "joint", "body_A", "local_ref_A", "body_B", "local_ref_B");
+
+ GDVIRTUAL_BIND(_slider_joint_set_param, "joint", "param", "value");
+ GDVIRTUAL_BIND(_slider_joint_get_param, "joint", "param");
+
+ GDVIRTUAL_BIND(_joint_make_cone_twist, "joint", "body_A", "local_ref_A", "body_B", "local_ref_B");
+
+ GDVIRTUAL_BIND(_cone_twist_joint_set_param, "joint", "param", "value");
+ GDVIRTUAL_BIND(_cone_twist_joint_get_param, "joint", "param");
+
+ GDVIRTUAL_BIND(_joint_get_type, "joint");
+
+ GDVIRTUAL_BIND(_joint_set_solver_priority, "joint", "priority");
+ GDVIRTUAL_BIND(_joint_get_solver_priority, "joint");
+
+ GDVIRTUAL_BIND(_joint_make_generic_6dof, "joint", "body_A", "local_ref_A", "body_B", "local_ref_B");
+
+ GDVIRTUAL_BIND(_generic_6dof_joint_set_param, "joint", "axis", "param", "value");
+ GDVIRTUAL_BIND(_generic_6dof_joint_get_param, "joint", "axis", "param");
+
+ GDVIRTUAL_BIND(_generic_6dof_joint_set_flag, "joint", "axis", "flag", "enable");
+ GDVIRTUAL_BIND(_generic_6dof_joint_get_flag, "joint", "axis", "flag");
+
+ GDVIRTUAL_BIND(_free_rid, "rid");
+
+ GDVIRTUAL_BIND(_set_active, "active");
+
+ GDVIRTUAL_BIND(_get_process_info, "process_info");
+}
+
+PhysicsServer3DExtension::PhysicsServer3DExtension() {
+}
+
+PhysicsServer3DExtension::~PhysicsServer3DExtension() {
+}
diff --git a/servers/extensions/physics_server_3d_extension.h b/servers/extensions/physics_server_3d_extension.h
new file mode 100644
index 0000000000..ce6bed41c9
--- /dev/null
+++ b/servers/extensions/physics_server_3d_extension.h
@@ -0,0 +1,548 @@
+/*************************************************************************/
+/* physics_server_3d_extension.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef PHYSICS_SERVER_3D_EXTENSION_H
+#define PHYSICS_SERVER_3D_EXTENSION_H
+
+#include "core/extension/ext_wrappers.gen.inc"
+#include "core/object/script_language.h"
+#include "core/variant/native_ptr.h"
+#include "core/variant/type_info.h"
+#include "core/variant/typed_array.h"
+#include "servers/physics_server_3d.h"
+
+class PhysicsDirectBodyState3DExtension : public PhysicsDirectBodyState3D {
+ GDCLASS(PhysicsDirectBodyState3DExtension, PhysicsDirectBodyState3D);
+
+protected:
+ static void _bind_methods();
+
+public:
+ // The warning is valid, but unavoidable. If the function is not overridden it will error anyway.
+
+ EXBIND0RC(Vector3, get_total_gravity)
+ EXBIND0RC(real_t, get_total_angular_damp)
+ EXBIND0RC(real_t, get_total_linear_damp)
+
+ EXBIND0RC(Vector3, get_center_of_mass)
+ EXBIND0RC(Vector3, get_center_of_mass_local)
+ EXBIND0RC(Basis, get_principal_inertia_axes)
+ EXBIND0RC(real_t, get_inverse_mass)
+ EXBIND0RC(Vector3, get_inverse_inertia)
+ EXBIND0RC(Basis, get_inverse_inertia_tensor)
+
+ EXBIND1(set_linear_velocity, const Vector3 &)
+ EXBIND0RC(Vector3, get_linear_velocity)
+
+ EXBIND1(set_angular_velocity, const Vector3 &)
+ EXBIND0RC(Vector3, get_angular_velocity)
+
+ EXBIND1(set_transform, const Transform3D &)
+ EXBIND0RC(Transform3D, get_transform)
+
+ EXBIND1RC(Vector3, get_velocity_at_local_position, const Vector3 &)
+
+ EXBIND1(apply_central_impulse, const Vector3 &)
+ EXBIND2(apply_impulse, const Vector3 &, const Vector3 &)
+ EXBIND1(apply_torque_impulse, const Vector3 &)
+
+ EXBIND1(apply_central_force, const Vector3 &)
+ EXBIND2(apply_force, const Vector3 &, const Vector3 &)
+ EXBIND1(apply_torque, const Vector3 &)
+
+ EXBIND1(add_constant_central_force, const Vector3 &)
+ EXBIND2(add_constant_force, const Vector3 &, const Vector3 &)
+ EXBIND1(add_constant_torque, const Vector3 &)
+
+ EXBIND1(set_constant_force, const Vector3 &)
+ EXBIND0RC(Vector3, get_constant_force)
+
+ EXBIND1(set_constant_torque, const Vector3 &)
+ EXBIND0RC(Vector3, get_constant_torque)
+
+ EXBIND1(set_sleep_state, bool)
+ EXBIND0RC(bool, is_sleeping)
+
+ EXBIND0RC(int, get_contact_count)
+
+ EXBIND1RC(Vector3, get_contact_local_position, int)
+ EXBIND1RC(Vector3, get_contact_local_normal, int)
+ EXBIND1RC(real_t, get_contact_impulse, int)
+ EXBIND1RC(int, get_contact_local_shape, int)
+ EXBIND1RC(RID, get_contact_collider, int)
+ EXBIND1RC(Vector3, get_contact_collider_position, int)
+ EXBIND1RC(ObjectID, get_contact_collider_id, int)
+ EXBIND1RC(Object *, get_contact_collider_object, int)
+ EXBIND1RC(int, get_contact_collider_shape, int)
+ EXBIND1RC(Vector3, get_contact_collider_velocity_at_position, int)
+
+ EXBIND0RC(real_t, get_step)
+
+ EXBIND0(integrate_forces)
+ EXBIND0R(PhysicsDirectSpaceState3D *, get_space_state)
+
+ PhysicsDirectBodyState3DExtension();
+};
+
+typedef PhysicsDirectSpaceState3D::RayResult PhysicsServer3DExtensionRayResult;
+typedef PhysicsDirectSpaceState3D::ShapeResult PhysicsServer3DExtensionShapeResult;
+typedef PhysicsDirectSpaceState3D::ShapeRestInfo PhysicsServer3DExtensionShapeRestInfo;
+
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionRayResult)
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionShapeResult)
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionShapeRestInfo)
+
+class PhysicsDirectSpaceState3DExtension : public PhysicsDirectSpaceState3D {
+ GDCLASS(PhysicsDirectSpaceState3DExtension, PhysicsDirectSpaceState3D);
+
+ thread_local static const Set<RID> *exclude;
+
+protected:
+ static void _bind_methods();
+ bool is_body_excluded_from_query(const RID &p_body) const;
+
+ GDVIRTUAL8R(bool, _intersect_ray, const Vector3 &, const Vector3 &, uint32_t, bool, bool, bool, bool, GDNativePtr<PhysicsServer3DExtensionRayResult>)
+ GDVIRTUAL6R(int, _intersect_point, const Vector3 &, uint32_t, bool, bool, GDNativePtr<PhysicsServer3DExtensionShapeResult>, int)
+ GDVIRTUAL9R(int, _intersect_shape, RID, const Transform3D &, const Vector3 &, real_t, uint32_t, bool, bool, GDNativePtr<PhysicsServer3DExtensionShapeResult>, int)
+ GDVIRTUAL10R(bool, _cast_motion, RID, const Transform3D &, const Vector3 &, real_t, uint32_t, bool, bool, GDNativePtr<real_t>, GDNativePtr<real_t>, GDNativePtr<PhysicsServer3DExtensionShapeRestInfo>)
+ GDVIRTUAL10R(bool, _collide_shape, RID, const Transform3D &, const Vector3 &, real_t, uint32_t, bool, bool, GDNativePtr<Vector3>, int, GDNativePtr<int>)
+ GDVIRTUAL8R(bool, _rest_info, RID, const Transform3D &, const Vector3 &, real_t, uint32_t, bool, bool, GDNativePtr<PhysicsServer3DExtensionShapeRestInfo>)
+ GDVIRTUAL2RC(Vector3, _get_closest_point_to_object_volume, RID, const Vector3 &)
+
+public:
+ virtual bool intersect_ray(const RayParameters &p_parameters, RayResult &r_result) override {
+ exclude = &p_parameters.exclude;
+ bool ret = false;
+ GDVIRTUAL_REQUIRED_CALL(_intersect_ray, p_parameters.from, p_parameters.to, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, p_parameters.hit_from_inside, p_parameters.hit_back_faces, &r_result, ret);
+ exclude = nullptr;
+ return ret;
+ }
+ virtual int intersect_point(const PointParameters &p_parameters, ShapeResult *r_results, int p_result_max) override {
+ exclude = &p_parameters.exclude;
+ int ret = false;
+ GDVIRTUAL_REQUIRED_CALL(_intersect_point, p_parameters.position, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, r_results, p_result_max, ret);
+ exclude = nullptr;
+ return ret;
+ }
+ virtual int intersect_shape(const ShapeParameters &p_parameters, ShapeResult *r_results, int p_result_max) override {
+ exclude = &p_parameters.exclude;
+ int ret = 0;
+ GDVIRTUAL_REQUIRED_CALL(_intersect_shape, p_parameters.shape_rid, p_parameters.transform, p_parameters.motion, p_parameters.margin, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, r_results, p_result_max, ret);
+ exclude = nullptr;
+ return ret;
+ }
+ virtual bool cast_motion(const ShapeParameters &p_parameters, real_t &p_closest_safe, real_t &p_closest_unsafe, ShapeRestInfo *r_info = nullptr) override {
+ exclude = &p_parameters.exclude;
+ bool ret = false;
+ GDVIRTUAL_REQUIRED_CALL(_cast_motion, p_parameters.shape_rid, p_parameters.transform, p_parameters.motion, p_parameters.margin, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, &p_closest_safe, &p_closest_unsafe, r_info, ret);
+ exclude = nullptr;
+ return ret;
+ }
+ virtual bool collide_shape(const ShapeParameters &p_parameters, Vector3 *r_results, int p_result_max, int &r_result_count) override {
+ exclude = &p_parameters.exclude;
+ bool ret = false;
+ GDVIRTUAL_REQUIRED_CALL(_collide_shape, p_parameters.shape_rid, p_parameters.transform, p_parameters.motion, p_parameters.margin, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, r_results, p_result_max, &r_result_count, ret);
+ exclude = nullptr;
+ return ret;
+ }
+ virtual bool rest_info(const ShapeParameters &p_parameters, ShapeRestInfo *r_info) override {
+ exclude = &p_parameters.exclude;
+ bool ret = false;
+ GDVIRTUAL_REQUIRED_CALL(_rest_info, p_parameters.shape_rid, p_parameters.transform, p_parameters.motion, p_parameters.margin, p_parameters.collision_mask, p_parameters.collide_with_bodies, p_parameters.collide_with_areas, r_info, ret);
+ exclude = nullptr;
+ return ret;
+ }
+
+ virtual Vector3 get_closest_point_to_object_volume(RID p_object, const Vector3 p_point) const override {
+ Vector3 ret;
+ GDVIRTUAL_REQUIRED_CALL(_get_closest_point_to_object_volume, p_object, p_point, ret);
+ return ret;
+ }
+
+ PhysicsDirectSpaceState3DExtension();
+};
+
+typedef PhysicsServer3D::MotionCollision PhysicsServer3DExtensionMotionCollision;
+typedef PhysicsServer3D::MotionResult PhysicsServer3DExtensionMotionResult;
+
+struct PhysicsServer3DExtensionStateCallback {
+ void *instance = nullptr;
+ void (*callback)(void *p_instance, PhysicsDirectBodyState3D *p_state);
+};
+
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionMotionCollision)
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionMotionResult)
+GDVIRTUAL_NATIVE_PTR(PhysicsServer3DExtensionStateCallback)
+
+class PhysicsServer3DExtension : public PhysicsServer3D {
+ GDCLASS(PhysicsServer3DExtension, PhysicsServer3D);
+
+protected:
+ static void _bind_methods();
+
+public:
+ // The warning is valid, but unavoidable. If the function is not overridden it will error anyway.
+
+ EXBIND0R(RID, world_boundary_shape_create)
+ EXBIND0R(RID, separation_ray_shape_create)
+ EXBIND0R(RID, sphere_shape_create)
+ EXBIND0R(RID, box_shape_create)
+ EXBIND0R(RID, capsule_shape_create)
+ EXBIND0R(RID, cylinder_shape_create)
+ EXBIND0R(RID, convex_polygon_shape_create)
+ EXBIND0R(RID, concave_polygon_shape_create)
+ EXBIND0R(RID, heightmap_shape_create)
+ EXBIND0R(RID, custom_shape_create)
+
+ EXBIND2(shape_set_data, RID, const Variant &)
+ EXBIND2(shape_set_custom_solver_bias, RID, real_t)
+
+ EXBIND2(shape_set_margin, RID, real_t)
+ EXBIND1RC(real_t, shape_get_margin, RID)
+
+ EXBIND1RC(ShapeType, shape_get_type, RID)
+ EXBIND1RC(Variant, shape_get_data, RID)
+ EXBIND1RC(real_t, shape_get_custom_solver_bias, RID)
+
+ /* SPACE API */
+
+ EXBIND0R(RID, space_create)
+ EXBIND2(space_set_active, RID, bool)
+ EXBIND1RC(bool, space_is_active, RID)
+
+ EXBIND3(space_set_param, RID, SpaceParameter, real_t)
+ EXBIND2RC(real_t, space_get_param, RID, SpaceParameter)
+
+ EXBIND1R(PhysicsDirectSpaceState3D *, space_get_direct_state, RID)
+
+ EXBIND2(space_set_debug_contacts, RID, int)
+ EXBIND1RC(Vector<Vector3>, space_get_contacts, RID)
+ EXBIND1RC(int, space_get_contact_count, RID)
+
+ /* AREA API */
+
+ //EXBIND0RID(area);
+ EXBIND0R(RID, area_create)
+
+ EXBIND2(area_set_space, RID, RID)
+ EXBIND1RC(RID, area_get_space, RID)
+
+ EXBIND4(area_add_shape, RID, RID, const Transform3D &, bool)
+ EXBIND3(area_set_shape, RID, int, RID)
+ EXBIND3(area_set_shape_transform, RID, int, const Transform3D &)
+ EXBIND3(area_set_shape_disabled, RID, int, bool)
+
+ EXBIND1RC(int, area_get_shape_count, RID)
+ EXBIND2RC(RID, area_get_shape, RID, int)
+ EXBIND2RC(Transform3D, area_get_shape_transform, RID, int)
+ EXBIND2(area_remove_shape, RID, int)
+ EXBIND1(area_clear_shapes, RID)
+
+ EXBIND2(area_attach_object_instance_id, RID, ObjectID)
+ EXBIND1RC(ObjectID, area_get_object_instance_id, RID)
+
+ EXBIND3(area_set_param, RID, AreaParameter, const Variant &)
+ EXBIND2(area_set_transform, RID, const Transform3D &)
+
+ EXBIND2RC(Variant, area_get_param, RID, AreaParameter)
+ EXBIND1RC(Transform3D, area_get_transform, RID)
+
+ EXBIND2(area_set_collision_mask, RID, uint32_t)
+ EXBIND2(area_set_collision_layer, RID, uint32_t)
+
+ EXBIND2(area_set_monitorable, RID, bool)
+ EXBIND2(area_set_ray_pickable, RID, bool)
+
+ EXBIND2(area_set_monitor_callback, RID, const Callable &)
+ EXBIND2(area_set_area_monitor_callback, RID, const Callable &)
+
+ /* BODY API */
+
+ //EXBIND2RID(body,BodyMode,bool);
+ EXBIND0R(RID, body_create)
+
+ EXBIND2(body_set_space, RID, RID)
+ EXBIND1RC(RID, body_get_space, RID)
+
+ EXBIND2(body_set_mode, RID, BodyMode)
+ EXBIND1RC(BodyMode, body_get_mode, RID)
+
+ EXBIND4(body_add_shape, RID, RID, const Transform3D &, bool)
+ EXBIND3(body_set_shape, RID, int, RID)
+ EXBIND3(body_set_shape_transform, RID, int, const Transform3D &)
+
+ EXBIND1RC(int, body_get_shape_count, RID)
+ EXBIND2RC(Transform3D, body_get_shape_transform, RID, int)
+ EXBIND2RC(RID, body_get_shape, RID, int)
+
+ EXBIND3(body_set_shape_disabled, RID, int, bool)
+
+ EXBIND2(body_remove_shape, RID, int)
+ EXBIND1(body_clear_shapes, RID)
+
+ EXBIND2(body_attach_object_instance_id, RID, ObjectID)
+ EXBIND1RC(ObjectID, body_get_object_instance_id, RID)
+
+ EXBIND2(body_set_enable_continuous_collision_detection, RID, bool)
+ EXBIND1RC(bool, body_is_continuous_collision_detection_enabled, RID)
+
+ EXBIND2(body_set_collision_layer, RID, uint32_t)
+ EXBIND1RC(uint32_t, body_get_collision_layer, RID)
+
+ EXBIND2(body_set_collision_mask, RID, uint32_t)
+ EXBIND1RC(uint32_t, body_get_collision_mask, RID)
+
+ EXBIND2(body_set_user_flags, RID, uint32_t)
+ EXBIND1RC(uint32_t, body_get_user_flags, RID)
+
+ EXBIND3(body_set_param, RID, BodyParameter, const Variant &)
+ EXBIND2RC(Variant, body_get_param, RID, BodyParameter)
+
+ EXBIND1(body_reset_mass_properties, RID)
+
+ EXBIND3(body_set_state, RID, BodyState, const Variant &)
+ EXBIND2RC(Variant, body_get_state, RID, BodyState)
+
+ EXBIND2(body_apply_torque_impulse, RID, const Vector3 &)
+ EXBIND2(body_apply_central_impulse, RID, const Vector3 &)
+ EXBIND3(body_apply_impulse, RID, const Vector3 &, const Vector3 &)
+
+ EXBIND2(body_apply_central_force, RID, const Vector3 &)
+ EXBIND3(body_apply_force, RID, const Vector3 &, const Vector3 &)
+ EXBIND2(body_apply_torque, RID, const Vector3 &)
+
+ EXBIND2(body_add_constant_central_force, RID, const Vector3 &)
+ EXBIND3(body_add_constant_force, RID, const Vector3 &, const Vector3 &)
+ EXBIND2(body_add_constant_torque, RID, const Vector3 &)
+
+ EXBIND2(body_set_constant_force, RID, const Vector3 &)
+ EXBIND1RC(Vector3, body_get_constant_force, RID)
+
+ EXBIND2(body_set_constant_torque, RID, const Vector3 &)
+ EXBIND1RC(Vector3, body_get_constant_torque, RID)
+
+ EXBIND2(body_set_axis_velocity, RID, const Vector3 &)
+
+ EXBIND3(body_set_axis_lock, RID, BodyAxis, bool)
+ EXBIND2RC(bool, body_is_axis_locked, RID, BodyAxis)
+
+ EXBIND2(body_add_collision_exception, RID, RID)
+ EXBIND2(body_remove_collision_exception, RID, RID)
+
+ GDVIRTUAL1RC(TypedArray<RID>, _body_get_collision_exceptions, RID)
+
+ void body_get_collision_exceptions(RID p_body, List<RID> *p_exceptions) override {
+ TypedArray<RID> ret;
+ GDVIRTUAL_REQUIRED_CALL(_body_get_collision_exceptions, p_body, ret);
+ for (int i = 0; i < ret.size(); i++) {
+ p_exceptions->push_back(ret[i]);
+ }
+ }
+
+ EXBIND2(body_set_max_contacts_reported, RID, int)
+ EXBIND1RC(int, body_get_max_contacts_reported, RID)
+
+ EXBIND2(body_set_contacts_reported_depth_threshold, RID, real_t)
+ EXBIND1RC(real_t, body_get_contacts_reported_depth_threshold, RID)
+
+ EXBIND2(body_set_omit_force_integration, RID, bool)
+ EXBIND1RC(bool, body_is_omitting_force_integration, RID)
+
+ GDVIRTUAL2(_body_set_state_sync_callback, RID, GDNativePtr<PhysicsServer3DExtensionStateCallback>)
+ void body_set_state_sync_callback(RID p_body, void *p_instance, BodyStateCallback p_callback) override {
+ PhysicsServer3DExtensionStateCallback callback;
+ callback.callback = p_callback;
+ callback.instance = p_instance;
+ GDVIRTUAL_REQUIRED_CALL(_body_set_state_sync_callback, p_body, &callback);
+ }
+ EXBIND3(body_set_force_integration_callback, RID, const Callable &, const Variant &)
+
+ EXBIND2(body_set_ray_pickable, RID, bool)
+
+ GDVIRTUAL7RC(bool, _body_test_motion, RID, const Transform3D &, const Vector3 &, real_t, int, bool, GDNativePtr<PhysicsServer3DExtensionMotionResult>)
+
+ thread_local static const Set<RID> *exclude_bodies;
+ thread_local static const Set<ObjectID> *exclude_objects;
+
+ bool body_test_motion_is_excluding_body(RID p_body) const;
+ bool body_test_motion_is_excluding_object(ObjectID p_object) const;
+
+ bool body_test_motion(RID p_body, const MotionParameters &p_parameters, MotionResult *r_result = nullptr) override {
+ bool ret = false;
+ exclude_bodies = &p_parameters.exclude_bodies;
+ exclude_objects = &p_parameters.exclude_objects;
+ GDVIRTUAL_REQUIRED_CALL(_body_test_motion, p_body, p_parameters.from, p_parameters.motion, p_parameters.margin, p_parameters.max_collisions, p_parameters.collide_separation_ray, r_result, ret);
+ exclude_bodies = nullptr;
+ exclude_objects = nullptr;
+ return ret;
+ }
+
+ EXBIND1R(PhysicsDirectBodyState3D *, body_get_direct_state, RID)
+
+ /* SOFT BODY API */
+
+ EXBIND0R(RID, soft_body_create)
+
+ EXBIND2(soft_body_update_rendering_server, RID, PhysicsServer3DRenderingServerHandler *)
+
+ EXBIND2(soft_body_set_space, RID, RID)
+ EXBIND1RC(RID, soft_body_get_space, RID)
+
+ EXBIND2(soft_body_set_ray_pickable, RID, bool)
+
+ EXBIND2(soft_body_set_collision_layer, RID, uint32_t)
+ EXBIND1RC(uint32_t, soft_body_get_collision_layer, RID)
+
+ EXBIND2(soft_body_set_collision_mask, RID, uint32_t)
+ EXBIND1RC(uint32_t, soft_body_get_collision_mask, RID)
+
+ EXBIND2(soft_body_add_collision_exception, RID, RID)
+ EXBIND2(soft_body_remove_collision_exception, RID, RID)
+
+ GDVIRTUAL1RC(TypedArray<RID>, _soft_body_get_collision_exceptions, RID)
+
+ void soft_body_get_collision_exceptions(RID p_soft_body, List<RID> *p_exceptions) override {
+ TypedArray<RID> ret;
+ GDVIRTUAL_REQUIRED_CALL(_soft_body_get_collision_exceptions, p_soft_body, ret);
+ for (int i = 0; i < ret.size(); i++) {
+ p_exceptions->push_back(ret[i]);
+ }
+ }
+
+ EXBIND3(soft_body_set_state, RID, BodyState, const Variant &)
+ EXBIND2RC(Variant, soft_body_get_state, RID, BodyState)
+
+ EXBIND2(soft_body_set_transform, RID, const Transform3D &)
+
+ EXBIND2(soft_body_set_simulation_precision, RID, int)
+ EXBIND1RC(int, soft_body_get_simulation_precision, RID)
+
+ EXBIND2(soft_body_set_total_mass, RID, real_t)
+ EXBIND1RC(real_t, soft_body_get_total_mass, RID)
+
+ EXBIND2(soft_body_set_linear_stiffness, RID, real_t)
+ EXBIND1RC(real_t, soft_body_get_linear_stiffness, RID)
+
+ EXBIND2(soft_body_set_pressure_coefficient, RID, real_t)
+ EXBIND1RC(real_t, soft_body_get_pressure_coefficient, RID)
+
+ EXBIND2(soft_body_set_damping_coefficient, RID, real_t)
+ EXBIND1RC(real_t, soft_body_get_damping_coefficient, RID)
+
+ EXBIND2(soft_body_set_drag_coefficient, RID, real_t)
+ EXBIND1RC(real_t, soft_body_get_drag_coefficient, RID)
+
+ EXBIND2(soft_body_set_mesh, RID, RID)
+
+ EXBIND1RC(AABB, soft_body_get_bounds, RID)
+
+ EXBIND3(soft_body_move_point, RID, int, const Vector3 &)
+ EXBIND2RC(Vector3, soft_body_get_point_global_position, RID, int)
+
+ EXBIND1(soft_body_remove_all_pinned_points, RID)
+ EXBIND3(soft_body_pin_point, RID, int, bool)
+ EXBIND2RC(bool, soft_body_is_point_pinned, RID, int)
+
+ /* JOINT API */
+
+ EXBIND0R(RID, joint_create)
+
+ EXBIND1(joint_clear, RID)
+
+ EXBIND5(joint_make_pin, RID, RID, const Vector3 &, RID, const Vector3 &)
+
+ EXBIND3(pin_joint_set_param, RID, PinJointParam, real_t)
+ EXBIND2RC(real_t, pin_joint_get_param, RID, PinJointParam)
+
+ EXBIND2(pin_joint_set_local_a, RID, const Vector3 &)
+ EXBIND1RC(Vector3, pin_joint_get_local_a, RID)
+
+ EXBIND2(pin_joint_set_local_b, RID, const Vector3 &)
+ EXBIND1RC(Vector3, pin_joint_get_local_b, RID)
+
+ EXBIND5(joint_make_hinge, RID, RID, const Transform3D &, RID, const Transform3D &)
+ EXBIND7(joint_make_hinge_simple, RID, RID, const Vector3 &, const Vector3 &, RID, const Vector3 &, const Vector3 &)
+
+ EXBIND3(hinge_joint_set_param, RID, HingeJointParam, real_t)
+ EXBIND2RC(real_t, hinge_joint_get_param, RID, HingeJointParam)
+
+ EXBIND3(hinge_joint_set_flag, RID, HingeJointFlag, bool)
+ EXBIND2RC(bool, hinge_joint_get_flag, RID, HingeJointFlag)
+
+ EXBIND5(joint_make_slider, RID, RID, const Transform3D &, RID, const Transform3D &)
+
+ EXBIND3(slider_joint_set_param, RID, SliderJointParam, real_t)
+ EXBIND2RC(real_t, slider_joint_get_param, RID, SliderJointParam)
+
+ EXBIND5(joint_make_cone_twist, RID, RID, const Transform3D &, RID, const Transform3D &)
+
+ EXBIND3(cone_twist_joint_set_param, RID, ConeTwistJointParam, real_t)
+ EXBIND2RC(real_t, cone_twist_joint_get_param, RID, ConeTwistJointParam)
+
+ EXBIND5(joint_make_generic_6dof, RID, RID, const Transform3D &, RID, const Transform3D &)
+
+ EXBIND4(generic_6dof_joint_set_param, RID, Vector3::Axis, G6DOFJointAxisParam, real_t)
+ EXBIND3RC(real_t, generic_6dof_joint_get_param, RID, Vector3::Axis, G6DOFJointAxisParam)
+
+ EXBIND4(generic_6dof_joint_set_flag, RID, Vector3::Axis, G6DOFJointAxisFlag, bool)
+ EXBIND3RC(bool, generic_6dof_joint_get_flag, RID, Vector3::Axis, G6DOFJointAxisFlag)
+
+ EXBIND1RC(JointType, joint_get_type, RID)
+
+ EXBIND2(joint_set_solver_priority, RID, int)
+ EXBIND1RC(int, joint_get_solver_priority, RID)
+
+ EXBIND2(joint_disable_collisions_between_bodies, RID, bool)
+ EXBIND1RC(bool, joint_is_disabled_collisions_between_bodies, RID)
+
+ /* MISC */
+
+ GDVIRTUAL1(_free_rid, RID)
+ virtual void free(RID p_rid) override {
+ GDVIRTUAL_REQUIRED_CALL(_free_rid, p_rid);
+ }
+
+ EXBIND1(set_active, bool)
+
+ EXBIND0(init)
+ EXBIND1(step, real_t)
+ EXBIND0(sync)
+ EXBIND0(end_sync)
+ EXBIND0(flush_queries)
+ EXBIND0(finish)
+
+ EXBIND0RC(bool, is_flushing_queries)
+ EXBIND1R(int, get_process_info, ProcessInfo)
+
+ PhysicsServer3DExtension();
+ ~PhysicsServer3DExtension();
+};
+
+#endif // PHYSICSSERVER3DEXTENSION_H
diff --git a/servers/navigation_server_2d.cpp b/servers/navigation_server_2d.cpp
index 85b12f1585..a92fe8c79a 100644
--- a/servers/navigation_server_2d.cpp
+++ b/servers/navigation_server_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -29,14 +29,11 @@
/*************************************************************************/
#include "servers/navigation_server_2d.h"
+
#include "core/math/transform_2d.h"
#include "core/math/transform_3d.h"
#include "servers/navigation_server_3d.h"
-/**
- @author AndreaCatania
-*/
-
NavigationServer2D *NavigationServer2D::singleton = nullptr;
#define FORWARD_0_C(FUNC_NAME) \
@@ -141,11 +138,11 @@ static Object *obj_to_obj(Object *d) {
return d;
}
-static StringName sn_to_sn(StringName &d) {
+static StringName sn_to_sn(const StringName &d) {
return d;
}
-static Variant var_to_var(Variant &d) {
+static Variant var_to_var(const Variant &d) {
return d;
}
@@ -196,7 +193,7 @@ void NavigationServer2D::_bind_methods() {
ClassDB::bind_method(D_METHOD("agent_is_map_changed", "agent"), &NavigationServer2D::agent_is_map_changed);
ClassDB::bind_method(D_METHOD("agent_set_callback", "agent", "receiver", "method", "userdata"), &NavigationServer2D::agent_set_callback, DEFVAL(Variant()));
- ClassDB::bind_method(D_METHOD("free", "object"), &NavigationServer2D::free);
+ ClassDB::bind_method(D_METHOD("free_rid", "rid"), &NavigationServer2D::free);
ADD_SIGNAL(MethodInfo("map_changed", PropertyInfo(Variant::RID, "map")));
}
@@ -204,7 +201,7 @@ void NavigationServer2D::_bind_methods() {
NavigationServer2D::NavigationServer2D() {
singleton = this;
ERR_FAIL_COND_MSG(!NavigationServer3D::get_singleton(), "The Navigation3D singleton should be initialized before the 2D one.");
- NavigationServer3D::get_singleton()->connect("map_changed", callable_mp(this, &NavigationServer2D::_emit_map_changed));
+ NavigationServer3D::get_singleton_mut()->connect("map_changed", callable_mp(this, &NavigationServer2D::_emit_map_changed));
}
NavigationServer2D::~NavigationServer2D() {
diff --git a/servers/navigation_server_2d.h b/servers/navigation_server_2d.h
index d56c719839..7350eeb5b1 100644
--- a/servers/navigation_server_2d.h
+++ b/servers/navigation_server_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,12 +28,8 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-/**
- @author AndreaCatania
-*/
-
-#ifndef NAVIGATION_2D_SERVER_H
-#define NAVIGATION_2D_SERVER_H
+#ifndef NAVIGATION_SERVER_2D_H
+#define NAVIGATION_SERVER_2D_H
#include "core/object/class_db.h"
#include "core/templates/rid.h"
@@ -52,7 +48,7 @@ protected:
public:
/// Thread safe, can be used across many threads.
- static NavigationServer2D *get_singleton() { return singleton; }
+ static const NavigationServer2D *get_singleton() { return singleton; }
/// MUST be used in single thread!
static NavigationServer2D *get_singleton_mut() { return singleton; }
@@ -171,4 +167,4 @@ public:
virtual ~NavigationServer2D();
};
-#endif
+#endif // NAVIGATION_SERVER_2D_H
diff --git a/servers/navigation_server_3d.cpp b/servers/navigation_server_3d.cpp
index b0047a250a..46192772f6 100644
--- a/servers/navigation_server_3d.cpp
+++ b/servers/navigation_server_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,10 +28,6 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-/**
- @author AndreaCatania
-*/
-
#include "navigation_server_3d.h"
NavigationServer3D *NavigationServer3D::singleton = nullptr;
@@ -76,7 +72,7 @@ void NavigationServer3D::_bind_methods() {
ClassDB::bind_method(D_METHOD("agent_is_map_changed", "agent"), &NavigationServer3D::agent_is_map_changed);
ClassDB::bind_method(D_METHOD("agent_set_callback", "agent", "receiver", "method", "userdata"), &NavigationServer3D::agent_set_callback, DEFVAL(Variant()));
- ClassDB::bind_method(D_METHOD("free", "object"), &NavigationServer3D::free);
+ ClassDB::bind_method(D_METHOD("free_rid", "rid"), &NavigationServer3D::free);
ClassDB::bind_method(D_METHOD("set_active", "active"), &NavigationServer3D::set_active);
ClassDB::bind_method(D_METHOD("process", "delta_time"), &NavigationServer3D::process);
@@ -84,7 +80,7 @@ void NavigationServer3D::_bind_methods() {
ADD_SIGNAL(MethodInfo("map_changed", PropertyInfo(Variant::RID, "map")));
}
-NavigationServer3D *NavigationServer3D::get_singleton() {
+const NavigationServer3D *NavigationServer3D::get_singleton() {
return singleton;
}
diff --git a/servers/navigation_server_3d.h b/servers/navigation_server_3d.h
index 3aef693ac8..0a75b07931 100644
--- a/servers/navigation_server_3d.h
+++ b/servers/navigation_server_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,12 +28,8 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-/**
- @author AndreaCatania
-*/
-
-#ifndef NAVIGATION_SERVER_H
-#define NAVIGATION_SERVER_H
+#ifndef NAVIGATION_SERVER_3D_H
+#define NAVIGATION_SERVER_3D_H
#include "core/object/class_db.h"
#include "core/templates/rid.h"
@@ -55,7 +51,7 @@ protected:
public:
/// Thread safe, can be used across many threads.
- static NavigationServer3D *get_singleton();
+ static const NavigationServer3D *get_singleton();
/// MUST be used in single thread!
static NavigationServer3D *get_singleton_mut();
@@ -205,4 +201,4 @@ public:
static NavigationServer3D *new_default_server();
};
-#endif
+#endif // NAVIGATION_SERVER_3D_H
diff --git a/servers/physics_2d/godot_area_2d.cpp b/servers/physics_2d/godot_area_2d.cpp
index c4060615c9..9937178550 100644
--- a/servers/physics_2d/godot_area_2d.cpp
+++ b/servers/physics_2d/godot_area_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_area_2d.h b/servers/physics_2d/godot_area_2d.h
index 699c1c1bc8..dadd9747b1 100644
--- a/servers/physics_2d/godot_area_2d.h
+++ b/servers/physics_2d/godot_area_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -96,7 +96,7 @@ class GodotArea2D : public GodotCollisionObject2D {
Set<GodotConstraint2D *> constraints;
- virtual void _shapes_changed();
+ virtual void _shapes_changed() override;
void _queue_monitor_update();
void _set_space_override_mode(PhysicsServer2D::AreaSpaceOverrideMode &r_mode, PhysicsServer2D::AreaSpaceOverrideMode p_new_mode);
@@ -151,7 +151,7 @@ public:
void set_transform(const Transform2D &p_transform);
- void set_space(GodotSpace2D *p_space);
+ void set_space(GodotSpace2D *p_space) override;
void call_queries();
diff --git a/servers/physics_2d/godot_area_pair_2d.cpp b/servers/physics_2d/godot_area_pair_2d.cpp
index bde22aab11..72208d7dff 100644
--- a/servers/physics_2d/godot_area_pair_2d.cpp
+++ b/servers/physics_2d/godot_area_pair_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_area_pair_2d.h b/servers/physics_2d/godot_area_pair_2d.h
index f1290a27d0..ef6c774bc3 100644
--- a/servers/physics_2d/godot_area_pair_2d.h
+++ b/servers/physics_2d/godot_area_pair_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_body_2d.cpp b/servers/physics_2d/godot_body_2d.cpp
index 886fe4af0f..6873504f70 100644
--- a/servers/physics_2d/godot_body_2d.cpp
+++ b/servers/physics_2d/godot_body_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_body_2d.h b/servers/physics_2d/godot_body_2d.h
index 9902da9b46..4b87a69d5c 100644
--- a/servers/physics_2d/godot_body_2d.h
+++ b/servers/physics_2d/godot_body_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -103,7 +103,7 @@ class GodotBody2D : public GodotCollisionObject2D {
bool can_sleep = true;
bool first_time_kinematic = false;
void _mass_properties_changed();
- virtual void _shapes_changed();
+ virtual void _shapes_changed() override;
Transform2D new_transform;
List<Pair<GodotConstraint2D *, int>> constraint_list;
@@ -302,7 +302,7 @@ public:
_FORCE_INLINE_ void set_continuous_collision_detection_mode(PhysicsServer2D::CCDMode p_mode) { continuous_cd_mode = p_mode; }
_FORCE_INLINE_ PhysicsServer2D::CCDMode get_continuous_collision_detection_mode() const { return continuous_cd_mode; }
- void set_space(GodotSpace2D *p_space);
+ void set_space(GodotSpace2D *p_space) override;
void update_mass_properties();
void reset_mass_properties();
diff --git a/servers/physics_2d/godot_body_direct_state_2d.cpp b/servers/physics_2d/godot_body_direct_state_2d.cpp
index 2843466e01..cde6e8c991 100644
--- a/servers/physics_2d/godot_body_direct_state_2d.cpp
+++ b/servers/physics_2d/godot_body_direct_state_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_body_direct_state_2d.h b/servers/physics_2d/godot_body_direct_state_2d.h
index bc6038f7e8..a2c0a87989 100644
--- a/servers/physics_2d/godot_body_direct_state_2d.h
+++ b/servers/physics_2d/godot_body_direct_state_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_body_pair_2d.cpp b/servers/physics_2d/godot_body_pair_2d.cpp
index ca67277d1c..2f2af15da7 100644
--- a/servers/physics_2d/godot_body_pair_2d.cpp
+++ b/servers/physics_2d/godot_body_pair_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -29,6 +29,7 @@
/*************************************************************************/
#include "godot_body_pair_2d.h"
+
#include "godot_collision_solver_2d.h"
#include "godot_space_2d.h"
@@ -38,7 +39,7 @@
#define MAX_BIAS_ROTATION (Math_PI / 8)
void GodotBodyPair2D::_add_contact(const Vector2 &p_point_A, const Vector2 &p_point_B, void *p_self) {
- GodotBodyPair2D *self = (GodotBodyPair2D *)p_self;
+ GodotBodyPair2D *self = static_cast<GodotBodyPair2D *>(p_self);
self->_contact_added_callback(p_point_A, p_point_B);
}
@@ -202,7 +203,7 @@ bool GodotBodyPair2D::_test_ccd(real_t p_step, GodotBody2D *p_A, int p_shape_A,
// Check one-way collision based on motion direction.
if (p_A->get_shape(p_shape_A)->allows_one_way_collision() && p_B->is_shape_set_as_one_way_collision(p_shape_B)) {
- Vector2 direction = p_xform_B.get_axis(1).normalized();
+ Vector2 direction = p_xform_B.columns[1].normalized();
if (direction.dot(mnormal) < CMP_EPSILON) {
collided = false;
oneway_disabled = true;
@@ -259,7 +260,7 @@ bool GodotBodyPair2D::setup(real_t p_step) {
Transform2D xform_A = xform_Au * A->get_shape_transform(shape_A);
Transform2D xform_Bu = B->get_transform();
- xform_Bu.elements[2] -= offset_A;
+ xform_Bu.columns[2] -= offset_A;
Transform2D xform_B = xform_Bu * B->get_shape_transform(shape_B);
GodotShape2D *shape_A_ptr = A->get_shape(shape_A);
@@ -299,11 +300,11 @@ bool GodotBodyPair2D::setup(real_t p_step) {
if (!prev_collided) {
if (shape_B_ptr->allows_one_way_collision() && A->is_shape_set_as_one_way_collision(shape_A)) {
- Vector2 direction = xform_A.get_axis(1).normalized();
+ Vector2 direction = xform_A.columns[1].normalized();
bool valid = false;
for (int i = 0; i < contact_count; i++) {
Contact &c = contacts[i];
- if (c.normal.dot(direction) > -CMP_EPSILON) { //greater (normal inverted)
+ if (c.normal.dot(direction) > -CMP_EPSILON) { // Greater (normal inverted).
continue;
}
valid = true;
@@ -317,11 +318,11 @@ bool GodotBodyPair2D::setup(real_t p_step) {
}
if (shape_A_ptr->allows_one_way_collision() && B->is_shape_set_as_one_way_collision(shape_B)) {
- Vector2 direction = xform_B.get_axis(1).normalized();
+ Vector2 direction = xform_B.columns[1].normalized();
bool valid = false;
for (int i = 0; i < contact_count; i++) {
Contact &c = contacts[i];
- if (c.normal.dot(direction) < CMP_EPSILON) { //less (normal ok)
+ if (c.normal.dot(direction) < CMP_EPSILON) { // Less (normal ok).
continue;
}
valid = true;
@@ -350,7 +351,7 @@ bool GodotBodyPair2D::pre_solve(real_t p_step) {
Transform2D xform_A = xform_Au * A->get_shape_transform(shape_A);
Transform2D xform_Bu = B->get_transform();
- xform_Bu.elements[2] -= offset_A;
+ xform_Bu.columns[2] -= offset_A;
Transform2D xform_B = xform_Bu * B->get_shape_transform(shape_B);
if (A->get_continuous_collision_detection_mode() == PhysicsServer2D::CCD_MODE_CAST_RAY && collide_A) {
diff --git a/servers/physics_2d/godot_body_pair_2d.h b/servers/physics_2d/godot_body_pair_2d.h
index 0a086a78b1..1c0f61be26 100644
--- a/servers/physics_2d/godot_body_pair_2d.h
+++ b/servers/physics_2d/godot_body_pair_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_broad_phase_2d.cpp b/servers/physics_2d/godot_broad_phase_2d.cpp
index 4b35f8d996..e734c24f88 100644
--- a/servers/physics_2d/godot_broad_phase_2d.cpp
+++ b/servers/physics_2d/godot_broad_phase_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_broad_phase_2d.h b/servers/physics_2d/godot_broad_phase_2d.h
index 7017a6e41f..abab087045 100644
--- a/servers/physics_2d/godot_broad_phase_2d.h
+++ b/servers/physics_2d/godot_broad_phase_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_broad_phase_2d_bvh.cpp b/servers/physics_2d/godot_broad_phase_2d_bvh.cpp
index 9ec6b0a6b7..c545fec113 100644
--- a/servers/physics_2d/godot_broad_phase_2d_bvh.cpp
+++ b/servers/physics_2d/godot_broad_phase_2d_bvh.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -32,47 +32,57 @@
#include "godot_collision_object_2d.h"
GodotBroadPhase2D::ID GodotBroadPhase2DBVH::create(GodotCollisionObject2D *p_object, int p_subindex, const Rect2 &p_aabb, bool p_static) {
- ID oid = bvh.create(p_object, true, p_aabb, p_subindex, !p_static, 1 << p_object->get_type(), p_static ? 0 : 0xFFFFF); // Pair everything, don't care?
+ uint32_t tree_id = p_static ? TREE_STATIC : TREE_DYNAMIC;
+ uint32_t tree_collision_mask = p_static ? TREE_FLAG_DYNAMIC : (TREE_FLAG_STATIC | TREE_FLAG_DYNAMIC);
+ ID oid = bvh.create(p_object, true, tree_id, tree_collision_mask, p_aabb, p_subindex); // Pair everything, don't care?
return oid + 1;
}
void GodotBroadPhase2DBVH::move(ID p_id, const Rect2 &p_aabb) {
+ ERR_FAIL_COND(!p_id);
bvh.move(p_id - 1, p_aabb);
}
void GodotBroadPhase2DBVH::set_static(ID p_id, bool p_static) {
- GodotCollisionObject2D *it = bvh.get(p_id - 1);
- bvh.set_pairable(p_id - 1, !p_static, 1 << it->get_type(), p_static ? 0 : 0xFFFFF, false); // Pair everything, don't care?
+ ERR_FAIL_COND(!p_id);
+ uint32_t tree_id = p_static ? TREE_STATIC : TREE_DYNAMIC;
+ uint32_t tree_collision_mask = p_static ? TREE_FLAG_DYNAMIC : (TREE_FLAG_STATIC | TREE_FLAG_DYNAMIC);
+ bvh.set_tree(p_id - 1, tree_id, tree_collision_mask, false);
}
void GodotBroadPhase2DBVH::remove(ID p_id) {
+ ERR_FAIL_COND(!p_id);
bvh.erase(p_id - 1);
}
GodotCollisionObject2D *GodotBroadPhase2DBVH::get_object(ID p_id) const {
+ ERR_FAIL_COND_V(!p_id, nullptr);
GodotCollisionObject2D *it = bvh.get(p_id - 1);
ERR_FAIL_COND_V(!it, nullptr);
return it;
}
bool GodotBroadPhase2DBVH::is_static(ID p_id) const {
- return !bvh.is_pairable(p_id - 1);
+ ERR_FAIL_COND_V(!p_id, false);
+ uint32_t tree_id = bvh.get_tree_id(p_id - 1);
+ return tree_id == 0;
}
int GodotBroadPhase2DBVH::get_subindex(ID p_id) const {
+ ERR_FAIL_COND_V(!p_id, 0);
return bvh.get_subindex(p_id - 1);
}
int GodotBroadPhase2DBVH::cull_segment(const Vector2 &p_from, const Vector2 &p_to, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices) {
- return bvh.cull_segment(p_from, p_to, p_results, p_max_results, p_result_indices);
+ return bvh.cull_segment(p_from, p_to, p_results, p_max_results, nullptr, 0xFFFFFFFF, p_result_indices);
}
int GodotBroadPhase2DBVH::cull_aabb(const Rect2 &p_aabb, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices) {
- return bvh.cull_aabb(p_aabb, p_results, p_max_results, p_result_indices);
+ return bvh.cull_aabb(p_aabb, p_results, p_max_results, nullptr, 0xFFFFFFFF, p_result_indices);
}
void *GodotBroadPhase2DBVH::_pair_callback(void *self, uint32_t p_A, GodotCollisionObject2D *p_object_A, int subindex_A, uint32_t p_B, GodotCollisionObject2D *p_object_B, int subindex_B) {
- GodotBroadPhase2DBVH *bpo = (GodotBroadPhase2DBVH *)(self);
+ GodotBroadPhase2DBVH *bpo = static_cast<GodotBroadPhase2DBVH *>(self);
if (!bpo->pair_callback) {
return nullptr;
}
@@ -81,7 +91,7 @@ void *GodotBroadPhase2DBVH::_pair_callback(void *self, uint32_t p_A, GodotCollis
}
void GodotBroadPhase2DBVH::_unpair_callback(void *self, uint32_t p_A, GodotCollisionObject2D *p_object_A, int subindex_A, uint32_t p_B, GodotCollisionObject2D *p_object_B, int subindex_B, void *pairdata) {
- GodotBroadPhase2DBVH *bpo = (GodotBroadPhase2DBVH *)(self);
+ GodotBroadPhase2DBVH *bpo = static_cast<GodotBroadPhase2DBVH *>(self);
if (!bpo->unpair_callback) {
return;
}
diff --git a/servers/physics_2d/godot_broad_phase_2d_bvh.h b/servers/physics_2d/godot_broad_phase_2d_bvh.h
index 19b49f3499..512111f948 100644
--- a/servers/physics_2d/godot_broad_phase_2d_bvh.h
+++ b/servers/physics_2d/godot_broad_phase_2d_bvh.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -38,7 +38,34 @@
#include "core/math/vector2.h"
class GodotBroadPhase2DBVH : public GodotBroadPhase2D {
- BVH_Manager<GodotCollisionObject2D, true, 128, Rect2, Vector2> bvh;
+ template <class T>
+ class UserPairTestFunction {
+ public:
+ static bool user_pair_check(const T *p_a, const T *p_b) {
+ // return false if no collision, decided by masks etc
+ return p_a->interacts_with(p_b);
+ }
+ };
+
+ template <class T>
+ class UserCullTestFunction {
+ public:
+ static bool user_cull_check(const T *p_a, const T *p_b) {
+ return true;
+ }
+ };
+
+ enum Tree {
+ TREE_STATIC = 0,
+ TREE_DYNAMIC = 1,
+ };
+
+ enum TreeFlag {
+ TREE_FLAG_STATIC = 1 << TREE_STATIC,
+ TREE_FLAG_DYNAMIC = 1 << TREE_DYNAMIC,
+ };
+
+ BVH_Manager<GodotCollisionObject2D, 2, true, 128, UserPairTestFunction<GodotCollisionObject2D>, UserCullTestFunction<GodotCollisionObject2D>, Rect2, Vector2> bvh;
static void *_pair_callback(void *, uint32_t, GodotCollisionObject2D *, int, uint32_t, GodotCollisionObject2D *, int);
static void _unpair_callback(void *, uint32_t, GodotCollisionObject2D *, int, uint32_t, GodotCollisionObject2D *, int, void *);
@@ -50,22 +77,22 @@ class GodotBroadPhase2DBVH : public GodotBroadPhase2D {
public:
// 0 is an invalid ID
- virtual ID create(GodotCollisionObject2D *p_object, int p_subindex = 0, const Rect2 &p_aabb = Rect2(), bool p_static = false);
- virtual void move(ID p_id, const Rect2 &p_aabb);
- virtual void set_static(ID p_id, bool p_static);
- virtual void remove(ID p_id);
+ virtual ID create(GodotCollisionObject2D *p_object, int p_subindex = 0, const Rect2 &p_aabb = Rect2(), bool p_static = false) override;
+ virtual void move(ID p_id, const Rect2 &p_aabb) override;
+ virtual void set_static(ID p_id, bool p_static) override;
+ virtual void remove(ID p_id) override;
- virtual GodotCollisionObject2D *get_object(ID p_id) const;
- virtual bool is_static(ID p_id) const;
- virtual int get_subindex(ID p_id) const;
+ virtual GodotCollisionObject2D *get_object(ID p_id) const override;
+ virtual bool is_static(ID p_id) const override;
+ virtual int get_subindex(ID p_id) const override;
- virtual int cull_segment(const Vector2 &p_from, const Vector2 &p_to, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices = nullptr);
- virtual int cull_aabb(const Rect2 &p_aabb, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices = nullptr);
+ virtual int cull_segment(const Vector2 &p_from, const Vector2 &p_to, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices = nullptr) override;
+ virtual int cull_aabb(const Rect2 &p_aabb, GodotCollisionObject2D **p_results, int p_max_results, int *p_result_indices = nullptr) override;
- virtual void set_pair_callback(PairCallback p_pair_callback, void *p_userdata);
- virtual void set_unpair_callback(UnpairCallback p_unpair_callback, void *p_userdata);
+ virtual void set_pair_callback(PairCallback p_pair_callback, void *p_userdata) override;
+ virtual void set_unpair_callback(UnpairCallback p_unpair_callback, void *p_userdata) override;
- virtual void update();
+ virtual void update() override;
static GodotBroadPhase2D *_create();
GodotBroadPhase2DBVH();
diff --git a/servers/physics_2d/godot_collision_object_2d.cpp b/servers/physics_2d/godot_collision_object_2d.cpp
index 719d9c874a..35027e0f69 100644
--- a/servers/physics_2d/godot_collision_object_2d.cpp
+++ b/servers/physics_2d/godot_collision_object_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_collision_object_2d.h b/servers/physics_2d/godot_collision_object_2d.h
index 7233857808..1a683a7b0f 100644
--- a/servers/physics_2d/godot_collision_object_2d.h
+++ b/servers/physics_2d/godot_collision_object_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -104,7 +104,7 @@ public:
_FORCE_INLINE_ void set_canvas_instance_id(const ObjectID &p_canvas_instance_id) { canvas_instance_id = p_canvas_instance_id; }
_FORCE_INLINE_ ObjectID get_canvas_instance_id() const { return canvas_instance_id; }
- void _shape_changed();
+ void _shape_changed() override;
_FORCE_INLINE_ Type get_type() const { return type; }
void add_shape(GodotShape2D *p_shape, const Transform2D &p_transform = Transform2D(), bool p_disabled = false);
@@ -166,7 +166,7 @@ public:
}
_FORCE_INLINE_ uint32_t get_collision_layer() const { return collision_layer; }
- void remove_shape(GodotShape2D *p_shape);
+ void remove_shape(GodotShape2D *p_shape) override;
void remove_shape(int p_index);
virtual void set_space(GodotSpace2D *p_space) = 0;
@@ -180,7 +180,7 @@ public:
return p_other->collision_layer & collision_mask;
}
- _FORCE_INLINE_ bool interacts_with(GodotCollisionObject2D *p_other) const {
+ _FORCE_INLINE_ bool interacts_with(const GodotCollisionObject2D *p_other) const {
return collision_layer & p_other->collision_mask || p_other->collision_layer & collision_mask;
}
diff --git a/servers/physics_2d/godot_collision_solver_2d.cpp b/servers/physics_2d/godot_collision_solver_2d.cpp
index 25371b9885..0d7b42b80d 100644
--- a/servers/physics_2d/godot_collision_solver_2d.cpp
+++ b/servers/physics_2d/godot_collision_solver_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -140,7 +140,7 @@ struct _ConcaveCollisionInfo2D {
Vector2 motion_B;
real_t margin_A = 0.0;
real_t margin_B = 0.0;
- GodotCollisionSolver2D::CallbackResult result_callback;
+ GodotCollisionSolver2D::CallbackResult result_callback = nullptr;
void *userdata = nullptr;
bool swap_result = false;
bool collided = false;
@@ -150,7 +150,7 @@ struct _ConcaveCollisionInfo2D {
};
bool GodotCollisionSolver2D::concave_callback(void *p_userdata, GodotShape2D *p_convex) {
- _ConcaveCollisionInfo2D &cinfo = *(_ConcaveCollisionInfo2D *)(p_userdata);
+ _ConcaveCollisionInfo2D &cinfo = *(static_cast<_ConcaveCollisionInfo2D *>(p_userdata));
cinfo.aabb_tests++;
bool collided = collision_solver(cinfo.shape_A, *cinfo.transform_A, cinfo.motion_A, p_convex, *cinfo.transform_B, cinfo.motion_B, cinfo.result_callback, cinfo.userdata, cinfo.swap_result, cinfo.sep_axis, cinfo.margin_A, cinfo.margin_B);
@@ -185,13 +185,13 @@ bool GodotCollisionSolver2D::solve_concave(const GodotShape2D *p_shape_A, const
cinfo.aabb_tests = 0;
Transform2D rel_transform = p_transform_A;
- rel_transform.elements[2] -= p_transform_B.get_origin();
+ rel_transform.columns[2] -= p_transform_B.get_origin();
//quickly compute a local Rect2
Rect2 local_aabb;
for (int i = 0; i < 2; i++) {
- Vector2 axis(p_transform_B.elements[i]);
+ Vector2 axis(p_transform_B.columns[i]);
real_t axis_scale = 1.0 / axis.length();
axis *= axis_scale;
diff --git a/servers/physics_2d/godot_collision_solver_2d.h b/servers/physics_2d/godot_collision_solver_2d.h
index f10815a444..bd90641f04 100644
--- a/servers/physics_2d/godot_collision_solver_2d.h
+++ b/servers/physics_2d/godot_collision_solver_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_collision_solver_2d_sat.cpp b/servers/physics_2d/godot_collision_solver_2d_sat.cpp
index 63053e8259..77186d3810 100644
--- a/servers/physics_2d/godot_collision_solver_2d_sat.cpp
+++ b/servers/physics_2d/godot_collision_solver_2d_sat.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,7 +33,7 @@
#include "core/math/geometry_2d.h"
struct _CollectorCallback2D {
- GodotCollisionSolver2D::CallbackResult callback;
+ GodotCollisionSolver2D::CallbackResult callback = nullptr;
void *userdata = nullptr;
bool swap = false;
bool collided = false;
@@ -41,10 +41,6 @@ struct _CollectorCallback2D {
Vector2 *sep_axis = nullptr;
_FORCE_INLINE_ void call(const Vector2 &p_point_A, const Vector2 &p_point_B) {
- /*
- if (normal.dot(p_point_A) >= normal.dot(p_point_B))
- return;
- */
if (swap) {
callback(p_point_B, p_point_A, userdata);
} else {
@@ -481,11 +477,11 @@ static void _collision_segment_rectangle(const GodotShape2D *p_a, const Transfor
return;
}
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_b.elements[1].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[1].normalized())) {
return;
}
@@ -552,22 +548,22 @@ static void _collision_segment_capsule(const GodotShape2D *p_a, const Transform2
return;
}
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
real_t capsule_dir = capsule_B->get_height() * 0.5 - capsule_B->get_radius();
- if (TEST_POINT(p_transform_a.xform(segment_A->get_a()), (p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.xform(segment_A->get_a()), (p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir))) {
return;
}
- if (TEST_POINT(p_transform_a.xform(segment_A->get_a()), (p_transform_b.get_origin() - p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.xform(segment_A->get_a()), (p_transform_b.get_origin() - p_transform_b.columns[1] * capsule_dir))) {
return;
}
- if (TEST_POINT(p_transform_a.xform(segment_A->get_b()), (p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.xform(segment_A->get_b()), (p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir))) {
return;
}
- if (TEST_POINT(p_transform_a.xform(segment_A->get_b()), (p_transform_b.get_origin() - p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.xform(segment_A->get_b()), (p_transform_b.get_origin() - p_transform_b.columns[1] * capsule_dir))) {
return;
}
@@ -650,8 +646,8 @@ static void _collision_circle_rectangle(const GodotShape2D *p_a, const Transform
return;
}
- const Vector2 &sphere = p_transform_a.elements[2];
- const Vector2 *axis = &p_transform_b.elements[0];
+ const Vector2 &sphere = p_transform_a.columns[2];
+ const Vector2 *axis = &p_transform_b.columns[0];
//const Vector2& half_extents = rectangle_B->get_half_extents();
if (!separator.test_axis(axis[0].normalized())) {
@@ -709,17 +705,17 @@ static void _collision_circle_capsule(const GodotShape2D *p_a, const Transform2D
}
//capsule axis
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
real_t capsule_dir = capsule_B->get_height() * 0.5 - capsule_B->get_radius();
//capsule endpoints
- if (TEST_POINT(p_transform_a.get_origin(), (p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.get_origin(), (p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir))) {
return;
}
- if (TEST_POINT(p_transform_a.get_origin(), (p_transform_b.get_origin() - p_transform_b.elements[1] * capsule_dir))) {
+ if (TEST_POINT(p_transform_a.get_origin(), (p_transform_b.get_origin() - p_transform_b.columns[1] * capsule_dir))) {
return;
}
@@ -773,20 +769,20 @@ static void _collision_rectangle_rectangle(const GodotShape2D *p_a, const Transf
}
//box faces A
- if (!separator.test_axis(p_transform_a.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_a.elements[1].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[1].normalized())) {
return;
}
//box faces B
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_b.elements[1].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[1].normalized())) {
return;
}
@@ -800,10 +796,10 @@ static void _collision_rectangle_rectangle(const GodotShape2D *p_a, const Transf
if (castA || castB) {
Transform2D aofs = p_transform_a;
- aofs.elements[2] += p_motion_a;
+ aofs.columns[2] += p_motion_a;
Transform2D bofs = p_transform_b;
- bofs.elements[2] += p_motion_b;
+ bofs.columns[2] += p_motion_b;
Transform2D aofsinv = aofs.affine_inverse();
Transform2D bofsinv = bofs.affine_inverse();
@@ -847,16 +843,16 @@ static void _collision_rectangle_capsule(const GodotShape2D *p_a, const Transfor
}
//box faces
- if (!separator.test_axis(p_transform_a.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_a.elements[1].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[1].normalized())) {
return;
}
//capsule axis
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
@@ -868,7 +864,7 @@ static void _collision_rectangle_capsule(const GodotShape2D *p_a, const Transfor
for (int i = 0; i < 2; i++) {
{
- Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir;
+ Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir;
if (!separator.test_axis(rectangle_A->get_circle_axis(p_transform_a, boxinv, capsule_endpoint))) {
return;
@@ -876,7 +872,7 @@ static void _collision_rectangle_capsule(const GodotShape2D *p_a, const Transfor
}
if (castA) {
- Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir;
+ Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir;
capsule_endpoint -= p_motion_a;
if (!separator.test_axis(rectangle_A->get_circle_axis(p_transform_a, boxinv, capsule_endpoint))) {
@@ -885,7 +881,7 @@ static void _collision_rectangle_capsule(const GodotShape2D *p_a, const Transfor
}
if (castB) {
- Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir;
+ Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir;
capsule_endpoint += p_motion_b;
if (!separator.test_axis(rectangle_A->get_circle_axis(p_transform_a, boxinv, capsule_endpoint))) {
@@ -894,7 +890,7 @@ static void _collision_rectangle_capsule(const GodotShape2D *p_a, const Transfor
}
if (castA && castB) {
- Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir;
+ Vector2 capsule_endpoint = p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir;
capsule_endpoint -= p_motion_a;
capsule_endpoint += p_motion_b;
@@ -925,11 +921,11 @@ static void _collision_rectangle_convex_polygon(const GodotShape2D *p_a, const T
}
//box faces
- if (!separator.test_axis(p_transform_a.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_a.elements[1].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[1].normalized())) {
return;
}
@@ -988,11 +984,11 @@ static void _collision_capsule_capsule(const GodotShape2D *p_a, const Transform2
//capsule axis
- if (!separator.test_axis(p_transform_b.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_b.columns[0].normalized())) {
return;
}
- if (!separator.test_axis(p_transform_a.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[0].normalized())) {
return;
}
@@ -1000,11 +996,11 @@ static void _collision_capsule_capsule(const GodotShape2D *p_a, const Transform2
real_t capsule_dir_A = capsule_A->get_height() * 0.5 - capsule_A->get_radius();
for (int i = 0; i < 2; i++) {
- Vector2 capsule_endpoint_A = p_transform_a.get_origin() + p_transform_a.elements[1] * capsule_dir_A;
+ Vector2 capsule_endpoint_A = p_transform_a.get_origin() + p_transform_a.columns[1] * capsule_dir_A;
real_t capsule_dir_B = capsule_B->get_height() * 0.5 - capsule_B->get_radius();
for (int j = 0; j < 2; j++) {
- Vector2 capsule_endpoint_B = p_transform_b.get_origin() + p_transform_b.elements[1] * capsule_dir_B;
+ Vector2 capsule_endpoint_B = p_transform_b.get_origin() + p_transform_b.columns[1] * capsule_dir_B;
if (TEST_POINT(capsule_endpoint_A, capsule_endpoint_B)) {
return;
@@ -1036,7 +1032,7 @@ static void _collision_capsule_convex_polygon(const GodotShape2D *p_a, const Tra
//capsule axis
- if (!separator.test_axis(p_transform_a.elements[0].normalized())) {
+ if (!separator.test_axis(p_transform_a.columns[0].normalized())) {
return;
}
@@ -1046,7 +1042,7 @@ static void _collision_capsule_convex_polygon(const GodotShape2D *p_a, const Tra
real_t capsule_dir = capsule_A->get_height() * 0.5 - capsule_A->get_radius();
for (int j = 0; j < 2; j++) {
- Vector2 capsule_endpoint_A = p_transform_a.get_origin() + p_transform_a.elements[1] * capsule_dir;
+ Vector2 capsule_endpoint_A = p_transform_a.get_origin() + p_transform_a.columns[1] * capsule_dir;
if (TEST_POINT(capsule_endpoint_A, cpoint)) {
return;
diff --git a/servers/physics_2d/godot_collision_solver_2d_sat.h b/servers/physics_2d/godot_collision_solver_2d_sat.h
index 1517b90a19..3d8e29c41a 100644
--- a/servers/physics_2d/godot_collision_solver_2d_sat.h
+++ b/servers/physics_2d/godot_collision_solver_2d_sat.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_constraint_2d.h b/servers/physics_2d/godot_constraint_2d.h
index 84f975e583..d9bf035c2b 100644
--- a/servers/physics_2d/godot_constraint_2d.h
+++ b/servers/physics_2d/godot_constraint_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_joints_2d.cpp b/servers/physics_2d/godot_joints_2d.cpp
index 7c08c2f4b4..0c21b08ea9 100644
--- a/servers/physics_2d/godot_joints_2d.cpp
+++ b/servers/physics_2d/godot_joints_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -118,22 +118,26 @@ bool GodotPinJoint2D::setup(real_t p_step) {
K1[0].y = 0.0f;
K1[1].y = A->get_inv_mass() + B_inv_mass;
+ Vector2 r1 = rA - A->get_center_of_mass();
+
Transform2D K2;
- K2[0].x = A->get_inv_inertia() * rA.y * rA.y;
- K2[1].x = -A->get_inv_inertia() * rA.x * rA.y;
- K2[0].y = -A->get_inv_inertia() * rA.x * rA.y;
- K2[1].y = A->get_inv_inertia() * rA.x * rA.x;
+ K2[0].x = A->get_inv_inertia() * r1.y * r1.y;
+ K2[1].x = -A->get_inv_inertia() * r1.x * r1.y;
+ K2[0].y = -A->get_inv_inertia() * r1.x * r1.y;
+ K2[1].y = A->get_inv_inertia() * r1.x * r1.x;
Transform2D K;
K[0] = K1[0] + K2[0];
K[1] = K1[1] + K2[1];
if (B) {
+ Vector2 r2 = rB - B->get_center_of_mass();
+
Transform2D K3;
- K3[0].x = B->get_inv_inertia() * rB.y * rB.y;
- K3[1].x = -B->get_inv_inertia() * rB.x * rB.y;
- K3[0].y = -B->get_inv_inertia() * rB.x * rB.y;
- K3[1].y = B->get_inv_inertia() * rB.x * rB.x;
+ K3[0].x = B->get_inv_inertia() * r2.y * r2.y;
+ K3[1].x = -B->get_inv_inertia() * r2.x * r2.y;
+ K3[0].y = -B->get_inv_inertia() * r2.x * r2.y;
+ K3[1].y = B->get_inv_inertia() * r2.x * r2.x;
K[0] += K3[0];
K[1] += K3[1];
diff --git a/servers/physics_2d/godot_joints_2d.h b/servers/physics_2d/godot_joints_2d.h
index 4c97190d01..acaaf0f629 100644
--- a/servers/physics_2d/godot_joints_2d.h
+++ b/servers/physics_2d/godot_joints_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_physics_server_2d.cpp b/servers/physics_2d/godot_physics_server_2d.cpp
index a1b2d8c3e0..650a95c914 100644
--- a/servers/physics_2d/godot_physics_server_2d.cpp
+++ b/servers/physics_2d/godot_physics_server_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -144,7 +144,7 @@ real_t GodotPhysicsServer2D::shape_get_custom_solver_bias(RID p_shape) const {
}
void GodotPhysicsServer2D::_shape_col_cbk(const Vector2 &p_point_A, const Vector2 &p_point_B, void *p_userdata) {
- CollCbkData *cbk = (CollCbkData *)p_userdata;
+ CollCbkData *cbk = static_cast<CollCbkData *>(p_userdata);
if (cbk->max == 0) {
return;
@@ -1188,14 +1188,6 @@ void GodotPhysicsServer2D::free(RID p_rid) {
} else if (body_owner.owns(p_rid)) {
GodotBody2D *body = body_owner.get_or_null(p_rid);
- /*
- if (body->get_state_query())
- _clear_query(body->get_state_query());
-
- if (body->get_direct_state_query())
- _clear_query(body->get_direct_state_query());
- */
-
body_set_space(p_rid, RID());
while (body->get_shape_count()) {
@@ -1208,11 +1200,6 @@ void GodotPhysicsServer2D::free(RID p_rid) {
} else if (area_owner.owns(p_rid)) {
GodotArea2D *area = area_owner.get_or_null(p_rid);
- /*
- if (area->get_monitor_query())
- _clear_query(area->get_monitor_query());
- */
-
area->set_space(nullptr);
while (area->get_shape_count()) {
@@ -1225,7 +1212,7 @@ void GodotPhysicsServer2D::free(RID p_rid) {
GodotSpace2D *space = space_owner.get_or_null(p_rid);
while (space->get_objects().size()) {
- GodotCollisionObject2D *co = (GodotCollisionObject2D *)space->get_objects().front()->get();
+ GodotCollisionObject2D *co = static_cast<GodotCollisionObject2D *>(space->get_objects().front()->get());
co->set_space(nullptr);
}
@@ -1264,7 +1251,7 @@ void GodotPhysicsServer2D::step(real_t p_step) {
active_objects = 0;
collision_pairs = 0;
for (Set<const GodotSpace2D *>::Element *E = active_spaces.front(); E; E = E->next()) {
- stepper->step((GodotSpace2D *)E->get(), p_step);
+ stepper->step(const_cast<GodotSpace2D *>(E->get()), p_step);
island_count += E->get()->get_island_count();
active_objects += E->get()->get_active_objects();
collision_pairs += E->get()->get_collision_pairs();
@@ -1285,7 +1272,7 @@ void GodotPhysicsServer2D::flush_queries() {
uint64_t time_beg = OS::get_singleton()->get_ticks_usec();
for (Set<const GodotSpace2D *>::Element *E = active_spaces.front(); E; E = E->next()) {
- GodotSpace2D *space = (GodotSpace2D *)E->get();
+ GodotSpace2D *space = const_cast<GodotSpace2D *>(E->get());
space->call_queries();
}
diff --git a/servers/physics_2d/godot_physics_server_2d.h b/servers/physics_2d/godot_physics_server_2d.h
index bdf614a16d..0a84caadc5 100644
--- a/servers/physics_2d/godot_physics_server_2d.h
+++ b/servers/physics_2d/godot_physics_server_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_shape_2d.cpp b/servers/physics_2d/godot_shape_2d.cpp
index 3604004324..6c020f9e72 100644
--- a/servers/physics_2d/godot_shape_2d.cpp
+++ b/servers/physics_2d/godot_shape_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,7 +37,7 @@ void GodotShape2D::configure(const Rect2 &p_aabb) {
aabb = p_aabb;
configured = true;
for (const KeyValue<GodotShapeOwner2D *, int> &E : owners) {
- GodotShapeOwner2D *co = (GodotShapeOwner2D *)E.key;
+ GodotShapeOwner2D *co = const_cast<GodotShapeOwner2D *>(E.key);
co->_shape_changed();
}
}
@@ -544,12 +544,6 @@ bool GodotConvexPolygonShape2D::intersect_segment(const Vector2 &p_begin, const
bool inters = false;
for (int i = 0; i < point_count; i++) {
- //hmm.. no can do..
- /*
- if (d.dot(points[i].normal)>=0)
- continue;
- */
-
Vector2 res;
if (!Geometry2D::segment_intersects_segment(p_begin, p_end, points[i].pos, points[(i + 1) % point_count].pos, &res)) {
diff --git a/servers/physics_2d/godot_shape_2d.h b/servers/physics_2d/godot_shape_2d.h
index 25d113aafb..9b3477cea8 100644
--- a/servers/physics_2d/godot_shape_2d.h
+++ b/servers/physics_2d/godot_shape_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -134,7 +134,7 @@ public:
real_t mina, maxa; \
real_t minb, maxb; \
Transform2D ofsb = p_transform; \
- ofsb.elements[2] += p_cast; \
+ ofsb.columns[2] += p_cast; \
project_range(p_normal, p_transform, mina, maxa); \
project_range(p_normal, ofsb, minb, maxb); \
r_min = MIN(mina, minb); \
diff --git a/servers/physics_2d/godot_space_2d.cpp b/servers/physics_2d/godot_space_2d.cpp
index 8f22efc40c..3ff7ab86bb 100644
--- a/servers/physics_2d/godot_space_2d.cpp
+++ b/servers/physics_2d/godot_space_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -158,7 +158,7 @@ bool GodotPhysicsDirectSpaceState2D::intersect_ray(const RayParameters &p_parame
if (p_parameters.hit_from_inside) {
// Hit shape at starting point.
min_d = 0;
- res_point = local_from;
+ res_point = begin;
res_normal = Vector2();
res_shape = shape_idx;
res_obj = col_obj;
@@ -403,7 +403,7 @@ struct _RestCallbackData2D {
};
static void _rest_cbk_result(const Vector2 &p_point_A, const Vector2 &p_point_B, void *p_userdata) {
- _RestCallbackData2D *rd = (_RestCallbackData2D *)p_userdata;
+ _RestCallbackData2D *rd = static_cast<_RestCallbackData2D *>(p_userdata);
Vector2 contact_rel = p_point_B - p_point_A;
real_t len = contact_rel.length();
@@ -633,7 +633,7 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
Transform2D col_obj_shape_xform = col_obj->get_transform() * col_obj->get_shape_transform(shape_idx);
if (body_shape->allows_one_way_collision() && col_obj->is_shape_set_as_one_way_collision(shape_idx)) {
- cbk.valid_dir = col_obj_shape_xform.get_axis(1).normalized();
+ cbk.valid_dir = col_obj_shape_xform.columns[1].normalized();
real_t owc_margin = col_obj->get_shape_one_way_collision_margin(shape_idx);
cbk.valid_depth = MAX(owc_margin, margin); //user specified, but never less than actual margin or it won't work
@@ -710,7 +710,7 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
break;
}
- body_transform.elements[2] += recover_motion;
+ body_transform.columns[2] += recover_motion;
body_aabb.position += recover_motion;
recover_attempts--;
@@ -788,7 +788,7 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
//test initial overlap
if (GodotCollisionSolver2D::solve(body_shape, body_shape_xform, Vector2(), against_shape, col_obj_shape_xform, Vector2(), nullptr, nullptr, nullptr, 0)) {
if (body_shape->allows_one_way_collision() && col_obj->is_shape_set_as_one_way_collision(col_shape_idx)) {
- Vector2 direction = col_obj_shape_xform.get_axis(1).normalized();
+ Vector2 direction = col_obj_shape_xform.columns[1].normalized();
if (motion_normal.dot(direction) < 0) {
continue;
}
@@ -838,7 +838,7 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
cbk.amount = 0;
cbk.passed = 0;
cbk.ptr = cd;
- cbk.valid_dir = col_obj_shape_xform.get_axis(1).normalized();
+ cbk.valid_dir = col_obj_shape_xform.columns[1].normalized();
cbk.valid_depth = 10e20;
@@ -881,13 +881,16 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
//it collided, let's get the rest info in unsafe advance
Transform2D ugt = body_transform;
- ugt.elements[2] += p_parameters.motion * unsafe;
+ ugt.columns[2] += p_parameters.motion * unsafe;
_RestCallbackData2D rcd;
// Allowed depth can't be lower than motion length, in order to handle contacts at low speed.
rcd.min_allowed_depth = MIN(motion_length, min_contact_depth);
+ body_aabb.position += p_parameters.motion * unsafe;
+ int amount = _cull_aabb_for_body(p_body, body_aabb);
+
int from_shape = best_shape != -1 ? best_shape : 0;
int to_shape = best_shape != -1 ? best_shape + 1 : p_body->get_shape_count();
@@ -899,10 +902,6 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
Transform2D body_shape_xform = ugt * p_body->get_shape_transform(j);
GodotShape2D *body_shape = p_body->get_shape(j);
- body_aabb.position += p_parameters.motion * unsafe;
-
- int amount = _cull_aabb_for_body(p_body, body_aabb);
-
for (int i = 0; i < amount; i++) {
const GodotCollisionObject2D *col_obj = intersection_query_results[i];
if (p_parameters.exclude_bodies.has(col_obj->get_self())) {
@@ -930,7 +929,7 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
Transform2D col_obj_shape_xform = col_obj->get_transform() * col_obj->get_shape_transform(shape_idx);
if (body_shape->allows_one_way_collision() && col_obj->is_shape_set_as_one_way_collision(shape_idx)) {
- rcd.valid_dir = col_obj_shape_xform.get_axis(1).normalized();
+ rcd.valid_dir = col_obj_shape_xform.columns[1].normalized();
real_t owc_margin = col_obj->get_shape_one_way_collision_margin(shape_idx);
rcd.valid_depth = MAX(owc_margin, margin); //user specified, but never less than actual margin or it won't work
@@ -996,11 +995,8 @@ bool GodotSpace2D::test_body_motion(GodotBody2D *p_body, const PhysicsServer2D::
return collided;
}
+// Assumes a valid collision pair, this should have been checked beforehand in the BVH or octree.
void *GodotSpace2D::_broadphase_pair(GodotCollisionObject2D *A, int p_subindex_A, GodotCollisionObject2D *B, int p_subindex_B, void *p_self) {
- if (!A->interacts_with(B)) {
- return nullptr;
- }
-
GodotCollisionObject2D::Type type_A = A->get_type();
GodotCollisionObject2D::Type type_B = B->get_type();
if (type_A > type_B) {
@@ -1009,7 +1005,7 @@ void *GodotSpace2D::_broadphase_pair(GodotCollisionObject2D *A, int p_subindex_A
SWAP(type_A, type_B);
}
- GodotSpace2D *self = (GodotSpace2D *)p_self;
+ GodotSpace2D *self = static_cast<GodotSpace2D *>(p_self);
self->collision_pairs++;
if (type_A == GodotCollisionObject2D::TYPE_AREA) {
@@ -1025,7 +1021,7 @@ void *GodotSpace2D::_broadphase_pair(GodotCollisionObject2D *A, int p_subindex_A
}
} else {
- GodotBodyPair2D *b = memnew(GodotBodyPair2D((GodotBody2D *)A, p_subindex_A, (GodotBody2D *)B, p_subindex_B));
+ GodotBodyPair2D *b = memnew(GodotBodyPair2D(static_cast<GodotBody2D *>(A), p_subindex_A, static_cast<GodotBody2D *>(B), p_subindex_B));
return b;
}
@@ -1037,9 +1033,9 @@ void GodotSpace2D::_broadphase_unpair(GodotCollisionObject2D *A, int p_subindex_
return;
}
- GodotSpace2D *self = (GodotSpace2D *)p_self;
+ GodotSpace2D *self = static_cast<GodotSpace2D *>(p_self);
self->collision_pairs--;
- GodotConstraint2D *c = (GodotConstraint2D *)p_data;
+ GodotConstraint2D *c = static_cast<GodotConstraint2D *>(p_data);
memdelete(c);
}
diff --git a/servers/physics_2d/godot_space_2d.h b/servers/physics_2d/godot_space_2d.h
index e11f4c3afb..5d97721176 100644
--- a/servers/physics_2d/godot_space_2d.h
+++ b/servers/physics_2d/godot_space_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_2d/godot_step_2d.cpp b/servers/physics_2d/godot_step_2d.cpp
index bc604e380a..fd72038be3 100644
--- a/servers/physics_2d/godot_step_2d.cpp
+++ b/servers/physics_2d/godot_step_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -47,7 +47,7 @@ void GodotStep2D::_populate_island(GodotBody2D *p_body, LocalVector<GodotBody2D
}
for (const Pair<GodotConstraint2D *, int> &E : p_body->get_constraint_list()) {
- GodotConstraint2D *constraint = (GodotConstraint2D *)E.first;
+ GodotConstraint2D *constraint = const_cast<GodotConstraint2D *>(E.first);
if (constraint->get_island_step() == _step) {
continue; // Already processed.
}
diff --git a/servers/physics_2d/godot_step_2d.h b/servers/physics_2d/godot_step_2d.h
index 4038417854..9a6d8caf9b 100644
--- a/servers/physics_2d/godot_step_2d.h
+++ b/servers/physics_2d/godot_step_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/gjk_epa.cpp b/servers/physics_3d/gjk_epa.cpp
index ef6535a878..ba362740b2 100644
--- a/servers/physics_3d/gjk_epa.cpp
+++ b/servers/physics_3d/gjk_epa.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -113,7 +113,7 @@ struct MinkowskiDiff {
real_t margin_A = 0.0;
real_t margin_B = 0.0;
- Vector3 (*get_support)(const GodotShape3D*, const Vector3&, real_t);
+ Vector3 (*get_support)(const GodotShape3D*, const Vector3&, real_t) = nullptr;
void Initialize(const GodotShape3D* shape0, const Transform3D& wtrs0, const real_t margin0,
const GodotShape3D* shape1, const Transform3D& wtrs1, const real_t margin1) {
@@ -191,13 +191,13 @@ struct GJK
/* Fields */
tShape m_shape;
Vector3 m_ray;
- real_t m_distance;
+ real_t m_distance = 0.0f;
sSimplex m_simplices[2];
sSV m_store[4];
sSV* m_free[4];
- U m_nfree;
- U m_current;
- sSimplex* m_simplex;
+ U m_nfree = 0;
+ U m_current = 0;
+ sSimplex* m_simplex = nullptr;
eStatus::_ m_status;
/* Methods */
GJK()
@@ -548,12 +548,12 @@ struct GJK
struct sFace
{
Vector3 n;
- real_t d;
+ real_t d = 0.0f;
sSV* c[3];
sFace* f[3];
sFace* l[2];
U1 e[3];
- U1 pass;
+ U1 pass = 0;
};
struct sList
{
@@ -583,10 +583,10 @@ struct GJK
eStatus::_ m_status;
GJK::sSimplex m_result;
Vector3 m_normal;
- real_t m_depth;
+ real_t m_depth = 0.0f;
sSV m_sv_store[EPA_MAX_VERTICES];
sFace m_fc_store[EPA_MAX_FACES];
- U m_nextsv;
+ U m_nextsv = 0;
sList m_hull;
sList m_stock;
/* Methods */
@@ -918,7 +918,7 @@ bool Distance( const GodotShape3D* shape0,
{
results.status = gjk_status==GJK::eStatus::Inside?
sResults::Penetrating :
- sResults::GJK_Failed ;
+ sResults::GJK_Failed;
return(false);
}
}
diff --git a/servers/physics_3d/gjk_epa.h b/servers/physics_3d/gjk_epa.h
index 39a7d03435..01a47f222e 100644
--- a/servers/physics_3d/gjk_epa.h
+++ b/servers/physics_3d/gjk_epa.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_area_3d.cpp b/servers/physics_3d/godot_area_3d.cpp
index d4e14b8d85..e7df23d0d8 100644
--- a/servers/physics_3d/godot_area_3d.cpp
+++ b/servers/physics_3d/godot_area_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_area_3d.h b/servers/physics_3d/godot_area_3d.h
index 0dcf89b2b4..d15f8ec0a6 100644
--- a/servers/physics_3d/godot_area_3d.h
+++ b/servers/physics_3d/godot_area_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -102,7 +102,7 @@ class GodotArea3D : public GodotCollisionObject3D {
Set<GodotConstraint3D *> constraints;
- virtual void _shapes_changed();
+ virtual void _shapes_changed() override;
void _queue_monitor_update();
void _set_space_override_mode(PhysicsServer3D::AreaSpaceOverrideMode &r_mode, PhysicsServer3D::AreaSpaceOverrideMode p_new_mode);
@@ -172,7 +172,7 @@ public:
void set_transform(const Transform3D &p_transform);
- void set_space(GodotSpace3D *p_space);
+ void set_space(GodotSpace3D *p_space) override;
void call_queries();
diff --git a/servers/physics_3d/godot_area_pair_3d.cpp b/servers/physics_3d/godot_area_pair_3d.cpp
index 58188565e3..a75cb74f60 100644
--- a/servers/physics_3d/godot_area_pair_3d.cpp
+++ b/servers/physics_3d/godot_area_pair_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_area_pair_3d.h b/servers/physics_3d/godot_area_pair_3d.h
index 4237e7722e..64b43a3b51 100644
--- a/servers/physics_3d/godot_area_pair_3d.h
+++ b/servers/physics_3d/godot_area_pair_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,8 +37,8 @@
#include "godot_soft_body_3d.h"
class GodotAreaPair3D : public GodotConstraint3D {
- GodotBody3D *body;
- GodotArea3D *area;
+ GodotBody3D *body = nullptr;
+ GodotArea3D *area = nullptr;
int body_shape;
int area_shape;
bool colliding = false;
@@ -55,8 +55,8 @@ public:
};
class GodotArea2Pair3D : public GodotConstraint3D {
- GodotArea3D *area_a;
- GodotArea3D *area_b;
+ GodotArea3D *area_a = nullptr;
+ GodotArea3D *area_b = nullptr;
int shape_a;
int shape_b;
bool colliding_a = false;
@@ -76,8 +76,8 @@ public:
};
class GodotAreaSoftBodyPair3D : public GodotConstraint3D {
- GodotSoftBody3D *soft_body;
- GodotArea3D *area;
+ GodotSoftBody3D *soft_body = nullptr;
+ GodotArea3D *area = nullptr;
int soft_body_shape;
int area_shape;
bool colliding = false;
diff --git a/servers/physics_3d/godot_body_3d.cpp b/servers/physics_3d/godot_body_3d.cpp
index fca8a3f3a9..ad97533f44 100644
--- a/servers/physics_3d/godot_body_3d.cpp
+++ b/servers/physics_3d/godot_body_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_body_3d.h b/servers/physics_3d/godot_body_3d.h
index 5868d8c282..c0c847d920 100644
--- a/servers/physics_3d/godot_body_3d.h
+++ b/servers/physics_3d/godot_body_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -109,7 +109,7 @@ class GodotBody3D : public GodotCollisionObject3D {
bool first_time_kinematic = false;
void _mass_properties_changed();
- virtual void _shapes_changed();
+ virtual void _shapes_changed() override;
Transform3D new_transform;
Map<GodotConstraint3D *, int> constraint_map;
@@ -301,7 +301,7 @@ public:
_FORCE_INLINE_ void set_continuous_collision_detection(bool p_enable) { continuous_cd = p_enable; }
_FORCE_INLINE_ bool is_continuous_collision_detection_enabled() const { return continuous_cd; }
- void set_space(GodotSpace3D *p_space);
+ void set_space(GodotSpace3D *p_space) override;
void update_mass_properties();
void reset_mass_properties();
diff --git a/servers/physics_3d/godot_body_direct_state_3d.cpp b/servers/physics_3d/godot_body_direct_state_3d.cpp
index e45180cd02..a8c6086e1c 100644
--- a/servers/physics_3d/godot_body_direct_state_3d.cpp
+++ b/servers/physics_3d/godot_body_direct_state_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_body_direct_state_3d.h b/servers/physics_3d/godot_body_direct_state_3d.h
index 93e9997e11..483cfb9298 100644
--- a/servers/physics_3d/godot_body_direct_state_3d.h
+++ b/servers/physics_3d/godot_body_direct_state_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_body_pair_3d.cpp b/servers/physics_3d/godot_body_pair_3d.cpp
index dd82a02059..eebbe0196d 100644
--- a/servers/physics_3d/godot_body_pair_3d.cpp
+++ b/servers/physics_3d/godot_body_pair_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -39,7 +39,7 @@
#define MAX_BIAS_ROTATION (Math_PI / 8)
void GodotBodyPair3D::_contact_added_callback(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata) {
- GodotBodyPair3D *pair = (GodotBodyPair3D *)p_userdata;
+ GodotBodyPair3D *pair = static_cast<GodotBodyPair3D *>(p_userdata);
pair->contact_added_callback(p_point_A, p_index_A, p_point_B, p_index_B);
}
@@ -562,7 +562,7 @@ GodotBodyPair3D::~GodotBodyPair3D() {
}
void GodotBodySoftBodyPair3D::_contact_added_callback(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata) {
- GodotBodySoftBodyPair3D *pair = (GodotBodySoftBodyPair3D *)p_userdata;
+ GodotBodySoftBodyPair3D *pair = static_cast<GodotBodySoftBodyPair3D *>(p_userdata);
pair->contact_added_callback(p_point_A, p_index_A, p_point_B, p_index_B);
}
diff --git a/servers/physics_3d/godot_body_pair_3d.h b/servers/physics_3d/godot_body_pair_3d.h
index 8a9664e7e1..7a7309f9d5 100644
--- a/servers/physics_3d/godot_body_pair_3d.h
+++ b/servers/physics_3d/godot_body_pair_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_broad_phase_3d.cpp b/servers/physics_3d/godot_broad_phase_3d.cpp
index db51dfb2b6..115a01a0c5 100644
--- a/servers/physics_3d/godot_broad_phase_3d.cpp
+++ b/servers/physics_3d/godot_broad_phase_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_broad_phase_3d.h b/servers/physics_3d/godot_broad_phase_3d.h
index 65423f293c..75196cbd1b 100644
--- a/servers/physics_3d/godot_broad_phase_3d.h
+++ b/servers/physics_3d/godot_broad_phase_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_broad_phase_3d_bvh.cpp b/servers/physics_3d/godot_broad_phase_3d_bvh.cpp
index 0f2061a1ea..435c1e8aec 100644
--- a/servers/physics_3d/godot_broad_phase_3d_bvh.cpp
+++ b/servers/physics_3d/godot_broad_phase_3d_bvh.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,51 +33,61 @@
#include "godot_collision_object_3d.h"
GodotBroadPhase3DBVH::ID GodotBroadPhase3DBVH::create(GodotCollisionObject3D *p_object, int p_subindex, const AABB &p_aabb, bool p_static) {
- ID oid = bvh.create(p_object, true, p_aabb, p_subindex, !p_static, 1 << p_object->get_type(), p_static ? 0 : 0xFFFFF); // Pair everything, don't care?
+ uint32_t tree_id = p_static ? TREE_STATIC : TREE_DYNAMIC;
+ uint32_t tree_collision_mask = p_static ? TREE_FLAG_DYNAMIC : (TREE_FLAG_STATIC | TREE_FLAG_DYNAMIC);
+ ID oid = bvh.create(p_object, true, tree_id, tree_collision_mask, p_aabb, p_subindex); // Pair everything, don't care?
return oid + 1;
}
void GodotBroadPhase3DBVH::move(ID p_id, const AABB &p_aabb) {
+ ERR_FAIL_COND(!p_id);
bvh.move(p_id - 1, p_aabb);
}
void GodotBroadPhase3DBVH::set_static(ID p_id, bool p_static) {
- GodotCollisionObject3D *it = bvh.get(p_id - 1);
- bvh.set_pairable(p_id - 1, !p_static, 1 << it->get_type(), p_static ? 0 : 0xFFFFF, false); // Pair everything, don't care?
+ ERR_FAIL_COND(!p_id);
+ uint32_t tree_id = p_static ? TREE_STATIC : TREE_DYNAMIC;
+ uint32_t tree_collision_mask = p_static ? TREE_FLAG_DYNAMIC : (TREE_FLAG_STATIC | TREE_FLAG_DYNAMIC);
+ bvh.set_tree(p_id - 1, tree_id, tree_collision_mask, false);
}
void GodotBroadPhase3DBVH::remove(ID p_id) {
+ ERR_FAIL_COND(!p_id);
bvh.erase(p_id - 1);
}
GodotCollisionObject3D *GodotBroadPhase3DBVH::get_object(ID p_id) const {
+ ERR_FAIL_COND_V(!p_id, nullptr);
GodotCollisionObject3D *it = bvh.get(p_id - 1);
ERR_FAIL_COND_V(!it, nullptr);
return it;
}
bool GodotBroadPhase3DBVH::is_static(ID p_id) const {
- return !bvh.is_pairable(p_id - 1);
+ ERR_FAIL_COND_V(!p_id, false);
+ uint32_t tree_id = bvh.get_tree_id(p_id - 1);
+ return tree_id == 0;
}
int GodotBroadPhase3DBVH::get_subindex(ID p_id) const {
+ ERR_FAIL_COND_V(!p_id, 0);
return bvh.get_subindex(p_id - 1);
}
int GodotBroadPhase3DBVH::cull_point(const Vector3 &p_point, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices) {
- return bvh.cull_point(p_point, p_results, p_max_results, p_result_indices);
+ return bvh.cull_point(p_point, p_results, p_max_results, nullptr, 0xFFFFFFFF, p_result_indices);
}
int GodotBroadPhase3DBVH::cull_segment(const Vector3 &p_from, const Vector3 &p_to, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices) {
- return bvh.cull_segment(p_from, p_to, p_results, p_max_results, p_result_indices);
+ return bvh.cull_segment(p_from, p_to, p_results, p_max_results, nullptr, 0xFFFFFFFF, p_result_indices);
}
int GodotBroadPhase3DBVH::cull_aabb(const AABB &p_aabb, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices) {
- return bvh.cull_aabb(p_aabb, p_results, p_max_results, p_result_indices);
+ return bvh.cull_aabb(p_aabb, p_results, p_max_results, nullptr, 0xFFFFFFFF, p_result_indices);
}
void *GodotBroadPhase3DBVH::_pair_callback(void *self, uint32_t p_A, GodotCollisionObject3D *p_object_A, int subindex_A, uint32_t p_B, GodotCollisionObject3D *p_object_B, int subindex_B) {
- GodotBroadPhase3DBVH *bpo = (GodotBroadPhase3DBVH *)(self);
+ GodotBroadPhase3DBVH *bpo = static_cast<GodotBroadPhase3DBVH *>(self);
if (!bpo->pair_callback) {
return nullptr;
}
@@ -86,7 +96,7 @@ void *GodotBroadPhase3DBVH::_pair_callback(void *self, uint32_t p_A, GodotCollis
}
void GodotBroadPhase3DBVH::_unpair_callback(void *self, uint32_t p_A, GodotCollisionObject3D *p_object_A, int subindex_A, uint32_t p_B, GodotCollisionObject3D *p_object_B, int subindex_B, void *pairdata) {
- GodotBroadPhase3DBVH *bpo = (GodotBroadPhase3DBVH *)(self);
+ GodotBroadPhase3DBVH *bpo = static_cast<GodotBroadPhase3DBVH *>(self);
if (!bpo->unpair_callback) {
return;
}
diff --git a/servers/physics_3d/godot_broad_phase_3d_bvh.h b/servers/physics_3d/godot_broad_phase_3d_bvh.h
index 61127e52c1..ae5a18d955 100644
--- a/servers/physics_3d/godot_broad_phase_3d_bvh.h
+++ b/servers/physics_3d/godot_broad_phase_3d_bvh.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -36,7 +36,34 @@
#include "core/math/bvh.h"
class GodotBroadPhase3DBVH : public GodotBroadPhase3D {
- BVH_Manager<GodotCollisionObject3D, true, 128> bvh;
+ template <class T>
+ class UserPairTestFunction {
+ public:
+ static bool user_pair_check(const T *p_a, const T *p_b) {
+ // return false if no collision, decided by masks etc
+ return p_a->interacts_with(p_b);
+ }
+ };
+
+ template <class T>
+ class UserCullTestFunction {
+ public:
+ static bool user_cull_check(const T *p_a, const T *p_b) {
+ return true;
+ }
+ };
+
+ enum Tree {
+ TREE_STATIC = 0,
+ TREE_DYNAMIC = 1,
+ };
+
+ enum TreeFlag {
+ TREE_FLAG_STATIC = 1 << TREE_STATIC,
+ TREE_FLAG_DYNAMIC = 1 << TREE_DYNAMIC,
+ };
+
+ BVH_Manager<GodotCollisionObject3D, 2, true, 128, UserPairTestFunction<GodotCollisionObject3D>, UserCullTestFunction<GodotCollisionObject3D>> bvh;
static void *_pair_callback(void *, uint32_t, GodotCollisionObject3D *, int, uint32_t, GodotCollisionObject3D *, int);
static void _unpair_callback(void *, uint32_t, GodotCollisionObject3D *, int, uint32_t, GodotCollisionObject3D *, int, void *);
@@ -48,23 +75,23 @@ class GodotBroadPhase3DBVH : public GodotBroadPhase3D {
public:
// 0 is an invalid ID
- virtual ID create(GodotCollisionObject3D *p_object, int p_subindex = 0, const AABB &p_aabb = AABB(), bool p_static = false);
- virtual void move(ID p_id, const AABB &p_aabb);
- virtual void set_static(ID p_id, bool p_static);
- virtual void remove(ID p_id);
+ virtual ID create(GodotCollisionObject3D *p_object, int p_subindex = 0, const AABB &p_aabb = AABB(), bool p_static = false) override;
+ virtual void move(ID p_id, const AABB &p_aabb) override;
+ virtual void set_static(ID p_id, bool p_static) override;
+ virtual void remove(ID p_id) override;
- virtual GodotCollisionObject3D *get_object(ID p_id) const;
- virtual bool is_static(ID p_id) const;
- virtual int get_subindex(ID p_id) const;
+ virtual GodotCollisionObject3D *get_object(ID p_id) const override;
+ virtual bool is_static(ID p_id) const override;
+ virtual int get_subindex(ID p_id) const override;
- virtual int cull_point(const Vector3 &p_point, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr);
- virtual int cull_segment(const Vector3 &p_from, const Vector3 &p_to, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr);
- virtual int cull_aabb(const AABB &p_aabb, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr);
+ virtual int cull_point(const Vector3 &p_point, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr) override;
+ virtual int cull_segment(const Vector3 &p_from, const Vector3 &p_to, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr) override;
+ virtual int cull_aabb(const AABB &p_aabb, GodotCollisionObject3D **p_results, int p_max_results, int *p_result_indices = nullptr) override;
- virtual void set_pair_callback(PairCallback p_pair_callback, void *p_userdata);
- virtual void set_unpair_callback(UnpairCallback p_unpair_callback, void *p_userdata);
+ virtual void set_pair_callback(PairCallback p_pair_callback, void *p_userdata) override;
+ virtual void set_unpair_callback(UnpairCallback p_unpair_callback, void *p_userdata) override;
- virtual void update();
+ virtual void update() override;
static GodotBroadPhase3D *_create();
GodotBroadPhase3DBVH();
diff --git a/servers/physics_3d/godot_collision_object_3d.cpp b/servers/physics_3d/godot_collision_object_3d.cpp
index 421291011b..63284aeca5 100644
--- a/servers/physics_3d/godot_collision_object_3d.cpp
+++ b/servers/physics_3d/godot_collision_object_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_collision_object_3d.h b/servers/physics_3d/godot_collision_object_3d.h
index 43558034e0..0f09f21962 100644
--- a/servers/physics_3d/godot_collision_object_3d.h
+++ b/servers/physics_3d/godot_collision_object_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -112,7 +112,7 @@ public:
_FORCE_INLINE_ void set_instance_id(const ObjectID &p_instance_id) { instance_id = p_instance_id; }
_FORCE_INLINE_ ObjectID get_instance_id() const { return instance_id; }
- void _shape_changed();
+ void _shape_changed() override;
_FORCE_INLINE_ Type get_type() const { return type; }
void add_shape(GodotShape3D *p_shape, const Transform3D &p_transform = Transform3D(), bool p_disabled = false);
@@ -169,11 +169,11 @@ public:
return p_other->collision_layer & collision_mask;
}
- _FORCE_INLINE_ bool interacts_with(GodotCollisionObject3D *p_other) const {
+ _FORCE_INLINE_ bool interacts_with(const GodotCollisionObject3D *p_other) const {
return collision_layer & p_other->collision_mask || p_other->collision_layer & collision_mask;
}
- void remove_shape(GodotShape3D *p_shape);
+ void remove_shape(GodotShape3D *p_shape) override;
void remove_shape(int p_index);
virtual void set_space(GodotSpace3D *p_space) = 0;
diff --git a/servers/physics_3d/godot_collision_solver_3d.cpp b/servers/physics_3d/godot_collision_solver_3d.cpp
index 540b16c6e3..b2d3e4d876 100644
--- a/servers/physics_3d/godot_collision_solver_3d.cpp
+++ b/servers/physics_3d/godot_collision_solver_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -29,6 +29,7 @@
/*************************************************************************/
#include "godot_collision_solver_3d.h"
+
#include "godot_collision_solver_3d_sat.h"
#include "godot_soft_body_3d.h"
@@ -93,7 +94,7 @@ bool GodotCollisionSolver3D::solve_separation_ray(const GodotShape3D *p_shape_A,
const GodotSeparationRayShape3D *ray = static_cast<const GodotSeparationRayShape3D *>(p_shape_A);
Vector3 from = p_transform_A.origin;
- Vector3 to = from + p_transform_A.basis.get_axis(2) * (ray->get_length() + p_margin);
+ Vector3 to = from + p_transform_A.basis.get_column(2) * (ray->get_length() + p_margin);
Vector3 support_A = to;
Transform3D ai = p_transform_B.affine_inverse();
@@ -141,7 +142,7 @@ struct _SoftBodyContactCollisionInfo {
};
void GodotCollisionSolver3D::soft_body_contact_callback(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata) {
- _SoftBodyContactCollisionInfo &cinfo = *(_SoftBodyContactCollisionInfo *)(p_userdata);
+ _SoftBodyContactCollisionInfo &cinfo = *(static_cast<_SoftBodyContactCollisionInfo *>(p_userdata));
++cinfo.contact_count;
@@ -170,7 +171,7 @@ struct _SoftBodyQueryInfo {
};
bool GodotCollisionSolver3D::soft_body_query_callback(uint32_t p_node_index, void *p_userdata) {
- _SoftBodyQueryInfo &query_cinfo = *(_SoftBodyQueryInfo *)(p_userdata);
+ _SoftBodyQueryInfo &query_cinfo = *(static_cast<_SoftBodyQueryInfo *>(p_userdata));
Vector3 node_position = query_cinfo.soft_body->get_node_position(p_node_index);
@@ -189,7 +190,7 @@ bool GodotCollisionSolver3D::soft_body_query_callback(uint32_t p_node_index, voi
}
bool GodotCollisionSolver3D::soft_body_concave_callback(void *p_userdata, GodotShape3D *p_convex) {
- _SoftBodyQueryInfo &query_cinfo = *(_SoftBodyQueryInfo *)(p_userdata);
+ _SoftBodyQueryInfo &query_cinfo = *(static_cast<_SoftBodyQueryInfo *>(p_userdata));
query_cinfo.shape_A = p_convex;
@@ -251,7 +252,7 @@ bool GodotCollisionSolver3D::solve_soft_body(const GodotShape3D *p_shape_A, cons
// Calculate AABB for internal concave shape query (in local space).
AABB local_aabb;
for (int i = 0; i < 3; i++) {
- Vector3 axis(p_transform_A.basis.get_axis(i));
+ Vector3 axis(p_transform_A.basis.get_column(i));
real_t axis_scale = 1.0 / axis.length();
real_t smin = soft_body_aabb.position[i];
@@ -276,23 +277,24 @@ bool GodotCollisionSolver3D::solve_soft_body(const GodotShape3D *p_shape_A, cons
}
struct _ConcaveCollisionInfo {
- const Transform3D *transform_A;
- const GodotShape3D *shape_A;
- const Transform3D *transform_B;
- GodotCollisionSolver3D::CallbackResult result_callback;
- void *userdata;
- bool swap_result;
- bool collided;
- int aabb_tests;
- int collisions;
- bool tested;
- real_t margin_A;
- real_t margin_B;
- Vector3 close_A, close_B;
+ const Transform3D *transform_A = nullptr;
+ const GodotShape3D *shape_A = nullptr;
+ const Transform3D *transform_B = nullptr;
+ GodotCollisionSolver3D::CallbackResult result_callback = nullptr;
+ void *userdata = nullptr;
+ bool swap_result = false;
+ bool collided = false;
+ int aabb_tests = 0;
+ int collisions = 0;
+ bool tested = false;
+ real_t margin_A = 0.0f;
+ real_t margin_B = 0.0f;
+ Vector3 close_A;
+ Vector3 close_B;
};
bool GodotCollisionSolver3D::concave_callback(void *p_userdata, GodotShape3D *p_convex) {
- _ConcaveCollisionInfo &cinfo = *(_ConcaveCollisionInfo *)(p_userdata);
+ _ConcaveCollisionInfo &cinfo = *(static_cast<_ConcaveCollisionInfo *>(p_userdata));
cinfo.aabb_tests++;
bool collided = collision_solver(cinfo.shape_A, *cinfo.transform_A, p_convex, *cinfo.transform_B, cinfo.result_callback, cinfo.userdata, cinfo.swap_result, nullptr, cinfo.margin_A, cinfo.margin_B);
@@ -331,7 +333,7 @@ bool GodotCollisionSolver3D::solve_concave(const GodotShape3D *p_shape_A, const
AABB local_aabb;
for (int i = 0; i < 3; i++) {
- Vector3 axis(p_transform_B.basis.get_axis(i));
+ Vector3 axis(p_transform_B.basis.get_column(i));
real_t axis_scale = 1.0 / axis.length();
axis *= axis_scale;
@@ -422,7 +424,7 @@ bool GodotCollisionSolver3D::solve_static(const GodotShape3D *p_shape_A, const T
}
bool GodotCollisionSolver3D::concave_distance_callback(void *p_userdata, GodotShape3D *p_convex) {
- _ConcaveCollisionInfo &cinfo = *(_ConcaveCollisionInfo *)(p_userdata);
+ _ConcaveCollisionInfo &cinfo = *(static_cast<_ConcaveCollisionInfo *>(p_userdata));
cinfo.aabb_tests++;
Vector3 close_A, close_B;
@@ -540,7 +542,7 @@ bool GodotCollisionSolver3D::solve_distance(const GodotShape3D *p_shape_A, const
AABB local_aabb;
for (int i = 0; i < 3; i++) {
- Vector3 axis(p_transform_B.basis.get_axis(i));
+ Vector3 axis(p_transform_B.basis.get_column(i));
real_t axis_scale = ((real_t)1.0) / axis.length();
axis *= axis_scale;
diff --git a/servers/physics_3d/godot_collision_solver_3d.h b/servers/physics_3d/godot_collision_solver_3d.h
index 133635ca7e..a6a0ebfead 100644
--- a/servers/physics_3d/godot_collision_solver_3d.h
+++ b/servers/physics_3d/godot_collision_solver_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_collision_solver_3d_sat.cpp b/servers/physics_3d/godot_collision_solver_3d_sat.cpp
index 4faa07b6c9..20e9300778 100644
--- a/servers/physics_3d/godot_collision_solver_3d_sat.cpp
+++ b/servers/physics_3d/godot_collision_solver_3d_sat.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -68,7 +68,7 @@
*************************************************************************/
struct _CollectorCallback {
- GodotCollisionSolver3D::CallbackResult callback;
+ GodotCollisionSolver3D::CallbackResult callback = nullptr;
void *userdata = nullptr;
bool swap = false;
bool collided = false;
@@ -345,10 +345,6 @@ static void _generate_contacts_face_face(const Vector3 *p_points_A, int p_point_
for (int i = 0; i < clipbuf_len; i++) {
real_t d = plane_B.distance_to(clipbuf_src[i]);
- /*
- if (d>CMP_EPSILON)
- continue;
- */
Vector3 closest_B = clipbuf_src[i] - plane_B.normal * d;
@@ -796,7 +792,7 @@ static void _collision_sphere_box(const GodotShape3D *p_a, const Transform3D &p_
// test faces
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_b.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_b.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -823,7 +819,7 @@ static void _collision_sphere_box(const GodotShape3D *p_a, const Transform3D &p_
// test edges
for (int i = 0; i < 3; i++) {
- Vector3 axis = point_axis.cross(p_transform_b.basis.get_axis(i)).cross(p_transform_b.basis.get_axis(i)).normalized();
+ Vector3 axis = point_axis.cross(p_transform_b.basis.get_column(i)).cross(p_transform_b.basis.get_column(i)).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -846,7 +842,7 @@ static void _collision_sphere_capsule(const GodotShape3D *p_a, const Transform3D
//capsule sphere 1, sphere
- Vector3 capsule_axis = p_transform_b.basis.get_axis(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
+ Vector3 capsule_axis = p_transform_b.basis.get_column(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
Vector3 capsule_ball_1 = p_transform_b.origin + capsule_axis;
@@ -887,7 +883,7 @@ static void _collision_sphere_cylinder(const GodotShape3D *p_a, const Transform3
}
// Cylinder B end caps.
- Vector3 cylinder_B_axis = p_transform_b.basis.get_axis(1).normalized();
+ Vector3 cylinder_B_axis = p_transform_b.basis.get_column(1).normalized();
if (!separator.test_axis(cylinder_B_axis)) {
return;
}
@@ -901,8 +897,8 @@ static void _collision_sphere_cylinder(const GodotShape3D *p_a, const Transform3
// Closest point to cylinder caps.
const Vector3 &sphere_center = p_transform_a.origin;
- Vector3 cyl_axis = p_transform_b.basis.get_axis(1);
- Vector3 cap_axis = p_transform_b.basis.get_axis(0);
+ Vector3 cyl_axis = p_transform_b.basis.get_column(1);
+ Vector3 cap_axis = p_transform_b.basis.get_column(0);
real_t height_scale = cyl_axis.length();
real_t cap_dist = cylinder_B->get_height() * 0.5 * height_scale;
cyl_axis /= height_scale;
@@ -1067,7 +1063,7 @@ static void _collision_box_box(const GodotShape3D *p_a, const Transform3D &p_tra
// test faces of A
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_a.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -1077,7 +1073,7 @@ static void _collision_box_box(const GodotShape3D *p_a, const Transform3D &p_tra
// test faces of B
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_b.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_b.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -1087,7 +1083,7 @@ static void _collision_box_box(const GodotShape3D *p_a, const Transform3D &p_tra
// test combined edges
for (int i = 0; i < 3; i++) {
for (int j = 0; j < 3; j++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).cross(p_transform_b.basis.get_axis(j));
+ Vector3 axis = p_transform_a.basis.get_column(i).cross(p_transform_b.basis.get_column(j));
if (Math::is_zero_approx(axis.length_squared())) {
continue;
@@ -1133,14 +1129,14 @@ static void _collision_box_box(const GodotShape3D *p_a, const Transform3D &p_tra
for (int i = 0; i < 3; i++) {
//a ->b
- Vector3 axis_a = p_transform_a.basis.get_axis(i);
+ Vector3 axis_a = p_transform_a.basis.get_column(i);
if (!separator.test_axis(axis_ab.cross(axis_a).cross(axis_a).normalized())) {
return;
}
//b ->a
- Vector3 axis_b = p_transform_b.basis.get_axis(i);
+ Vector3 axis_b = p_transform_b.basis.get_column(i);
if (!separator.test_axis(axis_ab.cross(axis_b).cross(axis_b).normalized())) {
return;
@@ -1164,20 +1160,20 @@ static void _collision_box_capsule(const GodotShape3D *p_a, const Transform3D &p
// faces of A
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_a.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
}
}
- Vector3 cyl_axis = p_transform_b.basis.get_axis(1).normalized();
+ Vector3 cyl_axis = p_transform_b.basis.get_column(1).normalized();
// edges of A, capsule cylinder
for (int i = 0; i < 3; i++) {
// cylinder
- Vector3 box_axis = p_transform_a.basis.get_axis(i);
+ Vector3 box_axis = p_transform_a.basis.get_column(i);
Vector3 axis = box_axis.cross(cyl_axis);
if (Math::is_zero_approx(axis.length_squared())) {
continue;
@@ -1200,7 +1196,7 @@ static void _collision_box_capsule(const GodotShape3D *p_a, const Transform3D &p
he.z *= (k * 2 - 1);
Vector3 point = p_transform_a.origin;
for (int l = 0; l < 3; l++) {
- point += p_transform_a.basis.get_axis(l) * he[l];
+ point += p_transform_a.basis.get_column(l) * he[l];
}
//Vector3 axis = (point - cyl_axis * cyl_axis.dot(point)).normalized();
@@ -1216,7 +1212,7 @@ static void _collision_box_capsule(const GodotShape3D *p_a, const Transform3D &p
// capsule balls, edges of A
for (int i = 0; i < 2; i++) {
- Vector3 capsule_axis = p_transform_b.basis.get_axis(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
+ Vector3 capsule_axis = p_transform_b.basis.get_column(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
Vector3 sphere_pos = p_transform_b.origin + ((i == 0) ? capsule_axis : -capsule_axis);
@@ -1238,7 +1234,7 @@ static void _collision_box_capsule(const GodotShape3D *p_a, const Transform3D &p
// test edges of A
for (int j = 0; j < 3; j++) {
- Vector3 axis = point_axis.cross(p_transform_a.basis.get_axis(j)).cross(p_transform_a.basis.get_axis(j)).normalized();
+ Vector3 axis = point_axis.cross(p_transform_a.basis.get_column(j)).cross(p_transform_a.basis.get_column(j)).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -1262,14 +1258,14 @@ static void _collision_box_cylinder(const GodotShape3D *p_a, const Transform3D &
// Faces of A.
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_a.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
}
}
- Vector3 cyl_axis = p_transform_b.basis.get_axis(1).normalized();
+ Vector3 cyl_axis = p_transform_b.basis.get_column(1).normalized();
// Cylinder end caps.
{
@@ -1280,7 +1276,7 @@ static void _collision_box_cylinder(const GodotShape3D *p_a, const Transform3D &
// Edges of A, cylinder lateral surface.
for (int i = 0; i < 3; i++) {
- Vector3 box_axis = p_transform_a.basis.get_axis(i);
+ Vector3 box_axis = p_transform_a.basis.get_column(i);
Vector3 axis = box_axis.cross(cyl_axis);
if (Math::is_zero_approx(axis.length_squared())) {
continue;
@@ -1304,7 +1300,7 @@ static void _collision_box_cylinder(const GodotShape3D *p_a, const Transform3D &
Vector3 &point = vertices_A[i * 2 * 2 + j * 2 + k];
point = p_transform_a.origin;
for (int l = 0; l < 3; l++) {
- point += p_transform_a.basis.get_axis(l) * extent[l];
+ point += p_transform_a.basis.get_column(l) * extent[l];
}
}
}
@@ -1384,7 +1380,7 @@ static void _collision_box_convex_polygon(const GodotShape3D *p_a, const Transfo
// faces of A
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_a.basis.get_column(i).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -1405,7 +1401,7 @@ static void _collision_box_convex_polygon(const GodotShape3D *p_a, const Transfo
// A<->B edges
for (int i = 0; i < 3; i++) {
- Vector3 e1 = p_transform_a.basis.get_axis(i);
+ Vector3 e1 = p_transform_a.basis.get_column(i);
for (int j = 0; j < edge_count; j++) {
Vector3 e2 = p_transform_b.basis.xform(vertices[edges[j].a]) - p_transform_b.basis.xform(vertices[edges[j].b]);
@@ -1442,7 +1438,7 @@ static void _collision_box_convex_polygon(const GodotShape3D *p_a, const Transfo
for (int i = 0; i < 3; i++) {
//a ->b
- Vector3 axis_a = p_transform_a.basis.get_axis(i);
+ Vector3 axis_a = p_transform_a.basis.get_column(i);
if (!separator.test_axis(axis_ab.cross(axis_a).cross(axis_a).normalized())) {
return;
@@ -1460,7 +1456,7 @@ static void _collision_box_convex_polygon(const GodotShape3D *p_a, const Transfo
he.z *= (k * 2 - 1);
Vector3 point = p_transform_a.origin;
for (int l = 0; l < 3; l++) {
- point += p_transform_a.basis.get_axis(l) * he[l];
+ point += p_transform_a.basis.get_column(l) * he[l];
}
for (int e = 0; e < edge_count; e++) {
@@ -1501,7 +1497,7 @@ static void _collision_box_face(const GodotShape3D *p_a, const Transform3D &p_tr
// faces of A
for (int i = 0; i < 3; i++) {
- Vector3 axis = p_transform_a.basis.get_axis(i).normalized();
+ Vector3 axis = p_transform_a.basis.get_column(i).normalized();
if (axis.dot(normal) < 0.0) {
axis *= -1.0;
}
@@ -1517,7 +1513,7 @@ static void _collision_box_face(const GodotShape3D *p_a, const Transform3D &p_tr
Vector3 e = vertex[i] - vertex[(i + 1) % 3];
for (int j = 0; j < 3; j++) {
- Vector3 axis = e.cross(p_transform_a.basis.get_axis(j)).normalized();
+ Vector3 axis = e.cross(p_transform_a.basis.get_column(j)).normalized();
if (axis.dot(normal) < 0.0) {
axis *= -1.0;
}
@@ -1554,7 +1550,7 @@ static void _collision_box_face(const GodotShape3D *p_a, const Transform3D &p_tr
for (int i = 0; i < 3; i++) {
//a ->b
- Vector3 axis_a = p_transform_a.basis.get_axis(i);
+ Vector3 axis_a = p_transform_a.basis.get_column(i);
Vector3 axis = axis_ab.cross(axis_a).cross(axis_a).normalized();
if (axis.dot(normal) < 0.0) {
@@ -1577,7 +1573,7 @@ static void _collision_box_face(const GodotShape3D *p_a, const Transform3D &p_tr
he.z *= (k * 2 - 1);
Vector3 point = p_transform_a.origin;
for (int l = 0; l < 3; l++) {
- point += p_transform_a.basis.get_axis(l) * he[l];
+ point += p_transform_a.basis.get_column(l) * he[l];
}
for (int e = 0; e < 3; e++) {
@@ -1627,8 +1623,8 @@ static void _collision_capsule_capsule(const GodotShape3D *p_a, const Transform3
// some values
- Vector3 capsule_A_axis = p_transform_a.basis.get_axis(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
- Vector3 capsule_B_axis = p_transform_b.basis.get_axis(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
+ Vector3 capsule_A_axis = p_transform_a.basis.get_column(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
+ Vector3 capsule_B_axis = p_transform_b.basis.get_column(1) * (capsule_B->get_height() * 0.5 - capsule_B->get_radius());
Vector3 capsule_A_ball_1 = p_transform_a.origin + capsule_A_axis;
Vector3 capsule_A_ball_2 = p_transform_a.origin - capsule_A_axis;
@@ -1690,14 +1686,14 @@ static void _collision_capsule_cylinder(const GodotShape3D *p_a, const Transform
}
// Cylinder B end caps.
- Vector3 cylinder_B_axis = p_transform_b.basis.get_axis(1).normalized();
+ Vector3 cylinder_B_axis = p_transform_b.basis.get_column(1).normalized();
if (!separator.test_axis(cylinder_B_axis)) {
return;
}
// Cylinder edge against capsule balls.
- Vector3 capsule_A_axis = p_transform_a.basis.get_axis(1);
+ Vector3 capsule_A_axis = p_transform_a.basis.get_column(1);
Vector3 capsule_A_ball_1 = p_transform_a.origin + capsule_A_axis * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
Vector3 capsule_A_ball_2 = p_transform_a.origin - capsule_A_axis * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
@@ -1776,7 +1772,7 @@ static void _collision_capsule_convex_polygon(const GodotShape3D *p_a, const Tra
for (int i = 0; i < edge_count; i++) {
// cylinder
Vector3 edge_axis = p_transform_b.basis.xform(vertices[edges[i].a]) - p_transform_b.basis.xform(vertices[edges[i].b]);
- Vector3 axis = edge_axis.cross(p_transform_a.basis.get_axis(1)).normalized();
+ Vector3 axis = edge_axis.cross(p_transform_a.basis.get_column(1)).normalized();
if (!separator.test_axis(axis)) {
return;
@@ -1788,7 +1784,7 @@ static void _collision_capsule_convex_polygon(const GodotShape3D *p_a, const Tra
for (int i = 0; i < 2; i++) {
// edges of B, capsule cylinder
- Vector3 capsule_axis = p_transform_a.basis.get_axis(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
+ Vector3 capsule_axis = p_transform_a.basis.get_column(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
Vector3 sphere_pos = p_transform_a.origin + ((i == 0) ? capsule_axis : -capsule_axis);
@@ -1828,7 +1824,7 @@ static void _collision_capsule_face(const GodotShape3D *p_a, const Transform3D &
// edges of B, capsule cylinder
- Vector3 capsule_axis = p_transform_a.basis.get_axis(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
+ Vector3 capsule_axis = p_transform_a.basis.get_column(1) * (capsule_A->get_height() * 0.5 - capsule_A->get_radius());
for (int i = 0; i < 3; i++) {
// edge-cylinder
@@ -1899,8 +1895,8 @@ static void _collision_cylinder_cylinder(const GodotShape3D *p_a, const Transfor
SeparatorAxisTest<GodotCylinderShape3D, GodotCylinderShape3D, withMargin> separator(cylinder_A, p_transform_a, cylinder_B, p_transform_b, p_collector, p_margin_a, p_margin_b);
- Vector3 cylinder_A_axis = p_transform_a.basis.get_axis(1);
- Vector3 cylinder_B_axis = p_transform_b.basis.get_axis(1);
+ Vector3 cylinder_A_axis = p_transform_a.basis.get_column(1);
+ Vector3 cylinder_B_axis = p_transform_b.basis.get_column(1);
if (!separator.test_previous_axis()) {
return;
@@ -1987,7 +1983,7 @@ static void _collision_cylinder_face(const GodotShape3D *p_a, const Transform3D
return;
}
- Vector3 cyl_axis = p_transform_a.basis.get_axis(1).normalized();
+ Vector3 cyl_axis = p_transform_a.basis.get_column(1).normalized();
if (cyl_axis.dot(normal) < 0.0) {
cyl_axis *= -1.0;
}
diff --git a/servers/physics_3d/godot_collision_solver_3d_sat.h b/servers/physics_3d/godot_collision_solver_3d_sat.h
index 069a701cba..3eb7aa4c9e 100644
--- a/servers/physics_3d/godot_collision_solver_3d_sat.h
+++ b/servers/physics_3d/godot_collision_solver_3d_sat.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_constraint_3d.h b/servers/physics_3d/godot_constraint_3d.h
index 840c81716c..217955047f 100644
--- a/servers/physics_3d/godot_constraint_3d.h
+++ b/servers/physics_3d/godot_constraint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_joint_3d.h b/servers/physics_3d/godot_joint_3d.h
index 4086bb53e1..d4b719fc5e 100644
--- a/servers/physics_3d/godot_joint_3d.h
+++ b/servers/physics_3d/godot_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_physics_server_3d.cpp b/servers/physics_3d/godot_physics_server_3d.cpp
index f301b791bb..e5107be74b 100644
--- a/servers/physics_3d/godot_physics_server_3d.cpp
+++ b/servers/physics_3d/godot_physics_server_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -920,7 +920,7 @@ RID GodotPhysicsServer3D::soft_body_create() {
return rid;
}
-void GodotPhysicsServer3D::soft_body_update_rendering_server(RID p_body, RenderingServerHandler *p_rendering_server_handler) {
+void GodotPhysicsServer3D::soft_body_update_rendering_server(RID p_body, PhysicsServer3DRenderingServerHandler *p_rendering_server_handler) {
GodotSoftBody3D *soft_body = soft_body_owner.get_or_null(p_body);
ERR_FAIL_COND(!soft_body);
@@ -1355,7 +1355,7 @@ int GodotPhysicsServer3D::joint_get_solver_priority(RID p_joint) const {
return joint->get_priority();
}
-void GodotPhysicsServer3D::joint_disable_collisions_between_bodies(RID p_joint, const bool p_disable) {
+void GodotPhysicsServer3D::joint_disable_collisions_between_bodies(RID p_joint, bool p_disable) {
GodotJoint3D *joint = joint_owner.get_or_null(p_joint);
ERR_FAIL_COND(!joint);
@@ -1540,14 +1540,6 @@ void GodotPhysicsServer3D::free(RID p_rid) {
} else if (body_owner.owns(p_rid)) {
GodotBody3D *body = body_owner.get_or_null(p_rid);
- /*
- if (body->get_state_query())
- _clear_query(body->get_state_query());
-
- if (body->get_direct_state_query())
- _clear_query(body->get_direct_state_query());
- */
-
body->set_space(nullptr);
while (body->get_shape_count()) {
@@ -1566,11 +1558,6 @@ void GodotPhysicsServer3D::free(RID p_rid) {
} else if (area_owner.owns(p_rid)) {
GodotArea3D *area = area_owner.get_or_null(p_rid);
- /*
- if (area->get_monitor_query())
- _clear_query(area->get_monitor_query());
- */
-
area->set_space(nullptr);
while (area->get_shape_count()) {
@@ -1583,7 +1570,7 @@ void GodotPhysicsServer3D::free(RID p_rid) {
GodotSpace3D *space = space_owner.get_or_null(p_rid);
while (space->get_objects().size()) {
- GodotCollisionObject3D *co = (GodotCollisionObject3D *)space->get_objects().front()->get();
+ GodotCollisionObject3D *co = static_cast<GodotCollisionObject3D *>(space->get_objects().front()->get());
co->set_space(nullptr);
}
@@ -1625,7 +1612,7 @@ void GodotPhysicsServer3D::step(real_t p_step) {
active_objects = 0;
collision_pairs = 0;
for (Set<const GodotSpace3D *>::Element *E = active_spaces.front(); E; E = E->next()) {
- stepper->step((GodotSpace3D *)E->get(), p_step);
+ stepper->step(const_cast<GodotSpace3D *>(E->get()), p_step);
island_count += E->get()->get_island_count();
active_objects += E->get()->get_active_objects();
collision_pairs += E->get()->get_collision_pairs();
@@ -1649,7 +1636,7 @@ void GodotPhysicsServer3D::flush_queries() {
uint64_t time_beg = OS::get_singleton()->get_ticks_usec();
for (Set<const GodotSpace3D *>::Element *E = active_spaces.front(); E; E = E->next()) {
- GodotSpace3D *space = (GodotSpace3D *)E->get();
+ GodotSpace3D *space = const_cast<GodotSpace3D *>(E->get());
space->call_queries();
}
@@ -1722,7 +1709,7 @@ void GodotPhysicsServer3D::_update_shapes() {
}
void GodotPhysicsServer3D::_shape_col_cbk(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata) {
- CollCbkData *cbk = (CollCbkData *)p_userdata;
+ CollCbkData *cbk = static_cast<CollCbkData *>(p_userdata);
if (cbk->max == 0) {
return;
diff --git a/servers/physics_3d/godot_physics_server_3d.h b/servers/physics_3d/godot_physics_server_3d.h
index ab9cd19723..d2078a912c 100644
--- a/servers/physics_3d/godot_physics_server_3d.h
+++ b/servers/physics_3d/godot_physics_server_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -74,7 +74,7 @@ public:
struct CollCbkData {
int max;
int amount;
- Vector3 *ptr;
+ Vector3 *ptr = nullptr;
};
static void _shape_col_cbk(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata);
@@ -253,7 +253,7 @@ public:
virtual RID soft_body_create() override;
- virtual void soft_body_update_rendering_server(RID p_body, RenderingServerHandler *p_rendering_server_handler) override;
+ virtual void soft_body_update_rendering_server(RID p_body, PhysicsServer3DRenderingServerHandler *p_rendering_server_handler) override;
virtual void soft_body_set_space(RID p_body, RID p_space) override;
virtual RID soft_body_get_space(RID p_body) const override;
@@ -353,7 +353,7 @@ public:
virtual void joint_set_solver_priority(RID p_joint, int p_priority) override;
virtual int joint_get_solver_priority(RID p_joint) const override;
- virtual void joint_disable_collisions_between_bodies(RID p_joint, const bool p_disable) override;
+ virtual void joint_disable_collisions_between_bodies(RID p_joint, bool p_disable) override;
virtual bool joint_is_disabled_collisions_between_bodies(RID p_joint) const override;
/* MISC */
diff --git a/servers/physics_3d/godot_shape_3d.cpp b/servers/physics_3d/godot_shape_3d.cpp
index 5364a9833d..2efc11a4c0 100644
--- a/servers/physics_3d/godot_shape_3d.cpp
+++ b/servers/physics_3d/godot_shape_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -52,17 +52,17 @@ subject to the following restrictions:
3. This notice may not be removed or altered from any source distribution.
*/
-#define _EDGE_IS_VALID_SUPPORT_THRESHOLD 0.0002
-#define _FACE_IS_VALID_SUPPORT_THRESHOLD 0.9998
+constexpr double edge_support_threshold = 0.0002;
+constexpr double face_support_threshold = 0.9998;
-#define _CYLINDER_EDGE_IS_VALID_SUPPORT_THRESHOLD 0.002
-#define _CYLINDER_FACE_IS_VALID_SUPPORT_THRESHOLD 0.999
+constexpr double cylinder_edge_support_threshold = 0.002;
+constexpr double cylinder_face_support_threshold = 0.999;
void GodotShape3D::configure(const AABB &p_aabb) {
aabb = p_aabb;
configured = true;
for (const KeyValue<GodotShapeOwner3D *, int> &E : owners) {
- GodotShapeOwner3D *co = (GodotShapeOwner3D *)E.key;
+ GodotShapeOwner3D *co = const_cast<GodotShapeOwner3D *>(E.key);
co->_shape_changed();
}
}
@@ -184,7 +184,7 @@ Vector3 GodotSeparationRayShape3D::get_support(const Vector3 &p_normal) const {
}
void GodotSeparationRayShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3 *r_supports, int &r_amount, FeatureType &r_type) const {
- if (Math::abs(p_normal.z) < _EDGE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(p_normal.z) < edge_support_threshold) {
r_amount = 2;
r_type = FEATURE_EDGE;
r_supports[0] = Vector3(0, 0, 0);
@@ -335,7 +335,7 @@ void GodotBoxShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3 *
Vector3 axis;
axis[i] = 1.0;
real_t dot = p_normal.dot(axis);
- if (Math::abs(dot) > _FACE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(dot) > face_support_threshold) {
//Vector3 axis_b;
bool neg = dot < 0;
@@ -376,7 +376,7 @@ void GodotBoxShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3 *
Vector3 axis;
axis[i] = 1.0;
- if (Math::abs(p_normal.dot(axis)) < _EDGE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(p_normal.dot(axis)) < edge_support_threshold) {
r_amount = 2;
r_type = FEATURE_EDGE;
@@ -522,7 +522,7 @@ void GodotCapsuleShape3D::get_supports(const Vector3 &p_normal, int p_max, Vecto
real_t d = n.y;
- if (Math::abs(d) < _EDGE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(d) < edge_support_threshold) {
// make it flat
n.y = 0.0;
n.normalize();
@@ -662,7 +662,7 @@ GodotCapsuleShape3D::GodotCapsuleShape3D() {}
/********** CYLINDER *************/
void GodotCylinderShape3D::project_range(const Vector3 &p_normal, const Transform3D &p_transform, real_t &r_min, real_t &r_max) const {
- Vector3 cylinder_axis = p_transform.basis.get_axis(1).normalized();
+ Vector3 cylinder_axis = p_transform.basis.get_column(1).normalized();
real_t axis_dot = cylinder_axis.dot(p_normal);
Vector3 local_normal = p_transform.basis.xform_inv(p_normal);
@@ -703,7 +703,7 @@ Vector3 GodotCylinderShape3D::get_support(const Vector3 &p_normal) const {
void GodotCylinderShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3 *r_supports, int &r_amount, FeatureType &r_type) const {
real_t d = p_normal.y;
- if (Math::abs(d) > _CYLINDER_FACE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(d) > cylinder_face_support_threshold) {
real_t h = (d > 0) ? height : -height;
Vector3 n = p_normal;
@@ -718,7 +718,7 @@ void GodotCylinderShape3D::get_supports(const Vector3 &p_normal, int p_max, Vect
r_supports[1].x += radius;
r_supports[2] = n;
r_supports[2].z += radius;
- } else if (Math::abs(d) < _CYLINDER_EDGE_IS_VALID_SUPPORT_THRESHOLD) {
+ } else if (Math::abs(d) < cylinder_edge_support_threshold) {
// make it flat
Vector3 n = p_normal;
n.y = 0.0;
@@ -911,7 +911,7 @@ void GodotConvexPolygonShape3D::get_supports(const Vector3 &p_normal, int p_max,
}
for (int i = 0; i < fc; i++) {
- if (faces[i].plane.normal.dot(p_normal) > _FACE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (faces[i].plane.normal.dot(p_normal) > face_support_threshold) {
int ic = faces[i].indices.size();
const int *ind = faces[i].indices.ptr();
@@ -940,7 +940,7 @@ void GodotConvexPolygonShape3D::get_supports(const Vector3 &p_normal, int p_max,
for (int i = 0; i < ec; i++) {
real_t dot = (vertices[edges[i].a] - vertices[edges[i].b]).normalized().dot(p_normal);
dot = ABS(dot);
- if (dot < _EDGE_IS_VALID_SUPPORT_THRESHOLD && (edges[i].a == vtx || edges[i].b == vtx)) {
+ if (dot < edge_support_threshold && (edges[i].a == vtx || edges[i].b == vtx)) {
r_amount = 2;
r_type = FEATURE_EDGE;
r_supports[0] = vertices[edges[i].a];
@@ -1140,7 +1140,7 @@ void GodotFaceShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3
Vector3 n = p_normal;
/** TEST FACE AS SUPPORT **/
- if (Math::abs(normal.dot(n)) > _FACE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (Math::abs(normal.dot(n)) > face_support_threshold) {
r_amount = 3;
r_type = FEATURE_FACE;
for (int i = 0; i < 3; i++) {
@@ -1174,7 +1174,7 @@ void GodotFaceShape3D::get_supports(const Vector3 &p_normal, int p_max, Vector3
// check if edge is valid as a support
real_t dot = (vertex[i] - vertex[nx]).normalized().dot(n);
dot = ABS(dot);
- if (dot < _EDGE_IS_VALID_SUPPORT_THRESHOLD) {
+ if (dot < edge_support_threshold) {
r_amount = 2;
r_type = FEATURE_EDGE;
r_supports[0] = vertex[i];
@@ -1284,12 +1284,6 @@ Vector3 GodotConcavePolygonShape3D::get_support(const Vector3 &p_normal) const {
void GodotConcavePolygonShape3D::_cull_segment(int p_idx, _SegmentCullParams *p_params) const {
const BVH *bvh = &p_params->bvh[p_idx];
- /*
- if (p_params->dir.dot(bvh->aabb.get_support(-p_params->dir))>p_params->min_d)
- return; //test against whole AABB, which isn't very costly
- */
-
- //printf("addr: %p\n",bvh);
if (!bvh->aabb.intersects_segment(p_params->from, p_params->to)) {
return;
}
@@ -1444,7 +1438,7 @@ Vector3 GodotConcavePolygonShape3D::get_moment_of_inertia(real_t p_mass) const {
struct _Volume_BVH_Element {
AABB aabb;
Vector3 center;
- int face_index;
+ int face_index = 0;
};
struct _Volume_BVH_CompareX {
@@ -1467,10 +1461,10 @@ struct _Volume_BVH_CompareZ {
struct _Volume_BVH {
AABB aabb;
- _Volume_BVH *left;
- _Volume_BVH *right;
+ _Volume_BVH *left = nullptr;
+ _Volume_BVH *right = nullptr;
- int face_index;
+ int face_index = 0;
};
_Volume_BVH *_volume_build_bvh(_Volume_BVH_Element *p_elements, int p_size, int &count) {
diff --git a/servers/physics_3d/godot_shape_3d.h b/servers/physics_3d/godot_shape_3d.h
index 43319510d4..9d171c3928 100644
--- a/servers/physics_3d/godot_shape_3d.h
+++ b/servers/physics_3d/godot_shape_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/godot_soft_body_3d.cpp b/servers/physics_3d/godot_soft_body_3d.cpp
index 43d4433302..be4b41292d 100644
--- a/servers/physics_3d/godot_soft_body_3d.cpp
+++ b/servers/physics_3d/godot_soft_body_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -147,7 +147,7 @@ void GodotSoftBody3D::set_mesh(RID p_mesh) {
}
}
-void GodotSoftBody3D::update_rendering_server(RenderingServerHandler *p_rendering_server_handler) {
+void GodotSoftBody3D::update_rendering_server(PhysicsServer3DRenderingServerHandler *p_rendering_server_handler) {
if (soft_mesh.is_null()) {
return;
}
@@ -245,7 +245,7 @@ void GodotSoftBody3D::update_area() {
const Vector3 a = x1 - x0;
const Vector3 b = x2 - x0;
const Vector3 cr = vec3_cross(a, b);
- face.ra = cr.length();
+ face.ra = cr.length() * 0.5;
}
// Node area.
@@ -1272,7 +1272,7 @@ struct _SoftBodyIntersectSegmentInfo {
real_t hit_dist_sq = INFINITY;
static bool process_hit(uint32_t p_face_index, void *p_userdata) {
- _SoftBodyIntersectSegmentInfo &query_info = *(_SoftBodyIntersectSegmentInfo *)(p_userdata);
+ _SoftBodyIntersectSegmentInfo &query_info = *(static_cast<_SoftBodyIntersectSegmentInfo *>(p_userdata));
Vector3 points[3];
query_info.soft_body->get_face_points(p_face_index, points[0], points[1], points[2]);
diff --git a/servers/physics_3d/godot_soft_body_3d.h b/servers/physics_3d/godot_soft_body_3d.h
index 14ddc419cf..96f63e5819 100644
--- a/servers/physics_3d/godot_soft_body_3d.h
+++ b/servers/physics_3d/godot_soft_body_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -153,11 +153,11 @@ public:
}
}
- virtual void set_space(GodotSpace3D *p_space);
+ virtual void set_space(GodotSpace3D *p_space) override;
void set_mesh(RID p_mesh);
- void update_rendering_server(RenderingServerHandler *p_rendering_server_handler);
+ void update_rendering_server(PhysicsServer3DRenderingServerHandler *p_rendering_server_handler);
Vector3 get_vertex_position(int p_index) const;
void set_vertex_position(int p_index, const Vector3 &p_position);
@@ -204,8 +204,8 @@ public:
void predict_motion(real_t p_delta);
void solve_constraints(real_t p_delta);
- _FORCE_INLINE_ uint32_t get_node_index(void *p_node) const { return ((Node *)p_node)->index; }
- _FORCE_INLINE_ uint32_t get_face_index(void *p_face) const { return ((Face *)p_face)->index; }
+ _FORCE_INLINE_ uint32_t get_node_index(void *p_node) const { return static_cast<Node *>(p_node)->index; }
+ _FORCE_INLINE_ uint32_t get_face_index(void *p_face) const { return static_cast<Face *>(p_face)->index; }
// Return true to stop the query.
// p_index is the node index for AABB query, face index for Ray query.
@@ -215,7 +215,7 @@ public:
void query_ray(const Vector3 &p_from, const Vector3 &p_to, QueryResultCallback p_result_callback, void *p_userdata);
protected:
- virtual void _shapes_changed();
+ virtual void _shapes_changed() override;
private:
void update_normals_and_centroids();
diff --git a/servers/physics_3d/godot_space_3d.cpp b/servers/physics_3d/godot_space_3d.cpp
index 89e0d5c51f..0b84520c39 100644
--- a/servers/physics_3d/godot_space_3d.cpp
+++ b/servers/physics_3d/godot_space_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -153,7 +153,7 @@ bool GodotPhysicsDirectSpaceState3D::intersect_ray(const RayParameters &p_parame
if (p_parameters.hit_from_inside) {
// Hit shape at starting point.
min_d = 0;
- res_point = local_from;
+ res_point = begin;
res_normal = Vector3();
res_shape = shape_idx;
res_obj = col_obj;
@@ -445,7 +445,7 @@ struct _RestCallbackData {
};
static void _rest_cbk_result(const Vector3 &p_point_A, int p_index_A, const Vector3 &p_point_B, int p_index_B, void *p_userdata) {
- _RestCallbackData *rd = (_RestCallbackData *)p_userdata;
+ _RestCallbackData *rd = static_cast<_RestCallbackData *>(p_userdata);
Vector3 contact_rel = p_point_B - p_point_A;
real_t len = contact_rel.length();
@@ -926,6 +926,9 @@ bool GodotSpace3D::test_body_motion(GodotBody3D *p_body, const PhysicsServer3D::
// Allowed depth can't be lower than motion length, in order to handle contacts at low speed.
rcd.min_allowed_depth = MIN(motion_length, min_contact_depth);
+ body_aabb.position += p_parameters.motion * unsafe;
+ int amount = _cull_aabb_for_body(p_body, body_aabb);
+
int from_shape = best_shape != -1 ? best_shape : 0;
int to_shape = best_shape != -1 ? best_shape + 1 : p_body->get_shape_count();
@@ -937,10 +940,6 @@ bool GodotSpace3D::test_body_motion(GodotBody3D *p_body, const PhysicsServer3D::
Transform3D body_shape_xform = ugt * p_body->get_shape_transform(j);
GodotShape3D *body_shape = p_body->get_shape(j);
- body_aabb.position += p_parameters.motion * unsafe;
-
- int amount = _cull_aabb_for_body(p_body, body_aabb);
-
for (int i = 0; i < amount; i++) {
const GodotCollisionObject3D *col_obj = intersection_query_results[i];
if (p_parameters.exclude_bodies.has(col_obj->get_self())) {
@@ -1008,11 +1007,8 @@ bool GodotSpace3D::test_body_motion(GodotBody3D *p_body, const PhysicsServer3D::
return collided;
}
+// Assumes a valid collision pair, this should have been checked beforehand in the BVH or octree.
void *GodotSpace3D::_broadphase_pair(GodotCollisionObject3D *A, int p_subindex_A, GodotCollisionObject3D *B, int p_subindex_B, void *p_self) {
- if (!A->interacts_with(B)) {
- return nullptr;
- }
-
GodotCollisionObject3D::Type type_A = A->get_type();
GodotCollisionObject3D::Type type_B = B->get_type();
if (type_A > type_B) {
@@ -1021,7 +1017,7 @@ void *GodotSpace3D::_broadphase_pair(GodotCollisionObject3D *A, int p_subindex_A
SWAP(type_A, type_B);
}
- GodotSpace3D *self = (GodotSpace3D *)p_self;
+ GodotSpace3D *self = static_cast<GodotSpace3D *>(p_self);
self->collision_pairs++;
@@ -1042,10 +1038,10 @@ void *GodotSpace3D::_broadphase_pair(GodotCollisionObject3D *A, int p_subindex_A
}
} else if (type_A == GodotCollisionObject3D::TYPE_BODY) {
if (type_B == GodotCollisionObject3D::TYPE_SOFT_BODY) {
- GodotBodySoftBodyPair3D *soft_pair = memnew(GodotBodySoftBodyPair3D((GodotBody3D *)A, p_subindex_A, (GodotSoftBody3D *)B));
+ GodotBodySoftBodyPair3D *soft_pair = memnew(GodotBodySoftBodyPair3D(static_cast<GodotBody3D *>(A), p_subindex_A, static_cast<GodotSoftBody3D *>(B)));
return soft_pair;
} else {
- GodotBodyPair3D *b = memnew(GodotBodyPair3D((GodotBody3D *)A, p_subindex_A, (GodotBody3D *)B, p_subindex_B));
+ GodotBodyPair3D *b = memnew(GodotBodyPair3D(static_cast<GodotBody3D *>(A), p_subindex_A, static_cast<GodotBody3D *>(B), p_subindex_B));
return b;
}
} else {
@@ -1060,9 +1056,9 @@ void GodotSpace3D::_broadphase_unpair(GodotCollisionObject3D *A, int p_subindex_
return;
}
- GodotSpace3D *self = (GodotSpace3D *)p_self;
+ GodotSpace3D *self = static_cast<GodotSpace3D *>(p_self);
self->collision_pairs--;
- GodotConstraint3D *c = (GodotConstraint3D *)p_data;
+ GodotConstraint3D *c = static_cast<GodotConstraint3D *>(p_data);
memdelete(c);
}
diff --git a/servers/physics_3d/godot_space_3d.h b/servers/physics_3d/godot_space_3d.h
index fbdb65e29c..6308ede9a9 100644
--- a/servers/physics_3d/godot_space_3d.h
+++ b/servers/physics_3d/godot_space_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -47,7 +47,7 @@ class GodotPhysicsDirectSpaceState3D : public PhysicsDirectSpaceState3D {
GDCLASS(GodotPhysicsDirectSpaceState3D, PhysicsDirectSpaceState3D);
public:
- GodotSpace3D *space;
+ GodotSpace3D *space = nullptr;
virtual int intersect_point(const PointParameters &p_parameters, ShapeResult *r_results, int p_result_max) override;
virtual bool intersect_ray(const RayParameters &p_parameters, RayResult &r_result) override;
diff --git a/servers/physics_3d/godot_step_3d.cpp b/servers/physics_3d/godot_step_3d.cpp
index 6332532f6e..204adae450 100644
--- a/servers/physics_3d/godot_step_3d.cpp
+++ b/servers/physics_3d/godot_step_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -49,7 +49,7 @@ void GodotStep3D::_populate_island(GodotBody3D *p_body, LocalVector<GodotBody3D
}
for (const KeyValue<GodotConstraint3D *, int> &E : p_body->get_constraint_map()) {
- GodotConstraint3D *constraint = (GodotConstraint3D *)E.key;
+ GodotConstraint3D *constraint = const_cast<GodotConstraint3D *>(E.key);
if (constraint->get_island_step() == _step) {
continue; // Already processed.
}
@@ -88,7 +88,7 @@ void GodotStep3D::_populate_island_soft_body(GodotSoftBody3D *p_soft_body, Local
p_soft_body->set_island_step(_step);
for (Set<GodotConstraint3D *>::Element *E = p_soft_body->get_constraints().front(); E; E = E->next()) {
- GodotConstraint3D *constraint = (GodotConstraint3D *)E->get();
+ GodotConstraint3D *constraint = const_cast<GodotConstraint3D *>(E->get());
if (constraint->get_island_step() == _step) {
continue; // Already processed.
}
diff --git a/servers/physics_3d/godot_step_3d.h b/servers/physics_3d/godot_step_3d.h
index 10389713f6..6d975b0dd3 100644
--- a/servers/physics_3d/godot_step_3d.h
+++ b/servers/physics_3d/godot_step_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_cone_twist_joint_3d.cpp b/servers/physics_3d/joints/godot_cone_twist_joint_3d.cpp
index 864086c956..28cc064a1e 100644
--- a/servers/physics_3d/joints/godot_cone_twist_joint_3d.cpp
+++ b/servers/physics_3d/joints/godot_cone_twist_joint_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -147,8 +147,8 @@ bool GodotConeTwistJoint3D::setup(real_t p_timestep) {
Vector3 b1Axis1, b1Axis2, b1Axis3;
Vector3 b2Axis1, b2Axis2;
- b1Axis1 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_axis(0));
- b2Axis1 = B->get_transform().basis.xform(this->m_rbBFrame.basis.get_axis(0));
+ b1Axis1 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_column(0));
+ b2Axis1 = B->get_transform().basis.xform(this->m_rbBFrame.basis.get_column(0));
real_t swing1 = real_t(0.), swing2 = real_t(0.);
@@ -158,7 +158,7 @@ bool GodotConeTwistJoint3D::setup(real_t p_timestep) {
// Get Frame into world space
if (m_swingSpan1 >= real_t(0.05f)) {
- b1Axis2 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_axis(1));
+ b1Axis2 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_column(1));
//swing1 = btAtan2Fast( b2Axis1.dot(b1Axis2),b2Axis1.dot(b1Axis1) );
swx = b2Axis1.dot(b1Axis1);
swy = b2Axis1.dot(b1Axis2);
@@ -169,7 +169,7 @@ bool GodotConeTwistJoint3D::setup(real_t p_timestep) {
}
if (m_swingSpan2 >= real_t(0.05f)) {
- b1Axis3 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_axis(2));
+ b1Axis3 = A->get_transform().basis.xform(this->m_rbAFrame.basis.get_column(2));
//swing2 = btAtan2Fast( b2Axis1.dot(b1Axis3),b2Axis1.dot(b1Axis1) );
swx = b2Axis1.dot(b1Axis1);
swy = b2Axis1.dot(b1Axis3);
@@ -199,7 +199,7 @@ bool GodotConeTwistJoint3D::setup(real_t p_timestep) {
// Twist limits
if (m_twistSpan >= real_t(0.)) {
- Vector3 b2Axis22 = B->get_transform().basis.xform(this->m_rbBFrame.basis.get_axis(1));
+ Vector3 b2Axis22 = B->get_transform().basis.xform(this->m_rbBFrame.basis.get_column(1));
Quaternion rotationArc = Quaternion(b2Axis1, b1Axis1);
Vector3 TwistRef = rotationArc.xform(b2Axis22);
real_t twist = atan2fast(TwistRef.dot(b1Axis3), TwistRef.dot(b1Axis2));
diff --git a/servers/physics_3d/joints/godot_cone_twist_joint_3d.h b/servers/physics_3d/joints/godot_cone_twist_joint_3d.h
index 999d0f0692..fdcc2ceea3 100644
--- a/servers/physics_3d/joints/godot_cone_twist_joint_3d.h
+++ b/servers/physics_3d/joints/godot_cone_twist_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_generic_6dof_joint_3d.cpp b/servers/physics_3d/joints/godot_generic_6dof_joint_3d.cpp
index 915bb528e9..e0fa940104 100644
--- a/servers/physics_3d/joints/godot_generic_6dof_joint_3d.cpp
+++ b/servers/physics_3d/joints/godot_generic_6dof_joint_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -249,8 +249,8 @@ void GodotGeneric6DOFJoint3D::calculateAngleInfo() {
// easier to take the euler rate expression for d(angle[2])/dt with respect
// to the components of w and set that to 0.
- Vector3 axis0 = m_calculatedTransformB.basis.get_axis(0);
- Vector3 axis2 = m_calculatedTransformA.basis.get_axis(2);
+ Vector3 axis0 = m_calculatedTransformB.basis.get_column(0);
+ Vector3 axis2 = m_calculatedTransformA.basis.get_column(2);
m_calculatedAxis[1] = axis2.cross(axis0);
m_calculatedAxis[0] = m_calculatedAxis[1].cross(axis2);
@@ -345,9 +345,9 @@ bool GodotGeneric6DOFJoint3D::setup(real_t p_timestep) {
for (i = 0; i < 3; i++) {
if (m_linearLimits.enable_limit[i] && m_linearLimits.isLimited(i)) {
if (m_useLinearReferenceFrameA) {
- normalWorld = m_calculatedTransformA.basis.get_axis(i);
+ normalWorld = m_calculatedTransformA.basis.get_column(i);
} else {
- normalWorld = m_calculatedTransformB.basis.get_axis(i);
+ normalWorld = m_calculatedTransformB.basis.get_column(i);
}
buildLinearJacobian(
@@ -388,9 +388,9 @@ void GodotGeneric6DOFJoint3D::solve(real_t p_timestep) {
jacDiagABInv = real_t(1.) / m_jacLinear[i].getDiagonal();
if (m_useLinearReferenceFrameA) {
- linear_axis = m_calculatedTransformA.basis.get_axis(i);
+ linear_axis = m_calculatedTransformA.basis.get_column(i);
} else {
- linear_axis = m_calculatedTransformB.basis.get_axis(i);
+ linear_axis = m_calculatedTransformB.basis.get_column(i);
}
m_linearLimits.solveLinearAxis(
diff --git a/servers/physics_3d/joints/godot_generic_6dof_joint_3d.h b/servers/physics_3d/joints/godot_generic_6dof_joint_3d.h
index f37b5b981b..bcf2d18647 100644
--- a/servers/physics_3d/joints/godot_generic_6dof_joint_3d.h
+++ b/servers/physics_3d/joints/godot_generic_6dof_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_hinge_joint_3d.cpp b/servers/physics_3d/joints/godot_hinge_joint_3d.cpp
index cf77129a30..01c59395c8 100644
--- a/servers/physics_3d/joints/godot_hinge_joint_3d.cpp
+++ b/servers/physics_3d/joints/godot_hinge_joint_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -92,16 +92,16 @@ GodotHingeJoint3D::GodotHingeJoint3D(GodotBody3D *rbA, GodotBody3D *rbB, const V
m_rbAFrame.origin = pivotInA;
// since no frame is given, assume this to be zero angle and just pick rb transform axis
- Vector3 rbAxisA1 = rbA->get_transform().basis.get_axis(0);
+ Vector3 rbAxisA1 = rbA->get_transform().basis.get_column(0);
Vector3 rbAxisA2;
real_t projection = axisInA.dot(rbAxisA1);
if (projection >= 1.0f - CMP_EPSILON) {
- rbAxisA1 = -rbA->get_transform().basis.get_axis(2);
- rbAxisA2 = rbA->get_transform().basis.get_axis(1);
+ rbAxisA1 = -rbA->get_transform().basis.get_column(2);
+ rbAxisA2 = rbA->get_transform().basis.get_column(1);
} else if (projection <= -1.0f + CMP_EPSILON) {
- rbAxisA1 = rbA->get_transform().basis.get_axis(2);
- rbAxisA2 = rbA->get_transform().basis.get_axis(1);
+ rbAxisA1 = rbA->get_transform().basis.get_column(2);
+ rbAxisA2 = rbA->get_transform().basis.get_column(1);
} else {
rbAxisA2 = axisInA.cross(rbAxisA1);
rbAxisA1 = rbAxisA2.cross(axisInA);
@@ -171,11 +171,11 @@ bool GodotHingeJoint3D::setup(real_t p_step) {
Vector3 jointAxis0local;
Vector3 jointAxis1local;
- plane_space(m_rbAFrame.basis.get_axis(2), jointAxis0local, jointAxis1local);
+ plane_space(m_rbAFrame.basis.get_column(2), jointAxis0local, jointAxis1local);
Vector3 jointAxis0 = A->get_transform().basis.xform(jointAxis0local);
Vector3 jointAxis1 = A->get_transform().basis.xform(jointAxis1local);
- Vector3 hingeAxisWorld = A->get_transform().basis.xform(m_rbAFrame.basis.get_axis(2));
+ Vector3 hingeAxisWorld = A->get_transform().basis.xform(m_rbAFrame.basis.get_column(2));
memnew_placement(
&m_jacAng[0],
@@ -213,16 +213,12 @@ bool GodotHingeJoint3D::setup(real_t p_step) {
m_solveLimit = false;
m_accLimitImpulse = real_t(0.);
- //if (m_lowerLimit < m_upperLimit)
if (m_useLimit && m_lowerLimit <= m_upperLimit) {
- //if (hingeAngle <= m_lowerLimit*m_limitSoftness)
if (hingeAngle <= m_lowerLimit) {
m_correction = (m_lowerLimit - hingeAngle);
m_limitSign = 1.0f;
m_solveLimit = true;
- }
- //else if (hingeAngle >= m_upperLimit*m_limitSoftness)
- else if (hingeAngle >= m_upperLimit) {
+ } else if (hingeAngle >= m_upperLimit) {
m_correction = m_upperLimit - hingeAngle;
m_limitSign = -1.0f;
m_solveLimit = true;
@@ -230,7 +226,7 @@ bool GodotHingeJoint3D::setup(real_t p_step) {
}
//Compute K = J*W*J' for hinge axis
- Vector3 axisA = A->get_transform().basis.xform(m_rbAFrame.basis.get_axis(2));
+ Vector3 axisA = A->get_transform().basis.xform(m_rbAFrame.basis.get_column(2));
m_kHinge = 1.0f / (A->compute_angular_impulse_denominator(axisA) + B->compute_angular_impulse_denominator(axisA));
return true;
@@ -275,8 +271,8 @@ void GodotHingeJoint3D::solve(real_t p_step) {
///solve angular part
// get axes in world space
- Vector3 axisA = A->get_transform().basis.xform(m_rbAFrame.basis.get_axis(2));
- Vector3 axisB = B->get_transform().basis.xform(m_rbBFrame.basis.get_axis(2));
+ Vector3 axisA = A->get_transform().basis.xform(m_rbAFrame.basis.get_column(2));
+ Vector3 axisB = B->get_transform().basis.xform(m_rbBFrame.basis.get_column(2));
const Vector3 &angVelA = A->get_angular_velocity();
const Vector3 &angVelB = B->get_angular_velocity();
@@ -388,9 +384,9 @@ static _FORCE_INLINE_ real_t atan2fast(real_t y, real_t x) {
}
real_t GodotHingeJoint3D::get_hinge_angle() {
- const Vector3 refAxis0 = A->get_transform().basis.xform(m_rbAFrame.basis.get_axis(0));
- const Vector3 refAxis1 = A->get_transform().basis.xform(m_rbAFrame.basis.get_axis(1));
- const Vector3 swingAxis = B->get_transform().basis.xform(m_rbBFrame.basis.get_axis(1));
+ const Vector3 refAxis0 = A->get_transform().basis.xform(m_rbAFrame.basis.get_column(0));
+ const Vector3 refAxis1 = A->get_transform().basis.xform(m_rbAFrame.basis.get_column(1));
+ const Vector3 swingAxis = B->get_transform().basis.xform(m_rbBFrame.basis.get_column(1));
return atan2fast(swingAxis.dot(refAxis0), swingAxis.dot(refAxis1));
}
diff --git a/servers/physics_3d/joints/godot_hinge_joint_3d.h b/servers/physics_3d/joints/godot_hinge_joint_3d.h
index ff1fbe0f25..b934540e8d 100644
--- a/servers/physics_3d/joints/godot_hinge_joint_3d.h
+++ b/servers/physics_3d/joints/godot_hinge_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_jacobian_entry_3d.h b/servers/physics_3d/joints/godot_jacobian_entry_3d.h
index 90a77a9b61..0fe15751d5 100644
--- a/servers/physics_3d/joints/godot_jacobian_entry_3d.h
+++ b/servers/physics_3d/joints/godot_jacobian_entry_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_pin_joint_3d.cpp b/servers/physics_3d/joints/godot_pin_joint_3d.cpp
index e9e81b61a7..c52ea2665c 100644
--- a/servers/physics_3d/joints/godot_pin_joint_3d.cpp
+++ b/servers/physics_3d/joints/godot_pin_joint_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_pin_joint_3d.h b/servers/physics_3d/joints/godot_pin_joint_3d.h
index 17e2e6e973..eeeaa650bd 100644
--- a/servers/physics_3d/joints/godot_pin_joint_3d.h
+++ b/servers/physics_3d/joints/godot_pin_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_3d/joints/godot_slider_joint_3d.cpp b/servers/physics_3d/joints/godot_slider_joint_3d.cpp
index 1f463ad24c..4539be21e3 100644
--- a/servers/physics_3d/joints/godot_slider_joint_3d.cpp
+++ b/servers/physics_3d/joints/godot_slider_joint_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -102,7 +102,7 @@ bool GodotSliderJoint3D::setup(real_t p_step) {
m_calculatedTransformB = B->get_transform() * m_frameInB;
m_realPivotAInW = m_calculatedTransformA.origin;
m_realPivotBInW = m_calculatedTransformB.origin;
- m_sliderAxis = m_calculatedTransformA.basis.get_axis(0); // along X
+ m_sliderAxis = m_calculatedTransformA.basis.get_column(0); // along X
m_delta = m_realPivotBInW - m_realPivotAInW;
m_projPivotInW = m_realPivotAInW + m_sliderAxis.dot(m_delta) * m_sliderAxis;
m_relPosA = m_projPivotInW - A->get_transform().origin;
@@ -111,7 +111,7 @@ bool GodotSliderJoint3D::setup(real_t p_step) {
int i;
//linear part
for (i = 0; i < 3; i++) {
- normalWorld = m_calculatedTransformA.basis.get_axis(i);
+ normalWorld = m_calculatedTransformA.basis.get_column(i);
memnew_placement(
&m_jacLin[i],
GodotJacobianEntry3D(
@@ -130,7 +130,7 @@ bool GodotSliderJoint3D::setup(real_t p_step) {
testLinLimits();
// angular part
for (i = 0; i < 3; i++) {
- normalWorld = m_calculatedTransformA.basis.get_axis(i);
+ normalWorld = m_calculatedTransformA.basis.get_column(i);
memnew_placement(
&m_jacAng[i],
GodotJacobianEntry3D(
@@ -141,7 +141,7 @@ bool GodotSliderJoint3D::setup(real_t p_step) {
B->get_inv_inertia()));
}
testAngLimits();
- Vector3 axisA = m_calculatedTransformA.basis.get_axis(0);
+ Vector3 axisA = m_calculatedTransformA.basis.get_column(0);
m_kAngle = real_t(1.0) / (A->compute_angular_impulse_denominator(axisA) + B->compute_angular_impulse_denominator(axisA));
// clear accumulator for motors
m_accumulatedLinMotorImpulse = real_t(0.0);
@@ -206,8 +206,8 @@ void GodotSliderJoint3D::solve(real_t p_step) {
}
// angular
// get axes in world space
- Vector3 axisA = m_calculatedTransformA.basis.get_axis(0);
- Vector3 axisB = m_calculatedTransformB.basis.get_axis(0);
+ Vector3 axisA = m_calculatedTransformA.basis.get_column(0);
+ Vector3 axisB = m_calculatedTransformB.basis.get_column(0);
const Vector3 &angVelA = A->get_angular_velocity();
const Vector3 &angVelB = B->get_angular_velocity();
@@ -297,14 +297,14 @@ void GodotSliderJoint3D::calculateTransforms() {
m_calculatedTransformB = B->get_transform() * m_frameInB;
m_realPivotAInW = m_calculatedTransformA.origin;
m_realPivotBInW = m_calculatedTransformB.origin;
- m_sliderAxis = m_calculatedTransformA.basis.get_axis(0); // along X
+ m_sliderAxis = m_calculatedTransformA.basis.get_column(0); // along X
m_delta = m_realPivotBInW - m_realPivotAInW;
m_projPivotInW = m_realPivotAInW + m_sliderAxis.dot(m_delta) * m_sliderAxis;
Vector3 normalWorld;
int i;
//linear part
for (i = 0; i < 3; i++) {
- normalWorld = m_calculatedTransformA.basis.get_axis(i);
+ normalWorld = m_calculatedTransformA.basis.get_column(i);
m_depth[i] = m_delta.dot(normalWorld);
}
}
@@ -335,9 +335,9 @@ void GodotSliderJoint3D::testAngLimits() {
m_angDepth = real_t(0.);
m_solveAngLim = false;
if (m_lowerAngLimit <= m_upperAngLimit) {
- const Vector3 axisA0 = m_calculatedTransformA.basis.get_axis(1);
- const Vector3 axisA1 = m_calculatedTransformA.basis.get_axis(2);
- const Vector3 axisB0 = m_calculatedTransformB.basis.get_axis(1);
+ const Vector3 axisA0 = m_calculatedTransformA.basis.get_column(1);
+ const Vector3 axisA1 = m_calculatedTransformA.basis.get_column(2);
+ const Vector3 axisB0 = m_calculatedTransformB.basis.get_column(1);
real_t rot = atan2fast(axisB0.dot(axisA1), axisB0.dot(axisA0));
if (rot < m_lowerAngLimit) {
m_angDepth = rot - m_lowerAngLimit;
diff --git a/servers/physics_3d/joints/godot_slider_joint_3d.h b/servers/physics_3d/joints/godot_slider_joint_3d.h
index 9baaf1fa40..f596c9ff75 100644
--- a/servers/physics_3d/joints/godot_slider_joint_3d.h
+++ b/servers/physics_3d/joints/godot_slider_joint_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/physics_server_2d.cpp b/servers/physics_server_2d.cpp
index f76e00d466..d6d23f8310 100644
--- a/servers/physics_server_2d.cpp
+++ b/servers/physics_server_2d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -243,7 +243,7 @@ void PhysicsPointQueryParameters2D::_bind_methods() {
///////////////////////////////////////////////////////
-void PhysicsShapeQueryParameters2D::set_shape(const RES &p_shape_ref) {
+void PhysicsShapeQueryParameters2D::set_shape(const Ref<Resource> &p_shape_ref) {
ERR_FAIL_COND(p_shape_ref.is_null());
shape_ref = p_shape_ref;
parameters.shape_rid = p_shape_ref->get_rid();
@@ -251,7 +251,7 @@ void PhysicsShapeQueryParameters2D::set_shape(const RES &p_shape_ref) {
void PhysicsShapeQueryParameters2D::set_shape_rid(const RID &p_shape) {
if (parameters.shape_rid != p_shape) {
- shape_ref = RES();
+ shape_ref = Ref<Resource>();
parameters.shape_rid = p_shape;
}
}
@@ -336,6 +336,8 @@ Dictionary PhysicsDirectSpaceState2D::_intersect_ray(const Ref<PhysicsRayQueryPa
}
Array PhysicsDirectSpaceState2D::_intersect_point(const Ref<PhysicsPointQueryParameters2D> &p_point_query, int p_max_results) {
+ ERR_FAIL_COND_V(p_point_query.is_null(), Array());
+
Vector<ShapeResult> ret;
ret.resize(p_max_results);
diff --git a/servers/physics_server_2d.h b/servers/physics_server_2d.h
index 87a549e72d..2f70b88e30 100644
--- a/servers/physics_server_2d.h
+++ b/servers/physics_server_2d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -663,7 +663,7 @@ class PhysicsShapeQueryParameters2D : public RefCounted {
PhysicsDirectSpaceState2D::ShapeParameters parameters;
- RES shape_ref;
+ Ref<Resource> shape_ref;
protected:
static void _bind_methods();
@@ -671,8 +671,8 @@ protected:
public:
const PhysicsDirectSpaceState2D::ShapeParameters &get_parameters() const { return parameters; }
- void set_shape(const RES &p_shape_ref);
- RES get_shape() const { return shape_ref; }
+ void set_shape(const Ref<Resource> &p_shape_ref);
+ Ref<Resource> get_shape() const { return shape_ref; }
void set_shape_rid(const RID &p_shape);
RID get_shape_rid() const { return parameters.shape_rid; }
diff --git a/servers/physics_server_2d_wrap_mt.cpp b/servers/physics_server_2d_wrap_mt.cpp
index 33070bf42d..699f515270 100644
--- a/servers/physics_server_2d_wrap_mt.cpp
+++ b/servers/physics_server_2d_wrap_mt.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,7 +37,7 @@ void PhysicsServer2DWrapMT::thread_exit() {
}
void PhysicsServer2DWrapMT::thread_step(real_t p_delta) {
- physics_2d_server->step(p_delta);
+ physics_server_2d->step(p_delta);
step_sem.post();
}
@@ -50,7 +50,7 @@ void PhysicsServer2DWrapMT::_thread_callback(void *_instance) {
void PhysicsServer2DWrapMT::thread_loop() {
server_thread = Thread::get_caller_id();
- physics_2d_server->init();
+ physics_server_2d->init();
exit.clear();
step_thread_up.set();
@@ -61,7 +61,7 @@ void PhysicsServer2DWrapMT::thread_loop() {
command_queue.flush_all(); // flush all
- physics_2d_server->finish();
+ physics_server_2d->finish();
}
/* EVENT QUEUING */
@@ -71,7 +71,7 @@ void PhysicsServer2DWrapMT::step(real_t p_step) {
command_queue.push(this, &PhysicsServer2DWrapMT::thread_step, p_step);
} else {
command_queue.flush_all(); //flush all pending from other threads
- physics_2d_server->step(p_step);
+ physics_server_2d->step(p_step);
}
}
@@ -83,15 +83,15 @@ void PhysicsServer2DWrapMT::sync() {
step_sem.wait(); //must not wait if a step was not issued
}
}
- physics_2d_server->sync();
+ physics_server_2d->sync();
}
void PhysicsServer2DWrapMT::flush_queries() {
- physics_2d_server->flush_queries();
+ physics_server_2d->flush_queries();
}
void PhysicsServer2DWrapMT::end_sync() {
- physics_2d_server->end_sync();
+ physics_server_2d->end_sync();
}
void PhysicsServer2DWrapMT::init() {
@@ -102,7 +102,7 @@ void PhysicsServer2DWrapMT::init() {
OS::get_singleton()->delay_usec(1000);
}
} else {
- physics_2d_server->init();
+ physics_server_2d->init();
}
}
@@ -111,13 +111,13 @@ void PhysicsServer2DWrapMT::finish() {
command_queue.push(this, &PhysicsServer2DWrapMT::thread_exit);
thread.wait_to_finish();
} else {
- physics_2d_server->finish();
+ physics_server_2d->finish();
}
}
PhysicsServer2DWrapMT::PhysicsServer2DWrapMT(PhysicsServer2D *p_contained, bool p_create_thread) :
command_queue(p_create_thread) {
- physics_2d_server = p_contained;
+ physics_server_2d = p_contained;
create_thread = p_create_thread;
pool_max_size = GLOBAL_GET("memory/limits/multithreaded_server/rid_pool_prealloc");
@@ -132,6 +132,6 @@ PhysicsServer2DWrapMT::PhysicsServer2DWrapMT(PhysicsServer2D *p_contained, bool
}
PhysicsServer2DWrapMT::~PhysicsServer2DWrapMT() {
- memdelete(physics_2d_server);
+ memdelete(physics_server_2d);
//finish();
}
diff --git a/servers/physics_server_2d_wrap_mt.h b/servers/physics_server_2d_wrap_mt.h
index cb6e6fc084..ddb071f603 100644
--- a/servers/physics_server_2d_wrap_mt.h
+++ b/servers/physics_server_2d_wrap_mt.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -44,7 +44,7 @@
#endif
class PhysicsServer2DWrapMT : public PhysicsServer2D {
- mutable PhysicsServer2D *physics_2d_server;
+ mutable PhysicsServer2D *physics_server_2d;
mutable CommandQueueMT command_queue;
@@ -71,7 +71,7 @@ class PhysicsServer2DWrapMT : public PhysicsServer2D {
public:
#define ServerName PhysicsServer2D
#define ServerNameWrapMT PhysicsServer2DWrapMT
-#define server_name physics_2d_server
+#define server_name physics_server_2d
#define WRITE_ACTION
#include "servers/server_wrap_mt_common.h"
@@ -96,7 +96,7 @@ public:
//these work well, but should be used from the main thread only
bool shape_collide(RID p_shape_A, const Transform2D &p_xform_A, const Vector2 &p_motion_A, RID p_shape_B, const Transform2D &p_xform_B, const Vector2 &p_motion_B, Vector2 *r_results, int p_result_max, int &r_result_count) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), false);
- return physics_2d_server->shape_collide(p_shape_A, p_xform_A, p_motion_A, p_shape_B, p_xform_B, p_motion_B, r_results, p_result_max, r_result_count);
+ return physics_server_2d->shape_collide(p_shape_A, p_xform_A, p_motion_A, p_shape_B, p_xform_B, p_motion_B, r_results, p_result_max, r_result_count);
}
/* SPACE API */
@@ -111,18 +111,18 @@ public:
// this function only works on physics process, errors and returns null otherwise
PhysicsDirectSpaceState2D *space_get_direct_state(RID p_space) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), nullptr);
- return physics_2d_server->space_get_direct_state(p_space);
+ return physics_server_2d->space_get_direct_state(p_space);
}
FUNC2(space_set_debug_contacts, RID, int);
virtual Vector<Vector2> space_get_contacts(RID p_space) const override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), Vector<Vector2>());
- return physics_2d_server->space_get_contacts(p_space);
+ return physics_server_2d->space_get_contacts(p_space);
}
virtual int space_get_contact_count(RID p_space) const override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), 0);
- return physics_2d_server->space_get_contact_count(p_space);
+ return physics_server_2d->space_get_contact_count(p_space);
}
/* AREA API */
@@ -250,20 +250,20 @@ public:
FUNC3(body_set_force_integration_callback, RID, const Callable &, const Variant &);
bool body_collide_shape(RID p_body, int p_body_shape, RID p_shape, const Transform2D &p_shape_xform, const Vector2 &p_motion, Vector2 *r_results, int p_result_max, int &r_result_count) override {
- return physics_2d_server->body_collide_shape(p_body, p_body_shape, p_shape, p_shape_xform, p_motion, r_results, p_result_max, r_result_count);
+ return physics_server_2d->body_collide_shape(p_body, p_body_shape, p_shape, p_shape_xform, p_motion, r_results, p_result_max, r_result_count);
}
FUNC2(body_set_pickable, RID, bool);
bool body_test_motion(RID p_body, const MotionParameters &p_parameters, MotionResult *r_result = nullptr) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), false);
- return physics_2d_server->body_test_motion(p_body, p_parameters, r_result);
+ return physics_server_2d->body_test_motion(p_body, p_parameters, r_result);
}
// this function only works on physics process, errors and returns null otherwise
PhysicsDirectBodyState2D *body_get_direct_state(RID p_body) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), nullptr);
- return physics_2d_server->body_get_direct_state(p_body);
+ return physics_server_2d->body_get_direct_state(p_body);
}
/* JOINT API */
@@ -309,11 +309,11 @@ public:
virtual void finish() override;
virtual bool is_flushing_queries() const override {
- return physics_2d_server->is_flushing_queries();
+ return physics_server_2d->is_flushing_queries();
}
int get_process_info(ProcessInfo p_info) override {
- return physics_2d_server->get_process_info(p_info);
+ return physics_server_2d->get_process_info(p_info);
}
PhysicsServer2DWrapMT(PhysicsServer2D *p_contained, bool p_create_thread);
diff --git a/servers/physics_server_3d.cpp b/servers/physics_server_3d.cpp
index f5a099013f..bfe93f0dfb 100644
--- a/servers/physics_server_3d.cpp
+++ b/servers/physics_server_3d.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,6 +33,22 @@
#include "core/config/project_settings.h"
#include "core/string/print_string.h"
+void PhysicsServer3DRenderingServerHandler::set_vertex(int p_vertex_id, const void *p_vector3) {
+ GDVIRTUAL_REQUIRED_CALL(_set_vertex, p_vertex_id, p_vector3);
+}
+void PhysicsServer3DRenderingServerHandler::set_normal(int p_vertex_id, const void *p_vector3) {
+ GDVIRTUAL_REQUIRED_CALL(_set_normal, p_vertex_id, p_vector3);
+}
+void PhysicsServer3DRenderingServerHandler::set_aabb(const AABB &p_aabb) {
+ GDVIRTUAL_REQUIRED_CALL(_set_aabb, p_aabb);
+}
+
+void PhysicsServer3DRenderingServerHandler::_bind_methods() {
+ GDVIRTUAL_BIND(_set_vertex, "vertex_id", "vertices");
+ GDVIRTUAL_BIND(_set_normal, "vertex_id", "normals");
+ GDVIRTUAL_BIND(_set_aabb, "aabb");
+}
+
PhysicsServer3D *PhysicsServer3D::singleton = nullptr;
void PhysicsDirectBodyState3D::integrate_forces() {
@@ -246,7 +262,7 @@ void PhysicsPointQueryParameters3D::_bind_methods() {
///////////////////////////////////////////////////////
-void PhysicsShapeQueryParameters3D::set_shape(const RES &p_shape_ref) {
+void PhysicsShapeQueryParameters3D::set_shape(const Ref<Resource> &p_shape_ref) {
ERR_FAIL_COND(p_shape_ref.is_null());
shape_ref = p_shape_ref;
parameters.shape_rid = p_shape_ref->get_rid();
@@ -254,7 +270,7 @@ void PhysicsShapeQueryParameters3D::set_shape(const RES &p_shape_ref) {
void PhysicsShapeQueryParameters3D::set_shape_rid(const RID &p_shape) {
if (parameters.shape_rid != p_shape) {
- shape_ref = RES();
+ shape_ref = Ref<Resource>();
parameters.shape_rid = p_shape;
}
}
@@ -339,6 +355,8 @@ Dictionary PhysicsDirectSpaceState3D::_intersect_ray(const Ref<PhysicsRayQueryPa
}
Array PhysicsDirectSpaceState3D::_intersect_point(const Ref<PhysicsPointQueryParameters3D> &p_point_query, int p_max_results) {
+ ERR_FAIL_COND_V(p_point_query.is_null(), Array());
+
Vector<ShapeResult> ret;
ret.resize(p_max_results);
diff --git a/servers/physics_server_3d.h b/servers/physics_server_3d.h
index 13719ba1c5..47f3fc2027 100644
--- a/servers/physics_server_3d.h
+++ b/servers/physics_server_3d.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,6 +33,9 @@
#include "core/io/resource.h"
#include "core/object/class_db.h"
+#include "core/object/gdvirtual.gen.inc"
+#include "core/object/script_language.h"
+#include "core/variant/native_ptr.h"
class PhysicsDirectSpaceState3D;
@@ -202,13 +205,21 @@ public:
PhysicsDirectSpaceState3D();
};
-class RenderingServerHandler {
+class PhysicsServer3DRenderingServerHandler : public Object {
+ GDCLASS(PhysicsServer3DRenderingServerHandler, Object)
+protected:
+ GDVIRTUAL2(_set_vertex, int, GDNativeConstPtr<void>)
+ GDVIRTUAL2(_set_normal, int, GDNativeConstPtr<void>)
+ GDVIRTUAL1(_set_aabb, const AABB &)
+
+ static void _bind_methods();
+
public:
- virtual void set_vertex(int p_vertex_id, const void *p_vector3) = 0;
- virtual void set_normal(int p_vertex_id, const void *p_vector3) = 0;
- virtual void set_aabb(const AABB &p_aabb) = 0;
+ virtual void set_vertex(int p_vertex_id, const void *p_vector3);
+ virtual void set_normal(int p_vertex_id, const void *p_vector3);
+ virtual void set_aabb(const AABB &p_aabb);
- virtual ~RenderingServerHandler() {}
+ virtual ~PhysicsServer3DRenderingServerHandler() {}
};
class PhysicsTestMotionParameters3D;
@@ -552,7 +563,7 @@ public:
virtual RID soft_body_create() = 0;
- virtual void soft_body_update_rendering_server(RID p_body, RenderingServerHandler *p_rendering_server_handler) = 0;
+ virtual void soft_body_update_rendering_server(RID p_body, PhysicsServer3DRenderingServerHandler *p_rendering_server_handler) = 0;
virtual void soft_body_set_space(RID p_body, RID p_space) = 0;
virtual RID soft_body_get_space(RID p_body) const = 0;
@@ -624,7 +635,7 @@ public:
virtual void joint_set_solver_priority(RID p_joint, int p_priority) = 0;
virtual int joint_get_solver_priority(RID p_joint) const = 0;
- virtual void joint_disable_collisions_between_bodies(RID p_joint, const bool p_disable) = 0;
+ virtual void joint_disable_collisions_between_bodies(RID p_joint, bool p_disable) = 0;
virtual bool joint_is_disabled_collisions_between_bodies(RID p_joint) const = 0;
virtual void joint_make_pin(RID p_joint, RID p_body_A, const Vector3 &p_local_A, RID p_body_B, const Vector3 &p_local_B) = 0;
@@ -863,7 +874,7 @@ class PhysicsShapeQueryParameters3D : public RefCounted {
PhysicsDirectSpaceState3D::ShapeParameters parameters;
- RES shape_ref;
+ Ref<Resource> shape_ref;
protected:
static void _bind_methods();
@@ -871,8 +882,8 @@ protected:
public:
const PhysicsDirectSpaceState3D::ShapeParameters &get_parameters() const { return parameters; }
- void set_shape(const RES &p_shape_ref);
- RES get_shape() const { return shape_ref; }
+ void set_shape(const Ref<Resource> &p_shape_ref);
+ Ref<Resource> get_shape() const { return shape_ref; }
void set_shape_rid(const RID &p_shape);
RID get_shape_rid() const { return parameters.shape_rid; }
diff --git a/servers/physics_server_3d_wrap_mt.cpp b/servers/physics_server_3d_wrap_mt.cpp
index c424100bba..7faa193ec2 100644
--- a/servers/physics_server_3d_wrap_mt.cpp
+++ b/servers/physics_server_3d_wrap_mt.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,7 +37,7 @@ void PhysicsServer3DWrapMT::thread_exit() {
}
void PhysicsServer3DWrapMT::thread_step(real_t p_delta) {
- physics_3d_server->step(p_delta);
+ physics_server_3d->step(p_delta);
step_sem.post();
}
@@ -50,7 +50,7 @@ void PhysicsServer3DWrapMT::_thread_callback(void *_instance) {
void PhysicsServer3DWrapMT::thread_loop() {
server_thread = Thread::get_caller_id();
- physics_3d_server->init();
+ physics_server_3d->init();
exit = false;
step_thread_up = true;
@@ -61,7 +61,7 @@ void PhysicsServer3DWrapMT::thread_loop() {
command_queue.flush_all(); // flush all
- physics_3d_server->finish();
+ physics_server_3d->finish();
}
/* EVENT QUEUING */
@@ -71,7 +71,7 @@ void PhysicsServer3DWrapMT::step(real_t p_step) {
command_queue.push(this, &PhysicsServer3DWrapMT::thread_step, p_step);
} else {
command_queue.flush_all(); //flush all pending from other threads
- physics_3d_server->step(p_step);
+ physics_server_3d->step(p_step);
}
}
@@ -83,15 +83,15 @@ void PhysicsServer3DWrapMT::sync() {
step_sem.wait(); //must not wait if a step was not issued
}
}
- physics_3d_server->sync();
+ physics_server_3d->sync();
}
void PhysicsServer3DWrapMT::flush_queries() {
- physics_3d_server->flush_queries();
+ physics_server_3d->flush_queries();
}
void PhysicsServer3DWrapMT::end_sync() {
- physics_3d_server->end_sync();
+ physics_server_3d->end_sync();
}
void PhysicsServer3DWrapMT::init() {
@@ -102,7 +102,7 @@ void PhysicsServer3DWrapMT::init() {
OS::get_singleton()->delay_usec(1000);
}
} else {
- physics_3d_server->init();
+ physics_server_3d->init();
}
}
@@ -111,13 +111,13 @@ void PhysicsServer3DWrapMT::finish() {
command_queue.push(this, &PhysicsServer3DWrapMT::thread_exit);
thread.wait_to_finish();
} else {
- physics_3d_server->finish();
+ physics_server_3d->finish();
}
}
PhysicsServer3DWrapMT::PhysicsServer3DWrapMT(PhysicsServer3D *p_contained, bool p_create_thread) :
command_queue(p_create_thread) {
- physics_3d_server = p_contained;
+ physics_server_3d = p_contained;
create_thread = p_create_thread;
pool_max_size = GLOBAL_GET("memory/limits/multithreaded_server/rid_pool_prealloc");
@@ -132,6 +132,6 @@ PhysicsServer3DWrapMT::PhysicsServer3DWrapMT(PhysicsServer3D *p_contained, bool
}
PhysicsServer3DWrapMT::~PhysicsServer3DWrapMT() {
- memdelete(physics_3d_server);
+ memdelete(physics_server_3d);
//finish();
}
diff --git a/servers/physics_server_3d_wrap_mt.h b/servers/physics_server_3d_wrap_mt.h
index 179ca90a2f..d4a4ad3132 100644
--- a/servers/physics_server_3d_wrap_mt.h
+++ b/servers/physics_server_3d_wrap_mt.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -43,7 +43,7 @@
#endif
class PhysicsServer3DWrapMT : public PhysicsServer3D {
- mutable PhysicsServer3D *physics_3d_server;
+ mutable PhysicsServer3D *physics_server_3d;
mutable CommandQueueMT command_queue;
@@ -70,7 +70,7 @@ class PhysicsServer3DWrapMT : public PhysicsServer3D {
public:
#define ServerName PhysicsServer3D
#define ServerNameWrapMT PhysicsServer3DWrapMT
-#define server_name physics_3d_server
+#define server_name physics_server_3d
#define WRITE_ACTION
#include "servers/server_wrap_mt_common.h"
@@ -100,7 +100,7 @@ public:
//these work well, but should be used from the main thread only
bool shape_collide(RID p_shape_A, const Transform &p_xform_A, const Vector3 &p_motion_A, RID p_shape_B, const Transform &p_xform_B, const Vector3 &p_motion_B, Vector3 *r_results, int p_result_max, int &r_result_count) {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), false);
- return physics_3d_server->shape_collide(p_shape_A, p_xform_A, p_motion_A, p_shape_B, p_xform_B, p_motion_B, r_results, p_result_max, r_result_count);
+ return physics_server_3d->shape_collide(p_shape_A, p_xform_A, p_motion_A, p_shape_B, p_xform_B, p_motion_B, r_results, p_result_max, r_result_count);
}
#endif
/* SPACE API */
@@ -115,18 +115,18 @@ public:
// this function only works on physics process, errors and returns null otherwise
PhysicsDirectSpaceState3D *space_get_direct_state(RID p_space) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), nullptr);
- return physics_3d_server->space_get_direct_state(p_space);
+ return physics_server_3d->space_get_direct_state(p_space);
}
FUNC2(space_set_debug_contacts, RID, int);
virtual Vector<Vector3> space_get_contacts(RID p_space) const override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), Vector<Vector3>());
- return physics_3d_server->space_get_contacts(p_space);
+ return physics_server_3d->space_get_contacts(p_space);
}
virtual int space_get_contact_count(RID p_space) const override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), 0);
- return physics_3d_server->space_get_contact_count(p_space);
+ return physics_server_3d->space_get_contact_count(p_space);
}
/* AREA API */
@@ -256,20 +256,20 @@ public:
bool body_test_motion(RID p_body, const MotionParameters &p_parameters, MotionResult *r_result = nullptr) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), false);
- return physics_3d_server->body_test_motion(p_body, p_parameters, r_result);
+ return physics_server_3d->body_test_motion(p_body, p_parameters, r_result);
}
// this function only works on physics process, errors and returns null otherwise
PhysicsDirectBodyState3D *body_get_direct_state(RID p_body) override {
ERR_FAIL_COND_V(main_thread != Thread::get_caller_id(), nullptr);
- return physics_3d_server->body_get_direct_state(p_body);
+ return physics_server_3d->body_get_direct_state(p_body);
}
/* SOFT BODY API */
FUNCRID(soft_body)
- FUNC2(soft_body_update_rendering_server, RID, class RenderingServerHandler *)
+ FUNC2(soft_body_update_rendering_server, RID, PhysicsServer3DRenderingServerHandler *)
FUNC2(soft_body_set_space, RID, RID)
FUNC1RC(RID, soft_body_get_space, RID)
@@ -369,7 +369,7 @@ public:
FUNC2(joint_set_solver_priority, RID, int);
FUNC1RC(int, joint_get_solver_priority, RID);
- FUNC2(joint_disable_collisions_between_bodies, RID, const bool);
+ FUNC2(joint_disable_collisions_between_bodies, RID, bool);
FUNC1RC(bool, joint_is_disabled_collisions_between_bodies, RID);
/* MISC */
@@ -385,11 +385,11 @@ public:
virtual void finish() override;
virtual bool is_flushing_queries() const override {
- return physics_3d_server->is_flushing_queries();
+ return physics_server_3d->is_flushing_queries();
}
int get_process_info(ProcessInfo p_info) override {
- return physics_3d_server->get_process_info(p_info);
+ return physics_server_3d->get_process_info(p_info);
}
PhysicsServer3DWrapMT(PhysicsServer3D *p_contained, bool p_create_thread);
diff --git a/servers/register_server_types.cpp b/servers/register_server_types.cpp
index 7004b2317c..275a42a4e3 100644
--- a/servers/register_server_types.cpp
+++ b/servers/register_server_types.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -55,7 +55,7 @@
#include "audio_server.h"
#include "camera/camera_feed.h"
#include "camera_server.h"
-#include "core/extension/native_extension_manager.h"
+#include "debugger/servers_debugger.h"
#include "display_server.h"
#include "navigation_server_2d.h"
#include "navigation_server_3d.h"
@@ -69,7 +69,9 @@
#include "rendering/rendering_device.h"
#include "rendering/rendering_device_binds.h"
#include "rendering_server.h"
+#include "servers/extensions/physics_server_3d_extension.h"
#include "servers/rendering/shader_types.h"
+#include "text/text_server_dummy.h"
#include "text/text_server_extension.h"
#include "text_server.h"
#include "xr/xr_interface.h"
@@ -80,19 +82,19 @@
ShaderTypes *shader_types = nullptr;
PhysicsServer3D *_createGodotPhysics3DCallback() {
- bool using_threads = GLOBAL_GET("physics/3d/run_on_thread");
+ bool using_threads = GLOBAL_GET("physics/3d/run_on_separate_thread");
- PhysicsServer3D *physics_server = memnew(GodotPhysicsServer3D(using_threads));
+ PhysicsServer3D *physics_server_3d = memnew(GodotPhysicsServer3D(using_threads));
- return memnew(PhysicsServer3DWrapMT(physics_server, using_threads));
+ return memnew(PhysicsServer3DWrapMT(physics_server_3d, using_threads));
}
PhysicsServer2D *_createGodotPhysics2DCallback() {
- bool using_threads = GLOBAL_GET("physics/2d/run_on_thread");
+ bool using_threads = GLOBAL_GET("physics/2d/run_on_separate_thread");
- PhysicsServer2D *physics_server = memnew(GodotPhysicsServer2D(using_threads));
+ PhysicsServer2D *physics_server_2d = memnew(GodotPhysicsServer2D(using_threads));
- return memnew(PhysicsServer2DWrapMT(physics_server, using_threads));
+ return memnew(PhysicsServer2DWrapMT(physics_server_2d, using_threads));
}
static bool has_server_feature_callback(const String &p_feature) {
@@ -109,8 +111,12 @@ void preregister_server_types() {
shader_types = memnew(ShaderTypes);
GDREGISTER_CLASS(TextServerManager);
- GDREGISTER_VIRTUAL_CLASS(TextServer);
+ GDREGISTER_ABSTRACT_CLASS(TextServer);
GDREGISTER_CLASS(TextServerExtension);
+ GDREGISTER_CLASS(TextServerDummy);
+
+ GDREGISTER_NATIVE_STRUCT(Glyph, "int start = -1;int end = -1;uint8_t count = 0;uint8_t repeat = 1;uint16_t flags = 0;float x_off = 0.f;float y_off = 0.f;float advance = 0.f;RID font_rid;int font_size = 0;int32_t index = 0");
+ GDREGISTER_NATIVE_STRUCT(CaretInfo, "Rect2 leading_caret;Rect2 trailing_caret;TextServer::Direction leading_direction;TextServer::Direction trailing_direction");
Engine::get_singleton()->add_singleton(Engine::Singleton("TextServerManager", TextServerManager::get_singleton(), "TextServerManager"));
}
@@ -118,20 +124,32 @@ void preregister_server_types() {
void register_server_types() {
OS::get_singleton()->set_has_server_feature_callback(has_server_feature_callback);
- GDREGISTER_VIRTUAL_CLASS(DisplayServer);
- GDREGISTER_VIRTUAL_CLASS(RenderingServer);
+ GDREGISTER_ABSTRACT_CLASS(DisplayServer);
+ GDREGISTER_ABSTRACT_CLASS(RenderingServer);
GDREGISTER_CLASS(AudioServer);
- GDREGISTER_VIRTUAL_CLASS(PhysicsServer2D);
- GDREGISTER_VIRTUAL_CLASS(PhysicsServer3D);
- GDREGISTER_VIRTUAL_CLASS(NavigationServer2D);
- GDREGISTER_VIRTUAL_CLASS(NavigationServer3D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsServer2D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsServer3D);
+ GDREGISTER_VIRTUAL_CLASS(PhysicsServer3DExtension);
+ GDREGISTER_VIRTUAL_CLASS(PhysicsDirectBodyState3DExtension);
+ GDREGISTER_VIRTUAL_CLASS(PhysicsDirectSpaceState3DExtension)
+ GDREGISTER_VIRTUAL_CLASS(PhysicsServer3DRenderingServerHandler)
+
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionRayResult, "Vector3 position;Vector3 normal;RID rid;ObjectID collider_id;Object *collider;int shape");
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionShapeResult, "RID rid;ObjectID collider_id;Object *collider;int shape");
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionShapeRestInfo, "Vector3 point;Vector3 normal;RID rid;ObjectID collider_id;int shape;Vector3 linear_velocity");
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionMotionCollision, "Vector3 position;Vector3 normal;Vector3 collider_velocity;real_t depth;int local_shape;ObjectID collider_id;RID collider;int collider_shape");
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionMotionResult, "Vector3 travel;Vector3 remainder;real_t collision_safe_fraction;real_t collision_unsafe_fraction;PhysicsServer3DExtensionMotionCollision collisions[32];int collision_count");
+ GDREGISTER_NATIVE_STRUCT(PhysicsServer3DExtensionStateCallback, "void *instance;void (*callback)(void *p_instance, PhysicsDirectBodyState3D *p_state)");
+
+ GDREGISTER_ABSTRACT_CLASS(NavigationServer2D);
+ GDREGISTER_ABSTRACT_CLASS(NavigationServer3D);
GDREGISTER_CLASS(XRServer);
GDREGISTER_CLASS(CameraServer);
- GDREGISTER_VIRTUAL_CLASS(RenderingDevice);
+ GDREGISTER_ABSTRACT_CLASS(RenderingDevice);
- GDREGISTER_VIRTUAL_CLASS(XRInterface);
+ GDREGISTER_ABSTRACT_CLASS(XRInterface);
GDREGISTER_CLASS(XRInterfaceExtension); // can't register this as virtual because we need a creation function for our extensions.
GDREGISTER_CLASS(XRPose);
GDREGISTER_CLASS(XRPositionalTracker);
@@ -140,7 +158,7 @@ void register_server_types() {
GDREGISTER_CLASS(AudioStreamPlayback);
GDREGISTER_VIRTUAL_CLASS(AudioStreamPlaybackResampled);
GDREGISTER_CLASS(AudioStreamMicrophone);
- GDREGISTER_CLASS(AudioStreamRandomPitch);
+ GDREGISTER_CLASS(AudioStreamRandomizer);
GDREGISTER_VIRTUAL_CLASS(AudioEffect);
GDREGISTER_VIRTUAL_CLASS(AudioEffectInstance);
GDREGISTER_CLASS(AudioEffectEQ);
@@ -148,7 +166,7 @@ void register_server_types() {
GDREGISTER_CLASS(AudioBusLayout);
GDREGISTER_CLASS(AudioStreamGenerator);
- GDREGISTER_VIRTUAL_CLASS(AudioStreamGeneratorPlayback);
+ GDREGISTER_ABSTRACT_CLASS(AudioStreamGeneratorPlayback);
{
//audio effects
@@ -182,12 +200,12 @@ void register_server_types() {
GDREGISTER_CLASS(AudioEffectRecord);
GDREGISTER_CLASS(AudioEffectSpectrumAnalyzer);
- GDREGISTER_VIRTUAL_CLASS(AudioEffectSpectrumAnalyzerInstance);
+ GDREGISTER_ABSTRACT_CLASS(AudioEffectSpectrumAnalyzerInstance);
GDREGISTER_CLASS(AudioEffectCapture);
}
- GDREGISTER_VIRTUAL_CLASS(RenderingDevice);
+ GDREGISTER_ABSTRACT_CLASS(RenderingDevice);
GDREGISTER_CLASS(RDTextureFormat);
GDREGISTER_CLASS(RDTextureView);
GDREGISTER_CLASS(RDAttachmentFormat);
@@ -207,22 +225,24 @@ void register_server_types() {
GDREGISTER_CLASS(CameraFeed);
- GDREGISTER_VIRTUAL_CLASS(PhysicsDirectBodyState2D);
- GDREGISTER_VIRTUAL_CLASS(PhysicsDirectSpaceState2D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsDirectBodyState2D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsDirectSpaceState2D);
GDREGISTER_CLASS(PhysicsRayQueryParameters2D);
GDREGISTER_CLASS(PhysicsPointQueryParameters2D);
GDREGISTER_CLASS(PhysicsShapeQueryParameters2D);
GDREGISTER_CLASS(PhysicsTestMotionParameters2D);
GDREGISTER_CLASS(PhysicsTestMotionResult2D);
- GDREGISTER_VIRTUAL_CLASS(PhysicsDirectBodyState3D);
- GDREGISTER_VIRTUAL_CLASS(PhysicsDirectSpaceState3D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsDirectBodyState3D);
+ GDREGISTER_ABSTRACT_CLASS(PhysicsDirectSpaceState3D);
GDREGISTER_CLASS(PhysicsRayQueryParameters3D);
GDREGISTER_CLASS(PhysicsPointQueryParameters3D);
GDREGISTER_CLASS(PhysicsShapeQueryParameters3D);
GDREGISTER_CLASS(PhysicsTestMotionParameters3D);
GDREGISTER_CLASS(PhysicsTestMotionResult3D);
+ ServersDebugger::initialize();
+
// Physics 2D
GLOBAL_DEF(PhysicsServer2DManager::setting_property_name, "DEFAULT");
ProjectSettings::get_singleton()->set_custom_property_info(PhysicsServer2DManager::setting_property_name, PropertyInfo(Variant::STRING, PhysicsServer2DManager::setting_property_name, PROPERTY_HINT_ENUM, "DEFAULT"));
@@ -236,13 +256,10 @@ void register_server_types() {
PhysicsServer3DManager::register_server("GodotPhysics3D", &_createGodotPhysics3DCallback);
PhysicsServer3DManager::set_default_server("GodotPhysics3D");
-
- NativeExtensionManager::get_singleton()->initialize_extensions(NativeExtension::INITIALIZATION_LEVEL_SERVERS);
}
void unregister_server_types() {
- NativeExtensionManager::get_singleton()->deinitialize_extensions(NativeExtension::INITIALIZATION_LEVEL_SERVERS);
-
+ ServersDebugger::deinitialize();
memdelete(shader_types);
}
diff --git a/servers/register_server_types.h b/servers/register_server_types.h
index f6a65cb653..cf6364eee3 100644
--- a/servers/register_server_types.h
+++ b/servers/register_server_types.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/SCsub b/servers/rendering/SCsub
index 0939b68482..06d1d28b08 100644
--- a/servers/rendering/SCsub
+++ b/servers/rendering/SCsub
@@ -5,3 +5,4 @@ Import("env")
env.add_source_files(env.servers_sources, "*.cpp")
SConscript("renderer_rd/SCsub")
+SConscript("storage/SCsub")
diff --git a/servers/rendering/dummy/rasterizer_canvas_dummy.h b/servers/rendering/dummy/rasterizer_canvas_dummy.h
new file mode 100644
index 0000000000..194b5b5cfe
--- /dev/null
+++ b/servers/rendering/dummy/rasterizer_canvas_dummy.h
@@ -0,0 +1,63 @@
+/*************************************************************************/
+/* rasterizer_canvas_dummy.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef RASTERIZER_CANVAS_DUMMY_H
+#define RASTERIZER_CANVAS_DUMMY_H
+
+#include "servers/rendering/renderer_canvas_render.h"
+
+class RasterizerCanvasDummy : public RendererCanvasRender {
+public:
+ PolygonID request_polygon(const Vector<int> &p_indices, const Vector<Point2> &p_points, const Vector<Color> &p_colors, const Vector<Point2> &p_uvs = Vector<Point2>(), const Vector<int> &p_bones = Vector<int>(), const Vector<float> &p_weights = Vector<float>()) override { return 0; }
+ void free_polygon(PolygonID p_polygon) override {}
+
+ void canvas_render_items(RID p_to_render_target, Item *p_item_list, const Color &p_modulate, Light *p_light_list, Light *p_directional_list, const Transform2D &p_canvas_transform, RS::CanvasItemTextureFilter p_default_filter, RS::CanvasItemTextureRepeat p_default_repeat, bool p_snap_2d_vertices_to_pixel, bool &r_sdf_used) override {}
+ void canvas_debug_viewport_shadows(Light *p_lights_with_shadow) override {}
+
+ RID light_create() override { return RID(); }
+ void light_set_texture(RID p_rid, RID p_texture) override {}
+ void light_set_use_shadow(RID p_rid, bool p_enable) override {}
+ void light_update_shadow(RID p_rid, int p_shadow_index, const Transform2D &p_light_xform, int p_light_mask, float p_near, float p_far, LightOccluderInstance *p_occluders) override {}
+ void light_update_directional_shadow(RID p_rid, int p_shadow_index, const Transform2D &p_light_xform, int p_light_mask, float p_cull_distance, const Rect2 &p_clip_rect, LightOccluderInstance *p_occluders) override {}
+
+ void render_sdf(RID p_render_target, LightOccluderInstance *p_occluders) override {}
+ RID occluder_polygon_create() override { return RID(); }
+ void occluder_polygon_set_shape(RID p_occluder, const Vector<Vector2> &p_points, bool p_closed) override {}
+ void occluder_polygon_set_cull_mode(RID p_occluder, RS::CanvasOccluderPolygonCullMode p_mode) override {}
+ void set_shadow_texture_size(int p_size) override {}
+
+ bool free(RID p_rid) override { return true; }
+ void update() override {}
+
+ RasterizerCanvasDummy() {}
+ ~RasterizerCanvasDummy() {}
+};
+
+#endif // !RASTERIZER_CANVAS_DUMMY_H
diff --git a/servers/rendering/dummy/rasterizer_dummy.h b/servers/rendering/dummy/rasterizer_dummy.h
new file mode 100644
index 0000000000..6cad45ea6d
--- /dev/null
+++ b/servers/rendering/dummy/rasterizer_dummy.h
@@ -0,0 +1,108 @@
+/*************************************************************************/
+/* rasterizer_dummy.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef RASTERIZER_DUMMY_H
+#define RASTERIZER_DUMMY_H
+
+#include "core/templates/rid_owner.h"
+#include "core/templates/self_list.h"
+#include "scene/resources/mesh.h"
+#include "servers/rendering/dummy/rasterizer_canvas_dummy.h"
+#include "servers/rendering/dummy/rasterizer_scene_dummy.h"
+#include "servers/rendering/dummy/rasterizer_storage_dummy.h"
+#include "servers/rendering/dummy/storage/light_storage.h"
+#include "servers/rendering/dummy/storage/material_storage.h"
+#include "servers/rendering/dummy/storage/mesh_storage.h"
+#include "servers/rendering/dummy/storage/particles_storage.h"
+#include "servers/rendering/dummy/storage/texture_storage.h"
+#include "servers/rendering/renderer_compositor.h"
+#include "servers/rendering_server.h"
+
+class RasterizerDummy : public RendererCompositor {
+private:
+ uint64_t frame = 1;
+ double delta = 0;
+
+protected:
+ RasterizerCanvasDummy canvas;
+ RendererDummy::LightStorage light_storage;
+ RendererDummy::MaterialStorage material_storage;
+ RendererDummy::MeshStorage mesh_storage;
+ RendererDummy::ParticlesStorage particles_storage;
+ RendererDummy::TextureStorage texture_storage;
+ RasterizerStorageDummy storage;
+ RasterizerSceneDummy scene;
+
+public:
+ RendererLightStorage *get_light_storage() override { return &light_storage; };
+ RendererMaterialStorage *get_material_storage() override { return &material_storage; };
+ RendererMeshStorage *get_mesh_storage() override { return &mesh_storage; };
+ RendererParticlesStorage *get_particles_storage() override { return &particles_storage; };
+ RendererTextureStorage *get_texture_storage() override { return &texture_storage; };
+ RendererStorage *get_storage() override { return &storage; }
+ RendererCanvasRender *get_canvas() override { return &canvas; }
+ RendererSceneRender *get_scene() override { return &scene; }
+
+ void set_boot_image(const Ref<Image> &p_image, const Color &p_color, bool p_scale, bool p_use_filter = true) override {}
+
+ void initialize() override {}
+ void begin_frame(double frame_step) override {
+ frame++;
+ delta = frame_step;
+ }
+
+ void prepare_for_blitting_render_targets() override {}
+ void blit_render_targets_to_screen(int p_screen, const BlitToScreen *p_render_targets, int p_amount) override {}
+
+ void end_frame(bool p_swap_buffers) override {
+ if (p_swap_buffers) {
+ DisplayServer::get_singleton()->swap_buffers();
+ }
+ }
+
+ void finalize() override {}
+
+ static RendererCompositor *_create_current() {
+ return memnew(RasterizerDummy);
+ }
+
+ static void make_current() {
+ _create_func = _create_current;
+ }
+
+ bool is_low_end() const override { return true; }
+ uint64_t get_frame_number() const override { return frame; }
+ double get_frame_delta_time() const override { return delta; }
+
+ RasterizerDummy() {}
+ ~RasterizerDummy() {}
+};
+
+#endif // RASTERIZER_DUMMY_H
diff --git a/servers/rendering/dummy/rasterizer_scene_dummy.h b/servers/rendering/dummy/rasterizer_scene_dummy.h
new file mode 100644
index 0000000000..fa58322ea8
--- /dev/null
+++ b/servers/rendering/dummy/rasterizer_scene_dummy.h
@@ -0,0 +1,217 @@
+/*************************************************************************/
+/* rasterizer_scene_dummy.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef RASTERIZER_SCENE_DUMMY_H
+#define RASTERIZER_SCENE_DUMMY_H
+
+#include "servers/rendering/renderer_scene_render.h"
+
+class RasterizerSceneDummy : public RendererSceneRender {
+public:
+ GeometryInstance *geometry_instance_create(RID p_base) override { return nullptr; }
+ void geometry_instance_set_skeleton(GeometryInstance *p_geometry_instance, RID p_skeleton) override {}
+ void geometry_instance_set_material_override(GeometryInstance *p_geometry_instance, RID p_override) override {}
+ void geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_override) override {}
+ void geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_material) override {}
+ void geometry_instance_set_mesh_instance(GeometryInstance *p_geometry_instance, RID p_mesh_instance) override {}
+ void geometry_instance_set_transform(GeometryInstance *p_geometry_instance, const Transform3D &p_transform, const AABB &p_aabb, const AABB &p_transformed_aabbb) override {}
+ void geometry_instance_set_layer_mask(GeometryInstance *p_geometry_instance, uint32_t p_layer_mask) override {}
+ void geometry_instance_set_lod_bias(GeometryInstance *p_geometry_instance, float p_lod_bias) override {}
+ void geometry_instance_set_use_baked_light(GeometryInstance *p_geometry_instance, bool p_enable) override {}
+ void geometry_instance_set_use_dynamic_gi(GeometryInstance *p_geometry_instance, bool p_enable) override {}
+ void geometry_instance_set_use_lightmap(GeometryInstance *p_geometry_instance, RID p_lightmap_instance, const Rect2 &p_lightmap_uv_scale, int p_lightmap_slice_index) override {}
+ void geometry_instance_set_lightmap_capture(GeometryInstance *p_geometry_instance, const Color *p_sh9) override {}
+ void geometry_instance_set_instance_shader_parameters_offset(GeometryInstance *p_geometry_instance, int32_t p_offset) override {}
+ void geometry_instance_set_cast_double_sided_shadows(GeometryInstance *p_geometry_instance, bool p_enable) override {}
+ void geometry_instance_set_fade_range(GeometryInstance *p_geometry_instance, bool p_enable_near, float p_near_begin, float p_near_end, bool p_enable_far, float p_far_begin, float p_far_end) override {}
+ void geometry_instance_set_parent_fade_alpha(GeometryInstance *p_geometry_instance, float p_alpha) override {}
+ void geometry_instance_set_transparency(GeometryInstance *p_geometry_instance, float p_transparency) override {}
+
+ uint32_t geometry_instance_get_pair_mask() override { return 0; }
+ void geometry_instance_pair_light_instances(GeometryInstance *p_geometry_instance, const RID *p_light_instances, uint32_t p_light_instance_count) override {}
+ void geometry_instance_pair_reflection_probe_instances(GeometryInstance *p_geometry_instance, const RID *p_reflection_probe_instances, uint32_t p_reflection_probe_instance_count) override {}
+ void geometry_instance_pair_decal_instances(GeometryInstance *p_geometry_instance, const RID *p_decal_instances, uint32_t p_decal_instance_count) override {}
+ void geometry_instance_pair_voxel_gi_instances(GeometryInstance *p_geometry_instance, const RID *p_voxel_gi_instances, uint32_t p_voxel_gi_instance_count) override {}
+ void geometry_instance_set_softshadow_projector_pairing(GeometryInstance *p_geometry_instance, bool p_softshadow, bool p_projector) override {}
+
+ void geometry_instance_free(GeometryInstance *p_geometry_instance) override {}
+
+ /* SHADOW ATLAS API */
+
+ RID shadow_atlas_create() override { return RID(); }
+ void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = true) override {}
+ void shadow_atlas_set_quadrant_subdivision(RID p_atlas, int p_quadrant, int p_subdivision) override {}
+ bool shadow_atlas_update_light(RID p_atlas, RID p_light_intance, float p_coverage, uint64_t p_light_version) override { return false; }
+
+ void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = true) override {}
+ int get_directional_light_shadow_size(RID p_light_intance) override { return 0; }
+ void set_directional_shadow_count(int p_count) override {}
+
+ /* SDFGI UPDATE */
+
+ void sdfgi_update(RID p_render_buffers, RID p_environment, const Vector3 &p_world_position) override {}
+ int sdfgi_get_pending_region_count(RID p_render_buffers) const override { return 0; }
+ AABB sdfgi_get_pending_region_bounds(RID p_render_buffers, int p_region) const override { return AABB(); }
+ uint32_t sdfgi_get_pending_region_cascade(RID p_render_buffers, int p_region) const override { return 0; }
+
+ /* SKY API */
+
+ RID sky_allocate() override { return RID(); }
+ void sky_initialize(RID p_rid) override {}
+ void sky_set_radiance_size(RID p_sky, int p_radiance_size) override {}
+ void sky_set_mode(RID p_sky, RS::SkyMode p_samples) override {}
+ void sky_set_material(RID p_sky, RID p_material) override {}
+ Ref<Image> sky_bake_panorama(RID p_sky, float p_energy, bool p_bake_irradiance, const Size2i &p_size) override { return Ref<Image>(); }
+
+ /* ENVIRONMENT API */
+
+ RID environment_allocate() override { return RID(); }
+ void environment_initialize(RID p_rid) override {}
+ void environment_set_background(RID p_env, RS::EnvironmentBG p_bg) override {}
+ void environment_set_sky(RID p_env, RID p_sky) override {}
+ void environment_set_sky_custom_fov(RID p_env, float p_scale) override {}
+ void environment_set_sky_orientation(RID p_env, const Basis &p_orientation) override {}
+ void environment_set_bg_color(RID p_env, const Color &p_color) override {}
+ void environment_set_bg_energy(RID p_env, float p_energy) override {}
+ void environment_set_canvas_max_layer(RID p_env, int p_max_layer) override {}
+ void environment_set_ambient_light(RID p_env, const Color &p_color, RS::EnvironmentAmbientSource p_ambient = RS::ENV_AMBIENT_SOURCE_BG, float p_energy = 1.0, float p_sky_contribution = 0.0, RS::EnvironmentReflectionSource p_reflection_source = RS::ENV_REFLECTION_SOURCE_BG) override {}
+
+ void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) override {}
+ void environment_glow_set_use_bicubic_upscale(bool p_enable) override {}
+ void environment_glow_set_use_high_quality(bool p_enable) override {}
+
+ void environment_set_ssr(RID p_env, bool p_enable, int p_max_steps, float p_fade_int, float p_fade_out, float p_depth_tolerance) override {}
+ void environment_set_ssr_roughness_quality(RS::EnvironmentSSRRoughnessQuality p_quality) override {}
+ void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_power, float p_detail, float p_horizon, float p_sharpness, float p_light_affect, float p_ao_channel_affect) override {}
+ void environment_set_ssao_quality(RS::EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) override {}
+ void environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) override {}
+ void environment_set_ssil_quality(RS::EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) override {}
+
+ void environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) override {}
+
+ void environment_set_sdfgi_ray_count(RS::EnvironmentSDFGIRayCount p_ray_count) override {}
+ void environment_set_sdfgi_frames_to_converge(RS::EnvironmentSDFGIFramesToConverge p_frames) override {}
+ void environment_set_sdfgi_frames_to_update_light(RS::EnvironmentSDFGIFramesToUpdateLight p_update) override {}
+
+ void environment_set_tonemap(RID p_env, RS::EnvironmentToneMapper p_tone_mapper, float p_exposure, float p_white, bool p_auto_exposure, float p_min_luminance, float p_max_luminance, float p_auto_exp_speed, float p_auto_exp_scale) override {}
+
+ void environment_set_adjustment(RID p_env, bool p_enable, float p_brightness, float p_contrast, float p_saturation, bool p_use_1d_color_correction, RID p_color_correction) override {}
+
+ void environment_set_fog(RID p_env, bool p_enable, const Color &p_light_color, float p_light_energy, float p_sun_scatter, float p_density, float p_height, float p_height_density, float p_aerial_perspective) override {}
+ void environment_set_volumetric_fog(RID p_env, bool p_enable, float p_density, const Color &p_albedo, const Color &p_emission, float p_emission_energy, float p_anisotropy, float p_length, float p_detail_spread, float p_gi_inject, bool p_temporal_reprojection, float p_temporal_reprojection_amount, float p_ambient_inject) override {}
+ void environment_set_volumetric_fog_volume_size(int p_size, int p_depth) override {}
+ void environment_set_volumetric_fog_filter_active(bool p_enable) override {}
+
+ Ref<Image> environment_bake_panorama(RID p_env, bool p_bake_irradiance, const Size2i &p_size) override { return Ref<Image>(); }
+
+ bool is_environment(RID p_env) const override { return false; }
+ RS::EnvironmentBG environment_get_background(RID p_env) const override { return RS::ENV_BG_KEEP; }
+ int environment_get_canvas_max_layer(RID p_env) const override { return 0; }
+
+ RID camera_effects_allocate() override { return RID(); }
+ void camera_effects_initialize(RID p_rid) override {}
+ void camera_effects_set_dof_blur_quality(RS::DOFBlurQuality p_quality, bool p_use_jitter) override {}
+ void camera_effects_set_dof_blur_bokeh_shape(RS::DOFBokehShape p_shape) override {}
+
+ void camera_effects_set_dof_blur(RID p_camera_effects, bool p_far_enable, float p_far_distance, float p_far_transition, bool p_near_enable, float p_near_distance, float p_near_transition, float p_amount) override {}
+ void camera_effects_set_custom_exposure(RID p_camera_effects, bool p_enable, float p_exposure) override {}
+
+ void shadows_quality_set(RS::ShadowQuality p_quality) override {}
+ void directional_shadow_quality_set(RS::ShadowQuality p_quality) override {}
+
+ RID light_instance_create(RID p_light) override { return RID(); }
+ void light_instance_set_transform(RID p_light_instance, const Transform3D &p_transform) override {}
+ void light_instance_set_aabb(RID p_light_instance, const AABB &p_aabb) override {}
+ void light_instance_set_shadow_transform(RID p_light_instance, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_far, float p_split, int p_pass, float p_shadow_texel_size, float p_bias_scale = 1.0, float p_range_begin = 0, const Vector2 &p_uv_scale = Vector2()) override {}
+ void light_instance_mark_visible(RID p_light_instance) override {}
+
+ RID fog_volume_instance_create(RID p_fog_volume) override { return RID(); }
+ void fog_volume_instance_set_transform(RID p_fog_volume_instance, const Transform3D &p_transform) override {}
+ void fog_volume_instance_set_active(RID p_fog_volume_instance, bool p_active) override {}
+ RID fog_volume_instance_get_volume(RID p_fog_volume_instance) const override { return RID(); }
+ Vector3 fog_volume_instance_get_position(RID p_fog_volume_instance) const override { return Vector3(); }
+
+ RID reflection_atlas_create() override { return RID(); }
+ int reflection_atlas_get_size(RID p_ref_atlas) const override { return 0; }
+ void reflection_atlas_set_size(RID p_ref_atlas, int p_reflection_size, int p_reflection_count) override {}
+
+ RID reflection_probe_instance_create(RID p_probe) override { return RID(); }
+ void reflection_probe_instance_set_transform(RID p_instance, const Transform3D &p_transform) override {}
+ void reflection_probe_release_atlas_index(RID p_instance) override {}
+ bool reflection_probe_instance_needs_redraw(RID p_instance) override { return false; }
+ bool reflection_probe_instance_has_reflection(RID p_instance) override { return false; }
+ bool reflection_probe_instance_begin_render(RID p_instance, RID p_reflection_atlas) override { return false; }
+ bool reflection_probe_instance_postprocess_step(RID p_instance) override { return true; }
+
+ RID decal_instance_create(RID p_decal) override { return RID(); }
+ void decal_instance_set_transform(RID p_decal, const Transform3D &p_transform) override {}
+
+ RID lightmap_instance_create(RID p_lightmap) override { return RID(); }
+ void lightmap_instance_set_transform(RID p_lightmap, const Transform3D &p_transform) override {}
+
+ RID voxel_gi_instance_create(RID p_voxel_gi) override { return RID(); }
+ void voxel_gi_instance_set_transform_to_data(RID p_probe, const Transform3D &p_xform) override {}
+ bool voxel_gi_needs_update(RID p_probe) const override { return false; }
+ void voxel_gi_update(RID p_probe, bool p_update_light_instances, const Vector<RID> &p_light_instances, const PagedArray<RendererSceneRender::GeometryInstance *> &p_dynamic_objects) override {}
+
+ void voxel_gi_set_quality(RS::VoxelGIQuality) override {}
+
+ void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_info = nullptr) override {}
+ void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override {}
+ void render_particle_collider_heightfield(RID p_collider, const Transform3D &p_transform, const PagedArray<GeometryInstance *> &p_instances) override {}
+
+ void set_scene_pass(uint64_t p_pass) override {}
+ void set_time(double p_time, double p_step) override {}
+ void set_debug_draw_mode(RS::ViewportDebugDraw p_debug_draw) override {}
+
+ RID render_buffers_create() override { return RID(); }
+ void render_buffers_configure(RID p_render_buffers, RID p_render_target, int p_internal_width, int p_internal_height, int p_width, int p_height, float p_fsr_sharpness, float p_fsr_mipmap_bias, RS::ViewportMSAA p_msaa, RS::ViewportScreenSpaceAA p_screen_space_aa, bool p_use_debanding, uint32_t p_view_count) override {}
+ void gi_set_use_half_resolution(bool p_enable) override {}
+
+ void screen_space_roughness_limiter_set_active(bool p_enable, float p_amount, float p_curve) override {}
+ bool screen_space_roughness_limiter_is_active() const override { return false; }
+
+ void sub_surface_scattering_set_quality(RS::SubSurfaceScatteringQuality p_quality) override {}
+ void sub_surface_scattering_set_scale(float p_scale, float p_depth_scale) override {}
+
+ TypedArray<Image> bake_render_uv2(RID p_base, const Vector<RID> &p_material_overrides, const Size2i &p_image_size) override { return TypedArray<Image>(); }
+
+ bool free(RID p_rid) override { return false; }
+ void update() override {}
+ void sdfgi_set_debug_probe_select(const Vector3 &p_position, const Vector3 &p_dir) override {}
+
+ virtual void decals_set_filter(RS::DecalFilter p_filter) override {}
+ virtual void light_projectors_set_filter(RS::LightProjectorFilter p_filter) override {}
+
+ RasterizerSceneDummy() {}
+ ~RasterizerSceneDummy() {}
+};
+
+#endif // !RASTERIZER_SCENE_DUMMY_H
diff --git a/servers/rendering/dummy/rasterizer_storage_dummy.h b/servers/rendering/dummy/rasterizer_storage_dummy.h
new file mode 100644
index 0000000000..596960786a
--- /dev/null
+++ b/servers/rendering/dummy/rasterizer_storage_dummy.h
@@ -0,0 +1,147 @@
+/*************************************************************************/
+/* rasterizer_storage_dummy.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef RASTERIZER_STORAGE_DUMMY_H
+#define RASTERIZER_STORAGE_DUMMY_H
+
+#include "servers/rendering/renderer_storage.h"
+#include "storage/texture_storage.h"
+
+class RasterizerStorageDummy : public RendererStorage {
+public:
+ void base_update_dependency(RID p_base, DependencyTracker *p_instance) override {}
+
+ /* VOXEL GI API */
+
+ RID voxel_gi_allocate() override { return RID(); }
+ void voxel_gi_initialize(RID p_rid) override {}
+ void voxel_gi_allocate_data(RID p_voxel_gi, const Transform3D &p_to_cell_xform, const AABB &p_aabb, const Vector3i &p_octree_size, const Vector<uint8_t> &p_octree_cells, const Vector<uint8_t> &p_data_cells, const Vector<uint8_t> &p_distance_field, const Vector<int> &p_level_counts) override {}
+
+ AABB voxel_gi_get_bounds(RID p_voxel_gi) const override { return AABB(); }
+ Vector3i voxel_gi_get_octree_size(RID p_voxel_gi) const override { return Vector3i(); }
+ Vector<uint8_t> voxel_gi_get_octree_cells(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
+ Vector<uint8_t> voxel_gi_get_data_cells(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
+ Vector<uint8_t> voxel_gi_get_distance_field(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
+
+ Vector<int> voxel_gi_get_level_counts(RID p_voxel_gi) const override { return Vector<int>(); }
+ Transform3D voxel_gi_get_to_cell_xform(RID p_voxel_gi) const override { return Transform3D(); }
+
+ void voxel_gi_set_dynamic_range(RID p_voxel_gi, float p_range) override {}
+ float voxel_gi_get_dynamic_range(RID p_voxel_gi) const override { return 0; }
+
+ void voxel_gi_set_propagation(RID p_voxel_gi, float p_range) override {}
+ float voxel_gi_get_propagation(RID p_voxel_gi) const override { return 0; }
+
+ void voxel_gi_set_energy(RID p_voxel_gi, float p_range) override {}
+ float voxel_gi_get_energy(RID p_voxel_gi) const override { return 0.0; }
+
+ void voxel_gi_set_bias(RID p_voxel_gi, float p_range) override {}
+ float voxel_gi_get_bias(RID p_voxel_gi) const override { return 0.0; }
+
+ void voxel_gi_set_normal_bias(RID p_voxel_gi, float p_range) override {}
+ float voxel_gi_get_normal_bias(RID p_voxel_gi) const override { return 0.0; }
+
+ void voxel_gi_set_interior(RID p_voxel_gi, bool p_enable) override {}
+ bool voxel_gi_is_interior(RID p_voxel_gi) const override { return false; }
+
+ void voxel_gi_set_use_two_bounces(RID p_voxel_gi, bool p_enable) override {}
+ bool voxel_gi_is_using_two_bounces(RID p_voxel_gi) const override { return false; }
+
+ void voxel_gi_set_anisotropy_strength(RID p_voxel_gi, float p_strength) override {}
+ float voxel_gi_get_anisotropy_strength(RID p_voxel_gi) const override { return 0; }
+
+ uint32_t voxel_gi_get_version(RID p_voxel_gi) override { return 0; }
+
+ /* OCCLUDER */
+
+ void occluder_set_mesh(RID p_occluder, const PackedVector3Array &p_vertices, const PackedInt32Array &p_indices) {}
+
+ /* FOG VOLUMES */
+
+ RID fog_volume_allocate() override { return RID(); }
+ void fog_volume_initialize(RID p_rid) override {}
+
+ void fog_volume_set_shape(RID p_fog_volume, RS::FogVolumeShape p_shape) override {}
+ void fog_volume_set_extents(RID p_fog_volume, const Vector3 &p_extents) override {}
+ void fog_volume_set_material(RID p_fog_volume, RID p_material) override {}
+ AABB fog_volume_get_aabb(RID p_fog_volume) const override { return AABB(); }
+ RS::FogVolumeShape fog_volume_get_shape(RID p_fog_volume) const override { return RS::FOG_VOLUME_SHAPE_BOX; }
+
+ /* VISIBILITY NOTIFIER */
+ virtual RID visibility_notifier_allocate() override { return RID(); }
+ virtual void visibility_notifier_initialize(RID p_notifier) override {}
+ virtual void visibility_notifier_set_aabb(RID p_notifier, const AABB &p_aabb) override {}
+ virtual void visibility_notifier_set_callbacks(RID p_notifier, const Callable &p_enter_callbable, const Callable &p_exit_callable) override {}
+
+ virtual AABB visibility_notifier_get_aabb(RID p_notifier) const override { return AABB(); }
+ virtual void visibility_notifier_call(RID p_notifier, bool p_enter, bool p_deferred) override {}
+
+ /* STORAGE */
+
+ RS::InstanceType get_base_type(RID p_rid) const override { return RS::INSTANCE_NONE; }
+ bool free(RID p_rid) override {
+ if (RendererDummy::TextureStorage::get_singleton()->owns_texture(p_rid)) {
+ RendererDummy::TextureStorage::get_singleton()->texture_free(p_rid);
+ return true;
+ }
+ return false;
+ }
+
+ virtual void update_memory_info() override {}
+ virtual uint64_t get_rendering_info(RS::RenderingInfo p_info) override { return 0; }
+
+ bool has_os_feature(const String &p_feature) const override {
+ return p_feature == "rgtc" || p_feature == "bptc" || p_feature == "s3tc" || p_feature == "etc" || p_feature == "etc2";
+ }
+
+ void update_dirty_resources() override {}
+
+ void set_debug_generate_wireframes(bool p_generate) override {}
+
+ String get_video_adapter_name() const override { return String(); }
+ String get_video_adapter_vendor() const override { return String(); }
+ RenderingDevice::DeviceType get_video_adapter_type() const override { return RenderingDevice::DeviceType::DEVICE_TYPE_OTHER; }
+ String get_video_adapter_api_version() const override { return String(); }
+
+ static RendererStorage *base_singleton;
+
+ void capture_timestamps_begin() override {}
+ void capture_timestamp(const String &p_name) override {}
+ uint32_t get_captured_timestamps_count() const override { return 0; }
+ uint64_t get_captured_timestamps_frame() const override { return 0; }
+ uint64_t get_captured_timestamp_gpu_time(uint32_t p_index) const override { return 0; }
+ uint64_t get_captured_timestamp_cpu_time(uint32_t p_index) const override { return 0; }
+ String get_captured_timestamp_name(uint32_t p_index) const override { return String(); }
+
+ RasterizerStorageDummy() {}
+ ~RasterizerStorageDummy() {}
+};
+
+#endif // !RASTERIZER_STORAGE_DUMMY_H
diff --git a/servers/rendering/dummy/storage/light_storage.h b/servers/rendering/dummy/storage/light_storage.h
new file mode 100644
index 0000000000..b0100a5fe7
--- /dev/null
+++ b/servers/rendering/dummy/storage/light_storage.h
@@ -0,0 +1,135 @@
+/*************************************************************************/
+/* light_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef LIGHT_STORAGE_DUMMY_H
+#define LIGHT_STORAGE_DUMMY_H
+
+#include "servers/rendering/storage/light_storage.h"
+
+namespace RendererDummy {
+
+class LightStorage : public RendererLightStorage {
+public:
+ /* Light API */
+
+ virtual RID directional_light_allocate() override { return RID(); }
+ virtual void directional_light_initialize(RID p_rid) override {}
+ virtual RID omni_light_allocate() override { return RID(); }
+ virtual void omni_light_initialize(RID p_rid) override {}
+ virtual RID spot_light_allocate() override { return RID(); }
+ virtual void spot_light_initialize(RID p_rid) override {}
+
+ virtual void light_free(RID p_rid) override {}
+
+ virtual void light_set_color(RID p_light, const Color &p_color) override {}
+ virtual void light_set_param(RID p_light, RS::LightParam p_param, float p_value) override {}
+ virtual void light_set_shadow(RID p_light, bool p_enabled) override {}
+ virtual void light_set_projector(RID p_light, RID p_texture) override {}
+ virtual void light_set_negative(RID p_light, bool p_enable) override {}
+ virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) override {}
+ virtual void light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) override {}
+ virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) override {}
+ virtual void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) override {}
+ virtual void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) override {}
+
+ virtual void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) override {}
+
+ virtual void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) override {}
+ virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) override {}
+ virtual bool light_directional_get_blend_splits(RID p_light) const override { return false; }
+ virtual void light_directional_set_sky_mode(RID p_light, RS::LightDirectionalSkyMode p_mode) override {}
+ virtual RS::LightDirectionalSkyMode light_directional_get_sky_mode(RID p_light) const override { return RS::LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_AND_SKY; }
+
+ virtual RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) override { return RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL; }
+ virtual RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) override { return RS::LIGHT_OMNI_SHADOW_DUAL_PARABOLOID; }
+
+ virtual bool light_has_shadow(RID p_light) const override { return false; }
+ virtual bool light_has_projector(RID p_light) const override { return false; }
+
+ virtual RS::LightType light_get_type(RID p_light) const override { return RS::LIGHT_OMNI; }
+ virtual AABB light_get_aabb(RID p_light) const override { return AABB(); }
+ virtual float light_get_param(RID p_light, RS::LightParam p_param) override { return 0.0; }
+ virtual Color light_get_color(RID p_light) override { return Color(); }
+ virtual RS::LightBakeMode light_get_bake_mode(RID p_light) override { return RS::LIGHT_BAKE_DISABLED; }
+ virtual uint32_t light_get_max_sdfgi_cascade(RID p_light) override { return 0; }
+ virtual uint64_t light_get_version(RID p_light) const override { return 0; }
+
+ /* PROBE API */
+ virtual RID reflection_probe_allocate() override { return RID(); }
+ virtual void reflection_probe_initialize(RID p_rid) override {}
+ virtual void reflection_probe_free(RID p_rid) override {}
+
+ virtual void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) override {}
+ virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) override {}
+ virtual void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) override {}
+ virtual void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) override {}
+ virtual void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) override {}
+ virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) override {}
+ virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) override {}
+ virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) override {}
+ virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) override {}
+ virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) override {}
+ virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) override {}
+ virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) override {}
+ virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) override {}
+ virtual void reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_ratio) override {}
+ virtual float reflection_probe_get_mesh_lod_threshold(RID p_probe) const override { return 0.0; }
+
+ virtual AABB reflection_probe_get_aabb(RID p_probe) const override { return AABB(); }
+ virtual RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const override { return RenderingServer::REFLECTION_PROBE_UPDATE_ONCE; }
+ virtual uint32_t reflection_probe_get_cull_mask(RID p_probe) const override { return 0; }
+ virtual Vector3 reflection_probe_get_extents(RID p_probe) const override { return Vector3(); }
+ virtual Vector3 reflection_probe_get_origin_offset(RID p_probe) const override { return Vector3(); }
+ virtual float reflection_probe_get_origin_max_distance(RID p_probe) const override { return 0.0; }
+ virtual bool reflection_probe_renders_shadows(RID p_probe) const override { return false; }
+
+ /* LIGHTMAP CAPTURE */
+ virtual RID lightmap_allocate() override { return RID(); }
+ virtual void lightmap_initialize(RID p_rid) override {}
+ virtual void lightmap_free(RID p_rid) override {}
+
+ virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) override {}
+ virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) override {}
+ virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) override {}
+ virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) override {}
+ virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const override { return PackedVector3Array(); }
+ virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const override { return PackedColorArray(); }
+ virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const override { return PackedInt32Array(); }
+ virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const override { return PackedInt32Array(); }
+ virtual AABB lightmap_get_aabb(RID p_lightmap) const override { return AABB(); }
+ virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) override {}
+ virtual bool lightmap_is_interior(RID p_lightmap) const override { return false; }
+ virtual void lightmap_set_probe_capture_update_speed(float p_speed) override {}
+ virtual float lightmap_get_probe_capture_update_speed() const override { return 0; }
+};
+
+} // namespace RendererDummy
+
+#endif // !LIGHT_STORAGE_DUMMY_H
diff --git a/servers/rendering/dummy/storage/material_storage.h b/servers/rendering/dummy/storage/material_storage.h
new file mode 100644
index 0000000000..8890be8ea9
--- /dev/null
+++ b/servers/rendering/dummy/storage/material_storage.h
@@ -0,0 +1,95 @@
+/*************************************************************************/
+/* material_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MATERIAL_STORAGE_DUMMY_H
+#define MATERIAL_STORAGE_DUMMY_H
+
+#include "servers/rendering/storage/material_storage.h"
+
+namespace RendererDummy {
+
+class MaterialStorage : public RendererMaterialStorage {
+public:
+ /* GLOBAL VARIABLE API */
+
+ virtual void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) override {}
+ virtual void global_variable_remove(const StringName &p_name) override {}
+ virtual Vector<StringName> global_variable_get_list() const override { return Vector<StringName>(); }
+
+ virtual void global_variable_set(const StringName &p_name, const Variant &p_value) override {}
+ virtual void global_variable_set_override(const StringName &p_name, const Variant &p_value) override {}
+ virtual Variant global_variable_get(const StringName &p_name) const override { return Variant(); }
+ virtual RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const override { return RS::GLOBAL_VAR_TYPE_MAX; }
+
+ virtual void global_variables_load_settings(bool p_load_textures = true) override {}
+ virtual void global_variables_clear() override {}
+
+ virtual int32_t global_variables_instance_allocate(RID p_instance) override { return 0; }
+ virtual void global_variables_instance_free(RID p_instance) override {}
+ virtual void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) override {}
+
+ /* SHADER API */
+
+ virtual RID shader_allocate() override { return RID(); }
+ virtual void shader_initialize(RID p_rid) override {}
+ virtual void shader_free(RID p_rid) override{};
+
+ virtual void shader_set_code(RID p_shader, const String &p_code) override {}
+ virtual String shader_get_code(RID p_shader) const override { return ""; }
+ virtual void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const override {}
+
+ virtual void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) override {}
+ virtual RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const override { return RID(); }
+ virtual Variant shader_get_param_default(RID p_material, const StringName &p_param) const override { return Variant(); }
+
+ virtual RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const override { return RS::ShaderNativeSourceCode(); };
+
+ /* MATERIAL API */
+ virtual RID material_allocate() override { return RID(); }
+ virtual void material_initialize(RID p_rid) override {}
+ virtual void material_free(RID p_rid) override{};
+
+ virtual void material_set_render_priority(RID p_material, int priority) override {}
+ virtual void material_set_shader(RID p_shader_material, RID p_shader) override {}
+
+ virtual void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) override {}
+ virtual Variant material_get_param(RID p_material, const StringName &p_param) const override { return Variant(); }
+
+ virtual void material_set_next_pass(RID p_material, RID p_next_material) override {}
+
+ virtual bool material_is_animated(RID p_material) override { return false; }
+ virtual bool material_casts_shadows(RID p_material) override { return false; }
+ virtual void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) override {}
+ virtual void material_update_dependency(RID p_material, RendererStorage::DependencyTracker *p_instance) override {}
+};
+
+} // namespace RendererDummy
+
+#endif // !MATERIAL_STORAGE_DUMMY_H
diff --git a/servers/rendering/dummy/storage/mesh_storage.h b/servers/rendering/dummy/storage/mesh_storage.h
new file mode 100644
index 0000000000..dfbd265bba
--- /dev/null
+++ b/servers/rendering/dummy/storage/mesh_storage.h
@@ -0,0 +1,129 @@
+/*************************************************************************/
+/* mesh_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MESH_STORAGE_DUMMY_H
+#define MESH_STORAGE_DUMMY_H
+
+#include "servers/rendering/storage/mesh_storage.h"
+
+namespace RendererDummy {
+
+class MeshStorage : public RendererMeshStorage {
+public:
+ /* MESH API */
+
+ virtual RID mesh_allocate() override { return RID(); }
+ virtual void mesh_initialize(RID p_rid) override {}
+ virtual void mesh_free(RID p_rid) override {}
+
+ virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) override {}
+ virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) override { return false; }
+
+ virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) override {}
+
+ virtual int mesh_get_blend_shape_count(RID p_mesh) const override { return 0; }
+
+ virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) override {}
+ virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const override { return RS::BLEND_SHAPE_MODE_NORMALIZED; }
+
+ virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
+ virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
+ virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
+
+ virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) override {}
+ virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const override { return RID(); }
+
+ virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const override { return RS::SurfaceData(); }
+ virtual int mesh_get_surface_count(RID p_mesh) const override { return 0; }
+
+ virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) override {}
+ virtual AABB mesh_get_custom_aabb(RID p_mesh) const override { return AABB(); }
+
+ virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) override { return AABB(); }
+ virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) override {}
+ virtual void mesh_clear(RID p_mesh) override {}
+
+ /* MESH INSTANCE */
+
+ virtual RID mesh_instance_create(RID p_base) override { return RID(); }
+ virtual void mesh_instance_free(RID p_rid) override {}
+
+ virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) override {}
+ virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) override {}
+ virtual void mesh_instance_check_for_update(RID p_mesh_instance) override {}
+ virtual void update_mesh_instances() override {}
+
+ /* MULTIMESH API */
+
+ virtual RID multimesh_allocate() override { return RID(); }
+ virtual void multimesh_initialize(RID p_rid) override {}
+ virtual void multimesh_free(RID p_rid) override {}
+
+ virtual void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) override {}
+ virtual int multimesh_get_instance_count(RID p_multimesh) const override { return 0; }
+
+ virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) override {}
+ virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) override {}
+ virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) override {}
+ virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) override {}
+ virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) override {}
+
+ virtual RID multimesh_get_mesh(RID p_multimesh) const override { return RID(); }
+ virtual AABB multimesh_get_aabb(RID p_multimesh) const override { return AABB(); }
+
+ virtual Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const override { return Transform3D(); }
+ virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const override { return Transform2D(); }
+ virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const override { return Color(); }
+ virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const override { return Color(); }
+ virtual void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) override {}
+ virtual Vector<float> multimesh_get_buffer(RID p_multimesh) const override { return Vector<float>(); }
+
+ virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) override {}
+ virtual int multimesh_get_visible_instances(RID p_multimesh) const override { return 0; }
+
+ /* SKELETON API */
+
+ virtual RID skeleton_allocate() override { return RID(); }
+ virtual void skeleton_initialize(RID p_rid) override {}
+ virtual void skeleton_free(RID p_rid) override {}
+ virtual void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) override {}
+ virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) override {}
+ virtual int skeleton_get_bone_count(RID p_skeleton) const override { return 0; }
+ virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) override {}
+ virtual Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const override { return Transform3D(); }
+ virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) override {}
+ virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const override { return Transform2D(); }
+
+ virtual void skeleton_update_dependency(RID p_base, RendererStorage::DependencyTracker *p_instance) override {}
+};
+
+} // namespace RendererDummy
+
+#endif // !MESH_STORAGE_DUMMY_H
diff --git a/servers/rendering/dummy/storage/particles_storage.h b/servers/rendering/dummy/storage/particles_storage.h
new file mode 100644
index 0000000000..f614b41c4c
--- /dev/null
+++ b/servers/rendering/dummy/storage/particles_storage.h
@@ -0,0 +1,126 @@
+/*************************************************************************/
+/* particles_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef PARTICLES_STORAGE_DUMMY_H
+#define PARTICLES_STORAGE_DUMMY_H
+
+#include "servers/rendering/storage/particles_storage.h"
+
+namespace RendererDummy {
+
+class ParticlesStorage : public RendererParticlesStorage {
+public:
+ /* PARTICLES */
+
+ virtual RID particles_allocate() override { return RID(); }
+ virtual void particles_initialize(RID p_rid) override {}
+ virtual void particles_free(RID p_rid) override {}
+
+ virtual void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) override {}
+ virtual void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) override {}
+ virtual void particles_set_emitting(RID p_particles, bool p_emitting) override {}
+ virtual void particles_set_amount(RID p_particles, int p_amount) override {}
+ virtual void particles_set_lifetime(RID p_particles, double p_lifetime) override {}
+ virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) override {}
+ virtual void particles_set_pre_process_time(RID p_particles, double p_time) override {}
+ virtual void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) override {}
+ virtual void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) override {}
+ virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) override {}
+ virtual void particles_set_speed_scale(RID p_particles, double p_scale) override {}
+ virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) override {}
+ virtual void particles_set_process_material(RID p_particles, RID p_material) override {}
+ virtual RID particles_get_process_material(RID p_particles) const override { return RID(); }
+ virtual void particles_set_fixed_fps(RID p_particles, int p_fps) override {}
+ virtual void particles_set_interpolate(RID p_particles, bool p_enable) override {}
+ virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) override {}
+ virtual void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) override {}
+ virtual void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) override {}
+ virtual void particles_set_collision_base_size(RID p_particles, real_t p_size) override {}
+
+ virtual void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) override {}
+
+ virtual void particles_set_trails(RID p_particles, bool p_enable, double p_length) override {}
+ virtual void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) override {}
+
+ virtual void particles_restart(RID p_particles) override {}
+
+ virtual void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) override {}
+
+ virtual void particles_set_draw_passes(RID p_particles, int p_count) override {}
+ virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) override {}
+
+ virtual void particles_request_process(RID p_particles) override {}
+ virtual AABB particles_get_current_aabb(RID p_particles) override { return AABB(); }
+ virtual AABB particles_get_aabb(RID p_particles) const override { return AABB(); }
+
+ virtual void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) override {}
+
+ virtual bool particles_get_emitting(RID p_particles) override { return false; }
+ virtual int particles_get_draw_passes(RID p_particles) const override { return 0; }
+ virtual RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const override { return RID(); }
+
+ virtual void particles_add_collision(RID p_particles, RID p_instance) override {}
+ virtual void particles_remove_collision(RID p_particles, RID p_instance) override {}
+
+ virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) override {}
+
+ virtual void update_particles() override {}
+
+ /* PARTICLES COLLISION */
+
+ virtual RID particles_collision_allocate() override { return RID(); }
+ virtual void particles_collision_initialize(RID p_rid) override {}
+ virtual void particles_collision_free(RID p_rid) override {}
+
+ virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) override {}
+ virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) override {}
+ virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) override {}
+ virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) override {}
+ virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) override {}
+ virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) override {}
+ virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) override {}
+ virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) override {}
+ virtual void particles_collision_height_field_update(RID p_particles_collision) override {}
+ virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) override {}
+ virtual AABB particles_collision_get_aabb(RID p_particles_collision) const override { return AABB(); }
+ virtual bool particles_collision_is_heightfield(RID p_particles_collision) const override { return false; }
+ virtual RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const override { return RID(); }
+
+ virtual RID particles_collision_instance_create(RID p_collision) override { return RID(); }
+ virtual void particles_collision_instance_free(RID p_rid) override {}
+ virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) override {}
+ virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) override {}
+
+ virtual bool particles_is_inactive(RID p_particles) const override { return false; }
+};
+
+} // namespace RendererDummy
+
+#endif // !PARTICLES_STORAGE_DUMMY_H
diff --git a/servers/rendering/dummy/storage/texture_storage.h b/servers/rendering/dummy/storage/texture_storage.h
new file mode 100644
index 0000000000..534b9f07d8
--- /dev/null
+++ b/servers/rendering/dummy/storage/texture_storage.h
@@ -0,0 +1,172 @@
+/*************************************************************************/
+/* texture_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef TEXTURE_STORAGE_DUMMY_H
+#define TEXTURE_STORAGE_DUMMY_H
+
+#include "servers/rendering/rendering_server_globals.h"
+#include "servers/rendering/storage/texture_storage.h"
+
+namespace RendererDummy {
+
+class TextureStorage : public RendererTextureStorage {
+private:
+ struct DummyTexture {
+ Ref<Image> image;
+ };
+ mutable RID_PtrOwner<DummyTexture> texture_owner;
+
+public:
+ static TextureStorage *get_singleton() {
+ // Here we cheat until we can retire RasterizerStorageDummy::free()
+
+ return (TextureStorage *)RSG::texture_storage;
+ };
+
+ virtual bool can_create_resources_async() const override { return false; }
+
+ /* Canvas Texture API */
+
+ virtual RID canvas_texture_allocate() override { return RID(); };
+ virtual void canvas_texture_initialize(RID p_rid) override{};
+ virtual void canvas_texture_free(RID p_rid) override{};
+
+ virtual void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) override{};
+ virtual void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) override{};
+
+ virtual void canvas_texture_set_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) override{};
+ virtual void canvas_texture_set_texture_repeat(RID p_item, RS::CanvasItemTextureRepeat p_repeat) override{};
+
+ /* Texture API */
+
+ DummyTexture *get_texture(RID p_rid) { return texture_owner.get_or_null(p_rid); };
+ bool owns_texture(RID p_rid) { return texture_owner.owns(p_rid); };
+
+ virtual RID texture_allocate() override {
+ DummyTexture *texture = memnew(DummyTexture);
+ ERR_FAIL_COND_V(!texture, RID());
+ return texture_owner.make_rid(texture);
+ };
+
+ virtual void texture_free(RID p_rid) override {
+ // delete the texture
+ DummyTexture *texture = texture_owner.get_or_null(p_rid);
+ texture_owner.free(p_rid);
+ memdelete(texture);
+ };
+
+ virtual void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) override {
+ DummyTexture *t = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!t);
+ t->image = p_image->duplicate();
+ };
+ virtual void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) override{};
+ virtual void texture_3d_initialize(RID p_texture, Image::Format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) override{};
+ virtual void texture_proxy_initialize(RID p_texture, RID p_base) override{}; //all slices, then all the mipmaps, must be coherent
+
+ virtual void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) override{};
+ virtual void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) override{};
+ virtual void texture_proxy_update(RID p_proxy, RID p_base) override{};
+
+ //these two APIs can be used together or in combination with the others.
+ virtual void texture_2d_placeholder_initialize(RID p_texture) override{};
+ virtual void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type) override{};
+ virtual void texture_3d_placeholder_initialize(RID p_texture) override{};
+
+ virtual Ref<Image> texture_2d_get(RID p_texture) const override {
+ DummyTexture *t = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND_V(!t, Ref<Image>());
+ return t->image;
+ };
+ virtual Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const override { return Ref<Image>(); };
+ virtual Vector<Ref<Image>> texture_3d_get(RID p_texture) const override { return Vector<Ref<Image>>(); };
+
+ virtual void texture_replace(RID p_texture, RID p_by_texture) override { texture_free(p_by_texture); };
+ virtual void texture_set_size_override(RID p_texture, int p_width, int p_height) override{};
+
+ virtual void texture_set_path(RID p_texture, const String &p_path) override{};
+ virtual String texture_get_path(RID p_texture) const override { return String(); };
+
+ virtual void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override{};
+ virtual void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override{};
+ virtual void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) override{};
+
+ virtual void texture_debug_usage(List<RS::TextureInfo> *r_info) override{};
+
+ virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) override{};
+
+ virtual Size2 texture_size_with_proxy(RID p_proxy) override { return Size2(); };
+
+ /* DECAL API */
+ virtual RID decal_allocate() override { return RID(); }
+ virtual void decal_initialize(RID p_rid) override {}
+ virtual void decal_free(RID p_rid) override{};
+
+ virtual void decal_set_extents(RID p_decal, const Vector3 &p_extents) override {}
+ virtual void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) override {}
+ virtual void decal_set_emission_energy(RID p_decal, float p_energy) override {}
+ virtual void decal_set_albedo_mix(RID p_decal, float p_mix) override {}
+ virtual void decal_set_modulate(RID p_decal, const Color &p_modulate) override {}
+ virtual void decal_set_cull_mask(RID p_decal, uint32_t p_layers) override {}
+ virtual void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) override {}
+ virtual void decal_set_fade(RID p_decal, float p_above, float p_below) override {}
+ virtual void decal_set_normal_fade(RID p_decal, float p_fade) override {}
+
+ virtual AABB decal_get_aabb(RID p_decal) const override { return AABB(); }
+
+ virtual void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override {}
+ virtual void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override {}
+
+ /* RENDER TARGET */
+
+ virtual RID render_target_create() override { return RID(); }
+ virtual void render_target_free(RID p_rid) override {}
+ virtual void render_target_set_position(RID p_render_target, int p_x, int p_y) override {}
+ virtual void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) override {}
+ virtual RID render_target_get_texture(RID p_render_target) override { return RID(); }
+ virtual void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) override {}
+ virtual void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) override {}
+ virtual bool render_target_was_used(RID p_render_target) override { return false; }
+ virtual void render_target_set_as_unused(RID p_render_target) override {}
+
+ virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color) override {}
+ virtual bool render_target_is_clear_requested(RID p_render_target) override { return false; }
+ virtual Color render_target_get_clear_request_color(RID p_render_target) override { return Color(); }
+ virtual void render_target_disable_clear_request(RID p_render_target) override {}
+ virtual void render_target_do_clear_request(RID p_render_target) override {}
+
+ virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) override {}
+ virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const override { return Rect2i(); }
+ virtual void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) override {}
+};
+
+} // namespace RendererDummy
+
+#endif // !TEXTURE_STORAGE_DUMMY_H
diff --git a/servers/rendering/rasterizer_dummy.h b/servers/rendering/rasterizer_dummy.h
deleted file mode 100644
index 01e96b3bc6..0000000000
--- a/servers/rendering/rasterizer_dummy.h
+++ /dev/null
@@ -1,797 +0,0 @@
-/*************************************************************************/
-/* rasterizer_dummy.h */
-/*************************************************************************/
-/* This file is part of: */
-/* GODOT ENGINE */
-/* https://godotengine.org */
-/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
-/* */
-/* Permission is hereby granted, free of charge, to any person obtaining */
-/* a copy of this software and associated documentation files (the */
-/* "Software"), to deal in the Software without restriction, including */
-/* without limitation the rights to use, copy, modify, merge, publish, */
-/* distribute, sublicense, and/or sell copies of the Software, and to */
-/* permit persons to whom the Software is furnished to do so, subject to */
-/* the following conditions: */
-/* */
-/* The above copyright notice and this permission notice shall be */
-/* included in all copies or substantial portions of the Software. */
-/* */
-/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
-/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
-/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
-/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
-/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
-/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
-/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
-/*************************************************************************/
-
-#ifndef RASTERIZER_DUMMY_H
-#define RASTERIZER_DUMMY_H
-
-#include "core/math/camera_matrix.h"
-#include "core/templates/rid_owner.h"
-#include "core/templates/self_list.h"
-#include "scene/resources/mesh.h"
-#include "servers/rendering/renderer_compositor.h"
-#include "servers/rendering/renderer_scene_render.h"
-#include "servers/rendering_server.h"
-
-class RasterizerSceneDummy : public RendererSceneRender {
-public:
- GeometryInstance *geometry_instance_create(RID p_base) override { return nullptr; }
- void geometry_instance_set_skeleton(GeometryInstance *p_geometry_instance, RID p_skeleton) override {}
- void geometry_instance_set_material_override(GeometryInstance *p_geometry_instance, RID p_override) override {}
- void geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_material) override {}
- void geometry_instance_set_mesh_instance(GeometryInstance *p_geometry_instance, RID p_mesh_instance) override {}
- void geometry_instance_set_transform(GeometryInstance *p_geometry_instance, const Transform3D &p_transform, const AABB &p_aabb, const AABB &p_transformed_aabbb) override {}
- void geometry_instance_set_layer_mask(GeometryInstance *p_geometry_instance, uint32_t p_layer_mask) override {}
- void geometry_instance_set_lod_bias(GeometryInstance *p_geometry_instance, float p_lod_bias) override {}
- void geometry_instance_set_use_baked_light(GeometryInstance *p_geometry_instance, bool p_enable) override {}
- void geometry_instance_set_use_dynamic_gi(GeometryInstance *p_geometry_instance, bool p_enable) override {}
- void geometry_instance_set_use_lightmap(GeometryInstance *p_geometry_instance, RID p_lightmap_instance, const Rect2 &p_lightmap_uv_scale, int p_lightmap_slice_index) override {}
- void geometry_instance_set_lightmap_capture(GeometryInstance *p_geometry_instance, const Color *p_sh9) override {}
- void geometry_instance_set_instance_shader_parameters_offset(GeometryInstance *p_geometry_instance, int32_t p_offset) override {}
- void geometry_instance_set_cast_double_sided_shadows(GeometryInstance *p_geometry_instance, bool p_enable) override {}
- void geometry_instance_set_fade_range(GeometryInstance *p_geometry_instance, bool p_enable_near, float p_near_begin, float p_near_end, bool p_enable_far, float p_far_begin, float p_far_end) override {}
- void geometry_instance_set_parent_fade_alpha(GeometryInstance *p_geometry_instance, float p_alpha) override {}
- void geometry_instance_set_transparency(GeometryInstance *p_geometry_instance, float p_transparency) override {}
-
- uint32_t geometry_instance_get_pair_mask() override { return 0; }
- void geometry_instance_pair_light_instances(GeometryInstance *p_geometry_instance, const RID *p_light_instances, uint32_t p_light_instance_count) override {}
- void geometry_instance_pair_reflection_probe_instances(GeometryInstance *p_geometry_instance, const RID *p_reflection_probe_instances, uint32_t p_reflection_probe_instance_count) override {}
- void geometry_instance_pair_decal_instances(GeometryInstance *p_geometry_instance, const RID *p_decal_instances, uint32_t p_decal_instance_count) override {}
- void geometry_instance_pair_voxel_gi_instances(GeometryInstance *p_geometry_instance, const RID *p_voxel_gi_instances, uint32_t p_voxel_gi_instance_count) override {}
- void geometry_instance_set_softshadow_projector_pairing(GeometryInstance *p_geometry_instance, bool p_softshadow, bool p_projector) override {}
-
- void geometry_instance_free(GeometryInstance *p_geometry_instance) override {}
-
- /* SHADOW ATLAS API */
-
- RID shadow_atlas_create() override { return RID(); }
- void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = false) override {}
- void shadow_atlas_set_quadrant_subdivision(RID p_atlas, int p_quadrant, int p_subdivision) override {}
- bool shadow_atlas_update_light(RID p_atlas, RID p_light_intance, float p_coverage, uint64_t p_light_version) override { return false; }
-
- void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = false) override {}
- int get_directional_light_shadow_size(RID p_light_intance) override { return 0; }
- void set_directional_shadow_count(int p_count) override {}
-
- /* SDFGI UPDATE */
-
- void sdfgi_update(RID p_render_buffers, RID p_environment, const Vector3 &p_world_position) override {}
- int sdfgi_get_pending_region_count(RID p_render_buffers) const override { return 0; }
- AABB sdfgi_get_pending_region_bounds(RID p_render_buffers, int p_region) const override { return AABB(); }
- uint32_t sdfgi_get_pending_region_cascade(RID p_render_buffers, int p_region) const override { return 0; }
-
- /* SKY API */
-
- RID sky_allocate() override { return RID(); }
- void sky_initialize(RID p_rid) override {}
- void sky_set_radiance_size(RID p_sky, int p_radiance_size) override {}
- void sky_set_mode(RID p_sky, RS::SkyMode p_samples) override {}
- void sky_set_material(RID p_sky, RID p_material) override {}
- Ref<Image> sky_bake_panorama(RID p_sky, float p_energy, bool p_bake_irradiance, const Size2i &p_size) override { return Ref<Image>(); }
-
- /* ENVIRONMENT API */
-
- RID environment_allocate() override { return RID(); }
- void environment_initialize(RID p_rid) override {}
- void environment_set_background(RID p_env, RS::EnvironmentBG p_bg) override {}
- void environment_set_sky(RID p_env, RID p_sky) override {}
- void environment_set_sky_custom_fov(RID p_env, float p_scale) override {}
- void environment_set_sky_orientation(RID p_env, const Basis &p_orientation) override {}
- void environment_set_bg_color(RID p_env, const Color &p_color) override {}
- void environment_set_bg_energy(RID p_env, float p_energy) override {}
- void environment_set_canvas_max_layer(RID p_env, int p_max_layer) override {}
- void environment_set_ambient_light(RID p_env, const Color &p_color, RS::EnvironmentAmbientSource p_ambient = RS::ENV_AMBIENT_SOURCE_BG, float p_energy = 1.0, float p_sky_contribution = 0.0, RS::EnvironmentReflectionSource p_reflection_source = RS::ENV_REFLECTION_SOURCE_BG) override {}
-
- void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) override {}
- void environment_glow_set_use_bicubic_upscale(bool p_enable) override {}
- void environment_glow_set_use_high_quality(bool p_enable) override {}
-
- void environment_set_ssr(RID p_env, bool p_enable, int p_max_steps, float p_fade_int, float p_fade_out, float p_depth_tolerance) override {}
- void environment_set_ssr_roughness_quality(RS::EnvironmentSSRRoughnessQuality p_quality) override {}
- void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_power, float p_detail, float p_horizon, float p_sharpness, float p_light_affect, float p_ao_channel_affect) override {}
- void environment_set_ssao_quality(RS::EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) override {}
-
- void environment_set_sdfgi(RID p_env, bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) override {}
-
- void environment_set_sdfgi_ray_count(RS::EnvironmentSDFGIRayCount p_ray_count) override {}
- void environment_set_sdfgi_frames_to_converge(RS::EnvironmentSDFGIFramesToConverge p_frames) override {}
- void environment_set_sdfgi_frames_to_update_light(RS::EnvironmentSDFGIFramesToUpdateLight p_update) override {}
-
- void environment_set_tonemap(RID p_env, RS::EnvironmentToneMapper p_tone_mapper, float p_exposure, float p_white, bool p_auto_exposure, float p_min_luminance, float p_max_luminance, float p_auto_exp_speed, float p_auto_exp_scale) override {}
-
- void environment_set_adjustment(RID p_env, bool p_enable, float p_brightness, float p_contrast, float p_saturation, bool p_use_1d_color_correction, RID p_color_correction) override {}
-
- void environment_set_fog(RID p_env, bool p_enable, const Color &p_light_color, float p_light_energy, float p_sun_scatter, float p_density, float p_height, float p_height_density, float p_aerial_perspective) override {}
- void environment_set_volumetric_fog(RID p_env, bool p_enable, float p_density, const Color &p_albedo, const Color &p_emission, float p_emission_energy, float p_anisotropy, float p_length, float p_detail_spread, float p_gi_inject, bool p_temporal_reprojection, float p_temporal_reprojection_amount, float p_ambient_inject) override {}
- void environment_set_volumetric_fog_volume_size(int p_size, int p_depth) override {}
- void environment_set_volumetric_fog_filter_active(bool p_enable) override {}
-
- Ref<Image> environment_bake_panorama(RID p_env, bool p_bake_irradiance, const Size2i &p_size) override { return Ref<Image>(); }
-
- bool is_environment(RID p_env) const override { return false; }
- RS::EnvironmentBG environment_get_background(RID p_env) const override { return RS::ENV_BG_KEEP; }
- int environment_get_canvas_max_layer(RID p_env) const override { return 0; }
-
- RID camera_effects_allocate() override { return RID(); }
- void camera_effects_initialize(RID p_rid) override {}
- void camera_effects_set_dof_blur_quality(RS::DOFBlurQuality p_quality, bool p_use_jitter) override {}
- void camera_effects_set_dof_blur_bokeh_shape(RS::DOFBokehShape p_shape) override {}
-
- void camera_effects_set_dof_blur(RID p_camera_effects, bool p_far_enable, float p_far_distance, float p_far_transition, bool p_near_enable, float p_near_distance, float p_near_transition, float p_amount) override {}
- void camera_effects_set_custom_exposure(RID p_camera_effects, bool p_enable, float p_exposure) override {}
-
- void shadows_quality_set(RS::ShadowQuality p_quality) override {}
- void directional_shadow_quality_set(RS::ShadowQuality p_quality) override {}
-
- RID light_instance_create(RID p_light) override { return RID(); }
- void light_instance_set_transform(RID p_light_instance, const Transform3D &p_transform) override {}
- void light_instance_set_aabb(RID p_light_instance, const AABB &p_aabb) override {}
- void light_instance_set_shadow_transform(RID p_light_instance, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_far, float p_split, int p_pass, float p_shadow_texel_size, float p_bias_scale = 1.0, float p_range_begin = 0, const Vector2 &p_uv_scale = Vector2()) override {}
- void light_instance_mark_visible(RID p_light_instance) override {}
-
- RID fog_volume_instance_create(RID p_fog_volume) override { return RID(); }
- void fog_volume_instance_set_transform(RID p_fog_volume_instance, const Transform3D &p_transform) override {}
- void fog_volume_instance_set_active(RID p_fog_volume_instance, bool p_active) override {}
- RID fog_volume_instance_get_volume(RID p_fog_volume_instance) const override { return RID(); }
- Vector3 fog_volume_instance_get_position(RID p_fog_volume_instance) const override { return Vector3(); }
-
- RID reflection_atlas_create() override { return RID(); }
- int reflection_atlas_get_size(RID p_ref_atlas) const override { return 0; }
- void reflection_atlas_set_size(RID p_ref_atlas, int p_reflection_size, int p_reflection_count) override {}
-
- RID reflection_probe_instance_create(RID p_probe) override { return RID(); }
- void reflection_probe_instance_set_transform(RID p_instance, const Transform3D &p_transform) override {}
- void reflection_probe_release_atlas_index(RID p_instance) override {}
- bool reflection_probe_instance_needs_redraw(RID p_instance) override { return false; }
- bool reflection_probe_instance_has_reflection(RID p_instance) override { return false; }
- bool reflection_probe_instance_begin_render(RID p_instance, RID p_reflection_atlas) override { return false; }
- bool reflection_probe_instance_postprocess_step(RID p_instance) override { return true; }
-
- RID decal_instance_create(RID p_decal) override { return RID(); }
- void decal_instance_set_transform(RID p_decal, const Transform3D &p_transform) override {}
-
- RID lightmap_instance_create(RID p_lightmap) override { return RID(); }
- void lightmap_instance_set_transform(RID p_lightmap, const Transform3D &p_transform) override {}
-
- RID voxel_gi_instance_create(RID p_voxel_gi) override { return RID(); }
- void voxel_gi_instance_set_transform_to_data(RID p_probe, const Transform3D &p_xform) override {}
- bool voxel_gi_needs_update(RID p_probe) const override { return false; }
- void voxel_gi_update(RID p_probe, bool p_update_light_instances, const Vector<RID> &p_light_instances, const PagedArray<RendererSceneRender::GeometryInstance *> &p_dynamic_objects) override {}
-
- void voxel_gi_set_quality(RS::VoxelGIQuality) override {}
-
- void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_info = nullptr) override {}
- void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override {}
- void render_particle_collider_heightfield(RID p_collider, const Transform3D &p_transform, const PagedArray<GeometryInstance *> &p_instances) override {}
-
- void set_scene_pass(uint64_t p_pass) override {}
- void set_time(double p_time, double p_step) override {}
- void set_debug_draw_mode(RS::ViewportDebugDraw p_debug_draw) override {}
-
- RID render_buffers_create() override { return RID(); }
- void render_buffers_configure(RID p_render_buffers, RID p_render_target, int p_internal_width, int p_internal_height, int p_width, int p_height, float p_fsr_sharpness, float p_fsr_mipmap_bias, RS::ViewportMSAA p_msaa, RS::ViewportScreenSpaceAA p_screen_space_aa, bool p_use_debanding, uint32_t p_view_count) override {}
- void gi_set_use_half_resolution(bool p_enable) override {}
-
- void screen_space_roughness_limiter_set_active(bool p_enable, float p_amount, float p_curve) override {}
- bool screen_space_roughness_limiter_is_active() const override { return false; }
-
- void sub_surface_scattering_set_quality(RS::SubSurfaceScatteringQuality p_quality) override {}
- void sub_surface_scattering_set_scale(float p_scale, float p_depth_scale) override {}
-
- TypedArray<Image> bake_render_uv2(RID p_base, const Vector<RID> &p_material_overrides, const Size2i &p_image_size) override { return TypedArray<Image>(); }
-
- bool free(RID p_rid) override { return false; }
- void update() override {}
- void sdfgi_set_debug_probe_select(const Vector3 &p_position, const Vector3 &p_dir) override {}
-
- virtual void decals_set_filter(RS::DecalFilter p_filter) override {}
- virtual void light_projectors_set_filter(RS::LightProjectorFilter p_filter) override {}
-
- RasterizerSceneDummy() {}
- ~RasterizerSceneDummy() {}
-};
-
-class RasterizerStorageDummy : public RendererStorage {
-public:
- bool can_create_resources_async() const override { return false; }
-
- /* TEXTURE API */
- struct DummyTexture {
- Ref<Image> image;
- };
- mutable RID_PtrOwner<DummyTexture> texture_owner;
-
- RID texture_allocate() override {
- DummyTexture *texture = memnew(DummyTexture);
- ERR_FAIL_COND_V(!texture, RID());
- return texture_owner.make_rid(texture);
- }
- void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) override {
- DummyTexture *t = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!t);
- t->image = p_image->duplicate();
- }
-
- void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) override {}
- void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) override {}
- void texture_3d_initialize(RID p_texture, Image::Format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) override {}
- void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) override {}
- void texture_proxy_initialize(RID p_texture, RID p_base) override {}
- void texture_proxy_update(RID p_proxy, RID p_base) override {}
-
- void texture_2d_placeholder_initialize(RID p_texture) override {}
- void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type) override {}
- void texture_3d_placeholder_initialize(RID p_texture) override {}
-
- Ref<Image> texture_2d_get(RID p_texture) const override {
- DummyTexture *t = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND_V(!t, Ref<Image>());
- return t->image;
- }
-
- Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const override { return Ref<Image>(); }
- Vector<Ref<Image>> texture_3d_get(RID p_texture) const override { return Vector<Ref<Image>>(); }
-
- void texture_replace(RID p_texture, RID p_by_texture) override { free(p_by_texture); }
- void texture_set_size_override(RID p_texture, int p_width, int p_height) override {}
-
- void texture_set_path(RID p_texture, const String &p_path) override {}
- String texture_get_path(RID p_texture) const override { return String(); }
-
- void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override {}
- void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override {}
- void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) override {}
-
- void texture_debug_usage(List<RS::TextureInfo> *r_info) override {}
- void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) override {}
- Size2 texture_size_with_proxy(RID p_proxy) override { return Size2(); }
-
- void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override {}
- void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override {}
-
- /* CANVAS TEXTURE API */
-
- RID canvas_texture_allocate() override { return RID(); }
- void canvas_texture_initialize(RID p_rid) override {}
- void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) override {}
- void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) override {}
-
- void canvas_texture_set_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) override {}
- void canvas_texture_set_texture_repeat(RID p_item, RS::CanvasItemTextureRepeat p_repeat) override {}
-
- /* SHADER API */
-
- RID shader_allocate() override { return RID(); }
- void shader_initialize(RID p_rid) override {}
- void shader_set_code(RID p_shader, const String &p_code) override {}
- String shader_get_code(RID p_shader) const override { return ""; }
- void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const override {}
-
- void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) override {}
- RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const override { return RID(); }
- Variant shader_get_param_default(RID p_material, const StringName &p_param) const override { return Variant(); }
-
- RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const override { return RS::ShaderNativeSourceCode(); };
-
- /* COMMON MATERIAL API */
-
- RID material_allocate() override { return RID(); }
- void material_initialize(RID p_rid) override {}
- void material_set_render_priority(RID p_material, int priority) override {}
- void material_set_shader(RID p_shader_material, RID p_shader) override {}
-
- void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) override {}
- Variant material_get_param(RID p_material, const StringName &p_param) const override { return Variant(); }
-
- void material_set_next_pass(RID p_material, RID p_next_material) override {}
-
- bool material_is_animated(RID p_material) override { return false; }
- bool material_casts_shadows(RID p_material) override { return false; }
- void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) override {}
- void material_update_dependency(RID p_material, DependencyTracker *p_instance) override {}
-
- /* MESH API */
-
- RID mesh_allocate() override { return RID(); }
- void mesh_initialize(RID p_rid) override {}
- void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) override {}
- bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) override { return false; }
- RID mesh_instance_create(RID p_base) override { return RID(); }
- void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) override {}
- void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) override {}
- void mesh_instance_check_for_update(RID p_mesh_instance) override {}
- void update_mesh_instances() override {}
- void reflection_probe_set_lod_threshold(RID p_probe, float p_ratio) override {}
- float reflection_probe_get_lod_threshold(RID p_probe) const override { return 0.0; }
-
- void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) override {}
-
- int mesh_get_blend_shape_count(RID p_mesh) const override { return 0; }
-
- void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) override {}
- RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const override { return RS::BLEND_SHAPE_MODE_NORMALIZED; }
-
- void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
- void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
- void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override {}
-
- void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) override {}
- RID mesh_surface_get_material(RID p_mesh, int p_surface) const override { return RID(); }
-
- RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const override { return RS::SurfaceData(); }
- int mesh_get_surface_count(RID p_mesh) const override { return 0; }
-
- void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) override {}
- AABB mesh_get_custom_aabb(RID p_mesh) const override { return AABB(); }
-
- AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) override { return AABB(); }
- void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) override {}
- void mesh_clear(RID p_mesh) override {}
-
- /* MULTIMESH API */
-
- RID multimesh_allocate() override { return RID(); }
- void multimesh_initialize(RID p_rid) override {}
- void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) override {}
- int multimesh_get_instance_count(RID p_multimesh) const override { return 0; }
-
- void multimesh_set_mesh(RID p_multimesh, RID p_mesh) override {}
- void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) override {}
- void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) override {}
- void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) override {}
- void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) override {}
-
- RID multimesh_get_mesh(RID p_multimesh) const override { return RID(); }
- AABB multimesh_get_aabb(RID p_multimesh) const override { return AABB(); }
-
- Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const override { return Transform3D(); }
- Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const override { return Transform2D(); }
- Color multimesh_instance_get_color(RID p_multimesh, int p_index) const override { return Color(); }
- Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const override { return Color(); }
- void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) override {}
- Vector<float> multimesh_get_buffer(RID p_multimesh) const override { return Vector<float>(); }
-
- void multimesh_set_visible_instances(RID p_multimesh, int p_visible) override {}
- int multimesh_get_visible_instances(RID p_multimesh) const override { return 0; }
-
- /* SKELETON API */
-
- RID skeleton_allocate() override { return RID(); }
- void skeleton_initialize(RID p_rid) override {}
- void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) override {}
- void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) override {}
- int skeleton_get_bone_count(RID p_skeleton) const override { return 0; }
- void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) override {}
- Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const override { return Transform3D(); }
- void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) override {}
- Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const override { return Transform2D(); }
-
- /* Light API */
-
- RID directional_light_allocate() override { return RID(); }
- void directional_light_initialize(RID p_rid) override {}
- RID omni_light_allocate() override { return RID(); }
- void omni_light_initialize(RID p_rid) override {}
- RID spot_light_allocate() override { return RID(); }
- void spot_light_initialize(RID p_rid) override {}
- RID reflection_probe_allocate() override { return RID(); }
- void reflection_probe_initialize(RID p_rid) override {}
-
- void light_set_color(RID p_light, const Color &p_color) override {}
- void light_set_param(RID p_light, RS::LightParam p_param, float p_value) override {}
- void light_set_shadow(RID p_light, bool p_enabled) override {}
- void light_set_shadow_color(RID p_light, const Color &p_color) override {}
- void light_set_projector(RID p_light, RID p_texture) override {}
- void light_set_negative(RID p_light, bool p_enable) override {}
- void light_set_cull_mask(RID p_light, uint32_t p_mask) override {}
- void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) override {}
- void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) override {}
- void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) override {}
-
- void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) override {}
-
- void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) override {}
- void light_directional_set_blend_splits(RID p_light, bool p_enable) override {}
- bool light_directional_get_blend_splits(RID p_light) const override { return false; }
- void light_directional_set_sky_only(RID p_light, bool p_sky_only) override {}
- bool light_directional_is_sky_only(RID p_light) const override { return false; }
-
- RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) override { return RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL; }
- RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) override { return RS::LIGHT_OMNI_SHADOW_DUAL_PARABOLOID; }
-
- bool light_has_shadow(RID p_light) const override { return false; }
- bool light_has_projector(RID p_light) const override { return false; }
-
- RS::LightType light_get_type(RID p_light) const override { return RS::LIGHT_OMNI; }
- AABB light_get_aabb(RID p_light) const override { return AABB(); }
- float light_get_param(RID p_light, RS::LightParam p_param) override { return 0.0; }
- Color light_get_color(RID p_light) override { return Color(); }
- RS::LightBakeMode light_get_bake_mode(RID p_light) override { return RS::LIGHT_BAKE_DISABLED; }
- uint32_t light_get_max_sdfgi_cascade(RID p_light) override { return 0; }
- uint64_t light_get_version(RID p_light) const override { return 0; }
-
- /* PROBE API */
-
- void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) override {}
- void reflection_probe_set_intensity(RID p_probe, float p_intensity) override {}
- void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) override {}
- void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) override {}
- void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) override {}
- void reflection_probe_set_max_distance(RID p_probe, float p_distance) override {}
- void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) override {}
- void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) override {}
- void reflection_probe_set_as_interior(RID p_probe, bool p_enable) override {}
- void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) override {}
- void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) override {}
- void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) override {}
- void reflection_probe_set_resolution(RID p_probe, int p_resolution) override {}
-
- AABB reflection_probe_get_aabb(RID p_probe) const override { return AABB(); }
- RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const override { return RenderingServer::REFLECTION_PROBE_UPDATE_ONCE; }
- uint32_t reflection_probe_get_cull_mask(RID p_probe) const override { return 0; }
- Vector3 reflection_probe_get_extents(RID p_probe) const override { return Vector3(); }
- Vector3 reflection_probe_get_origin_offset(RID p_probe) const override { return Vector3(); }
- float reflection_probe_get_origin_max_distance(RID p_probe) const override { return 0.0; }
- bool reflection_probe_renders_shadows(RID p_probe) const override { return false; }
-
- void base_update_dependency(RID p_base, DependencyTracker *p_instance) override {}
- void skeleton_update_dependency(RID p_base, DependencyTracker *p_instance) override {}
-
- /* DECAL API */
-
- RID decal_allocate() override { return RID(); }
- void decal_initialize(RID p_rid) override {}
- void decal_set_extents(RID p_decal, const Vector3 &p_extents) override {}
- void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) override {}
- void decal_set_emission_energy(RID p_decal, float p_energy) override {}
- void decal_set_albedo_mix(RID p_decal, float p_mix) override {}
- void decal_set_modulate(RID p_decal, const Color &p_modulate) override {}
- void decal_set_cull_mask(RID p_decal, uint32_t p_layers) override {}
- void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) override {}
- void decal_set_fade(RID p_decal, float p_above, float p_below) override {}
- void decal_set_normal_fade(RID p_decal, float p_fade) override {}
-
- AABB decal_get_aabb(RID p_decal) const override { return AABB(); }
-
- /* VOXEL GI API */
-
- RID voxel_gi_allocate() override { return RID(); }
- void voxel_gi_initialize(RID p_rid) override {}
- void voxel_gi_allocate_data(RID p_voxel_gi, const Transform3D &p_to_cell_xform, const AABB &p_aabb, const Vector3i &p_octree_size, const Vector<uint8_t> &p_octree_cells, const Vector<uint8_t> &p_data_cells, const Vector<uint8_t> &p_distance_field, const Vector<int> &p_level_counts) override {}
-
- AABB voxel_gi_get_bounds(RID p_voxel_gi) const override { return AABB(); }
- Vector3i voxel_gi_get_octree_size(RID p_voxel_gi) const override { return Vector3i(); }
- Vector<uint8_t> voxel_gi_get_octree_cells(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
- Vector<uint8_t> voxel_gi_get_data_cells(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
- Vector<uint8_t> voxel_gi_get_distance_field(RID p_voxel_gi) const override { return Vector<uint8_t>(); }
-
- Vector<int> voxel_gi_get_level_counts(RID p_voxel_gi) const override { return Vector<int>(); }
- Transform3D voxel_gi_get_to_cell_xform(RID p_voxel_gi) const override { return Transform3D(); }
-
- void voxel_gi_set_dynamic_range(RID p_voxel_gi, float p_range) override {}
- float voxel_gi_get_dynamic_range(RID p_voxel_gi) const override { return 0; }
-
- void voxel_gi_set_propagation(RID p_voxel_gi, float p_range) override {}
- float voxel_gi_get_propagation(RID p_voxel_gi) const override { return 0; }
-
- void voxel_gi_set_energy(RID p_voxel_gi, float p_range) override {}
- float voxel_gi_get_energy(RID p_voxel_gi) const override { return 0.0; }
-
- void voxel_gi_set_bias(RID p_voxel_gi, float p_range) override {}
- float voxel_gi_get_bias(RID p_voxel_gi) const override { return 0.0; }
-
- void voxel_gi_set_normal_bias(RID p_voxel_gi, float p_range) override {}
- float voxel_gi_get_normal_bias(RID p_voxel_gi) const override { return 0.0; }
-
- void voxel_gi_set_interior(RID p_voxel_gi, bool p_enable) override {}
- bool voxel_gi_is_interior(RID p_voxel_gi) const override { return false; }
-
- void voxel_gi_set_use_two_bounces(RID p_voxel_gi, bool p_enable) override {}
- bool voxel_gi_is_using_two_bounces(RID p_voxel_gi) const override { return false; }
-
- void voxel_gi_set_anisotropy_strength(RID p_voxel_gi, float p_strength) override {}
- float voxel_gi_get_anisotropy_strength(RID p_voxel_gi) const override { return 0; }
-
- uint32_t voxel_gi_get_version(RID p_voxel_gi) override { return 0; }
-
- /* LIGHTMAP CAPTURE */
- RID lightmap_allocate() override { return RID(); }
- void lightmap_initialize(RID p_rid) override {}
- void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) override {}
- void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) override {}
- void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) override {}
- void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) override {}
- PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const override { return PackedVector3Array(); }
- PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const override { return PackedColorArray(); }
- PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const override { return PackedInt32Array(); }
- PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const override { return PackedInt32Array(); }
- AABB lightmap_get_aabb(RID p_lightmap) const override { return AABB(); }
- void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) override {}
- bool lightmap_is_interior(RID p_lightmap) const override { return false; }
- void lightmap_set_probe_capture_update_speed(float p_speed) override {}
- float lightmap_get_probe_capture_update_speed() const override { return 0; }
-
- /* OCCLUDER */
-
- void occluder_set_mesh(RID p_occluder, const PackedVector3Array &p_vertices, const PackedInt32Array &p_indices) {}
-
- /* PARTICLES */
-
- RID particles_allocate() override { return RID(); }
- void particles_initialize(RID p_rid) override {}
- void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) override {}
- void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) override {}
- void particles_set_emitting(RID p_particles, bool p_emitting) override {}
- void particles_set_amount(RID p_particles, int p_amount) override {}
- void particles_set_lifetime(RID p_particles, double p_lifetime) override {}
- void particles_set_one_shot(RID p_particles, bool p_one_shot) override {}
- void particles_set_pre_process_time(RID p_particles, double p_time) override {}
- void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) override {}
- void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) override {}
- void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) override {}
- void particles_set_speed_scale(RID p_particles, double p_scale) override {}
- void particles_set_use_local_coordinates(RID p_particles, bool p_enable) override {}
- void particles_set_process_material(RID p_particles, RID p_material) override {}
- void particles_set_fixed_fps(RID p_particles, int p_fps) override {}
- void particles_set_interpolate(RID p_particles, bool p_enable) override {}
- void particles_set_fractional_delta(RID p_particles, bool p_enable) override {}
- void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) override {}
- void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) override {}
- void particles_set_collision_base_size(RID p_particles, real_t p_size) override {}
-
- void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) override {}
-
- void particles_set_trails(RID p_particles, bool p_enable, double p_length) override {}
- void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) override {}
-
- void particles_restart(RID p_particles) override {}
-
- void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) override {}
-
- void particles_set_draw_passes(RID p_particles, int p_count) override {}
- void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) override {}
-
- void particles_request_process(RID p_particles) override {}
- AABB particles_get_current_aabb(RID p_particles) override { return AABB(); }
- AABB particles_get_aabb(RID p_particles) const override { return AABB(); }
-
- void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) override {}
-
- bool particles_get_emitting(RID p_particles) override { return false; }
- int particles_get_draw_passes(RID p_particles) const override { return 0; }
- RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const override { return RID(); }
-
- void particles_add_collision(RID p_particles, RID p_instance) override {}
- void particles_remove_collision(RID p_particles, RID p_instance) override {}
-
- void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) override {}
-
- void update_particles() override {}
-
- /* PARTICLES COLLISION */
-
- RID particles_collision_allocate() override { return RID(); }
- void particles_collision_initialize(RID p_rid) override {}
- void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) override {}
- void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) override {}
- void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) override {}
- void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) override {}
- void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) override {}
- void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) override {}
- void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) override {}
- void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) override {}
- void particles_collision_height_field_update(RID p_particles_collision) override {}
- void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) override {}
- AABB particles_collision_get_aabb(RID p_particles_collision) const override { return AABB(); }
- bool particles_collision_is_heightfield(RID p_particles_collision) const override { return false; }
- RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const override { return RID(); }
-
- RID particles_collision_instance_create(RID p_collision) override { return RID(); }
- void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) override {}
- void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) override {}
-
- /* FOG VOLUMES */
-
- RID fog_volume_allocate() override { return RID(); }
- void fog_volume_initialize(RID p_rid) override {}
-
- void fog_volume_set_shape(RID p_fog_volume, RS::FogVolumeShape p_shape) override {}
- void fog_volume_set_extents(RID p_fog_volume, const Vector3 &p_extents) override {}
- void fog_volume_set_material(RID p_fog_volume, RID p_material) override {}
- AABB fog_volume_get_aabb(RID p_fog_volume) const override { return AABB(); }
- RS::FogVolumeShape fog_volume_get_shape(RID p_fog_volume) const override { return RS::FOG_VOLUME_SHAPE_BOX; }
-
- /* VISIBILITY NOTIFIER */
- virtual RID visibility_notifier_allocate() override { return RID(); }
- virtual void visibility_notifier_initialize(RID p_notifier) override {}
- virtual void visibility_notifier_set_aabb(RID p_notifier, const AABB &p_aabb) override {}
- virtual void visibility_notifier_set_callbacks(RID p_notifier, const Callable &p_enter_callbable, const Callable &p_exit_callable) override {}
-
- virtual AABB visibility_notifier_get_aabb(RID p_notifier) const override { return AABB(); }
- virtual void visibility_notifier_call(RID p_notifier, bool p_enter, bool p_deferred) override {}
-
- /* GLOBAL VARIABLES */
-
- void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) override {}
- void global_variable_remove(const StringName &p_name) override {}
- Vector<StringName> global_variable_get_list() const override { return Vector<StringName>(); }
-
- void global_variable_set(const StringName &p_name, const Variant &p_value) override {}
- void global_variable_set_override(const StringName &p_name, const Variant &p_value) override {}
- Variant global_variable_get(const StringName &p_name) const override { return Variant(); }
- RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const override { return RS::GLOBAL_VAR_TYPE_MAX; }
-
- void global_variables_load_settings(bool p_load_textures = true) override {}
- void global_variables_clear() override {}
-
- int32_t global_variables_instance_allocate(RID p_instance) override { return 0; }
- void global_variables_instance_free(RID p_instance) override {}
- void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) override {}
-
- bool particles_is_inactive(RID p_particles) const override { return false; }
-
- /* RENDER TARGET */
-
- RID render_target_create() override { return RID(); }
- void render_target_set_position(RID p_render_target, int p_x, int p_y) override {}
- void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) override {}
- RID render_target_get_texture(RID p_render_target) override { return RID(); }
- void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) override {}
- void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) override {}
- bool render_target_was_used(RID p_render_target) override { return false; }
- void render_target_set_as_unused(RID p_render_target) override {}
-
- void render_target_request_clear(RID p_render_target, const Color &p_clear_color) override {}
- bool render_target_is_clear_requested(RID p_render_target) override { return false; }
- Color render_target_get_clear_request_color(RID p_render_target) override { return Color(); }
- void render_target_disable_clear_request(RID p_render_target) override {}
- void render_target_do_clear_request(RID p_render_target) override {}
-
- void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) override {}
- Rect2i render_target_get_sdf_rect(RID p_render_target) const override { return Rect2i(); }
- void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) override {}
-
- RS::InstanceType get_base_type(RID p_rid) const override { return RS::INSTANCE_NONE; }
- bool free(RID p_rid) override {
- if (texture_owner.owns(p_rid)) {
- // delete the texture
- DummyTexture *texture = texture_owner.get_or_null(p_rid);
- texture_owner.free(p_rid);
- memdelete(texture);
- return true;
- }
- return false;
- }
-
- virtual void update_memory_info() override {}
- virtual uint64_t get_rendering_info(RS::RenderingInfo p_info) override { return 0; }
-
- bool has_os_feature(const String &p_feature) const override {
- return p_feature == "rgtc" || p_feature == "bptc" || p_feature == "s3tc" || p_feature == "etc" || p_feature == "etc2";
- }
-
- void update_dirty_resources() override {}
-
- void set_debug_generate_wireframes(bool p_generate) override {}
-
- String get_video_adapter_name() const override { return String(); }
- String get_video_adapter_vendor() const override { return String(); }
-
- static RendererStorage *base_singleton;
-
- void capture_timestamps_begin() override {}
- void capture_timestamp(const String &p_name) override {}
- uint32_t get_captured_timestamps_count() const override { return 0; }
- uint64_t get_captured_timestamps_frame() const override { return 0; }
- uint64_t get_captured_timestamp_gpu_time(uint32_t p_index) const override { return 0; }
- uint64_t get_captured_timestamp_cpu_time(uint32_t p_index) const override { return 0; }
- String get_captured_timestamp_name(uint32_t p_index) const override { return String(); }
-
- RasterizerStorageDummy() {}
- ~RasterizerStorageDummy() {}
-};
-
-class RasterizerCanvasDummy : public RendererCanvasRender {
-public:
- PolygonID request_polygon(const Vector<int> &p_indices, const Vector<Point2> &p_points, const Vector<Color> &p_colors, const Vector<Point2> &p_uvs = Vector<Point2>(), const Vector<int> &p_bones = Vector<int>(), const Vector<float> &p_weights = Vector<float>()) override { return 0; }
- void free_polygon(PolygonID p_polygon) override {}
-
- void canvas_render_items(RID p_to_render_target, Item *p_item_list, const Color &p_modulate, Light *p_light_list, Light *p_directional_list, const Transform2D &p_canvas_transform, RS::CanvasItemTextureFilter p_default_filter, RS::CanvasItemTextureRepeat p_default_repeat, bool p_snap_2d_vertices_to_pixel, bool &r_sdf_used) override {}
- void canvas_debug_viewport_shadows(Light *p_lights_with_shadow) override {}
-
- RID light_create() override { return RID(); }
- void light_set_texture(RID p_rid, RID p_texture) override {}
- void light_set_use_shadow(RID p_rid, bool p_enable) override {}
- void light_update_shadow(RID p_rid, int p_shadow_index, const Transform2D &p_light_xform, int p_light_mask, float p_near, float p_far, LightOccluderInstance *p_occluders) override {}
- void light_update_directional_shadow(RID p_rid, int p_shadow_index, const Transform2D &p_light_xform, int p_light_mask, float p_cull_distance, const Rect2 &p_clip_rect, LightOccluderInstance *p_occluders) override {}
-
- void render_sdf(RID p_render_target, LightOccluderInstance *p_occluders) override {}
- RID occluder_polygon_create() override { return RID(); }
- void occluder_polygon_set_shape(RID p_occluder, const Vector<Vector2> &p_points, bool p_closed) override {}
- void occluder_polygon_set_cull_mode(RID p_occluder, RS::CanvasOccluderPolygonCullMode p_mode) override {}
- void set_shadow_texture_size(int p_size) override {}
-
- bool free(RID p_rid) override { return true; }
- void update() override {}
-
- RasterizerCanvasDummy() {}
- ~RasterizerCanvasDummy() {}
-};
-
-class RasterizerDummy : public RendererCompositor {
-private:
- uint64_t frame = 1;
- double delta = 0;
-
-protected:
- RasterizerCanvasDummy canvas;
- RasterizerStorageDummy storage;
- RasterizerSceneDummy scene;
-
-public:
- RendererStorage *get_storage() override { return &storage; }
- RendererCanvasRender *get_canvas() override { return &canvas; }
- RendererSceneRender *get_scene() override { return &scene; }
-
- void set_boot_image(const Ref<Image> &p_image, const Color &p_color, bool p_scale, bool p_use_filter = true) override {}
-
- void initialize() override {}
- void begin_frame(double frame_step) override {
- frame++;
- delta = frame_step;
- }
-
- void prepare_for_blitting_render_targets() override {}
- void blit_render_targets_to_screen(int p_screen, const BlitToScreen *p_render_targets, int p_amount) override {}
-
- void end_frame(bool p_swap_buffers) override {
- if (p_swap_buffers) {
- DisplayServer::get_singleton()->swap_buffers();
- }
- }
-
- void finalize() override {}
-
- static RendererCompositor *_create_current() {
- return memnew(RasterizerDummy);
- }
-
- static void make_current() {
- _create_func = _create_current;
- }
-
- bool is_low_end() const override { return true; }
- uint64_t get_frame_number() const override { return frame; }
- double get_frame_delta_time() const override { return delta; }
-
- RasterizerDummy() {}
- ~RasterizerDummy() {}
-};
-
-#endif // RASTERIZER_DUMMY_H
diff --git a/servers/rendering/renderer_canvas_cull.cpp b/servers/rendering/renderer_canvas_cull.cpp
index 591023c820..84ab19880c 100644
--- a/servers/rendering/renderer_canvas_cull.cpp
+++ b/servers/rendering/renderer_canvas_cull.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -34,6 +34,7 @@
#include "renderer_viewport.h"
#include "rendering_server_default.h"
#include "rendering_server_globals.h"
+#include "servers/rendering/storage/texture_storage.h"
static const int z_range = RS::CANVAS_ITEM_Z_MAX - RS::CANVAS_ITEM_Z_MIN + 1;
@@ -66,7 +67,7 @@ void RendererCanvasCull::_render_canvas_item_tree(RID p_to_render_target, Canvas
}
}
- RENDER_TIMESTAMP("Render Canvas Items");
+ RENDER_TIMESTAMP("Render CanvasItems");
bool sdf_flag;
RSG::canvas_render->canvas_render_items(p_to_render_target, list, p_modulate, p_lights, p_directional_lights, p_transform, p_default_filter, p_default_repeat, p_snap_2d_vertices_to_pixel, sdf_flag);
@@ -83,7 +84,7 @@ void _collect_ysort_children(RendererCanvasCull::Item *p_canvas_item, Transform2
if (r_items) {
r_items[r_index] = child_items[i];
child_items[i]->ysort_xform = p_transform;
- child_items[i]->ysort_pos = p_transform.xform(child_items[i]->xform.elements[2]);
+ child_items[i]->ysort_pos = p_transform.xform(child_items[i]->xform.columns[2]);
child_items[i]->material_owner = child_items[i]->use_parent_material ? p_material_owner : nullptr;
child_items[i]->ysort_index = r_index;
}
@@ -235,7 +236,7 @@ void RendererCanvasCull::_cull_canvas_item(Item *p_canvas_item, const Transform2
Transform2D xform = ci->xform;
if (snapping_2d_transforms_to_pixel) {
- xform.elements[2] = xform.elements[2].floor();
+ xform.columns[2] = xform.columns[2].floor();
}
xform = p_transform * xform;
@@ -261,6 +262,10 @@ void RendererCanvasCull::_cull_canvas_item(Item *p_canvas_item, const Transform2
if (ci->clip) {
if (p_canvas_clip != nullptr) {
ci->final_clip_rect = p_canvas_clip->final_clip_rect.intersection(global_rect);
+ if (ci->final_clip_rect == Rect2()) {
+ // Clip rects do not intersect, so don't draw this item.
+ return;
+ }
} else {
ci->final_clip_rect = global_rect;
}
@@ -334,7 +339,7 @@ void RendererCanvasCull::_cull_canvas_item(Item *p_canvas_item, const Transform2
}
void RendererCanvasCull::render_canvas(RID p_render_target, Canvas *p_canvas, const Transform2D &p_transform, RendererCanvasRender::Light *p_lights, RendererCanvasRender::Light *p_directional_lights, const Rect2 &p_clip_rect, RenderingServer::CanvasItemTextureFilter p_default_filter, RenderingServer::CanvasItemTextureRepeat p_default_repeat, bool p_snap_2d_transforms_to_pixel, bool p_snap_2d_vertices_to_pixel) {
- RENDER_TIMESTAMP(">Render Canvas");
+ RENDER_TIMESTAMP("> Render Canvas");
sdf_used = false;
snapping_2d_transforms_to_pixel = p_snap_2d_transforms_to_pixel;
@@ -380,7 +385,7 @@ void RendererCanvasCull::render_canvas(RID p_render_target, Canvas *p_canvas, co
}
}
- RENDER_TIMESTAMP("<End Render Canvas");
+ RENDER_TIMESTAMP("< Render Canvas");
}
bool RendererCanvasCull::was_sdf_used() {
@@ -547,27 +552,188 @@ void RendererCanvasCull::canvas_item_set_update_when_visible(RID p_item, bool p_
canvas_item->update_when_visible = p_update;
}
-void RendererCanvasCull::canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width) {
+void RendererCanvasCull::canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width, bool p_antialiased) {
Item *canvas_item = canvas_item_owner.get_or_null(p_item);
ERR_FAIL_COND(!canvas_item);
Item::CommandPrimitive *line = canvas_item->alloc_command<Item::CommandPrimitive>();
ERR_FAIL_COND(!line);
+
+ Vector2 diff = (p_from - p_to);
+ Vector2 dir = diff.orthogonal().normalized();
+ Vector2 t = dir * p_width * 0.5;
+
+ Vector2 begin_left;
+ Vector2 begin_right;
+ Vector2 end_left;
+ Vector2 end_right;
+
if (p_width > 1.001) {
- Vector2 t = (p_from - p_to).orthogonal().normalized() * p_width * 0.5;
- line->points[0] = p_from + t;
- line->points[1] = p_from - t;
- line->points[2] = p_to - t;
- line->points[3] = p_to + t;
+ begin_left = p_from + t;
+ begin_right = p_from - t;
+ end_left = p_to + t;
+ end_right = p_to - t;
+
+ line->points[0] = begin_left;
+ line->points[1] = begin_right;
+ line->points[2] = end_right;
+ line->points[3] = end_left;
line->point_count = 4;
} else {
- line->point_count = 2;
+ begin_left = p_from;
+ begin_right = p_from;
+ end_left = p_to;
+ end_right = p_to;
+
line->points[0] = p_from;
line->points[1] = p_to;
+ line->point_count = 2;
}
for (uint32_t i = 0; i < line->point_count; i++) {
line->colors[i] = p_color;
}
+
+ if (p_antialiased) {
+ float border_size = 2.0;
+ if (p_width < border_size) {
+ border_size = p_width;
+ }
+ Vector2 dir2 = diff.normalized();
+
+ Vector2 border = dir * border_size;
+ Vector2 border2 = dir2 * border_size;
+
+ Color transparent = Color(p_color.r, p_color.g, p_color.b, 0.0);
+
+ {
+ Item::CommandPrimitive *left_border = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!left_border);
+
+ left_border->points[0] = begin_left;
+ left_border->points[1] = begin_left + border;
+ left_border->points[2] = end_left + border;
+ left_border->points[3] = end_left;
+
+ left_border->colors[0] = p_color;
+ left_border->colors[1] = transparent;
+ left_border->colors[2] = transparent;
+ left_border->colors[3] = p_color;
+
+ left_border->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *right_border = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!right_border);
+
+ right_border->points[0] = begin_right;
+ right_border->points[1] = begin_right - border;
+ right_border->points[2] = end_right - border;
+ right_border->points[3] = end_right;
+
+ right_border->colors[0] = p_color;
+ right_border->colors[1] = transparent;
+ right_border->colors[2] = transparent;
+ right_border->colors[3] = p_color;
+
+ right_border->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *top_border = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!top_border);
+
+ top_border->points[0] = begin_left;
+ top_border->points[1] = begin_left + border2;
+ top_border->points[2] = begin_right + border2;
+ top_border->points[3] = begin_right;
+
+ top_border->colors[0] = p_color;
+ top_border->colors[1] = transparent;
+ top_border->colors[2] = transparent;
+ top_border->colors[3] = p_color;
+
+ top_border->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *bottom_border = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!bottom_border);
+
+ bottom_border->points[0] = end_left;
+ bottom_border->points[1] = end_left - border2;
+ bottom_border->points[2] = end_right - border2;
+ bottom_border->points[3] = end_right;
+
+ bottom_border->colors[0] = p_color;
+ bottom_border->colors[1] = transparent;
+ bottom_border->colors[2] = transparent;
+ bottom_border->colors[3] = p_color;
+
+ bottom_border->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *top_left_corner = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!top_left_corner);
+
+ top_left_corner->points[0] = begin_left;
+ top_left_corner->points[1] = begin_left + border2;
+ top_left_corner->points[2] = begin_left + border + border2;
+ top_left_corner->points[3] = begin_left + border;
+
+ top_left_corner->colors[0] = p_color;
+ top_left_corner->colors[1] = transparent;
+ top_left_corner->colors[2] = transparent;
+ top_left_corner->colors[3] = transparent;
+
+ top_left_corner->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *top_right_corner = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!top_right_corner);
+
+ top_right_corner->points[0] = begin_right;
+ top_right_corner->points[1] = begin_right + border2;
+ top_right_corner->points[2] = begin_right - border + border2;
+ top_right_corner->points[3] = begin_right - border;
+
+ top_right_corner->colors[0] = p_color;
+ top_right_corner->colors[1] = transparent;
+ top_right_corner->colors[2] = transparent;
+ top_right_corner->colors[3] = transparent;
+
+ top_right_corner->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *bottom_left_corner = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!bottom_left_corner);
+
+ bottom_left_corner->points[0] = end_left;
+ bottom_left_corner->points[1] = end_left - border2;
+ bottom_left_corner->points[2] = end_left + border - border2;
+ bottom_left_corner->points[3] = end_left + border;
+
+ bottom_left_corner->colors[0] = p_color;
+ bottom_left_corner->colors[1] = transparent;
+ bottom_left_corner->colors[2] = transparent;
+ bottom_left_corner->colors[3] = transparent;
+
+ bottom_left_corner->point_count = 4;
+ }
+ {
+ Item::CommandPrimitive *bottom_right_corner = canvas_item->alloc_command<Item::CommandPrimitive>();
+ ERR_FAIL_COND(!bottom_right_corner);
+
+ bottom_right_corner->points[0] = end_right;
+ bottom_right_corner->points[1] = end_right - border2;
+ bottom_right_corner->points[2] = end_right - border - border2;
+ bottom_right_corner->points[3] = end_right - border;
+
+ bottom_right_corner->colors[0] = p_color;
+ bottom_right_corner->colors[1] = transparent;
+ bottom_right_corner->colors[2] = transparent;
+ bottom_right_corner->colors[3] = transparent;
+
+ bottom_right_corner->point_count = 4;
+ }
+ }
}
void RendererCanvasCull::canvas_item_add_polyline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width, bool p_antialiased) {
@@ -597,42 +763,119 @@ void RendererCanvasCull::canvas_item_add_polyline(RID p_item, const Vector<Point
Color *colors_ptr = colors.ptrw();
if (p_antialiased) {
+ float border_size = 2.0;
+ if (p_width < border_size) {
+ border_size = p_width;
+ }
Color color2 = Color(1, 1, 1, 0);
- PackedColorArray colors_top;
- PackedVector2Array points_top;
+ PackedColorArray colors_begin;
+ PackedVector2Array points_begin;
+
+ colors_begin.resize(4);
+ points_begin.resize(4);
+
+ PackedColorArray colors_begin_left_corner;
+ PackedVector2Array points_begin_left_corner;
+
+ colors_begin_left_corner.resize(4);
+ points_begin_left_corner.resize(4);
+
+ PackedColorArray colors_begin_right_corner;
+ PackedVector2Array points_begin_right_corner;
+
+ colors_begin_right_corner.resize(4);
+ points_begin_right_corner.resize(4);
+
+ PackedColorArray colors_end;
+ PackedVector2Array points_end;
+
+ colors_end.resize(4);
+ points_end.resize(4);
+
+ PackedColorArray colors_end_left_corner;
+ PackedVector2Array points_end_left_corner;
+
+ colors_end_left_corner.resize(4);
+ points_end_left_corner.resize(4);
+
+ PackedColorArray colors_end_right_corner;
+ PackedVector2Array points_end_right_corner;
+
+ colors_end_right_corner.resize(4);
+ points_end_right_corner.resize(4);
+
+ PackedColorArray colors_left;
+ PackedVector2Array points_left;
+
+ colors_left.resize(pc2);
+ points_left.resize(pc2);
+
+ PackedColorArray colors_right;
+ PackedVector2Array points_right;
+
+ colors_right.resize(pc2);
+ points_right.resize(pc2);
- colors_top.resize(pc2);
- points_top.resize(pc2);
+ Item::CommandPolygon *pline_begin = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_begin);
- PackedColorArray colors_bottom;
- PackedVector2Array points_bottom;
+ Item::CommandPolygon *pline_begin_left_corner = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_begin_left_corner);
- colors_bottom.resize(pc2);
- points_bottom.resize(pc2);
+ Item::CommandPolygon *pline_begin_right_corner = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_begin_right_corner);
- Item::CommandPolygon *pline_top = canvas_item->alloc_command<Item::CommandPolygon>();
- ERR_FAIL_COND(!pline_top);
+ Item::CommandPolygon *pline_end = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_end);
- Item::CommandPolygon *pline_bottom = canvas_item->alloc_command<Item::CommandPolygon>();
- ERR_FAIL_COND(!pline_bottom);
+ Item::CommandPolygon *pline_end_left_corner = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_end_left_corner);
- //make three trianglestrip's for drawing the antialiased line...
+ Item::CommandPolygon *pline_end_right_corner = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_end_right_corner);
- Vector2 *points_top_ptr = points_top.ptrw();
- Vector2 *points_bottom_ptr = points_bottom.ptrw();
+ Item::CommandPolygon *pline_left = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_left);
- Color *colors_top_ptr = colors_top.ptrw();
- Color *colors_bottom_ptr = colors_bottom.ptrw();
+ Item::CommandPolygon *pline_right = canvas_item->alloc_command<Item::CommandPolygon>();
+ ERR_FAIL_COND(!pline_right);
+
+ // Makes nine triangle strips for drawing the antialiased line.
+
+ Vector2 *points_begin_ptr = points_begin.ptrw();
+ Vector2 *points_begin_left_corner_ptr = points_begin_left_corner.ptrw();
+ Vector2 *points_begin_right_corner_ptr = points_begin_right_corner.ptrw();
+ Vector2 *points_end_ptr = points_end.ptrw();
+ Vector2 *points_end_left_corner_ptr = points_end_left_corner.ptrw();
+ Vector2 *points_end_right_corner_ptr = points_end_right_corner.ptrw();
+ Vector2 *points_left_ptr = points_left.ptrw();
+ Vector2 *points_right_ptr = points_right.ptrw();
+
+ Color *colors_begin_ptr = colors_begin.ptrw();
+ Color *colors_begin_left_corner_ptr = colors_begin_left_corner.ptrw();
+ Color *colors_begin_right_corner_ptr = colors_begin_right_corner.ptrw();
+ Color *colors_end_ptr = colors_end.ptrw();
+ Color *colors_end_left_corner_ptr = colors_end_left_corner.ptrw();
+ Color *colors_end_right_corner_ptr = colors_end_right_corner.ptrw();
+ Color *colors_left_ptr = colors_left.ptrw();
+ Color *colors_right_ptr = colors_right.ptrw();
for (int i = 0, j = 0; i < pc; i++, j += 2) {
+ bool is_begin = i == 0;
+ bool is_end = i == pc - 1;
+
Vector2 t;
- if (i == pc - 1) {
+ Vector2 end_border;
+ Vector2 begin_border;
+ if (is_end) {
t = prev_t;
+ end_border = (p_points[i] - p_points[i - 1]).normalized() * border_size;
} else {
t = (p_points[i + 1] - p_points[i]).normalized().orthogonal();
- if (i == 0) {
+ if (is_begin) {
prev_t = t;
+ begin_border = (p_points[i] - p_points[i + 1]).normalized() * border_size;
}
}
@@ -640,17 +883,17 @@ void RendererCanvasCull::canvas_item_add_polyline(RID p_item, const Vector<Point
Vector2 dir = (t + prev_t).normalized();
Vector2 tangent = dir * p_width * 0.5;
- Vector2 border = dir * 2.0;
+ Vector2 border = dir * border_size;
Vector2 pos = p_points[i];
points_ptr[j] = pos + tangent;
points_ptr[j2] = pos - tangent;
- points_top_ptr[j] = pos + tangent + border;
- points_top_ptr[j2] = pos + tangent;
+ points_left_ptr[j] = pos + tangent + border;
+ points_left_ptr[j2] = pos + tangent;
- points_bottom_ptr[j] = pos - tangent;
- points_bottom_ptr[j2] = pos - tangent - border;
+ points_right_ptr[j] = pos - tangent;
+ points_right_ptr[j2] = pos - tangent - border;
if (i < p_colors.size()) {
color = p_colors[i];
@@ -660,22 +903,104 @@ void RendererCanvasCull::canvas_item_add_polyline(RID p_item, const Vector<Point
colors_ptr[j] = color;
colors_ptr[j2] = color;
- colors_top_ptr[j] = color2;
- colors_top_ptr[j2] = color;
+ colors_left_ptr[j] = color2;
+ colors_left_ptr[j2] = color;
+
+ colors_right_ptr[j] = color;
+ colors_right_ptr[j2] = color2;
+
+ if (is_begin) {
+ points_begin_ptr[0] = pos + tangent + begin_border;
+ points_begin_ptr[1] = pos - tangent + begin_border;
+ points_begin_ptr[2] = pos + tangent;
+ points_begin_ptr[3] = pos - tangent;
+
+ colors_begin_ptr[0] = color2;
+ colors_begin_ptr[1] = color2;
+ colors_begin_ptr[2] = color;
+ colors_begin_ptr[3] = color;
+
+ points_begin_left_corner_ptr[0] = pos - tangent - border;
+ points_begin_left_corner_ptr[1] = pos - tangent + begin_border - border;
+ points_begin_left_corner_ptr[2] = pos - tangent;
+ points_begin_left_corner_ptr[3] = pos - tangent + begin_border;
+
+ colors_begin_left_corner_ptr[0] = color2;
+ colors_begin_left_corner_ptr[1] = color2;
+ colors_begin_left_corner_ptr[2] = color;
+ colors_begin_left_corner_ptr[3] = color2;
+
+ points_begin_right_corner_ptr[0] = pos + tangent + begin_border;
+ points_begin_right_corner_ptr[1] = pos + tangent + begin_border + border;
+ points_begin_right_corner_ptr[2] = pos + tangent;
+ points_begin_right_corner_ptr[3] = pos + tangent + border;
+
+ colors_begin_right_corner_ptr[0] = color2;
+ colors_begin_right_corner_ptr[1] = color2;
+ colors_begin_right_corner_ptr[2] = color;
+ colors_begin_right_corner_ptr[3] = color2;
+ }
- colors_bottom_ptr[j] = color;
- colors_bottom_ptr[j2] = color2;
+ if (is_end) {
+ points_end_ptr[0] = pos + tangent + end_border;
+ points_end_ptr[1] = pos - tangent + end_border;
+ points_end_ptr[2] = pos + tangent;
+ points_end_ptr[3] = pos - tangent;
+
+ colors_end_ptr[0] = color2;
+ colors_end_ptr[1] = color2;
+ colors_end_ptr[2] = color;
+ colors_end_ptr[3] = color;
+
+ points_end_left_corner_ptr[0] = pos - tangent - border;
+ points_end_left_corner_ptr[1] = pos - tangent + end_border - border;
+ points_end_left_corner_ptr[2] = pos - tangent;
+ points_end_left_corner_ptr[3] = pos - tangent + end_border;
+
+ colors_end_left_corner_ptr[0] = color2;
+ colors_end_left_corner_ptr[1] = color2;
+ colors_end_left_corner_ptr[2] = color;
+ colors_end_left_corner_ptr[3] = color2;
+
+ points_end_right_corner_ptr[0] = pos + tangent + end_border;
+ points_end_right_corner_ptr[1] = pos + tangent + end_border + border;
+ points_end_right_corner_ptr[2] = pos + tangent;
+ points_end_right_corner_ptr[3] = pos + tangent + border;
+
+ colors_end_right_corner_ptr[0] = color2;
+ colors_end_right_corner_ptr[1] = color2;
+ colors_end_right_corner_ptr[2] = color;
+ colors_end_right_corner_ptr[3] = color2;
+ }
prev_t = t;
}
- pline_top->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
- pline_top->polygon.create(indices, points_top, colors_top);
+ pline_begin->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_begin->polygon.create(indices, points_begin, colors_begin);
+
+ pline_begin_left_corner->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_begin_left_corner->polygon.create(indices, points_begin_left_corner, colors_begin_left_corner);
+
+ pline_begin_right_corner->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_begin_right_corner->polygon.create(indices, points_begin_right_corner, colors_begin_right_corner);
- pline_bottom->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
- pline_bottom->polygon.create(indices, points_bottom, colors_bottom);
+ pline_end->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_end->polygon.create(indices, points_end, colors_end);
+
+ pline_end_left_corner->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_end_left_corner->polygon.create(indices, points_end_left_corner, colors_end_left_corner);
+
+ pline_end_right_corner->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_end_right_corner->polygon.create(indices, points_end_right_corner, colors_end_right_corner);
+
+ pline_left->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_left->polygon.create(indices, points_left, colors_left);
+
+ pline_right->primitive = RS::PRIMITIVE_TRIANGLE_STRIP;
+ pline_right->polygon.create(indices, points_right, colors_right);
} else {
- //make a trianglestrip for drawing the line...
+ // Makes a single triangle strip for drawing the line.
for (int i = 0, j = 0; i < pc; i++, j += 2) {
Vector2 t;
@@ -992,8 +1317,8 @@ void RendererCanvasCull::canvas_item_add_mesh(RID p_item, const RID &p_mesh, con
ERR_FAIL_COND(!m);
m->mesh = p_mesh;
if (canvas_item->skeleton.is_valid()) {
- m->mesh_instance = RSG::storage->mesh_instance_create(p_mesh);
- RSG::storage->mesh_instance_set_skeleton(m->mesh_instance, canvas_item->skeleton);
+ m->mesh_instance = RSG::mesh_storage->mesh_instance_create(p_mesh);
+ RSG::mesh_storage->mesh_instance_set_skeleton(m->mesh_instance, canvas_item->skeleton);
}
m->texture = p_texture;
@@ -1013,7 +1338,7 @@ void RendererCanvasCull::canvas_item_add_particles(RID p_item, RID p_particles,
part->texture = p_texture;
//take the chance and request processing for them, at least once until they become visible again
- RSG::storage->particles_request_process(p_particles);
+ RSG::particles_storage->particles_request_process(p_particles);
}
void RendererCanvasCull::canvas_item_add_multimesh(RID p_item, RID p_mesh, RID p_texture) {
@@ -1088,12 +1413,12 @@ void RendererCanvasCull::canvas_item_attach_skeleton(RID p_item, RID p_skeleton)
Item::CommandMesh *cm = static_cast<Item::CommandMesh *>(c);
if (canvas_item->skeleton.is_valid()) {
if (cm->mesh_instance.is_null()) {
- cm->mesh_instance = RSG::storage->mesh_instance_create(cm->mesh);
+ cm->mesh_instance = RSG::mesh_storage->mesh_instance_create(cm->mesh);
}
- RSG::storage->mesh_instance_set_skeleton(cm->mesh_instance, canvas_item->skeleton);
+ RSG::mesh_storage->mesh_instance_set_skeleton(cm->mesh_instance, canvas_item->skeleton);
} else {
if (cm->mesh_instance.is_valid()) {
- RSG::storage->free(cm->mesh_instance);
+ RSG::mesh_storage->mesh_instance_free(cm->mesh_instance);
cm->mesh_instance = RID();
}
}
@@ -1436,7 +1761,7 @@ void RendererCanvasCull::canvas_light_occluder_set_polygon(RID p_occluder, RID p
ERR_FAIL_COND(!occluder);
if (occluder->polygon.is_valid()) {
- LightOccluderPolygon *occluder_poly = canvas_light_occluder_polygon_owner.get_or_null(p_polygon);
+ LightOccluderPolygon *occluder_poly = canvas_light_occluder_polygon_owner.get_or_null(occluder->polygon);
if (occluder_poly) {
occluder_poly->owners.erase(occluder);
}
@@ -1526,26 +1851,26 @@ void RendererCanvasCull::canvas_set_shadow_texture_size(int p_size) {
}
RID RendererCanvasCull::canvas_texture_allocate() {
- return RSG::storage->canvas_texture_allocate();
+ return RSG::texture_storage->canvas_texture_allocate();
}
void RendererCanvasCull::canvas_texture_initialize(RID p_rid) {
- RSG::storage->canvas_texture_initialize(p_rid);
+ RSG::texture_storage->canvas_texture_initialize(p_rid);
}
void RendererCanvasCull::canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) {
- RSG::storage->canvas_texture_set_channel(p_canvas_texture, p_channel, p_texture);
+ RSG::texture_storage->canvas_texture_set_channel(p_canvas_texture, p_channel, p_texture);
}
void RendererCanvasCull::canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) {
- RSG::storage->canvas_texture_set_shading_parameters(p_canvas_texture, p_base_color, p_shininess);
+ RSG::texture_storage->canvas_texture_set_shading_parameters(p_canvas_texture, p_base_color, p_shininess);
}
void RendererCanvasCull::canvas_texture_set_texture_filter(RID p_canvas_texture, RS::CanvasItemTextureFilter p_filter) {
- RSG::storage->canvas_texture_set_texture_filter(p_canvas_texture, p_filter);
+ RSG::texture_storage->canvas_texture_set_texture_filter(p_canvas_texture, p_filter);
}
void RendererCanvasCull::canvas_texture_set_texture_repeat(RID p_canvas_texture, RS::CanvasItemTextureRepeat p_repeat) {
- RSG::storage->canvas_texture_set_texture_repeat(p_canvas_texture, p_repeat);
+ RSG::texture_storage->canvas_texture_set_texture_repeat(p_canvas_texture, p_repeat);
}
void RendererCanvasCull::canvas_item_set_default_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) {
@@ -1659,6 +1984,11 @@ bool RendererCanvasCull::free(RID p_rid) {
}
*/
+ if (canvas_item->canvas_group != nullptr) {
+ memdelete(canvas_item->canvas_group);
+ canvas_item->canvas_group = nullptr;
+ }
+
canvas_item_owner.free(p_rid);
} else if (canvas_light_owner.owns(p_rid)) {
diff --git a/servers/rendering/renderer_canvas_cull.h b/servers/rendering/renderer_canvas_cull.h
index bdd61123df..637245502d 100644
--- a/servers/rendering/renderer_canvas_cull.h
+++ b/servers/rendering/renderer_canvas_cull.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -124,7 +124,7 @@ public:
Set<RID> viewports;
struct ChildItem {
Point2 mirror;
- Item *item;
+ Item *item = nullptr;
bool operator<(const ChildItem &p_item) const {
return item->index < p_item.item->index;
}
@@ -215,7 +215,7 @@ public:
void canvas_item_set_update_when_visible(RID p_item, bool p_update);
- void canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width = 1.0);
+ void canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width = 1.0, bool p_antialiased = false);
void canvas_item_add_polyline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0, bool p_antialiased = false);
void canvas_item_add_multiline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0);
void canvas_item_add_rect(RID p_item, const Rect2 &p_rect, const Color &p_color);
diff --git a/servers/rendering/renderer_canvas_render.cpp b/servers/rendering/renderer_canvas_render.cpp
index 1945435586..3b68cd74fd 100644
--- a/servers/rendering/renderer_canvas_render.cpp
+++ b/servers/rendering/renderer_canvas_render.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_canvas_render.h b/servers/rendering/renderer_canvas_render.h
index 04ddae4089..59cc3b7a92 100644
--- a/servers/rendering/renderer_canvas_render.h
+++ b/servers/rendering/renderer_canvas_render.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -31,6 +31,8 @@
#ifndef RENDERINGSERVERCANVASRENDER_H
#define RENDERINGSERVERCANVASRENDER_H
+#include "servers/rendering/renderer_rd/storage_rd/mesh_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
#include "servers/rendering/renderer_storage.h"
class RendererCanvasRender {
@@ -82,10 +84,10 @@ public:
Transform2D light_shader_xform;
//Vector2 light_shader_pos;
- Light *shadows_next_ptr;
- Light *filter_next_ptr;
- Light *next_ptr;
- Light *directional_next_ptr;
+ Light *shadows_next_ptr = nullptr;
+ Light *filter_next_ptr = nullptr;
+ Light *next_ptr = nullptr;
+ Light *directional_next_ptr = nullptr;
RID light_internal;
uint64_t version;
@@ -167,7 +169,7 @@ public:
MAX_SIZE = 4096
};
uint32_t usage;
- uint8_t *memory;
+ uint8_t *memory = nullptr;
};
struct Command {
@@ -184,7 +186,7 @@ public:
TYPE_ANIMATION_SLICE,
};
- Command *next;
+ Command *next = nullptr;
Type type;
virtual ~Command() {}
};
@@ -304,8 +306,8 @@ public:
};
struct ViewportRender {
- RenderingServer *owner;
- void *udata;
+ RenderingServer *owner = nullptr;
+ void *udata = nullptr;
Rect2 rect;
};
@@ -333,22 +335,22 @@ public:
RID material;
RID skeleton;
- Item *next;
+ Item *next = nullptr;
struct CopyBackBuffer {
Rect2 rect;
Rect2 screen_rect;
bool full;
};
- CopyBackBuffer *copy_back_buffer;
+ CopyBackBuffer *copy_back_buffer = nullptr;
Color final_modulate;
Transform2D final_transform;
Rect2 final_clip_rect;
- Item *final_clip_owner;
- Item *material_owner;
- Item *canvas_group_owner;
- ViewportRender *vp_render;
+ Item *final_clip_owner = nullptr;
+ Item *material_owner = nullptr;
+ Item *canvas_group_owner = nullptr;
+ ViewportRender *vp_render = nullptr;
bool distance_field;
bool light_masked;
@@ -403,14 +405,14 @@ public:
} break;
case Item::Command::TYPE_MESH: {
const Item::CommandMesh *mesh = static_cast<const Item::CommandMesh *>(c);
- AABB aabb = RendererStorage::base_singleton->mesh_get_aabb(mesh->mesh, RID());
+ AABB aabb = RendererRD::MeshStorage::get_singleton()->mesh_get_aabb(mesh->mesh, RID());
r = Rect2(aabb.position.x, aabb.position.y, aabb.size.x, aabb.size.y);
} break;
case Item::Command::TYPE_MULTIMESH: {
const Item::CommandMultiMesh *multimesh = static_cast<const Item::CommandMultiMesh *>(c);
- AABB aabb = RendererStorage::base_singleton->multimesh_get_aabb(multimesh->multimesh);
+ AABB aabb = RendererRD::MeshStorage::get_singleton()->multimesh_get_aabb(multimesh->multimesh);
r = Rect2(aabb.position.x, aabb.position.y, aabb.size.x, aabb.size.y);
@@ -418,7 +420,7 @@ public:
case Item::Command::TYPE_PARTICLES: {
const Item::CommandParticles *particles_cmd = static_cast<const Item::CommandParticles *>(c);
if (particles_cmd->particles.is_valid()) {
- AABB aabb = RendererStorage::base_singleton->particles_get_aabb(particles_cmd->particles);
+ AABB aabb = RendererRD::ParticlesStorage::get_singleton()->particles_get_aabb(particles_cmd->particles);
r = Rect2(aabb.position.x, aabb.position.y, aabb.size.x, aabb.size.y);
}
@@ -452,14 +454,14 @@ public:
return rect;
}
- Command *commands;
- Command *last_command;
+ Command *commands = nullptr;
+ Command *last_command = nullptr;
Vector<CommandBlock> blocks;
uint32_t current_block;
template <class T>
T *alloc_command() {
- T *command;
+ T *command = nullptr;
if (commands == nullptr) {
// As the most common use case of canvas items is to
// use only one command, the first is done with it's
@@ -589,7 +591,7 @@ public:
bool sdf_collision;
RS::CanvasOccluderPolygonCullMode cull_cache;
- LightOccluderInstance *next;
+ LightOccluderInstance *next = nullptr;
LightOccluderInstance() {
enabled = true;
diff --git a/servers/rendering/renderer_compositor.cpp b/servers/rendering/renderer_compositor.cpp
index 80c4625261..fa4d9c8b31 100644
--- a/servers/rendering/renderer_compositor.cpp
+++ b/servers/rendering/renderer_compositor.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -45,7 +45,7 @@ bool RendererCompositor::is_xr_enabled() const {
}
RendererCompositor::RendererCompositor() {
- xr_enabled = GLOBAL_GET("rendering/xr/enabled");
+ xr_enabled = GLOBAL_GET("xr/shaders/enabled");
}
RendererCanvasRender *RendererCanvasRender::singleton = nullptr;
diff --git a/servers/rendering/renderer_compositor.h b/servers/rendering/renderer_compositor.h
index 4526354d17..9466148a31 100644
--- a/servers/rendering/renderer_compositor.h
+++ b/servers/rendering/renderer_compositor.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -31,13 +31,16 @@
#ifndef RENDERING_SERVER_COMPOSITOR_H
#define RENDERING_SERVER_COMPOSITOR_H
-#include "core/math/camera_matrix.h"
-#include "core/templates/pair.h"
-#include "core/templates/self_list.h"
#include "servers/rendering/renderer_canvas_render.h"
#include "servers/rendering/renderer_scene.h"
#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering/storage/light_storage.h"
+#include "servers/rendering/storage/material_storage.h"
+#include "servers/rendering/storage/mesh_storage.h"
+#include "servers/rendering/storage/particles_storage.h"
+#include "servers/rendering/storage/texture_storage.h"
#include "servers/rendering_server.h"
+
class RendererSceneRender;
struct BlitToScreen {
RID render_target;
@@ -72,6 +75,11 @@ protected:
public:
static RendererCompositor *create();
+ virtual RendererLightStorage *get_light_storage() = 0;
+ virtual RendererMaterialStorage *get_material_storage() = 0;
+ virtual RendererMeshStorage *get_mesh_storage() = 0;
+ virtual RendererParticlesStorage *get_particles_storage() = 0;
+ virtual RendererTextureStorage *get_texture_storage() = 0;
virtual RendererStorage *get_storage() = 0;
virtual RendererCanvasRender *get_canvas() = 0;
virtual RendererSceneRender *get_scene() = 0;
diff --git a/servers/rendering/renderer_rd/SCsub b/servers/rendering/renderer_rd/SCsub
index 64e613ab91..774a6b7951 100644
--- a/servers/rendering/renderer_rd/SCsub
+++ b/servers/rendering/renderer_rd/SCsub
@@ -4,6 +4,8 @@ Import("env")
env.add_source_files(env.servers_sources, "*.cpp")
+SConscript("effects/SCsub")
SConscript("forward_clustered/SCsub")
SConscript("forward_mobile/SCsub")
SConscript("shaders/SCsub")
+SConscript("storage_rd/SCsub")
diff --git a/servers/rendering/renderer_rd/cluster_builder_rd.cpp b/servers/rendering/renderer_rd/cluster_builder_rd.cpp
index 4a98cf0831..0b36fe3964 100644
--- a/servers/rendering/renderer_rd/cluster_builder_rd.cpp
+++ b/servers/rendering/renderer_rd/cluster_builder_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -269,7 +269,7 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
cluster_render_buffer = RD::get_singleton()->storage_buffer_create(cluster_render_buffer_size);
cluster_buffer = RD::get_singleton()->storage_buffer_create(cluster_buffer_size);
- render_elements = (RenderElementData *)memalloc(sizeof(RenderElementData *) * render_element_max);
+ render_elements = static_cast<RenderElementData *>(memalloc(sizeof(RenderElementData *) * render_element_max));
render_element_count = 0;
element_buffer = RD::get_singleton()->storage_buffer_create(sizeof(RenderElementData) * render_element_max);
@@ -287,21 +287,21 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 1;
- u.ids.push_back(state_uniform);
+ u.append_id(state_uniform);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(element_buffer);
+ u.append_id(element_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 3;
- u.ids.push_back(cluster_render_buffer);
+ u.append_id(cluster_render_buffer);
uniforms.push_back(u);
}
@@ -314,14 +314,14 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(cluster_render_buffer);
+ u.append_id(cluster_render_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(cluster_buffer);
+ u.append_id(cluster_buffer);
uniforms.push_back(u);
}
@@ -329,7 +329,7 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 3;
- u.ids.push_back(element_buffer);
+ u.append_id(element_buffer);
uniforms.push_back(u);
}
@@ -342,14 +342,14 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(cluster_buffer);
+ u.append_id(cluster_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(p_color_buffer);
+ u.append_id(p_color_buffer);
uniforms.push_back(u);
}
@@ -357,14 +357,14 @@ void ClusterBuilderRD::setup(Size2i p_screen_size, uint32_t p_max_elements, RID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 3;
- u.ids.push_back(p_depth_buffer);
+ u.append_id(p_depth_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 4;
- u.ids.push_back(p_depth_buffer_sampler);
+ u.append_id(p_depth_buffer_sampler);
uniforms.push_back(u);
}
@@ -398,7 +398,7 @@ void ClusterBuilderRD::begin(const Transform3D &p_view_transform, const CameraMa
}
void ClusterBuilderRD::bake_cluster() {
- RENDER_TIMESTAMP(">Bake Cluster");
+ RENDER_TIMESTAMP("> Bake 3D Cluster");
RD::get_singleton()->draw_command_begin_label("Bake Light Cluster");
@@ -429,7 +429,7 @@ void ClusterBuilderRD::bake_cluster() {
RD::get_singleton()->buffer_update(element_buffer, 0, sizeof(RenderElementData) * render_element_count, render_elements, RD::BARRIER_MASK_RASTER | RD::BARRIER_MASK_COMPUTE);
- RENDER_TIMESTAMP("Render Elements");
+ RENDER_TIMESTAMP("Render 3D Cluster Elements");
//render elements
{
@@ -466,7 +466,7 @@ void ClusterBuilderRD::bake_cluster() {
RD::get_singleton()->draw_list_end(RD::BARRIER_MASK_COMPUTE);
}
//store elements
- RENDER_TIMESTAMP("Pack Elements");
+ RENDER_TIMESTAMP("Pack 3D Cluster Elements");
{
RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
@@ -492,7 +492,7 @@ void ClusterBuilderRD::bake_cluster() {
} else {
RD::get_singleton()->barrier(RD::BARRIER_MASK_TRANSFER, RD::BARRIER_MASK_RASTER | RD::BARRIER_MASK_COMPUTE);
}
- RENDER_TIMESTAMP("<Bake Cluster");
+ RENDER_TIMESTAMP("< Bake 3D Cluster");
RD::get_singleton()->draw_command_end_label();
}
diff --git a/servers/rendering/renderer_rd/cluster_builder_rd.h b/servers/rendering/renderer_rd/cluster_builder_rd.h
index feafd4c2db..e82193ea6a 100644
--- a/servers/rendering/renderer_rd/cluster_builder_rd.h
+++ b/servers/rendering/renderer_rd/cluster_builder_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -289,11 +289,11 @@ public:
e.touches_near = min_d < z_near;
} else {
//contains camera inside light
- Plane base_plane(-xform.basis.get_axis(Vector3::AXIS_Z), xform.origin);
+ Plane base_plane(-xform.basis.get_column(Vector3::AXIS_Z), xform.origin);
float dist = base_plane.distance_to(Vector3());
if (dist >= 0 && dist < radius) {
//inside, check angle
- float angle = Math::rad2deg(Math::acos((-xform.origin.normalized()).dot(-xform.basis.get_axis(Vector3::AXIS_Z))));
+ float angle = Math::rad2deg(Math::acos((-xform.origin.normalized()).dot(-xform.basis.get_column(Vector3::AXIS_Z))));
e.touches_near = angle < p_spot_aperture * 1.05; //overfit aperture a little due to cone overfit
} else {
e.touches_near = false;
@@ -331,9 +331,9 @@ public:
//extract scale and scale the matrix by it, makes things simpler
Vector3 scale = p_half_extents;
for (uint32_t i = 0; i < 3; i++) {
- float s = xform.basis.elements[i].length();
+ float s = xform.basis.rows[i].length();
scale[i] *= s;
- xform.basis.elements[i] /= s;
+ xform.basis.rows[i] /= s;
};
float box_depth = Math::abs(xform.basis.xform_inv(Vector3(0, 0, -1)).dot(scale));
diff --git a/servers/rendering/renderer_rd/effects/SCsub b/servers/rendering/renderer_rd/effects/SCsub
new file mode 100644
index 0000000000..86681f9c74
--- /dev/null
+++ b/servers/rendering/renderer_rd/effects/SCsub
@@ -0,0 +1,5 @@
+#!/usr/bin/env python
+
+Import("env")
+
+env.add_source_files(env.servers_sources, "*.cpp")
diff --git a/servers/rendering/renderer_rd/effects/tone_mapper.cpp b/servers/rendering/renderer_rd/effects/tone_mapper.cpp
new file mode 100644
index 0000000000..e5642116bb
--- /dev/null
+++ b/servers/rendering/renderer_rd/effects/tone_mapper.cpp
@@ -0,0 +1,280 @@
+/*************************************************************************/
+/* tone_mapper.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "tone_mapper.h"
+#include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/uniform_set_cache_rd.h"
+
+using namespace RendererRD;
+
+ToneMapper::ToneMapper() {
+ {
+ // Initialize tonemapper
+ Vector<String> tonemap_modes;
+ tonemap_modes.push_back("\n");
+ tonemap_modes.push_back("\n#define USE_GLOW_FILTER_BICUBIC\n");
+ tonemap_modes.push_back("\n#define USE_1D_LUT\n");
+ tonemap_modes.push_back("\n#define USE_GLOW_FILTER_BICUBIC\n#define USE_1D_LUT\n");
+ tonemap_modes.push_back("\n#define SUBPASS\n");
+ tonemap_modes.push_back("\n#define SUBPASS\n#define USE_1D_LUT\n");
+
+ // multiview versions of our shaders
+ tonemap_modes.push_back("\n#define MULTIVIEW\n");
+ tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_GLOW_FILTER_BICUBIC\n");
+ tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_1D_LUT\n");
+ tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_GLOW_FILTER_BICUBIC\n#define USE_1D_LUT\n");
+ tonemap_modes.push_back("\n#define MULTIVIEW\n#define SUBPASS\n");
+ tonemap_modes.push_back("\n#define MULTIVIEW\n#define SUBPASS\n#define USE_1D_LUT\n");
+
+ tonemap.shader.initialize(tonemap_modes);
+
+ if (!RendererCompositorRD::singleton->is_xr_enabled()) {
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_NORMAL_MULTIVIEW, false);
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_BICUBIC_GLOW_FILTER_MULTIVIEW, false);
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_1D_LUT_MULTIVIEW, false);
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT_MULTIVIEW, false);
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_SUBPASS_MULTIVIEW, false);
+ tonemap.shader.set_variant_enabled(TONEMAP_MODE_SUBPASS_1D_LUT_MULTIVIEW, false);
+ }
+
+ tonemap.shader_version = tonemap.shader.version_create();
+
+ for (int i = 0; i < TONEMAP_MODE_MAX; i++) {
+ if (tonemap.shader.is_variant_enabled(i)) {
+ tonemap.pipelines[i].setup(tonemap.shader.version_get_shader(tonemap.shader_version, i), RD::RENDER_PRIMITIVE_TRIANGLES, RD::PipelineRasterizationState(), RD::PipelineMultisampleState(), RD::PipelineDepthStencilState(), RD::PipelineColorBlendState::create_disabled(), 0);
+ } else {
+ tonemap.pipelines[i].clear();
+ }
+ }
+ }
+
+ // TODO maybe centralise this in mesh_storage?
+ { //create index array for copy shaders
+ Vector<uint8_t> pv;
+ pv.resize(6 * 4);
+ {
+ uint8_t *w = pv.ptrw();
+ int *p32 = (int *)w;
+ p32[0] = 0;
+ p32[1] = 1;
+ p32[2] = 2;
+ p32[3] = 0;
+ p32[4] = 2;
+ p32[5] = 3;
+ }
+ index_buffer = RD::get_singleton()->index_buffer_create(6, RenderingDevice::INDEX_BUFFER_FORMAT_UINT32, pv);
+ index_array = RD::get_singleton()->index_array_create(index_buffer, 0, 6);
+ }
+}
+
+ToneMapper::~ToneMapper() {
+ RD::get_singleton()->free(index_buffer); //array gets freed as dependency
+ tonemap.shader.version_free(tonemap.shader_version);
+}
+
+void ToneMapper::tonemapper(RID p_source_color, RID p_dst_framebuffer, const TonemapSettings &p_settings) {
+ UniformSetCacheRD *uniform_set_cache = UniformSetCacheRD::get_singleton();
+ ERR_FAIL_NULL(uniform_set_cache);
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ ERR_FAIL_NULL(material_storage);
+
+ memset(&tonemap.push_constant, 0, sizeof(TonemapPushConstant));
+
+ tonemap.push_constant.use_bcs = p_settings.use_bcs;
+ tonemap.push_constant.bcs[0] = p_settings.brightness;
+ tonemap.push_constant.bcs[1] = p_settings.contrast;
+ tonemap.push_constant.bcs[2] = p_settings.saturation;
+
+ tonemap.push_constant.use_glow = p_settings.use_glow;
+ tonemap.push_constant.glow_intensity = p_settings.glow_intensity;
+ tonemap.push_constant.glow_map_strength = p_settings.glow_map_strength;
+ tonemap.push_constant.glow_levels[0] = p_settings.glow_levels[0]; // clean this up to just pass by pointer or something
+ tonemap.push_constant.glow_levels[1] = p_settings.glow_levels[1];
+ tonemap.push_constant.glow_levels[2] = p_settings.glow_levels[2];
+ tonemap.push_constant.glow_levels[3] = p_settings.glow_levels[3];
+ tonemap.push_constant.glow_levels[4] = p_settings.glow_levels[4];
+ tonemap.push_constant.glow_levels[5] = p_settings.glow_levels[5];
+ tonemap.push_constant.glow_levels[6] = p_settings.glow_levels[6];
+ tonemap.push_constant.glow_texture_size[0] = p_settings.glow_texture_size.x;
+ tonemap.push_constant.glow_texture_size[1] = p_settings.glow_texture_size.y;
+ tonemap.push_constant.glow_mode = p_settings.glow_mode;
+
+ int mode = p_settings.glow_use_bicubic_upscale ? TONEMAP_MODE_BICUBIC_GLOW_FILTER : TONEMAP_MODE_NORMAL;
+ if (p_settings.use_1d_color_correction) {
+ mode += 2;
+ }
+
+ tonemap.push_constant.tonemapper = p_settings.tonemap_mode;
+ tonemap.push_constant.use_auto_exposure = p_settings.use_auto_exposure;
+ tonemap.push_constant.exposure = p_settings.exposure;
+ tonemap.push_constant.white = p_settings.white;
+ tonemap.push_constant.auto_exposure_grey = p_settings.auto_exposure_grey;
+ tonemap.push_constant.luminance_multiplier = p_settings.luminance_multiplier;
+
+ tonemap.push_constant.use_color_correction = p_settings.use_color_correction;
+
+ tonemap.push_constant.use_fxaa = p_settings.use_fxaa;
+ tonemap.push_constant.use_debanding = p_settings.use_debanding;
+ tonemap.push_constant.pixel_size[0] = 1.0 / p_settings.texture_size.x;
+ tonemap.push_constant.pixel_size[1] = 1.0 / p_settings.texture_size.y;
+
+ if (p_settings.view_count > 1) {
+ // Use MULTIVIEW versions
+ mode += 6;
+ }
+
+ RID default_sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ RID default_mipmap_sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+
+ RD::Uniform u_source_color;
+ u_source_color.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_source_color.binding = 0;
+ u_source_color.append_id(default_sampler);
+ u_source_color.append_id(p_source_color);
+
+ RD::Uniform u_exposure_texture;
+ u_exposure_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_exposure_texture.binding = 0;
+ u_exposure_texture.append_id(default_sampler);
+ u_exposure_texture.append_id(p_settings.exposure_texture);
+
+ RD::Uniform u_glow_texture;
+ u_glow_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_glow_texture.binding = 0;
+ u_glow_texture.append_id(default_mipmap_sampler);
+ u_glow_texture.append_id(p_settings.glow_texture);
+
+ RD::Uniform u_glow_map;
+ u_glow_map.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_glow_map.binding = 1;
+ u_glow_map.append_id(default_mipmap_sampler);
+ u_glow_map.append_id(p_settings.glow_map);
+
+ RD::Uniform u_color_correction_texture;
+ u_color_correction_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_color_correction_texture.binding = 0;
+ u_color_correction_texture.append_id(default_sampler);
+ u_color_correction_texture.append_id(p_settings.color_correction_texture);
+
+ RID shader = tonemap.shader.version_get_shader(tonemap.shader_version, mode);
+ ERR_FAIL_COND(shader.is_null());
+
+ RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_dst_framebuffer, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD);
+ RD::get_singleton()->draw_list_bind_render_pipeline(draw_list, tonemap.pipelines[mode].get_render_pipeline(RD::INVALID_ID, RD::get_singleton()->framebuffer_get_format(p_dst_framebuffer), false, RD::get_singleton()->draw_list_get_current_pass()));
+ RD::get_singleton()->draw_list_bind_uniform_set(draw_list, uniform_set_cache->get_cache(shader, 0, u_source_color), 0);
+ RD::get_singleton()->draw_list_bind_uniform_set(draw_list, uniform_set_cache->get_cache(shader, 1, u_exposure_texture), 1);
+ RD::get_singleton()->draw_list_bind_uniform_set(draw_list, uniform_set_cache->get_cache(shader, 2, u_glow_texture, u_glow_map), 2);
+ RD::get_singleton()->draw_list_bind_uniform_set(draw_list, uniform_set_cache->get_cache(shader, 3, u_color_correction_texture), 3);
+ RD::get_singleton()->draw_list_bind_index_array(draw_list, index_array);
+
+ RD::get_singleton()->draw_list_set_push_constant(draw_list, &tonemap.push_constant, sizeof(TonemapPushConstant));
+ RD::get_singleton()->draw_list_draw(draw_list, true);
+ RD::get_singleton()->draw_list_end();
+}
+
+void ToneMapper::tonemapper(RD::DrawListID p_subpass_draw_list, RID p_source_color, RD::FramebufferFormatID p_dst_format_id, const TonemapSettings &p_settings) {
+ UniformSetCacheRD *uniform_set_cache = UniformSetCacheRD::get_singleton();
+ ERR_FAIL_NULL(uniform_set_cache);
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ ERR_FAIL_NULL(material_storage);
+
+ memset(&tonemap.push_constant, 0, sizeof(TonemapPushConstant));
+
+ tonemap.push_constant.use_bcs = p_settings.use_bcs;
+ tonemap.push_constant.bcs[0] = p_settings.brightness;
+ tonemap.push_constant.bcs[1] = p_settings.contrast;
+ tonemap.push_constant.bcs[2] = p_settings.saturation;
+
+ ERR_FAIL_COND_MSG(p_settings.use_glow, "Glow is not supported when using subpasses.");
+ tonemap.push_constant.use_glow = p_settings.use_glow;
+
+ int mode = p_settings.use_1d_color_correction ? TONEMAP_MODE_SUBPASS_1D_LUT : TONEMAP_MODE_SUBPASS;
+ if (p_settings.view_count > 1) {
+ // Use MULTIVIEW versions
+ mode += 6;
+ }
+
+ tonemap.push_constant.tonemapper = p_settings.tonemap_mode;
+ tonemap.push_constant.use_auto_exposure = p_settings.use_auto_exposure;
+ tonemap.push_constant.exposure = p_settings.exposure;
+ tonemap.push_constant.white = p_settings.white;
+ tonemap.push_constant.auto_exposure_grey = p_settings.auto_exposure_grey;
+
+ tonemap.push_constant.use_color_correction = p_settings.use_color_correction;
+
+ tonemap.push_constant.use_debanding = p_settings.use_debanding;
+ tonemap.push_constant.luminance_multiplier = p_settings.luminance_multiplier;
+
+ RID default_sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ RID default_mipmap_sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+
+ RD::Uniform u_source_color;
+ u_source_color.uniform_type = RD::UNIFORM_TYPE_INPUT_ATTACHMENT;
+ u_source_color.binding = 0;
+ u_source_color.append_id(p_source_color);
+
+ RD::Uniform u_exposure_texture;
+ u_exposure_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_exposure_texture.binding = 0;
+ u_exposure_texture.append_id(default_sampler);
+ u_exposure_texture.append_id(p_settings.exposure_texture);
+
+ RD::Uniform u_glow_texture;
+ u_glow_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_glow_texture.binding = 0;
+ u_glow_texture.append_id(default_mipmap_sampler);
+ u_glow_texture.append_id(p_settings.glow_texture);
+
+ RD::Uniform u_glow_map;
+ u_glow_map.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_glow_map.binding = 1;
+ u_glow_map.append_id(default_mipmap_sampler);
+ u_glow_map.append_id(p_settings.glow_map);
+
+ RD::Uniform u_color_correction_texture;
+ u_color_correction_texture.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u_color_correction_texture.binding = 0;
+ u_color_correction_texture.append_id(default_sampler);
+ u_color_correction_texture.append_id(p_settings.color_correction_texture);
+
+ RID shader = tonemap.shader.version_get_shader(tonemap.shader_version, mode);
+ ERR_FAIL_COND(shader.is_null());
+
+ RD::get_singleton()->draw_list_bind_render_pipeline(p_subpass_draw_list, tonemap.pipelines[mode].get_render_pipeline(RD::INVALID_ID, p_dst_format_id, false, RD::get_singleton()->draw_list_get_current_pass()));
+ RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, uniform_set_cache->get_cache(shader, 0, u_source_color), 0);
+ RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, uniform_set_cache->get_cache(shader, 1, u_exposure_texture), 1); // should be set to a default texture, it's ignored
+ RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, uniform_set_cache->get_cache(shader, 2, u_glow_texture, u_glow_map), 2); // should be set to a default texture, it's ignored
+ RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, uniform_set_cache->get_cache(shader, 3, u_color_correction_texture), 3);
+ RD::get_singleton()->draw_list_bind_index_array(p_subpass_draw_list, index_array);
+
+ RD::get_singleton()->draw_list_set_push_constant(p_subpass_draw_list, &tonemap.push_constant, sizeof(TonemapPushConstant));
+ RD::get_singleton()->draw_list_draw(p_subpass_draw_list, true);
+}
diff --git a/servers/rendering/renderer_rd/effects/tone_mapper.h b/servers/rendering/renderer_rd/effects/tone_mapper.h
new file mode 100644
index 0000000000..357e814845
--- /dev/null
+++ b/servers/rendering/renderer_rd/effects/tone_mapper.h
@@ -0,0 +1,155 @@
+/*************************************************************************/
+/* tone_mapper.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef TONE_MAPPER_RD_H
+#define TONE_MAPPER_RD_H
+
+#include "servers/rendering/renderer_rd/pipeline_cache_rd.h"
+#include "servers/rendering/renderer_rd/shaders/effects/tonemap.glsl.gen.h"
+#include "servers/rendering/renderer_scene_render.h"
+
+#include "servers/rendering_server.h"
+
+namespace RendererRD {
+
+class ToneMapper {
+private:
+ enum TonemapMode {
+ TONEMAP_MODE_NORMAL,
+ TONEMAP_MODE_BICUBIC_GLOW_FILTER,
+ TONEMAP_MODE_1D_LUT,
+ TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT,
+ TONEMAP_MODE_SUBPASS,
+ TONEMAP_MODE_SUBPASS_1D_LUT,
+
+ TONEMAP_MODE_NORMAL_MULTIVIEW,
+ TONEMAP_MODE_BICUBIC_GLOW_FILTER_MULTIVIEW,
+ TONEMAP_MODE_1D_LUT_MULTIVIEW,
+ TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT_MULTIVIEW,
+ TONEMAP_MODE_SUBPASS_MULTIVIEW,
+ TONEMAP_MODE_SUBPASS_1D_LUT_MULTIVIEW,
+
+ TONEMAP_MODE_MAX
+ };
+
+ struct TonemapPushConstant {
+ float bcs[3]; // 12 - 12
+ uint32_t use_bcs; // 4 - 16
+
+ uint32_t use_glow; // 4 - 20
+ uint32_t use_auto_exposure; // 4 - 24
+ uint32_t use_color_correction; // 4 - 28
+ uint32_t tonemapper; // 4 - 32
+
+ uint32_t glow_texture_size[2]; // 8 - 40
+ float glow_intensity; // 4 - 44
+ float glow_map_strength; // 4 - 48
+
+ uint32_t glow_mode; // 4 - 52
+ float glow_levels[7]; // 28 - 80
+
+ float exposure; // 4 - 84
+ float white; // 4 - 88
+ float auto_exposure_grey; // 4 - 92
+ float luminance_multiplier; // 4 - 96
+
+ float pixel_size[2]; // 8 - 104
+ uint32_t use_fxaa; // 4 - 108
+ uint32_t use_debanding; // 4 - 112
+ };
+
+ /* tonemap actually writes to a framebuffer, which is
+ * better to do using the raster pipeline rather than
+ * compute, as that framebuffer might be in different formats
+ */
+ struct Tonemap {
+ TonemapPushConstant push_constant;
+ TonemapShaderRD shader;
+ RID shader_version;
+ PipelineCacheRD pipelines[TONEMAP_MODE_MAX];
+ } tonemap;
+
+ RID index_buffer;
+ RID index_array;
+
+public:
+ ToneMapper();
+ ~ToneMapper();
+
+ struct TonemapSettings {
+ bool use_glow = false;
+ enum GlowMode {
+ GLOW_MODE_ADD,
+ GLOW_MODE_SCREEN,
+ GLOW_MODE_SOFTLIGHT,
+ GLOW_MODE_REPLACE,
+ GLOW_MODE_MIX
+ };
+
+ GlowMode glow_mode = GLOW_MODE_ADD;
+ float glow_intensity = 1.0;
+ float glow_map_strength = 0.0f;
+ float glow_levels[7] = { 0.0, 0.0, 1.0, 0.0, 1.0, 0.0, 0.0 };
+ Vector2i glow_texture_size;
+ bool glow_use_bicubic_upscale = false;
+ RID glow_texture;
+ RID glow_map;
+
+ RS::EnvironmentToneMapper tonemap_mode = RS::ENV_TONE_MAPPER_LINEAR;
+ float exposure = 1.0;
+ float white = 1.0;
+
+ bool use_auto_exposure = false;
+ float auto_exposure_grey = 0.5;
+ RID exposure_texture;
+ float luminance_multiplier = 1.0;
+
+ bool use_bcs = false;
+ float brightness = 1.0;
+ float contrast = 1.0;
+ float saturation = 1.0;
+
+ bool use_color_correction = false;
+ bool use_1d_color_correction = false;
+ RID color_correction_texture;
+
+ bool use_fxaa = false;
+ bool use_debanding = false;
+ Vector2i texture_size;
+ uint32_t view_count = 1;
+ };
+
+ void tonemapper(RID p_source_color, RID p_dst_framebuffer, const TonemapSettings &p_settings);
+ void tonemapper(RD::DrawListID p_subpass_draw_list, RID p_source_color, RD::FramebufferFormatID p_dst_format_id, const TonemapSettings &p_settings);
+};
+
+} // namespace RendererRD
+
+#endif // !TONE_MAPPER_RD_H
diff --git a/servers/rendering/renderer_rd/effects_rd.cpp b/servers/rendering/renderer_rd/effects_rd.cpp
index cf943901d4..f05027d569 100644
--- a/servers/rendering/renderer_rd/effects_rd.cpp
+++ b/servers/rendering/renderer_rd/effects_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -60,7 +60,7 @@ RID EffectsRD::_get_uniform_set_from_image(RID p_image) {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 0;
- u.ids.push_back(p_image);
+ u.append_id(p_image);
uniforms.push_back(u);
//any thing with the same configuration (one texture in binding 0 for set 0), is good
RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, luminance_reduce.shader.version_get_shader(luminance_reduce.shader_version, 0), 1);
@@ -70,28 +70,6 @@ RID EffectsRD::_get_uniform_set_from_image(RID p_image) {
return uniform_set;
}
-RID EffectsRD::_get_uniform_set_for_input(RID p_texture) {
- if (input_to_uniform_set_cache.has(p_texture)) {
- RID uniform_set = input_to_uniform_set_cache[p_texture];
- if (RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
- return uniform_set;
- }
- }
-
- Vector<RD::Uniform> uniforms;
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_INPUT_ATTACHMENT;
- u.binding = 0;
- u.ids.push_back(p_texture);
- uniforms.push_back(u);
- // This is specific to our subpass shader
- RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, tonemap.shader.version_get_shader(tonemap.shader_version, TONEMAP_MODE_SUBPASS), 0);
-
- input_to_uniform_set_cache[p_texture] = uniform_set;
-
- return uniform_set;
-}
-
RID EffectsRD::_get_uniform_set_from_texture(RID p_texture, bool p_use_mipmaps) {
if (texture_to_uniform_set_cache.has(p_texture)) {
RID uniform_set = texture_to_uniform_set_cache[p_texture];
@@ -104,11 +82,11 @@ RID EffectsRD::_get_uniform_set_from_texture(RID p_texture, bool p_use_mipmaps)
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
- u.ids.push_back(p_texture);
+ u.append_id(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
+ u.append_id(p_texture);
uniforms.push_back(u);
// anything with the same configuration (one texture in binding 0 for set 0), is good
- RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, tonemap.shader.version_get_shader(tonemap.shader_version, 0), 0);
+ RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, copy_to_fb.shader.version_get_shader(copy_to_fb.shader_version, 0), 0);
texture_to_uniform_set_cache[p_texture] = uniform_set;
@@ -127,8 +105,8 @@ RID EffectsRD::_get_compute_uniform_set_from_texture(RID p_texture, bool p_use_m
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
- u.ids.push_back(p_texture);
+ u.append_id(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
+ u.append_id(p_texture);
uniforms.push_back(u);
//any thing with the same configuration (one texture in binding 0 for set 0), is good
RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, luminance_reduce.shader.version_get_shader(luminance_reduce.shader_version, 0), 0);
@@ -154,8 +132,8 @@ RID EffectsRD::_get_compute_uniform_set_from_texture_and_sampler(RID p_texture,
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(p_sampler);
- u.ids.push_back(p_texture);
+ u.append_id(p_sampler);
+ u.append_id(p_texture);
uniforms.push_back(u);
//any thing with the same configuration (one texture in binding 0 for set 0), is good
RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.blur_shader.version_get_shader(ssao.blur_shader_version, 0), 0);
@@ -182,16 +160,16 @@ RID EffectsRD::_get_compute_uniform_set_from_texture_pair(RID p_texture1, RID p_
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
- u.ids.push_back(p_texture1);
+ u.append_id(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
+ u.append_id(p_texture1);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 1;
- u.ids.push_back(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
- u.ids.push_back(p_texture2);
+ u.append_id(p_use_mipmaps ? default_mipmap_sampler : default_sampler);
+ u.append_id(p_texture2);
uniforms.push_back(u);
}
//any thing with the same configuration (one texture in binding 0 for set 0), is good
@@ -219,14 +197,14 @@ RID EffectsRD::_get_compute_uniform_set_from_image_pair(RID p_texture1, RID p_te
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 0;
- u.ids.push_back(p_texture1);
+ u.append_id(p_texture1);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(p_texture2);
+ u.append_id(p_texture2);
uniforms.push_back(u);
}
//any thing with the same configuration (one texture in binding 0 for set 0), is good
@@ -295,7 +273,7 @@ void EffectsRD::copy_to_atlas_fb(RID p_source_rd_texture, RID p_dest_framebuffer
RD::get_singleton()->draw_list_draw(draw_list, true);
}
-void EffectsRD::copy_to_fb_rect(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2i &p_rect, bool p_flip_y, bool p_force_luminance, bool p_alpha_to_zero, bool p_srgb, RID p_secondary) {
+void EffectsRD::copy_to_fb_rect(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2i &p_rect, bool p_flip_y, bool p_force_luminance, bool p_alpha_to_zero, bool p_srgb, RID p_secondary, bool p_multiview) {
memset(&copy_to_fb.push_constant, 0, sizeof(CopyToFbPushConstant));
if (p_flip_y) {
@@ -311,10 +289,18 @@ void EffectsRD::copy_to_fb_rect(RID p_source_rd_texture, RID p_dest_framebuffer,
copy_to_fb.push_constant.srgb = true;
}
+ CopyToFBMode mode;
+ if (p_multiview) {
+ mode = p_secondary.is_valid() ? COPY_TO_FB_MULTIVIEW_WITH_DEPTH : COPY_TO_FB_MULTIVIEW;
+ } else {
+ mode = p_secondary.is_valid() ? COPY_TO_FB_COPY2 : COPY_TO_FB_COPY;
+ }
+
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_dest_framebuffer, RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_DISCARD, Vector<Color>(), 1.0, 0, p_rect);
- RD::get_singleton()->draw_list_bind_render_pipeline(draw_list, copy_to_fb.pipelines[p_secondary.is_valid() ? COPY_TO_FB_COPY2 : COPY_TO_FB_COPY].get_render_pipeline(RD::INVALID_ID, RD::get_singleton()->framebuffer_get_format(p_dest_framebuffer)));
+ RD::get_singleton()->draw_list_bind_render_pipeline(draw_list, copy_to_fb.pipelines[mode].get_render_pipeline(RD::INVALID_ID, RD::get_singleton()->framebuffer_get_format(p_dest_framebuffer)));
RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_source_rd_texture), 0);
if (p_secondary.is_valid()) {
+ // TODO may need to do this differently when reading from depth buffer for multiview
RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_secondary), 1);
}
RD::get_singleton()->draw_list_bind_index_array(draw_list, index_array);
@@ -445,12 +431,11 @@ void EffectsRD::set_color(RID p_dest_texture, const Color &p_color, const Rect2i
RD::get_singleton()->compute_list_end();
}
-void EffectsRD::gaussian_blur(RID p_source_rd_texture, RID p_texture, RID p_back_texture, const Rect2i &p_region, bool p_8bit_dst) {
- ERR_FAIL_COND_MSG(!prefer_raster_effects, "Can't use the compute version of the gaussian blur with the mobile renderer.");
+void EffectsRD::gaussian_blur(RID p_source_rd_texture, RID p_texture, const Rect2i &p_region, bool p_8bit_dst) {
+ ERR_FAIL_COND_MSG(prefer_raster_effects, "Can't use the compute version of the gaussian blur with the mobile renderer.");
memset(&copy.push_constant, 0, sizeof(CopyPushConstant));
- uint32_t base_flags = 0;
copy.push_constant.section[0] = p_region.position.x;
copy.push_constant.section[1] = p_region.position.y;
copy.push_constant.section[2] = p_region.size.width;
@@ -460,23 +445,12 @@ void EffectsRD::gaussian_blur(RID p_source_rd_texture, RID p_texture, RID p_back
RD::DrawListID compute_list = RD::get_singleton()->compute_list_begin();
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, copy.pipelines[p_8bit_dst ? COPY_MODE_GAUSSIAN_COPY_8BIT : COPY_MODE_GAUSSIAN_COPY]);
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_source_rd_texture), 0);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_back_texture), 3);
-
- copy.push_constant.flags = base_flags | COPY_FLAG_HORIZONTAL;
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy.push_constant, sizeof(CopyPushConstant));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_region.size.width, p_region.size.height, 1);
-
- RD::get_singleton()->compute_list_add_barrier(compute_list);
-
- //VERTICAL
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_back_texture), 0);
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_texture), 3);
- copy.push_constant.flags = base_flags;
RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy.push_constant, sizeof(CopyPushConstant));
RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_region.size.width, p_region.size.height, 1);
+
RD::get_singleton()->compute_list_end();
}
@@ -613,13 +587,13 @@ void EffectsRD::screen_space_reflection(RID p_diffuse, RID p_normal_roughness, R
ssr.push_constant.metallic_mask[3] = CLAMP(p_metallic_mask.a * 255.0, 0, 255);
store_camera(p_camera, ssr.push_constant.projection);
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssr.pipelines[(p_roughness_quality != RS::ENV_SSR_ROUGNESS_QUALITY_DISABLED) ? SCREEN_SPACE_REFLECTION_ROUGH : SCREEN_SPACE_REFLECTION_NORMAL]);
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssr.pipelines[(p_roughness_quality != RS::ENV_SSR_ROUGHNESS_QUALITY_DISABLED) ? SCREEN_SPACE_REFLECTION_ROUGH : SCREEN_SPACE_REFLECTION_NORMAL]);
RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssr.push_constant, sizeof(ScreenSpaceReflectionPushConstant));
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_image_pair(p_output_blur, p_scale_depth), 0);
- if (p_roughness_quality != RS::ENV_SSR_ROUGNESS_QUALITY_DISABLED) {
+ if (p_roughness_quality != RS::ENV_SSR_ROUGHNESS_QUALITY_DISABLED) {
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_image_pair(p_output, p_blur_radius), 1);
} else {
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_output), 1);
@@ -630,7 +604,7 @@ void EffectsRD::screen_space_reflection(RID p_diffuse, RID p_normal_roughness, R
RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_screen_size.width, p_screen_size.height, 1);
}
- if (p_roughness_quality != RS::ENV_SSR_ROUGNESS_QUALITY_DISABLED) {
+ if (p_roughness_quality != RS::ENV_SSR_ROUGHNESS_QUALITY_DISABLED) {
//blur
RD::get_singleton()->compute_list_add_barrier(compute_list);
@@ -642,10 +616,10 @@ void EffectsRD::screen_space_reflection(RID p_diffuse, RID p_normal_roughness, R
ssr_filter.push_constant.proj_info[2] = (1.0f - p_camera.matrix[0][2]) / p_camera.matrix[0][0];
ssr_filter.push_constant.proj_info[3] = (1.0f + p_camera.matrix[1][2]) / p_camera.matrix[1][1];
ssr_filter.push_constant.vertical = 0;
- if (p_roughness_quality == RS::ENV_SSR_ROUGNESS_QUALITY_LOW) {
+ if (p_roughness_quality == RS::ENV_SSR_ROUGHNESS_QUALITY_LOW) {
ssr_filter.push_constant.steps = p_max_steps / 3;
ssr_filter.push_constant.increment = 3;
- } else if (p_roughness_quality == RS::ENV_SSR_ROUGNESS_QUALITY_MEDIUM) {
+ } else if (p_roughness_quality == RS::ENV_SSR_ROUGHNESS_QUALITY_MEDIUM) {
ssr_filter.push_constant.steps = p_max_steps / 2;
ssr_filter.push_constant.increment = 2;
} else {
@@ -818,104 +792,6 @@ void EffectsRD::copy_cubemap_to_dp(RID p_source_rd_texture, RID p_dst_framebuffe
RD::get_singleton()->draw_list_end(RD::BARRIER_MASK_RASTER | RD::BARRIER_MASK_TRANSFER);
}
-void EffectsRD::tonemapper(RID p_source_color, RID p_dst_framebuffer, const TonemapSettings &p_settings) {
- memset(&tonemap.push_constant, 0, sizeof(TonemapPushConstant));
-
- tonemap.push_constant.use_bcs = p_settings.use_bcs;
- tonemap.push_constant.bcs[0] = p_settings.brightness;
- tonemap.push_constant.bcs[1] = p_settings.contrast;
- tonemap.push_constant.bcs[2] = p_settings.saturation;
-
- tonemap.push_constant.use_glow = p_settings.use_glow;
- tonemap.push_constant.glow_intensity = p_settings.glow_intensity;
- tonemap.push_constant.glow_levels[0] = p_settings.glow_levels[0]; // clean this up to just pass by pointer or something
- tonemap.push_constant.glow_levels[1] = p_settings.glow_levels[1];
- tonemap.push_constant.glow_levels[2] = p_settings.glow_levels[2];
- tonemap.push_constant.glow_levels[3] = p_settings.glow_levels[3];
- tonemap.push_constant.glow_levels[4] = p_settings.glow_levels[4];
- tonemap.push_constant.glow_levels[5] = p_settings.glow_levels[5];
- tonemap.push_constant.glow_levels[6] = p_settings.glow_levels[6];
- tonemap.push_constant.glow_texture_size[0] = p_settings.glow_texture_size.x;
- tonemap.push_constant.glow_texture_size[1] = p_settings.glow_texture_size.y;
- tonemap.push_constant.glow_mode = p_settings.glow_mode;
-
- int mode = p_settings.glow_use_bicubic_upscale ? TONEMAP_MODE_BICUBIC_GLOW_FILTER : TONEMAP_MODE_NORMAL;
- if (p_settings.use_1d_color_correction) {
- mode += 2;
- }
-
- tonemap.push_constant.tonemapper = p_settings.tonemap_mode;
- tonemap.push_constant.use_auto_exposure = p_settings.use_auto_exposure;
- tonemap.push_constant.exposure = p_settings.exposure;
- tonemap.push_constant.white = p_settings.white;
- tonemap.push_constant.auto_exposure_grey = p_settings.auto_exposure_grey;
- tonemap.push_constant.luminance_multiplier = p_settings.luminance_multiplier;
-
- tonemap.push_constant.use_color_correction = p_settings.use_color_correction;
-
- tonemap.push_constant.use_fxaa = p_settings.use_fxaa;
- tonemap.push_constant.use_debanding = p_settings.use_debanding;
- tonemap.push_constant.pixel_size[0] = 1.0 / p_settings.texture_size.x;
- tonemap.push_constant.pixel_size[1] = 1.0 / p_settings.texture_size.y;
-
- if (p_settings.view_count > 1) {
- // Use MULTIVIEW versions
- mode += 6;
- }
-
- RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_dst_framebuffer, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD);
- RD::get_singleton()->draw_list_bind_render_pipeline(draw_list, tonemap.pipelines[mode].get_render_pipeline(RD::INVALID_ID, RD::get_singleton()->framebuffer_get_format(p_dst_framebuffer), false, RD::get_singleton()->draw_list_get_current_pass()));
- RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_source_color), 0);
- RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_settings.exposure_texture), 1);
- RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_settings.glow_texture, true), 2);
- RD::get_singleton()->draw_list_bind_uniform_set(draw_list, _get_uniform_set_from_texture(p_settings.color_correction_texture), 3);
- RD::get_singleton()->draw_list_bind_index_array(draw_list, index_array);
-
- RD::get_singleton()->draw_list_set_push_constant(draw_list, &tonemap.push_constant, sizeof(TonemapPushConstant));
- RD::get_singleton()->draw_list_draw(draw_list, true);
- RD::get_singleton()->draw_list_end();
-}
-
-void EffectsRD::tonemapper(RD::DrawListID p_subpass_draw_list, RID p_source_color, RD::FramebufferFormatID p_dst_format_id, const TonemapSettings &p_settings) {
- memset(&tonemap.push_constant, 0, sizeof(TonemapPushConstant));
-
- tonemap.push_constant.use_bcs = p_settings.use_bcs;
- tonemap.push_constant.bcs[0] = p_settings.brightness;
- tonemap.push_constant.bcs[1] = p_settings.contrast;
- tonemap.push_constant.bcs[2] = p_settings.saturation;
-
- ERR_FAIL_COND_MSG(p_settings.use_glow, "Glow is not supported when using subpasses.");
- tonemap.push_constant.use_glow = p_settings.use_glow;
-
- int mode = p_settings.use_1d_color_correction ? TONEMAP_MODE_SUBPASS_1D_LUT : TONEMAP_MODE_SUBPASS;
- if (p_settings.view_count > 1) {
- // Use MULTIVIEW versions
- mode += 6;
- }
-
- tonemap.push_constant.tonemapper = p_settings.tonemap_mode;
- tonemap.push_constant.use_auto_exposure = p_settings.use_auto_exposure;
- tonemap.push_constant.exposure = p_settings.exposure;
- tonemap.push_constant.white = p_settings.white;
- tonemap.push_constant.auto_exposure_grey = p_settings.auto_exposure_grey;
-
- tonemap.push_constant.use_color_correction = p_settings.use_color_correction;
-
- tonemap.push_constant.use_debanding = p_settings.use_debanding;
- tonemap.push_constant.luminance_multiplier = p_settings.luminance_multiplier;
-
- RD::get_singleton()->draw_list_bind_render_pipeline(p_subpass_draw_list, tonemap.pipelines[mode].get_render_pipeline(RD::INVALID_ID, p_dst_format_id, false, RD::get_singleton()->draw_list_get_current_pass()));
- RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, _get_uniform_set_for_input(p_source_color), 0);
- RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, _get_uniform_set_from_texture(p_settings.exposure_texture), 1); // should be set to a default texture, it's ignored
- RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, _get_uniform_set_from_texture(p_settings.glow_texture, true), 2); // should be set to a default texture, it's ignored
- RD::get_singleton()->draw_list_bind_uniform_set(p_subpass_draw_list, _get_uniform_set_from_texture(p_settings.color_correction_texture), 3);
-
- RD::get_singleton()->draw_list_bind_index_array(p_subpass_draw_list, index_array);
-
- RD::get_singleton()->draw_list_set_push_constant(p_subpass_draw_list, &tonemap.push_constant, sizeof(TonemapPushConstant));
- RD::get_singleton()->draw_list_draw(p_subpass_draw_list, true);
-}
-
void EffectsRD::luminance_reduction(RID p_source_texture, const Size2i p_source_size, const Vector<RID> p_reduce, RID p_prev_luminance, float p_min_luminance, float p_max_luminance, float p_adjust, bool p_set) {
ERR_FAIL_COND_MSG(prefer_raster_effects, "Can't use compute version of luminance reduction with the mobile renderer.");
@@ -1315,6 +1191,110 @@ void EffectsRD::bokeh_dof_raster(const BokehBuffers &p_buffers, bool p_dof_far,
}
}
+void EffectsRD::downsample_depth(RID p_depth_buffer, const Vector<RID> &p_depth_mipmaps, RS::EnvironmentSSAOQuality p_ssao_quality, RS::EnvironmentSSILQuality p_ssil_quality, bool p_invalidate_uniform_set, bool p_ssao_half_size, bool p_ssil_half_size, Size2i p_full_screen_size, const CameraMatrix &p_projection) {
+ // Downsample and deinterleave the depth buffer for SSAO and SSIL
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+
+ int downsample_pipeline = SS_EFFECTS_DOWNSAMPLE;
+ bool use_mips = p_ssao_quality > RS::ENV_SSAO_QUALITY_MEDIUM || p_ssil_quality > RS::ENV_SSIL_QUALITY_MEDIUM;
+
+ if (p_ssao_quality == RS::ENV_SSAO_QUALITY_VERY_LOW && p_ssil_quality == RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ downsample_pipeline = SS_EFFECTS_DOWNSAMPLE_HALF;
+ } else if (use_mips) {
+ downsample_pipeline = SS_EFFECTS_DOWNSAMPLE_MIPMAP;
+ }
+
+ bool use_half_size = false;
+ bool use_full_mips = false;
+
+ if (p_ssao_half_size && p_ssil_half_size) {
+ downsample_pipeline++;
+ use_half_size = true;
+ } else if (p_ssao_half_size != p_ssil_half_size) {
+ if (use_mips) {
+ downsample_pipeline = SS_EFFECTS_DOWNSAMPLE_FULL_MIPS;
+ use_full_mips = true;
+ } else {
+ // Only need the first two mipmaps, but the cost to generate the next two is trivial
+ // TODO investigate the benefit of a shader version to generate only 2 mips
+ downsample_pipeline = SS_EFFECTS_DOWNSAMPLE_MIPMAP;
+ use_mips = true;
+ }
+ }
+
+ int depth_index = use_half_size ? 1 : 0;
+
+ RD::get_singleton()->draw_command_begin_label("Downsample Depth");
+ if (p_invalidate_uniform_set || use_full_mips != ss_effects.used_full_mips_last_frame || use_half_size != ss_effects.used_half_size_last_frame || use_mips != ss_effects.used_mips_last_frame) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 0;
+ u.append_id(p_depth_mipmaps[depth_index + 1]);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 1;
+ u.append_id(p_depth_mipmaps[depth_index + 2]);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 2;
+ u.append_id(p_depth_mipmaps[depth_index + 3]);
+ uniforms.push_back(u);
+ }
+ if (use_full_mips) {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 3;
+ u.append_id(p_depth_mipmaps[4]);
+ uniforms.push_back(u);
+ }
+ ss_effects.downsample_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ss_effects.downsample_shader.version_get_shader(ss_effects.downsample_shader_version, use_full_mips ? 6 : 2), 2);
+ }
+
+ float depth_linearize_mul = -p_projection.matrix[3][2];
+ float depth_linearize_add = p_projection.matrix[2][2];
+ if (depth_linearize_mul * depth_linearize_add < 0) {
+ depth_linearize_add = -depth_linearize_add;
+ }
+
+ ss_effects.downsample_push_constant.orthogonal = p_projection.is_orthogonal();
+ ss_effects.downsample_push_constant.z_near = depth_linearize_mul;
+ ss_effects.downsample_push_constant.z_far = depth_linearize_add;
+ if (ss_effects.downsample_push_constant.orthogonal) {
+ ss_effects.downsample_push_constant.z_near = p_projection.get_z_near();
+ ss_effects.downsample_push_constant.z_far = p_projection.get_z_far();
+ }
+ ss_effects.downsample_push_constant.pixel_size[0] = 1.0 / p_full_screen_size.x;
+ ss_effects.downsample_push_constant.pixel_size[1] = 1.0 / p_full_screen_size.y;
+ ss_effects.downsample_push_constant.radius_sq = 1.0;
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ss_effects.pipelines[downsample_pipeline]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_depth_buffer), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_depth_mipmaps[depth_index + 0]), 1);
+ if (use_mips) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, ss_effects.downsample_uniform_set, 2);
+ }
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ss_effects.downsample_push_constant, sizeof(SSEffectsDownsamplePushConstant));
+
+ Size2i size(MAX(1, p_full_screen_size.x >> (use_half_size ? 2 : 1)), MAX(1, p_full_screen_size.y >> (use_half_size ? 2 : 1)));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, size.x, size.y, 1);
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ RD::get_singleton()->draw_command_end_label();
+
+ RD::get_singleton()->compute_list_end(RD::BARRIER_MASK_COMPUTE);
+
+ ss_effects.used_full_mips_last_frame = use_full_mips;
+ ss_effects.used_half_size_last_frame = use_half_size;
+}
+
void EffectsRD::gather_ssao(RD::ComputeListID p_compute_list, const Vector<RID> p_ao_slices, const SSAOSettings &p_settings, bool p_adaptive_base_pass, RID p_gather_uniform_set, RID p_importance_map_uniform_set) {
RD::get_singleton()->compute_list_bind_uniform_set(p_compute_list, p_gather_uniform_set, 0);
if ((p_settings.quality == RS::ENV_SSAO_QUALITY_ULTRA) && !p_adaptive_base_pass) {
@@ -1341,82 +1321,12 @@ void EffectsRD::gather_ssao(RD::ComputeListID p_compute_list, const Vector<RID>
RD::get_singleton()->compute_list_add_barrier(p_compute_list);
}
-void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_depth_mipmaps_texture, const Vector<RID> &p_depth_mipmaps, RID p_ao, const Vector<RID> p_ao_slices, RID p_ao_pong, const Vector<RID> p_ao_pong_slices, RID p_upscale_buffer, RID p_importance_map, RID p_importance_map_pong, const CameraMatrix &p_projection, const SSAOSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_downsample_uniform_set, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set) {
+void EffectsRD::generate_ssao(RID p_normal_buffer, RID p_depth_mipmaps_texture, RID p_ao, const Vector<RID> p_ao_slices, RID p_ao_pong, const Vector<RID> p_ao_pong_slices, RID p_upscale_buffer, RID p_importance_map, RID p_importance_map_pong, const CameraMatrix &p_projection, const SSAOSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set) {
RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
- RD::get_singleton()->draw_command_begin_label("SSAO");
+ memset(&ssao.gather_push_constant, 0, sizeof(SSAOGatherPushConstant));
/* FIRST PASS */
- // Downsample and deinterleave the depth buffer.
- {
- RD::get_singleton()->draw_command_begin_label("Downsample Depth");
- if (p_invalidate_uniform_sets) {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 0;
- u.ids.push_back(p_depth_mipmaps[1]);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 1;
- u.ids.push_back(p_depth_mipmaps[2]);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 2;
- u.ids.push_back(p_depth_mipmaps[3]);
- uniforms.push_back(u);
- }
- r_downsample_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.downsample_shader.version_get_shader(ssao.downsample_shader_version, 2), 2);
- }
-
- float depth_linearize_mul = -p_projection.matrix[3][2];
- float depth_linearize_add = p_projection.matrix[2][2];
- if (depth_linearize_mul * depth_linearize_add < 0) {
- depth_linearize_add = -depth_linearize_add;
- }
-
- ssao.downsample_push_constant.orthogonal = p_projection.is_orthogonal();
- ssao.downsample_push_constant.z_near = depth_linearize_mul;
- ssao.downsample_push_constant.z_far = depth_linearize_add;
- if (ssao.downsample_push_constant.orthogonal) {
- ssao.downsample_push_constant.z_near = p_projection.get_z_near();
- ssao.downsample_push_constant.z_far = p_projection.get_z_far();
- }
- ssao.downsample_push_constant.pixel_size[0] = 1.0 / p_settings.full_screen_size.x;
- ssao.downsample_push_constant.pixel_size[1] = 1.0 / p_settings.full_screen_size.y;
- ssao.downsample_push_constant.radius_sq = p_settings.radius * p_settings.radius;
-
- int downsample_pipeline = SSAO_DOWNSAMPLE;
- if (p_settings.quality == RS::ENV_SSAO_QUALITY_VERY_LOW) {
- downsample_pipeline = SSAO_DOWNSAMPLE_HALF;
- } else if (p_settings.quality > RS::ENV_SSAO_QUALITY_MEDIUM) {
- downsample_pipeline = SSAO_DOWNSAMPLE_MIPMAP;
- }
-
- if (p_settings.half_size) {
- downsample_pipeline++;
- }
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssao.pipelines[downsample_pipeline]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_depth_buffer), 0);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_depth_mipmaps[0]), 1);
- if (p_settings.quality > RS::ENV_SSAO_QUALITY_MEDIUM) {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, r_downsample_uniform_set, 2);
- }
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssao.downsample_push_constant, sizeof(SSAODownsamplePushConstant));
-
- Size2i size(MAX(1, p_settings.full_screen_size.x >> (p_settings.half_size ? 2 : 1)), MAX(1, p_settings.full_screen_size.y >> (p_settings.half_size ? 2 : 1)));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, size.x, size.y, 1);
- RD::get_singleton()->compute_list_add_barrier(compute_list);
- RD::get_singleton()->draw_command_end_label(); // Downsample SSAO
- }
+ RD::get_singleton()->draw_command_begin_label("Process Screen Space Ambient Occlusion");
/* SECOND PASS */
// Sample SSAO
{
@@ -1469,22 +1379,22 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(ssao.mirror_sampler);
- u.ids.push_back(p_depth_mipmaps_texture);
+ u.append_id(default_sampler);
+ u.append_id(p_depth_mipmaps_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(p_normal_buffer);
+ u.append_id(p_normal_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 2;
- u.ids.push_back(ssao.gather_constants_buffer);
+ u.append_id(ss_effects.gather_constants_buffer);
uniforms.push_back(u);
}
r_gather_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.gather_shader.version_get_shader(ssao.gather_shader_version, 0), 0);
@@ -1496,22 +1406,22 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 0;
- u.ids.push_back(p_ao_pong);
+ u.append_id(p_ao_pong);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 1;
- u.ids.push_back(default_sampler);
- u.ids.push_back(p_importance_map);
+ u.append_id(default_sampler);
+ u.append_id(p_importance_map);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(ssao.importance_map_load_counter);
+ u.append_id(ssao.importance_map_load_counter);
uniforms.push_back(u);
}
r_importance_map_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.gather_shader.version_get_shader(ssao.gather_shader_version, 2), 1);
@@ -1574,6 +1484,7 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
for (int pass = 0; pass < blur_passes; pass++) {
int blur_pipeline = SSAO_BLUR_PASS;
if (p_settings.quality > RS::ENV_SSAO_QUALITY_VERY_LOW) {
+ blur_pipeline = SSAO_BLUR_PASS_SMART;
if (pass < blur_passes - 2) {
blur_pipeline = SSAO_BLUR_PASS_WIDE;
} else {
@@ -1591,7 +1502,7 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
if (p_settings.quality == RS::ENV_SSAO_QUALITY_VERY_LOW) {
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ao_slices[i]), 0);
} else {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ao_slices[i], ssao.mirror_sampler), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ao_slices[i], ss_effects.mirror_sampler), 0);
}
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_ao_pong_slices[i]), 1);
@@ -1599,7 +1510,7 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
if (p_settings.quality == RS::ENV_SSAO_QUALITY_VERY_LOW) {
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ao_pong_slices[i]), 0);
} else {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ao_pong_slices[i], ssao.mirror_sampler), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ao_pong_slices[i], ss_effects.mirror_sampler), 0);
}
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_ao_slices[i]), 1);
}
@@ -1649,12 +1560,305 @@ void EffectsRD::generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_dep
RD::get_singleton()->draw_command_end_label(); // Interleave
}
RD::get_singleton()->draw_command_end_label(); //SSAO
- RD::get_singleton()->compute_list_end(RD::BARRIER_MASK_TRANSFER); //wait for upcoming transfer
+ RD::get_singleton()->compute_list_end(RD::BARRIER_MASK_NO_BARRIER); //wait for upcoming transfer
int zero[1] = { 0 };
RD::get_singleton()->buffer_update(ssao.importance_map_load_counter, 0, sizeof(uint32_t), &zero, 0); //no barrier
}
+void EffectsRD::gather_ssil(RD::ComputeListID p_compute_list, const Vector<RID> p_ssil_slices, const Vector<RID> p_edges_slices, const SSILSettings &p_settings, bool p_adaptive_base_pass, RID p_gather_uniform_set, RID p_importance_map_uniform_set, RID p_projection_uniform_set) {
+ RD::get_singleton()->compute_list_bind_uniform_set(p_compute_list, p_gather_uniform_set, 0);
+ if ((p_settings.quality == RS::ENV_SSIL_QUALITY_ULTRA) && !p_adaptive_base_pass) {
+ RD::get_singleton()->compute_list_bind_uniform_set(p_compute_list, p_importance_map_uniform_set, 1);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(p_compute_list, p_projection_uniform_set, 3);
+
+ for (int i = 0; i < 4; i++) {
+ if ((p_settings.quality == RS::ENV_SSIL_QUALITY_VERY_LOW) && ((i == 1) || (i == 2))) {
+ continue;
+ }
+
+ ssil.gather_push_constant.pass_coord_offset[0] = i % 2;
+ ssil.gather_push_constant.pass_coord_offset[1] = i / 2;
+ ssil.gather_push_constant.pass_uv_offset[0] = ((i % 2) - 0.0) / p_settings.full_screen_size.x;
+ ssil.gather_push_constant.pass_uv_offset[1] = ((i / 2) - 0.0) / p_settings.full_screen_size.y;
+ ssil.gather_push_constant.pass = i;
+ RD::get_singleton()->compute_list_bind_uniform_set(p_compute_list, _get_compute_uniform_set_from_image_pair(p_ssil_slices[i], p_edges_slices[i]), 2);
+ RD::get_singleton()->compute_list_set_push_constant(p_compute_list, &ssil.gather_push_constant, sizeof(SSILGatherPushConstant));
+
+ Size2i size = Size2i(p_settings.full_screen_size.x >> (p_settings.half_size ? 2 : 1), p_settings.full_screen_size.y >> (p_settings.half_size ? 2 : 1));
+
+ RD::get_singleton()->compute_list_dispatch_threads(p_compute_list, size.x, size.y, 1);
+ }
+ RD::get_singleton()->compute_list_add_barrier(p_compute_list);
+}
+
+void EffectsRD::screen_space_indirect_lighting(RID p_diffuse, RID p_destination, RID p_normal_buffer, RID p_depth_mipmaps_texture, RID p_ssil, const Vector<RID> p_ssil_slices, RID p_ssil_pong, const Vector<RID> p_ssil_pong_slices, RID p_importance_map, RID p_importance_map_pong, RID p_edges, const Vector<RID> p_edges_slices, const CameraMatrix &p_projection, const CameraMatrix &p_last_projection, const SSILSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set, RID &r_projection_uniform_set) {
+ RD::get_singleton()->draw_command_begin_label("Process Screen Space Indirect Lighting");
+ //Store projection info before starting the compute list
+ SSILProjectionUniforms projection_uniforms;
+ store_camera(p_last_projection, projection_uniforms.inv_last_frame_projection_matrix);
+
+ RD::get_singleton()->buffer_update(ssil.projection_uniform_buffer, 0, sizeof(SSILProjectionUniforms), &projection_uniforms);
+
+ memset(&ssil.gather_push_constant, 0, sizeof(SSILGatherPushConstant));
+
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+ {
+ RD::get_singleton()->draw_command_begin_label("Gather Samples");
+ ssil.gather_push_constant.screen_size[0] = p_settings.full_screen_size.x;
+ ssil.gather_push_constant.screen_size[1] = p_settings.full_screen_size.y;
+
+ ssil.gather_push_constant.half_screen_pixel_size[0] = 1.0 / p_settings.half_screen_size.x;
+ ssil.gather_push_constant.half_screen_pixel_size[1] = 1.0 / p_settings.half_screen_size.y;
+ float tan_half_fov_x = 1.0 / p_projection.matrix[0][0];
+ float tan_half_fov_y = 1.0 / p_projection.matrix[1][1];
+ ssil.gather_push_constant.NDC_to_view_mul[0] = tan_half_fov_x * 2.0;
+ ssil.gather_push_constant.NDC_to_view_mul[1] = tan_half_fov_y * -2.0;
+ ssil.gather_push_constant.NDC_to_view_add[0] = tan_half_fov_x * -1.0;
+ ssil.gather_push_constant.NDC_to_view_add[1] = tan_half_fov_y;
+ ssil.gather_push_constant.z_near = p_projection.get_z_near();
+ ssil.gather_push_constant.z_far = p_projection.get_z_far();
+ ssil.gather_push_constant.is_orthogonal = p_projection.is_orthogonal();
+
+ ssil.gather_push_constant.half_screen_pixel_size_x025[0] = ssil.gather_push_constant.half_screen_pixel_size[0] * 0.25;
+ ssil.gather_push_constant.half_screen_pixel_size_x025[1] = ssil.gather_push_constant.half_screen_pixel_size[1] * 0.25;
+
+ ssil.gather_push_constant.radius = p_settings.radius;
+ float radius_near_limit = (p_settings.radius * 1.2f);
+ if (p_settings.quality <= RS::ENV_SSIL_QUALITY_LOW) {
+ radius_near_limit *= 1.50f;
+
+ if (p_settings.quality == RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ ssil.gather_push_constant.radius *= 0.8f;
+ }
+ }
+ radius_near_limit /= tan_half_fov_y;
+ ssil.gather_push_constant.intensity = p_settings.intensity * Math_PI;
+ ssil.gather_push_constant.fade_out_mul = -1.0 / (p_settings.fadeout_to - p_settings.fadeout_from);
+ ssil.gather_push_constant.fade_out_add = p_settings.fadeout_from / (p_settings.fadeout_to - p_settings.fadeout_from) + 1.0;
+ ssil.gather_push_constant.inv_radius_near_limit = 1.0f / radius_near_limit;
+ ssil.gather_push_constant.neg_inv_radius = -1.0 / ssil.gather_push_constant.radius;
+ ssil.gather_push_constant.normal_rejection_amount = p_settings.normal_rejection;
+
+ ssil.gather_push_constant.load_counter_avg_div = 9.0 / float((p_settings.quarter_screen_size.x) * (p_settings.quarter_screen_size.y) * 255);
+ ssil.gather_push_constant.adaptive_sample_limit = p_settings.adaptive_target;
+
+ ssil.gather_push_constant.quality = MAX(0, p_settings.quality - 1);
+ ssil.gather_push_constant.size_multiplier = p_settings.half_size ? 2 : 1;
+
+ if (p_invalidate_uniform_sets) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u.binding = 0;
+ u.append_id(default_mipmap_sampler);
+ u.append_id(p_diffuse);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
+ u.binding = 1;
+ u.append_id(ssil.projection_uniform_buffer);
+ uniforms.push_back(u);
+ }
+ r_projection_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssil.gather_shader.version_get_shader(ssil.gather_shader_version, 0), 3);
+ }
+
+ if (p_invalidate_uniform_sets) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u.binding = 0;
+ u.append_id(default_sampler);
+ u.append_id(p_depth_mipmaps_texture);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 1;
+ u.append_id(p_normal_buffer);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
+ u.binding = 2;
+ u.append_id(ss_effects.gather_constants_buffer);
+ uniforms.push_back(u);
+ }
+ r_gather_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssil.gather_shader.version_get_shader(ssil.gather_shader_version, 0), 0);
+ }
+
+ if (p_invalidate_uniform_sets) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 0;
+ u.append_id(p_ssil_pong);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
+ u.binding = 1;
+ u.append_id(default_sampler);
+ u.append_id(p_importance_map);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 2;
+ u.append_id(ssil.importance_map_load_counter);
+ uniforms.push_back(u);
+ }
+ r_importance_map_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssil.gather_shader.version_get_shader(ssil.gather_shader_version, 2), 1);
+ }
+
+ if (p_settings.quality == RS::ENV_SSIL_QUALITY_ULTRA) {
+ RD::get_singleton()->draw_command_begin_label("Generate Importance Map");
+ ssil.importance_map_push_constant.half_screen_pixel_size[0] = 1.0 / p_settings.half_screen_size.x;
+ ssil.importance_map_push_constant.half_screen_pixel_size[1] = 1.0 / p_settings.half_screen_size.y;
+ ssil.importance_map_push_constant.intensity = p_settings.intensity * Math_PI;
+ //base pass
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_GATHER_BASE]);
+ gather_ssil(compute_list, p_ssil_pong_slices, p_edges_slices, p_settings, true, r_gather_uniform_set, r_importance_map_uniform_set, r_projection_uniform_set);
+ //generate importance map
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_GENERATE_IMPORTANCE_MAP]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ssil_pong), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_importance_map), 1);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssil.importance_map_push_constant, sizeof(SSILImportanceMapPushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_settings.quarter_screen_size.x, p_settings.quarter_screen_size.y, 1);
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ // process Importance Map A
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_PROCESS_IMPORTANCE_MAPA]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_importance_map), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_importance_map_pong), 1);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssil.importance_map_push_constant, sizeof(SSILImportanceMapPushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_settings.quarter_screen_size.x, p_settings.quarter_screen_size.y, 1);
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ // process Importance Map B
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_PROCESS_IMPORTANCE_MAPB]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_importance_map_pong), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_importance_map), 1);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, ssil.counter_uniform_set, 2);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssil.importance_map_push_constant, sizeof(SSILImportanceMapPushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_settings.quarter_screen_size.x, p_settings.quarter_screen_size.y, 1);
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+
+ RD::get_singleton()->draw_command_end_label(); // Importance Map
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_GATHER_ADAPTIVE]);
+ } else {
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[SSIL_GATHER]);
+ }
+
+ gather_ssil(compute_list, p_ssil_slices, p_edges_slices, p_settings, false, r_gather_uniform_set, r_importance_map_uniform_set, r_projection_uniform_set);
+ RD::get_singleton()->draw_command_end_label(); //Gather
+ }
+
+ {
+ RD::get_singleton()->draw_command_begin_label("Edge Aware Blur");
+ ssil.blur_push_constant.edge_sharpness = 1.0 - p_settings.sharpness;
+ ssil.blur_push_constant.half_screen_pixel_size[0] = 1.0 / p_settings.half_screen_size.x;
+ ssil.blur_push_constant.half_screen_pixel_size[1] = 1.0 / p_settings.half_screen_size.y;
+
+ int blur_passes = p_settings.quality > RS::ENV_SSIL_QUALITY_VERY_LOW ? p_settings.blur_passes : 1;
+
+ for (int pass = 0; pass < blur_passes; pass++) {
+ int blur_pipeline = SSIL_BLUR_PASS;
+ if (p_settings.quality > RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ blur_pipeline = SSIL_BLUR_PASS_SMART;
+ if (pass < blur_passes - 2) {
+ blur_pipeline = SSIL_BLUR_PASS_WIDE;
+ }
+ }
+
+ for (int i = 0; i < 4; i++) {
+ if ((p_settings.quality == RS::ENV_SSIL_QUALITY_VERY_LOW) && ((i == 1) || (i == 2))) {
+ continue;
+ }
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[blur_pipeline]);
+ if (pass % 2 == 0) {
+ if (p_settings.quality == RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ssil_slices[i]), 0);
+ } else {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ssil_slices[i], ss_effects.mirror_sampler), 0);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_ssil_pong_slices[i]), 1);
+ } else {
+ if (p_settings.quality == RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ssil_pong_slices[i]), 0);
+ } else {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture_and_sampler(p_ssil_pong_slices[i], ss_effects.mirror_sampler), 0);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_ssil_slices[i]), 1);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_edges_slices[i]), 2);
+
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssil.blur_push_constant, sizeof(SSILBlurPushConstant));
+
+ int x_groups = (p_settings.full_screen_size.x >> (p_settings.half_size ? 2 : 1));
+ int y_groups = (p_settings.full_screen_size.y >> (p_settings.half_size ? 2 : 1));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, x_groups, y_groups, 1);
+ if (p_settings.quality > RS::ENV_SSIL_QUALITY_VERY_LOW) {
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ }
+ }
+ }
+
+ RD::get_singleton()->draw_command_end_label(); // Blur
+ }
+
+ {
+ RD::get_singleton()->draw_command_begin_label("Interleave Buffers");
+ ssil.interleave_push_constant.inv_sharpness = 1.0 - p_settings.sharpness;
+ ssil.interleave_push_constant.pixel_size[0] = 1.0 / p_settings.full_screen_size.x;
+ ssil.interleave_push_constant.pixel_size[1] = 1.0 / p_settings.full_screen_size.y;
+ ssil.interleave_push_constant.size_modifier = uint32_t(p_settings.half_size ? 4 : 2);
+
+ int interleave_pipeline = SSIL_INTERLEAVE_HALF;
+ if (p_settings.quality == RS::ENV_SSIL_QUALITY_LOW) {
+ interleave_pipeline = SSIL_INTERLEAVE;
+ } else if (p_settings.quality >= RS::ENV_SSIL_QUALITY_MEDIUM) {
+ interleave_pipeline = SSIL_INTERLEAVE_SMART;
+ }
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, ssil.pipelines[interleave_pipeline]);
+
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_destination), 0);
+
+ if (p_settings.quality > RS::ENV_SSIL_QUALITY_VERY_LOW && p_settings.blur_passes % 2 == 0) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ssil), 1);
+ } else {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_ssil_pong), 1);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_edges), 2);
+
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &ssil.interleave_push_constant, sizeof(SSILInterleavePushConstant));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_settings.full_screen_size.x, p_settings.full_screen_size.y, 1);
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ RD::get_singleton()->draw_command_end_label(); // Interleave
+ }
+
+ RD::get_singleton()->draw_command_end_label(); // SSIL
+
+ RD::get_singleton()->compute_list_end(RD::BARRIER_MASK_NO_BARRIER);
+
+ int zero[1] = { 0 };
+ RD::get_singleton()->buffer_update(ssil.importance_map_load_counter, 0, sizeof(uint32_t), &zero, 0); //no barrier
+}
+
void EffectsRD::roughness_limit(RID p_source_normal, RID p_roughness, const Size2i &p_size, float p_curve) {
roughness_limiter.push_constant.screen_size[0] = p_size.x;
roughness_limiter.push_constant.screen_size[1] = p_size.y;
@@ -1678,7 +1882,7 @@ void EffectsRD::cubemap_roughness(RID p_source_rd_texture, RID p_dest_texture, u
memset(&roughness.push_constant, 0, sizeof(CubemapRoughnessPushConstant));
roughness.push_constant.face_id = p_face_id > 9 ? 0 : p_face_id;
- roughness.push_constant.roughness = p_roughness;
+ roughness.push_constant.roughness = p_roughness * p_roughness; // Shader expects roughness, not perceptual roughness, so multiply before passing in.
roughness.push_constant.sample_count = p_sample_count;
roughness.push_constant.use_direct_write = p_roughness == 0.0;
roughness.push_constant.face_size = p_size;
@@ -1686,7 +1890,7 @@ void EffectsRD::cubemap_roughness(RID p_source_rd_texture, RID p_dest_texture, u
RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, roughness.compute_pipeline);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_source_rd_texture), 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_compute_uniform_set_from_texture(p_source_rd_texture, true), 0);
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, _get_uniform_set_from_image(p_dest_texture), 1);
RD::get_singleton()->compute_list_set_push_constant(compute_list, &roughness.push_constant, sizeof(CubemapRoughnessPushConstant));
@@ -1706,7 +1910,7 @@ void EffectsRD::cubemap_roughness_raster(RID p_source_rd_texture, RID p_dest_fra
memset(&roughness.push_constant, 0, sizeof(CubemapRoughnessPushConstant));
roughness.push_constant.face_id = p_face_id;
- roughness.push_constant.roughness = p_roughness;
+ roughness.push_constant.roughness = p_roughness * p_roughness; // Shader expects roughness, not perceptual roughness, so multiply before passing in.
roughness.push_constant.sample_count = p_sample_count;
roughness.push_constant.use_direct_write = p_roughness == 0.0;
roughness.push_constant.face_size = p_size;
@@ -1769,7 +1973,7 @@ void EffectsRD::cubemap_filter(RID p_source_cubemap, Vector<RID> p_dest_cubemap,
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = i;
- u.ids.push_back(p_dest_cubemap[i]);
+ u.append_id(p_dest_cubemap[i]);
uniforms.push_back(u);
}
if (RD::get_singleton()->uniform_set_is_valid(filter.image_uniform_set)) {
@@ -1977,8 +2181,8 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
Vector<String> copy_modes;
copy_modes.push_back("\n#define MODE_GAUSSIAN_BLUR\n");
copy_modes.push_back("\n#define MODE_GAUSSIAN_BLUR\n#define DST_IMAGE_8BIT\n");
- copy_modes.push_back("\n#define MODE_GAUSSIAN_GLOW\n");
- copy_modes.push_back("\n#define MODE_GAUSSIAN_GLOW\n#define GLOW_USE_AUTO_EXPOSURE\n");
+ copy_modes.push_back("\n#define MODE_GAUSSIAN_BLUR\n#define MODE_GLOW\n");
+ copy_modes.push_back("\n#define MODE_GAUSSIAN_BLUR\n#define MODE_GLOW\n#define GLOW_USE_AUTO_EXPOSURE\n");
copy_modes.push_back("\n#define MODE_SIMPLE_COPY\n");
copy_modes.push_back("\n#define MODE_SIMPLE_COPY\n#define DST_IMAGE_8BIT\n");
copy_modes.push_back("\n#define MODE_SIMPLE_COPY_DEPTH\n");
@@ -2013,15 +2217,26 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
copy_modes.push_back("\n");
copy_modes.push_back("\n#define MODE_PANORAMA_TO_DP\n");
copy_modes.push_back("\n#define MODE_TWO_SOURCES\n");
+ copy_modes.push_back("\n#define MULTIVIEW\n");
+ copy_modes.push_back("\n#define MULTIVIEW\n#define MODE_TWO_SOURCES\n");
copy_to_fb.shader.initialize(copy_modes);
+ if (!RendererCompositorRD::singleton->is_xr_enabled()) {
+ copy_to_fb.shader.set_variant_enabled(COPY_TO_FB_MULTIVIEW, false);
+ copy_to_fb.shader.set_variant_enabled(COPY_TO_FB_MULTIVIEW_WITH_DEPTH, false);
+ }
+
copy_to_fb.shader_version = copy_to_fb.shader.version_create();
//use additive
for (int i = 0; i < COPY_TO_FB_MAX; i++) {
- copy_to_fb.pipelines[i].setup(copy_to_fb.shader.version_get_shader(copy_to_fb.shader_version, i), RD::RENDER_PRIMITIVE_TRIANGLES, RD::PipelineRasterizationState(), RD::PipelineMultisampleState(), RD::PipelineDepthStencilState(), RD::PipelineColorBlendState::create_disabled(), 0);
+ if (copy_to_fb.shader.is_variant_enabled(i)) {
+ copy_to_fb.pipelines[i].setup(copy_to_fb.shader.version_get_shader(copy_to_fb.shader_version, i), RD::RENDER_PRIMITIVE_TRIANGLES, RD::PipelineRasterizationState(), RD::PipelineMultisampleState(), RD::PipelineDepthStencilState(), RD::PipelineColorBlendState::create_disabled(), 0);
+ } else {
+ copy_to_fb.pipelines[i].clear();
+ }
}
}
@@ -2047,46 +2262,6 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
}
}
- {
- // Initialize tonemapper
- Vector<String> tonemap_modes;
- tonemap_modes.push_back("\n");
- tonemap_modes.push_back("\n#define USE_GLOW_FILTER_BICUBIC\n");
- tonemap_modes.push_back("\n#define USE_1D_LUT\n");
- tonemap_modes.push_back("\n#define USE_GLOW_FILTER_BICUBIC\n#define USE_1D_LUT\n");
- tonemap_modes.push_back("\n#define SUBPASS\n");
- tonemap_modes.push_back("\n#define SUBPASS\n#define USE_1D_LUT\n");
-
- // multiview versions of our shaders
- tonemap_modes.push_back("\n#define MULTIVIEW\n");
- tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_GLOW_FILTER_BICUBIC\n");
- tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_1D_LUT\n");
- tonemap_modes.push_back("\n#define MULTIVIEW\n#define USE_GLOW_FILTER_BICUBIC\n#define USE_1D_LUT\n");
- tonemap_modes.push_back("\n#define MULTIVIEW\n#define SUBPASS\n");
- tonemap_modes.push_back("\n#define MULTIVIEW\n#define SUBPASS\n#define USE_1D_LUT\n");
-
- tonemap.shader.initialize(tonemap_modes);
-
- if (!RendererCompositorRD::singleton->is_xr_enabled()) {
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_NORMAL_MULTIVIEW, false);
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_BICUBIC_GLOW_FILTER_MULTIVIEW, false);
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_1D_LUT_MULTIVIEW, false);
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT_MULTIVIEW, false);
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_SUBPASS_MULTIVIEW, false);
- tonemap.shader.set_variant_enabled(TONEMAP_MODE_SUBPASS_1D_LUT_MULTIVIEW, false);
- }
-
- tonemap.shader_version = tonemap.shader.version_create();
-
- for (int i = 0; i < TONEMAP_MODE_MAX; i++) {
- if (tonemap.shader.is_variant_enabled(i)) {
- tonemap.pipelines[i].setup(tonemap.shader.version_get_shader(tonemap.shader_version, i), RD::RENDER_PRIMITIVE_TRIANGLES, RD::PipelineRasterizationState(), RD::PipelineMultisampleState(), RD::PipelineDepthStencilState(), RD::PipelineColorBlendState::create_disabled(), 0);
- } else {
- tonemap.pipelines[i].clear();
- }
- }
- }
-
if (prefer_raster_effects) {
Vector<String> luminance_reduce_modes;
luminance_reduce_modes.push_back("\n#define FIRST_PASS\n"); // LUMINANCE_REDUCE_FRAGMENT_FIRST
@@ -2173,63 +2348,36 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
}
if (!prefer_raster_effects) {
- // Initialize ssao
-
- RD::SamplerState sampler;
- sampler.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler.min_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler.max_lod = 4;
-
- ssao.mirror_sampler = RD::get_singleton()->sampler_create(sampler);
-
- uint32_t pipeline = 0;
{
- Vector<String> ssao_modes;
- ssao_modes.push_back("\n");
- ssao_modes.push_back("\n#define USE_HALF_SIZE\n");
- ssao_modes.push_back("\n#define GENERATE_MIPS\n");
- ssao_modes.push_back("\n#define GENERATE_MIPS\n#define USE_HALF_SIZE");
- ssao_modes.push_back("\n#define USE_HALF_BUFFERS\n");
- ssao_modes.push_back("\n#define USE_HALF_BUFFERS\n#define USE_HALF_SIZE");
-
- ssao.downsample_shader.initialize(ssao_modes);
-
- ssao.downsample_shader_version = ssao.downsample_shader.version_create();
-
- for (int i = 0; i <= SSAO_DOWNSAMPLE_HALF_RES_HALF; i++) {
- ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.downsample_shader.version_get_shader(ssao.downsample_shader_version, i));
- pipeline++;
- }
- }
- {
- Vector<String> ssao_modes;
-
- ssao_modes.push_back("\n");
- ssao_modes.push_back("\n#define SSAO_BASE\n");
- ssao_modes.push_back("\n#define ADAPTIVE\n");
-
- ssao.gather_shader.initialize(ssao_modes);
-
- ssao.gather_shader_version = ssao.gather_shader.version_create();
-
- for (int i = SSAO_GATHER; i <= SSAO_GATHER_ADAPTIVE; i++) {
- ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.gather_shader.version_get_shader(ssao.gather_shader_version, i - SSAO_GATHER));
- pipeline++;
+ // Initialize depth buffer for screen space effects
+ Vector<String> downsampler_modes;
+ downsampler_modes.push_back("\n");
+ downsampler_modes.push_back("\n#define USE_HALF_SIZE\n");
+ downsampler_modes.push_back("\n#define GENERATE_MIPS\n");
+ downsampler_modes.push_back("\n#define GENERATE_MIPS\n#define USE_HALF_SIZE\n");
+ downsampler_modes.push_back("\n#define USE_HALF_BUFFERS\n");
+ downsampler_modes.push_back("\n#define USE_HALF_BUFFERS\n#define USE_HALF_SIZE\n");
+ downsampler_modes.push_back("\n#define GENERATE_MIPS\n#define GENERATE_FULL_MIPS");
+
+ ss_effects.downsample_shader.initialize(downsampler_modes);
+
+ ss_effects.downsample_shader_version = ss_effects.downsample_shader.version_create();
+
+ for (int i = 0; i < SS_EFFECTS_MAX; i++) {
+ ss_effects.pipelines[i] = RD::get_singleton()->compute_pipeline_create(ss_effects.downsample_shader.version_get_shader(ss_effects.downsample_shader_version, i));
}
- ssao.gather_constants_buffer = RD::get_singleton()->uniform_buffer_create(sizeof(SSAOGatherConstants));
- SSAOGatherConstants gather_constants;
+ ss_effects.gather_constants_buffer = RD::get_singleton()->uniform_buffer_create(sizeof(SSEffectsGatherConstants));
+ SSEffectsGatherConstants gather_constants;
const int sub_pass_count = 5;
for (int pass = 0; pass < 4; pass++) {
for (int subPass = 0; subPass < sub_pass_count; subPass++) {
int a = pass;
+ int b = subPass;
+
int spmap[5]{ 0, 1, 4, 3, 2 };
- int b = spmap[subPass];
+ b = spmap[subPass];
float ca, sa;
float angle0 = (float(a) + float(b) / float(sub_pass_count)) * Math_PI * 0.5f;
@@ -2246,72 +2394,105 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
}
}
- RD::get_singleton()->buffer_update(ssao.gather_constants_buffer, 0, sizeof(SSAOGatherConstants), &gather_constants);
+ RD::get_singleton()->buffer_update(ss_effects.gather_constants_buffer, 0, sizeof(SSEffectsGatherConstants), &gather_constants);
}
+
{
- Vector<String> ssao_modes;
- ssao_modes.push_back("\n#define GENERATE_MAP\n");
- ssao_modes.push_back("\n#define PROCESS_MAPA\n");
- ssao_modes.push_back("\n#define PROCESS_MAPB\n");
+ // Initialize ssao
- ssao.importance_map_shader.initialize(ssao_modes);
+ RD::SamplerState sampler;
+ sampler.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler.max_lod = 4;
- ssao.importance_map_shader_version = ssao.importance_map_shader.version_create();
+ ss_effects.mirror_sampler = RD::get_singleton()->sampler_create(sampler);
- for (int i = SSAO_GENERATE_IMPORTANCE_MAP; i <= SSAO_PROCESS_IMPORTANCE_MAPB; i++) {
- ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.importance_map_shader.version_get_shader(ssao.importance_map_shader_version, i - SSAO_GENERATE_IMPORTANCE_MAP));
+ uint32_t pipeline = 0;
+ {
+ Vector<String> ssao_modes;
- pipeline++;
- }
- ssao.importance_map_load_counter = RD::get_singleton()->storage_buffer_create(sizeof(uint32_t));
- int zero[1] = { 0 };
- RD::get_singleton()->buffer_update(ssao.importance_map_load_counter, 0, sizeof(uint32_t), &zero);
- RD::get_singleton()->set_resource_name(ssao.importance_map_load_counter, "Importance Map Load Counter");
+ ssao_modes.push_back("\n");
+ ssao_modes.push_back("\n#define SSAO_BASE\n");
+ ssao_modes.push_back("\n#define ADAPTIVE\n");
- Vector<RD::Uniform> uniforms;
+ ssao.gather_shader.initialize(ssao_modes);
+
+ ssao.gather_shader_version = ssao.gather_shader.version_create();
+
+ for (int i = 0; i <= SSAO_GATHER_ADAPTIVE; i++) {
+ ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.gather_shader.version_get_shader(ssao.gather_shader_version, i));
+ pipeline++;
+ }
+ }
{
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(ssao.importance_map_load_counter);
- uniforms.push_back(u);
+ Vector<String> ssao_modes;
+ ssao_modes.push_back("\n#define GENERATE_MAP\n");
+ ssao_modes.push_back("\n#define PROCESS_MAPA\n");
+ ssao_modes.push_back("\n#define PROCESS_MAPB\n");
+
+ ssao.importance_map_shader.initialize(ssao_modes);
+
+ ssao.importance_map_shader_version = ssao.importance_map_shader.version_create();
+
+ for (int i = SSAO_GENERATE_IMPORTANCE_MAP; i <= SSAO_PROCESS_IMPORTANCE_MAPB; i++) {
+ ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.importance_map_shader.version_get_shader(ssao.importance_map_shader_version, i - SSAO_GENERATE_IMPORTANCE_MAP));
+
+ pipeline++;
+ }
+ ssao.importance_map_load_counter = RD::get_singleton()->storage_buffer_create(sizeof(uint32_t));
+ int zero[1] = { 0 };
+ RD::get_singleton()->buffer_update(ssao.importance_map_load_counter, 0, sizeof(uint32_t), &zero);
+ RD::get_singleton()->set_resource_name(ssao.importance_map_load_counter, "Importance Map Load Counter");
+
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(ssao.importance_map_load_counter);
+ uniforms.push_back(u);
+ }
+ ssao.counter_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.importance_map_shader.version_get_shader(ssao.importance_map_shader_version, 2), 2);
+ RD::get_singleton()->set_resource_name(ssao.counter_uniform_set, "Load Counter Uniform Set");
}
- ssao.counter_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssao.importance_map_shader.version_get_shader(ssao.importance_map_shader_version, 2), 2);
- RD::get_singleton()->set_resource_name(ssao.counter_uniform_set, "Load Counter Uniform Set");
- }
- {
- Vector<String> ssao_modes;
- ssao_modes.push_back("\n#define MODE_NON_SMART\n");
- ssao_modes.push_back("\n#define MODE_SMART\n");
- ssao_modes.push_back("\n#define MODE_WIDE\n");
+ {
+ Vector<String> ssao_modes;
+ ssao_modes.push_back("\n#define MODE_NON_SMART\n");
+ ssao_modes.push_back("\n#define MODE_SMART\n");
+ ssao_modes.push_back("\n#define MODE_WIDE\n");
- ssao.blur_shader.initialize(ssao_modes);
+ ssao.blur_shader.initialize(ssao_modes);
- ssao.blur_shader_version = ssao.blur_shader.version_create();
+ ssao.blur_shader_version = ssao.blur_shader.version_create();
- for (int i = SSAO_BLUR_PASS; i <= SSAO_BLUR_PASS_WIDE; i++) {
- ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.blur_shader.version_get_shader(ssao.blur_shader_version, i - SSAO_BLUR_PASS));
+ for (int i = SSAO_BLUR_PASS; i <= SSAO_BLUR_PASS_WIDE; i++) {
+ ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.blur_shader.version_get_shader(ssao.blur_shader_version, i - SSAO_BLUR_PASS));
- pipeline++;
+ pipeline++;
+ }
}
- }
- {
- Vector<String> ssao_modes;
- ssao_modes.push_back("\n#define MODE_NON_SMART\n");
- ssao_modes.push_back("\n#define MODE_SMART\n");
- ssao_modes.push_back("\n#define MODE_HALF\n");
-
- ssao.interleave_shader.initialize(ssao_modes);
-
- ssao.interleave_shader_version = ssao.interleave_shader.version_create();
- for (int i = SSAO_INTERLEAVE; i <= SSAO_INTERLEAVE_HALF; i++) {
- ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.interleave_shader.version_get_shader(ssao.interleave_shader_version, i - SSAO_INTERLEAVE));
- RD::get_singleton()->set_resource_name(ssao.pipelines[pipeline], "Interleave Pipeline " + itos(i));
- pipeline++;
+ {
+ Vector<String> ssao_modes;
+ ssao_modes.push_back("\n#define MODE_NON_SMART\n");
+ ssao_modes.push_back("\n#define MODE_SMART\n");
+ ssao_modes.push_back("\n#define MODE_HALF\n");
+
+ ssao.interleave_shader.initialize(ssao_modes);
+
+ ssao.interleave_shader_version = ssao.interleave_shader.version_create();
+ for (int i = SSAO_INTERLEAVE; i <= SSAO_INTERLEAVE_HALF; i++) {
+ ssao.pipelines[pipeline] = RD::get_singleton()->compute_pipeline_create(ssao.interleave_shader.version_get_shader(ssao.interleave_shader_version, i - SSAO_INTERLEAVE));
+ RD::get_singleton()->set_resource_name(ssao.pipelines[pipeline], "Interleave Pipeline " + itos(i));
+ pipeline++;
+ }
}
- }
- ERR_FAIL_COND(pipeline != SSAO_MAX);
+ ERR_FAIL_COND(pipeline != SSAO_MAX);
+ }
}
if (!prefer_raster_effects) {
@@ -2387,7 +2568,7 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 0;
- u.ids.push_back(filter.coefficient_buffer);
+ u.append_id(filter.coefficient_buffer);
uniforms.push_back(u);
}
filter.uniform_set = RD::get_singleton()->uniform_set_create(uniforms, filter.raster_shader.version_get_shader(filter.shader_version, filter.use_high_quality ? 0 : 1), 1);
@@ -2405,7 +2586,7 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 0;
- u.ids.push_back(filter.coefficient_buffer);
+ u.append_id(filter.coefficient_buffer);
uniforms.push_back(u);
}
filter.uniform_set = RD::get_singleton()->uniform_set_create(uniforms, filter.compute_shader.version_get_shader(filter.shader_version, filter.use_high_quality ? 0 : 1), 1);
@@ -2504,6 +2685,79 @@ EffectsRD::EffectsRD(bool p_prefer_raster_effects) {
}
{
+ Vector<String> ssil_modes;
+ ssil_modes.push_back("\n");
+ ssil_modes.push_back("\n#define SSIL_BASE\n");
+ ssil_modes.push_back("\n#define ADAPTIVE\n");
+
+ ssil.gather_shader.initialize(ssil_modes);
+
+ ssil.gather_shader_version = ssil.gather_shader.version_create();
+
+ for (int i = SSIL_GATHER; i <= SSIL_GATHER_ADAPTIVE; i++) {
+ ssil.pipelines[i] = RD::get_singleton()->compute_pipeline_create(ssil.gather_shader.version_get_shader(ssil.gather_shader_version, i));
+ }
+ ssil.projection_uniform_buffer = RD::get_singleton()->uniform_buffer_create(sizeof(SSILProjectionUniforms));
+ }
+
+ {
+ Vector<String> ssil_modes;
+ ssil_modes.push_back("\n#define GENERATE_MAP\n");
+ ssil_modes.push_back("\n#define PROCESS_MAPA\n");
+ ssil_modes.push_back("\n#define PROCESS_MAPB\n");
+
+ ssil.importance_map_shader.initialize(ssil_modes);
+
+ ssil.importance_map_shader_version = ssil.importance_map_shader.version_create();
+
+ for (int i = SSIL_GENERATE_IMPORTANCE_MAP; i <= SSIL_PROCESS_IMPORTANCE_MAPB; i++) {
+ ssil.pipelines[i] = RD::get_singleton()->compute_pipeline_create(ssil.importance_map_shader.version_get_shader(ssil.importance_map_shader_version, i - SSIL_GENERATE_IMPORTANCE_MAP));
+ }
+ ssil.importance_map_load_counter = RD::get_singleton()->storage_buffer_create(sizeof(uint32_t));
+ int zero[1] = { 0 };
+ RD::get_singleton()->buffer_update(ssil.importance_map_load_counter, 0, sizeof(uint32_t), &zero);
+ RD::get_singleton()->set_resource_name(ssil.importance_map_load_counter, "Importance Map Load Counter");
+
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(ssil.importance_map_load_counter);
+ uniforms.push_back(u);
+ }
+ ssil.counter_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, ssil.importance_map_shader.version_get_shader(ssil.importance_map_shader_version, 2), 2);
+ RD::get_singleton()->set_resource_name(ssil.counter_uniform_set, "Load Counter Uniform Set");
+ }
+ {
+ Vector<String> ssil_modes;
+ ssil_modes.push_back("\n#define MODE_NON_SMART\n");
+ ssil_modes.push_back("\n#define MODE_SMART\n");
+ ssil_modes.push_back("\n#define MODE_WIDE\n");
+
+ ssil.blur_shader.initialize(ssil_modes);
+
+ ssil.blur_shader_version = ssil.blur_shader.version_create();
+ for (int i = SSIL_BLUR_PASS; i <= SSIL_BLUR_PASS_WIDE; i++) {
+ ssil.pipelines[i] = RD::get_singleton()->compute_pipeline_create(ssil.blur_shader.version_get_shader(ssil.blur_shader_version, i - SSIL_BLUR_PASS));
+ }
+ }
+
+ {
+ Vector<String> ssil_modes;
+ ssil_modes.push_back("\n#define MODE_NON_SMART\n");
+ ssil_modes.push_back("\n#define MODE_SMART\n");
+ ssil_modes.push_back("\n#define MODE_HALF\n");
+
+ ssil.interleave_shader.initialize(ssil_modes);
+
+ ssil.interleave_shader_version = ssil.interleave_shader.version_create();
+ for (int i = SSIL_INTERLEAVE; i <= SSIL_INTERLEAVE_HALF; i++) {
+ ssil.pipelines[i] = RD::get_singleton()->compute_pipeline_create(ssil.interleave_shader.version_get_shader(ssil.interleave_shader_version, i - SSIL_INTERLEAVE));
+ }
+ }
+
+ {
Vector<String> resolve_modes;
resolve_modes.push_back("\n#define MODE_RESOLVE_GI\n");
resolve_modes.push_back("\n#define MODE_RESOLVE_GI\n#define VOXEL_GI_RESOLVE\n");
@@ -2600,23 +2854,28 @@ EffectsRD::~EffectsRD() {
copy.shader.version_free(copy.shader_version);
resolve.shader.version_free(resolve.shader_version);
specular_merge.shader.version_free(specular_merge.shader_version);
+ ss_effects.downsample_shader.version_free(ss_effects.downsample_shader_version);
ssao.blur_shader.version_free(ssao.blur_shader_version);
ssao.gather_shader.version_free(ssao.gather_shader_version);
- ssao.downsample_shader.version_free(ssao.downsample_shader_version);
ssao.interleave_shader.version_free(ssao.interleave_shader_version);
ssao.importance_map_shader.version_free(ssao.importance_map_shader_version);
+ ssil.blur_shader.version_free(ssil.blur_shader_version);
+ ssil.gather_shader.version_free(ssil.gather_shader_version);
+ ssil.interleave_shader.version_free(ssil.interleave_shader_version);
+ ssil.importance_map_shader.version_free(ssil.importance_map_shader_version);
roughness_limiter.shader.version_free(roughness_limiter.shader_version);
ssr.shader.version_free(ssr.shader_version);
ssr_filter.shader.version_free(ssr_filter.shader_version);
ssr_scale.shader.version_free(ssr_scale.shader_version);
sss.shader.version_free(sss.shader_version);
- RD::get_singleton()->free(ssao.mirror_sampler);
- RD::get_singleton()->free(ssao.gather_constants_buffer);
+ RD::get_singleton()->free(ss_effects.mirror_sampler);
+ RD::get_singleton()->free(ss_effects.gather_constants_buffer);
RD::get_singleton()->free(ssao.importance_map_load_counter);
+ RD::get_singleton()->free(ssil.importance_map_load_counter);
+ RD::get_singleton()->free(ssil.projection_uniform_buffer);
}
copy_to_fb.shader.version_free(copy_to_fb.shader_version);
cube_to_dp.shader.version_free(cube_to_dp.shader_version);
sort.shader.version_free(sort.shader_version);
- tonemap.shader.version_free(tonemap.shader_version);
}
diff --git a/servers/rendering/renderer_rd/effects_rd.h b/servers/rendering/renderer_rd/effects_rd.h
index 6037127e82..8174e30238 100644
--- a/servers/rendering/renderer_rd/effects_rd.h
+++ b/servers/rendering/renderer_rd/effects_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -55,13 +55,16 @@
#include "servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/sort.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/specular_merge.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/ss_effects_downsample.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/ssao.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/ssao_blur.glsl.gen.h"
-#include "servers/rendering/renderer_rd/shaders/ssao_downsample.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/ssao_interleave.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/ssil.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/ssil_blur.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/ssil_importance_map.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/ssil_interleave.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl.gen.h"
-#include "servers/rendering/renderer_rd/shaders/tonemap.glsl.gen.h"
#include "servers/rendering/renderer_scene_render.h"
#include "servers/rendering_server.h"
@@ -199,6 +202,9 @@ private:
COPY_TO_FB_COPY,
COPY_TO_FB_COPY_PANORAMA_TO_DP,
COPY_TO_FB_COPY2,
+
+ COPY_TO_FB_MULTIVIEW,
+ COPY_TO_FB_MULTIVIEW_WITH_DEPTH,
COPY_TO_FB_MAX,
};
@@ -241,61 +247,6 @@ private:
PipelineCacheRD raster_pipeline;
} roughness;
- enum TonemapMode {
- TONEMAP_MODE_NORMAL,
- TONEMAP_MODE_BICUBIC_GLOW_FILTER,
- TONEMAP_MODE_1D_LUT,
- TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT,
- TONEMAP_MODE_SUBPASS,
- TONEMAP_MODE_SUBPASS_1D_LUT,
-
- TONEMAP_MODE_NORMAL_MULTIVIEW,
- TONEMAP_MODE_BICUBIC_GLOW_FILTER_MULTIVIEW,
- TONEMAP_MODE_1D_LUT_MULTIVIEW,
- TONEMAP_MODE_BICUBIC_GLOW_FILTER_1D_LUT_MULTIVIEW,
- TONEMAP_MODE_SUBPASS_MULTIVIEW,
- TONEMAP_MODE_SUBPASS_1D_LUT_MULTIVIEW,
-
- TONEMAP_MODE_MAX
- };
-
- struct TonemapPushConstant {
- float bcs[3]; // 12 - 12
- uint32_t use_bcs; // 4 - 16
-
- uint32_t use_glow; // 4 - 20
- uint32_t use_auto_exposure; // 4 - 24
- uint32_t use_color_correction; // 4 - 28
- uint32_t tonemapper; // 4 - 32
-
- uint32_t glow_texture_size[2]; // 8 - 40
- float glow_intensity; // 4 - 44
- uint32_t pad3; // 4 - 48
-
- uint32_t glow_mode; // 4 - 52
- float glow_levels[7]; // 28 - 80
-
- float exposure; // 4 - 84
- float white; // 4 - 88
- float auto_exposure_grey; // 4 - 92
- float luminance_multiplier; // 4 - 96
-
- float pixel_size[2]; // 8 - 104
- uint32_t use_fxaa; // 4 - 108
- uint32_t use_debanding; // 4 - 112
- };
-
- /* tonemap actually writes to a framebuffer, which is
- * better to do using the raster pipeline rather than
- * compute, as that framebuffer might be in different formats
- */
- struct Tonemap {
- TonemapPushConstant push_constant;
- TonemapShaderRD shader;
- RID shader_version;
- PipelineCacheRD pipelines[TONEMAP_MODE_MAX];
- } tonemap;
-
enum LuminanceReduceMode {
LUMINANCE_REDUCE_READ,
LUMINANCE_REDUCE,
@@ -399,13 +350,47 @@ private:
PipelineCacheRD raster_pipelines[BOKEH_MAX];
} bokeh;
+ struct SSEffectsDownsamplePushConstant {
+ float pixel_size[2];
+ float z_far;
+ float z_near;
+ uint32_t orthogonal;
+ float radius_sq;
+ uint32_t pad[2];
+ };
+
+ enum SSEffectsMode {
+ SS_EFFECTS_DOWNSAMPLE,
+ SS_EFFECTS_DOWNSAMPLE_HALF_RES,
+ SS_EFFECTS_DOWNSAMPLE_MIPMAP,
+ SS_EFFECTS_DOWNSAMPLE_MIPMAP_HALF_RES,
+ SS_EFFECTS_DOWNSAMPLE_HALF,
+ SS_EFFECTS_DOWNSAMPLE_HALF_RES_HALF,
+ SS_EFFECTS_DOWNSAMPLE_FULL_MIPS,
+ SS_EFFECTS_MAX
+ };
+
+ struct SSEffectsGatherConstants {
+ float rotation_matrices[80]; //5 vec4s * 4
+ };
+
+ struct SSEffects {
+ SSEffectsDownsamplePushConstant downsample_push_constant;
+ SsEffectsDownsampleShaderRD downsample_shader;
+ RID downsample_shader_version;
+ RID downsample_uniform_set;
+ bool used_half_size_last_frame = false;
+ bool used_mips_last_frame = false;
+ bool used_full_mips_last_frame = false;
+
+ RID gather_constants_buffer;
+
+ RID mirror_sampler;
+
+ RID pipelines[SS_EFFECTS_MAX];
+ } ss_effects;
+
enum SSAOMode {
- SSAO_DOWNSAMPLE,
- SSAO_DOWNSAMPLE_HALF_RES,
- SSAO_DOWNSAMPLE_MIPMAP,
- SSAO_DOWNSAMPLE_MIPMAP_HALF_RES,
- SSAO_DOWNSAMPLE_HALF,
- SSAO_DOWNSAMPLE_HALF_RES_HALF,
SSAO_GATHER,
SSAO_GATHER_BASE,
SSAO_GATHER_ADAPTIVE,
@@ -421,15 +406,6 @@ private:
SSAO_MAX
};
- struct SSAODownsamplePushConstant {
- float pixel_size[2];
- float z_far;
- float z_near;
- uint32_t orthogonal;
- float radius_sq;
- uint32_t pad[2];
- };
-
struct SSAOGatherPushConstant {
int32_t screen_size[2];
int pass;
@@ -455,7 +431,7 @@ private:
float horizon_angle_threshold;
float inv_radius_near_limit;
- bool is_orthogonal;
+ uint32_t is_orthogonal;
float neg_inv_radius;
float load_counter_avg_div;
float adaptive_sample_limit;
@@ -464,10 +440,6 @@ private:
float pass_uv_offset[2];
};
- struct SSAOGatherConstants {
- float rotation_matrices[80]; //5 vec4s * 4
- };
-
struct SSAOImportanceMapPushConstant {
float half_screen_pixel_size[2];
float intensity;
@@ -487,15 +459,9 @@ private:
};
struct SSAO {
- SSAODownsamplePushConstant downsample_push_constant;
- SsaoDownsampleShaderRD downsample_shader;
- RID downsample_shader_version;
-
SSAOGatherPushConstant gather_push_constant;
SsaoShaderRD gather_shader;
RID gather_shader_version;
- RID gather_constants_buffer;
- bool gather_initialized = false;
SSAOImportanceMapPushConstant importance_map_push_constant;
SsaoImportanceMapShaderRD importance_map_shader;
@@ -511,10 +477,104 @@ private:
SsaoInterleaveShaderRD interleave_shader;
RID interleave_shader_version;
- RID mirror_sampler;
RID pipelines[SSAO_MAX];
} ssao;
+ enum SSILMode {
+ SSIL_GATHER,
+ SSIL_GATHER_BASE,
+ SSIL_GATHER_ADAPTIVE,
+ SSIL_GENERATE_IMPORTANCE_MAP,
+ SSIL_PROCESS_IMPORTANCE_MAPA,
+ SSIL_PROCESS_IMPORTANCE_MAPB,
+ SSIL_BLUR_PASS,
+ SSIL_BLUR_PASS_SMART,
+ SSIL_BLUR_PASS_WIDE,
+ SSIL_INTERLEAVE,
+ SSIL_INTERLEAVE_SMART,
+ SSIL_INTERLEAVE_HALF,
+ SSIL_MAX
+ };
+
+ struct SSILGatherPushConstant {
+ int32_t screen_size[2];
+ int pass;
+ int quality;
+
+ float half_screen_pixel_size[2];
+ float half_screen_pixel_size_x025[2];
+
+ float NDC_to_view_mul[2];
+ float NDC_to_view_add[2];
+
+ float pad2[2];
+ float z_near;
+ float z_far;
+
+ float radius;
+ float intensity;
+ int size_multiplier;
+ int pad;
+
+ float fade_out_mul;
+ float fade_out_add;
+ float normal_rejection_amount;
+ float inv_radius_near_limit;
+
+ uint32_t is_orthogonal;
+ float neg_inv_radius;
+ float load_counter_avg_div;
+ float adaptive_sample_limit;
+
+ int32_t pass_coord_offset[2];
+ float pass_uv_offset[2];
+ };
+
+ struct SSILImportanceMapPushConstant {
+ float half_screen_pixel_size[2];
+ float intensity;
+ float pad;
+ };
+
+ struct SSILBlurPushConstant {
+ float edge_sharpness;
+ float pad;
+ float half_screen_pixel_size[2];
+ };
+
+ struct SSILInterleavePushConstant {
+ float inv_sharpness;
+ uint32_t size_modifier;
+ float pixel_size[2];
+ };
+
+ struct SSILProjectionUniforms {
+ float inv_last_frame_projection_matrix[16];
+ };
+
+ struct SSIL {
+ SSILGatherPushConstant gather_push_constant;
+ SsilShaderRD gather_shader;
+ RID gather_shader_version;
+ RID projection_uniform_buffer;
+
+ SSILImportanceMapPushConstant importance_map_push_constant;
+ SsilImportanceMapShaderRD importance_map_shader;
+ RID importance_map_shader_version;
+ RID importance_map_load_counter;
+ RID counter_uniform_set;
+
+ SSILBlurPushConstant blur_push_constant;
+ SsilBlurShaderRD blur_shader;
+ RID blur_shader_version;
+
+ SSILInterleavePushConstant interleave_push_constant;
+ SsilInterleaveShaderRD interleave_shader;
+ RID interleave_shader_version;
+
+ RID pipelines[SSIL_MAX];
+ } ssil;
+
struct RoughnessLimiterPushConstant {
int32_t screen_size[2];
float curve;
@@ -761,13 +821,13 @@ private:
}
};
+ Map<TexturePair, RID> texture_pair_to_uniform_set_cache;
Map<RID, RID> texture_to_compute_uniform_set_cache;
Map<TexturePair, RID> texture_pair_to_compute_uniform_set_cache;
Map<TexturePair, RID> image_pair_to_compute_uniform_set_cache;
Map<TextureSamplerPair, RID> texture_sampler_to_compute_uniform_set_cache;
RID _get_uniform_set_from_image(RID p_texture);
- RID _get_uniform_set_for_input(RID p_texture);
RID _get_uniform_set_from_texture(RID p_texture, bool p_use_mipmaps = false);
RID _get_compute_uniform_set_from_texture(RID p_texture, bool p_use_mipmaps = false);
RID _get_compute_uniform_set_from_texture_and_sampler(RID p_texture, RID p_sampler);
@@ -778,13 +838,13 @@ public:
bool get_prefer_raster_effects();
void fsr_upscale(RID p_source_rd_texture, RID p_secondary_texture, RID p_destination_texture, const Size2i &p_internal_size, const Size2i &p_size, float p_fsr_upscale_sharpness);
- void copy_to_fb_rect(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2i &p_rect, bool p_flip_y = false, bool p_force_luminance = false, bool p_alpha_to_zero = false, bool p_srgb = false, RID p_secondary = RID());
+ void copy_to_fb_rect(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2i &p_rect, bool p_flip_y = false, bool p_force_luminance = false, bool p_alpha_to_zero = false, bool p_srgb = false, RID p_secondary = RID(), bool p_multiview = false);
void copy_to_rect(RID p_source_rd_texture, RID p_dest_texture, const Rect2i &p_rect, bool p_flip_y = false, bool p_force_luminance = false, bool p_all_source = false, bool p_8_bit_dst = false, bool p_alpha_to_one = false);
void copy_cubemap_to_panorama(RID p_source_cube, RID p_dest_panorama, const Size2i &p_panorama_size, float p_lod, bool p_is_array);
void copy_depth_to_rect(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2i &p_rect, bool p_flip_y = false);
void copy_depth_to_rect_and_linearize(RID p_source_rd_texture, RID p_dest_texture, const Rect2i &p_rect, bool p_flip_y, float p_z_near, float p_z_far);
void copy_to_atlas_fb(RID p_source_rd_texture, RID p_dest_framebuffer, const Rect2 &p_uv_rect, RD::DrawListID p_draw_list, bool p_flip_y = false, bool p_panorama = false);
- void gaussian_blur(RID p_source_rd_texture, RID p_texture, RID p_back_texture, const Rect2i &p_region, bool p_8bit_dst = false);
+ void gaussian_blur(RID p_source_rd_texture, RID p_texture, const Rect2i &p_region, bool p_8bit_dst = false);
void set_color(RID p_dest_texture, const Color &p_color, const Rect2i &p_region, bool p_8bit_dst = false);
void gaussian_glow(RID p_source_rd_texture, RID p_back_texture, const Size2i &p_size, float p_strength = 1.0, bool p_high_quality = false, bool p_first_pass = false, float p_luminance_cap = 16.0, float p_exposure = 1.0, float p_bloom = 0.0, float p_hdr_bleed_threshold = 1.0, float p_hdr_bleed_scale = 1.0, RID p_auto_exposure = RID(), float p_auto_exposure_grey = 1.0);
void gaussian_glow_raster(RID p_source_rd_texture, RID p_framebuffer_half, RID p_rd_texture_half, RID p_dest_framebuffer, const Vector2 &p_pixel_size, float p_strength = 1.0, bool p_high_quality = false, bool p_first_pass = false, float p_luminance_cap = 16.0, float p_exposure = 1.0, float p_bloom = 0.0, float p_hdr_bleed_threshold = 1.0, float p_hdr_bleed_scale = 1.0, RID p_auto_exposure = RID(), float p_auto_exposure_grey = 1.0);
@@ -818,47 +878,6 @@ public:
void bokeh_dof(const BokehBuffers &p_buffers, bool p_dof_far, float p_dof_far_begin, float p_dof_far_size, bool p_dof_near, float p_dof_near_begin, float p_dof_near_size, float p_bokeh_size, RS::DOFBokehShape p_bokeh_shape, RS::DOFBlurQuality p_quality, bool p_use_jitter, float p_cam_znear, float p_cam_zfar, bool p_cam_orthogonal);
void bokeh_dof_raster(const BokehBuffers &p_buffers, bool p_dof_far, float p_dof_far_begin, float p_dof_far_size, bool p_dof_near, float p_dof_near_begin, float p_dof_near_size, float p_dof_blur_amount, RenderingServer::DOFBokehShape p_bokeh_shape, RS::DOFBlurQuality p_quality, float p_cam_znear, float p_cam_zfar, bool p_cam_orthogonal);
- struct TonemapSettings {
- bool use_glow = false;
- enum GlowMode {
- GLOW_MODE_ADD,
- GLOW_MODE_SCREEN,
- GLOW_MODE_SOFTLIGHT,
- GLOW_MODE_REPLACE,
- GLOW_MODE_MIX
- };
-
- GlowMode glow_mode = GLOW_MODE_ADD;
- float glow_intensity = 1.0;
- float glow_levels[7] = { 0.0, 0.0, 1.0, 0.0, 1.0, 0.0, 0.0 };
- Vector2i glow_texture_size;
- bool glow_use_bicubic_upscale = false;
- RID glow_texture;
-
- RS::EnvironmentToneMapper tonemap_mode = RS::ENV_TONE_MAPPER_LINEAR;
- float exposure = 1.0;
- float white = 1.0;
-
- bool use_auto_exposure = false;
- float auto_exposure_grey = 0.5;
- RID exposure_texture;
- float luminance_multiplier = 1.0;
-
- bool use_bcs = false;
- float brightness = 1.0;
- float contrast = 1.0;
- float saturation = 1.0;
-
- bool use_color_correction = false;
- bool use_1d_color_correction = false;
- RID color_correction_texture;
-
- bool use_fxaa = false;
- bool use_debanding = false;
- Vector2i texture_size;
- uint32_t view_count = 1;
- };
-
struct SSAOSettings {
float radius = 1.0;
float intensity = 2.0;
@@ -879,11 +898,31 @@ public:
Size2i quarter_screen_size = Size2i();
};
- void tonemapper(RID p_source_color, RID p_dst_framebuffer, const TonemapSettings &p_settings);
- void tonemapper(RD::DrawListID p_subpass_draw_list, RID p_source_color, RD::FramebufferFormatID p_dst_format_id, const TonemapSettings &p_settings);
+ struct SSILSettings {
+ float radius = 1.0;
+ float intensity = 2.0;
+ float sharpness = 0.98;
+ float normal_rejection = 1.0;
+
+ RS::EnvironmentSSILQuality quality = RS::ENV_SSIL_QUALITY_MEDIUM;
+ bool half_size = true;
+ float adaptive_target = 0.5;
+ int blur_passes = 4;
+ float fadeout_from = 50.0;
+ float fadeout_to = 300.0;
+
+ Size2i full_screen_size = Size2i();
+ Size2i half_screen_size = Size2i();
+ Size2i quarter_screen_size = Size2i();
+ };
+
+ void downsample_depth(RID p_depth_buffer, const Vector<RID> &p_depth_mipmaps, RS::EnvironmentSSAOQuality p_ssao_quality, RS::EnvironmentSSILQuality p_ssil_quality, bool p_invalidate_uniform_set, bool p_ssao_half_size, bool p_ssil_half_size, Size2i p_full_screen_size, const CameraMatrix &p_projection);
void gather_ssao(RD::ComputeListID p_compute_list, const Vector<RID> p_ao_slices, const SSAOSettings &p_settings, bool p_adaptive_base_pass, RID p_gather_uniform_set, RID p_importance_map_uniform_set);
- void generate_ssao(RID p_depth_buffer, RID p_normal_buffer, RID p_depth_mipmaps_texture, const Vector<RID> &depth_mipmaps, RID p_ao, const Vector<RID> p_ao_slices, RID p_ao_pong, const Vector<RID> p_ao_pong_slices, RID p_upscale_buffer, RID p_importance_map, RID p_importance_map_pong, const CameraMatrix &p_projection, const SSAOSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_downsample_uniform_set, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set);
+ void generate_ssao(RID p_normal_buffer, RID p_depth_mipmaps_texture, RID p_ao, const Vector<RID> p_ao_slices, RID p_ao_pong, const Vector<RID> p_ao_pong_slices, RID p_upscale_buffer, RID p_importance_map, RID p_importance_map_pong, const CameraMatrix &p_projection, const SSAOSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set);
+
+ void gather_ssil(RD::ComputeListID p_compute_list, const Vector<RID> p_ssil_slices, const Vector<RID> p_edges_slices, const SSILSettings &p_settings, bool p_adaptive_base_pass, RID p_gather_uniform_set, RID p_importance_map_uniform_set, RID p_projection_uniform_set);
+ void screen_space_indirect_lighting(RID p_diffuse, RID p_destination, RID p_normal_buffer, RID p_depth_mipmaps_texture, RID p_ao, const Vector<RID> p_ao_slices, RID p_ao_pong, const Vector<RID> p_ao_pong_slices, RID p_importance_map, RID p_importance_map_pong, RID p_edges, const Vector<RID> p_edges_slices, const CameraMatrix &p_projection, const CameraMatrix &p_last_projection, const SSILSettings &p_settings, bool p_invalidate_uniform_sets, RID &r_gather_uniform_set, RID &r_importance_map_uniform_set, RID &r_projection_uniform_set);
void roughness_limit(RID p_source_normal, RID p_roughness, const Size2i &p_size, float p_curve);
void cubemap_downsample(RID p_source_cubemap, RID p_dest_cubemap, const Size2i &p_size);
diff --git a/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.cpp b/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.cpp
index 03ce2690bf..4bfaad9fe6 100644
--- a/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.cpp
+++ b/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,6 +30,11 @@
#include "render_forward_clustered.h"
#include "core/config/project_settings.h"
+#include "servers/rendering/renderer_rd/storage_rd/light_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/mesh_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
+#include "servers/rendering/renderer_rd/uniform_set_cache_rd.h"
#include "servers/rendering/rendering_device.h"
#include "servers/rendering/rendering_server_default.h"
@@ -57,14 +62,6 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::ensure_specular()
if (msaa == RS::VIEWPORT_MSAA_DISABLED) {
{
Vector<RID> fb;
- fb.push_back(color);
- fb.push_back(specular);
- fb.push_back(depth);
-
- color_specular_fb = RD::get_singleton()->framebuffer_create(fb);
- }
- {
- Vector<RID> fb;
fb.push_back(specular);
specular_only_fb = RD::get_singleton()->framebuffer_create(fb);
@@ -77,14 +74,6 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::ensure_specular()
{
Vector<RID> fb;
- fb.push_back(color_msaa);
- fb.push_back(specular_msaa);
- fb.push_back(depth_msaa);
-
- color_specular_fb = RD::get_singleton()->framebuffer_create(fb);
- }
- {
- Vector<RID> fb;
fb.push_back(specular_msaa);
specular_only_fb = RD::get_singleton()->framebuffer_create(fb);
@@ -163,11 +152,10 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::clear() {
color = RID();
depth = RID();
- color_specular_fb = RID();
- specular_only_fb = RID();
- color_fb = RID();
depth_fb = RID();
+ color_framebuffers.clear(); // Color pass framebuffers are freed automatically by their dependency relations
+
if (normal_roughness_buffer.is_valid()) {
RD::get_singleton()->free(normal_roughness_buffer);
if (normal_roughness_buffer_msaa.is_valid()) {
@@ -186,12 +174,11 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::clear() {
void RenderForwardClustered::RenderBufferDataForwardClustered::configure(RID p_color_buffer, RID p_depth_buffer, RID p_target_buffer, int p_width, int p_height, RS::ViewportMSAA p_msaa, uint32_t p_view_count) {
clear();
- ERR_FAIL_COND_MSG(p_view_count != 1, "Multiple views is currently not supported in this renderer, please use the mobile renderer for VR support");
-
msaa = p_msaa;
width = p_width;
height = p_height;
+ view_count = p_view_count;
color = p_color_buffer;
depth = p_depth_buffer;
@@ -202,23 +189,28 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::configure(RID p_c
fb.push_back(p_color_buffer);
fb.push_back(depth);
- color_fb = RD::get_singleton()->framebuffer_create(fb);
+ color_only_fb = RD::get_singleton()->framebuffer_create(fb, RenderingDevice::INVALID_ID, view_count);
}
{
Vector<RID> fb;
fb.push_back(depth);
- depth_fb = RD::get_singleton()->framebuffer_create(fb);
+ depth_fb = RD::get_singleton()->framebuffer_create(fb, RenderingDevice::INVALID_ID, view_count);
}
} else {
RD::TextureFormat tf;
+ if (view_count > 1) {
+ tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ } else {
+ tf.texture_type = RD::TEXTURE_TYPE_2D;
+ }
tf.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
tf.width = p_width;
tf.height = p_height;
- tf.texture_type = RD::TEXTURE_TYPE_2D;
+ tf.array_layers = view_count; // create a layer for every view
tf.usage_bits = RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT | RD::TEXTURE_USAGE_SAMPLING_BIT;
- RD::TextureSamples ts[RS::VIEWPORT_MSAA_MAX] = {
+ const RD::TextureSamples ts[RS::VIEWPORT_MSAA_MAX] = {
RD::TEXTURE_SAMPLES_1,
RD::TEXTURE_SAMPLES_2,
RD::TEXTURE_SAMPLES_4,
@@ -240,17 +232,42 @@ void RenderForwardClustered::RenderBufferDataForwardClustered::configure(RID p_c
fb.push_back(color_msaa);
fb.push_back(depth_msaa);
- color_fb = RD::get_singleton()->framebuffer_create(fb);
+ color_only_fb = RD::get_singleton()->framebuffer_create(fb, RenderingDevice::INVALID_ID, view_count);
}
{
Vector<RID> fb;
fb.push_back(depth_msaa);
- depth_fb = RD::get_singleton()->framebuffer_create(fb);
+ depth_fb = RD::get_singleton()->framebuffer_create(fb, RenderingDevice::INVALID_ID, view_count);
}
}
}
+RID RenderForwardClustered::RenderBufferDataForwardClustered::get_color_pass_fb(uint32_t p_color_pass_flags) {
+ if (color_framebuffers.has(p_color_pass_flags)) {
+ return color_framebuffers[p_color_pass_flags];
+ }
+
+ bool use_msaa = msaa != RS::VIEWPORT_MSAA_DISABLED;
+
+ Vector<RID> fb;
+ fb.push_back(use_msaa ? color_msaa : color);
+
+ if (p_color_pass_flags & COLOR_PASS_FLAG_SEPARATE_SPECULAR) {
+ ensure_specular();
+ fb.push_back(use_msaa ? specular_msaa : specular);
+ } else {
+ fb.push_back(RID());
+ }
+
+ fb.push_back(use_msaa ? depth_msaa : depth);
+
+ int v_count = (p_color_pass_flags & COLOR_PASS_FLAG_MULTIVIEW) ? view_count : 1;
+ RID framebuffer = RD::get_singleton()->framebuffer_create(fb, RD::INVALID_ID, v_count);
+ color_framebuffers[p_color_pass_flags] = framebuffer;
+ return framebuffer;
+}
+
void RenderForwardClustered::_allocate_normal_roughness_texture(RenderBufferDataForwardClustered *rb) {
if (rb->normal_roughness_buffer.is_valid()) {
return;
@@ -300,8 +317,9 @@ bool RenderForwardClustered::free(RID p_rid) {
/// RENDERING ///
-template <RenderForwardClustered::PassMode p_pass_mode>
+template <RenderForwardClustered::PassMode p_pass_mode, uint32_t p_color_pass_flags>
void RenderForwardClustered::_render_list_template(RenderingDevice::DrawListID p_draw_list, RenderingDevice::FramebufferFormatID p_framebuffer_Format, RenderListParameters *p_params, uint32_t p_from_element, uint32_t p_to_element) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
RD::DrawListID draw_list = p_draw_list;
RD::FramebufferFormatID framebuffer_format = p_framebuffer_Format;
@@ -334,7 +352,7 @@ void RenderForwardClustered::_render_list_template(RenderingDevice::DrawListID p
const GeometryInstanceSurfaceDataCache *surf = p_params->elements[i];
const RenderElementInfo &element_info = p_params->element_info[i];
- if ((p_pass_mode == PASS_MODE_COLOR || p_pass_mode == PASS_MODE_COLOR_SPECULAR) && !(surf->flags & GeometryInstanceSurfaceDataCache::FLAG_PASS_OPAQUE)) {
+ if ((p_pass_mode == PASS_MODE_COLOR && !(p_color_pass_flags & COLOR_PASS_FLAG_TRANSPARENT)) && !(surf->flags & GeometryInstanceSurfaceDataCache::FLAG_PASS_OPAQUE)) {
continue; // Objects with "Depth-prepass" transparency are included in both render lists, but should only be rendered in the transparent pass
}
@@ -397,10 +415,10 @@ void RenderForwardClustered::_render_list_template(RenderingDevice::DrawListID p
RID xforms_uniform_set = surf->owner->transforms_uniform_set;
SceneShaderForwardClustered::PipelineVersion pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_MAX; // Assigned to silence wrong -Wmaybe-initialized.
-
+ uint32_t pipeline_color_pass_flags = 0;
uint32_t pipeline_specialization = 0;
- if (p_pass_mode == PASS_MODE_COLOR || p_pass_mode == PASS_MODE_COLOR_TRANSPARENT || p_pass_mode == PASS_MODE_COLOR_SPECULAR) {
+ if (p_pass_mode == PASS_MODE_COLOR) {
if (element_info.uses_softshadow) {
pipeline_specialization |= SceneShaderForwardClustered::SHADER_SPECIALIZATION_SOFT_SHADOWS;
}
@@ -416,52 +434,60 @@ void RenderForwardClustered::_render_list_template(RenderingDevice::DrawListID p
switch (p_pass_mode) {
case PASS_MODE_COLOR: {
if (element_info.uses_lightmap) {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_LIGHTMAP_OPAQUE_PASS;
- } else {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_OPAQUE_PASS;
- }
- } break;
- case PASS_MODE_COLOR_TRANSPARENT: {
- if (element_info.uses_lightmap) {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_LIGHTMAP_TRANSPARENT_PASS;
+ pipeline_color_pass_flags |= SceneShaderForwardClustered::PIPELINE_COLOR_PASS_FLAG_LIGHTMAP;
} else {
if (element_info.uses_forward_gi) {
pipeline_specialization |= SceneShaderForwardClustered::SHADER_SPECIALIZATION_FORWARD_GI;
}
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_TRANSPARENT_PASS;
}
- } break;
- case PASS_MODE_COLOR_SPECULAR: {
- if (element_info.uses_lightmap) {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_LIGHTMAP_OPAQUE_PASS_WITH_SEPARATE_SPECULAR;
- } else {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_OPAQUE_PASS_WITH_SEPARATE_SPECULAR;
+
+ if constexpr ((p_color_pass_flags & COLOR_PASS_FLAG_SEPARATE_SPECULAR) != 0) {
+ pipeline_color_pass_flags |= SceneShaderForwardClustered::PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR;
}
+
+ if constexpr ((p_color_pass_flags & COLOR_PASS_FLAG_TRANSPARENT) != 0) {
+ pipeline_color_pass_flags |= SceneShaderForwardClustered::PIPELINE_COLOR_PASS_FLAG_TRANSPARENT;
+ }
+
+ if constexpr ((p_color_pass_flags & COLOR_PASS_FLAG_MULTIVIEW) != 0) {
+ pipeline_color_pass_flags |= SceneShaderForwardClustered::PIPELINE_COLOR_PASS_FLAG_MULTIVIEW;
+ }
+
+ pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_COLOR_PASS;
} break;
case PASS_MODE_SHADOW:
case PASS_MODE_DEPTH: {
- pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS;
+ pipeline_version = p_params->view_count > 1 ? SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_MULTIVIEW : SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS;
} break;
case PASS_MODE_SHADOW_DP: {
+ ERR_FAIL_COND_MSG(p_params->view_count > 1, "Multiview not supported for shadow DP pass");
pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_DP;
} break;
case PASS_MODE_DEPTH_NORMAL_ROUGHNESS: {
+ ERR_FAIL_COND_MSG(p_params->view_count > 1, "Multiview not supported for depth/roughness pass");
pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS;
} break;
case PASS_MODE_DEPTH_NORMAL_ROUGHNESS_VOXEL_GI: {
+ ERR_FAIL_COND_MSG(p_params->view_count > 1, "Multiview not supported for voxel GI pass");
pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI;
} break;
case PASS_MODE_DEPTH_MATERIAL: {
+ ERR_FAIL_COND_MSG(p_params->view_count > 1, "Multiview not supported for material pass");
pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_WITH_MATERIAL;
} break;
case PASS_MODE_SDF: {
+ ERR_FAIL_COND_MSG(p_params->view_count > 1, "Multiview not supported for SDF pass");
pipeline_version = SceneShaderForwardClustered::PIPELINE_VERSION_DEPTH_PASS_WITH_SDF;
} break;
}
PipelineCacheRD *pipeline = nullptr;
- pipeline = &shader->pipelines[cull_variant][primitive][pipeline_version];
+ if constexpr (p_pass_mode == PASS_MODE_COLOR) {
+ pipeline = &shader->color_pipelines[cull_variant][primitive][pipeline_color_pass_flags];
+ } else {
+ pipeline = &shader->pipelines[cull_variant][primitive][pipeline_version];
+ }
RD::VertexFormatID vertex_format = -1;
RID vertex_array_rd;
@@ -469,12 +495,12 @@ void RenderForwardClustered::_render_list_template(RenderingDevice::DrawListID p
//skeleton and blend shape
if (surf->owner->mesh_instance.is_valid()) {
- storage->mesh_instance_surface_get_vertex_arrays_and_format(surf->owner->mesh_instance, surf->surface_index, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
+ mesh_storage->mesh_instance_surface_get_vertex_arrays_and_format(surf->owner->mesh_instance, surf->surface_index, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
} else {
- storage->mesh_surface_get_vertex_arrays_and_format(mesh_surface, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
+ mesh_storage->mesh_surface_get_vertex_arrays_and_format(mesh_surface, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
}
- index_array_rd = storage->mesh_surface_get_index_array(mesh_surface, element_info.lod_index);
+ index_array_rd = mesh_storage->mesh_surface_get_index_array(mesh_surface, element_info.lod_index);
if (prev_vertex_array_rd != vertex_array_rd) {
RD::get_singleton()->draw_list_bind_vertex_array(draw_list, vertex_array_rd);
@@ -532,14 +558,23 @@ void RenderForwardClustered::_render_list(RenderingDevice::DrawListID p_draw_lis
//use template for faster performance (pass mode comparisons are inlined)
switch (p_params->pass_mode) {
+#define VALID_FLAG_COMBINATION(f) \
+ case f: { \
+ _render_list_template<PASS_MODE_COLOR, f>(p_draw_list, p_framebuffer_Format, p_params, p_from_element, p_to_element); \
+ } break;
+
case PASS_MODE_COLOR: {
- _render_list_template<PASS_MODE_COLOR>(p_draw_list, p_framebuffer_Format, p_params, p_from_element, p_to_element);
- } break;
- case PASS_MODE_COLOR_SPECULAR: {
- _render_list_template<PASS_MODE_COLOR_SPECULAR>(p_draw_list, p_framebuffer_Format, p_params, p_from_element, p_to_element);
- } break;
- case PASS_MODE_COLOR_TRANSPARENT: {
- _render_list_template<PASS_MODE_COLOR_TRANSPARENT>(p_draw_list, p_framebuffer_Format, p_params, p_from_element, p_to_element);
+ switch (p_params->color_pass_flags) {
+ VALID_FLAG_COMBINATION(0);
+ VALID_FLAG_COMBINATION(COLOR_PASS_FLAG_TRANSPARENT);
+ VALID_FLAG_COMBINATION(COLOR_PASS_FLAG_SEPARATE_SPECULAR);
+ VALID_FLAG_COMBINATION(COLOR_PASS_FLAG_MULTIVIEW);
+ VALID_FLAG_COMBINATION(COLOR_PASS_FLAG_TRANSPARENT | COLOR_PASS_FLAG_MULTIVIEW);
+ default: {
+ ERR_FAIL_MSG("Invalid color pass flag combination " + itos(p_params->color_pass_flags));
+ }
+ }
+
} break;
case PASS_MODE_SHADOW: {
_render_list_template<PASS_MODE_SHADOW>(p_draw_list, p_framebuffer_Format, p_params, p_from_element, p_to_element);
@@ -601,8 +636,14 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
//store camera into ubo
RendererStorageRD::store_camera(projection, scene_state.ubo.projection_matrix);
RendererStorageRD::store_camera(projection.inverse(), scene_state.ubo.inv_projection_matrix);
- RendererStorageRD::store_transform(p_render_data->cam_transform, scene_state.ubo.camera_matrix);
- RendererStorageRD::store_transform(p_render_data->cam_transform.affine_inverse(), scene_state.ubo.inv_camera_matrix);
+ RendererStorageRD::store_transform(p_render_data->cam_transform, scene_state.ubo.inv_view_matrix);
+ RendererStorageRD::store_transform(p_render_data->cam_transform.affine_inverse(), scene_state.ubo.view_matrix);
+
+ for (uint32_t v = 0; v < p_render_data->view_count; v++) {
+ projection = correction * p_render_data->view_projection[v];
+ RendererStorageRD::store_camera(projection, scene_state.ubo.projection_matrix_view[v]);
+ RendererStorageRD::store_camera(projection.inverse(), scene_state.ubo.inv_projection_matrix_view[v]);
+ }
scene_state.ubo.z_far = p_render_data->z_far;
scene_state.ubo.z_near = p_render_data->z_near;
@@ -645,7 +686,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.fog_enabled = false;
if (p_render_data->render_buffers.is_valid()) {
- RenderBufferDataForwardClustered *render_buffers = (RenderBufferDataForwardClustered *)render_buffers_get_data(p_render_data->render_buffers);
+ RenderBufferDataForwardClustered *render_buffers = static_cast<RenderBufferDataForwardClustered *>(render_buffers_get_data(p_render_data->render_buffers));
if (render_buffers->msaa != RS::VIEWPORT_MSAA_DISABLED) {
scene_state.ubo.gi_upscale_for_msaa = true;
}
@@ -730,7 +771,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.ambient_light_color_energy[3] = 1.0;
scene_state.ubo.use_ambient_cubemap = false;
scene_state.ubo.use_reflection_cubemap = false;
- scene_state.ubo.ssao_enabled = false;
+ scene_state.ubo.ss_effects_flags = 0;
} else if (is_environment(p_render_data->environment)) {
RS::EnvironmentBG env_bg = environment_get_background(p_render_data->environment);
@@ -744,7 +785,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
//ambient
if (ambient_src == RS::ENV_AMBIENT_SOURCE_BG && (env_bg == RS::ENV_BG_CLEAR_COLOR || env_bg == RS::ENV_BG_COLOR)) {
Color color = env_bg == RS::ENV_BG_CLEAR_COLOR ? p_default_bg_color : environment_get_bg_color(p_render_data->environment);
- color = color.to_linear();
+ color = color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = color.r * bg_energy;
scene_state.ubo.ambient_light_color_energy[1] = color.g * bg_energy;
@@ -754,7 +795,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
} else {
float energy = environment_get_ambient_light_energy(p_render_data->environment);
Color color = environment_get_ambient_light_color(p_render_data->environment);
- color = color.to_linear();
+ color = color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = color.r * energy;
scene_state.ubo.ambient_light_color_energy[1] = color.g * energy;
scene_state.ubo.ambient_light_color_energy[2] = color.b * energy;
@@ -775,9 +816,14 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.use_reflection_cubemap = false;
}
- scene_state.ubo.ssao_enabled = p_opaque_render_buffers && environment_is_ssao_enabled(p_render_data->environment);
scene_state.ubo.ssao_ao_affect = environment_get_ssao_ao_affect(p_render_data->environment);
scene_state.ubo.ssao_light_affect = environment_get_ssao_light_affect(p_render_data->environment);
+ uint32_t ss_flags = 0;
+ if (p_opaque_render_buffers) {
+ ss_flags |= environment_is_ssao_enabled(p_render_data->environment) ? 1 : 0;
+ ss_flags |= environment_is_ssil_enabled(p_render_data->environment) ? 2 : 0;
+ }
+ scene_state.ubo.ss_effects_flags = ss_flags;
scene_state.ubo.fog_enabled = environment_is_fog_enabled(p_render_data->environment);
scene_state.ubo.fog_density = environment_get_fog_density(p_render_data->environment);
@@ -785,7 +831,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.fog_height_density = environment_get_fog_height_density(p_render_data->environment);
scene_state.ubo.fog_aerial_perspective = environment_get_fog_aerial_perspective(p_render_data->environment);
- Color fog_color = environment_get_fog_light_color(p_render_data->environment).to_linear();
+ Color fog_color = environment_get_fog_light_color(p_render_data->environment).srgb_to_linear();
float fog_energy = environment_get_fog_light_energy(p_render_data->environment);
scene_state.ubo.fog_light_color[0] = fog_color.r * fog_energy;
@@ -795,12 +841,12 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.fog_sun_scatter = environment_get_fog_sun_scatter(p_render_data->environment);
} else {
- if (p_render_data->reflection_probe.is_valid() && storage->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
+ if (p_render_data->reflection_probe.is_valid() && RendererRD::LightStorage::get_singleton()->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
scene_state.ubo.use_ambient_light = false;
} else {
scene_state.ubo.use_ambient_light = true;
Color clear_color = p_default_bg_color;
- clear_color = clear_color.to_linear();
+ clear_color = clear_color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = clear_color.r;
scene_state.ubo.ambient_light_color_energy[1] = clear_color.g;
scene_state.ubo.ambient_light_color_energy[2] = clear_color.b;
@@ -809,7 +855,7 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
scene_state.ubo.use_ambient_cubemap = false;
scene_state.ubo.use_reflection_cubemap = false;
- scene_state.ubo.ssao_enabled = false;
+ scene_state.ubo.ss_effects_flags = 0;
}
scene_state.ubo.roughness_limiter_enabled = p_opaque_render_buffers && screen_space_roughness_limiter_is_active();
@@ -819,7 +865,6 @@ void RenderForwardClustered::_setup_environment(const RenderDataRD *p_render_dat
if (p_index >= (int)scene_state.uniform_buffers.size()) {
uint32_t from = scene_state.uniform_buffers.size();
scene_state.uniform_buffers.resize(p_index + 1);
- render_pass_uniform_sets.resize(p_index + 1);
for (uint32_t i = from; i < scene_state.uniform_buffers.size(); i++) {
scene_state.uniform_buffers[i] = RD::get_singleton()->uniform_buffer_create(sizeof(SceneState::UBO));
}
@@ -922,6 +967,8 @@ _FORCE_INLINE_ static uint32_t _indices_to_primitives(RS::PrimitiveType p_primit
return (p_indices - subtractor[p_primitive]) / divisor[p_primitive];
}
void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, const RenderDataRD *p_render_data, PassMode p_pass_mode, bool p_using_sdfgi, bool p_using_opaque_gi, bool p_append) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
if (p_render_list == RENDER_LIST_OPAQUE) {
scene_state.used_sss = false;
scene_state.used_screen_texture = false;
@@ -930,7 +977,7 @@ void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, con
}
uint32_t lightmap_captures_used = 0;
- Plane near_plane = Plane(-p_render_data->cam_transform.basis.get_axis(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
+ Plane near_plane = Plane(-p_render_data->cam_transform.basis.get_column(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
near_plane.d += p_render_data->cam_projection.get_z_near();
float z_max = p_render_data->cam_projection.get_z_far() - p_render_data->cam_projection.get_z_near();
@@ -964,10 +1011,11 @@ void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, con
if (inst->fade_near || inst->fade_far) {
float fade_dist = inst->transform.origin.distance_to(p_render_data->cam_transform.origin);
+ // Use `smoothstep()` to make opacity changes more gradual and less noticeable to the player.
if (inst->fade_far && fade_dist > inst->fade_far_begin) {
- fade_alpha = MAX(0.0, 1.0 - (fade_dist - inst->fade_far_begin) / (inst->fade_far_end - inst->fade_far_begin));
+ fade_alpha = Math::smoothstep(0.0f, 1.0f, 1.0f - (fade_dist - inst->fade_far_begin) / (inst->fade_far_end - inst->fade_far_begin));
} else if (inst->fade_near && fade_dist < inst->fade_near_end) {
- fade_alpha = MAX(0.0, (fade_dist - inst->fade_near_begin) / (inst->fade_near_end - inst->fade_near_begin));
+ fade_alpha = Math::smoothstep(0.0f, 1.0f, (fade_dist - inst->fade_near_begin) / (inst->fade_near_end - inst->fade_near_begin));
}
}
@@ -1057,7 +1105,7 @@ void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, con
// LOD
- if (p_render_data->screen_lod_threshold > 0.0 && storage->mesh_surface_has_lod(surf->surface)) {
+ if (p_render_data->screen_mesh_lod_threshold > 0.0 && mesh_storage->mesh_surface_has_lod(surf->surface)) {
//lod
Vector3 lod_support_min = inst->transformed_aabb.get_support(-p_render_data->lod_camera_plane.normal);
Vector3 lod_support_max = inst->transformed_aabb.get_support(p_render_data->lod_camera_plane.normal);
@@ -1076,8 +1124,12 @@ void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, con
distance = -distance_max;
}
+ if (p_render_data->cam_orthogonal) {
+ distance = 1.0;
+ }
+
uint32_t indices;
- surf->sort.lod_index = storage->mesh_surface_get_lod(surf->surface, inst->lod_model_scale * inst->lod_bias, distance * p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold, &indices);
+ surf->sort.lod_index = mesh_storage->mesh_surface_get_lod(surf->surface, inst->lod_model_scale * inst->lod_bias, distance * p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, &indices);
if (p_render_data->render_info) {
indices = _indices_to_primitives(surf->primitive, indices);
if (p_render_list == RENDER_LIST_OPAQUE) { //opaque
@@ -1089,13 +1141,13 @@ void RenderForwardClustered::_fill_render_list(RenderListType p_render_list, con
} else {
surf->sort.lod_index = 0;
if (p_render_data->render_info) {
- uint32_t to_draw = storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ uint32_t to_draw = mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
to_draw = _indices_to_primitives(surf->primitive, to_draw);
to_draw *= inst->instance_count;
if (p_render_list == RENDER_LIST_OPAQUE) { //opaque
- p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
} else if (p_render_list == RENDER_LIST_SECONDARY) { //shadow
- p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
}
}
}
@@ -1180,7 +1232,7 @@ void RenderForwardClustered::_setup_lightmaps(const PagedArray<RID> &p_lightmaps
to_lm = to_lm.inverse().transposed(); //will transform normals
RendererStorageRD::store_transform_3x3(to_lm, scene_state.lightmaps[i].normal_xform);
scene_state.lightmap_ids[i] = p_lightmaps[i];
- scene_state.lightmap_has_sh[i] = storage->lightmap_uses_spherical_harmonics(lightmap);
+ scene_state.lightmap_has_sh[i] = RendererRD::LightStorage::get_singleton()->lightmap_uses_spherical_harmonics(lightmap);
scene_state.lightmaps_used++;
}
@@ -1190,11 +1242,9 @@ void RenderForwardClustered::_setup_lightmaps(const PagedArray<RID> &p_lightmaps
}
void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Color &p_default_bg_color) {
- ERR_FAIL_COND_MSG(p_render_data->view_count != 1, "Multiview is currently not supported in the clustered renderer. Please use the mobile renderer for VR.");
-
RenderBufferDataForwardClustered *render_buffer = nullptr;
if (p_render_data->render_buffers.is_valid()) {
- render_buffer = (RenderBufferDataForwardClustered *)render_buffers_get_data(p_render_data->render_buffers);
+ render_buffer = static_cast<RenderBufferDataForwardClustered *>(render_buffers_get_data(p_render_data->render_buffers));
}
RendererSceneEnvironmentRD *env = get_environment(p_render_data->environment);
static const int texture_multisamples[RS::VIEWPORT_MSAA_MAX] = { 1, 2, 4, 8 };
@@ -1213,32 +1263,32 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
scene_state.ubo.opaque_prepass_threshold = 0.99f;
Size2i screen_size;
- RID opaque_framebuffer;
- RID opaque_specular_framebuffer;
+ RID color_framebuffer;
+ RID color_only_framebuffer;
RID depth_framebuffer;
- RID alpha_framebuffer;
PassMode depth_pass_mode = PASS_MODE_DEPTH;
+ uint32_t color_pass_flags = 0;
Vector<Color> depth_pass_clear;
bool using_separate_specular = false;
bool using_ssr = false;
bool using_sdfgi = false;
bool using_voxelgi = false;
bool reverse_cull = false;
+ bool using_ssil = p_render_data->environment.is_valid() && environment_is_ssil_enabled(p_render_data->environment);
if (render_buffer) {
screen_size.x = render_buffer->width;
screen_size.y = render_buffer->height;
- opaque_framebuffer = render_buffer->color_fb;
-
if (p_render_data->voxel_gi_instances->size() > 0) {
using_voxelgi = true;
}
- if (!p_render_data->environment.is_valid() && using_voxelgi) {
+ if (p_render_data->view_count > 1) {
+ depth_pass_mode = PASS_MODE_DEPTH;
+ } else if (!p_render_data->environment.is_valid() && using_voxelgi) {
depth_pass_mode = PASS_MODE_DEPTH_NORMAL_ROUGHNESS_VOXEL_GI;
-
} else if (p_render_data->environment.is_valid() && (environment_is_ssr_enabled(p_render_data->environment) || environment_is_sdfgi_enabled(p_render_data->environment) || using_voxelgi)) {
if (environment_is_sdfgi_enabled(p_render_data->environment)) {
depth_pass_mode = using_voxelgi ? PASS_MODE_DEPTH_NORMAL_ROUGHNESS_VOXEL_GI : PASS_MODE_DEPTH_NORMAL_ROUGHNESS; // also voxelgi
@@ -1246,15 +1296,12 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
} else {
depth_pass_mode = using_voxelgi ? PASS_MODE_DEPTH_NORMAL_ROUGHNESS_VOXEL_GI : PASS_MODE_DEPTH_NORMAL_ROUGHNESS;
}
-
if (environment_is_ssr_enabled(p_render_data->environment)) {
- render_buffer->ensure_specular();
using_separate_specular = true;
using_ssr = true;
- opaque_specular_framebuffer = render_buffer->color_specular_fb;
+ color_pass_flags |= COLOR_PASS_FLAG_SEPARATE_SPECULAR;
}
-
- } else if (p_render_data->environment.is_valid() && (environment_is_ssao_enabled(p_render_data->environment) || get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_NORMAL_BUFFER)) {
+ } else if (p_render_data->environment.is_valid() && (environment_is_ssao_enabled(p_render_data->environment) || using_ssil || get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_NORMAL_BUFFER)) {
depth_pass_mode = PASS_MODE_DEPTH_NORMAL_ROUGHNESS;
}
@@ -1278,17 +1325,22 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
};
}
- alpha_framebuffer = opaque_framebuffer;
+ if (p_render_data->view_count > 1) {
+ color_pass_flags |= COLOR_PASS_FLAG_MULTIVIEW;
+ }
+
+ color_framebuffer = render_buffer->get_color_pass_fb(color_pass_flags);
+ color_only_framebuffer = render_buffer->color_only_fb;
} else if (p_render_data->reflection_probe.is_valid()) {
uint32_t resolution = reflection_probe_instance_get_resolution(p_render_data->reflection_probe);
screen_size.x = resolution;
screen_size.y = resolution;
- opaque_framebuffer = reflection_probe_instance_get_framebuffer(p_render_data->reflection_probe, p_render_data->reflection_probe_pass);
+ color_framebuffer = reflection_probe_instance_get_framebuffer(p_render_data->reflection_probe, p_render_data->reflection_probe_pass);
+ color_only_framebuffer = color_framebuffer;
depth_framebuffer = reflection_probe_instance_get_depth_framebuffer(p_render_data->reflection_probe, p_render_data->reflection_probe_pass);
- alpha_framebuffer = opaque_framebuffer;
- if (storage->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
+ if (RendererRD::LightStorage::get_singleton()->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
p_render_data->environment = RID(); //no environment on interiors
env = nullptr;
}
@@ -1316,11 +1368,10 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
bool using_sss = render_buffer && scene_state.used_sss && sub_surface_scattering_get_quality() != RS::SUB_SURFACE_SCATTERING_QUALITY_DISABLED;
- if (using_sss) {
+ if (using_sss && !using_separate_specular) {
using_separate_specular = true;
- render_buffer->ensure_specular();
- using_separate_specular = true;
- opaque_specular_framebuffer = render_buffer->color_specular_fb;
+ color_pass_flags |= COLOR_PASS_FLAG_SEPARATE_SPECULAR;
+ color_framebuffer = render_buffer->get_color_pass_fb(color_pass_flags);
}
RID radiance_texture;
bool draw_sky = false;
@@ -1342,7 +1393,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
clear_color.b *= bg_energy;
if (render_buffers_has_volumetric_fog(p_render_data->render_buffers) || environment_is_fog_enabled(p_render_data->environment)) {
draw_sky_fog_only = true;
- storage->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.to_linear()));
+ RendererRD::MaterialStorage::get_singleton()->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.srgb_to_linear()));
}
} break;
case RS::ENV_BG_COLOR: {
@@ -1352,7 +1403,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
clear_color.b *= bg_energy;
if (render_buffers_has_volumetric_fog(p_render_data->render_buffers) || environment_is_fog_enabled(p_render_data->environment)) {
draw_sky_fog_only = true;
- storage->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.to_linear()));
+ RendererRD::MaterialStorage::get_singleton()->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.srgb_to_linear()));
}
} break;
case RS::ENV_BG_SKY: {
@@ -1380,7 +1431,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
projection = correction * p_render_data->cam_projection;
}
- sky.setup(env, p_render_data->render_buffers, projection, p_render_data->cam_transform, screen_size, this);
+ sky.setup(env, p_render_data->render_buffers, *p_render_data->lights, projection, p_render_data->cam_transform, screen_size, this);
RID sky_rid = env->sky;
if (sky_rid.is_valid()) {
@@ -1398,7 +1449,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
bool debug_voxelgis = get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_ALBEDO || get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_LIGHTING || get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_EMISSION;
bool debug_sdfgi_probes = get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_SDFGI_PROBES;
- bool depth_pre_pass = depth_framebuffer.is_valid();
+ bool depth_pre_pass = bool(GLOBAL_GET("rendering/driver/depth_prepass/enable")) && depth_framebuffer.is_valid();
bool using_ssao = depth_pre_pass && p_render_data->render_buffers.is_valid() && p_render_data->environment.is_valid() && environment_is_ssao_enabled(p_render_data->environment);
bool continue_depth = false;
@@ -1406,7 +1457,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
bool needs_pre_resolve = _needs_post_prepass_render(p_render_data, using_sdfgi || using_voxelgi);
if (needs_pre_resolve) {
- RENDER_TIMESTAMP("GI + Render Depth Pre-Pass (parallel)");
+ RENDER_TIMESTAMP("GI + Render Depth Pre-Pass (Parallel)");
} else {
RENDER_TIMESTAMP("Render Depth Pre-Pass");
}
@@ -1423,7 +1474,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
RID rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_OPAQUE, nullptr, RID());
bool finish_depth = using_ssao || using_sdfgi || using_voxelgi;
- RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, depth_pass_mode, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, depth_pass_mode, 0, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
_render_list_with_threads(&render_list_params, depth_framebuffer, needs_pre_resolve ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, needs_pre_resolve ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_CLEAR, finish_depth ? RD::FINAL_ACTION_READ : RD::FINAL_ACTION_CONTINUE, needs_pre_resolve ? Vector<Color>() : depth_pass_clear);
RD::get_singleton()->draw_command_end_label();
@@ -1433,8 +1484,8 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
}
if (render_buffer && render_buffer->msaa != RS::VIEWPORT_MSAA_DISABLED) {
- RENDER_TIMESTAMP("Resolve Depth Pre-Pass");
- RD::get_singleton()->draw_command_begin_label("Resolve Depth Pre-Pass");
+ RENDER_TIMESTAMP("Resolve Depth Pre-Pass (MSAA)");
+ RD::get_singleton()->draw_command_begin_label("Resolve Depth Pre-Pass (MSAA)");
if (depth_pass_mode == PASS_MODE_DEPTH_NORMAL_ROUGHNESS || depth_pass_mode == PASS_MODE_DEPTH_NORMAL_ROUGHNESS_VOXEL_GI) {
if (needs_pre_resolve) {
RD::get_singleton()->barrier(RD::BARRIER_MASK_RASTER, RD::BARRIER_MASK_COMPUTE);
@@ -1449,7 +1500,7 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
continue_depth = !finish_depth;
}
- _pre_opaque_render(p_render_data, using_ssao, using_sdfgi || using_voxelgi, render_buffer ? render_buffer->normal_roughness_buffer : RID(), render_buffer ? render_buffer->voxelgi_buffer : RID());
+ _pre_opaque_render(p_render_data, using_ssao, using_ssil, using_sdfgi || using_voxelgi, render_buffer ? render_buffer->normal_roughness_buffer : RID(), render_buffer ? render_buffer->voxelgi_buffer : RID());
RD::get_singleton()->draw_command_begin_label("Render Opaque Pass");
@@ -1469,20 +1520,21 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
bool will_continue_color = (can_continue_color || draw_sky || draw_sky_fog_only || debug_voxelgis || debug_sdfgi_probes);
bool will_continue_depth = (can_continue_depth || draw_sky || draw_sky_fog_only || debug_voxelgis || debug_sdfgi_probes);
- //regular forward for now
Vector<Color> c;
- if (using_separate_specular) {
- Color cc = clear_color.to_linear();
- cc.a = 0; //subsurf scatter must be 0
+ {
+ Color cc = clear_color.srgb_to_linear();
+ if (using_separate_specular) {
+ cc.a = 0; //subsurf scatter must be 0
+ }
c.push_back(cc);
- c.push_back(Color(0, 0, 0, 0));
- } else {
- c.push_back(clear_color.to_linear());
+
+ if (render_buffer) {
+ c.push_back(Color(0, 0, 0, 0));
+ }
}
- RID framebuffer = using_separate_specular ? opaque_specular_framebuffer : opaque_framebuffer;
- RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, using_separate_specular ? PASS_MODE_COLOR_SPECULAR : PASS_MODE_COLOR, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold);
- _render_list_with_threads(&render_list_params, framebuffer, keep_color ? RD::INITIAL_ACTION_KEEP : RD::INITIAL_ACTION_CLEAR, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, depth_pre_pass ? (continue_depth ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_KEEP) : RD::INITIAL_ACTION_CLEAR, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, c, 1.0, 0);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, PASS_MODE_COLOR, color_pass_flags, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
+ _render_list_with_threads(&render_list_params, color_framebuffer, keep_color ? RD::INITIAL_ACTION_KEEP : RD::INITIAL_ACTION_CLEAR, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, depth_pre_pass ? (continue_depth ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_KEEP) : RD::INITIAL_ACTION_CLEAR, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, c, 1.0, 0);
if (will_continue_color && using_separate_specular) {
// close the specular framebuffer, as it's no longer used
RD::get_singleton()->draw_list_begin(render_buffer->specular_only_fb, RD::INITIAL_ACTION_CONTINUE, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CONTINUE, RD::FINAL_ACTION_CONTINUE);
@@ -1500,10 +1552,10 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
CameraMatrix dc;
dc.set_depth_correction(true);
CameraMatrix cm = (dc * p_render_data->cam_projection) * CameraMatrix(p_render_data->cam_transform.affine_inverse());
- RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(opaque_framebuffer, RD::INITIAL_ACTION_CONTINUE, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CONTINUE, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ);
+ RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(color_only_framebuffer, RD::INITIAL_ACTION_CONTINUE, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CONTINUE, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ);
RD::get_singleton()->draw_command_begin_label("Debug VoxelGIs");
for (int i = 0; i < (int)p_render_data->voxel_gi_instances->size(); i++) {
- gi.debug_voxel_gi((*p_render_data->voxel_gi_instances)[i], draw_list, opaque_framebuffer, cm, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_LIGHTING, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_EMISSION, 1.0);
+ gi.debug_voxel_gi((*p_render_data->voxel_gi_instances)[i], draw_list, color_only_framebuffer, cm, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_LIGHTING, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_VOXEL_GI_EMISSION, 1.0);
}
RD::get_singleton()->draw_command_end_label();
RD::get_singleton()->draw_list_end();
@@ -1517,9 +1569,9 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
CameraMatrix dc;
dc.set_depth_correction(true);
CameraMatrix cm = (dc * p_render_data->cam_projection) * CameraMatrix(p_render_data->cam_transform.affine_inverse());
- RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(opaque_framebuffer, RD::INITIAL_ACTION_CONTINUE, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CONTINUE, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ);
+ RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(color_only_framebuffer, RD::INITIAL_ACTION_CONTINUE, will_continue_color ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CONTINUE, will_continue_depth ? RD::FINAL_ACTION_CONTINUE : RD::FINAL_ACTION_READ);
RD::get_singleton()->draw_command_begin_label("Debug SDFGI");
- _debug_sdfgi_probes(p_render_data->render_buffers, draw_list, opaque_framebuffer, cm);
+ _debug_sdfgi_probes(p_render_data->render_buffers, draw_list, color_only_framebuffer, cm);
RD::get_singleton()->draw_command_end_label();
RD::get_singleton()->draw_list_end();
}
@@ -1527,14 +1579,16 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
if (draw_sky || draw_sky_fog_only) {
RENDER_TIMESTAMP("Render Sky");
- CameraMatrix projection = p_render_data->cam_projection;
+ RD::get_singleton()->draw_command_begin_label("Draw Sky");
+
if (p_render_data->reflection_probe.is_valid()) {
CameraMatrix correction;
correction.set_depth_correction(true);
- projection = correction * p_render_data->cam_projection;
+ CameraMatrix projection = correction * p_render_data->cam_projection;
+ sky.draw(env, can_continue_color, can_continue_depth, color_only_framebuffer, 1, &projection, p_render_data->cam_transform, time);
+ } else {
+ sky.draw(env, can_continue_color, can_continue_depth, color_only_framebuffer, p_render_data->view_count, p_render_data->view_projection, p_render_data->cam_transform, time);
}
- RD::get_singleton()->draw_command_begin_label("Draw Sky");
- sky.draw(env, can_continue_color, can_continue_depth, opaque_framebuffer, 1, &projection, p_render_data->cam_transform, time);
RD::get_singleton()->draw_command_end_label();
}
@@ -1551,21 +1605,21 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
if (using_separate_specular) {
if (using_sss) {
- RENDER_TIMESTAMP("Sub Surface Scattering");
- RD::get_singleton()->draw_command_begin_label("Process Sub Surface Scattering");
+ RENDER_TIMESTAMP("Sub-Surface Scattering");
+ RD::get_singleton()->draw_command_begin_label("Process Sub-Surface Scattering");
_process_sss(p_render_data->render_buffers, p_render_data->cam_projection);
RD::get_singleton()->draw_command_end_label();
}
if (using_ssr) {
- RENDER_TIMESTAMP("Screen Space Reflection");
- RD::get_singleton()->draw_command_begin_label("Process Screen Space Reflections");
- _process_ssr(p_render_data->render_buffers, render_buffer->color_fb, render_buffer->normal_roughness_buffer, render_buffer->specular, render_buffer->specular, Color(0, 0, 0, 1), p_render_data->environment, p_render_data->cam_projection, render_buffer->msaa == RS::VIEWPORT_MSAA_DISABLED);
+ RENDER_TIMESTAMP("Screen-Space Reflections");
+ RD::get_singleton()->draw_command_begin_label("Process Screen-Space Reflections");
+ _process_ssr(p_render_data->render_buffers, color_only_framebuffer, render_buffer->normal_roughness_buffer, render_buffer->specular, render_buffer->specular, Color(0, 0, 0, 1), p_render_data->environment, p_render_data->cam_projection, render_buffer->msaa == RS::VIEWPORT_MSAA_DISABLED);
RD::get_singleton()->draw_command_end_label();
} else {
//just mix specular back
RENDER_TIMESTAMP("Merge Specular");
- storage->get_effects()->merge_specular(render_buffer->color_fb, render_buffer->specular, render_buffer->msaa == RS::VIEWPORT_MSAA_DISABLED ? RID() : render_buffer->color, RID());
+ storage->get_effects()->merge_specular(color_only_framebuffer, render_buffer->specular, render_buffer->msaa == RS::VIEWPORT_MSAA_DISABLED ? RID() : render_buffer->color, RID());
}
}
@@ -1579,29 +1633,41 @@ void RenderForwardClustered::_render_scene(RenderDataRD *p_render_data, const Co
_render_buffers_copy_depth_texture(p_render_data);
}
- RENDER_TIMESTAMP("Render Transparent Pass");
+ RENDER_TIMESTAMP("Render 3D Transparent Pass");
- RD::get_singleton()->draw_command_begin_label("Render Transparent Pass");
+ RD::get_singleton()->draw_command_begin_label("Render 3D Transparent Pass");
rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_ALPHA, p_render_data, radiance_texture, true);
_setup_environment(p_render_data, p_render_data->reflection_probe.is_valid(), screen_size, !p_render_data->reflection_probe.is_valid(), p_default_bg_color, false);
{
- RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), false, PASS_MODE_COLOR_TRANSPARENT, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold);
+ uint32_t transparent_color_pass_flags = (color_pass_flags | COLOR_PASS_FLAG_TRANSPARENT) & ~COLOR_PASS_FLAG_SEPARATE_SPECULAR;
+ RID alpha_framebuffer = render_buffer ? render_buffer->get_color_pass_fb(transparent_color_pass_flags) : color_only_framebuffer;
+ RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), false, PASS_MODE_COLOR, transparent_color_pass_flags, render_buffer == nullptr, p_render_data->directional_light_soft_shadows, rp_uniform_set, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
_render_list_with_threads(&render_list_params, alpha_framebuffer, can_continue_color ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_READ, can_continue_depth ? RD::INITIAL_ACTION_CONTINUE : RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_READ);
}
RD::get_singleton()->draw_command_end_label();
+ RENDER_TIMESTAMP("Resolve");
+
RD::get_singleton()->draw_command_begin_label("Resolve");
if (render_buffer && render_buffer->msaa != RS::VIEWPORT_MSAA_DISABLED) {
RD::get_singleton()->texture_resolve_multisample(render_buffer->color_msaa, render_buffer->color);
+ storage->get_effects()->resolve_depth(render_buffer->depth_msaa, render_buffer->depth, Vector2i(render_buffer->width, render_buffer->height), texture_multisamples[render_buffer->msaa]);
}
RD::get_singleton()->draw_command_end_label();
+ RD::get_singleton()->draw_command_begin_label("Copy framebuffer for SSIL");
+ if (using_ssil) {
+ RENDER_TIMESTAMP("Copy Final Framebuffer (SSIL)");
+ _copy_framebuffer_to_ssil(p_render_data->render_buffers);
+ }
+ RD::get_singleton()->draw_command_end_label();
+
if (p_render_data->render_buffers.is_valid()) {
_debug_draw_cluster(p_render_data->render_buffers);
@@ -1620,7 +1686,7 @@ void RenderForwardClustered::_render_shadow_begin() {
scene_state.instance_data[RENDER_LIST_SECONDARY].clear();
}
-void RenderForwardClustered::_render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_lod_threshold, const Rect2i &p_rect, bool p_flip_y, bool p_clear_region, bool p_begin, bool p_end, RendererScene::RenderInfo *p_render_info) {
+void RenderForwardClustered::_render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_mesh_lod_threshold, const Rect2i &p_rect, bool p_flip_y, bool p_clear_region, bool p_begin, bool p_end, RendererScene::RenderInfo *p_render_info) {
uint32_t shadow_pass_index = scene_state.shadow_passes.size();
SceneState::ShadowPass shadow_pass;
@@ -1628,6 +1694,7 @@ void RenderForwardClustered::_render_shadow_append(RID p_framebuffer, const Page
RenderDataRD render_data;
render_data.cam_projection = p_projection;
render_data.cam_transform = p_transform;
+ render_data.view_projection[0] = p_projection;
render_data.z_far = p_zfar;
render_data.z_near = 0.0;
render_data.cluster_size = 1;
@@ -1643,9 +1710,9 @@ void RenderForwardClustered::_render_shadow_append(RID p_framebuffer, const Page
_setup_environment(&render_data, true, Vector2(1, 1), !p_flip_y, Color(), false, p_use_pancake, shadow_pass_index);
if (get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_DISABLE_LOD) {
- render_data.screen_lod_threshold = 0.0;
+ render_data.screen_mesh_lod_threshold = 0.0;
} else {
- render_data.screen_lod_threshold = p_screen_lod_threshold;
+ render_data.screen_mesh_lod_threshold = p_screen_mesh_lod_threshold;
}
PassMode pass_mode = p_use_dp ? PASS_MODE_SHADOW_DP : PASS_MODE_SHADOW;
@@ -1670,7 +1737,7 @@ void RenderForwardClustered::_render_shadow_append(RID p_framebuffer, const Page
shadow_pass.rp_uniform_set = RID(); //will be filled later when instance buffer is complete
shadow_pass.camera_plane = p_camera_plane;
- shadow_pass.screen_lod_threshold = render_data.screen_lod_threshold;
+ shadow_pass.screen_mesh_lod_threshold = render_data.screen_mesh_lod_threshold;
shadow_pass.lod_distance_multiplier = render_data.lod_distance_multiplier;
shadow_pass.framebuffer = p_framebuffer;
@@ -1699,7 +1766,7 @@ void RenderForwardClustered::_render_shadow_end(uint32_t p_barrier) {
for (uint32_t i = 0; i < scene_state.shadow_passes.size(); i++) {
SceneState::ShadowPass &shadow_pass = scene_state.shadow_passes[i];
- RenderListParameters render_list_parameters(render_list[RENDER_LIST_SECONDARY].elements.ptr() + shadow_pass.element_from, render_list[RENDER_LIST_SECONDARY].element_info.ptr() + shadow_pass.element_from, shadow_pass.element_count, shadow_pass.flip_cull, shadow_pass.pass_mode, true, false, shadow_pass.rp_uniform_set, false, Vector2(), shadow_pass.camera_plane, shadow_pass.lod_distance_multiplier, shadow_pass.screen_lod_threshold, shadow_pass.element_from, RD::BARRIER_MASK_NO_BARRIER);
+ RenderListParameters render_list_parameters(render_list[RENDER_LIST_SECONDARY].elements.ptr() + shadow_pass.element_from, render_list[RENDER_LIST_SECONDARY].element_info.ptr() + shadow_pass.element_from, shadow_pass.element_count, shadow_pass.flip_cull, shadow_pass.pass_mode, 0, true, false, shadow_pass.rp_uniform_set, false, Vector2(), shadow_pass.camera_plane, shadow_pass.lod_distance_multiplier, shadow_pass.screen_mesh_lod_threshold, 1, shadow_pass.element_from, RD::BARRIER_MASK_NO_BARRIER);
_render_list_with_threads(&render_list_parameters, shadow_pass.framebuffer, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, shadow_pass.initial_depth_action, shadow_pass.final_depth_action, Vector<Color>(), 1.0, 0, shadow_pass.rect);
}
@@ -1710,13 +1777,14 @@ void RenderForwardClustered::_render_shadow_end(uint32_t p_barrier) {
}
void RenderForwardClustered::_render_particle_collider_heightfield(RID p_fb, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, const PagedArray<GeometryInstance *> &p_instances) {
- RENDER_TIMESTAMP("Setup Render Collider Heightfield");
+ RENDER_TIMESTAMP("Setup GPUParticlesCollisionHeightField3D");
RD::get_singleton()->draw_command_begin_label("Render Collider Heightfield");
RenderDataRD render_data;
render_data.cam_projection = p_cam_projection;
render_data.cam_transform = p_cam_transform;
+ render_data.view_projection[0] = p_cam_projection;
render_data.z_near = 0.0;
render_data.z_far = p_cam_projection.get_z_far();
render_data.cluster_size = 1;
@@ -1741,20 +1809,21 @@ void RenderForwardClustered::_render_particle_collider_heightfield(RID p_fb, con
{
//regular forward for now
- RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), false, pass_mode, true, false, rp_uniform_set);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), false, pass_mode, 0, true, false, rp_uniform_set);
_render_list_with_threads(&render_list_params, p_fb, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ);
}
RD::get_singleton()->draw_command_end_label();
}
-void RenderForwardClustered::_render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
- RENDER_TIMESTAMP("Setup Rendering Material");
+void RenderForwardClustered::_render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
+ RENDER_TIMESTAMP("Setup Rendering 3D Material");
- RD::get_singleton()->draw_command_begin_label("Render Material");
+ RD::get_singleton()->draw_command_begin_label("Render 3D Material");
RenderDataRD render_data;
render_data.cam_projection = p_cam_projection;
render_data.cam_transform = p_cam_transform;
+ render_data.view_projection[0] = p_cam_projection;
render_data.cluster_size = 1;
render_data.cluster_max_elements = 32;
render_data.instances = &p_instances;
@@ -1774,17 +1843,19 @@ void RenderForwardClustered::_render_material(const Transform3D &p_cam_transform
RID rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_SECONDARY, nullptr, RID());
- RENDER_TIMESTAMP("Render Material");
+ RENDER_TIMESTAMP("Render 3D Material");
{
- RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, true, false, rp_uniform_set);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, 0, true, false, rp_uniform_set);
//regular forward for now
- Vector<Color> clear;
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
+ Vector<Color> clear = {
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0)
+ };
+
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, clear, 1.0, 0, p_region);
_render_list(draw_list, RD::get_singleton()->framebuffer_get_format(p_framebuffer), &render_list_params, 0, render_list_params.element_count);
RD::get_singleton()->draw_list_end();
@@ -1818,17 +1889,18 @@ void RenderForwardClustered::_render_uv2(const PagedArray<GeometryInstance *> &p
RID rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_SECONDARY, nullptr, RID());
- RENDER_TIMESTAMP("Render Material");
+ RENDER_TIMESTAMP("Render 3D Material");
{
- RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, true, false, rp_uniform_set, true);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, 0, true, false, rp_uniform_set, true);
//regular forward for now
- Vector<Color> clear;
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
+ Vector<Color> clear = {
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0)
+ };
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, clear, 1.0, 0, p_region);
const int uv_offset_count = 9;
@@ -1874,7 +1946,7 @@ void RenderForwardClustered::_render_sdfgi(RID p_render_buffers, const Vector3i
_update_render_base_uniform_set();
- RenderBufferDataForwardClustered *render_buffer = (RenderBufferDataForwardClustered *)render_buffers_get_data(p_render_buffers);
+ RenderBufferDataForwardClustered *render_buffer = static_cast<RenderBufferDataForwardClustered *>(render_buffers_get_data(p_render_buffers));
ERR_FAIL_COND(!render_buffer);
PassMode pass_mode = PASS_MODE_SDF;
@@ -1885,11 +1957,12 @@ void RenderForwardClustered::_render_sdfgi(RID p_render_buffers, const Vector3i
Vector3 half_extents = p_bounds.size * 0.5;
Vector3 center = p_bounds.position + half_extents;
- Vector<RID> sbs;
- sbs.push_back(p_albedo_texture);
- sbs.push_back(p_emission_texture);
- sbs.push_back(p_emission_aniso_texture);
- sbs.push_back(p_geom_facing_texture);
+ Vector<RID> sbs = {
+ p_albedo_texture,
+ p_emission_texture,
+ p_emission_aniso_texture,
+ p_geom_facing_texture
+ };
//print_line("re-render " + p_from + " - " + p_size + " bounds " + p_bounds);
for (int i = 0; i < 3; i++) {
@@ -1911,9 +1984,9 @@ void RenderForwardClustered::_render_sdfgi(RID p_render_buffers, const Vector3i
fb_size.y = p_size[up_axis];
render_data.cam_transform.origin = center + axis * half_extents;
- render_data.cam_transform.basis.set_axis(0, right);
- render_data.cam_transform.basis.set_axis(1, up);
- render_data.cam_transform.basis.set_axis(2, axis);
+ render_data.cam_transform.basis.set_column(0, right);
+ render_data.cam_transform.basis.set_column(1, up);
+ render_data.cam_transform.basis.set_column(2, axis);
//print_line("pass: " + itos(i) + " xform " + render_data.cam_transform);
@@ -1939,7 +2012,7 @@ void RenderForwardClustered::_render_sdfgi(RID p_render_buffers, const Vector3i
E = sdfgi_framebuffer_size_cache.insert(fb_size, fb);
}
- RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, true, false, rp_uniform_set, false);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, 0, true, false, rp_uniform_set, false);
_render_list_with_threads(&render_list_params, E->get(), RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, Vector<Color>(), 1.0, 0, Rect2(), sbs);
}
@@ -1954,35 +2027,39 @@ void RenderForwardClustered::_base_uniforms_changed() {
}
void RenderForwardClustered::_update_render_base_uniform_set() {
- if (render_base_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set) || (lightmap_texture_array_version != storage->lightmap_array_get_version()) || base_uniform_set_updated) {
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ if (render_base_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set) || (lightmap_texture_array_version != light_storage->lightmap_array_get_version()) || base_uniform_set_updated) {
base_uniform_set_updated = false;
if (render_base_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set)) {
RD::get_singleton()->free(render_base_uniform_set);
}
- lightmap_texture_array_version = storage->lightmap_array_get_version();
+ lightmap_texture_array_version = light_storage->lightmap_array_get_version();
Vector<RD::Uniform> uniforms;
{
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 1;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 1, ids);
+
uniforms.push_back(u);
}
@@ -1990,7 +2067,7 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.ids.push_back(scene_shader.shadow_sampler);
+ u.append_id(scene_shader.shadow_sampler);
uniforms.push_back(u);
}
@@ -2001,23 +2078,23 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RID sampler;
switch (decals_get_filter()) {
case RS::DECAL_FILTER_NEAREST: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_NEAREST_MIPMAPS: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR_MIPMAPS: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR_MIPMAPS_ANISOTROPIC: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
}
- u.ids.push_back(sampler);
+ u.append_id(sampler);
uniforms.push_back(u);
}
@@ -2028,23 +2105,23 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RID sampler;
switch (light_projectors_get_filter()) {
case RS::LIGHT_PROJECTOR_FILTER_NEAREST: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_NEAREST_MIPMAPS: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR_MIPMAPS: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR_MIPMAPS_ANISOTROPIC: {
- sampler = storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_custom(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
}
- u.ids.push_back(sampler);
+ u.append_id(sampler);
uniforms.push_back(u);
}
@@ -2052,14 +2129,14 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_omni_light_buffer());
+ u.append_id(get_omni_light_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_spot_light_buffer());
+ u.append_id(get_spot_light_buffer());
uniforms.push_back(u);
}
@@ -2067,51 +2144,51 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_reflection_probe_buffer());
+ u.append_id(get_reflection_probe_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(get_directional_light_buffer());
+ u.append_id(get_directional_light_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(scene_state.lightmap_buffer);
+ u.append_id(scene_state.lightmap_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(scene_state.lightmap_capture_buffer);
+ u.append_id(scene_state.lightmap_capture_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 11;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID decal_atlas = storage->decal_atlas_get_texture();
- u.ids.push_back(decal_atlas);
+ RID decal_atlas = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture();
+ u.append_id(decal_atlas);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 12;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID decal_atlas = storage->decal_atlas_get_texture_srgb();
- u.ids.push_back(decal_atlas);
+ RID decal_atlas = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture_srgb();
+ u.append_id(decal_atlas);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 13;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_decal_buffer());
+ u.append_id(get_decal_buffer());
uniforms.push_back(u);
}
@@ -2119,7 +2196,7 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 14;
- u.ids.push_back(storage->global_variables_get_storage_buffer());
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->global_variables_get_storage_buffer());
uniforms.push_back(u);
}
@@ -2127,7 +2204,7 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 15;
- u.ids.push_back(sdfgi_get_ubo());
+ u.append_id(sdfgi_get_ubo());
uniforms.push_back(u);
}
@@ -2136,12 +2213,12 @@ void RenderForwardClustered::_update_render_base_uniform_set() {
}
RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_render_list, const RenderDataRD *p_render_data, RID p_radiance_texture, bool p_use_directional_shadow_atlas, int p_index) {
- //there should always be enough uniform buffers for render passes, otherwise bugs
- ERR_FAIL_INDEX_V(p_index, (int)scene_state.uniform_buffers.size(), RID());
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
RenderBufferDataForwardClustered *rb = nullptr;
if (p_render_data && p_render_data->render_buffers.is_valid()) {
- rb = (RenderBufferDataForwardClustered *)render_buffers_get_data(p_render_data->render_buffers);
+ rb = static_cast<RenderBufferDataForwardClustered *>(render_buffers_get_data(p_render_data->render_buffers));
}
//default render buffer and scene state uniform set
@@ -2152,7 +2229,7 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
RD::Uniform u;
u.binding = 0;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(scene_state.uniform_buffers[p_index]);
+ u.append_id(scene_state.uniform_buffers[p_index]);
uniforms.push_back(u);
}
{
@@ -2163,7 +2240,7 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
if (instance_buffer == RID()) {
instance_buffer = scene_shader.default_vec4_xform_buffer; // any buffer will do since its not used
}
- u.ids.push_back(instance_buffer);
+ u.append_id(instance_buffer);
uniforms.push_back(u);
}
{
@@ -2171,12 +2248,12 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
if (p_radiance_texture.is_valid()) {
radiance_texture = p_radiance_texture;
} else {
- radiance_texture = storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
+ radiance_texture = texture_storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
}
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(radiance_texture);
+ u.append_id(radiance_texture);
uniforms.push_back(u);
}
@@ -2186,9 +2263,9 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
if (ref_texture.is_valid()) {
- u.ids.push_back(ref_texture);
+ u.append_id(ref_texture);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK));
}
uniforms.push_back(u);
}
@@ -2202,9 +2279,9 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
texture = shadow_atlas_get_texture(p_render_data->shadow_atlas);
}
if (!texture.is_valid()) {
- texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
+ texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
}
- u.ids.push_back(texture);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
@@ -2212,9 +2289,9 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
if (p_use_directional_shadow_atlas && directional_shadow_get_texture().is_valid()) {
- u.ids.push_back(directional_shadow_get_texture());
+ u.append_id(directional_shadow_get_texture());
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH));
}
uniforms.push_back(u);
}
@@ -2222,16 +2299,16 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.resize(scene_state.max_lightmaps);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
for (uint32_t i = 0; i < scene_state.max_lightmaps; i++) {
if (p_render_data && i < p_render_data->lightmaps->size()) {
RID base = lightmap_instance_get_lightmap((*p_render_data->lightmaps)[i]);
- RID texture = storage->lightmap_get_texture(base);
- RID rd_texture = storage->texture_get_rd_texture(texture);
- u.ids.write[i] = rd_texture;
+ RID texture = light_storage->lightmap_get_texture(base);
+ RID rd_texture = texture_storage->texture_get_rd_texture(texture);
+ u.append_id(rd_texture);
} else {
- u.ids.write[i] = default_tex;
+ u.append_id(default_tex);
}
}
@@ -2241,17 +2318,16 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
RD::Uniform u;
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.resize(MAX_VOXEL_GI_INSTANCESS);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
for (int i = 0; i < MAX_VOXEL_GI_INSTANCESS; i++) {
if (p_render_data && i < (int)p_render_data->voxel_gi_instances->size()) {
RID tex = gi.voxel_gi_instance_get_texture((*p_render_data->voxel_gi_instances)[i]);
if (!tex.is_valid()) {
tex = default_tex;
}
- u.ids.write[i] = tex;
+ u.append_id(tex);
} else {
- u.ids.write[i] = default_tex;
+ u.append_id(default_tex);
}
}
@@ -2263,7 +2339,7 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
RID cb = (p_render_data && p_render_data->cluster_buffer.is_valid()) ? p_render_data->cluster_buffer : scene_shader.default_vec4_xform_buffer;
- u.ids.push_back(cb);
+ u.append_id(cb);
uniforms.push_back(u);
}
@@ -2272,8 +2348,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID dbt = rb ? render_buffers_get_back_depth_texture(p_render_data->render_buffers) : RID();
- RID texture = (dbt.is_valid()) ? dbt : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
- u.ids.push_back(texture);
+ RID texture = (dbt.is_valid()) ? dbt : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
@@ -2281,8 +2357,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID bbt = rb ? render_buffers_get_back_buffer_texture(p_render_data->render_buffers) : RID();
- RID texture = bbt.is_valid() ? bbt : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(texture);
+ RID texture = bbt.is_valid() ? bbt : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2291,8 +2367,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
RD::Uniform u;
u.binding = 11;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID texture = rb && rb->normal_roughness_buffer.is_valid() ? rb->normal_roughness_buffer : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_NORMAL);
- u.ids.push_back(texture);
+ RID texture = rb && rb->normal_roughness_buffer.is_valid() ? rb->normal_roughness_buffer : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_NORMAL);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2301,8 +2377,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 12;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID aot = rb ? render_buffers_get_ao_texture(p_render_data->render_buffers) : RID();
- RID texture = aot.is_valid() ? aot : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(texture);
+ RID texture = aot.is_valid() ? aot : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2311,8 +2387,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 13;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID ambient_buffer = rb ? render_buffers_get_gi_ambient_texture(p_render_data->render_buffers) : RID();
- RID texture = ambient_buffer.is_valid() ? ambient_buffer : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(texture);
+ RID texture = ambient_buffer.is_valid() ? ambient_buffer : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2321,8 +2397,8 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 14;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID reflection_buffer = rb ? render_buffers_get_gi_reflection_texture(p_render_data->render_buffers) : RID();
- RID texture = reflection_buffer.is_valid() ? reflection_buffer : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(texture);
+ RID texture = reflection_buffer.is_valid() ? reflection_buffer : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
@@ -2333,9 +2409,9 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
if (rb && render_buffers_is_sdfgi_enabled(p_render_data->render_buffers)) {
t = render_buffers_get_sdfgi_irradiance_probes(p_render_data->render_buffers);
} else {
- t = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+ t = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
}
- u.ids.push_back(t);
+ u.append_id(t);
uniforms.push_back(u);
}
{
@@ -2343,9 +2419,9 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
u.binding = 16;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
if (rb && render_buffers_is_sdfgi_enabled(p_render_data->render_buffers)) {
- u.ids.push_back(render_buffers_get_sdfgi_occlusion_texture(p_render_data->render_buffers));
+ u.append_id(render_buffers_get_sdfgi_occlusion_texture(p_render_data->render_buffers));
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
uniforms.push_back(u);
}
@@ -2353,7 +2429,7 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
RD::Uniform u;
u.binding = 17;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(rb ? render_buffers_get_voxel_gi_buffer(p_render_data->render_buffers) : render_buffers_get_default_voxel_gi_buffer());
+ u.append_id(rb ? render_buffers_get_voxel_gi_buffer(p_render_data->render_buffers) : render_buffers_get_default_voxel_gi_buffer());
uniforms.push_back(u);
}
{
@@ -2364,66 +2440,63 @@ RID RenderForwardClustered::_setup_render_pass_uniform_set(RenderListType p_rend
if (rb && render_buffers_has_volumetric_fog(p_render_data->render_buffers)) {
vfog = render_buffers_get_volumetric_fog_texture(p_render_data->render_buffers);
if (vfog.is_null()) {
- vfog = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ vfog = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
}
} else {
- vfog = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ vfog = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
}
- u.ids.push_back(vfog);
+ u.append_id(vfog);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.binding = 19;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ RID ssil = rb ? render_buffers_get_ssil_texture(p_render_data->render_buffers) : RID();
+ RID texture = ssil.is_valid() ? ssil : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
}
- if (p_index >= (int)render_pass_uniform_sets.size()) {
- render_pass_uniform_sets.resize(p_index + 1);
- }
-
- if (render_pass_uniform_sets[p_index].is_valid() && RD::get_singleton()->uniform_set_is_valid(render_pass_uniform_sets[p_index])) {
- RD::get_singleton()->free(render_pass_uniform_sets[p_index]);
- }
-
- render_pass_uniform_sets[p_index] = RD::get_singleton()->uniform_set_create(uniforms, scene_shader.default_shader_rd, RENDER_PASS_UNIFORM_SET);
- return render_pass_uniform_sets[p_index];
+ return UniformSetCacheRD::get_singleton()->get_cache_vec(scene_shader.default_shader_rd, RENDER_PASS_UNIFORM_SET, uniforms);
}
RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_texture, RID p_emission_texture, RID p_emission_aniso_texture, RID p_geom_facing_texture) {
- if (sdfgi_pass_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(sdfgi_pass_uniform_set)) {
- RD::get_singleton()->free(sdfgi_pass_uniform_set);
- }
-
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
Vector<RD::Uniform> uniforms;
{
RD::Uniform u;
u.binding = 0;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(scene_state.uniform_buffers[0]);
+ u.append_id(scene_state.uniform_buffers[0]);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 1;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(scene_state.instance_buffer[RENDER_LIST_SECONDARY]);
+ u.append_id(scene_state.instance_buffer[RENDER_LIST_SECONDARY]);
uniforms.push_back(u);
}
{
// No radiance texture.
- RID radiance_texture = storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
+ RID radiance_texture = texture_storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(radiance_texture);
+ u.append_id(radiance_texture);
uniforms.push_back(u);
}
{
// No reflection atlas.
- RID ref_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK);
+ RID ref_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK);
RD::Uniform u;
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(ref_texture);
+ u.append_id(ref_texture);
uniforms.push_back(u);
}
@@ -2432,8 +2505,8 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
RD::Uniform u;
u.binding = 4;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
- u.ids.push_back(texture);
+ RID texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2442,8 +2515,8 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
RD::Uniform u;
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
- u.ids.push_back(texture);
+ RID texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -2452,10 +2525,10 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.resize(scene_state.max_lightmaps);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
for (uint32_t i = 0; i < scene_state.max_lightmaps; i++) {
- u.ids.write[i] = default_tex;
+ u.append_id(default_tex);
}
uniforms.push_back(u);
@@ -2466,10 +2539,10 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
RD::Uniform u;
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.resize(MAX_VOXEL_GI_INSTANCESS);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
for (int i = 0; i < MAX_VOXEL_GI_INSTANCESS; i++) {
- u.ids.write[i] = default_tex;
+ u.append_id(default_tex);
}
uniforms.push_back(u);
@@ -2480,7 +2553,7 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
RID cb = scene_shader.default_vec4_xform_buffer;
- u.ids.push_back(cb);
+ u.append_id(cb);
uniforms.push_back(u);
}
@@ -2490,37 +2563,36 @@ RID RenderForwardClustered::_setup_sdfgi_render_pass_uniform_set(RID p_albedo_te
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 9;
- u.ids.push_back(p_albedo_texture);
+ u.append_id(p_albedo_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 10;
- u.ids.push_back(p_emission_texture);
+ u.append_id(p_emission_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 11;
- u.ids.push_back(p_emission_aniso_texture);
+ u.append_id(p_emission_aniso_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 12;
- u.ids.push_back(p_geom_facing_texture);
+ u.append_id(p_geom_facing_texture);
uniforms.push_back(u);
}
- sdfgi_pass_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, scene_shader.default_shader_sdfgi_rd, RENDER_PASS_UNIFORM_SET);
- return sdfgi_pass_uniform_set;
+ return UniformSetCacheRD::get_singleton()->get_cache_vec(scene_shader.default_shader_sdfgi_rd, RENDER_PASS_UNIFORM_SET, uniforms);
}
RID RenderForwardClustered::_render_buffers_get_normal_texture(RID p_render_buffers) {
- RenderBufferDataForwardClustered *rb = (RenderBufferDataForwardClustered *)render_buffers_get_data(p_render_buffers);
+ RenderBufferDataForwardClustered *rb = static_cast<RenderBufferDataForwardClustered *>(render_buffers_get_data(p_render_buffers));
return rb->normal_roughness_buffer;
}
@@ -2548,8 +2620,10 @@ void RenderForwardClustered::_geometry_instance_mark_dirty(GeometryInstance *p_g
}
void RenderForwardClustered::_geometry_instance_add_surface_with_material(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, SceneShaderForwardClustered::MaterialData *p_material, uint32_t p_material_id, uint32_t p_shader_id, RID p_mesh) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
bool has_read_screen_alpha = p_material->shader_data->uses_screen_texture || p_material->shader_data->uses_depth_texture || p_material->shader_data->uses_normal_texture;
- bool has_base_alpha = (p_material->shader_data->uses_alpha || has_read_screen_alpha);
+ bool has_base_alpha = (p_material->shader_data->uses_alpha && !p_material->shader_data->uses_alpha_clip) || has_read_screen_alpha;
bool has_blend_alpha = p_material->shader_data->uses_blend_alpha;
bool has_alpha = has_base_alpha || has_blend_alpha;
@@ -2594,14 +2668,14 @@ void RenderForwardClustered::_geometry_instance_add_surface_with_material(Geomet
SceneShaderForwardClustered::MaterialData *material_shadow = nullptr;
void *surface_shadow = nullptr;
- if (!p_material->shader_data->uses_particle_trails && !p_material->shader_data->writes_modelview_or_projection && !p_material->shader_data->uses_vertex && !p_material->shader_data->uses_position && !p_material->shader_data->uses_discard && !p_material->shader_data->uses_depth_pre_pass) {
+ if (!p_material->shader_data->uses_particle_trails && !p_material->shader_data->writes_modelview_or_projection && !p_material->shader_data->uses_vertex && !p_material->shader_data->uses_position && !p_material->shader_data->uses_discard && !p_material->shader_data->uses_depth_pre_pass && !p_material->shader_data->uses_alpha_clip && p_material->shader_data->cull_mode == SceneShaderForwardClustered::ShaderData::CULL_BACK) {
flags |= GeometryInstanceSurfaceDataCache::FLAG_USES_SHARED_SHADOW_MATERIAL;
- material_shadow = (SceneShaderForwardClustered::MaterialData *)storage->material_get_data(scene_shader.default_material, RendererStorageRD::SHADER_TYPE_3D);
+ material_shadow = static_cast<SceneShaderForwardClustered::MaterialData *>(RendererRD::MaterialStorage::get_singleton()->material_get_data(scene_shader.default_material, RendererRD::SHADER_TYPE_3D));
- RID shadow_mesh = storage->mesh_get_shadow_mesh(p_mesh);
+ RID shadow_mesh = mesh_storage->mesh_get_shadow_mesh(p_mesh);
if (shadow_mesh.is_valid()) {
- surface_shadow = storage->mesh_get_surface(shadow_mesh, p_surface);
+ surface_shadow = mesh_storage->mesh_get_surface(shadow_mesh, p_surface);
}
} else {
@@ -2614,8 +2688,8 @@ void RenderForwardClustered::_geometry_instance_add_surface_with_material(Geomet
sdcache->shader = p_material->shader_data;
sdcache->material_uniform_set = p_material->uniform_set;
- sdcache->surface = storage->mesh_get_surface(p_mesh, p_surface);
- sdcache->primitive = storage->mesh_surface_get_primitive(sdcache->surface);
+ sdcache->surface = mesh_storage->mesh_get_surface(p_mesh, p_surface);
+ sdcache->primitive = mesh_storage->mesh_surface_get_primitive(sdcache->surface);
sdcache->surface_index = p_surface;
if (ginstance->data->dirty_dependencies) {
@@ -2649,7 +2723,27 @@ void RenderForwardClustered::_geometry_instance_add_surface_with_material(Geomet
sdcache->sort.uses_softshadow = ginstance->using_softshadows;
}
+void RenderForwardClustered::_geometry_instance_add_surface_with_material_chain(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, SceneShaderForwardClustered::MaterialData *p_material, RID p_mat_src, RID p_mesh) {
+ SceneShaderForwardClustered::MaterialData *material = p_material;
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ _geometry_instance_add_surface_with_material(ginstance, p_surface, material, p_mat_src.get_local_index(), material_storage->material_get_shader_id(p_mat_src), p_mesh);
+
+ while (material->next_pass.is_valid()) {
+ RID next_pass = material->next_pass;
+ material = static_cast<SceneShaderForwardClustered::MaterialData *>(material_storage->material_get_data(next_pass, RendererRD::SHADER_TYPE_3D));
+ if (!material || !material->shader_data->valid) {
+ break;
+ }
+ if (ginstance->data->dirty_dependencies) {
+ material_storage->material_update_dependency(next_pass, &ginstance->data->dependency_tracker);
+ }
+ _geometry_instance_add_surface_with_material(ginstance, p_surface, material, next_pass.get_local_index(), material_storage->material_get_shader_id(next_pass), p_mesh);
+ }
+}
+
void RenderForwardClustered::_geometry_instance_add_surface(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, RID p_material, RID p_mesh) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
RID m_src;
m_src = ginstance->data->material_override.is_valid() ? ginstance->data->material_override : p_material;
@@ -2657,7 +2751,7 @@ void RenderForwardClustered::_geometry_instance_add_surface(GeometryInstanceForw
SceneShaderForwardClustered::MaterialData *material = nullptr;
if (m_src.is_valid()) {
- material = (SceneShaderForwardClustered::MaterialData *)storage->material_get_data(m_src, RendererStorageRD::SHADER_TYPE_3D);
+ material = static_cast<SceneShaderForwardClustered::MaterialData *>(material_storage->material_get_data(m_src, RendererRD::SHADER_TYPE_3D));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -2665,31 +2759,34 @@ void RenderForwardClustered::_geometry_instance_add_surface(GeometryInstanceForw
if (material) {
if (ginstance->data->dirty_dependencies) {
- storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
+ material_storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
}
} else {
- material = (SceneShaderForwardClustered::MaterialData *)storage->material_get_data(scene_shader.default_material, RendererStorageRD::SHADER_TYPE_3D);
+ material = static_cast<SceneShaderForwardClustered::MaterialData *>(material_storage->material_get_data(scene_shader.default_material, RendererRD::SHADER_TYPE_3D));
m_src = scene_shader.default_material;
}
ERR_FAIL_COND(!material);
- _geometry_instance_add_surface_with_material(ginstance, p_surface, material, m_src.get_local_index(), storage->material_get_shader_id(m_src), p_mesh);
+ _geometry_instance_add_surface_with_material_chain(ginstance, p_surface, material, m_src, p_mesh);
- while (material->next_pass.is_valid()) {
- RID next_pass = material->next_pass;
- material = (SceneShaderForwardClustered::MaterialData *)storage->material_get_data(next_pass, RendererStorageRD::SHADER_TYPE_3D);
- if (!material || !material->shader_data->valid) {
- break;
- }
- if (ginstance->data->dirty_dependencies) {
- storage->material_update_dependency(next_pass, &ginstance->data->dependency_tracker);
+ if (ginstance->data->material_overlay.is_valid()) {
+ m_src = ginstance->data->material_overlay;
+
+ material = static_cast<SceneShaderForwardClustered::MaterialData *>(material_storage->material_get_data(m_src, RendererRD::SHADER_TYPE_3D));
+ if (material && material->shader_data->valid) {
+ if (ginstance->data->dirty_dependencies) {
+ material_storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
+ }
+
+ _geometry_instance_add_surface_with_material_chain(ginstance, p_surface, material, m_src, p_mesh);
}
- _geometry_instance_add_surface_with_material(ginstance, p_surface, material, next_pass.get_local_index(), storage->material_get_shader_id(next_pass), p_mesh);
}
}
void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geometry_instance) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+ RendererRD::ParticlesStorage *particles_storage = RendererRD::ParticlesStorage::get_singleton();
GeometryInstanceForwardClustered *ginstance = static_cast<GeometryInstanceForwardClustered *>(p_geometry_instance);
if (ginstance->data->dirty_dependencies) {
@@ -2703,7 +2800,7 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
uint32_t surface_count;
RID mesh = ginstance->data->base;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
//if no materials, no surfaces.
const RID *inst_materials = ginstance->data->surface_materials.ptr();
@@ -2720,19 +2817,19 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
} break;
case RS::INSTANCE_MULTIMESH: {
- RID mesh = storage->multimesh_get_mesh(ginstance->data->base);
+ RID mesh = mesh_storage->multimesh_get_mesh(ginstance->data->base);
if (mesh.is_valid()) {
const RID *materials = nullptr;
uint32_t surface_count;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
for (uint32_t j = 0; j < surface_count; j++) {
_geometry_instance_add_surface(ginstance, j, materials[j], mesh);
}
}
- ginstance->instance_count = storage->multimesh_get_instances_to_draw(ginstance->data->base);
+ ginstance->instance_count = mesh_storage->multimesh_get_instances_to_draw(ginstance->data->base);
}
} break;
@@ -2746,10 +2843,10 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
} break;
#endif
case RS::INSTANCE_PARTICLES: {
- int draw_passes = storage->particles_get_draw_passes(ginstance->data->base);
+ int draw_passes = particles_storage->particles_get_draw_passes(ginstance->data->base);
for (int j = 0; j < draw_passes; j++) {
- RID mesh = storage->particles_get_draw_pass_mesh(ginstance->data->base, j);
+ RID mesh = particles_storage->particles_get_draw_pass_mesh(ginstance->data->base, j);
if (!mesh.is_valid()) {
continue;
}
@@ -2757,7 +2854,7 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
const RID *materials = nullptr;
uint32_t surface_count;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
for (uint32_t k = 0; k < surface_count; k++) {
_geometry_instance_add_surface(ginstance, k, materials[k], mesh);
@@ -2765,7 +2862,7 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
}
}
- ginstance->instance_count = storage->particles_get_amount(ginstance->data->base, ginstance->trail_steps);
+ ginstance->instance_count = particles_storage->particles_get_amount(ginstance->data->base, ginstance->trail_steps);
} break;
@@ -2781,17 +2878,17 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
if (ginstance->data->base_type == RS::INSTANCE_MULTIMESH) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH;
- if (storage->multimesh_get_transform_format(ginstance->data->base) == RS::MULTIMESH_TRANSFORM_2D) {
+ if (mesh_storage->multimesh_get_transform_format(ginstance->data->base) == RS::MULTIMESH_TRANSFORM_2D) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_FORMAT_2D;
}
- if (storage->multimesh_uses_colors(ginstance->data->base)) {
+ if (mesh_storage->multimesh_uses_colors(ginstance->data->base)) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_HAS_COLOR;
}
- if (storage->multimesh_uses_custom_data(ginstance->data->base)) {
+ if (mesh_storage->multimesh_uses_custom_data(ginstance->data->base)) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_HAS_CUSTOM_DATA;
}
- ginstance->transforms_uniform_set = storage->multimesh_get_3d_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ ginstance->transforms_uniform_set = mesh_storage->multimesh_get_3d_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
} else if (ginstance->data->base_type == RS::INSTANCE_PARTICLES) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH;
@@ -2802,16 +2899,16 @@ void RenderForwardClustered::_geometry_instance_update(GeometryInstance *p_geome
//for particles, stride is the trail size
ginstance->base_flags |= (ginstance->trail_steps << INSTANCE_DATA_FLAGS_PARTICLE_TRAIL_SHIFT);
- if (!storage->particles_is_using_local_coords(ginstance->data->base)) {
+ if (!particles_storage->particles_is_using_local_coords(ginstance->data->base)) {
store_transform = false;
}
- ginstance->transforms_uniform_set = storage->particles_get_instance_buffer_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ ginstance->transforms_uniform_set = particles_storage->particles_get_instance_buffer_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
} else if (ginstance->data->base_type == RS::INSTANCE_MESH) {
- if (storage->skeleton_is_valid(ginstance->data->skeleton)) {
- ginstance->transforms_uniform_set = storage->skeleton_get_3d_uniform_set(ginstance->data->skeleton, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ if (mesh_storage->skeleton_is_valid(ginstance->data->skeleton)) {
+ ginstance->transforms_uniform_set = mesh_storage->skeleton_get_3d_uniform_set(ginstance->data->skeleton, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
if (ginstance->data->dirty_dependencies) {
- storage->skeleton_update_dependency(ginstance->data->skeleton, &ginstance->data->dependency_tracker);
+ mesh_storage->skeleton_update_dependency(ginstance->data->skeleton, &ginstance->data->dependency_tracker);
}
}
}
@@ -2851,7 +2948,7 @@ void RenderForwardClustered::_geometry_instance_dependency_changed(RendererStora
case RendererStorage::DEPENDENCY_CHANGED_MULTIMESH_VISIBLE_INSTANCES: {
GeometryInstanceForwardClustered *ginstance = static_cast<GeometryInstanceForwardClustered *>(p_tracker->userdata);
if (ginstance->data->base_type == RS::INSTANCE_MULTIMESH) {
- ginstance->instance_count = static_cast<RenderForwardClustered *>(singleton)->storage->multimesh_get_instances_to_draw(ginstance->data->base);
+ ginstance->instance_count = RendererRD::MeshStorage::get_singleton()->multimesh_get_instances_to_draw(ginstance->data->base);
}
} break;
default: {
@@ -2894,6 +2991,13 @@ void RenderForwardClustered::geometry_instance_set_material_override(GeometryIns
_geometry_instance_mark_dirty(ginstance);
ginstance->data->dirty_dependencies = true;
}
+void RenderForwardClustered::geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_overlay) {
+ GeometryInstanceForwardClustered *ginstance = static_cast<GeometryInstanceForwardClustered *>(p_geometry_instance);
+ ERR_FAIL_COND(!ginstance);
+ ginstance->data->material_overlay = p_overlay;
+ _geometry_instance_mark_dirty(ginstance);
+ ginstance->data->dirty_dependencies = true;
+}
void RenderForwardClustered::geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_materials) {
GeometryInstanceForwardClustered *ginstance = static_cast<GeometryInstanceForwardClustered *>(p_geometry_instance);
ERR_FAIL_COND(!ginstance);
@@ -3158,17 +3262,6 @@ RenderForwardClustered::RenderForwardClustered(RendererStorageRD *p_storage) :
RenderForwardClustered::~RenderForwardClustered() {
directional_shadow_atlas_set_size(0);
- //clear base uniform set if still valid
- for (uint32_t i = 0; i < render_pass_uniform_sets.size(); i++) {
- if (render_pass_uniform_sets[i].is_valid() && RD::get_singleton()->uniform_set_is_valid(render_pass_uniform_sets[i])) {
- RD::get_singleton()->free(render_pass_uniform_sets[i]);
- }
- }
-
- if (sdfgi_pass_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(sdfgi_pass_uniform_set)) {
- RD::get_singleton()->free(sdfgi_pass_uniform_set);
- }
-
{
for (uint32_t i = 0; i < scene_state.uniform_buffers.size(); i++) {
RD::get_singleton()->free(scene_state.uniform_buffers[i]);
diff --git a/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.h b/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.h
index d6ab4d1db2..0e588aecb4 100644
--- a/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.h
+++ b/servers/rendering/renderer_rd/forward_clustered/render_forward_clustered.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -103,16 +103,18 @@ class RenderForwardClustered : public RendererSceneRenderRD {
RID depth_fb;
RID depth_normal_roughness_fb;
RID depth_normal_roughness_voxelgi_fb;
- RID color_fb;
- RID color_specular_fb;
+ RID color_only_fb;
RID specular_only_fb;
int width, height;
+ Map<uint32_t, RID> color_framebuffers;
+ uint32_t view_count;
RID render_sdfgi_uniform_set;
void ensure_specular();
void ensure_voxelgi();
void clear();
virtual void configure(RID p_color_buffer, RID p_depth_buffer, RID p_target_buffer, int p_width, int p_height, RS::ViewportMSAA p_msaa, uint32_t p_view_count);
+ RID get_color_pass_fb(uint32_t p_color_pass_flags);
~RenderBufferDataForwardClustered();
};
@@ -121,8 +123,6 @@ class RenderForwardClustered : public RendererSceneRenderRD {
void _allocate_normal_roughness_texture(RenderBufferDataForwardClustered *rb);
RID render_base_uniform_set;
- LocalVector<RID> render_pass_uniform_sets;
- RID sdfgi_pass_uniform_set;
uint64_t lightmap_texture_array_version = 0xFFFFFFFF;
@@ -136,8 +136,6 @@ class RenderForwardClustered : public RendererSceneRenderRD {
enum PassMode {
PASS_MODE_COLOR,
- PASS_MODE_COLOR_SPECULAR,
- PASS_MODE_COLOR_TRANSPARENT,
PASS_MODE_SHADOW,
PASS_MODE_SHADOW_DP,
PASS_MODE_DEPTH,
@@ -147,6 +145,12 @@ class RenderForwardClustered : public RendererSceneRenderRD {
PASS_MODE_SDF,
};
+ enum ColorPassFlags {
+ COLOR_PASS_FLAG_TRANSPARENT = 1 << 0,
+ COLOR_PASS_FLAG_SEPARATE_SPECULAR = 1 << 1,
+ COLOR_PASS_FLAG_MULTIVIEW = 1 << 2
+ };
+
struct GeometryInstanceSurfaceDataCache;
struct RenderElementInfo;
@@ -156,31 +160,35 @@ class RenderForwardClustered : public RendererSceneRenderRD {
int element_count = 0;
bool reverse_cull = false;
PassMode pass_mode = PASS_MODE_COLOR;
+ uint32_t color_pass_flags = 0;
bool no_gi = false;
+ uint32_t view_count = 1;
RID render_pass_uniform_set;
bool force_wireframe = false;
Vector2 uv_offset;
Plane lod_plane;
float lod_distance_multiplier = 0.0;
- float screen_lod_threshold = 0.0;
+ float screen_mesh_lod_threshold = 0.0;
RD::FramebufferFormatID framebuffer_format = 0;
uint32_t element_offset = 0;
uint32_t barrier = RD::BARRIER_MASK_ALL;
bool use_directional_soft_shadow = false;
- RenderListParameters(GeometryInstanceSurfaceDataCache **p_elements, RenderElementInfo *p_element_info, int p_element_count, bool p_reverse_cull, PassMode p_pass_mode, bool p_no_gi, bool p_use_directional_soft_shadows, RID p_render_pass_uniform_set, bool p_force_wireframe = false, const Vector2 &p_uv_offset = Vector2(), const Plane &p_lod_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_lod_threshold = 0.0, uint32_t p_element_offset = 0, uint32_t p_barrier = RD::BARRIER_MASK_ALL) {
+ RenderListParameters(GeometryInstanceSurfaceDataCache **p_elements, RenderElementInfo *p_element_info, int p_element_count, bool p_reverse_cull, PassMode p_pass_mode, uint32_t p_color_pass_flags, bool p_no_gi, bool p_use_directional_soft_shadows, RID p_render_pass_uniform_set, bool p_force_wireframe = false, const Vector2 &p_uv_offset = Vector2(), const Plane &p_lod_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_mesh_lod_threshold = 0.0, uint32_t p_view_count = 1, uint32_t p_element_offset = 0, uint32_t p_barrier = RD::BARRIER_MASK_ALL) {
elements = p_elements;
element_info = p_element_info;
element_count = p_element_count;
reverse_cull = p_reverse_cull;
pass_mode = p_pass_mode;
+ color_pass_flags = p_color_pass_flags;
no_gi = p_no_gi;
+ view_count = p_view_count;
render_pass_uniform_set = p_render_pass_uniform_set;
force_wireframe = p_force_wireframe;
uv_offset = p_uv_offset;
lod_plane = p_lod_plane;
lod_distance_multiplier = p_lod_distance_multiplier;
- screen_lod_threshold = p_screen_lod_threshold;
+ screen_mesh_lod_threshold = p_screen_mesh_lod_threshold;
element_offset = p_element_offset;
barrier = p_barrier;
use_directional_soft_shadow = p_use_directional_soft_shadows;
@@ -210,7 +218,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
INSTANCE_DATA_FLAGS_PARTICLE_TRAIL_SHIFT = 16,
INSTANCE_DATA_FLAGS_PARTICLE_TRAIL_MASK = 0xFF,
INSTANCE_DATA_FLAGS_FADE_SHIFT = 24,
- INSTANCE_DATA_FLAGS_FADE_MASK = 0xFF << INSTANCE_DATA_FLAGS_FADE_SHIFT
+ INSTANCE_DATA_FLAGS_FADE_MASK = 0xFFUL << INSTANCE_DATA_FLAGS_FADE_SHIFT
};
struct SceneState {
@@ -218,8 +226,11 @@ class RenderForwardClustered : public RendererSceneRenderRD {
struct UBO {
float projection_matrix[16];
float inv_projection_matrix[16];
- float camera_matrix[16];
- float inv_camera_matrix[16];
+ float inv_view_matrix[16];
+ float view_matrix[16];
+
+ float projection_matrix_view[RendererSceneRender::MAX_RENDER_VIEWS][16];
+ float inv_projection_matrix_view[RendererSceneRender::MAX_RENDER_VIEWS][16];
float viewport_size[2];
float screen_pixel_size[2];
@@ -251,7 +262,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
float z_far;
float z_near;
- uint32_t ssao_enabled;
+ uint32_t ss_effects_flags;
float ssao_light_affect;
float ssao_ao_affect;
uint32_t roughness_limiter_enabled;
@@ -321,7 +332,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
uint32_t instance_buffer_size[RENDER_LIST_MAX] = { 0, 0, 0 };
LocalVector<InstanceData> instance_data[RENDER_LIST_MAX];
- LightmapCaptureData *lightmap_captures;
+ LightmapCaptureData *lightmap_captures = nullptr;
uint32_t max_lightmap_captures;
RID lightmap_capture_buffer;
@@ -342,7 +353,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
RID rp_uniform_set;
Plane camera_plane;
float lod_distance_multiplier;
- float screen_lod_threshold;
+ float screen_mesh_lod_threshold;
RID framebuffer;
RD::InitialAction initial_depth_action;
@@ -370,7 +381,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
uint32_t lod_index : 8;
};
- template <PassMode p_pass_mode>
+ template <PassMode p_pass_mode, uint32_t p_color_pass_flags = 0>
_FORCE_INLINE_ void _render_list_template(RenderingDevice::DrawListID p_draw_list, RenderingDevice::FramebufferFormatID p_framebuffer_Format, RenderListParameters *p_params, uint32_t p_from_element, uint32_t p_to_element);
void _render_list(RenderingDevice::DrawListID p_draw_list, RenderingDevice::FramebufferFormatID p_framebuffer_Format, RenderListParameters *p_params, uint32_t p_from_element, uint32_t p_to_element);
@@ -496,6 +507,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
RID skeleton;
Vector<RID> surface_materials;
RID material_override;
+ RID material_overlay;
AABB aabb;
bool use_dynamic_gi = false;
@@ -523,6 +535,7 @@ class RenderForwardClustered : public RendererSceneRenderRD {
PagedAllocator<GeometryInstanceLightmapSH> geometry_instance_lightmap_sh;
void _geometry_instance_add_surface_with_material(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, SceneShaderForwardClustered::MaterialData *p_material, uint32_t p_material_id, uint32_t p_shader_id, RID p_mesh);
+ void _geometry_instance_add_surface_with_material_chain(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, SceneShaderForwardClustered::MaterialData *p_material, RID p_mat_src, RID p_mesh);
void _geometry_instance_add_surface(GeometryInstanceForwardClustered *ginstance, uint32_t p_surface, RID p_material, RID p_mesh);
void _geometry_instance_mark_dirty(GeometryInstance *p_geometry_instance);
void _geometry_instance_update(GeometryInstance *p_geometry_instance);
@@ -594,11 +607,11 @@ protected:
virtual void _render_scene(RenderDataRD *p_render_data, const Color &p_default_bg_color) override;
virtual void _render_shadow_begin() override;
- virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) override;
+ virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_mesh_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) override;
virtual void _render_shadow_process() override;
virtual void _render_shadow_end(uint32_t p_barrier = RD::BARRIER_MASK_ALL) override;
- virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
+ virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
virtual void _render_uv2(const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
virtual void _render_sdfgi(RID p_render_buffers, const Vector3i &p_from, const Vector3i &p_size, const AABB &p_bounds, const PagedArray<GeometryInstance *> &p_instances, const RID &p_albedo_texture, const RID &p_emission_texture, const RID &p_emission_aniso_texture, const RID &p_geom_facing_texture) override;
virtual void _render_particle_collider_heightfield(RID p_fb, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, const PagedArray<GeometryInstance *> &p_instances) override;
@@ -612,6 +625,7 @@ public:
virtual GeometryInstance *geometry_instance_create(RID p_base) override;
virtual void geometry_instance_set_skeleton(GeometryInstance *p_geometry_instance, RID p_skeleton) override;
virtual void geometry_instance_set_material_override(GeometryInstance *p_geometry_instance, RID p_override) override;
+ virtual void geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_override) override;
virtual void geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_materials) override;
virtual void geometry_instance_set_mesh_instance(GeometryInstance *p_geometry_instance, RID p_mesh_instance) override;
virtual void geometry_instance_set_transform(GeometryInstance *p_geometry_instance, const Transform3D &p_transform, const AABB &p_aabb, const AABB &p_transformed_aabb) override;
diff --git a/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.cpp b/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.cpp
index 71753f9694..036ad0f18a 100644
--- a/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.cpp
+++ b/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -32,6 +32,8 @@
#include "core/config/project_settings.h"
#include "core/math/math_defs.h"
#include "render_forward_clustered.h"
+#include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
using namespace RendererSceneRenderImplementation;
@@ -48,15 +50,16 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
return; //just invalid, but no error
}
- ShaderCompilerRD::GeneratedCode gen_code;
+ ShaderCompiler::GeneratedCode gen_code;
int blend_mode = BLEND_MODE_MIX;
int depth_testi = DEPTH_TEST_ENABLED;
int alpha_antialiasing_mode = ALPHA_ANTIALIASING_OFF;
- int cull = CULL_BACK;
+ int cull_modei = CULL_BACK;
uses_point_size = false;
uses_alpha = false;
+ uses_alpha_clip = false;
uses_blend_alpha = false;
uses_depth_pre_pass = false;
uses_discard = false;
@@ -79,10 +82,10 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
int depth_drawi = DEPTH_DRAW_OPAQUE;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["vertex"] = ShaderCompilerRD::STAGE_VERTEX;
- actions.entry_point_stages["fragment"] = ShaderCompilerRD::STAGE_FRAGMENT;
- actions.entry_point_stages["light"] = ShaderCompilerRD::STAGE_FRAGMENT;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["vertex"] = ShaderCompiler::STAGE_VERTEX;
+ actions.entry_point_stages["fragment"] = ShaderCompiler::STAGE_FRAGMENT;
+ actions.entry_point_stages["light"] = ShaderCompiler::STAGE_FRAGMENT;
actions.render_mode_values["blend_add"] = Pair<int *, int>(&blend_mode, BLEND_MODE_ADD);
actions.render_mode_values["blend_mix"] = Pair<int *, int>(&blend_mode, BLEND_MODE_MIX);
@@ -98,15 +101,16 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
actions.render_mode_values["depth_test_disabled"] = Pair<int *, int>(&depth_testi, DEPTH_TEST_DISABLED);
- actions.render_mode_values["cull_disabled"] = Pair<int *, int>(&cull, CULL_DISABLED);
- actions.render_mode_values["cull_front"] = Pair<int *, int>(&cull, CULL_FRONT);
- actions.render_mode_values["cull_back"] = Pair<int *, int>(&cull, CULL_BACK);
+ actions.render_mode_values["cull_disabled"] = Pair<int *, int>(&cull_modei, CULL_DISABLED);
+ actions.render_mode_values["cull_front"] = Pair<int *, int>(&cull_modei, CULL_FRONT);
+ actions.render_mode_values["cull_back"] = Pair<int *, int>(&cull_modei, CULL_BACK);
actions.render_mode_flags["unshaded"] = &unshaded;
actions.render_mode_flags["wireframe"] = &wireframe;
actions.render_mode_flags["particle_trails"] = &uses_particle_trails;
actions.usage_flag_pointers["ALPHA"] = &uses_alpha;
+ actions.usage_flag_pointers["ALPHA_SCISSOR_THRESHOLD"] = &uses_alpha_clip;
actions.render_mode_flags["depth_prepass_alpha"] = &uses_depth_pre_pass;
actions.usage_flag_pointers["SSS_STRENGTH"] = &uses_sss;
@@ -141,6 +145,7 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
depth_draw = DepthDraw(depth_drawi);
depth_test = DepthTest(depth_testi);
+ cull_mode = Cull(cull_modei);
#if 0
print_line("**compiling shader:");
@@ -149,7 +154,7 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
print_line(gen_code.defines[i]);
}
- Map<String, String>::Element * el = gen_code.code.front();
+ Map<String, String>::Element *el = gen_code.code.front();
while (el) {
print_line("\n**code " + el->key() + ":\n" + el->value());
@@ -157,10 +162,10 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
}
print_line("\n**uniforms:\n" + gen_code.uniforms);
- print_line("\n**vertex_globals:\n" + gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX]);
- print_line("\n**fragment_globals:\n" + gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT]);
+ print_line("\n**vertex_globals:\n" + gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX]);
+ print_line("\n**fragment_globals:\n" + gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT]);
#endif
- shader_singleton->shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX], gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT], gen_code.defines);
+ shader_singleton->shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX], gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT], gen_code.defines);
ERR_FAIL_COND(!shader_singleton->shader.version_is_valid(version));
ubo_size = gen_code.uniform_total_size;
@@ -230,10 +235,10 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
}
}
- RD::PipelineColorBlendState blend_state_blend;
- blend_state_blend.attachments.push_back(blend_attachment);
- RD::PipelineColorBlendState blend_state_opaque = RD::PipelineColorBlendState::create_disabled(1);
- RD::PipelineColorBlendState blend_state_opaque_specular = RD::PipelineColorBlendState::create_disabled(2);
+ // Color pass -> attachment 0: Color/Diffuse, attachment 1: Separate Specular
+ RD::PipelineColorBlendState blend_state_color_blend;
+ blend_state_color_blend.attachments = { blend_attachment, RD::PipelineColorBlendState::Attachment() };
+ RD::PipelineColorBlendState blend_state_color_opaque = RD::PipelineColorBlendState::create_disabled(2);
RD::PipelineColorBlendState blend_state_depth_normal_roughness = RD::PipelineColorBlendState::create_disabled(1);
RD::PipelineColorBlendState blend_state_depth_normal_roughness_giprobe = RD::PipelineColorBlendState::create_disabled(2);
@@ -254,7 +259,7 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
{ RD::POLYGON_CULL_DISABLED, RD::POLYGON_CULL_DISABLED, RD::POLYGON_CULL_DISABLED }
};
- RD::PolygonCullMode cull_mode_rd = cull_mode_rd_table[i][cull];
+ RD::PolygonCullMode cull_mode_rd = cull_mode_rd_table[i][cull_mode];
for (int j = 0; j < RS::PRIMITIVE_MAX; j++) {
RD::RenderPrimitive primitive_rd_table[RS::PRIMITIVE_MAX] = {
@@ -276,12 +281,8 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
SHADER_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI,
SHADER_VERSION_DEPTH_PASS_WITH_MATERIAL,
SHADER_VERSION_DEPTH_PASS_WITH_SDF,
+ SHADER_VERSION_DEPTH_PASS_MULTIVIEW,
SHADER_VERSION_COLOR_PASS,
- SHADER_VERSION_COLOR_PASS_WITH_SEPARATE_SPECULAR,
- SHADER_VERSION_COLOR_PASS,
- SHADER_VERSION_LIGHTMAP_COLOR_PASS,
- SHADER_VERSION_LIGHTMAP_COLOR_PASS_WITH_SEPARATE_SPECULAR,
- SHADER_VERSION_LIGHTMAP_COLOR_PASS,
};
shader_version = shader_version_table[k];
@@ -293,42 +294,70 @@ void SceneShaderForwardClustered::ShaderData::set_code(const String &p_code) {
raster_state.cull_mode = cull_mode_rd;
raster_state.wireframe = wireframe;
- RD::PipelineColorBlendState blend_state;
- RD::PipelineDepthStencilState depth_stencil = depth_stencil_state;
- RD::PipelineMultisampleState multisample_state;
-
- if (k == PIPELINE_VERSION_TRANSPARENT_PASS || k == PIPELINE_VERSION_LIGHTMAP_TRANSPARENT_PASS) {
- if (alpha_antialiasing_mode == ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE) {
- multisample_state.enable_alpha_to_coverage = true;
- } else if (alpha_antialiasing_mode == ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE_AND_TO_ONE) {
- multisample_state.enable_alpha_to_coverage = true;
- multisample_state.enable_alpha_to_one = true;
+ if (k == PIPELINE_VERSION_COLOR_PASS) {
+ for (int l = 0; l < PIPELINE_COLOR_PASS_FLAG_COUNT; l++) {
+ if (!shader_singleton->valid_color_pass_pipelines.has(l)) {
+ continue;
+ }
+
+ RD::PipelineColorBlendState blend_state;
+ RD::PipelineDepthStencilState depth_stencil = depth_stencil_state;
+ RD::PipelineMultisampleState multisample_state;
+
+ int shader_flags = 0;
+ if (l & PIPELINE_COLOR_PASS_FLAG_TRANSPARENT) {
+ if (alpha_antialiasing_mode == ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE) {
+ multisample_state.enable_alpha_to_coverage = true;
+ } else if (alpha_antialiasing_mode == ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE_AND_TO_ONE) {
+ multisample_state.enable_alpha_to_coverage = true;
+ multisample_state.enable_alpha_to_one = true;
+ }
+
+ blend_state = blend_state_color_blend;
+
+ if (depth_draw == DEPTH_DRAW_OPAQUE) {
+ depth_stencil.enable_depth_write = false; //alpha does not draw depth
+ }
+ } else {
+ blend_state = blend_state_color_opaque;
+
+ if (l & PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR) {
+ shader_flags |= SHADER_COLOR_PASS_FLAG_SEPARATE_SPECULAR;
+ }
+ }
+
+ if (l & PIPELINE_COLOR_PASS_FLAG_LIGHTMAP) {
+ shader_flags |= SHADER_COLOR_PASS_FLAG_LIGHTMAP;
+ }
+
+ if (l & PIPELINE_COLOR_PASS_FLAG_MULTIVIEW) {
+ shader_flags |= SHADER_COLOR_PASS_FLAG_MULTIVIEW;
+ }
+
+ int variant = shader_version + shader_flags;
+ RID shader_variant = shader_singleton->shader.version_get_shader(version, variant);
+ color_pipelines[i][j][l].setup(shader_variant, primitive_rd, raster_state, multisample_state, depth_stencil, blend_state, 0, singleton->default_specialization_constants);
}
-
- blend_state = blend_state_blend;
-
- if (depth_draw == DEPTH_DRAW_OPAQUE) {
- depth_stencil.enable_depth_write = false; //alpha does not draw depth
- }
- } else if (k == PIPELINE_VERSION_OPAQUE_PASS || k == PIPELINE_VERSION_LIGHTMAP_OPAQUE_PASS) {
- blend_state = blend_state_opaque;
- } else if (k == PIPELINE_VERSION_DEPTH_PASS || k == PIPELINE_VERSION_DEPTH_PASS_DP) {
- //none, leave empty
- } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS) {
- blend_state = blend_state_depth_normal_roughness;
- } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI) {
- blend_state = blend_state_depth_normal_roughness_giprobe;
- } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_MATERIAL) {
- blend_state = RD::PipelineColorBlendState::create_disabled(5); //writes to normal and roughness in opaque way
- } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_SDF) {
- blend_state = RD::PipelineColorBlendState(); //no color targets for SDF
} else {
- //specular write
- blend_state = blend_state_opaque_specular;
- }
+ RD::PipelineColorBlendState blend_state;
+ RD::PipelineDepthStencilState depth_stencil = depth_stencil_state;
+ RD::PipelineMultisampleState multisample_state;
+
+ if (k == PIPELINE_VERSION_DEPTH_PASS || k == PIPELINE_VERSION_DEPTH_PASS_DP || k == PIPELINE_VERSION_DEPTH_PASS_MULTIVIEW) {
+ //none, leave empty
+ } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS) {
+ blend_state = blend_state_depth_normal_roughness;
+ } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI) {
+ blend_state = blend_state_depth_normal_roughness_giprobe;
+ } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_MATERIAL) {
+ blend_state = RD::PipelineColorBlendState::create_disabled(5); //writes to normal and roughness in opaque way
+ } else if (k == PIPELINE_VERSION_DEPTH_PASS_WITH_SDF) {
+ blend_state = RD::PipelineColorBlendState(); //no color targets for SDF
+ }
- RID shader_variant = shader_singleton->shader.version_get_shader(version, shader_version);
- pipelines[i][j][k].setup(shader_variant, primitive_rd, raster_state, multisample_state, depth_stencil, blend_state, 0, singleton->default_specialization_constants);
+ RID shader_variant = shader_singleton->shader.version_get_shader(version, shader_version);
+ pipelines[i][j][k].setup(shader_variant, primitive_rd, raster_state, multisample_state, depth_stencil, blend_state, 0, singleton->default_specialization_constants);
+ }
}
}
}
@@ -375,13 +404,13 @@ void SceneShaderForwardClustered::ShaderData::get_param_list(List<PropertyInfo>
}
}
-void SceneShaderForwardClustered::ShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
+void SceneShaderForwardClustered::ShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
continue;
}
- RendererStorage::InstanceShaderParam p;
+ RendererMaterialStorage::InstanceShaderParam p;
p.info = ShaderLanguage::uniform_to_property_info(E.value);
p.info.name = E.key; //supply name
p.index = E.value.instance_index;
@@ -423,8 +452,6 @@ RS::ShaderNativeSourceCode SceneShaderForwardClustered::ShaderData::get_native_s
SceneShaderForwardClustered::ShaderData::ShaderData() :
shader_list_element(this) {
- valid = false;
- uses_screen_texture = false;
}
SceneShaderForwardClustered::ShaderData::~ShaderData() {
@@ -436,7 +463,7 @@ SceneShaderForwardClustered::ShaderData::~ShaderData() {
}
}
-RendererStorageRD::ShaderData *SceneShaderForwardClustered::_create_shader_func() {
+RendererRD::ShaderData *SceneShaderForwardClustered::_create_shader_func() {
ShaderData *shader_data = memnew(ShaderData);
singleton->shader_list.add(&shader_data->shader_list_element);
return shader_data;
@@ -460,10 +487,9 @@ SceneShaderForwardClustered::MaterialData::~MaterialData() {
free_parameters_uniform_set(uniform_set);
}
-RendererStorageRD::MaterialData *SceneShaderForwardClustered::_create_material_func(ShaderData *p_shader) {
+RendererRD::MaterialData *SceneShaderForwardClustered::_create_material_func(ShaderData *p_shader) {
MaterialData *material_data = memnew(MaterialData);
material_data->shader_data = p_shader;
- material_data->last_frame = false;
//update will happen later anyway so do nothing.
return material_data;
}
@@ -476,17 +502,20 @@ SceneShaderForwardClustered::SceneShaderForwardClustered() {
}
SceneShaderForwardClustered::~SceneShaderForwardClustered() {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
RD::get_singleton()->free(default_vec4_xform_buffer);
RD::get_singleton()->free(shadow_sampler);
- storage->free(overdraw_material_shader);
- storage->free(default_shader);
+ material_storage->shader_free(overdraw_material_shader);
+ material_storage->shader_free(default_shader);
- storage->free(overdraw_material);
- storage->free(default_material);
+ material_storage->material_free(overdraw_material);
+ material_storage->material_free(default_material);
}
void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const String p_defines) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
storage = p_storage;
{
@@ -497,27 +526,62 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
shader_versions.push_back("\n#define MODE_RENDER_DEPTH\n#define MODE_RENDER_NORMAL_ROUGHNESS\n#define MODE_RENDER_VOXEL_GI\n"); // SHADER_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_GIPROBE
shader_versions.push_back("\n#define MODE_RENDER_DEPTH\n#define MODE_RENDER_MATERIAL\n"); // SHADER_VERSION_DEPTH_PASS_WITH_MATERIAL
shader_versions.push_back("\n#define MODE_RENDER_DEPTH\n#define MODE_RENDER_SDF\n"); // SHADER_VERSION_DEPTH_PASS_WITH_SDF
- shader_versions.push_back(""); // SHADER_VERSION_COLOR_PASS
- shader_versions.push_back("\n#define MODE_MULTIPLE_RENDER_TARGETS\n"); // SHADER_VERSION_COLOR_PASS_WITH_SEPARATE_SPECULAR
- shader_versions.push_back("\n#define USE_LIGHTMAP\n"); // SHADER_VERSION_LIGHTMAP_COLOR_PASS
- shader_versions.push_back("\n#define MODE_MULTIPLE_RENDER_TARGETS\n#define USE_LIGHTMAP\n"); // SHADER_VERSION_LIGHTMAP_COLOR_PASS_WITH_SEPARATE_SPECULAR
+ shader_versions.push_back("\n#define USE_MULTIVIEW\n#define MODE_RENDER_DEPTH\n"); // SHADER_VERSION_DEPTH_PASS_MULTIVIEW
+
+ Vector<String> color_pass_flags = {
+ "\n#define MODE_SEPARATE_SPECULAR\n", // SHADER_COLOR_PASS_FLAG_SEPARATE_SPECULAR
+ "\n#define USE_LIGHTMAP\n", // SHADER_COLOR_PASS_FLAG_LIGHTMAP
+ "\n#define USE_MULTIVIEW\n", // SHADER_COLOR_PASS_FLAG_MULTIVIEW
+ };
+
+ for (int i = 0; i < SHADER_COLOR_PASS_FLAG_COUNT; i++) {
+ String version = "";
+ for (int j = 0; (1 << j) < SHADER_COLOR_PASS_FLAG_COUNT; j += 1) {
+ if ((1 << j) & i) {
+ version += color_pass_flags[j];
+ }
+ }
+ shader_versions.push_back(version);
+ }
shader.initialize(shader_versions, p_defines);
+
+ if (!RendererCompositorRD::singleton->is_xr_enabled()) {
+ shader.set_variant_enabled(SHADER_VERSION_DEPTH_PASS_MULTIVIEW, false);
+ // TODO Add a way to enable/disable color pass flags
+ }
}
- storage->shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_3D, _create_shader_funcs);
- storage->material_set_data_request_function(RendererStorageRD::SHADER_TYPE_3D, _create_material_funcs);
+ valid_color_pass_pipelines.insert(0);
+
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_TRANSPARENT);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_TRANSPARENT | PIPELINE_COLOR_PASS_FLAG_LIGHTMAP);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_TRANSPARENT | PIPELINE_COLOR_PASS_FLAG_MULTIVIEW);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_TRANSPARENT | PIPELINE_COLOR_PASS_FLAG_MULTIVIEW | PIPELINE_COLOR_PASS_FLAG_LIGHTMAP);
+
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR | PIPELINE_COLOR_PASS_FLAG_LIGHTMAP);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR | PIPELINE_COLOR_PASS_FLAG_MULTIVIEW);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR | PIPELINE_COLOR_PASS_FLAG_MULTIVIEW | PIPELINE_COLOR_PASS_FLAG_LIGHTMAP);
+
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_LIGHTMAP);
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_LIGHTMAP | PIPELINE_COLOR_PASS_FLAG_MULTIVIEW);
+
+ valid_color_pass_pipelines.insert(PIPELINE_COLOR_PASS_FLAG_MULTIVIEW);
+
+ material_storage->shader_set_data_request_function(RendererRD::SHADER_TYPE_3D, _create_shader_funcs);
+ material_storage->material_set_data_request_function(RendererRD::SHADER_TYPE_3D, _create_material_funcs);
{
//shader compiler
- ShaderCompilerRD::DefaultIdentifierActions actions;
+ ShaderCompiler::DefaultIdentifierActions actions;
- actions.renames["WORLD_MATRIX"] = "world_matrix";
- actions.renames["WORLD_NORMAL_MATRIX"] = "world_normal_matrix";
- actions.renames["INV_CAMERA_MATRIX"] = "scene_data.inv_camera_matrix";
- actions.renames["CAMERA_MATRIX"] = "scene_data.camera_matrix";
+ actions.renames["MODEL_MATRIX"] = "model_matrix";
+ actions.renames["MODEL_NORMAL_MATRIX"] = "model_normal_matrix";
+ actions.renames["VIEW_MATRIX"] = "scene_data.view_matrix";
+ actions.renames["INV_VIEW_MATRIX"] = "scene_data.inv_view_matrix";
actions.renames["PROJECTION_MATRIX"] = "projection_matrix";
- actions.renames["INV_PROJECTION_MATRIX"] = "scene_data.inv_projection_matrix";
+ actions.renames["INV_PROJECTION_MATRIX"] = "inv_projection_matrix";
actions.renames["MODELVIEW_MATRIX"] = "modelview";
actions.renames["MODELVIEW_NORMAL_MATRIX"] = "modelview_normal";
@@ -531,6 +595,7 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.renames["COLOR"] = "color_interp";
actions.renames["POINT_SIZE"] = "gl_PointSize";
actions.renames["INSTANCE_ID"] = "gl_InstanceIndex";
+ actions.renames["VERTEX_ID"] = "gl_VertexIndex";
actions.renames["ALPHA_SCISSOR_THRESHOLD"] = "alpha_scissor_threshold";
actions.renames["ALPHA_HASH_SCALE"] = "alpha_hash_scale";
@@ -557,7 +622,7 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.renames["RIM"] = "rim";
actions.renames["RIM_TINT"] = "rim_tint";
actions.renames["CLEARCOAT"] = "clearcoat";
- actions.renames["CLEARCOAT_GLOSS"] = "clearcoat_gloss";
+ actions.renames["CLEARCOAT_ROUGHNESS"] = "clearcoat_roughness";
actions.renames["ANISOTROPY"] = "anisotropy";
actions.renames["ANISOTROPY_FLOW"] = "anisotropy_flow";
actions.renames["SSS_STRENGTH"] = "sss_strength";
@@ -587,8 +652,7 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.renames["CUSTOM3"] = "custom3_attrib";
actions.renames["OUTPUT_IS_SRGB"] = "SHADER_IS_SRGB";
- // not implemented but need these just in case code is in the shaders
- actions.renames["VIEW_INDEX"] = "0";
+ actions.renames["VIEW_INDEX"] = "ViewIndex";
actions.renames["VIEW_MONO_LEFT"] = "0";
actions.renames["VIEW_RIGHT"] = "1";
@@ -597,7 +661,6 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.renames["LIGHT_COLOR"] = "light_color";
actions.renames["LIGHT"] = "light";
actions.renames["ATTENUATION"] = "attenuation";
- actions.renames["SHADOW_ATTENUATION"] = "shadow_attenuation";
actions.renames["DIFFUSE_LIGHT"] = "diffuse_light";
actions.renames["SPECULAR_LIGHT"] = "specular_light";
@@ -607,7 +670,7 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.usage_defines["RIM"] = "#define LIGHT_RIM_USED\n";
actions.usage_defines["RIM_TINT"] = "@RIM";
actions.usage_defines["CLEARCOAT"] = "#define LIGHT_CLEARCOAT_USED\n";
- actions.usage_defines["CLEARCOAT_GLOSS"] = "@CLEARCOAT";
+ actions.usage_defines["CLEARCOAT_ROUGHNESS"] = "@CLEARCOAT";
actions.usage_defines["ANISOTROPY"] = "#define LIGHT_ANISOTROPY_USED\n";
actions.usage_defines["ANISOTROPY_FLOW"] = "@ANISOTROPY";
actions.usage_defines["AO"] = "#define AO_USED\n";
@@ -663,20 +726,12 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.render_mode_defines["sss_mode_skin"] = "#define SSS_MODE_SKIN\n";
- bool force_blinn = GLOBAL_GET("rendering/shading/overrides/force_blinn_over_ggx");
-
- if (!force_blinn) {
- actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_SCHLICK_GGX\n";
- } else {
- actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_BLINN\n";
- }
+ actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_SCHLICK_GGX\n";
actions.custom_samplers["SCREEN_TEXTURE"] = "material_samplers[3]"; // linear filter with mipmaps
actions.custom_samplers["DEPTH_TEXTURE"] = "material_samplers[3]";
actions.custom_samplers["NORMAL_ROUGHNESS_TEXTURE"] = "material_samplers[1]"; // linear filter
- actions.render_mode_defines["specular_blinn"] = "#define SPECULAR_BLINN\n";
- actions.render_mode_defines["specular_phong"] = "#define SPECULAR_PHONG\n";
actions.render_mode_defines["specular_toon"] = "#define SPECULAR_TOON\n";
actions.render_mode_defines["specular_disabled"] = "#define SPECULAR_DISABLED\n";
actions.render_mode_defines["shadows_disabled"] = "#define SHADOWS_DISABLED\n";
@@ -693,16 +748,16 @@ void SceneShaderForwardClustered::init(RendererStorageRD *p_storage, const Strin
actions.default_filter = ShaderLanguage::FILTER_LINEAR_MIPMAP;
actions.default_repeat = ShaderLanguage::REPEAT_ENABLE;
actions.global_buffer_array_variable = "global_variables.data";
- actions.instance_uniform_index_variable = "instances.data[instance_index].instance_uniforms_ofs";
+ actions.instance_uniform_index_variable = "instances.data[instance_index_interp].instance_uniforms_ofs";
compiler.initialize(actions);
}
{
//default material and shader
- default_shader = storage->shader_allocate();
- storage->shader_initialize(default_shader);
- storage->shader_set_code(default_shader, R"(
+ default_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(default_shader);
+ material_storage->shader_set_code(default_shader, R"(
// Default 3D material shader (clustered).
shader_type spatial;
@@ -717,11 +772,11 @@ void fragment() {
METALLIC = 0.2;
}
)");
- default_material = storage->material_allocate();
- storage->material_initialize(default_material);
- storage->material_set_shader(default_material, default_shader);
+ default_material = material_storage->material_allocate();
+ material_storage->material_initialize(default_material);
+ material_storage->material_set_shader(default_material, default_shader);
- MaterialData *md = (MaterialData *)storage->material_get_data(default_material, RendererStorageRD::SHADER_TYPE_3D);
+ MaterialData *md = static_cast<MaterialData *>(material_storage->material_get_data(default_material, RendererRD::SHADER_TYPE_3D));
default_shader_rd = shader.version_get_shader(md->shader_data->version, SHADER_VERSION_COLOR_PASS);
default_shader_sdfgi_rd = shader.version_get_shader(md->shader_data->version, SHADER_VERSION_DEPTH_PASS_WITH_SDF);
@@ -730,10 +785,10 @@ void fragment() {
}
{
- overdraw_material_shader = storage->shader_allocate();
- storage->shader_initialize(overdraw_material_shader);
+ overdraw_material_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(overdraw_material_shader);
// Use relatively low opacity so that more "layers" of overlapping objects can be distinguished.
- storage->shader_set_code(overdraw_material_shader, R"(
+ material_storage->shader_set_code(overdraw_material_shader, R"(
// 3D editor Overdraw debug draw mode shader (clustered).
shader_type spatial;
@@ -745,11 +800,11 @@ void fragment() {
ALPHA = 0.1;
}
)");
- overdraw_material = storage->material_allocate();
- storage->material_initialize(overdraw_material);
- storage->material_set_shader(overdraw_material, overdraw_material_shader);
+ overdraw_material = material_storage->material_allocate();
+ material_storage->material_initialize(overdraw_material);
+ material_storage->material_set_shader(overdraw_material, overdraw_material_shader);
- MaterialData *md = (MaterialData *)storage->material_get_data(overdraw_material, RendererStorageRD::SHADER_TYPE_3D);
+ MaterialData *md = static_cast<MaterialData *>(material_storage->material_get_data(overdraw_material, RendererRD::SHADER_TYPE_3D));
overdraw_material_shader_ptr = md->shader_data;
overdraw_material_uniform_set = md->uniform_set;
}
@@ -759,7 +814,7 @@ void fragment() {
Vector<RD::Uniform> uniforms;
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(default_vec4_xform_buffer);
+ u.append_id(default_vec4_xform_buffer);
u.binding = 0;
uniforms.push_back(u);
@@ -783,6 +838,9 @@ void SceneShaderForwardClustered::set_default_specialization_constants(const Vec
for (int k = 0; k < SHADER_VERSION_MAX; k++) {
E->self()->pipelines[i][j][k].update_specialization_constants(default_specialization_constants);
}
+ for (int k = 0; k < PIPELINE_COLOR_PASS_FLAG_COUNT; k++) {
+ E->self()->color_pipelines[i][j][k].update_specialization_constants(default_specialization_constants);
+ }
}
}
}
diff --git a/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.h b/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.h
index f2a55939f4..0b2df983ff 100644
--- a/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.h
+++ b/servers/rendering/renderer_rd/forward_clustered/scene_shader_forward_clustered.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -42,7 +42,7 @@ private:
static SceneShaderForwardClustered *singleton;
public:
- RendererStorageRD *storage;
+ RendererStorageRD *storage = nullptr;
enum ShaderVersion {
SHADER_VERSION_DEPTH_PASS,
@@ -51,13 +51,18 @@ public:
SHADER_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI,
SHADER_VERSION_DEPTH_PASS_WITH_MATERIAL,
SHADER_VERSION_DEPTH_PASS_WITH_SDF,
+ SHADER_VERSION_DEPTH_PASS_MULTIVIEW,
SHADER_VERSION_COLOR_PASS,
- SHADER_VERSION_COLOR_PASS_WITH_SEPARATE_SPECULAR,
- SHADER_VERSION_LIGHTMAP_COLOR_PASS,
- SHADER_VERSION_LIGHTMAP_COLOR_PASS_WITH_SEPARATE_SPECULAR,
SHADER_VERSION_MAX
};
+ enum ShaderColorPassFlags {
+ SHADER_COLOR_PASS_FLAG_SEPARATE_SPECULAR = 1 << 0,
+ SHADER_COLOR_PASS_FLAG_LIGHTMAP = 1 << 1,
+ SHADER_COLOR_PASS_FLAG_MULTIVIEW = 1 << 2,
+ SHADER_COLOR_PASS_FLAG_COUNT = 1 << 3
+ };
+
enum PipelineVersion {
PIPELINE_VERSION_DEPTH_PASS,
PIPELINE_VERSION_DEPTH_PASS_DP,
@@ -65,15 +70,19 @@ public:
PIPELINE_VERSION_DEPTH_PASS_WITH_NORMAL_AND_ROUGHNESS_AND_VOXEL_GI,
PIPELINE_VERSION_DEPTH_PASS_WITH_MATERIAL,
PIPELINE_VERSION_DEPTH_PASS_WITH_SDF,
- PIPELINE_VERSION_OPAQUE_PASS,
- PIPELINE_VERSION_OPAQUE_PASS_WITH_SEPARATE_SPECULAR,
- PIPELINE_VERSION_TRANSPARENT_PASS,
- PIPELINE_VERSION_LIGHTMAP_OPAQUE_PASS,
- PIPELINE_VERSION_LIGHTMAP_OPAQUE_PASS_WITH_SEPARATE_SPECULAR,
- PIPELINE_VERSION_LIGHTMAP_TRANSPARENT_PASS,
+ PIPELINE_VERSION_DEPTH_PASS_MULTIVIEW,
+ PIPELINE_VERSION_COLOR_PASS,
PIPELINE_VERSION_MAX
};
+ enum PipelineColorPassFlags {
+ PIPELINE_COLOR_PASS_FLAG_TRANSPARENT = 1 << 0,
+ PIPELINE_COLOR_PASS_FLAG_SEPARATE_SPECULAR = 1 << 1,
+ PIPELINE_COLOR_PASS_FLAG_LIGHTMAP = 1 << 2,
+ PIPELINE_COLOR_PASS_FLAG_MULTIVIEW = 1 << 3,
+ PIPELINE_COLOR_PASS_FLAG_COUNT = 1 << 4,
+ };
+
enum ShaderSpecializations {
SHADER_SPECIALIZATION_FORWARD_GI = 1 << 0,
SHADER_SPECIALIZATION_PROJECTOR = 1 << 1,
@@ -81,7 +90,7 @@ public:
SHADER_SPECIALIZATION_DIRECTIONAL_SOFT_SHADOWS = 1 << 3,
};
- struct ShaderData : public RendererStorageRD::ShaderData {
+ struct ShaderData : public RendererRD::ShaderData {
enum BlendMode { //used internally
BLEND_MODE_MIX,
BLEND_MODE_ADD,
@@ -121,18 +130,19 @@ public:
ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE_AND_TO_ONE
};
- bool valid;
+ bool valid = false;
RID version;
- uint32_t vertex_input_mask;
+ uint32_t vertex_input_mask = 0;
PipelineCacheRD pipelines[CULL_VARIANT_MAX][RS::PRIMITIVE_MAX][PIPELINE_VERSION_MAX];
+ PipelineCacheRD color_pipelines[CULL_VARIANT_MAX][RS::PRIMITIVE_MAX][PIPELINE_COLOR_PASS_FLAG_COUNT];
String path;
Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
+ uint32_t ubo_size = 0;
String code;
Map<StringName, Map<int, RID>> default_texture_params;
@@ -140,27 +150,28 @@ public:
DepthDraw depth_draw;
DepthTest depth_test;
- bool uses_point_size;
- bool uses_alpha;
- bool uses_blend_alpha;
- bool uses_alpha_clip;
- bool uses_depth_pre_pass;
- bool uses_discard;
- bool uses_roughness;
- bool uses_normal;
- bool uses_particle_trails;
-
- bool unshaded;
- bool uses_vertex;
- bool uses_position;
- bool uses_sss;
- bool uses_transmittance;
- bool uses_screen_texture;
- bool uses_depth_texture;
- bool uses_normal_texture;
- bool uses_time;
- bool writes_modelview_or_projection;
- bool uses_world_coordinates;
+ bool uses_point_size = false;
+ bool uses_alpha = false;
+ bool uses_blend_alpha = false;
+ bool uses_alpha_clip = false;
+ bool uses_depth_pre_pass = false;
+ bool uses_discard = false;
+ bool uses_roughness = false;
+ bool uses_normal = false;
+ bool uses_particle_trails = false;
+
+ bool unshaded = false;
+ bool uses_vertex = false;
+ bool uses_position = false;
+ bool uses_sss = false;
+ bool uses_transmittance = false;
+ bool uses_screen_texture = false;
+ bool uses_depth_texture = false;
+ bool uses_normal_texture = false;
+ bool uses_time = false;
+ bool writes_modelview_or_projection = false;
+ bool uses_world_coordinates = false;
+ Cull cull_mode = CULL_DISABLED;
uint64_t last_pass = 0;
uint32_t index = 0;
@@ -168,7 +179,7 @@ public:
virtual void set_code(const String &p_Code);
virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
+ void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
virtual bool is_param_texture(const StringName &p_param) const;
virtual bool is_animated() const;
@@ -183,14 +194,13 @@ public:
SelfList<ShaderData>::List shader_list;
- RendererStorageRD::ShaderData *_create_shader_func();
- static RendererStorageRD::ShaderData *_create_shader_funcs() {
+ RendererRD::ShaderData *_create_shader_func();
+ static RendererRD::ShaderData *_create_shader_funcs() {
return static_cast<SceneShaderForwardClustered *>(singleton)->_create_shader_func();
}
- struct MaterialData : public RendererStorageRD::MaterialData {
- uint64_t last_frame;
- ShaderData *shader_data;
+ struct MaterialData : public RendererRD::MaterialData {
+ ShaderData *shader_data = nullptr;
RID uniform_set;
uint64_t last_pass = 0;
uint32_t index = 0;
@@ -202,13 +212,13 @@ public:
virtual ~MaterialData();
};
- RendererStorageRD::MaterialData *_create_material_func(ShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_material_funcs(RendererStorageRD::ShaderData *p_shader) {
+ RendererRD::MaterialData *_create_material_func(ShaderData *p_shader);
+ static RendererRD::MaterialData *_create_material_funcs(RendererRD::ShaderData *p_shader) {
return static_cast<SceneShaderForwardClustered *>(singleton)->_create_material_func(static_cast<ShaderData *>(p_shader));
}
SceneForwardClusteredShaderRD shader;
- ShaderCompilerRD compiler;
+ ShaderCompiler compiler;
RID default_shader;
RID default_material;
@@ -229,6 +239,7 @@ public:
ShaderData *overdraw_material_shader_ptr = nullptr;
Vector<RD::PipelineSpecializationConstant> default_specialization_constants;
+ Set<uint32_t> valid_color_pass_pipelines;
SceneShaderForwardClustered();
~SceneShaderForwardClustered();
diff --git a/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.cpp b/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.cpp
index 445623fb86..1cbf804ece 100644
--- a/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.cpp
+++ b/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,6 +30,10 @@
#include "render_forward_mobile.h"
#include "core/config/project_settings.h"
+#include "servers/rendering/renderer_rd/storage_rd/light_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/mesh_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_device.h"
#include "servers/rendering/rendering_server_default.h"
@@ -154,7 +158,7 @@ void RenderForwardMobile::RenderBufferDataForwardMobile::configure(RID p_color_b
tf.array_layers = view_count; // create a layer for every view
tf.usage_bits = RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT | RD::TEXTURE_USAGE_SAMPLING_BIT;
- RD::TextureSamples ts[RS::VIEWPORT_MSAA_MAX] = {
+ const RD::TextureSamples ts[RS::VIEWPORT_MSAA_MAX] = {
RD::TEXTURE_SAMPLES_1,
RD::TEXTURE_SAMPLES_2,
RD::TEXTURE_SAMPLES_4,
@@ -289,12 +293,14 @@ bool RenderForwardMobile::_render_buffers_can_be_storage() {
}
RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_list, const RenderDataRD *p_render_data, RID p_radiance_texture, bool p_use_directional_shadow_atlas, int p_index) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
//there should always be enough uniform buffers for render passes, otherwise bugs
ERR_FAIL_INDEX_V(p_index, (int)scene_state.uniform_buffers.size(), RID());
RenderBufferDataForwardMobile *rb = nullptr;
if (p_render_data && p_render_data->render_buffers.is_valid()) {
- rb = (RenderBufferDataForwardMobile *)render_buffers_get_data(p_render_data->render_buffers);
+ rb = static_cast<RenderBufferDataForwardMobile *>(render_buffers_get_data(p_render_data->render_buffers));
}
// default render buffer and scene state uniform set
@@ -306,7 +312,7 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
RD::Uniform u;
u.binding = 0;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(scene_state.uniform_buffers[p_index]);
+ u.append_id(scene_state.uniform_buffers[p_index]);
uniforms.push_back(u);
}
@@ -315,12 +321,12 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
if (p_radiance_texture.is_valid()) {
radiance_texture = p_radiance_texture;
} else {
- radiance_texture = storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
+ radiance_texture = texture_storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
}
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(radiance_texture);
+ u.append_id(radiance_texture);
uniforms.push_back(u);
}
@@ -330,9 +336,9 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
if (ref_texture.is_valid()) {
- u.ids.push_back(ref_texture);
+ u.append_id(ref_texture);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK));
}
uniforms.push_back(u);
}
@@ -346,9 +352,9 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
texture = shadow_atlas_get_texture(p_render_data->shadow_atlas);
}
if (!texture.is_valid()) {
- texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
+ texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
}
- u.ids.push_back(texture);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
@@ -356,9 +362,9 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
if (p_use_directional_shadow_atlas && directional_shadow_get_texture().is_valid()) {
- u.ids.push_back(directional_shadow_get_texture());
+ u.append_id(directional_shadow_get_texture());
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH));
}
uniforms.push_back(u);
}
@@ -368,16 +374,16 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.resize(scene_state.max_lightmaps);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
for (uint32_t i = 0; i < scene_state.max_lightmaps; i++) {
if (p_render_data && i < p_render_data->lightmaps->size()) {
RID base = lightmap_instance_get_lightmap((*p_render_data->lightmaps)[i]);
- RID texture = storage->lightmap_get_texture(base);
- RID rd_texture = storage->texture_get_rd_texture(texture);
- u.ids.write[i] = rd_texture;
+ RID texture = RendererRD::LightStorage::get_singleton()->lightmap_get_texture(base);
+ RID rd_texture = texture_storage->texture_get_rd_texture(texture);
+ u.append_id(rd_texture);
} else {
- u.ids.write[i] = default_tex;
+ u.append_id(default_tex);
}
}
@@ -390,7 +396,7 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.ids.resize(MAX_VOXEL_GI_INSTANCESS);
- RID default_tex = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ RID default_tex = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
for (int i = 0; i < MAX_VOXEL_GI_INSTANCESS; i++) {
if (i < (int)p_voxel_gi_instances.size()) {
RID tex = gi.voxel_gi_instance_get_texture(p_voxel_gi_instances[i]);
@@ -411,7 +417,7 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
RID cb = p_cluster_buffer.is_valid() ? p_cluster_buffer : default_vec4_xform_buffer;
- u.ids.push_back(cb);
+ u.append_id(cb);
uniforms.push_back(u);
}
*/
@@ -421,8 +427,8 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID dbt = rb ? render_buffers_get_back_depth_texture(p_render_data->render_buffers) : RID();
- RID texture = (dbt.is_valid()) ? dbt : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
- u.ids.push_back(texture);
+ RID texture = (dbt.is_valid()) ? dbt : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_DEPTH);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
@@ -430,8 +436,8 @@ RID RenderForwardMobile::_setup_render_pass_uniform_set(RenderListType p_render_
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
RID bbt = rb ? render_buffers_get_back_buffer_texture(p_render_data->render_buffers) : RID();
- RID texture = bbt.is_valid() ? bbt : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(texture);
+ RID texture = bbt.is_valid() ? bbt : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(texture);
uniforms.push_back(u);
}
@@ -461,7 +467,7 @@ void RenderForwardMobile::_setup_lightmaps(const PagedArray<RID> &p_lightmaps, c
to_lm = to_lm.inverse().transposed(); //will transform normals
RendererStorageRD::store_transform_3x3(to_lm, scene_state.lightmaps[i].normal_xform);
scene_state.lightmap_ids[i] = p_lightmaps[i];
- scene_state.lightmap_has_sh[i] = storage->lightmap_uses_spherical_harmonics(lightmap);
+ scene_state.lightmap_has_sh[i] = RendererRD::LightStorage::get_singleton()->lightmap_uses_spherical_harmonics(lightmap);
scene_state.lightmaps_used++;
}
@@ -473,7 +479,7 @@ void RenderForwardMobile::_setup_lightmaps(const PagedArray<RID> &p_lightmaps, c
void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color &p_default_bg_color) {
RenderBufferDataForwardMobile *render_buffer = nullptr;
if (p_render_data->render_buffers.is_valid()) {
- render_buffer = (RenderBufferDataForwardMobile *)render_buffers_get_data(p_render_data->render_buffers);
+ render_buffer = static_cast<RenderBufferDataForwardMobile *>(render_buffers_get_data(p_render_data->render_buffers));
}
RendererSceneEnvironmentRD *env = get_environment(p_render_data->environment);
@@ -549,7 +555,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
framebuffer = reflection_probe_instance_get_framebuffer(p_render_data->reflection_probe, p_render_data->reflection_probe_pass);
- if (storage->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
+ if (RendererRD::LightStorage::get_singleton()->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
p_render_data->environment = RID(); //no environment on interiors
env = nullptr;
}
@@ -592,7 +598,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
/*
if (render_buffers_has_volumetric_fog(p_render_data->render_buffers) || environment_is_fog_enabled(p_render_data->environment)) {
draw_sky_fog_only = true;
- storage->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.to_linear()));
+ RendererRD::MaterialStorage::get_singleton()->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.srgb_to_linear()));
}
*/
} break;
@@ -604,7 +610,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
/*
if (render_buffers_has_volumetric_fog(p_render_data->render_buffers) || environment_is_fog_enabled(p_render_data->environment)) {
draw_sky_fog_only = true;
- storage->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.to_linear()));
+ RendererRD::MaterialStorage::get_singleton()->material_set_param(sky.sky_scene_state.fog_material, "clear_color", Variant(clear_color.srgb_to_linear()));
}
*/
} break;
@@ -633,7 +639,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
projection = correction * p_render_data->cam_projection;
}
- sky.setup(env, p_render_data->render_buffers, projection, p_render_data->cam_transform, screen_size, this);
+ sky.setup(env, p_render_data->render_buffers, *p_render_data->lights, projection, p_render_data->cam_transform, screen_size, this);
RID sky_rid = env->sky;
if (sky_rid.is_valid()) {
@@ -653,9 +659,9 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
if (draw_sky || draw_sky_fog_only) {
// !BAS! @TODO See if we can limit doing some things double and maybe even move this into _pre_opaque_render
// and change Forward Clustered in the same way as we have here (but without using subpasses)
- RENDER_TIMESTAMP("Setup Sky resolution buffers");
+ RENDER_TIMESTAMP("Setup Sky Resolution Buffers");
- RD::get_singleton()->draw_command_begin_label("Setup Sky resolution buffers");
+ RD::get_singleton()->draw_command_begin_label("Setup Sky Resolution Buffers");
if (p_render_data->reflection_probe.is_valid()) {
CameraMatrix correction;
@@ -669,7 +675,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
RD::get_singleton()->draw_command_end_label(); // Setup Sky resolution buffers
}
- _pre_opaque_render(p_render_data, false, false, RID(), RID());
+ _pre_opaque_render(p_render_data, false, false, false, RID(), RID());
uint32_t spec_constant_base_flags = 0;
@@ -719,10 +725,10 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
{
// regular forward for now
Vector<Color> c;
- c.push_back(clear_color.to_linear()); // our render buffer
+ c.push_back(clear_color.srgb_to_linear()); // our render buffer
if (render_buffer) {
if (render_buffer->msaa != RS::VIEWPORT_MSAA_DISABLED) {
- c.push_back(clear_color.to_linear()); // our resolve buffer
+ c.push_back(clear_color.srgb_to_linear()); // our resolve buffer
}
if (using_subpass_post_process) {
c.push_back(Color()); // our 2D buffer we're copying into
@@ -730,7 +736,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
}
RD::FramebufferFormatID fb_format = RD::get_singleton()->framebuffer_get_format(framebuffer);
- RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, PASS_MODE_COLOR, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold, p_render_data->view_count);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_OPAQUE].elements.ptr(), render_list[RENDER_LIST_OPAQUE].element_info.ptr(), render_list[RENDER_LIST_OPAQUE].elements.size(), reverse_cull, PASS_MODE_COLOR, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
render_list_params.framebuffer_format = fb_format;
if ((uint32_t)render_list_params.element_count > render_list_thread_threshold && false) {
// secondary command buffers need more testing at this time
@@ -794,7 +800,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
if (using_subpass_transparent) {
RD::FramebufferFormatID fb_format = RD::get_singleton()->framebuffer_get_format(framebuffer);
- RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), reverse_cull, PASS_MODE_COLOR_TRANSPARENT, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold, p_render_data->view_count);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), reverse_cull, PASS_MODE_COLOR_TRANSPARENT, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
render_list_params.framebuffer_format = fb_format;
if ((uint32_t)render_list_params.element_count > render_list_thread_threshold && false) {
// secondary command buffers need more testing at this time
@@ -831,7 +837,7 @@ void RenderForwardMobile::_render_scene(RenderDataRD *p_render_data, const Color
// _setup_environment(p_render_data, p_render_data->reflection_probe.is_valid(), screen_size, !p_render_data->reflection_probe.is_valid(), p_default_bg_color, false);
RD::FramebufferFormatID fb_format = RD::get_singleton()->framebuffer_get_format(framebuffer);
- RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), reverse_cull, PASS_MODE_COLOR, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold, p_render_data->view_count);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_ALPHA].elements.ptr(), render_list[RENDER_LIST_ALPHA].element_info.ptr(), render_list[RENDER_LIST_ALPHA].elements.size(), reverse_cull, PASS_MODE_COLOR, rp_uniform_set, spec_constant_base_flags, get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_WIREFRAME, Vector2(), p_render_data->lod_camera_plane, p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, p_render_data->view_count);
render_list_params.framebuffer_format = fb_format;
if ((uint32_t)render_list_params.element_count > render_list_thread_threshold && false) {
// secondary command buffers need more testing at this time
@@ -877,7 +883,7 @@ void RenderForwardMobile::_render_shadow_begin() {
render_list[RENDER_LIST_SECONDARY].clear();
}
-void RenderForwardMobile::_render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_lod_threshold, const Rect2i &p_rect, bool p_flip_y, bool p_clear_region, bool p_begin, bool p_end, RendererScene::RenderInfo *p_render_info) {
+void RenderForwardMobile::_render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_mesh_lod_threshold, const Rect2i &p_rect, bool p_flip_y, bool p_clear_region, bool p_begin, bool p_end, RendererScene::RenderInfo *p_render_info) {
uint32_t shadow_pass_index = scene_state.shadow_passes.size();
SceneState::ShadowPass shadow_pass;
@@ -903,9 +909,9 @@ void RenderForwardMobile::_render_shadow_append(RID p_framebuffer, const PagedAr
_setup_environment(&render_data, true, Vector2(1, 1), !p_flip_y, Color(), false, p_use_pancake, shadow_pass_index);
if (get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_DISABLE_LOD) {
- render_data.screen_lod_threshold = 0.0;
+ render_data.screen_mesh_lod_threshold = 0.0;
} else {
- render_data.screen_lod_threshold = p_screen_lod_threshold;
+ render_data.screen_mesh_lod_threshold = p_screen_mesh_lod_threshold;
}
PassMode pass_mode = p_use_dp ? PASS_MODE_SHADOW_DP : PASS_MODE_SHADOW;
@@ -930,7 +936,7 @@ void RenderForwardMobile::_render_shadow_append(RID p_framebuffer, const PagedAr
shadow_pass.rp_uniform_set = RID(); //will be filled later when instance buffer is complete
shadow_pass.camera_plane = p_camera_plane;
- shadow_pass.screen_lod_threshold = render_data.screen_lod_threshold;
+ shadow_pass.screen_mesh_lod_threshold = render_data.screen_mesh_lod_threshold;
shadow_pass.lod_distance_multiplier = render_data.lod_distance_multiplier;
shadow_pass.framebuffer = p_framebuffer;
@@ -959,7 +965,7 @@ void RenderForwardMobile::_render_shadow_end(uint32_t p_barrier) {
for (uint32_t i = 0; i < scene_state.shadow_passes.size(); i++) {
SceneState::ShadowPass &shadow_pass = scene_state.shadow_passes[i];
- RenderListParameters render_list_parameters(render_list[RENDER_LIST_SECONDARY].elements.ptr() + shadow_pass.element_from, render_list[RENDER_LIST_SECONDARY].element_info.ptr() + shadow_pass.element_from, shadow_pass.element_count, shadow_pass.flip_cull, shadow_pass.pass_mode, shadow_pass.rp_uniform_set, 0, false, Vector2(), shadow_pass.camera_plane, shadow_pass.lod_distance_multiplier, shadow_pass.screen_lod_threshold, 1, shadow_pass.element_from, RD::BARRIER_MASK_NO_BARRIER);
+ RenderListParameters render_list_parameters(render_list[RENDER_LIST_SECONDARY].elements.ptr() + shadow_pass.element_from, render_list[RENDER_LIST_SECONDARY].element_info.ptr() + shadow_pass.element_from, shadow_pass.element_count, shadow_pass.flip_cull, shadow_pass.pass_mode, shadow_pass.rp_uniform_set, 0, false, Vector2(), shadow_pass.camera_plane, shadow_pass.lod_distance_multiplier, shadow_pass.screen_mesh_lod_threshold, 1, shadow_pass.element_from, RD::BARRIER_MASK_NO_BARRIER);
_render_list_with_threads(&render_list_parameters, shadow_pass.framebuffer, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, shadow_pass.initial_depth_action, shadow_pass.final_depth_action, Vector<Color>(), 1.0, 0, shadow_pass.rect);
}
@@ -971,10 +977,10 @@ void RenderForwardMobile::_render_shadow_end(uint32_t p_barrier) {
/* */
-void RenderForwardMobile::_render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
- RENDER_TIMESTAMP("Setup Rendering Material");
+void RenderForwardMobile::_render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
+ RENDER_TIMESTAMP("Setup Rendering 3D Material");
- RD::get_singleton()->draw_command_begin_label("Render Material");
+ RD::get_singleton()->draw_command_begin_label("Render 3D Material");
_update_render_base_uniform_set();
@@ -997,17 +1003,18 @@ void RenderForwardMobile::_render_material(const Transform3D &p_cam_transform, c
RID rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_SECONDARY, nullptr, RID());
- RENDER_TIMESTAMP("Render Material");
+ RENDER_TIMESTAMP("Render 3D Material");
{
RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, rp_uniform_set, 0);
//regular forward for now
- Vector<Color> clear;
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
+ Vector<Color> clear = {
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0)
+ };
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, clear, 1.0, 0, p_region);
_render_list(draw_list, RD::get_singleton()->framebuffer_get_format(p_framebuffer), &render_list_params, 0, render_list_params.element_count);
RD::get_singleton()->draw_list_end();
@@ -1038,17 +1045,19 @@ void RenderForwardMobile::_render_uv2(const PagedArray<GeometryInstance *> &p_in
RID rp_uniform_set = _setup_render_pass_uniform_set(RENDER_LIST_SECONDARY, nullptr, RID());
- RENDER_TIMESTAMP("Render Material");
+ RENDER_TIMESTAMP("Render 3D Material");
{
- RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, rp_uniform_set, true, 0);
+ RenderListParameters render_list_params(render_list[RENDER_LIST_SECONDARY].elements.ptr(), render_list[RENDER_LIST_SECONDARY].element_info.ptr(), render_list[RENDER_LIST_SECONDARY].elements.size(), true, pass_mode, rp_uniform_set, true, false);
//regular forward for now
- Vector<Color> clear;
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
- clear.push_back(Color(0, 0, 0, 0));
+ Vector<Color> clear = {
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0),
+ Color(0, 0, 0, 0)
+ };
+
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(p_framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, clear, 1.0, 0, p_region);
const int uv_offset_count = 9;
@@ -1086,7 +1095,7 @@ void RenderForwardMobile::_render_sdfgi(RID p_render_buffers, const Vector3i &p_
}
void RenderForwardMobile::_render_particle_collider_heightfield(RID p_fb, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, const PagedArray<GeometryInstance *> &p_instances) {
- RENDER_TIMESTAMP("Setup Render Collider Heightfield");
+ RENDER_TIMESTAMP("Setup GPUParticlesCollisionHeightField3D");
RD::get_singleton()->draw_command_begin_label("Render Collider Heightfield");
@@ -1130,35 +1139,39 @@ void RenderForwardMobile::_base_uniforms_changed() {
}
void RenderForwardMobile::_update_render_base_uniform_set() {
- if (render_base_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set) || (lightmap_texture_array_version != storage->lightmap_array_get_version())) {
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ if (render_base_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set) || (lightmap_texture_array_version != light_storage->lightmap_array_get_version())) {
if (render_base_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(render_base_uniform_set)) {
RD::get_singleton()->free(render_base_uniform_set);
}
// This is all loaded into set 0
- lightmap_texture_array_version = storage->lightmap_array_get_version();
+ lightmap_texture_array_version = light_storage->lightmap_array_get_version();
Vector<RD::Uniform> uniforms;
{
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 1;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 1, ids);
+
uniforms.push_back(u);
}
@@ -1166,7 +1179,7 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.ids.push_back(scene_shader.shadow_sampler);
+ u.append_id(scene_shader.shadow_sampler);
uniforms.push_back(u);
}
@@ -1177,23 +1190,23 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RID sampler;
switch (decals_get_filter()) {
case RS::DECAL_FILTER_NEAREST: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_NEAREST_MIPMAPS: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR_MIPMAPS: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::DECAL_FILTER_LINEAR_MIPMAPS_ANISOTROPIC: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
}
- u.ids.push_back(sampler);
+ u.append_id(sampler);
uniforms.push_back(u);
}
@@ -1204,23 +1217,23 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RID sampler;
switch (light_projectors_get_filter()) {
case RS::LIGHT_PROJECTOR_FILTER_NEAREST: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_NEAREST_MIPMAPS: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR_MIPMAPS: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
case RS::LIGHT_PROJECTOR_FILTER_LINEAR_MIPMAPS_ANISOTROPIC: {
- sampler = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ sampler = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
} break;
}
- u.ids.push_back(sampler);
+ u.append_id(sampler);
uniforms.push_back(u);
}
@@ -1228,14 +1241,14 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_omni_light_buffer());
+ u.append_id(get_omni_light_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_spot_light_buffer());
+ u.append_id(get_spot_light_buffer());
uniforms.push_back(u);
}
@@ -1243,51 +1256,51 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RD::Uniform u;
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_reflection_probe_buffer());
+ u.append_id(get_reflection_probe_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(get_directional_light_buffer());
+ u.append_id(get_directional_light_buffer());
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(scene_state.lightmap_buffer);
+ u.append_id(scene_state.lightmap_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(scene_state.lightmap_capture_buffer);
+ u.append_id(scene_state.lightmap_capture_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 11;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID decal_atlas = storage->decal_atlas_get_texture();
- u.ids.push_back(decal_atlas);
+ RID decal_atlas = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture();
+ u.append_id(decal_atlas);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 12;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID decal_atlas = storage->decal_atlas_get_texture_srgb();
- u.ids.push_back(decal_atlas);
+ RID decal_atlas = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture_srgb();
+ u.append_id(decal_atlas);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 13;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(get_decal_buffer());
+ u.append_id(get_decal_buffer());
uniforms.push_back(u);
}
@@ -1295,7 +1308,7 @@ void RenderForwardMobile::_update_render_base_uniform_set() {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 14;
- u.ids.push_back(storage->global_variables_get_storage_buffer());
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->global_variables_get_storage_buffer());
uniforms.push_back(u);
}
@@ -1318,6 +1331,8 @@ _FORCE_INLINE_ static uint32_t _indices_to_primitives(RS::PrimitiveType p_primit
}
void RenderForwardMobile::_fill_render_list(RenderListType p_render_list, const RenderDataRD *p_render_data, PassMode p_pass_mode, bool p_append) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
if (p_render_list == RENDER_LIST_OPAQUE) {
scene_state.used_sss = false;
scene_state.used_screen_texture = false;
@@ -1326,7 +1341,7 @@ void RenderForwardMobile::_fill_render_list(RenderListType p_render_list, const
}
uint32_t lightmap_captures_used = 0;
- Plane near_plane(-p_render_data->cam_transform.basis.get_axis(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
+ Plane near_plane(-p_render_data->cam_transform.basis.get_column(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
near_plane.d += p_render_data->cam_projection.get_z_near();
float z_max = p_render_data->cam_projection.get_z_far() - p_render_data->cam_projection.get_z_near();
@@ -1407,7 +1422,7 @@ void RenderForwardMobile::_fill_render_list(RenderListType p_render_list, const
// LOD
- if (p_render_data->screen_lod_threshold > 0.0 && storage->mesh_surface_has_lod(surf->surface)) {
+ if (p_render_data->screen_mesh_lod_threshold > 0.0 && mesh_storage->mesh_surface_has_lod(surf->surface)) {
//lod
Vector3 lod_support_min = inst->transformed_aabb.get_support(-p_render_data->lod_camera_plane.normal);
Vector3 lod_support_max = inst->transformed_aabb.get_support(p_render_data->lod_camera_plane.normal);
@@ -1426,8 +1441,12 @@ void RenderForwardMobile::_fill_render_list(RenderListType p_render_list, const
distance = -distance_max;
}
+ if (p_render_data->cam_orthogonal) {
+ distance = 1.0;
+ }
+
uint32_t indices;
- surf->lod_index = storage->mesh_surface_get_lod(surf->surface, inst->lod_model_scale * inst->lod_bias, distance * p_render_data->lod_distance_multiplier, p_render_data->screen_lod_threshold, &indices);
+ surf->lod_index = mesh_storage->mesh_surface_get_lod(surf->surface, inst->lod_model_scale * inst->lod_bias, distance * p_render_data->lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, &indices);
if (p_render_data->render_info) {
indices = _indices_to_primitives(surf->primitive, indices);
if (p_render_list == RENDER_LIST_OPAQUE) { //opaque
@@ -1439,13 +1458,13 @@ void RenderForwardMobile::_fill_render_list(RenderListType p_render_list, const
} else {
surf->lod_index = 0;
if (p_render_data->render_info) {
- uint32_t to_draw = storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ uint32_t to_draw = mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
to_draw = _indices_to_primitives(surf->primitive, to_draw);
to_draw *= inst->instance_count;
if (p_render_list == RENDER_LIST_OPAQUE) { //opaque
- p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
} else if (p_render_list == RENDER_LIST_SECONDARY) { //shadow
- p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += storage->mesh_surface_get_vertices_drawn_count(surf->surface);
+ p_render_data->render_info->info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] += mesh_storage->mesh_surface_get_vertices_drawn_count(surf->surface);
}
}
}
@@ -1512,8 +1531,8 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
//store camera into ubo
RendererStorageRD::store_camera(projection, scene_state.ubo.projection_matrix);
RendererStorageRD::store_camera(projection.inverse(), scene_state.ubo.inv_projection_matrix);
- RendererStorageRD::store_transform(p_render_data->cam_transform, scene_state.ubo.camera_matrix);
- RendererStorageRD::store_transform(p_render_data->cam_transform.affine_inverse(), scene_state.ubo.inv_camera_matrix);
+ RendererStorageRD::store_transform(p_render_data->cam_transform, scene_state.ubo.inv_view_matrix);
+ RendererStorageRD::store_transform(p_render_data->cam_transform.affine_inverse(), scene_state.ubo.view_matrix);
for (uint32_t v = 0; v < p_render_data->view_count; v++) {
projection = correction * p_render_data->view_projection[v];
@@ -1555,7 +1574,7 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
scene_state.ubo.fog_enabled = false;
if (p_render_data->render_buffers.is_valid()) {
- RenderBufferDataForwardMobile *render_buffers = (RenderBufferDataForwardMobile *)render_buffers_get_data(p_render_data->render_buffers);
+ RenderBufferDataForwardMobile *render_buffers = static_cast<RenderBufferDataForwardMobile *>(render_buffers_get_data(p_render_data->render_buffers));
if (render_buffers->msaa != RS::VIEWPORT_MSAA_DISABLED) {
scene_state.ubo.gi_upscale_for_msaa = true;
}
@@ -1602,7 +1621,7 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
//ambient
if (ambient_src == RS::ENV_AMBIENT_SOURCE_BG && (env_bg == RS::ENV_BG_CLEAR_COLOR || env_bg == RS::ENV_BG_COLOR)) {
Color color = env_bg == RS::ENV_BG_CLEAR_COLOR ? p_default_bg_color : environment_get_bg_color(p_render_data->environment);
- color = color.to_linear();
+ color = color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = color.r * bg_energy;
scene_state.ubo.ambient_light_color_energy[1] = color.g * bg_energy;
@@ -1612,7 +1631,7 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
} else {
float energy = environment_get_ambient_light_energy(p_render_data->environment);
Color color = environment_get_ambient_light_color(p_render_data->environment);
- color = color.to_linear();
+ color = color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = color.r * energy;
scene_state.ubo.ambient_light_color_energy[1] = color.g * energy;
scene_state.ubo.ambient_light_color_energy[2] = color.b * energy;
@@ -1643,7 +1662,7 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
scene_state.ubo.fog_height_density = environment_get_fog_height_density(p_render_data->environment);
scene_state.ubo.fog_aerial_perspective = environment_get_fog_aerial_perspective(p_render_data->environment);
- Color fog_color = environment_get_fog_light_color(p_render_data->environment).to_linear();
+ Color fog_color = environment_get_fog_light_color(p_render_data->environment).srgb_to_linear();
float fog_energy = environment_get_fog_light_energy(p_render_data->environment);
scene_state.ubo.fog_light_color[0] = fog_color.r * fog_energy;
@@ -1653,12 +1672,12 @@ void RenderForwardMobile::_setup_environment(const RenderDataRD *p_render_data,
scene_state.ubo.fog_sun_scatter = environment_get_fog_sun_scatter(p_render_data->environment);
} else {
- if (p_render_data->reflection_probe.is_valid() && storage->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
+ if (p_render_data->reflection_probe.is_valid() && RendererRD::LightStorage::get_singleton()->reflection_probe_is_interior(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
scene_state.ubo.use_ambient_light = false;
} else {
scene_state.ubo.use_ambient_light = true;
Color clear_color = p_default_bg_color;
- clear_color = clear_color.to_linear();
+ clear_color = clear_color.srgb_to_linear();
scene_state.ubo.ambient_light_color_energy[0] = clear_color.r;
scene_state.ubo.ambient_light_color_energy[1] = clear_color.g;
scene_state.ubo.ambient_light_color_energy[2] = clear_color.b;
@@ -1803,6 +1822,8 @@ void RenderForwardMobile::_fill_push_constant_instance_indices(GeometryInstanceF
template <RenderForwardMobile::PassMode p_pass_mode>
void RenderForwardMobile::_render_list_template(RenderingDevice::DrawListID p_draw_list, RenderingDevice::FramebufferFormatID p_framebuffer_Format, RenderListParameters *p_params, uint32_t p_from_element, uint32_t p_to_element) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
RD::DrawListID draw_list = p_draw_list;
RD::FramebufferFormatID framebuffer_format = p_framebuffer_Format;
@@ -1945,12 +1966,12 @@ void RenderForwardMobile::_render_list_template(RenderingDevice::DrawListID p_dr
//skeleton and blend shape
if (surf->owner->mesh_instance.is_valid()) {
- storage->mesh_instance_surface_get_vertex_arrays_and_format(surf->owner->mesh_instance, surf->surface_index, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
+ mesh_storage->mesh_instance_surface_get_vertex_arrays_and_format(surf->owner->mesh_instance, surf->surface_index, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
} else {
- storage->mesh_surface_get_vertex_arrays_and_format(mesh_surface, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
+ mesh_storage->mesh_surface_get_vertex_arrays_and_format(mesh_surface, pipeline->get_vertex_input_mask(), vertex_array_rd, vertex_format);
}
- index_array_rd = storage->mesh_surface_get_index_array(mesh_surface, element_info.lod_index);
+ index_array_rd = mesh_storage->mesh_surface_get_index_array(mesh_surface, element_info.lod_index);
if (prev_vertex_array_rd != vertex_array_rd) {
RD::get_singleton()->draw_list_bind_vertex_array(draw_list, vertex_array_rd);
@@ -2033,6 +2054,15 @@ void RenderForwardMobile::geometry_instance_set_material_override(GeometryInstan
ginstance->data->dirty_dependencies = true;
}
+void RenderForwardMobile::geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_overlay) {
+ GeometryInstanceForwardMobile *ginstance = static_cast<GeometryInstanceForwardMobile *>(p_geometry_instance);
+ ERR_FAIL_COND(!ginstance);
+ ginstance->data->material_overlay = p_overlay;
+
+ _geometry_instance_mark_dirty(ginstance);
+ ginstance->data->dirty_dependencies = true;
+}
+
void RenderForwardMobile::geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_materials) {
GeometryInstanceForwardMobile *ginstance = static_cast<GeometryInstanceForwardMobile *>(p_geometry_instance);
ERR_FAIL_COND(!ginstance);
@@ -2260,8 +2290,10 @@ void RenderForwardMobile::_geometry_instance_mark_dirty(GeometryInstance *p_geom
}
void RenderForwardMobile::_geometry_instance_add_surface_with_material(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, SceneShaderForwardMobile::MaterialData *p_material, uint32_t p_material_id, uint32_t p_shader_id, RID p_mesh) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
bool has_read_screen_alpha = p_material->shader_data->uses_screen_texture || p_material->shader_data->uses_depth_texture || p_material->shader_data->uses_normal_texture;
- bool has_base_alpha = (p_material->shader_data->uses_alpha || has_read_screen_alpha);
+ bool has_base_alpha = ((p_material->shader_data->uses_alpha && !p_material->shader_data->uses_alpha_clip) || has_read_screen_alpha);
bool has_blend_alpha = p_material->shader_data->uses_blend_alpha;
bool has_alpha = has_base_alpha || has_blend_alpha;
@@ -2306,14 +2338,14 @@ void RenderForwardMobile::_geometry_instance_add_surface_with_material(GeometryI
SceneShaderForwardMobile::MaterialData *material_shadow = nullptr;
void *surface_shadow = nullptr;
- if (!p_material->shader_data->uses_particle_trails && !p_material->shader_data->writes_modelview_or_projection && !p_material->shader_data->uses_vertex && !p_material->shader_data->uses_discard && !p_material->shader_data->uses_depth_pre_pass) {
+ if (!p_material->shader_data->uses_particle_trails && !p_material->shader_data->writes_modelview_or_projection && !p_material->shader_data->uses_vertex && !p_material->shader_data->uses_discard && !p_material->shader_data->uses_depth_pre_pass && !p_material->shader_data->uses_alpha_clip) {
flags |= GeometryInstanceSurfaceDataCache::FLAG_USES_SHARED_SHADOW_MATERIAL;
- material_shadow = (SceneShaderForwardMobile::MaterialData *)storage->material_get_data(scene_shader.default_material, RendererStorageRD::SHADER_TYPE_3D);
+ material_shadow = static_cast<SceneShaderForwardMobile::MaterialData *>(RendererRD::MaterialStorage::get_singleton()->material_get_data(scene_shader.default_material, RendererRD::SHADER_TYPE_3D));
- RID shadow_mesh = storage->mesh_get_shadow_mesh(p_mesh);
+ RID shadow_mesh = mesh_storage->mesh_get_shadow_mesh(p_mesh);
if (shadow_mesh.is_valid()) {
- surface_shadow = storage->mesh_get_surface(shadow_mesh, p_surface);
+ surface_shadow = mesh_storage->mesh_get_surface(shadow_mesh, p_surface);
}
} else {
@@ -2326,8 +2358,8 @@ void RenderForwardMobile::_geometry_instance_add_surface_with_material(GeometryI
sdcache->shader = p_material->shader_data;
sdcache->material_uniform_set = p_material->uniform_set;
- sdcache->surface = storage->mesh_get_surface(p_mesh, p_surface);
- sdcache->primitive = storage->mesh_surface_get_primitive(sdcache->surface);
+ sdcache->surface = mesh_storage->mesh_get_surface(p_mesh, p_surface);
+ sdcache->primitive = mesh_storage->mesh_surface_get_primitive(sdcache->surface);
sdcache->surface_index = p_surface;
if (ginstance->data->dirty_dependencies) {
@@ -2359,7 +2391,27 @@ void RenderForwardMobile::_geometry_instance_add_surface_with_material(GeometryI
sdcache->sort.priority = p_material->priority;
}
+void RenderForwardMobile::_geometry_instance_add_surface_with_material_chain(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, SceneShaderForwardMobile::MaterialData *p_material, RID p_mat_src, RID p_mesh) {
+ SceneShaderForwardMobile::MaterialData *material = p_material;
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ _geometry_instance_add_surface_with_material(ginstance, p_surface, material, p_mat_src.get_local_index(), material_storage->material_get_shader_id(p_mat_src), p_mesh);
+
+ while (material->next_pass.is_valid()) {
+ RID next_pass = material->next_pass;
+ material = static_cast<SceneShaderForwardMobile::MaterialData *>(material_storage->material_get_data(next_pass, RendererRD::SHADER_TYPE_3D));
+ if (!material || !material->shader_data->valid) {
+ break;
+ }
+ if (ginstance->data->dirty_dependencies) {
+ material_storage->material_update_dependency(next_pass, &ginstance->data->dependency_tracker);
+ }
+ _geometry_instance_add_surface_with_material(ginstance, p_surface, material, next_pass.get_local_index(), material_storage->material_get_shader_id(next_pass), p_mesh);
+ }
+}
+
void RenderForwardMobile::_geometry_instance_add_surface(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, RID p_material, RID p_mesh) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
RID m_src;
m_src = ginstance->data->material_override.is_valid() ? ginstance->data->material_override : p_material;
@@ -2367,7 +2419,7 @@ void RenderForwardMobile::_geometry_instance_add_surface(GeometryInstanceForward
SceneShaderForwardMobile::MaterialData *material = nullptr;
if (m_src.is_valid()) {
- material = (SceneShaderForwardMobile::MaterialData *)storage->material_get_data(m_src, RendererStorageRD::SHADER_TYPE_3D);
+ material = static_cast<SceneShaderForwardMobile::MaterialData *>(material_storage->material_get_data(m_src, RendererRD::SHADER_TYPE_3D));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -2375,31 +2427,34 @@ void RenderForwardMobile::_geometry_instance_add_surface(GeometryInstanceForward
if (material) {
if (ginstance->data->dirty_dependencies) {
- storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
+ material_storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
}
} else {
- material = (SceneShaderForwardMobile::MaterialData *)storage->material_get_data(scene_shader.default_material, RendererStorageRD::SHADER_TYPE_3D);
+ material = static_cast<SceneShaderForwardMobile::MaterialData *>(material_storage->material_get_data(scene_shader.default_material, RendererRD::SHADER_TYPE_3D));
m_src = scene_shader.default_material;
}
ERR_FAIL_COND(!material);
- _geometry_instance_add_surface_with_material(ginstance, p_surface, material, m_src.get_local_index(), storage->material_get_shader_id(m_src), p_mesh);
+ _geometry_instance_add_surface_with_material_chain(ginstance, p_surface, material, m_src, p_mesh);
- while (material->next_pass.is_valid()) {
- RID next_pass = material->next_pass;
- material = (SceneShaderForwardMobile::MaterialData *)storage->material_get_data(next_pass, RendererStorageRD::SHADER_TYPE_3D);
- if (!material || !material->shader_data->valid) {
- break;
- }
- if (ginstance->data->dirty_dependencies) {
- storage->material_update_dependency(next_pass, &ginstance->data->dependency_tracker);
+ if (ginstance->data->material_overlay.is_valid()) {
+ m_src = ginstance->data->material_overlay;
+
+ material = static_cast<SceneShaderForwardMobile::MaterialData *>(material_storage->material_get_data(m_src, RendererRD::SHADER_TYPE_3D));
+ if (material && material->shader_data->valid) {
+ if (ginstance->data->dirty_dependencies) {
+ material_storage->material_update_dependency(m_src, &ginstance->data->dependency_tracker);
+ }
+
+ _geometry_instance_add_surface_with_material_chain(ginstance, p_surface, material, m_src, p_mesh);
}
- _geometry_instance_add_surface_with_material(ginstance, p_surface, material, next_pass.get_local_index(), storage->material_get_shader_id(next_pass), p_mesh);
}
}
void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry_instance) {
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+ RendererRD::ParticlesStorage *particles_storage = RendererRD::ParticlesStorage::get_singleton();
GeometryInstanceForwardMobile *ginstance = static_cast<GeometryInstanceForwardMobile *>(p_geometry_instance);
if (ginstance->data->dirty_dependencies) {
@@ -2413,7 +2468,7 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
uint32_t surface_count;
RID mesh = ginstance->data->base;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
//if no materials, no surfaces.
const RID *inst_materials = ginstance->data->surface_materials.ptr();
@@ -2430,19 +2485,19 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
} break;
case RS::INSTANCE_MULTIMESH: {
- RID mesh = storage->multimesh_get_mesh(ginstance->data->base);
+ RID mesh = mesh_storage->multimesh_get_mesh(ginstance->data->base);
if (mesh.is_valid()) {
const RID *materials = nullptr;
uint32_t surface_count;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
for (uint32_t j = 0; j < surface_count; j++) {
_geometry_instance_add_surface(ginstance, j, materials[j], mesh);
}
}
- ginstance->instance_count = storage->multimesh_get_instances_to_draw(ginstance->data->base);
+ ginstance->instance_count = mesh_storage->multimesh_get_instances_to_draw(ginstance->data->base);
}
} break;
@@ -2456,10 +2511,10 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
} break;
#endif
case RS::INSTANCE_PARTICLES: {
- int draw_passes = storage->particles_get_draw_passes(ginstance->data->base);
+ int draw_passes = particles_storage->particles_get_draw_passes(ginstance->data->base);
for (int j = 0; j < draw_passes; j++) {
- RID mesh = storage->particles_get_draw_pass_mesh(ginstance->data->base, j);
+ RID mesh = particles_storage->particles_get_draw_pass_mesh(ginstance->data->base, j);
if (!mesh.is_valid()) {
continue;
}
@@ -2467,7 +2522,7 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
const RID *materials = nullptr;
uint32_t surface_count;
- materials = storage->mesh_get_surface_count_and_materials(mesh, surface_count);
+ materials = mesh_storage->mesh_get_surface_count_and_materials(mesh, surface_count);
if (materials) {
for (uint32_t k = 0; k < surface_count; k++) {
_geometry_instance_add_surface(ginstance, k, materials[k], mesh);
@@ -2475,7 +2530,7 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
}
}
- ginstance->instance_count = storage->particles_get_amount(ginstance->data->base, ginstance->trail_steps);
+ ginstance->instance_count = particles_storage->particles_get_amount(ginstance->data->base, ginstance->trail_steps);
} break;
@@ -2490,17 +2545,17 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
if (ginstance->data->base_type == RS::INSTANCE_MULTIMESH) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH;
- if (storage->multimesh_get_transform_format(ginstance->data->base) == RS::MULTIMESH_TRANSFORM_2D) {
+ if (mesh_storage->multimesh_get_transform_format(ginstance->data->base) == RS::MULTIMESH_TRANSFORM_2D) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_FORMAT_2D;
}
- if (storage->multimesh_uses_colors(ginstance->data->base)) {
+ if (mesh_storage->multimesh_uses_colors(ginstance->data->base)) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_HAS_COLOR;
}
- if (storage->multimesh_uses_custom_data(ginstance->data->base)) {
+ if (mesh_storage->multimesh_uses_custom_data(ginstance->data->base)) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH_HAS_CUSTOM_DATA;
}
- ginstance->transforms_uniform_set = storage->multimesh_get_3d_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ ginstance->transforms_uniform_set = mesh_storage->multimesh_get_3d_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
} else if (ginstance->data->base_type == RS::INSTANCE_PARTICLES) {
ginstance->base_flags |= INSTANCE_DATA_FLAG_MULTIMESH;
@@ -2514,16 +2569,16 @@ void RenderForwardMobile::_geometry_instance_update(GeometryInstance *p_geometry
//for particles, stride is the trail size
ginstance->base_flags |= (ginstance->trail_steps << INSTANCE_DATA_FLAGS_PARTICLE_TRAIL_SHIFT);
- if (!storage->particles_is_using_local_coords(ginstance->data->base)) {
+ if (!particles_storage->particles_is_using_local_coords(ginstance->data->base)) {
store_transform = false;
}
- ginstance->transforms_uniform_set = storage->particles_get_instance_buffer_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ ginstance->transforms_uniform_set = particles_storage->particles_get_instance_buffer_uniform_set(ginstance->data->base, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
} else if (ginstance->data->base_type == RS::INSTANCE_MESH) {
- if (storage->skeleton_is_valid(ginstance->data->skeleton)) {
- ginstance->transforms_uniform_set = storage->skeleton_get_3d_uniform_set(ginstance->data->skeleton, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
+ if (mesh_storage->skeleton_is_valid(ginstance->data->skeleton)) {
+ ginstance->transforms_uniform_set = mesh_storage->skeleton_get_3d_uniform_set(ginstance->data->skeleton, scene_shader.default_shader_rd, TRANSFORMS_UNIFORM_SET);
if (ginstance->data->dirty_dependencies) {
- storage->skeleton_update_dependency(ginstance->data->skeleton, &ginstance->data->dependency_tracker);
+ mesh_storage->skeleton_update_dependency(ginstance->data->skeleton, &ginstance->data->dependency_tracker);
}
}
}
@@ -2556,7 +2611,7 @@ void RenderForwardMobile::_geometry_instance_dependency_changed(RendererStorage:
case RendererStorage::DEPENDENCY_CHANGED_MULTIMESH_VISIBLE_INSTANCES: {
GeometryInstanceForwardMobile *ginstance = static_cast<GeometryInstanceForwardMobile *>(p_tracker->userdata);
if (ginstance->data->base_type == RS::INSTANCE_MULTIMESH) {
- ginstance->instance_count = static_cast<RenderForwardMobile *>(singleton)->storage->multimesh_get_instances_to_draw(ginstance->data->base);
+ ginstance->instance_count = RendererRD::MeshStorage::get_singleton()->multimesh_get_instances_to_draw(ginstance->data->base);
}
} break;
default: {
diff --git a/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.h b/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.h
index 485d08b589..0a7e973120 100644
--- a/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.h
+++ b/servers/rendering/renderer_rd/forward_mobile/render_forward_mobile.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -176,13 +176,13 @@ protected:
Plane lod_plane;
uint32_t spec_constant_base_flags = 0;
float lod_distance_multiplier = 0.0;
- float screen_lod_threshold = 0.0;
+ float screen_mesh_lod_threshold = 0.0;
RD::FramebufferFormatID framebuffer_format = 0;
uint32_t element_offset = 0;
uint32_t barrier = RD::BARRIER_MASK_ALL;
uint32_t subpass = 0;
- RenderListParameters(GeometryInstanceSurfaceDataCache **p_elements, RenderElementInfo *p_element_info, int p_element_count, bool p_reverse_cull, PassMode p_pass_mode, RID p_render_pass_uniform_set, uint32_t p_spec_constant_base_flags = 0, bool p_force_wireframe = false, const Vector2 &p_uv_offset = Vector2(), const Plane &p_lod_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_lod_threshold = 0.0, uint32_t p_view_count = 1, uint32_t p_element_offset = 0, uint32_t p_barrier = RD::BARRIER_MASK_ALL) {
+ RenderListParameters(GeometryInstanceSurfaceDataCache **p_elements, RenderElementInfo *p_element_info, int p_element_count, bool p_reverse_cull, PassMode p_pass_mode, RID p_render_pass_uniform_set, uint32_t p_spec_constant_base_flags = 0, bool p_force_wireframe = false, const Vector2 &p_uv_offset = Vector2(), const Plane &p_lod_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_mesh_lod_threshold = 0.0, uint32_t p_view_count = 1, uint32_t p_element_offset = 0, uint32_t p_barrier = RD::BARRIER_MASK_ALL) {
elements = p_elements;
element_info = p_element_info;
element_count = p_element_count;
@@ -195,7 +195,7 @@ protected:
uv_offset = p_uv_offset;
lod_plane = p_lod_plane;
lod_distance_multiplier = p_lod_distance_multiplier;
- screen_lod_threshold = p_screen_lod_threshold;
+ screen_mesh_lod_threshold = p_screen_mesh_lod_threshold;
element_offset = p_element_offset;
barrier = p_barrier;
spec_constant_base_flags = p_spec_constant_base_flags;
@@ -210,11 +210,11 @@ protected:
virtual void _render_scene(RenderDataRD *p_render_data, const Color &p_default_bg_color) override;
virtual void _render_shadow_begin() override;
- virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) override;
+ virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_mesh_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) override;
virtual void _render_shadow_process() override;
virtual void _render_shadow_end(uint32_t p_barrier = RD::BARRIER_MASK_ALL) override;
- virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
+ virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
virtual void _render_uv2(const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
virtual void _render_sdfgi(RID p_render_buffers, const Vector3i &p_from, const Vector3i &p_size, const AABB &p_bounds, const PagedArray<GeometryInstance *> &p_instances, const RID &p_albedo_texture, const RID &p_emission_texture, const RID &p_emission_aniso_texture, const RID &p_geom_facing_texture) override;
virtual void _render_particle_collider_heightfield(RID p_fb, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, const PagedArray<GeometryInstance *> &p_instances) override;
@@ -254,8 +254,8 @@ protected:
struct UBO {
float projection_matrix[16];
float inv_projection_matrix[16];
- float camera_matrix[16];
- float inv_camera_matrix[16];
+ float inv_view_matrix[16];
+ float view_matrix[16];
float projection_matrix_view[RendererSceneRender::MAX_RENDER_VIEWS][16];
float inv_projection_matrix_view[RendererSceneRender::MAX_RENDER_VIEWS][16];
@@ -328,7 +328,7 @@ protected:
uint32_t max_lightmaps;
RID lightmap_buffer;
- LightmapCaptureData *lightmap_captures;
+ LightmapCaptureData *lightmap_captures = nullptr;
uint32_t max_lightmap_captures;
RID lightmap_capture_buffer;
@@ -346,7 +346,7 @@ protected:
RID rp_uniform_set;
Plane camera_plane;
float lod_distance_multiplier;
- float screen_lod_threshold;
+ float screen_mesh_lod_threshold;
RID framebuffer;
RD::InitialAction initial_depth_action;
@@ -586,6 +586,7 @@ protected:
RID skeleton;
Vector<RID> surface_materials;
RID material_override;
+ RID material_overlay;
AABB aabb;
bool use_baked_light = false;
@@ -620,6 +621,7 @@ public:
PagedAllocator<GeometryInstanceLightmapSH> geometry_instance_lightmap_sh;
void _geometry_instance_add_surface_with_material(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, SceneShaderForwardMobile::MaterialData *p_material, uint32_t p_material_id, uint32_t p_shader_id, RID p_mesh);
+ void _geometry_instance_add_surface_with_material_chain(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, SceneShaderForwardMobile::MaterialData *p_material, RID p_mat_src, RID p_mesh);
void _geometry_instance_add_surface(GeometryInstanceForwardMobile *ginstance, uint32_t p_surface, RID p_material, RID p_mesh);
void _geometry_instance_mark_dirty(GeometryInstance *p_geometry_instance);
void _geometry_instance_update(GeometryInstance *p_geometry_instance);
@@ -628,6 +630,7 @@ public:
virtual GeometryInstance *geometry_instance_create(RID p_base) override;
virtual void geometry_instance_set_skeleton(GeometryInstance *p_geometry_instance, RID p_skeleton) override;
virtual void geometry_instance_set_material_override(GeometryInstance *p_geometry_instance, RID p_override) override;
+ virtual void geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_overlay) override;
virtual void geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_materials) override;
virtual void geometry_instance_set_mesh_instance(GeometryInstance *p_geometry_instance, RID p_mesh_instance) override;
virtual void geometry_instance_set_transform(GeometryInstance *p_geometry_instance, const Transform3D &p_transform, const AABB &p_aabb, const AABB &p_transformed_aabb) override;
diff --git a/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.cpp b/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.cpp
index 8807ebf134..cdddc35579 100644
--- a/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.cpp
+++ b/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,6 +33,7 @@
#include "core/math/math_defs.h"
#include "render_forward_mobile.h"
#include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
using namespace RendererSceneRenderImplementation;
@@ -51,7 +52,7 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
return; //just invalid, but no error
}
- ShaderCompilerRD::GeneratedCode gen_code;
+ ShaderCompiler::GeneratedCode gen_code;
int blend_mode = BLEND_MODE_MIX;
int depth_testi = DEPTH_TEST_ENABLED;
@@ -60,6 +61,7 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
uses_point_size = false;
uses_alpha = false;
+ uses_alpha_clip = false;
uses_blend_alpha = false;
uses_depth_pre_pass = false;
uses_discard = false;
@@ -81,10 +83,10 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
int depth_drawi = DEPTH_DRAW_OPAQUE;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["vertex"] = ShaderCompilerRD::STAGE_VERTEX;
- actions.entry_point_stages["fragment"] = ShaderCompilerRD::STAGE_FRAGMENT;
- actions.entry_point_stages["light"] = ShaderCompilerRD::STAGE_FRAGMENT;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["vertex"] = ShaderCompiler::STAGE_VERTEX;
+ actions.entry_point_stages["fragment"] = ShaderCompiler::STAGE_FRAGMENT;
+ actions.entry_point_stages["light"] = ShaderCompiler::STAGE_FRAGMENT;
actions.render_mode_values["blend_add"] = Pair<int *, int>(&blend_mode, BLEND_MODE_ADD);
actions.render_mode_values["blend_mix"] = Pair<int *, int>(&blend_mode, BLEND_MODE_MIX);
@@ -109,6 +111,7 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
actions.render_mode_flags["particle_trails"] = &uses_particle_trails;
actions.usage_flag_pointers["ALPHA"] = &uses_alpha;
+ actions.usage_flag_pointers["ALPHA_SCISSOR_THRESHOLD"] = &uses_alpha_clip;
actions.render_mode_flags["depth_prepass_alpha"] = &uses_depth_pre_pass;
// actions.usage_flag_pointers["SSS_STRENGTH"] = &uses_sss;
@@ -159,11 +162,11 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
}
print_line("\n**uniforms:\n" + gen_code.uniforms);
- print_line("\n**vertex_globals:\n" + gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX]);
- print_line("\n**fragment_globals:\n" + gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT]);
+ print_line("\n**vertex_globals:\n" + gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX]);
+ print_line("\n**fragment_globals:\n" + gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT]);
#endif
- shader_singleton->shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX], gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT], gen_code.defines);
+ shader_singleton->shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX], gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT], gen_code.defines);
ERR_FAIL_COND(!shader_singleton->shader.version_is_valid(version));
ubo_size = gen_code.uniform_total_size;
@@ -293,7 +296,7 @@ void SceneShaderForwardMobile::ShaderData::set_code(const String &p_code) {
if (k == SHADER_VERSION_COLOR_PASS || k == SHADER_VERSION_COLOR_PASS_MULTIVIEW || k == SHADER_VERSION_LIGHTMAP_COLOR_PASS || k == SHADER_VERSION_LIGHTMAP_COLOR_PASS_MULTIVIEW) {
blend_state = blend_state_blend;
- if (depth_draw == DEPTH_DRAW_OPAQUE) {
+ if (depth_draw == DEPTH_DRAW_OPAQUE && !uses_alpha_clip) {
depth_stencil.enable_depth_write = false; //alpha does not draw depth
}
} else if (k == SHADER_VERSION_SHADOW_PASS || k == SHADER_VERSION_SHADOW_PASS_MULTIVIEW || k == SHADER_VERSION_SHADOW_PASS_DP) {
@@ -364,13 +367,13 @@ void SceneShaderForwardMobile::ShaderData::get_param_list(List<PropertyInfo> *p_
}
}
-void SceneShaderForwardMobile::ShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
+void SceneShaderForwardMobile::ShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
continue;
}
- RendererStorage::InstanceShaderParam p;
+ RendererMaterialStorage::InstanceShaderParam p;
p.info = ShaderLanguage::uniform_to_property_info(E.value);
p.info.name = E.key; //supply name
p.index = E.value.instance_index;
@@ -412,8 +415,6 @@ RS::ShaderNativeSourceCode SceneShaderForwardMobile::ShaderData::get_native_sour
SceneShaderForwardMobile::ShaderData::ShaderData() :
shader_list_element(this) {
- valid = false;
- uses_screen_texture = false;
}
SceneShaderForwardMobile::ShaderData::~ShaderData() {
@@ -425,7 +426,7 @@ SceneShaderForwardMobile::ShaderData::~ShaderData() {
}
}
-RendererStorageRD::ShaderData *SceneShaderForwardMobile::_create_shader_func() {
+RendererRD::ShaderData *SceneShaderForwardMobile::_create_shader_func() {
ShaderData *shader_data = memnew(ShaderData);
singleton->shader_list.add(&shader_data->shader_list_element);
return shader_data;
@@ -449,10 +450,9 @@ SceneShaderForwardMobile::MaterialData::~MaterialData() {
free_parameters_uniform_set(uniform_set);
}
-RendererStorageRD::MaterialData *SceneShaderForwardMobile::_create_material_func(ShaderData *p_shader) {
+RendererRD::MaterialData *SceneShaderForwardMobile::_create_material_func(ShaderData *p_shader) {
MaterialData *material_data = memnew(MaterialData);
material_data->shader_data = p_shader;
- material_data->last_frame = false;
//update will happen later anyway so do nothing.
return material_data;
}
@@ -468,6 +468,7 @@ SceneShaderForwardMobile::SceneShaderForwardMobile() {
void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p_defines) {
storage = p_storage;
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
/* SCENE SHADER */
@@ -493,17 +494,17 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
}
}
- storage->shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_3D, _create_shader_funcs);
- storage->material_set_data_request_function(RendererStorageRD::SHADER_TYPE_3D, _create_material_funcs);
+ material_storage->shader_set_data_request_function(RendererRD::SHADER_TYPE_3D, _create_shader_funcs);
+ material_storage->material_set_data_request_function(RendererRD::SHADER_TYPE_3D, _create_material_funcs);
{
//shader compiler
- ShaderCompilerRD::DefaultIdentifierActions actions;
+ ShaderCompiler::DefaultIdentifierActions actions;
- actions.renames["WORLD_MATRIX"] = "world_matrix";
- actions.renames["WORLD_NORMAL_MATRIX"] = "world_normal_matrix";
- actions.renames["INV_CAMERA_MATRIX"] = "scene_data.inv_camera_matrix";
- actions.renames["CAMERA_MATRIX"] = "scene_data.camera_matrix";
+ actions.renames["MODEL_MATRIX"] = "model_matrix";
+ actions.renames["MODEL_NORMAL_MATRIX"] = "model_normal_matrix";
+ actions.renames["VIEW_MATRIX"] = "scene_data.view_matrix";
+ actions.renames["INV_VIEW_MATRIX"] = "scene_data.inv_view_matrix";
actions.renames["PROJECTION_MATRIX"] = "projection_matrix";
actions.renames["INV_PROJECTION_MATRIX"] = "inv_projection_matrix";
actions.renames["MODELVIEW_MATRIX"] = "modelview";
@@ -519,6 +520,7 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
actions.renames["COLOR"] = "color_interp";
actions.renames["POINT_SIZE"] = "gl_PointSize";
actions.renames["INSTANCE_ID"] = "gl_InstanceIndex";
+ actions.renames["VERTEX_ID"] = "gl_VertexIndex";
actions.renames["ALPHA_SCISSOR_THRESHOLD"] = "alpha_scissor_threshold";
actions.renames["ALPHA_HASH_SCALE"] = "alpha_hash_scale";
@@ -545,7 +547,7 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
actions.renames["RIM"] = "rim";
actions.renames["RIM_TINT"] = "rim_tint";
actions.renames["CLEARCOAT"] = "clearcoat";
- actions.renames["CLEARCOAT_GLOSS"] = "clearcoat_gloss";
+ actions.renames["CLEARCOAT_ROUGHNESS"] = "clearcoat_roughness";
actions.renames["ANISOTROPY"] = "anisotropy";
actions.renames["ANISOTROPY_FLOW"] = "anisotropy_flow";
actions.renames["SSS_STRENGTH"] = "sss_strength";
@@ -584,7 +586,6 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
actions.renames["LIGHT_COLOR"] = "light_color";
actions.renames["LIGHT"] = "light";
actions.renames["ATTENUATION"] = "attenuation";
- actions.renames["SHADOW_ATTENUATION"] = "shadow_attenuation";
actions.renames["DIFFUSE_LIGHT"] = "diffuse_light";
actions.renames["SPECULAR_LIGHT"] = "specular_light";
@@ -594,7 +595,7 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
actions.usage_defines["RIM"] = "#define LIGHT_RIM_USED\n";
actions.usage_defines["RIM_TINT"] = "@RIM";
actions.usage_defines["CLEARCOAT"] = "#define LIGHT_CLEARCOAT_USED\n";
- actions.usage_defines["CLEARCOAT_GLOSS"] = "@CLEARCOAT";
+ actions.usage_defines["CLEARCOAT_ROUGHNESS"] = "@CLEARCOAT";
actions.usage_defines["ANISOTROPY"] = "#define LIGHT_ANISOTROPY_USED\n";
actions.usage_defines["ANISOTROPY_FLOW"] = "@ANISOTROPY";
actions.usage_defines["AO"] = "#define AO_USED\n";
@@ -649,15 +650,8 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
actions.render_mode_defines["sss_mode_skin"] = "#define SSS_MODE_SKIN\n";
- bool force_blinn = GLOBAL_GET("rendering/shading/overrides/force_blinn_over_ggx");
- if (!force_blinn) {
- actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_SCHLICK_GGX\n";
- } else {
- actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_BLINN\n";
- }
+ actions.render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_SCHLICK_GGX\n";
- actions.render_mode_defines["specular_blinn"] = "#define SPECULAR_BLINN\n";
- actions.render_mode_defines["specular_phong"] = "#define SPECULAR_PHONG\n";
actions.render_mode_defines["specular_toon"] = "#define SPECULAR_TOON\n";
actions.render_mode_defines["specular_disabled"] = "#define SPECULAR_DISABLED\n";
actions.render_mode_defines["shadows_disabled"] = "#define SHADOWS_DISABLED\n";
@@ -683,9 +677,9 @@ void SceneShaderForwardMobile::init(RendererStorageRD *p_storage, const String p
{
//default material and shader
- default_shader = storage->shader_allocate();
- storage->shader_initialize(default_shader);
- storage->shader_set_code(default_shader, R"(
+ default_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(default_shader);
+ material_storage->shader_set_code(default_shader, R"(
// Default 3D material shader (mobile).
shader_type spatial;
@@ -700,11 +694,11 @@ void fragment() {
METALLIC = 0.2;
}
)");
- default_material = storage->material_allocate();
- storage->material_initialize(default_material);
- storage->material_set_shader(default_material, default_shader);
+ default_material = material_storage->material_allocate();
+ material_storage->material_initialize(default_material);
+ material_storage->material_set_shader(default_material, default_shader);
- MaterialData *md = (MaterialData *)storage->material_get_data(default_material, RendererStorageRD::SHADER_TYPE_3D);
+ MaterialData *md = static_cast<MaterialData *>(material_storage->material_get_data(default_material, RendererRD::SHADER_TYPE_3D));
default_shader_rd = shader.version_get_shader(md->shader_data->version, SHADER_VERSION_COLOR_PASS);
default_material_shader_ptr = md->shader_data;
@@ -712,10 +706,10 @@ void fragment() {
}
{
- overdraw_material_shader = storage->shader_allocate();
- storage->shader_initialize(overdraw_material_shader);
+ overdraw_material_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(overdraw_material_shader);
// Use relatively low opacity so that more "layers" of overlapping objects can be distinguished.
- storage->shader_set_code(overdraw_material_shader, R"(
+ material_storage->shader_set_code(overdraw_material_shader, R"(
// 3D editor Overdraw debug draw mode shader (mobile).
shader_type spatial;
@@ -727,11 +721,11 @@ void fragment() {
ALPHA = 0.1;
}
)");
- overdraw_material = storage->material_allocate();
- storage->material_initialize(overdraw_material);
- storage->material_set_shader(overdraw_material, overdraw_material_shader);
+ overdraw_material = material_storage->material_allocate();
+ material_storage->material_initialize(overdraw_material);
+ material_storage->material_set_shader(overdraw_material, overdraw_material_shader);
- MaterialData *md = (MaterialData *)storage->material_get_data(overdraw_material, RendererStorageRD::SHADER_TYPE_3D);
+ MaterialData *md = static_cast<MaterialData *>(material_storage->material_get_data(overdraw_material, RendererRD::SHADER_TYPE_3D));
overdraw_material_shader_ptr = md->shader_data;
overdraw_material_uniform_set = md->uniform_set;
}
@@ -741,7 +735,7 @@ void fragment() {
Vector<RD::Uniform> uniforms;
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(default_vec4_xform_buffer);
+ u.append_id(default_vec4_xform_buffer);
u.binding = 0;
uniforms.push_back(u);
@@ -771,12 +765,14 @@ void SceneShaderForwardMobile::set_default_specialization_constants(const Vector
}
SceneShaderForwardMobile::~SceneShaderForwardMobile() {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
RD::get_singleton()->free(default_vec4_xform_buffer);
RD::get_singleton()->free(shadow_sampler);
- storage->free(overdraw_material_shader);
- storage->free(default_shader);
+ material_storage->shader_free(overdraw_material_shader);
+ material_storage->shader_free(default_shader);
- storage->free(overdraw_material);
- storage->free(default_material);
+ material_storage->material_free(overdraw_material);
+ material_storage->material_free(default_material);
}
diff --git a/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.h b/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.h
index 392fac1e3e..50b5fb26ec 100644
--- a/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.h
+++ b/servers/rendering/renderer_rd/forward_mobile/scene_shader_forward_mobile.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -40,7 +40,7 @@ namespace RendererSceneRenderImplementation {
class SceneShaderForwardMobile {
private:
static SceneShaderForwardMobile *singleton;
- RendererStorageRD *storage;
+ RendererStorageRD *storage = nullptr;
public:
enum ShaderVersion {
@@ -57,7 +57,7 @@ public:
SHADER_VERSION_MAX
};
- struct ShaderData : public RendererStorageRD::ShaderData {
+ struct ShaderData : public RendererRD::ShaderData {
enum BlendMode { //used internally
BLEND_MODE_MIX,
BLEND_MODE_ADD,
@@ -97,18 +97,18 @@ public:
ALPHA_ANTIALIASING_ALPHA_TO_COVERAGE_AND_TO_ONE
};
- bool valid;
+ bool valid = false;
RID version;
- uint32_t vertex_input_mask;
+ uint32_t vertex_input_mask = 0;
PipelineCacheRD pipelines[CULL_VARIANT_MAX][RS::PRIMITIVE_MAX][SHADER_VERSION_MAX];
String path;
Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
+ uint32_t ubo_size = 0;
String code;
Map<StringName, Map<int, RID>> default_texture_params;
@@ -116,26 +116,26 @@ public:
DepthDraw depth_draw;
DepthTest depth_test;
- bool uses_point_size;
- bool uses_alpha;
- bool uses_blend_alpha;
- bool uses_alpha_clip;
- bool uses_depth_pre_pass;
- bool uses_discard;
- bool uses_roughness;
- bool uses_normal;
- bool uses_particle_trails;
-
- bool unshaded;
- bool uses_vertex;
- bool uses_sss;
- bool uses_transmittance;
- bool uses_screen_texture;
- bool uses_depth_texture;
- bool uses_normal_texture;
- bool uses_time;
- bool writes_modelview_or_projection;
- bool uses_world_coordinates;
+ bool uses_point_size = false;
+ bool uses_alpha = false;
+ bool uses_blend_alpha = false;
+ bool uses_alpha_clip = false;
+ bool uses_depth_pre_pass = false;
+ bool uses_discard = false;
+ bool uses_roughness = false;
+ bool uses_normal = false;
+ bool uses_particle_trails = false;
+
+ bool unshaded = false;
+ bool uses_vertex = false;
+ bool uses_sss = false;
+ bool uses_transmittance = false;
+ bool uses_screen_texture = false;
+ bool uses_depth_texture = false;
+ bool uses_normal_texture = false;
+ bool uses_time = false;
+ bool writes_modelview_or_projection = false;
+ bool uses_world_coordinates = false;
uint64_t last_pass = 0;
uint32_t index = 0;
@@ -143,7 +143,7 @@ public:
virtual void set_code(const String &p_Code);
virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
+ void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
virtual bool is_param_texture(const StringName &p_param) const;
virtual bool is_animated() const;
@@ -157,14 +157,13 @@ public:
virtual ~ShaderData();
};
- RendererStorageRD::ShaderData *_create_shader_func();
- static RendererStorageRD::ShaderData *_create_shader_funcs() {
+ RendererRD::ShaderData *_create_shader_func();
+ static RendererRD::ShaderData *_create_shader_funcs() {
return static_cast<SceneShaderForwardMobile *>(singleton)->_create_shader_func();
}
- struct MaterialData : public RendererStorageRD::MaterialData {
- uint64_t last_frame;
- ShaderData *shader_data;
+ struct MaterialData : public RendererRD::MaterialData {
+ ShaderData *shader_data = nullptr;
RID uniform_set;
uint64_t last_pass = 0;
uint32_t index = 0;
@@ -178,13 +177,13 @@ public:
SelfList<ShaderData>::List shader_list;
- RendererStorageRD::MaterialData *_create_material_func(ShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_material_funcs(RendererStorageRD::ShaderData *p_shader) {
+ RendererRD::MaterialData *_create_material_func(ShaderData *p_shader);
+ static RendererRD::MaterialData *_create_material_funcs(RendererRD::ShaderData *p_shader) {
return static_cast<SceneShaderForwardMobile *>(singleton)->_create_material_func(static_cast<ShaderData *>(p_shader));
}
SceneForwardMobileShaderRD shader;
- ShaderCompilerRD compiler;
+ ShaderCompiler compiler;
RID default_shader;
RID default_material;
diff --git a/servers/rendering/renderer_rd/pipeline_cache_rd.cpp b/servers/rendering/renderer_rd/pipeline_cache_rd.cpp
index 0d60052666..9151c53823 100644
--- a/servers/rendering/renderer_rd/pipeline_cache_rd.cpp
+++ b/servers/rendering/renderer_rd/pipeline_cache_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -58,7 +58,7 @@ RID PipelineCacheRD::_generate_version(RD::VertexFormatID p_vertex_format_id, RD
RID pipeline = RD::get_singleton()->render_pipeline_create(shader, p_framebuffer_format_id, p_vertex_format_id, render_primitive, raster_state_version, multisample_state_version, depth_stencil_state, blend_state, dynamic_state_flags, p_render_pass, specialization_constants);
ERR_FAIL_COND_V(pipeline.is_null(), RID());
- versions = (Version *)memrealloc(versions, sizeof(Version) * (version_count + 1));
+ versions = static_cast<Version *>(memrealloc(versions, sizeof(Version) * (version_count + 1)));
versions[version_count].framebuffer_id = p_framebuffer_format_id;
versions[version_count].vertex_id = p_vertex_format_id;
versions[version_count].wireframe = wireframe;
diff --git a/servers/rendering/renderer_rd/pipeline_cache_rd.h b/servers/rendering/renderer_rd/pipeline_cache_rd.h
index e52f47fa47..ad83fc76b7 100644
--- a/servers/rendering/renderer_rd/pipeline_cache_rd.h
+++ b/servers/rendering/renderer_rd/pipeline_cache_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -45,7 +45,7 @@ class PipelineCacheRD {
RD::PipelineMultisampleState multisample_state;
RD::PipelineDepthStencilState depth_stencil_state;
RD::PipelineColorBlendState blend_state;
- int dynamic_state_flags;
+ int dynamic_state_flags = 0;
Vector<RD::PipelineSpecializationConstant> base_specialization_constants;
struct Version {
@@ -57,7 +57,7 @@ class PipelineCacheRD {
RID pipeline;
};
- Version *versions;
+ Version *versions = nullptr;
uint32_t version_count;
RID _generate_version(RD::VertexFormatID p_vertex_format_id, RD::FramebufferFormatID p_framebuffer_format_id, bool p_wireframe, uint32_t p_render_pass, uint32_t p_bool_specializations = 0);
diff --git a/servers/rendering/renderer_rd/renderer_canvas_render_rd.cpp b/servers/rendering/renderer_rd/renderer_canvas_render_rd.cpp
index 2ff7f27d33..386bc18fcd 100644
--- a/servers/rendering/renderer_rd/renderer_canvas_render_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_canvas_render_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -35,60 +35,63 @@
#include "core/math/math_defs.h"
#include "core/math/math_funcs.h"
#include "renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_server_default.h"
void RendererCanvasRenderRD::_update_transform_2d_to_mat4(const Transform2D &p_transform, float *p_mat4) {
- p_mat4[0] = p_transform.elements[0][0];
- p_mat4[1] = p_transform.elements[0][1];
+ p_mat4[0] = p_transform.columns[0][0];
+ p_mat4[1] = p_transform.columns[0][1];
p_mat4[2] = 0;
p_mat4[3] = 0;
- p_mat4[4] = p_transform.elements[1][0];
- p_mat4[5] = p_transform.elements[1][1];
+ p_mat4[4] = p_transform.columns[1][0];
+ p_mat4[5] = p_transform.columns[1][1];
p_mat4[6] = 0;
p_mat4[7] = 0;
p_mat4[8] = 0;
p_mat4[9] = 0;
p_mat4[10] = 1;
p_mat4[11] = 0;
- p_mat4[12] = p_transform.elements[2][0];
- p_mat4[13] = p_transform.elements[2][1];
+ p_mat4[12] = p_transform.columns[2][0];
+ p_mat4[13] = p_transform.columns[2][1];
p_mat4[14] = 0;
p_mat4[15] = 1;
}
void RendererCanvasRenderRD::_update_transform_2d_to_mat2x4(const Transform2D &p_transform, float *p_mat2x4) {
- p_mat2x4[0] = p_transform.elements[0][0];
- p_mat2x4[1] = p_transform.elements[1][0];
+ p_mat2x4[0] = p_transform.columns[0][0];
+ p_mat2x4[1] = p_transform.columns[1][0];
p_mat2x4[2] = 0;
- p_mat2x4[3] = p_transform.elements[2][0];
+ p_mat2x4[3] = p_transform.columns[2][0];
- p_mat2x4[4] = p_transform.elements[0][1];
- p_mat2x4[5] = p_transform.elements[1][1];
+ p_mat2x4[4] = p_transform.columns[0][1];
+ p_mat2x4[5] = p_transform.columns[1][1];
p_mat2x4[6] = 0;
- p_mat2x4[7] = p_transform.elements[2][1];
+ p_mat2x4[7] = p_transform.columns[2][1];
}
void RendererCanvasRenderRD::_update_transform_2d_to_mat2x3(const Transform2D &p_transform, float *p_mat2x3) {
- p_mat2x3[0] = p_transform.elements[0][0];
- p_mat2x3[1] = p_transform.elements[0][1];
- p_mat2x3[2] = p_transform.elements[1][0];
- p_mat2x3[3] = p_transform.elements[1][1];
- p_mat2x3[4] = p_transform.elements[2][0];
- p_mat2x3[5] = p_transform.elements[2][1];
+ p_mat2x3[0] = p_transform.columns[0][0];
+ p_mat2x3[1] = p_transform.columns[0][1];
+ p_mat2x3[2] = p_transform.columns[1][0];
+ p_mat2x3[3] = p_transform.columns[1][1];
+ p_mat2x3[4] = p_transform.columns[2][0];
+ p_mat2x3[5] = p_transform.columns[2][1];
}
void RendererCanvasRenderRD::_update_transform_to_mat4(const Transform3D &p_transform, float *p_mat4) {
- p_mat4[0] = p_transform.basis.elements[0][0];
- p_mat4[1] = p_transform.basis.elements[1][0];
- p_mat4[2] = p_transform.basis.elements[2][0];
+ p_mat4[0] = p_transform.basis.rows[0][0];
+ p_mat4[1] = p_transform.basis.rows[1][0];
+ p_mat4[2] = p_transform.basis.rows[2][0];
p_mat4[3] = 0;
- p_mat4[4] = p_transform.basis.elements[0][1];
- p_mat4[5] = p_transform.basis.elements[1][1];
- p_mat4[6] = p_transform.basis.elements[2][1];
+ p_mat4[4] = p_transform.basis.rows[0][1];
+ p_mat4[5] = p_transform.basis.rows[1][1];
+ p_mat4[6] = p_transform.basis.rows[2][1];
p_mat4[7] = 0;
- p_mat4[8] = p_transform.basis.elements[0][2];
- p_mat4[9] = p_transform.basis.elements[1][2];
- p_mat4[10] = p_transform.basis.elements[2][2];
+ p_mat4[8] = p_transform.basis.rows[0][2];
+ p_mat4[9] = p_transform.basis.rows[1][2];
+ p_mat4[10] = p_transform.basis.rows[2][2];
p_mat4[11] = 0;
p_mat4[12] = p_transform.origin.x;
p_mat4[13] = p_transform.origin.y;
@@ -105,6 +108,8 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
// This dramatically reduces the amount of pipeline objects
// that need to be created for these formats.
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
uint32_t vertex_count = p_points.size();
uint32_t stride = 2; //vertices always repeat
if ((uint32_t)p_colors.size() == vertex_count || p_colors.size() == 1) {
@@ -127,9 +132,9 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
buffers.resize(5);
{
- const uint8_t *r = polygon_buffer.ptr();
- float *fptr = (float *)r;
- uint32_t *uptr = (uint32_t *)r;
+ uint8_t *r = polygon_buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(r);
+ uint32_t *uptr = reinterpret_cast<uint32_t *>(r);
uint32_t base_offset = 0;
{ //vertices
RD::VertexAttribute vd;
@@ -187,7 +192,7 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
vd.stride = 0;
descriptions.write[1] = vd;
- buffers.write[1] = storage->mesh_get_default_rd_buffer(RendererStorageRD::DEFAULT_RD_BUFFER_COLOR);
+ buffers.write[1] = mesh_storage->mesh_get_default_rd_buffer(RendererRD::DEFAULT_RD_BUFFER_COLOR);
}
//uvs
@@ -215,7 +220,7 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
vd.stride = 0;
descriptions.write[2] = vd;
- buffers.write[2] = storage->mesh_get_default_rd_buffer(RendererStorageRD::DEFAULT_RD_BUFFER_TEX_UV);
+ buffers.write[2] = mesh_storage->mesh_get_default_rd_buffer(RendererRD::DEFAULT_RD_BUFFER_TEX_UV);
}
//bones
@@ -248,7 +253,7 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
vd.stride = 0;
descriptions.write[3] = vd;
- buffers.write[3] = storage->mesh_get_default_rd_buffer(RendererStorageRD::DEFAULT_RD_BUFFER_BONES);
+ buffers.write[3] = mesh_storage->mesh_get_default_rd_buffer(RendererRD::DEFAULT_RD_BUFFER_BONES);
}
//weights
@@ -281,7 +286,7 @@ RendererCanvasRender::PolygonID RendererCanvasRenderRD::request_polygon(const Ve
vd.stride = 0;
descriptions.write[4] = vd;
- buffers.write[4] = storage->mesh_get_default_rd_buffer(RendererStorageRD::DEFAULT_RD_BUFFER_BONES);
+ buffers.write[4] = mesh_storage->mesh_get_default_rd_buffer(RendererRD::DEFAULT_RD_BUFFER_WEIGHTS);
}
//check that everything is as it should be
@@ -358,7 +363,7 @@ void RendererCanvasRenderRD::_bind_canvas_texture(RD::DrawListID p_draw_list, RI
bool use_normal;
bool use_specular;
- bool success = storage->canvas_texture_get_uniform_set(p_texture, p_base_filter, p_base_repeat, shader.default_version_rd_shader, CANVAS_TEXTURE_UNIFORM_SET, uniform_set, size, specular_shininess, use_normal, use_specular);
+ bool success = RendererRD::TextureStorage::get_singleton()->canvas_texture_get_uniform_set(p_texture, p_base_filter, p_base_repeat, shader.default_version_rd_shader, CANVAS_TEXTURE_UNIFORM_SET, uniform_set, size, specular_shininess, use_normal, use_specular);
//something odd happened
if (!success) {
_bind_canvas_texture(p_draw_list, default_canvas_texture, p_base_filter, p_base_repeat, r_last_texture, push_constant, r_texpixel_size);
@@ -395,6 +400,9 @@ void RendererCanvasRenderRD::_bind_canvas_texture(RD::DrawListID p_draw_list, RI
void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_render_target, const Item *p_item, RD::FramebufferFormatID p_framebuffer_format, const Transform2D &p_canvas_transform_inverse, Item *&current_clip, Light *p_lights, PipelineVariants *p_pipeline_variants) {
//create an empty push constant
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+ RendererRD::ParticlesStorage *particles_storage = RendererRD::ParticlesStorage::get_singleton();
RS::CanvasItemTextureFilter current_filter = default_filter;
RS::CanvasItemTextureRepeat current_repeat = default_repeat;
@@ -694,9 +702,9 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
_bind_canvas_texture(p_draw_list, RID(), current_filter, current_repeat, last_texture, push_constant, texpixel_size);
- RD::get_singleton()->draw_list_bind_index_array(p_draw_list, primitive_arrays.index_array[MIN(3, primitive->point_count) - 1]);
+ RD::get_singleton()->draw_list_bind_index_array(p_draw_list, primitive_arrays.index_array[MIN(3u, primitive->point_count) - 1]);
- for (uint32_t j = 0; j < MIN(3, primitive->point_count); j++) {
+ for (uint32_t j = 0; j < MIN(3u, primitive->point_count); j++) {
push_constant.points[j * 2 + 0] = primitive->points[j].x;
push_constant.points[j * 2 + 1] = primitive->points[j].y;
push_constant.uvs[j * 2 + 0] = primitive->uvs[j].x;
@@ -749,48 +757,48 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
} else if (c->type == Item::Command::TYPE_MULTIMESH) {
const Item::CommandMultiMesh *mm = static_cast<const Item::CommandMultiMesh *>(c);
RID multimesh = mm->multimesh;
- mesh = storage->multimesh_get_mesh(multimesh);
+ mesh = mesh_storage->multimesh_get_mesh(multimesh);
texture = mm->texture;
- if (storage->multimesh_get_transform_format(multimesh) != RS::MULTIMESH_TRANSFORM_2D) {
+ if (mesh_storage->multimesh_get_transform_format(multimesh) != RS::MULTIMESH_TRANSFORM_2D) {
break;
}
- instance_count = storage->multimesh_get_instances_to_draw(multimesh);
+ instance_count = mesh_storage->multimesh_get_instances_to_draw(multimesh);
if (instance_count == 0) {
break;
}
- RID uniform_set = storage->multimesh_get_2d_uniform_set(multimesh, shader.default_version_rd_shader, TRANSFORMS_UNIFORM_SET);
+ RID uniform_set = mesh_storage->multimesh_get_2d_uniform_set(multimesh, shader.default_version_rd_shader, TRANSFORMS_UNIFORM_SET);
RD::get_singleton()->draw_list_bind_uniform_set(p_draw_list, uniform_set, TRANSFORMS_UNIFORM_SET);
push_constant.flags |= 1; //multimesh, trails disabled
- if (storage->multimesh_uses_colors(multimesh)) {
+ if (mesh_storage->multimesh_uses_colors(multimesh)) {
push_constant.flags |= FLAGS_INSTANCING_HAS_COLORS;
}
- if (storage->multimesh_uses_custom_data(multimesh)) {
+ if (mesh_storage->multimesh_uses_custom_data(multimesh)) {
push_constant.flags |= FLAGS_INSTANCING_HAS_CUSTOM_DATA;
}
} else if (c->type == Item::Command::TYPE_PARTICLES) {
const Item::CommandParticles *pt = static_cast<const Item::CommandParticles *>(c);
- ERR_BREAK(storage->particles_get_mode(pt->particles) != RS::PARTICLES_MODE_2D);
- storage->particles_request_process(pt->particles);
+ ERR_BREAK(particles_storage->particles_get_mode(pt->particles) != RS::PARTICLES_MODE_2D);
+ particles_storage->particles_request_process(pt->particles);
- if (storage->particles_is_inactive(pt->particles)) {
+ if (particles_storage->particles_is_inactive(pt->particles)) {
break;
}
RenderingServerDefault::redraw_request(); // active particles means redraw request
bool local_coords = true;
- int dpc = storage->particles_get_draw_passes(pt->particles);
+ int dpc = particles_storage->particles_get_draw_passes(pt->particles);
if (dpc == 0) {
break; //nothing to draw
}
uint32_t divisor = 1;
- instance_count = storage->particles_get_amount(pt->particles, divisor);
+ instance_count = particles_storage->particles_get_amount(pt->particles, divisor);
- RID uniform_set = storage->particles_get_instance_buffer_uniform_set(pt->particles, shader.default_version_rd_shader, TRANSFORMS_UNIFORM_SET);
+ RID uniform_set = particles_storage->particles_get_instance_buffer_uniform_set(pt->particles, shader.default_version_rd_shader, TRANSFORMS_UNIFORM_SET);
RD::get_singleton()->draw_list_bind_uniform_set(p_draw_list, uniform_set, TRANSFORMS_UNIFORM_SET);
push_constant.flags |= divisor;
@@ -799,10 +807,10 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
push_constant.flags |= FLAGS_INSTANCING_HAS_COLORS;
push_constant.flags |= FLAGS_INSTANCING_HAS_CUSTOM_DATA;
- mesh = storage->particles_get_draw_pass_mesh(pt->particles, 0); //higher ones are ignored
+ mesh = particles_storage->particles_get_draw_pass_mesh(pt->particles, 0); //higher ones are ignored
texture = pt->texture;
- if (storage->particles_has_collision(pt->particles) && storage->render_target_is_sdf_enabled(p_render_target)) {
+ if (particles_storage->particles_has_collision(pt->particles) && texture_storage->render_target_is_sdf_enabled(p_render_target)) {
//pass collision information
Transform2D xform;
if (local_coords) {
@@ -811,19 +819,19 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
xform = p_canvas_transform_inverse;
}
- RID sdf_texture = storage->render_target_get_sdf_texture(p_render_target);
+ RID sdf_texture = texture_storage->render_target_get_sdf_texture(p_render_target);
Rect2 to_screen;
{
- Rect2 sdf_rect = storage->render_target_get_sdf_rect(p_render_target);
+ Rect2 sdf_rect = texture_storage->render_target_get_sdf_rect(p_render_target);
to_screen.size = Vector2(1.0 / sdf_rect.size.width, 1.0 / sdf_rect.size.height);
to_screen.position = -sdf_rect.position * to_screen.size;
}
- storage->particles_set_canvas_sdf_collision(pt->particles, true, xform, to_screen, sdf_texture);
+ particles_storage->particles_set_canvas_sdf_collision(pt->particles, true, xform, to_screen, sdf_texture);
} else {
- storage->particles_set_canvas_sdf_collision(pt->particles, false, Transform2D(), Rect2(), RID());
+ particles_storage->particles_set_canvas_sdf_collision(pt->particles, false, Transform2D(), Rect2(), RID());
}
}
@@ -833,7 +841,7 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
_bind_canvas_texture(p_draw_list, texture, current_filter, current_repeat, last_texture, push_constant, texpixel_size);
- uint32_t surf_count = storage->mesh_get_surface_count(mesh);
+ uint32_t surf_count = mesh_storage->mesh_get_surface_count(mesh);
static const PipelineVariant variant[RS::PRIMITIVE_MAX] = { PIPELINE_VARIANT_ATTRIBUTE_POINTS, PIPELINE_VARIANT_ATTRIBUTE_LINES, PIPELINE_VARIANT_ATTRIBUTE_LINES_STRIP, PIPELINE_VARIANT_ATTRIBUTE_TRIANGLES, PIPELINE_VARIANT_ATTRIBUTE_TRIANGLE_STRIP };
push_constant.modulation[0] = base_color.r * modulate.r;
@@ -848,9 +856,9 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
}
for (uint32_t j = 0; j < surf_count; j++) {
- void *surface = storage->mesh_get_surface(mesh, j);
+ void *surface = mesh_storage->mesh_get_surface(mesh, j);
- RS::PrimitiveType primitive = storage->mesh_surface_get_primitive(surface);
+ RS::PrimitiveType primitive = mesh_storage->mesh_surface_get_primitive(surface);
ERR_CONTINUE(primitive < 0 || primitive >= RS::PRIMITIVE_MAX);
uint32_t input_mask = pipeline_variants->variants[light_mode][variant[primitive]].get_vertex_input_mask();
@@ -859,15 +867,15 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
RD::VertexFormatID vertex_format = RD::INVALID_FORMAT_ID;
if (mesh_instance.is_valid()) {
- storage->mesh_instance_surface_get_vertex_arrays_and_format(mesh_instance, j, input_mask, vertex_array, vertex_format);
+ mesh_storage->mesh_instance_surface_get_vertex_arrays_and_format(mesh_instance, j, input_mask, vertex_array, vertex_format);
} else {
- storage->mesh_surface_get_vertex_arrays_and_format(surface, input_mask, vertex_array, vertex_format);
+ mesh_storage->mesh_surface_get_vertex_arrays_and_format(surface, input_mask, vertex_array, vertex_format);
}
RID pipeline = pipeline_variants->variants[light_mode][variant[primitive]].get_render_pipeline(vertex_format, p_framebuffer_format);
RD::get_singleton()->draw_list_bind_render_pipeline(p_draw_list, pipeline);
- RID index_array = storage->mesh_surface_get_index_array(surface, 0);
+ RID index_array = mesh_storage->mesh_surface_get_index_array(surface, 0);
if (index_array.is_valid()) {
RD::get_singleton()->draw_list_bind_index_array(p_draw_list, index_array);
@@ -924,6 +932,9 @@ void RendererCanvasRenderRD::_render_item(RD::DrawListID p_draw_list, RID p_rend
}
RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, bool p_backbuffer) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
//re create canvas state
Vector<RD::Uniform> uniforms;
@@ -931,7 +942,7 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 1;
- u.ids.push_back(state.canvas_state_buffer);
+ u.append_id(state.canvas_state_buffer);
uniforms.push_back(u);
}
@@ -939,7 +950,7 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 2;
- u.ids.push_back(state.lights_uniform_buffer);
+ u.append_id(state.lights_uniform_buffer);
uniforms.push_back(u);
}
@@ -947,7 +958,7 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 3;
- u.ids.push_back(storage->decal_atlas_get_texture());
+ u.append_id(RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture());
uniforms.push_back(u);
}
@@ -955,7 +966,7 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 4;
- u.ids.push_back(state.shadow_texture);
+ u.append_id(state.shadow_texture);
uniforms.push_back(u);
}
@@ -963,7 +974,7 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 5;
- u.ids.push_back(state.shadow_sampler);
+ u.append_id(state.shadow_sampler);
uniforms.push_back(u);
}
@@ -973,14 +984,14 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
u.binding = 6;
RID screen;
if (p_backbuffer) {
- screen = storage->render_target_get_rd_texture(p_to_render_target);
+ screen = texture_storage->render_target_get_rd_texture(p_to_render_target);
} else {
- screen = storage->render_target_get_rd_backbuffer(p_to_render_target);
+ screen = texture_storage->render_target_get_rd_backbuffer(p_to_render_target);
if (screen.is_null()) { //unallocated backbuffer
- screen = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
+ screen = RendererRD::TextureStorage::get_singleton()->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
}
}
- u.ids.push_back(screen);
+ u.append_id(screen);
uniforms.push_back(u);
}
@@ -988,30 +999,31 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 7;
- RID sdf = storage->render_target_get_sdf_texture(p_to_render_target);
- u.ids.push_back(sdf);
+ RID sdf = texture_storage->render_target_get_sdf_texture(p_to_render_target);
+ u.append_id(sdf);
uniforms.push_back(u);
}
{
//needs samplers for the material (uses custom textures) create them
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 8;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 8, ids);
+
uniforms.push_back(u);
}
@@ -1019,21 +1031,24 @@ RID RendererCanvasRenderRD::_create_base_uniform_set(RID p_to_render_target, boo
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 9;
- u.ids.push_back(storage->global_variables_get_storage_buffer());
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->global_variables_get_storage_buffer());
uniforms.push_back(u);
}
RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, shader.default_version_rd_shader, BASE_UNIFORM_SET);
if (p_backbuffer) {
- storage->render_target_set_backbuffer_uniform_set(p_to_render_target, uniform_set);
+ texture_storage->render_target_set_backbuffer_uniform_set(p_to_render_target, uniform_set);
} else {
- storage->render_target_set_framebuffer_uniform_set(p_to_render_target, uniform_set);
+ texture_storage->render_target_set_framebuffer_uniform_set(p_to_render_target, uniform_set);
}
return uniform_set;
}
void RendererCanvasRenderRD::_render_items(RID p_to_render_target, int p_item_count, const Transform2D &p_canvas_transform_inverse, Light *p_lights, bool p_to_backbuffer) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
Item *current_clip = nullptr;
Transform2D canvas_transform_inverse = p_canvas_transform_inverse;
@@ -1044,21 +1059,21 @@ void RendererCanvasRenderRD::_render_items(RID p_to_render_target, int p_item_co
Vector<Color> clear_colors;
if (p_to_backbuffer) {
- framebuffer = storage->render_target_get_rd_backbuffer_framebuffer(p_to_render_target);
- fb_uniform_set = storage->render_target_get_backbuffer_uniform_set(p_to_render_target);
+ framebuffer = texture_storage->render_target_get_rd_backbuffer_framebuffer(p_to_render_target);
+ fb_uniform_set = texture_storage->render_target_get_backbuffer_uniform_set(p_to_render_target);
} else {
- framebuffer = storage->render_target_get_rd_framebuffer(p_to_render_target);
+ framebuffer = texture_storage->render_target_get_rd_framebuffer(p_to_render_target);
- if (storage->render_target_is_clear_requested(p_to_render_target)) {
+ if (texture_storage->render_target_is_clear_requested(p_to_render_target)) {
clear = true;
- clear_colors.push_back(storage->render_target_get_clear_request_color(p_to_render_target));
- storage->render_target_disable_clear_request(p_to_render_target);
+ clear_colors.push_back(texture_storage->render_target_get_clear_request_color(p_to_render_target));
+ texture_storage->render_target_disable_clear_request(p_to_render_target);
}
#ifndef _MSC_VER
#warning TODO obtain from framebuffer format eventually when this is implemented
#endif
- fb_uniform_set = storage->render_target_get_framebuffer_uniform_set(p_to_render_target);
+ fb_uniform_set = texture_storage->render_target_get_framebuffer_uniform_set(p_to_render_target);
}
if (fb_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(fb_uniform_set)) {
@@ -1098,9 +1113,9 @@ void RendererCanvasRenderRD::_render_items(RID p_to_render_target, int p_item_co
}
if (material != prev_material) {
- MaterialData *material_data = nullptr;
+ CanvasMaterialData *material_data = nullptr;
if (material.is_valid()) {
- material_data = (MaterialData *)storage->material_get_data(material, RendererStorageRD::SHADER_TYPE_2D);
+ material_data = static_cast<CanvasMaterialData *>(material_storage->material_get_data(material, RendererRD::SHADER_TYPE_2D));
}
if (material_data) {
@@ -1127,6 +1142,10 @@ void RendererCanvasRenderRD::_render_items(RID p_to_render_target, int p_item_co
}
void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p_item_list, const Color &p_modulate, Light *p_light_list, Light *p_directional_light_list, const Transform2D &p_canvas_transform, RenderingServer::CanvasItemTextureFilter p_default_filter, RenderingServer::CanvasItemTextureRepeat p_default_repeat, bool p_snap_2d_vertices_to_pixel, bool &r_sdf_used) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+ RendererRD::MeshStorage *mesh_storage = RendererRD::MeshStorage::get_singleton();
+
r_sdf_used = false;
int item_count = 0;
@@ -1156,7 +1175,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
ERR_CONTINUE(!clight);
}
- Vector2 canvas_light_dir = l->xform_cache.elements[1].normalized();
+ Vector2 canvas_light_dir = l->xform_cache.columns[1].normalized();
state.light_uniforms[index].position[0] = -canvas_light_dir.x;
state.light_uniforms[index].position[1] = -canvas_light_dir.y;
@@ -1227,7 +1246,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
_update_transform_2d_to_mat2x4(to_light_xform, state.light_uniforms[index].matrix);
_update_transform_2d_to_mat2x4(l->xform_cache.affine_inverse(), state.light_uniforms[index].shadow_matrix);
- state.light_uniforms[index].height = l->height * (p_canvas_transform.elements[0].length() + p_canvas_transform.elements[1].length()) * 0.5; //approximate height conversion to the canvas size, since all calculations are done in canvas coords to avoid precision loss
+ state.light_uniforms[index].height = l->height * (p_canvas_transform.columns[0].length() + p_canvas_transform.columns[1].length()) * 0.5; //approximate height conversion to the canvas size, since all calculations are done in canvas coords to avoid precision loss
for (int i = 0; i < 4; i++) {
state.light_uniforms[index].shadow_color[i] = uint8_t(CLAMP(int32_t(l->shadow_color[i] * 255.0), 0, 255));
state.light_uniforms[index].color[i] = l->color[i];
@@ -1252,7 +1271,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
}
if (clight->texture.is_valid()) {
- Rect2 atlas_rect = storage->decal_atlas_get_texture_rect(clight->texture);
+ Rect2 atlas_rect = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture_rect(clight->texture);
state.light_uniforms[index].atlas_rect[0] = atlas_rect.position.x;
state.light_uniforms[index].atlas_rect[1] = atlas_rect.position.y;
state.light_uniforms[index].atlas_rect[2] = atlas_rect.size.width;
@@ -1282,7 +1301,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
//update canvas state uniform buffer
State::Buffer state_buffer;
- Size2i ssize = storage->render_target_get_size(p_to_render_target);
+ Size2i ssize = texture_storage->render_target_get_size(p_to_render_target);
Transform3D screen_transform;
screen_transform.translate(-(ssize.width / 2.0f), -(ssize.height / 2.0f), 0.0f);
@@ -1291,9 +1310,9 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
_update_transform_2d_to_mat4(p_canvas_transform, state_buffer.canvas_transform);
Transform2D normal_transform = p_canvas_transform;
- normal_transform.elements[0].normalize();
- normal_transform.elements[1].normalize();
- normal_transform.elements[2] = Vector2();
+ normal_transform.columns[0].normalize();
+ normal_transform.columns[1].normalize();
+ normal_transform.columns[2] = Vector2();
_update_transform_2d_to_mat4(normal_transform, state_buffer.canvas_normal_transform);
state_buffer.canvas_modulate[0] = p_modulate.r;
@@ -1301,7 +1320,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
state_buffer.canvas_modulate[2] = p_modulate.b;
state_buffer.canvas_modulate[3] = p_modulate.a;
- Size2 render_target_size = storage->render_target_get_size(p_to_render_target);
+ Size2 render_target_size = texture_storage->render_target_get_size(p_to_render_target);
state_buffer.screen_pixel_size[0] = 1.0 / render_target_size.x;
state_buffer.screen_pixel_size[1] = 1.0 / render_target_size.y;
@@ -1318,7 +1337,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
state_buffer.screen_to_sdf[0] = 1.0 / state_buffer.sdf_to_screen[0];
state_buffer.screen_to_sdf[1] = 1.0 / state_buffer.sdf_to_screen[1];
- Rect2 sdf_rect = storage->render_target_get_sdf_rect(p_to_render_target);
+ Rect2 sdf_rect = texture_storage->render_target_get_sdf_rect(p_to_render_target);
Rect2 sdf_tex_rect(sdf_rect.position / canvas_scale, sdf_rect.size / canvas_scale);
state_buffer.sdf_to_tex[0] = 1.0 / sdf_tex_rect.size.width;
@@ -1348,6 +1367,8 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
bool update_skeletons = false;
bool time_used = false;
+ bool backbuffer_cleared = false;
+
while (ci) {
if (ci->copy_back_buffer && canvas_group_owner == nullptr) {
backbuffer_copy = true;
@@ -1362,7 +1383,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
RID material = ci->material_owner == nullptr ? ci->material : ci->material_owner->material;
if (material.is_valid()) {
- MaterialData *md = (MaterialData *)storage->material_get_data(material, RendererStorageRD::SHADER_TYPE_2D);
+ CanvasMaterialData *md = static_cast<CanvasMaterialData *>(material_storage->material_get_data(material, RendererRD::SHADER_TYPE_2D));
if (md && md->shader_data->valid) {
if (md->shader_data->uses_screen_texture && canvas_group_owner == nullptr) {
if (!material_screen_texture_found) {
@@ -1377,14 +1398,6 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
if (md->shader_data->uses_time) {
time_used = true;
}
- if (md->last_frame != RendererCompositorRD::singleton->get_frame_number()) {
- md->last_frame = RendererCompositorRD::singleton->get_frame_number();
- if (!RD::get_singleton()->uniform_set_is_valid(md->uniform_set)) {
- // uniform set may be gone because a dependency was erased. In this case, it will happen
- // if a texture is deleted, so just re-create it.
- storage->material_force_update_textures(material, RendererStorageRD::SHADER_TYPE_2D);
- }
- }
}
}
@@ -1395,7 +1408,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
if (c->type == Item::Command::TYPE_MESH) {
const Item::CommandMesh *cm = static_cast<const Item::CommandMesh *>(c);
if (cm->mesh_instance.is_valid()) {
- storage->mesh_instance_check_for_update(cm->mesh_instance);
+ mesh_storage->mesh_instance_check_for_update(cm->mesh_instance);
update_skeletons = true;
}
}
@@ -1405,20 +1418,22 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
if (ci->canvas_group_owner != nullptr) {
if (canvas_group_owner == nullptr) {
- //Canvas group begins here, render until before this item
+ // Canvas group begins here, render until before this item
if (update_skeletons) {
- storage->update_mesh_instances();
+ mesh_storage->update_mesh_instances();
update_skeletons = false;
}
+
_render_items(p_to_render_target, item_count, canvas_transform_inverse, p_light_list);
item_count = 0;
Rect2i group_rect = ci->canvas_group_owner->global_rect_cache;
if (ci->canvas_group_owner->canvas_group->mode == RS::CANVAS_GROUP_MODE_OPAQUE) {
- storage->render_target_copy_to_back_buffer(p_to_render_target, group_rect, false);
- } else {
- storage->render_target_clear_back_buffer(p_to_render_target, group_rect, Color(0, 0, 0, 0));
+ texture_storage->render_target_copy_to_back_buffer(p_to_render_target, group_rect, false);
+ } else if (!backbuffer_cleared) {
+ texture_storage->render_target_clear_back_buffer(p_to_render_target, Rect2i(), Color(0, 0, 0, 0));
+ backbuffer_cleared = true;
}
backbuffer_copy = false;
@@ -1428,9 +1443,14 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
ci->canvas_group_owner = nullptr; //must be cleared
}
+ if (!backbuffer_cleared && canvas_group_owner == nullptr && ci->canvas_group != nullptr && !backbuffer_copy) {
+ texture_storage->render_target_clear_back_buffer(p_to_render_target, Rect2i(), Color(0, 0, 0, 0));
+ backbuffer_cleared = true;
+ }
+
if (ci == canvas_group_owner) {
if (update_skeletons) {
- storage->update_mesh_instances();
+ mesh_storage->update_mesh_instances();
update_skeletons = false;
}
@@ -1438,7 +1458,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
item_count = 0;
if (ci->canvas_group->blur_mipmaps) {
- storage->render_target_gen_back_buffer_mipmaps(p_to_render_target, ci->global_rect_cache);
+ texture_storage->render_target_gen_back_buffer_mipmaps(p_to_render_target, ci->global_rect_cache);
}
canvas_group_owner = nullptr;
@@ -1447,13 +1467,14 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
if (backbuffer_copy) {
//render anything pending, including clearing if no items
if (update_skeletons) {
- storage->update_mesh_instances();
+ mesh_storage->update_mesh_instances();
update_skeletons = false;
}
+
_render_items(p_to_render_target, item_count, canvas_transform_inverse, p_light_list);
item_count = 0;
- storage->render_target_copy_to_back_buffer(p_to_render_target, back_buffer_rect, true);
+ texture_storage->render_target_copy_to_back_buffer(p_to_render_target, back_buffer_rect, true);
backbuffer_copy = false;
material_screen_texture_found = true; //after a backbuffer copy, screen texture makes no further copies
@@ -1463,7 +1484,7 @@ void RendererCanvasRenderRD::canvas_render_items(RID p_to_render_target, Item *p
if (!ci->next || item_count == MAX_RENDER_ITEMS - 1) {
if (update_skeletons) {
- storage->update_mesh_instances();
+ mesh_storage->update_mesh_instances();
update_skeletons = false;
}
@@ -1486,18 +1507,20 @@ RID RendererCanvasRenderRD::light_create() {
}
void RendererCanvasRenderRD::light_set_texture(RID p_rid, RID p_texture) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
CanvasLight *cl = canvas_light_owner.get_or_null(p_rid);
ERR_FAIL_COND(!cl);
if (cl->texture == p_texture) {
return;
}
if (cl->texture.is_valid()) {
- storage->texture_remove_from_decal_atlas(cl->texture);
+ texture_storage->texture_remove_from_decal_atlas(cl->texture);
}
cl->texture = p_texture;
if (cl->texture.is_valid()) {
- storage->texture_add_to_decal_atlas(cl->texture);
+ texture_storage->texture_add_to_decal_atlas(cl->texture);
}
}
@@ -1622,7 +1645,7 @@ void RendererCanvasRenderRD::light_update_directional_shadow(RID p_rid, int p_sh
_update_shadow_atlas();
- Vector2 light_dir = p_light_xform.elements[1].normalized();
+ Vector2 light_dir = p_light_xform.columns[1].normalized();
Vector2 center = p_clip_rect.get_center();
@@ -1690,25 +1713,27 @@ void RendererCanvasRenderRD::light_update_directional_shadow(RID p_rid, int p_sh
RD::get_singleton()->draw_list_end();
Transform2D to_shadow;
- to_shadow.elements[0].x = 1.0 / -(half_size * 2.0);
- to_shadow.elements[2].x = 0.5;
+ to_shadow.columns[0].x = 1.0 / -(half_size * 2.0);
+ to_shadow.columns[2].x = 0.5;
cl->shadow.directional_xform = to_shadow * to_light_xform;
}
void RendererCanvasRenderRD::render_sdf(RID p_render_target, LightOccluderInstance *p_occluders) {
- RID fb = storage->render_target_get_sdf_framebuffer(p_render_target);
- Rect2i rect = storage->render_target_get_sdf_rect(p_render_target);
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
+ RID fb = texture_storage->render_target_get_sdf_framebuffer(p_render_target);
+ Rect2i rect = texture_storage->render_target_get_sdf_rect(p_render_target);
Transform2D to_sdf;
- to_sdf.elements[0] *= rect.size.width;
- to_sdf.elements[1] *= rect.size.height;
- to_sdf.elements[2] = rect.position;
+ to_sdf.columns[0] *= rect.size.width;
+ to_sdf.columns[1] *= rect.size.height;
+ to_sdf.columns[2] = rect.position;
Transform2D to_clip;
- to_clip.elements[0] *= 2.0;
- to_clip.elements[1] *= 2.0;
- to_clip.elements[2] = -Vector2(1.0, 1.0);
+ to_clip.columns[0] *= 2.0;
+ to_clip.columns[1] *= 2.0;
+ to_clip.columns[2] = -Vector2(1.0, 1.0);
to_clip = to_clip * to_sdf.affine_inverse();
@@ -1755,7 +1780,7 @@ void RendererCanvasRenderRD::render_sdf(RID p_render_target, LightOccluderInstan
RD::get_singleton()->draw_list_end();
- storage->render_target_sdf_process(p_render_target); //done rendering, process it
+ texture_storage->render_target_sdf_process(p_render_target); //done rendering, process it
}
RID RendererCanvasRenderRD::occluder_polygon_create() {
@@ -1818,7 +1843,7 @@ void RendererCanvasRenderRD::occluder_polygon_set_shape(RID p_occluder, const Ve
{
uint8_t *vw = geometry.ptrw();
- float *vwptr = (float *)vw;
+ float *vwptr = reinterpret_cast<float *>(vw);
uint8_t *iw = indices.ptrw();
uint16_t *iwptr = (uint16_t *)iw;
@@ -1942,7 +1967,7 @@ void RendererCanvasRenderRD::occluder_polygon_set_cull_mode(RID p_occluder, RS::
oc->cull_mode = p_mode;
}
-void RendererCanvasRenderRD::ShaderData::set_code(const String &p_code) {
+void RendererCanvasRenderRD::CanvasShaderData::set_code(const String &p_code) {
//compile
code = p_code;
@@ -1957,15 +1982,15 @@ void RendererCanvasRenderRD::ShaderData::set_code(const String &p_code) {
return; //just invalid, but no error
}
- ShaderCompilerRD::GeneratedCode gen_code;
+ ShaderCompiler::GeneratedCode gen_code;
int blend_mode = BLEND_MODE_MIX;
uses_screen_texture = false;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["vertex"] = ShaderCompilerRD::STAGE_VERTEX;
- actions.entry_point_stages["fragment"] = ShaderCompilerRD::STAGE_FRAGMENT;
- actions.entry_point_stages["light"] = ShaderCompilerRD::STAGE_FRAGMENT;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["vertex"] = ShaderCompiler::STAGE_VERTEX;
+ actions.entry_point_stages["fragment"] = ShaderCompiler::STAGE_FRAGMENT;
+ actions.entry_point_stages["light"] = ShaderCompiler::STAGE_FRAGMENT;
actions.render_mode_values["blend_add"] = Pair<int *, int>(&blend_mode, BLEND_MODE_ADD);
actions.render_mode_values["blend_mix"] = Pair<int *, int>(&blend_mode, BLEND_MODE_MIX);
@@ -1980,7 +2005,7 @@ void RendererCanvasRenderRD::ShaderData::set_code(const String &p_code) {
actions.uniforms = &uniforms;
- RendererCanvasRenderRD *canvas_singleton = (RendererCanvasRenderRD *)RendererCanvasRender::singleton;
+ RendererCanvasRenderRD *canvas_singleton = static_cast<RendererCanvasRenderRD *>(RendererCanvasRender::singleton);
Error err = canvas_singleton->shader.compiler.compile(RS::SHADER_CANVAS_ITEM, code, &actions, path, gen_code);
ERR_FAIL_COND_MSG(err != OK, "Shader compilation failed.");
@@ -2002,7 +2027,7 @@ void RendererCanvasRenderRD::ShaderData::set_code(const String &p_code) {
print_line("\n**fragment_code:\n" + gen_code.fragment);
print_line("\n**light_code:\n" + gen_code.light);
#endif
- canvas_singleton->shader.canvas_shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX], gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT], gen_code.defines);
+ canvas_singleton->shader.canvas_shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX], gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT], gen_code.defines);
ERR_FAIL_COND(!canvas_singleton->shader.canvas_shader.version_is_valid(version));
ubo_size = gen_code.uniform_total_size;
@@ -2124,7 +2149,7 @@ void RendererCanvasRenderRD::ShaderData::set_code(const String &p_code) {
valid = true;
}
-void RendererCanvasRenderRD::ShaderData::set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) {
+void RendererCanvasRenderRD::CanvasShaderData::set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) {
if (!p_texture.is_valid()) {
if (default_texture_params.has(p_name) && default_texture_params[p_name].has(p_index)) {
default_texture_params[p_name].erase(p_index);
@@ -2141,7 +2166,7 @@ void RendererCanvasRenderRD::ShaderData::set_default_texture_param(const StringN
}
}
-void RendererCanvasRenderRD::ShaderData::get_param_list(List<PropertyInfo> *p_param_list) const {
+void RendererCanvasRenderRD::CanvasShaderData::get_param_list(List<PropertyInfo> *p_param_list) const {
Map<int, StringName> order;
for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
@@ -2162,13 +2187,13 @@ void RendererCanvasRenderRD::ShaderData::get_param_list(List<PropertyInfo> *p_pa
}
}
-void RendererCanvasRenderRD::ShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
+void RendererCanvasRenderRD::CanvasShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
continue;
}
- RendererStorage::InstanceShaderParam p;
+ RendererMaterialStorage::InstanceShaderParam p;
p.info = ShaderLanguage::uniform_to_property_info(E.value);
p.info.name = E.key; //supply name
p.index = E.value.instance_index;
@@ -2177,7 +2202,7 @@ void RendererCanvasRenderRD::ShaderData::get_instance_param_list(List<RendererSt
}
}
-bool RendererCanvasRenderRD::ShaderData::is_param_texture(const StringName &p_param) const {
+bool RendererCanvasRenderRD::CanvasShaderData::is_param_texture(const StringName &p_param) const {
if (!uniforms.has(p_param)) {
return false;
}
@@ -2185,15 +2210,15 @@ bool RendererCanvasRenderRD::ShaderData::is_param_texture(const StringName &p_pa
return uniforms[p_param].texture_order >= 0;
}
-bool RendererCanvasRenderRD::ShaderData::is_animated() const {
+bool RendererCanvasRenderRD::CanvasShaderData::is_animated() const {
return false;
}
-bool RendererCanvasRenderRD::ShaderData::casts_shadows() const {
+bool RendererCanvasRenderRD::CanvasShaderData::casts_shadows() const {
return false;
}
-Variant RendererCanvasRenderRD::ShaderData::get_default_parameter(const StringName &p_parameter) const {
+Variant RendererCanvasRenderRD::CanvasShaderData::get_default_parameter(const StringName &p_parameter) const {
if (uniforms.has(p_parameter)) {
ShaderLanguage::ShaderNode::Uniform uniform = uniforms[p_parameter];
Vector<ShaderLanguage::ConstantNode::Value> default_value = uniform.default_value;
@@ -2202,19 +2227,13 @@ Variant RendererCanvasRenderRD::ShaderData::get_default_parameter(const StringNa
return Variant();
}
-RS::ShaderNativeSourceCode RendererCanvasRenderRD::ShaderData::get_native_source_code() const {
- RendererCanvasRenderRD *canvas_singleton = (RendererCanvasRenderRD *)RendererCanvasRender::singleton;
+RS::ShaderNativeSourceCode RendererCanvasRenderRD::CanvasShaderData::get_native_source_code() const {
+ RendererCanvasRenderRD *canvas_singleton = static_cast<RendererCanvasRenderRD *>(RendererCanvasRender::singleton);
return canvas_singleton->shader.canvas_shader.version_get_native_source_code(version);
}
-RendererCanvasRenderRD::ShaderData::ShaderData() {
- valid = false;
- uses_screen_texture = false;
- uses_sdf = false;
-}
-
-RendererCanvasRenderRD::ShaderData::~ShaderData() {
- RendererCanvasRenderRD *canvas_singleton = (RendererCanvasRenderRD *)RendererCanvasRender::singleton;
+RendererCanvasRenderRD::CanvasShaderData::~CanvasShaderData() {
+ RendererCanvasRenderRD *canvas_singleton = static_cast<RendererCanvasRenderRD *>(RendererCanvasRender::singleton);
ERR_FAIL_COND(!canvas_singleton);
//pipeline variants will clear themselves if shader is gone
if (version.is_valid()) {
@@ -2222,25 +2241,24 @@ RendererCanvasRenderRD::ShaderData::~ShaderData() {
}
}
-RendererStorageRD::ShaderData *RendererCanvasRenderRD::_create_shader_func() {
- ShaderData *shader_data = memnew(ShaderData);
+RendererRD::ShaderData *RendererCanvasRenderRD::_create_shader_func() {
+ CanvasShaderData *shader_data = memnew(CanvasShaderData);
return shader_data;
}
-bool RendererCanvasRenderRD::MaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
- RendererCanvasRenderRD *canvas_singleton = (RendererCanvasRenderRD *)RendererCanvasRender::singleton;
+bool RendererCanvasRenderRD::CanvasMaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
+ RendererCanvasRenderRD *canvas_singleton = static_cast<RendererCanvasRenderRD *>(RendererCanvasRender::singleton);
return update_parameters_uniform_set(p_parameters, p_uniform_dirty, p_textures_dirty, shader_data->uniforms, shader_data->ubo_offsets.ptr(), shader_data->texture_uniforms, shader_data->default_texture_params, shader_data->ubo_size, uniform_set, canvas_singleton->shader.canvas_shader.version_get_shader(shader_data->version, 0), MATERIAL_UNIFORM_SET);
}
-RendererCanvasRenderRD::MaterialData::~MaterialData() {
+RendererCanvasRenderRD::CanvasMaterialData::~CanvasMaterialData() {
free_parameters_uniform_set(uniform_set);
}
-RendererStorageRD::MaterialData *RendererCanvasRenderRD::_create_material_func(ShaderData *p_shader) {
- MaterialData *material_data = memnew(MaterialData);
+RendererRD::MaterialData *RendererCanvasRenderRD::_create_material_func(CanvasShaderData *p_shader) {
+ CanvasMaterialData *material_data = memnew(CanvasMaterialData);
material_data->shader_data = p_shader;
- material_data->last_frame = false;
//update will happen later anyway so do nothing.
return material_data;
}
@@ -2253,6 +2271,8 @@ void RendererCanvasRenderRD::update() {
}
RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
storage = p_storage;
{ //create default samplers
@@ -2265,7 +2285,7 @@ RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
String global_defines;
- uint32_t uniform_max_size = RD::get_singleton()->limit_get(RD::LIMIT_MAX_UNIFORM_BUFFER_SIZE);
+ uint64_t uniform_max_size = RD::get_singleton()->limit_get(RD::LIMIT_MAX_UNIFORM_BUFFER_SIZE);
if (uniform_max_size < 65536) {
//Yes, you guessed right, ARM again
state.max_lights_per_render = 64;
@@ -2359,7 +2379,7 @@ RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
{
//shader compiler
- ShaderCompilerRD::DefaultIdentifierActions actions;
+ ShaderCompiler::DefaultIdentifierActions actions;
actions.renames["VERTEX"] = "vertex";
actions.renames["LIGHT_VERTEX"] = "light_vertex";
@@ -2367,7 +2387,7 @@ RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
actions.renames["UV"] = "uv";
actions.renames["POINT_SIZE"] = "gl_PointSize";
- actions.renames["WORLD_MATRIX"] = "world_matrix";
+ actions.renames["MODEL_MATRIX"] = "model_matrix";
actions.renames["CANVAS_MATRIX"] = "canvas_data.canvas_transform";
actions.renames["SCREEN_MATRIX"] = "canvas_data.screen_transform";
actions.renames["TIME"] = "canvas_data.time";
@@ -2391,6 +2411,8 @@ RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
actions.renames["SCREEN_PIXEL_SIZE"] = "canvas_data.screen_pixel_size";
actions.renames["FRAGCOORD"] = "gl_FragCoord";
actions.renames["POINT_COORD"] = "gl_PointCoord";
+ actions.renames["INSTANCE_ID"] = "gl_InstanceIndex";
+ actions.renames["VERTEX_ID"] = "gl_VertexIndex";
actions.renames["LIGHT_POSITION"] = "light_position";
actions.renames["LIGHT_COLOR"] = "light_color";
@@ -2574,29 +2596,29 @@ RendererCanvasRenderRD::RendererCanvasRenderRD(RendererStorageRD *p_storage) {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 0;
- u.ids.push_back(storage->get_default_rd_storage_buffer());
+ u.append_id(RendererRD::MeshStorage::get_singleton()->get_default_rd_storage_buffer());
uniforms.push_back(u);
}
state.default_transforms_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, shader.default_version_rd_shader, TRANSFORMS_UNIFORM_SET);
}
- default_canvas_texture = storage->canvas_texture_allocate();
- storage->canvas_texture_initialize(default_canvas_texture);
+ default_canvas_texture = texture_storage->canvas_texture_allocate();
+ texture_storage->canvas_texture_initialize(default_canvas_texture);
state.shadow_texture_size = GLOBAL_GET("rendering/2d/shadow_atlas/size");
//create functions for shader and material
- storage->shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_2D, _create_shader_funcs);
- storage->material_set_data_request_function(RendererStorageRD::SHADER_TYPE_2D, _create_material_funcs);
+ material_storage->shader_set_data_request_function(RendererRD::SHADER_TYPE_2D, _create_shader_funcs);
+ material_storage->material_set_data_request_function(RendererRD::SHADER_TYPE_2D, _create_material_funcs);
state.time = 0;
{
- default_canvas_group_shader = storage->shader_allocate();
- storage->shader_initialize(default_canvas_group_shader);
+ default_canvas_group_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(default_canvas_group_shader);
- storage->shader_set_code(default_canvas_group_shader, R"(
+ material_storage->shader_set_code(default_canvas_group_shader, R"(
// Default CanvasGroup shader.
shader_type canvas_item;
@@ -2611,10 +2633,10 @@ void fragment() {
COLOR *= c;
}
)");
- default_canvas_group_material = storage->material_allocate();
- storage->material_initialize(default_canvas_group_material);
+ default_canvas_group_material = material_storage->material_allocate();
+ material_storage->material_initialize(default_canvas_group_material);
- storage->material_set_shader(default_canvas_group_material, default_canvas_group_shader);
+ material_storage->material_set_shader(default_canvas_group_material, default_canvas_group_shader);
}
static_assert(sizeof(PushConstant) == 128);
@@ -2662,10 +2684,11 @@ void RendererCanvasRenderRD::set_shadow_texture_size(int p_size) {
}
RendererCanvasRenderRD::~RendererCanvasRenderRD() {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
//canvas state
- storage->free(default_canvas_group_material);
- storage->free(default_canvas_group_shader);
+ material_storage->material_free(default_canvas_group_material);
+ material_storage->shader_free(default_canvas_group_shader);
{
if (state.canvas_state_buffer.is_valid()) {
@@ -2702,6 +2725,6 @@ RendererCanvasRenderRD::~RendererCanvasRenderRD() {
}
RD::get_singleton()->free(state.shadow_texture);
- storage->free(default_canvas_texture);
+ RendererRD::TextureStorage::get_singleton()->canvas_texture_free(default_canvas_texture);
//pipelines don't need freeing, they are all gone after shaders are gone
}
diff --git a/servers/rendering/renderer_rd/renderer_canvas_render_rd.h b/servers/rendering/renderer_rd/renderer_canvas_render_rd.h
index 26ccbd3bf5..06970acca6 100644
--- a/servers/rendering/renderer_rd/renderer_canvas_render_rd.h
+++ b/servers/rendering/renderer_rd/renderer_canvas_render_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -35,13 +35,13 @@
#include "servers/rendering/renderer_compositor.h"
#include "servers/rendering/renderer_rd/pipeline_cache_rd.h"
#include "servers/rendering/renderer_rd/renderer_storage_rd.h"
-#include "servers/rendering/renderer_rd/shader_compiler_rd.h"
#include "servers/rendering/renderer_rd/shaders/canvas.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl.gen.h"
#include "servers/rendering/rendering_device.h"
+#include "servers/rendering/shader_compiler.h"
class RendererCanvasRenderRD : public RendererCanvasRender {
- RendererStorageRD *storage;
+ RendererStorageRD *storage = nullptr;
enum {
BASE_UNIFORM_SET = 0,
@@ -148,10 +148,10 @@ class RendererCanvasRenderRD : public RendererCanvasRender {
RID default_skeleton_uniform_buffer;
RID default_skeleton_texture_buffer;
- ShaderCompilerRD compiler;
+ ShaderCompiler compiler;
} shader;
- struct ShaderData : public RendererStorageRD::ShaderData {
+ struct CanvasShaderData : public RendererRD::ShaderData {
enum BlendMode { //used internally
BLEND_MODE_MIX,
BLEND_MODE_ADD,
@@ -161,16 +161,16 @@ class RendererCanvasRenderRD : public RendererCanvasRender {
BLEND_MODE_DISABLED,
};
- bool valid;
+ bool valid = false;
RID version;
PipelineVariants pipeline_variants;
String path;
Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
+ uint32_t ubo_size = 0;
String code;
Map<StringName, Map<int, RID>> default_texture_params;
@@ -182,7 +182,7 @@ class RendererCanvasRenderRD : public RendererCanvasRender {
virtual void set_code(const String &p_Code);
virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- virtual void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
+ virtual void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
virtual bool is_param_texture(const StringName &p_param) const;
virtual bool is_animated() const;
@@ -190,29 +190,28 @@ class RendererCanvasRenderRD : public RendererCanvasRender {
virtual Variant get_default_parameter(const StringName &p_parameter) const;
virtual RS::ShaderNativeSourceCode get_native_source_code() const;
- ShaderData();
- virtual ~ShaderData();
+ CanvasShaderData() {}
+ virtual ~CanvasShaderData();
};
- RendererStorageRD::ShaderData *_create_shader_func();
- static RendererStorageRD::ShaderData *_create_shader_funcs() {
+ RendererRD::ShaderData *_create_shader_func();
+ static RendererRD::ShaderData *_create_shader_funcs() {
return static_cast<RendererCanvasRenderRD *>(singleton)->_create_shader_func();
}
- struct MaterialData : public RendererStorageRD::MaterialData {
- uint64_t last_frame;
- ShaderData *shader_data;
+ struct CanvasMaterialData : public RendererRD::MaterialData {
+ CanvasShaderData *shader_data = nullptr;
RID uniform_set;
virtual void set_render_priority(int p_priority) {}
virtual void set_next_pass(RID p_pass) {}
virtual bool update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty);
- virtual ~MaterialData();
+ virtual ~CanvasMaterialData();
};
- RendererStorageRD::MaterialData *_create_material_func(ShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_material_funcs(RendererStorageRD::ShaderData *p_shader) {
- return static_cast<RendererCanvasRenderRD *>(singleton)->_create_material_func(static_cast<ShaderData *>(p_shader));
+ RendererRD::MaterialData *_create_material_func(CanvasShaderData *p_shader);
+ static RendererRD::MaterialData *_create_material_funcs(RendererRD::ShaderData *p_shader) {
+ return static_cast<RendererCanvasRenderRD *>(singleton)->_create_material_func(static_cast<CanvasShaderData *>(p_shader));
}
/**************************/
@@ -362,7 +361,7 @@ class RendererCanvasRenderRD : public RendererCanvasRender {
uint32_t pad2;
};
- LightUniform *light_uniforms;
+ LightUniform *light_uniforms = nullptr;
RID lights_uniform_buffer;
RID canvas_state_buffer;
diff --git a/servers/rendering/renderer_rd/renderer_compositor_rd.cpp b/servers/rendering/renderer_rd/renderer_compositor_rd.cpp
index d310becd1e..759b8690eb 100644
--- a/servers/rendering/renderer_rd/renderer_compositor_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_compositor_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -39,11 +39,14 @@ void RendererCompositorRD::prepare_for_blitting_render_targets() {
void RendererCompositorRD::blit_render_targets_to_screen(DisplayServer::WindowID p_screen, const BlitToScreen *p_render_targets, int p_amount) {
RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin_for_screen(p_screen);
+ if (draw_list == RD::INVALID_ID) {
+ return; // Window is minimized and does not have valid swapchain, skip drawing without printing errors.
+ }
for (int i = 0; i < p_amount; i++) {
- RID texture = storage->render_target_get_texture(p_render_targets[i].render_target);
+ RID texture = texture_storage->render_target_get_texture(p_render_targets[i].render_target);
ERR_CONTINUE(texture.is_null());
- RID rd_texture = storage->texture_get_rd_texture(texture);
+ RID rd_texture = texture_storage->texture_get_rd_texture(texture);
ERR_CONTINUE(rd_texture.is_null());
// TODO if keep_3d_linear was set when rendering to this render target we need to add a linear->sRGB conversion in.
@@ -53,8 +56,8 @@ void RendererCompositorRD::blit_render_targets_to_screen(DisplayServer::WindowID
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(blit.sampler);
- u.ids.push_back(rd_texture);
+ u.append_id(blit.sampler);
+ u.append_id(rd_texture);
uniforms.push_back(u);
RID uniform_set = RD::get_singleton()->uniform_set_create(uniforms, blit.shader.version_get_shader(blit.shader_version, BLIT_MODE_NORMAL), 0);
@@ -152,6 +155,11 @@ void RendererCompositorRD::finalize() {
memdelete(scene);
memdelete(canvas);
memdelete(storage);
+ memdelete(particles_storage);
+ memdelete(light_storage);
+ memdelete(mesh_storage);
+ memdelete(material_storage);
+ memdelete(texture_storage);
//only need to erase these, the rest are erased by cascade
blit.shader.version_free(blit.shader_version);
@@ -162,9 +170,9 @@ void RendererCompositorRD::finalize() {
void RendererCompositorRD::set_boot_image(const Ref<Image> &p_image, const Color &p_color, bool p_scale, bool p_use_filter) {
RD::get_singleton()->prepare_screen_for_drawing();
- RID texture = storage->texture_allocate();
- storage->texture_2d_initialize(texture, p_image);
- RID rd_texture = storage->texture_get_rd_texture(texture);
+ RID texture = texture_storage->texture_allocate();
+ texture_storage->texture_2d_initialize(texture, p_image);
+ RID rd_texture = texture_storage->texture_get_rd_texture(texture);
RID uset;
{
@@ -172,8 +180,8 @@ void RendererCompositorRD::set_boot_image(const Ref<Image> &p_image, const Color
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER_WITH_TEXTURE;
u.binding = 0;
- u.ids.push_back(blit.sampler);
- u.ids.push_back(rd_texture);
+ u.append_id(blit.sampler);
+ u.append_id(rd_texture);
uniforms.push_back(u);
uset = RD::get_singleton()->uniform_set_create(uniforms, blit.shader.version_get_shader(blit.shader_version, BLIT_MODE_NORMAL), 0);
}
@@ -232,19 +240,21 @@ void RendererCompositorRD::set_boot_image(const Ref<Image> &p_image, const Color
RD::get_singleton()->swap_buffers();
- storage->free(texture);
+ texture_storage->texture_free(texture);
}
RendererCompositorRD *RendererCompositorRD::singleton = nullptr;
RendererCompositorRD::RendererCompositorRD() {
+ uniform_set_cache = memnew(UniformSetCacheRD);
+
{
String shader_cache_dir = Engine::get_singleton()->get_shader_cache_path();
if (shader_cache_dir.is_empty()) {
shader_cache_dir = "user://";
}
- DirAccessRef da = DirAccess::open(shader_cache_dir);
- if (!da) {
+ Ref<DirAccess> da = DirAccess::open(shader_cache_dir);
+ if (da.is_null()) {
ERR_PRINT("Can't create shader cache folder, no shader caching will happen: " + shader_cache_dir);
} else {
Error err = da->change_dir("shader_cache");
@@ -276,13 +286,17 @@ RendererCompositorRD::RendererCompositorRD() {
}
singleton = this;
- time = 0;
+ texture_storage = memnew(RendererRD::TextureStorage);
+ material_storage = memnew(RendererRD::MaterialStorage);
+ mesh_storage = memnew(RendererRD::MeshStorage);
+ light_storage = memnew(RendererRD::LightStorage);
+ particles_storage = memnew(RendererRD::ParticlesStorage);
storage = memnew(RendererStorageRD);
canvas = memnew(RendererCanvasRenderRD(storage));
back_end = (bool)(int)GLOBAL_GET("rendering/vulkan/rendering/back_end");
- uint32_t textures_per_stage = RD::get_singleton()->limit_get(RD::LIMIT_MAX_TEXTURES_PER_SHADER_STAGE);
+ uint64_t textures_per_stage = RD::get_singleton()->limit_get(RD::LIMIT_MAX_TEXTURES_PER_SHADER_STAGE);
if (back_end || textures_per_stage < 48) {
scene = memnew(RendererSceneRenderImplementation::RenderForwardMobile(storage));
@@ -298,5 +312,6 @@ RendererCompositorRD::RendererCompositorRD() {
}
RendererCompositorRD::~RendererCompositorRD() {
+ memdelete(uniform_set_cache);
ShaderRD::set_shader_cache_dir(String());
}
diff --git a/servers/rendering/renderer_rd/renderer_compositor_rd.h b/servers/rendering/renderer_rd/renderer_compositor_rd.h
index f69e40e0ff..26bd28286b 100644
--- a/servers/rendering/renderer_rd/renderer_compositor_rd.h
+++ b/servers/rendering/renderer_rd/renderer_compositor_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -39,12 +39,24 @@
#include "servers/rendering/renderer_rd/renderer_canvas_render_rd.h"
#include "servers/rendering/renderer_rd/renderer_storage_rd.h"
#include "servers/rendering/renderer_rd/shaders/blit.glsl.gen.h"
+#include "servers/rendering/renderer_rd/storage_rd/light_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/mesh_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
+#include "servers/rendering/renderer_rd/uniform_set_cache_rd.h"
class RendererCompositorRD : public RendererCompositor {
protected:
- RendererCanvasRenderRD *canvas;
- RendererStorageRD *storage;
- RendererSceneRenderRD *scene;
+ UniformSetCacheRD *uniform_set_cache = nullptr;
+ RendererCanvasRenderRD *canvas = nullptr;
+ RendererRD::LightStorage *light_storage = nullptr;
+ RendererRD::MaterialStorage *material_storage = nullptr;
+ RendererRD::MeshStorage *mesh_storage = nullptr;
+ RendererRD::ParticlesStorage *particles_storage = nullptr;
+ RendererRD::TextureStorage *texture_storage = nullptr;
+ RendererStorageRD *storage = nullptr;
+ RendererSceneRenderRD *scene = nullptr;
enum BlitMode {
BLIT_MODE_NORMAL,
@@ -80,12 +92,17 @@ protected:
Map<RID, RID> render_target_descriptors;
- double time;
- double delta;
+ double time = 0.0;
+ double delta = 0.0;
static uint64_t frame;
public:
+ RendererLightStorage *get_light_storage() { return light_storage; };
+ RendererMaterialStorage *get_material_storage() { return material_storage; };
+ RendererMeshStorage *get_mesh_storage() { return mesh_storage; };
+ RendererParticlesStorage *get_particles_storage() { return particles_storage; };
+ RendererTextureStorage *get_texture_storage() { return texture_storage; };
RendererStorage *get_storage() { return storage; }
RendererCanvasRender *get_canvas() { return canvas; }
RendererSceneRender *get_scene() { return scene; }
diff --git a/servers/rendering/renderer_rd/renderer_scene_environment_rd.cpp b/servers/rendering/renderer_rd/renderer_scene_environment_rd.cpp
index 550e59ba98..0d9477d850 100644
--- a/servers/rendering/renderer_rd/renderer_scene_environment_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_scene_environment_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -54,7 +54,7 @@ void RendererSceneEnvironmentRD::set_tonemap(RS::EnvironmentToneMapper p_tone_ma
auto_exp_scale = p_auto_exp_scale;
}
-void RendererSceneEnvironmentRD::set_glow(bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) {
+void RendererSceneEnvironmentRD::set_glow(bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) {
ERR_FAIL_COND_MSG(p_levels.size() != 7, "Size of array of glow levels must be 7");
glow_enabled = p_enable;
glow_levels = p_levels;
@@ -66,9 +66,11 @@ void RendererSceneEnvironmentRD::set_glow(bool p_enable, Vector<float> p_levels,
glow_hdr_bleed_threshold = p_hdr_bleed_threshold;
glow_hdr_bleed_scale = p_hdr_bleed_scale;
glow_hdr_luminance_cap = p_hdr_luminance_cap;
+ glow_map_strength = p_glow_map_strength;
+ glow_map = p_glow_map;
}
-void RendererSceneEnvironmentRD::set_sdfgi(bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) {
+void RendererSceneEnvironmentRD::set_sdfgi(bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) {
sdfgi_enabled = p_enable;
sdfgi_cascades = p_cascades;
sdfgi_min_cell_size = p_min_cell_size;
diff --git a/servers/rendering/renderer_rd/renderer_scene_environment_rd.h b/servers/rendering/renderer_rd/renderer_scene_environment_rd.h
index ec9cb4a798..4e170b8cfb 100644
--- a/servers/rendering/renderer_rd/renderer_scene_environment_rd.h
+++ b/servers/rendering/renderer_rd/renderer_scene_environment_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -102,6 +102,8 @@ public:
float glow_hdr_bleed_threshold = 1.0;
float glow_hdr_luminance_cap = 12.0;
float glow_hdr_bleed_scale = 2.0;
+ float glow_map_strength = 0.0f;
+ RID glow_map = RID();
/// SSAO
@@ -123,17 +125,25 @@ public:
float ssr_fade_out = 2.0;
float ssr_depth_tolerance = 0.2;
+ /// SSIL
+ ///
+ bool ssil_enabled = false;
+ float ssil_radius = 5.0;
+ float ssil_intensity = 1.0;
+ float ssil_sharpness = 0.98;
+ float ssil_normal_rejection = 1.0;
+
/// SDFGI
bool sdfgi_enabled = false;
- RS::EnvironmentSDFGICascades sdfgi_cascades;
+ int sdfgi_cascades = 4;
float sdfgi_min_cell_size = 0.2;
bool sdfgi_use_occlusion = false;
- float sdfgi_bounce_feedback = 0.0;
- bool sdfgi_read_sky_light = false;
+ float sdfgi_bounce_feedback = 0.5;
+ bool sdfgi_read_sky_light = true;
float sdfgi_energy = 1.0;
float sdfgi_normal_bias = 1.1;
float sdfgi_probe_bias = 1.1;
- RS::EnvironmentSDFGIYScale sdfgi_y_scale = RS::ENV_SDFGI_Y_SCALE_DISABLED;
+ RS::EnvironmentSDFGIYScale sdfgi_y_scale = RS::ENV_SDFGI_Y_SCALE_75_PERCENT;
/// Adjustments
@@ -146,8 +156,8 @@ public:
void set_ambient_light(const Color &p_color, RS::EnvironmentAmbientSource p_ambient, float p_energy, float p_sky_contribution, RS::EnvironmentReflectionSource p_reflection_source);
void set_tonemap(RS::EnvironmentToneMapper p_tone_mapper, float p_exposure, float p_white, bool p_auto_exposure, float p_min_luminance, float p_max_luminance, float p_auto_exp_speed, float p_auto_exp_scale);
- void set_glow(bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap);
- void set_sdfgi(bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias);
+ void set_glow(bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map);
+ void set_sdfgi(bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias);
void set_fog(bool p_enable, const Color &p_light_color, float p_light_energy, float p_sun_scatter, float p_density, float p_height, float p_height_density, float p_fog_aerial_perspective);
void set_volumetric_fog(bool p_enable, float p_density, const Color &p_scatterin, const Color &p_emission, float p_emission_energy, float p_anisotropy, float p_length, float p_detail_spread, float p_gi_inject, bool p_temporal_reprojection, float p_temporal_reprojection_amount, float p_ambient_inject);
void set_ssr(bool p_enable, int p_max_steps, float p_fade_int, float p_fade_out, float p_depth_tolerance);
diff --git a/servers/rendering/renderer_rd/renderer_scene_gi_rd.cpp b/servers/rendering/renderer_rd/renderer_scene_gi_rd.cpp
index d1085245c0..5cbacb0ef3 100644
--- a/servers/rendering/renderer_rd/renderer_scene_gi_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_scene_gi_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -32,6 +32,8 @@
#include "core/config/project_settings.h"
#include "servers/rendering/renderer_rd/renderer_scene_render_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_server_default.h"
const Vector3i RendererSceneGIRD::SDFGI::Cascade::DIRTY_ALL = Vector3i(0x7FFFFFFF, 0x7FFFFFFF, 0x7FFFFFFF);
@@ -40,16 +42,18 @@ const Vector3i RendererSceneGIRD::SDFGI::Cascade::DIRTY_ALL = Vector3i(0x7FFFFFF
// SDFGI
void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const Vector3 &p_world_position, uint32_t p_requested_history_size, RendererSceneGIRD *p_gi) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
storage = p_gi->storage;
gi = p_gi;
- cascade_mode = p_env->sdfgi_cascades;
+ num_cascades = p_env->sdfgi_cascades;
min_cell_size = p_env->sdfgi_min_cell_size;
uses_occlusion = p_env->sdfgi_use_occlusion;
y_scale_mode = p_env->sdfgi_y_scale;
- static const float y_scale[3] = { 1.0, 1.5, 2.0 };
+ static const float y_scale[3] = { 2.0, 1.5, 1.0 };
y_mult = y_scale[y_scale_mode];
- static const int cascasde_size[3] = { 4, 6, 8 };
- cascades.resize(cascasde_size[cascade_mode]);
+ cascades.resize(num_cascades);
probe_axis_count = SDFGI::PROBE_DIVISOR + 1;
solid_cell_ratio = gi->sdfgi_solid_cell_ratio;
solid_cell_count = uint32_t(float(cascade_size * cascade_size * cascade_size) * solid_cell_ratio);
@@ -222,14 +226,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_sdf[(passes & 1) ? 1 : 0]); //if passes are even, we read from buffer 0, else we read from buffer 1
+ u.append_id(render_sdf[(passes & 1) ? 1 : 0]); //if passes are even, we read from buffer 0, else we read from buffer 1
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
@@ -237,7 +241,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 3;
for (int j = 0; j < 8; j++) {
- u.ids.push_back(render_occlusion[j]);
+ u.append_id(render_occlusion[j]);
}
uniforms.push_back(u);
}
@@ -245,21 +249,21 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 4;
- u.ids.push_back(render_emission);
+ u.append_id(render_emission);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 5;
- u.ids.push_back(render_emission_aniso);
+ u.append_id(render_emission_aniso);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 6;
- u.ids.push_back(render_geom_facing);
+ u.append_id(render_geom_facing);
uniforms.push_back(u);
}
@@ -267,28 +271,28 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 7;
- u.ids.push_back(cascade.sdf_tex);
+ u.append_id(cascade.sdf_tex);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 8;
- u.ids.push_back(occlusion_data);
+ u.append_id(occlusion_data);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 10;
- u.ids.push_back(cascade.solid_cell_dispatch_buffer);
+ u.append_id(cascade.solid_cell_dispatch_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 11;
- u.ids.push_back(cascade.solid_cell_buffer);
+ u.append_id(cascade.solid_cell_buffer);
uniforms.push_back(u);
}
@@ -301,42 +305,42 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_geom_facing);
+ u.append_id(render_geom_facing);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 3;
- u.ids.push_back(render_emission);
+ u.append_id(render_emission);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 4;
- u.ids.push_back(render_emission_aniso);
+ u.append_id(render_emission_aniso);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 5;
- u.ids.push_back(cascade.solid_cell_dispatch_buffer);
+ u.append_id(cascade.solid_cell_dispatch_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 6;
- u.ids.push_back(cascade.solid_cell_buffer);
+ u.append_id(cascade.solid_cell_buffer);
uniforms.push_back(u);
}
@@ -349,7 +353,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
for (int j = 0; j < 8; j++) {
- u.ids.push_back(render_occlusion[j]);
+ u.append_id(render_occlusion[j]);
}
uniforms.push_back(u);
}
@@ -357,7 +361,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(occlusion_data);
+ u.append_id(occlusion_data);
uniforms.push_back(u);
}
@@ -376,9 +380,9 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (j < cascades.size()) {
- u.ids.push_back(cascades[j].sdf_tex);
+ u.append_id(cascades[j].sdf_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -387,70 +391,70 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(cascade.solid_cell_dispatch_buffer);
+ u.append_id(cascade.solid_cell_dispatch_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 4;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(cascade.solid_cell_buffer);
+ u.append_id(cascade.solid_cell_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.ids.push_back(cascade.light_data);
+ u.append_id(cascade.light_data);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 6;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.ids.push_back(cascade.light_aniso_0_tex);
+ u.append_id(cascade.light_aniso_0_tex);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 7;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.ids.push_back(cascade.light_aniso_1_tex);
+ u.append_id(cascade.light_aniso_1_tex);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(cascades_ubo);
+ u.append_id(cascades_ubo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(cascade.lights_buffer);
+ u.append_id(cascade.lights_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(lightprobe_texture);
+ u.append_id(lightprobe_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 11;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(occlusion_texture);
+ u.append_id(occlusion_texture);
uniforms.push_back(u);
}
@@ -464,14 +468,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_sdf[0]);
+ u.append_id(render_sdf[0]);
uniforms.push_back(u);
}
@@ -484,14 +488,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_sdf_half[0]);
+ u.append_id(render_sdf_half[0]);
uniforms.push_back(u);
}
@@ -505,19 +509,22 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_sdf[0]);
+ u.append_id(render_sdf[0]);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_sdf[1]);
+ u.append_id(render_sdf[1]);
uniforms.push_back(u);
}
jump_flood_uniform_set[0] = RD::get_singleton()->uniform_set_create(uniforms, gi->sdfgi_shader.preprocess.version_get_shader(gi->sdfgi_shader.preprocess_shader, SDFGIShader::PRE_PROCESS_JUMP_FLOOD), 0);
- SWAP(uniforms.write[0].ids.write[0], uniforms.write[1].ids.write[0]);
+ RID aux0 = uniforms.write[0].get_id(0);
+ RID aux1 = uniforms.write[1].get_id(0);
+ uniforms.write[0].set_id(0, aux1);
+ uniforms.write[1].set_id(0, aux0);
jump_flood_uniform_set[1] = RD::get_singleton()->uniform_set_create(uniforms, gi->sdfgi_shader.preprocess.version_get_shader(gi->sdfgi_shader.preprocess_shader, SDFGIShader::PRE_PROCESS_JUMP_FLOOD), 0);
}
//jump flood half uniform set
@@ -527,19 +534,22 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_sdf_half[0]);
+ u.append_id(render_sdf_half[0]);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_sdf_half[1]);
+ u.append_id(render_sdf_half[1]);
uniforms.push_back(u);
}
jump_flood_half_uniform_set[0] = RD::get_singleton()->uniform_set_create(uniforms, gi->sdfgi_shader.preprocess.version_get_shader(gi->sdfgi_shader.preprocess_shader, SDFGIShader::PRE_PROCESS_JUMP_FLOOD), 0);
- SWAP(uniforms.write[0].ids.write[0], uniforms.write[1].ids.write[0]);
+ RID aux0 = uniforms.write[0].get_id(0);
+ RID aux1 = uniforms.write[1].get_id(0);
+ uniforms.write[0].set_id(0, aux1);
+ uniforms.write[1].set_id(0, aux0);
jump_flood_half_uniform_set[1] = RD::get_singleton()->uniform_set_create(uniforms, gi->sdfgi_shader.preprocess.version_get_shader(gi->sdfgi_shader.preprocess_shader, SDFGIShader::PRE_PROCESS_JUMP_FLOOD), 0);
}
@@ -550,21 +560,21 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
- u.ids.push_back(render_sdf_half[(passes & 1) ? 0 : 1]); //reverse pass order because half size
+ u.append_id(render_sdf_half[(passes & 1) ? 0 : 1]); //reverse pass order because half size
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 3;
- u.ids.push_back(render_sdf[(passes & 1) ? 0 : 1]); //reverse pass order because it needs an extra JFA pass
+ u.append_id(render_sdf[(passes & 1) ? 0 : 1]); //reverse pass order because it needs an extra JFA pass
uniforms.push_back(u);
}
@@ -579,7 +589,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 1;
- u.ids.push_back(render_albedo);
+ u.append_id(render_albedo);
uniforms.push_back(u);
}
{
@@ -587,7 +597,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 2;
for (int i = 0; i < 8; i++) {
- u.ids.push_back(render_occlusion[i]);
+ u.append_id(render_occlusion[i]);
}
uniforms.push_back(u);
}
@@ -595,7 +605,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 3;
- u.ids.push_back(render_geom_facing);
+ u.append_id(render_geom_facing);
uniforms.push_back(u);
}
@@ -613,9 +623,9 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (j < cascades.size()) {
- u.ids.push_back(cascades[j].sdf_tex);
+ u.append_id(cascades[j].sdf_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -626,9 +636,9 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (j < cascades.size()) {
- u.ids.push_back(cascades[j].light_tex);
+ u.append_id(cascades[j].light_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -639,9 +649,9 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (j < cascades.size()) {
- u.ids.push_back(cascades[j].light_aniso_0_tex);
+ u.append_id(cascades[j].light_aniso_0_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -652,9 +662,9 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (j < cascades.size()) {
- u.ids.push_back(cascades[j].light_aniso_1_tex);
+ u.append_id(cascades[j].light_aniso_1_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -663,7 +673,7 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 6;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -671,14 +681,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 7;
- u.ids.push_back(cascades_ubo);
+ u.append_id(cascades_ubo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 8;
- u.ids.push_back(lightprobe_data);
+ u.append_id(lightprobe_data);
uniforms.push_back(u);
}
@@ -686,14 +696,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 9;
- u.ids.push_back(cascades[i].lightprobe_history_tex);
+ u.append_id(cascades[i].lightprobe_history_tex);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 10;
- u.ids.push_back(cascades[i].lightprobe_average_tex);
+ u.append_id(cascades[i].lightprobe_average_tex);
uniforms.push_back(u);
}
@@ -701,14 +711,14 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 11;
- u.ids.push_back(lightprobe_history_scroll);
+ u.append_id(lightprobe_history_scroll);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 12;
- u.ids.push_back(lightprobe_average_scroll);
+ u.append_id(lightprobe_average_scroll);
uniforms.push_back(u);
}
{
@@ -716,19 +726,22 @@ void RendererSceneGIRD::SDFGI::create(RendererSceneEnvironmentRD *p_env, const V
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 13;
RID parent_average;
- if (i < cascades.size() - 1) {
+ if (cascades.size() == 1) {
+ // If there is only one SDFGI cascade, we can't use the previous cascade for blending.
+ parent_average = cascades[i].lightprobe_average_tex;
+ } else if (i < cascades.size() - 1) {
parent_average = cascades[i + 1].lightprobe_average_tex;
} else {
parent_average = cascades[i - 1].lightprobe_average_tex; //to use something, but it won't be used
}
- u.ids.push_back(parent_average);
+ u.append_id(parent_average);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 14;
- u.ids.push_back(ambient_texture);
+ u.append_id(ambient_texture);
uniforms.push_back(u);
}
@@ -866,7 +879,7 @@ void RendererSceneGIRD::SDFGI::update_light() {
push_constant.process_offset = 0;
push_constant.process_increment = 1;
} else {
- static uint32_t frames_to_update_table[RS::ENV_SDFGI_UPDATE_LIGHT_MAX] = {
+ static const uint32_t frames_to_update_table[RS::ENV_SDFGI_UPDATE_LIGHT_MAX] = {
1, 2, 4, 8, 16
};
@@ -912,7 +925,7 @@ void RendererSceneGIRD::SDFGI::update_probes(RendererSceneEnvironmentRD *p_env,
if (p_env->background == RS::ENV_BG_CLEAR_COLOR) {
push_constant.sky_mode = SDFGIShader::IntegratePushConstant::SKY_MODE_COLOR;
- Color c = storage->get_default_clear_color().to_linear();
+ Color c = storage->get_default_clear_color().srgb_to_linear();
push_constant.sky_color[0] = c.r;
push_constant.sky_color[1] = c.g;
push_constant.sky_color[2] = c.b;
@@ -932,7 +945,7 @@ void RendererSceneGIRD::SDFGI::update_probes(RendererSceneEnvironmentRD *p_env,
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 0;
- u.ids.push_back(p_sky->radiance);
+ u.append_id(p_sky->radiance);
uniforms.push_back(u);
}
@@ -940,7 +953,7 @@ void RendererSceneGIRD::SDFGI::update_probes(RendererSceneEnvironmentRD *p_env,
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 1;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -1000,7 +1013,7 @@ void RendererSceneGIRD::SDFGI::store_probes() {
push_constant.y_mult = y_mult;
// Then store values into the lightprobe texture. Separating these steps has a small performance hit, but it allows for multiple bounces
- RENDER_TIMESTAMP("Average Probes");
+ RENDER_TIMESTAMP("Average SDFGI Probes");
RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, gi->sdfgi_shader.integrate_pipeline[SDFGIShader::INTEGRATE_MODE_STORE]);
@@ -1100,6 +1113,9 @@ void RendererSceneGIRD::SDFGI::update_cascades() {
}
void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, const Transform3D &p_transform, int p_width, int p_height, RID p_render_target, RID p_texture) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
if (!debug_uniform_set.is_valid() || !RD::get_singleton()->uniform_set_is_valid(debug_uniform_set)) {
Vector<RD::Uniform> uniforms;
{
@@ -1108,9 +1124,9 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t i = 0; i < SDFGI::MAX_CASCADES; i++) {
if (i < cascades.size()) {
- u.ids.push_back(cascades[i].sdf_tex);
+ u.append_id(cascades[i].sdf_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -1121,9 +1137,9 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t i = 0; i < SDFGI::MAX_CASCADES; i++) {
if (i < cascades.size()) {
- u.ids.push_back(cascades[i].light_tex);
+ u.append_id(cascades[i].light_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -1134,9 +1150,9 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t i = 0; i < SDFGI::MAX_CASCADES; i++) {
if (i < cascades.size()) {
- u.ids.push_back(cascades[i].light_aniso_0_tex);
+ u.append_id(cascades[i].light_aniso_0_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -1147,9 +1163,9 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t i = 0; i < SDFGI::MAX_CASCADES; i++) {
if (i < cascades.size()) {
- u.ids.push_back(cascades[i].light_aniso_1_tex);
+ u.append_id(cascades[i].light_aniso_1_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -1158,35 +1174,35 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
RD::Uniform u;
u.binding = 5;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(occlusion_texture);
+ u.append_id(occlusion_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 8;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 9;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(cascades_ubo);
+ u.append_id(cascades_ubo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 10;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.ids.push_back(p_texture);
+ u.append_id(p_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 11;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(lightprobe_texture);
+ u.append_id(lightprobe_texture);
uniforms.push_back(u);
}
debug_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, gi->sdfgi_shader.debug_shader_version, 0);
@@ -1212,17 +1228,17 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
push_constant.cam_extent[1] = vp_half.y;
push_constant.cam_extent[2] = -p_projection.get_z_near();
- push_constant.cam_transform[0] = p_transform.basis.elements[0][0];
- push_constant.cam_transform[1] = p_transform.basis.elements[1][0];
- push_constant.cam_transform[2] = p_transform.basis.elements[2][0];
+ push_constant.cam_transform[0] = p_transform.basis.rows[0][0];
+ push_constant.cam_transform[1] = p_transform.basis.rows[1][0];
+ push_constant.cam_transform[2] = p_transform.basis.rows[2][0];
push_constant.cam_transform[3] = 0;
- push_constant.cam_transform[4] = p_transform.basis.elements[0][1];
- push_constant.cam_transform[5] = p_transform.basis.elements[1][1];
- push_constant.cam_transform[6] = p_transform.basis.elements[2][1];
+ push_constant.cam_transform[4] = p_transform.basis.rows[0][1];
+ push_constant.cam_transform[5] = p_transform.basis.rows[1][1];
+ push_constant.cam_transform[6] = p_transform.basis.rows[2][1];
push_constant.cam_transform[7] = 0;
- push_constant.cam_transform[8] = p_transform.basis.elements[0][2];
- push_constant.cam_transform[9] = p_transform.basis.elements[1][2];
- push_constant.cam_transform[10] = p_transform.basis.elements[2][2];
+ push_constant.cam_transform[8] = p_transform.basis.rows[0][2];
+ push_constant.cam_transform[9] = p_transform.basis.rows[1][2];
+ push_constant.cam_transform[10] = p_transform.basis.rows[2][2];
push_constant.cam_transform[11] = 0;
push_constant.cam_transform[12] = p_transform.origin.x;
push_constant.cam_transform[13] = p_transform.origin.y;
@@ -1234,11 +1250,13 @@ void RendererSceneGIRD::SDFGI::debug_draw(const CameraMatrix &p_projection, cons
RD::get_singleton()->compute_list_dispatch_threads(compute_list, p_width, p_height, 1);
RD::get_singleton()->compute_list_end();
- Size2 rtsize = storage->render_target_get_size(p_render_target);
- storage->get_effects()->copy_to_fb_rect(p_texture, storage->render_target_get_rd_framebuffer(p_render_target), Rect2(Vector2(), rtsize), true);
+ Size2 rtsize = texture_storage->render_target_get_size(p_render_target);
+ storage->get_effects()->copy_to_fb_rect(p_texture, texture_storage->render_target_get_rd_framebuffer(p_render_target), Rect2(Vector2(), rtsize), true);
}
void RendererSceneGIRD::SDFGI::debug_probes(RD::DrawListID p_draw_list, RID p_framebuffer, const CameraMatrix &p_camera_with_transform) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
SDFGIShader::DebugProbesPushConstant push_constant;
for (int i = 0; i < 4; i++) {
@@ -1271,28 +1289,28 @@ void RendererSceneGIRD::SDFGI::debug_probes(RD::DrawListID p_draw_list, RID p_fr
RD::Uniform u;
u.binding = 1;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(cascades_ubo);
+ u.append_id(cascades_ubo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(lightprobe_texture);
+ u.append_id(lightprobe_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.binding = 4;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(occlusion_texture);
+ u.append_id(occlusion_texture);
uniforms.push_back(u);
}
@@ -1447,24 +1465,24 @@ void RendererSceneGIRD::SDFGI::pre_process_gi(const Transform3D &p_transform, Re
RendererSceneRenderRD::LightInstance *li = p_scene_render->light_instance_owner.get_or_null(p_scene_render->render_state.sdfgi_update_data->directional_lights->get(j));
ERR_CONTINUE(!li);
- if (storage->light_directional_is_sky_only(li->light)) {
+ if (RSG::light_storage->light_directional_get_sky_mode(li->light) == RS::LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY) {
continue;
}
- Vector3 dir = -li->transform.basis.get_axis(Vector3::AXIS_Z);
+ Vector3 dir = -li->transform.basis.get_column(Vector3::AXIS_Z);
dir.y *= y_mult;
dir.normalize();
lights[idx].direction[0] = dir.x;
lights[idx].direction[1] = dir.y;
lights[idx].direction[2] = dir.z;
- Color color = storage->light_get_color(li->light);
- color = color.to_linear();
+ Color color = RSG::light_storage->light_get_color(li->light);
+ color = color.srgb_to_linear();
lights[idx].color[0] = color.r;
lights[idx].color[1] = color.g;
lights[idx].color[2] = color.b;
lights[idx].type = RS::LIGHT_DIRECTIONAL;
- lights[idx].energy = storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- lights[idx].has_shadow = storage->light_has_shadow(li->light);
+ lights[idx].energy = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ lights[idx].has_shadow = RSG::light_storage->light_has_shadow(li->light);
idx++;
}
@@ -1481,7 +1499,7 @@ void RendererSceneGIRD::SDFGI::pre_process_gi(const Transform3D &p_transform, Re
RendererSceneRenderRD::LightInstance *li = p_scene_render->light_instance_owner.get_or_null(p_scene_render->render_state.sdfgi_update_data->positional_light_instances[j]);
ERR_CONTINUE(!li);
- uint32_t max_sdfgi_cascade = storage->light_get_max_sdfgi_cascade(li->light);
+ uint32_t max_sdfgi_cascade = RSG::light_storage->light_get_max_sdfgi_cascade(li->light);
if (i > max_sdfgi_cascade) {
continue;
}
@@ -1490,7 +1508,7 @@ void RendererSceneGIRD::SDFGI::pre_process_gi(const Transform3D &p_transform, Re
continue;
}
- Vector3 dir = -li->transform.basis.get_axis(Vector3::AXIS_Z);
+ Vector3 dir = -li->transform.basis.get_column(Vector3::AXIS_Z);
//faster to not do this here
//dir.y *= y_mult;
//dir.normalize();
@@ -1502,18 +1520,18 @@ void RendererSceneGIRD::SDFGI::pre_process_gi(const Transform3D &p_transform, Re
lights[idx].position[0] = pos.x;
lights[idx].position[1] = pos.y;
lights[idx].position[2] = pos.z;
- Color color = storage->light_get_color(li->light);
- color = color.to_linear();
+ Color color = RSG::light_storage->light_get_color(li->light);
+ color = color.srgb_to_linear();
lights[idx].color[0] = color.r;
lights[idx].color[1] = color.g;
lights[idx].color[2] = color.b;
- lights[idx].type = storage->light_get_type(li->light);
- lights[idx].energy = storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- lights[idx].has_shadow = storage->light_has_shadow(li->light);
- lights[idx].attenuation = storage->light_get_param(li->light, RS::LIGHT_PARAM_ATTENUATION);
- lights[idx].radius = storage->light_get_param(li->light, RS::LIGHT_PARAM_RANGE);
- lights[idx].cos_spot_angle = Math::cos(Math::deg2rad(storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ANGLE)));
- lights[idx].inv_spot_attenuation = 1.0f / storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ lights[idx].type = RSG::light_storage->light_get_type(li->light);
+ lights[idx].energy = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ lights[idx].has_shadow = RSG::light_storage->light_has_shadow(li->light);
+ lights[idx].attenuation = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_ATTENUATION);
+ lights[idx].radius = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_RANGE);
+ lights[idx].cos_spot_angle = Math::cos(Math::deg2rad(RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ANGLE)));
+ lights[idx].inv_spot_attenuation = 1.0f / RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
idx++;
}
@@ -1553,14 +1571,14 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
if (cascade_next != cascade) {
RD::get_singleton()->draw_command_begin_label("SDFGI Pre-Process Cascade");
- RENDER_TIMESTAMP(">SDFGI Update SDF");
+ RENDER_TIMESTAMP("> SDFGI Update SDF");
//done rendering! must update SDF
//clear dispatch indirect data
SDFGIShader::PreprocessPushConstant push_constant;
memset(&push_constant, 0, sizeof(SDFGIShader::PreprocessPushConstant));
- RENDER_TIMESTAMP("Scroll SDF");
+ RENDER_TIMESTAMP("SDFGI Scroll SDF");
//scroll
if (cascades[cascade].dirty_regions != SDFGI::Cascade::DIRTY_ALL) {
@@ -1699,7 +1717,7 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
push_constant.half_size = true;
{
- RENDER_TIMESTAMP("SDFGI Jump Flood (Half Size)");
+ RENDER_TIMESTAMP("SDFGI Jump Flood (Half-Size)");
uint32_t s = cascade_half_size;
@@ -1721,7 +1739,7 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
}
}
- RENDER_TIMESTAMP("SDFGI Jump Flood Optimized (Half Size)");
+ RENDER_TIMESTAMP("SDFGI Jump Flood Optimized (Half-Size)");
//continue with optimized jump flood for smaller reads
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, gi->sdfgi_shader.preprocess_pipeline[SDFGIShader::PRE_PROCESS_JUMP_FLOOD_OPTIMIZED]);
@@ -1757,7 +1775,7 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
} else {
//full size jumpflood
- RENDER_TIMESTAMP("SDFGI Jump Flood");
+ RENDER_TIMESTAMP("SDFGI Jump Flood (Full-Size)");
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, gi->sdfgi_shader.preprocess_pipeline[SDFGIShader::PRE_PROCESS_JUMP_FLOOD_INITIALIZE]);
RD::get_singleton()->compute_list_bind_uniform_set(compute_list, sdf_initialize_uniform_set, 0);
@@ -1788,7 +1806,7 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
}
}
- RENDER_TIMESTAMP("SDFGI Jump Flood Optimized");
+ RENDER_TIMESTAMP("SDFGI Jump Flood Optimized (Full-Size)");
//continue with optimized jump flood for smaller reads
RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, gi->sdfgi_shader.preprocess_pipeline[SDFGIShader::PRE_PROCESS_JUMP_FLOOD_OPTIMIZED]);
@@ -1880,7 +1898,7 @@ void RendererSceneGIRD::SDFGI::render_region(RID p_render_buffers, int p_region,
//finalize render and update sdf
#endif
- RENDER_TIMESTAMP("<SDFGI Update SDF");
+ RENDER_TIMESTAMP("< SDFGI Update SDF");
RD::get_singleton()->draw_command_end_label();
}
}
@@ -1889,10 +1907,9 @@ void RendererSceneGIRD::SDFGI::render_static_lights(RID p_render_buffers, uint32
RendererSceneRenderRD::RenderBuffers *rb = p_scene_render->render_buffers_owner.get_or_null(p_render_buffers);
ERR_FAIL_COND(!rb); // we wouldn't be here if this failed but...
- RD::get_singleton()->draw_command_begin_label("SDFGI Render Static Lighs");
+ RD::get_singleton()->draw_command_begin_label("SDFGI Render Static Lights");
update_cascades();
- ; //need cascades updated for this
SDFGIShader::Light lights[SDFGI::MAX_STATIC_LIGHTS];
uint32_t light_count[SDFGI::MAX_STATIC_LIGHTS];
@@ -1918,7 +1935,7 @@ void RendererSceneGIRD::SDFGI::render_static_lights(RID p_render_buffers, uint32
RendererSceneRenderRD::LightInstance *li = p_scene_render->light_instance_owner.get_or_null(p_positional_light_cull_result[i][j]);
ERR_CONTINUE(!li);
- uint32_t max_sdfgi_cascade = storage->light_get_max_sdfgi_cascade(li->light);
+ uint32_t max_sdfgi_cascade = RSG::light_storage->light_get_max_sdfgi_cascade(li->light);
if (p_cascade_indices[i] > max_sdfgi_cascade) {
continue;
}
@@ -1927,9 +1944,9 @@ void RendererSceneGIRD::SDFGI::render_static_lights(RID p_render_buffers, uint32
continue;
}
- lights[idx].type = storage->light_get_type(li->light);
+ lights[idx].type = RSG::light_storage->light_get_type(li->light);
- Vector3 dir = -li->transform.basis.get_axis(Vector3::AXIS_Z);
+ Vector3 dir = -li->transform.basis.get_column(Vector3::AXIS_Z);
if (lights[idx].type == RS::LIGHT_DIRECTIONAL) {
dir.y *= y_mult; //only makes sense for directional
dir.normalize();
@@ -1942,17 +1959,17 @@ void RendererSceneGIRD::SDFGI::render_static_lights(RID p_render_buffers, uint32
lights[idx].position[0] = pos.x;
lights[idx].position[1] = pos.y;
lights[idx].position[2] = pos.z;
- Color color = storage->light_get_color(li->light);
- color = color.to_linear();
+ Color color = RSG::light_storage->light_get_color(li->light);
+ color = color.srgb_to_linear();
lights[idx].color[0] = color.r;
lights[idx].color[1] = color.g;
lights[idx].color[2] = color.b;
- lights[idx].energy = storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- lights[idx].has_shadow = storage->light_has_shadow(li->light);
- lights[idx].attenuation = storage->light_get_param(li->light, RS::LIGHT_PARAM_ATTENUATION);
- lights[idx].radius = storage->light_get_param(li->light, RS::LIGHT_PARAM_RANGE);
- lights[idx].cos_spot_angle = Math::cos(Math::deg2rad(storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ANGLE)));
- lights[idx].inv_spot_attenuation = 1.0f / storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ lights[idx].energy = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_ENERGY) * RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ lights[idx].has_shadow = RSG::light_storage->light_has_shadow(li->light);
+ lights[idx].attenuation = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_ATTENUATION);
+ lights[idx].radius = RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_RANGE);
+ lights[idx].cos_spot_angle = Math::cos(Math::deg2rad(RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ANGLE)));
+ lights[idx].inv_spot_attenuation = 1.0f / RSG::light_storage->light_get_param(li->light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
idx++;
}
@@ -2009,6 +2026,8 @@ void RendererSceneGIRD::SDFGI::render_static_lights(RID p_render_buffers, uint32
// VoxelGIInstance
void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, const Vector<RID> &p_light_instances, const PagedArray<RendererSceneRender::GeometryInstance *> &p_dynamic_objects, RendererSceneRenderRD *p_scene_render) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
uint32_t data_version = storage->voxel_gi_get_data_version(probe);
// (RE)CREATE IF NEEDED
@@ -2059,7 +2078,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
for (int i = 0; i < levels.size(); i++) {
VoxelGIInstance::Mipmap mipmap;
- mipmap.texture = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), texture, 0, i, RD::TEXTURE_SLICE_3D);
+ mipmap.texture = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), texture, 0, i, 1, RD::TEXTURE_SLICE_3D);
mipmap.level = levels.size() - i - 1;
mipmap.cell_offset = 0;
for (uint32_t j = 0; j < mipmap.level; j++) {
@@ -2072,14 +2091,14 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(storage->voxel_gi_get_octree_buffer(probe));
+ u.append_id(storage->voxel_gi_get_octree_buffer(probe));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(storage->voxel_gi_get_data_buffer(probe));
+ u.append_id(storage->voxel_gi_get_data_buffer(probe));
uniforms.push_back(u);
}
@@ -2087,21 +2106,21 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 4;
- u.ids.push_back(write_buffer);
+ u.append_id(write_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 9;
- u.ids.push_back(storage->voxel_gi_get_sdf_texture(probe));
+ u.append_id(storage->voxel_gi_get_sdf_texture(probe));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 10;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -2112,7 +2131,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 3;
- u.ids.push_back(gi->voxel_gi_lights_uniform);
+ u.append_id(gi->voxel_gi_lights_uniform);
copy_uniforms.push_back(u);
}
@@ -2124,7 +2143,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 5;
- u.ids.push_back(texture);
+ u.append_id(texture);
copy_uniforms.push_back(u);
}
mipmap.second_bounce_uniform_set = RD::get_singleton()->uniform_set_create(copy_uniforms, gi->voxel_gi_lighting_shader_version_shaders[VOXEL_GI_SHADER_VERSION_COMPUTE_SECOND_BOUNCE], 0);
@@ -2137,7 +2156,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 5;
- u.ids.push_back(mipmap.texture);
+ u.append_id(mipmap.texture);
uniforms.push_back(u);
}
@@ -2176,8 +2195,9 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
dmap.texture = RD::get_singleton()->texture_create(dtf, RD::TextureView());
if (dynamic_maps.size() == 0) {
- //render depth for first one
- dtf.format = RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_D32_SFLOAT, RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) ? RD::DATA_FORMAT_D32_SFLOAT : RD::DATA_FORMAT_X8_D24_UNORM_PACK32;
+ // Render depth for first one.
+ // Use 16-bit depth when supported to improve performance.
+ dtf.format = RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_D16_UNORM, RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) ? RD::DATA_FORMAT_D16_UNORM : RD::DATA_FORMAT_X8_D24_UNORM_PACK32;
dtf.usage_bits = RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
dmap.fb_depth = RD::get_singleton()->texture_create(dtf, RD::TextureView());
}
@@ -2211,7 +2231,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 3;
- u.ids.push_back(gi->voxel_gi_lights_uniform);
+ u.append_id(gi->voxel_gi_lights_uniform);
uniforms.push_back(u);
}
@@ -2219,56 +2239,56 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 5;
- u.ids.push_back(dmap.albedo);
+ u.append_id(dmap.albedo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 6;
- u.ids.push_back(dmap.normal);
+ u.append_id(dmap.normal);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 7;
- u.ids.push_back(dmap.orm);
+ u.append_id(dmap.orm);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 8;
- u.ids.push_back(dmap.fb_depth);
+ u.append_id(dmap.fb_depth);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 9;
- u.ids.push_back(storage->voxel_gi_get_sdf_texture(probe));
+ u.append_id(storage->voxel_gi_get_sdf_texture(probe));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 10;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 11;
- u.ids.push_back(dmap.texture);
+ u.append_id(dmap.texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 12;
- u.ids.push_back(dmap.depth);
+ u.append_id(dmap.depth);
uniforms.push_back(u);
}
@@ -2284,14 +2304,14 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 5;
- u.ids.push_back(dynamic_maps[dynamic_maps.size() - 1].texture);
+ u.append_id(dynamic_maps[dynamic_maps.size() - 1].texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 6;
- u.ids.push_back(dynamic_maps[dynamic_maps.size() - 1].depth);
+ u.append_id(dynamic_maps[dynamic_maps.size() - 1].depth);
uniforms.push_back(u);
}
@@ -2300,14 +2320,14 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 7;
- u.ids.push_back(dmap.texture);
+ u.append_id(dmap.texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 8;
- u.ids.push_back(dmap.depth);
+ u.append_id(dmap.depth);
uniforms.push_back(u);
}
}
@@ -2316,14 +2336,14 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 9;
- u.ids.push_back(storage->voxel_gi_get_sdf_texture(probe));
+ u.append_id(storage->voxel_gi_get_sdf_texture(probe));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 10;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -2332,7 +2352,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 11;
- u.ids.push_back(mipmaps[dmap.mipmap].texture);
+ u.append_id(mipmaps[dmap.mipmap].texture);
uniforms.push_back(u);
}
}
@@ -2376,27 +2396,27 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
RID light_instance = p_light_instances[i];
RID light = p_scene_render->light_instance_get_base_light(light_instance);
- l.type = storage->light_get_type(light);
- if (l.type == RS::LIGHT_DIRECTIONAL && storage->light_directional_is_sky_only(light)) {
+ l.type = RSG::light_storage->light_get_type(light);
+ if (l.type == RS::LIGHT_DIRECTIONAL && RSG::light_storage->light_directional_get_sky_mode(light) == RS::LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY) {
light_count--;
continue;
}
- l.attenuation = storage->light_get_param(light, RS::LIGHT_PARAM_ATTENUATION);
- l.energy = storage->light_get_param(light, RS::LIGHT_PARAM_ENERGY) * storage->light_get_param(light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- l.radius = to_cell.basis.xform(Vector3(storage->light_get_param(light, RS::LIGHT_PARAM_RANGE), 0, 0)).length();
- Color color = storage->light_get_color(light).to_linear();
+ l.attenuation = RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_ATTENUATION);
+ l.energy = RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_ENERGY) * RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ l.radius = to_cell.basis.xform(Vector3(RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_RANGE), 0, 0)).length();
+ Color color = RSG::light_storage->light_get_color(light).srgb_to_linear();
l.color[0] = color.r;
l.color[1] = color.g;
l.color[2] = color.b;
- l.cos_spot_angle = Math::cos(Math::deg2rad(storage->light_get_param(light, RS::LIGHT_PARAM_SPOT_ANGLE)));
- l.inv_spot_attenuation = 1.0f / storage->light_get_param(light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ l.cos_spot_angle = Math::cos(Math::deg2rad(RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_SPOT_ANGLE)));
+ l.inv_spot_attenuation = 1.0f / RSG::light_storage->light_get_param(light, RS::LIGHT_PARAM_SPOT_ATTENUATION);
Transform3D xform = p_scene_render->light_instance_get_base_transform(light_instance);
Vector3 pos = to_probe_xform.xform(xform.origin);
- Vector3 dir = to_probe_xform.basis.xform(-xform.basis.get_axis(2)).normalized();
+ Vector3 dir = to_probe_xform.basis.xform(-xform.basis.get_column(2)).normalized();
l.position[0] = pos.x;
l.position[1] = pos.y;
@@ -2406,7 +2426,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
l.direction[1] = dir.y;
l.direction[2] = dir.z;
- l.has_shadow = storage->light_has_shadow(light);
+ l.has_shadow = RSG::light_storage->light_has_shadow(light);
}
RD::get_singleton()->buffer_update(gi->voxel_gi_lights_uniform, 0, sizeof(VoxelGILight) * light_count, gi->voxel_gi_lights);
@@ -2445,7 +2465,7 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
passes = 1; //only re-blitting is necessary
}
int wg_size = 64;
- int wg_limit_x = RD::get_singleton()->limit_get(RD::LIMIT_MAX_COMPUTE_WORKGROUP_COUNT_X);
+ int64_t wg_limit_x = (int64_t)RD::get_singleton()->limit_get(RD::LIMIT_MAX_COMPUTE_WORKGROUP_COUNT_X);
for (int pass = 0; pass < passes; pass++) {
if (p_update_light_instances) {
@@ -2468,9 +2488,9 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
push_constant.cell_offset = mipmaps[i].cell_offset;
push_constant.cell_count = mipmaps[i].cell_count;
- int wg_todo = (mipmaps[i].cell_count - 1) / wg_size + 1;
+ int64_t wg_todo = (mipmaps[i].cell_count - 1) / wg_size + 1;
while (wg_todo) {
- int wg_count = MIN(wg_todo, wg_limit_x);
+ int64_t wg_count = MIN(wg_todo, wg_limit_x);
RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(VoxelGIPushConstant));
RD::get_singleton()->compute_list_dispatch(compute_list, wg_count, 1, 1);
wg_todo -= wg_count;
@@ -2489,9 +2509,9 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
push_constant.cell_offset = mipmaps[i].cell_offset;
push_constant.cell_count = mipmaps[i].cell_count;
- int wg_todo = (mipmaps[i].cell_count - 1) / wg_size + 1;
+ int64_t wg_todo = (mipmaps[i].cell_count - 1) / wg_size + 1;
while (wg_todo) {
- int wg_count = MIN(wg_todo, wg_limit_x);
+ int64_t wg_count = MIN(wg_todo, wg_limit_x);
RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(VoxelGIPushConstant));
RD::get_singleton()->compute_list_dispatch(compute_list, wg_count, 1, 1);
wg_todo -= wg_count;
@@ -2573,17 +2593,17 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
Transform3D xform;
xform.set_look_at(center - aabb.size * 0.5 * render_dir, center, up_dir);
- Vector3 x_dir = xform.basis.get_axis(0).abs();
+ Vector3 x_dir = xform.basis.get_column(0).abs();
int x_axis = int(Vector3(0, 1, 2).dot(x_dir));
- Vector3 y_dir = xform.basis.get_axis(1).abs();
+ Vector3 y_dir = xform.basis.get_column(1).abs();
int y_axis = int(Vector3(0, 1, 2).dot(y_dir));
- Vector3 z_dir = -xform.basis.get_axis(2);
+ Vector3 z_dir = -xform.basis.get_column(2);
int z_axis = int(Vector3(0, 1, 2).dot(z_dir.abs()));
Rect2i rect(aabb.position[x_axis], aabb.position[y_axis], aabb.size[x_axis], aabb.size[y_axis]);
- bool x_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_axis(0)) < 0);
- bool y_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_axis(1)) < 0);
- bool z_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_axis(2)) > 0);
+ bool x_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_column(0)) < 0);
+ bool y_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_column(1)) < 0);
+ bool z_flip = bool(Vector3(1, 1, 1).dot(xform.basis.get_column(2)) > 0);
CameraMatrix cm;
cm.set_orthogonal(-rect.size.width / 2, rect.size.width / 2, -rect.size.height / 2, rect.size.height / 2, 0.0001, aabb.size[z_axis]);
@@ -2711,6 +2731,8 @@ void RendererSceneGIRD::VoxelGIInstance::update(bool p_update_light_instances, c
}
void RendererSceneGIRD::VoxelGIInstance::debug(RD::DrawListID p_draw_list, RID p_framebuffer, const CameraMatrix &p_camera_with_transform, bool p_lighting, bool p_emission, float p_alpha) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
if (mipmaps.size() == 0) {
return;
}
@@ -2745,21 +2767,21 @@ void RendererSceneGIRD::VoxelGIInstance::debug(RD::DrawListID p_draw_list, RID p
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(storage->voxel_gi_get_data_buffer(probe));
+ u.append_id(storage->voxel_gi_get_data_buffer(probe));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 2;
- u.ids.push_back(texture);
+ u.append_id(texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 3;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -2799,6 +2821,9 @@ RendererSceneGIRD::~RendererSceneGIRD() {
}
void RendererSceneGIRD::init(RendererStorageRD *p_storage, RendererSceneSkyRD *p_sky) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
storage = p_storage;
/* GI */
@@ -2916,14 +2941,14 @@ void RendererSceneGIRD::init(RendererStorageRD *p_storage, RendererSceneSkyRD *p
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 0;
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_WHITE));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 1;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -3015,6 +3040,8 @@ RendererSceneGIRD::SDFGI *RendererSceneGIRD::create_sdfgi(RendererSceneEnvironme
}
void RendererSceneGIRD::setup_voxel_gi_instances(RID p_render_buffers, const Transform3D &p_transform, const PagedArray<RID> &p_voxel_gi_instances, uint32_t &r_voxel_gi_instances_used, RendererSceneRenderRD *p_scene_render) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
r_voxel_gi_instances_used = 0;
// feels a little dirty to use our container this way but....
@@ -3043,17 +3070,17 @@ void RendererSceneGIRD::setup_voxel_gi_instances(RID p_render_buffers, const Tra
Transform3D to_cell = storage->voxel_gi_get_to_cell_xform(gipi->probe) * gipi->transform.affine_inverse() * to_camera;
- gipd.xform[0] = to_cell.basis.elements[0][0];
- gipd.xform[1] = to_cell.basis.elements[1][0];
- gipd.xform[2] = to_cell.basis.elements[2][0];
+ gipd.xform[0] = to_cell.basis.rows[0][0];
+ gipd.xform[1] = to_cell.basis.rows[1][0];
+ gipd.xform[2] = to_cell.basis.rows[2][0];
gipd.xform[3] = 0;
- gipd.xform[4] = to_cell.basis.elements[0][1];
- gipd.xform[5] = to_cell.basis.elements[1][1];
- gipd.xform[6] = to_cell.basis.elements[2][1];
+ gipd.xform[4] = to_cell.basis.rows[0][1];
+ gipd.xform[5] = to_cell.basis.rows[1][1];
+ gipd.xform[6] = to_cell.basis.rows[2][1];
gipd.xform[7] = 0;
- gipd.xform[8] = to_cell.basis.elements[0][2];
- gipd.xform[9] = to_cell.basis.elements[1][2];
- gipd.xform[10] = to_cell.basis.elements[2][2];
+ gipd.xform[8] = to_cell.basis.rows[0][2];
+ gipd.xform[9] = to_cell.basis.rows[1][2];
+ gipd.xform[10] = to_cell.basis.rows[2][2];
gipd.xform[11] = 0;
gipd.xform[12] = to_cell.origin.x;
gipd.xform[13] = to_cell.origin.y;
@@ -3077,7 +3104,7 @@ void RendererSceneGIRD::setup_voxel_gi_instances(RID p_render_buffers, const Tra
}
if (texture == RID()) {
- texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
}
if (texture != rb->gi.voxel_gi_textures[i]) {
@@ -3113,6 +3140,9 @@ void RendererSceneGIRD::setup_voxel_gi_instances(RID p_render_buffers, const Tra
}
void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_buffer, RID p_voxel_gi_buffer, RID p_environment, const CameraMatrix &p_projection, const Transform3D &p_transform, const PagedArray<RID> &p_voxel_gi_instances, RendererSceneRenderRD *p_scene_render) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
RD::get_singleton()->draw_command_begin_label("GI Render");
RendererSceneRenderRD::RenderBuffers *rb = p_scene_render->render_buffers_owner.get_or_null(p_render_buffers);
@@ -3176,9 +3206,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (rb->sdfgi && j < rb->sdfgi->cascades.size()) {
- u.ids.push_back(rb->sdfgi->cascades[j].sdf_tex);
+ u.append_id(rb->sdfgi->cascades[j].sdf_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -3189,9 +3219,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (rb->sdfgi && j < rb->sdfgi->cascades.size()) {
- u.ids.push_back(rb->sdfgi->cascades[j].light_tex);
+ u.append_id(rb->sdfgi->cascades[j].light_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -3202,9 +3232,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (rb->sdfgi && j < rb->sdfgi->cascades.size()) {
- u.ids.push_back(rb->sdfgi->cascades[j].light_aniso_0_tex);
+ u.append_id(rb->sdfgi->cascades[j].light_aniso_0_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -3215,9 +3245,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
for (uint32_t j = 0; j < SDFGI::MAX_CASCADES; j++) {
if (rb->sdfgi && j < rb->sdfgi->cascades.size()) {
- u.ids.push_back(rb->sdfgi->cascades[j].light_aniso_1_tex);
+ u.append_id(rb->sdfgi->cascades[j].light_aniso_1_tex);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
}
uniforms.push_back(u);
@@ -3227,9 +3257,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 5;
if (rb->sdfgi) {
- u.ids.push_back(rb->sdfgi->occlusion_texture);
+ u.append_id(rb->sdfgi->occlusion_texture);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE));
}
uniforms.push_back(u);
}
@@ -3237,14 +3267,14 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 6;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 7;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
}
@@ -3252,7 +3282,7 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 9;
- u.ids.push_back(rb->ambient_buffer);
+ u.append_id(rb->ambient_buffer);
uniforms.push_back(u);
}
@@ -3260,7 +3290,7 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 10;
- u.ids.push_back(rb->reflection_buffer);
+ u.append_id(rb->reflection_buffer);
uniforms.push_back(u);
}
@@ -3269,9 +3299,9 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 11;
if (rb->sdfgi) {
- u.ids.push_back(rb->sdfgi->lightprobe_texture);
+ u.append_id(rb->sdfgi->lightprobe_texture);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE));
}
uniforms.push_back(u);
}
@@ -3279,36 +3309,36 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 12;
- u.ids.push_back(rb->depth_texture);
+ u.append_id(rb->depth_texture);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 13;
- u.ids.push_back(p_normal_roughness_buffer);
+ u.append_id(p_normal_roughness_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 14;
- RID buffer = p_voxel_gi_buffer.is_valid() ? p_voxel_gi_buffer : storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
- u.ids.push_back(buffer);
+ RID buffer = p_voxel_gi_buffer.is_valid() ? p_voxel_gi_buffer : texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ u.append_id(buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 15;
- u.ids.push_back(sdfgi_ubo);
+ u.append_id(sdfgi_ubo);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 16;
- u.ids.push_back(rb->gi.voxel_gi_buffer);
+ u.append_id(rb->gi.voxel_gi_buffer);
uniforms.push_back(u);
}
{
@@ -3316,7 +3346,7 @@ void RendererSceneGIRD::process_gi(RID p_render_buffers, RID p_normal_roughness_
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 17;
for (int i = 0; i < MAX_VOXEL_GI_INSTANCES; i++) {
- u.ids.push_back(rb->gi.voxel_gi_textures[i]);
+ u.append_id(rb->gi.voxel_gi_textures[i]);
}
uniforms.push_back(u);
}
diff --git a/servers/rendering/renderer_rd/renderer_scene_gi_rd.h b/servers/rendering/renderer_rd/renderer_scene_gi_rd.h
index 9f6fc8a9b7..122644498b 100644
--- a/servers/rendering/renderer_rd/renderer_scene_gi_rd.h
+++ b/servers/rendering/renderer_rd/renderer_scene_gi_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -54,7 +54,7 @@ class RendererSceneRenderRD;
class RendererSceneGIRD {
private:
- RendererStorageRD *storage;
+ RendererStorageRD *storage = nullptr;
/* VOXEL_GI INSTANCE */
@@ -250,8 +250,6 @@ private:
float cos_spot_angle;
float inv_spot_attenuation;
float radius;
-
- float shadow_color[4];
};
struct DirectLightPushConstant {
@@ -332,8 +330,8 @@ public:
struct VoxelGIInstance {
// access to our containers
- RendererStorageRD *storage;
- RendererSceneGIRD *gi;
+ RendererStorageRD *storage = nullptr;
+ RendererSceneGIRD *gi = nullptr;
RID probe;
RID texture;
@@ -392,7 +390,7 @@ public:
return voxel_gi->texture;
};
- RS::VoxelGIQuality voxel_gi_quality = RS::VOXEL_GI_QUALITY_HIGH;
+ RS::VoxelGIQuality voxel_gi_quality = RS::VOXEL_GI_QUALITY_LOW;
/* SDFGI */
@@ -456,8 +454,8 @@ public:
};
// access to our containers
- RendererStorageRD *storage;
- RendererSceneGIRD *gi;
+ RendererStorageRD *storage = nullptr;
+ RendererSceneGIRD *gi = nullptr;
// used for rendering (voxelization)
RID render_albedo;
@@ -495,7 +493,7 @@ public:
float solid_cell_ratio = 0;
uint32_t solid_cell_count = 0;
- RS::EnvironmentSDFGICascades cascade_mode;
+ int num_cascades = 6;
float min_cell_size = 0;
uint32_t probe_axis_count = 0; //amount of probes per axis, this is an odd number because it encloses endpoints
@@ -504,12 +502,12 @@ public:
RID cascades_ubo;
bool uses_occlusion = false;
- float bounce_feedback = 0.0;
- bool reads_sky = false;
+ float bounce_feedback = 0.5;
+ bool reads_sky = true;
float energy = 1.0;
float normal_bias = 1.1;
float probe_bias = 1.1;
- RS::EnvironmentSDFGIYScale y_scale_mode = RS::ENV_SDFGI_Y_SCALE_DISABLED;
+ RS::EnvironmentSDFGIYScale y_scale_mode = RS::ENV_SDFGI_Y_SCALE_75_PERCENT;
float y_mult = 1.0;
@@ -536,7 +534,7 @@ public:
};
RS::EnvironmentSDFGIRayCount sdfgi_ray_count = RS::ENV_SDFGI_RAY_COUNT_16;
- RS::EnvironmentSDFGIFramesToConverge sdfgi_frames_to_converge = RS::ENV_SDFGI_CONVERGE_IN_10_FRAMES;
+ RS::EnvironmentSDFGIFramesToConverge sdfgi_frames_to_converge = RS::ENV_SDFGI_CONVERGE_IN_30_FRAMES;
RS::EnvironmentSDFGIFramesToUpdateLight sdfgi_frames_to_update_light = RS::ENV_SDFGI_UPDATE_LIGHT_IN_4_FRAMES;
float sdfgi_solid_cell_ratio = 0.25;
@@ -602,19 +600,15 @@ public:
};
struct VoxelGIData {
- float xform[16];
- float bounds[3];
- float dynamic_range;
+ float xform[16]; // 64 - 64
- float bias;
- float normal_bias;
- uint32_t blend_ambient;
- uint32_t texture_slot;
+ float bounds[3]; // 12 - 76
+ float dynamic_range; // 4 - 80
- uint32_t pad0;
- uint32_t pad1;
- uint32_t pad2;
- uint32_t mipmaps;
+ float bias; // 4 - 84
+ float normal_bias; // 4 - 88
+ uint32_t blend_ambient; // 4 - 92
+ uint32_t mipmaps; // 4 - 96
};
struct PushConstant {
diff --git a/servers/rendering/renderer_rd/renderer_scene_render_rd.cpp b/servers/rendering/renderer_rd/renderer_scene_render_rd.cpp
index 7c35b01b50..bf65dca56a 100644
--- a/servers/rendering/renderer_rd/renderer_scene_render_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_scene_render_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,6 +33,8 @@
#include "core/config/project_settings.h"
#include "core/os/os.h"
#include "renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_server_default.h"
void get_vogel_disk(float *r_kernel, int p_sample_count) {
@@ -65,7 +67,7 @@ void RendererSceneRenderRD::sdfgi_update(RID p_render_buffers, RID p_environment
static const uint32_t history_frames_to_converge[RS::ENV_SDFGI_CONVERGE_MAX] = { 5, 10, 15, 20, 25, 30 };
uint32_t requested_history_size = history_frames_to_converge[gi.sdfgi_frames_to_converge];
- if (rb->sdfgi && (rb->sdfgi->cascade_mode != env->sdfgi_cascades || rb->sdfgi->min_cell_size != env->sdfgi_min_cell_size || requested_history_size != rb->sdfgi->history_size || rb->sdfgi->uses_occlusion != env->sdfgi_use_occlusion || rb->sdfgi->y_scale_mode != env->sdfgi_y_scale)) {
+ if (rb->sdfgi && (rb->sdfgi->num_cascades != env->sdfgi_cascades || rb->sdfgi->min_cell_size != env->sdfgi_min_cell_size || requested_history_size != rb->sdfgi->history_size || rb->sdfgi->uses_occlusion != env->sdfgi_use_occlusion || rb->sdfgi->y_scale_mode != env->sdfgi_y_scale)) {
//configuration changed, erase
rb->sdfgi->erase();
memdelete(rb->sdfgi);
@@ -289,10 +291,10 @@ void RendererSceneRenderRD::environment_set_tonemap(RID p_env, RS::EnvironmentTo
env->set_tonemap(p_tone_mapper, p_exposure, p_white, p_auto_exposure, p_min_luminance, p_max_luminance, p_auto_exp_speed, p_auto_exp_scale);
}
-void RendererSceneRenderRD::environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) {
+void RendererSceneRenderRD::environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) {
RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
ERR_FAIL_COND(!env);
- env->set_glow(p_enable, p_levels, p_intensity, p_strength, p_mix, p_bloom_threshold, p_blend_mode, p_hdr_bleed_threshold, p_hdr_bleed_scale, p_hdr_luminance_cap);
+ env->set_glow(p_enable, p_levels, p_intensity, p_strength, p_mix, p_bloom_threshold, p_blend_mode, p_hdr_bleed_threshold, p_hdr_bleed_scale, p_hdr_luminance_cap, p_glow_map_strength, p_glow_map);
}
void RendererSceneRenderRD::environment_glow_set_use_bicubic_upscale(bool p_enable) {
@@ -303,7 +305,7 @@ void RendererSceneRenderRD::environment_glow_set_use_high_quality(bool p_enable)
glow_high_quality = p_enable;
}
-void RendererSceneRenderRD::environment_set_sdfgi(RID p_env, bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) {
+void RendererSceneRenderRD::environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) {
RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
ERR_FAIL_COND(!env);
@@ -427,6 +429,26 @@ void RendererSceneRenderRD::environment_set_ssao_quality(RS::EnvironmentSSAOQual
ssao_fadeout_to = p_fadeout_to;
}
+void RendererSceneRenderRD::environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) {
+ RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
+ ERR_FAIL_COND(!env);
+
+ env->ssil_enabled = p_enable;
+ env->ssil_radius = p_radius;
+ env->ssil_intensity = p_intensity;
+ env->ssil_sharpness = p_sharpness;
+ env->ssil_normal_rejection = p_normal_rejection;
+}
+
+void RendererSceneRenderRD::environment_set_ssil_quality(RS::EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) {
+ ssil_quality = p_quality;
+ ssil_half_size = p_half_size;
+ ssil_adaptive_target = p_adaptive_target;
+ ssil_blur_passes = p_blur_passes;
+ ssil_fadeout_from = p_fadeout_from;
+ ssil_fadeout_to = p_fadeout_to;
+}
+
bool RendererSceneRenderRD::environment_is_ssao_enabled(RID p_env) const {
RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
ERR_FAIL_COND_V(!env, false);
@@ -445,6 +467,12 @@ float RendererSceneRenderRD::environment_get_ssao_light_affect(RID p_env) const
return env->ssao_direct_light_affect;
}
+bool RendererSceneRenderRD::environment_is_ssil_enabled(RID p_env) const {
+ RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
+ ERR_FAIL_COND_V(!env, false);
+ return env->ssil_enabled;
+}
+
bool RendererSceneRenderRD::environment_is_ssr_enabled(RID p_env) const {
RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
ERR_FAIL_COND_V(!env, false);
@@ -464,34 +492,63 @@ Ref<Image> RendererSceneRenderRD::environment_bake_panorama(RID p_env, bool p_ba
RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_env);
ERR_FAIL_COND_V(!env, Ref<Image>());
- if (env->background == RS::ENV_BG_CAMERA_FEED || env->background == RS::ENV_BG_CANVAS || env->background == RS::ENV_BG_KEEP) {
+ RS::EnvironmentBG environment_background = env->background;
+
+ if (environment_background == RS::ENV_BG_CAMERA_FEED || environment_background == RS::ENV_BG_CANVAS || environment_background == RS::ENV_BG_KEEP) {
return Ref<Image>(); //nothing to bake
}
- if (env->background == RS::ENV_BG_CLEAR_COLOR || env->background == RS::ENV_BG_COLOR) {
- Color color;
- if (env->background == RS::ENV_BG_CLEAR_COLOR) {
- color = storage->get_default_clear_color();
- } else {
- color = env->bg_color;
- }
- color.r *= env->bg_energy;
- color.g *= env->bg_energy;
- color.b *= env->bg_energy;
-
- Ref<Image> ret;
- ret.instantiate();
- ret->create(p_size.width, p_size.height, false, Image::FORMAT_RGBAF);
- for (int i = 0; i < p_size.width; i++) {
- for (int j = 0; j < p_size.height; j++) {
- ret->set_pixel(i, j, color);
+ RS::EnvironmentAmbientSource ambient_source = env->ambient_source;
+
+ bool use_ambient_light = false;
+ bool use_cube_map = false;
+ if (ambient_source == RS::ENV_AMBIENT_SOURCE_BG && (environment_background == RS::ENV_BG_CLEAR_COLOR || environment_background == RS::ENV_BG_COLOR)) {
+ use_ambient_light = true;
+ } else {
+ use_cube_map = (ambient_source == RS::ENV_AMBIENT_SOURCE_BG && environment_background == RS::ENV_BG_SKY) || ambient_source == RS::ENV_AMBIENT_SOURCE_SKY;
+ use_ambient_light = use_cube_map || ambient_source == RS::ENV_AMBIENT_SOURCE_COLOR;
+ }
+ use_cube_map = use_cube_map || (environment_background == RS::ENV_BG_SKY && env->sky.is_valid());
+
+ Color ambient_color;
+ float ambient_color_sky_mix;
+ if (use_ambient_light) {
+ ambient_color_sky_mix = env->ambient_sky_contribution;
+ const float ambient_energy = env->ambient_light_energy;
+ ambient_color = env->ambient_light;
+ ambient_color = ambient_color.srgb_to_linear();
+ ambient_color.r *= ambient_energy;
+ ambient_color.g *= ambient_energy;
+ ambient_color.b *= ambient_energy;
+ }
+
+ if (use_cube_map) {
+ Ref<Image> panorama = sky_bake_panorama(env->sky, env->bg_energy, p_bake_irradiance, p_size);
+ if (use_ambient_light) {
+ for (int x = 0; x < p_size.width; x++) {
+ for (int y = 0; y < p_size.height; y++) {
+ panorama->set_pixel(x, y, ambient_color.lerp(panorama->get_pixel(x, y), ambient_color_sky_mix));
+ }
}
}
- return ret;
- }
+ return panorama;
+ } else {
+ const float bg_energy = env->bg_energy;
+ Color panorama_color = ((environment_background == RS::ENV_BG_CLEAR_COLOR) ? storage->get_default_clear_color() : env->bg_color);
+ panorama_color = panorama_color.srgb_to_linear();
+ panorama_color.r *= bg_energy;
+ panorama_color.g *= bg_energy;
+ panorama_color.b *= bg_energy;
+
+ if (use_ambient_light) {
+ panorama_color = ambient_color.lerp(panorama_color, ambient_color_sky_mix);
+ }
- if (env->background == RS::ENV_BG_SKY && env->sky.is_valid()) {
- return sky_bake_panorama(env->sky, env->bg_energy, p_bake_irradiance, p_size);
+ Ref<Image> panorama;
+ panorama.instantiate();
+ panorama->create(p_size.width, p_size.height, false, Image::FORMAT_RGBAF);
+ panorama->fill(panorama_color);
+ return panorama;
}
return Ref<Image>();
@@ -632,7 +689,7 @@ bool RendererSceneRenderRD::reflection_probe_instance_needs_redraw(RID p_instanc
return true;
}
- if (storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS) {
+ if (RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS) {
return true;
}
@@ -656,12 +713,12 @@ bool RendererSceneRenderRD::reflection_probe_instance_begin_render(RID p_instanc
RD::get_singleton()->draw_command_begin_label("Reflection probe render");
- if (storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS && atlas->reflection.is_valid() && atlas->size != 256) {
+ if (RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS && atlas->reflection.is_valid() && atlas->size != 256) {
WARN_PRINT("ReflectionProbes set to UPDATE_ALWAYS must have an atlas size of 256. Please update the atlas size in the ProjectSettings.");
reflection_atlas_set_size(p_reflection_atlas, 256, atlas->count);
}
- if (storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS && atlas->reflection.is_valid() && atlas->reflections[0].data.layers[0].mipmaps.size() != 8) {
+ if (RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS && atlas->reflection.is_valid() && atlas->reflections[0].data.layers[0].mipmaps.size() != 8) {
// Invalidate reflection atlas, need to regenerate
RD::get_singleton()->free(atlas->reflection);
atlas->reflection = RID();
@@ -678,7 +735,7 @@ bool RendererSceneRenderRD::reflection_probe_instance_begin_render(RID p_instanc
if (atlas->reflection.is_null()) {
int mipmaps = MIN(sky.roughness_layers, Image::get_image_required_mipmaps(atlas->size, atlas->size, Image::FORMAT_RGBAH) + 1);
- mipmaps = storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS ? 8 : mipmaps; // always use 8 mipmaps with real time filtering
+ mipmaps = RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS ? 8 : mipmaps; // always use 8 mipmaps with real time filtering
{
//reflection atlas was unused, create:
RD::TextureFormat tf;
@@ -702,7 +759,7 @@ bool RendererSceneRenderRD::reflection_probe_instance_begin_render(RID p_instanc
}
atlas->reflections.resize(atlas->count);
for (int i = 0; i < atlas->count; i++) {
- atlas->reflections.write[i].data.update_reflection_data(storage, atlas->size, mipmaps, false, atlas->reflection, i * 6, storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS, sky.roughness_layers, _render_buffers_get_color_format());
+ atlas->reflections.write[i].data.update_reflection_data(storage, atlas->size, mipmaps, false, atlas->reflection, i * 6, RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS, sky.roughness_layers, _render_buffers_get_color_format());
for (int j = 0; j < 6; j++) {
atlas->reflections.write[i].fbs[j] = reflection_probe_create_framebuffer(atlas->reflections.write[i].data.layers[0].mipmaps[0].views[j], atlas->depth_buffer);
}
@@ -770,7 +827,7 @@ bool RendererSceneRenderRD::reflection_probe_instance_postprocess_step(RID p_ins
return false;
}
- if (storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS) {
+ if (RSG::light_storage->reflection_probe_get_update_mode(rpi->probe) == RS::REFLECTION_PROBE_UPDATE_ALWAYS) {
// Using real time reflections, all roughness is done in one step
atlas->reflections.write[rpi->atlas_index].data.create_reflection_fast_filter(storage, false);
rpi->rendering = false;
@@ -870,7 +927,7 @@ void RendererSceneRenderRD::shadow_atlas_set_size(RID p_atlas, int p_size, bool
}
for (int i = 0; i < 4; i++) {
//clear subdivisions
- shadow_atlas->quadrants[i].shadows.resize(0);
+ shadow_atlas->quadrants[i].shadows.clear();
shadow_atlas->quadrants[i].shadows.resize(1 << shadow_atlas->quadrants[i].subdivision);
}
@@ -917,7 +974,7 @@ void RendererSceneRenderRD::shadow_atlas_set_quadrant_subdivision(RID p_atlas, i
}
}
- shadow_atlas->quadrants[p_quadrant].shadows.resize(0);
+ shadow_atlas->quadrants[p_quadrant].shadows.clear();
shadow_atlas->quadrants[p_quadrant].shadows.resize(subdiv * subdiv);
shadow_atlas->quadrants[p_quadrant].subdivision = subdiv;
@@ -1077,11 +1134,11 @@ bool RendererSceneRenderRD::_shadow_atlas_find_omni_shadows(ShadowAtlas *shadow_
return false;
}
-bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_intance, float p_coverage, uint64_t p_light_version) {
+bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_instance, float p_coverage, uint64_t p_light_version) {
ShadowAtlas *shadow_atlas = shadow_atlas_owner.get_or_null(p_atlas);
ERR_FAIL_COND_V(!shadow_atlas, false);
- LightInstance *li = light_instance_owner.get_or_null(p_light_intance);
+ LightInstance *li = light_instance_owner.get_or_null(p_light_instance);
ERR_FAIL_COND_V(!li, false);
if (shadow_atlas->size == 0 || shadow_atlas->smallest_subdiv == 0) {
@@ -1130,8 +1187,8 @@ bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_i
bool should_realloc = false;
bool should_redraw = false;
- if (shadow_atlas->shadow_owners.has(p_light_intance)) {
- old_key = shadow_atlas->shadow_owners[p_light_intance];
+ if (shadow_atlas->shadow_owners.has(p_light_instance)) {
+ old_key = shadow_atlas->shadow_owners[p_light_instance];
old_quadrant = (old_key >> ShadowAtlas::QUADRANT_SHIFT) & 0x3;
old_shadow = old_key & ShadowAtlas::SHADOW_INDEX_MASK;
@@ -1175,7 +1232,7 @@ bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_i
ShadowAtlas::Quadrant::Shadow *sh = &shadow_atlas->quadrants[new_quadrant].shadows.write[new_shadow];
_shadow_atlas_invalidate_shadow(sh, p_atlas, shadow_atlas, new_quadrant, new_shadow);
- sh->owner = p_light_intance;
+ sh->owner = p_light_instance;
sh->alloc_tick = tick;
sh->version = p_light_version;
@@ -1186,7 +1243,7 @@ bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_i
ShadowAtlas::Quadrant::Shadow *extra_sh = &shadow_atlas->quadrants[new_quadrant].shadows.write[new_omni_shadow];
_shadow_atlas_invalidate_shadow(extra_sh, p_atlas, shadow_atlas, new_quadrant, new_omni_shadow);
- extra_sh->owner = p_light_intance;
+ extra_sh->owner = p_light_instance;
extra_sh->alloc_tick = tick;
extra_sh->version = p_light_version;
}
@@ -1194,7 +1251,7 @@ bool RendererSceneRenderRD::shadow_atlas_update_light(RID p_atlas, RID p_light_i
li->shadow_atlases.insert(p_atlas);
//update it in map
- shadow_atlas->shadow_owners[p_light_intance] = new_key;
+ shadow_atlas->shadow_owners[p_light_instance] = new_key;
//make it dirty, as it should redraw anyway
return true;
}
@@ -1215,10 +1272,10 @@ void RendererSceneRenderRD::_shadow_atlas_invalidate_shadow(RendererSceneRenderR
omni_shadow->owner = RID();
}
+ p_shadow_atlas->shadow_owners.erase(p_shadow->owner);
p_shadow->version = 0;
p_shadow->owner = RID();
sli->shadow_atlases.erase(p_atlas);
- p_shadow_atlas->shadow_owners.erase(p_shadow->owner);
}
}
@@ -1288,7 +1345,7 @@ int RendererSceneRenderRD::get_directional_light_shadow_size(RID p_light_intance
LightInstance *light_instance = light_instance_owner.get_or_null(p_light_intance);
ERR_FAIL_COND_V(!light_instance, 0);
- switch (storage->light_directional_get_shadow_mode(light_instance->light)) {
+ switch (RSG::light_storage->light_directional_get_shadow_mode(light_instance->light)) {
case RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL:
break; //none
case RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS:
@@ -1350,7 +1407,7 @@ RID RendererSceneRenderRD::light_instance_create(RID p_light) {
light_instance->self = li;
light_instance->light = p_light;
- light_instance->light_type = storage->light_get_type(p_light);
+ light_instance->light_type = RSG::light_storage->light_get_type(p_light);
if (light_instance->light_type != RS::LIGHT_DIRECTIONAL) {
light_instance->forward_id = _allocate_forward_id(light_instance->light_type == RS::LIGHT_OMNI ? FORWARD_ID_TYPE_OMNI_LIGHT : FORWARD_ID_TYPE_SPOT_LIGHT);
}
@@ -1611,8 +1668,8 @@ void RendererSceneRenderRD::_allocate_blur_textures(RenderBuffers *rb) {
if (i == 1) {
// next 2 are half size
- tf.width = MAX(1, tf.width >> 1);
- tf.height = MAX(1, tf.height >> 1);
+ tf.width = MAX(1u, tf.width >> 1);
+ tf.height = MAX(1u, tf.height >> 1);
}
}
@@ -1763,11 +1820,14 @@ void RendererSceneRenderRD::_free_render_buffer_data(RenderBuffers *rb) {
if (rb->blur[i].mipmaps[m].fb.is_valid()) {
RD::get_singleton()->free(rb->blur[i].mipmaps[m].fb);
}
- if (rb->blur[i].mipmaps[m].half_fb.is_valid()) {
- RD::get_singleton()->free(rb->blur[i].mipmaps[m].half_fb);
- }
- if (rb->blur[i].mipmaps[m].half_texture.is_valid()) {
- RD::get_singleton()->free(rb->blur[i].mipmaps[m].half_texture);
+ // texture and framebuffer in both blur mipmaps are shared, so only free from the first one
+ if (i == 0) {
+ if (rb->blur[i].mipmaps[m].half_fb.is_valid()) {
+ RD::get_singleton()->free(rb->blur[i].mipmaps[m].half_fb);
+ }
+ if (rb->blur[i].mipmaps[m].half_texture.is_valid()) {
+ RD::get_singleton()->free(rb->blur[i].mipmaps[m].half_texture);
+ }
}
}
rb->blur[i].mipmaps.clear();
@@ -1798,24 +1858,51 @@ void RendererSceneRenderRD::_free_render_buffer_data(RenderBuffers *rb) {
rb->luminance.current = RID();
}
- if (rb->ssao.depth.is_valid()) {
- RD::get_singleton()->free(rb->ssao.depth);
- RD::get_singleton()->free(rb->ssao.ao_deinterleaved);
- RD::get_singleton()->free(rb->ssao.ao_pong);
- RD::get_singleton()->free(rb->ssao.ao_final);
+ if (rb->ss_effects.linear_depth.is_valid()) {
+ RD::get_singleton()->free(rb->ss_effects.linear_depth);
+ rb->ss_effects.linear_depth = RID();
+ rb->ss_effects.linear_depth_slices.clear();
+ }
+
+ if (rb->ss_effects.ssao.ao_final.is_valid()) {
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_deinterleaved);
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_pong);
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_final);
+
+ RD::get_singleton()->free(rb->ss_effects.ssao.importance_map[0]);
+ RD::get_singleton()->free(rb->ss_effects.ssao.importance_map[1]);
- RD::get_singleton()->free(rb->ssao.importance_map[0]);
- RD::get_singleton()->free(rb->ssao.importance_map[1]);
+ rb->ss_effects.ssao.ao_deinterleaved = RID();
+ rb->ss_effects.ssao.ao_pong = RID();
+ rb->ss_effects.ssao.ao_final = RID();
+ rb->ss_effects.ssao.importance_map[0] = RID();
+ rb->ss_effects.ssao.importance_map[1] = RID();
- rb->ssao.depth = RID();
- rb->ssao.ao_deinterleaved = RID();
- rb->ssao.ao_pong = RID();
- rb->ssao.ao_final = RID();
- rb->ssao.importance_map[0] = RID();
- rb->ssao.importance_map[1] = RID();
- rb->ssao.depth_slices.clear();
- rb->ssao.ao_deinterleaved_slices.clear();
- rb->ssao.ao_pong_slices.clear();
+ rb->ss_effects.ssao.ao_deinterleaved_slices.clear();
+ rb->ss_effects.ssao.ao_pong_slices.clear();
+ }
+
+ if (rb->ss_effects.ssil.ssil_final.is_valid()) {
+ RD::get_singleton()->free(rb->ss_effects.ssil.ssil_final);
+ RD::get_singleton()->free(rb->ss_effects.ssil.deinterleaved);
+ RD::get_singleton()->free(rb->ss_effects.ssil.pong);
+ RD::get_singleton()->free(rb->ss_effects.ssil.edges);
+ RD::get_singleton()->free(rb->ss_effects.ssil.importance_map[0]);
+ RD::get_singleton()->free(rb->ss_effects.ssil.importance_map[1]);
+
+ rb->ss_effects.ssil.ssil_final = RID();
+ rb->ss_effects.ssil.deinterleaved = RID();
+ rb->ss_effects.ssil.pong = RID();
+ rb->ss_effects.ssil.edges = RID();
+ rb->ss_effects.ssil.deinterleaved_slices.clear();
+ rb->ss_effects.ssil.pong_slices.clear();
+ rb->ss_effects.ssil.edges_slices.clear();
+ rb->ss_effects.ssil.importance_map[0] = RID();
+ rb->ss_effects.ssil.importance_map[1] = RID();
+
+ RD::get_singleton()->free(rb->ss_effects.last_frame);
+ rb->ss_effects.last_frame = RID();
+ rb->ss_effects.last_frame_slices.clear();
}
if (rb->ssr.blur_radius[0].is_valid()) {
@@ -1838,6 +1925,11 @@ void RendererSceneRenderRD::_free_render_buffer_data(RenderBuffers *rb) {
rb->ambient_buffer = RID();
rb->reflection_buffer = RID();
}
+
+ if (rb->gi.voxel_gi_buffer.is_valid()) {
+ RD::get_singleton()->free(rb->gi.voxel_gi_buffer);
+ rb->gi.voxel_gi_buffer = RID();
+ }
}
void RendererSceneRenderRD::_process_sss(RID p_render_buffers, const CameraMatrix &p_camera) {
@@ -1890,7 +1982,7 @@ void RendererSceneRenderRD::_process_ssr(RID p_render_buffers, RID p_dest_frameb
rb->ssr.normal_scaled = RD::get_singleton()->texture_create(tf, RD::TextureView());
}
- if (ssr_roughness_quality != RS::ENV_SSR_ROUGNESS_QUALITY_DISABLED && !rb->ssr.blur_radius[0].is_valid()) {
+ if (ssr_roughness_quality != RS::ENV_SSR_ROUGHNESS_QUALITY_DISABLED && !rb->ssr.blur_radius[0].is_valid()) {
RD::TextureFormat tf;
tf.format = RD::DATA_FORMAT_R8_UNORM;
tf.width = rb->internal_width / 2;
@@ -1919,24 +2011,21 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
RENDER_TIMESTAMP("Process SSAO");
- if (rb->ssao.ao_final.is_valid() && ssao_using_half_size != ssao_half_size) {
- RD::get_singleton()->free(rb->ssao.depth);
- RD::get_singleton()->free(rb->ssao.ao_deinterleaved);
- RD::get_singleton()->free(rb->ssao.ao_pong);
- RD::get_singleton()->free(rb->ssao.ao_final);
+ if (rb->ss_effects.ssao.ao_final.is_valid() && ssao_using_half_size != ssao_half_size) {
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_deinterleaved);
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_pong);
+ RD::get_singleton()->free(rb->ss_effects.ssao.ao_final);
- RD::get_singleton()->free(rb->ssao.importance_map[0]);
- RD::get_singleton()->free(rb->ssao.importance_map[1]);
+ RD::get_singleton()->free(rb->ss_effects.ssao.importance_map[0]);
+ RD::get_singleton()->free(rb->ss_effects.ssao.importance_map[1]);
- rb->ssao.depth = RID();
- rb->ssao.ao_deinterleaved = RID();
- rb->ssao.ao_pong = RID();
- rb->ssao.ao_final = RID();
- rb->ssao.importance_map[0] = RID();
- rb->ssao.importance_map[1] = RID();
- rb->ssao.depth_slices.clear();
- rb->ssao.ao_deinterleaved_slices.clear();
- rb->ssao.ao_pong_slices.clear();
+ rb->ss_effects.ssao.ao_deinterleaved = RID();
+ rb->ss_effects.ssao.ao_pong = RID();
+ rb->ss_effects.ssao.ao_final = RID();
+ rb->ss_effects.ssao.importance_map[0] = RID();
+ rb->ss_effects.ssao.importance_map[1] = RID();
+ rb->ss_effects.ssao.ao_deinterleaved_slices.clear();
+ rb->ss_effects.ssao.ao_pong_slices.clear();
}
int buffer_width;
@@ -1955,27 +2044,10 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
half_height = (rb->internal_height + 3) / 4;
}
bool uniform_sets_are_invalid = false;
- if (rb->ssao.depth.is_null()) {
- //allocate depth slices
-
+ if (rb->ss_effects.ssao.ao_deinterleaved.is_null()) {
{
- RD::TextureFormat tf;
- tf.format = RD::DATA_FORMAT_R16_SFLOAT;
- tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
- tf.width = buffer_width;
- tf.height = buffer_height;
- tf.mipmaps = 4;
- tf.array_layers = 4;
- tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
- rb->ssao.depth = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.depth, "SSAO Depth");
- for (uint32_t i = 0; i < tf.mipmaps; i++) {
- RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ssao.depth, 0, i, RD::TEXTURE_SLICE_2D_ARRAY);
- rb->ssao.depth_slices.push_back(slice);
- RD::get_singleton()->set_resource_name(rb->ssao.depth_slices[i], "SSAO Depth Mip " + itos(i) + " ");
- }
+ rb->ss_effects.ssao.depth_texture_view = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.linear_depth, 0, ssao_half_size ? 1 : 0, 4, RD::TEXTURE_SLICE_2D_ARRAY);
}
-
{
RD::TextureFormat tf;
tf.format = RD::DATA_FORMAT_R8G8_UNORM;
@@ -1984,12 +2056,12 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
tf.height = buffer_height;
tf.array_layers = 4;
tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
- rb->ssao.ao_deinterleaved = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.ao_deinterleaved, "SSAO De-interleaved Array");
+ rb->ss_effects.ssao.ao_deinterleaved = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssao.ao_deinterleaved, "SSAO De-interleaved Array");
for (uint32_t i = 0; i < 4; i++) {
- RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ssao.ao_deinterleaved, i, 0);
- rb->ssao.ao_deinterleaved_slices.push_back(slice);
- RD::get_singleton()->set_resource_name(rb->ssao.ao_deinterleaved_slices[i], "SSAO De-interleaved Array Layer " + itos(i) + " ");
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.ssao.ao_deinterleaved, i, 0);
+ rb->ss_effects.ssao.ao_deinterleaved_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SSAO De-interleaved Array Layer " + itos(i) + " ");
}
}
@@ -2001,12 +2073,12 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
tf.height = buffer_height;
tf.array_layers = 4;
tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
- rb->ssao.ao_pong = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.ao_pong, "SSAO De-interleaved Array Pong");
+ rb->ss_effects.ssao.ao_pong = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssao.ao_pong, "SSAO De-interleaved Array Pong");
for (uint32_t i = 0; i < 4; i++) {
- RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ssao.ao_pong, i, 0);
- rb->ssao.ao_pong_slices.push_back(slice);
- RD::get_singleton()->set_resource_name(rb->ssao.ao_deinterleaved_slices[i], "SSAO De-interleaved Array Layer " + itos(i) + " Pong");
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.ssao.ao_pong, i, 0);
+ rb->ss_effects.ssao.ao_pong_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SSAO De-interleaved Array Layer " + itos(i) + " Pong");
}
}
@@ -2016,10 +2088,10 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
tf.width = half_width;
tf.height = half_height;
tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
- rb->ssao.importance_map[0] = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.importance_map[0], "SSAO Importance Map");
- rb->ssao.importance_map[1] = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.importance_map[1], "SSAO Importance Map Pong");
+ rb->ss_effects.ssao.importance_map[0] = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssao.importance_map[0], "SSAO Importance Map");
+ rb->ss_effects.ssao.importance_map[1] = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssao.importance_map[1], "SSAO Importance Map Pong");
}
{
RD::TextureFormat tf;
@@ -2027,8 +2099,8 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
tf.width = rb->internal_width;
tf.height = rb->internal_height;
tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
- rb->ssao.ao_final = RD::get_singleton()->texture_create(tf, RD::TextureView());
- RD::get_singleton()->set_resource_name(rb->ssao.ao_final, "SSAO Final");
+ rb->ss_effects.ssao.ao_final = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssao.ao_final, "SSAO Final");
}
ssao_using_half_size = ssao_half_size;
uniform_sets_are_invalid = true;
@@ -2052,7 +2124,187 @@ void RendererSceneRenderRD::_process_ssao(RID p_render_buffers, RID p_environmen
settings.half_screen_size = Size2i(buffer_width, buffer_height);
settings.quarter_screen_size = Size2i(half_width, half_height);
- storage->get_effects()->generate_ssao(rb->depth_texture, p_normal_buffer, rb->ssao.depth, rb->ssao.depth_slices, rb->ssao.ao_deinterleaved, rb->ssao.ao_deinterleaved_slices, rb->ssao.ao_pong, rb->ssao.ao_pong_slices, rb->ssao.ao_final, rb->ssao.importance_map[0], rb->ssao.importance_map[1], p_projection, settings, uniform_sets_are_invalid, rb->ssao.downsample_uniform_set, rb->ssao.gather_uniform_set, rb->ssao.importance_map_uniform_set);
+ storage->get_effects()->generate_ssao(p_normal_buffer, rb->ss_effects.ssao.depth_texture_view, rb->ss_effects.ssao.ao_deinterleaved, rb->ss_effects.ssao.ao_deinterleaved_slices, rb->ss_effects.ssao.ao_pong, rb->ss_effects.ssao.ao_pong_slices, rb->ss_effects.ssao.ao_final, rb->ss_effects.ssao.importance_map[0], rb->ss_effects.ssao.importance_map[1], p_projection, settings, uniform_sets_are_invalid, rb->ss_effects.ssao.gather_uniform_set, rb->ss_effects.ssao.importance_map_uniform_set);
+}
+
+void RendererSceneRenderRD::_process_ssil(RID p_render_buffers, RID p_environment, RID p_normal_buffer, const CameraMatrix &p_projection, const Transform3D &p_transform) {
+ RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
+ ERR_FAIL_COND(!rb);
+
+ RendererSceneEnvironmentRD *env = environment_owner.get_or_null(p_environment);
+ ERR_FAIL_COND(!env);
+
+ RENDER_TIMESTAMP("Process SSIL");
+
+ if (rb->ss_effects.ssil.ssil_final.is_valid() && ssil_using_half_size != ssil_half_size) {
+ RD::get_singleton()->free(rb->ss_effects.ssil.ssil_final);
+ RD::get_singleton()->free(rb->ss_effects.ssil.deinterleaved);
+ RD::get_singleton()->free(rb->ss_effects.ssil.pong);
+ RD::get_singleton()->free(rb->ss_effects.ssil.edges);
+ RD::get_singleton()->free(rb->ss_effects.ssil.importance_map[0]);
+ RD::get_singleton()->free(rb->ss_effects.ssil.importance_map[1]);
+
+ rb->ss_effects.ssil.ssil_final = RID();
+ rb->ss_effects.ssil.deinterleaved = RID();
+ rb->ss_effects.ssil.pong = RID();
+ rb->ss_effects.ssil.edges = RID();
+ rb->ss_effects.ssil.deinterleaved_slices.clear();
+ rb->ss_effects.ssil.pong_slices.clear();
+ rb->ss_effects.ssil.edges_slices.clear();
+ rb->ss_effects.ssil.importance_map[0] = RID();
+ rb->ss_effects.ssil.importance_map[1] = RID();
+ }
+
+ int buffer_width;
+ int buffer_height;
+ int half_width;
+ int half_height;
+ if (ssil_half_size) {
+ buffer_width = (rb->width + 3) / 4;
+ buffer_height = (rb->height + 3) / 4;
+ half_width = (rb->width + 7) / 8;
+ half_height = (rb->height + 7) / 8;
+ } else {
+ buffer_width = (rb->width + 1) / 2;
+ buffer_height = (rb->height + 1) / 2;
+ half_width = (rb->width + 3) / 4;
+ half_height = (rb->height + 3) / 4;
+ }
+ bool uniform_sets_are_invalid = false;
+ if (rb->ss_effects.ssil.ssil_final.is_null()) {
+ {
+ rb->ss_effects.ssil.depth_texture_view = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.linear_depth, 0, ssil_half_size ? 1 : 0, 4, RD::TEXTURE_SLICE_2D_ARRAY);
+ }
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ tf.width = rb->width;
+ tf.height = rb->height;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT | RD::TEXTURE_USAGE_CAN_COPY_TO_BIT;
+ rb->ss_effects.ssil.ssil_final = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.ssil_final, "SSIL texture");
+ RD::get_singleton()->texture_clear(rb->ss_effects.ssil.ssil_final, Color(0, 0, 0, 0), 0, 1, 0, 1);
+ if (rb->ss_effects.last_frame.is_null()) {
+ tf.mipmaps = 6;
+ rb->ss_effects.last_frame = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.last_frame, "Last Frame Radiance");
+ RD::get_singleton()->texture_clear(rb->ss_effects.last_frame, Color(0, 0, 0, 0), 0, tf.mipmaps, 0, 1);
+ for (uint32_t i = 0; i < 6; i++) {
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.last_frame, 0, i);
+ rb->ss_effects.last_frame_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "Last Frame Radiance Mip " + itos(i) + " ");
+ }
+ }
+ }
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ tf.width = buffer_width;
+ tf.height = buffer_height;
+ tf.array_layers = 4;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+ rb->ss_effects.ssil.deinterleaved = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.deinterleaved, "SSIL deinterleaved buffer");
+ for (uint32_t i = 0; i < 4; i++) {
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.ssil.deinterleaved, i, 0);
+ rb->ss_effects.ssil.deinterleaved_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SSIL deinterleaved buffer array " + itos(i) + " ");
+ }
+ }
+
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ tf.width = buffer_width;
+ tf.height = buffer_height;
+ tf.array_layers = 4;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+ rb->ss_effects.ssil.pong = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.pong, "SSIL deinterleaved pong buffer");
+ for (uint32_t i = 0; i < 4; i++) {
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.ssil.pong, i, 0);
+ rb->ss_effects.ssil.pong_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SSIL deinterleaved buffer pong array " + itos(i) + " ");
+ }
+ }
+
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R8_UNORM;
+ tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ tf.width = buffer_width;
+ tf.height = buffer_height;
+ tf.array_layers = 4;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+ rb->ss_effects.ssil.edges = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.edges, "SSIL edges buffer");
+ for (uint32_t i = 0; i < 4; i++) {
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.ssil.edges, i, 0);
+ rb->ss_effects.ssil.edges_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SSIL edges buffer slice " + itos(i) + " ");
+ }
+ }
+
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R8_UNORM;
+ tf.width = half_width;
+ tf.height = half_height;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+ rb->ss_effects.ssil.importance_map[0] = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.importance_map[0], "SSIL Importance Map");
+ rb->ss_effects.ssil.importance_map[1] = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.ssil.importance_map[1], "SSIL Importance Map Pong");
+ }
+ uniform_sets_are_invalid = true;
+ ssil_using_half_size = ssil_half_size;
+ }
+
+ EffectsRD::SSILSettings settings;
+ settings.radius = env->ssil_radius;
+ settings.intensity = env->ssil_intensity;
+ settings.sharpness = env->ssil_sharpness;
+ settings.normal_rejection = env->ssil_normal_rejection;
+
+ settings.quality = ssil_quality;
+ settings.half_size = ssil_half_size;
+ settings.adaptive_target = ssil_adaptive_target;
+ settings.blur_passes = ssil_blur_passes;
+ settings.fadeout_from = ssil_fadeout_from;
+ settings.fadeout_to = ssil_fadeout_to;
+ settings.full_screen_size = Size2i(rb->width, rb->height);
+ settings.half_screen_size = Size2i(buffer_width, buffer_height);
+ settings.quarter_screen_size = Size2i(half_width, half_height);
+
+ CameraMatrix correction;
+ correction.set_depth_correction(true);
+ CameraMatrix projection = correction * p_projection;
+ Transform3D transform = p_transform;
+ transform.set_origin(Vector3(0.0, 0.0, 0.0));
+ CameraMatrix last_frame_projection = rb->ss_effects.last_frame_projection * CameraMatrix(rb->ss_effects.last_frame_transform.affine_inverse()) * CameraMatrix(transform) * projection.inverse();
+
+ storage->get_effects()->screen_space_indirect_lighting(rb->ss_effects.last_frame, rb->ss_effects.ssil.ssil_final, p_normal_buffer, rb->ss_effects.ssil.depth_texture_view, rb->ss_effects.ssil.deinterleaved, rb->ss_effects.ssil.deinterleaved_slices, rb->ss_effects.ssil.pong, rb->ss_effects.ssil.pong_slices, rb->ss_effects.ssil.importance_map[0], rb->ss_effects.ssil.importance_map[1], rb->ss_effects.ssil.edges, rb->ss_effects.ssil.edges_slices, p_projection, last_frame_projection, settings, uniform_sets_are_invalid, rb->ss_effects.ssil.gather_uniform_set, rb->ss_effects.ssil.importance_map_uniform_set, rb->ss_effects.ssil.projection_uniform_set);
+ rb->ss_effects.last_frame_projection = projection;
+ rb->ss_effects.last_frame_transform = transform;
+}
+
+void RendererSceneRenderRD::_copy_framebuffer_to_ssil(RID p_render_buffers) {
+ RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
+ ERR_FAIL_COND(!rb);
+
+ if (rb->ss_effects.last_frame.is_valid()) {
+ storage->get_effects()->copy_to_rect(rb->texture, rb->ss_effects.last_frame, Rect2i(0, 0, rb->width, rb->height));
+
+ int width = rb->width;
+ int height = rb->height;
+ for (int i = 0; i < rb->ss_effects.last_frame_slices.size() - 1; i++) {
+ width = MAX(1, width >> 1);
+ height = MAX(1, height >> 1);
+ storage->get_effects()->make_mipmap(rb->ss_effects.last_frame_slices[i], rb->ss_effects.last_frame_slices[i + 1], Size2i(width, height));
+ }
+ }
}
void RendererSceneRenderRD::_render_buffers_copy_screen_texture(const RenderDataRD *p_render_data) {
@@ -2108,6 +2360,7 @@ void RendererSceneRenderRD::_render_buffers_copy_depth_texture(const RenderDataR
}
void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const RenderDataRD *p_render_data) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_data->render_buffers);
ERR_FAIL_COND(!rb);
@@ -2138,7 +2391,7 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
float bokeh_size = camfx->dof_blur_amount * 64.0;
if (can_use_storage) {
- storage->get_effects()->bokeh_dof(buffers, camfx->dof_blur_far_enabled, camfx->dof_blur_far_distance, camfx->dof_blur_far_transition, camfx->dof_blur_near_enabled, camfx->dof_blur_near_distance, camfx->dof_blur_near_transition, bokeh_size, dof_blur_bokeh_shape, dof_blur_quality, dof_blur_use_jitter, p_render_data->z_near, p_render_data->z_far, p_render_data->cam_ortogonal);
+ storage->get_effects()->bokeh_dof(buffers, camfx->dof_blur_far_enabled, camfx->dof_blur_far_distance, camfx->dof_blur_far_transition, camfx->dof_blur_near_enabled, camfx->dof_blur_near_distance, camfx->dof_blur_near_transition, bokeh_size, dof_blur_bokeh_shape, dof_blur_quality, dof_blur_use_jitter, p_render_data->z_near, p_render_data->z_far, p_render_data->cam_orthogonal);
} else {
// Set framebuffers.
buffers.base_fb = rb->texture_fb;
@@ -2153,7 +2406,7 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
// Set weight buffers.
buffers.base_weight_fb = rb->base_weight_fb;
- storage->get_effects()->bokeh_dof_raster(buffers, camfx->dof_blur_far_enabled, camfx->dof_blur_far_distance, camfx->dof_blur_far_transition, camfx->dof_blur_near_enabled, camfx->dof_blur_near_distance, camfx->dof_blur_near_transition, bokeh_size, dof_blur_bokeh_shape, dof_blur_quality, p_render_data->z_near, p_render_data->z_far, p_render_data->cam_ortogonal);
+ storage->get_effects()->bokeh_dof_raster(buffers, camfx->dof_blur_far_enabled, camfx->dof_blur_far_distance, camfx->dof_blur_far_transition, camfx->dof_blur_near_enabled, camfx->dof_blur_near_distance, camfx->dof_blur_near_transition, bokeh_size, dof_blur_bokeh_shape, dof_blur_quality, p_render_data->z_near, p_render_data->z_far, p_render_data->cam_orthogonal);
}
RD::get_singleton()->draw_command_end_label();
}
@@ -2233,19 +2486,19 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
{
RD::get_singleton()->draw_command_begin_label("Tonemap");
- EffectsRD::TonemapSettings tonemap;
+ RendererRD::ToneMapper::TonemapSettings tonemap;
if (can_use_effects && env && env->auto_exposure && rb->luminance.current.is_valid()) {
tonemap.use_auto_exposure = true;
tonemap.exposure_texture = rb->luminance.current;
tonemap.auto_exposure_grey = env->auto_exp_scale;
} else {
- tonemap.exposure_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
+ tonemap.exposure_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
}
if (can_use_effects && env && env->glow_enabled) {
tonemap.use_glow = true;
- tonemap.glow_mode = EffectsRD::TonemapSettings::GlowMode(env->glow_blend_mode);
+ tonemap.glow_mode = RendererRD::ToneMapper::TonemapSettings::GlowMode(env->glow_blend_mode);
tonemap.glow_intensity = env->glow_blend_mode == RS::ENV_GLOW_BLEND_MODE_MIX ? env->glow_mix : env->glow_intensity;
for (int i = 0; i < RS::MAX_GLOW_LEVELS; i++) {
tonemap.glow_levels[i] = env->glow_levels[i];
@@ -2254,8 +2507,17 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
tonemap.glow_texture_size.y = rb->blur[1].mipmaps[0].height;
tonemap.glow_use_bicubic_upscale = glow_bicubic_upscale;
tonemap.glow_texture = rb->blur[1].texture;
+ if (env->glow_map.is_valid()) {
+ tonemap.glow_map_strength = env->glow_map_strength;
+ tonemap.glow_map = texture_storage->texture_get_rd_texture(env->glow_map);
+ } else {
+ tonemap.glow_map_strength = 0.0f;
+ tonemap.glow_map = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
+ }
+
} else {
- tonemap.glow_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
+ tonemap.glow_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ tonemap.glow_map = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
}
if (rb->screen_space_aa == RS::VIEWPORT_SCREEN_SPACE_AA_FXAA) {
@@ -2277,7 +2539,7 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
tonemap.use_color_correction = false;
tonemap.use_1d_color_correction = false;
- tonemap.color_correction_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ tonemap.color_correction_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
if (can_use_effects && env) {
tonemap.use_bcs = env->adjustments_enabled;
@@ -2287,14 +2549,14 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
if (env->adjustments_enabled && env->color_correction.is_valid()) {
tonemap.use_color_correction = true;
tonemap.use_1d_color_correction = env->use_1d_color_correction;
- tonemap.color_correction_texture = storage->texture_get_rd_texture(env->color_correction);
+ tonemap.color_correction_texture = texture_storage->texture_get_rd_texture(env->color_correction);
}
}
tonemap.luminance_multiplier = _render_buffers_get_luminance_multiplier();
tonemap.view_count = p_render_data->view_count;
- storage->get_effects()->tonemapper(rb->internal_texture, storage->render_target_get_rd_framebuffer(rb->render_target), tonemap);
+ tone_mapper->tonemapper(rb->internal_texture, texture_storage->render_target_get_rd_framebuffer(rb->render_target), tonemap);
RD::get_singleton()->draw_command_end_label();
}
@@ -2307,10 +2569,11 @@ void RendererSceneRenderRD::_render_buffers_post_process_and_tonemap(const Rende
RD::get_singleton()->draw_command_end_label();
}
- storage->render_target_disable_clear_request(rb->render_target);
+ texture_storage->render_target_disable_clear_request(rb->render_target);
}
void RendererSceneRenderRD::_post_process_subpass(RID p_source_texture, RID p_framebuffer, const RenderDataRD *p_render_data) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
RD::get_singleton()->draw_command_begin_label("Post Process Subpass");
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_data->render_buffers);
@@ -2324,7 +2587,7 @@ void RendererSceneRenderRD::_post_process_subpass(RID p_source_texture, RID p_fr
RD::DrawListID draw_list = RD::get_singleton()->draw_list_switch_to_next_pass();
- EffectsRD::TonemapSettings tonemap;
+ RendererRD::ToneMapper::TonemapSettings tonemap;
if (env) {
tonemap.tonemap_mode = env->tone_mapper;
@@ -2347,13 +2610,14 @@ void RendererSceneRenderRD::_post_process_subpass(RID p_source_texture, RID p_fr
}
tonemap.use_glow = false;
- tonemap.glow_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK);
+ tonemap.glow_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ tonemap.glow_map = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
tonemap.use_auto_exposure = false;
- tonemap.exposure_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE);
+ tonemap.exposure_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE);
tonemap.use_color_correction = false;
tonemap.use_1d_color_correction = false;
- tonemap.color_correction_texture = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ tonemap.color_correction_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
if (can_use_effects && env) {
tonemap.use_bcs = env->adjustments_enabled;
@@ -2363,7 +2627,7 @@ void RendererSceneRenderRD::_post_process_subpass(RID p_source_texture, RID p_fr
if (env->adjustments_enabled && env->color_correction.is_valid()) {
tonemap.use_color_correction = true;
tonemap.use_1d_color_correction = env->use_1d_color_correction;
- tonemap.color_correction_texture = storage->texture_get_rd_texture(env->color_correction);
+ tonemap.color_correction_texture = texture_storage->texture_get_rd_texture(env->color_correction);
}
}
@@ -2373,7 +2637,7 @@ void RendererSceneRenderRD::_post_process_subpass(RID p_source_texture, RID p_fr
tonemap.luminance_multiplier = _render_buffers_get_luminance_multiplier();
tonemap.view_count = p_render_data->view_count;
- storage->get_effects()->tonemapper(draw_list, p_source_texture, RD::get_singleton()->framebuffer_get_format(p_framebuffer), tonemap);
+ tone_mapper->tonemapper(draw_list, p_source_texture, RD::get_singleton()->framebuffer_get_format(p_framebuffer), tonemap);
RD::get_singleton()->draw_command_end_label();
}
@@ -2382,10 +2646,12 @@ void RendererSceneRenderRD::_disable_clear_request(const RenderDataRD *p_render_
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_data->render_buffers);
ERR_FAIL_COND(!rb);
- storage->render_target_disable_clear_request(rb->render_target);
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ texture_storage->render_target_disable_clear_request(rb->render_target);
}
void RendererSceneRenderRD::_render_buffers_debug_draw(RID p_render_buffers, RID p_shadow_atlas, RID p_occlusion_buffer) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
EffectsRD *effects = storage->get_effects();
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
@@ -2394,61 +2660,69 @@ void RendererSceneRenderRD::_render_buffers_debug_draw(RID p_render_buffers, RID
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_SHADOW_ATLAS) {
if (p_shadow_atlas.is_valid()) {
RID shadow_atlas_texture = shadow_atlas_get_texture(p_shadow_atlas);
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(shadow_atlas_texture, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, true);
+ if (shadow_atlas_texture.is_null()) {
+ shadow_atlas_texture = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK);
+ }
+
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
+ effects->copy_to_fb_rect(shadow_atlas_texture, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, true);
}
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_DIRECTIONAL_SHADOW_ATLAS) {
if (directional_shadow_get_texture().is_valid()) {
RID shadow_atlas_texture = directional_shadow_get_texture();
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(shadow_atlas_texture, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, true);
+ effects->copy_to_fb_rect(shadow_atlas_texture, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, true);
}
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_DECAL_ATLAS) {
- RID decal_atlas = storage->decal_atlas_get_texture();
+ RID decal_atlas = RendererRD::TextureStorage::get_singleton()->decal_atlas_get_texture();
if (decal_atlas.is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(decal_atlas, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, false, true);
+ effects->copy_to_fb_rect(decal_atlas, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize / 2), false, false, true);
}
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_SCENE_LUMINANCE) {
if (rb->luminance.current.is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(rb->luminance.current, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize / 8), false, true);
+ effects->copy_to_fb_rect(rb->luminance.current, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize / 8), false, true);
}
}
- if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_SSAO && rb->ssao.ao_final.is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
- RID ao_buf = rb->ssao.ao_final;
- effects->copy_to_fb_rect(ao_buf, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, true);
+ if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_SSAO && rb->ss_effects.ssao.ao_final.is_valid()) {
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
+ effects->copy_to_fb_rect(rb->ss_effects.ssao.ao_final, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, true);
+ }
+
+ if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_SSIL && rb->ss_effects.ssil.ssil_final.is_valid()) {
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
+ effects->copy_to_fb_rect(rb->ss_effects.ssil.ssil_final, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, false);
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_NORMAL_BUFFER && _render_buffers_get_normal_texture(p_render_buffers).is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(_render_buffers_get_normal_texture(p_render_buffers), storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, false);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
+ effects->copy_to_fb_rect(_render_buffers_get_normal_texture(p_render_buffers), texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, false);
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_GI_BUFFER && rb->ambient_buffer.is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
RID ambient_texture = rb->ambient_buffer;
RID reflection_texture = rb->reflection_buffer;
- effects->copy_to_fb_rect(ambient_texture, storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, false, false, true, reflection_texture);
+ effects->copy_to_fb_rect(ambient_texture, texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2(Vector2(), rtsize), false, false, false, true, reflection_texture);
}
if (debug_draw == RS::VIEWPORT_DEBUG_DRAW_OCCLUDERS) {
if (p_occlusion_buffer.is_valid()) {
- Size2 rtsize = storage->render_target_get_size(rb->render_target);
- effects->copy_to_fb_rect(storage->texture_get_rd_texture(p_occlusion_buffer), storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize), true, false);
+ Size2 rtsize = texture_storage->render_target_get_size(rb->render_target);
+ effects->copy_to_fb_rect(texture_storage->texture_get_rd_texture(p_occlusion_buffer), texture_storage->render_target_get_rd_framebuffer(rb->render_target), Rect2i(Vector2(), rtsize), true, false);
}
}
}
@@ -2494,7 +2768,13 @@ RID RendererSceneRenderRD::render_buffers_get_ao_texture(RID p_render_buffers) {
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
ERR_FAIL_COND_V(!rb, RID());
- return rb->ssao.ao_final;
+ return rb->ss_effects.ssao.ao_final;
+}
+RID RendererSceneRenderRD::render_buffers_get_ssil_texture(RID p_render_buffers) {
+ RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
+ ERR_FAIL_COND_V(!rb, RID());
+
+ return rb->ss_effects.ssil.ssil_final;
}
RID RendererSceneRenderRD::render_buffers_get_voxel_gi_buffer(RID p_render_buffers) {
@@ -2663,6 +2943,9 @@ bool RendererSceneRenderRD::_render_buffers_can_be_storage() {
}
void RendererSceneRenderRD::render_buffers_configure(RID p_render_buffers, RID p_render_target, int p_internal_width, int p_internal_height, int p_width, int p_height, float p_fsr_sharpness, float p_fsr_mipmap_bias, RS::ViewportMSAA p_msaa, RenderingServer::ViewportScreenSpaceAA p_screen_space_aa, bool p_use_debanding, uint32_t p_view_count) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
ERR_FAIL_COND_MSG(p_view_count == 0, "Must have at least 1 view");
if (!_render_buffers_can_be_storage()) {
@@ -2672,7 +2955,7 @@ void RendererSceneRenderRD::render_buffers_configure(RID p_render_buffers, RID p
if (p_width != p_internal_width) {
float fsr_mipmap_bias = -log2f(p_width / p_internal_width) + p_fsr_mipmap_bias;
- storage->sampler_rd_configure_custom(fsr_mipmap_bias);
+ material_storage->sampler_rd_configure_custom(fsr_mipmap_bias);
update_uniform_sets();
}
@@ -2760,11 +3043,11 @@ void RendererSceneRenderRD::render_buffers_configure(RID p_render_buffers, RID p
rb->texture_fb = RD::get_singleton()->framebuffer_create(fb, RenderingDevice::INVALID_ID, rb->view_count);
}
- RID target_texture = storage->render_target_get_rd_texture(rb->render_target);
+ RID target_texture = texture_storage->render_target_get_rd_texture(rb->render_target);
rb->data->configure(rb->internal_texture, rb->depth_texture, target_texture, p_internal_width, p_internal_height, p_msaa, p_view_count);
if (is_clustered_enabled()) {
- rb->cluster_builder->setup(Size2i(p_internal_width, p_internal_height), max_cluster_elements, rb->depth_texture, storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED), rb->internal_texture);
+ rb->cluster_builder->setup(Size2i(p_internal_width, p_internal_height), max_cluster_elements, rb->depth_texture, RendererRD::MaterialStorage::get_singleton()->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED), rb->internal_texture);
}
}
@@ -2909,6 +3192,7 @@ RendererSceneRenderRD::RenderBufferData *RendererSceneRenderRD::render_buffers_g
}
void RendererSceneRenderRD::_setup_reflections(const PagedArray<RID> &p_reflections, const Transform3D &p_camera_inverse_transform, RID p_environment) {
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
cluster.reflection_count = 0;
for (uint32_t i = 0; i < (uint32_t)p_reflections.size(); i++) {
@@ -2943,30 +3227,30 @@ void RendererSceneRenderRD::_setup_reflections(const PagedArray<RID> &p_reflecti
Cluster::ReflectionData &reflection_ubo = cluster.reflections[i];
- Vector3 extents = storage->reflection_probe_get_extents(base_probe);
+ Vector3 extents = light_storage->reflection_probe_get_extents(base_probe);
- rpi->cull_mask = storage->reflection_probe_get_cull_mask(base_probe);
+ rpi->cull_mask = light_storage->reflection_probe_get_cull_mask(base_probe);
reflection_ubo.box_extents[0] = extents.x;
reflection_ubo.box_extents[1] = extents.y;
reflection_ubo.box_extents[2] = extents.z;
reflection_ubo.index = rpi->atlas_index;
- Vector3 origin_offset = storage->reflection_probe_get_origin_offset(base_probe);
+ Vector3 origin_offset = light_storage->reflection_probe_get_origin_offset(base_probe);
reflection_ubo.box_offset[0] = origin_offset.x;
reflection_ubo.box_offset[1] = origin_offset.y;
reflection_ubo.box_offset[2] = origin_offset.z;
- reflection_ubo.mask = storage->reflection_probe_get_cull_mask(base_probe);
+ reflection_ubo.mask = light_storage->reflection_probe_get_cull_mask(base_probe);
- reflection_ubo.intensity = storage->reflection_probe_get_intensity(base_probe);
- reflection_ubo.ambient_mode = storage->reflection_probe_get_ambient_mode(base_probe);
+ reflection_ubo.intensity = light_storage->reflection_probe_get_intensity(base_probe);
+ reflection_ubo.ambient_mode = light_storage->reflection_probe_get_ambient_mode(base_probe);
- reflection_ubo.exterior = !storage->reflection_probe_is_interior(base_probe);
- reflection_ubo.box_project = storage->reflection_probe_is_box_projection(base_probe);
+ reflection_ubo.exterior = !light_storage->reflection_probe_is_interior(base_probe);
+ reflection_ubo.box_project = light_storage->reflection_probe_is_box_projection(base_probe);
- Color ambient_linear = storage->reflection_probe_get_ambient_color(base_probe).to_linear();
- float interior_ambient_energy = storage->reflection_probe_get_ambient_color_energy(base_probe);
+ Color ambient_linear = light_storage->reflection_probe_get_ambient_color(base_probe).srgb_to_linear();
+ float interior_ambient_energy = light_storage->reflection_probe_get_ambient_color_energy(base_probe);
reflection_ubo.ambient[0] = ambient_linear.r * interior_ambient_energy;
reflection_ubo.ambient[1] = ambient_linear.g * interior_ambient_energy;
reflection_ubo.ambient[2] = ambient_linear.b * interior_ambient_energy;
@@ -2988,13 +3272,15 @@ void RendererSceneRenderRD::_setup_reflections(const PagedArray<RID> &p_reflecti
}
void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const Transform3D &p_camera_transform, RID p_shadow_atlas, bool p_using_shadows, uint32_t &r_directional_light_count, uint32_t &r_positional_light_count, bool &r_directional_light_soft_shadows) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
+
Transform3D inverse_transform = p_camera_transform.affine_inverse();
r_directional_light_count = 0;
r_positional_light_count = 0;
- sky.sky_scene_state.ubo.directional_light_count = 0;
- Plane camera_plane(-p_camera_transform.basis.get_axis(Vector3::AXIS_Z).normalized(), p_camera_transform.origin);
+ Plane camera_plane(-p_camera_transform.basis.get_column(Vector3::AXIS_Z).normalized(), p_camera_transform.origin);
cluster.omni_light_count = 0;
cluster.spot_light_count = 0;
@@ -3010,46 +3296,10 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
ERR_CONTINUE(base.is_null());
- RS::LightType type = storage->light_get_type(base);
+ RS::LightType type = light_storage->light_get_type(base);
switch (type) {
case RS::LIGHT_DIRECTIONAL: {
- // Copy to SkyDirectionalLightData
- if (r_directional_light_count < sky.sky_scene_state.max_directional_lights) {
- RendererSceneSkyRD::SkyDirectionalLightData &sky_light_data = sky.sky_scene_state.directional_lights[r_directional_light_count];
- Transform3D light_transform = li->transform;
- Vector3 world_direction = light_transform.basis.xform(Vector3(0, 0, 1)).normalized();
-
- sky_light_data.direction[0] = world_direction.x;
- sky_light_data.direction[1] = world_direction.y;
- sky_light_data.direction[2] = -world_direction.z;
-
- float sign = storage->light_is_negative(base) ? -1 : 1;
- sky_light_data.energy = sign * storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY);
-
- Color linear_col = storage->light_get_color(base).to_linear();
- sky_light_data.color[0] = linear_col.r;
- sky_light_data.color[1] = linear_col.g;
- sky_light_data.color[2] = linear_col.b;
-
- sky_light_data.enabled = true;
-
- float angular_diameter = storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
- if (angular_diameter > 0.0) {
- // I know tan(0) is 0, but let's not risk it with numerical precision.
- // technically this will keep expanding until reaching the sun, but all we care
- // is expand until we reach the radius of the near plane (there can't be more occluders than that)
- angular_diameter = Math::tan(Math::deg2rad(angular_diameter));
- if (storage->light_has_shadow(base)) {
- r_directional_light_soft_shadows = true;
- }
- } else {
- angular_diameter = 0.0;
- }
- sky_light_data.size = angular_diameter;
- sky.sky_scene_state.ubo.directional_light_count++;
- }
-
- if (r_directional_light_count >= cluster.max_directional_lights || storage->light_directional_is_sky_only(base)) {
+ if (r_directional_light_count >= cluster.max_directional_lights || light_storage->light_directional_get_sky_mode(base) == RS::LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY) {
continue;
}
@@ -3063,78 +3313,46 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
light_data.direction[1] = direction.y;
light_data.direction[2] = direction.z;
- float sign = storage->light_is_negative(base) ? -1 : 1;
+ float sign = light_storage->light_is_negative(base) ? -1 : 1;
- light_data.energy = sign * storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY) * Math_PI;
+ light_data.energy = sign * light_storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY) * Math_PI;
- Color linear_col = storage->light_get_color(base).to_linear();
+ Color linear_col = light_storage->light_get_color(base).srgb_to_linear();
light_data.color[0] = linear_col.r;
light_data.color[1] = linear_col.g;
light_data.color[2] = linear_col.b;
- light_data.specular = storage->light_get_param(base, RS::LIGHT_PARAM_SPECULAR);
- light_data.mask = storage->light_get_cull_mask(base);
+ light_data.specular = light_storage->light_get_param(base, RS::LIGHT_PARAM_SPECULAR);
+ light_data.mask = light_storage->light_get_cull_mask(base);
- float size = storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
+ float size = light_storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
light_data.size = 1.0 - Math::cos(Math::deg2rad(size)); //angle to cosine offset
- Color shadow_col = storage->light_get_shadow_color(base).to_linear();
-
if (get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_PSSM_SPLITS) {
- light_data.shadow_color1[0] = 1.0;
- light_data.shadow_color1[1] = 0.0;
- light_data.shadow_color1[2] = 0.0;
- light_data.shadow_color1[3] = 1.0;
- light_data.shadow_color2[0] = 0.0;
- light_data.shadow_color2[1] = 1.0;
- light_data.shadow_color2[2] = 0.0;
- light_data.shadow_color2[3] = 1.0;
- light_data.shadow_color3[0] = 0.0;
- light_data.shadow_color3[1] = 0.0;
- light_data.shadow_color3[2] = 1.0;
- light_data.shadow_color3[3] = 1.0;
- light_data.shadow_color4[0] = 1.0;
- light_data.shadow_color4[1] = 1.0;
- light_data.shadow_color4[2] = 0.0;
- light_data.shadow_color4[3] = 1.0;
-
- } else {
- light_data.shadow_color1[0] = shadow_col.r;
- light_data.shadow_color1[1] = shadow_col.g;
- light_data.shadow_color1[2] = shadow_col.b;
- light_data.shadow_color1[3] = 1.0;
- light_data.shadow_color2[0] = shadow_col.r;
- light_data.shadow_color2[1] = shadow_col.g;
- light_data.shadow_color2[2] = shadow_col.b;
- light_data.shadow_color2[3] = 1.0;
- light_data.shadow_color3[0] = shadow_col.r;
- light_data.shadow_color3[1] = shadow_col.g;
- light_data.shadow_color3[2] = shadow_col.b;
- light_data.shadow_color3[3] = 1.0;
- light_data.shadow_color4[0] = shadow_col.r;
- light_data.shadow_color4[1] = shadow_col.g;
- light_data.shadow_color4[2] = shadow_col.b;
- light_data.shadow_color4[3] = 1.0;
+ WARN_PRINT_ONCE("The DirectionalLight3D PSSM splits debug draw mode is not reimplemented yet.");
}
- light_data.shadow_enabled = p_using_shadows && storage->light_has_shadow(base);
+ light_data.shadow_enabled = p_using_shadows && light_storage->light_has_shadow(base);
- float angular_diameter = storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
+ float angular_diameter = light_storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
if (angular_diameter > 0.0) {
// I know tan(0) is 0, but let's not risk it with numerical precision.
// technically this will keep expanding until reaching the sun, but all we care
// is expand until we reach the radius of the near plane (there can't be more occluders than that)
angular_diameter = Math::tan(Math::deg2rad(angular_diameter));
+ if (light_storage->light_has_shadow(base)) {
+ r_directional_light_soft_shadows = true;
+ }
} else {
angular_diameter = 0.0;
}
if (light_data.shadow_enabled) {
- RS::LightDirectionalShadowMode smode = storage->light_directional_get_shadow_mode(base);
+ RS::LightDirectionalShadowMode smode = light_storage->light_directional_get_shadow_mode(base);
int limit = smode == RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL ? 0 : (smode == RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS ? 1 : 3);
- light_data.blend_splits = (smode != RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL) && storage->light_directional_get_blend_splits(base);
+ light_data.blend_splits = (smode != RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL) && light_storage->light_directional_get_blend_splits(base);
for (int j = 0; j < 4; j++) {
Rect2 atlas_rect = li->shadow_transform[j].atlas_rect;
CameraMatrix matrix = li->shadow_transform[j].camera;
@@ -3150,9 +3368,9 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
CameraMatrix shadow_mtx = rectm * bias * matrix * modelview;
light_data.shadow_split_offsets[j] = split;
float bias_scale = li->shadow_transform[j].bias_scale;
- light_data.shadow_bias[j] = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS) / 100.0 * bias_scale;
- light_data.shadow_normal_bias[j] = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS) * li->shadow_transform[j].shadow_texel_size;
- light_data.shadow_transmittance_bias[j] = storage->light_get_transmittance_bias(base) * bias_scale;
+ light_data.shadow_bias[j] = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS) / 100.0 * bias_scale;
+ light_data.shadow_normal_bias[j] = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS) * li->shadow_transform[j].shadow_texel_size;
+ light_data.shadow_transmittance_bias[j] = light_storage->light_get_transmittance_bias(base) * bias_scale;
light_data.shadow_z_range[j] = li->shadow_transform[j].farplane;
light_data.shadow_range_begin[j] = li->shadow_transform[j].range_begin;
RendererStorageRD::store_camera(shadow_mtx, light_data.shadow_matrices[j]);
@@ -3179,14 +3397,14 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
}
}
- float fade_start = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_FADE_START);
+ float fade_start = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_FADE_START);
light_data.fade_from = -light_data.shadow_split_offsets[3] * MIN(fade_start, 0.999); //using 1.0 would break smoothstep
light_data.fade_to = -light_data.shadow_split_offsets[3];
- light_data.shadow_volumetric_fog_fade = 1.0 / storage->light_get_shadow_volumetric_fog_fade(base);
+ light_data.shadow_volumetric_fog_fade = 1.0 / light_storage->light_get_shadow_volumetric_fog_fade(base);
- light_data.soft_shadow_scale = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BLUR);
+ light_data.soft_shadow_scale = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BLUR);
light_data.softshadow_angle = angular_diameter;
- light_data.bake_mode = storage->light_get_bake_mode(base);
+ light_data.bake_mode = light_storage->light_get_bake_mode(base);
if (angular_diameter <= 0.0) {
light_data.soft_shadow_scale *= directional_shadow_quality_radius_get(); // Only use quality radius for PCF
@@ -3200,8 +3418,22 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
continue;
}
+ const real_t distance = camera_plane.distance_to(li->transform.origin);
+
+ if (light_storage->light_is_distance_fade_enabled(li->light)) {
+ const float fade_begin = light_storage->light_get_distance_fade_begin(li->light);
+ const float fade_length = light_storage->light_get_distance_fade_length(li->light);
+
+ if (distance > fade_begin) {
+ if (distance > fade_begin + fade_length) {
+ // Out of range, don't draw this light to improve performance.
+ continue;
+ }
+ }
+ }
+
cluster.omni_light_sort[cluster.omni_light_count].instance = li;
- cluster.omni_light_sort[cluster.omni_light_count].depth = camera_plane.distance_to(li->transform.origin);
+ cluster.omni_light_sort[cluster.omni_light_count].depth = distance;
cluster.omni_light_count++;
} break;
case RS::LIGHT_SPOT: {
@@ -3209,8 +3441,22 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
continue;
}
+ const real_t distance = camera_plane.distance_to(li->transform.origin);
+
+ if (light_storage->light_is_distance_fade_enabled(li->light)) {
+ const float fade_begin = light_storage->light_get_distance_fade_begin(li->light);
+ const float fade_length = light_storage->light_get_distance_fade_length(li->light);
+
+ if (distance > fade_begin) {
+ if (distance > fade_begin + fade_length) {
+ // Out of range, don't draw this light to improve performance.
+ continue;
+ }
+ }
+ }
+
cluster.spot_light_sort[cluster.spot_light_count].instance = li;
- cluster.spot_light_sort[cluster.spot_light_count].depth = camera_plane.distance_to(li->transform.origin);
+ cluster.spot_light_sort[cluster.spot_light_count].depth = distance;
cluster.spot_light_count++;
} break;
}
@@ -3249,20 +3495,37 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
Transform3D light_transform = li->transform;
- float sign = storage->light_is_negative(base) ? -1 : 1;
- Color linear_col = storage->light_get_color(base).to_linear();
+ float sign = light_storage->light_is_negative(base) ? -1 : 1;
+ Color linear_col = light_storage->light_get_color(base).srgb_to_linear();
+
+ light_data.attenuation = light_storage->light_get_param(base, RS::LIGHT_PARAM_ATTENUATION);
- light_data.attenuation = storage->light_get_param(base, RS::LIGHT_PARAM_ATTENUATION);
+ // Reuse fade begin, fade length and distance for shadow LOD determination later.
+ float fade_begin = 0.0;
+ float fade_length = 0.0;
+ real_t distance = 0.0;
- float energy = sign * storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY) * Math_PI;
+ float fade = 1.0;
+ if (light_storage->light_is_distance_fade_enabled(li->light)) {
+ fade_begin = light_storage->light_get_distance_fade_begin(li->light);
+ fade_length = light_storage->light_get_distance_fade_length(li->light);
+ distance = camera_plane.distance_to(li->transform.origin);
+
+ if (distance > fade_begin) {
+ // Use `smoothstep()` to make opacity changes more gradual and less noticeable to the player.
+ fade = Math::smoothstep(0.0f, 1.0f, 1.0f - float(distance - fade_begin) / fade_length);
+ }
+ }
+
+ float energy = sign * light_storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY) * Math_PI * fade;
light_data.color[0] = linear_col.r * energy;
light_data.color[1] = linear_col.g * energy;
light_data.color[2] = linear_col.b * energy;
- light_data.specular_amount = storage->light_get_param(base, RS::LIGHT_PARAM_SPECULAR) * 2.0;
- light_data.bake_mode = storage->light_get_bake_mode(base);
+ light_data.specular_amount = light_storage->light_get_param(base, RS::LIGHT_PARAM_SPECULAR) * 2.0;
+ light_data.bake_mode = light_storage->light_get_bake_mode(base);
- float radius = MAX(0.001, storage->light_get_param(base, RS::LIGHT_PARAM_RANGE));
+ float radius = MAX(0.001, light_storage->light_get_param(base, RS::LIGHT_PARAM_RANGE));
light_data.inv_radius = 1.0 / radius;
Vector3 pos = inverse_transform.xform(light_transform.origin);
@@ -3277,25 +3540,25 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
light_data.direction[1] = direction.y;
light_data.direction[2] = direction.z;
- float size = storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
+ float size = light_storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
light_data.size = size;
- light_data.inv_spot_attenuation = 1.0f / storage->light_get_param(base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
- float spot_angle = storage->light_get_param(base, RS::LIGHT_PARAM_SPOT_ANGLE);
+ light_data.inv_spot_attenuation = 1.0f / light_storage->light_get_param(base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ float spot_angle = light_storage->light_get_param(base, RS::LIGHT_PARAM_SPOT_ANGLE);
light_data.cos_spot_angle = Math::cos(Math::deg2rad(spot_angle));
- light_data.mask = storage->light_get_cull_mask(base);
+ light_data.mask = light_storage->light_get_cull_mask(base);
light_data.atlas_rect[0] = 0;
light_data.atlas_rect[1] = 0;
light_data.atlas_rect[2] = 0;
light_data.atlas_rect[3] = 0;
- RID projector = storage->light_get_projector(base);
+ RID projector = light_storage->light_get_projector(base);
if (projector.is_valid()) {
- Rect2 rect = storage->decal_atlas_get_texture_rect(projector);
+ Rect2 rect = texture_storage->decal_atlas_get_texture_rect(projector);
if (type == RS::LIGHT_SPOT) {
light_data.projector_rect[0] = rect.position.x;
@@ -3315,21 +3578,31 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
light_data.projector_rect[3] = 0;
}
- if (shadow_atlas && shadow_atlas->shadow_owners.has(li->self)) {
+ const bool needs_shadow = shadow_atlas && shadow_atlas->shadow_owners.has(li->self);
+
+ bool in_shadow_range = true;
+ if (needs_shadow && light_storage->light_is_distance_fade_enabled(li->light)) {
+ if (distance > light_storage->light_get_distance_fade_shadow(li->light)) {
+ // Out of range, don't draw shadows to improve performance.
+ in_shadow_range = false;
+ }
+ }
+
+ if (needs_shadow && in_shadow_range) {
// fill in the shadow information
light_data.shadow_enabled = true;
float shadow_texel_size = light_instance_get_shadow_texel_size(li->self, p_shadow_atlas);
- light_data.shadow_normal_bias = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS) * shadow_texel_size * 10.0;
+ light_data.shadow_normal_bias = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS) * shadow_texel_size * 10.0;
if (type == RS::LIGHT_SPOT) {
- light_data.shadow_bias = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS) / 100.0;
+ light_data.shadow_bias = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS) / 100.0;
} else { //omni
- light_data.shadow_bias = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS);
+ light_data.shadow_bias = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BIAS);
}
- light_data.transmittance_bias = storage->light_get_transmittance_bias(base);
+ light_data.transmittance_bias = light_storage->light_get_transmittance_bias(base);
Vector2i omni_offset;
Rect2 rect = light_instance_get_shadow_atlas_rect(li->self, p_shadow_atlas, omni_offset);
@@ -3339,8 +3612,8 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
light_data.atlas_rect[2] = rect.size.width;
light_data.atlas_rect[3] = rect.size.height;
- light_data.soft_shadow_scale = storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BLUR);
- light_data.shadow_volumetric_fog_fade = 1.0 / storage->light_get_shadow_volumetric_fog_fade(base);
+ light_data.soft_shadow_scale = light_storage->light_get_param(base, RS::LIGHT_PARAM_SHADOW_BLUR);
+ light_data.shadow_volumetric_fog_fade = 1.0 / light_storage->light_get_shadow_volumetric_fog_fade(base);
if (type == RS::LIGHT_OMNI) {
Transform3D proj = (inverse_transform * light_transform).inverse();
@@ -3377,7 +3650,7 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
light_data.shadow_enabled = false;
}
- li->cull_mask = storage->light_get_cull_mask(base);
+ li->cull_mask = light_storage->light_get_cull_mask(base);
if (current_cluster_builder != nullptr) {
current_cluster_builder->add_light(type == RS::LIGHT_SPOT ? ClusterBuilderRD::LIGHT_TYPE_SPOT : ClusterBuilderRD::LIGHT_TYPE_OMNI, light_transform, radius, spot_angle);
@@ -3401,6 +3674,8 @@ void RendererSceneRenderRD::_setup_lights(const PagedArray<RID> &p_lights, const
}
void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const Transform3D &p_camera_inverse_xform) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
Transform3D uv_xform;
uv_xform.basis.scale(Vector3(2.0, 1.0, 2.0));
uv_xform.origin = Vector3(-1.0, 0.0, -1.0);
@@ -3424,9 +3699,9 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
real_t distance = -p_camera_inverse_xform.xform(xform.origin).z;
- if (storage->decal_is_distance_fade_enabled(decal)) {
- float fade_begin = storage->decal_get_distance_fade_begin(decal);
- float fade_length = storage->decal_get_distance_fade_length(decal);
+ if (texture_storage->decal_is_distance_fade_enabled(decal)) {
+ float fade_begin = texture_storage->decal_get_distance_fade_begin(decal);
+ float fade_length = texture_storage->decal_get_distance_fade_length(decal);
if (distance > fade_begin) {
if (distance > fade_begin + fade_length) {
@@ -3454,42 +3729,43 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
_map_forward_id(FORWARD_ID_TYPE_DECAL, di->forward_id, i);
}
- di->cull_mask = storage->decal_get_cull_mask(decal);
+ di->cull_mask = texture_storage->decal_get_cull_mask(decal);
Transform3D xform = di->transform;
float fade = 1.0;
- if (storage->decal_is_distance_fade_enabled(decal)) {
- real_t distance = -p_camera_inverse_xform.xform(xform.origin).z;
- float fade_begin = storage->decal_get_distance_fade_begin(decal);
- float fade_length = storage->decal_get_distance_fade_length(decal);
+ if (texture_storage->decal_is_distance_fade_enabled(decal)) {
+ const real_t distance = -p_camera_inverse_xform.xform(xform.origin).z;
+ const float fade_begin = texture_storage->decal_get_distance_fade_begin(decal);
+ const float fade_length = texture_storage->decal_get_distance_fade_length(decal);
if (distance > fade_begin) {
- fade = 1.0 - (distance - fade_begin) / fade_length;
+ // Use `smoothstep()` to make opacity changes more gradual and less noticeable to the player.
+ fade = Math::smoothstep(0.0f, 1.0f, 1.0f - float(distance - fade_begin) / fade_length);
}
}
Cluster::DecalData &dd = cluster.decals[i];
- Vector3 decal_extents = storage->decal_get_extents(decal);
+ Vector3 decal_extents = texture_storage->decal_get_extents(decal);
Transform3D scale_xform;
scale_xform.basis.scale(decal_extents);
Transform3D to_decal_xform = (p_camera_inverse_xform * di->transform * scale_xform * uv_xform).affine_inverse();
RendererStorageRD::store_transform(to_decal_xform, dd.xform);
- Vector3 normal = xform.basis.get_axis(Vector3::AXIS_Y).normalized();
+ Vector3 normal = xform.basis.get_column(Vector3::AXIS_Y).normalized();
normal = p_camera_inverse_xform.basis.xform(normal); //camera is normalized, so fine
dd.normal[0] = normal.x;
dd.normal[1] = normal.y;
dd.normal[2] = normal.z;
- dd.normal_fade = storage->decal_get_normal_fade(decal);
+ dd.normal_fade = texture_storage->decal_get_normal_fade(decal);
- RID albedo_tex = storage->decal_get_texture(decal, RS::DECAL_TEXTURE_ALBEDO);
- RID emission_tex = storage->decal_get_texture(decal, RS::DECAL_TEXTURE_EMISSION);
+ RID albedo_tex = texture_storage->decal_get_texture(decal, RS::DECAL_TEXTURE_ALBEDO);
+ RID emission_tex = texture_storage->decal_get_texture(decal, RS::DECAL_TEXTURE_EMISSION);
if (albedo_tex.is_valid()) {
- Rect2 rect = storage->decal_atlas_get_texture_rect(albedo_tex);
+ Rect2 rect = texture_storage->decal_atlas_get_texture_rect(albedo_tex);
dd.albedo_rect[0] = rect.position.x;
dd.albedo_rect[1] = rect.position.y;
dd.albedo_rect[2] = rect.size.x;
@@ -3504,10 +3780,10 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
dd.albedo_rect[3] = 0;
}
- RID normal_tex = storage->decal_get_texture(decal, RS::DECAL_TEXTURE_NORMAL);
+ RID normal_tex = texture_storage->decal_get_texture(decal, RS::DECAL_TEXTURE_NORMAL);
if (normal_tex.is_valid()) {
- Rect2 rect = storage->decal_atlas_get_texture_rect(normal_tex);
+ Rect2 rect = texture_storage->decal_atlas_get_texture_rect(normal_tex);
dd.normal_rect[0] = rect.position.x;
dd.normal_rect[1] = rect.position.y;
dd.normal_rect[2] = rect.size.x;
@@ -3522,9 +3798,9 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
dd.normal_rect[3] = 0;
}
- RID orm_tex = storage->decal_get_texture(decal, RS::DECAL_TEXTURE_ORM);
+ RID orm_tex = texture_storage->decal_get_texture(decal, RS::DECAL_TEXTURE_ORM);
if (orm_tex.is_valid()) {
- Rect2 rect = storage->decal_atlas_get_texture_rect(orm_tex);
+ Rect2 rect = texture_storage->decal_atlas_get_texture_rect(orm_tex);
dd.orm_rect[0] = rect.position.x;
dd.orm_rect[1] = rect.position.y;
dd.orm_rect[2] = rect.size.x;
@@ -3537,7 +3813,7 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
}
if (emission_tex.is_valid()) {
- Rect2 rect = storage->decal_atlas_get_texture_rect(emission_tex);
+ Rect2 rect = texture_storage->decal_atlas_get_texture_rect(emission_tex);
dd.emission_rect[0] = rect.position.x;
dd.emission_rect[1] = rect.position.y;
dd.emission_rect[2] = rect.size.x;
@@ -3549,16 +3825,16 @@ void RendererSceneRenderRD::_setup_decals(const PagedArray<RID> &p_decals, const
dd.emission_rect[3] = 0;
}
- Color modulate = storage->decal_get_modulate(decal);
+ Color modulate = texture_storage->decal_get_modulate(decal);
dd.modulate[0] = modulate.r;
dd.modulate[1] = modulate.g;
dd.modulate[2] = modulate.b;
dd.modulate[3] = modulate.a * fade;
- dd.emission_energy = storage->decal_get_emission_energy(decal) * fade;
- dd.albedo_mix = storage->decal_get_albedo_mix(decal);
- dd.mask = storage->decal_get_cull_mask(decal);
- dd.upper_fade = storage->decal_get_upper_fade(decal);
- dd.lower_fade = storage->decal_get_lower_fade(decal);
+ dd.emission_energy = texture_storage->decal_get_emission_energy(decal) * fade;
+ dd.albedo_mix = texture_storage->decal_get_albedo_mix(decal);
+ dd.mask = texture_storage->decal_get_cull_mask(decal);
+ dd.upper_fade = texture_storage->decal_get_upper_fade(decal);
+ dd.lower_fade = texture_storage->decal_get_lower_fade(decal);
if (current_cluster_builder != nullptr) {
current_cluster_builder->add_box(ClusterBuilderRD::BOX_TYPE_DECAL, xform, decal_extents);
@@ -3585,9 +3861,9 @@ void RendererSceneRenderRD::FogShaderData::set_code(const String &p_code) {
return; //just invalid, but no error
}
- ShaderCompilerRD::GeneratedCode gen_code;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["fog"] = ShaderCompilerRD::STAGE_COMPUTE;
+ ShaderCompiler::GeneratedCode gen_code;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["fog"] = ShaderCompiler::STAGE_COMPUTE;
uses_time = false;
@@ -3595,7 +3871,7 @@ void RendererSceneRenderRD::FogShaderData::set_code(const String &p_code) {
actions.uniforms = &uniforms;
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
Error err = scene_singleton->volumetric_fog.compiler.compile(RS::SHADER_FOG, code, &actions, path, gen_code);
ERR_FAIL_COND_MSG(err != OK, "Fog shader compilation failed.");
@@ -3604,7 +3880,7 @@ void RendererSceneRenderRD::FogShaderData::set_code(const String &p_code) {
version = scene_singleton->volumetric_fog.shader.version_create();
}
- scene_singleton->volumetric_fog.shader.version_set_compute_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_COMPUTE], gen_code.defines);
+ scene_singleton->volumetric_fog.shader.version_set_compute_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_COMPUTE], gen_code.defines);
ERR_FAIL_COND(!scene_singleton->volumetric_fog.shader.version_is_valid(version));
ubo_size = gen_code.uniform_total_size;
@@ -3655,13 +3931,13 @@ void RendererSceneRenderRD::FogShaderData::get_param_list(List<PropertyInfo> *p_
}
}
-void RendererSceneRenderRD::FogShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
+void RendererSceneRenderRD::FogShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
for (Map<StringName, ShaderLanguage::ShaderNode::Uniform>::Element *E = uniforms.front(); E; E = E->next()) {
if (E->get().scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
continue;
}
- RendererStorage::InstanceShaderParam p;
+ RendererMaterialStorage::InstanceShaderParam p;
p.info = ShaderLanguage::uniform_to_property_info(E->get());
p.info.name = E->key(); //supply name
p.index = E->get().instance_index;
@@ -3696,17 +3972,13 @@ Variant RendererSceneRenderRD::FogShaderData::get_default_parameter(const String
}
RS::ShaderNativeSourceCode RendererSceneRenderRD::FogShaderData::get_native_source_code() const {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
return scene_singleton->volumetric_fog.shader.version_get_native_source_code(version);
}
-RendererSceneRenderRD::FogShaderData::FogShaderData() {
- valid = false;
-}
-
RendererSceneRenderRD::FogShaderData::~FogShaderData() {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
ERR_FAIL_COND(!scene_singleton);
//pipeline variants will clear themselves if shader is gone
if (version.is_valid()) {
@@ -3718,7 +3990,7 @@ RendererSceneRenderRD::FogShaderData::~FogShaderData() {
// Fog material
bool RendererSceneRenderRD::FogMaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
uniform_set_updated = true;
@@ -3729,24 +4001,23 @@ RendererSceneRenderRD::FogMaterialData::~FogMaterialData() {
free_parameters_uniform_set(uniform_set);
}
-RendererStorageRD::ShaderData *RendererSceneRenderRD::_create_fog_shader_func() {
+RendererRD::ShaderData *RendererSceneRenderRD::_create_fog_shader_func() {
FogShaderData *shader_data = memnew(FogShaderData);
return shader_data;
}
-RendererStorageRD::ShaderData *RendererSceneRenderRD::_create_fog_shader_funcs() {
+RendererRD::ShaderData *RendererSceneRenderRD::_create_fog_shader_funcs() {
return static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton)->_create_fog_shader_func();
};
-RendererStorageRD::MaterialData *RendererSceneRenderRD::_create_fog_material_func(FogShaderData *p_shader) {
+RendererRD::MaterialData *RendererSceneRenderRD::_create_fog_material_func(FogShaderData *p_shader) {
FogMaterialData *material_data = memnew(FogMaterialData);
material_data->shader_data = p_shader;
- material_data->last_frame = false;
//update will happen later anyway so do nothing.
return material_data;
}
-RendererStorageRD::MaterialData *RendererSceneRenderRD::_create_fog_material_funcs(RendererStorageRD::ShaderData *p_shader) {
+RendererRD::MaterialData *RendererSceneRenderRD::_create_fog_material_funcs(RendererRD::ShaderData *p_shader) {
return static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton)->_create_fog_material_func(static_cast<FogShaderData *>(p_shader));
};
@@ -3759,6 +4030,9 @@ void RendererSceneRenderRD::_volumetric_fog_erase(RenderBuffers *rb) {
RD::get_singleton()->free(rb->volumetric_fog->prev_light_density_map);
RD::get_singleton()->free(rb->volumetric_fog->light_density_map);
RD::get_singleton()->free(rb->volumetric_fog->fog_map);
+ RD::get_singleton()->free(rb->volumetric_fog->density_map);
+ RD::get_singleton()->free(rb->volumetric_fog->light_map);
+ RD::get_singleton()->free(rb->volumetric_fog->emissive_map);
if (rb->volumetric_fog->fog_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(rb->volumetric_fog->fog_uniform_set)) {
RD::get_singleton()->free(rb->volumetric_fog->fog_uniform_set);
@@ -3801,6 +4075,9 @@ Vector3i RendererSceneRenderRD::_point_get_position_in_froxel_volume(const Vecto
}
void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_environment, const CameraMatrix &p_cam_projection, const Transform3D &p_cam_transform, RID p_shadow_atlas, int p_directional_light_count, bool p_use_directional_shadows, int p_positional_light_count, int p_voxel_gi_count, const PagedArray<RID> &p_fog_volumes) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
ERR_FAIL_COND(!is_clustered_enabled()); // can't use volumetric fog without clustered
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_buffers);
ERR_FAIL_COND(!rb);
@@ -3822,7 +4099,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
return;
}
- RENDER_TIMESTAMP(">Volumetric Fog");
+ RENDER_TIMESTAMP("> Volumetric Fog");
RD::get_singleton()->draw_command_begin_label("Volumetric Fog");
if (env && env->volumetric_fog_enabled && !rb->volumetric_fog) {
@@ -3884,7 +4161,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.binding = 0;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.ids.push_back(rb->volumetric_fog->fog_map);
+ u.append_id(rb->volumetric_fog->fog_map);
uniforms.push_back(u);
}
@@ -3894,7 +4171,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
if (p_fog_volumes.size() > 0) {
RD::get_singleton()->draw_command_begin_label("Render Volumetric Fog Volumes");
- RENDER_TIMESTAMP("Render Fog Volumes");
+ RENDER_TIMESTAMP("Render FogVolumes");
VolumetricFogShader::VolumeUBO params;
@@ -3949,7 +4226,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 1;
- u.ids.push_back(rb->volumetric_fog->emissive_map);
+ u.append_id(rb->volumetric_fog->emissive_map);
uniforms.push_back(u);
}
@@ -3957,7 +4234,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 2;
- u.ids.push_back(volumetric_fog.volume_ubo);
+ u.append_id(volumetric_fog.volume_ubo);
uniforms.push_back(u);
}
@@ -3969,7 +4246,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 3;
- u.ids.push_back(rb->volumetric_fog->density_map);
+ u.append_id(rb->volumetric_fog->density_map);
uniforms.push_back(u);
}
@@ -3981,7 +4258,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 4;
- u.ids.push_back(rb->volumetric_fog->light_map);
+ u.append_id(rb->volumetric_fog->light_map);
uniforms.push_back(u);
}
@@ -4001,7 +4278,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
FogMaterialData *material = nullptr;
if (fog_material.is_valid()) {
- material = (FogMaterialData *)storage->material_get_data(fog_material, RendererStorageRD::SHADER_TYPE_FOG);
+ material = static_cast<FogMaterialData *>(material_storage->material_get_data(fog_material, RendererRD::SHADER_TYPE_FOG));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -4009,7 +4286,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
if (!material) {
fog_material = volumetric_fog.default_material;
- material = (FogMaterialData *)storage->material_get_data(fog_material, RendererStorageRD::SHADER_TYPE_FOG);
+ material = static_cast<FogMaterialData *>(material_storage->material_get_data(fog_material, RendererRD::SHADER_TYPE_FOG));
}
ERR_FAIL_COND(!material);
@@ -4102,9 +4379,9 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.binding = 1;
ShadowAtlas *shadow_atlas = shadow_atlas_owner.get_or_null(p_shadow_atlas);
if (shadow_atlas == nullptr || shadow_atlas->depth.is_null()) {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK));
} else {
- u.ids.push_back(shadow_atlas->depth);
+ u.append_id(shadow_atlas->depth);
}
uniforms.push_back(u);
@@ -4116,9 +4393,9 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 2;
if (directional_shadow.depth.is_valid()) {
- u.ids.push_back(directional_shadow.depth);
+ u.append_id(directional_shadow.depth);
} else {
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_BLACK));
}
uniforms.push_back(u);
copy_uniforms.push_back(u);
@@ -4128,7 +4405,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 3;
- u.ids.push_back(get_omni_light_buffer());
+ u.append_id(get_omni_light_buffer());
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4136,7 +4413,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 4;
- u.ids.push_back(get_spot_light_buffer());
+ u.append_id(get_spot_light_buffer());
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4145,7 +4422,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 5;
- u.ids.push_back(get_directional_light_buffer());
+ u.append_id(get_directional_light_buffer());
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4154,7 +4431,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 6;
- u.ids.push_back(rb->cluster_builder->get_cluster_buffer());
+ u.append_id(rb->cluster_builder->get_cluster_buffer());
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4163,7 +4440,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 7;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4172,7 +4449,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 8;
- u.ids.push_back(rb->volumetric_fog->light_density_map);
+ u.append_id(rb->volumetric_fog->light_density_map);
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4181,7 +4458,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 9;
- u.ids.push_back(rb->volumetric_fog->fog_map);
+ u.append_id(rb->volumetric_fog->fog_map);
uniforms.push_back(u);
}
@@ -4189,7 +4466,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 9;
- u.ids.push_back(rb->volumetric_fog->prev_light_density_map);
+ u.append_id(rb->volumetric_fog->prev_light_density_map);
copy_uniforms.push_back(u);
}
@@ -4197,7 +4474,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 10;
- u.ids.push_back(shadow_sampler);
+ u.append_id(shadow_sampler);
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4206,7 +4483,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 11;
- u.ids.push_back(render_buffers_get_voxel_gi_buffer(p_render_buffers));
+ u.append_id(render_buffers_get_voxel_gi_buffer(p_render_buffers));
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4216,7 +4493,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 12;
for (int i = 0; i < RendererSceneGIRD::MAX_VOXEL_GI_INSTANCES; i++) {
- u.ids.push_back(rb->gi.voxel_gi_textures[i]);
+ u.append_id(rb->gi.voxel_gi_textures[i]);
}
uniforms.push_back(u);
copy_uniforms.push_back(u);
@@ -4225,7 +4502,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
u.binding = 13;
- u.ids.push_back(storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
+ u.append_id(material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED));
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4233,7 +4510,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 14;
- u.ids.push_back(volumetric_fog.params_ubo);
+ u.append_id(volumetric_fog.params_ubo);
uniforms.push_back(u);
copy_uniforms.push_back(u);
}
@@ -4241,7 +4518,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 15;
- u.ids.push_back(rb->volumetric_fog->prev_light_density_map);
+ u.append_id(rb->volumetric_fog->prev_light_density_map);
uniforms.push_back(u);
}
{
@@ -4252,7 +4529,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 16;
- u.ids.push_back(rb->volumetric_fog->density_map);
+ u.append_id(rb->volumetric_fog->density_map);
uniforms.push_back(u);
}
{
@@ -4263,7 +4540,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 17;
- u.ids.push_back(rb->volumetric_fog->light_map);
+ u.append_id(rb->volumetric_fog->light_map);
uniforms.push_back(u);
}
@@ -4275,7 +4552,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
#endif
u.binding = 18;
- u.ids.push_back(rb->volumetric_fog->emissive_map);
+ u.append_id(rb->volumetric_fog->emissive_map);
uniforms.push_back(u);
}
@@ -4283,9 +4560,9 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 19;
- RID radiance_texture = storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
+ RID radiance_texture = texture_storage->texture_rd_get_default(is_using_radiance_cubemap_array() ? RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK : RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
RID sky_texture = env->sky.is_valid() ? sky.sky_get_radiance_texture_rd(env->sky) : RID();
- u.ids.push_back(sky_texture.is_valid() ? sky_texture : radiance_texture);
+ u.append_id(sky_texture.is_valid() ? sky_texture : radiance_texture);
uniforms.push_back(u);
}
@@ -4293,7 +4570,11 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
rb->volumetric_fog->process_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, volumetric_fog.process_shader.version_get_shader(volumetric_fog.process_shader_version, VolumetricFogShader::VOLUMETRIC_FOG_PROCESS_SHADER_DENSITY), 0);
- SWAP(uniforms.write[7].ids.write[0], uniforms.write[8].ids.write[0]);
+ RID aux7 = uniforms.write[7].get_id(0);
+ RID aux8 = uniforms.write[8].get_id(0);
+
+ uniforms.write[7].set_id(0, aux8);
+ uniforms.write[8].set_id(0, aux7);
rb->volumetric_fog->process_uniform_set2 = RD::get_singleton()->uniform_set_create(uniforms, volumetric_fog.process_shader.version_get_shader(volumetric_fog.process_shader_version, 0), 0);
}
@@ -4308,7 +4589,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
u.binding = 0;
- u.ids.push_back(gi.sdfgi_ubo);
+ u.append_id(gi.sdfgi_ubo);
uniforms.push_back(u);
}
@@ -4316,7 +4597,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 1;
- u.ids.push_back(rb->sdfgi->ambient_texture);
+ u.append_id(rb->sdfgi->ambient_texture);
uniforms.push_back(u);
}
@@ -4324,7 +4605,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 2;
- u.ids.push_back(rb->sdfgi->occlusion_texture);
+ u.append_id(rb->sdfgi->occlusion_texture);
uniforms.push_back(u);
}
@@ -4362,7 +4643,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
params.fog_frustum_end = fog_end;
- Color ambient_color = env->ambient_light.to_linear();
+ Color ambient_color = env->ambient_light.srgb_to_linear();
params.ambient_color[0] = ambient_color.r;
params.ambient_color[1] = ambient_color.g;
params.ambient_color[2] = ambient_color.b;
@@ -4374,13 +4655,13 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
params.directional_light_count = p_directional_light_count;
- Color emission = env->volumetric_fog_emission.to_linear();
+ Color emission = env->volumetric_fog_emission.srgb_to_linear();
params.base_emission[0] = emission.r * env->volumetric_fog_emission_energy;
params.base_emission[1] = emission.g * env->volumetric_fog_emission_energy;
params.base_emission[2] = emission.b * env->volumetric_fog_emission_energy;
params.base_density = env->volumetric_fog_density;
- Color base_scattering = env->volumetric_fog_scattering.to_linear();
+ Color base_scattering = env->volumetric_fog_scattering.srgb_to_linear();
params.base_scattering[0] = base_scattering.r;
params.base_scattering[1] = base_scattering.g;
params.base_scattering[2] = base_scattering.b;
@@ -4488,7 +4769,7 @@ void RendererSceneRenderRD::_update_volumetric_fog(RID p_render_buffers, RID p_e
RD::get_singleton()->compute_list_end(RD::BARRIER_MASK_RASTER);
- RENDER_TIMESTAMP("<Volumetric Fog");
+ RENDER_TIMESTAMP("< Volumetric Fog");
RD::get_singleton()->draw_command_end_label();
RD::get_singleton()->draw_command_end_label();
@@ -4528,8 +4809,9 @@ void RendererSceneRenderRD::_pre_resolve_render(RenderDataRD *p_render_data, boo
}
}
-void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool p_use_ssao, bool p_use_gi, RID p_normal_roughness_buffer, RID p_voxel_gi_buffer) {
+void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool p_use_ssao, bool p_use_ssil, bool p_use_gi, RID p_normal_roughness_buffer, RID p_voxel_gi_buffer) {
// Render shadows while GI is rendering, due to how barriers are handled, this should happen at the same time
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
if (p_render_data->render_buffers.is_valid() && p_use_gi) {
RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_data->render_buffers);
@@ -4543,15 +4825,15 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
render_state.shadows.clear();
render_state.directional_shadows.clear();
- Plane camera_plane(-p_render_data->cam_transform.basis.get_axis(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
+ Plane camera_plane(-p_render_data->cam_transform.basis.get_column(Vector3::AXIS_Z), p_render_data->cam_transform.origin);
float lod_distance_multiplier = p_render_data->cam_projection.get_lod_multiplier();
{
for (int i = 0; i < render_state.render_shadow_count; i++) {
LightInstance *li = light_instance_owner.get_or_null(render_state.render_shadows[i].light);
- if (storage->light_get_type(li->light) == RS::LIGHT_DIRECTIONAL) {
+ if (light_storage->light_get_type(li->light) == RS::LIGHT_DIRECTIONAL) {
render_state.directional_shadows.push_back(i);
- } else if (storage->light_get_type(li->light) == RS::LIGHT_OMNI && storage->light_omni_get_shadow_mode(li->light) == RS::LIGHT_OMNI_SHADOW_CUBE) {
+ } else if (light_storage->light_get_type(li->light) == RS::LIGHT_OMNI && light_storage->light_omni_get_shadow_mode(li->light) == RS::LIGHT_OMNI_SHADOW_CUBE) {
render_state.cube_shadows.push_back(i);
} else {
render_state.shadows.push_back(i);
@@ -4560,7 +4842,7 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
//cube shadows are rendered in their own way
for (uint32_t i = 0; i < render_state.cube_shadows.size(); i++) {
- _render_shadow_pass(render_state.render_shadows[render_state.cube_shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.cube_shadows[i]].pass, render_state.render_shadows[render_state.cube_shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_lod_threshold, true, true, true, p_render_data->render_info);
+ _render_shadow_pass(render_state.render_shadows[render_state.cube_shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.cube_shadows[i]].pass, render_state.render_shadows[render_state.cube_shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, true, true, true, p_render_data->render_info);
}
if (render_state.directional_shadows.size()) {
@@ -4577,7 +4859,7 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
bool render_gi = p_render_data->render_buffers.is_valid() && p_use_gi;
if (render_shadows && render_gi) {
- RENDER_TIMESTAMP("Render GI + Render Shadows (parallel)");
+ RENDER_TIMESTAMP("Render GI + Render Shadows (Parallel)");
} else if (render_shadows) {
RENDER_TIMESTAMP("Render Shadows");
} else if (render_gi) {
@@ -4590,11 +4872,11 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
//render directional shadows
for (uint32_t i = 0; i < render_state.directional_shadows.size(); i++) {
- _render_shadow_pass(render_state.render_shadows[render_state.directional_shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.directional_shadows[i]].pass, render_state.render_shadows[render_state.directional_shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_lod_threshold, false, i == render_state.directional_shadows.size() - 1, false, p_render_data->render_info);
+ _render_shadow_pass(render_state.render_shadows[render_state.directional_shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.directional_shadows[i]].pass, render_state.render_shadows[render_state.directional_shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, false, i == render_state.directional_shadows.size() - 1, false, p_render_data->render_info);
}
//render positional shadows
for (uint32_t i = 0; i < render_state.shadows.size(); i++) {
- _render_shadow_pass(render_state.render_shadows[render_state.shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.shadows[i]].pass, render_state.render_shadows[render_state.shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_lod_threshold, i == 0, i == render_state.shadows.size() - 1, true, p_render_data->render_info);
+ _render_shadow_pass(render_state.render_shadows[render_state.shadows[i]].light, p_render_data->shadow_atlas, render_state.render_shadows[render_state.shadows[i]].pass, render_state.render_shadows[render_state.shadows[i]].instances, camera_plane, lod_distance_multiplier, p_render_data->screen_mesh_lod_threshold, i == 0, i == render_state.shadows.size() - 1, true, p_render_data->render_info);
}
_render_shadow_process();
@@ -4615,9 +4897,40 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
}
if (p_render_data->render_buffers.is_valid()) {
+ if (p_use_ssao || p_use_ssil) {
+ RenderBuffers *rb = render_buffers_owner.get_or_null(p_render_data->render_buffers);
+ ERR_FAIL_COND(!rb);
+
+ bool invalidate_uniform_set = false;
+ if (rb->ss_effects.linear_depth.is_null()) {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_R16_SFLOAT;
+ tf.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ tf.width = (rb->width + 1) / 2;
+ tf.height = (rb->height + 1) / 2;
+ tf.mipmaps = 5;
+ tf.array_layers = 4;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+ rb->ss_effects.linear_depth = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rb->ss_effects.linear_depth, "SS Effects Depth");
+ for (uint32_t i = 0; i < tf.mipmaps; i++) {
+ RID slice = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rb->ss_effects.linear_depth, 0, i, 1, RD::TEXTURE_SLICE_2D_ARRAY);
+ rb->ss_effects.linear_depth_slices.push_back(slice);
+ RD::get_singleton()->set_resource_name(slice, "SS Effects Depth Mip " + itos(i) + " ");
+ }
+ invalidate_uniform_set = true;
+ }
+
+ storage->get_effects()->downsample_depth(rb->depth_texture, rb->ss_effects.linear_depth_slices, ssao_quality, ssil_quality, invalidate_uniform_set, ssao_half_size, ssil_half_size, Size2i(rb->width, rb->height), p_render_data->cam_projection);
+ }
+
if (p_use_ssao) {
_process_ssao(p_render_data->render_buffers, p_render_data->environment, p_normal_roughness_buffer, p_render_data->cam_projection);
}
+
+ if (p_use_ssil) {
+ _process_ssil(p_render_data->render_buffers, p_render_data->environment, p_normal_roughness_buffer, p_render_data->cam_projection, p_render_data->cam_transform);
+ }
}
//full barrier here, we need raster, transfer and compute and it depends from the previous work
@@ -4630,7 +4943,7 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
bool using_shadows = true;
if (p_render_data->reflection_probe.is_valid()) {
- if (!storage->reflection_probe_renders_shadows(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
+ if (!RSG::light_storage->reflection_probe_renders_shadows(reflection_probe_instance_get_probe(p_render_data->reflection_probe))) {
using_shadows = false;
}
} else {
@@ -4663,7 +4976,9 @@ void RendererSceneRenderRD::_pre_opaque_render(RenderDataRD *p_render_data, bool
}
}
-void RendererSceneRenderRD::render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data, RendererScene::RenderInfo *r_render_info) {
+void RendererSceneRenderRD::render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data, RendererScene::RenderInfo *r_render_info) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
// getting this here now so we can direct call a bunch of things more easily
RenderBuffers *rb = nullptr;
if (p_render_buffers.is_valid()) {
@@ -4680,7 +4995,7 @@ void RendererSceneRenderRD::render_scene(RID p_render_buffers, const CameraData
render_data.cam_transform = p_camera_data->main_transform;
render_data.cam_projection = p_camera_data->main_projection;
render_data.view_projection[0] = p_camera_data->main_projection;
- render_data.cam_ortogonal = p_camera_data->is_ortogonal;
+ render_data.cam_orthogonal = p_camera_data->is_orthogonal;
render_data.view_count = p_camera_data->view_count;
for (uint32_t v = 0; v < p_camera_data->view_count; v++) {
@@ -4706,12 +5021,12 @@ void RendererSceneRenderRD::render_scene(RID p_render_buffers, const CameraData
// this should be the same for all cameras..
render_data.lod_distance_multiplier = p_camera_data->main_projection.get_lod_multiplier();
- render_data.lod_camera_plane = Plane(-p_camera_data->main_transform.basis.get_axis(Vector3::AXIS_Z), p_camera_data->main_transform.get_origin());
+ render_data.lod_camera_plane = Plane(-p_camera_data->main_transform.basis.get_column(Vector3::AXIS_Z), p_camera_data->main_transform.get_origin());
if (get_debug_draw_mode() == RS::VIEWPORT_DEBUG_DRAW_DISABLE_LOD) {
- render_data.screen_lod_threshold = 0.0;
+ render_data.screen_mesh_lod_threshold = 0.0;
} else {
- render_data.screen_lod_threshold = p_screen_lod_threshold;
+ render_data.screen_mesh_lod_threshold = p_screen_mesh_lod_threshold;
}
render_state.render_shadows = p_render_shadows;
@@ -4742,7 +5057,7 @@ void RendererSceneRenderRD::render_scene(RID p_render_buffers, const CameraData
Color clear_color;
if (p_render_buffers.is_valid()) {
- clear_color = storage->render_target_get_clear_request_color(rb->render_target);
+ clear_color = texture_storage->render_target_get_clear_request_color(rb->render_target);
} else {
clear_color = storage->get_default_clear_color();
}
@@ -4837,7 +5152,7 @@ void RendererSceneRenderRD::_debug_draw_cluster(RID p_render_buffers) {
}
}
-void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas, int p_pass, const PagedArray<GeometryInstance *> &p_instances, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_lod_threshold, bool p_open_pass, bool p_close_pass, bool p_clear_region, RendererScene::RenderInfo *p_render_info) {
+void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas, int p_pass, const PagedArray<GeometryInstance *> &p_instances, const Plane &p_camera_plane, float p_lod_distance_multiplier, float p_screen_mesh_lod_threshold, bool p_open_pass, bool p_close_pass, bool p_clear_region, RendererScene::RenderInfo *p_render_info) {
LightInstance *light_instance = light_instance_owner.get_or_null(p_light);
ERR_FAIL_COND(!light_instance);
@@ -4861,7 +5176,7 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
CameraMatrix light_projection;
Transform3D light_transform;
- if (storage->light_get_type(light_instance->light) == RS::LIGHT_DIRECTIONAL) {
+ if (RSG::light_storage->light_get_type(light_instance->light) == RS::LIGHT_DIRECTIONAL) {
//set pssm stuff
if (light_instance->last_scene_shadow_pass != scene_pass) {
light_instance->directional_rect = _get_directional_shadow_rect(directional_shadow.size, directional_shadow.light_count, directional_shadow.current_light);
@@ -4869,13 +5184,13 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
light_instance->last_scene_shadow_pass = scene_pass;
}
- use_pancake = storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE) > 0;
+ use_pancake = RSG::light_storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE) > 0;
light_projection = light_instance->shadow_transform[p_pass].camera;
light_transform = light_instance->shadow_transform[p_pass].transform;
atlas_rect = light_instance->directional_rect;
- if (storage->light_directional_get_shadow_mode(light_instance->light) == RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_4_SPLITS) {
+ if (RSG::light_storage->light_directional_get_shadow_mode(light_instance->light) == RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_4_SPLITS) {
atlas_rect.size.width /= 2;
atlas_rect.size.height /= 2;
@@ -4886,7 +5201,7 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
} else if (p_pass == 3) {
atlas_rect.position += atlas_rect.size;
}
- } else if (storage->light_directional_get_shadow_mode(light_instance->light) == RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS) {
+ } else if (RSG::light_storage->light_directional_get_shadow_mode(light_instance->light) == RS::LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS) {
atlas_rect.size.height /= 2;
if (p_pass == 0) {
@@ -4900,7 +5215,7 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
light_instance->shadow_transform[p_pass].atlas_rect.position /= directional_shadow.size;
light_instance->shadow_transform[p_pass].atlas_rect.size /= directional_shadow.size;
- zfar = storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_RANGE);
+ zfar = RSG::light_storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_RANGE);
render_fb = directional_shadow.fb;
render_texture = RID();
@@ -4934,13 +5249,13 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
atlas_rect.size.width = shadow_size;
atlas_rect.size.height = shadow_size;
- zfar = storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_RANGE);
+ zfar = RSG::light_storage->light_get_param(light_instance->light, RS::LIGHT_PARAM_RANGE);
- if (storage->light_get_type(light_instance->light) == RS::LIGHT_OMNI) {
+ if (RSG::light_storage->light_get_type(light_instance->light) == RS::LIGHT_OMNI) {
bool wrap = (shadow + 1) % shadow_atlas->quadrants[quadrant].subdivision == 0;
dual_paraboloid_offset = wrap ? Vector2i(1 - shadow_atlas->quadrants[quadrant].subdivision, 1) : Vector2i(1, 0);
- if (storage->light_omni_get_shadow_mode(light_instance->light) == RS::LIGHT_OMNI_SHADOW_CUBE) {
+ if (RSG::light_storage->light_omni_get_shadow_mode(light_instance->light) == RS::LIGHT_OMNI_SHADOW_CUBE) {
ShadowCubemap *cubemap = _get_shadow_cubemap(shadow_size / 2);
render_fb = cubemap->side_fb[p_pass];
@@ -4975,7 +5290,7 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
flip_y = true;
}
- } else if (storage->light_get_type(light_instance->light) == RS::LIGHT_SPOT) {
+ } else if (RSG::light_storage->light_get_type(light_instance->light) == RS::LIGHT_SPOT) {
light_projection = light_instance->shadow_transform[0].camera;
light_transform = light_instance->shadow_transform[0].transform;
@@ -4987,7 +5302,7 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
if (render_cubemap) {
//rendering to cubemap
- _render_shadow_append(render_fb, p_instances, light_projection, light_transform, zfar, 0, 0, false, false, use_pancake, p_camera_plane, p_lod_distance_multiplier, p_screen_lod_threshold, Rect2(), false, true, true, true, p_render_info);
+ _render_shadow_append(render_fb, p_instances, light_projection, light_transform, zfar, 0, 0, false, false, use_pancake, p_camera_plane, p_lod_distance_multiplier, p_screen_mesh_lod_threshold, Rect2(), false, true, true, true, p_render_info);
if (finalize_cubemap) {
_render_shadow_process();
_render_shadow_end();
@@ -5005,17 +5320,19 @@ void RendererSceneRenderRD::_render_shadow_pass(RID p_light, RID p_shadow_atlas,
} else {
//render shadow
- _render_shadow_append(render_fb, p_instances, light_projection, light_transform, zfar, 0, 0, using_dual_paraboloid, using_dual_paraboloid_flip, use_pancake, p_camera_plane, p_lod_distance_multiplier, p_screen_lod_threshold, atlas_rect, flip_y, p_clear_region, p_open_pass, p_close_pass, p_render_info);
+ _render_shadow_append(render_fb, p_instances, light_projection, light_transform, zfar, 0, 0, using_dual_paraboloid, using_dual_paraboloid_flip, use_pancake, p_camera_plane, p_lod_distance_multiplier, p_screen_mesh_lod_threshold, atlas_rect, flip_y, p_clear_region, p_open_pass, p_close_pass, p_render_info);
}
}
-void RendererSceneRenderRD::render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
- _render_material(p_cam_transform, p_cam_projection, p_cam_ortogonal, p_instances, p_framebuffer, p_region);
+void RendererSceneRenderRD::render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) {
+ _render_material(p_cam_transform, p_cam_projection, p_cam_orthogonal, p_instances, p_framebuffer, p_region);
}
void RendererSceneRenderRD::render_particle_collider_heightfield(RID p_collider, const Transform3D &p_transform, const PagedArray<GeometryInstance *> &p_instances) {
- ERR_FAIL_COND(!storage->particles_collision_is_heightfield(p_collider));
- Vector3 extents = storage->particles_collision_get_extents(p_collider) * p_transform.basis.get_scale();
+ RendererRD::ParticlesStorage *particles_storage = RendererRD::ParticlesStorage::get_singleton();
+
+ ERR_FAIL_COND(!particles_storage->particles_collision_is_heightfield(p_collider));
+ Vector3 extents = particles_storage->particles_collision_get_extents(p_collider) * p_transform.basis.get_scale();
CameraMatrix cm;
cm.set_orthogonal(-extents.x, extents.x, -extents.z, extents.z, 0, extents.y * 2.0);
@@ -5023,9 +5340,9 @@ void RendererSceneRenderRD::render_particle_collider_heightfield(RID p_collider,
cam_pos.y += extents.y;
Transform3D cam_xform;
- cam_xform.set_look_at(cam_pos, cam_pos - p_transform.basis.get_axis(Vector3::AXIS_Y), -p_transform.basis.get_axis(Vector3::AXIS_Z).normalized());
+ cam_xform.set_look_at(cam_pos, cam_pos - p_transform.basis.get_column(Vector3::AXIS_Y), -p_transform.basis.get_column(Vector3::AXIS_Z).normalized());
- RID fb = storage->particles_collision_get_heightfield_framebuffer(p_collider);
+ RID fb = particles_storage->particles_collision_get_heightfield_framebuffer(p_collider);
_render_particle_collider_heightfield(fb, cam_xform, cm, p_instances);
}
@@ -5191,7 +5508,7 @@ TypedArray<Image> RendererSceneRenderRD::bake_render_uv2(RID p_base, const Vecto
GeometryInstance *gi = geometry_instance_create(p_base);
- uint32_t sc = RSG::storage->mesh_get_surface_count(p_base);
+ uint32_t sc = RSG::mesh_storage->mesh_get_surface_count(p_base);
Vector<RID> materials;
materials.resize(sc);
@@ -5308,6 +5625,8 @@ RendererSceneRenderRD::RendererSceneRenderRD(RendererStorageRD *p_storage) {
}
void RendererSceneRenderRD::init() {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
max_cluster_elements = get_max_elements();
directional_shadow.size = GLOBAL_GET("rendering/shadows/directional_shadow/size");
@@ -5364,13 +5683,13 @@ void RendererSceneRenderRD::init() {
volumetric_fog_modes.push_back("");
volumetric_fog.shader.initialize(volumetric_fog_modes);
- storage->shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_FOG, _create_fog_shader_funcs);
- storage->material_set_data_request_function(RendererStorageRD::SHADER_TYPE_FOG, _create_fog_material_funcs);
+ material_storage->shader_set_data_request_function(RendererRD::SHADER_TYPE_FOG, _create_fog_shader_funcs);
+ material_storage->material_set_data_request_function(RendererRD::SHADER_TYPE_FOG, _create_fog_material_funcs);
volumetric_fog.volume_ubo = RD::get_singleton()->uniform_buffer_create(sizeof(VolumetricFogShader::VolumeUBO));
}
{
- ShaderCompilerRD::DefaultIdentifierActions actions;
+ ShaderCompiler::DefaultIdentifierActions actions;
actions.renames["TIME"] = "scene_params.time";
actions.renames["PI"] = _MKSTR(Math_PI);
@@ -5404,9 +5723,9 @@ void RendererSceneRenderRD::init() {
{
// default material and shader for fog shader
- volumetric_fog.default_shader = storage->shader_allocate();
- storage->shader_initialize(volumetric_fog.default_shader);
- storage->shader_set_code(volumetric_fog.default_shader, R"(
+ volumetric_fog.default_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(volumetric_fog.default_shader);
+ material_storage->shader_set_code(volumetric_fog.default_shader, R"(
// Default fog shader.
shader_type fog;
@@ -5416,33 +5735,33 @@ void fog() {
ALBEDO = vec3(1.0);
}
)");
- volumetric_fog.default_material = storage->material_allocate();
- storage->material_initialize(volumetric_fog.default_material);
- storage->material_set_shader(volumetric_fog.default_material, volumetric_fog.default_shader);
+ volumetric_fog.default_material = material_storage->material_allocate();
+ material_storage->material_initialize(volumetric_fog.default_material);
+ material_storage->material_set_shader(volumetric_fog.default_material, volumetric_fog.default_shader);
- FogMaterialData *md = (FogMaterialData *)storage->material_get_data(volumetric_fog.default_material, RendererStorageRD::SHADER_TYPE_FOG);
+ FogMaterialData *md = static_cast<FogMaterialData *>(material_storage->material_get_data(volumetric_fog.default_material, RendererRD::SHADER_TYPE_FOG));
volumetric_fog.default_shader_rd = volumetric_fog.shader.version_get_shader(md->shader_data->version, 0);
Vector<RD::Uniform> uniforms;
{
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 1;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 1, ids);
uniforms.push_back(u);
}
@@ -5450,7 +5769,7 @@ void fog() {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(storage->global_variables_get_storage_buffer());
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->global_variables_get_storage_buffer());
uniforms.push_back(u);
}
@@ -5499,6 +5818,9 @@ void fog() {
sss_quality = RS::SubSurfaceScatteringQuality(int(GLOBAL_GET("rendering/environment/subsurface_scattering/subsurface_scattering_quality")));
sss_scale = GLOBAL_GET("rendering/environment/subsurface_scattering/subsurface_scattering_scale");
sss_depth_scale = GLOBAL_GET("rendering/environment/subsurface_scattering/subsurface_scattering_depth_scale");
+
+ environment_set_ssil_quality(RS::EnvironmentSSILQuality(int(GLOBAL_GET("rendering/environment/ssil/quality"))), GLOBAL_GET("rendering/environment/ssil/half_size"), GLOBAL_GET("rendering/environment/ssil/adaptive_target"), GLOBAL_GET("rendering/environment/ssil/blur_passes"), GLOBAL_GET("rendering/environment/ssil/fadeout_from"), GLOBAL_GET("rendering/environment/ssil/fadeout_to"));
+
directional_penumbra_shadow_kernel = memnew_arr(float, 128);
directional_soft_shadow_kernel = memnew_arr(float, 128);
penumbra_shadow_kernel = memnew_arr(float, 128);
@@ -5513,9 +5835,17 @@ void fog() {
light_projectors_set_filter(RS::LightProjectorFilter(int(GLOBAL_GET("rendering/textures/light_projectors/filter"))));
cull_argument.set_page_pool(&cull_argument_pool);
+
+ tone_mapper = memnew(RendererRD::ToneMapper);
}
RendererSceneRenderRD::~RendererSceneRenderRD() {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ if (tone_mapper) {
+ memdelete(tone_mapper);
+ }
+
for (const KeyValue<int, ShadowCubemap> &E : shadow_cubemaps) {
RD::get_singleton()->free(E.value.cubemap);
}
@@ -5532,20 +5862,10 @@ RendererSceneRenderRD::~RendererSceneRenderRD() {
volumetric_fog.process_shader.version_free(volumetric_fog.process_shader_version);
RD::get_singleton()->free(volumetric_fog.volume_ubo);
RD::get_singleton()->free(volumetric_fog.params_ubo);
- storage->free(volumetric_fog.default_shader);
- storage->free(volumetric_fog.default_material);
- }
-
- RendererSceneSkyRD::SkyMaterialData *md = (RendererSceneSkyRD::SkyMaterialData *)storage->material_get_data(sky.sky_shader.default_material, RendererStorageRD::SHADER_TYPE_SKY);
- sky.sky_shader.shader.version_free(md->shader_data->version);
- RD::get_singleton()->free(sky.sky_scene_state.directional_light_buffer);
- RD::get_singleton()->free(sky.sky_scene_state.uniform_buffer);
- memdelete_arr(sky.sky_scene_state.directional_lights);
- memdelete_arr(sky.sky_scene_state.last_frame_directional_lights);
- storage->free(sky.sky_shader.default_shader);
- storage->free(sky.sky_shader.default_material);
- storage->free(sky.sky_scene_state.fog_shader);
- storage->free(sky.sky_scene_state.fog_material);
+ material_storage->shader_free(volumetric_fog.default_shader);
+ material_storage->material_free(volumetric_fog.default_material);
+ }
+
memdelete_arr(directional_penumbra_shadow_kernel);
memdelete_arr(directional_soft_shadow_kernel);
memdelete_arr(penumbra_shadow_kernel);
diff --git a/servers/rendering/renderer_rd/renderer_scene_render_rd.h b/servers/rendering/renderer_rd/renderer_scene_render_rd.h
index 98ab1a2c3c..6bf3a95dd0 100644
--- a/servers/rendering/renderer_rd/renderer_scene_render_rd.h
+++ b/servers/rendering/renderer_rd/renderer_scene_render_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -35,6 +35,7 @@
#include "core/templates/rid_owner.h"
#include "servers/rendering/renderer_compositor.h"
#include "servers/rendering/renderer_rd/cluster_builder_rd.h"
+#include "servers/rendering/renderer_rd/effects/tone_mapper.h"
#include "servers/rendering/renderer_rd/renderer_scene_environment_rd.h"
#include "servers/rendering/renderer_rd/renderer_scene_gi_rd.h"
#include "servers/rendering/renderer_rd/renderer_scene_sky_rd.h"
@@ -46,11 +47,11 @@
#include "servers/rendering/rendering_device.h"
struct RenderDataRD {
- RID render_buffers = RID();
+ RID render_buffers;
- Transform3D cam_transform = Transform3D();
- CameraMatrix cam_projection = CameraMatrix();
- bool cam_ortogonal = false;
+ Transform3D cam_transform;
+ CameraMatrix cam_projection;
+ bool cam_orthogonal = false;
// For stereo rendering
uint32_t view_count = 1;
@@ -66,18 +67,18 @@ struct RenderDataRD {
const PagedArray<RID> *decals = nullptr;
const PagedArray<RID> *lightmaps = nullptr;
const PagedArray<RID> *fog_volumes = nullptr;
- RID environment = RID();
- RID camera_effects = RID();
- RID shadow_atlas = RID();
- RID reflection_atlas = RID();
- RID reflection_probe = RID();
+ RID environment;
+ RID camera_effects;
+ RID shadow_atlas;
+ RID reflection_atlas;
+ RID reflection_probe;
int reflection_probe_pass = 0;
float lod_distance_multiplier = 0.0;
- Plane lod_camera_plane = Plane();
- float screen_lod_threshold = 0.0;
+ Plane lod_camera_plane;
+ float screen_mesh_lod_threshold = 0.0;
- RID cluster_buffer = RID();
+ RID cluster_buffer;
uint32_t cluster_size = 0;
uint32_t cluster_max_elements = 0;
@@ -92,9 +93,10 @@ class RendererSceneRenderRD : public RendererSceneRender {
friend RendererSceneGIRD;
protected:
- RendererStorageRD *storage;
- double time;
- double time_step = 0;
+ RendererStorageRD *storage = nullptr;
+ RendererRD::ToneMapper *tone_mapper = nullptr;
+ double time = 0.0;
+ double time_step = 0.0;
struct RenderBufferData {
virtual void configure(RID p_color_buffer, RID p_depth_buffer, RID p_target_buffer, int p_width, int p_height, RS::ViewportMSAA p_msaa, uint32_t p_view_count) = 0;
@@ -109,11 +111,11 @@ protected:
virtual void _render_scene(RenderDataRD *p_render_data, const Color &p_default_color) = 0;
virtual void _render_shadow_begin() = 0;
- virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) = 0;
+ virtual void _render_shadow_append(RID p_framebuffer, const PagedArray<GeometryInstance *> &p_instances, const CameraMatrix &p_projection, const Transform3D &p_transform, float p_zfar, float p_bias, float p_normal_bias, bool p_use_dp, bool p_use_dp_flip, bool p_use_pancake, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0.0, float p_screen_mesh_lod_threshold = 0.0, const Rect2i &p_rect = Rect2i(), bool p_flip_y = false, bool p_clear_region = true, bool p_begin = true, bool p_end = true, RendererScene::RenderInfo *p_render_info = nullptr) = 0;
virtual void _render_shadow_process() = 0;
virtual void _render_shadow_end(uint32_t p_barrier = RD::BARRIER_MASK_ALL) = 0;
- virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) = 0;
+ virtual void _render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) = 0;
virtual void _render_uv2(const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) = 0;
virtual void _render_sdfgi(RID p_render_buffers, const Vector3i &p_from, const Vector3i &p_size, const AABB &p_bounds, const PagedArray<GeometryInstance *> &p_instances, const RID &p_albedo_texture, const RID &p_emission_texture, const RID &p_emission_aniso_texture, const RID &p_geom_facing_texture) = 0;
virtual void _render_particle_collider_heightfield(RID p_fb, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, const PagedArray<GeometryInstance *> &p_instances) = 0;
@@ -129,12 +131,15 @@ protected:
void _process_ssao(RID p_render_buffers, RID p_environment, RID p_normal_buffer, const CameraMatrix &p_projection);
void _process_ssr(RID p_render_buffers, RID p_dest_framebuffer, RID p_normal_buffer, RID p_specular_buffer, RID p_metallic, const Color &p_metallic_mask, RID p_environment, const CameraMatrix &p_projection, bool p_use_additive);
void _process_sss(RID p_render_buffers, const CameraMatrix &p_camera);
+ void _process_ssil(RID p_render_buffers, RID p_environment, RID p_normal_buffer, const CameraMatrix &p_projection, const Transform3D &p_transform);
+ void _copy_framebuffer_to_ssil(RID p_render_buffers);
+ void _ensure_ss_effects(RID p_render_buffers, bool p_using_ssil);
bool _needs_post_prepass_render(RenderDataRD *p_render_data, bool p_use_gi);
void _post_prepass_render(RenderDataRD *p_render_data, bool p_use_gi);
void _pre_resolve_render(RenderDataRD *p_render_data, bool p_use_gi);
- void _pre_opaque_render(RenderDataRD *p_render_data, bool p_use_ssao, bool p_use_gi, RID p_normal_roughness_buffer, RID p_voxel_gi_buffer);
+ void _pre_opaque_render(RenderDataRD *p_render_data, bool p_use_ssao, bool p_use_ssil, bool p_use_gi, RID p_normal_roughness_buffer, RID p_voxel_gi_buffer);
void _render_buffers_copy_screen_texture(const RenderDataRD *p_render_data);
void _render_buffers_copy_depth_texture(const RenderDataRD *p_render_data);
@@ -231,7 +236,7 @@ private:
struct DecalInstance {
RID decal;
Transform3D transform;
- uint32_t cull_mask;
+ uint32_t cull_mask = 0;
ForwardID forward_id = -1;
};
@@ -251,7 +256,7 @@ private:
struct ShadowShrinkStage {
RID texture;
RID filter_texture;
- uint32_t size;
+ uint32_t size = 0;
};
struct ShadowAtlas {
@@ -263,34 +268,27 @@ private:
};
struct Quadrant {
- uint32_t subdivision;
+ uint32_t subdivision = 0;
struct Shadow {
RID owner;
- uint64_t version;
- uint64_t fog_version; // used for fog
- uint64_t alloc_tick;
-
- Shadow() {
- version = 0;
- fog_version = 0;
- alloc_tick = 0;
- }
+ uint64_t version = 0;
+ uint64_t fog_version = 0; // used for fog
+ uint64_t alloc_tick = 0;
+
+ Shadow() {}
};
Vector<Shadow> shadows;
- Quadrant() {
- subdivision = 0; //not in use
- }
-
+ Quadrant() {}
} quadrants[4];
int size_order[4] = { 0, 1, 2, 3 };
uint32_t smallest_subdiv = 0;
int size = 0;
- bool use_16_bits = false;
+ bool use_16_bits = true;
RID depth;
RID fb; //for copying
@@ -311,10 +309,10 @@ private:
float shadows_quality_radius = 1.0;
float directional_shadow_quality_radius = 1.0;
- float *directional_penumbra_shadow_kernel;
- float *directional_soft_shadow_kernel;
- float *penumbra_shadow_kernel;
- float *soft_shadow_kernel;
+ float *directional_penumbra_shadow_kernel = nullptr;
+ float *directional_soft_shadow_kernel = nullptr;
+ float *penumbra_shadow_kernel = nullptr;
+ float *soft_shadow_kernel = nullptr;
int directional_penumbra_shadow_samples = 0;
int directional_soft_shadow_samples = 0;
int penumbra_shadow_samples = 0;
@@ -330,9 +328,8 @@ private:
int light_count = 0;
int size = 0;
- bool use_16_bits = false;
+ bool use_16_bits = true;
int current_light = 0;
-
} directional_shadow;
void _update_directional_shadow_atlas();
@@ -415,9 +412,17 @@ private:
float ssao_fadeout_from = 50.0;
float ssao_fadeout_to = 300.0;
+ RS::EnvironmentSSILQuality ssil_quality = RS::ENV_SSIL_QUALITY_MEDIUM;
+ bool ssil_half_size = false;
+ bool ssil_using_half_size = false;
+ float ssil_adaptive_target = 0.5;
+ int ssil_blur_passes = 4;
+ float ssil_fadeout_from = 50.0;
+ float ssil_fadeout_to = 300.0;
+
bool glow_bicubic_upscale = false;
bool glow_high_quality = false;
- RS::EnvironmentSSRRoughnessQuality ssr_roughness_quality = RS::ENV_SSR_ROUGNESS_QUALITY_LOW;
+ RS::EnvironmentSSRRoughnessQuality ssr_roughness_quality = RS::ENV_SSR_ROUGHNESS_QUALITY_LOW;
mutable RID_Owner<RendererSceneEnvironmentRD, true> environment_owner;
@@ -524,20 +529,47 @@ private:
RID current_fb;
} luminance;
- struct SSAO {
- RID depth;
- Vector<RID> depth_slices;
- RID ao_deinterleaved;
- Vector<RID> ao_deinterleaved_slices;
- RID ao_pong;
- Vector<RID> ao_pong_slices;
- RID ao_final;
- RID importance_map[2];
+ struct SSEffects {
+ RID linear_depth;
+ Vector<RID> linear_depth_slices;
RID downsample_uniform_set;
- RID gather_uniform_set;
- RID importance_map_uniform_set;
- } ssao;
+
+ RID last_frame;
+ Vector<RID> last_frame_slices;
+
+ CameraMatrix last_frame_projection;
+ Transform3D last_frame_transform;
+
+ struct SSAO {
+ RID ao_deinterleaved;
+ Vector<RID> ao_deinterleaved_slices;
+ RID ao_pong;
+ Vector<RID> ao_pong_slices;
+ RID ao_final;
+ RID importance_map[2];
+ RID depth_texture_view;
+
+ RID gather_uniform_set;
+ RID importance_map_uniform_set;
+ } ssao;
+
+ struct SSIL {
+ RID ssil_final;
+ RID deinterleaved;
+ Vector<RID> deinterleaved_slices;
+ RID pong;
+ Vector<RID> pong_slices;
+ RID edges;
+ Vector<RID> edges_slices;
+ RID importance_map[2];
+ RID depth_texture_view;
+
+ RID gather_uniform_set;
+ RID importance_map_uniform_set;
+ RID projection_uniform_set;
+ } ssil;
+ } ss_effects;
struct SSR {
RID normal_scaled;
@@ -640,10 +672,6 @@ private:
float shadow_range_begin[4];
float shadow_split_offsets[4];
float shadow_matrices[4][16];
- float shadow_color1[4];
- float shadow_color2[4];
- float shadow_color3[4];
- float shadow_color4[4];
float uv_scale1[2];
float uv_scale2[2];
float uv_scale3[2];
@@ -671,27 +699,27 @@ private:
template <class T>
struct InstanceSort {
float depth;
- T *instance;
+ T *instance = nullptr;
bool operator<(const InstanceSort &p_sort) const {
return depth < p_sort.depth;
}
};
- ReflectionData *reflections;
+ ReflectionData *reflections = nullptr;
InstanceSort<ReflectionProbeInstance> *reflection_sort;
uint32_t max_reflections;
RID reflection_buffer;
uint32_t max_reflection_probes_per_instance;
uint32_t reflection_count = 0;
- DecalData *decals;
+ DecalData *decals = nullptr;
InstanceSort<DecalInstance> *decal_sort;
uint32_t max_decals;
RID decal_buffer;
uint32_t decal_count;
- LightData *omni_lights;
- LightData *spot_lights;
+ LightData *omni_lights = nullptr;
+ LightData *spot_lights = nullptr;
InstanceSort<LightInstance> *omni_light_sort;
InstanceSort<LightInstance> *spot_light_sort;
@@ -701,7 +729,7 @@ private:
uint32_t omni_light_count = 0;
uint32_t spot_light_count = 0;
- DirectionalLightData *directional_lights;
+ DirectionalLightData *directional_lights = nullptr;
uint32_t max_directional_lights;
RID directional_light_buffer;
@@ -796,7 +824,7 @@ private:
float transform[16];
};
- ShaderCompilerRD compiler;
+ ShaderCompiler compiler;
VolumetricFogShaderRD shader;
FogPushConstant push_constant;
RID volume_ubo;
@@ -873,39 +901,39 @@ private:
void _volumetric_fog_erase(RenderBuffers *rb);
void _update_volumetric_fog(RID p_render_buffers, RID p_environment, const CameraMatrix &p_cam_projection, const Transform3D &p_cam_transform, RID p_shadow_atlas, int p_directional_light_count, bool p_use_directional_shadows, int p_positional_light_count, int p_voxel_gi_count, const PagedArray<RID> &p_fog_volumes);
- struct FogShaderData : public RendererStorageRD::ShaderData {
- bool valid;
+ struct FogShaderData : public RendererRD::ShaderData {
+ bool valid = false;
RID version;
RID pipeline;
Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
+ uint32_t ubo_size = 0;
String path;
String code;
Map<StringName, Map<int, RID>> default_texture_params;
- bool uses_time;
+ bool uses_time = false;
virtual void set_code(const String &p_Code);
virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- virtual void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
+ virtual void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
virtual bool is_param_texture(const StringName &p_param) const;
virtual bool is_animated() const;
virtual bool casts_shadows() const;
virtual Variant get_default_parameter(const StringName &p_parameter) const;
virtual RS::ShaderNativeSourceCode get_native_source_code() const;
- FogShaderData();
+
+ FogShaderData() {}
virtual ~FogShaderData();
};
- struct FogMaterialData : public RendererStorageRD::MaterialData {
- uint64_t last_frame;
- FogShaderData *shader_data;
+ struct FogMaterialData : public RendererRD::MaterialData {
+ FogShaderData *shader_data = nullptr;
RID uniform_set;
bool uniform_set_updated;
@@ -915,11 +943,11 @@ private:
virtual ~FogMaterialData();
};
- RendererStorageRD::ShaderData *_create_fog_shader_func();
- static RendererStorageRD::ShaderData *_create_fog_shader_funcs();
+ RendererRD::ShaderData *_create_fog_shader_func();
+ static RendererRD::ShaderData *_create_fog_shader_funcs();
- RendererStorageRD::MaterialData *_create_fog_material_func(FogShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_fog_material_funcs(RendererStorageRD::ShaderData *p_shader);
+ RendererRD::MaterialData *_create_fog_material_func(FogShaderData *p_shader);
+ static RendererRD::MaterialData *_create_fog_material_funcs(RendererRD::ShaderData *p_shader);
RID shadow_sampler;
@@ -935,7 +963,7 @@ private:
uint32_t max_cluster_elements = 512;
- void _render_shadow_pass(RID p_light, RID p_shadow_atlas, int p_pass, const PagedArray<GeometryInstance *> &p_instances, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0, float p_screen_lod_threshold = 0.0, bool p_open_pass = true, bool p_close_pass = true, bool p_clear_region = true, RendererScene::RenderInfo *p_render_info = nullptr);
+ void _render_shadow_pass(RID p_light, RID p_shadow_atlas, int p_pass, const PagedArray<GeometryInstance *> &p_instances, const Plane &p_camera_plane = Plane(), float p_lod_distance_multiplier = 0, float p_screen_mesh_lod_threshold = 0.0, bool p_open_pass = true, bool p_close_pass = true, bool p_clear_region = true, RendererScene::RenderInfo *p_render_info = nullptr);
public:
virtual Transform3D geometry_instance_get_transform(GeometryInstance *p_instance) = 0;
@@ -944,9 +972,9 @@ public:
/* SHADOW ATLAS API */
virtual RID shadow_atlas_create() override;
- virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = false) override;
+ virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = true) override;
virtual void shadow_atlas_set_quadrant_subdivision(RID p_atlas, int p_quadrant, int p_subdivision) override;
- virtual bool shadow_atlas_update_light(RID p_atlas, RID p_light_intance, float p_coverage, uint64_t p_light_version) override;
+ virtual bool shadow_atlas_update_light(RID p_atlas, RID p_light_instance, float p_coverage, uint64_t p_light_version) override;
_FORCE_INLINE_ bool shadow_atlas_owns_light_instance(RID p_atlas, RID p_light_intance) {
ShadowAtlas *atlas = shadow_atlas_owner.get_or_null(p_atlas);
ERR_FAIL_COND_V(!atlas, false);
@@ -965,7 +993,7 @@ public:
return Size2(atlas->size, atlas->size);
}
- virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = false) override;
+ virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = true) override;
virtual int get_directional_light_shadow_size(RID p_light_intance) override;
virtual void set_directional_shadow_count(int p_count) override;
@@ -1024,7 +1052,7 @@ public:
virtual bool is_environment(RID p_env) const override;
- virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) override;
+ virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) override;
virtual void environment_glow_set_use_bicubic_upscale(bool p_enable) override;
virtual void environment_glow_set_use_high_quality(bool p_enable) override;
@@ -1046,13 +1074,16 @@ public:
virtual void environment_set_ssr(RID p_env, bool p_enable, int p_max_steps, float p_fade_int, float p_fade_out, float p_depth_tolerance) override;
virtual void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_power, float p_detail, float p_horizon, float p_sharpness, float p_light_affect, float p_ao_channel_affect) override;
virtual void environment_set_ssao_quality(RS::EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) override;
+ virtual void environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) override;
+ virtual void environment_set_ssil_quality(RS::EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) override;
bool environment_is_ssao_enabled(RID p_env) const;
float environment_get_ssao_ao_affect(RID p_env) const;
float environment_get_ssao_light_affect(RID p_env) const;
+ bool environment_is_ssil_enabled(RID p_env) const;
bool environment_is_ssr_enabled(RID p_env) const;
bool environment_is_sdfgi_enabled(RID p_env) const;
- virtual void environment_set_sdfgi(RID p_env, bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) override;
+ virtual void environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) override;
virtual void environment_set_sdfgi_ray_count(RS::EnvironmentSDFGIRayCount p_ray_count) override;
virtual void environment_set_sdfgi_frames_to_converge(RS::EnvironmentSDFGIFramesToConverge p_frames) override;
virtual void environment_set_sdfgi_frames_to_update_light(RS::EnvironmentSDFGIFramesToUpdateLight p_update) override;
@@ -1344,6 +1375,7 @@ public:
RID render_buffers_get_depth_texture(RID p_render_buffers);
RID render_buffers_get_ao_texture(RID p_render_buffers);
+ RID render_buffers_get_ssil_texture(RID p_render_buffers);
RID render_buffers_get_back_buffer_texture(RID p_render_buffers);
RID render_buffers_get_back_depth_texture(RID p_render_buffers);
RID render_buffers_get_voxel_gi_buffer(RID p_render_buffers);
@@ -1372,9 +1404,9 @@ public:
virtual void update_uniform_sets(){};
- virtual void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_render_info = nullptr) override;
+ virtual void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_render_info = nullptr) override;
- virtual void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
+ virtual void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) override;
virtual void render_particle_collider_heightfield(RID p_collider, const Transform3D &p_transform, const PagedArray<GeometryInstance *> &p_instances) override;
diff --git a/servers/rendering/renderer_rd/renderer_scene_sky_rd.cpp b/servers/rendering/renderer_rd/renderer_scene_sky_rd.cpp
index f595edb225..51cf0e952b 100644
--- a/servers/rendering/renderer_rd/renderer_scene_sky_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_scene_sky_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,6 +33,8 @@
#include "core/math/math_defs.h"
#include "renderer_scene_render_rd.h"
#include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_server_default.h"
////////////////////////////////////////////////////////////////////////////////
@@ -50,9 +52,9 @@ void RendererSceneSkyRD::SkyShaderData::set_code(const String &p_code) {
return; //just invalid, but no error
}
- ShaderCompilerRD::GeneratedCode gen_code;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["sky"] = ShaderCompilerRD::STAGE_FRAGMENT;
+ ShaderCompiler::GeneratedCode gen_code;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["sky"] = ShaderCompiler::STAGE_FRAGMENT;
uses_time = false;
uses_half_res = false;
@@ -89,7 +91,7 @@ void RendererSceneSkyRD::SkyShaderData::set_code(const String &p_code) {
actions.uniforms = &uniforms;
// !BAS! Contemplate making `SkyShader sky` accessible from this struct or even part of this struct.
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
Error err = scene_singleton->sky.sky_shader.compiler.compile(RS::SHADER_SKY, code, &actions, path, gen_code);
ERR_FAIL_COND_MSG(err != OK, "Shader compilation failed.");
@@ -112,7 +114,7 @@ void RendererSceneSkyRD::SkyShaderData::set_code(const String &p_code) {
print_line("\n**light_code:\n" + gen_code.light);
#endif
- scene_singleton->sky.sky_shader.shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_VERTEX], gen_code.stage_globals[ShaderCompilerRD::STAGE_FRAGMENT], gen_code.defines);
+ scene_singleton->sky.sky_shader.shader.version_set_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_VERTEX], gen_code.stage_globals[ShaderCompiler::STAGE_FRAGMENT], gen_code.defines);
ERR_FAIL_COND(!scene_singleton->sky.sky_shader.shader.version_is_valid(version));
ubo_size = gen_code.uniform_total_size;
@@ -176,13 +178,13 @@ void RendererSceneSkyRD::SkyShaderData::get_param_list(List<PropertyInfo> *p_par
}
}
-void RendererSceneSkyRD::SkyShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
+void RendererSceneSkyRD::SkyShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
continue;
}
- RendererStorage::InstanceShaderParam p;
+ RendererMaterialStorage::InstanceShaderParam p;
p.info = ShaderLanguage::uniform_to_property_info(E.value);
p.info.name = E.key; //supply name
p.index = E.value.instance_index;
@@ -217,17 +219,13 @@ Variant RendererSceneSkyRD::SkyShaderData::get_default_parameter(const StringNam
}
RS::ShaderNativeSourceCode RendererSceneSkyRD::SkyShaderData::get_native_source_code() const {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
return scene_singleton->sky.sky_shader.shader.version_get_native_source_code(version);
}
-RendererSceneSkyRD::SkyShaderData::SkyShaderData() {
- valid = false;
-}
-
RendererSceneSkyRD::SkyShaderData::~SkyShaderData() {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
ERR_FAIL_COND(!scene_singleton);
//pipeline variants will clear themselves if shader is gone
if (version.is_valid()) {
@@ -239,7 +237,7 @@ RendererSceneSkyRD::SkyShaderData::~SkyShaderData() {
// Sky material
bool RendererSceneSkyRD::SkyMaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
- RendererSceneRenderRD *scene_singleton = (RendererSceneRenderRD *)RendererSceneRenderRD::singleton;
+ RendererSceneRenderRD *scene_singleton = static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton);
uniform_set_updated = true;
@@ -254,17 +252,17 @@ RendererSceneSkyRD::SkyMaterialData::~SkyMaterialData() {
// Render sky
static _FORCE_INLINE_ void store_transform_3x3(const Basis &p_basis, float *p_array) {
- p_array[0] = p_basis.elements[0][0];
- p_array[1] = p_basis.elements[1][0];
- p_array[2] = p_basis.elements[2][0];
+ p_array[0] = p_basis.rows[0][0];
+ p_array[1] = p_basis.rows[1][0];
+ p_array[2] = p_basis.rows[2][0];
p_array[3] = 0;
- p_array[4] = p_basis.elements[0][1];
- p_array[5] = p_basis.elements[1][1];
- p_array[6] = p_basis.elements[2][1];
+ p_array[4] = p_basis.rows[0][1];
+ p_array[5] = p_basis.rows[1][1];
+ p_array[6] = p_basis.rows[2][1];
p_array[7] = 0;
- p_array[8] = p_basis.elements[0][2];
- p_array[9] = p_basis.elements[1][2];
- p_array[10] = p_basis.elements[2][2];
+ p_array[8] = p_basis.rows[0][2];
+ p_array[9] = p_basis.rows[1][2];
+ p_array[10] = p_basis.rows[2][2];
p_array[11] = 0;
}
@@ -360,10 +358,10 @@ void RendererSceneSkyRD::ReflectionData::update_reflection_data(RendererStorageR
mm.framebuffers[k] = RD::get_singleton()->framebuffer_create(fbtex);
}
- layer.views.write[j] = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer + i * 6, j, RD::TEXTURE_SLICE_CUBEMAP);
+ layer.views.write[j] = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer + i * 6, j, 1, RD::TEXTURE_SLICE_CUBEMAP);
- mmw = MAX(1, mmw >> 1);
- mmh = MAX(1, mmh >> 1);
+ mmw = MAX(1u, mmw >> 1);
+ mmh = MAX(1u, mmh >> 1);
}
layers.push_back(layer);
@@ -388,16 +386,16 @@ void RendererSceneSkyRD::ReflectionData::update_reflection_data(RendererStorageR
mm.framebuffers[k] = RD::get_singleton()->framebuffer_create(fbtex);
}
- layer.views.write[j] = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer, j, RD::TEXTURE_SLICE_CUBEMAP);
+ layer.views.write[j] = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer, j, 1, RD::TEXTURE_SLICE_CUBEMAP);
- mmw = MAX(1, mmw >> 1);
- mmh = MAX(1, mmh >> 1);
+ mmw = MAX(1u, mmw >> 1);
+ mmh = MAX(1u, mmh >> 1);
}
layers.push_back(layer);
}
- radiance_base_cubemap = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer, 0, RD::TEXTURE_SLICE_CUBEMAP);
+ radiance_base_cubemap = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), p_base_cube, p_base_layer, 0, 1, RD::TEXTURE_SLICE_CUBEMAP);
RD::get_singleton()->set_resource_name(radiance_base_cubemap, "radiance base cubemap");
RD::TextureFormat tf;
tf.format = p_texture_format;
@@ -418,7 +416,7 @@ void RendererSceneSkyRD::ReflectionData::update_reflection_data(RendererStorageR
ReflectionData::DownsampleLayer::Mipmap &mm = downsampled_layer.mipmaps.write[j];
mm.size.width = mmw;
mm.size.height = mmh;
- mm.view = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), downsampled_radiance_cubemap, 0, j, RD::TEXTURE_SLICE_CUBEMAP);
+ mm.view = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), downsampled_radiance_cubemap, 0, j, 1, RD::TEXTURE_SLICE_CUBEMAP);
RD::get_singleton()->set_resource_name(mm.view, "Downsampled Radiance Cubemap Mip " + itos(j) + " ");
if (prefer_raster_effects) {
// we need a framebuffer for each side of our cubemap
@@ -432,8 +430,8 @@ void RendererSceneSkyRD::ReflectionData::update_reflection_data(RendererStorageR
}
}
- mmw = MAX(1, mmw >> 1);
- mmh = MAX(1, mmh >> 1);
+ mmw = MAX(1u, mmw >> 1);
+ mmh = MAX(1u, mmh >> 1);
}
}
}
@@ -473,12 +471,13 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_fast_filter(RendererS
}
RD::get_singleton()->draw_command_end_label(); // Filter radiance
} else {
+ RD::get_singleton()->draw_command_begin_label("Downsample radiance map");
effects->cubemap_downsample(radiance_base_cubemap, downsampled_layer.mipmaps[0].view, downsampled_layer.mipmaps[0].size);
for (int i = 1; i < downsampled_layer.mipmaps.size(); i++) {
effects->cubemap_downsample(downsampled_layer.mipmaps[i - 1].view, downsampled_layer.mipmaps[i].view, downsampled_layer.mipmaps[i].size);
}
-
+ RD::get_singleton()->draw_command_end_label(); // Downsample Radiance
Vector<RID> views;
if (p_use_arrays) {
for (int i = 1; i < layers.size(); i++) {
@@ -489,8 +488,9 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_fast_filter(RendererS
views.push_back(layers[0].views[i]);
}
}
-
+ RD::get_singleton()->draw_command_begin_label("Fast filter radiance");
effects->cubemap_filter(downsampled_radiance_cubemap, views, p_use_arrays);
+ RD::get_singleton()->draw_command_end_label(); // Filter radiance
}
}
@@ -500,12 +500,25 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_importance_sample(Ren
bool prefer_raster_effects = effects->get_prefer_raster_effects();
if (prefer_raster_effects) {
- // Need to ask clayjohn but p_cube_side is set to 10, looks like in the compute shader we're doing all 6 sides in one call
- // here we need to do them one by one so ignoring p_cube_side
+ if (p_base_layer == 1) {
+ RD::get_singleton()->draw_command_begin_label("Downsample radiance map");
+ for (int k = 0; k < 6; k++) {
+ effects->cubemap_downsample_raster(radiance_base_cubemap, downsampled_layer.mipmaps[0].framebuffers[k], k, downsampled_layer.mipmaps[0].size);
+ }
+
+ for (int i = 1; i < downsampled_layer.mipmaps.size(); i++) {
+ for (int k = 0; k < 6; k++) {
+ effects->cubemap_downsample_raster(downsampled_layer.mipmaps[i - 1].view, downsampled_layer.mipmaps[i].framebuffers[k], k, downsampled_layer.mipmaps[i].size);
+ }
+ }
+ RD::get_singleton()->draw_command_end_label(); // Downsample Radiance
+ }
+
+ RD::get_singleton()->draw_command_begin_label("High Quality filter radiance");
if (p_use_arrays) {
for (int k = 0; k < 6; k++) {
effects->cubemap_roughness_raster(
- radiance_base_cubemap,
+ downsampled_radiance_cubemap,
layers[p_base_layer].mipmaps[0].framebuffers[k],
k,
p_sky_ggx_samples_quality,
@@ -515,7 +528,7 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_importance_sample(Ren
} else {
for (int k = 0; k < 6; k++) {
effects->cubemap_roughness_raster(
- layers[0].views[p_base_layer - 1],
+ downsampled_radiance_cubemap,
layers[0].mipmaps[p_base_layer].framebuffers[k],
k,
p_sky_ggx_samples_quality,
@@ -524,12 +537,22 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_importance_sample(Ren
}
}
} else {
+ if (p_base_layer == 1) {
+ RD::get_singleton()->draw_command_begin_label("Downsample radiance map");
+ effects->cubemap_downsample(radiance_base_cubemap, downsampled_layer.mipmaps[0].view, downsampled_layer.mipmaps[0].size);
+
+ for (int i = 1; i < downsampled_layer.mipmaps.size(); i++) {
+ effects->cubemap_downsample(downsampled_layer.mipmaps[i - 1].view, downsampled_layer.mipmaps[i].view, downsampled_layer.mipmaps[i].size);
+ }
+ RD::get_singleton()->draw_command_end_label(); // Downsample Radiance
+ }
+
+ RD::get_singleton()->draw_command_begin_label("High Quality filter radiance");
if (p_use_arrays) {
- //render directly to the layers
- effects->cubemap_roughness(radiance_base_cubemap, layers[p_base_layer].views[0], p_cube_side, p_sky_ggx_samples_quality, float(p_base_layer) / (layers.size() - 1.0), layers[p_base_layer].mipmaps[0].size.x);
+ effects->cubemap_roughness(downsampled_radiance_cubemap, layers[p_base_layer].views[0], p_cube_side, p_sky_ggx_samples_quality, float(p_base_layer) / (layers.size() - 1.0), layers[p_base_layer].mipmaps[0].size.x);
} else {
effects->cubemap_roughness(
- layers[0].views[p_base_layer - 1],
+ downsampled_radiance_cubemap,
layers[0].views[p_base_layer],
p_cube_side,
p_sky_ggx_samples_quality,
@@ -537,6 +560,7 @@ void RendererSceneSkyRD::ReflectionData::create_reflection_importance_sample(Ren
layers[0].mipmaps[p_base_layer].size.x);
}
}
+ RD::get_singleton()->draw_command_end_label(); // Filter radiance
}
void RendererSceneSkyRD::ReflectionData::update_reflection_mipmaps(RendererStorageRD *p_storage, int p_start, int p_end) {
@@ -590,10 +614,13 @@ void RendererSceneSkyRD::Sky::free(RendererStorageRD *p_storage) {
if (material.is_valid()) {
p_storage->free(material);
+ material = RID();
}
}
RID RendererSceneSkyRD::Sky::get_textures(RendererStorageRD *p_storage, SkyTextureSetVersion p_version, RID p_default_shader_rd) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
if (texture_uniform_sets[p_version].is_valid() && RD::get_singleton()->uniform_set_is_valid(texture_uniform_sets[p_version])) {
return texture_uniform_sets[p_version];
}
@@ -603,9 +630,9 @@ RID RendererSceneSkyRD::Sky::get_textures(RendererStorageRD *p_storage, SkyTextu
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 0;
if (radiance.is_valid() && p_version <= SKY_TEXTURE_SET_QUARTER_RES) {
- u.ids.push_back(radiance);
+ u.append_id(radiance);
} else {
- u.ids.push_back(p_storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
}
uniforms.push_back(u);
}
@@ -615,15 +642,15 @@ RID RendererSceneSkyRD::Sky::get_textures(RendererStorageRD *p_storage, SkyTextu
u.binding = 1; // half res
if (half_res_pass.is_valid() && p_version != SKY_TEXTURE_SET_HALF_RES && p_version != SKY_TEXTURE_SET_CUBEMAP_HALF_RES) {
if (p_version >= SKY_TEXTURE_SET_CUBEMAP) {
- u.ids.push_back(reflection.layers[0].views[1]);
+ u.append_id(reflection.layers[0].views[1]);
} else {
- u.ids.push_back(half_res_pass);
+ u.append_id(half_res_pass);
}
} else {
if (p_version < SKY_TEXTURE_SET_CUBEMAP) {
- u.ids.push_back(p_storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE));
} else {
- u.ids.push_back(p_storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
}
}
uniforms.push_back(u);
@@ -634,15 +661,15 @@ RID RendererSceneSkyRD::Sky::get_textures(RendererStorageRD *p_storage, SkyTextu
u.binding = 2; // quarter res
if (quarter_res_pass.is_valid() && p_version != SKY_TEXTURE_SET_QUARTER_RES && p_version != SKY_TEXTURE_SET_CUBEMAP_QUARTER_RES) {
if (p_version >= SKY_TEXTURE_SET_CUBEMAP) {
- u.ids.push_back(reflection.layers[0].views[2]);
+ u.append_id(reflection.layers[0].views[2]);
} else {
- u.ids.push_back(quarter_res_pass);
+ u.append_id(quarter_res_pass);
}
} else {
if (p_version < SKY_TEXTURE_SET_CUBEMAP) {
- u.ids.push_back(p_storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE));
} else {
- u.ids.push_back(p_storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
}
}
uniforms.push_back(u);
@@ -737,25 +764,24 @@ Ref<Image> RendererSceneSkyRD::Sky::bake_panorama(RendererStorageRD *p_storage,
////////////////////////////////////////////////////////////////////////////////
// RendererSceneSkyRD
-RendererStorageRD::ShaderData *RendererSceneSkyRD::_create_sky_shader_func() {
+RendererRD::ShaderData *RendererSceneSkyRD::_create_sky_shader_func() {
SkyShaderData *shader_data = memnew(SkyShaderData);
return shader_data;
}
-RendererStorageRD::ShaderData *RendererSceneSkyRD::_create_sky_shader_funcs() {
+RendererRD::ShaderData *RendererSceneSkyRD::_create_sky_shader_funcs() {
// !BAS! Why isn't _create_sky_shader_func not just static too?
return static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton)->sky._create_sky_shader_func();
};
-RendererStorageRD::MaterialData *RendererSceneSkyRD::_create_sky_material_func(SkyShaderData *p_shader) {
+RendererRD::MaterialData *RendererSceneSkyRD::_create_sky_material_func(SkyShaderData *p_shader) {
SkyMaterialData *material_data = memnew(SkyMaterialData);
material_data->shader_data = p_shader;
- material_data->last_frame = false;
//update will happen later anyway so do nothing.
return material_data;
}
-RendererStorageRD::MaterialData *RendererSceneSkyRD::_create_sky_material_funcs(RendererStorageRD::ShaderData *p_shader) {
+RendererRD::MaterialData *RendererSceneSkyRD::_create_sky_material_funcs(RendererRD::ShaderData *p_shader) {
// !BAS! same here, we could just make _create_sky_material_func static?
return static_cast<RendererSceneRenderRD *>(RendererSceneRenderRD::singleton)->sky._create_sky_material_func(static_cast<SkyShaderData *>(p_shader));
};
@@ -767,6 +793,8 @@ RendererSceneSkyRD::RendererSceneSkyRD() {
}
void RendererSceneSkyRD::init(RendererStorageRD *p_storage) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
storage = p_storage;
{
@@ -803,11 +831,11 @@ void RendererSceneSkyRD::init(RendererStorageRD *p_storage) {
}
// register our shader funds
- storage->shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_SKY, _create_sky_shader_funcs);
- storage->material_set_data_request_function(RendererStorageRD::SHADER_TYPE_SKY, _create_sky_material_funcs);
+ material_storage->shader_set_data_request_function(RendererRD::SHADER_TYPE_SKY, _create_sky_shader_funcs);
+ material_storage->material_set_data_request_function(RendererRD::SHADER_TYPE_SKY, _create_sky_material_funcs);
{
- ShaderCompilerRD::DefaultIdentifierActions actions;
+ ShaderCompiler::DefaultIdentifierActions actions;
actions.renames["COLOR"] = "color";
actions.renames["ALPHA"] = "alpha";
@@ -866,10 +894,10 @@ void RendererSceneSkyRD::init(RendererStorageRD *p_storage) {
{
// default material and shader for sky shader
- sky_shader.default_shader = storage->shader_allocate();
- storage->shader_initialize(sky_shader.default_shader);
+ sky_shader.default_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(sky_shader.default_shader);
- storage->shader_set_code(sky_shader.default_shader, R"(
+ material_storage->shader_set_code(sky_shader.default_shader, R"(
// Default sky shader.
shader_type sky;
@@ -879,12 +907,12 @@ void sky() {
}
)");
- sky_shader.default_material = storage->material_allocate();
- storage->material_initialize(sky_shader.default_material);
+ sky_shader.default_material = material_storage->material_allocate();
+ material_storage->material_initialize(sky_shader.default_material);
- storage->material_set_shader(sky_shader.default_material, sky_shader.default_shader);
+ material_storage->material_set_shader(sky_shader.default_material, sky_shader.default_shader);
- SkyMaterialData *md = (SkyMaterialData *)storage->material_get_data(sky_shader.default_material, RendererStorageRD::SHADER_TYPE_SKY);
+ SkyMaterialData *md = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_shader.default_material, RendererRD::SHADER_TYPE_SKY));
sky_shader.default_shader_rd = sky_shader.shader.version_get_shader(md->shader_data->version, SKY_VERSION_BACKGROUND);
sky_scene_state.uniform_buffer = RD::get_singleton()->uniform_buffer_create(sizeof(SkySceneState::UBO));
@@ -892,23 +920,24 @@ void sky() {
Vector<RD::Uniform> uniforms;
{
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 0;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 0, ids);
+
uniforms.push_back(u);
}
@@ -916,7 +945,7 @@ void sky() {
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(storage->global_variables_get_storage_buffer());
+ u.append_id(RendererRD::MaterialStorage::get_singleton()->global_variables_get_storage_buffer());
uniforms.push_back(u);
}
@@ -924,7 +953,7 @@ void sky() {
RD::Uniform u;
u.binding = 2;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(sky_scene_state.uniform_buffer);
+ u.append_id(sky_scene_state.uniform_buffer);
uniforms.push_back(u);
}
@@ -932,7 +961,7 @@ void sky() {
RD::Uniform u;
u.binding = 3;
u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.ids.push_back(sky_scene_state.directional_light_buffer);
+ u.append_id(sky_scene_state.directional_light_buffer);
uniforms.push_back(u);
}
@@ -945,8 +974,8 @@ void sky() {
RD::Uniform u;
u.binding = 0;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- RID vfog = storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_3D_WHITE);
- u.ids.push_back(vfog);
+ RID vfog = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_3D_WHITE);
+ u.append_id(vfog);
uniforms.push_back(u);
}
@@ -955,10 +984,10 @@ void sky() {
{
// Need defaults for using fog with clear color
- sky_scene_state.fog_shader = storage->shader_allocate();
- storage->shader_initialize(sky_scene_state.fog_shader);
+ sky_scene_state.fog_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(sky_scene_state.fog_shader);
- storage->shader_set_code(sky_scene_state.fog_shader, R"(
+ material_storage->shader_set_code(sky_scene_state.fog_shader, R"(
// Default clear color sky shader.
shader_type sky;
@@ -969,31 +998,31 @@ void sky() {
COLOR = clear_color.rgb;
}
)");
- sky_scene_state.fog_material = storage->material_allocate();
- storage->material_initialize(sky_scene_state.fog_material);
+ sky_scene_state.fog_material = material_storage->material_allocate();
+ material_storage->material_initialize(sky_scene_state.fog_material);
- storage->material_set_shader(sky_scene_state.fog_material, sky_scene_state.fog_shader);
+ material_storage->material_set_shader(sky_scene_state.fog_material, sky_scene_state.fog_shader);
Vector<RD::Uniform> uniforms;
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 0;
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_CUBEMAP_BLACK));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 1;
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE));
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
u.binding = 2;
- u.ids.push_back(storage->texture_rd_get_default(RendererStorageRD::DEFAULT_RD_TEXTURE_WHITE));
+ u.append_id(texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_WHITE));
uniforms.push_back(u);
}
@@ -1023,7 +1052,19 @@ void RendererSceneSkyRD::set_texture_format(RD::DataFormat p_texture_format) {
}
RendererSceneSkyRD::~RendererSceneSkyRD() {
- // TODO cleanup anything created in init...
+ // cleanup anything created in init...
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+
+ SkyMaterialData *md = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_shader.default_material, RendererRD::SHADER_TYPE_SKY));
+ sky_shader.shader.version_free(md->shader_data->version);
+ RD::get_singleton()->free(sky_scene_state.directional_light_buffer);
+ RD::get_singleton()->free(sky_scene_state.uniform_buffer);
+ memdelete_arr(sky_scene_state.directional_lights);
+ memdelete_arr(sky_scene_state.last_frame_directional_lights);
+ material_storage->shader_free(sky_shader.default_shader);
+ material_storage->material_free(sky_shader.default_material);
+ material_storage->shader_free(sky_scene_state.fog_shader);
+ material_storage->material_free(sky_scene_state.fog_material);
if (RD::get_singleton()->uniform_set_is_valid(sky_scene_state.uniform_set)) {
RD::get_singleton()->free(sky_scene_state.uniform_set);
@@ -1040,8 +1081,10 @@ RendererSceneSkyRD::~RendererSceneSkyRD() {
RD::get_singleton()->free(index_buffer); //array gets freed as dependency
}
-void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_buffers, const CameraMatrix &p_projection, const Transform3D &p_transform, const Size2i p_screen_size, RendererSceneRenderRD *p_scene_render) {
- ERR_FAIL_COND(!p_env); // I guess without an environment we also can't have a sky...
+void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_buffers, const PagedArray<RID> &p_lights, const CameraMatrix &p_projection, const Transform3D &p_transform, const Size2i p_screen_size, RendererSceneRenderRD *p_scene_render) {
+ RendererRD::LightStorage *light_storage = RendererRD::LightStorage::get_singleton();
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
+ ERR_FAIL_COND(!p_env);
SkyMaterialData *material = nullptr;
Sky *sky = get_sky(p_env->sky);
@@ -1054,7 +1097,7 @@ void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_b
sky_material = sky_get_material(p_env->sky);
if (sky_material.is_valid()) {
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -1062,7 +1105,7 @@ void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_b
if (!material) {
sky_material = sky_shader.default_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
ERR_FAIL_COND(!material);
@@ -1122,15 +1165,67 @@ void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_b
}
if (shader_data->uses_light) {
+ sky_scene_state.ubo.directional_light_count = 0;
+ // Run through the list of lights in the scene and pick out the Directional Lights.
+ // This can't be done in RenderSceneRenderRD::_setup lights because that needs to be called
+ // after the depth prepass, but this runs before the depth prepass
+ for (int i = 0; i < (int)p_lights.size(); i++) {
+ RendererSceneRenderRD::LightInstance *li = p_scene_render->light_instance_owner.get_or_null(p_lights[i]);
+ if (!li) {
+ continue;
+ }
+ RID base = li->light;
+
+ ERR_CONTINUE(base.is_null());
+
+ RS::LightType type = light_storage->light_get_type(base);
+ if (type == RS::LIGHT_DIRECTIONAL && light_storage->light_directional_get_sky_mode(base) != RS::LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_ONLY) {
+ SkyDirectionalLightData &sky_light_data = sky_scene_state.directional_lights[sky_scene_state.ubo.directional_light_count];
+ Transform3D light_transform = li->transform;
+ Vector3 world_direction = light_transform.basis.xform(Vector3(0, 0, 1)).normalized();
+
+ sky_light_data.direction[0] = world_direction.x;
+ sky_light_data.direction[1] = world_direction.y;
+ sky_light_data.direction[2] = world_direction.z;
+
+ float sign = light_storage->light_is_negative(base) ? -1 : 1;
+ sky_light_data.energy = sign * light_storage->light_get_param(base, RS::LIGHT_PARAM_ENERGY);
+
+ Color linear_col = light_storage->light_get_color(base).srgb_to_linear();
+ sky_light_data.color[0] = linear_col.r;
+ sky_light_data.color[1] = linear_col.g;
+ sky_light_data.color[2] = linear_col.b;
+
+ sky_light_data.enabled = true;
+
+ float angular_diameter = light_storage->light_get_param(base, RS::LIGHT_PARAM_SIZE);
+ if (angular_diameter > 0.0) {
+ // I know tan(0) is 0, but let's not risk it with numerical precision.
+ // technically this will keep expanding until reaching the sun, but all we care
+ // is expand until we reach the radius of the near plane (there can't be more occluders than that)
+ angular_diameter = Math::tan(Math::deg2rad(angular_diameter));
+ } else {
+ angular_diameter = 0.0;
+ }
+ sky_light_data.size = angular_diameter;
+ sky_scene_state.ubo.directional_light_count++;
+ if (sky_scene_state.ubo.directional_light_count >= sky_scene_state.max_directional_lights) {
+ break;
+ }
+ }
+ }
// Check whether the directional_light_buffer changes
bool light_data_dirty = false;
+ // Light buffer is dirty if we have fewer or more lights
+ // If we have fewer lights, make sure that old lights are disabled
if (sky_scene_state.ubo.directional_light_count != sky_scene_state.last_frame_directional_light_count) {
light_data_dirty = true;
for (uint32_t i = sky_scene_state.ubo.directional_light_count; i < sky_scene_state.max_directional_lights; i++) {
sky_scene_state.directional_lights[i].enabled = false;
}
}
+
if (!light_data_dirty) {
for (uint32_t i = 0; i < sky_scene_state.ubo.directional_light_count; i++) {
if (sky_scene_state.directional_lights[i].direction[0] != sky_scene_state.last_frame_directional_lights[i].direction[0] ||
@@ -1188,7 +1283,7 @@ void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_b
sky_scene_state.ubo.fog_enabled = p_env->fog_enabled;
sky_scene_state.ubo.fog_density = p_env->fog_density;
sky_scene_state.ubo.fog_aerial_perspective = p_env->fog_aerial_perspective;
- Color fog_color = p_env->fog_light_color.to_linear();
+ Color fog_color = p_env->fog_light_color.srgb_to_linear();
float fog_energy = p_env->fog_light_energy;
sky_scene_state.ubo.fog_light_color[0] = fog_color.r * fog_energy;
sky_scene_state.ubo.fog_light_color[1] = fog_color.g * fog_energy;
@@ -1199,6 +1294,7 @@ void RendererSceneSkyRD::setup(RendererSceneEnvironmentRD *p_env, RID p_render_b
}
void RendererSceneSkyRD::update(RendererSceneEnvironmentRD *p_env, const CameraMatrix &p_projection, const Transform3D &p_transform, double p_time, float p_luminance_multiplier) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
ERR_FAIL_COND(!p_env);
Sky *sky = get_sky(p_env->sky);
@@ -1209,7 +1305,7 @@ void RendererSceneSkyRD::update(RendererSceneEnvironmentRD *p_env, const CameraM
SkyMaterialData *material = nullptr;
if (sky_material.is_valid()) {
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -1217,7 +1313,7 @@ void RendererSceneSkyRD::update(RendererSceneEnvironmentRD *p_env, const CameraM
if (!material) {
sky_material = sky_shader.default_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
ERR_FAIL_COND(!material);
@@ -1367,6 +1463,7 @@ void RendererSceneSkyRD::update(RendererSceneEnvironmentRD *p_env, const CameraM
}
void RendererSceneSkyRD::draw(RendererSceneEnvironmentRD *p_env, bool p_can_continue_color, bool p_can_continue_depth, RID p_fb, uint32_t p_view_count, const CameraMatrix *p_projections, const Transform3D &p_transform, double p_time) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
ERR_FAIL_COND(!p_env);
ERR_FAIL_COND(p_view_count == 0);
@@ -1384,7 +1481,7 @@ void RendererSceneSkyRD::draw(RendererSceneEnvironmentRD *p_env, bool p_can_cont
sky_material = sky_get_material(p_env->sky);
if (sky_material.is_valid()) {
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -1392,13 +1489,13 @@ void RendererSceneSkyRD::draw(RendererSceneEnvironmentRD *p_env, bool p_can_cont
if (!material) {
sky_material = sky_shader.default_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
}
if (background == RS::ENV_BG_CLEAR_COLOR || background == RS::ENV_BG_COLOR) {
sky_material = sky_scene_state.fog_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
ERR_FAIL_COND(!material);
@@ -1473,6 +1570,7 @@ void RendererSceneSkyRD::draw(RendererSceneEnvironmentRD *p_env, bool p_can_cont
}
void RendererSceneSkyRD::update_res_buffers(RendererSceneEnvironmentRD *p_env, uint32_t p_view_count, const CameraMatrix *p_projections, const Transform3D &p_transform, double p_time, float p_luminance_multiplier) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
ERR_FAIL_COND(!p_env);
ERR_FAIL_COND(p_view_count == 0);
@@ -1487,7 +1585,7 @@ void RendererSceneSkyRD::update_res_buffers(RendererSceneEnvironmentRD *p_env, u
sky_material = sky_get_material(p_env->sky);
if (sky_material.is_valid()) {
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -1495,7 +1593,7 @@ void RendererSceneSkyRD::update_res_buffers(RendererSceneEnvironmentRD *p_env, u
if (!material) {
sky_material = sky_shader.default_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
ERR_FAIL_COND(!material);
@@ -1557,6 +1655,7 @@ void RendererSceneSkyRD::update_res_buffers(RendererSceneEnvironmentRD *p_env, u
}
void RendererSceneSkyRD::draw(RD::DrawListID p_draw_list, RendererSceneEnvironmentRD *p_env, RID p_fb, uint32_t p_view_count, const CameraMatrix *p_projections, const Transform3D &p_transform, double p_time, float p_luminance_multiplier) {
+ RendererRD::MaterialStorage *material_storage = RendererRD::MaterialStorage::get_singleton();
ERR_FAIL_COND(!p_env);
ERR_FAIL_COND(p_view_count == 0);
@@ -1574,7 +1673,7 @@ void RendererSceneSkyRD::draw(RD::DrawListID p_draw_list, RendererSceneEnvironme
sky_material = sky_get_material(p_env->sky);
if (sky_material.is_valid()) {
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
if (!material || !material->shader_data->valid) {
material = nullptr;
}
@@ -1582,13 +1681,13 @@ void RendererSceneSkyRD::draw(RD::DrawListID p_draw_list, RendererSceneEnvironme
if (!material) {
sky_material = sky_shader.default_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
}
if (background == RS::ENV_BG_CLEAR_COLOR || background == RS::ENV_BG_COLOR) {
sky_material = sky_scene_state.fog_material;
- material = (SkyMaterialData *)storage->material_get_data(sky_material, RendererStorageRD::SHADER_TYPE_SKY);
+ material = static_cast<SkyMaterialData *>(material_storage->material_get_data(sky_material, RendererRD::SHADER_TYPE_SKY));
}
ERR_FAIL_COND(!material);
diff --git a/servers/rendering/renderer_rd/renderer_scene_sky_rd.h b/servers/rendering/renderer_rd/renderer_scene_sky_rd.h
index 8689395bea..497d27ec26 100644
--- a/servers/rendering/renderer_rd/renderer_scene_sky_rd.h
+++ b/servers/rendering/renderer_rd/renderer_scene_sky_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -63,7 +63,7 @@ public:
};
private:
- RendererStorageRD *storage;
+ RendererStorageRD *storage = nullptr;
RD::DataFormat texture_format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
RID index_buffer;
@@ -105,37 +105,38 @@ private:
// 128 is the max size of a push constant. We can replace "pad" but we can't add any more.
};
- struct SkyShaderData : public RendererStorageRD::ShaderData {
- bool valid;
+ struct SkyShaderData : public RendererRD::ShaderData {
+ bool valid = false;
RID version;
PipelineCacheRD pipelines[SKY_VERSION_MAX];
Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
+ uint32_t ubo_size = 0;
String path;
String code;
Map<StringName, Map<int, RID>> default_texture_params;
- bool uses_time;
- bool uses_position;
- bool uses_half_res;
- bool uses_quarter_res;
- bool uses_light;
+ bool uses_time = false;
+ bool uses_position = false;
+ bool uses_half_res = false;
+ bool uses_quarter_res = false;
+ bool uses_light = false;
virtual void set_code(const String &p_Code);
virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- virtual void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
+ virtual void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
virtual bool is_param_texture(const StringName &p_param) const;
virtual bool is_animated() const;
virtual bool casts_shadows() const;
virtual Variant get_default_parameter(const StringName &p_parameter) const;
virtual RS::ShaderNativeSourceCode get_native_source_code() const;
- SkyShaderData();
+
+ SkyShaderData() {}
virtual ~SkyShaderData();
};
@@ -162,8 +163,8 @@ public:
UBO ubo;
- SkyDirectionalLightData *directional_lights;
- SkyDirectionalLightData *last_frame_directional_lights;
+ SkyDirectionalLightData *directional_lights = nullptr;
+ SkyDirectionalLightData *last_frame_directional_lights = nullptr;
uint32_t max_directional_lights;
uint32_t last_frame_directional_light_count;
RID directional_light_buffer;
@@ -220,16 +221,15 @@ public:
struct SkyShader {
SkyShaderRD shader;
- ShaderCompilerRD compiler;
+ ShaderCompiler compiler;
RID default_shader;
RID default_material;
RID default_shader_rd;
} sky_shader;
- struct SkyMaterialData : public RendererStorageRD::MaterialData {
- uint64_t last_frame;
- SkyShaderData *shader_data;
+ struct SkyMaterialData : public RendererRD::MaterialData {
+ SkyShaderData *shader_data = nullptr;
RID uniform_set;
bool uniform_set_updated;
@@ -263,7 +263,7 @@ public:
Sky *dirty_list = nullptr;
//State to track when radiance cubemap needs updating
- SkyMaterialData *prev_material;
+ SkyMaterialData *prev_material = nullptr;
Vector3 prev_position;
float prev_time;
@@ -282,18 +282,18 @@ public:
mutable RID_Owner<Sky, true> sky_owner;
int roughness_layers;
- RendererStorageRD::ShaderData *_create_sky_shader_func();
- static RendererStorageRD::ShaderData *_create_sky_shader_funcs();
+ RendererRD::ShaderData *_create_sky_shader_func();
+ static RendererRD::ShaderData *_create_sky_shader_funcs();
- RendererStorageRD::MaterialData *_create_sky_material_func(SkyShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_sky_material_funcs(RendererStorageRD::ShaderData *p_shader);
+ RendererRD::MaterialData *_create_sky_material_func(SkyShaderData *p_shader);
+ static RendererRD::MaterialData *_create_sky_material_funcs(RendererRD::ShaderData *p_shader);
RendererSceneSkyRD();
void init(RendererStorageRD *p_storage);
void set_texture_format(RD::DataFormat p_texture_format);
~RendererSceneSkyRD();
- void setup(RendererSceneEnvironmentRD *p_env, RID p_render_buffers, const CameraMatrix &p_projection, const Transform3D &p_transform, const Size2i p_screen_size, RendererSceneRenderRD *p_scene_render);
+ void setup(RendererSceneEnvironmentRD *p_env, RID p_render_buffers, const PagedArray<RID> &p_lights, const CameraMatrix &p_projection, const Transform3D &p_transform, const Size2i p_screen_size, RendererSceneRenderRD *p_scene_render);
void update(RendererSceneEnvironmentRD *p_env, const CameraMatrix &p_projection, const Transform3D &p_transform, double p_time, float p_luminance_multiplier = 1.0);
void draw(RendererSceneEnvironmentRD *p_env, bool p_can_continue_color, bool p_can_continue_depth, RID p_fb, uint32_t p_view_count, const CameraMatrix *p_projections, const Transform3D &p_transform, double p_time); // only called by clustered renderer
void update_res_buffers(RendererSceneEnvironmentRD *p_env, uint32_t p_view_count, const CameraMatrix *p_projections, const Transform3D &p_transform, double p_time, float p_luminance_multiplier = 1.0);
diff --git a/servers/rendering/renderer_rd/renderer_storage_rd.cpp b/servers/rendering/renderer_rd/renderer_storage_rd.cpp
index 321d86ffda..cf642c38c9 100644
--- a/servers/rendering/renderer_rd/renderer_storage_rd.cpp
+++ b/servers/rendering/renderer_rd/renderer_storage_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -35,6136 +35,13 @@
#include "core/io/resource_loader.h"
#include "core/math/math_defs.h"
#include "renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/light_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/mesh_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/particles_storage.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/rendering_server_globals.h"
#include "servers/rendering/shader_language.h"
-bool RendererStorageRD::can_create_resources_async() const {
- return true;
-}
-
-Ref<Image> RendererStorageRD::_validate_texture_format(const Ref<Image> &p_image, TextureToRDFormat &r_format) {
- Ref<Image> image = p_image->duplicate();
-
- switch (p_image->get_format()) {
- case Image::FORMAT_L8: {
- r_format.format = RD::DATA_FORMAT_R8_UNORM;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break; //luminance
- case Image::FORMAT_LA8: {
- r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_G;
- } break; //luminance-alpha
- case Image::FORMAT_R8: {
- r_format.format = RD::DATA_FORMAT_R8_UNORM;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_RG8: {
- r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_RGB8: {
- //this format is not mandatory for specification, check if supported first
- if (false && RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R8G8B8_UNORM, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT) && RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R8G8B8_SRGB, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_R8G8B8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8_SRGB;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break;
- case Image::FORMAT_RGBA8: {
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_RGBA4444: {
- r_format.format = RD::DATA_FORMAT_B4G4R4A4_UNORM_PACK16;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_B; //needs swizzle
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_RGB565: {
- r_format.format = RD::DATA_FORMAT_B5G6R5_UNORM_PACK16;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_RF: {
- r_format.format = RD::DATA_FORMAT_R32_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break; //float
- case Image::FORMAT_RGF: {
- r_format.format = RD::DATA_FORMAT_R32G32_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_RGBF: {
- //this format is not mandatory for specification, check if supported first
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R32G32B32_SFLOAT, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
- image->convert(Image::FORMAT_RGBAF);
- }
-
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_RGBAF: {
- r_format.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
-
- } break;
- case Image::FORMAT_RH: {
- r_format.format = RD::DATA_FORMAT_R16_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break; //half float
- case Image::FORMAT_RGH: {
- r_format.format = RD::DATA_FORMAT_R16G16_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break;
- case Image::FORMAT_RGBH: {
- //this format is not mandatory for specification, check if supported first
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R16G16B16_SFLOAT, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_R16G16B16_SFLOAT;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
- image->convert(Image::FORMAT_RGBAH);
- }
-
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_RGBAH: {
- r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
-
- } break;
- case Image::FORMAT_RGBE9995: {
- r_format.format = RD::DATA_FORMAT_E5B9G9R9_UFLOAT_PACK32;
-#ifndef _MSC_VER
-#warning TODO need to make a function in Image to swap bits for this
-#endif
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_IDENTITY;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_IDENTITY;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_IDENTITY;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_IDENTITY;
- } break;
- case Image::FORMAT_DXT1: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC1_RGB_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC1_RGB_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_BC1_RGB_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break; //s3tc bc1
- case Image::FORMAT_DXT3: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC2_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC2_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_BC2_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
-
- } break; //bc2
- case Image::FORMAT_DXT5: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC3_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC3_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_BC3_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break; //bc3
- case Image::FORMAT_RGTC_R: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC4_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC4_UNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8_UNORM;
- image->decompress();
- image->convert(Image::FORMAT_R8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break;
- case Image::FORMAT_RGTC_RG: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC5_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC5_UNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
- image->decompress();
- image->convert(Image::FORMAT_RG8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break;
- case Image::FORMAT_BPTC_RGBA: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC7_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC7_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_BC7_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
-
- } break; //btpc bc7
- case Image::FORMAT_BPTC_RGBF: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC6H_SFLOAT_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC6H_SFLOAT_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
- image->decompress();
- image->convert(Image::FORMAT_RGBAH);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break; //float bc6h
- case Image::FORMAT_BPTC_RGBFU: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC6H_UFLOAT_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC6H_UFLOAT_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
- image->decompress();
- image->convert(Image::FORMAT_RGBAH);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break; //unsigned float bc6hu
- case Image::FORMAT_PVRTC1_2: {
- //this is not properly supported by MoltekVK it seems, so best to use ETC2
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG;
- r_format.format_srgb = RD::DATA_FORMAT_PVRTC1_2BPP_SRGB_BLOCK_IMG;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break; //pvrtc
- case Image::FORMAT_PVRTC1_2A: {
- //this is not properly supported by MoltekVK it seems, so best to use ETC2
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG;
- r_format.format_srgb = RD::DATA_FORMAT_PVRTC1_2BPP_SRGB_BLOCK_IMG;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_PVRTC1_4: {
- //this is not properly supported by MoltekVK it seems, so best to use ETC2
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG;
- r_format.format_srgb = RD::DATA_FORMAT_PVRTC1_4BPP_SRGB_BLOCK_IMG;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_PVRTC1_4A: {
- //this is not properly supported by MoltekVK it seems, so best to use ETC2
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG;
- r_format.format_srgb = RD::DATA_FORMAT_PVRTC1_4BPP_SRGB_BLOCK_IMG;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_ETC2_R11: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_EAC_R11_UNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8_UNORM;
- image->decompress();
- image->convert(Image::FORMAT_R8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break; //etc2
- case Image::FORMAT_ETC2_R11S: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11_SNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_EAC_R11_SNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8_SNORM;
- image->decompress();
- image->convert(Image::FORMAT_R8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break; //signed: {} break; NOT srgb.
- case Image::FORMAT_ETC2_RG11: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11G11_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_EAC_R11G11_UNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
- image->decompress();
- image->convert(Image::FORMAT_RG8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_ETC2_RG11S: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11G11_SNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_EAC_R11G11_SNORM_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8_SNORM;
- image->decompress();
- image->convert(Image::FORMAT_RG8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_ETC:
- case Image::FORMAT_ETC2_RGB8: {
- //ETC2 is backwards compatible with ETC1, and all modern platforms support it
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
-
- } break;
- case Image::FORMAT_ETC2_RGBA8: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_ETC2_RGB8A1: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
- } break;
- case Image::FORMAT_ETC2_RA_AS_RG: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_A;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
- case Image::FORMAT_DXT5_RA_AS_RG: {
- if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC3_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
- r_format.format = RD::DATA_FORMAT_BC3_UNORM_BLOCK;
- r_format.format_srgb = RD::DATA_FORMAT_BC3_SRGB_BLOCK;
- } else {
- //not supported, reconvert
- r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- image->decompress();
- image->convert(Image::FORMAT_RGBA8);
- }
- r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
- r_format.swizzle_g = RD::TEXTURE_SWIZZLE_A;
- r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
- r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- } break;
-
- default: {
- }
- }
-
- return image;
-}
-
-RID RendererStorageRD::texture_allocate() {
- return texture_owner.allocate_rid();
-}
-
-void RendererStorageRD::texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) {
- ERR_FAIL_COND(p_image.is_null());
- ERR_FAIL_COND(p_image->is_empty());
-
- TextureToRDFormat ret_format;
- Ref<Image> image = _validate_texture_format(p_image, ret_format);
-
- Texture texture;
-
- texture.type = Texture::TYPE_2D;
-
- texture.width = p_image->get_width();
- texture.height = p_image->get_height();
- texture.layers = 1;
- texture.mipmaps = p_image->get_mipmap_count() + 1;
- texture.depth = 1;
- texture.format = p_image->get_format();
- texture.validated_format = image->get_format();
-
- texture.rd_type = RD::TEXTURE_TYPE_2D;
- texture.rd_format = ret_format.format;
- texture.rd_format_srgb = ret_format.format_srgb;
-
- RD::TextureFormat rd_format;
- RD::TextureView rd_view;
- { //attempt register
- rd_format.format = texture.rd_format;
- rd_format.width = texture.width;
- rd_format.height = texture.height;
- rd_format.depth = 1;
- rd_format.array_layers = 1;
- rd_format.mipmaps = texture.mipmaps;
- rd_format.texture_type = texture.rd_type;
- rd_format.samples = RD::TEXTURE_SAMPLES_1;
- rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_format.shareable_formats.push_back(texture.rd_format);
- rd_format.shareable_formats.push_back(texture.rd_format_srgb);
- }
- }
- {
- rd_view.swizzle_r = ret_format.swizzle_r;
- rd_view.swizzle_g = ret_format.swizzle_g;
- rd_view.swizzle_b = ret_format.swizzle_b;
- rd_view.swizzle_a = ret_format.swizzle_a;
- }
- Vector<uint8_t> data = image->get_data(); //use image data
- Vector<Vector<uint8_t>> data_slices;
- data_slices.push_back(data);
- texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
- ERR_FAIL_COND(texture.rd_texture.is_null());
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_view.format_override = texture.rd_format_srgb;
- texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
- if (texture.rd_texture_srgb.is_null()) {
- RD::get_singleton()->free(texture.rd_texture);
- ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
- }
- }
-
- //used for 2D, overridable
- texture.width_2d = texture.width;
- texture.height_2d = texture.height;
- texture.is_render_target = false;
- texture.rd_view = rd_view;
- texture.is_proxy = false;
-
- texture_owner.initialize_rid(p_texture, texture);
-}
-
-void RendererStorageRD::texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) {
- ERR_FAIL_COND(p_layers.size() == 0);
-
- ERR_FAIL_COND(p_layered_type == RS::TEXTURE_LAYERED_CUBEMAP && p_layers.size() != 6);
- ERR_FAIL_COND(p_layered_type == RS::TEXTURE_LAYERED_CUBEMAP_ARRAY && (p_layers.size() < 6 || (p_layers.size() % 6) != 0));
-
- TextureToRDFormat ret_format;
- Vector<Ref<Image>> images;
- {
- int valid_width = 0;
- int valid_height = 0;
- bool valid_mipmaps = false;
- Image::Format valid_format = Image::FORMAT_MAX;
-
- for (int i = 0; i < p_layers.size(); i++) {
- ERR_FAIL_COND(p_layers[i]->is_empty());
-
- if (i == 0) {
- valid_width = p_layers[i]->get_width();
- valid_height = p_layers[i]->get_height();
- valid_format = p_layers[i]->get_format();
- valid_mipmaps = p_layers[i]->has_mipmaps();
- } else {
- ERR_FAIL_COND(p_layers[i]->get_width() != valid_width);
- ERR_FAIL_COND(p_layers[i]->get_height() != valid_height);
- ERR_FAIL_COND(p_layers[i]->get_format() != valid_format);
- ERR_FAIL_COND(p_layers[i]->has_mipmaps() != valid_mipmaps);
- }
-
- images.push_back(_validate_texture_format(p_layers[i], ret_format));
- }
- }
-
- Texture texture;
-
- texture.type = Texture::TYPE_LAYERED;
- texture.layered_type = p_layered_type;
-
- texture.width = p_layers[0]->get_width();
- texture.height = p_layers[0]->get_height();
- texture.layers = p_layers.size();
- texture.mipmaps = p_layers[0]->get_mipmap_count() + 1;
- texture.depth = 1;
- texture.format = p_layers[0]->get_format();
- texture.validated_format = images[0]->get_format();
-
- switch (p_layered_type) {
- case RS::TEXTURE_LAYERED_2D_ARRAY: {
- texture.rd_type = RD::TEXTURE_TYPE_2D_ARRAY;
- } break;
- case RS::TEXTURE_LAYERED_CUBEMAP: {
- texture.rd_type = RD::TEXTURE_TYPE_CUBE;
- } break;
- case RS::TEXTURE_LAYERED_CUBEMAP_ARRAY: {
- texture.rd_type = RD::TEXTURE_TYPE_CUBE_ARRAY;
- } break;
- }
-
- texture.rd_format = ret_format.format;
- texture.rd_format_srgb = ret_format.format_srgb;
-
- RD::TextureFormat rd_format;
- RD::TextureView rd_view;
- { //attempt register
- rd_format.format = texture.rd_format;
- rd_format.width = texture.width;
- rd_format.height = texture.height;
- rd_format.depth = 1;
- rd_format.array_layers = texture.layers;
- rd_format.mipmaps = texture.mipmaps;
- rd_format.texture_type = texture.rd_type;
- rd_format.samples = RD::TEXTURE_SAMPLES_1;
- rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_format.shareable_formats.push_back(texture.rd_format);
- rd_format.shareable_formats.push_back(texture.rd_format_srgb);
- }
- }
- {
- rd_view.swizzle_r = ret_format.swizzle_r;
- rd_view.swizzle_g = ret_format.swizzle_g;
- rd_view.swizzle_b = ret_format.swizzle_b;
- rd_view.swizzle_a = ret_format.swizzle_a;
- }
- Vector<Vector<uint8_t>> data_slices;
- for (int i = 0; i < images.size(); i++) {
- Vector<uint8_t> data = images[i]->get_data(); //use image data
- data_slices.push_back(data);
- }
- texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
- ERR_FAIL_COND(texture.rd_texture.is_null());
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_view.format_override = texture.rd_format_srgb;
- texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
- if (texture.rd_texture_srgb.is_null()) {
- RD::get_singleton()->free(texture.rd_texture);
- ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
- }
- }
-
- //used for 2D, overridable
- texture.width_2d = texture.width;
- texture.height_2d = texture.height;
- texture.is_render_target = false;
- texture.rd_view = rd_view;
- texture.is_proxy = false;
-
- texture_owner.initialize_rid(p_texture, texture);
-}
-
-void RendererStorageRD::texture_3d_initialize(RID p_texture, Image::Format p_format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) {
- ERR_FAIL_COND(p_data.size() == 0);
- Image::Image3DValidateError verr = Image::validate_3d_image(p_format, p_width, p_height, p_depth, p_mipmaps, p_data);
- if (verr != Image::VALIDATE_3D_OK) {
- ERR_FAIL_MSG(Image::get_3d_image_validation_error_text(verr));
- }
-
- TextureToRDFormat ret_format;
- Image::Format validated_format = Image::FORMAT_MAX;
- Vector<uint8_t> all_data;
- uint32_t mipmap_count = 0;
- Vector<Texture::BufferSlice3D> slices;
- {
- Vector<Ref<Image>> images;
- uint32_t all_data_size = 0;
- images.resize(p_data.size());
- for (int i = 0; i < p_data.size(); i++) {
- TextureToRDFormat f;
- images.write[i] = _validate_texture_format(p_data[i], f);
- if (i == 0) {
- ret_format = f;
- validated_format = images[0]->get_format();
- }
-
- all_data_size += images[i]->get_data().size();
- }
-
- all_data.resize(all_data_size); //consolidate all data here
- uint32_t offset = 0;
- Size2i prev_size;
- for (int i = 0; i < p_data.size(); i++) {
- uint32_t s = images[i]->get_data().size();
-
- memcpy(&all_data.write[offset], images[i]->get_data().ptr(), s);
- {
- Texture::BufferSlice3D slice;
- slice.size.width = images[i]->get_width();
- slice.size.height = images[i]->get_height();
- slice.offset = offset;
- slice.buffer_size = s;
- slices.push_back(slice);
- }
- offset += s;
-
- Size2i img_size(images[i]->get_width(), images[i]->get_height());
- if (img_size != prev_size) {
- mipmap_count++;
- }
- prev_size = img_size;
- }
- }
-
- Texture texture;
-
- texture.type = Texture::TYPE_3D;
- texture.width = p_width;
- texture.height = p_height;
- texture.depth = p_depth;
- texture.mipmaps = mipmap_count;
- texture.format = p_data[0]->get_format();
- texture.validated_format = validated_format;
-
- texture.buffer_size_3d = all_data.size();
- texture.buffer_slices_3d = slices;
-
- texture.rd_type = RD::TEXTURE_TYPE_3D;
- texture.rd_format = ret_format.format;
- texture.rd_format_srgb = ret_format.format_srgb;
-
- RD::TextureFormat rd_format;
- RD::TextureView rd_view;
- { //attempt register
- rd_format.format = texture.rd_format;
- rd_format.width = texture.width;
- rd_format.height = texture.height;
- rd_format.depth = texture.depth;
- rd_format.array_layers = 1;
- rd_format.mipmaps = texture.mipmaps;
- rd_format.texture_type = texture.rd_type;
- rd_format.samples = RD::TEXTURE_SAMPLES_1;
- rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_format.shareable_formats.push_back(texture.rd_format);
- rd_format.shareable_formats.push_back(texture.rd_format_srgb);
- }
- }
- {
- rd_view.swizzle_r = ret_format.swizzle_r;
- rd_view.swizzle_g = ret_format.swizzle_g;
- rd_view.swizzle_b = ret_format.swizzle_b;
- rd_view.swizzle_a = ret_format.swizzle_a;
- }
- Vector<Vector<uint8_t>> data_slices;
- data_slices.push_back(all_data); //one slice
-
- texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
- ERR_FAIL_COND(texture.rd_texture.is_null());
- if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
- rd_view.format_override = texture.rd_format_srgb;
- texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
- if (texture.rd_texture_srgb.is_null()) {
- RD::get_singleton()->free(texture.rd_texture);
- ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
- }
- }
-
- //used for 2D, overridable
- texture.width_2d = texture.width;
- texture.height_2d = texture.height;
- texture.is_render_target = false;
- texture.rd_view = rd_view;
- texture.is_proxy = false;
-
- texture_owner.initialize_rid(p_texture, texture);
-}
-
-void RendererStorageRD::texture_proxy_initialize(RID p_texture, RID p_base) {
- Texture *tex = texture_owner.get_or_null(p_base);
- ERR_FAIL_COND(!tex);
- Texture proxy_tex = *tex;
-
- proxy_tex.rd_view.format_override = tex->rd_format;
- proxy_tex.rd_texture = RD::get_singleton()->texture_create_shared(proxy_tex.rd_view, tex->rd_texture);
- if (proxy_tex.rd_texture_srgb.is_valid()) {
- proxy_tex.rd_view.format_override = tex->rd_format_srgb;
- proxy_tex.rd_texture_srgb = RD::get_singleton()->texture_create_shared(proxy_tex.rd_view, tex->rd_texture);
- }
- proxy_tex.proxy_to = p_base;
- proxy_tex.is_render_target = false;
- proxy_tex.is_proxy = true;
- proxy_tex.proxies.clear();
-
- texture_owner.initialize_rid(p_texture, proxy_tex);
-
- tex->proxies.push_back(p_texture);
-}
-
-void RendererStorageRD::_texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer, bool p_immediate) {
- ERR_FAIL_COND(p_image.is_null() || p_image->is_empty());
-
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- ERR_FAIL_COND(tex->is_render_target);
- ERR_FAIL_COND(p_image->get_width() != tex->width || p_image->get_height() != tex->height);
- ERR_FAIL_COND(p_image->get_format() != tex->format);
-
- if (tex->type == Texture::TYPE_LAYERED) {
- ERR_FAIL_INDEX(p_layer, tex->layers);
- }
-
-#ifdef TOOLS_ENABLED
- tex->image_cache_2d.unref();
-#endif
- TextureToRDFormat f;
- Ref<Image> validated = _validate_texture_format(p_image, f);
-
- RD::get_singleton()->texture_update(tex->rd_texture, p_layer, validated->get_data());
-}
-
-void RendererStorageRD::texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer) {
- _texture_2d_update(p_texture, p_image, p_layer, false);
-}
-
-void RendererStorageRD::texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- ERR_FAIL_COND(tex->type != Texture::TYPE_3D);
- Image::Image3DValidateError verr = Image::validate_3d_image(tex->format, tex->width, tex->height, tex->depth, tex->mipmaps > 1, p_data);
- if (verr != Image::VALIDATE_3D_OK) {
- ERR_FAIL_MSG(Image::get_3d_image_validation_error_text(verr));
- }
-
- Vector<uint8_t> all_data;
- {
- Vector<Ref<Image>> images;
- uint32_t all_data_size = 0;
- images.resize(p_data.size());
- for (int i = 0; i < p_data.size(); i++) {
- Ref<Image> image = p_data[i];
- if (image->get_format() != tex->validated_format) {
- image = image->duplicate();
- image->convert(tex->validated_format);
- }
- all_data_size += images[i]->get_data().size();
- images.push_back(image);
- }
-
- all_data.resize(all_data_size); //consolidate all data here
- uint32_t offset = 0;
-
- for (int i = 0; i < p_data.size(); i++) {
- uint32_t s = images[i]->get_data().size();
- memcpy(&all_data.write[offset], images[i]->get_data().ptr(), s);
- offset += s;
- }
- }
-
- RD::get_singleton()->texture_update(tex->rd_texture, 0, all_data);
-}
-
-void RendererStorageRD::texture_proxy_update(RID p_texture, RID p_proxy_to) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- ERR_FAIL_COND(!tex->is_proxy);
- Texture *proxy_to = texture_owner.get_or_null(p_proxy_to);
- ERR_FAIL_COND(!proxy_to);
- ERR_FAIL_COND(proxy_to->is_proxy);
-
- if (tex->proxy_to.is_valid()) {
- //unlink proxy
- if (RD::get_singleton()->texture_is_valid(tex->rd_texture)) {
- RD::get_singleton()->free(tex->rd_texture);
- tex->rd_texture = RID();
- }
- if (RD::get_singleton()->texture_is_valid(tex->rd_texture_srgb)) {
- RD::get_singleton()->free(tex->rd_texture_srgb);
- tex->rd_texture_srgb = RID();
- }
- Texture *prev_tex = texture_owner.get_or_null(tex->proxy_to);
- ERR_FAIL_COND(!prev_tex);
- prev_tex->proxies.erase(p_texture);
- }
-
- *tex = *proxy_to;
-
- tex->proxy_to = p_proxy_to;
- tex->is_render_target = false;
- tex->is_proxy = true;
- tex->proxies.clear();
- proxy_to->proxies.push_back(p_texture);
-
- tex->rd_view.format_override = tex->rd_format;
- tex->rd_texture = RD::get_singleton()->texture_create_shared(tex->rd_view, proxy_to->rd_texture);
- if (tex->rd_texture_srgb.is_valid()) {
- tex->rd_view.format_override = tex->rd_format_srgb;
- tex->rd_texture_srgb = RD::get_singleton()->texture_create_shared(tex->rd_view, proxy_to->rd_texture);
- }
-}
-
-//these two APIs can be used together or in combination with the others.
-void RendererStorageRD::texture_2d_placeholder_initialize(RID p_texture) {
- //this could be better optimized to reuse an existing image , done this way
- //for now to get it working
- Ref<Image> image;
- image.instantiate();
- image->create(4, 4, false, Image::FORMAT_RGBA8);
-
- for (int i = 0; i < 4; i++) {
- for (int j = 0; j < 4; j++) {
- image->set_pixel(i, j, Color(1, 0, 1, 1));
- }
- }
-
- texture_2d_initialize(p_texture, image);
-}
-
-void RendererStorageRD::texture_2d_layered_placeholder_initialize(RID p_texture, RS::TextureLayeredType p_layered_type) {
- //this could be better optimized to reuse an existing image , done this way
- //for now to get it working
- Ref<Image> image;
- image.instantiate();
- image->create(4, 4, false, Image::FORMAT_RGBA8);
-
- for (int i = 0; i < 4; i++) {
- for (int j = 0; j < 4; j++) {
- image->set_pixel(i, j, Color(1, 0, 1, 1));
- }
- }
-
- Vector<Ref<Image>> images;
- if (p_layered_type == RS::TEXTURE_LAYERED_2D_ARRAY) {
- images.push_back(image);
- } else {
- //cube
- for (int i = 0; i < 6; i++) {
- images.push_back(image);
- }
- }
-
- texture_2d_layered_initialize(p_texture, images, p_layered_type);
-}
-
-void RendererStorageRD::texture_3d_placeholder_initialize(RID p_texture) {
- //this could be better optimized to reuse an existing image , done this way
- //for now to get it working
- Ref<Image> image;
- image.instantiate();
- image->create(4, 4, false, Image::FORMAT_RGBA8);
-
- for (int i = 0; i < 4; i++) {
- for (int j = 0; j < 4; j++) {
- image->set_pixel(i, j, Color(1, 0, 1, 1));
- }
- }
-
- Vector<Ref<Image>> images;
- //cube
- for (int i = 0; i < 4; i++) {
- images.push_back(image);
- }
-
- texture_3d_initialize(p_texture, Image::FORMAT_RGBA8, 4, 4, 4, false, images);
-}
-
-Ref<Image> RendererStorageRD::texture_2d_get(RID p_texture) const {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND_V(!tex, Ref<Image>());
-
-#ifdef TOOLS_ENABLED
- if (tex->image_cache_2d.is_valid() && !tex->is_render_target) {
- return tex->image_cache_2d;
- }
-#endif
- Vector<uint8_t> data = RD::get_singleton()->texture_get_data(tex->rd_texture, 0);
- ERR_FAIL_COND_V(data.size() == 0, Ref<Image>());
- Ref<Image> image;
- image.instantiate();
- image->create(tex->width, tex->height, tex->mipmaps > 1, tex->validated_format, data);
- ERR_FAIL_COND_V(image->is_empty(), Ref<Image>());
- if (tex->format != tex->validated_format) {
- image->convert(tex->format);
- }
-
-#ifdef TOOLS_ENABLED
- if (Engine::get_singleton()->is_editor_hint() && !tex->is_render_target) {
- tex->image_cache_2d = image;
- }
-#endif
-
- return image;
-}
-
-Ref<Image> RendererStorageRD::texture_2d_layer_get(RID p_texture, int p_layer) const {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND_V(!tex, Ref<Image>());
-
- Vector<uint8_t> data = RD::get_singleton()->texture_get_data(tex->rd_texture, p_layer);
- ERR_FAIL_COND_V(data.size() == 0, Ref<Image>());
- Ref<Image> image;
- image.instantiate();
- image->create(tex->width, tex->height, tex->mipmaps > 1, tex->validated_format, data);
- ERR_FAIL_COND_V(image->is_empty(), Ref<Image>());
- if (tex->format != tex->validated_format) {
- image->convert(tex->format);
- }
-
- return image;
-}
-
-Vector<Ref<Image>> RendererStorageRD::texture_3d_get(RID p_texture) const {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND_V(!tex, Vector<Ref<Image>>());
- ERR_FAIL_COND_V(tex->type != Texture::TYPE_3D, Vector<Ref<Image>>());
-
- Vector<uint8_t> all_data = RD::get_singleton()->texture_get_data(tex->rd_texture, 0);
-
- ERR_FAIL_COND_V(all_data.size() != (int)tex->buffer_size_3d, Vector<Ref<Image>>());
-
- Vector<Ref<Image>> ret;
-
- for (int i = 0; i < tex->buffer_slices_3d.size(); i++) {
- const Texture::BufferSlice3D &bs = tex->buffer_slices_3d[i];
- ERR_FAIL_COND_V(bs.offset >= (uint32_t)all_data.size(), Vector<Ref<Image>>());
- ERR_FAIL_COND_V(bs.offset + bs.buffer_size > (uint32_t)all_data.size(), Vector<Ref<Image>>());
- Vector<uint8_t> sub_region = all_data.slice(bs.offset, bs.offset + bs.buffer_size);
-
- Ref<Image> img;
- img.instantiate();
- img->create(bs.size.width, bs.size.height, false, tex->validated_format, sub_region);
- ERR_FAIL_COND_V(img->is_empty(), Vector<Ref<Image>>());
- if (tex->format != tex->validated_format) {
- img->convert(tex->format);
- }
-
- ret.push_back(img);
- }
-
- return ret;
-}
-
-void RendererStorageRD::texture_replace(RID p_texture, RID p_by_texture) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- ERR_FAIL_COND(tex->proxy_to.is_valid()); //can't replace proxy
- Texture *by_tex = texture_owner.get_or_null(p_by_texture);
- ERR_FAIL_COND(!by_tex);
- ERR_FAIL_COND(by_tex->proxy_to.is_valid()); //can't replace proxy
-
- if (tex == by_tex) {
- return;
- }
-
- if (tex->rd_texture_srgb.is_valid()) {
- RD::get_singleton()->free(tex->rd_texture_srgb);
- }
- RD::get_singleton()->free(tex->rd_texture);
-
- if (tex->canvas_texture) {
- memdelete(tex->canvas_texture);
- tex->canvas_texture = nullptr;
- }
-
- Vector<RID> proxies_to_update = tex->proxies;
- Vector<RID> proxies_to_redirect = by_tex->proxies;
-
- *tex = *by_tex;
-
- tex->proxies = proxies_to_update; //restore proxies, so they can be updated
-
- if (tex->canvas_texture) {
- tex->canvas_texture->diffuse = p_texture; //update
- }
-
- for (int i = 0; i < proxies_to_update.size(); i++) {
- texture_proxy_update(proxies_to_update[i], p_texture);
- }
- for (int i = 0; i < proxies_to_redirect.size(); i++) {
- texture_proxy_update(proxies_to_redirect[i], p_texture);
- }
- //delete last, so proxies can be updated
- texture_owner.free(p_by_texture);
-
- if (decal_atlas.textures.has(p_texture)) {
- //belongs to decal atlas..
-
- decal_atlas.dirty = true; //mark it dirty since it was most likely modified
- }
-}
-
-void RendererStorageRD::texture_set_size_override(RID p_texture, int p_width, int p_height) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- ERR_FAIL_COND(tex->type != Texture::TYPE_2D);
- tex->width_2d = p_width;
- tex->height_2d = p_height;
-}
-
-void RendererStorageRD::texture_set_path(RID p_texture, const String &p_path) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- tex->path = p_path;
-}
-
-String RendererStorageRD::texture_get_path(RID p_texture) const {
- return String();
-}
-
-void RendererStorageRD::texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- tex->detect_3d_callback_ud = p_userdata;
- tex->detect_3d_callback = p_callback;
-}
-
-void RendererStorageRD::texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- tex->detect_normal_callback_ud = p_userdata;
- tex->detect_normal_callback = p_callback;
-}
-
-void RendererStorageRD::texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) {
- Texture *tex = texture_owner.get_or_null(p_texture);
- ERR_FAIL_COND(!tex);
- tex->detect_roughness_callback_ud = p_userdata;
- tex->detect_roughness_callback = p_callback;
-}
-
-void RendererStorageRD::texture_debug_usage(List<RS::TextureInfo> *r_info) {
-}
-
-void RendererStorageRD::texture_set_proxy(RID p_proxy, RID p_base) {
-}
-
-void RendererStorageRD::texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) {
-}
-
-Size2 RendererStorageRD::texture_size_with_proxy(RID p_proxy) {
- return texture_2d_get_size(p_proxy);
-}
-
-/* CANVAS TEXTURE */
-
-void RendererStorageRD::CanvasTexture::clear_sets() {
- if (cleared_cache) {
- return;
- }
- for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
- for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
- if (RD::get_singleton()->uniform_set_is_valid(uniform_sets[i][j])) {
- RD::get_singleton()->free(uniform_sets[i][j]);
- uniform_sets[i][j] = RID();
- }
- }
- }
- cleared_cache = true;
-}
-
-RendererStorageRD::CanvasTexture::~CanvasTexture() {
- clear_sets();
-}
-
-void RendererStorageRD::sampler_rd_configure_custom(float p_mipmap_bias) {
- for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
- for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
- RD::SamplerState sampler_state;
- switch (i) {
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.max_lod = 0;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.max_lod = 0;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.lod_bias = p_mipmap_bias;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.lod_bias = p_mipmap_bias;
-
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.lod_bias = p_mipmap_bias;
- sampler_state.use_anisotropy = true;
- sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.lod_bias = p_mipmap_bias;
- sampler_state.use_anisotropy = true;
- sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
-
- } break;
- default: {
- }
- }
- switch (j) {
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
-
- } break;
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_REPEAT;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_REPEAT;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_REPEAT;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_MIRROR: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- } break;
- default: {
- }
- }
-
- if (custom_rd_samplers[i][j].is_valid()) {
- RD::get_singleton()->free(custom_rd_samplers[i][j]);
- }
-
- custom_rd_samplers[i][j] = RD::get_singleton()->sampler_create(sampler_state);
- }
- }
-}
-
-RID RendererStorageRD::canvas_texture_allocate() {
- return canvas_texture_owner.allocate_rid();
-}
-void RendererStorageRD::canvas_texture_initialize(RID p_rid) {
- canvas_texture_owner.initialize_rid(p_rid);
-}
-
-void RendererStorageRD::canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) {
- CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
- switch (p_channel) {
- case RS::CANVAS_TEXTURE_CHANNEL_DIFFUSE: {
- ct->diffuse = p_texture;
- } break;
- case RS::CANVAS_TEXTURE_CHANNEL_NORMAL: {
- ct->normal_map = p_texture;
- } break;
- case RS::CANVAS_TEXTURE_CHANNEL_SPECULAR: {
- ct->specular = p_texture;
- } break;
- }
-
- ct->clear_sets();
-}
-
-void RendererStorageRD::canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_specular_color, float p_shininess) {
- CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
- ct->specular_color.r = p_specular_color.r;
- ct->specular_color.g = p_specular_color.g;
- ct->specular_color.b = p_specular_color.b;
- ct->specular_color.a = p_shininess;
- ct->clear_sets();
-}
-
-void RendererStorageRD::canvas_texture_set_texture_filter(RID p_canvas_texture, RS::CanvasItemTextureFilter p_filter) {
- CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
- ct->texture_filter = p_filter;
- ct->clear_sets();
-}
-
-void RendererStorageRD::canvas_texture_set_texture_repeat(RID p_canvas_texture, RS::CanvasItemTextureRepeat p_repeat) {
- CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
- ct->texture_repeat = p_repeat;
- ct->clear_sets();
-}
-
-bool RendererStorageRD::canvas_texture_get_uniform_set(RID p_texture, RS::CanvasItemTextureFilter p_base_filter, RS::CanvasItemTextureRepeat p_base_repeat, RID p_base_shader, int p_base_set, RID &r_uniform_set, Size2i &r_size, Color &r_specular_shininess, bool &r_use_normal, bool &r_use_specular) {
- CanvasTexture *ct = nullptr;
-
- Texture *t = texture_owner.get_or_null(p_texture);
-
- if (t) {
- //regular texture
- if (!t->canvas_texture) {
- t->canvas_texture = memnew(CanvasTexture);
- t->canvas_texture->diffuse = p_texture;
- }
-
- ct = t->canvas_texture;
- } else {
- ct = canvas_texture_owner.get_or_null(p_texture);
- }
-
- if (!ct) {
- return false; //invalid texture RID
- }
-
- RS::CanvasItemTextureFilter filter = ct->texture_filter != RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT ? ct->texture_filter : p_base_filter;
- ERR_FAIL_COND_V(filter == RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT, false);
-
- RS::CanvasItemTextureRepeat repeat = ct->texture_repeat != RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT ? ct->texture_repeat : p_base_repeat;
- ERR_FAIL_COND_V(repeat == RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT, false);
-
- RID uniform_set = ct->uniform_sets[filter][repeat];
- if (!RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
- //create and update
- Vector<RD::Uniform> uniforms;
- { //diffuse
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 0;
-
- t = texture_owner.get_or_null(ct->diffuse);
- if (!t) {
- u.ids.push_back(texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE));
- ct->size_cache = Size2i(1, 1);
- } else {
- u.ids.push_back(t->rd_texture);
- ct->size_cache = Size2i(t->width_2d, t->height_2d);
- }
- uniforms.push_back(u);
- }
- { //normal
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 1;
-
- t = texture_owner.get_or_null(ct->normal_map);
- if (!t) {
- u.ids.push_back(texture_rd_get_default(DEFAULT_RD_TEXTURE_NORMAL));
- ct->use_normal_cache = false;
- } else {
- u.ids.push_back(t->rd_texture);
- ct->use_normal_cache = true;
- }
- uniforms.push_back(u);
- }
- { //specular
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 2;
-
- t = texture_owner.get_or_null(ct->specular);
- if (!t) {
- u.ids.push_back(texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE));
- ct->use_specular_cache = false;
- } else {
- u.ids.push_back(t->rd_texture);
- ct->use_specular_cache = true;
- }
- uniforms.push_back(u);
- }
- { //sampler
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 3;
- u.ids.push_back(sampler_rd_get_default(filter, repeat));
- uniforms.push_back(u);
- }
-
- uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_base_shader, p_base_set);
- ct->uniform_sets[filter][repeat] = uniform_set;
- ct->cleared_cache = false;
- }
-
- r_uniform_set = uniform_set;
- r_size = ct->size_cache;
- r_specular_shininess = ct->specular_color;
- r_use_normal = ct->use_normal_cache;
- r_use_specular = ct->use_specular_cache;
-
- return true;
-}
-
-/* SHADER API */
-
-RID RendererStorageRD::shader_allocate() {
- return shader_owner.allocate_rid();
-}
-void RendererStorageRD::shader_initialize(RID p_rid) {
- Shader shader;
- shader.data = nullptr;
- shader.type = SHADER_TYPE_MAX;
-
- shader_owner.initialize_rid(p_rid, shader);
-}
-
-void RendererStorageRD::shader_set_code(RID p_shader, const String &p_code) {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND(!shader);
-
- shader->code = p_code;
- String mode_string = ShaderLanguage::get_shader_type(p_code);
-
- ShaderType new_type;
- if (mode_string == "canvas_item") {
- new_type = SHADER_TYPE_2D;
- } else if (mode_string == "particles") {
- new_type = SHADER_TYPE_PARTICLES;
- } else if (mode_string == "spatial") {
- new_type = SHADER_TYPE_3D;
- } else if (mode_string == "sky") {
- new_type = SHADER_TYPE_SKY;
- } else if (mode_string == "fog") {
- new_type = SHADER_TYPE_FOG;
- } else {
- new_type = SHADER_TYPE_MAX;
- }
-
- if (new_type != shader->type) {
- if (shader->data) {
- memdelete(shader->data);
- shader->data = nullptr;
- }
-
- for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
- Material *material = E->get();
- material->shader_type = new_type;
- if (material->data) {
- memdelete(material->data);
- material->data = nullptr;
- }
- }
-
- shader->type = new_type;
-
- if (new_type < SHADER_TYPE_MAX && shader_data_request_func[new_type]) {
- shader->data = shader_data_request_func[new_type]();
- } else {
- shader->type = SHADER_TYPE_MAX; //invalid
- }
-
- for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
- Material *material = E->get();
- if (shader->data) {
- material->data = material_data_request_func[new_type](shader->data);
- material->data->self = material->self;
- material->data->set_next_pass(material->next_pass);
- material->data->set_render_priority(material->priority);
- }
- material->shader_type = new_type;
- }
-
- if (shader->data) {
- for (const KeyValue<StringName, Map<int, RID>> &E : shader->default_texture_parameter) {
- for (const KeyValue<int, RID> &E2 : E.value) {
- shader->data->set_default_texture_param(E.key, E2.value, E2.key);
- }
- }
- }
- }
-
- if (shader->data) {
- shader->data->set_code(p_code);
- }
-
- for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
- Material *material = E->get();
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- _material_queue_update(material, true, true);
- }
-}
-
-String RendererStorageRD::shader_get_code(RID p_shader) const {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND_V(!shader, String());
- return shader->code;
-}
-
-void RendererStorageRD::shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND(!shader);
- if (shader->data) {
- return shader->data->get_param_list(p_param_list);
- }
-}
-
-void RendererStorageRD::shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND(!shader);
-
- if (p_texture.is_valid() && texture_owner.owns(p_texture)) {
- if (!shader->default_texture_parameter.has(p_name)) {
- shader->default_texture_parameter[p_name] = Map<int, RID>();
- }
- shader->default_texture_parameter[p_name][p_index] = p_texture;
- } else {
- if (shader->default_texture_parameter.has(p_name) && shader->default_texture_parameter[p_name].has(p_index)) {
- shader->default_texture_parameter[p_name].erase(p_index);
-
- if (shader->default_texture_parameter[p_name].is_empty()) {
- shader->default_texture_parameter.erase(p_name);
- }
- }
- }
- if (shader->data) {
- shader->data->set_default_texture_param(p_name, p_texture, p_index);
- }
- for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
- Material *material = E->get();
- _material_queue_update(material, false, true);
- }
-}
-
-RID RendererStorageRD::shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND_V(!shader, RID());
- if (shader->default_texture_parameter.has(p_name) && shader->default_texture_parameter[p_name].has(p_index)) {
- return shader->default_texture_parameter[p_name][p_index];
- }
-
- return RID();
-}
-
-Variant RendererStorageRD::shader_get_param_default(RID p_shader, const StringName &p_param) const {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND_V(!shader, Variant());
- if (shader->data) {
- return shader->data->get_default_parameter(p_param);
- }
- return Variant();
-}
-
-void RendererStorageRD::shader_set_data_request_function(ShaderType p_shader_type, ShaderDataRequestFunction p_function) {
- ERR_FAIL_INDEX(p_shader_type, SHADER_TYPE_MAX);
- shader_data_request_func[p_shader_type] = p_function;
-}
-
-RS::ShaderNativeSourceCode RendererStorageRD::shader_get_native_source_code(RID p_shader) const {
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND_V(!shader, RS::ShaderNativeSourceCode());
- if (shader->data) {
- return shader->data->get_native_source_code();
- }
- return RS::ShaderNativeSourceCode();
-}
-
-/* COMMON MATERIAL API */
-
-RID RendererStorageRD::material_allocate() {
- return material_owner.allocate_rid();
-}
-void RendererStorageRD::material_initialize(RID p_rid) {
- material_owner.initialize_rid(p_rid);
- Material *material = material_owner.get_or_null(p_rid);
- material->self = p_rid;
-}
-
-void RendererStorageRD::_material_queue_update(Material *material, bool p_uniform, bool p_texture) {
- if (material->update_element.in_list()) {
- return;
- }
-
- material_update_list.add(&material->update_element);
-
- material->uniform_dirty = material->uniform_dirty || p_uniform;
- material->texture_dirty = material->texture_dirty || p_texture;
-}
-
-void RendererStorageRD::material_set_shader(RID p_material, RID p_shader) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
-
- if (material->data) {
- memdelete(material->data);
- material->data = nullptr;
- }
-
- if (material->shader) {
- material->shader->owners.erase(material);
- material->shader = nullptr;
- material->shader_type = SHADER_TYPE_MAX;
- }
-
- if (p_shader.is_null()) {
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- material->shader_id = 0;
- return;
- }
-
- Shader *shader = shader_owner.get_or_null(p_shader);
- ERR_FAIL_COND(!shader);
- material->shader = shader;
- material->shader_type = shader->type;
- material->shader_id = p_shader.get_local_index();
- shader->owners.insert(material);
-
- if (shader->type == SHADER_TYPE_MAX) {
- return;
- }
-
- ERR_FAIL_COND(shader->data == nullptr);
-
- material->data = material_data_request_func[shader->type](shader->data);
- material->data->self = p_material;
- material->data->set_next_pass(material->next_pass);
- material->data->set_render_priority(material->priority);
- //updating happens later
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- _material_queue_update(material, true, true);
-}
-
-void RendererStorageRD::material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
-
- if (p_value.get_type() == Variant::NIL) {
- material->params.erase(p_param);
- } else {
- ERR_FAIL_COND(p_value.get_type() == Variant::OBJECT); //object not allowed
- material->params[p_param] = p_value;
- }
-
- if (material->shader && material->shader->data) { //shader is valid
- bool is_texture = material->shader->data->is_param_texture(p_param);
- _material_queue_update(material, !is_texture, is_texture);
- } else {
- _material_queue_update(material, true, true);
- }
-}
-
-Variant RendererStorageRD::material_get_param(RID p_material, const StringName &p_param) const {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND_V(!material, Variant());
- if (material->params.has(p_param)) {
- return material->params[p_param];
- } else {
- return Variant();
- }
-}
-
-void RendererStorageRD::material_set_next_pass(RID p_material, RID p_next_material) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
-
- if (material->next_pass == p_next_material) {
- return;
- }
-
- material->next_pass = p_next_material;
- if (material->data) {
- material->data->set_next_pass(p_next_material);
- }
-
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
-}
-
-void RendererStorageRD::material_set_render_priority(RID p_material, int priority) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
- material->priority = priority;
- if (material->data) {
- material->data->set_render_priority(priority);
- }
-}
-
-bool RendererStorageRD::material_is_animated(RID p_material) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND_V(!material, false);
- if (material->shader && material->shader->data) {
- if (material->shader->data->is_animated()) {
- return true;
- } else if (material->next_pass.is_valid()) {
- return material_is_animated(material->next_pass);
- }
- }
- return false; //by default nothing is animated
-}
-
-bool RendererStorageRD::material_casts_shadows(RID p_material) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND_V(!material, true);
- if (material->shader && material->shader->data) {
- if (material->shader->data->casts_shadows()) {
- return true;
- } else if (material->next_pass.is_valid()) {
- return material_casts_shadows(material->next_pass);
- }
- }
- return true; //by default everything casts shadows
-}
-
-void RendererStorageRD::material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
- if (material->shader && material->shader->data) {
- material->shader->data->get_instance_param_list(r_parameters);
-
- if (material->next_pass.is_valid()) {
- material_get_instance_shader_parameters(material->next_pass, r_parameters);
- }
- }
-}
-
-void RendererStorageRD::material_update_dependency(RID p_material, DependencyTracker *p_instance) {
- Material *material = material_owner.get_or_null(p_material);
- ERR_FAIL_COND(!material);
- p_instance->update_dependency(&material->dependency);
- if (material->next_pass.is_valid()) {
- material_update_dependency(material->next_pass, p_instance);
- }
-}
-
-void RendererStorageRD::material_set_data_request_function(ShaderType p_shader_type, MaterialDataRequestFunction p_function) {
- ERR_FAIL_INDEX(p_shader_type, SHADER_TYPE_MAX);
- material_data_request_func[p_shader_type] = p_function;
-}
-
-_FORCE_INLINE_ static void _fill_std140_variant_ubo_value(ShaderLanguage::DataType type, int p_array_size, const Variant &value, uint8_t *data, bool p_linear_color) {
- switch (type) {
- case ShaderLanguage::TYPE_BOOL: {
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size > 0) {
- const PackedInt32Array &ba = value;
- int s = ba.size();
- const int *r = ba.ptr();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = (r[i] != 0) ? 1 : 0;
- } else {
- gui[j] = 0;
- }
- gui[j + 1] = 0; // ignored
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- bool v = value;
- gui[0] = v ? 1 : 0;
- }
- } break;
- case ShaderLanguage::TYPE_BVEC2: {
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size > 0) {
- const PackedInt32Array &ba = value;
- int s = ba.size();
- const int *r = ba.ptr();
- int count = 2 * p_array_size;
-
- for (int i = 0, j = 0; i < count; i += 2, j += 4) {
- if (i < s) {
- gui[j] = r[i] ? 1 : 0;
- gui[j + 1] = r[i + 1] ? 1 : 0;
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- }
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- int v = value;
- gui[0] = v & 1 ? 1 : 0;
- gui[1] = v & 2 ? 1 : 0;
- }
- } break;
- case ShaderLanguage::TYPE_BVEC3: {
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size > 0) {
- const PackedInt32Array &ba = value;
- int s = ba.size();
- const int *r = ba.ptr();
- int count = 3 * p_array_size;
-
- for (int i = 0, j = 0; i < count; i += 3, j += 4) {
- if (i < s) {
- gui[j] = r[i] ? 1 : 0;
- gui[j + 1] = r[i + 1] ? 1 : 0;
- gui[j + 2] = r[i + 2] ? 1 : 0;
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
- }
- gui[j + 3] = 0; // ignored
- }
- } else {
- int v = value;
- gui[0] = (v & 1) ? 1 : 0;
- gui[1] = (v & 2) ? 1 : 0;
- gui[2] = (v & 4) ? 1 : 0;
- }
- } break;
- case ShaderLanguage::TYPE_BVEC4: {
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size > 0) {
- const PackedInt32Array &ba = value;
- int s = ba.size();
- const int *r = ba.ptr();
- int count = 4 * p_array_size;
-
- for (int i = 0; i < count; i += 4) {
- if (i < s) {
- gui[i] = r[i] ? 1 : 0;
- gui[i + 1] = r[i + 1] ? 1 : 0;
- gui[i + 2] = r[i + 2] ? 1 : 0;
- gui[i + 3] = r[i + 3] ? 1 : 0;
- } else {
- gui[i] = 0;
- gui[i + 1] = 0;
- gui[i + 2] = 0;
- gui[i + 3] = 0;
- }
- }
- } else {
- int v = value;
- gui[0] = (v & 1) ? 1 : 0;
- gui[1] = (v & 2) ? 1 : 0;
- gui[2] = (v & 4) ? 1 : 0;
- gui[3] = (v & 8) ? 1 : 0;
- }
- } break;
- case ShaderLanguage::TYPE_INT: {
- int32_t *gui = (int32_t *)data;
-
- if (p_array_size > 0) {
- Vector<int> iv = value;
- int s = iv.size();
- const int *r = iv.ptr();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- } else {
- gui[j] = 0;
- }
- gui[j + 1] = 0; // ignored
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- int v = value;
- gui[0] = v;
- }
- } break;
- case ShaderLanguage::TYPE_IVEC2: {
- Vector<int> iv = value;
- int s = iv.size();
- int32_t *gui = (int32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 2 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0, j = 0; i < count; i += 2, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- gui[j + 1] = r[i + 1];
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- }
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_IVEC3: {
- Vector<int> iv = value;
- int s = iv.size();
- int32_t *gui = (int32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 3 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0, j = 0; i < count; i += 3, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- gui[j + 1] = r[i + 1];
- gui[j + 2] = r[i + 2];
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
- }
- gui[j + 3] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_IVEC4: {
- Vector<int> iv = value;
- int s = iv.size();
- int32_t *gui = (int32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 4 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0; i < count; i += 4) {
- if (i < s) {
- gui[i] = r[i];
- gui[i + 1] = r[i + 1];
- gui[i + 2] = r[i + 2];
- gui[i + 3] = r[i + 3];
- } else {
- gui[i] = 0;
- gui[i + 1] = 0;
- gui[i + 2] = 0;
- gui[i + 3] = 0;
- }
- }
- } break;
- case ShaderLanguage::TYPE_UINT: {
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size > 0) {
- Vector<int> iv = value;
- int s = iv.size();
- const int *r = iv.ptr();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- } else {
- gui[j] = 0;
- }
- gui[j + 1] = 0; // ignored
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- int v = value;
- gui[0] = v;
- }
- } break;
- case ShaderLanguage::TYPE_UVEC2: {
- Vector<int> iv = value;
- int s = iv.size();
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 2 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0, j = 0; i < count; i += 2, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- gui[j + 1] = r[i + 1];
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- }
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_UVEC3: {
- Vector<int> iv = value;
- int s = iv.size();
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 3 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0, j = 0; i < count; i += 3, j += 4) {
- if (i < s) {
- gui[j] = r[i];
- gui[j + 1] = r[i + 1];
- gui[j + 2] = r[i + 2];
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
- }
- gui[j + 3] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_UVEC4: {
- Vector<int> iv = value;
- int s = iv.size();
- uint32_t *gui = (uint32_t *)data;
-
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
- int count = 4 * p_array_size;
-
- const int *r = iv.ptr();
- for (int i = 0; i < count; i++) {
- if (i < s) {
- gui[i] = r[i];
- gui[i + 1] = r[i + 1];
- gui[i + 2] = r[i + 2];
- gui[i + 3] = r[i + 3];
- } else {
- gui[i] = 0;
- gui[i + 1] = 0;
- gui[i + 2] = 0;
- gui[i + 3] = 0;
- }
- }
- } break;
- case ShaderLanguage::TYPE_FLOAT: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedFloat32Array &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = a[i];
- } else {
- gui[j] = 0;
- }
- gui[j + 1] = 0; // ignored
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- float v = value;
- gui[0] = v;
- }
- } break;
- case ShaderLanguage::TYPE_VEC2: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedVector2Array &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = a[i].x;
- gui[j + 1] = a[i].y;
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- }
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- }
- } else {
- Vector2 v = value;
- gui[0] = v.x;
- gui[1] = v.y;
- }
- } break;
- case ShaderLanguage::TYPE_VEC3: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedVector3Array &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- gui[j] = a[i].x;
- gui[j + 1] = a[i].y;
- gui[j + 2] = a[i].z;
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
- }
- gui[j + 3] = 0; // ignored
- }
- } else {
- Vector3 v = value;
- gui[0] = v.x;
- gui[1] = v.y;
- gui[2] = v.z;
- }
- } break;
- case ShaderLanguage::TYPE_VEC4: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- if (value.get_type() == Variant::PACKED_COLOR_ARRAY) {
- const PackedColorArray &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
- if (i < s) {
- Color color = a[i];
- if (p_linear_color) {
- color = color.to_linear();
- }
- gui[j] = color.r;
- gui[j + 1] = color.g;
- gui[j + 2] = color.b;
- gui[j + 3] = color.a;
- } else {
- gui[j] = 0;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
- gui[j + 3] = 0;
- }
- }
- } else {
- const PackedFloat32Array &a = value;
- int s = a.size();
- int count = 4 * p_array_size;
-
- for (int i = 0; i < count; i += 4) {
- if (i + 3 < s) {
- gui[i] = a[i];
- gui[i + 1] = a[i + 1];
- gui[i + 2] = a[i + 2];
- gui[i + 3] = a[i + 3];
- } else {
- gui[i] = 0;
- gui[i + 1] = 0;
- gui[i + 2] = 0;
- gui[i + 3] = 0;
- }
- }
- }
- } else {
- if (value.get_type() == Variant::COLOR) {
- Color v = value;
-
- if (p_linear_color) {
- v = v.to_linear();
- }
-
- gui[0] = v.r;
- gui[1] = v.g;
- gui[2] = v.b;
- gui[3] = v.a;
- } else if (value.get_type() == Variant::RECT2) {
- Rect2 v = value;
-
- gui[0] = v.position.x;
- gui[1] = v.position.y;
- gui[2] = v.size.x;
- gui[3] = v.size.y;
- } else if (value.get_type() == Variant::QUATERNION) {
- Quaternion v = value;
-
- gui[0] = v.x;
- gui[1] = v.y;
- gui[2] = v.z;
- gui[3] = v.w;
- } else {
- Plane v = value;
-
- gui[0] = v.normal.x;
- gui[1] = v.normal.y;
- gui[2] = v.normal.z;
- gui[3] = v.d;
- }
- }
- } break;
- case ShaderLanguage::TYPE_MAT2: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedFloat32Array &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size * 4; i += 4, j += 8) {
- if (i + 3 < s) {
- gui[j] = a[i];
- gui[j + 1] = a[i + 1];
-
- gui[j + 4] = a[i + 2];
- gui[j + 5] = a[i + 3];
- } else {
- gui[j] = 1;
- gui[j + 1] = 0;
-
- gui[j + 4] = 0;
- gui[j + 5] = 1;
- }
- gui[j + 2] = 0; // ignored
- gui[j + 3] = 0; // ignored
- gui[j + 6] = 0; // ignored
- gui[j + 7] = 0; // ignored
- }
- } else {
- Transform2D v = value;
-
- //in std140 members of mat2 are treated as vec4s
- gui[0] = v.elements[0][0];
- gui[1] = v.elements[0][1];
- gui[2] = 0; // ignored
- gui[3] = 0; // ignored
-
- gui[4] = v.elements[1][0];
- gui[5] = v.elements[1][1];
- gui[6] = 0; // ignored
- gui[7] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_MAT3: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedFloat32Array &a = value;
- int s = a.size();
-
- for (int i = 0, j = 0; i < p_array_size * 9; i += 9, j += 12) {
- if (i + 8 < s) {
- gui[j] = a[i];
- gui[j + 1] = a[i + 1];
- gui[j + 2] = a[i + 2];
-
- gui[j + 4] = a[i + 3];
- gui[j + 5] = a[i + 4];
- gui[j + 6] = a[i + 5];
-
- gui[j + 8] = a[i + 6];
- gui[j + 9] = a[i + 7];
- gui[j + 10] = a[i + 8];
- } else {
- gui[j] = 1;
- gui[j + 1] = 0;
- gui[j + 2] = 0;
-
- gui[j + 4] = 0;
- gui[j + 5] = 1;
- gui[j + 6] = 0;
-
- gui[j + 8] = 0;
- gui[j + 9] = 0;
- gui[j + 10] = 1;
- }
- gui[j + 3] = 0; // ignored
- gui[j + 7] = 0; // ignored
- gui[j + 11] = 0; // ignored
- }
- } else {
- Basis v = value;
- gui[0] = v.elements[0][0];
- gui[1] = v.elements[1][0];
- gui[2] = v.elements[2][0];
- gui[3] = 0; // ignored
-
- gui[4] = v.elements[0][1];
- gui[5] = v.elements[1][1];
- gui[6] = v.elements[2][1];
- gui[7] = 0; // ignored
-
- gui[8] = v.elements[0][2];
- gui[9] = v.elements[1][2];
- gui[10] = v.elements[2][2];
- gui[11] = 0; // ignored
- }
- } break;
- case ShaderLanguage::TYPE_MAT4: {
- float *gui = (float *)data;
-
- if (p_array_size > 0) {
- const PackedFloat32Array &a = value;
- int s = a.size();
-
- for (int i = 0; i < p_array_size * 16; i += 16) {
- if (i + 15 < s) {
- gui[i] = a[i];
- gui[i + 1] = a[i + 1];
- gui[i + 2] = a[i + 2];
- gui[i + 3] = a[i + 3];
-
- gui[i + 4] = a[i + 4];
- gui[i + 5] = a[i + 5];
- gui[i + 6] = a[i + 6];
- gui[i + 7] = a[i + 7];
-
- gui[i + 8] = a[i + 8];
- gui[i + 9] = a[i + 9];
- gui[i + 10] = a[i + 10];
- gui[i + 11] = a[i + 11];
-
- gui[i + 12] = a[i + 12];
- gui[i + 13] = a[i + 13];
- gui[i + 14] = a[i + 14];
- gui[i + 15] = a[i + 15];
- } else {
- gui[i] = 1;
- gui[i + 1] = 0;
- gui[i + 2] = 0;
- gui[i + 3] = 0;
-
- gui[i + 4] = 0;
- gui[i + 5] = 1;
- gui[i + 6] = 0;
- gui[i + 7] = 0;
-
- gui[i + 8] = 0;
- gui[i + 9] = 0;
- gui[i + 10] = 1;
- gui[i + 11] = 0;
-
- gui[i + 12] = 0;
- gui[i + 13] = 0;
- gui[i + 14] = 0;
- gui[i + 15] = 1;
- }
- }
- } else {
- Transform3D v = value;
- gui[0] = v.basis.elements[0][0];
- gui[1] = v.basis.elements[1][0];
- gui[2] = v.basis.elements[2][0];
- gui[3] = 0;
-
- gui[4] = v.basis.elements[0][1];
- gui[5] = v.basis.elements[1][1];
- gui[6] = v.basis.elements[2][1];
- gui[7] = 0;
-
- gui[8] = v.basis.elements[0][2];
- gui[9] = v.basis.elements[1][2];
- gui[10] = v.basis.elements[2][2];
- gui[11] = 0;
-
- gui[12] = v.origin.x;
- gui[13] = v.origin.y;
- gui[14] = v.origin.z;
- gui[15] = 1;
- }
- } break;
- default: {
- }
- }
-}
-
-_FORCE_INLINE_ static void _fill_std140_ubo_value(ShaderLanguage::DataType type, const Vector<ShaderLanguage::ConstantNode::Value> &value, uint8_t *data) {
- switch (type) {
- case ShaderLanguage::TYPE_BOOL: {
- uint32_t *gui = (uint32_t *)data;
- *gui = value[0].boolean ? 1 : 0;
- } break;
- case ShaderLanguage::TYPE_BVEC2: {
- uint32_t *gui = (uint32_t *)data;
- gui[0] = value[0].boolean ? 1 : 0;
- gui[1] = value[1].boolean ? 1 : 0;
-
- } break;
- case ShaderLanguage::TYPE_BVEC3: {
- uint32_t *gui = (uint32_t *)data;
- gui[0] = value[0].boolean ? 1 : 0;
- gui[1] = value[1].boolean ? 1 : 0;
- gui[2] = value[2].boolean ? 1 : 0;
-
- } break;
- case ShaderLanguage::TYPE_BVEC4: {
- uint32_t *gui = (uint32_t *)data;
- gui[0] = value[0].boolean ? 1 : 0;
- gui[1] = value[1].boolean ? 1 : 0;
- gui[2] = value[2].boolean ? 1 : 0;
- gui[3] = value[3].boolean ? 1 : 0;
-
- } break;
- case ShaderLanguage::TYPE_INT: {
- int32_t *gui = (int32_t *)data;
- gui[0] = value[0].sint;
-
- } break;
- case ShaderLanguage::TYPE_IVEC2: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 2; i++) {
- gui[i] = value[i].sint;
- }
-
- } break;
- case ShaderLanguage::TYPE_IVEC3: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 3; i++) {
- gui[i] = value[i].sint;
- }
-
- } break;
- case ShaderLanguage::TYPE_IVEC4: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 4; i++) {
- gui[i] = value[i].sint;
- }
-
- } break;
- case ShaderLanguage::TYPE_UINT: {
- uint32_t *gui = (uint32_t *)data;
- gui[0] = value[0].uint;
-
- } break;
- case ShaderLanguage::TYPE_UVEC2: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 2; i++) {
- gui[i] = value[i].uint;
- }
- } break;
- case ShaderLanguage::TYPE_UVEC3: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 3; i++) {
- gui[i] = value[i].uint;
- }
-
- } break;
- case ShaderLanguage::TYPE_UVEC4: {
- int32_t *gui = (int32_t *)data;
-
- for (int i = 0; i < 4; i++) {
- gui[i] = value[i].uint;
- }
- } break;
- case ShaderLanguage::TYPE_FLOAT: {
- float *gui = (float *)data;
- gui[0] = value[0].real;
-
- } break;
- case ShaderLanguage::TYPE_VEC2: {
- float *gui = (float *)data;
-
- for (int i = 0; i < 2; i++) {
- gui[i] = value[i].real;
- }
-
- } break;
- case ShaderLanguage::TYPE_VEC3: {
- float *gui = (float *)data;
-
- for (int i = 0; i < 3; i++) {
- gui[i] = value[i].real;
- }
-
- } break;
- case ShaderLanguage::TYPE_VEC4: {
- float *gui = (float *)data;
-
- for (int i = 0; i < 4; i++) {
- gui[i] = value[i].real;
- }
- } break;
- case ShaderLanguage::TYPE_MAT2: {
- float *gui = (float *)data;
-
- //in std140 members of mat2 are treated as vec4s
- gui[0] = value[0].real;
- gui[1] = value[1].real;
- gui[2] = 0;
- gui[3] = 0;
- gui[4] = value[2].real;
- gui[5] = value[3].real;
- gui[6] = 0;
- gui[7] = 0;
- } break;
- case ShaderLanguage::TYPE_MAT3: {
- float *gui = (float *)data;
-
- gui[0] = value[0].real;
- gui[1] = value[1].real;
- gui[2] = value[2].real;
- gui[3] = 0;
- gui[4] = value[3].real;
- gui[5] = value[4].real;
- gui[6] = value[5].real;
- gui[7] = 0;
- gui[8] = value[6].real;
- gui[9] = value[7].real;
- gui[10] = value[8].real;
- gui[11] = 0;
- } break;
- case ShaderLanguage::TYPE_MAT4: {
- float *gui = (float *)data;
-
- for (int i = 0; i < 16; i++) {
- gui[i] = value[i].real;
- }
- } break;
- default: {
- }
- }
-}
-
-_FORCE_INLINE_ static void _fill_std140_ubo_empty(ShaderLanguage::DataType type, int p_array_size, uint8_t *data) {
- if (p_array_size <= 0) {
- p_array_size = 1;
- }
-
- switch (type) {
- case ShaderLanguage::TYPE_BOOL:
- case ShaderLanguage::TYPE_INT:
- case ShaderLanguage::TYPE_UINT:
- case ShaderLanguage::TYPE_FLOAT: {
- memset(data, 0, 4 * p_array_size);
- } break;
- case ShaderLanguage::TYPE_BVEC2:
- case ShaderLanguage::TYPE_IVEC2:
- case ShaderLanguage::TYPE_UVEC2:
- case ShaderLanguage::TYPE_VEC2: {
- memset(data, 0, 8 * p_array_size);
- } break;
- case ShaderLanguage::TYPE_BVEC3:
- case ShaderLanguage::TYPE_IVEC3:
- case ShaderLanguage::TYPE_UVEC3:
- case ShaderLanguage::TYPE_VEC3:
- case ShaderLanguage::TYPE_BVEC4:
- case ShaderLanguage::TYPE_IVEC4:
- case ShaderLanguage::TYPE_UVEC4:
- case ShaderLanguage::TYPE_VEC4: {
- memset(data, 0, 16 * p_array_size);
- } break;
- case ShaderLanguage::TYPE_MAT2: {
- memset(data, 0, 32 * p_array_size);
- } break;
- case ShaderLanguage::TYPE_MAT3: {
- memset(data, 0, 48 * p_array_size);
- } break;
- case ShaderLanguage::TYPE_MAT4: {
- memset(data, 0, 64 * p_array_size);
- } break;
-
- default: {
- }
- }
-}
-
-void RendererStorageRD::MaterialData::update_uniform_buffer(const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Map<StringName, Variant> &p_parameters, uint8_t *p_buffer, uint32_t p_buffer_size, bool p_use_linear_color) {
- bool uses_global_buffer = false;
-
- for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : p_uniforms) {
- if (E.value.order < 0) {
- continue; // texture, does not go here
- }
-
- if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
- continue; //instance uniforms don't appear in the bufferr
- }
-
- if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_GLOBAL) {
- //this is a global variable, get the index to it
- RendererStorageRD *rs = base_singleton;
-
- GlobalVariables::Variable *gv = rs->global_variables.variables.getptr(E.key);
- uint32_t index = 0;
- if (gv) {
- index = gv->buffer_index;
- } else {
- WARN_PRINT("Shader uses global uniform '" + E.key + "', but it was removed at some point. Material will not display correctly.");
- }
-
- uint32_t offset = p_uniform_offsets[E.value.order];
- uint32_t *intptr = (uint32_t *)&p_buffer[offset];
- *intptr = index;
- uses_global_buffer = true;
- continue;
- }
-
- //regular uniform
- uint32_t offset = p_uniform_offsets[E.value.order];
-#ifdef DEBUG_ENABLED
- uint32_t size = 0U;
- // The following code enforces a 16-byte alignment of uniform arrays.
- if (E.value.array_size > 0) {
- size = ShaderLanguage::get_type_size(E.value.type) * E.value.array_size;
- int m = (16 * E.value.array_size);
- if ((size % m) != 0U) {
- size += m - (size % m);
- }
- } else {
- size = ShaderLanguage::get_type_size(E.value.type);
- }
- ERR_CONTINUE(offset + size > p_buffer_size);
-#endif
- uint8_t *data = &p_buffer[offset];
- const Map<StringName, Variant>::Element *V = p_parameters.find(E.key);
-
- if (V) {
- //user provided
- _fill_std140_variant_ubo_value(E.value.type, E.value.array_size, V->get(), data, p_use_linear_color);
-
- } else if (E.value.default_value.size()) {
- //default value
- _fill_std140_ubo_value(E.value.type, E.value.default_value, data);
- //value=E.value.default_value;
- } else {
- //zero because it was not provided
- if (E.value.type == ShaderLanguage::TYPE_VEC4 && E.value.hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
- //colors must be set as black, with alpha as 1.0
- _fill_std140_variant_ubo_value(E.value.type, E.value.array_size, Color(0, 0, 0, 1), data, p_use_linear_color);
- } else {
- //else just zero it out
- _fill_std140_ubo_empty(E.value.type, E.value.array_size, data);
- }
- }
- }
-
- if (uses_global_buffer != (global_buffer_E != nullptr)) {
- RendererStorageRD *rs = base_singleton;
- if (uses_global_buffer) {
- global_buffer_E = rs->global_variables.materials_using_buffer.push_back(self);
- } else {
- rs->global_variables.materials_using_buffer.erase(global_buffer_E);
- global_buffer_E = nullptr;
- }
- }
-}
-
-RendererStorageRD::MaterialData::~MaterialData() {
- if (global_buffer_E) {
- //unregister global buffers
- RendererStorageRD *rs = base_singleton;
- rs->global_variables.materials_using_buffer.erase(global_buffer_E);
- }
-
- if (global_texture_E) {
- //unregister global textures
- RendererStorageRD *rs = base_singleton;
-
- for (const KeyValue<StringName, uint64_t> &E : used_global_textures) {
- GlobalVariables::Variable *v = rs->global_variables.variables.getptr(E.key);
- if (v) {
- v->texture_materials.erase(self);
- }
- }
- //unregister material from those using global textures
- rs->global_variables.materials_using_texture.erase(global_texture_E);
- }
-
- if (uniform_buffer.is_valid()) {
- RD::get_singleton()->free(uniform_buffer);
- }
-}
-
-void RendererStorageRD::MaterialData::update_textures(const Map<StringName, Variant> &p_parameters, const Map<StringName, Map<int, RID>> &p_default_textures, const Vector<ShaderCompilerRD::GeneratedCode::Texture> &p_texture_uniforms, RID *p_textures, bool p_use_linear_color) {
- RendererStorageRD *singleton = (RendererStorageRD *)RendererStorage::base_singleton;
-#ifdef TOOLS_ENABLED
- Texture *roughness_detect_texture = nullptr;
- RS::TextureDetectRoughnessChannel roughness_channel = RS::TEXTURE_DETECT_ROUGHNESS_R;
- Texture *normal_detect_texture = nullptr;
-#endif
-
- bool uses_global_textures = false;
- global_textures_pass++;
-
- for (int i = 0, k = 0; i < p_texture_uniforms.size(); i++) {
- const StringName &uniform_name = p_texture_uniforms[i].name;
- int uniform_array_size = p_texture_uniforms[i].array_size;
-
- Vector<RID> textures;
-
- if (p_texture_uniforms[i].global) {
- RendererStorageRD *rs = base_singleton;
-
- uses_global_textures = true;
-
- GlobalVariables::Variable *v = rs->global_variables.variables.getptr(uniform_name);
- if (v) {
- if (v->buffer_index >= 0) {
- WARN_PRINT("Shader uses global uniform texture '" + String(uniform_name) + "', but it changed type and is no longer a texture!.");
-
- } else {
- Map<StringName, uint64_t>::Element *E = used_global_textures.find(uniform_name);
- if (!E) {
- E = used_global_textures.insert(uniform_name, global_textures_pass);
- v->texture_materials.insert(self);
- } else {
- E->get() = global_textures_pass;
- }
-
- textures.push_back(v->override.get_type() != Variant::NIL ? v->override : v->value);
- }
-
- } else {
- WARN_PRINT("Shader uses global uniform texture '" + String(uniform_name) + "', but it was removed at some point. Material will not display correctly.");
- }
- } else {
- const Map<StringName, Variant>::Element *V = p_parameters.find(uniform_name);
- if (V) {
- if (V->get().is_array()) {
- Array array = (Array)V->get();
- if (uniform_array_size > 0) {
- for (int j = 0; j < array.size(); j++) {
- textures.push_back(array[j]);
- }
- } else {
- if (array.size() > 0) {
- textures.push_back(array[0]);
- }
- }
- } else {
- textures.push_back(V->get());
- }
- }
-
- if (uniform_array_size > 0) {
- if (textures.size() < uniform_array_size) {
- const Map<StringName, Map<int, RID>>::Element *W = p_default_textures.find(uniform_name);
- for (int j = textures.size(); j < uniform_array_size; j++) {
- if (W && W->get().has(j)) {
- textures.push_back(W->get()[j]);
- } else {
- textures.push_back(RID());
- }
- }
- }
- } else if (textures.is_empty()) {
- const Map<StringName, Map<int, RID>>::Element *W = p_default_textures.find(uniform_name);
- if (W && W->get().has(0)) {
- textures.push_back(W->get()[0]);
- }
- }
- }
-
- RID rd_texture;
-
- if (textures.is_empty()) {
- //check default usage
- switch (p_texture_uniforms[i].type) {
- case ShaderLanguage::TYPE_ISAMPLER2D:
- case ShaderLanguage::TYPE_USAMPLER2D:
- case ShaderLanguage::TYPE_SAMPLER2D: {
- switch (p_texture_uniforms[i].hint) {
- case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK:
- case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_BLACK);
- } break;
- case ShaderLanguage::ShaderNode::Uniform::HINT_NONE: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_NORMAL);
- } break;
- case ShaderLanguage::ShaderNode::Uniform::HINT_ANISOTROPY: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_ANISO);
- } break;
- default: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE);
- } break;
- }
- } break;
-
- case ShaderLanguage::TYPE_SAMPLERCUBE: {
- switch (p_texture_uniforms[i].hint) {
- case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK:
- case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
- } break;
- default: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_WHITE);
- } break;
- }
- } break;
- case ShaderLanguage::TYPE_SAMPLERCUBEARRAY: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK);
- } break;
-
- case ShaderLanguage::TYPE_ISAMPLER3D:
- case ShaderLanguage::TYPE_USAMPLER3D:
- case ShaderLanguage::TYPE_SAMPLER3D: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_3D_WHITE);
- } break;
-
- case ShaderLanguage::TYPE_ISAMPLER2DARRAY:
- case ShaderLanguage::TYPE_USAMPLER2DARRAY:
- case ShaderLanguage::TYPE_SAMPLER2DARRAY: {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
- } break;
-
- default: {
- }
- }
-#ifdef TOOLS_ENABLED
- if (roughness_detect_texture && normal_detect_texture && !normal_detect_texture->path.is_empty()) {
- roughness_detect_texture->detect_roughness_callback(roughness_detect_texture->detect_roughness_callback_ud, normal_detect_texture->path, roughness_channel);
- }
-#endif
- if (uniform_array_size > 0) {
- for (int j = 0; j < uniform_array_size; j++) {
- p_textures[k++] = rd_texture;
- }
- } else {
- p_textures[k++] = rd_texture;
- }
- } else {
- bool srgb = p_use_linear_color && (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ALBEDO || p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO);
-
- for (int j = 0; j < textures.size(); j++) {
- Texture *tex = singleton->texture_owner.get_or_null(textures[j]);
-
- if (tex) {
- rd_texture = (srgb && tex->rd_texture_srgb.is_valid()) ? tex->rd_texture_srgb : tex->rd_texture;
-#ifdef TOOLS_ENABLED
- if (tex->detect_3d_callback && p_use_linear_color) {
- tex->detect_3d_callback(tex->detect_3d_callback_ud);
- }
- if (tex->detect_normal_callback && (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_NORMAL || p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_NORMAL)) {
- if (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_NORMAL) {
- normal_detect_texture = tex;
- }
- tex->detect_normal_callback(tex->detect_normal_callback_ud);
- }
- if (tex->detect_roughness_callback && (p_texture_uniforms[i].hint >= ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_R || p_texture_uniforms[i].hint <= ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_GRAY)) {
- //find the normal texture
- roughness_detect_texture = tex;
- roughness_channel = RS::TextureDetectRoughnessChannel(p_texture_uniforms[i].hint - ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_R);
- }
-#endif
- }
- if (rd_texture.is_null()) {
- rd_texture = singleton->texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE);
- }
-#ifdef TOOLS_ENABLED
- if (roughness_detect_texture && normal_detect_texture && !normal_detect_texture->path.is_empty()) {
- roughness_detect_texture->detect_roughness_callback(roughness_detect_texture->detect_roughness_callback_ud, normal_detect_texture->path, roughness_channel);
- }
-#endif
- p_textures[k++] = rd_texture;
- }
- }
- }
- {
- //for textures no longer used, unregister them
- List<Map<StringName, uint64_t>::Element *> to_delete;
- RendererStorageRD *rs = base_singleton;
-
- for (Map<StringName, uint64_t>::Element *E = used_global_textures.front(); E; E = E->next()) {
- if (E->get() != global_textures_pass) {
- to_delete.push_back(E);
-
- GlobalVariables::Variable *v = rs->global_variables.variables.getptr(E->key());
- if (v) {
- v->texture_materials.erase(self);
- }
- }
- }
-
- while (to_delete.front()) {
- used_global_textures.erase(to_delete.front()->get());
- to_delete.pop_front();
- }
- //handle registering/unregistering global textures
- if (uses_global_textures != (global_texture_E != nullptr)) {
- if (uses_global_textures) {
- global_texture_E = rs->global_variables.materials_using_texture.push_back(self);
- } else {
- rs->global_variables.materials_using_texture.erase(global_texture_E);
- global_texture_E = nullptr;
- }
- }
- }
-}
-
-void RendererStorageRD::MaterialData::free_parameters_uniform_set(RID p_uniform_set) {
- if (p_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(p_uniform_set)) {
- RD::get_singleton()->uniform_set_set_invalidation_callback(p_uniform_set, nullptr, nullptr);
- RD::get_singleton()->free(p_uniform_set);
- }
-}
-
-bool RendererStorageRD::MaterialData::update_parameters_uniform_set(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty, const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Vector<ShaderCompilerRD::GeneratedCode::Texture> &p_texture_uniforms, const Map<StringName, Map<int, RID>> &p_default_texture_params, uint32_t p_ubo_size, RID &uniform_set, RID p_shader, uint32_t p_shader_uniform_set, uint32_t p_barrier) {
- if ((uint32_t)ubo_data.size() != p_ubo_size) {
- p_uniform_dirty = true;
- if (uniform_buffer.is_valid()) {
- RD::get_singleton()->free(uniform_buffer);
- uniform_buffer = RID();
- }
-
- ubo_data.resize(p_ubo_size);
- if (ubo_data.size()) {
- uniform_buffer = RD::get_singleton()->uniform_buffer_create(ubo_data.size());
- memset(ubo_data.ptrw(), 0, ubo_data.size()); //clear
- }
-
- //clear previous uniform set
- if (uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
- RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, nullptr, nullptr);
- RD::get_singleton()->free(uniform_set);
- uniform_set = RID();
- }
- }
-
- //check whether buffer changed
- if (p_uniform_dirty && ubo_data.size()) {
- update_uniform_buffer(p_uniforms, p_uniform_offsets, p_parameters, ubo_data.ptrw(), ubo_data.size(), true);
- RD::get_singleton()->buffer_update(uniform_buffer, 0, ubo_data.size(), ubo_data.ptrw(), p_barrier);
- }
-
- uint32_t tex_uniform_count = 0U;
- for (int i = 0; i < p_texture_uniforms.size(); i++) {
- tex_uniform_count += uint32_t(p_texture_uniforms[i].array_size > 0 ? p_texture_uniforms[i].array_size : 1);
- }
-
- if ((uint32_t)texture_cache.size() != tex_uniform_count || p_textures_dirty) {
- texture_cache.resize(tex_uniform_count);
- p_textures_dirty = true;
-
- //clear previous uniform set
- if (uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
- RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, nullptr, nullptr);
- RD::get_singleton()->free(uniform_set);
- uniform_set = RID();
- }
- }
-
- if (p_textures_dirty && tex_uniform_count) {
- update_textures(p_parameters, p_default_texture_params, p_texture_uniforms, texture_cache.ptrw(), true);
- }
-
- if (p_ubo_size == 0 && p_texture_uniforms.size() == 0) {
- // This material does not require an uniform set, so don't create it.
- return false;
- }
-
- if (!p_textures_dirty && uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
- //no reason to update uniform set, only UBO (or nothing) was needed to update
- return false;
- }
-
- Vector<RD::Uniform> uniforms;
-
- {
- if (p_ubo_size) {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
- u.binding = 0;
- u.ids.push_back(uniform_buffer);
- uniforms.push_back(u);
- }
-
- const RID *textures = texture_cache.ptrw();
- for (int i = 0, k = 0; i < p_texture_uniforms.size(); i++) {
- const int array_size = p_texture_uniforms[i].array_size;
-
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 1 + k;
- if (array_size > 0) {
- for (int j = 0; j < array_size; j++) {
- u.ids.push_back(textures[k++]);
- }
- } else {
- u.ids.push_back(textures[k++]);
- }
- uniforms.push_back(u);
- }
- }
-
- uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_shader_uniform_set);
-
- RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, _material_uniform_set_erased, &self);
-
- return true;
-}
-
-void RendererStorageRD::_material_uniform_set_erased(const RID &p_set, void *p_material) {
- RID rid = *(RID *)p_material;
- Material *material = base_singleton->material_owner.get_or_null(rid);
- if (material) {
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- }
-}
-
-void RendererStorageRD::material_force_update_textures(RID p_material, ShaderType p_shader_type) {
- Material *material = material_owner.get_or_null(p_material);
- if (material->shader_type != p_shader_type) {
- return;
- }
- if (material->data) {
- material->data->update_parameters(material->params, false, true);
- }
-}
-
-void RendererStorageRD::_update_queued_materials() {
- while (material_update_list.first()) {
- Material *material = material_update_list.first()->self();
- bool uniforms_changed = false;
-
- if (material->data) {
- uniforms_changed = material->data->update_parameters(material->params, material->uniform_dirty, material->texture_dirty);
- }
- material->texture_dirty = false;
- material->uniform_dirty = false;
-
- material_update_list.remove(&material->update_element);
-
- if (uniforms_changed) {
- //some implementations such as 3D renderer cache the matreial uniform set, so update is required
- material->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- }
- }
-}
-
-/* MESH API */
-
-RID RendererStorageRD::mesh_allocate() {
- return mesh_owner.allocate_rid();
-}
-void RendererStorageRD::mesh_initialize(RID p_rid) {
- mesh_owner.initialize_rid(p_rid, Mesh());
-}
-
-void RendererStorageRD::mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) {
- ERR_FAIL_COND(p_blend_shape_count < 0);
-
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
-
- ERR_FAIL_COND(mesh->surface_count > 0); //surfaces already exist
-
- mesh->blend_shape_count = p_blend_shape_count;
-}
-
-/// Returns stride
-void RendererStorageRD::mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
-
- ERR_FAIL_COND(mesh->surface_count == RS::MAX_MESH_SURFACES);
-
-#ifdef DEBUG_ENABLED
- //do a validation, to catch errors first
- {
- uint32_t stride = 0;
- uint32_t attrib_stride = 0;
- uint32_t skin_stride = 0;
-
- for (int i = 0; i < RS::ARRAY_WEIGHTS; i++) {
- if ((p_surface.format & (1 << i))) {
- switch (i) {
- case RS::ARRAY_VERTEX: {
- if (p_surface.format & RS::ARRAY_FLAG_USE_2D_VERTICES) {
- stride += sizeof(float) * 2;
- } else {
- stride += sizeof(float) * 3;
- }
-
- } break;
- case RS::ARRAY_NORMAL: {
- stride += sizeof(int32_t);
-
- } break;
- case RS::ARRAY_TANGENT: {
- stride += sizeof(int32_t);
-
- } break;
- case RS::ARRAY_COLOR: {
- attrib_stride += sizeof(uint32_t);
- } break;
- case RS::ARRAY_TEX_UV: {
- attrib_stride += sizeof(float) * 2;
-
- } break;
- case RS::ARRAY_TEX_UV2: {
- attrib_stride += sizeof(float) * 2;
-
- } break;
- case RS::ARRAY_CUSTOM0:
- case RS::ARRAY_CUSTOM1:
- case RS::ARRAY_CUSTOM2:
- case RS::ARRAY_CUSTOM3: {
- int idx = i - RS::ARRAY_CUSTOM0;
- uint32_t fmt_shift[RS::ARRAY_CUSTOM_COUNT] = { RS::ARRAY_FORMAT_CUSTOM0_SHIFT, RS::ARRAY_FORMAT_CUSTOM1_SHIFT, RS::ARRAY_FORMAT_CUSTOM2_SHIFT, RS::ARRAY_FORMAT_CUSTOM3_SHIFT };
- uint32_t fmt = (p_surface.format >> fmt_shift[idx]) & RS::ARRAY_FORMAT_CUSTOM_MASK;
- uint32_t fmtsize[RS::ARRAY_CUSTOM_MAX] = { 4, 4, 4, 8, 4, 8, 12, 16 };
- attrib_stride += fmtsize[fmt];
-
- } break;
- case RS::ARRAY_WEIGHTS:
- case RS::ARRAY_BONES: {
- //uses a separate array
- bool use_8 = p_surface.format & RS::ARRAY_FLAG_USE_8_BONE_WEIGHTS;
- skin_stride += sizeof(int16_t) * (use_8 ? 16 : 8);
- } break;
- }
- }
- }
-
- int expected_size = stride * p_surface.vertex_count;
- ERR_FAIL_COND_MSG(expected_size != p_surface.vertex_data.size(), "Size of vertex data provided (" + itos(p_surface.vertex_data.size()) + ") does not match expected (" + itos(expected_size) + ")");
-
- int bs_expected_size = expected_size * mesh->blend_shape_count;
-
- ERR_FAIL_COND_MSG(bs_expected_size != p_surface.blend_shape_data.size(), "Size of blend shape data provided (" + itos(p_surface.blend_shape_data.size()) + ") does not match expected (" + itos(bs_expected_size) + ")");
-
- int expected_attrib_size = attrib_stride * p_surface.vertex_count;
- ERR_FAIL_COND_MSG(expected_attrib_size != p_surface.attribute_data.size(), "Size of attribute data provided (" + itos(p_surface.attribute_data.size()) + ") does not match expected (" + itos(expected_attrib_size) + ")");
-
- if ((p_surface.format & RS::ARRAY_FORMAT_WEIGHTS) && (p_surface.format & RS::ARRAY_FORMAT_BONES)) {
- expected_size = skin_stride * p_surface.vertex_count;
- ERR_FAIL_COND_MSG(expected_size != p_surface.skin_data.size(), "Size of skin data provided (" + itos(p_surface.skin_data.size()) + ") does not match expected (" + itos(expected_size) + ")");
- }
- }
-
-#endif
-
- Mesh::Surface *s = memnew(Mesh::Surface);
-
- s->format = p_surface.format;
- s->primitive = p_surface.primitive;
-
- bool use_as_storage = (p_surface.skin_data.size() || mesh->blend_shape_count > 0);
-
- s->vertex_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.vertex_data.size(), p_surface.vertex_data, use_as_storage);
- s->vertex_buffer_size = p_surface.vertex_data.size();
-
- if (p_surface.attribute_data.size()) {
- s->attribute_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.attribute_data.size(), p_surface.attribute_data);
- }
- if (p_surface.skin_data.size()) {
- s->skin_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.skin_data.size(), p_surface.skin_data, use_as_storage);
- s->skin_buffer_size = p_surface.skin_data.size();
- }
-
- s->vertex_count = p_surface.vertex_count;
-
- if (p_surface.format & RS::ARRAY_FORMAT_BONES) {
- mesh->has_bone_weights = true;
- }
-
- if (p_surface.index_count) {
- bool is_index_16 = p_surface.vertex_count <= 65536;
-
- s->index_buffer = RD::get_singleton()->index_buffer_create(p_surface.index_count, is_index_16 ? RD::INDEX_BUFFER_FORMAT_UINT16 : RD::INDEX_BUFFER_FORMAT_UINT32, p_surface.index_data, false);
- s->index_count = p_surface.index_count;
- s->index_array = RD::get_singleton()->index_array_create(s->index_buffer, 0, s->index_count);
- if (p_surface.lods.size()) {
- s->lods = memnew_arr(Mesh::Surface::LOD, p_surface.lods.size());
- s->lod_count = p_surface.lods.size();
-
- for (int i = 0; i < p_surface.lods.size(); i++) {
- uint32_t indices = p_surface.lods[i].index_data.size() / (is_index_16 ? 2 : 4);
- s->lods[i].index_buffer = RD::get_singleton()->index_buffer_create(indices, is_index_16 ? RD::INDEX_BUFFER_FORMAT_UINT16 : RD::INDEX_BUFFER_FORMAT_UINT32, p_surface.lods[i].index_data);
- s->lods[i].index_array = RD::get_singleton()->index_array_create(s->lods[i].index_buffer, 0, indices);
- s->lods[i].edge_length = p_surface.lods[i].edge_length;
- s->lods[i].index_count = indices;
- }
- }
- }
-
- s->aabb = p_surface.aabb;
- s->bone_aabbs = p_surface.bone_aabbs; //only really useful for returning them.
-
- if (mesh->blend_shape_count > 0) {
- s->blend_shape_buffer = RD::get_singleton()->storage_buffer_create(p_surface.blend_shape_data.size(), p_surface.blend_shape_data);
- }
-
- if (use_as_storage) {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.binding = 0;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(s->vertex_buffer);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.binding = 1;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- if (s->skin_buffer.is_valid()) {
- u.ids.push_back(s->skin_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.binding = 2;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- if (s->blend_shape_buffer.is_valid()) {
- u.ids.push_back(s->blend_shape_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
-
- s->uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SURFACE);
- }
-
- if (mesh->surface_count == 0) {
- mesh->bone_aabbs = p_surface.bone_aabbs;
- mesh->aabb = p_surface.aabb;
- } else {
- if (mesh->bone_aabbs.size() < p_surface.bone_aabbs.size()) {
- // ArrayMesh::_surface_set_data only allocates bone_aabbs up to max_bone
- // Each surface may affect different numbers of bones.
- mesh->bone_aabbs.resize(p_surface.bone_aabbs.size());
- }
- for (int i = 0; i < p_surface.bone_aabbs.size(); i++) {
- mesh->bone_aabbs.write[i].merge_with(p_surface.bone_aabbs[i]);
- }
- mesh->aabb.merge_with(p_surface.aabb);
- }
-
- s->material = p_surface.material;
-
- mesh->surfaces = (Mesh::Surface **)memrealloc(mesh->surfaces, sizeof(Mesh::Surface *) * (mesh->surface_count + 1));
- mesh->surfaces[mesh->surface_count] = s;
- mesh->surface_count++;
-
- for (MeshInstance *mi : mesh->instances) {
- _mesh_instance_add_surface(mi, mesh, mesh->surface_count - 1);
- }
-
- mesh->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
-
- for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
- Mesh *shadow_owner = E->get();
- shadow_owner->shadow_mesh = RID();
- shadow_owner->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
- }
-
- mesh->material_cache.clear();
-}
-
-int RendererStorageRD::mesh_get_blend_shape_count(RID p_mesh) const {
- const Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, -1);
- return mesh->blend_shape_count;
-}
-
-void RendererStorageRD::mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- ERR_FAIL_INDEX((int)p_mode, 2);
-
- mesh->blend_shape_mode = p_mode;
-}
-
-RS::BlendShapeMode RendererStorageRD::mesh_get_blend_shape_mode(RID p_mesh) const {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, RS::BLEND_SHAPE_MODE_NORMALIZED);
- return mesh->blend_shape_mode;
-}
-
-void RendererStorageRD::mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
- ERR_FAIL_COND(p_data.size() == 0);
- uint64_t data_size = p_data.size();
- const uint8_t *r = p_data.ptr();
-
- RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->vertex_buffer, p_offset, data_size, r);
-}
-
-void RendererStorageRD::mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
- ERR_FAIL_COND(p_data.size() == 0);
- ERR_FAIL_COND(mesh->surfaces[p_surface]->attribute_buffer.is_null());
- uint64_t data_size = p_data.size();
- const uint8_t *r = p_data.ptr();
-
- RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->attribute_buffer, p_offset, data_size, r);
-}
-
-void RendererStorageRD::mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
- ERR_FAIL_COND(p_data.size() == 0);
- ERR_FAIL_COND(mesh->surfaces[p_surface]->skin_buffer.is_null());
- uint64_t data_size = p_data.size();
- const uint8_t *r = p_data.ptr();
-
- RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->skin_buffer, p_offset, data_size, r);
-}
-
-void RendererStorageRD::mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
- mesh->surfaces[p_surface]->material = p_material;
-
- mesh->dependency.changed_notify(DEPENDENCY_CHANGED_MATERIAL);
- mesh->material_cache.clear();
-}
-
-RID RendererStorageRD::mesh_surface_get_material(RID p_mesh, int p_surface) const {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, RID());
- ERR_FAIL_UNSIGNED_INDEX_V((uint32_t)p_surface, mesh->surface_count, RID());
-
- return mesh->surfaces[p_surface]->material;
-}
-
-RS::SurfaceData RendererStorageRD::mesh_get_surface(RID p_mesh, int p_surface) const {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, RS::SurfaceData());
- ERR_FAIL_UNSIGNED_INDEX_V((uint32_t)p_surface, mesh->surface_count, RS::SurfaceData());
-
- Mesh::Surface &s = *mesh->surfaces[p_surface];
-
- RS::SurfaceData sd;
- sd.format = s.format;
- sd.vertex_data = RD::get_singleton()->buffer_get_data(s.vertex_buffer);
- if (s.attribute_buffer.is_valid()) {
- sd.attribute_data = RD::get_singleton()->buffer_get_data(s.attribute_buffer);
- }
- if (s.skin_buffer.is_valid()) {
- sd.skin_data = RD::get_singleton()->buffer_get_data(s.skin_buffer);
- }
- sd.vertex_count = s.vertex_count;
- sd.index_count = s.index_count;
- sd.primitive = s.primitive;
-
- if (sd.index_count) {
- sd.index_data = RD::get_singleton()->buffer_get_data(s.index_buffer);
- }
- sd.aabb = s.aabb;
- for (uint32_t i = 0; i < s.lod_count; i++) {
- RS::SurfaceData::LOD lod;
- lod.edge_length = s.lods[i].edge_length;
- lod.index_data = RD::get_singleton()->buffer_get_data(s.lods[i].index_buffer);
- sd.lods.push_back(lod);
- }
-
- sd.bone_aabbs = s.bone_aabbs;
-
- if (s.blend_shape_buffer.is_valid()) {
- sd.blend_shape_data = RD::get_singleton()->buffer_get_data(s.blend_shape_buffer);
- }
-
- return sd;
-}
-
-int RendererStorageRD::mesh_get_surface_count(RID p_mesh) const {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, 0);
- return mesh->surface_count;
-}
-
-void RendererStorageRD::mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- mesh->custom_aabb = p_aabb;
-}
-
-AABB RendererStorageRD::mesh_get_custom_aabb(RID p_mesh) const {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, AABB());
- return mesh->custom_aabb;
-}
-
-AABB RendererStorageRD::mesh_get_aabb(RID p_mesh, RID p_skeleton) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, AABB());
-
- if (mesh->custom_aabb != AABB()) {
- return mesh->custom_aabb;
- }
-
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- if (!skeleton || skeleton->size == 0) {
- return mesh->aabb;
- }
-
- AABB aabb;
-
- for (uint32_t i = 0; i < mesh->surface_count; i++) {
- AABB laabb;
- if ((mesh->surfaces[i]->format & RS::ARRAY_FORMAT_BONES) && mesh->surfaces[i]->bone_aabbs.size()) {
- int bs = mesh->surfaces[i]->bone_aabbs.size();
- const AABB *skbones = mesh->surfaces[i]->bone_aabbs.ptr();
-
- int sbs = skeleton->size;
- ERR_CONTINUE(bs > sbs);
- const float *baseptr = skeleton->data.ptr();
-
- bool first = true;
-
- if (skeleton->use_2d) {
- for (int j = 0; j < bs; j++) {
- if (skbones[0].size == Vector3()) {
- continue; //bone is unused
- }
-
- const float *dataptr = baseptr + j * 8;
-
- Transform3D mtx;
-
- mtx.basis.elements[0].x = dataptr[0];
- mtx.basis.elements[1].x = dataptr[1];
- mtx.origin.x = dataptr[3];
-
- mtx.basis.elements[0].y = dataptr[4];
- mtx.basis.elements[1].y = dataptr[5];
- mtx.origin.y = dataptr[7];
-
- AABB baabb = mtx.xform(skbones[j]);
-
- if (first) {
- laabb = baabb;
- first = false;
- } else {
- laabb.merge_with(baabb);
- }
- }
- } else {
- for (int j = 0; j < bs; j++) {
- if (skbones[0].size == Vector3()) {
- continue; //bone is unused
- }
-
- const float *dataptr = baseptr + j * 12;
-
- Transform3D mtx;
-
- mtx.basis.elements[0][0] = dataptr[0];
- mtx.basis.elements[0][1] = dataptr[1];
- mtx.basis.elements[0][2] = dataptr[2];
- mtx.origin.x = dataptr[3];
- mtx.basis.elements[1][0] = dataptr[4];
- mtx.basis.elements[1][1] = dataptr[5];
- mtx.basis.elements[1][2] = dataptr[6];
- mtx.origin.y = dataptr[7];
- mtx.basis.elements[2][0] = dataptr[8];
- mtx.basis.elements[2][1] = dataptr[9];
- mtx.basis.elements[2][2] = dataptr[10];
- mtx.origin.z = dataptr[11];
-
- AABB baabb = mtx.xform(skbones[j]);
- if (first) {
- laabb = baabb;
- first = false;
- } else {
- laabb.merge_with(baabb);
- }
- }
- }
-
- if (laabb.size == Vector3()) {
- laabb = mesh->surfaces[i]->aabb;
- }
- } else {
- laabb = mesh->surfaces[i]->aabb;
- }
-
- if (i == 0) {
- aabb = laabb;
- } else {
- aabb.merge_with(laabb);
- }
- }
-
- return aabb;
-}
-
-void RendererStorageRD::mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
-
- Mesh *shadow_mesh = mesh_owner.get_or_null(mesh->shadow_mesh);
- if (shadow_mesh) {
- shadow_mesh->shadow_owners.erase(mesh);
- }
- mesh->shadow_mesh = p_shadow_mesh;
-
- shadow_mesh = mesh_owner.get_or_null(mesh->shadow_mesh);
-
- if (shadow_mesh) {
- shadow_mesh->shadow_owners.insert(mesh);
- }
-
- mesh->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
-}
-
-void RendererStorageRD::mesh_clear(RID p_mesh) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND(!mesh);
- for (uint32_t i = 0; i < mesh->surface_count; i++) {
- Mesh::Surface &s = *mesh->surfaces[i];
- RD::get_singleton()->free(s.vertex_buffer); //clears arrays as dependency automatically, including all versions
- if (s.attribute_buffer.is_valid()) {
- RD::get_singleton()->free(s.attribute_buffer);
- }
- if (s.skin_buffer.is_valid()) {
- RD::get_singleton()->free(s.skin_buffer);
- }
- if (s.versions) {
- memfree(s.versions); //reallocs, so free with memfree.
- }
-
- if (s.index_buffer.is_valid()) {
- RD::get_singleton()->free(s.index_buffer);
- }
-
- if (s.lod_count) {
- for (uint32_t j = 0; j < s.lod_count; j++) {
- RD::get_singleton()->free(s.lods[j].index_buffer);
- }
- memdelete_arr(s.lods);
- }
-
- if (s.blend_shape_buffer.is_valid()) {
- RD::get_singleton()->free(s.blend_shape_buffer);
- }
-
- memdelete(mesh->surfaces[i]);
- }
- if (mesh->surfaces) {
- memfree(mesh->surfaces);
- }
-
- mesh->surfaces = nullptr;
- mesh->surface_count = 0;
- mesh->material_cache.clear();
- //clear instance data
- for (MeshInstance *mi : mesh->instances) {
- _mesh_instance_clear(mi);
- }
- mesh->has_bone_weights = false;
- mesh->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
-
- for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
- Mesh *shadow_owner = E->get();
- shadow_owner->shadow_mesh = RID();
- shadow_owner->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
- }
-}
-
-bool RendererStorageRD::mesh_needs_instance(RID p_mesh, bool p_has_skeleton) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, false);
-
- return mesh->blend_shape_count > 0 || (mesh->has_bone_weights && p_has_skeleton);
-}
-
-/* MESH INSTANCE */
-
-RID RendererStorageRD::mesh_instance_create(RID p_base) {
- Mesh *mesh = mesh_owner.get_or_null(p_base);
- ERR_FAIL_COND_V(!mesh, RID());
-
- RID rid = mesh_instance_owner.make_rid();
- MeshInstance *mi = mesh_instance_owner.get_or_null(rid);
-
- mi->mesh = mesh;
-
- for (uint32_t i = 0; i < mesh->surface_count; i++) {
- _mesh_instance_add_surface(mi, mesh, i);
- }
-
- mi->I = mesh->instances.push_back(mi);
-
- mi->dirty = true;
-
- return rid;
-}
-void RendererStorageRD::mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) {
- MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
- if (mi->skeleton == p_skeleton) {
- return;
- }
- mi->skeleton = p_skeleton;
- mi->skeleton_version = 0;
- mi->dirty = true;
-}
-
-void RendererStorageRD::mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) {
- MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
- ERR_FAIL_COND(!mi);
- ERR_FAIL_INDEX(p_shape, (int)mi->blend_weights.size());
- mi->blend_weights[p_shape] = p_weight;
- mi->weights_dirty = true;
- //will be eventually updated
-}
-
-void RendererStorageRD::_mesh_instance_clear(MeshInstance *mi) {
- for (uint32_t i = 0; i < mi->surfaces.size(); i++) {
- if (mi->surfaces[i].vertex_buffer.is_valid()) {
- RD::get_singleton()->free(mi->surfaces[i].vertex_buffer);
- }
- if (mi->surfaces[i].versions) {
- for (uint32_t j = 0; j < mi->surfaces[i].version_count; j++) {
- RD::get_singleton()->free(mi->surfaces[i].versions[j].vertex_array);
- }
- memfree(mi->surfaces[i].versions);
- }
- }
- mi->surfaces.clear();
-
- if (mi->blend_weights_buffer.is_valid()) {
- RD::get_singleton()->free(mi->blend_weights_buffer);
- }
- mi->blend_weights.clear();
- mi->weights_dirty = false;
- mi->skeleton_version = 0;
-}
-
-void RendererStorageRD::_mesh_instance_add_surface(MeshInstance *mi, Mesh *mesh, uint32_t p_surface) {
- if (mesh->blend_shape_count > 0 && mi->blend_weights_buffer.is_null()) {
- mi->blend_weights.resize(mesh->blend_shape_count);
- for (uint32_t i = 0; i < mi->blend_weights.size(); i++) {
- mi->blend_weights[i] = 0;
- }
- mi->blend_weights_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * mi->blend_weights.size(), mi->blend_weights.to_byte_array());
- mi->weights_dirty = true;
- }
-
- MeshInstance::Surface s;
- if (mesh->blend_shape_count > 0 || (mesh->surfaces[p_surface]->format & RS::ARRAY_FORMAT_BONES)) {
- //surface warrants transform
- s.vertex_buffer = RD::get_singleton()->vertex_buffer_create(mesh->surfaces[p_surface]->vertex_buffer_size, Vector<uint8_t>(), true);
-
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.binding = 1;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(s.vertex_buffer);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.binding = 2;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- if (mi->blend_weights_buffer.is_valid()) {
- u.ids.push_back(mi->blend_weights_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
- s.uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_INSTANCE);
- }
-
- mi->surfaces.push_back(s);
- mi->dirty = true;
-}
-
-void RendererStorageRD::mesh_instance_check_for_update(RID p_mesh_instance) {
- MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
-
- bool needs_update = mi->dirty;
-
- if (mi->weights_dirty && !mi->weight_update_list.in_list()) {
- dirty_mesh_instance_weights.add(&mi->weight_update_list);
- needs_update = true;
- }
-
- if (mi->array_update_list.in_list()) {
- return;
- }
-
- if (!needs_update && mi->skeleton.is_valid()) {
- Skeleton *sk = skeleton_owner.get_or_null(mi->skeleton);
- if (sk && sk->version != mi->skeleton_version) {
- needs_update = true;
- }
- }
-
- if (needs_update) {
- dirty_mesh_instance_arrays.add(&mi->array_update_list);
- }
-}
-
-void RendererStorageRD::update_mesh_instances() {
- while (dirty_mesh_instance_weights.first()) {
- MeshInstance *mi = dirty_mesh_instance_weights.first()->self();
-
- if (mi->blend_weights_buffer.is_valid()) {
- RD::get_singleton()->buffer_update(mi->blend_weights_buffer, 0, mi->blend_weights.size() * sizeof(float), mi->blend_weights.ptr());
- }
- dirty_mesh_instance_weights.remove(&mi->weight_update_list);
- mi->weights_dirty = false;
- }
- if (dirty_mesh_instance_arrays.first() == nullptr) {
- return; //nothing to do
- }
-
- //process skeletons and blend shapes
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
-
- while (dirty_mesh_instance_arrays.first()) {
- MeshInstance *mi = dirty_mesh_instance_arrays.first()->self();
-
- Skeleton *sk = skeleton_owner.get_or_null(mi->skeleton);
-
- for (uint32_t i = 0; i < mi->surfaces.size(); i++) {
- if (mi->surfaces[i].uniform_set == RID() || mi->mesh->surfaces[i]->uniform_set == RID()) {
- continue;
- }
-
- bool array_is_2d = mi->mesh->surfaces[i]->format & RS::ARRAY_FLAG_USE_2D_VERTICES;
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, skeleton_shader.pipeline[array_is_2d ? SkeletonShader::SHADER_MODE_2D : SkeletonShader::SHADER_MODE_3D]);
-
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, mi->surfaces[i].uniform_set, SkeletonShader::UNIFORM_SET_INSTANCE);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, mi->mesh->surfaces[i]->uniform_set, SkeletonShader::UNIFORM_SET_SURFACE);
- if (sk && sk->uniform_set_mi.is_valid()) {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, sk->uniform_set_mi, SkeletonShader::UNIFORM_SET_SKELETON);
- } else {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, skeleton_shader.default_skeleton_uniform_set, SkeletonShader::UNIFORM_SET_SKELETON);
- }
-
- SkeletonShader::PushConstant push_constant;
-
- push_constant.has_normal = mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_NORMAL;
- push_constant.has_tangent = mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_TANGENT;
- push_constant.has_skeleton = sk != nullptr && sk->use_2d == array_is_2d && (mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_BONES);
- push_constant.has_blend_shape = mi->mesh->blend_shape_count > 0;
-
- push_constant.vertex_count = mi->mesh->surfaces[i]->vertex_count;
- push_constant.vertex_stride = (mi->mesh->surfaces[i]->vertex_buffer_size / mi->mesh->surfaces[i]->vertex_count) / 4;
- push_constant.skin_stride = (mi->mesh->surfaces[i]->skin_buffer_size / mi->mesh->surfaces[i]->vertex_count) / 4;
- push_constant.skin_weight_offset = (mi->mesh->surfaces[i]->format & RS::ARRAY_FLAG_USE_8_BONE_WEIGHTS) ? 4 : 2;
-
- push_constant.blend_shape_count = mi->mesh->blend_shape_count;
- push_constant.normalized_blend_shapes = mi->mesh->blend_shape_mode == RS::BLEND_SHAPE_MODE_NORMALIZED;
- push_constant.pad0 = 0;
- push_constant.pad1 = 0;
-
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(SkeletonShader::PushConstant));
-
- //dispatch without barrier, so all is done at the same time
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.vertex_count, 1, 1);
- }
-
- mi->dirty = false;
- if (sk) {
- mi->skeleton_version = sk->version;
- }
- dirty_mesh_instance_arrays.remove(&mi->array_update_list);
- }
-
- RD::get_singleton()->compute_list_end();
-}
-
-void RendererStorageRD::_mesh_surface_generate_version_for_input_mask(Mesh::Surface::Version &v, Mesh::Surface *s, uint32_t p_input_mask, MeshInstance::Surface *mis) {
- Vector<RD::VertexAttribute> attributes;
- Vector<RID> buffers;
-
- uint32_t stride = 0;
- uint32_t attribute_stride = 0;
- uint32_t skin_stride = 0;
-
- for (int i = 0; i < RS::ARRAY_INDEX; i++) {
- RD::VertexAttribute vd;
- RID buffer;
- vd.location = i;
-
- if (!(s->format & (1 << i))) {
- // Not supplied by surface, use default value
- buffer = mesh_default_rd_buffers[i];
- vd.stride = 0;
- switch (i) {
- case RS::ARRAY_VERTEX: {
- vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
-
- } break;
- case RS::ARRAY_NORMAL: {
- vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
- } break;
- case RS::ARRAY_TANGENT: {
- vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
- } break;
- case RS::ARRAY_COLOR: {
- vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
-
- } break;
- case RS::ARRAY_TEX_UV: {
- vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
-
- } break;
- case RS::ARRAY_TEX_UV2: {
- vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
- } break;
- case RS::ARRAY_CUSTOM0:
- case RS::ARRAY_CUSTOM1:
- case RS::ARRAY_CUSTOM2:
- case RS::ARRAY_CUSTOM3: {
- //assumed weights too
- vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
- } break;
- case RS::ARRAY_BONES: {
- //assumed weights too
- vd.format = RD::DATA_FORMAT_R32G32B32A32_UINT;
- } break;
- case RS::ARRAY_WEIGHTS: {
- //assumed weights too
- vd.format = RD::DATA_FORMAT_R32G32B32A32_UINT;
- } break;
- }
- } else {
- //Supplied, use it
-
- vd.stride = 1; //mark that it needs a stride set (default uses 0)
-
- switch (i) {
- case RS::ARRAY_VERTEX: {
- vd.offset = stride;
-
- if (s->format & RS::ARRAY_FLAG_USE_2D_VERTICES) {
- vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
- stride += sizeof(float) * 2;
- } else {
- vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
- stride += sizeof(float) * 3;
- }
-
- if (mis) {
- buffer = mis->vertex_buffer;
- } else {
- buffer = s->vertex_buffer;
- }
-
- } break;
- case RS::ARRAY_NORMAL: {
- vd.offset = stride;
-
- vd.format = RD::DATA_FORMAT_A2B10G10R10_UNORM_PACK32;
-
- stride += sizeof(uint32_t);
- if (mis) {
- buffer = mis->vertex_buffer;
- } else {
- buffer = s->vertex_buffer;
- }
- } break;
- case RS::ARRAY_TANGENT: {
- vd.offset = stride;
-
- vd.format = RD::DATA_FORMAT_A2B10G10R10_UNORM_PACK32;
- stride += sizeof(uint32_t);
- if (mis) {
- buffer = mis->vertex_buffer;
- } else {
- buffer = s->vertex_buffer;
- }
- } break;
- case RS::ARRAY_COLOR: {
- vd.offset = attribute_stride;
-
- vd.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- attribute_stride += sizeof(int8_t) * 4;
- buffer = s->attribute_buffer;
- } break;
- case RS::ARRAY_TEX_UV: {
- vd.offset = attribute_stride;
-
- vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
- attribute_stride += sizeof(float) * 2;
- buffer = s->attribute_buffer;
-
- } break;
- case RS::ARRAY_TEX_UV2: {
- vd.offset = attribute_stride;
-
- vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
- attribute_stride += sizeof(float) * 2;
- buffer = s->attribute_buffer;
- } break;
- case RS::ARRAY_CUSTOM0:
- case RS::ARRAY_CUSTOM1:
- case RS::ARRAY_CUSTOM2:
- case RS::ARRAY_CUSTOM3: {
- vd.offset = attribute_stride;
-
- int idx = i - RS::ARRAY_CUSTOM0;
- uint32_t fmt_shift[RS::ARRAY_CUSTOM_COUNT] = { RS::ARRAY_FORMAT_CUSTOM0_SHIFT, RS::ARRAY_FORMAT_CUSTOM1_SHIFT, RS::ARRAY_FORMAT_CUSTOM2_SHIFT, RS::ARRAY_FORMAT_CUSTOM3_SHIFT };
- uint32_t fmt = (s->format >> fmt_shift[idx]) & RS::ARRAY_FORMAT_CUSTOM_MASK;
- uint32_t fmtsize[RS::ARRAY_CUSTOM_MAX] = { 4, 4, 4, 8, 4, 8, 12, 16 };
- RD::DataFormat fmtrd[RS::ARRAY_CUSTOM_MAX] = { RD::DATA_FORMAT_R8G8B8A8_UNORM, RD::DATA_FORMAT_R8G8B8A8_SNORM, RD::DATA_FORMAT_R16G16_SFLOAT, RD::DATA_FORMAT_R16G16B16A16_SFLOAT, RD::DATA_FORMAT_R32_SFLOAT, RD::DATA_FORMAT_R32G32_SFLOAT, RD::DATA_FORMAT_R32G32B32_SFLOAT, RD::DATA_FORMAT_R32G32B32A32_SFLOAT };
- vd.format = fmtrd[fmt];
- attribute_stride += fmtsize[fmt];
- buffer = s->attribute_buffer;
- } break;
- case RS::ARRAY_BONES: {
- vd.offset = skin_stride;
-
- vd.format = RD::DATA_FORMAT_R16G16B16A16_UINT;
- skin_stride += sizeof(int16_t) * 4;
- buffer = s->skin_buffer;
- } break;
- case RS::ARRAY_WEIGHTS: {
- vd.offset = skin_stride;
-
- vd.format = RD::DATA_FORMAT_R16G16B16A16_UNORM;
- skin_stride += sizeof(int16_t) * 4;
- buffer = s->skin_buffer;
- } break;
- }
- }
-
- if (!(p_input_mask & (1 << i))) {
- continue; // Shader does not need this, skip it (but computing stride was important anyway)
- }
-
- attributes.push_back(vd);
- buffers.push_back(buffer);
- }
-
- //update final stride
- for (int i = 0; i < attributes.size(); i++) {
- if (attributes[i].stride == 0) {
- continue; //default location
- }
- int loc = attributes[i].location;
-
- if (loc < RS::ARRAY_COLOR) {
- attributes.write[i].stride = stride;
- } else if (loc < RS::ARRAY_BONES) {
- attributes.write[i].stride = attribute_stride;
- } else {
- attributes.write[i].stride = skin_stride;
- }
- }
-
- v.input_mask = p_input_mask;
- v.vertex_format = RD::get_singleton()->vertex_format_create(attributes);
- v.vertex_array = RD::get_singleton()->vertex_array_create(s->vertex_count, v.vertex_format, buffers);
-}
-
-////////////////// MULTIMESH
-
-RID RendererStorageRD::multimesh_allocate() {
- return multimesh_owner.allocate_rid();
-}
-void RendererStorageRD::multimesh_initialize(RID p_rid) {
- multimesh_owner.initialize_rid(p_rid, MultiMesh());
-}
-
-void RendererStorageRD::multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors, bool p_use_custom_data) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
-
- if (multimesh->instances == p_instances && multimesh->xform_format == p_transform_format && multimesh->uses_colors == p_use_colors && multimesh->uses_custom_data == p_use_custom_data) {
- return;
- }
-
- if (multimesh->buffer.is_valid()) {
- RD::get_singleton()->free(multimesh->buffer);
- multimesh->buffer = RID();
- multimesh->uniform_set_2d = RID(); //cleared by dependency
- multimesh->uniform_set_3d = RID(); //cleared by dependency
- }
-
- if (multimesh->data_cache_dirty_regions) {
- memdelete_arr(multimesh->data_cache_dirty_regions);
- multimesh->data_cache_dirty_regions = nullptr;
- multimesh->data_cache_used_dirty_regions = 0;
- }
-
- multimesh->instances = p_instances;
- multimesh->xform_format = p_transform_format;
- multimesh->uses_colors = p_use_colors;
- multimesh->color_offset_cache = p_transform_format == RS::MULTIMESH_TRANSFORM_2D ? 8 : 12;
- multimesh->uses_custom_data = p_use_custom_data;
- multimesh->custom_data_offset_cache = multimesh->color_offset_cache + (p_use_colors ? 4 : 0);
- multimesh->stride_cache = multimesh->custom_data_offset_cache + (p_use_custom_data ? 4 : 0);
- multimesh->buffer_set = false;
-
- //print_line("allocate, elements: " + itos(p_instances) + " 2D: " + itos(p_transform_format == RS::MULTIMESH_TRANSFORM_2D) + " colors " + itos(multimesh->uses_colors) + " data " + itos(multimesh->uses_custom_data) + " stride " + itos(multimesh->stride_cache) + " total size " + itos(multimesh->stride_cache * multimesh->instances));
- multimesh->data_cache = Vector<float>();
- multimesh->aabb = AABB();
- multimesh->aabb_dirty = false;
- multimesh->visible_instances = MIN(multimesh->visible_instances, multimesh->instances);
-
- if (multimesh->instances) {
- multimesh->buffer = RD::get_singleton()->storage_buffer_create(multimesh->instances * multimesh->stride_cache * 4);
- }
-
- multimesh->dependency.changed_notify(DEPENDENCY_CHANGED_MULTIMESH);
-}
-
-int RendererStorageRD::multimesh_get_instance_count(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, 0);
- return multimesh->instances;
-}
-
-void RendererStorageRD::multimesh_set_mesh(RID p_multimesh, RID p_mesh) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- if (multimesh->mesh == p_mesh) {
- return;
- }
- multimesh->mesh = p_mesh;
-
- if (multimesh->instances == 0) {
- return;
- }
-
- if (multimesh->data_cache.size()) {
- //we have a data cache, just mark it dirt
- _multimesh_mark_all_dirty(multimesh, false, true);
- } else if (multimesh->instances) {
- //need to re-create AABB unfortunately, calling this has a penalty
- if (multimesh->buffer_set) {
- Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
- const uint8_t *r = buffer.ptr();
- const float *data = (const float *)r;
- _multimesh_re_create_aabb(multimesh, data, multimesh->instances);
- }
- }
-
- multimesh->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
-}
-
-#define MULTIMESH_DIRTY_REGION_SIZE 512
-
-void RendererStorageRD::_multimesh_make_local(MultiMesh *multimesh) const {
- if (multimesh->data_cache.size() > 0) {
- return; //already local
- }
- ERR_FAIL_COND(multimesh->data_cache.size() > 0);
- // this means that the user wants to load/save individual elements,
- // for this, the data must reside on CPU, so just copy it there.
- multimesh->data_cache.resize(multimesh->instances * multimesh->stride_cache);
- {
- float *w = multimesh->data_cache.ptrw();
-
- if (multimesh->buffer_set) {
- Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
- {
- const uint8_t *r = buffer.ptr();
- memcpy(w, r, buffer.size());
- }
- } else {
- memset(w, 0, (size_t)multimesh->instances * multimesh->stride_cache * sizeof(float));
- }
- }
- uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
- multimesh->data_cache_dirty_regions = memnew_arr(bool, data_cache_dirty_region_count);
- for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
- multimesh->data_cache_dirty_regions[i] = false;
- }
- multimesh->data_cache_used_dirty_regions = 0;
-}
-
-void RendererStorageRD::_multimesh_mark_dirty(MultiMesh *multimesh, int p_index, bool p_aabb) {
- uint32_t region_index = p_index / MULTIMESH_DIRTY_REGION_SIZE;
-#ifdef DEBUG_ENABLED
- uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
- ERR_FAIL_UNSIGNED_INDEX(region_index, data_cache_dirty_region_count); //bug
-#endif
- if (!multimesh->data_cache_dirty_regions[region_index]) {
- multimesh->data_cache_dirty_regions[region_index] = true;
- multimesh->data_cache_used_dirty_regions++;
- }
-
- if (p_aabb) {
- multimesh->aabb_dirty = true;
- }
-
- if (!multimesh->dirty) {
- multimesh->dirty_list = multimesh_dirty_list;
- multimesh_dirty_list = multimesh;
- multimesh->dirty = true;
- }
-}
-
-void RendererStorageRD::_multimesh_mark_all_dirty(MultiMesh *multimesh, bool p_data, bool p_aabb) {
- if (p_data) {
- uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
-
- for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
- if (!multimesh->data_cache_dirty_regions[i]) {
- multimesh->data_cache_dirty_regions[i] = true;
- multimesh->data_cache_used_dirty_regions++;
- }
- }
- }
-
- if (p_aabb) {
- multimesh->aabb_dirty = true;
- }
-
- if (!multimesh->dirty) {
- multimesh->dirty_list = multimesh_dirty_list;
- multimesh_dirty_list = multimesh;
- multimesh->dirty = true;
- }
-}
-
-void RendererStorageRD::_multimesh_re_create_aabb(MultiMesh *multimesh, const float *p_data, int p_instances) {
- ERR_FAIL_COND(multimesh->mesh.is_null());
- AABB aabb;
- AABB mesh_aabb = mesh_get_aabb(multimesh->mesh);
- for (int i = 0; i < p_instances; i++) {
- const float *data = p_data + multimesh->stride_cache * i;
- Transform3D t;
-
- if (multimesh->xform_format == RS::MULTIMESH_TRANSFORM_3D) {
- t.basis.elements[0][0] = data[0];
- t.basis.elements[0][1] = data[1];
- t.basis.elements[0][2] = data[2];
- t.origin.x = data[3];
- t.basis.elements[1][0] = data[4];
- t.basis.elements[1][1] = data[5];
- t.basis.elements[1][2] = data[6];
- t.origin.y = data[7];
- t.basis.elements[2][0] = data[8];
- t.basis.elements[2][1] = data[9];
- t.basis.elements[2][2] = data[10];
- t.origin.z = data[11];
-
- } else {
- t.basis.elements[0].x = data[0];
- t.basis.elements[1].x = data[1];
- t.origin.x = data[3];
-
- t.basis.elements[0].y = data[4];
- t.basis.elements[1].y = data[5];
- t.origin.y = data[7];
- }
-
- if (i == 0) {
- aabb = t.xform(mesh_aabb);
- } else {
- aabb.merge_with(t.xform(mesh_aabb));
- }
- }
-
- multimesh->aabb = aabb;
-}
-
-void RendererStorageRD::multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_INDEX(p_index, multimesh->instances);
- ERR_FAIL_COND(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_3D);
-
- _multimesh_make_local(multimesh);
-
- {
- float *w = multimesh->data_cache.ptrw();
-
- float *dataptr = w + p_index * multimesh->stride_cache;
-
- dataptr[0] = p_transform.basis.elements[0][0];
- dataptr[1] = p_transform.basis.elements[0][1];
- dataptr[2] = p_transform.basis.elements[0][2];
- dataptr[3] = p_transform.origin.x;
- dataptr[4] = p_transform.basis.elements[1][0];
- dataptr[5] = p_transform.basis.elements[1][1];
- dataptr[6] = p_transform.basis.elements[1][2];
- dataptr[7] = p_transform.origin.y;
- dataptr[8] = p_transform.basis.elements[2][0];
- dataptr[9] = p_transform.basis.elements[2][1];
- dataptr[10] = p_transform.basis.elements[2][2];
- dataptr[11] = p_transform.origin.z;
- }
-
- _multimesh_mark_dirty(multimesh, p_index, true);
-}
-
-void RendererStorageRD::multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_INDEX(p_index, multimesh->instances);
- ERR_FAIL_COND(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_2D);
-
- _multimesh_make_local(multimesh);
-
- {
- float *w = multimesh->data_cache.ptrw();
-
- float *dataptr = w + p_index * multimesh->stride_cache;
-
- dataptr[0] = p_transform.elements[0][0];
- dataptr[1] = p_transform.elements[1][0];
- dataptr[2] = 0;
- dataptr[3] = p_transform.elements[2][0];
- dataptr[4] = p_transform.elements[0][1];
- dataptr[5] = p_transform.elements[1][1];
- dataptr[6] = 0;
- dataptr[7] = p_transform.elements[2][1];
- }
-
- _multimesh_mark_dirty(multimesh, p_index, true);
-}
-
-void RendererStorageRD::multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_INDEX(p_index, multimesh->instances);
- ERR_FAIL_COND(!multimesh->uses_colors);
-
- _multimesh_make_local(multimesh);
-
- {
- float *w = multimesh->data_cache.ptrw();
-
- float *dataptr = w + p_index * multimesh->stride_cache + multimesh->color_offset_cache;
-
- dataptr[0] = p_color.r;
- dataptr[1] = p_color.g;
- dataptr[2] = p_color.b;
- dataptr[3] = p_color.a;
- }
-
- _multimesh_mark_dirty(multimesh, p_index, false);
-}
-
-void RendererStorageRD::multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_INDEX(p_index, multimesh->instances);
- ERR_FAIL_COND(!multimesh->uses_custom_data);
-
- _multimesh_make_local(multimesh);
-
- {
- float *w = multimesh->data_cache.ptrw();
-
- float *dataptr = w + p_index * multimesh->stride_cache + multimesh->custom_data_offset_cache;
-
- dataptr[0] = p_color.r;
- dataptr[1] = p_color.g;
- dataptr[2] = p_color.b;
- dataptr[3] = p_color.a;
- }
-
- _multimesh_mark_dirty(multimesh, p_index, false);
-}
-
-RID RendererStorageRD::multimesh_get_mesh(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, RID());
-
- return multimesh->mesh;
-}
-
-Transform3D RendererStorageRD::multimesh_instance_get_transform(RID p_multimesh, int p_index) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, Transform3D());
- ERR_FAIL_INDEX_V(p_index, multimesh->instances, Transform3D());
- ERR_FAIL_COND_V(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_3D, Transform3D());
-
- _multimesh_make_local(multimesh);
-
- Transform3D t;
- {
- const float *r = multimesh->data_cache.ptr();
-
- const float *dataptr = r + p_index * multimesh->stride_cache;
-
- t.basis.elements[0][0] = dataptr[0];
- t.basis.elements[0][1] = dataptr[1];
- t.basis.elements[0][2] = dataptr[2];
- t.origin.x = dataptr[3];
- t.basis.elements[1][0] = dataptr[4];
- t.basis.elements[1][1] = dataptr[5];
- t.basis.elements[1][2] = dataptr[6];
- t.origin.y = dataptr[7];
- t.basis.elements[2][0] = dataptr[8];
- t.basis.elements[2][1] = dataptr[9];
- t.basis.elements[2][2] = dataptr[10];
- t.origin.z = dataptr[11];
- }
-
- return t;
-}
-
-Transform2D RendererStorageRD::multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, Transform2D());
- ERR_FAIL_INDEX_V(p_index, multimesh->instances, Transform2D());
- ERR_FAIL_COND_V(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_2D, Transform2D());
-
- _multimesh_make_local(multimesh);
-
- Transform2D t;
- {
- const float *r = multimesh->data_cache.ptr();
-
- const float *dataptr = r + p_index * multimesh->stride_cache;
-
- t.elements[0][0] = dataptr[0];
- t.elements[1][0] = dataptr[1];
- t.elements[2][0] = dataptr[3];
- t.elements[0][1] = dataptr[4];
- t.elements[1][1] = dataptr[5];
- t.elements[2][1] = dataptr[7];
- }
-
- return t;
-}
-
-Color RendererStorageRD::multimesh_instance_get_color(RID p_multimesh, int p_index) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, Color());
- ERR_FAIL_INDEX_V(p_index, multimesh->instances, Color());
- ERR_FAIL_COND_V(!multimesh->uses_colors, Color());
-
- _multimesh_make_local(multimesh);
-
- Color c;
- {
- const float *r = multimesh->data_cache.ptr();
-
- const float *dataptr = r + p_index * multimesh->stride_cache + multimesh->color_offset_cache;
-
- c.r = dataptr[0];
- c.g = dataptr[1];
- c.b = dataptr[2];
- c.a = dataptr[3];
- }
-
- return c;
-}
-
-Color RendererStorageRD::multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, Color());
- ERR_FAIL_INDEX_V(p_index, multimesh->instances, Color());
- ERR_FAIL_COND_V(!multimesh->uses_custom_data, Color());
-
- _multimesh_make_local(multimesh);
-
- Color c;
- {
- const float *r = multimesh->data_cache.ptr();
-
- const float *dataptr = r + p_index * multimesh->stride_cache + multimesh->custom_data_offset_cache;
-
- c.r = dataptr[0];
- c.g = dataptr[1];
- c.b = dataptr[2];
- c.a = dataptr[3];
- }
-
- return c;
-}
-
-void RendererStorageRD::multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_COND(p_buffer.size() != (multimesh->instances * (int)multimesh->stride_cache));
-
- {
- const float *r = p_buffer.ptr();
- RD::get_singleton()->buffer_update(multimesh->buffer, 0, p_buffer.size() * sizeof(float), r);
- multimesh->buffer_set = true;
- }
-
- if (multimesh->data_cache.size()) {
- //if we have a data cache, just update it
- multimesh->data_cache = p_buffer;
- {
- //clear dirty since nothing will be dirty anymore
- uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
- for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
- multimesh->data_cache_dirty_regions[i] = false;
- }
- multimesh->data_cache_used_dirty_regions = 0;
- }
-
- _multimesh_mark_all_dirty(multimesh, false, true); //update AABB
- } else if (multimesh->mesh.is_valid()) {
- //if we have a mesh set, we need to re-generate the AABB from the new data
- const float *data = p_buffer.ptr();
-
- _multimesh_re_create_aabb(multimesh, data, multimesh->instances);
- multimesh->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
- }
-}
-
-Vector<float> RendererStorageRD::multimesh_get_buffer(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, Vector<float>());
- if (multimesh->buffer.is_null()) {
- return Vector<float>();
- } else if (multimesh->data_cache.size()) {
- return multimesh->data_cache;
- } else {
- //get from memory
-
- Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
- Vector<float> ret;
- ret.resize(multimesh->instances * multimesh->stride_cache);
- {
- float *w = ret.ptrw();
- const uint8_t *r = buffer.ptr();
- memcpy(w, r, buffer.size());
- }
-
- return ret;
- }
-}
-
-void RendererStorageRD::multimesh_set_visible_instances(RID p_multimesh, int p_visible) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND(!multimesh);
- ERR_FAIL_COND(p_visible < -1 || p_visible > multimesh->instances);
- if (multimesh->visible_instances == p_visible) {
- return;
- }
-
- if (multimesh->data_cache.size()) {
- //there is a data cache..
- _multimesh_mark_all_dirty(multimesh, false, true);
- }
-
- multimesh->visible_instances = p_visible;
-
- multimesh->dependency.changed_notify(DEPENDENCY_CHANGED_MULTIMESH_VISIBLE_INSTANCES);
-}
-
-int RendererStorageRD::multimesh_get_visible_instances(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, 0);
- return multimesh->visible_instances;
-}
-
-AABB RendererStorageRD::multimesh_get_aabb(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- ERR_FAIL_COND_V(!multimesh, AABB());
- if (multimesh->aabb_dirty) {
- const_cast<RendererStorageRD *>(this)->_update_dirty_multimeshes();
- }
- return multimesh->aabb;
-}
-
-void RendererStorageRD::_update_dirty_multimeshes() {
- while (multimesh_dirty_list) {
- MultiMesh *multimesh = multimesh_dirty_list;
-
- if (multimesh->data_cache.size()) { //may have been cleared, so only process if it exists
- const float *data = multimesh->data_cache.ptr();
-
- uint32_t visible_instances = multimesh->visible_instances >= 0 ? multimesh->visible_instances : multimesh->instances;
-
- if (multimesh->data_cache_used_dirty_regions) {
- uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
- uint32_t visible_region_count = visible_instances == 0 ? 0 : (visible_instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
-
- uint32_t region_size = multimesh->stride_cache * MULTIMESH_DIRTY_REGION_SIZE * sizeof(float);
-
- if (multimesh->data_cache_used_dirty_regions > 32 || multimesh->data_cache_used_dirty_regions > visible_region_count / 2) {
- //if there too many dirty regions, or represent the majority of regions, just copy all, else transfer cost piles up too much
- RD::get_singleton()->buffer_update(multimesh->buffer, 0, MIN(visible_region_count * region_size, multimesh->instances * (uint32_t)multimesh->stride_cache * (uint32_t)sizeof(float)), data);
- } else {
- //not that many regions? update them all
- for (uint32_t i = 0; i < visible_region_count; i++) {
- if (multimesh->data_cache_dirty_regions[i]) {
- uint32_t offset = i * region_size;
- uint32_t size = multimesh->stride_cache * (uint32_t)multimesh->instances * (uint32_t)sizeof(float);
- uint32_t region_start_index = multimesh->stride_cache * MULTIMESH_DIRTY_REGION_SIZE * i;
- RD::get_singleton()->buffer_update(multimesh->buffer, offset, MIN(region_size, size - offset), &data[region_start_index]);
- }
- }
- }
-
- for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
- multimesh->data_cache_dirty_regions[i] = false;
- }
-
- multimesh->data_cache_used_dirty_regions = 0;
- }
-
- if (multimesh->aabb_dirty) {
- //aabb is dirty..
- _multimesh_re_create_aabb(multimesh, data, visible_instances);
- multimesh->aabb_dirty = false;
- multimesh->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
- }
- }
-
- multimesh_dirty_list = multimesh->dirty_list;
-
- multimesh->dirty_list = nullptr;
- multimesh->dirty = false;
- }
-
- multimesh_dirty_list = nullptr;
-}
-
-/* PARTICLES */
-
-RID RendererStorageRD::particles_allocate() {
- return particles_owner.allocate_rid();
-}
-void RendererStorageRD::particles_initialize(RID p_rid) {
- particles_owner.initialize_rid(p_rid, Particles());
-}
-
-void RendererStorageRD::particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- if (particles->mode == p_mode) {
- return;
- }
-
- _particles_free_data(particles);
-
- particles->mode = p_mode;
-}
-
-void RendererStorageRD::particles_set_emitting(RID p_particles, bool p_emitting) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->emitting = p_emitting;
-}
-
-bool RendererStorageRD::particles_get_emitting(RID p_particles) {
- ERR_FAIL_COND_V_MSG(RSG::threaded, false, "This function should never be used with threaded rendering, as it stalls the renderer.");
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, false);
-
- return particles->emitting;
-}
-
-void RendererStorageRD::_particles_free_data(Particles *particles) {
- if (particles->particle_buffer.is_valid()) {
- RD::get_singleton()->free(particles->particle_buffer);
- particles->particle_buffer = RID();
- RD::get_singleton()->free(particles->particle_instance_buffer);
- particles->particle_instance_buffer = RID();
- }
-
- if (particles->frame_params_buffer.is_valid()) {
- RD::get_singleton()->free(particles->frame_params_buffer);
- particles->frame_params_buffer = RID();
- }
- particles->particles_transforms_buffer_uniform_set = RID();
-
- if (RD::get_singleton()->uniform_set_is_valid(particles->trail_bind_pose_uniform_set)) {
- RD::get_singleton()->free(particles->trail_bind_pose_uniform_set);
- }
- particles->trail_bind_pose_uniform_set = RID();
-
- if (particles->trail_bind_pose_buffer.is_valid()) {
- RD::get_singleton()->free(particles->trail_bind_pose_buffer);
- particles->trail_bind_pose_buffer = RID();
- }
- if (RD::get_singleton()->uniform_set_is_valid(particles->collision_textures_uniform_set)) {
- RD::get_singleton()->free(particles->collision_textures_uniform_set);
- }
- particles->collision_textures_uniform_set = RID();
-
- if (particles->particles_sort_buffer.is_valid()) {
- RD::get_singleton()->free(particles->particles_sort_buffer);
- particles->particles_sort_buffer = RID();
- particles->particles_sort_uniform_set = RID();
- }
-
- if (particles->emission_buffer != nullptr) {
- particles->emission_buffer = nullptr;
- particles->emission_buffer_data.clear();
- RD::get_singleton()->free(particles->emission_storage_buffer);
- particles->emission_storage_buffer = RID();
- }
-
- if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
- //will need to be re-created
- RD::get_singleton()->free(particles->particles_material_uniform_set);
- }
- particles->particles_material_uniform_set = RID();
-}
-
-void RendererStorageRD::particles_set_amount(RID p_particles, int p_amount) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- if (particles->amount == p_amount) {
- return;
- }
-
- _particles_free_data(particles);
-
- particles->amount = p_amount;
-
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
-
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_PARTICLES);
-}
-
-void RendererStorageRD::particles_set_lifetime(RID p_particles, double p_lifetime) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->lifetime = p_lifetime;
-}
-
-void RendererStorageRD::particles_set_one_shot(RID p_particles, bool p_one_shot) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->one_shot = p_one_shot;
-}
-
-void RendererStorageRD::particles_set_pre_process_time(RID p_particles, double p_time) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->pre_process_time = p_time;
-}
-void RendererStorageRD::particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->explosiveness = p_ratio;
-}
-void RendererStorageRD::particles_set_randomness_ratio(RID p_particles, real_t p_ratio) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->randomness = p_ratio;
-}
-
-void RendererStorageRD::particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->custom_aabb = p_aabb;
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::particles_set_speed_scale(RID p_particles, double p_scale) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->speed_scale = p_scale;
-}
-void RendererStorageRD::particles_set_use_local_coordinates(RID p_particles, bool p_enable) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->use_local_coords = p_enable;
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_PARTICLES);
-}
-
-void RendererStorageRD::particles_set_fixed_fps(RID p_particles, int p_fps) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->fixed_fps = p_fps;
-
- _particles_free_data(particles);
-
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
-
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_PARTICLES);
-}
-
-void RendererStorageRD::particles_set_interpolate(RID p_particles, bool p_enable) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->interpolate = p_enable;
-}
-
-void RendererStorageRD::particles_set_fractional_delta(RID p_particles, bool p_enable) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->fractional_delta = p_enable;
-}
-
-void RendererStorageRD::particles_set_trails(RID p_particles, bool p_enable, double p_length) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- ERR_FAIL_COND(p_length < 0.1);
- p_length = MIN(10.0, p_length);
-
- particles->trails_enabled = p_enable;
- particles->trail_length = p_length;
-
- _particles_free_data(particles);
-
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
-
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_PARTICLES);
-}
-
-void RendererStorageRD::particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- if (particles->trail_bind_pose_buffer.is_valid() && particles->trail_bind_poses.size() != p_bind_poses.size()) {
- _particles_free_data(particles);
-
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
- }
- particles->trail_bind_poses = p_bind_poses;
- particles->trail_bind_poses_dirty = true;
-
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_PARTICLES);
-}
-
-void RendererStorageRD::particles_set_collision_base_size(RID p_particles, real_t p_size) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->collision_base_size = p_size;
-}
-
-void RendererStorageRD::particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->transform_align = p_transform_align;
-}
-
-void RendererStorageRD::particles_set_process_material(RID p_particles, RID p_material) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->process_material = p_material;
-}
-
-void RendererStorageRD::particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->draw_order = p_order;
-}
-
-void RendererStorageRD::particles_set_draw_passes(RID p_particles, int p_passes) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->draw_passes.resize(p_passes);
-}
-
-void RendererStorageRD::particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- ERR_FAIL_INDEX(p_pass, particles->draw_passes.size());
- particles->draw_passes.write[p_pass] = p_mesh;
-}
-
-void RendererStorageRD::particles_restart(RID p_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->restart_request = true;
-}
-
-void RendererStorageRD::_particles_allocate_emission_buffer(Particles *particles) {
- ERR_FAIL_COND(particles->emission_buffer != nullptr);
-
- particles->emission_buffer_data.resize(sizeof(ParticleEmissionBuffer::Data) * particles->amount + sizeof(uint32_t) * 4);
- memset(particles->emission_buffer_data.ptrw(), 0, particles->emission_buffer_data.size());
- particles->emission_buffer = (ParticleEmissionBuffer *)particles->emission_buffer_data.ptrw();
- particles->emission_buffer->particle_max = particles->amount;
-
- particles->emission_storage_buffer = RD::get_singleton()->storage_buffer_create(particles->emission_buffer_data.size(), particles->emission_buffer_data);
-
- if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
- //will need to be re-created
- RD::get_singleton()->free(particles->particles_material_uniform_set);
- particles->particles_material_uniform_set = RID();
- }
-}
-
-void RendererStorageRD::particles_set_subemitter(RID p_particles, RID p_subemitter_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- ERR_FAIL_COND(p_particles == p_subemitter_particles);
-
- particles->sub_emitter = p_subemitter_particles;
-
- if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
- RD::get_singleton()->free(particles->particles_material_uniform_set);
- particles->particles_material_uniform_set = RID(); //clear and force to re create sub emitting
- }
-}
-
-void RendererStorageRD::particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- ERR_FAIL_COND(particles->amount == 0);
-
- if (particles->emitting) {
- particles->clear = true;
- particles->emitting = false;
- }
-
- if (particles->emission_buffer == nullptr) {
- _particles_allocate_emission_buffer(particles);
- }
-
- if (particles->inactive) {
- //in case it was inactive, make active again
- particles->inactive = false;
- particles->inactive_time = 0;
- }
-
- int32_t idx = particles->emission_buffer->particle_count;
- if (idx < particles->emission_buffer->particle_max) {
- store_transform(p_transform, particles->emission_buffer->data[idx].xform);
-
- particles->emission_buffer->data[idx].velocity[0] = p_velocity.x;
- particles->emission_buffer->data[idx].velocity[1] = p_velocity.y;
- particles->emission_buffer->data[idx].velocity[2] = p_velocity.z;
-
- particles->emission_buffer->data[idx].custom[0] = p_custom.r;
- particles->emission_buffer->data[idx].custom[1] = p_custom.g;
- particles->emission_buffer->data[idx].custom[2] = p_custom.b;
- particles->emission_buffer->data[idx].custom[3] = p_custom.a;
-
- particles->emission_buffer->data[idx].color[0] = p_color.r;
- particles->emission_buffer->data[idx].color[1] = p_color.g;
- particles->emission_buffer->data[idx].color[2] = p_color.b;
- particles->emission_buffer->data[idx].color[3] = p_color.a;
-
- particles->emission_buffer->data[idx].flags = p_emit_flags;
- particles->emission_buffer->particle_count++;
- }
-}
-
-void RendererStorageRD::particles_request_process(RID p_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- if (!particles->dirty) {
- particles->dirty = true;
- particles->update_list = particle_update_list;
- particle_update_list = particles;
- }
-}
-
-AABB RendererStorageRD::particles_get_current_aabb(RID p_particles) {
- if (RSG::threaded) {
- WARN_PRINT_ONCE("Calling this function with threaded rendering enabled stalls the renderer, use with care.");
- }
-
- const Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, AABB());
-
- int total_amount = particles->amount;
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- total_amount *= particles->trail_bind_poses.size();
- }
-
- Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(particles->particle_buffer);
- ERR_FAIL_COND_V(buffer.size() != (int)(total_amount * sizeof(ParticleData)), AABB());
-
- Transform3D inv = particles->emission_transform.affine_inverse();
-
- AABB aabb;
- if (buffer.size()) {
- bool first = true;
-
- const ParticleData *particle_data = reinterpret_cast<const ParticleData *>(buffer.ptr());
- for (int i = 0; i < total_amount; i++) {
- if (particle_data[i].active) {
- Vector3 pos = Vector3(particle_data[i].xform[12], particle_data[i].xform[13], particle_data[i].xform[14]);
- if (!particles->use_local_coords) {
- pos = inv.xform(pos);
- }
- if (first) {
- aabb.position = pos;
- first = false;
- } else {
- aabb.expand_to(pos);
- }
- }
- }
- }
-
- float longest_axis_size = 0;
- for (int i = 0; i < particles->draw_passes.size(); i++) {
- if (particles->draw_passes[i].is_valid()) {
- AABB maabb = mesh_get_aabb(particles->draw_passes[i], RID());
- longest_axis_size = MAX(maabb.get_longest_axis_size(), longest_axis_size);
- }
- }
-
- aabb.grow_by(longest_axis_size);
-
- return aabb;
-}
-
-AABB RendererStorageRD::particles_get_aabb(RID p_particles) const {
- const Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, AABB());
-
- return particles->custom_aabb;
-}
-
-void RendererStorageRD::particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- particles->emission_transform = p_transform;
-}
-
-int RendererStorageRD::particles_get_draw_passes(RID p_particles) const {
- const Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, 0);
-
- return particles->draw_passes.size();
-}
-
-RID RendererStorageRD::particles_get_draw_pass_mesh(RID p_particles, int p_pass) const {
- const Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, RID());
- ERR_FAIL_INDEX_V(p_pass, particles->draw_passes.size(), RID());
-
- return particles->draw_passes[p_pass];
-}
-
-void RendererStorageRD::particles_add_collision(RID p_particles, RID p_particles_collision_instance) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->collisions.insert(p_particles_collision_instance);
-}
-
-void RendererStorageRD::particles_remove_collision(RID p_particles, RID p_particles_collision_instance) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->collisions.erase(p_particles_collision_instance);
-}
-
-void RendererStorageRD::particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
- particles->has_sdf_collision = p_enable;
- particles->sdf_collision_transform = p_xform;
- particles->sdf_collision_to_screen = p_to_screen;
- particles->sdf_collision_texture = p_texture;
-}
-
-void RendererStorageRD::_particles_process(Particles *p_particles, double p_delta) {
- if (p_particles->particles_material_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(p_particles->particles_material_uniform_set)) {
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(p_particles->frame_params_buffer);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 1;
- u.ids.push_back(p_particles->particle_buffer);
- uniforms.push_back(u);
- }
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 2;
- if (p_particles->emission_storage_buffer.is_valid()) {
- u.ids.push_back(p_particles->emission_storage_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 3;
- Particles *sub_emitter = particles_owner.get_or_null(p_particles->sub_emitter);
- if (sub_emitter) {
- if (sub_emitter->emission_buffer == nullptr) { //no emission buffer, allocate emission buffer
- _particles_allocate_emission_buffer(sub_emitter);
- }
- u.ids.push_back(sub_emitter->emission_storage_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
-
- p_particles->particles_material_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 1);
- }
-
- double new_phase = Math::fmod((double)p_particles->phase + (p_delta / p_particles->lifetime) * p_particles->speed_scale, 1.0);
-
- //move back history (if there is any)
- for (uint32_t i = p_particles->frame_history.size() - 1; i > 0; i--) {
- p_particles->frame_history[i] = p_particles->frame_history[i - 1];
- }
- //update current frame
- ParticlesFrameParams &frame_params = p_particles->frame_history[0];
-
- if (p_particles->clear) {
- p_particles->cycle_number = 0;
- p_particles->random_seed = Math::rand();
- } else if (new_phase < p_particles->phase) {
- if (p_particles->one_shot) {
- p_particles->emitting = false;
- }
- p_particles->cycle_number++;
- }
-
- frame_params.emitting = p_particles->emitting;
- frame_params.system_phase = new_phase;
- frame_params.prev_system_phase = p_particles->phase;
-
- p_particles->phase = new_phase;
-
- frame_params.time = RendererCompositorRD::singleton->get_total_time();
- frame_params.delta = p_delta * p_particles->speed_scale;
- frame_params.random_seed = p_particles->random_seed;
- frame_params.explosiveness = p_particles->explosiveness;
- frame_params.randomness = p_particles->randomness;
-
- if (p_particles->use_local_coords) {
- store_transform(Transform3D(), frame_params.emission_transform);
- } else {
- store_transform(p_particles->emission_transform, frame_params.emission_transform);
- }
-
- frame_params.cycle = p_particles->cycle_number;
- frame_params.frame = p_particles->frame_counter++;
- frame_params.pad0 = 0;
- frame_params.pad1 = 0;
- frame_params.pad2 = 0;
-
- { //collision and attractors
-
- frame_params.collider_count = 0;
- frame_params.attractor_count = 0;
- frame_params.particle_size = p_particles->collision_base_size;
-
- RID collision_3d_textures[ParticlesFrameParams::MAX_3D_TEXTURES];
- RID collision_heightmap_texture;
-
- Transform3D to_particles;
- if (p_particles->use_local_coords) {
- to_particles = p_particles->emission_transform.affine_inverse();
- }
-
- if (p_particles->has_sdf_collision && RD::get_singleton()->texture_is_valid(p_particles->sdf_collision_texture)) {
- //2D collision
-
- Transform2D xform = p_particles->sdf_collision_transform; //will use dotproduct manually so invert beforehand
- Transform2D revert = xform.affine_inverse();
- frame_params.collider_count = 1;
- frame_params.colliders[0].transform[0] = xform.elements[0][0];
- frame_params.colliders[0].transform[1] = xform.elements[0][1];
- frame_params.colliders[0].transform[2] = 0;
- frame_params.colliders[0].transform[3] = xform.elements[2][0];
-
- frame_params.colliders[0].transform[4] = xform.elements[1][0];
- frame_params.colliders[0].transform[5] = xform.elements[1][1];
- frame_params.colliders[0].transform[6] = 0;
- frame_params.colliders[0].transform[7] = xform.elements[2][1];
-
- frame_params.colliders[0].transform[8] = revert.elements[0][0];
- frame_params.colliders[0].transform[9] = revert.elements[0][1];
- frame_params.colliders[0].transform[10] = 0;
- frame_params.colliders[0].transform[11] = revert.elements[2][0];
-
- frame_params.colliders[0].transform[12] = revert.elements[1][0];
- frame_params.colliders[0].transform[13] = revert.elements[1][1];
- frame_params.colliders[0].transform[14] = 0;
- frame_params.colliders[0].transform[15] = revert.elements[2][1];
-
- frame_params.colliders[0].extents[0] = p_particles->sdf_collision_to_screen.size.x;
- frame_params.colliders[0].extents[1] = p_particles->sdf_collision_to_screen.size.y;
- frame_params.colliders[0].extents[2] = p_particles->sdf_collision_to_screen.position.x;
- frame_params.colliders[0].scale = p_particles->sdf_collision_to_screen.position.y;
- frame_params.colliders[0].texture_index = 0;
- frame_params.colliders[0].type = ParticlesFrameParams::COLLISION_TYPE_2D_SDF;
-
- collision_heightmap_texture = p_particles->sdf_collision_texture;
-
- //replace in all other history frames where used because parameters are no longer valid if screen moves
- for (uint32_t i = 1; i < p_particles->frame_history.size(); i++) {
- if (p_particles->frame_history[i].collider_count > 0 && p_particles->frame_history[i].colliders[0].type == ParticlesFrameParams::COLLISION_TYPE_2D_SDF) {
- p_particles->frame_history[i].colliders[0] = frame_params.colliders[0];
- }
- }
- }
-
- uint32_t collision_3d_textures_used = 0;
- for (const Set<RID>::Element *E = p_particles->collisions.front(); E; E = E->next()) {
- ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(E->get());
- if (!pci || !pci->active) {
- continue;
- }
- ParticlesCollision *pc = particles_collision_owner.get_or_null(pci->collision);
- ERR_CONTINUE(!pc);
-
- Transform3D to_collider = pci->transform;
- if (p_particles->use_local_coords) {
- to_collider = to_particles * to_collider;
- }
- Vector3 scale = to_collider.basis.get_scale();
- to_collider.basis.orthonormalize();
-
- if (pc->type <= RS::PARTICLES_COLLISION_TYPE_VECTOR_FIELD_ATTRACT) {
- //attractor
- if (frame_params.attractor_count >= ParticlesFrameParams::MAX_ATTRACTORS) {
- continue;
- }
-
- ParticlesFrameParams::Attractor &attr = frame_params.attractors[frame_params.attractor_count];
-
- store_transform(to_collider, attr.transform);
- attr.strength = pc->attractor_strength;
- attr.attenuation = pc->attractor_attenuation;
- attr.directionality = pc->attractor_directionality;
-
- switch (pc->type) {
- case RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT: {
- attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_SPHERE;
- float radius = pc->radius;
- radius *= (scale.x + scale.y + scale.z) / 3.0;
- attr.extents[0] = radius;
- attr.extents[1] = radius;
- attr.extents[2] = radius;
- } break;
- case RS::PARTICLES_COLLISION_TYPE_BOX_ATTRACT: {
- attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_BOX;
- Vector3 extents = pc->extents * scale;
- attr.extents[0] = extents.x;
- attr.extents[1] = extents.y;
- attr.extents[2] = extents.z;
- } break;
- case RS::PARTICLES_COLLISION_TYPE_VECTOR_FIELD_ATTRACT: {
- if (collision_3d_textures_used >= ParticlesFrameParams::MAX_3D_TEXTURES) {
- continue;
- }
- attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_VECTOR_FIELD;
- Vector3 extents = pc->extents * scale;
- attr.extents[0] = extents.x;
- attr.extents[1] = extents.y;
- attr.extents[2] = extents.z;
- attr.texture_index = collision_3d_textures_used;
-
- collision_3d_textures[collision_3d_textures_used] = pc->field_texture;
- collision_3d_textures_used++;
- } break;
- default: {
- }
- }
-
- frame_params.attractor_count++;
- } else {
- //collider
- if (frame_params.collider_count >= ParticlesFrameParams::MAX_COLLIDERS) {
- continue;
- }
-
- ParticlesFrameParams::Collider &col = frame_params.colliders[frame_params.collider_count];
-
- store_transform(to_collider, col.transform);
- switch (pc->type) {
- case RS::PARTICLES_COLLISION_TYPE_SPHERE_COLLIDE: {
- col.type = ParticlesFrameParams::COLLISION_TYPE_SPHERE;
- float radius = pc->radius;
- radius *= (scale.x + scale.y + scale.z) / 3.0;
- col.extents[0] = radius;
- col.extents[1] = radius;
- col.extents[2] = radius;
- } break;
- case RS::PARTICLES_COLLISION_TYPE_BOX_COLLIDE: {
- col.type = ParticlesFrameParams::COLLISION_TYPE_BOX;
- Vector3 extents = pc->extents * scale;
- col.extents[0] = extents.x;
- col.extents[1] = extents.y;
- col.extents[2] = extents.z;
- } break;
- case RS::PARTICLES_COLLISION_TYPE_SDF_COLLIDE: {
- if (collision_3d_textures_used >= ParticlesFrameParams::MAX_3D_TEXTURES) {
- continue;
- }
- col.type = ParticlesFrameParams::COLLISION_TYPE_SDF;
- Vector3 extents = pc->extents * scale;
- col.extents[0] = extents.x;
- col.extents[1] = extents.y;
- col.extents[2] = extents.z;
- col.texture_index = collision_3d_textures_used;
- col.scale = (scale.x + scale.y + scale.z) * 0.333333333333; //non uniform scale non supported
-
- collision_3d_textures[collision_3d_textures_used] = pc->field_texture;
- collision_3d_textures_used++;
- } break;
- case RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE: {
- if (collision_heightmap_texture != RID()) { //already taken
- continue;
- }
-
- col.type = ParticlesFrameParams::COLLISION_TYPE_HEIGHT_FIELD;
- Vector3 extents = pc->extents * scale;
- col.extents[0] = extents.x;
- col.extents[1] = extents.y;
- col.extents[2] = extents.z;
- collision_heightmap_texture = pc->heightfield_texture;
- } break;
- default: {
- }
- }
-
- frame_params.collider_count++;
- }
- }
-
- bool different = false;
- if (collision_3d_textures_used == p_particles->collision_3d_textures_used) {
- for (int i = 0; i < ParticlesFrameParams::MAX_3D_TEXTURES; i++) {
- if (p_particles->collision_3d_textures[i] != collision_3d_textures[i]) {
- different = true;
- break;
- }
- }
- }
-
- if (collision_heightmap_texture != p_particles->collision_heightmap_texture) {
- different = true;
- }
-
- bool uniform_set_valid = RD::get_singleton()->uniform_set_is_valid(p_particles->collision_textures_uniform_set);
-
- if (different || !uniform_set_valid) {
- if (uniform_set_valid) {
- RD::get_singleton()->free(p_particles->collision_textures_uniform_set);
- }
-
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 0;
- for (uint32_t i = 0; i < ParticlesFrameParams::MAX_3D_TEXTURES; i++) {
- RID rd_tex;
- if (i < collision_3d_textures_used) {
- Texture *t = texture_owner.get_or_null(collision_3d_textures[i]);
- if (t && t->type == Texture::TYPE_3D) {
- rd_tex = t->rd_texture;
- }
- }
-
- if (rd_tex == RID()) {
- rd_tex = default_rd_textures[DEFAULT_RD_TEXTURE_3D_WHITE];
- }
- u.ids.push_back(rd_tex);
- }
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
- u.binding = 1;
- if (collision_heightmap_texture.is_valid()) {
- u.ids.push_back(collision_heightmap_texture);
- } else {
- u.ids.push_back(default_rd_textures[DEFAULT_RD_TEXTURE_BLACK]);
- }
- uniforms.push_back(u);
- }
- p_particles->collision_textures_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 2);
- }
- }
-
- ParticlesShader::PushConstant push_constant;
-
- int process_amount = p_particles->amount;
-
- if (p_particles->trails_enabled && p_particles->trail_bind_poses.size() > 1) {
- process_amount *= p_particles->trail_bind_poses.size();
- }
- push_constant.clear = p_particles->clear;
- push_constant.total_particles = p_particles->amount;
- push_constant.lifetime = p_particles->lifetime;
- push_constant.trail_size = p_particles->trail_params.size();
- push_constant.use_fractional_delta = p_particles->fractional_delta;
- push_constant.sub_emitter_mode = !p_particles->emitting && p_particles->emission_buffer && (p_particles->emission_buffer->particle_count > 0 || p_particles->force_sub_emit);
- push_constant.trail_pass = false;
-
- p_particles->force_sub_emit = false; //reset
-
- Particles *sub_emitter = particles_owner.get_or_null(p_particles->sub_emitter);
-
- if (sub_emitter && sub_emitter->emission_storage_buffer.is_valid()) {
- // print_line("updating subemitter buffer");
- int32_t zero[4] = { 0, sub_emitter->amount, 0, 0 };
- RD::get_singleton()->buffer_update(sub_emitter->emission_storage_buffer, 0, sizeof(uint32_t) * 4, zero);
- push_constant.can_emit = true;
-
- if (sub_emitter->emitting) {
- sub_emitter->emitting = false;
- sub_emitter->clear = true; //will need to clear if it was emitting, sorry
- }
- //make sure the sub emitter processes particles too
- sub_emitter->inactive = false;
- sub_emitter->inactive_time = 0;
-
- sub_emitter->force_sub_emit = true;
-
- } else {
- push_constant.can_emit = false;
- }
-
- if (p_particles->emission_buffer && p_particles->emission_buffer->particle_count) {
- RD::get_singleton()->buffer_update(p_particles->emission_storage_buffer, 0, sizeof(uint32_t) * 4 + sizeof(ParticleEmissionBuffer::Data) * p_particles->emission_buffer->particle_count, p_particles->emission_buffer);
- p_particles->emission_buffer->particle_count = 0;
- }
-
- p_particles->clear = false;
-
- if (p_particles->trail_params.size() > 1) {
- //fill the trail params
- for (uint32_t i = 0; i < p_particles->trail_params.size(); i++) {
- uint32_t src_idx = i * p_particles->frame_history.size() / p_particles->trail_params.size();
- p_particles->trail_params[i] = p_particles->frame_history[src_idx];
- }
- } else {
- p_particles->trail_params[0] = p_particles->frame_history[0];
- }
-
- RD::get_singleton()->buffer_update(p_particles->frame_params_buffer, 0, sizeof(ParticlesFrameParams) * p_particles->trail_params.size(), p_particles->trail_params.ptr());
-
- ParticlesMaterialData *m = (ParticlesMaterialData *)material_get_data(p_particles->process_material, SHADER_TYPE_PARTICLES);
- if (!m) {
- m = (ParticlesMaterialData *)material_get_data(particles_shader.default_material, SHADER_TYPE_PARTICLES);
- }
-
- ERR_FAIL_COND(!m);
-
- p_particles->has_collision_cache = m->shader_data->uses_collision;
-
- //todo should maybe compute all particle systems together?
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, m->shader_data->pipeline);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles_shader.base_uniform_set, 0);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, p_particles->particles_material_uniform_set, 1);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, p_particles->collision_textures_uniform_set, 2);
-
- if (m->uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(m->uniform_set)) {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, m->uniform_set, 3);
- }
-
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(ParticlesShader::PushConstant));
-
- if (p_particles->trails_enabled && p_particles->trail_bind_poses.size() > 1) {
- //trails requires two passes in order to catch particle starts
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount / p_particles->trail_bind_poses.size(), 1, 1);
-
- RD::get_singleton()->compute_list_add_barrier(compute_list);
-
- push_constant.trail_pass = true;
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(ParticlesShader::PushConstant));
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount - p_particles->amount, 1, 1);
- } else {
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount, 1, 1);
- }
-
- RD::get_singleton()->compute_list_end();
-}
-
-void RendererStorageRD::particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND(!particles);
-
- if (particles->draw_order != RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD_Y_TO_VELOCITY) {
- return;
- }
-
- if (particles->particle_buffer.is_null()) {
- return; //particles have not processed yet
- }
-
- bool do_sort = particles->draw_order == RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH;
-
- //copy to sort buffer
- if (do_sort && particles->particles_sort_buffer == RID()) {
- uint32_t size = particles->amount;
- if (size & 1) {
- size++; //make multiple of 16
- }
- size *= sizeof(float) * 2;
- particles->particles_sort_buffer = RD::get_singleton()->storage_buffer_create(size);
-
- {
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(particles->particles_sort_buffer);
- uniforms.push_back(u);
- }
-
- particles->particles_sort_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, ParticlesShader::COPY_MODE_FILL_SORT_BUFFER), 1);
- }
- }
-
- ParticlesShader::CopyPushConstant copy_push_constant;
-
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- int fixed_fps = 60.0;
- if (particles->fixed_fps > 0) {
- fixed_fps = particles->fixed_fps;
- }
-
- copy_push_constant.trail_size = particles->trail_bind_poses.size();
- copy_push_constant.trail_total = particles->frame_history.size();
- copy_push_constant.frame_delta = 1.0 / fixed_fps;
- } else {
- copy_push_constant.trail_size = 1;
- copy_push_constant.trail_total = 1;
- copy_push_constant.frame_delta = 0.0;
- }
-
- copy_push_constant.order_by_lifetime = (particles->draw_order == RS::PARTICLES_DRAW_ORDER_LIFETIME || particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME);
- copy_push_constant.lifetime_split = MIN(particles->amount * particles->phase, particles->amount - 1);
- copy_push_constant.lifetime_reverse = particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME;
-
- copy_push_constant.frame_remainder = particles->interpolate ? particles->frame_remainder : 0.0;
- copy_push_constant.total_particles = particles->amount;
-
- Vector3 axis = -p_axis; // cameras look to z negative
-
- if (particles->use_local_coords) {
- axis = particles->emission_transform.basis.xform_inv(axis).normalized();
- }
-
- copy_push_constant.sort_direction[0] = axis.x;
- copy_push_constant.sort_direction[1] = axis.y;
- copy_push_constant.sort_direction[2] = axis.z;
-
- copy_push_constant.align_up[0] = p_up_axis.x;
- copy_push_constant.align_up[1] = p_up_axis.y;
- copy_push_constant.align_up[2] = p_up_axis.z;
-
- copy_push_constant.align_mode = particles->transform_align;
-
- if (do_sort) {
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[ParticlesShader::COPY_MODE_FILL_SORT_BUFFER]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_sort_uniform_set, 1);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, particles->amount, 1, 1);
-
- RD::get_singleton()->compute_list_end();
- effects->sort_buffer(particles->particles_sort_uniform_set, particles->amount);
- }
-
- copy_push_constant.total_particles *= copy_push_constant.total_particles;
-
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[do_sort ? ParticlesShader::COPY_MODE_FILL_INSTANCES_WITH_SORT_BUFFER : (particles->mode == RS::PARTICLES_MODE_2D ? ParticlesShader::COPY_MODE_FILL_INSTANCES_2D : ParticlesShader::COPY_MODE_FILL_INSTANCES)]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
- if (do_sort) {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_sort_uniform_set, 1);
- }
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
-
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, copy_push_constant.total_particles, 1, 1);
-
- RD::get_singleton()->compute_list_end();
-}
-
-void RendererStorageRD::_particles_update_buffers(Particles *particles) {
- if (particles->amount > 0 && particles->particle_buffer.is_null()) {
- int total_amount = particles->amount;
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- total_amount *= particles->trail_bind_poses.size();
- }
-
- uint32_t xform_size = particles->mode == RS::PARTICLES_MODE_2D ? 2 : 3;
-
- particles->particle_buffer = RD::get_singleton()->storage_buffer_create(sizeof(ParticleData) * total_amount);
-
- particles->particle_instance_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * 4 * (xform_size + 1 + 1) * total_amount);
- //needs to clear it
-
- {
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 1;
- u.ids.push_back(particles->particle_buffer);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 2;
- u.ids.push_back(particles->particle_instance_buffer);
- uniforms.push_back(u);
- }
-
- particles->particles_copy_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, 0), 0);
- }
- }
-}
-void RendererStorageRD::update_particles() {
- while (particle_update_list) {
- //use transform feedback to process particles
-
- Particles *particles = particle_update_list;
-
- //take and remove
- particle_update_list = particles->update_list;
- particles->update_list = nullptr;
- particles->dirty = false;
-
- _particles_update_buffers(particles);
-
- if (particles->restart_request) {
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
- particles->restart_request = false;
- }
-
- if (particles->inactive && !particles->emitting) {
- //go next
- continue;
- }
-
- if (particles->emitting) {
- if (particles->inactive) {
- //restart system from scratch
- particles->prev_ticks = 0;
- particles->phase = 0;
- particles->prev_phase = 0;
- particles->clear = true;
- }
- particles->inactive = false;
- particles->inactive_time = 0;
- } else {
- particles->inactive_time += particles->speed_scale * RendererCompositorRD::singleton->get_frame_delta_time();
- if (particles->inactive_time > particles->lifetime * 1.2) {
- particles->inactive = true;
- continue;
- }
- }
-
-#ifndef _MSC_VER
-#warning Should use display refresh rate for all this
-#endif
-
- float screen_hz = 60;
-
- int fixed_fps = 0;
- if (particles->fixed_fps > 0) {
- fixed_fps = particles->fixed_fps;
- } else if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- fixed_fps = screen_hz;
- }
- {
- //update trails
- int history_size = 1;
- int trail_steps = 1;
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- history_size = MAX(1, int(particles->trail_length * fixed_fps));
- trail_steps = particles->trail_bind_poses.size();
- }
-
- if (uint32_t(history_size) != particles->frame_history.size()) {
- particles->frame_history.resize(history_size);
- memset(particles->frame_history.ptr(), 0, sizeof(ParticlesFrameParams) * history_size);
- }
-
- if (uint32_t(trail_steps) != particles->trail_params.size() || particles->frame_params_buffer.is_null()) {
- particles->trail_params.resize(trail_steps);
- if (particles->frame_params_buffer.is_valid()) {
- RD::get_singleton()->free(particles->frame_params_buffer);
- }
- particles->frame_params_buffer = RD::get_singleton()->storage_buffer_create(sizeof(ParticlesFrameParams) * trail_steps);
- }
-
- if (particles->trail_bind_poses.size() > 1 && particles->trail_bind_pose_buffer.is_null()) {
- particles->trail_bind_pose_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * 16 * particles->trail_bind_poses.size());
- particles->trail_bind_poses_dirty = true;
- }
-
- if (particles->trail_bind_pose_uniform_set.is_null()) {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- if (particles->trail_bind_pose_buffer.is_valid()) {
- u.ids.push_back(particles->trail_bind_pose_buffer);
- } else {
- u.ids.push_back(default_rd_storage_buffer);
- }
- uniforms.push_back(u);
- }
-
- particles->trail_bind_pose_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, 0), 2);
- }
-
- if (particles->trail_bind_pose_buffer.is_valid() && particles->trail_bind_poses_dirty) {
- if (particles_shader.pose_update_buffer.size() < uint32_t(particles->trail_bind_poses.size()) * 16) {
- particles_shader.pose_update_buffer.resize(particles->trail_bind_poses.size() * 16);
- }
-
- for (int i = 0; i < particles->trail_bind_poses.size(); i++) {
- store_transform(particles->trail_bind_poses[i], &particles_shader.pose_update_buffer[i * 16]);
- }
-
- RD::get_singleton()->buffer_update(particles->trail_bind_pose_buffer, 0, particles->trail_bind_poses.size() * 16 * sizeof(float), particles_shader.pose_update_buffer.ptr());
- }
- }
-
- bool zero_time_scale = Engine::get_singleton()->get_time_scale() <= 0.0;
-
- if (particles->clear && particles->pre_process_time > 0.0) {
- double frame_time;
- if (fixed_fps > 0) {
- frame_time = 1.0 / fixed_fps;
- } else {
- frame_time = 1.0 / 30.0;
- }
-
- double todo = particles->pre_process_time;
-
- while (todo >= 0) {
- _particles_process(particles, frame_time);
- todo -= frame_time;
- }
- }
-
- if (fixed_fps > 0) {
- double frame_time;
- double decr;
- if (zero_time_scale) {
- frame_time = 0.0;
- decr = 1.0 / fixed_fps;
- } else {
- frame_time = 1.0 / fixed_fps;
- decr = frame_time;
- }
- double delta = RendererCompositorRD::singleton->get_frame_delta_time();
- if (delta > 0.1) { //avoid recursive stalls if fps goes below 10
- delta = 0.1;
- } else if (delta <= 0.0) { //unlikely but..
- delta = 0.001;
- }
- double todo = particles->frame_remainder + delta;
-
- while (todo >= frame_time) {
- _particles_process(particles, frame_time);
- todo -= decr;
- }
-
- particles->frame_remainder = todo;
-
- } else {
- if (zero_time_scale) {
- _particles_process(particles, 0.0);
- } else {
- _particles_process(particles, RendererCompositorRD::singleton->get_frame_delta_time());
- }
- }
-
- //copy particles to instance buffer
-
- if (particles->draw_order != RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD_Y_TO_VELOCITY) {
- //does not need view dependent operation, do copy here
- ParticlesShader::CopyPushConstant copy_push_constant;
-
- int total_amount = particles->amount;
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- total_amount *= particles->trail_bind_poses.size();
- }
-
- copy_push_constant.total_particles = total_amount;
- copy_push_constant.frame_remainder = particles->interpolate ? particles->frame_remainder : 0.0;
- copy_push_constant.align_mode = particles->transform_align;
- copy_push_constant.align_up[0] = 0;
- copy_push_constant.align_up[1] = 0;
- copy_push_constant.align_up[2] = 0;
-
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- copy_push_constant.trail_size = particles->trail_bind_poses.size();
- copy_push_constant.trail_total = particles->frame_history.size();
- copy_push_constant.frame_delta = 1.0 / fixed_fps;
- } else {
- copy_push_constant.trail_size = 1;
- copy_push_constant.trail_total = 1;
- copy_push_constant.frame_delta = 0.0;
- }
-
- copy_push_constant.order_by_lifetime = (particles->draw_order == RS::PARTICLES_DRAW_ORDER_LIFETIME || particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME);
- copy_push_constant.lifetime_split = MIN(particles->amount * particles->phase, particles->amount - 1);
- copy_push_constant.lifetime_reverse = particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME;
-
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[particles->mode == RS::PARTICLES_MODE_2D ? ParticlesShader::COPY_MODE_FILL_INSTANCES_2D : ParticlesShader::COPY_MODE_FILL_INSTANCES]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, total_amount, 1, 1);
-
- RD::get_singleton()->compute_list_end();
- }
-
- particles->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
- }
-}
-
-bool RendererStorageRD::particles_is_inactive(RID p_particles) const {
- ERR_FAIL_COND_V_MSG(RSG::threaded, false, "This function should never be used with threaded rendering, as it stalls the renderer.");
- const Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, false);
- return !particles->emitting && particles->inactive;
-}
-
-/* SKY SHADER */
-
-void RendererStorageRD::ParticlesShaderData::set_code(const String &p_code) {
- //compile
-
- code = p_code;
- valid = false;
- ubo_size = 0;
- uniforms.clear();
- uses_collision = false;
-
- if (code.is_empty()) {
- return; //just invalid, but no error
- }
-
- ShaderCompilerRD::GeneratedCode gen_code;
- ShaderCompilerRD::IdentifierActions actions;
- actions.entry_point_stages["start"] = ShaderCompilerRD::STAGE_COMPUTE;
- actions.entry_point_stages["process"] = ShaderCompilerRD::STAGE_COMPUTE;
-
- /*
- uses_time = false;
-
- actions.render_mode_flags["use_half_res_pass"] = &uses_half_res;
- actions.render_mode_flags["use_quarter_res_pass"] = &uses_quarter_res;
-
- actions.usage_flag_pointers["TIME"] = &uses_time;
-*/
-
- actions.usage_flag_pointers["COLLIDED"] = &uses_collision;
-
- actions.uniforms = &uniforms;
-
- Error err = base_singleton->particles_shader.compiler.compile(RS::SHADER_PARTICLES, code, &actions, path, gen_code);
- ERR_FAIL_COND_MSG(err != OK, "Shader compilation failed.");
-
- if (version.is_null()) {
- version = base_singleton->particles_shader.shader.version_create();
- }
-
- base_singleton->particles_shader.shader.version_set_compute_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompilerRD::STAGE_COMPUTE], gen_code.defines);
- ERR_FAIL_COND(!base_singleton->particles_shader.shader.version_is_valid(version));
-
- ubo_size = gen_code.uniform_total_size;
- ubo_offsets = gen_code.uniform_offsets;
- texture_uniforms = gen_code.texture_uniforms;
-
- //update pipelines
-
- pipeline = RD::get_singleton()->compute_pipeline_create(base_singleton->particles_shader.shader.version_get_shader(version, 0));
-
- valid = true;
-}
-
-void RendererStorageRD::ParticlesShaderData::set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) {
- if (!p_texture.is_valid()) {
- if (default_texture_params.has(p_name) && default_texture_params[p_name].has(p_index)) {
- default_texture_params[p_name].erase(p_index);
-
- if (default_texture_params[p_name].is_empty()) {
- default_texture_params.erase(p_name);
- }
- }
- } else {
- if (!default_texture_params.has(p_name)) {
- default_texture_params[p_name] = Map<int, RID>();
- }
- default_texture_params[p_name][p_index] = p_texture;
- }
-}
-
-void RendererStorageRD::ParticlesShaderData::get_param_list(List<PropertyInfo> *p_param_list) const {
- Map<int, StringName> order;
-
- for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
- if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_GLOBAL || E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
- continue;
- }
-
- if (E.value.texture_order >= 0) {
- order[E.value.texture_order + 100000] = E.key;
- } else {
- order[E.value.order] = E.key;
- }
- }
-
- for (const KeyValue<int, StringName> &E : order) {
- PropertyInfo pi = ShaderLanguage::uniform_to_property_info(uniforms[E.value]);
- pi.name = E.value;
- p_param_list->push_back(pi);
- }
-}
-
-void RendererStorageRD::ParticlesShaderData::get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const {
- for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
- if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
- continue;
- }
-
- RendererStorage::InstanceShaderParam p;
- p.info = ShaderLanguage::uniform_to_property_info(E.value);
- p.info.name = E.key; //supply name
- p.index = E.value.instance_index;
- p.default_value = ShaderLanguage::constant_value_to_variant(E.value.default_value, E.value.type, E.value.array_size, E.value.hint);
- p_param_list->push_back(p);
- }
-}
-
-bool RendererStorageRD::ParticlesShaderData::is_param_texture(const StringName &p_param) const {
- if (!uniforms.has(p_param)) {
- return false;
- }
-
- return uniforms[p_param].texture_order >= 0;
-}
-
-bool RendererStorageRD::ParticlesShaderData::is_animated() const {
- return false;
-}
-
-bool RendererStorageRD::ParticlesShaderData::casts_shadows() const {
- return false;
-}
-
-Variant RendererStorageRD::ParticlesShaderData::get_default_parameter(const StringName &p_parameter) const {
- if (uniforms.has(p_parameter)) {
- ShaderLanguage::ShaderNode::Uniform uniform = uniforms[p_parameter];
- Vector<ShaderLanguage::ConstantNode::Value> default_value = uniform.default_value;
- return ShaderLanguage::constant_value_to_variant(default_value, uniform.type, uniform.array_size, uniform.hint);
- }
- return Variant();
-}
-
-RS::ShaderNativeSourceCode RendererStorageRD::ParticlesShaderData::get_native_source_code() const {
- return base_singleton->particles_shader.shader.version_get_native_source_code(version);
-}
-
-RendererStorageRD::ParticlesShaderData::ParticlesShaderData() {
- valid = false;
-}
-
-RendererStorageRD::ParticlesShaderData::~ParticlesShaderData() {
- //pipeline variants will clear themselves if shader is gone
- if (version.is_valid()) {
- base_singleton->particles_shader.shader.version_free(version);
- }
-}
-
-RendererStorageRD::ShaderData *RendererStorageRD::_create_particles_shader_func() {
- ParticlesShaderData *shader_data = memnew(ParticlesShaderData);
- return shader_data;
-}
-
-bool RendererStorageRD::ParticlesMaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
- uniform_set_updated = true;
-
- return update_parameters_uniform_set(p_parameters, p_uniform_dirty, p_textures_dirty, shader_data->uniforms, shader_data->ubo_offsets.ptr(), shader_data->texture_uniforms, shader_data->default_texture_params, shader_data->ubo_size, uniform_set, base_singleton->particles_shader.shader.version_get_shader(shader_data->version, 0), 3);
-}
-
-RendererStorageRD::ParticlesMaterialData::~ParticlesMaterialData() {
- free_parameters_uniform_set(uniform_set);
-}
-
-RendererStorageRD::MaterialData *RendererStorageRD::_create_particles_material_func(ParticlesShaderData *p_shader) {
- ParticlesMaterialData *material_data = memnew(ParticlesMaterialData);
- material_data->shader_data = p_shader;
- material_data->last_frame = false;
- //update will happen later anyway so do nothing.
- return material_data;
-}
-////////
-
-/* PARTICLES COLLISION API */
-
-RID RendererStorageRD::particles_collision_allocate() {
- return particles_collision_owner.allocate_rid();
-}
-void RendererStorageRD::particles_collision_initialize(RID p_rid) {
- particles_collision_owner.initialize_rid(p_rid, ParticlesCollision());
-}
-
-RID RendererStorageRD::particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND_V(!particles_collision, RID());
- ERR_FAIL_COND_V(particles_collision->type != RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE, RID());
-
- if (particles_collision->heightfield_texture == RID()) {
- //create
- int resolutions[RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_MAX] = { 256, 512, 1024, 2048, 4096, 8192 };
- Size2i size;
- if (particles_collision->extents.x > particles_collision->extents.z) {
- size.x = resolutions[particles_collision->heightfield_resolution];
- size.y = int32_t(particles_collision->extents.z / particles_collision->extents.x * size.x);
- } else {
- size.y = resolutions[particles_collision->heightfield_resolution];
- size.x = int32_t(particles_collision->extents.x / particles_collision->extents.z * size.y);
- }
-
- RD::TextureFormat tf;
- tf.format = RD::DATA_FORMAT_D32_SFLOAT;
- tf.width = size.x;
- tf.height = size.y;
- tf.texture_type = RD::TEXTURE_TYPE_2D;
- tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
-
- particles_collision->heightfield_texture = RD::get_singleton()->texture_create(tf, RD::TextureView());
-
- Vector<RID> fb_tex;
- fb_tex.push_back(particles_collision->heightfield_texture);
- particles_collision->heightfield_fb = RD::get_singleton()->framebuffer_create(fb_tex);
- particles_collision->heightfield_fb_size = size;
- }
-
- return particles_collision->heightfield_fb;
-}
-
-void RendererStorageRD::particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- if (p_type == particles_collision->type) {
- return;
- }
-
- if (particles_collision->heightfield_texture.is_valid()) {
- RD::get_singleton()->free(particles_collision->heightfield_texture);
- particles_collision->heightfield_texture = RID();
- }
- particles_collision->type = p_type;
- particles_collision->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
- particles_collision->cull_mask = p_cull_mask;
-}
-
-void RendererStorageRD::particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->radius = p_radius;
- particles_collision->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->extents = p_extents;
- particles_collision->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->attractor_strength = p_strength;
-}
-
-void RendererStorageRD::particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->attractor_directionality = p_directionality;
-}
-
-void RendererStorageRD::particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->attractor_attenuation = p_curve;
-}
-
-void RendererStorageRD::particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
-
- particles_collision->field_texture = p_texture;
-}
-
-void RendererStorageRD::particles_collision_height_field_update(RID p_particles_collision) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
- particles_collision->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND(!particles_collision);
- ERR_FAIL_INDEX(p_resolution, RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_MAX);
-
- if (particles_collision->heightfield_resolution == p_resolution) {
- return;
- }
-
- particles_collision->heightfield_resolution = p_resolution;
-
- if (particles_collision->heightfield_texture.is_valid()) {
- RD::get_singleton()->free(particles_collision->heightfield_texture);
- particles_collision->heightfield_texture = RID();
- }
-}
-
-AABB RendererStorageRD::particles_collision_get_aabb(RID p_particles_collision) const {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND_V(!particles_collision, AABB());
-
- switch (particles_collision->type) {
- case RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT:
- case RS::PARTICLES_COLLISION_TYPE_SPHERE_COLLIDE: {
- AABB aabb;
- aabb.position = -Vector3(1, 1, 1) * particles_collision->radius;
- aabb.size = Vector3(2, 2, 2) * particles_collision->radius;
- return aabb;
- }
- default: {
- AABB aabb;
- aabb.position = -particles_collision->extents;
- aabb.size = particles_collision->extents * 2;
- return aabb;
- }
- }
-
- return AABB();
-}
-
-Vector3 RendererStorageRD::particles_collision_get_extents(RID p_particles_collision) const {
- const ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND_V(!particles_collision, Vector3());
- return particles_collision->extents;
-}
-
-bool RendererStorageRD::particles_collision_is_heightfield(RID p_particles_collision) const {
- const ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
- ERR_FAIL_COND_V(!particles_collision, false);
- return particles_collision->type == RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE;
-}
-
-RID RendererStorageRD::particles_collision_instance_create(RID p_collision) {
- ParticlesCollisionInstance pci;
- pci.collision = p_collision;
- return particles_collision_instance_owner.make_rid(pci);
-}
-void RendererStorageRD::particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) {
- ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(p_collision_instance);
- ERR_FAIL_COND(!pci);
- pci->transform = p_transform;
-}
-void RendererStorageRD::particles_collision_instance_set_active(RID p_collision_instance, bool p_active) {
- ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(p_collision_instance);
- ERR_FAIL_COND(!pci);
- pci->active = p_active;
-}
-
/* FOG VOLUMES */
RID RendererStorageRD::fog_volume_allocate() {
@@ -6294,795 +171,7 @@ void RendererStorageRD::visibility_notifier_call(RID p_notifier, bool p_enter, b
}
}
-/* SKELETON API */
-
-RID RendererStorageRD::skeleton_allocate() {
- return skeleton_owner.allocate_rid();
-}
-void RendererStorageRD::skeleton_initialize(RID p_rid) {
- skeleton_owner.initialize_rid(p_rid, Skeleton());
-}
-
-void RendererStorageRD::_skeleton_make_dirty(Skeleton *skeleton) {
- if (!skeleton->dirty) {
- skeleton->dirty = true;
- skeleton->dirty_list = skeleton_dirty_list;
- skeleton_dirty_list = skeleton;
- }
-}
-
-void RendererStorageRD::skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton) {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
- ERR_FAIL_COND(!skeleton);
- ERR_FAIL_COND(p_bones < 0);
-
- if (skeleton->size == p_bones && skeleton->use_2d == p_2d_skeleton) {
- return;
- }
-
- skeleton->size = p_bones;
- skeleton->use_2d = p_2d_skeleton;
- skeleton->uniform_set_3d = RID();
-
- if (skeleton->buffer.is_valid()) {
- RD::get_singleton()->free(skeleton->buffer);
- skeleton->buffer = RID();
- skeleton->data.resize(0);
- skeleton->uniform_set_mi = RID();
- }
-
- if (skeleton->size) {
- skeleton->data.resize(skeleton->size * (skeleton->use_2d ? 8 : 12));
- skeleton->buffer = RD::get_singleton()->storage_buffer_create(skeleton->data.size() * sizeof(float));
- memset(skeleton->data.ptrw(), 0, skeleton->data.size() * sizeof(float));
-
- _skeleton_make_dirty(skeleton);
-
- {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.binding = 0;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(skeleton->buffer);
- uniforms.push_back(u);
- }
- skeleton->uniform_set_mi = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SKELETON);
- }
- }
-
- skeleton->dependency.changed_notify(DEPENDENCY_CHANGED_SKELETON_DATA);
-}
-
-int RendererStorageRD::skeleton_get_bone_count(RID p_skeleton) const {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
- ERR_FAIL_COND_V(!skeleton, 0);
-
- return skeleton->size;
-}
-
-void RendererStorageRD::skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- ERR_FAIL_COND(!skeleton);
- ERR_FAIL_INDEX(p_bone, skeleton->size);
- ERR_FAIL_COND(skeleton->use_2d);
-
- float *dataptr = skeleton->data.ptrw() + p_bone * 12;
-
- dataptr[0] = p_transform.basis.elements[0][0];
- dataptr[1] = p_transform.basis.elements[0][1];
- dataptr[2] = p_transform.basis.elements[0][2];
- dataptr[3] = p_transform.origin.x;
- dataptr[4] = p_transform.basis.elements[1][0];
- dataptr[5] = p_transform.basis.elements[1][1];
- dataptr[6] = p_transform.basis.elements[1][2];
- dataptr[7] = p_transform.origin.y;
- dataptr[8] = p_transform.basis.elements[2][0];
- dataptr[9] = p_transform.basis.elements[2][1];
- dataptr[10] = p_transform.basis.elements[2][2];
- dataptr[11] = p_transform.origin.z;
-
- _skeleton_make_dirty(skeleton);
-}
-
-Transform3D RendererStorageRD::skeleton_bone_get_transform(RID p_skeleton, int p_bone) const {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- ERR_FAIL_COND_V(!skeleton, Transform3D());
- ERR_FAIL_INDEX_V(p_bone, skeleton->size, Transform3D());
- ERR_FAIL_COND_V(skeleton->use_2d, Transform3D());
-
- const float *dataptr = skeleton->data.ptr() + p_bone * 12;
-
- Transform3D t;
-
- t.basis.elements[0][0] = dataptr[0];
- t.basis.elements[0][1] = dataptr[1];
- t.basis.elements[0][2] = dataptr[2];
- t.origin.x = dataptr[3];
- t.basis.elements[1][0] = dataptr[4];
- t.basis.elements[1][1] = dataptr[5];
- t.basis.elements[1][2] = dataptr[6];
- t.origin.y = dataptr[7];
- t.basis.elements[2][0] = dataptr[8];
- t.basis.elements[2][1] = dataptr[9];
- t.basis.elements[2][2] = dataptr[10];
- t.origin.z = dataptr[11];
-
- return t;
-}
-
-void RendererStorageRD::skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- ERR_FAIL_COND(!skeleton);
- ERR_FAIL_INDEX(p_bone, skeleton->size);
- ERR_FAIL_COND(!skeleton->use_2d);
-
- float *dataptr = skeleton->data.ptrw() + p_bone * 8;
-
- dataptr[0] = p_transform.elements[0][0];
- dataptr[1] = p_transform.elements[1][0];
- dataptr[2] = 0;
- dataptr[3] = p_transform.elements[2][0];
- dataptr[4] = p_transform.elements[0][1];
- dataptr[5] = p_transform.elements[1][1];
- dataptr[6] = 0;
- dataptr[7] = p_transform.elements[2][1];
-
- _skeleton_make_dirty(skeleton);
-}
-
-Transform2D RendererStorageRD::skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- ERR_FAIL_COND_V(!skeleton, Transform2D());
- ERR_FAIL_INDEX_V(p_bone, skeleton->size, Transform2D());
- ERR_FAIL_COND_V(!skeleton->use_2d, Transform2D());
-
- const float *dataptr = skeleton->data.ptr() + p_bone * 8;
-
- Transform2D t;
- t.elements[0][0] = dataptr[0];
- t.elements[1][0] = dataptr[1];
- t.elements[2][0] = dataptr[3];
- t.elements[0][1] = dataptr[4];
- t.elements[1][1] = dataptr[5];
- t.elements[2][1] = dataptr[7];
-
- return t;
-}
-
-void RendererStorageRD::skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
-
- ERR_FAIL_COND(!skeleton->use_2d);
-
- skeleton->base_transform_2d = p_base_transform;
-}
-
-void RendererStorageRD::_update_dirty_skeletons() {
- while (skeleton_dirty_list) {
- Skeleton *skeleton = skeleton_dirty_list;
-
- if (skeleton->size) {
- RD::get_singleton()->buffer_update(skeleton->buffer, 0, skeleton->data.size() * sizeof(float), skeleton->data.ptr());
- }
-
- skeleton_dirty_list = skeleton->dirty_list;
-
- skeleton->dependency.changed_notify(DEPENDENCY_CHANGED_SKELETON_BONES);
-
- skeleton->version++;
-
- skeleton->dirty = false;
- skeleton->dirty_list = nullptr;
- }
-
- skeleton_dirty_list = nullptr;
-}
-
-/* LIGHT */
-
-void RendererStorageRD::_light_initialize(RID p_light, RS::LightType p_type) {
- Light light;
- light.type = p_type;
-
- light.param[RS::LIGHT_PARAM_ENERGY] = 1.0;
- light.param[RS::LIGHT_PARAM_INDIRECT_ENERGY] = 1.0;
- light.param[RS::LIGHT_PARAM_SPECULAR] = 0.5;
- light.param[RS::LIGHT_PARAM_RANGE] = 1.0;
- light.param[RS::LIGHT_PARAM_SIZE] = 0.0;
- light.param[RS::LIGHT_PARAM_ATTENUATION] = 1.0;
- light.param[RS::LIGHT_PARAM_SPOT_ANGLE] = 45;
- light.param[RS::LIGHT_PARAM_SPOT_ATTENUATION] = 1.0;
- light.param[RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE] = 0;
- light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET] = 0.1;
- light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET] = 0.3;
- light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET] = 0.6;
- light.param[RS::LIGHT_PARAM_SHADOW_FADE_START] = 0.8;
- light.param[RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS] = 1.0;
- light.param[RS::LIGHT_PARAM_SHADOW_BIAS] = 0.02;
- light.param[RS::LIGHT_PARAM_SHADOW_BLUR] = 0;
- light.param[RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE] = 20.0;
- light.param[RS::LIGHT_PARAM_SHADOW_VOLUMETRIC_FOG_FADE] = 0.1;
- light.param[RS::LIGHT_PARAM_TRANSMITTANCE_BIAS] = 0.05;
-
- light_owner.initialize_rid(p_light, light);
-}
-
-RID RendererStorageRD::directional_light_allocate() {
- return light_owner.allocate_rid();
-}
-void RendererStorageRD::directional_light_initialize(RID p_light) {
- _light_initialize(p_light, RS::LIGHT_DIRECTIONAL);
-}
-
-RID RendererStorageRD::omni_light_allocate() {
- return light_owner.allocate_rid();
-}
-void RendererStorageRD::omni_light_initialize(RID p_light) {
- _light_initialize(p_light, RS::LIGHT_OMNI);
-}
-
-RID RendererStorageRD::spot_light_allocate() {
- return light_owner.allocate_rid();
-}
-void RendererStorageRD::spot_light_initialize(RID p_light) {
- _light_initialize(p_light, RS::LIGHT_SPOT);
-}
-
-void RendererStorageRD::light_set_color(RID p_light, const Color &p_color) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->color = p_color;
-}
-
-void RendererStorageRD::light_set_param(RID p_light, RS::LightParam p_param, float p_value) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
- ERR_FAIL_INDEX(p_param, RS::LIGHT_PARAM_MAX);
-
- if (light->param[p_param] == p_value) {
- return;
- }
-
- switch (p_param) {
- case RS::LIGHT_PARAM_RANGE:
- case RS::LIGHT_PARAM_SPOT_ANGLE:
- case RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE:
- case RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET:
- case RS::LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET:
- case RS::LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET:
- case RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS:
- case RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE:
- case RS::LIGHT_PARAM_SHADOW_BIAS: {
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
- } break;
- case RS::LIGHT_PARAM_SIZE: {
- if ((light->param[p_param] > CMP_EPSILON) != (p_value > CMP_EPSILON)) {
- //changing from no size to size and the opposite
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT_SOFT_SHADOW_AND_PROJECTOR);
- }
- } break;
- default: {
- }
- }
-
- light->param[p_param] = p_value;
-}
-
-void RendererStorageRD::light_set_shadow(RID p_light, bool p_enabled) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
- light->shadow = p_enabled;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_set_shadow_color(RID p_light, const Color &p_color) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
- light->shadow_color = p_color;
-}
-
-void RendererStorageRD::light_set_projector(RID p_light, RID p_texture) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- if (light->projector == p_texture) {
- return;
- }
-
- if (light->type != RS::LIGHT_DIRECTIONAL && light->projector.is_valid()) {
- texture_remove_from_decal_atlas(light->projector, light->type == RS::LIGHT_OMNI);
- }
-
- light->projector = p_texture;
-
- if (light->type != RS::LIGHT_DIRECTIONAL) {
- if (light->projector.is_valid()) {
- texture_add_to_decal_atlas(light->projector, light->type == RS::LIGHT_OMNI);
- }
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT_SOFT_SHADOW_AND_PROJECTOR);
- }
-}
-
-void RendererStorageRD::light_set_negative(RID p_light, bool p_enable) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->negative = p_enable;
-}
-
-void RendererStorageRD::light_set_cull_mask(RID p_light, uint32_t p_mask) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->cull_mask = p_mask;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->reverse_cull = p_enabled;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->bake_mode = p_bake_mode;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->max_sdfgi_cascade = p_cascade;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->omni_shadow_mode = p_mode;
-
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-RS::LightOmniShadowMode RendererStorageRD::light_omni_get_shadow_mode(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_OMNI_SHADOW_CUBE);
-
- return light->omni_shadow_mode;
-}
-
-void RendererStorageRD::light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->directional_shadow_mode = p_mode;
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-void RendererStorageRD::light_directional_set_blend_splits(RID p_light, bool p_enable) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->directional_blend_splits = p_enable;
- light->version++;
- light->dependency.changed_notify(DEPENDENCY_CHANGED_LIGHT);
-}
-
-bool RendererStorageRD::light_directional_get_blend_splits(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, false);
-
- return light->directional_blend_splits;
-}
-
-void RendererStorageRD::light_directional_set_sky_only(RID p_light, bool p_sky_only) {
- Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND(!light);
-
- light->directional_sky_only = p_sky_only;
-}
-
-bool RendererStorageRD::light_directional_is_sky_only(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, false);
-
- return light->directional_sky_only;
-}
-
-RS::LightDirectionalShadowMode RendererStorageRD::light_directional_get_shadow_mode(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL);
-
- return light->directional_shadow_mode;
-}
-
-uint32_t RendererStorageRD::light_get_max_sdfgi_cascade(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0);
-
- return light->max_sdfgi_cascade;
-}
-
-RS::LightBakeMode RendererStorageRD::light_get_bake_mode(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_BAKE_DISABLED);
-
- return light->bake_mode;
-}
-
-uint64_t RendererStorageRD::light_get_version(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0);
-
- return light->version;
-}
-
-AABB RendererStorageRD::light_get_aabb(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, AABB());
-
- switch (light->type) {
- case RS::LIGHT_SPOT: {
- float len = light->param[RS::LIGHT_PARAM_RANGE];
- float size = Math::tan(Math::deg2rad(light->param[RS::LIGHT_PARAM_SPOT_ANGLE])) * len;
- return AABB(Vector3(-size, -size, -len), Vector3(size * 2, size * 2, len));
- };
- case RS::LIGHT_OMNI: {
- float r = light->param[RS::LIGHT_PARAM_RANGE];
- return AABB(-Vector3(r, r, r), Vector3(r, r, r) * 2);
- };
- case RS::LIGHT_DIRECTIONAL: {
- return AABB();
- };
- }
-
- ERR_FAIL_V(AABB());
-}
-
-/* REFLECTION PROBE */
-
-RID RendererStorageRD::reflection_probe_allocate() {
- return reflection_probe_owner.allocate_rid();
-}
-void RendererStorageRD::reflection_probe_initialize(RID p_reflection_probe) {
- reflection_probe_owner.initialize_rid(p_reflection_probe, ReflectionProbe());
-}
-
-void RendererStorageRD::reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->update_mode = p_mode;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_intensity(RID p_probe, float p_intensity) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->intensity = p_intensity;
-}
-
-void RendererStorageRD::reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->ambient_mode = p_mode;
-}
-
-void RendererStorageRD::reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->ambient_color = p_color;
-}
-
-void RendererStorageRD::reflection_probe_set_ambient_energy(RID p_probe, float p_energy) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->ambient_color_energy = p_energy;
-}
-
-void RendererStorageRD::reflection_probe_set_max_distance(RID p_probe, float p_distance) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->max_distance = p_distance;
-
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- if (reflection_probe->extents == p_extents) {
- return;
- }
- reflection_probe->extents = p_extents;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->origin_offset = p_offset;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_as_interior(RID p_probe, bool p_enable) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->interior = p_enable;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->box_projection = p_enable;
-}
-
-void RendererStorageRD::reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->enable_shadows = p_enable;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->cull_mask = p_layers;
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-void RendererStorageRD::reflection_probe_set_resolution(RID p_probe, int p_resolution) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
- ERR_FAIL_COND(p_resolution < 32);
-
- reflection_probe->resolution = p_resolution;
-}
-
-void RendererStorageRD::reflection_probe_set_lod_threshold(RID p_probe, float p_ratio) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND(!reflection_probe);
-
- reflection_probe->lod_threshold = p_ratio;
-
- reflection_probe->dependency.changed_notify(DEPENDENCY_CHANGED_REFLECTION_PROBE);
-}
-
-AABB RendererStorageRD::reflection_probe_get_aabb(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, AABB());
-
- AABB aabb;
- aabb.position = -reflection_probe->extents;
- aabb.size = reflection_probe->extents * 2.0;
-
- return aabb;
-}
-
-RS::ReflectionProbeUpdateMode RendererStorageRD::reflection_probe_get_update_mode(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, RS::REFLECTION_PROBE_UPDATE_ALWAYS);
-
- return reflection_probe->update_mode;
-}
-
-uint32_t RendererStorageRD::reflection_probe_get_cull_mask(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->cull_mask;
-}
-
-Vector3 RendererStorageRD::reflection_probe_get_extents(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, Vector3());
-
- return reflection_probe->extents;
-}
-
-Vector3 RendererStorageRD::reflection_probe_get_origin_offset(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, Vector3());
-
- return reflection_probe->origin_offset;
-}
-
-bool RendererStorageRD::reflection_probe_renders_shadows(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, false);
-
- return reflection_probe->enable_shadows;
-}
-
-float RendererStorageRD::reflection_probe_get_origin_max_distance(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->max_distance;
-}
-
-float RendererStorageRD::reflection_probe_get_lod_threshold(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->lod_threshold;
-}
-
-int RendererStorageRD::reflection_probe_get_resolution(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->resolution;
-}
-
-float RendererStorageRD::reflection_probe_get_intensity(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->intensity;
-}
-
-bool RendererStorageRD::reflection_probe_is_interior(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, false);
-
- return reflection_probe->interior;
-}
-
-bool RendererStorageRD::reflection_probe_is_box_projection(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, false);
-
- return reflection_probe->box_projection;
-}
-
-RS::ReflectionProbeAmbientMode RendererStorageRD::reflection_probe_get_ambient_mode(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, RS::REFLECTION_PROBE_AMBIENT_DISABLED);
- return reflection_probe->ambient_mode;
-}
-
-Color RendererStorageRD::reflection_probe_get_ambient_color(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, Color());
-
- return reflection_probe->ambient_color;
-}
-float RendererStorageRD::reflection_probe_get_ambient_color_energy(RID p_probe) const {
- const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
- ERR_FAIL_COND_V(!reflection_probe, 0);
-
- return reflection_probe->ambient_color_energy;
-}
-
-RID RendererStorageRD::decal_allocate() {
- return decal_owner.allocate_rid();
-}
-void RendererStorageRD::decal_initialize(RID p_decal) {
- decal_owner.initialize_rid(p_decal, Decal());
-}
-
-void RendererStorageRD::decal_set_extents(RID p_decal, const Vector3 &p_extents) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->extents = p_extents;
- decal->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- ERR_FAIL_INDEX(p_type, RS::DECAL_TEXTURE_MAX);
-
- if (decal->textures[p_type] == p_texture) {
- return;
- }
-
- ERR_FAIL_COND(p_texture.is_valid() && !texture_owner.owns(p_texture));
-
- if (decal->textures[p_type].is_valid() && texture_owner.owns(decal->textures[p_type])) {
- texture_remove_from_decal_atlas(decal->textures[p_type]);
- }
-
- decal->textures[p_type] = p_texture;
-
- if (decal->textures[p_type].is_valid()) {
- texture_add_to_decal_atlas(decal->textures[p_type]);
- }
-
- decal->dependency.changed_notify(DEPENDENCY_CHANGED_DECAL);
-}
-
-void RendererStorageRD::decal_set_emission_energy(RID p_decal, float p_energy) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->emission_energy = p_energy;
-}
-
-void RendererStorageRD::decal_set_albedo_mix(RID p_decal, float p_mix) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->albedo_mix = p_mix;
-}
-
-void RendererStorageRD::decal_set_modulate(RID p_decal, const Color &p_modulate) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->modulate = p_modulate;
-}
-
-void RendererStorageRD::decal_set_cull_mask(RID p_decal, uint32_t p_layers) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->cull_mask = p_layers;
- decal->dependency.changed_notify(DEPENDENCY_CHANGED_AABB);
-}
-
-void RendererStorageRD::decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->distance_fade = p_enabled;
- decal->distance_fade_begin = p_begin;
- decal->distance_fade_length = p_length;
-}
-
-void RendererStorageRD::decal_set_fade(RID p_decal, float p_above, float p_below) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->upper_fade = p_above;
- decal->lower_fade = p_below;
-}
-
-void RendererStorageRD::decal_set_normal_fade(RID p_decal, float p_fade) {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND(!decal);
- decal->normal_fade = p_fade;
-}
-
-AABB RendererStorageRD::decal_get_aabb(RID p_decal) const {
- Decal *decal = decal_owner.get_or_null(p_decal);
- ERR_FAIL_COND_V(!decal, AABB());
-
- return AABB(-decal->extents, decal->extents * 2.0);
-}
+/* VOXEL GI */
RID RendererStorageRD::voxel_gi_allocate() {
return voxel_gi_owner.allocate_rid();
@@ -7165,21 +254,21 @@ void RendererStorageRD::voxel_gi_allocate_data(RID p_voxel_gi, const Transform3D
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 1;
- u.ids.push_back(voxel_gi->octree_buffer);
+ u.append_id(voxel_gi->octree_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
u.binding = 2;
- u.ids.push_back(voxel_gi->data_buffer);
+ u.append_id(voxel_gi->data_buffer);
uniforms.push_back(u);
}
{
RD::Uniform u;
u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
u.binding = 3;
- u.ids.push_back(shared_tex);
+ u.append_id(shared_tex);
uniforms.push_back(u);
}
@@ -7412,915 +501,38 @@ RID RendererStorageRD::voxel_gi_get_sdf_texture(RID p_voxel_gi) {
return voxel_gi->sdf_texture;
}
-/* LIGHTMAP API */
-
-RID RendererStorageRD::lightmap_allocate() {
- return lightmap_owner.allocate_rid();
-}
-
-void RendererStorageRD::lightmap_initialize(RID p_lightmap) {
- lightmap_owner.initialize_rid(p_lightmap, Lightmap());
-}
-
-void RendererStorageRD::lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND(!lm);
-
- lightmap_array_version++;
-
- //erase lightmap users
- if (lm->light_texture.is_valid()) {
- Texture *t = texture_owner.get_or_null(lm->light_texture);
- if (t) {
- t->lightmap_users.erase(p_lightmap);
- }
- }
-
- Texture *t = texture_owner.get_or_null(p_light);
- lm->light_texture = p_light;
- lm->uses_spherical_harmonics = p_uses_spherical_haromics;
-
- RID default_2d_array = default_rd_textures[DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE];
- if (!t) {
- if (using_lightmap_array) {
- if (lm->array_index >= 0) {
- lightmap_textures.write[lm->array_index] = default_2d_array;
- lm->array_index = -1;
- }
- }
-
- return;
- }
-
- t->lightmap_users.insert(p_lightmap);
-
- if (using_lightmap_array) {
- if (lm->array_index < 0) {
- //not in array, try to put in array
- for (int i = 0; i < lightmap_textures.size(); i++) {
- if (lightmap_textures[i] == default_2d_array) {
- lm->array_index = i;
- break;
- }
- }
- }
- ERR_FAIL_COND_MSG(lm->array_index < 0, "Maximum amount of lightmaps in use (" + itos(lightmap_textures.size()) + ") has been exceeded, lightmap will nod display properly.");
-
- lightmap_textures.write[lm->array_index] = t->rd_texture;
- }
-}
-
-void RendererStorageRD::lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND(!lm);
- lm->bounds = p_bounds;
-}
-
-void RendererStorageRD::lightmap_set_probe_interior(RID p_lightmap, bool p_interior) {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND(!lm);
- lm->interior = p_interior;
-}
-
-void RendererStorageRD::lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND(!lm);
-
- if (p_points.size()) {
- ERR_FAIL_COND(p_points.size() * 9 != p_point_sh.size());
- ERR_FAIL_COND((p_tetrahedra.size() % 4) != 0);
- ERR_FAIL_COND((p_bsp_tree.size() % 6) != 0);
- }
-
- lm->points = p_points;
- lm->bsp_tree = p_bsp_tree;
- lm->point_sh = p_point_sh;
- lm->tetrahedra = p_tetrahedra;
-}
-
-PackedVector3Array RendererStorageRD::lightmap_get_probe_capture_points(RID p_lightmap) const {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, PackedVector3Array());
-
- return lm->points;
-}
-
-PackedColorArray RendererStorageRD::lightmap_get_probe_capture_sh(RID p_lightmap) const {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, PackedColorArray());
- return lm->point_sh;
-}
-
-PackedInt32Array RendererStorageRD::lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, PackedInt32Array());
- return lm->tetrahedra;
-}
-
-PackedInt32Array RendererStorageRD::lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, PackedInt32Array());
- return lm->bsp_tree;
-}
-
-void RendererStorageRD::lightmap_set_probe_capture_update_speed(float p_speed) {
- lightmap_probe_capture_update_speed = p_speed;
-}
-
-void RendererStorageRD::lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) {
- Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND(!lm);
-
- for (int i = 0; i < 9; i++) {
- r_sh[i] = Color(0, 0, 0, 0);
- }
-
- if (!lm->points.size() || !lm->bsp_tree.size() || !lm->tetrahedra.size()) {
- return;
- }
-
- static_assert(sizeof(Lightmap::BSP) == 24);
-
- const Lightmap::BSP *bsp = (const Lightmap::BSP *)lm->bsp_tree.ptr();
- int32_t node = 0;
- while (node >= 0) {
- if (Plane(bsp[node].plane[0], bsp[node].plane[1], bsp[node].plane[2], bsp[node].plane[3]).is_point_over(p_point)) {
-#ifdef DEBUG_ENABLED
- ERR_FAIL_COND(bsp[node].over >= 0 && bsp[node].over < node);
-#endif
-
- node = bsp[node].over;
- } else {
-#ifdef DEBUG_ENABLED
- ERR_FAIL_COND(bsp[node].under >= 0 && bsp[node].under < node);
-#endif
- node = bsp[node].under;
- }
- }
-
- if (node == Lightmap::BSP::EMPTY_LEAF) {
- return; //nothing could be done
- }
-
- node = ABS(node) - 1;
-
- uint32_t *tetrahedron = (uint32_t *)&lm->tetrahedra[node * 4];
- Vector3 points[4] = { lm->points[tetrahedron[0]], lm->points[tetrahedron[1]], lm->points[tetrahedron[2]], lm->points[tetrahedron[3]] };
- const Color *sh_colors[4]{ &lm->point_sh[tetrahedron[0] * 9], &lm->point_sh[tetrahedron[1] * 9], &lm->point_sh[tetrahedron[2] * 9], &lm->point_sh[tetrahedron[3] * 9] };
- Color barycentric = Geometry3D::tetrahedron_get_barycentric_coords(points[0], points[1], points[2], points[3], p_point);
-
- for (int i = 0; i < 4; i++) {
- float c = CLAMP(barycentric[i], 0.0, 1.0);
- for (int j = 0; j < 9; j++) {
- r_sh[j] += sh_colors[i][j] * c;
- }
- }
-}
-
-bool RendererStorageRD::lightmap_is_interior(RID p_lightmap) const {
- const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, false);
- return lm->interior;
-}
-
-AABB RendererStorageRD::lightmap_get_aabb(RID p_lightmap) const {
- const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, AABB());
- return lm->bounds;
-}
-
-/* RENDER TARGET API */
-
-void RendererStorageRD::_clear_render_target(RenderTarget *rt) {
- //free in reverse dependency order
- if (rt->framebuffer.is_valid()) {
- RD::get_singleton()->free(rt->framebuffer);
- rt->framebuffer_uniform_set = RID(); //chain deleted
- }
-
- if (rt->color.is_valid()) {
- RD::get_singleton()->free(rt->color);
- }
-
- if (rt->backbuffer.is_valid()) {
- RD::get_singleton()->free(rt->backbuffer);
- rt->backbuffer = RID();
- for (int i = 0; i < rt->backbuffer_mipmaps.size(); i++) {
- //just erase copies, since the rest are erased by dependency
- RD::get_singleton()->free(rt->backbuffer_mipmaps[i].mipmap_copy);
- }
- rt->backbuffer_mipmaps.clear();
- rt->backbuffer_uniform_set = RID(); //chain deleted
- }
-
- _render_target_clear_sdf(rt);
-
- rt->framebuffer = RID();
- rt->color = RID();
-}
-
-void RendererStorageRD::_update_render_target(RenderTarget *rt) {
- if (rt->texture.is_null()) {
- //create a placeholder until updated
- rt->texture = texture_allocate();
- texture_2d_placeholder_initialize(rt->texture);
- Texture *tex = texture_owner.get_or_null(rt->texture);
- tex->is_render_target = true;
- }
-
- _clear_render_target(rt);
-
- if (rt->size.width == 0 || rt->size.height == 0) {
- return;
- }
- //until we implement support for HDR monitors (and render target is attached to screen), this is enough.
- rt->color_format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- rt->color_format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- rt->image_format = rt->flags[RENDER_TARGET_TRANSPARENT] ? Image::FORMAT_RGBA8 : Image::FORMAT_RGB8;
-
- RD::TextureFormat rd_format;
- RD::TextureView rd_view;
- { //attempt register
- rd_format.format = rt->color_format;
- rd_format.width = rt->size.width;
- rd_format.height = rt->size.height;
- rd_format.depth = 1;
- rd_format.array_layers = rt->view_count; // for stereo we create two (or more) layers, need to see if we can make fallback work like this too if we don't have multiview
- rd_format.mipmaps = 1;
- if (rd_format.array_layers > 1) { // why are we not using rt->texture_type ??
- rd_format.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
- } else {
- rd_format.texture_type = RD::TEXTURE_TYPE_2D;
- }
- rd_format.samples = RD::TEXTURE_SAMPLES_1;
- rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
- rd_format.shareable_formats.push_back(rt->color_format);
- rd_format.shareable_formats.push_back(rt->color_format_srgb);
- }
-
- rt->color = RD::get_singleton()->texture_create(rd_format, rd_view);
- ERR_FAIL_COND(rt->color.is_null());
-
- Vector<RID> fb_textures;
- fb_textures.push_back(rt->color);
- rt->framebuffer = RD::get_singleton()->framebuffer_create(fb_textures, RenderingDevice::INVALID_ID, rt->view_count);
- if (rt->framebuffer.is_null()) {
- _clear_render_target(rt);
- ERR_FAIL_COND(rt->framebuffer.is_null());
- }
-
- { //update texture
-
- Texture *tex = texture_owner.get_or_null(rt->texture);
-
- //free existing textures
- if (RD::get_singleton()->texture_is_valid(tex->rd_texture)) {
- RD::get_singleton()->free(tex->rd_texture);
- }
- if (RD::get_singleton()->texture_is_valid(tex->rd_texture_srgb)) {
- RD::get_singleton()->free(tex->rd_texture_srgb);
- }
-
- tex->rd_texture = RID();
- tex->rd_texture_srgb = RID();
-
- //create shared textures to the color buffer,
- //so transparent can be supported
- RD::TextureView view;
- view.format_override = rt->color_format;
- if (!rt->flags[RENDER_TARGET_TRANSPARENT]) {
- view.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
- }
- tex->rd_texture = RD::get_singleton()->texture_create_shared(view, rt->color);
- if (rt->color_format_srgb != RD::DATA_FORMAT_MAX) {
- view.format_override = rt->color_format_srgb;
- tex->rd_texture_srgb = RD::get_singleton()->texture_create_shared(view, rt->color);
- }
- tex->rd_view = view;
- tex->width = rt->size.width;
- tex->height = rt->size.height;
- tex->width_2d = rt->size.width;
- tex->height_2d = rt->size.height;
- tex->rd_format = rt->color_format;
- tex->rd_format_srgb = rt->color_format_srgb;
- tex->format = rt->image_format;
-
- Vector<RID> proxies = tex->proxies; //make a copy, since update may change it
- for (int i = 0; i < proxies.size(); i++) {
- texture_proxy_update(proxies[i], rt->texture);
- }
- }
-}
-
-void RendererStorageRD::_create_render_target_backbuffer(RenderTarget *rt) {
- ERR_FAIL_COND(rt->backbuffer.is_valid());
-
- uint32_t mipmaps_required = Image::get_image_required_mipmaps(rt->size.width, rt->size.height, Image::FORMAT_RGBA8);
- RD::TextureFormat tf;
- tf.format = rt->color_format;
- tf.width = rt->size.width;
- tf.height = rt->size.height;
- tf.texture_type = RD::TEXTURE_TYPE_2D;
- tf.usage_bits = RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_STORAGE_BIT | RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_COPY_TO_BIT;
- tf.mipmaps = mipmaps_required;
-
- rt->backbuffer = RD::get_singleton()->texture_create(tf, RD::TextureView());
- rt->backbuffer_mipmap0 = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rt->backbuffer, 0, 0);
-
- {
- Vector<RID> fb_tex;
- fb_tex.push_back(rt->backbuffer_mipmap0);
- rt->backbuffer_fb = RD::get_singleton()->framebuffer_create(fb_tex);
- }
-
- if (rt->framebuffer_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(rt->framebuffer_uniform_set)) {
- //the new one will require the backbuffer.
- RD::get_singleton()->free(rt->framebuffer_uniform_set);
- rt->framebuffer_uniform_set = RID();
- }
- //create mipmaps
- for (uint32_t i = 1; i < mipmaps_required; i++) {
- RenderTarget::BackbufferMipmap mm;
- {
- mm.mipmap = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rt->backbuffer, 0, i);
- }
-
- {
- Size2 mm_size = Image::get_image_mipmap_size(tf.width, tf.height, Image::FORMAT_RGBA8, i);
-
- RD::TextureFormat mmtf = tf;
- mmtf.width = mm_size.width;
- mmtf.height = mm_size.height;
- mmtf.mipmaps = 1;
-
- mm.mipmap_copy = RD::get_singleton()->texture_create(mmtf, RD::TextureView());
- }
-
- rt->backbuffer_mipmaps.push_back(mm);
- }
-}
-
-RID RendererStorageRD::render_target_create() {
- RenderTarget render_target;
-
- render_target.was_used = false;
- render_target.clear_requested = false;
-
- for (int i = 0; i < RENDER_TARGET_FLAG_MAX; i++) {
- render_target.flags[i] = false;
- }
- _update_render_target(&render_target);
- return render_target_owner.make_rid(render_target);
-}
-
-void RendererStorageRD::render_target_set_position(RID p_render_target, int p_x, int p_y) {
- //unused for this render target
-}
-
-void RendererStorageRD::render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (rt->size.x != p_width || rt->size.y != p_height || rt->view_count != p_view_count) {
- rt->size.x = p_width;
- rt->size.y = p_height;
- rt->view_count = p_view_count;
- _update_render_target(rt);
- }
-}
-
-RID RendererStorageRD::render_target_get_texture(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
-
- return rt->texture;
-}
-
-void RendererStorageRD::render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) {
-}
-
-void RendererStorageRD::render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->flags[p_flag] = p_value;
- _update_render_target(rt);
-}
-
-bool RendererStorageRD::render_target_was_used(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, false);
- return rt->was_used;
-}
-
-void RendererStorageRD::render_target_set_as_unused(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->was_used = false;
-}
-
-Size2 RendererStorageRD::render_target_get_size(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, Size2());
-
- return rt->size;
-}
-
-RID RendererStorageRD::render_target_get_rd_framebuffer(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
-
- return rt->framebuffer;
-}
-
-RID RendererStorageRD::render_target_get_rd_texture(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
-
- return rt->color;
-}
-
-RID RendererStorageRD::render_target_get_rd_backbuffer(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
- return rt->backbuffer;
-}
-
-RID RendererStorageRD::render_target_get_rd_backbuffer_framebuffer(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
-
- if (!rt->backbuffer.is_valid()) {
- _create_render_target_backbuffer(rt);
- }
-
- return rt->backbuffer_fb;
-}
-
-void RendererStorageRD::render_target_request_clear(RID p_render_target, const Color &p_clear_color) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->clear_requested = true;
- rt->clear_color = p_clear_color;
-}
-
-bool RendererStorageRD::render_target_is_clear_requested(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, false);
- return rt->clear_requested;
-}
-
-Color RendererStorageRD::render_target_get_clear_request_color(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, Color());
- return rt->clear_color;
-}
-
-void RendererStorageRD::render_target_disable_clear_request(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->clear_requested = false;
-}
-
-void RendererStorageRD::render_target_do_clear_request(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (!rt->clear_requested) {
- return;
- }
- Vector<Color> clear_colors;
- clear_colors.push_back(rt->clear_color);
- RD::get_singleton()->draw_list_begin(rt->framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_DISCARD, clear_colors);
- RD::get_singleton()->draw_list_end();
- rt->clear_requested = false;
-}
-
-void RendererStorageRD::render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (rt->sdf_oversize == p_size && rt->sdf_scale == p_scale) {
- return;
- }
-
- rt->sdf_oversize = p_size;
- rt->sdf_scale = p_scale;
-
- _render_target_clear_sdf(rt);
-}
-
-Rect2i RendererStorageRD::_render_target_get_sdf_rect(const RenderTarget *rt) const {
- Size2i margin;
- int scale;
- switch (rt->sdf_oversize) {
- case RS::VIEWPORT_SDF_OVERSIZE_100_PERCENT: {
- scale = 100;
- } break;
- case RS::VIEWPORT_SDF_OVERSIZE_120_PERCENT: {
- scale = 120;
- } break;
- case RS::VIEWPORT_SDF_OVERSIZE_150_PERCENT: {
- scale = 150;
- } break;
- case RS::VIEWPORT_SDF_OVERSIZE_200_PERCENT: {
- scale = 200;
- } break;
- default: {
- }
- }
-
- margin = (rt->size * scale / 100) - rt->size;
-
- Rect2i r(Vector2i(), rt->size);
- r.position -= margin;
- r.size += margin * 2;
-
- return r;
-}
-
-Rect2i RendererStorageRD::render_target_get_sdf_rect(RID p_render_target) const {
- const RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, Rect2i());
-
- return _render_target_get_sdf_rect(rt);
-}
-
-void RendererStorageRD::render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
-
- rt->sdf_enabled = p_enabled;
-}
-
-bool RendererStorageRD::render_target_is_sdf_enabled(RID p_render_target) const {
- const RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, false);
-
- return rt->sdf_enabled;
-}
-
-RID RendererStorageRD::render_target_get_sdf_texture(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
- if (rt->sdf_buffer_read.is_null()) {
- // no texture, create a dummy one for the 2D uniform set
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_2D;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- memset(pv.ptrw(), 0, 16 * 4);
- Vector<Vector<uint8_t>> vpv;
-
- rt->sdf_buffer_read = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
-
- return rt->sdf_buffer_read;
-}
-
-void RendererStorageRD::_render_target_allocate_sdf(RenderTarget *rt) {
- ERR_FAIL_COND(rt->sdf_buffer_write_fb.is_valid());
- if (rt->sdf_buffer_read.is_valid()) {
- RD::get_singleton()->free(rt->sdf_buffer_read);
- rt->sdf_buffer_read = RID();
- }
-
- Size2i size = _render_target_get_sdf_rect(rt).size;
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8_UNORM;
- tformat.width = size.width;
- tformat.height = size.height;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_2D;
-
- rt->sdf_buffer_write = RD::get_singleton()->texture_create(tformat, RD::TextureView());
-
- {
- Vector<RID> write_fb;
- write_fb.push_back(rt->sdf_buffer_write);
- rt->sdf_buffer_write_fb = RD::get_singleton()->framebuffer_create(write_fb);
- }
-
- int scale;
- switch (rt->sdf_scale) {
- case RS::VIEWPORT_SDF_SCALE_100_PERCENT: {
- scale = 100;
- } break;
- case RS::VIEWPORT_SDF_SCALE_50_PERCENT: {
- scale = 50;
- } break;
- case RS::VIEWPORT_SDF_SCALE_25_PERCENT: {
- scale = 25;
- } break;
- default: {
- scale = 100;
- } break;
- }
-
- rt->process_size = size * scale / 100;
- rt->process_size.x = MAX(rt->process_size.x, 1);
- rt->process_size.y = MAX(rt->process_size.y, 1);
-
- tformat.format = RD::DATA_FORMAT_R16G16_SINT;
- tformat.width = rt->process_size.width;
- tformat.height = rt->process_size.height;
- tformat.usage_bits = RD::TEXTURE_USAGE_STORAGE_BIT;
-
- rt->sdf_buffer_process[0] = RD::get_singleton()->texture_create(tformat, RD::TextureView());
- rt->sdf_buffer_process[1] = RD::get_singleton()->texture_create(tformat, RD::TextureView());
-
- tformat.format = RD::DATA_FORMAT_R16_SNORM;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
-
- rt->sdf_buffer_read = RD::get_singleton()->texture_create(tformat, RD::TextureView());
-
- {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 1;
- u.ids.push_back(rt->sdf_buffer_write);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 2;
- u.ids.push_back(rt->sdf_buffer_read);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 3;
- u.ids.push_back(rt->sdf_buffer_process[0]);
- uniforms.push_back(u);
- }
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
- u.binding = 4;
- u.ids.push_back(rt->sdf_buffer_process[1]);
- uniforms.push_back(u);
- }
-
- rt->sdf_buffer_process_uniform_sets[0] = RD::get_singleton()->uniform_set_create(uniforms, rt_sdf.shader.version_get_shader(rt_sdf.shader_version, 0), 0);
- SWAP(uniforms.write[2].ids.write[0], uniforms.write[3].ids.write[0]);
- rt->sdf_buffer_process_uniform_sets[1] = RD::get_singleton()->uniform_set_create(uniforms, rt_sdf.shader.version_get_shader(rt_sdf.shader_version, 0), 0);
- }
-}
-
-void RendererStorageRD::_render_target_clear_sdf(RenderTarget *rt) {
- if (rt->sdf_buffer_read.is_valid()) {
- RD::get_singleton()->free(rt->sdf_buffer_read);
- rt->sdf_buffer_read = RID();
- }
- if (rt->sdf_buffer_write_fb.is_valid()) {
- RD::get_singleton()->free(rt->sdf_buffer_write);
- RD::get_singleton()->free(rt->sdf_buffer_process[0]);
- RD::get_singleton()->free(rt->sdf_buffer_process[1]);
- rt->sdf_buffer_write = RID();
- rt->sdf_buffer_write_fb = RID();
- rt->sdf_buffer_process[0] = RID();
- rt->sdf_buffer_process[1] = RID();
- rt->sdf_buffer_process_uniform_sets[0] = RID();
- rt->sdf_buffer_process_uniform_sets[1] = RID();
- }
-}
-
-RID RendererStorageRD::render_target_get_sdf_framebuffer(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
-
- if (rt->sdf_buffer_write_fb.is_null()) {
- _render_target_allocate_sdf(rt);
- }
-
- return rt->sdf_buffer_write_fb;
-}
-void RendererStorageRD::render_target_sdf_process(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- ERR_FAIL_COND(rt->sdf_buffer_write_fb.is_null());
-
- RenderTargetSDF::PushConstant push_constant;
-
- Rect2i r = _render_target_get_sdf_rect(rt);
-
- push_constant.size[0] = r.size.width;
- push_constant.size[1] = r.size.height;
- push_constant.stride = 0;
- push_constant.shift = 0;
- push_constant.base_size[0] = r.size.width;
- push_constant.base_size[1] = r.size.height;
-
- bool shrink = false;
-
- switch (rt->sdf_scale) {
- case RS::VIEWPORT_SDF_SCALE_50_PERCENT: {
- push_constant.size[0] >>= 1;
- push_constant.size[1] >>= 1;
- push_constant.shift = 1;
- shrink = true;
- } break;
- case RS::VIEWPORT_SDF_SCALE_25_PERCENT: {
- push_constant.size[0] >>= 2;
- push_constant.size[1] >>= 2;
- push_constant.shift = 2;
- shrink = true;
- } break;
- default: {
- };
- }
-
- RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
-
- /* Load */
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[shrink ? RenderTargetSDF::SHADER_LOAD_SHRINK : RenderTargetSDF::SHADER_LOAD]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[1], 0); //fill [0]
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
-
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
-
- /* Process */
-
- int stride = nearest_power_of_2_templated(MAX(push_constant.size[0], push_constant.size[1]) / 2);
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[RenderTargetSDF::SHADER_PROCESS]);
-
- RD::get_singleton()->compute_list_add_barrier(compute_list);
- bool swap = false;
-
- //jumpflood
- while (stride > 0) {
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[swap ? 1 : 0], 0);
- push_constant.stride = stride;
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
- stride /= 2;
- swap = !swap;
- RD::get_singleton()->compute_list_add_barrier(compute_list);
- }
-
- /* Store */
-
- RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[shrink ? RenderTargetSDF::SHADER_STORE_SHRINK : RenderTargetSDF::SHADER_STORE]);
- RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[swap ? 1 : 0], 0);
- RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
- RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
-
- RD::get_singleton()->compute_list_end();
-}
-
-void RendererStorageRD::render_target_copy_to_back_buffer(RID p_render_target, const Rect2i &p_region, bool p_gen_mipmaps) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (!rt->backbuffer.is_valid()) {
- _create_render_target_backbuffer(rt);
- }
-
- Rect2i region;
- if (p_region == Rect2i()) {
- region.size = rt->size;
- } else {
- region = Rect2i(Size2i(), rt->size).intersection(p_region);
- if (region.size == Size2i()) {
- return; //nothing to do
- }
- }
-
- //single texture copy for backbuffer
- //RD::get_singleton()->texture_copy(rt->color, rt->backbuffer_mipmap0, Vector3(region.position.x, region.position.y, 0), Vector3(region.position.x, region.position.y, 0), Vector3(region.size.x, region.size.y, 1), 0, 0, 0, 0, true);
- effects->copy_to_rect(rt->color, rt->backbuffer_mipmap0, region, false, false, false, true, true);
-
- if (!p_gen_mipmaps) {
- return;
- }
-
- //then mipmap blur
- RID prev_texture = rt->color; //use color, not backbuffer, as bb has mipmaps.
-
- for (int i = 0; i < rt->backbuffer_mipmaps.size(); i++) {
- region.position.x >>= 1;
- region.position.y >>= 1;
- region.size.x = MAX(1, region.size.x >> 1);
- region.size.y = MAX(1, region.size.y >> 1);
-
- const RenderTarget::BackbufferMipmap &mm = rt->backbuffer_mipmaps[i];
- effects->gaussian_blur(prev_texture, mm.mipmap, mm.mipmap_copy, region, true);
- prev_texture = mm.mipmap;
- }
-}
-
-void RendererStorageRD::render_target_clear_back_buffer(RID p_render_target, const Rect2i &p_region, const Color &p_color) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (!rt->backbuffer.is_valid()) {
- _create_render_target_backbuffer(rt);
- }
-
- Rect2i region;
- if (p_region == Rect2i()) {
- region.size = rt->size;
- } else {
- region = Rect2i(Size2i(), rt->size).intersection(p_region);
- if (region.size == Size2i()) {
- return; //nothing to do
- }
- }
-
- //single texture copy for backbuffer
- effects->set_color(rt->backbuffer_mipmap0, p_color, region, true);
-}
-
-void RendererStorageRD::render_target_gen_back_buffer_mipmaps(RID p_render_target, const Rect2i &p_region) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- if (!rt->backbuffer.is_valid()) {
- _create_render_target_backbuffer(rt);
- }
-
- Rect2i region;
- if (p_region == Rect2i()) {
- region.size = rt->size;
- } else {
- region = Rect2i(Size2i(), rt->size).intersection(p_region);
- if (region.size == Size2i()) {
- return; //nothing to do
- }
- }
-
- //then mipmap blur
- RID prev_texture = rt->backbuffer_mipmap0;
-
- for (int i = 0; i < rt->backbuffer_mipmaps.size(); i++) {
- region.position.x >>= 1;
- region.position.y >>= 1;
- region.size.x = MAX(1, region.size.x >> 1);
- region.size.y = MAX(1, region.size.y >> 1);
-
- const RenderTarget::BackbufferMipmap &mm = rt->backbuffer_mipmaps[i];
- effects->gaussian_blur(prev_texture, mm.mipmap, mm.mipmap_copy, region, true);
- prev_texture = mm.mipmap;
- }
-}
-
-RID RendererStorageRD::render_target_get_framebuffer_uniform_set(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
- return rt->framebuffer_uniform_set;
-}
-RID RendererStorageRD::render_target_get_backbuffer_uniform_set(RID p_render_target) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND_V(!rt, RID());
- return rt->backbuffer_uniform_set;
-}
-
-void RendererStorageRD::render_target_set_framebuffer_uniform_set(RID p_render_target, RID p_uniform_set) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->framebuffer_uniform_set = p_uniform_set;
-}
-void RendererStorageRD::render_target_set_backbuffer_uniform_set(RID p_render_target, RID p_uniform_set) {
- RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
- ERR_FAIL_COND(!rt);
- rt->backbuffer_uniform_set = p_uniform_set;
-}
+/* misc */
void RendererStorageRD::base_update_dependency(RID p_base, DependencyTracker *p_instance) {
- if (mesh_owner.owns(p_base)) {
- Mesh *mesh = mesh_owner.get_or_null(p_base);
+ if (RendererRD::MeshStorage::get_singleton()->owns_mesh(p_base)) {
+ RendererRD::Mesh *mesh = RendererRD::MeshStorage::get_singleton()->get_mesh(p_base);
p_instance->update_dependency(&mesh->dependency);
- } else if (multimesh_owner.owns(p_base)) {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_base);
+ } else if (RendererRD::MeshStorage::get_singleton()->owns_multimesh(p_base)) {
+ RendererRD::MultiMesh *multimesh = RendererRD::MeshStorage::get_singleton()->get_multimesh(p_base);
p_instance->update_dependency(&multimesh->dependency);
if (multimesh->mesh.is_valid()) {
base_update_dependency(multimesh->mesh, p_instance);
}
- } else if (reflection_probe_owner.owns(p_base)) {
- ReflectionProbe *rp = reflection_probe_owner.get_or_null(p_base);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_reflection_probe(p_base)) {
+ RendererRD::ReflectionProbe *rp = RendererRD::LightStorage::get_singleton()->get_reflection_probe(p_base);
p_instance->update_dependency(&rp->dependency);
- } else if (decal_owner.owns(p_base)) {
- Decal *decal = decal_owner.get_or_null(p_base);
+ } else if (RendererRD::TextureStorage::get_singleton()->owns_decal(p_base)) {
+ RendererRD::Decal *decal = RendererRD::TextureStorage::get_singleton()->get_decal(p_base);
p_instance->update_dependency(&decal->dependency);
} else if (voxel_gi_owner.owns(p_base)) {
VoxelGI *gip = voxel_gi_owner.get_or_null(p_base);
p_instance->update_dependency(&gip->dependency);
- } else if (lightmap_owner.owns(p_base)) {
- Lightmap *lm = lightmap_owner.get_or_null(p_base);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_lightmap(p_base)) {
+ RendererRD::Lightmap *lm = RendererRD::LightStorage::get_singleton()->get_lightmap(p_base);
p_instance->update_dependency(&lm->dependency);
- } else if (light_owner.owns(p_base)) {
- Light *l = light_owner.get_or_null(p_base);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_light(p_base)) {
+ RendererRD::Light *l = RendererRD::LightStorage::get_singleton()->get_light(p_base);
p_instance->update_dependency(&l->dependency);
- } else if (particles_owner.owns(p_base)) {
- Particles *p = particles_owner.get_or_null(p_base);
+ } else if (RendererRD::ParticlesStorage::get_singleton()->owns_particles(p_base)) {
+ RendererRD::Particles *p = RendererRD::ParticlesStorage::get_singleton()->get_particles(p_base);
p_instance->update_dependency(&p->dependency);
- } else if (particles_collision_owner.owns(p_base)) {
- ParticlesCollision *pc = particles_collision_owner.get_or_null(p_base);
+ } else if (RendererRD::ParticlesStorage::get_singleton()->owns_particles_collision(p_base)) {
+ RendererRD::ParticlesCollision *pc = RendererRD::ParticlesStorage::get_singleton()->get_particles_collision(p_base);
p_instance->update_dependency(&pc->dependency);
} else if (fog_volume_owner.owns(p_base)) {
FogVolume *fv = fog_volume_owner.get_or_null(p_base);
@@ -8331,39 +543,32 @@ void RendererStorageRD::base_update_dependency(RID p_base, DependencyTracker *p_
}
}
-void RendererStorageRD::skeleton_update_dependency(RID p_skeleton, DependencyTracker *p_instance) {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
- ERR_FAIL_COND(!skeleton);
-
- p_instance->update_dependency(&skeleton->dependency);
-}
-
RS::InstanceType RendererStorageRD::get_base_type(RID p_rid) const {
- if (mesh_owner.owns(p_rid)) {
+ if (RendererRD::MeshStorage::get_singleton()->owns_mesh(p_rid)) {
return RS::INSTANCE_MESH;
}
- if (multimesh_owner.owns(p_rid)) {
+ if (RendererRD::MeshStorage::get_singleton()->owns_multimesh(p_rid)) {
return RS::INSTANCE_MULTIMESH;
}
- if (reflection_probe_owner.owns(p_rid)) {
+ if (RendererRD::LightStorage::get_singleton()->owns_reflection_probe(p_rid)) {
return RS::INSTANCE_REFLECTION_PROBE;
}
- if (decal_owner.owns(p_rid)) {
+ if (RendererRD::TextureStorage::get_singleton()->owns_decal(p_rid)) {
return RS::INSTANCE_DECAL;
}
if (voxel_gi_owner.owns(p_rid)) {
return RS::INSTANCE_VOXEL_GI;
}
- if (light_owner.owns(p_rid)) {
+ if (RendererRD::LightStorage::get_singleton()->owns_light(p_rid)) {
return RS::INSTANCE_LIGHT;
}
- if (lightmap_owner.owns(p_rid)) {
+ if (RendererRD::LightStorage::get_singleton()->owns_lightmap(p_rid)) {
return RS::INSTANCE_LIGHTMAP;
}
- if (particles_owner.owns(p_rid)) {
+ if (RendererRD::ParticlesStorage::get_singleton()->owns_particles(p_rid)) {
return RS::INSTANCE_PARTICLES;
}
- if (particles_collision_owner.owns(p_rid)) {
+ if (RendererRD::ParticlesStorage::get_singleton()->owns_particles_collision(p_rid)) {
return RS::INSTANCE_PARTICLES_COLLISION;
}
if (fog_volume_owner.owns(p_rid)) {
@@ -8376,907 +581,12 @@ RS::InstanceType RendererStorageRD::get_base_type(RID p_rid) const {
return RS::INSTANCE_NONE;
}
-void RendererStorageRD::texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp) {
- if (!decal_atlas.textures.has(p_texture)) {
- DecalAtlas::Texture t;
- t.users = 1;
- t.panorama_to_dp_users = p_panorama_to_dp ? 1 : 0;
- decal_atlas.textures[p_texture] = t;
- decal_atlas.dirty = true;
- } else {
- DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
- t->users++;
- if (p_panorama_to_dp) {
- t->panorama_to_dp_users++;
- }
- }
-}
-
-void RendererStorageRD::texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp) {
- DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
- ERR_FAIL_COND(!t);
- t->users--;
- if (p_panorama_to_dp) {
- ERR_FAIL_COND(t->panorama_to_dp_users == 0);
- t->panorama_to_dp_users--;
- }
- if (t->users == 0) {
- decal_atlas.textures.erase(p_texture);
- //do not mark it dirty, there is no need to since it remains working
- }
-}
-
-RID RendererStorageRD::decal_atlas_get_texture() const {
- return decal_atlas.texture;
-}
-
-RID RendererStorageRD::decal_atlas_get_texture_srgb() const {
- return decal_atlas.texture_srgb;
-}
-
-void RendererStorageRD::_update_decal_atlas() {
- if (!decal_atlas.dirty) {
- return; //nothing to do
- }
-
- decal_atlas.dirty = false;
-
- if (decal_atlas.texture.is_valid()) {
- RD::get_singleton()->free(decal_atlas.texture);
- decal_atlas.texture = RID();
- decal_atlas.texture_srgb = RID();
- decal_atlas.texture_mipmaps.clear();
- }
-
- int border = 1 << decal_atlas.mipmaps;
-
- if (decal_atlas.textures.size()) {
- //generate atlas
- Vector<DecalAtlas::SortItem> itemsv;
- itemsv.resize(decal_atlas.textures.size());
- int base_size = 8;
- const RID *K = nullptr;
-
- int idx = 0;
- while ((K = decal_atlas.textures.next(K))) {
- DecalAtlas::SortItem &si = itemsv.write[idx];
-
- Texture *src_tex = texture_owner.get_or_null(*K);
-
- si.size.width = (src_tex->width / border) + 1;
- si.size.height = (src_tex->height / border) + 1;
- si.pixel_size = Size2i(src_tex->width, src_tex->height);
-
- if (base_size < si.size.width) {
- base_size = nearest_power_of_2_templated(si.size.width);
- }
-
- si.texture = *K;
- idx++;
- }
-
- //sort items by size
- itemsv.sort();
-
- //attempt to create atlas
- int item_count = itemsv.size();
- DecalAtlas::SortItem *items = itemsv.ptrw();
-
- int atlas_height = 0;
-
- while (true) {
- Vector<int> v_offsetsv;
- v_offsetsv.resize(base_size);
-
- int *v_offsets = v_offsetsv.ptrw();
- memset(v_offsets, 0, sizeof(int) * base_size);
-
- int max_height = 0;
-
- for (int i = 0; i < item_count; i++) {
- //best fit
- DecalAtlas::SortItem &si = items[i];
- int best_idx = -1;
- int best_height = 0x7FFFFFFF;
- for (int j = 0; j <= base_size - si.size.width; j++) {
- int height = 0;
- for (int k = 0; k < si.size.width; k++) {
- int h = v_offsets[k + j];
- if (h > height) {
- height = h;
- if (height > best_height) {
- break; //already bad
- }
- }
- }
-
- if (height < best_height) {
- best_height = height;
- best_idx = j;
- }
- }
-
- //update
- for (int k = 0; k < si.size.width; k++) {
- v_offsets[k + best_idx] = best_height + si.size.height;
- }
-
- si.pos.x = best_idx;
- si.pos.y = best_height;
-
- if (si.pos.y + si.size.height > max_height) {
- max_height = si.pos.y + si.size.height;
- }
- }
-
- if (max_height <= base_size * 2) {
- atlas_height = max_height;
- break; //good ratio, break;
- }
-
- base_size *= 2;
- }
-
- decal_atlas.size.width = base_size * border;
- decal_atlas.size.height = nearest_power_of_2_templated(atlas_height * border);
-
- for (int i = 0; i < item_count; i++) {
- DecalAtlas::Texture *t = decal_atlas.textures.getptr(items[i].texture);
- t->uv_rect.position = items[i].pos * border + Vector2i(border / 2, border / 2);
- t->uv_rect.size = items[i].pixel_size;
-
- t->uv_rect.position /= Size2(decal_atlas.size);
- t->uv_rect.size /= Size2(decal_atlas.size);
- }
- } else {
- //use border as size, so it at least has enough mipmaps
- decal_atlas.size.width = border;
- decal_atlas.size.height = border;
- }
-
- //blit textures
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = decal_atlas.size.width;
- tformat.height = decal_atlas.size.height;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_TO_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_2D;
- tformat.mipmaps = decal_atlas.mipmaps;
- tformat.shareable_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_UNORM);
- tformat.shareable_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_SRGB);
-
- decal_atlas.texture = RD::get_singleton()->texture_create(tformat, RD::TextureView());
- RD::get_singleton()->texture_clear(decal_atlas.texture, Color(0, 0, 0, 0), 0, decal_atlas.mipmaps, 0, 1);
-
- {
- //create the framebuffer
-
- Size2i s = decal_atlas.size;
-
- for (int i = 0; i < decal_atlas.mipmaps; i++) {
- DecalAtlas::MipMap mm;
- mm.texture = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), decal_atlas.texture, 0, i);
- Vector<RID> fb;
- fb.push_back(mm.texture);
- mm.fb = RD::get_singleton()->framebuffer_create(fb);
- mm.size = s;
- decal_atlas.texture_mipmaps.push_back(mm);
-
- s.width = MAX(1, s.width >> 1);
- s.height = MAX(1, s.height >> 1);
- }
- {
- //create the SRGB variant
- RD::TextureView rd_view;
- rd_view.format_override = RD::DATA_FORMAT_R8G8B8A8_SRGB;
- decal_atlas.texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, decal_atlas.texture);
- }
- }
-
- RID prev_texture;
- for (int i = 0; i < decal_atlas.texture_mipmaps.size(); i++) {
- const DecalAtlas::MipMap &mm = decal_atlas.texture_mipmaps[i];
-
- Color clear_color(0, 0, 0, 0);
-
- if (decal_atlas.textures.size()) {
- if (i == 0) {
- Vector<Color> cc;
- cc.push_back(clear_color);
-
- RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(mm.fb, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, cc);
-
- const RID *K = nullptr;
- while ((K = decal_atlas.textures.next(K))) {
- DecalAtlas::Texture *t = decal_atlas.textures.getptr(*K);
- Texture *src_tex = texture_owner.get_or_null(*K);
- effects->copy_to_atlas_fb(src_tex->rd_texture, mm.fb, t->uv_rect, draw_list, false, t->panorama_to_dp_users > 0);
- }
-
- RD::get_singleton()->draw_list_end();
-
- prev_texture = mm.texture;
- } else {
- effects->copy_to_fb_rect(prev_texture, mm.fb, Rect2i(Point2i(), mm.size));
- prev_texture = mm.texture;
- }
- } else {
- RD::get_singleton()->texture_clear(mm.texture, clear_color, 0, 1, 0, 1);
- }
- }
-}
-
-int32_t RendererStorageRD::_global_variable_allocate(uint32_t p_elements) {
- int32_t idx = 0;
- while (idx + p_elements <= global_variables.buffer_size) {
- if (global_variables.buffer_usage[idx].elements == 0) {
- bool valid = true;
- for (uint32_t i = 1; i < p_elements; i++) {
- if (global_variables.buffer_usage[idx + i].elements > 0) {
- valid = false;
- idx += i + global_variables.buffer_usage[idx + i].elements;
- break;
- }
- }
-
- if (!valid) {
- continue; //if not valid, idx is in new position
- }
-
- return idx;
- } else {
- idx += global_variables.buffer_usage[idx].elements;
- }
- }
-
- return -1;
-}
-
-void RendererStorageRD::_global_variable_store_in_buffer(int32_t p_index, RS::GlobalVariableType p_type, const Variant &p_value) {
- switch (p_type) {
- case RS::GLOBAL_VAR_TYPE_BOOL: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- bool b = p_value;
- bv.x = b ? 1.0 : 0.0;
- bv.y = 0.0;
- bv.z = 0.0;
- bv.w = 0.0;
-
- } break;
- case RS::GLOBAL_VAR_TYPE_BVEC2: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- uint32_t bvec = p_value;
- bv.x = (bvec & 1) ? 1.0 : 0.0;
- bv.y = (bvec & 2) ? 1.0 : 0.0;
- bv.z = 0.0;
- bv.w = 0.0;
- } break;
- case RS::GLOBAL_VAR_TYPE_BVEC3: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- uint32_t bvec = p_value;
- bv.x = (bvec & 1) ? 1.0 : 0.0;
- bv.y = (bvec & 2) ? 1.0 : 0.0;
- bv.z = (bvec & 4) ? 1.0 : 0.0;
- bv.w = 0.0;
- } break;
- case RS::GLOBAL_VAR_TYPE_BVEC4: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- uint32_t bvec = p_value;
- bv.x = (bvec & 1) ? 1.0 : 0.0;
- bv.y = (bvec & 2) ? 1.0 : 0.0;
- bv.z = (bvec & 4) ? 1.0 : 0.0;
- bv.w = (bvec & 8) ? 1.0 : 0.0;
- } break;
- case RS::GLOBAL_VAR_TYPE_INT: {
- GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
- int32_t v = p_value;
- bv.x = v;
- bv.y = 0;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_IVEC2: {
- GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
- Vector2i v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_IVEC3: {
- GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
- Vector3i v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = v.z;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_IVEC4: {
- GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
- Vector<int32_t> v = p_value;
- bv.x = v.size() >= 1 ? v[0] : 0;
- bv.y = v.size() >= 2 ? v[1] : 0;
- bv.z = v.size() >= 3 ? v[2] : 0;
- bv.w = v.size() >= 4 ? v[3] : 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_RECT2I: {
- GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
- Rect2i v = p_value;
- bv.x = v.position.x;
- bv.y = v.position.y;
- bv.z = v.size.x;
- bv.w = v.size.y;
- } break;
- case RS::GLOBAL_VAR_TYPE_UINT: {
- GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
- uint32_t v = p_value;
- bv.x = v;
- bv.y = 0;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_UVEC2: {
- GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
- Vector2i v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_UVEC3: {
- GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
- Vector3i v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = v.z;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_UVEC4: {
- GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
- Vector<int32_t> v = p_value;
- bv.x = v.size() >= 1 ? v[0] : 0;
- bv.y = v.size() >= 2 ? v[1] : 0;
- bv.z = v.size() >= 3 ? v[2] : 0;
- bv.w = v.size() >= 4 ? v[3] : 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_FLOAT: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- float v = p_value;
- bv.x = v;
- bv.y = 0;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_VEC2: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- Vector2 v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = 0;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_VEC3: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- Vector3 v = p_value;
- bv.x = v.x;
- bv.y = v.y;
- bv.z = v.z;
- bv.w = 0;
- } break;
- case RS::GLOBAL_VAR_TYPE_VEC4: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- Plane v = p_value;
- bv.x = v.normal.x;
- bv.y = v.normal.y;
- bv.z = v.normal.z;
- bv.w = v.d;
- } break;
- case RS::GLOBAL_VAR_TYPE_COLOR: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- Color v = p_value;
- bv.x = v.r;
- bv.y = v.g;
- bv.z = v.b;
- bv.w = v.a;
-
- GlobalVariables::Value &bv_linear = global_variables.buffer_values[p_index + 1];
- v = v.to_linear();
- bv_linear.x = v.r;
- bv_linear.y = v.g;
- bv_linear.z = v.b;
- bv_linear.w = v.a;
-
- } break;
- case RS::GLOBAL_VAR_TYPE_RECT2: {
- GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
- Rect2 v = p_value;
- bv.x = v.position.x;
- bv.y = v.position.y;
- bv.z = v.size.x;
- bv.w = v.size.y;
- } break;
- case RS::GLOBAL_VAR_TYPE_MAT2: {
- GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
- Vector<float> m2 = p_value;
- if (m2.size() < 4) {
- m2.resize(4);
- }
- bv[0].x = m2[0];
- bv[0].y = m2[1];
- bv[0].z = 0;
- bv[0].w = 0;
-
- bv[1].x = m2[2];
- bv[1].y = m2[3];
- bv[1].z = 0;
- bv[1].w = 0;
-
- } break;
- case RS::GLOBAL_VAR_TYPE_MAT3: {
- GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
- Basis v = p_value;
- bv[0].x = v.elements[0][0];
- bv[0].y = v.elements[1][0];
- bv[0].z = v.elements[2][0];
- bv[0].w = 0;
-
- bv[1].x = v.elements[0][1];
- bv[1].y = v.elements[1][1];
- bv[1].z = v.elements[2][1];
- bv[1].w = 0;
-
- bv[2].x = v.elements[0][2];
- bv[2].y = v.elements[1][2];
- bv[2].z = v.elements[2][2];
- bv[2].w = 0;
-
- } break;
- case RS::GLOBAL_VAR_TYPE_MAT4: {
- GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
-
- Vector<float> m2 = p_value;
- if (m2.size() < 16) {
- m2.resize(16);
- }
-
- bv[0].x = m2[0];
- bv[0].y = m2[1];
- bv[0].z = m2[2];
- bv[0].w = m2[3];
-
- bv[1].x = m2[4];
- bv[1].y = m2[5];
- bv[1].z = m2[6];
- bv[1].w = m2[7];
-
- bv[2].x = m2[8];
- bv[2].y = m2[9];
- bv[2].z = m2[10];
- bv[2].w = m2[11];
-
- bv[3].x = m2[12];
- bv[3].y = m2[13];
- bv[3].z = m2[14];
- bv[3].w = m2[15];
-
- } break;
- case RS::GLOBAL_VAR_TYPE_TRANSFORM_2D: {
- GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
- Transform2D v = p_value;
- bv[0].x = v.elements[0][0];
- bv[0].y = v.elements[0][1];
- bv[0].z = 0;
- bv[0].w = 0;
-
- bv[1].x = v.elements[1][0];
- bv[1].y = v.elements[1][1];
- bv[1].z = 0;
- bv[1].w = 0;
-
- bv[2].x = v.elements[2][0];
- bv[2].y = v.elements[2][1];
- bv[2].z = 1;
- bv[2].w = 0;
-
- } break;
- case RS::GLOBAL_VAR_TYPE_TRANSFORM: {
- GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
- Transform3D v = p_value;
- bv[0].x = v.basis.elements[0][0];
- bv[0].y = v.basis.elements[1][0];
- bv[0].z = v.basis.elements[2][0];
- bv[0].w = 0;
-
- bv[1].x = v.basis.elements[0][1];
- bv[1].y = v.basis.elements[1][1];
- bv[1].z = v.basis.elements[2][1];
- bv[1].w = 0;
-
- bv[2].x = v.basis.elements[0][2];
- bv[2].y = v.basis.elements[1][2];
- bv[2].z = v.basis.elements[2][2];
- bv[2].w = 0;
-
- bv[3].x = v.origin.x;
- bv[3].y = v.origin.y;
- bv[3].z = v.origin.z;
- bv[3].w = 1;
-
- } break;
- default: {
- ERR_FAIL();
- }
- }
-}
-
-void RendererStorageRD::_global_variable_mark_buffer_dirty(int32_t p_index, int32_t p_elements) {
- int32_t prev_chunk = -1;
-
- for (int32_t i = 0; i < p_elements; i++) {
- int32_t chunk = (p_index + i) / GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
- if (chunk != prev_chunk) {
- if (!global_variables.buffer_dirty_regions[chunk]) {
- global_variables.buffer_dirty_regions[chunk] = true;
- global_variables.buffer_dirty_region_count++;
- }
- }
-
- prev_chunk = chunk;
- }
-}
-
-void RendererStorageRD::global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) {
- ERR_FAIL_COND(global_variables.variables.has(p_name));
- GlobalVariables::Variable gv;
- gv.type = p_type;
- gv.value = p_value;
- gv.buffer_index = -1;
-
- if (p_type >= RS::GLOBAL_VAR_TYPE_SAMPLER2D) {
- //is texture
- global_variables.must_update_texture_materials = true; //normally there are none
- } else {
- gv.buffer_elements = 1;
- if (p_type == RS::GLOBAL_VAR_TYPE_COLOR || p_type == RS::GLOBAL_VAR_TYPE_MAT2) {
- //color needs to elements to store srgb and linear
- gv.buffer_elements = 2;
- }
- if (p_type == RS::GLOBAL_VAR_TYPE_MAT3 || p_type == RS::GLOBAL_VAR_TYPE_TRANSFORM_2D) {
- //color needs to elements to store srgb and linear
- gv.buffer_elements = 3;
- }
- if (p_type == RS::GLOBAL_VAR_TYPE_MAT4 || p_type == RS::GLOBAL_VAR_TYPE_TRANSFORM) {
- //color needs to elements to store srgb and linear
- gv.buffer_elements = 4;
- }
-
- //is vector, allocate in buffer and update index
- gv.buffer_index = _global_variable_allocate(gv.buffer_elements);
- ERR_FAIL_COND_MSG(gv.buffer_index < 0, vformat("Failed allocating global variable '%s' out of buffer memory. Consider increasing it in the Project Settings.", String(p_name)));
- global_variables.buffer_usage[gv.buffer_index].elements = gv.buffer_elements;
- _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
- _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
-
- global_variables.must_update_buffer_materials = true; //normally there are none
- }
-
- global_variables.variables[p_name] = gv;
-}
-
-void RendererStorageRD::global_variable_remove(const StringName &p_name) {
- if (!global_variables.variables.has(p_name)) {
- return;
- }
- GlobalVariables::Variable &gv = global_variables.variables[p_name];
-
- if (gv.buffer_index >= 0) {
- global_variables.buffer_usage[gv.buffer_index].elements = 0;
- global_variables.must_update_buffer_materials = true;
- } else {
- global_variables.must_update_texture_materials = true;
- }
-
- global_variables.variables.erase(p_name);
-}
-
-Vector<StringName> RendererStorageRD::global_variable_get_list() const {
- if (!Engine::get_singleton()->is_editor_hint()) {
- ERR_FAIL_V_MSG(Vector<StringName>(), "This function should never be used outside the editor, it can severely damage performance.");
- }
-
- const StringName *K = nullptr;
- Vector<StringName> names;
- while ((K = global_variables.variables.next(K))) {
- names.push_back(*K);
- }
- names.sort_custom<StringName::AlphCompare>();
- return names;
-}
-
-void RendererStorageRD::global_variable_set(const StringName &p_name, const Variant &p_value) {
- ERR_FAIL_COND(!global_variables.variables.has(p_name));
- GlobalVariables::Variable &gv = global_variables.variables[p_name];
- gv.value = p_value;
- if (gv.override.get_type() == Variant::NIL) {
- if (gv.buffer_index >= 0) {
- //buffer
- _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
- _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
- } else {
- //texture
- for (Set<RID>::Element *E = gv.texture_materials.front(); E; E = E->next()) {
- Material *material = material_owner.get_or_null(E->get());
- ERR_CONTINUE(!material);
- _material_queue_update(material, false, true);
- }
- }
- }
-}
-
-void RendererStorageRD::global_variable_set_override(const StringName &p_name, const Variant &p_value) {
- if (!global_variables.variables.has(p_name)) {
- return; //variable may not exist
- }
-
- ERR_FAIL_COND(p_value.get_type() == Variant::OBJECT);
-
- GlobalVariables::Variable &gv = global_variables.variables[p_name];
-
- gv.override = p_value;
-
- if (gv.buffer_index >= 0) {
- //buffer
- if (gv.override.get_type() == Variant::NIL) {
- _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
- } else {
- _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.override);
- }
-
- _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
- } else {
- //texture
- for (Set<RID>::Element *E = gv.texture_materials.front(); E; E = E->next()) {
- Material *material = material_owner.get_or_null(E->get());
- ERR_CONTINUE(!material);
- _material_queue_update(material, false, true);
- }
- }
-}
-
-Variant RendererStorageRD::global_variable_get(const StringName &p_name) const {
- if (!Engine::get_singleton()->is_editor_hint()) {
- ERR_FAIL_V_MSG(Variant(), "This function should never be used outside the editor, it can severely damage performance.");
- }
-
- if (!global_variables.variables.has(p_name)) {
- return Variant();
- }
-
- return global_variables.variables[p_name].value;
-}
-
-RS::GlobalVariableType RendererStorageRD::global_variable_get_type_internal(const StringName &p_name) const {
- if (!global_variables.variables.has(p_name)) {
- return RS::GLOBAL_VAR_TYPE_MAX;
- }
-
- return global_variables.variables[p_name].type;
-}
-
-RS::GlobalVariableType RendererStorageRD::global_variable_get_type(const StringName &p_name) const {
- if (!Engine::get_singleton()->is_editor_hint()) {
- ERR_FAIL_V_MSG(RS::GLOBAL_VAR_TYPE_MAX, "This function should never be used outside the editor, it can severely damage performance.");
- }
-
- return global_variable_get_type_internal(p_name);
-}
-
-void RendererStorageRD::global_variables_load_settings(bool p_load_textures) {
- List<PropertyInfo> settings;
- ProjectSettings::get_singleton()->get_property_list(&settings);
-
- for (const PropertyInfo &E : settings) {
- if (E.name.begins_with("shader_globals/")) {
- StringName name = E.name.get_slice("/", 1);
- Dictionary d = ProjectSettings::get_singleton()->get(E.name);
-
- ERR_CONTINUE(!d.has("type"));
- ERR_CONTINUE(!d.has("value"));
-
- String type = d["type"];
-
- static const char *global_var_type_names[RS::GLOBAL_VAR_TYPE_MAX] = {
- "bool",
- "bvec2",
- "bvec3",
- "bvec4",
- "int",
- "ivec2",
- "ivec3",
- "ivec4",
- "rect2i",
- "uint",
- "uvec2",
- "uvec3",
- "uvec4",
- "float",
- "vec2",
- "vec3",
- "vec4",
- "color",
- "rect2",
- "mat2",
- "mat3",
- "mat4",
- "transform_2d",
- "transform",
- "sampler2D",
- "sampler2DArray",
- "sampler3D",
- "samplerCube",
- };
-
- RS::GlobalVariableType gvtype = RS::GLOBAL_VAR_TYPE_MAX;
-
- for (int i = 0; i < RS::GLOBAL_VAR_TYPE_MAX; i++) {
- if (global_var_type_names[i] == type) {
- gvtype = RS::GlobalVariableType(i);
- break;
- }
- }
-
- ERR_CONTINUE(gvtype == RS::GLOBAL_VAR_TYPE_MAX); //type invalid
-
- Variant value = d["value"];
-
- if (gvtype >= RS::GLOBAL_VAR_TYPE_SAMPLER2D) {
- //textire
- if (!p_load_textures) {
- value = RID();
- continue;
- }
-
- String path = value;
- RES resource = ResourceLoader::load(path);
- ERR_CONTINUE(resource.is_null());
- value = resource;
- }
-
- if (global_variables.variables.has(name)) {
- //has it, update it
- global_variable_set(name, value);
- } else {
- global_variable_add(name, gvtype, value);
- }
- }
- }
-}
-
-void RendererStorageRD::global_variables_clear() {
- global_variables.variables.clear(); //not right but for now enough
-}
-
-RID RendererStorageRD::global_variables_get_storage_buffer() const {
- return global_variables.buffer;
-}
-
-int32_t RendererStorageRD::global_variables_instance_allocate(RID p_instance) {
- ERR_FAIL_COND_V(global_variables.instance_buffer_pos.has(p_instance), -1);
- int32_t pos = _global_variable_allocate(ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES);
- global_variables.instance_buffer_pos[p_instance] = pos; //save anyway
- ERR_FAIL_COND_V_MSG(pos < 0, -1, "Too many instances using shader instance variables. Increase buffer size in Project Settings.");
- global_variables.buffer_usage[pos].elements = ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES;
- return pos;
-}
-
-void RendererStorageRD::global_variables_instance_free(RID p_instance) {
- ERR_FAIL_COND(!global_variables.instance_buffer_pos.has(p_instance));
- int32_t pos = global_variables.instance_buffer_pos[p_instance];
- if (pos >= 0) {
- global_variables.buffer_usage[pos].elements = 0;
- }
- global_variables.instance_buffer_pos.erase(p_instance);
-}
-
-void RendererStorageRD::global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) {
- if (!global_variables.instance_buffer_pos.has(p_instance)) {
- return; //just not allocated, ignore
- }
- int32_t pos = global_variables.instance_buffer_pos[p_instance];
-
- if (pos < 0) {
- return; //again, not allocated, ignore
- }
- ERR_FAIL_INDEX(p_index, ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES);
- ERR_FAIL_COND_MSG(p_value.get_type() > Variant::COLOR, "Unsupported variant type for instance parameter: " + Variant::get_type_name(p_value.get_type())); //anything greater not supported
-
- ShaderLanguage::DataType datatype_from_value[Variant::COLOR + 1] = {
- ShaderLanguage::TYPE_MAX, //nil
- ShaderLanguage::TYPE_BOOL, //bool
- ShaderLanguage::TYPE_INT, //int
- ShaderLanguage::TYPE_FLOAT, //float
- ShaderLanguage::TYPE_MAX, //string
- ShaderLanguage::TYPE_VEC2, //vec2
- ShaderLanguage::TYPE_IVEC2, //vec2i
- ShaderLanguage::TYPE_VEC4, //rect2
- ShaderLanguage::TYPE_IVEC4, //rect2i
- ShaderLanguage::TYPE_VEC3, // vec3
- ShaderLanguage::TYPE_IVEC3, //vec3i
- ShaderLanguage::TYPE_MAX, //xform2d not supported here
- ShaderLanguage::TYPE_VEC4, //plane
- ShaderLanguage::TYPE_VEC4, //quat
- ShaderLanguage::TYPE_MAX, //aabb not supported here
- ShaderLanguage::TYPE_MAX, //basis not supported here
- ShaderLanguage::TYPE_MAX, //xform not supported here
- ShaderLanguage::TYPE_VEC4 //color
- };
-
- ShaderLanguage::DataType datatype = datatype_from_value[p_value.get_type()];
-
- ERR_FAIL_COND_MSG(datatype == ShaderLanguage::TYPE_MAX, "Unsupported variant type for instance parameter: " + Variant::get_type_name(p_value.get_type())); //anything greater not supported
-
- pos += p_index;
-
- _fill_std140_variant_ubo_value(datatype, 0, p_value, (uint8_t *)&global_variables.buffer_values[pos], true); //instances always use linear color in this renderer
- _global_variable_mark_buffer_dirty(pos, 1);
-}
-
-void RendererStorageRD::_update_global_variables() {
- if (global_variables.buffer_dirty_region_count > 0) {
- uint32_t total_regions = global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
- if (total_regions / global_variables.buffer_dirty_region_count <= 4) {
- // 25% of regions dirty, just update all buffer
- RD::get_singleton()->buffer_update(global_variables.buffer, 0, sizeof(GlobalVariables::Value) * global_variables.buffer_size, global_variables.buffer_values);
- memset(global_variables.buffer_dirty_regions, 0, sizeof(bool) * total_regions);
- } else {
- uint32_t region_byte_size = sizeof(GlobalVariables::Value) * GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
-
- for (uint32_t i = 0; i < total_regions; i++) {
- if (global_variables.buffer_dirty_regions[i]) {
- RD::get_singleton()->buffer_update(global_variables.buffer, i * region_byte_size, region_byte_size, global_variables.buffer_values);
-
- global_variables.buffer_dirty_regions[i] = false;
- }
- }
- }
-
- global_variables.buffer_dirty_region_count = 0;
- }
-
- if (global_variables.must_update_buffer_materials) {
- // only happens in the case of a buffer variable added or removed,
- // so not often.
- for (const RID &E : global_variables.materials_using_buffer) {
- Material *material = material_owner.get_or_null(E);
- ERR_CONTINUE(!material); //wtf
-
- _material_queue_update(material, true, false);
- }
-
- global_variables.must_update_buffer_materials = false;
- }
-
- if (global_variables.must_update_texture_materials) {
- // only happens in the case of a buffer variable added or removed,
- // so not often.
- for (const RID &E : global_variables.materials_using_texture) {
- Material *material = material_owner.get_or_null(E);
- ERR_CONTINUE(!material); //wtf
-
- _material_queue_update(material, false, true);
- }
-
- global_variables.must_update_texture_materials = false;
- }
-}
-
void RendererStorageRD::update_dirty_resources() {
- _update_global_variables(); //must do before materials, so it can queue them for update
- _update_queued_materials();
- _update_dirty_multimeshes();
- _update_dirty_skeletons();
- _update_decal_atlas();
+ RendererRD::MaterialStorage::get_singleton()->_update_global_variables(); //must do before materials, so it can queue them for update
+ RendererRD::MaterialStorage::get_singleton()->_update_queued_materials();
+ RendererRD::MeshStorage::get_singleton()->_update_dirty_multimeshes();
+ RendererRD::MeshStorage::get_singleton()->_update_dirty_skeletons();
+ RendererRD::TextureStorage::get_singleton()->update_decal_atlas();
}
bool RendererStorageRD::has_os_feature(const String &p_feature) const {
@@ -9296,176 +606,55 @@ bool RendererStorageRD::has_os_feature(const String &p_feature) const {
return true;
}
- if (p_feature == "pvrtc" && RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG, RD::TEXTURE_USAGE_SAMPLING_BIT)) {
- return true;
- }
-
return false;
}
bool RendererStorageRD::free(RID p_rid) {
- if (texture_owner.owns(p_rid)) {
- Texture *t = texture_owner.get_or_null(p_rid);
-
- ERR_FAIL_COND_V(!t, false);
- ERR_FAIL_COND_V(t->is_render_target, false);
-
- if (RD::get_singleton()->texture_is_valid(t->rd_texture_srgb)) {
- //erase this first, as it's a dependency of the one below
- RD::get_singleton()->free(t->rd_texture_srgb);
- }
- if (RD::get_singleton()->texture_is_valid(t->rd_texture)) {
- RD::get_singleton()->free(t->rd_texture);
- }
-
- if (t->is_proxy && t->proxy_to.is_valid()) {
- Texture *proxy_to = texture_owner.get_or_null(t->proxy_to);
- if (proxy_to) {
- proxy_to->proxies.erase(p_rid);
- }
- }
-
- if (decal_atlas.textures.has(p_rid)) {
- decal_atlas.textures.erase(p_rid);
- //there is not much a point of making it dirty, just let it be.
- }
-
- for (int i = 0; i < t->proxies.size(); i++) {
- Texture *p = texture_owner.get_or_null(t->proxies[i]);
- ERR_CONTINUE(!p);
- p->proxy_to = RID();
- p->rd_texture = RID();
- p->rd_texture_srgb = RID();
- }
-
- if (t->canvas_texture) {
- memdelete(t->canvas_texture);
- }
- texture_owner.free(p_rid);
-
- } else if (canvas_texture_owner.owns(p_rid)) {
- canvas_texture_owner.free(p_rid);
- } else if (shader_owner.owns(p_rid)) {
- Shader *shader = shader_owner.get_or_null(p_rid);
- //make material unreference this
- while (shader->owners.size()) {
- material_set_shader(shader->owners.front()->get()->self, RID());
- }
- //clear data if exists
- if (shader->data) {
- memdelete(shader->data);
- }
- shader_owner.free(p_rid);
-
- } else if (material_owner.owns(p_rid)) {
- Material *material = material_owner.get_or_null(p_rid);
- material_set_shader(p_rid, RID()); //clean up shader
- material->dependency.deleted_notify(p_rid);
-
- material_owner.free(p_rid);
- } else if (mesh_owner.owns(p_rid)) {
- mesh_clear(p_rid);
- mesh_set_shadow_mesh(p_rid, RID());
- Mesh *mesh = mesh_owner.get_or_null(p_rid);
- mesh->dependency.deleted_notify(p_rid);
- if (mesh->instances.size()) {
- ERR_PRINT("deleting mesh with active instances");
- }
- if (mesh->shadow_owners.size()) {
- for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
- Mesh *shadow_owner = E->get();
- shadow_owner->shadow_mesh = RID();
- shadow_owner->dependency.changed_notify(DEPENDENCY_CHANGED_MESH);
- }
- }
- mesh_owner.free(p_rid);
- } else if (mesh_instance_owner.owns(p_rid)) {
- MeshInstance *mi = mesh_instance_owner.get_or_null(p_rid);
- _mesh_instance_clear(mi);
- mi->mesh->instances.erase(mi->I);
- mi->I = nullptr;
-
- mesh_instance_owner.free(p_rid);
-
- } else if (multimesh_owner.owns(p_rid)) {
- _update_dirty_multimeshes();
- multimesh_allocate_data(p_rid, 0, RS::MULTIMESH_TRANSFORM_2D);
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_rid);
- multimesh->dependency.deleted_notify(p_rid);
- multimesh_owner.free(p_rid);
- } else if (skeleton_owner.owns(p_rid)) {
- _update_dirty_skeletons();
- skeleton_allocate_data(p_rid, 0);
- Skeleton *skeleton = skeleton_owner.get_or_null(p_rid);
- skeleton->dependency.deleted_notify(p_rid);
- skeleton_owner.free(p_rid);
- } else if (reflection_probe_owner.owns(p_rid)) {
- ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_rid);
- reflection_probe->dependency.deleted_notify(p_rid);
- reflection_probe_owner.free(p_rid);
- } else if (decal_owner.owns(p_rid)) {
- Decal *decal = decal_owner.get_or_null(p_rid);
- for (int i = 0; i < RS::DECAL_TEXTURE_MAX; i++) {
- if (decal->textures[i].is_valid() && texture_owner.owns(decal->textures[i])) {
- texture_remove_from_decal_atlas(decal->textures[i]);
- }
- }
- decal->dependency.deleted_notify(p_rid);
- decal_owner.free(p_rid);
+ if (RendererRD::TextureStorage::get_singleton()->owns_texture(p_rid)) {
+ RendererRD::TextureStorage::get_singleton()->texture_free(p_rid);
+ } else if (RendererRD::TextureStorage::get_singleton()->owns_canvas_texture(p_rid)) {
+ RendererRD::TextureStorage::get_singleton()->canvas_texture_free(p_rid);
+ } else if (RendererRD::MaterialStorage::get_singleton()->owns_shader(p_rid)) {
+ RendererRD::MaterialStorage::get_singleton()->shader_free(p_rid);
+ } else if (RendererRD::MaterialStorage::get_singleton()->owns_material(p_rid)) {
+ RendererRD::MaterialStorage::get_singleton()->material_free(p_rid);
+ } else if (RendererRD::MeshStorage::get_singleton()->owns_mesh(p_rid)) {
+ RendererRD::MeshStorage::get_singleton()->mesh_free(p_rid);
+ } else if (RendererRD::MeshStorage::get_singleton()->owns_mesh_instance(p_rid)) {
+ RendererRD::MeshStorage::get_singleton()->mesh_instance_free(p_rid);
+ } else if (RendererRD::MeshStorage::get_singleton()->owns_multimesh(p_rid)) {
+ RendererRD::MeshStorage::get_singleton()->multimesh_free(p_rid);
+ } else if (RendererRD::MeshStorage::get_singleton()->owns_skeleton(p_rid)) {
+ RendererRD::MeshStorage::get_singleton()->skeleton_free(p_rid);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_reflection_probe(p_rid)) {
+ RendererRD::LightStorage::get_singleton()->reflection_probe_free(p_rid);
+ } else if (RendererRD::TextureStorage::get_singleton()->owns_decal(p_rid)) {
+ RendererRD::TextureStorage::get_singleton()->decal_free(p_rid);
} else if (voxel_gi_owner.owns(p_rid)) {
voxel_gi_allocate_data(p_rid, Transform3D(), AABB(), Vector3i(), Vector<uint8_t>(), Vector<uint8_t>(), Vector<uint8_t>(), Vector<int>()); //deallocate
VoxelGI *voxel_gi = voxel_gi_owner.get_or_null(p_rid);
voxel_gi->dependency.deleted_notify(p_rid);
voxel_gi_owner.free(p_rid);
- } else if (lightmap_owner.owns(p_rid)) {
- lightmap_set_textures(p_rid, RID(), false);
- Lightmap *lightmap = lightmap_owner.get_or_null(p_rid);
- lightmap->dependency.deleted_notify(p_rid);
- lightmap_owner.free(p_rid);
-
- } else if (light_owner.owns(p_rid)) {
- light_set_projector(p_rid, RID()); //clear projector
- // delete the texture
- Light *light = light_owner.get_or_null(p_rid);
- light->dependency.deleted_notify(p_rid);
- light_owner.free(p_rid);
-
- } else if (particles_owner.owns(p_rid)) {
- update_particles();
- Particles *particles = particles_owner.get_or_null(p_rid);
- particles->dependency.deleted_notify(p_rid);
- _particles_free_data(particles);
- particles_owner.free(p_rid);
- } else if (particles_collision_owner.owns(p_rid)) {
- ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_rid);
-
- if (particles_collision->heightfield_texture.is_valid()) {
- RD::get_singleton()->free(particles_collision->heightfield_texture);
- }
- particles_collision->dependency.deleted_notify(p_rid);
- particles_collision_owner.free(p_rid);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_lightmap(p_rid)) {
+ RendererRD::LightStorage::get_singleton()->lightmap_free(p_rid);
+ } else if (RendererRD::LightStorage::get_singleton()->owns_light(p_rid)) {
+ RendererRD::LightStorage::get_singleton()->light_free(p_rid);
+ } else if (RendererRD::ParticlesStorage::get_singleton()->owns_particles(p_rid)) {
+ RendererRD::ParticlesStorage::get_singleton()->particles_free(p_rid);
+ } else if (RendererRD::ParticlesStorage::get_singleton()->owns_particles_collision(p_rid)) {
+ RendererRD::ParticlesStorage::get_singleton()->particles_collision_free(p_rid);
} else if (visibility_notifier_owner.owns(p_rid)) {
VisibilityNotifier *vn = visibility_notifier_owner.get_or_null(p_rid);
vn->dependency.deleted_notify(p_rid);
visibility_notifier_owner.free(p_rid);
- } else if (particles_collision_instance_owner.owns(p_rid)) {
- particles_collision_instance_owner.free(p_rid);
+ } else if (RendererRD::ParticlesStorage::get_singleton()->owns_particles_collision_instance(p_rid)) {
+ RendererRD::ParticlesStorage::get_singleton()->particles_collision_instance_free(p_rid);
} else if (fog_volume_owner.owns(p_rid)) {
FogVolume *fog_volume = fog_volume_owner.get_or_null(p_rid);
fog_volume->dependency.deleted_notify(p_rid);
fog_volume_owner.free(p_rid);
- } else if (render_target_owner.owns(p_rid)) {
- RenderTarget *rt = render_target_owner.get_or_null(p_rid);
-
- _clear_render_target(rt);
-
- if (rt->texture.is_valid()) {
- Texture *tex = texture_owner.get_or_null(rt->texture);
- tex->is_render_target = false;
- free(rt->texture);
- }
-
- render_target_owner.free(p_rid);
+ } else if (RendererRD::TextureStorage::get_singleton()->owns_render_target(p_rid)) {
+ RendererRD::TextureStorage::get_singleton()->render_target_free(p_rid);
} else {
return false;
}
@@ -9529,719 +718,26 @@ uint64_t RendererStorageRD::get_rendering_info(RS::RenderingInfo p_info) {
String RendererStorageRD::get_video_adapter_name() const {
return RenderingDevice::get_singleton()->get_device_name();
}
+
String RendererStorageRD::get_video_adapter_vendor() const {
return RenderingDevice::get_singleton()->get_device_vendor_name();
}
-RendererStorageRD *RendererStorageRD::base_singleton = nullptr;
-
-RendererStorageRD::RendererStorageRD() {
- base_singleton = this;
-
- for (int i = 0; i < SHADER_TYPE_MAX; i++) {
- shader_data_request_func[i] = nullptr;
- }
-
- static_assert(sizeof(GlobalVariables::Value) == 16);
-
- global_variables.buffer_size = GLOBAL_GET("rendering/limits/global_shader_variables/buffer_size");
- global_variables.buffer_size = MAX(4096, global_variables.buffer_size);
- global_variables.buffer_values = memnew_arr(GlobalVariables::Value, global_variables.buffer_size);
- memset(global_variables.buffer_values, 0, sizeof(GlobalVariables::Value) * global_variables.buffer_size);
- global_variables.buffer_usage = memnew_arr(GlobalVariables::ValueUsage, global_variables.buffer_size);
- global_variables.buffer_dirty_regions = memnew_arr(bool, global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE);
- memset(global_variables.buffer_dirty_regions, 0, sizeof(bool) * global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE);
- global_variables.buffer = RD::get_singleton()->storage_buffer_create(sizeof(GlobalVariables::Value) * global_variables.buffer_size);
-
- { //create default textures
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_2D;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 255);
- pv.set(i * 4 + 1, 255);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
-
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
-
- //take the chance and initialize decal atlas to something
- decal_atlas.texture = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- decal_atlas.texture_srgb = decal_atlas.texture;
- }
-
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 128);
- pv.set(i * 4 + 1, 128);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_NORMAL] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
-
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 255);
- pv.set(i * 4 + 1, 128);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_ANISO] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
-
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 0);
- }
-
- default_rd_textures[DEFAULT_RD_TEXTURE_MULTIMESH_BUFFER] = RD::get_singleton()->texture_buffer_create(16, RD::DATA_FORMAT_R8G8B8A8_UNORM, pv);
-
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 0);
- }
-
- {
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UINT;
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_2D_UINT] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- { //create default cubemap
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.array_layers = 6;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_CUBE_ARRAY;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 0);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- for (int i = 0; i < 6; i++) {
- vpv.push_back(pv);
- }
- default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- { //create default cubemap array
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.array_layers = 6;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_CUBE;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 0);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- for (int i = 0; i < 6; i++) {
- vpv.push_back(pv);
- }
- default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- { //create default cubemap white array
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.array_layers = 6;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_CUBE;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 255);
- pv.set(i * 4 + 1, 255);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- for (int i = 0; i < 6; i++) {
- vpv.push_back(pv);
- }
- default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- { //create default 3D
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.depth = 4;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_3D;
-
- Vector<uint8_t> pv;
- pv.resize(64 * 4);
- for (int i = 0; i < 64; i++) {
- pv.set(i * 4 + 0, 0);
- pv.set(i * 4 + 1, 0);
- pv.set(i * 4 + 2, 0);
- pv.set(i * 4 + 3, 0);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_3D_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- for (int i = 0; i < 64; i++) {
- pv.set(i * 4 + 0, 255);
- pv.set(i * 4 + 1, 255);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_3D_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- { //create default array
-
- RD::TextureFormat tformat;
- tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
- tformat.width = 4;
- tformat.height = 4;
- tformat.array_layers = 1;
- tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
- tformat.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
-
- Vector<uint8_t> pv;
- pv.resize(16 * 4);
- for (int i = 0; i < 16; i++) {
- pv.set(i * 4 + 0, 255);
- pv.set(i * 4 + 1, 255);
- pv.set(i * 4 + 2, 255);
- pv.set(i * 4 + 3, 255);
- }
-
- {
- Vector<Vector<uint8_t>> vpv;
- vpv.push_back(pv);
- default_rd_textures[DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
- }
- }
-
- //default samplers
- for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
- for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
- RD::SamplerState sampler_state;
- switch (i) {
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.max_lod = 0;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.max_lod = 0;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
-
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
- sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.use_anisotropy = true;
- sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
- } break;
- case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC: {
- sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
- sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
- if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
- } else {
- sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
- }
- sampler_state.use_anisotropy = true;
- sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
-
- } break;
- default: {
- }
- }
- switch (j) {
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
-
- } break;
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_REPEAT;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_REPEAT;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_REPEAT;
- } break;
- case RS::CANVAS_ITEM_TEXTURE_REPEAT_MIRROR: {
- sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
- } break;
- default: {
- }
- }
-
- default_rd_samplers[i][j] = RD::get_singleton()->sampler_create(sampler_state);
- }
- }
-
- //custom sampler
- sampler_rd_configure_custom(0.0f);
-
- //default rd buffers
- {
- Vector<uint8_t> buffer;
- {
- buffer.resize(sizeof(float) * 3);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 0.0;
- fptr[1] = 0.0;
- fptr[2] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_VERTEX] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //normal
- buffer.resize(sizeof(float) * 3);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 1.0;
- fptr[1] = 0.0;
- fptr[2] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_NORMAL] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //tangent
- buffer.resize(sizeof(float) * 4);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 1.0;
- fptr[1] = 0.0;
- fptr[2] = 0.0;
- fptr[3] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TANGENT] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //color
- buffer.resize(sizeof(float) * 4);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 1.0;
- fptr[1] = 1.0;
- fptr[2] = 1.0;
- fptr[3] = 1.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_COLOR] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //tex uv 1
- buffer.resize(sizeof(float) * 2);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 0.0;
- fptr[1] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TEX_UV] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
- { //tex uv 2
- buffer.resize(sizeof(float) * 2);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 0.0;
- fptr[1] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TEX_UV2] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- for (int i = 0; i < RS::ARRAY_CUSTOM_COUNT; i++) {
- buffer.resize(sizeof(float) * 4);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 0.0;
- fptr[1] = 0.0;
- fptr[2] = 0.0;
- fptr[3] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_CUSTOM0 + i] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //bones
- buffer.resize(sizeof(uint32_t) * 4);
- {
- uint8_t *w = buffer.ptrw();
- uint32_t *fptr = (uint32_t *)w;
- fptr[0] = 0;
- fptr[1] = 0;
- fptr[2] = 0;
- fptr[3] = 0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_BONES] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
-
- { //weights
- buffer.resize(sizeof(float) * 4);
- {
- uint8_t *w = buffer.ptrw();
- float *fptr = (float *)w;
- fptr[0] = 0.0;
- fptr[1] = 0.0;
- fptr[2] = 0.0;
- fptr[3] = 0.0;
- }
- mesh_default_rd_buffers[DEFAULT_RD_BUFFER_WEIGHTS] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
- }
- }
-
- using_lightmap_array = true; // high end
- if (using_lightmap_array) {
- uint32_t textures_per_stage = RD::get_singleton()->limit_get(RD::LIMIT_MAX_TEXTURES_PER_SHADER_STAGE);
-
- if (textures_per_stage <= 256) {
- lightmap_textures.resize(32);
- } else {
- lightmap_textures.resize(1024);
- }
-
- for (int i = 0; i < lightmap_textures.size(); i++) {
- lightmap_textures.write[i] = default_rd_textures[DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE];
- }
- }
-
- lightmap_probe_capture_update_speed = GLOBAL_GET("rendering/lightmapping/probe_capture/update_speed");
-
- /* Particles */
-
- {
- // Initialize particles
- Vector<String> particles_modes;
- particles_modes.push_back("");
- particles_shader.shader.initialize(particles_modes, String());
- }
- shader_set_data_request_function(RendererStorageRD::SHADER_TYPE_PARTICLES, _create_particles_shader_funcs);
- material_set_data_request_function(RendererStorageRD::SHADER_TYPE_PARTICLES, _create_particles_material_funcs);
-
- {
- ShaderCompilerRD::DefaultIdentifierActions actions;
-
- actions.renames["COLOR"] = "PARTICLE.color";
- actions.renames["VELOCITY"] = "PARTICLE.velocity";
- //actions.renames["MASS"] = "mass"; ?
- actions.renames["ACTIVE"] = "particle_active";
- actions.renames["RESTART"] = "restart";
- actions.renames["CUSTOM"] = "PARTICLE.custom";
- actions.renames["TRANSFORM"] = "PARTICLE.xform";
- actions.renames["TIME"] = "frame_history.data[0].time";
- actions.renames["PI"] = _MKSTR(Math_PI);
- actions.renames["TAU"] = _MKSTR(Math_TAU);
- actions.renames["E"] = _MKSTR(Math_E);
- actions.renames["LIFETIME"] = "params.lifetime";
- actions.renames["DELTA"] = "local_delta";
- actions.renames["NUMBER"] = "particle_number";
- actions.renames["INDEX"] = "index";
- //actions.renames["GRAVITY"] = "current_gravity";
- actions.renames["EMISSION_TRANSFORM"] = "FRAME.emission_transform";
- actions.renames["RANDOM_SEED"] = "FRAME.random_seed";
- actions.renames["FLAG_EMIT_POSITION"] = "EMISSION_FLAG_HAS_POSITION";
- actions.renames["FLAG_EMIT_ROT_SCALE"] = "EMISSION_FLAG_HAS_ROTATION_SCALE";
- actions.renames["FLAG_EMIT_VELOCITY"] = "EMISSION_FLAG_HAS_VELOCITY";
- actions.renames["FLAG_EMIT_COLOR"] = "EMISSION_FLAG_HAS_COLOR";
- actions.renames["FLAG_EMIT_CUSTOM"] = "EMISSION_FLAG_HAS_CUSTOM";
- actions.renames["RESTART_POSITION"] = "restart_position";
- actions.renames["RESTART_ROT_SCALE"] = "restart_rotation_scale";
- actions.renames["RESTART_VELOCITY"] = "restart_velocity";
- actions.renames["RESTART_COLOR"] = "restart_color";
- actions.renames["RESTART_CUSTOM"] = "restart_custom";
- actions.renames["emit_subparticle"] = "emit_subparticle";
- actions.renames["COLLIDED"] = "collided";
- actions.renames["COLLISION_NORMAL"] = "collision_normal";
- actions.renames["COLLISION_DEPTH"] = "collision_depth";
- actions.renames["ATTRACTOR_FORCE"] = "attractor_force";
-
- actions.render_mode_defines["disable_force"] = "#define DISABLE_FORCE\n";
- actions.render_mode_defines["disable_velocity"] = "#define DISABLE_VELOCITY\n";
- actions.render_mode_defines["keep_data"] = "#define ENABLE_KEEP_DATA\n";
- actions.render_mode_defines["collision_use_scale"] = "#define USE_COLLISON_SCALE\n";
-
- actions.sampler_array_name = "material_samplers";
- actions.base_texture_binding_index = 1;
- actions.texture_layout_set = 3;
- actions.base_uniform_string = "material.";
- actions.base_varying_index = 10;
-
- actions.default_filter = ShaderLanguage::FILTER_LINEAR_MIPMAP;
- actions.default_repeat = ShaderLanguage::REPEAT_ENABLE;
- actions.global_buffer_array_variable = "global_variables.data";
-
- particles_shader.compiler.initialize(actions);
- }
-
- {
- // default material and shader for particles shader
- particles_shader.default_shader = shader_allocate();
- shader_initialize(particles_shader.default_shader);
- shader_set_code(particles_shader.default_shader, R"(
-// Default particles shader.
-
-shader_type particles;
-
-void process() {
- COLOR = vec4(1.0);
+RenderingDevice::DeviceType RendererStorageRD::get_video_adapter_type() const {
+ return RenderingDevice::get_singleton()->get_device_type();
}
-)");
- particles_shader.default_material = material_allocate();
- material_initialize(particles_shader.default_material);
- material_set_shader(particles_shader.default_material, particles_shader.default_shader);
-
- ParticlesMaterialData *md = (ParticlesMaterialData *)material_get_data(particles_shader.default_material, RendererStorageRD::SHADER_TYPE_PARTICLES);
- particles_shader.default_shader_rd = particles_shader.shader.version_get_shader(md->shader_data->version, 0);
-
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
- u.binding = 1;
- u.ids.resize(12);
- RID *ids_ptr = u.ids.ptrw();
- ids_ptr[0] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[1] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[2] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[3] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[4] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[5] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
- ids_ptr[6] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[7] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[8] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[9] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[10] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- ids_ptr[11] = sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
- uniforms.push_back(u);
- }
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 2;
- u.ids.push_back(global_variables_get_storage_buffer());
- uniforms.push_back(u);
- }
-
- particles_shader.base_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 0);
- }
- default_rd_storage_buffer = RD::get_singleton()->storage_buffer_create(sizeof(uint32_t) * 4);
-
- {
- Vector<String> copy_modes;
- copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n");
- copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n#define MODE_2D\n");
- copy_modes.push_back("\n#define MODE_FILL_SORT_BUFFER\n#define USE_SORT_BUFFER\n");
- copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n#define USE_SORT_BUFFER\n");
-
- particles_shader.copy_shader.initialize(copy_modes);
-
- particles_shader.copy_shader_version = particles_shader.copy_shader.version_create();
-
- for (int i = 0; i < ParticlesShader::COPY_MODE_MAX; i++) {
- particles_shader.copy_pipelines[i] = RD::get_singleton()->compute_pipeline_create(particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, i));
- }
- }
-
- {
- Vector<String> sdf_modes;
- sdf_modes.push_back("\n#define MODE_LOAD\n");
- sdf_modes.push_back("\n#define MODE_LOAD_SHRINK\n");
- sdf_modes.push_back("\n#define MODE_PROCESS\n");
- sdf_modes.push_back("\n#define MODE_PROCESS_OPTIMIZED\n");
- sdf_modes.push_back("\n#define MODE_STORE\n");
- sdf_modes.push_back("\n#define MODE_STORE_SHRINK\n");
-
- rt_sdf.shader.initialize(sdf_modes);
-
- rt_sdf.shader_version = rt_sdf.shader.version_create();
-
- for (int i = 0; i < RenderTargetSDF::SHADER_MAX; i++) {
- rt_sdf.pipelines[i] = RD::get_singleton()->compute_pipeline_create(rt_sdf.shader.version_get_shader(rt_sdf.shader_version, i));
- }
- }
- {
- Vector<String> skeleton_modes;
- skeleton_modes.push_back("\n#define MODE_2D\n");
- skeleton_modes.push_back("");
+String RendererStorageRD::get_video_adapter_api_version() const {
+ return RenderingDevice::get_singleton()->get_device_api_version();
+}
- skeleton_shader.shader.initialize(skeleton_modes);
- skeleton_shader.version = skeleton_shader.shader.version_create();
- for (int i = 0; i < SkeletonShader::SHADER_MODE_MAX; i++) {
- skeleton_shader.version_shader[i] = skeleton_shader.shader.version_get_shader(skeleton_shader.version, i);
- skeleton_shader.pipeline[i] = RD::get_singleton()->compute_pipeline_create(skeleton_shader.version_shader[i]);
- }
+RendererStorageRD *RendererStorageRD::base_singleton = nullptr;
- {
- Vector<RD::Uniform> uniforms;
- {
- RD::Uniform u;
- u.binding = 0;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.ids.push_back(default_rd_storage_buffer);
- uniforms.push_back(u);
- }
- skeleton_shader.default_skeleton_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SKELETON);
- }
- }
+RendererStorageRD::RendererStorageRD() {
+ base_singleton = this;
}
RendererStorageRD::~RendererStorageRD() {
- memdelete_arr(global_variables.buffer_values);
- memdelete_arr(global_variables.buffer_usage);
- memdelete_arr(global_variables.buffer_dirty_regions);
- RD::get_singleton()->free(global_variables.buffer);
-
- //def textures
- for (int i = 0; i < DEFAULT_RD_TEXTURE_MAX; i++) {
- RD::get_singleton()->free(default_rd_textures[i]);
- }
-
- //def samplers
- for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
- for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
- RD::get_singleton()->free(default_rd_samplers[i][j]);
- }
- }
-
- //custom samplers
- for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
- for (int j = 0; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
- if (custom_rd_samplers[i][j].is_valid()) {
- RD::get_singleton()->free(custom_rd_samplers[i][j]);
- }
- }
- }
-
- //def buffers
- for (int i = 0; i < DEFAULT_RD_BUFFER_MAX; i++) {
- RD::get_singleton()->free(mesh_default_rd_buffers[i]);
- }
-
- particles_shader.copy_shader.version_free(particles_shader.copy_shader_version);
- rt_sdf.shader.version_free(rt_sdf.shader_version);
-
- skeleton_shader.shader.version_free(skeleton_shader.version);
-
- RenderingServer::get_singleton()->free(particles_shader.default_material);
- RenderingServer::get_singleton()->free(particles_shader.default_shader);
-
- RD::get_singleton()->free(default_rd_storage_buffer);
-
- if (decal_atlas.textures.size()) {
- ERR_PRINT("Decal Atlas: " + itos(decal_atlas.textures.size()) + " textures were not removed from the atlas.");
- }
-
- if (decal_atlas.texture.is_valid()) {
- RD::get_singleton()->free(decal_atlas.texture);
- }
-
if (effects) {
memdelete(effects);
effects = nullptr;
diff --git a/servers/rendering/renderer_rd/renderer_storage_rd.h b/servers/rendering/renderer_rd/renderer_storage_rd.h
index 9a64480c3e..07fae45a26 100644
--- a/servers/rendering/renderer_rd/renderer_storage_rd.h
+++ b/servers/rendering/renderer_rd/renderer_storage_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -36,28 +36,26 @@
#include "core/templates/rid_owner.h"
#include "servers/rendering/renderer_compositor.h"
#include "servers/rendering/renderer_rd/effects_rd.h"
-#include "servers/rendering/renderer_rd/shader_compiler_rd.h"
-#include "servers/rendering/renderer_rd/shaders/canvas_sdf.glsl.gen.h"
-#include "servers/rendering/renderer_rd/shaders/particles.glsl.gen.h"
-#include "servers/rendering/renderer_rd/shaders/particles_copy.glsl.gen.h"
-#include "servers/rendering/renderer_rd/shaders/skeleton.glsl.gen.h"
#include "servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl.gen.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
#include "servers/rendering/renderer_scene_render.h"
#include "servers/rendering/rendering_device.h"
+#include "servers/rendering/shader_compiler.h"
+
class RendererStorageRD : public RendererStorage {
public:
static _FORCE_INLINE_ void store_transform(const Transform3D &p_mtx, float *p_array) {
- p_array[0] = p_mtx.basis.elements[0][0];
- p_array[1] = p_mtx.basis.elements[1][0];
- p_array[2] = p_mtx.basis.elements[2][0];
+ p_array[0] = p_mtx.basis.rows[0][0];
+ p_array[1] = p_mtx.basis.rows[1][0];
+ p_array[2] = p_mtx.basis.rows[2][0];
p_array[3] = 0;
- p_array[4] = p_mtx.basis.elements[0][1];
- p_array[5] = p_mtx.basis.elements[1][1];
- p_array[6] = p_mtx.basis.elements[2][1];
+ p_array[4] = p_mtx.basis.rows[0][1];
+ p_array[5] = p_mtx.basis.rows[1][1];
+ p_array[6] = p_mtx.basis.rows[2][1];
p_array[7] = 0;
- p_array[8] = p_mtx.basis.elements[0][2];
- p_array[9] = p_mtx.basis.elements[1][2];
- p_array[10] = p_mtx.basis.elements[2][2];
+ p_array[8] = p_mtx.basis.rows[0][2];
+ p_array[9] = p_mtx.basis.rows[1][2];
+ p_array[10] = p_mtx.basis.rows[2][2];
p_array[11] = 0;
p_array[12] = p_mtx.origin.x;
p_array[13] = p_mtx.origin.y;
@@ -66,47 +64,47 @@ public:
}
static _FORCE_INLINE_ void store_basis_3x4(const Basis &p_mtx, float *p_array) {
- p_array[0] = p_mtx.elements[0][0];
- p_array[1] = p_mtx.elements[1][0];
- p_array[2] = p_mtx.elements[2][0];
+ p_array[0] = p_mtx.rows[0][0];
+ p_array[1] = p_mtx.rows[1][0];
+ p_array[2] = p_mtx.rows[2][0];
p_array[3] = 0;
- p_array[4] = p_mtx.elements[0][1];
- p_array[5] = p_mtx.elements[1][1];
- p_array[6] = p_mtx.elements[2][1];
+ p_array[4] = p_mtx.rows[0][1];
+ p_array[5] = p_mtx.rows[1][1];
+ p_array[6] = p_mtx.rows[2][1];
p_array[7] = 0;
- p_array[8] = p_mtx.elements[0][2];
- p_array[9] = p_mtx.elements[1][2];
- p_array[10] = p_mtx.elements[2][2];
+ p_array[8] = p_mtx.rows[0][2];
+ p_array[9] = p_mtx.rows[1][2];
+ p_array[10] = p_mtx.rows[2][2];
p_array[11] = 0;
}
static _FORCE_INLINE_ void store_transform_3x3(const Basis &p_mtx, float *p_array) {
- p_array[0] = p_mtx.elements[0][0];
- p_array[1] = p_mtx.elements[1][0];
- p_array[2] = p_mtx.elements[2][0];
+ p_array[0] = p_mtx.rows[0][0];
+ p_array[1] = p_mtx.rows[1][0];
+ p_array[2] = p_mtx.rows[2][0];
p_array[3] = 0;
- p_array[4] = p_mtx.elements[0][1];
- p_array[5] = p_mtx.elements[1][1];
- p_array[6] = p_mtx.elements[2][1];
+ p_array[4] = p_mtx.rows[0][1];
+ p_array[5] = p_mtx.rows[1][1];
+ p_array[6] = p_mtx.rows[2][1];
p_array[7] = 0;
- p_array[8] = p_mtx.elements[0][2];
- p_array[9] = p_mtx.elements[1][2];
- p_array[10] = p_mtx.elements[2][2];
+ p_array[8] = p_mtx.rows[0][2];
+ p_array[9] = p_mtx.rows[1][2];
+ p_array[10] = p_mtx.rows[2][2];
p_array[11] = 0;
}
static _FORCE_INLINE_ void store_transform_transposed_3x4(const Transform3D &p_mtx, float *p_array) {
- p_array[0] = p_mtx.basis.elements[0][0];
- p_array[1] = p_mtx.basis.elements[0][1];
- p_array[2] = p_mtx.basis.elements[0][2];
+ p_array[0] = p_mtx.basis.rows[0][0];
+ p_array[1] = p_mtx.basis.rows[0][1];
+ p_array[2] = p_mtx.basis.rows[0][2];
p_array[3] = p_mtx.origin.x;
- p_array[4] = p_mtx.basis.elements[1][0];
- p_array[5] = p_mtx.basis.elements[1][1];
- p_array[6] = p_mtx.basis.elements[1][2];
+ p_array[4] = p_mtx.basis.rows[1][0];
+ p_array[5] = p_mtx.basis.rows[1][1];
+ p_array[6] = p_mtx.basis.rows[1][2];
p_array[7] = p_mtx.origin.y;
- p_array[8] = p_mtx.basis.elements[2][0];
- p_array[9] = p_mtx.basis.elements[2][1];
- p_array[10] = p_mtx.basis.elements[2][2];
+ p_array[8] = p_mtx.basis.rows[2][0];
+ p_array[9] = p_mtx.basis.rows[2][1];
+ p_array[10] = p_mtx.basis.rows[2][2];
p_array[11] = p_mtx.origin.z;
}
@@ -124,842 +122,7 @@ public:
}
}
- enum ShaderType {
- SHADER_TYPE_2D,
- SHADER_TYPE_3D,
- SHADER_TYPE_PARTICLES,
- SHADER_TYPE_SKY,
- SHADER_TYPE_FOG,
- SHADER_TYPE_MAX
- };
-
- struct ShaderData {
- virtual void set_code(const String &p_Code) = 0;
- virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) = 0;
- virtual void get_param_list(List<PropertyInfo> *p_param_list) const = 0;
-
- virtual void get_instance_param_list(List<InstanceShaderParam> *p_param_list) const = 0;
- virtual bool is_param_texture(const StringName &p_param) const = 0;
- virtual bool is_animated() const = 0;
- virtual bool casts_shadows() const = 0;
- virtual Variant get_default_parameter(const StringName &p_parameter) const = 0;
- virtual RS::ShaderNativeSourceCode get_native_source_code() const { return RS::ShaderNativeSourceCode(); }
-
- virtual ~ShaderData() {}
- };
-
- typedef ShaderData *(*ShaderDataRequestFunction)();
-
- struct MaterialData {
- void update_uniform_buffer(const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Map<StringName, Variant> &p_parameters, uint8_t *p_buffer, uint32_t p_buffer_size, bool p_use_linear_color);
- void update_textures(const Map<StringName, Variant> &p_parameters, const Map<StringName, Map<int, RID>> &p_default_textures, const Vector<ShaderCompilerRD::GeneratedCode::Texture> &p_texture_uniforms, RID *p_textures, bool p_use_linear_color);
-
- virtual void set_render_priority(int p_priority) = 0;
- virtual void set_next_pass(RID p_pass) = 0;
- virtual bool update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) = 0;
- virtual ~MaterialData();
-
- //to be used internally by update_parameters, in the most common configuration of material parameters
- bool update_parameters_uniform_set(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty, const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Vector<ShaderCompilerRD::GeneratedCode::Texture> &p_texture_uniforms, const Map<StringName, Map<int, RID>> &p_default_texture_params, uint32_t p_ubo_size, RID &uniform_set, RID p_shader, uint32_t p_shader_uniform_set, uint32_t p_barrier = RD::BARRIER_MASK_ALL);
- void free_parameters_uniform_set(RID p_uniform_set);
-
- private:
- friend class RendererStorageRD;
- RID self;
- List<RID>::Element *global_buffer_E = nullptr;
- List<RID>::Element *global_texture_E = nullptr;
- uint64_t global_textures_pass = 0;
- Map<StringName, uint64_t> used_global_textures;
-
- //internally by update_parameters_uniform_set
- Vector<uint8_t> ubo_data;
- RID uniform_buffer;
- Vector<RID> texture_cache;
- };
- typedef MaterialData *(*MaterialDataRequestFunction)(ShaderData *);
- static void _material_uniform_set_erased(const RID &p_set, void *p_material);
-
- enum DefaultRDTexture {
- DEFAULT_RD_TEXTURE_WHITE,
- DEFAULT_RD_TEXTURE_BLACK,
- DEFAULT_RD_TEXTURE_NORMAL,
- DEFAULT_RD_TEXTURE_ANISO,
- DEFAULT_RD_TEXTURE_MULTIMESH_BUFFER,
- DEFAULT_RD_TEXTURE_CUBEMAP_BLACK,
- DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK,
- DEFAULT_RD_TEXTURE_CUBEMAP_WHITE,
- DEFAULT_RD_TEXTURE_3D_WHITE,
- DEFAULT_RD_TEXTURE_3D_BLACK,
- DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE,
- DEFAULT_RD_TEXTURE_2D_UINT,
- DEFAULT_RD_TEXTURE_MAX
- };
-
- enum DefaultRDBuffer {
- DEFAULT_RD_BUFFER_VERTEX,
- DEFAULT_RD_BUFFER_NORMAL,
- DEFAULT_RD_BUFFER_TANGENT,
- DEFAULT_RD_BUFFER_COLOR,
- DEFAULT_RD_BUFFER_TEX_UV,
- DEFAULT_RD_BUFFER_TEX_UV2,
- DEFAULT_RD_BUFFER_CUSTOM0,
- DEFAULT_RD_BUFFER_CUSTOM1,
- DEFAULT_RD_BUFFER_CUSTOM2,
- DEFAULT_RD_BUFFER_CUSTOM3,
- DEFAULT_RD_BUFFER_BONES,
- DEFAULT_RD_BUFFER_WEIGHTS,
- DEFAULT_RD_BUFFER_MAX,
- };
-
private:
- /* CANVAS TEXTURE API (2D) */
-
- struct CanvasTexture {
- RID diffuse;
- RID normal_map;
- RID specular;
- Color specular_color = Color(1, 1, 1, 1);
- float shininess = 1.0;
-
- RS::CanvasItemTextureFilter texture_filter = RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT;
- RS::CanvasItemTextureRepeat texture_repeat = RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT;
- RID uniform_sets[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
-
- Size2i size_cache = Size2i(1, 1);
- bool use_normal_cache = false;
- bool use_specular_cache = false;
- bool cleared_cache = true;
- void clear_sets();
- ~CanvasTexture();
- };
-
- RID_Owner<CanvasTexture, true> canvas_texture_owner;
-
- /* TEXTURE API */
- struct Texture {
- enum Type {
- TYPE_2D,
- TYPE_LAYERED,
- TYPE_3D
- };
-
- Type type;
- RS::TextureLayeredType layered_type = RS::TEXTURE_LAYERED_2D_ARRAY;
-
- RenderingDevice::TextureType rd_type;
- RID rd_texture;
- RID rd_texture_srgb;
- RenderingDevice::DataFormat rd_format;
- RenderingDevice::DataFormat rd_format_srgb;
-
- RD::TextureView rd_view;
-
- Image::Format format;
- Image::Format validated_format;
-
- int width;
- int height;
- int depth;
- int layers;
- int mipmaps;
-
- int height_2d;
- int width_2d;
-
- struct BufferSlice3D {
- Size2i size;
- uint32_t offset = 0;
- uint32_t buffer_size = 0;
- };
- Vector<BufferSlice3D> buffer_slices_3d;
- uint32_t buffer_size_3d = 0;
-
- bool is_render_target;
- bool is_proxy;
-
- Ref<Image> image_cache_2d;
- String path;
-
- RID proxy_to;
- Vector<RID> proxies;
- Set<RID> lightmap_users;
-
- RS::TextureDetectCallback detect_3d_callback = nullptr;
- void *detect_3d_callback_ud = nullptr;
-
- RS::TextureDetectCallback detect_normal_callback = nullptr;
- void *detect_normal_callback_ud = nullptr;
-
- RS::TextureDetectRoughnessCallback detect_roughness_callback = nullptr;
- void *detect_roughness_callback_ud = nullptr;
-
- CanvasTexture *canvas_texture = nullptr;
- };
-
- struct TextureToRDFormat {
- RD::DataFormat format;
- RD::DataFormat format_srgb;
- RD::TextureSwizzle swizzle_r;
- RD::TextureSwizzle swizzle_g;
- RD::TextureSwizzle swizzle_b;
- RD::TextureSwizzle swizzle_a;
- TextureToRDFormat() {
- format = RD::DATA_FORMAT_MAX;
- format_srgb = RD::DATA_FORMAT_MAX;
- swizzle_r = RD::TEXTURE_SWIZZLE_R;
- swizzle_g = RD::TEXTURE_SWIZZLE_G;
- swizzle_b = RD::TEXTURE_SWIZZLE_B;
- swizzle_a = RD::TEXTURE_SWIZZLE_A;
- }
- };
-
- //textures can be created from threads, so this RID_Owner is thread safe
- mutable RID_Owner<Texture, true> texture_owner;
-
- Ref<Image> _validate_texture_format(const Ref<Image> &p_image, TextureToRDFormat &r_format);
-
- RID default_rd_textures[DEFAULT_RD_TEXTURE_MAX];
- RID default_rd_samplers[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
- RID custom_rd_samplers[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
- RID default_rd_storage_buffer;
-
- /* DECAL ATLAS */
-
- struct DecalAtlas {
- struct Texture {
- int panorama_to_dp_users;
- int users;
- Rect2 uv_rect;
- };
-
- struct SortItem {
- RID texture;
- Size2i pixel_size;
- Size2i size;
- Point2i pos;
-
- bool operator<(const SortItem &p_item) const {
- //sort larger to smaller
- if (size.height == p_item.size.height) {
- return size.width > p_item.size.width;
- } else {
- return size.height > p_item.size.height;
- }
- }
- };
-
- HashMap<RID, Texture> textures;
- bool dirty = true;
- int mipmaps = 5;
-
- RID texture;
- RID texture_srgb;
- struct MipMap {
- RID fb;
- RID texture;
- Size2i size;
- };
- Vector<MipMap> texture_mipmaps;
-
- Size2i size;
-
- } decal_atlas;
-
- void _update_decal_atlas();
-
- /* SHADER */
-
- struct Material;
-
- struct Shader {
- ShaderData *data;
- String code;
- ShaderType type;
- Map<StringName, Map<int, RID>> default_texture_parameter;
- Set<Material *> owners;
- };
-
- ShaderDataRequestFunction shader_data_request_func[SHADER_TYPE_MAX];
- mutable RID_Owner<Shader, true> shader_owner;
-
- /* Material */
-
- struct Material {
- RID self;
- MaterialData *data = nullptr;
- Shader *shader = nullptr;
- //shortcut to shader data and type
- ShaderType shader_type = SHADER_TYPE_MAX;
- uint32_t shader_id = 0;
- bool uniform_dirty = false;
- bool texture_dirty = false;
- Map<StringName, Variant> params;
- int32_t priority = 0;
- RID next_pass;
- SelfList<Material> update_element;
-
- Dependency dependency;
-
- Material() :
- update_element(this) {}
- };
-
- MaterialDataRequestFunction material_data_request_func[SHADER_TYPE_MAX];
- mutable RID_Owner<Material, true> material_owner;
-
- SelfList<Material>::List material_update_list;
- void _material_queue_update(Material *material, bool p_uniform, bool p_texture);
- void _update_queued_materials();
-
- /* Mesh */
-
- struct MeshInstance;
-
- struct Mesh {
- struct Surface {
- RS::PrimitiveType primitive = RS::PRIMITIVE_POINTS;
- uint32_t format = 0;
-
- RID vertex_buffer;
- RID attribute_buffer;
- RID skin_buffer;
- uint32_t vertex_count = 0;
- uint32_t vertex_buffer_size = 0;
- uint32_t skin_buffer_size = 0;
-
- // A different pipeline needs to be allocated
- // depending on the inputs available in the
- // material.
- // There are never that many geometry/material
- // combinations, so a simple array is the most
- // cache-efficient structure.
-
- struct Version {
- uint32_t input_mask = 0;
- RD::VertexFormatID vertex_format = 0;
- RID vertex_array;
- };
-
- SpinLock version_lock; //needed to access versions
- Version *versions = nullptr; //allocated on demand
- uint32_t version_count = 0;
-
- RID index_buffer;
- RID index_array;
- uint32_t index_count = 0;
-
- struct LOD {
- float edge_length = 0.0;
- uint32_t index_count = 0;
- RID index_buffer;
- RID index_array;
- };
-
- LOD *lods = nullptr;
- uint32_t lod_count = 0;
-
- AABB aabb;
-
- Vector<AABB> bone_aabbs;
-
- RID blend_shape_buffer;
-
- RID material;
-
- uint32_t render_index = 0;
- uint64_t render_pass = 0;
-
- uint32_t multimesh_render_index = 0;
- uint64_t multimesh_render_pass = 0;
-
- uint32_t particles_render_index = 0;
- uint64_t particles_render_pass = 0;
-
- RID uniform_set;
- };
-
- uint32_t blend_shape_count = 0;
- RS::BlendShapeMode blend_shape_mode = RS::BLEND_SHAPE_MODE_NORMALIZED;
-
- Surface **surfaces = nullptr;
- uint32_t surface_count = 0;
-
- Vector<AABB> bone_aabbs;
-
- bool has_bone_weights = false;
-
- AABB aabb;
- AABB custom_aabb;
-
- Vector<RID> material_cache;
-
- List<MeshInstance *> instances;
-
- RID shadow_mesh;
- Set<Mesh *> shadow_owners;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<Mesh, true> mesh_owner;
-
- struct MeshInstance {
- Mesh *mesh;
- RID skeleton;
- struct Surface {
- RID vertex_buffer;
- RID uniform_set;
-
- Mesh::Surface::Version *versions = nullptr; //allocated on demand
- uint32_t version_count = 0;
- };
- LocalVector<Surface> surfaces;
- LocalVector<float> blend_weights;
-
- RID blend_weights_buffer;
- List<MeshInstance *>::Element *I = nullptr; //used to erase itself
- uint64_t skeleton_version = 0;
- bool dirty = false;
- bool weights_dirty = false;
- SelfList<MeshInstance> weight_update_list;
- SelfList<MeshInstance> array_update_list;
- MeshInstance() :
- weight_update_list(this), array_update_list(this) {}
- };
-
- void _mesh_instance_clear(MeshInstance *mi);
- void _mesh_instance_add_surface(MeshInstance *mi, Mesh *mesh, uint32_t p_surface);
-
- mutable RID_Owner<MeshInstance> mesh_instance_owner;
-
- SelfList<MeshInstance>::List dirty_mesh_instance_weights;
- SelfList<MeshInstance>::List dirty_mesh_instance_arrays;
-
- struct SkeletonShader {
- struct PushConstant {
- uint32_t has_normal;
- uint32_t has_tangent;
- uint32_t has_skeleton;
- uint32_t has_blend_shape;
-
- uint32_t vertex_count;
- uint32_t vertex_stride;
- uint32_t skin_stride;
- uint32_t skin_weight_offset;
-
- uint32_t blend_shape_count;
- uint32_t normalized_blend_shapes;
- uint32_t pad0;
- uint32_t pad1;
- };
-
- enum {
- UNIFORM_SET_INSTANCE = 0,
- UNIFORM_SET_SURFACE = 1,
- UNIFORM_SET_SKELETON = 2,
- };
- enum {
- SHADER_MODE_2D,
- SHADER_MODE_3D,
- SHADER_MODE_MAX
- };
-
- SkeletonShaderRD shader;
- RID version;
- RID version_shader[SHADER_MODE_MAX];
- RID pipeline[SHADER_MODE_MAX];
-
- RID default_skeleton_uniform_set;
- } skeleton_shader;
-
- void _mesh_surface_generate_version_for_input_mask(Mesh::Surface::Version &v, Mesh::Surface *s, uint32_t p_input_mask, MeshInstance::Surface *mis = nullptr);
-
- RID mesh_default_rd_buffers[DEFAULT_RD_BUFFER_MAX];
-
- /* MultiMesh */
- struct MultiMesh {
- RID mesh;
- int instances = 0;
- RS::MultimeshTransformFormat xform_format = RS::MULTIMESH_TRANSFORM_3D;
- bool uses_colors = false;
- bool uses_custom_data = false;
- int visible_instances = -1;
- AABB aabb;
- bool aabb_dirty = false;
- bool buffer_set = false;
- uint32_t stride_cache = 0;
- uint32_t color_offset_cache = 0;
- uint32_t custom_data_offset_cache = 0;
-
- Vector<float> data_cache; //used if individual setting is used
- bool *data_cache_dirty_regions = nullptr;
- uint32_t data_cache_used_dirty_regions = 0;
-
- RID buffer; //storage buffer
- RID uniform_set_3d;
- RID uniform_set_2d;
-
- bool dirty = false;
- MultiMesh *dirty_list = nullptr;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<MultiMesh, true> multimesh_owner;
-
- MultiMesh *multimesh_dirty_list = nullptr;
-
- _FORCE_INLINE_ void _multimesh_make_local(MultiMesh *multimesh) const;
- _FORCE_INLINE_ void _multimesh_mark_dirty(MultiMesh *multimesh, int p_index, bool p_aabb);
- _FORCE_INLINE_ void _multimesh_mark_all_dirty(MultiMesh *multimesh, bool p_data, bool p_aabb);
- _FORCE_INLINE_ void _multimesh_re_create_aabb(MultiMesh *multimesh, const float *p_data, int p_instances);
- void _update_dirty_multimeshes();
-
- /* PARTICLES */
-
- struct ParticleData {
- float xform[16];
- float velocity[3];
- uint32_t active;
- float color[4];
- float custom[3];
- float lifetime;
- };
-
- struct ParticlesFrameParams {
- enum {
- MAX_ATTRACTORS = 32,
- MAX_COLLIDERS = 32,
- MAX_3D_TEXTURES = 7
- };
-
- enum AttractorType {
- ATTRACTOR_TYPE_SPHERE,
- ATTRACTOR_TYPE_BOX,
- ATTRACTOR_TYPE_VECTOR_FIELD,
- };
-
- struct Attractor {
- float transform[16];
- float extents[3]; //exents or radius
- uint32_t type;
-
- uint32_t texture_index; //texture index for vector field
- float strength;
- float attenuation;
- float directionality;
- };
-
- enum CollisionType {
- COLLISION_TYPE_SPHERE,
- COLLISION_TYPE_BOX,
- COLLISION_TYPE_SDF,
- COLLISION_TYPE_HEIGHT_FIELD,
- COLLISION_TYPE_2D_SDF,
-
- };
-
- struct Collider {
- float transform[16];
- float extents[3]; //exents or radius
- uint32_t type;
-
- uint32_t texture_index; //texture index for vector field
- real_t scale;
- uint32_t pad[2];
- };
-
- uint32_t emitting;
- float system_phase;
- float prev_system_phase;
- uint32_t cycle;
-
- real_t explosiveness;
- real_t randomness;
- float time;
- float delta;
-
- uint32_t frame;
- uint32_t pad0;
- uint32_t pad1;
- uint32_t pad2;
-
- uint32_t random_seed;
- uint32_t attractor_count;
- uint32_t collider_count;
- float particle_size;
-
- float emission_transform[16];
-
- Attractor attractors[MAX_ATTRACTORS];
- Collider colliders[MAX_COLLIDERS];
- };
-
- struct ParticleEmissionBufferData {
- };
-
- struct ParticleEmissionBuffer {
- struct Data {
- float xform[16];
- float velocity[3];
- uint32_t flags;
- float color[4];
- float custom[4];
- };
-
- int32_t particle_count;
- int32_t particle_max;
- uint32_t pad1;
- uint32_t pad2;
- Data data[1]; //its 2020 and empty arrays are still non standard in C++
- };
-
- struct Particles {
- RS::ParticlesMode mode = RS::PARTICLES_MODE_3D;
- bool inactive = true;
- double inactive_time = 0.0;
- bool emitting = false;
- bool one_shot = false;
- int amount = 0;
- double lifetime = 1.0;
- double pre_process_time = 0.0;
- real_t explosiveness = 0.0;
- real_t randomness = 0.0;
- bool restart_request = false;
- AABB custom_aabb = AABB(Vector3(-4, -4, -4), Vector3(8, 8, 8));
- bool use_local_coords = true;
- bool has_collision_cache = false;
-
- bool has_sdf_collision = false;
- Transform2D sdf_collision_transform;
- Rect2 sdf_collision_to_screen;
- RID sdf_collision_texture;
-
- RID process_material;
- uint32_t frame_counter = 0;
- RS::ParticlesTransformAlign transform_align = RS::PARTICLES_TRANSFORM_ALIGN_DISABLED;
-
- RS::ParticlesDrawOrder draw_order = RS::PARTICLES_DRAW_ORDER_INDEX;
-
- Vector<RID> draw_passes;
- Vector<Transform3D> trail_bind_poses;
- bool trail_bind_poses_dirty = false;
- RID trail_bind_pose_buffer;
- RID trail_bind_pose_uniform_set;
-
- RID particle_buffer;
- RID particle_instance_buffer;
- RID frame_params_buffer;
-
- RID particles_material_uniform_set;
- RID particles_copy_uniform_set;
- RID particles_transforms_buffer_uniform_set;
- RID collision_textures_uniform_set;
-
- RID collision_3d_textures[ParticlesFrameParams::MAX_3D_TEXTURES];
- uint32_t collision_3d_textures_used = 0;
- RID collision_heightmap_texture;
-
- RID particles_sort_buffer;
- RID particles_sort_uniform_set;
-
- bool dirty = false;
- Particles *update_list = nullptr;
-
- RID sub_emitter;
-
- double phase = 0.0;
- double prev_phase = 0.0;
- uint64_t prev_ticks = 0;
- uint32_t random_seed = 0;
-
- uint32_t cycle_number = 0;
-
- double speed_scale = 1.0;
-
- int fixed_fps = 30;
- bool interpolate = true;
- bool fractional_delta = false;
- double frame_remainder = 0;
- real_t collision_base_size = 0.01;
-
- bool clear = true;
-
- bool force_sub_emit = false;
-
- Transform3D emission_transform;
-
- Vector<uint8_t> emission_buffer_data;
-
- ParticleEmissionBuffer *emission_buffer = nullptr;
- RID emission_storage_buffer;
-
- Set<RID> collisions;
-
- Dependency dependency;
-
- double trail_length = 1.0;
- bool trails_enabled = false;
- LocalVector<ParticlesFrameParams> frame_history;
- LocalVector<ParticlesFrameParams> trail_params;
-
- Particles() {
- }
- };
-
- void _particles_process(Particles *p_particles, double p_delta);
- void _particles_allocate_emission_buffer(Particles *particles);
- void _particles_free_data(Particles *particles);
- void _particles_update_buffers(Particles *particles);
-
- struct ParticlesShader {
- struct PushConstant {
- float lifetime;
- uint32_t clear;
- uint32_t total_particles;
- uint32_t trail_size;
-
- uint32_t use_fractional_delta;
- uint32_t sub_emitter_mode;
- uint32_t can_emit;
- uint32_t trail_pass;
- };
-
- ParticlesShaderRD shader;
- ShaderCompilerRD compiler;
-
- RID default_shader;
- RID default_material;
- RID default_shader_rd;
-
- RID base_uniform_set;
-
- struct CopyPushConstant {
- float sort_direction[3];
- uint32_t total_particles;
-
- uint32_t trail_size;
- uint32_t trail_total;
- float frame_delta;
- float frame_remainder;
-
- float align_up[3];
- uint32_t align_mode;
-
- uint32_t order_by_lifetime;
- uint32_t lifetime_split;
- uint32_t lifetime_reverse;
- uint32_t pad;
- };
-
- enum {
- COPY_MODE_FILL_INSTANCES,
- COPY_MODE_FILL_INSTANCES_2D,
- COPY_MODE_FILL_SORT_BUFFER,
- COPY_MODE_FILL_INSTANCES_WITH_SORT_BUFFER,
- COPY_MODE_MAX,
- };
-
- ParticlesCopyShaderRD copy_shader;
- RID copy_shader_version;
- RID copy_pipelines[COPY_MODE_MAX];
-
- LocalVector<float> pose_update_buffer;
-
- } particles_shader;
-
- Particles *particle_update_list = nullptr;
-
- struct ParticlesShaderData : public ShaderData {
- bool valid;
- RID version;
- bool uses_collision = false;
-
- //PipelineCacheRD pipelines[SKY_VERSION_MAX];
- Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
- Vector<ShaderCompilerRD::GeneratedCode::Texture> texture_uniforms;
-
- Vector<uint32_t> ubo_offsets;
- uint32_t ubo_size;
-
- String path;
- String code;
- Map<StringName, Map<int, RID>> default_texture_params;
-
- RID pipeline;
-
- bool uses_time;
-
- virtual void set_code(const String &p_Code);
- virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
- virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
- virtual void get_instance_param_list(List<RendererStorage::InstanceShaderParam> *p_param_list) const;
- virtual bool is_param_texture(const StringName &p_param) const;
- virtual bool is_animated() const;
- virtual bool casts_shadows() const;
- virtual Variant get_default_parameter(const StringName &p_parameter) const;
- virtual RS::ShaderNativeSourceCode get_native_source_code() const;
-
- ParticlesShaderData();
- virtual ~ParticlesShaderData();
- };
-
- ShaderData *_create_particles_shader_func();
- static RendererStorageRD::ShaderData *_create_particles_shader_funcs() {
- return base_singleton->_create_particles_shader_func();
- }
-
- struct ParticlesMaterialData : public MaterialData {
- uint64_t last_frame = 0;
- ParticlesShaderData *shader_data = nullptr;
- RID uniform_set;
- bool uniform_set_updated = false;
-
- virtual void set_render_priority(int p_priority) {}
- virtual void set_next_pass(RID p_pass) {}
- virtual bool update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty);
- virtual ~ParticlesMaterialData();
- };
-
- MaterialData *_create_particles_material_func(ParticlesShaderData *p_shader);
- static RendererStorageRD::MaterialData *_create_particles_material_funcs(ShaderData *p_shader) {
- return base_singleton->_create_particles_material_func(static_cast<ParticlesShaderData *>(p_shader));
- }
-
- void update_particles();
-
- mutable RID_Owner<Particles, true> particles_owner;
-
- /* Particles Collision */
-
- struct ParticlesCollision {
- RS::ParticlesCollisionType type = RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT;
- uint32_t cull_mask = 0xFFFFFFFF;
- float radius = 1.0;
- Vector3 extents = Vector3(1, 1, 1);
- float attractor_strength = 1.0;
- float attractor_attenuation = 1.0;
- float attractor_directionality = 0.0;
- RID field_texture;
- RID heightfield_texture;
- RID heightfield_fb;
- Size2i heightfield_fb_size;
-
- RS::ParticlesCollisionHeightfieldResolution heightfield_resolution = RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_1024;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<ParticlesCollision, true> particles_collision_owner;
-
- struct ParticlesCollisionInstance {
- RID collision;
- Transform3D transform;
- bool active = false;
- };
-
- mutable RID_Owner<ParticlesCollisionInstance> particles_collision_instance_owner;
-
/* FOG VOLUMES */
struct FogVolume {
@@ -984,103 +147,6 @@ private:
mutable RID_Owner<VisibilityNotifier> visibility_notifier_owner;
- /* Skeleton */
-
- struct Skeleton {
- bool use_2d = false;
- int size = 0;
- Vector<float> data;
- RID buffer;
-
- bool dirty = false;
- Skeleton *dirty_list = nullptr;
- Transform2D base_transform_2d;
-
- RID uniform_set_3d;
- RID uniform_set_mi;
-
- uint64_t version = 1;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<Skeleton, true> skeleton_owner;
-
- _FORCE_INLINE_ void _skeleton_make_dirty(Skeleton *skeleton);
-
- Skeleton *skeleton_dirty_list = nullptr;
-
- void _update_dirty_skeletons();
-
- /* LIGHT */
-
- struct Light {
- RS::LightType type;
- float param[RS::LIGHT_PARAM_MAX];
- Color color = Color(1, 1, 1, 1);
- Color shadow_color;
- RID projector;
- bool shadow = false;
- bool negative = false;
- bool reverse_cull = false;
- RS::LightBakeMode bake_mode = RS::LIGHT_BAKE_DYNAMIC;
- uint32_t max_sdfgi_cascade = 2;
- uint32_t cull_mask = 0xFFFFFFFF;
- RS::LightOmniShadowMode omni_shadow_mode = RS::LIGHT_OMNI_SHADOW_DUAL_PARABOLOID;
- RS::LightDirectionalShadowMode directional_shadow_mode = RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL;
- bool directional_blend_splits = false;
- bool directional_sky_only = false;
- uint64_t version = 0;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<Light, true> light_owner;
-
- /* REFLECTION PROBE */
-
- struct ReflectionProbe {
- RS::ReflectionProbeUpdateMode update_mode = RS::REFLECTION_PROBE_UPDATE_ONCE;
- int resolution = 256;
- float intensity = 1.0;
- RS::ReflectionProbeAmbientMode ambient_mode = RS::REFLECTION_PROBE_AMBIENT_ENVIRONMENT;
- Color ambient_color;
- float ambient_color_energy = 1.0;
- float max_distance = 0;
- Vector3 extents = Vector3(1, 1, 1);
- Vector3 origin_offset;
- bool interior = false;
- bool box_projection = false;
- bool enable_shadows = false;
- uint32_t cull_mask = (1 << 20) - 1;
- float lod_threshold = 0.01;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<ReflectionProbe, true> reflection_probe_owner;
-
- /* DECAL */
-
- struct Decal {
- Vector3 extents = Vector3(1, 1, 1);
- RID textures[RS::DECAL_TEXTURE_MAX];
- float emission_energy = 1.0;
- float albedo_mix = 1.0;
- Color modulate = Color(1, 1, 1, 1);
- uint32_t cull_mask = (1 << 20) - 1;
- float upper_fade = 0.3;
- float lower_fade = 0.3;
- bool distance_fade = false;
- float distance_fade_begin = 10;
- float distance_fade_length = 1;
- float normal_fade = 0.0;
-
- Dependency dependency;
- };
-
- mutable RID_Owner<Decal, true> decal_owner;
-
/* VOXEL GI */
struct VoxelGI {
@@ -1099,7 +165,7 @@ private:
AABB bounds;
Vector3i octree_size;
- float dynamic_range = 4.0;
+ float dynamic_range = 2.0;
float energy = 1.0;
float bias = 1.4;
float normal_bias = 0.0;
@@ -1117,943 +183,14 @@ private:
mutable RID_Owner<VoxelGI, true> voxel_gi_owner;
- /* REFLECTION PROBE */
-
- struct Lightmap {
- RID light_texture;
- bool uses_spherical_harmonics = false;
- bool interior = false;
- AABB bounds = AABB(Vector3(), Vector3(1, 1, 1));
- int32_t array_index = -1; //unassigned
- PackedVector3Array points;
- PackedColorArray point_sh;
- PackedInt32Array tetrahedra;
- PackedInt32Array bsp_tree;
-
- struct BSP {
- static const int32_t EMPTY_LEAF = INT32_MIN;
- float plane[4];
- int32_t over = EMPTY_LEAF, under = EMPTY_LEAF;
- };
-
- Dependency dependency;
- };
-
- bool using_lightmap_array; //high end uses this
- /* for high end */
-
- Vector<RID> lightmap_textures;
-
- uint64_t lightmap_array_version = 0;
-
- mutable RID_Owner<Lightmap, true> lightmap_owner;
-
- float lightmap_probe_capture_update_speed = 4;
-
- /* RENDER TARGET */
-
- struct RenderTarget {
- Size2i size;
- uint32_t view_count;
- RID framebuffer;
- RID color;
-
- //used for retrieving from CPU
- RD::DataFormat color_format = RD::DATA_FORMAT_R4G4_UNORM_PACK8;
- RD::DataFormat color_format_srgb = RD::DATA_FORMAT_R4G4_UNORM_PACK8;
- Image::Format image_format = Image::FORMAT_L8;
-
- bool flags[RENDER_TARGET_FLAG_MAX];
-
- bool sdf_enabled = false;
-
- RID backbuffer; //used for effects
- RID backbuffer_fb;
- RID backbuffer_mipmap0;
-
- struct BackbufferMipmap {
- RID mipmap;
- RID mipmap_copy;
- };
-
- Vector<BackbufferMipmap> backbuffer_mipmaps;
-
- RID framebuffer_uniform_set;
- RID backbuffer_uniform_set;
-
- RID sdf_buffer_write;
- RID sdf_buffer_write_fb;
- RID sdf_buffer_process[2];
- RID sdf_buffer_read;
- RID sdf_buffer_process_uniform_sets[2];
- RS::ViewportSDFOversize sdf_oversize = RS::VIEWPORT_SDF_OVERSIZE_120_PERCENT;
- RS::ViewportSDFScale sdf_scale = RS::VIEWPORT_SDF_SCALE_50_PERCENT;
- Size2i process_size;
-
- //texture generated for this owner (nor RD).
- RID texture;
- bool was_used;
-
- //clear request
- bool clear_requested;
- Color clear_color;
- };
-
- mutable RID_Owner<RenderTarget> render_target_owner;
-
- void _clear_render_target(RenderTarget *rt);
- void _update_render_target(RenderTarget *rt);
- void _create_render_target_backbuffer(RenderTarget *rt);
- void _render_target_allocate_sdf(RenderTarget *rt);
- void _render_target_clear_sdf(RenderTarget *rt);
- Rect2i _render_target_get_sdf_rect(const RenderTarget *rt) const;
-
- struct RenderTargetSDF {
- enum {
- SHADER_LOAD,
- SHADER_LOAD_SHRINK,
- SHADER_PROCESS,
- SHADER_PROCESS_OPTIMIZED,
- SHADER_STORE,
- SHADER_STORE_SHRINK,
- SHADER_MAX
- };
-
- struct PushConstant {
- int32_t size[2];
- int32_t stride;
- int32_t shift;
- int32_t base_size[2];
- int32_t pad[2];
- };
-
- CanvasSdfShaderRD shader;
- RID shader_version;
- RID pipelines[SHADER_MAX];
- } rt_sdf;
-
- /* GLOBAL SHADER VARIABLES */
-
- struct GlobalVariables {
- enum {
- BUFFER_DIRTY_REGION_SIZE = 1024
- };
- struct Variable {
- Set<RID> texture_materials; // materials using this
-
- RS::GlobalVariableType type;
- Variant value;
- Variant override;
- int32_t buffer_index; //for vectors
- int32_t buffer_elements; //for vectors
- };
-
- HashMap<StringName, Variable> variables;
-
- struct Value {
- float x;
- float y;
- float z;
- float w;
- };
-
- struct ValueInt {
- int32_t x;
- int32_t y;
- int32_t z;
- int32_t w;
- };
-
- struct ValueUInt {
- uint32_t x;
- uint32_t y;
- uint32_t z;
- uint32_t w;
- };
-
- struct ValueUsage {
- uint32_t elements = 0;
- };
-
- List<RID> materials_using_buffer;
- List<RID> materials_using_texture;
-
- RID buffer;
- Value *buffer_values;
- ValueUsage *buffer_usage;
- bool *buffer_dirty_regions;
- uint32_t buffer_dirty_region_count = 0;
-
- uint32_t buffer_size;
-
- bool must_update_texture_materials = false;
- bool must_update_buffer_materials = false;
-
- HashMap<RID, int32_t> instance_buffer_pos;
-
- } global_variables;
-
- int32_t _global_variable_allocate(uint32_t p_elements);
- void _global_variable_store_in_buffer(int32_t p_index, RS::GlobalVariableType p_type, const Variant &p_value);
- void _global_variable_mark_buffer_dirty(int32_t p_index, int32_t p_elements);
-
- void _update_global_variables();
/* EFFECTS */
EffectsRD *effects = nullptr;
public:
- virtual bool can_create_resources_async() const;
-
- /* TEXTURE API */
-
- virtual RID texture_allocate();
-
- virtual void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image);
- virtual void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type);
- virtual void texture_3d_initialize(RID p_texture, Image::Format p_format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data); //all slices, then all the mipmaps, must be coherent
- virtual void texture_proxy_initialize(RID p_texture, RID p_base);
-
- virtual void _texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer, bool p_immediate);
-
- virtual void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0);
- virtual void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data);
- virtual void texture_proxy_update(RID p_texture, RID p_proxy_to);
-
- //these two APIs can be used together or in combination with the others.
- virtual void texture_2d_placeholder_initialize(RID p_texture);
- virtual void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type);
- virtual void texture_3d_placeholder_initialize(RID p_texture);
-
- virtual Ref<Image> texture_2d_get(RID p_texture) const;
- virtual Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const;
- virtual Vector<Ref<Image>> texture_3d_get(RID p_texture) const;
-
- virtual void texture_replace(RID p_texture, RID p_by_texture);
- virtual void texture_set_size_override(RID p_texture, int p_width, int p_height);
-
- virtual void texture_set_path(RID p_texture, const String &p_path);
- virtual String texture_get_path(RID p_texture) const;
-
- virtual void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata);
- virtual void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata);
- virtual void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata);
-
- virtual void texture_debug_usage(List<RS::TextureInfo> *r_info);
-
- virtual void texture_set_proxy(RID p_proxy, RID p_base);
- virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable);
-
- virtual Size2 texture_size_with_proxy(RID p_proxy);
-
- virtual void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false);
- virtual void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false);
-
- RID decal_atlas_get_texture() const;
- RID decal_atlas_get_texture_srgb() const;
- _FORCE_INLINE_ Rect2 decal_atlas_get_texture_rect(RID p_texture) {
- DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
- if (!t) {
- return Rect2();
- }
-
- return t->uv_rect;
- }
-
//internal usage
- _FORCE_INLINE_ RID texture_get_rd_texture(RID p_texture, bool p_srgb = false) {
- if (p_texture.is_null()) {
- return RID();
- }
- Texture *tex = texture_owner.get_or_null(p_texture);
-
- if (!tex) {
- return RID();
- }
- return (p_srgb && tex->rd_texture_srgb.is_valid()) ? tex->rd_texture_srgb : tex->rd_texture;
- }
-
- _FORCE_INLINE_ Size2i texture_2d_get_size(RID p_texture) {
- if (p_texture.is_null()) {
- return Size2i();
- }
- Texture *tex = texture_owner.get_or_null(p_texture);
-
- if (!tex) {
- return Size2i();
- }
- return Size2i(tex->width_2d, tex->height_2d);
- }
-
- _FORCE_INLINE_ RID texture_rd_get_default(DefaultRDTexture p_texture) {
- return default_rd_textures[p_texture];
- }
- _FORCE_INLINE_ RID sampler_rd_get_default(RS::CanvasItemTextureFilter p_filter, RS::CanvasItemTextureRepeat p_repeat) {
- return default_rd_samplers[p_filter][p_repeat];
- }
- _FORCE_INLINE_ RID sampler_rd_get_custom(RS::CanvasItemTextureFilter p_filter, RS::CanvasItemTextureRepeat p_repeat) {
- return custom_rd_samplers[p_filter][p_repeat];
- }
-
- void sampler_rd_configure_custom(float mipmap_bias);
-
- void sampler_rd_set_default(float p_mipmap_bias);
-
- /* CANVAS TEXTURE API */
-
- RID canvas_texture_allocate();
- void canvas_texture_initialize(RID p_canvas_texture);
-
- virtual void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture);
- virtual void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_specular_color, float p_shininess);
-
- virtual void canvas_texture_set_texture_filter(RID p_canvas_texture, RS::CanvasItemTextureFilter p_filter);
- virtual void canvas_texture_set_texture_repeat(RID p_canvas_texture, RS::CanvasItemTextureRepeat p_repeat);
-
- bool canvas_texture_get_uniform_set(RID p_texture, RS::CanvasItemTextureFilter p_base_filter, RS::CanvasItemTextureRepeat p_base_repeat, RID p_base_shader, int p_base_set, RID &r_uniform_set, Size2i &r_size, Color &r_specular_shininess, bool &r_use_normal, bool &r_use_specular);
-
- /* SHADER API */
-
- RID shader_allocate();
- void shader_initialize(RID p_shader);
-
- void shader_set_code(RID p_shader, const String &p_code);
- String shader_get_code(RID p_shader) const;
- void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const;
-
- void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index);
- RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const;
- Variant shader_get_param_default(RID p_shader, const StringName &p_param) const;
- void shader_set_data_request_function(ShaderType p_shader_type, ShaderDataRequestFunction p_function);
-
- virtual RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const;
-
- /* COMMON MATERIAL API */
-
- RID material_allocate();
- void material_initialize(RID p_material);
-
- void material_set_shader(RID p_material, RID p_shader);
-
- void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value);
- Variant material_get_param(RID p_material, const StringName &p_param) const;
-
- void material_set_next_pass(RID p_material, RID p_next_material);
- void material_set_render_priority(RID p_material, int priority);
-
- bool material_is_animated(RID p_material);
- bool material_casts_shadows(RID p_material);
-
- void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters);
-
- void material_update_dependency(RID p_material, DependencyTracker *p_instance);
- void material_force_update_textures(RID p_material, ShaderType p_shader_type);
-
- void material_set_data_request_function(ShaderType p_shader_type, MaterialDataRequestFunction p_function);
-
- _FORCE_INLINE_ uint32_t material_get_shader_id(RID p_material) {
- Material *material = material_owner.get_or_null(p_material);
- return material->shader_id;
- }
-
- _FORCE_INLINE_ MaterialData *material_get_data(RID p_material, ShaderType p_shader_type) {
- Material *material = material_owner.get_or_null(p_material);
- if (!material || material->shader_type != p_shader_type) {
- return nullptr;
- } else {
- return material->data;
- }
- }
-
- /* MESH API */
-
- RID mesh_allocate();
- void mesh_initialize(RID p_mesh);
-
- virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count);
-
- /// Return stride
- virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface);
-
- virtual int mesh_get_blend_shape_count(RID p_mesh) const;
-
- virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode);
- virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const;
-
- virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data);
- virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data);
- virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data);
-
- virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material);
- virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const;
-
- virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const;
-
- virtual int mesh_get_surface_count(RID p_mesh) const;
-
- virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb);
- virtual AABB mesh_get_custom_aabb(RID p_mesh) const;
-
- virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID());
- virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh);
-
- virtual void mesh_clear(RID p_mesh);
-
- virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton);
-
- /* MESH INSTANCE */
-
- virtual RID mesh_instance_create(RID p_base);
- virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton);
- virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight);
- virtual void mesh_instance_check_for_update(RID p_mesh_instance);
- virtual void update_mesh_instances();
-
- _FORCE_INLINE_ const RID *mesh_get_surface_count_and_materials(RID p_mesh, uint32_t &r_surface_count) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, nullptr);
- r_surface_count = mesh->surface_count;
- if (r_surface_count == 0) {
- return nullptr;
- }
- if (mesh->material_cache.is_empty()) {
- mesh->material_cache.resize(mesh->surface_count);
- for (uint32_t i = 0; i < r_surface_count; i++) {
- mesh->material_cache.write[i] = mesh->surfaces[i]->material;
- }
- }
-
- return mesh->material_cache.ptr();
- }
-
- _FORCE_INLINE_ void *mesh_get_surface(RID p_mesh, uint32_t p_surface_index) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, nullptr);
- ERR_FAIL_UNSIGNED_INDEX_V(p_surface_index, mesh->surface_count, nullptr);
-
- return mesh->surfaces[p_surface_index];
- }
-
- _FORCE_INLINE_ RID mesh_get_shadow_mesh(RID p_mesh) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- ERR_FAIL_COND_V(!mesh, RID());
-
- return mesh->shadow_mesh;
- }
-
- _FORCE_INLINE_ RS::PrimitiveType mesh_surface_get_primitive(void *p_surface) {
- Mesh::Surface *surface = reinterpret_cast<Mesh::Surface *>(p_surface);
- return surface->primitive;
- }
-
- _FORCE_INLINE_ bool mesh_surface_has_lod(void *p_surface) const {
- Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
- return s->lod_count > 0;
- }
-
- _FORCE_INLINE_ uint32_t mesh_surface_get_vertices_drawn_count(void *p_surface) const {
- Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
- return s->index_count ? s->index_count : s->vertex_count;
- }
-
- _FORCE_INLINE_ uint32_t mesh_surface_get_lod(void *p_surface, float p_model_scale, float p_distance_threshold, float p_lod_threshold, uint32_t *r_index_count = nullptr) const {
- Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
-
- int32_t current_lod = -1;
- if (r_index_count) {
- *r_index_count = s->index_count;
- }
- for (uint32_t i = 0; i < s->lod_count; i++) {
- float screen_size = s->lods[i].edge_length * p_model_scale / p_distance_threshold;
- if (screen_size > p_lod_threshold) {
- break;
- }
- current_lod = i;
- }
- if (current_lod == -1) {
- return 0;
- } else {
- if (r_index_count) {
- *r_index_count = s->lods[current_lod].index_count;
- }
- return current_lod + 1;
- }
- }
-
- _FORCE_INLINE_ RID mesh_surface_get_index_array(void *p_surface, uint32_t p_lod) const {
- Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
-
- if (p_lod == 0) {
- return s->index_array;
- } else {
- return s->lods[p_lod - 1].index_array;
- }
- }
-
- _FORCE_INLINE_ void mesh_surface_get_vertex_arrays_and_format(void *p_surface, uint32_t p_input_mask, RID &r_vertex_array_rd, RD::VertexFormatID &r_vertex_format) {
- Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
-
- s->version_lock.lock();
-
- //there will never be more than, at much, 3 or 4 versions, so iterating is the fastest way
-
- for (uint32_t i = 0; i < s->version_count; i++) {
- if (s->versions[i].input_mask != p_input_mask) {
- continue;
- }
- //we have this version, hooray
- r_vertex_format = s->versions[i].vertex_format;
- r_vertex_array_rd = s->versions[i].vertex_array;
- s->version_lock.unlock();
- return;
- }
-
- uint32_t version = s->version_count;
- s->version_count++;
- s->versions = (Mesh::Surface::Version *)memrealloc(s->versions, sizeof(Mesh::Surface::Version) * s->version_count);
-
- _mesh_surface_generate_version_for_input_mask(s->versions[version], s, p_input_mask);
-
- r_vertex_format = s->versions[version].vertex_format;
- r_vertex_array_rd = s->versions[version].vertex_array;
-
- s->version_lock.unlock();
- }
-
- _FORCE_INLINE_ void mesh_instance_surface_get_vertex_arrays_and_format(RID p_mesh_instance, uint32_t p_surface_index, uint32_t p_input_mask, RID &r_vertex_array_rd, RD::VertexFormatID &r_vertex_format) {
- MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
- ERR_FAIL_COND(!mi);
- Mesh *mesh = mi->mesh;
- ERR_FAIL_UNSIGNED_INDEX(p_surface_index, mesh->surface_count);
-
- MeshInstance::Surface *mis = &mi->surfaces[p_surface_index];
- Mesh::Surface *s = mesh->surfaces[p_surface_index];
-
- s->version_lock.lock();
-
- //there will never be more than, at much, 3 or 4 versions, so iterating is the fastest way
-
- for (uint32_t i = 0; i < mis->version_count; i++) {
- if (mis->versions[i].input_mask != p_input_mask) {
- continue;
- }
- //we have this version, hooray
- r_vertex_format = mis->versions[i].vertex_format;
- r_vertex_array_rd = mis->versions[i].vertex_array;
- s->version_lock.unlock();
- return;
- }
-
- uint32_t version = mis->version_count;
- mis->version_count++;
- mis->versions = (Mesh::Surface::Version *)memrealloc(mis->versions, sizeof(Mesh::Surface::Version) * mis->version_count);
-
- _mesh_surface_generate_version_for_input_mask(mis->versions[version], s, p_input_mask, mis);
-
- r_vertex_format = mis->versions[version].vertex_format;
- r_vertex_array_rd = mis->versions[version].vertex_array;
-
- s->version_lock.unlock();
- }
-
- _FORCE_INLINE_ RID mesh_get_default_rd_buffer(DefaultRDBuffer p_buffer) {
- ERR_FAIL_INDEX_V(p_buffer, DEFAULT_RD_BUFFER_MAX, RID());
- return mesh_default_rd_buffers[p_buffer];
- }
-
- _FORCE_INLINE_ uint32_t mesh_surface_get_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- Mesh::Surface *s = mesh->surfaces[p_surface_index];
-
- if (s->render_pass != p_render_pass) {
- (*r_index)++;
- s->render_pass = p_render_pass;
- s->render_index = *r_index;
- }
-
- return s->render_index;
- }
-
- _FORCE_INLINE_ uint32_t mesh_surface_get_multimesh_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- Mesh::Surface *s = mesh->surfaces[p_surface_index];
-
- if (s->multimesh_render_pass != p_render_pass) {
- (*r_index)++;
- s->multimesh_render_pass = p_render_pass;
- s->multimesh_render_index = *r_index;
- }
-
- return s->multimesh_render_index;
- }
-
- _FORCE_INLINE_ uint32_t mesh_surface_get_particles_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
- Mesh *mesh = mesh_owner.get_or_null(p_mesh);
- Mesh::Surface *s = mesh->surfaces[p_surface_index];
-
- if (s->particles_render_pass != p_render_pass) {
- (*r_index)++;
- s->particles_render_pass = p_render_pass;
- s->particles_render_index = *r_index;
- }
-
- return s->particles_render_index;
- }
-
- /* MULTIMESH API */
-
- RID multimesh_allocate();
- void multimesh_initialize(RID p_multimesh);
-
- void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false);
- int multimesh_get_instance_count(RID p_multimesh) const;
-
- void multimesh_set_mesh(RID p_multimesh, RID p_mesh);
- void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform);
- void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform);
- void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color);
- void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color);
-
- RID multimesh_get_mesh(RID p_multimesh) const;
-
- Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const;
- Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const;
- Color multimesh_instance_get_color(RID p_multimesh, int p_index) const;
- Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const;
-
- void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer);
- Vector<float> multimesh_get_buffer(RID p_multimesh) const;
-
- void multimesh_set_visible_instances(RID p_multimesh, int p_visible);
- int multimesh_get_visible_instances(RID p_multimesh) const;
-
- AABB multimesh_get_aabb(RID p_multimesh) const;
-
- _FORCE_INLINE_ RS::MultimeshTransformFormat multimesh_get_transform_format(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- return multimesh->xform_format;
- }
-
- _FORCE_INLINE_ bool multimesh_uses_colors(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- return multimesh->uses_colors;
- }
-
- _FORCE_INLINE_ bool multimesh_uses_custom_data(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- return multimesh->uses_custom_data;
- }
-
- _FORCE_INLINE_ uint32_t multimesh_get_instances_to_draw(RID p_multimesh) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- if (multimesh->visible_instances >= 0) {
- return multimesh->visible_instances;
- }
- return multimesh->instances;
- }
-
- _FORCE_INLINE_ RID multimesh_get_3d_uniform_set(RID p_multimesh, RID p_shader, uint32_t p_set) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- if (!multimesh->uniform_set_3d.is_valid()) {
- Vector<RD::Uniform> uniforms;
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(multimesh->buffer);
- uniforms.push_back(u);
- multimesh->uniform_set_3d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
- }
-
- return multimesh->uniform_set_3d;
- }
-
- _FORCE_INLINE_ RID multimesh_get_2d_uniform_set(RID p_multimesh, RID p_shader, uint32_t p_set) const {
- MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
- if (!multimesh->uniform_set_2d.is_valid()) {
- Vector<RD::Uniform> uniforms;
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(multimesh->buffer);
- uniforms.push_back(u);
- multimesh->uniform_set_2d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
- }
-
- return multimesh->uniform_set_2d;
- }
-
- /* SKELETON API */
-
- RID skeleton_allocate();
- void skeleton_initialize(RID p_skeleton);
-
- void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false);
- void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform);
- void skeleton_set_world_transform(RID p_skeleton, bool p_enable, const Transform3D &p_world_transform);
- int skeleton_get_bone_count(RID p_skeleton) const;
- void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform);
- Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const;
- void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform);
- Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const;
-
- _FORCE_INLINE_ bool skeleton_is_valid(RID p_skeleton) {
- return skeleton_owner.get_or_null(p_skeleton) != nullptr;
- }
-
- _FORCE_INLINE_ RID skeleton_get_3d_uniform_set(RID p_skeleton, RID p_shader, uint32_t p_set) const {
- Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
- ERR_FAIL_COND_V(!skeleton, RID());
- ERR_FAIL_COND_V(skeleton->size == 0, RID());
- if (skeleton->use_2d) {
- return RID();
- }
- if (!skeleton->uniform_set_3d.is_valid()) {
- Vector<RD::Uniform> uniforms;
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(skeleton->buffer);
- uniforms.push_back(u);
- skeleton->uniform_set_3d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
- }
-
- return skeleton->uniform_set_3d;
- }
- /* Light API */
-
- void _light_initialize(RID p_rid, RS::LightType p_type);
-
- RID directional_light_allocate();
- void directional_light_initialize(RID p_light);
-
- RID omni_light_allocate();
- void omni_light_initialize(RID p_light);
-
- RID spot_light_allocate();
- void spot_light_initialize(RID p_light);
-
- void light_set_color(RID p_light, const Color &p_color);
- void light_set_param(RID p_light, RS::LightParam p_param, float p_value);
- void light_set_shadow(RID p_light, bool p_enabled);
- void light_set_shadow_color(RID p_light, const Color &p_color);
- void light_set_projector(RID p_light, RID p_texture);
- void light_set_negative(RID p_light, bool p_enable);
- void light_set_cull_mask(RID p_light, uint32_t p_mask);
- void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled);
- void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode);
- void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade);
-
- void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode);
-
- void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode);
- void light_directional_set_blend_splits(RID p_light, bool p_enable);
- bool light_directional_get_blend_splits(RID p_light) const;
- void light_directional_set_sky_only(RID p_light, bool p_sky_only);
- bool light_directional_is_sky_only(RID p_light) const;
-
- RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light);
- RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light);
-
- _FORCE_INLINE_ RS::LightType light_get_type(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
-
- return light->type;
- }
- AABB light_get_aabb(RID p_light) const;
-
- _FORCE_INLINE_ float light_get_param(RID p_light, RS::LightParam p_param) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0);
-
- return light->param[p_param];
- }
-
- _FORCE_INLINE_ RID light_get_projector(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RID());
-
- return light->projector;
- }
-
- _FORCE_INLINE_ Color light_get_color(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, Color());
-
- return light->color;
- }
-
- _FORCE_INLINE_ Color light_get_shadow_color(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, Color());
-
- return light->shadow_color;
- }
-
- _FORCE_INLINE_ uint32_t light_get_cull_mask(RID p_light) {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0);
-
- return light->cull_mask;
- }
-
- _FORCE_INLINE_ bool light_has_shadow(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
-
- return light->shadow;
- }
-
- _FORCE_INLINE_ bool light_has_projector(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
-
- return texture_owner.owns(light->projector);
- }
-
- _FORCE_INLINE_ bool light_is_negative(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
-
- return light->negative;
- }
-
- _FORCE_INLINE_ float light_get_transmittance_bias(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0.0);
-
- return light->param[RS::LIGHT_PARAM_TRANSMITTANCE_BIAS];
- }
-
- _FORCE_INLINE_ float light_get_shadow_volumetric_fog_fade(RID p_light) const {
- const Light *light = light_owner.get_or_null(p_light);
- ERR_FAIL_COND_V(!light, 0.0);
-
- return light->param[RS::LIGHT_PARAM_SHADOW_VOLUMETRIC_FOG_FADE];
- }
-
- RS::LightBakeMode light_get_bake_mode(RID p_light);
- uint32_t light_get_max_sdfgi_cascade(RID p_light);
- uint64_t light_get_version(RID p_light) const;
-
- /* PROBE API */
-
- RID reflection_probe_allocate();
- void reflection_probe_initialize(RID p_reflection_probe);
-
- void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode);
- void reflection_probe_set_intensity(RID p_probe, float p_intensity);
- void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode);
- void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color);
- void reflection_probe_set_ambient_energy(RID p_probe, float p_energy);
- void reflection_probe_set_max_distance(RID p_probe, float p_distance);
- void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents);
- void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset);
- void reflection_probe_set_as_interior(RID p_probe, bool p_enable);
- void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable);
- void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable);
- void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers);
- void reflection_probe_set_resolution(RID p_probe, int p_resolution);
- void reflection_probe_set_lod_threshold(RID p_probe, float p_ratio);
-
- AABB reflection_probe_get_aabb(RID p_probe) const;
- RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const;
- uint32_t reflection_probe_get_cull_mask(RID p_probe) const;
- Vector3 reflection_probe_get_extents(RID p_probe) const;
- Vector3 reflection_probe_get_origin_offset(RID p_probe) const;
- float reflection_probe_get_origin_max_distance(RID p_probe) const;
- float reflection_probe_get_lod_threshold(RID p_probe) const;
-
- int reflection_probe_get_resolution(RID p_probe) const;
- bool reflection_probe_renders_shadows(RID p_probe) const;
-
- float reflection_probe_get_intensity(RID p_probe) const;
- bool reflection_probe_is_interior(RID p_probe) const;
- bool reflection_probe_is_box_projection(RID p_probe) const;
- RS::ReflectionProbeAmbientMode reflection_probe_get_ambient_mode(RID p_probe) const;
- Color reflection_probe_get_ambient_color(RID p_probe) const;
- float reflection_probe_get_ambient_color_energy(RID p_probe) const;
-
void base_update_dependency(RID p_base, DependencyTracker *p_instance);
- void skeleton_update_dependency(RID p_skeleton, DependencyTracker *p_instance);
-
- /* DECAL API */
-
- RID decal_allocate();
- void decal_initialize(RID p_decal);
-
- virtual void decal_set_extents(RID p_decal, const Vector3 &p_extents);
- virtual void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture);
- virtual void decal_set_emission_energy(RID p_decal, float p_energy);
- virtual void decal_set_albedo_mix(RID p_decal, float p_mix);
- virtual void decal_set_modulate(RID p_decal, const Color &p_modulate);
- virtual void decal_set_cull_mask(RID p_decal, uint32_t p_layers);
- virtual void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length);
- virtual void decal_set_fade(RID p_decal, float p_above, float p_below);
- virtual void decal_set_normal_fade(RID p_decal, float p_fade);
-
- _FORCE_INLINE_ Vector3 decal_get_extents(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->extents;
- }
-
- _FORCE_INLINE_ RID decal_get_texture(RID p_decal, RS::DecalTexture p_texture) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->textures[p_texture];
- }
-
- _FORCE_INLINE_ Color decal_get_modulate(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->modulate;
- }
-
- _FORCE_INLINE_ float decal_get_emission_energy(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->emission_energy;
- }
-
- _FORCE_INLINE_ float decal_get_albedo_mix(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->albedo_mix;
- }
-
- _FORCE_INLINE_ uint32_t decal_get_cull_mask(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->cull_mask;
- }
-
- _FORCE_INLINE_ float decal_get_upper_fade(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->upper_fade;
- }
-
- _FORCE_INLINE_ float decal_get_lower_fade(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->lower_fade;
- }
-
- _FORCE_INLINE_ float decal_get_normal_fade(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->normal_fade;
- }
-
- _FORCE_INLINE_ bool decal_is_distance_fade_enabled(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->distance_fade;
- }
-
- _FORCE_INLINE_ float decal_get_distance_fade_begin(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->distance_fade_begin;
- }
-
- _FORCE_INLINE_ float decal_get_distance_fade_length(RID p_decal) {
- const Decal *decal = decal_owner.get_or_null(p_decal);
- return decal->distance_fade_length;
- }
-
- virtual AABB decal_get_aabb(RID p_decal) const;
/* VOXEL GI API */
@@ -2103,185 +240,6 @@ public:
RID voxel_gi_get_sdf_texture(RID p_voxel_gi);
- /* LIGHTMAP CAPTURE */
-
- RID lightmap_allocate();
- void lightmap_initialize(RID p_lightmap);
-
- virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics);
- virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds);
- virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior);
- virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree);
- virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const;
- virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const;
- virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const;
- virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const;
- virtual AABB lightmap_get_aabb(RID p_lightmap) const;
- virtual bool lightmap_is_interior(RID p_lightmap) const;
- virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh);
- virtual void lightmap_set_probe_capture_update_speed(float p_speed);
- _FORCE_INLINE_ float lightmap_get_probe_capture_update_speed() const {
- return lightmap_probe_capture_update_speed;
- }
- _FORCE_INLINE_ RID lightmap_get_texture(RID p_lightmap) const {
- const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- ERR_FAIL_COND_V(!lm, RID());
- return lm->light_texture;
- }
- _FORCE_INLINE_ int32_t lightmap_get_array_index(RID p_lightmap) const {
- ERR_FAIL_COND_V(!using_lightmap_array, -1); //only for arrays
- const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- return lm->array_index;
- }
- _FORCE_INLINE_ bool lightmap_uses_spherical_harmonics(RID p_lightmap) const {
- ERR_FAIL_COND_V(!using_lightmap_array, false); //only for arrays
- const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
- return lm->uses_spherical_harmonics;
- }
- _FORCE_INLINE_ uint64_t lightmap_array_get_version() const {
- ERR_FAIL_COND_V(!using_lightmap_array, 0); //only for arrays
- return lightmap_array_version;
- }
-
- _FORCE_INLINE_ int lightmap_array_get_size() const {
- ERR_FAIL_COND_V(!using_lightmap_array, 0); //only for arrays
- return lightmap_textures.size();
- }
-
- _FORCE_INLINE_ const Vector<RID> &lightmap_array_get_textures() const {
- ERR_FAIL_COND_V(!using_lightmap_array, lightmap_textures); //only for arrays
- return lightmap_textures;
- }
-
- /* PARTICLES */
-
- RID particles_allocate();
- void particles_initialize(RID p_particles_collision);
-
- void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode);
- void particles_set_emitting(RID p_particles, bool p_emitting);
- void particles_set_amount(RID p_particles, int p_amount);
- void particles_set_lifetime(RID p_particles, double p_lifetime);
- void particles_set_one_shot(RID p_particles, bool p_one_shot);
- void particles_set_pre_process_time(RID p_particles, double p_time);
- void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio);
- void particles_set_randomness_ratio(RID p_particles, real_t p_ratio);
- void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb);
- void particles_set_speed_scale(RID p_particles, double p_scale);
- void particles_set_use_local_coordinates(RID p_particles, bool p_enable);
- void particles_set_process_material(RID p_particles, RID p_material);
- void particles_set_fixed_fps(RID p_particles, int p_fps);
- void particles_set_interpolate(RID p_particles, bool p_enable);
- void particles_set_fractional_delta(RID p_particles, bool p_enable);
- void particles_set_collision_base_size(RID p_particles, real_t p_size);
- void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align);
-
- void particles_set_trails(RID p_particles, bool p_enable, double p_length);
- void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses);
-
- void particles_restart(RID p_particles);
- void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags);
-
- void particles_set_subemitter(RID p_particles, RID p_subemitter_particles);
-
- void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order);
-
- void particles_set_draw_passes(RID p_particles, int p_count);
- void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh);
-
- void particles_request_process(RID p_particles);
- AABB particles_get_current_aabb(RID p_particles);
- AABB particles_get_aabb(RID p_particles) const;
-
- void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform);
-
- bool particles_get_emitting(RID p_particles);
- int particles_get_draw_passes(RID p_particles) const;
- RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const;
-
- void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis);
-
- virtual bool particles_is_inactive(RID p_particles) const;
-
- _FORCE_INLINE_ RS::ParticlesMode particles_get_mode(RID p_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, RS::PARTICLES_MODE_2D);
- return particles->mode;
- }
-
- _FORCE_INLINE_ uint32_t particles_get_amount(RID p_particles, uint32_t &r_trail_divisor) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, 0);
-
- if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
- r_trail_divisor = particles->trail_bind_poses.size();
- } else {
- r_trail_divisor = 1;
- }
-
- return particles->amount * r_trail_divisor;
- }
-
- _FORCE_INLINE_ bool particles_has_collision(RID p_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, 0);
-
- return particles->has_collision_cache;
- }
-
- _FORCE_INLINE_ uint32_t particles_is_using_local_coords(RID p_particles) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, false);
-
- return particles->use_local_coords;
- }
-
- _FORCE_INLINE_ RID particles_get_instance_buffer_uniform_set(RID p_particles, RID p_shader, uint32_t p_set) {
- Particles *particles = particles_owner.get_or_null(p_particles);
- ERR_FAIL_COND_V(!particles, RID());
- if (particles->particles_transforms_buffer_uniform_set.is_null()) {
- _particles_update_buffers(particles);
-
- Vector<RD::Uniform> uniforms;
-
- {
- RD::Uniform u;
- u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
- u.binding = 0;
- u.ids.push_back(particles->particle_instance_buffer);
- uniforms.push_back(u);
- }
-
- particles->particles_transforms_buffer_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
- }
-
- return particles->particles_transforms_buffer_uniform_set;
- }
-
- virtual void particles_add_collision(RID p_particles, RID p_particles_collision_instance);
- virtual void particles_remove_collision(RID p_particles, RID p_particles_collision_instance);
- virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture);
-
- /* PARTICLES COLLISION */
-
- RID particles_collision_allocate();
- void particles_collision_initialize(RID p_particles_collision);
-
- virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type);
- virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask);
- virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius); //for spheres
- virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents); //for non-spheres
- virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength);
- virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality);
- virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve);
- virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture); //for SDF and vector field, heightfield is dynamic
- virtual void particles_collision_height_field_update(RID p_particles_collision); //for SDF and vector field
- virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution); //for SDF and vector field
- virtual AABB particles_collision_get_aabb(RID p_particles_collision) const;
- virtual Vector3 particles_collision_get_extents(RID p_particles_collision) const;
- virtual bool particles_collision_is_heightfield(RID p_particles_collision) const;
- RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const;
-
/* FOG VOLUMES */
virtual RID fog_volume_allocate();
@@ -2305,74 +263,6 @@ public:
virtual AABB visibility_notifier_get_aabb(RID p_notifier) const;
virtual void visibility_notifier_call(RID p_notifier, bool p_enter, bool p_deferred);
- //used from 2D and 3D
- virtual RID particles_collision_instance_create(RID p_collision);
- virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform);
- virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active);
-
- /* GLOBAL VARIABLES API */
-
- virtual void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value);
- virtual void global_variable_remove(const StringName &p_name);
- virtual Vector<StringName> global_variable_get_list() const;
-
- virtual void global_variable_set(const StringName &p_name, const Variant &p_value);
- virtual void global_variable_set_override(const StringName &p_name, const Variant &p_value);
- virtual Variant global_variable_get(const StringName &p_name) const;
- virtual RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const;
- RS::GlobalVariableType global_variable_get_type_internal(const StringName &p_name) const;
-
- virtual void global_variables_load_settings(bool p_load_textures = true);
- virtual void global_variables_clear();
-
- virtual int32_t global_variables_instance_allocate(RID p_instance);
- virtual void global_variables_instance_free(RID p_instance);
- virtual void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value);
-
- RID global_variables_get_storage_buffer() const;
-
- /* RENDER TARGET API */
-
- RID render_target_create();
- void render_target_set_position(RID p_render_target, int p_x, int p_y);
- void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count);
- RID render_target_get_texture(RID p_render_target);
- void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id);
- void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value);
- bool render_target_was_used(RID p_render_target);
- void render_target_set_as_unused(RID p_render_target);
- void render_target_copy_to_back_buffer(RID p_render_target, const Rect2i &p_region, bool p_gen_mipmaps);
- void render_target_clear_back_buffer(RID p_render_target, const Rect2i &p_region, const Color &p_color);
- void render_target_gen_back_buffer_mipmaps(RID p_render_target, const Rect2i &p_region);
-
- RID render_target_get_back_buffer_uniform_set(RID p_render_target, RID p_base_shader);
-
- virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color);
- virtual bool render_target_is_clear_requested(RID p_render_target);
- virtual Color render_target_get_clear_request_color(RID p_render_target);
- virtual void render_target_disable_clear_request(RID p_render_target);
- virtual void render_target_do_clear_request(RID p_render_target);
-
- virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale);
- RID render_target_get_sdf_texture(RID p_render_target);
- RID render_target_get_sdf_framebuffer(RID p_render_target);
- void render_target_sdf_process(RID p_render_target);
- virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const;
- void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled);
- bool render_target_is_sdf_enabled(RID p_render_target) const;
-
- Size2 render_target_get_size(RID p_render_target);
- RID render_target_get_rd_framebuffer(RID p_render_target);
- RID render_target_get_rd_texture(RID p_render_target);
- RID render_target_get_rd_backbuffer(RID p_render_target);
- RID render_target_get_rd_backbuffer_framebuffer(RID p_render_target);
-
- RID render_target_get_framebuffer_uniform_set(RID p_render_target);
- RID render_target_get_backbuffer_uniform_set(RID p_render_target);
-
- void render_target_set_framebuffer_uniform_set(RID p_render_target, RID p_uniform_set);
- void render_target_set_backbuffer_uniform_set(RID p_render_target, RID p_uniform_set);
-
RS::InstanceType get_base_type(RID p_rid) const;
bool free(RID p_rid);
@@ -2393,6 +283,8 @@ public:
String get_video_adapter_name() const;
String get_video_adapter_vendor() const;
+ RenderingDevice::DeviceType get_video_adapter_type() const;
+ String get_video_adapter_api_version() const;
virtual void capture_timestamps_begin();
virtual void capture_timestamp(const String &p_name);
@@ -2402,8 +294,6 @@ public:
virtual uint64_t get_captured_timestamp_cpu_time(uint32_t p_index) const;
virtual String get_captured_timestamp_name(uint32_t p_index) const;
- RID get_default_rd_storage_buffer() { return default_rd_storage_buffer; }
-
static RendererStorageRD *base_singleton;
void init_effects(bool p_prefer_raster_effects);
diff --git a/servers/rendering/renderer_rd/shader_rd.cpp b/servers/rendering/renderer_rd/shader_rd.cpp
index 438e78ba8c..fdfecf2d2c 100644
--- a/servers/rendering/renderer_rd/shader_rd.cpp
+++ b/servers/rendering/renderer_rd/shader_rd.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -382,8 +382,8 @@ bool ShaderRD::_load_from_cache(Version *p_version) {
String sha1 = _version_get_sha1(p_version);
String path = shader_cache_dir.plus_file(name).plus_file(base_sha256).plus_file(sha1) + ".cache";
- FileAccessRef f = FileAccess::open(path, FileAccess::READ);
- if (!f) {
+ Ref<FileAccess> f = FileAccess::open(path, FileAccess::READ);
+ if (f.is_null()) {
return false;
}
@@ -445,8 +445,8 @@ void ShaderRD::_save_to_cache(Version *p_version) {
String sha1 = _version_get_sha1(p_version);
String path = shader_cache_dir.plus_file(name).plus_file(base_sha256).plus_file(sha1) + ".cache";
- FileAccessRef f = FileAccess::open(path, FileAccess::WRITE);
- ERR_FAIL_COND(!f);
+ Ref<FileAccess> f = FileAccess::open(path, FileAccess::WRITE);
+ ERR_FAIL_COND(f.is_null());
f->store_buffer((const uint8_t *)shader_file_header, 4);
f->store_32(cache_file_version); //file version
uint32_t variant_count = variant_defines.size();
@@ -456,8 +456,6 @@ void ShaderRD::_save_to_cache(Version *p_version) {
f->store_32(p_version->variant_data[i].size()); //stage count
f->store_buffer(p_version->variant_data[i].ptr(), p_version->variant_data[i].size());
}
-
- f->close();
}
void ShaderRD::_compile_version(Version *p_version) {
@@ -652,8 +650,8 @@ void ShaderRD::initialize(const Vector<String> &p_variant_defines, const String
base_sha256 = hash_build.as_string().sha256_text();
- DirAccessRef d = DirAccess::open(shader_cache_dir);
- ERR_FAIL_COND(!d);
+ Ref<DirAccess> d = DirAccess::open(shader_cache_dir);
+ ERR_FAIL_COND(d.is_null());
if (d->change_dir(name) != OK) {
Error err = d->make_dir(name);
ERR_FAIL_COND(err != OK);
diff --git a/servers/rendering/renderer_rd/shader_rd.h b/servers/rendering/renderer_rd/shader_rd.h
index 984b168659..8e57f0d9af 100644
--- a/servers/rendering/renderer_rd/shader_rd.h
+++ b/servers/rendering/renderer_rd/shader_rd.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -40,11 +40,6 @@
#include "core/variant/variant.h"
#include "servers/rendering_server.h"
-#include <stdio.h>
-/**
- @author Juan Linietsky <reduzio@gmail.com>
-*/
-
class ShaderRD {
//versions
CharString general_defines;
@@ -173,4 +168,4 @@ public:
virtual ~ShaderRD();
};
-#endif
+#endif // SHADER_RD_H
diff --git a/servers/rendering/renderer_rd/shaders/SCsub b/servers/rendering/renderer_rd/shaders/SCsub
index fc513d3fb9..acb843bfb6 100644
--- a/servers/rendering/renderer_rd/shaders/SCsub
+++ b/servers/rendering/renderer_rd/shaders/SCsub
@@ -15,3 +15,5 @@ if "RD_GLSL" in env["BUILDERS"]:
# compile shaders
for glsl_file in glsl_files:
env.RD_GLSL(glsl_file)
+
+SConscript("effects/SCsub")
diff --git a/servers/rendering/renderer_rd/shaders/blit.glsl b/servers/rendering/renderer_rd/shaders/blit.glsl
index 8051f96738..14f190a49f 100644
--- a/servers/rendering/renderer_rd/shaders/blit.glsl
+++ b/servers/rendering/renderer_rd/shaders/blit.glsl
@@ -4,7 +4,7 @@
#VERSION_DEFINES
-layout(push_constant, binding = 0, std140) uniform Pos {
+layout(push_constant, std140) uniform Pos {
vec4 src_rect;
vec4 dst_rect;
@@ -34,7 +34,7 @@ void main() {
#VERSION_DEFINES
-layout(push_constant, binding = 0, std140) uniform Pos {
+layout(push_constant, std140) uniform Pos {
vec4 src_rect;
vec4 dst_rect;
diff --git a/servers/rendering/renderer_rd/shaders/blur_raster_inc.glsl b/servers/rendering/renderer_rd/shaders/blur_raster_inc.glsl
index 52bf2886b5..e7a2e18323 100644
--- a/servers/rendering/renderer_rd/shaders/blur_raster_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/blur_raster_inc.glsl
@@ -2,7 +2,7 @@
#define FLAG_USE_ORTHOGONAL_PROJECTION (1 << 1)
#define FLAG_GLOW_FIRST_PASS (1 << 2)
-layout(push_constant, binding = 1, std430) uniform Blur {
+layout(push_constant, std430) uniform Blur {
vec2 pixel_size;
uint flags;
uint pad;
diff --git a/servers/rendering/renderer_rd/shaders/bokeh_dof_inc.glsl b/servers/rendering/renderer_rd/shaders/bokeh_dof_inc.glsl
index fadea1631c..b90a527554 100644
--- a/servers/rendering/renderer_rd/shaders/bokeh_dof_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/bokeh_dof_inc.glsl
@@ -1,4 +1,4 @@
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 size;
float z_far;
float z_near;
diff --git a/servers/rendering/renderer_rd/shaders/canvas.glsl b/servers/rendering/renderer_rd/shaders/canvas.glsl
index 65a621b203..f8e9020f9f 100644
--- a/servers/rendering/renderer_rd/shaders/canvas.glsl
+++ b/servers/rendering/renderer_rd/shaders/canvas.glsl
@@ -82,7 +82,7 @@ void main() {
#endif
- mat4 world_matrix = mat4(vec4(draw_data.world_x, 0.0, 0.0), vec4(draw_data.world_y, 0.0, 0.0), vec4(0.0, 0.0, 1.0, 0.0), vec4(draw_data.world_ofs, 0.0, 1.0));
+ mat4 model_matrix = mat4(vec4(draw_data.world_x, 0.0, 0.0), vec4(draw_data.world_y, 0.0, 0.0), vec4(0.0, 0.0, 1.0, 0.0), vec4(draw_data.world_ofs, 0.0, 1.0));
#define FLAGS_INSTANCING_MASK 0x7F
#define FLAGS_INSTANCING_HAS_COLORS (1 << 7)
@@ -156,7 +156,7 @@ void main() {
}
matrix = transpose(matrix);
- world_matrix = world_matrix * matrix;
+ model_matrix = model_matrix * matrix;
}
}
@@ -179,7 +179,7 @@ void main() {
#endif
#if !defined(SKIP_TRANSFORM_USED)
- vertex = (world_matrix * vec4(vertex, 0.0, 1.0)).xy;
+ vertex = (model_matrix * vec4(vertex, 0.0, 1.0)).xy;
#endif
color_interp = color;
@@ -461,10 +461,6 @@ float msdf_median(float r, float g, float b, float a) {
return min(max(min(r, g), min(max(r, g), b)), a);
}
-vec2 msdf_map(vec2 value, vec2 in_min, vec2 in_max, vec2 out_min, vec2 out_max) {
- return out_min + (out_max - out_min) * (value - in_min) / (in_max - in_min);
-}
-
void main() {
vec4 color = color_interp;
vec2 uv = uv_interp;
diff --git a/servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl b/servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl
index 9f89f4b3b7..930cf792cb 100644
--- a/servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl
+++ b/servers/rendering/renderer_rd/shaders/canvas_occlusion.glsl
@@ -6,7 +6,7 @@
layout(location = 0) in highp vec3 vertex;
-layout(push_constant, binding = 0, std430) uniform Constants {
+layout(push_constant, std430) uniform Constants {
mat4 projection;
mat2x4 modelview;
vec2 direction;
@@ -34,7 +34,7 @@ void main() {
#VERSION_DEFINES
-layout(push_constant, binding = 0, std430) uniform Constants {
+layout(push_constant, std430) uniform Constants {
mat4 projection;
mat2x4 modelview;
vec2 direction;
diff --git a/servers/rendering/renderer_rd/shaders/canvas_sdf.glsl b/servers/rendering/renderer_rd/shaders/canvas_sdf.glsl
index 2bdfbabfcf..0fafc7d486 100644
--- a/servers/rendering/renderer_rd/shaders/canvas_sdf.glsl
+++ b/servers/rendering/renderer_rd/shaders/canvas_sdf.glsl
@@ -12,7 +12,7 @@ layout(r16_snorm, set = 0, binding = 2) uniform restrict writeonly image2D dst_s
layout(rg16i, set = 0, binding = 3) uniform restrict readonly iimage2D src_process;
layout(rg16i, set = 0, binding = 4) uniform restrict writeonly iimage2D dst_process;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 size;
int stride;
int shift;
diff --git a/servers/rendering/renderer_rd/shaders/canvas_uniforms_inc.glsl b/servers/rendering/renderer_rd/shaders/canvas_uniforms_inc.glsl
index 0cff505cae..12f57b0178 100644
--- a/servers/rendering/renderer_rd/shaders/canvas_uniforms_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/canvas_uniforms_inc.glsl
@@ -41,7 +41,7 @@
// Push Constant
-layout(push_constant, binding = 0, std430) uniform DrawData {
+layout(push_constant, std430) uniform DrawData {
vec2 world_x;
vec2 world_y;
vec2 world_ofs;
diff --git a/servers/rendering/renderer_rd/shaders/cluster_debug.glsl b/servers/rendering/renderer_rd/shaders/cluster_debug.glsl
index 40da2c6e5c..0034de8c91 100644
--- a/servers/rendering/renderer_rd/shaders/cluster_debug.glsl
+++ b/servers/rendering/renderer_rd/shaders/cluster_debug.glsl
@@ -40,7 +40,7 @@ const vec3 usage_gradient[33] = vec3[]( // 1 (none) + 32
vec3(0.83, 0.22, 0.27),
vec3(0.83, 0.22, 0.32),
vec3(1.00, 0.63, 0.70));
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uvec2 screen_size;
uvec2 cluster_screen_size;
diff --git a/servers/rendering/renderer_rd/shaders/cluster_render.glsl b/servers/rendering/renderer_rd/shaders/cluster_render.glsl
index 6d95722a57..2fe230f0bf 100644
--- a/servers/rendering/renderer_rd/shaders/cluster_render.glsl
+++ b/servers/rendering/renderer_rd/shaders/cluster_render.glsl
@@ -9,7 +9,7 @@ layout(location = 0) in vec3 vertex_attrib;
layout(location = 0) out float depth_interp;
layout(location = 1) out flat uint element_index;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint base_index;
uint pad0;
uint pad1;
diff --git a/servers/rendering/renderer_rd/shaders/cluster_store.glsl b/servers/rendering/renderer_rd/shaders/cluster_store.glsl
index b0606efa94..64a145f3c6 100644
--- a/servers/rendering/renderer_rd/shaders/cluster_store.glsl
+++ b/servers/rendering/renderer_rd/shaders/cluster_store.glsl
@@ -6,7 +6,7 @@
layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint cluster_render_data_size; // how much data for a single cluster takes
uint max_render_element_count_div_32; //divided by 32
uvec2 cluster_screen_size;
diff --git a/servers/rendering/renderer_rd/shaders/copy.glsl b/servers/rendering/renderer_rd/shaders/copy.glsl
index 4110a95ddb..4563ac7af9 100644
--- a/servers/rendering/renderer_rd/shaders/copy.glsl
+++ b/servers/rendering/renderer_rd/shaders/copy.glsl
@@ -17,7 +17,7 @@ layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
#define FLAG_HIGH_QUALITY_GLOW (1 << 8)
#define FLAG_ALPHA_TO_ONE (1 << 9)
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec4 section;
ivec2 target;
uint flags;
@@ -61,7 +61,7 @@ layout(rgba8, set = 3, binding = 0) uniform restrict writeonly image2D dest_buff
layout(rgba32f, set = 3, binding = 0) uniform restrict writeonly image2D dest_buffer;
#endif
-#ifdef MODE_GAUSSIAN_GLOW
+#ifdef MODE_GAUSSIAN_BLUR
shared vec4 local_cache[256];
shared vec4 temp_cache[128];
#endif
@@ -70,7 +70,7 @@ void main() {
// Pixel being shaded
ivec2 pos = ivec2(gl_GlobalInvocationID.xy);
-#ifndef MODE_GAUSSIAN_GLOW // Glow needs the extra threads
+#ifndef MODE_GAUSSIAN_BLUR // Gaussian blur needs the extra threads
if (any(greaterThanEqual(pos, params.section.zw))) { //too large, do nothing
return;
}
@@ -84,41 +84,19 @@ void main() {
color += texelFetch(source_color, base_pos + ivec2(1, 0), 0);
color += texelFetch(source_color, base_pos + ivec2(1, 1), 0);
color /= 4.0;
+ color = mix(color, vec4(100.0, 100.0, 100.0, 1.0), isinf(color));
+ color = mix(color, vec4(100.0, 100.0, 100.0, 1.0), isnan(color));
imageStore(dest_buffer, pos + params.target, color);
#endif
#ifdef MODE_GAUSSIAN_BLUR
- //Simpler blur uses SIGMA2 for the gaussian kernel for a stronger effect
-
- if (bool(params.flags & FLAG_HORIZONTAL)) {
- ivec2 base_pos = (pos + params.section.xy) << 1;
- vec4 color = texelFetch(source_color, base_pos + ivec2(0, 0), 0) * 0.214607;
- color += texelFetch(source_color, base_pos + ivec2(1, 0), 0) * 0.189879;
- color += texelFetch(source_color, base_pos + ivec2(2, 0), 0) * 0.131514;
- color += texelFetch(source_color, base_pos + ivec2(3, 0), 0) * 0.071303;
- color += texelFetch(source_color, base_pos + ivec2(-1, 0), 0) * 0.189879;
- color += texelFetch(source_color, base_pos + ivec2(-2, 0), 0) * 0.131514;
- color += texelFetch(source_color, base_pos + ivec2(-3, 0), 0) * 0.071303;
- imageStore(dest_buffer, pos + params.target, color);
- } else {
- ivec2 base_pos = (pos + params.section.xy);
- vec4 color = texelFetch(source_color, base_pos + ivec2(0, 0), 0) * 0.38774;
- color += texelFetch(source_color, base_pos + ivec2(0, 1), 0) * 0.24477;
- color += texelFetch(source_color, base_pos + ivec2(0, 2), 0) * 0.06136;
- color += texelFetch(source_color, base_pos + ivec2(0, -1), 0) * 0.24477;
- color += texelFetch(source_color, base_pos + ivec2(0, -2), 0) * 0.06136;
- imageStore(dest_buffer, pos + params.target, color);
- }
-#endif
-
-#ifdef MODE_GAUSSIAN_GLOW
-
// First pass copy texture into 16x16 local memory for every 8x8 thread block
vec2 quad_center_uv = clamp(vec2(gl_GlobalInvocationID.xy + gl_LocalInvocationID.xy - 3.5) / params.section.zw, vec2(0.5 / params.section.zw), vec2(1.0 - 1.5 / params.section.zw));
uint dest_index = gl_LocalInvocationID.x * 2 + gl_LocalInvocationID.y * 2 * 16;
+#ifdef MODE_GLOW
if (bool(params.flags & FLAG_HIGH_QUALITY_GLOW)) {
vec2 quad_offset_uv = clamp((vec2(gl_GlobalInvocationID.xy + gl_LocalInvocationID.xy - 3.0)) / params.section.zw, vec2(0.5 / params.section.zw), vec2(1.0 - 1.5 / params.section.zw));
@@ -126,35 +104,49 @@ void main() {
local_cache[dest_index + 1] = (textureLod(source_color, quad_center_uv + vec2(1.0 / params.section.z, 0.0), 0) + textureLod(source_color, quad_offset_uv + vec2(1.0 / params.section.z, 0.0), 0)) * 0.5;
local_cache[dest_index + 16] = (textureLod(source_color, quad_center_uv + vec2(0.0, 1.0 / params.section.w), 0) + textureLod(source_color, quad_offset_uv + vec2(0.0, 1.0 / params.section.w), 0)) * 0.5;
local_cache[dest_index + 16 + 1] = (textureLod(source_color, quad_center_uv + vec2(1.0 / params.section.zw), 0) + textureLod(source_color, quad_offset_uv + vec2(1.0 / params.section.zw), 0)) * 0.5;
- } else {
+ } else
+#endif
+ {
local_cache[dest_index] = textureLod(source_color, quad_center_uv, 0);
local_cache[dest_index + 1] = textureLod(source_color, quad_center_uv + vec2(1.0 / params.section.z, 0.0), 0);
local_cache[dest_index + 16] = textureLod(source_color, quad_center_uv + vec2(0.0, 1.0 / params.section.w), 0);
local_cache[dest_index + 16 + 1] = textureLod(source_color, quad_center_uv + vec2(1.0 / params.section.zw), 0);
}
-
+#ifdef MODE_GLOW
+ if (bool(params.flags & FLAG_GLOW_FIRST_PASS)) {
+ // Tonemap initial samples to reduce weight of fireflies: https://graphicrants.blogspot.com/2013/12/tone-mapping.html
+ local_cache[dest_index] /= 1.0 + dot(local_cache[dest_index].rgb, vec3(0.299, 0.587, 0.114));
+ local_cache[dest_index + 1] /= 1.0 + dot(local_cache[dest_index + 1].rgb, vec3(0.299, 0.587, 0.114));
+ local_cache[dest_index + 16] /= 1.0 + dot(local_cache[dest_index + 16].rgb, vec3(0.299, 0.587, 0.114));
+ local_cache[dest_index + 16 + 1] /= 1.0 + dot(local_cache[dest_index + 16 + 1].rgb, vec3(0.299, 0.587, 0.114));
+ }
+ const float kernel[4] = { 0.174938, 0.165569, 0.140367, 0.106595 };
+#else
+ // Simpler blur uses SIGMA2 for the gaussian kernel for a stronger effect.
+ const float kernel[4] = { 0.214607, 0.189879, 0.131514, 0.071303 };
+#endif
memoryBarrierShared();
barrier();
// Horizontal pass. Needs to copy into 8x16 chunk of local memory so vertical pass has full resolution
uint read_index = gl_LocalInvocationID.x + gl_LocalInvocationID.y * 32 + 4;
vec4 color_top = vec4(0.0);
- color_top += local_cache[read_index] * 0.174938;
- color_top += local_cache[read_index + 1] * 0.165569;
- color_top += local_cache[read_index + 2] * 0.140367;
- color_top += local_cache[read_index + 3] * 0.106595;
- color_top += local_cache[read_index - 1] * 0.165569;
- color_top += local_cache[read_index - 2] * 0.140367;
- color_top += local_cache[read_index - 3] * 0.106595;
+ color_top += local_cache[read_index] * kernel[0];
+ color_top += local_cache[read_index + 1] * kernel[1];
+ color_top += local_cache[read_index + 2] * kernel[2];
+ color_top += local_cache[read_index + 3] * kernel[3];
+ color_top += local_cache[read_index - 1] * kernel[1];
+ color_top += local_cache[read_index - 2] * kernel[2];
+ color_top += local_cache[read_index - 3] * kernel[3];
vec4 color_bottom = vec4(0.0);
- color_bottom += local_cache[read_index + 16] * 0.174938;
- color_bottom += local_cache[read_index + 1 + 16] * 0.165569;
- color_bottom += local_cache[read_index + 2 + 16] * 0.140367;
- color_bottom += local_cache[read_index + 3 + 16] * 0.106595;
- color_bottom += local_cache[read_index - 1 + 16] * 0.165569;
- color_bottom += local_cache[read_index - 2 + 16] * 0.140367;
- color_bottom += local_cache[read_index - 3 + 16] * 0.106595;
+ color_bottom += local_cache[read_index + 16] * kernel[0];
+ color_bottom += local_cache[read_index + 1 + 16] * kernel[1];
+ color_bottom += local_cache[read_index + 2 + 16] * kernel[2];
+ color_bottom += local_cache[read_index + 3 + 16] * kernel[3];
+ color_bottom += local_cache[read_index - 1 + 16] * kernel[1];
+ color_bottom += local_cache[read_index - 2 + 16] * kernel[2];
+ color_bottom += local_cache[read_index - 3 + 16] * kernel[3];
// rotate samples to take advantage of cache coherency
uint write_index = gl_LocalInvocationID.y * 2 + gl_LocalInvocationID.x * 16;
@@ -165,17 +157,28 @@ void main() {
memoryBarrierShared();
barrier();
+ // If destination outside of texture, can stop doing work now
+ if (any(greaterThanEqual(pos, params.section.zw))) {
+ return;
+ }
+
// Vertical pass
uint index = gl_LocalInvocationID.y + gl_LocalInvocationID.x * 16 + 4;
vec4 color = vec4(0.0);
- color += temp_cache[index] * 0.174938;
- color += temp_cache[index + 1] * 0.165569;
- color += temp_cache[index + 2] * 0.140367;
- color += temp_cache[index + 3] * 0.106595;
- color += temp_cache[index - 1] * 0.165569;
- color += temp_cache[index - 2] * 0.140367;
- color += temp_cache[index - 3] * 0.106595;
+ color += temp_cache[index] * kernel[0];
+ color += temp_cache[index + 1] * kernel[1];
+ color += temp_cache[index + 2] * kernel[2];
+ color += temp_cache[index + 3] * kernel[3];
+ color += temp_cache[index - 1] * kernel[1];
+ color += temp_cache[index - 2] * kernel[2];
+ color += temp_cache[index - 3] * kernel[3];
+
+#ifdef MODE_GLOW
+ if (bool(params.flags & FLAG_GLOW_FIRST_PASS)) {
+ // Undo tonemap to restore range: https://graphicrants.blogspot.com/2013/12/tone-mapping.html
+ color /= 1.0 - dot(color.rgb, vec3(0.299, 0.587, 0.114));
+ }
color *= params.glow_strength;
@@ -186,12 +189,12 @@ void main() {
#endif
color *= params.glow_exposure;
- float luminance = max(color.r, max(color.g, color.b));
+ float luminance = dot(color.rgb, vec3(0.299, 0.587, 0.114));
float feedback = max(smoothstep(params.glow_hdr_threshold, params.glow_hdr_threshold + params.glow_hdr_scale, luminance), params.glow_bloom);
color = min(color * feedback, vec4(params.glow_luminance_cap));
}
-
+#endif
imageStore(dest_buffer, pos + params.target, color);
#endif
@@ -256,7 +259,9 @@ void main() {
const float PI = 3.14159265359;
vec2 uv = vec2(pos) / vec2(params.section.zw);
- uv.y = 1.0 - uv.y;
+ if (bool(params.flags & FLAG_FLIP_Y)) {
+ uv.y = 1.0 - uv.y;
+ }
float phi = uv.x * 2.0 * PI;
float theta = uv.y * PI;
diff --git a/servers/rendering/renderer_rd/shaders/copy_to_fb.glsl b/servers/rendering/renderer_rd/shaders/copy_to_fb.glsl
index 8c68e2dc2f..9787c9879d 100644
--- a/servers/rendering/renderer_rd/shaders/copy_to_fb.glsl
+++ b/servers/rendering/renderer_rd/shaders/copy_to_fb.glsl
@@ -4,9 +4,22 @@
#VERSION_DEFINES
+#ifdef MULTIVIEW
+#ifdef has_VK_KHR_multiview
+#extension GL_EXT_multiview : enable
+#define ViewIndex gl_ViewIndex
+#else // has_VK_KHR_multiview
+#define ViewIndex 0
+#endif // has_VK_KHR_multiview
+#endif //MULTIVIEW
+
+#ifdef MULTIVIEW
+layout(location = 0) out vec3 uv_interp;
+#else
layout(location = 0) out vec2 uv_interp;
+#endif
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec4 section;
vec2 pixel_size;
bool flip_y;
@@ -19,9 +32,11 @@ params;
void main() {
vec2 base_arr[4] = vec2[](vec2(0.0, 0.0), vec2(0.0, 1.0), vec2(1.0, 1.0), vec2(1.0, 0.0));
- uv_interp = base_arr[gl_VertexIndex];
-
- vec2 vpos = uv_interp;
+ uv_interp.xy = base_arr[gl_VertexIndex];
+#ifdef MULTIVIEW
+ uv_interp.z = ViewIndex;
+#endif
+ vec2 vpos = uv_interp.xy;
if (params.use_section) {
vpos = params.section.xy + vpos * params.section.zw;
}
@@ -39,7 +54,16 @@ void main() {
#VERSION_DEFINES
-layout(push_constant, binding = 1, std430) uniform Params {
+#ifdef MULTIVIEW
+#ifdef has_VK_KHR_multiview
+#extension GL_EXT_multiview : enable
+#define ViewIndex gl_ViewIndex
+#else // has_VK_KHR_multiview
+#define ViewIndex 0
+#endif // has_VK_KHR_multiview
+#endif //MULTIVIEW
+
+layout(push_constant, std430) uniform Params {
vec4 section;
vec2 pixel_size;
bool flip_y;
@@ -52,12 +76,25 @@ layout(push_constant, binding = 1, std430) uniform Params {
}
params;
+#ifdef MULTIVIEW
+layout(location = 0) in vec3 uv_interp;
+#else
layout(location = 0) in vec2 uv_interp;
+#endif
+#ifdef MULTIVIEW
+layout(set = 0, binding = 0) uniform sampler2DArray source_color;
+#ifdef MODE_TWO_SOURCES
+layout(set = 1, binding = 0) uniform sampler2DArray source_depth;
+layout(location = 1) out float depth;
+#endif /* MODE_TWO_SOURCES */
+#else
layout(set = 0, binding = 0) uniform sampler2D source_color;
#ifdef MODE_TWO_SOURCES
layout(set = 1, binding = 0) uniform sampler2D source_color2;
-#endif
+#endif /* MODE_TWO_SOURCES */
+#endif /* MULTIVIEW */
+
layout(location = 0) out vec4 frag_color;
vec3 linear_to_srgb(vec3 color) {
@@ -68,9 +105,14 @@ vec3 linear_to_srgb(vec3 color) {
}
void main() {
+#ifdef MULTIVIEW
+ vec3 uv = uv_interp;
+#else
vec2 uv = uv_interp;
+#endif
#ifdef MODE_PANORAMA_TO_DP
+ // Note, multiview and panorama should not be mixed at this time
//obtain normal from dual paraboloid uv
#define M_PI 3.14159265359
@@ -98,10 +140,20 @@ void main() {
uv = 1.0 - uv;
}
#endif
+
+#ifdef MULTIVIEW
+ vec4 color = textureLod(source_color, uv, 0.0);
+#ifdef MODE_TWO_SOURCES
+ // In multiview our 2nd input will be our depth map
+ depth = textureLod(source_depth, uv, 0.0).r;
+#endif /* MODE_TWO_SOURCES */
+
+#else
vec4 color = textureLod(source_color, uv, 0.0);
#ifdef MODE_TWO_SOURCES
color += textureLod(source_color2, uv, 0.0);
-#endif
+#endif /* MODE_TWO_SOURCES */
+#endif /* MULTIVIEW */
if (params.force_luminance) {
color.rgb = vec3(max(max(color.r, color.g), color.b));
}
diff --git a/servers/rendering/renderer_rd/shaders/cube_to_dp.glsl b/servers/rendering/renderer_rd/shaders/cube_to_dp.glsl
index 69b895ed29..e77d0de719 100644
--- a/servers/rendering/renderer_rd/shaders/cube_to_dp.glsl
+++ b/servers/rendering/renderer_rd/shaders/cube_to_dp.glsl
@@ -4,7 +4,7 @@
#VERSION_DEFINES
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float z_far;
float z_near;
vec2 texel_size;
@@ -31,7 +31,7 @@ layout(location = 0) in vec2 uv_interp;
layout(set = 0, binding = 0) uniform samplerCube source_cube;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float z_far;
float z_near;
vec2 texel_size;
diff --git a/servers/rendering/renderer_rd/shaders/cubemap_downsampler_inc.glsl b/servers/rendering/renderer_rd/shaders/cubemap_downsampler_inc.glsl
index b329e67293..641e0906f5 100644
--- a/servers/rendering/renderer_rd/shaders/cubemap_downsampler_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/cubemap_downsampler_inc.glsl
@@ -1,4 +1,4 @@
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint face_size;
uint face_id; // only used in raster shader
}
diff --git a/servers/rendering/renderer_rd/shaders/cubemap_filter_raster.glsl b/servers/rendering/renderer_rd/shaders/cubemap_filter_raster.glsl
index 324d306218..0990dc7c2f 100644
--- a/servers/rendering/renderer_rd/shaders/cubemap_filter_raster.glsl
+++ b/servers/rendering/renderer_rd/shaders/cubemap_filter_raster.glsl
@@ -25,7 +25,7 @@
#VERSION_DEFINES
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
int mip_level;
uint face_id;
}
@@ -47,7 +47,7 @@ void main() {
#VERSION_DEFINES
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
int mip_level;
uint face_id;
}
diff --git a/servers/rendering/renderer_rd/shaders/cubemap_roughness.glsl b/servers/rendering/renderer_rd/shaders/cubemap_roughness.glsl
index 28f4dc59ec..1d46f59408 100644
--- a/servers/rendering/renderer_rd/shaders/cubemap_roughness.glsl
+++ b/servers/rendering/renderer_rd/shaders/cubemap_roughness.glsl
@@ -21,24 +21,38 @@ void main() {
vec2 uv = ((vec2(id.xy) * 2.0 + 1.0) / (params.face_size) - 1.0);
vec3 N = texelCoordToVec(uv, id.z);
- //vec4 color = color_interp;
-
if (params.use_direct_write) {
imageStore(dest_cubemap, ivec3(id), vec4(texture(source_cube, N).rgb, 1.0));
} else {
vec4 sum = vec4(0.0, 0.0, 0.0, 0.0);
+ float solid_angle_texel = 4.0 * M_PI / (6.0 * params.face_size * params.face_size);
+ float roughness2 = params.roughness * params.roughness;
+ float roughness4 = roughness2 * roughness2;
+ vec3 UpVector = abs(N.z) < 0.999 ? vec3(0.0, 0.0, 1.0) : vec3(1.0, 0.0, 0.0);
+ mat3 T;
+ T[0] = normalize(cross(UpVector, N));
+ T[1] = cross(N, T[0]);
+ T[2] = N;
+
for (uint sampleNum = 0u; sampleNum < params.sample_count; sampleNum++) {
vec2 xi = Hammersley(sampleNum, params.sample_count);
- vec3 H = ImportanceSampleGGX(xi, params.roughness, N);
- vec3 V = N;
- vec3 L = (2.0 * dot(V, H) * H - V);
+ vec3 H = T * ImportanceSampleGGX(xi, roughness4);
+ float NdotH = dot(N, H);
+ vec3 L = (2.0 * NdotH * H - N);
float ndotl = clamp(dot(N, L), 0.0, 1.0);
if (ndotl > 0.0) {
- sum.rgb += textureLod(source_cube, L, 0.0).rgb * ndotl;
+ float D = DistributionGGX(NdotH, roughness4);
+ float pdf = D * NdotH / (4.0 * NdotH) + 0.0001;
+
+ float solid_angle_sample = 1.0 / (float(params.sample_count) * pdf + 0.0001);
+
+ float mipLevel = params.roughness == 0.0 ? 0.0 : 0.5 * log2(solid_angle_sample / solid_angle_texel);
+
+ sum.rgb += textureLod(source_cube, L, mipLevel).rgb * ndotl;
sum.a += ndotl;
}
}
diff --git a/servers/rendering/renderer_rd/shaders/cubemap_roughness_inc.glsl b/servers/rendering/renderer_rd/shaders/cubemap_roughness_inc.glsl
index be12be5dec..1bee428a6f 100644
--- a/servers/rendering/renderer_rd/shaders/cubemap_roughness_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/cubemap_roughness_inc.glsl
@@ -1,6 +1,6 @@
#define M_PI 3.14159265359
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint face_id;
uint sample_count;
float roughness;
@@ -47,12 +47,10 @@ vec3 texelCoordToVec(vec2 uv, uint faceID) {
return normalize(result);
}
-vec3 ImportanceSampleGGX(vec2 Xi, float Roughness, vec3 N) {
- float a = Roughness * Roughness; // DISNEY'S ROUGHNESS [see Burley'12 siggraph]
-
+vec3 ImportanceSampleGGX(vec2 xi, float roughness4) {
// Compute distribution direction
- float Phi = 2.0 * M_PI * Xi.x;
- float CosTheta = sqrt((1.0 - Xi.y) / (1.0 + (a * a - 1.0) * Xi.y));
+ float Phi = 2.0 * M_PI * xi.x;
+ float CosTheta = sqrt((1.0 - xi.y) / (1.0 + (roughness4 - 1.0) * xi.y));
float SinTheta = sqrt(1.0 - CosTheta * CosTheta);
// Convert to spherical direction
@@ -61,12 +59,15 @@ vec3 ImportanceSampleGGX(vec2 Xi, float Roughness, vec3 N) {
H.y = SinTheta * sin(Phi);
H.z = CosTheta;
- vec3 UpVector = abs(N.z) < 0.999 ? vec3(0.0, 0.0, 1.0) : vec3(1.0, 0.0, 0.0);
- vec3 TangentX = normalize(cross(UpVector, N));
- vec3 TangentY = cross(N, TangentX);
+ return H;
+}
+
+float DistributionGGX(float NdotH, float roughness4) {
+ float NdotH2 = NdotH * NdotH;
+ float denom = (NdotH2 * (roughness4 - 1.0) + 1.0);
+ denom = M_PI * denom * denom;
- // Tangent to world space
- return TangentX * H.x + TangentY * H.y + N * H.z;
+ return roughness4 / denom;
}
// https://graphicrants.blogspot.com.au/2013/08/specular-brdf-reference.html
diff --git a/servers/rendering/renderer_rd/shaders/cubemap_roughness_raster.glsl b/servers/rendering/renderer_rd/shaders/cubemap_roughness_raster.glsl
index 2570308816..c29accd8a7 100644
--- a/servers/rendering/renderer_rd/shaders/cubemap_roughness_raster.glsl
+++ b/servers/rendering/renderer_rd/shaders/cubemap_roughness_raster.glsl
@@ -42,17 +42,33 @@ void main() {
} else {
vec4 sum = vec4(0.0, 0.0, 0.0, 0.0);
+ float solid_angle_texel = 4.0 * M_PI / (6.0 * params.face_size * params.face_size);
+ float roughness2 = params.roughness * params.roughness;
+ float roughness4 = roughness2 * roughness2;
+ vec3 UpVector = abs(N.z) < 0.999 ? vec3(0.0, 0.0, 1.0) : vec3(1.0, 0.0, 0.0);
+ mat3 T;
+ T[0] = normalize(cross(UpVector, N));
+ T[1] = cross(N, T[0]);
+ T[2] = N;
+
for (uint sampleNum = 0u; sampleNum < params.sample_count; sampleNum++) {
vec2 xi = Hammersley(sampleNum, params.sample_count);
- vec3 H = ImportanceSampleGGX(xi, params.roughness, N);
- vec3 V = N;
- vec3 L = (2.0 * dot(V, H) * H - V);
+ vec3 H = T * ImportanceSampleGGX(xi, roughness4);
+ float NdotH = dot(N, H);
+ vec3 L = (2.0 * NdotH * H - N);
float ndotl = clamp(dot(N, L), 0.0, 1.0);
if (ndotl > 0.0) {
- sum.rgb += textureLod(source_cube, L, 0.0).rgb * ndotl;
+ float D = DistributionGGX(NdotH, roughness4);
+ float pdf = D * NdotH / (4.0 * NdotH) + 0.0001;
+
+ float solid_angle_sample = 1.0 / (float(params.sample_count) * pdf + 0.0001);
+
+ float mipLevel = params.roughness == 0.0 ? 0.0 : 0.5 * log2(solid_angle_sample / solid_angle_texel);
+
+ sum.rgb += textureLod(source_cube, L, mipLevel).rgb * ndotl;
sum.a += ndotl;
}
}
diff --git a/servers/rendering/renderer_rd/shaders/effects/SCsub b/servers/rendering/renderer_rd/shaders/effects/SCsub
new file mode 100644
index 0000000000..fc513d3fb9
--- /dev/null
+++ b/servers/rendering/renderer_rd/shaders/effects/SCsub
@@ -0,0 +1,17 @@
+#!/usr/bin/env python
+
+Import("env")
+
+if "RD_GLSL" in env["BUILDERS"]:
+ # find all include files
+ gl_include_files = [str(f) for f in Glob("*_inc.glsl")]
+
+ # find all shader code(all glsl files excluding our include files)
+ glsl_files = [str(f) for f in Glob("*.glsl") if str(f) not in gl_include_files]
+
+ # make sure we recompile shaders if include files change
+ env.Depends([f + ".gen.h" for f in glsl_files], gl_include_files)
+
+ # compile shaders
+ for glsl_file in glsl_files:
+ env.RD_GLSL(glsl_file)
diff --git a/servers/rendering/renderer_rd/shaders/tonemap.glsl b/servers/rendering/renderer_rd/shaders/effects/tonemap.glsl
index 948c6e1e39..19a9350137 100644
--- a/servers/rendering/renderer_rd/shaders/tonemap.glsl
+++ b/servers/rendering/renderer_rd/shaders/effects/tonemap.glsl
@@ -45,6 +45,7 @@ layout(set = 0, binding = 0) uniform sampler2D source_color;
layout(set = 1, binding = 0) uniform sampler2D source_auto_exposure;
layout(set = 2, binding = 0) uniform sampler2D source_glow;
+layout(set = 2, binding = 1) uniform sampler2D glow_map;
#ifdef USE_1D_LUT
layout(set = 3, binding = 0) uniform sampler2D source_color_correction;
@@ -52,7 +53,7 @@ layout(set = 3, binding = 0) uniform sampler2D source_color_correction;
layout(set = 3, binding = 0) uniform sampler3D source_color_correction;
#endif
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 bcs;
bool use_bcs;
@@ -63,7 +64,7 @@ layout(push_constant, binding = 1, std430) uniform Params {
uvec2 glow_texture_size;
float glow_intensity;
- uint pad3;
+ float glow_map_strength;
uint glow_mode;
float glow_levels[7];
@@ -405,6 +406,9 @@ void main() {
#ifndef SUBPASS
if (params.use_glow && params.glow_mode == GLOW_MODE_MIX) {
vec3 glow = gather_glow(source_glow, uv_interp) * params.luminance_multiplier;
+ if (params.glow_map_strength > 0.001) {
+ glow = mix(glow, texture(glow_map, uv_interp).rgb * glow, params.glow_map_strength);
+ }
color.rgb = mix(color.rgb, glow, params.glow_intensity);
}
@@ -425,9 +429,11 @@ void main() {
#ifndef SUBPASS
// Glow
-
if (params.use_glow && params.glow_mode != GLOW_MODE_MIX) {
vec3 glow = gather_glow(source_glow, uv_interp) * params.glow_intensity * params.luminance_multiplier;
+ if (params.glow_map_strength > 0.001) {
+ glow = mix(glow, texture(glow_map, uv_interp).rgb * glow, params.glow_map_strength);
+ }
// high dynamic range -> SRGB
glow = apply_tonemapping(glow, params.white);
diff --git a/servers/rendering/renderer_rd/shaders/fsr_upscale.glsl b/servers/rendering/renderer_rd/shaders/fsr_upscale.glsl
index 4e2ba84033..c8eb78a2f0 100644
--- a/servers/rendering/renderer_rd/shaders/fsr_upscale.glsl
+++ b/servers/rendering/renderer_rd/shaders/fsr_upscale.glsl
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -53,7 +53,7 @@ layout(set = 0, binding = 0) uniform sampler2D source_image;
#define FSR_UPSCALE_PASS_TYPE_EASU 0
#define FSR_UPSCALE_PASS_TYPE_RCAS 1
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float resolution_width;
float resolution_height;
float upscaled_width;
diff --git a/servers/rendering/renderer_rd/shaders/gi.glsl b/servers/rendering/renderer_rd/shaders/gi.glsl
index 5528ea3659..0c7f08813b 100644
--- a/servers/rendering/renderer_rd/shaders/gi.glsl
+++ b/servers/rendering/renderer_rd/shaders/gi.glsl
@@ -68,19 +68,15 @@ sdfgi;
#define MAX_VOXEL_GI_INSTANCES 8
struct VoxelGIData {
- mat4 xform;
- vec3 bounds;
- float dynamic_range;
+ mat4 xform; // 64 - 64
- float bias;
- float normal_bias;
- bool blend_ambient;
- uint texture_slot;
+ vec3 bounds; // 12 - 76
+ float dynamic_range; // 4 - 80
- uint pad0;
- uint pad1;
- uint pad2;
- uint mipmaps;
+ float bias; // 4 - 84
+ float normal_bias; // 4 - 88
+ bool blend_ambient; // 4 - 92
+ uint mipmaps; // 4 - 96
};
layout(set = 0, binding = 16, std140) uniform VoxelGIs {
@@ -90,7 +86,7 @@ voxel_gi_instances;
layout(set = 0, binding = 17) uniform texture3D voxel_gi_textures[MAX_VOXEL_GI_INSTANCES];
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
float z_near;
float z_far;
diff --git a/servers/rendering/renderer_rd/shaders/giprobe_write.glsl b/servers/rendering/renderer_rd/shaders/giprobe_write.glsl
index 25d87ca45d..6c73864bf6 100644
--- a/servers/rendering/renderer_rd/shaders/giprobe_write.glsl
+++ b/servers/rendering/renderer_rd/shaders/giprobe_write.glsl
@@ -7,7 +7,6 @@
layout(local_size_x = 64, local_size_y = 1, local_size_z = 1) in;
#define NO_CHILDREN 0xFFFFFFFF
-#define GREY_VEC vec3(0.33333, 0.33333, 0.33333)
struct CellChildren {
uint children[8];
@@ -59,7 +58,7 @@ lights;
#endif
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec3 limits;
uint stack_size;
diff --git a/servers/rendering/renderer_rd/shaders/light_data_inc.glsl b/servers/rendering/renderer_rd/shaders/light_data_inc.glsl
index fdc7729338..61c8488a05 100644
--- a/servers/rendering/renderer_rd/shaders/light_data_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/light_data_inc.glsl
@@ -1,6 +1,6 @@
#define LIGHT_BAKE_DISABLED 0
-#define LIGHT_BAKE_DYNAMIC 1
-#define LIGHT_BAKE_STATIC 2
+#define LIGHT_BAKE_STATIC 1
+#define LIGHT_BAKE_DYNAMIC 2
struct LightData { //this structure needs to be as packed as possible
highp vec3 position;
@@ -76,10 +76,6 @@ struct DirectionalLightData {
highp mat4 shadow_matrix2;
highp mat4 shadow_matrix3;
highp mat4 shadow_matrix4;
- mediump vec4 shadow_color1;
- mediump vec4 shadow_color2;
- mediump vec4 shadow_color3;
- mediump vec4 shadow_color4;
highp vec2 uv_scale1;
highp vec2 uv_scale2;
highp vec2 uv_scale3;
diff --git a/servers/rendering/renderer_rd/shaders/luminance_reduce.glsl b/servers/rendering/renderer_rd/shaders/luminance_reduce.glsl
index 466442b67a..0ee4cf6e31 100644
--- a/servers/rendering/renderer_rd/shaders/luminance_reduce.glsl
+++ b/servers/rendering/renderer_rd/shaders/luminance_reduce.glsl
@@ -28,7 +28,7 @@ layout(r32f, set = 1, binding = 0) uniform restrict writeonly image2D dest_lumin
layout(set = 2, binding = 0) uniform sampler2D prev_luminance;
#endif
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 source_size;
float max_luminance;
float min_luminance;
diff --git a/servers/rendering/renderer_rd/shaders/luminance_reduce_raster_inc.glsl b/servers/rendering/renderer_rd/shaders/luminance_reduce_raster_inc.glsl
index 3cde9923fa..b8860f6518 100644
--- a/servers/rendering/renderer_rd/shaders/luminance_reduce_raster_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/luminance_reduce_raster_inc.glsl
@@ -1,5 +1,5 @@
-layout(push_constant, binding = 1, std430) uniform PushConstant {
+layout(push_constant, std430) uniform PushConstant {
ivec2 source_size;
ivec2 dest_size;
diff --git a/servers/rendering/renderer_rd/shaders/particles.glsl b/servers/rendering/renderer_rd/shaders/particles.glsl
index 328becbc20..1b1051ecfa 100644
--- a/servers/rendering/renderer_rd/shaders/particles.glsl
+++ b/servers/rendering/renderer_rd/shaders/particles.glsl
@@ -112,6 +112,24 @@ struct ParticleData {
uint flags;
vec4 color;
vec4 custom;
+#ifdef USERDATA1_USED
+ vec4 userdata1;
+#endif
+#ifdef USERDATA2_USED
+ vec4 userdata2;
+#endif
+#ifdef USERDATA3_USED
+ vec4 userdata3;
+#endif
+#ifdef USERDATA4_USED
+ vec4 userdata4;
+#endif
+#ifdef USERDATA5_USED
+ vec4 userdata5;
+#endif
+#ifdef USERDATA6_USED
+ vec4 userdata6;
+#endif
};
layout(set = 1, binding = 1, std430) restrict buffer Particles {
@@ -168,7 +186,7 @@ layout(set = 3, binding = 0, std140) uniform MaterialUniforms{
} material;
#endif
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float lifetime;
bool clear;
uint total_particles;
diff --git a/servers/rendering/renderer_rd/shaders/particles_copy.glsl b/servers/rendering/renderer_rd/shaders/particles_copy.glsl
index e88e68b511..afbd5a9caa 100644
--- a/servers/rendering/renderer_rd/shaders/particles_copy.glsl
+++ b/servers/rendering/renderer_rd/shaders/particles_copy.glsl
@@ -16,6 +16,9 @@ struct ParticleData {
uint flags;
vec4 color;
vec4 custom;
+#ifdef USERDATA_COUNT
+ vec4 userdata[USERDATA_COUNT];
+#endif
};
layout(set = 0, binding = 1, std430) restrict readonly buffer Particles {
@@ -42,7 +45,7 @@ layout(set = 2, binding = 0, std430) restrict readonly buffer TrailBindPoses {
}
trail_bind_poses;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 sort_direction;
uint total_particles;
@@ -57,7 +60,9 @@ layout(push_constant, binding = 0, std430) uniform Params {
bool order_by_lifetime;
uint lifetime_split;
bool lifetime_reverse;
- uint pad;
+ bool copy_mode_2d;
+
+ mat4 inv_emission_transform;
}
params;
@@ -196,30 +201,33 @@ void main() {
txform = txform * trail_bind_poses.data[part_ofs];
}
+ if (params.copy_mode_2d) {
+ // In global mode, bring 2D particles to local coordinates
+ // as they will be drawn with the node position as origin.
+ txform = params.inv_emission_transform * txform;
+ }
+
txform = transpose(txform);
} else {
txform = mat4(vec4(0.0), vec4(0.0), vec4(0.0), vec4(0.0)); //zero scale, becomes invisible
}
-#ifdef MODE_2D
-
- uint write_offset = gl_GlobalInvocationID.x * (2 + 1 + 1); //xform + color + custom
+ if (params.copy_mode_2d) {
+ uint write_offset = gl_GlobalInvocationID.x * (2 + 1 + 1); //xform + color + custom
- instances.data[write_offset + 0] = txform[0];
- instances.data[write_offset + 1] = txform[1];
- instances.data[write_offset + 2] = particles.data[particle].color;
- instances.data[write_offset + 3] = particles.data[particle].custom;
-
-#else
-
- uint write_offset = gl_GlobalInvocationID.x * (3 + 1 + 1); //xform + color + custom
+ instances.data[write_offset + 0] = txform[0];
+ instances.data[write_offset + 1] = txform[1];
+ instances.data[write_offset + 2] = particles.data[particle].color;
+ instances.data[write_offset + 3] = particles.data[particle].custom;
+ } else {
+ uint write_offset = gl_GlobalInvocationID.x * (3 + 1 + 1); //xform + color + custom
- instances.data[write_offset + 0] = txform[0];
- instances.data[write_offset + 1] = txform[1];
- instances.data[write_offset + 2] = txform[2];
- instances.data[write_offset + 3] = particles.data[particle].color;
- instances.data[write_offset + 4] = particles.data[particle].custom;
-#endif //MODE_2D
+ instances.data[write_offset + 0] = txform[0];
+ instances.data[write_offset + 1] = txform[1];
+ instances.data[write_offset + 2] = txform[2];
+ instances.data[write_offset + 3] = particles.data[particle].color;
+ instances.data[write_offset + 4] = particles.data[particle].custom;
+ }
#endif
}
diff --git a/servers/rendering/renderer_rd/shaders/resolve.glsl b/servers/rendering/renderer_rd/shaders/resolve.glsl
index fecf812a8c..0e086331c0 100644
--- a/servers/rendering/renderer_rd/shaders/resolve.glsl
+++ b/servers/rendering/renderer_rd/shaders/resolve.glsl
@@ -25,7 +25,7 @@ layout(rg8ui, set = 3, binding = 0) uniform restrict writeonly uimage2D dest_vox
#endif
-layout(push_constant, binding = 16, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
int sample_count;
uint pad;
diff --git a/servers/rendering/renderer_rd/shaders/roughness_limiter.glsl b/servers/rendering/renderer_rd/shaders/roughness_limiter.glsl
index 7b964675ca..59027df8e9 100644
--- a/servers/rendering/renderer_rd/shaders/roughness_limiter.glsl
+++ b/servers/rendering/renderer_rd/shaders/roughness_limiter.glsl
@@ -9,7 +9,7 @@ layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
layout(set = 0, binding = 0) uniform sampler2D source_normal;
layout(r8, set = 1, binding = 0) uniform restrict writeonly image2D dest_roughness;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
float curve;
uint pad;
diff --git a/servers/rendering/renderer_rd/shaders/scene_forward_clustered.glsl b/servers/rendering/renderer_rd/shaders/scene_forward_clustered.glsl
index e4628b2d5a..58b4ded9f4 100644
--- a/servers/rendering/renderer_rd/shaders/scene_forward_clustered.glsl
+++ b/servers/rendering/renderer_rd/shaders/scene_forward_clustered.glsl
@@ -99,6 +99,18 @@ layout(location = 8) out float dp_clip;
layout(location = 9) out flat uint instance_index_interp;
+#ifdef USE_MULTIVIEW
+#ifdef has_VK_KHR_multiview
+#define ViewIndex gl_ViewIndex
+#else // has_VK_KHR_multiview
+// !BAS! This needs to become an input once we implement our fallback!
+#define ViewIndex 0
+#endif // has_VK_KHR_multiview
+#else // USE_MULTIVIEW
+// Set to zero, not supported in non stereo
+#define ViewIndex 0
+#endif //USE_MULTIVIEW
+
invariant gl_Position;
#GLOBALS
@@ -118,13 +130,13 @@ void main() {
instance_index_interp = instance_index;
- mat4 world_matrix = instances.data[instance_index].transform;
+ mat4 model_matrix = instances.data[instance_index].transform;
- mat3 world_normal_matrix;
+ mat3 model_normal_matrix;
if (bool(instances.data[instance_index].flags & INSTANCE_FLAGS_NON_UNIFORM_SCALE)) {
- world_normal_matrix = transpose(inverse(mat3(world_matrix)));
+ model_normal_matrix = transpose(inverse(mat3(model_matrix)));
} else {
- world_normal_matrix = mat3(world_matrix);
+ model_normal_matrix = mat3(model_matrix);
}
if (is_multimesh) {
@@ -217,8 +229,8 @@ void main() {
#endif
//transpose
matrix = transpose(matrix);
- world_matrix = world_matrix * matrix;
- world_normal_matrix = world_normal_matrix * mat3(matrix);
+ model_matrix = model_matrix * matrix;
+ model_normal_matrix = model_normal_matrix * mat3(matrix);
}
vec3 vertex = vertex_attrib;
@@ -244,27 +256,35 @@ void main() {
vec4 position;
#endif
+#ifdef USE_MULTIVIEW
+ mat4 projection_matrix = scene_data.projection_matrix_view[ViewIndex];
+ mat4 inv_projection_matrix = scene_data.inv_projection_matrix_view[ViewIndex];
+#else
mat4 projection_matrix = scene_data.projection_matrix;
+ mat4 inv_projection_matrix = scene_data.inv_projection_matrix;
+#endif //USE_MULTIVIEW
//using world coordinates
#if !defined(SKIP_TRANSFORM_USED) && defined(VERTEX_WORLD_COORDS_USED)
- vertex = (world_matrix * vec4(vertex, 1.0)).xyz;
+ vertex = (model_matrix * vec4(vertex, 1.0)).xyz;
- normal = world_normal_matrix * normal;
+#ifdef NORMAL_USED
+ normal = model_normal_matrix * normal;
+#endif
#if defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
- tangent = world_normal_matrix * tangent;
- binormal = world_normal_matrix * binormal;
+ tangent = model_normal_matrix * tangent;
+ binormal = model_normal_matrix * binormal;
#endif
#endif
float roughness = 1.0;
- mat4 modelview = scene_data.inv_camera_matrix * world_matrix;
- mat3 modelview_normal = mat3(scene_data.inv_camera_matrix) * world_normal_matrix;
+ mat4 modelview = scene_data.view_matrix * model_matrix;
+ mat3 modelview_normal = mat3(scene_data.view_matrix) * model_normal_matrix;
{
#CODE : VERTEX
@@ -289,13 +309,14 @@ void main() {
//using world coordinates
#if !defined(SKIP_TRANSFORM_USED) && defined(VERTEX_WORLD_COORDS_USED)
- vertex = (scene_data.inv_camera_matrix * vec4(vertex, 1.0)).xyz;
- normal = mat3(scene_data.inverse_normal_matrix) * normal;
+ vertex = (scene_data.view_matrix * vec4(vertex, 1.0)).xyz;
+#ifdef NORMAL_USED
+ normal = (scene_data.view_matrix * vec4(normal, 0.0)).xyz;
+#endif
#if defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
-
- binormal = mat3(scene_data.camera_inverse_binormal_matrix) * binormal;
- tangent = mat3(scene_data.camera_inverse_tangent_matrix) * tangent;
+ binormal = (scene_data.view_matrix * vec4(binormal, 0.0)).xyz;
+ tangent = (scene_data.view_matrix * vec4(tangent, 0.0)).xyz;
#endif
#endif
@@ -418,10 +439,28 @@ layout(location = 8) in float dp_clip;
layout(location = 9) in flat uint instance_index_interp;
+#ifdef USE_MULTIVIEW
+#ifdef has_VK_KHR_multiview
+#define ViewIndex gl_ViewIndex
+#else // has_VK_KHR_multiview
+// !BAS! This needs to become an input once we implement our fallback!
+#define ViewIndex 0
+#endif // has_VK_KHR_multiview
+#else // USE_MULTIVIEW
+// Set to zero, not supported in non stereo
+#define ViewIndex 0
+#endif //USE_MULTIVIEW
+
//defines to keep compatibility with vertex
-#define world_matrix instances.data[instance_index].transform
+#define model_matrix instances.data[draw_call.instance_index].transform
+#ifdef USE_MULTIVIEW
+#define projection_matrix scene_data.projection_matrix_view[ViewIndex]
+#define inv_projection_matrix scene_data.inv_projection_matrix_view[ViewIndex]
+#else
#define projection_matrix scene_data.projection_matrix
+#define inv_projection_matrix scene_data.inv_projection_matrix
+#endif
#if defined(ENABLE_SSS) && defined(ENABLE_TRANSMITTANCE)
//both required for transmittance to be enabled
@@ -460,14 +499,14 @@ layout(location = 1) out uvec2 voxel_gi_buffer;
#endif //MODE_RENDER_NORMAL
#else // RENDER DEPTH
-#ifdef MODE_MULTIPLE_RENDER_TARGETS
+#ifdef MODE_SEPARATE_SPECULAR
layout(location = 0) out vec4 diffuse_buffer; //diffuse (rgb) and roughness
layout(location = 1) out vec4 specular_buffer; //specular and SSS (subsurface scatter)
#else
layout(location = 0) out vec4 frag_color;
-#endif // MODE_MULTIPLE_RENDER_TARGETS
+#endif // MODE_SEPARATE_SPECULAR
#endif // RENDER DEPTH
@@ -475,8 +514,8 @@ layout(location = 0) out vec4 frag_color;
#if !defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
-/* Make a default specular mode SPECULAR_SCHLICK_GGX. */
-#if !defined(SPECULAR_DISABLED) && !defined(SPECULAR_SCHLICK_GGX) && !defined(SPECULAR_BLINN) && !defined(SPECULAR_PHONG) && !defined(SPECULAR_TOON)
+// Default to SPECULAR_SCHLICK_GGX.
+#if !defined(SPECULAR_DISABLED) && !defined(SPECULAR_SCHLICK_GGX) && !defined(SPECULAR_TOON)
#define SPECULAR_SCHLICK_GGX
#endif
@@ -533,7 +572,7 @@ vec4 fog_process(vec3 vertex) {
float fog_amount = 1.0 - exp(min(0.0, -length(vertex) * scene_data.fog_density));
if (abs(scene_data.fog_height_density) >= 0.0001) {
- float y = (scene_data.camera_matrix * vec4(vertex, 1.0)).y;
+ float y = (scene_data.inv_view_matrix * vec4(vertex, 1.0)).y;
float y_dist = y - scene_data.fog_height;
@@ -549,7 +588,6 @@ void cluster_get_item_range(uint p_offset, out uint item_min, out uint item_max,
uint item_min_max = cluster_buffer.data[p_offset];
item_min = item_min_max & 0xFFFF;
item_max = item_min_max >> 16;
- ;
item_from = item_min >> 5;
item_to = (item_max == 0) ? 0 : ((item_max - 1) >> 5) + 1; //side effect of how it is stored, as item_max 0 means no elements
@@ -572,7 +610,7 @@ void main() {
uint instance_index = instance_index_interp;
- //lay out everything, whathever is unused is optimized away anyway
+ //lay out everything, whatever is unused is optimized away anyway
vec3 vertex = vertex_interp;
vec3 view = -normalize(vertex_interp);
vec3 albedo = vec3(1.0);
@@ -587,7 +625,7 @@ void main() {
float rim = 0.0;
float rim_tint = 0.0;
float clearcoat = 0.0;
- float clearcoat_gloss = 0.0;
+ float clearcoat_roughness = 0.0;
float anisotropy = 0.0;
vec2 anisotropy_flow = vec2(1.0, 0.0);
vec4 fog = vec4(0.0);
@@ -910,7 +948,17 @@ void main() {
#if !defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
if (scene_data.use_reflection_cubemap) {
+#ifdef LIGHT_ANISOTROPY_USED
+ // https://google.github.io/filament/Filament.html#lighting/imagebasedlights/anisotropy
+ vec3 anisotropic_direction = anisotropy >= 0.0 ? binormal : tangent;
+ vec3 anisotropic_tangent = cross(anisotropic_direction, view);
+ vec3 anisotropic_normal = cross(anisotropic_tangent, anisotropic_direction);
+ vec3 bent_normal = normalize(mix(normal, anisotropic_normal, abs(anisotropy) * clamp(5.0 * roughness, 0.0, 1.0)));
+ vec3 ref_vec = reflect(-view, bent_normal);
+#else
vec3 ref_vec = reflect(-view, normal);
+#endif
+
float horizon = min(1.0 + dot(ref_vec, normal), 1.0);
ref_vec = scene_data.radiance_inverse_xform * ref_vec;
#ifdef USE_RADIANCE_CUBEMAP_ARRAY
@@ -952,6 +1000,36 @@ void main() {
#if defined(CUSTOM_IRRADIANCE_USED)
ambient_light = mix(ambient_light, custom_irradiance.rgb, custom_irradiance.a);
#endif
+
+#ifdef LIGHT_CLEARCOAT_USED
+
+ if (scene_data.use_reflection_cubemap) {
+ vec3 n = normalize(normal_interp); // We want to use geometric normal, not normal_map
+ float NoV = max(dot(n, view), 0.0001);
+ vec3 ref_vec = reflect(-view, n);
+ // The clear coat layer assumes an IOR of 1.5 (4% reflectance)
+ float Fc = clearcoat * (0.04 + 0.96 * SchlickFresnel(NoV));
+ float attenuation = 1.0 - Fc;
+ ambient_light *= attenuation;
+ specular_light *= attenuation;
+
+ float horizon = min(1.0 + dot(ref_vec, normal), 1.0);
+ ref_vec = scene_data.radiance_inverse_xform * ref_vec;
+ float roughness_lod = mix(0.001, 0.1, clearcoat_roughness) * MAX_ROUGHNESS_LOD;
+#ifdef USE_RADIANCE_CUBEMAP_ARRAY
+
+ float lod, blend;
+ blend = modf(roughness_lod, lod);
+ vec3 clearcoat_light = texture(samplerCubeArray(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), vec4(ref_vec, lod)).rgb;
+ clearcoat_light = mix(clearcoat_light, texture(samplerCubeArray(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), vec4(ref_vec, lod + 1)).rgb, blend);
+
+#else
+ vec3 clearcoat_light = textureLod(samplerCube(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), ref_vec, roughness_lod).rgb;
+
+#endif //USE_RADIANCE_CUBEMAP_ARRAY
+ specular_light += clearcoat_light * horizon * horizon * Fc * scene_data.ambient_light_color_energy.a;
+ }
+#endif
#endif //!defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
//radiance
@@ -965,7 +1043,7 @@ void main() {
if (bool(instances.data[instance_index].flags & INSTANCE_FLAGS_USE_LIGHTMAP_CAPTURE)) { //has lightmap capture
uint index = instances.data[instance_index].gi_offset;
- vec3 wnormal = mat3(scene_data.camera_matrix) * normal;
+ vec3 wnormal = mat3(scene_data.inv_view_matrix) * normal;
const float c1 = 0.429043;
const float c2 = 0.511664;
const float c3 = 0.743125;
@@ -1019,9 +1097,9 @@ void main() {
if (sc_use_forward_gi && bool(instances.data[instance_index].flags & INSTANCE_FLAGS_USE_SDFGI)) { //has lightmap capture
//make vertex orientation the world one, but still align to camera
- vec3 cam_pos = mat3(scene_data.camera_matrix) * vertex;
- vec3 cam_normal = mat3(scene_data.camera_matrix) * normal;
- vec3 cam_reflection = mat3(scene_data.camera_matrix) * reflect(-view, normal);
+ vec3 cam_pos = mat3(scene_data.inv_view_matrix) * vertex;
+ vec3 cam_normal = mat3(scene_data.inv_view_matrix) * normal;
+ vec3 cam_reflection = mat3(scene_data.inv_view_matrix) * reflect(-view, normal);
//apply y-mult
cam_pos.y *= sdfgi.y_mult;
@@ -1153,7 +1231,7 @@ void main() {
}
#endif // !USE_LIGHTMAP
- if (scene_data.ssao_enabled) {
+ if (bool(scene_data.ss_effects_flags & SCREEN_SPACE_EFFECTS_FLAGS_USE_SSAO)) {
float ssao = texture(sampler2D(ao_buffer, material_samplers[SAMPLER_LINEAR_CLAMP]), screen_uv).r;
ao = min(ao, ssao);
ao_light_affect = mix(ao_light_affect, max(ao_light_affect, scene_data.ssao_light_affect), scene_data.ssao_ao_affect);
@@ -1200,8 +1278,16 @@ void main() {
if (!bool(reflections.data[reflection_index].mask & instances.data[instance_index].layer_mask)) {
continue; //not masked
}
-
- reflection_process(reflection_index, vertex, normal, roughness, ambient_light, specular_light, ambient_accum, reflection_accum);
+#ifdef LIGHT_ANISOTROPY_USED
+ // https://google.github.io/filament/Filament.html#lighting/imagebasedlights/anisotropy
+ vec3 anisotropic_direction = anisotropy >= 0.0 ? binormal : tangent;
+ vec3 anisotropic_tangent = cross(anisotropic_direction, view);
+ vec3 anisotropic_normal = cross(anisotropic_tangent, anisotropic_direction);
+ vec3 bent_normal = normalize(mix(normal, anisotropic_normal, abs(anisotropy) * clamp(5.0 * roughness, 0.0, 1.0)));
+#else
+ vec3 bent_normal = normal;
+#endif
+ reflection_process(reflection_index, vertex, bent_normal, roughness, ambient_light, specular_light, ambient_accum, reflection_accum);
}
}
@@ -1223,6 +1309,12 @@ void main() {
// convert ao to direct light ao
ao = mix(1.0, ao, ao_light_affect);
+ if (bool(scene_data.ss_effects_flags & SCREEN_SPACE_EFFECTS_FLAGS_USE_SSIL)) {
+ vec4 ssil = textureLod(sampler2D(ssil_buffer, material_samplers[SAMPLER_LINEAR_CLAMP]), screen_uv, 0.0);
+ ambient_light *= 1.0 - ssil.a;
+ ambient_light += ssil.rgb * albedo.rgb;
+ }
+
//this saves some VGPRs
vec3 f0 = F0(metallic, specular, albedo);
@@ -1387,62 +1479,78 @@ void main() {
} else { //no soft shadows
vec4 pssm_coord;
+ float blur_factor;
+
if (depth_z < directional_lights.data[i].shadow_split_offsets.x) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 0)
pssm_coord = (directional_lights.data[i].shadow_matrix1 * v);
+ blur_factor = 1.0;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 1)
pssm_coord = (directional_lights.data[i].shadow_matrix2 * v);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.y;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 2)
pssm_coord = (directional_lights.data[i].shadow_matrix3 * v);
-
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.z;
} else {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 3)
pssm_coord = (directional_lights.data[i].shadow_matrix4 * v);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.w;
}
pssm_coord /= pssm_coord.w;
- shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
+ shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale * blur_factor, pssm_coord);
if (directional_lights.data[i].blend_splits) {
float pssm_blend;
+ float blur_factor2;
if (depth_z < directional_lights.data[i].shadow_split_offsets.x) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 1)
pssm_coord = (directional_lights.data[i].shadow_matrix2 * v);
pssm_blend = smoothstep(0.0, directional_lights.data[i].shadow_split_offsets.x, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.y;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 2)
pssm_coord = (directional_lights.data[i].shadow_matrix3 * v);
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.x, directional_lights.data[i].shadow_split_offsets.y, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.z;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 3)
pssm_coord = (directional_lights.data[i].shadow_matrix4 * v);
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.y, directional_lights.data[i].shadow_split_offsets.z, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.w;
} else {
pssm_blend = 0.0; //if no blend, same coord will be used (divide by z will result in same value, and already cached)
+ blur_factor2 = 1.0;
}
pssm_coord /= pssm_coord.w;
- float shadow2 = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
+ float shadow2 = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale * blur_factor2, pssm_coord);
shadow = mix(shadow, shadow2, pssm_blend);
}
}
@@ -1547,10 +1655,11 @@ void main() {
rim, rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
- binormal, tangent, anisotropy,
+ binormal,
+ tangent, anisotropy,
#endif
diffuse_light,
specular_light);
@@ -1618,7 +1727,7 @@ void main() {
rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
tangent, binormal, anisotropy,
@@ -1690,10 +1799,11 @@ void main() {
rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
- tangent, binormal, anisotropy,
+ tangent,
+ binormal, anisotropy,
#endif
diffuse_light, specular_light);
}
@@ -1745,7 +1855,7 @@ void main() {
vec3(0, -1, 0),
vec3(0, 0, -1));
- vec3 cam_normal = mat3(scene_data.camera_matrix) * normalize(normal_interp);
+ vec3 cam_normal = mat3(scene_data.inv_view_matrix) * normalize(normal_interp);
float closest_dist = -1e20;
@@ -1872,7 +1982,7 @@ void main() {
//restore fog
fog = vec4(unpackHalf2x16(fog_rg), unpackHalf2x16(fog_ba));
-#ifdef MODE_MULTIPLE_RENDER_TARGETS
+#ifdef MODE_SEPARATE_SPECULAR
#ifdef MODE_UNSHADED
diffuse_buffer = vec4(albedo.rgb, 0.0);
@@ -1890,19 +2000,19 @@ void main() {
diffuse_buffer.rgb = mix(diffuse_buffer.rgb, fog.rgb, fog.a);
specular_buffer.rgb = mix(specular_buffer.rgb, vec3(0.0), fog.a);
-#else //MODE_MULTIPLE_RENDER_TARGETS
+#else //MODE_SEPARATE_SPECULAR
#ifdef MODE_UNSHADED
frag_color = vec4(albedo, alpha);
#else
frag_color = vec4(emission + ambient_light + diffuse_light + specular_light, alpha);
- //frag_color = vec4(1.0);
+//frag_color = vec4(1.0);
#endif //USE_NO_SHADING
// Draw "fixed" fog before volumetric fog to ensure volumetric fog can appear in front of the sky.
frag_color.rgb = mix(frag_color.rgb, fog.rgb, fog.a);
-#endif //MODE_MULTIPLE_RENDER_TARGETS
+#endif //MODE_SEPARATE_SPECULAR
#endif //MODE_RENDER_DEPTH
}
diff --git a/servers/rendering/renderer_rd/shaders/scene_forward_clustered_inc.glsl b/servers/rendering/renderer_rd/shaders/scene_forward_clustered_inc.glsl
index be29cf4f58..f2672f10e7 100644
--- a/servers/rendering/renderer_rd/shaders/scene_forward_clustered_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/scene_forward_clustered_inc.glsl
@@ -2,6 +2,7 @@
#define ROUGHNESS_MAX_LOD 5
#define MAX_VOXEL_GI_INSTANCES 8
+#define MAX_VIEWS 2
#if defined(has_GL_KHR_shader_subgroup_ballot) && defined(has_GL_KHR_shader_subgroup_arithmetic)
@@ -12,16 +13,20 @@
#endif
+#if defined(USE_MULTIVIEW) && defined(has_VK_KHR_multiview)
+#extension GL_EXT_multiview : enable
+#endif
+
#include "cluster_data_inc.glsl"
#include "decal_data_inc.glsl"
-#if !defined(MODE_RENDER_DEPTH) || defined(MODE_RENDER_MATERIAL) || defined(MODE_RENDER_SDF) || defined(MODE_RENDER_NORMAL_ROUGHNESS) || defined(MODE_RENDER_VOXEL_GI) || defined(TANGENT_USED) || defined(NORMAL_MAP_USED)
+#if !defined(MODE_RENDER_DEPTH) || defined(MODE_RENDER_MATERIAL) || defined(MODE_RENDER_SDF) || defined(MODE_RENDER_NORMAL_ROUGHNESS) || defined(MODE_RENDER_VOXEL_GI) || defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
#ifndef NORMAL_USED
#define NORMAL_USED
#endif
#endif
-layout(push_constant, binding = 0, std430) uniform DrawCall {
+layout(push_constant, std430) uniform DrawCall {
uint instance_index;
uint uv_offset;
uint pad0;
@@ -72,6 +77,9 @@ layout(set = 0, binding = 4) uniform sampler light_projector_sampler;
//3 bits of stride
#define INSTANCE_FLAGS_PARTICLE_TRAIL_MASK 0xFF
+#define SCREEN_SPACE_EFFECTS_FLAGS_USE_SSAO 1
+#define SCREEN_SPACE_EFFECTS_FLAGS_USE_SSIL 2
+
layout(set = 0, binding = 5, std430) restrict readonly buffer OmniLights {
LightData data[];
}
@@ -166,9 +174,12 @@ sdfgi;
layout(set = 1, binding = 0, std140) uniform SceneData {
mat4 projection_matrix;
mat4 inv_projection_matrix;
+ mat4 inv_view_matrix;
+ mat4 view_matrix;
- mat4 camera_matrix;
- mat4 inv_camera_matrix;
+ // only used for multiview
+ mat4 projection_matrix_view[MAX_VIEWS];
+ mat4 inv_projection_matrix_view[MAX_VIEWS];
vec2 viewport_size;
vec2 screen_pixel_size;
@@ -201,7 +212,7 @@ layout(set = 1, binding = 0, std140) uniform SceneData {
float z_far;
float z_near;
- bool ssao_enabled;
+ uint ss_effects_flags;
float ssao_light_affect;
float ssao_ao_affect;
bool roughness_limiter_enabled;
@@ -305,19 +316,15 @@ layout(set = 1, binding = 15) uniform texture2DArray sdfgi_lightprobe_texture;
layout(set = 1, binding = 16) uniform texture3D sdfgi_occlusion_cascades;
struct VoxelGIData {
- mat4 xform;
- vec3 bounds;
- float dynamic_range;
+ mat4 xform; // 64 - 64
- float bias;
- float normal_bias;
- bool blend_ambient;
- uint texture_slot;
+ vec3 bounds; // 12 - 76
+ float dynamic_range; // 4 - 80
- float anisotropy_strength;
- float ambient_occlusion;
- float ambient_occlusion_size;
- uint mipmaps;
+ float bias; // 4 - 84
+ float normal_bias; // 4 - 88
+ bool blend_ambient; // 4 - 92
+ uint mipmaps; // 4 - 96
};
layout(set = 1, binding = 17, std140) uniform VoxelGIs {
@@ -327,6 +334,8 @@ voxel_gi_instances;
layout(set = 1, binding = 18) uniform texture3D volumetric_fog_texture;
+layout(set = 1, binding = 19) uniform texture2D ssil_buffer;
+
#endif
/* Set 2 Skeleton & Instancing (can change per item) */
diff --git a/servers/rendering/renderer_rd/shaders/scene_forward_lights_inc.glsl b/servers/rendering/renderer_rd/shaders/scene_forward_lights_inc.glsl
index d22f936a35..bd1c2b5758 100644
--- a/servers/rendering/renderer_rd/shaders/scene_forward_lights_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/scene_forward_lights_inc.glsl
@@ -1,55 +1,29 @@
// Functions related to lighting
-// This returns the G_GGX function divided by 2 cos_theta_m, where in practice cos_theta_m is either N.L or N.V.
-// We're dividing this factor off because the overall term we'll end up looks like
-// (see, for example, the first unnumbered equation in B. Burley, "Physically Based Shading at Disney", SIGGRAPH 2012):
-//
-// F(L.V) D(N.H) G(N.L) G(N.V) / (4 N.L N.V)
-//
-// We're basically regouping this as
-//
-// F(L.V) D(N.H) [G(N.L)/(2 N.L)] [G(N.V) / (2 N.V)]
-//
-// and thus, this function implements the [G(N.m)/(2 N.m)] part with m = L or V.
-//
-// The contents of the D and G (G1) functions (GGX) are taken from
-// E. Heitz, "Understanding the Masking-Shadowing Function in Microfacet-Based BRDFs", J. Comp. Graph. Tech. 3 (2) (2014).
-// Eqns 71-72 and 85-86 (see also Eqns 43 and 80).
-
-float G_GGX_2cos(float cos_theta_m, float alpha) {
- // Schlick's approximation
- // C. Schlick, "An Inexpensive BRDF Model for Physically-based Rendering", Computer Graphics Forum. 13 (3): 233 (1994)
- // Eq. (19), although see Heitz (2014) the about the problems with his derivation.
- // It nevertheless approximates GGX well with k = alpha/2.
- float k = 0.5 * alpha;
- return 0.5 / (cos_theta_m * (1.0 - k) + k);
-
- // float cos2 = cos_theta_m * cos_theta_m;
- // float sin2 = (1.0 - cos2);
- // return 1.0 / (cos_theta_m + sqrt(cos2 + alpha * alpha * sin2));
-}
-
float D_GGX(float cos_theta_m, float alpha) {
- float alpha2 = alpha * alpha;
- float d = 1.0 + (alpha2 - 1.0) * cos_theta_m * cos_theta_m;
- return alpha2 / (M_PI * d * d);
+ float a = cos_theta_m * alpha;
+ float k = alpha / (1.0 - cos_theta_m * cos_theta_m + a * a);
+ return k * k * (1.0 / M_PI);
}
-float G_GGX_anisotropic_2cos(float cos_theta_m, float alpha_x, float alpha_y, float cos_phi, float sin_phi) {
- float cos2 = cos_theta_m * cos_theta_m;
- float sin2 = (1.0 - cos2);
- float s_x = alpha_x * cos_phi;
- float s_y = alpha_y * sin_phi;
- return 1.0 / max(cos_theta_m + sqrt(cos2 + (s_x * s_x + s_y * s_y) * sin2), 0.001);
+// From Earl Hammon, Jr. "PBR Diffuse Lighting for GGX+Smith Microsurfaces" https://www.gdcvault.com/play/1024478/PBR-Diffuse-Lighting-for-GGX
+float V_GGX(float NdotL, float NdotV, float alpha) {
+ return 0.5 / mix(2.0 * NdotL * NdotV, NdotL + NdotV, alpha);
}
float D_GGX_anisotropic(float cos_theta_m, float alpha_x, float alpha_y, float cos_phi, float sin_phi) {
- float cos2 = cos_theta_m * cos_theta_m;
- float sin2 = (1.0 - cos2);
- float r_x = cos_phi / alpha_x;
- float r_y = sin_phi / alpha_y;
- float d = cos2 + sin2 * (r_x * r_x + r_y * r_y);
- return 1.0 / max(M_PI * alpha_x * alpha_y * d * d, 0.001);
+ float alpha2 = alpha_x * alpha_y;
+ highp vec3 v = vec3(alpha_y * cos_phi, alpha_x * sin_phi, alpha2 * cos_theta_m);
+ highp float v2 = dot(v, v);
+ float w2 = alpha2 / v2;
+ float D = alpha2 * w2 * w2 * (1.0 / M_PI);
+ return D;
+}
+
+float V_GGX_anisotropic(float alpha_x, float alpha_y, float TdotV, float TdotL, float BdotV, float BdotL, float NdotV, float NdotL) {
+ float Lambda_V = NdotL * length(vec3(alpha_x * TdotV, alpha_y * BdotV, NdotV));
+ float Lambda_L = NdotV * length(vec3(alpha_x * TdotL, alpha_y * BdotL, NdotL));
+ return 0.5 / (Lambda_V + Lambda_L);
}
float SchlickFresnel(float u) {
@@ -58,14 +32,6 @@ float SchlickFresnel(float u) {
return m2 * m2 * m; // pow(m,5)
}
-float GTR1(float NdotH, float a) {
- if (a >= 1.0)
- return 1.0 / M_PI;
- float a2 = a * a;
- float t = 1.0 + (a2 - 1.0) * NdotH * NdotH;
- return (a2 - 1.0) / (M_PI * log(a2) * t);
-}
-
vec3 F0(float metallic, float specular, vec3 albedo) {
float dielectric = 0.16 * specular * specular;
// use albedo * metallic as colored specular reflectance at 0 angle for metallic materials;
@@ -87,7 +53,7 @@ void light_compute(vec3 N, vec3 L, vec3 V, float A, vec3 light_color, float atte
float rim, float rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- float clearcoat, float clearcoat_gloss,
+ float clearcoat, float clearcoat_roughness, vec3 vertex_normal,
#endif
#ifdef LIGHT_ANISOTROPY_USED
vec3 B, vec3 T, float anisotropy,
@@ -113,13 +79,13 @@ void light_compute(vec3 N, vec3 L, vec3 V, float A, vec3 light_color, float atte
float NdotL = min(A + dot(N, L), 1.0);
float cNdotL = max(NdotL, 0.0); // clamped NdotL
float NdotV = dot(N, V);
- float cNdotV = max(NdotV, 0.0);
+ float cNdotV = max(NdotV, 1e-4);
-#if defined(DIFFUSE_BURLEY) || defined(SPECULAR_BLINN) || defined(SPECULAR_SCHLICK_GGX) || defined(LIGHT_CLEARCOAT_USED)
+#if defined(DIFFUSE_BURLEY) || defined(SPECULAR_SCHLICK_GGX) || defined(LIGHT_CLEARCOAT_USED)
vec3 H = normalize(V + L);
#endif
-#if defined(SPECULAR_BLINN) || defined(SPECULAR_SCHLICK_GGX) || defined(LIGHT_CLEARCOAT_USED)
+#if defined(SPECULAR_SCHLICK_GGX)
float cNdotH = clamp(A + dot(N, H), 0.0, 1.0);
#endif
@@ -203,26 +169,7 @@ void light_compute(vec3 N, vec3 L, vec3 V, float A, vec3 light_color, float atte
// D
-#if defined(SPECULAR_BLINN)
-
- //normalized blinn
- float shininess = exp2(15.0 * (1.0 - roughness) + 1.0) * 0.25;
- float blinn = pow(cNdotH, shininess);
- blinn *= (shininess + 2.0) * (1.0 / (8.0 * M_PI));
-
- specular_light += light_color * attenuation * specular_amount * blinn * f0 * orms_unpacked.w;
-
-#elif defined(SPECULAR_PHONG)
-
- vec3 R = normalize(-reflect(L, N));
- float cRdotV = clamp(A + dot(R, V), 0.0, 1.0);
- float shininess = exp2(15.0 * (1.0 - roughness) + 1.0) * 0.25;
- float phong = pow(cRdotV, shininess);
- phong *= (shininess + 1.0) * (1.0 / (8.0 * M_PI));
-
- specular_light += light_color * attenuation * specular_amount * phong * f0 * orms_unpacked.w;
-
-#elif defined(SPECULAR_TOON)
+#if defined(SPECULAR_TOON)
vec3 R = normalize(-reflect(L, N));
float RdotV = dot(R, V);
@@ -236,24 +183,21 @@ void light_compute(vec3 N, vec3 L, vec3 V, float A, vec3 light_color, float atte
#elif defined(SPECULAR_SCHLICK_GGX)
// shlick+ggx as default
-
+ float alpha_ggx = roughness * roughness;
#if defined(LIGHT_ANISOTROPY_USED)
- float alpha_ggx = roughness * roughness;
float aspect = sqrt(1.0 - anisotropy * 0.9);
float ax = alpha_ggx / aspect;
float ay = alpha_ggx * aspect;
float XdotH = dot(T, H);
float YdotH = dot(B, H);
float D = D_GGX_anisotropic(cNdotH, ax, ay, XdotH, YdotH);
- float G = G_GGX_anisotropic_2cos(cNdotL, ax, ay, XdotH, YdotH) * G_GGX_anisotropic_2cos(cNdotV, ax, ay, XdotH, YdotH);
-
-#else
- float alpha_ggx = roughness * roughness;
+ float G = V_GGX_anisotropic(ax, ay, dot(T, V), dot(T, L), dot(B, V), dot(B, L), cNdotV, cNdotL);
+#else // LIGHT_ANISOTROPY_USED
float D = D_GGX(cNdotH, alpha_ggx);
- float G = G_GGX_2cos(cNdotL, alpha_ggx) * G_GGX_2cos(cNdotV, alpha_ggx);
-#endif
- // F
+ float G = V_GGX(cNdotL, cNdotV, alpha_ggx);
+#endif // LIGHT_ANISOTROPY_USED
+ // F
float cLdotH5 = SchlickFresnel(cLdotH);
vec3 F = mix(vec3(cLdotH5), vec3(1.0), f0);
@@ -263,18 +207,23 @@ void light_compute(vec3 N, vec3 L, vec3 V, float A, vec3 light_color, float atte
#endif
#if defined(LIGHT_CLEARCOAT_USED)
+ // Clearcoat ignores normal_map, use vertex normal instead
+ float ccNdotL = max(min(A + dot(vertex_normal, L), 1.0), 0.0);
+ float ccNdotH = clamp(A + dot(vertex_normal, H), 0.0, 1.0);
+ float ccNdotV = max(dot(vertex_normal, V), 1e-4);
#if !defined(SPECULAR_SCHLICK_GGX)
float cLdotH5 = SchlickFresnel(cLdotH);
#endif
- float Dr = GTR1(cNdotH, mix(.1, .001, clearcoat_gloss));
+ float Dr = D_GGX(ccNdotH, mix(0.001, 0.1, clearcoat_roughness));
+ float Gr = 0.25 / (cLdotH * cLdotH);
float Fr = mix(.04, 1.0, cLdotH5);
- float Gr = G_GGX_2cos(cNdotL, .25) * G_GGX_2cos(cNdotV, .25);
-
- float clearcoat_specular_brdf_NL = 0.25 * clearcoat * Gr * Fr * Dr * cNdotL;
+ float clearcoat_specular_brdf_NL = clearcoat * Gr * Fr * Dr * cNdotL;
specular_light += clearcoat_specular_brdf_NL * light_color * attenuation * specular_amount;
-#endif
+ // TODO: Clearcoat adds light to the scene right now (it is non-energy conserving), both diffuse and specular need to be scaled by (1.0 - FR)
+ // but to do so we need to rearrange this entire function
+#endif // LIGHT_CLEARCOAT_USED
}
#ifdef USE_SHADOW_TO_OPACITY
@@ -587,7 +536,7 @@ void light_process_omni(uint idx, vec3 vertex, vec3 eye_vec, vec3 normal, vec3 v
float rim, float rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- float clearcoat, float clearcoat_gloss,
+ float clearcoat, float clearcoat_roughness, vec3 vertex_normal,
#endif
#ifdef LIGHT_ANISOTROPY_USED
vec3 binormal, vec3 tangent, float anisotropy,
@@ -711,7 +660,7 @@ void light_process_omni(uint idx, vec3 vertex, vec3 eye_vec, vec3 normal, vec3 v
rim * omni_attenuation, rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, vertex_normal,
#endif
#ifdef LIGHT_ANISOTROPY_USED
binormal, tangent, anisotropy,
@@ -827,7 +776,7 @@ void light_process_spot(uint idx, vec3 vertex, vec3 eye_vec, vec3 normal, vec3 v
float rim, float rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- float clearcoat, float clearcoat_gloss,
+ float clearcoat, float clearcoat_roughness, vec3 vertex_normal,
#endif
#ifdef LIGHT_ANISOTROPY_USED
vec3 binormal, vec3 tangent, float anisotropy,
@@ -877,17 +826,17 @@ void light_process_spot(uint idx, vec3 vertex, vec3 eye_vec, vec3 normal, vec3 v
vec4 splane = (spot_lights.data[idx].shadow_matrix * vec4(vertex, 1.0));
splane /= splane.w;
- vec2 proj_uv = normal_to_panorama(splane.xyz) * spot_lights.data[idx].projector_rect.zw;
+ vec2 proj_uv = splane.xy * spot_lights.data[idx].projector_rect.zw;
if (sc_projector_use_mipmaps) {
//ensure we have proper mipmaps
vec4 splane_ddx = (spot_lights.data[idx].shadow_matrix * vec4(vertex + vertex_ddx, 1.0));
splane_ddx /= splane_ddx.w;
- vec2 proj_uv_ddx = normal_to_panorama(splane_ddx.xyz) * spot_lights.data[idx].projector_rect.zw - proj_uv;
+ vec2 proj_uv_ddx = splane_ddx.xy * spot_lights.data[idx].projector_rect.zw - proj_uv;
vec4 splane_ddy = (spot_lights.data[idx].shadow_matrix * vec4(vertex + vertex_ddy, 1.0));
splane_ddy /= splane_ddy.w;
- vec2 proj_uv_ddy = normal_to_panorama(splane_ddy.xyz) * spot_lights.data[idx].projector_rect.zw - proj_uv;
+ vec2 proj_uv_ddy = splane_ddy.xy * spot_lights.data[idx].projector_rect.zw - proj_uv;
vec4 proj = textureGrad(sampler2D(decal_atlas_srgb, light_projector_sampler), proj_uv + spot_lights.data[idx].projector_rect.xy, proj_uv_ddx, proj_uv_ddy);
color *= proj.rgb * proj.a;
@@ -912,7 +861,7 @@ void light_process_spot(uint idx, vec3 vertex, vec3 eye_vec, vec3 normal, vec3 v
rim * spot_attenuation, rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, vertex_normal,
#endif
#ifdef LIGHT_ANISOTROPY_USED
binormal, tangent, anisotropy,
diff --git a/servers/rendering/renderer_rd/shaders/scene_forward_mobile.glsl b/servers/rendering/renderer_rd/shaders/scene_forward_mobile.glsl
index e92fbecfd0..b6ba244665 100644
--- a/servers/rendering/renderer_rd/shaders/scene_forward_mobile.glsl
+++ b/servers/rendering/renderer_rd/shaders/scene_forward_mobile.glsl
@@ -122,13 +122,13 @@ void main() {
bool is_multimesh = bool(draw_call.flags & INSTANCE_FLAGS_MULTIMESH);
- mat4 world_matrix = draw_call.transform;
+ mat4 model_matrix = draw_call.transform;
- mat3 world_normal_matrix;
+ mat3 model_normal_matrix;
if (bool(draw_call.flags & INSTANCE_FLAGS_NON_UNIFORM_SCALE)) {
- world_normal_matrix = transpose(inverse(mat3(world_matrix)));
+ model_normal_matrix = transpose(inverse(mat3(model_matrix)));
} else {
- world_normal_matrix = mat3(world_matrix);
+ model_normal_matrix = mat3(model_matrix);
}
if (is_multimesh) {
@@ -221,8 +221,8 @@ void main() {
#endif
//transpose
matrix = transpose(matrix);
- world_matrix = world_matrix * matrix;
- world_normal_matrix = world_normal_matrix * mat3(matrix);
+ model_matrix = model_matrix * matrix;
+ model_normal_matrix = model_normal_matrix * mat3(matrix);
}
vec3 vertex = vertex_attrib;
@@ -259,22 +259,24 @@ void main() {
//using world coordinates
#if !defined(SKIP_TRANSFORM_USED) && defined(VERTEX_WORLD_COORDS_USED)
- vertex = (world_matrix * vec4(vertex, 1.0)).xyz;
+ vertex = (model_matrix * vec4(vertex, 1.0)).xyz;
- normal = world_normal_matrix * normal;
+#ifdef NORMAL_USED
+ normal = model_normal_matrix * normal;
+#endif
#if defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
- tangent = world_normal_matrix * tangent;
- binormal = world_normal_matrix * binormal;
+ tangent = model_normal_matrix * tangent;
+ binormal = model_normal_matrix * binormal;
#endif
#endif
float roughness = 1.0;
- mat4 modelview = scene_data.inv_camera_matrix * world_matrix;
- mat3 modelview_normal = mat3(scene_data.inv_camera_matrix) * world_normal_matrix;
+ mat4 modelview = scene_data.view_matrix * model_matrix;
+ mat3 modelview_normal = mat3(scene_data.view_matrix) * model_normal_matrix;
{
#CODE : VERTEX
@@ -301,13 +303,14 @@ void main() {
//using world coordinates
#if !defined(SKIP_TRANSFORM_USED) && defined(VERTEX_WORLD_COORDS_USED)
- vertex = (scene_data.inv_camera_matrix * vec4(vertex, 1.0)).xyz;
- normal = mat3(scene_data.inverse_normal_matrix) * normal;
+ vertex = (scene_data.view_matrix * vec4(vertex, 1.0)).xyz;
+#ifdef NORMAL_USED
+ normal = (scene_data.view_matrix * vec4(normal, 0.0)).xyz;
+#endif
#if defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
-
- binormal = mat3(scene_data.camera_inverse_binormal_matrix) * binormal;
- tangent = mat3(scene_data.camera_inverse_tangent_matrix) * tangent;
+ binormal = (scene_data.view_matrix * vec4(binormal, 0.0)).xyz;
+ tangent = (scene_data.view_matrix * vec4(tangent, 0.0)).xyz;
#endif
#endif
@@ -455,7 +458,7 @@ layout(location = 8) highp in float dp_clip;
//defines to keep compatibility with vertex
-#define world_matrix draw_call.transform
+#define model_matrix draw_call.transform
#ifdef USE_MULTIVIEW
#define projection_matrix scene_data.projection_matrix_view[ViewIndex]
#else
@@ -508,8 +511,8 @@ layout(location = 0) out mediump vec4 frag_color;
#if !defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
-/* Make a default specular mode SPECULAR_SCHLICK_GGX. */
-#if !defined(SPECULAR_DISABLED) && !defined(SPECULAR_SCHLICK_GGX) && !defined(SPECULAR_BLINN) && !defined(SPECULAR_PHONG) && !defined(SPECULAR_TOON)
+// Default to SPECULAR_SCHLICK_GGX.
+#if !defined(SPECULAR_DISABLED) && !defined(SPECULAR_SCHLICK_GGX) && !defined(SPECULAR_TOON)
#define SPECULAR_SCHLICK_GGX
#endif
@@ -557,7 +560,7 @@ vec4 fog_process(vec3 vertex) {
float fog_amount = 1.0 - exp(min(0.0, -length(vertex) * scene_data.fog_density));
if (abs(scene_data.fog_height_density) >= 0.0001) {
- float y = (scene_data.camera_matrix * vec4(vertex, 1.0)).y;
+ float y = (scene_data.inv_view_matrix * vec4(vertex, 1.0)).y;
float y_dist = y - scene_data.fog_height;
@@ -578,7 +581,7 @@ void main() {
discard;
#endif
- //lay out everything, whathever is unused is optimized away anyway
+ //lay out everything, whatever is unused is optimized away anyway
vec3 vertex = vertex_interp;
vec3 view = -normalize(vertex_interp);
vec3 albedo = vec3(1.0);
@@ -593,7 +596,7 @@ void main() {
float rim = 0.0;
float rim_tint = 0.0;
float clearcoat = 0.0;
- float clearcoat_gloss = 0.0;
+ float clearcoat_roughness = 0.0;
float anisotropy = 0.0;
vec2 anisotropy_flow = vec2(1.0, 0.0);
vec4 fog = vec4(0.0);
@@ -871,7 +874,16 @@ void main() {
#if !defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
if (scene_data.use_reflection_cubemap) {
+#ifdef LIGHT_ANISOTROPY_USED
+ // https://google.github.io/filament/Filament.html#lighting/imagebasedlights/anisotropy
+ vec3 anisotropic_direction = anisotropy >= 0.0 ? binormal : tangent;
+ vec3 anisotropic_tangent = cross(anisotropic_direction, view);
+ vec3 anisotropic_normal = cross(anisotropic_tangent, anisotropic_direction);
+ vec3 bent_normal = normalize(mix(normal, anisotropic_normal, abs(anisotropy) * clamp(5.0 * roughness, 0.0, 1.0)));
+ vec3 ref_vec = reflect(-view, bent_normal);
+#else
vec3 ref_vec = reflect(-view, normal);
+#endif
float horizon = min(1.0 + dot(ref_vec, normal), 1.0);
ref_vec = scene_data.radiance_inverse_xform * ref_vec;
#ifdef USE_RADIANCE_CUBEMAP_ARRAY
@@ -914,7 +926,35 @@ void main() {
#if defined(CUSTOM_IRRADIANCE_USED)
ambient_light = mix(specular_light, custom_irradiance.rgb, custom_irradiance.a);
#endif // CUSTOM_IRRADIANCE_USED
+#ifdef LIGHT_CLEARCOAT_USED
+
+ if (scene_data.use_reflection_cubemap) {
+ vec3 n = normalize(normal_interp); // We want to use geometric normal, not normal_map
+ float NoV = max(dot(n, view), 0.0001);
+ vec3 ref_vec = reflect(-view, n);
+ // The clear coat layer assumes an IOR of 1.5 (4% reflectance)
+ float Fc = clearcoat * (0.04 + 0.96 * SchlickFresnel(NoV));
+ float attenuation = 1.0 - Fc;
+ ambient_light *= attenuation;
+ specular_light *= attenuation;
+
+ float horizon = min(1.0 + dot(ref_vec, normal), 1.0);
+ ref_vec = scene_data.radiance_inverse_xform * ref_vec;
+ float roughness_lod = mix(0.001, 0.1, clearcoat_roughness) * MAX_ROUGHNESS_LOD;
+#ifdef USE_RADIANCE_CUBEMAP_ARRAY
+
+ float lod, blend;
+ blend = modf(roughness_lod, lod);
+ vec3 clearcoat_light = texture(samplerCubeArray(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), vec4(ref_vec, lod)).rgb;
+ clearcoat_light = mix(clearcoat_light, texture(samplerCubeArray(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), vec4(ref_vec, lod + 1)).rgb, blend);
+
+#else
+ vec3 clearcoat_light = textureLod(samplerCube(radiance_cubemap, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), ref_vec, roughness_lod).rgb;
+#endif //USE_RADIANCE_CUBEMAP_ARRAY
+ specular_light += clearcoat_light * horizon * horizon * Fc * scene_data.ambient_light_color_energy.a;
+ }
+#endif
#endif //!defined(MODE_RENDER_DEPTH) && !defined(MODE_UNSHADED)
//radiance
@@ -927,7 +967,7 @@ void main() {
if (bool(draw_call.flags & INSTANCE_FLAGS_USE_LIGHTMAP_CAPTURE)) { //has lightmap capture
uint index = draw_call.gi_offset;
- vec3 wnormal = mat3(scene_data.camera_matrix) * normal;
+ vec3 wnormal = mat3(scene_data.inv_view_matrix) * normal;
const float c1 = 0.429043;
const float c2 = 0.511664;
const float c3 = 0.743125;
@@ -999,13 +1039,27 @@ void main() {
if (reflection_index == 0xFF) {
break;
}
-
- reflection_process(reflection_index, vertex, normal, roughness, ambient_light, specular_light, ambient_accum, reflection_accum);
+#ifdef LIGHT_ANISOTROPY_USED
+ // https://google.github.io/filament/Filament.html#lighting/imagebasedlights/anisotropy
+ vec3 anisotropic_direction = anisotropy >= 0.0 ? binormal : tangent;
+ vec3 anisotropic_tangent = cross(anisotropic_direction, view);
+ vec3 anisotropic_normal = cross(anisotropic_tangent, anisotropic_direction);
+ vec3 bent_normal = normalize(mix(normal, anisotropic_normal, abs(anisotropy) * clamp(5.0 * roughness, 0.0, 1.0)));
+#else
+ vec3 bent_normal = normal;
+#endif
+ reflection_process(reflection_index, vertex, bent_normal, roughness, ambient_light, specular_light, ambient_accum, reflection_accum);
}
if (reflection_accum.a > 0.0) {
specular_light = reflection_accum.rgb / reflection_accum.a;
}
+
+#if !defined(USE_LIGHTMAP)
+ if (ambient_accum.a > 0.0) {
+ ambient_light = ambient_accum.rgb / ambient_accum.a;
+ }
+#endif
} //Reflection probes
// finalize ambient light here
@@ -1076,7 +1130,6 @@ void main() {
float depth_z = -vertex.z;
vec4 pssm_coord;
- vec3 shadow_color = vec3(0.0);
vec3 light_dir = directional_lights.data[i].direction;
#define BIAS_FUNC(m_var, m_idx) \
@@ -1102,9 +1155,6 @@ void main() {
} else {
shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
}
-
- shadow_color = directional_lights.data[i].shadow_color1.rgb;
-
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
@@ -1122,8 +1172,6 @@ void main() {
} else {
shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
}
-
- shadow_color = directional_lights.data[i].shadow_color2.rgb;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
@@ -1141,9 +1189,6 @@ void main() {
} else {
shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
}
-
- shadow_color = directional_lights.data[i].shadow_color3.rgb;
-
} else {
vec4 v = vec4(vertex, 1.0);
@@ -1161,12 +1206,9 @@ void main() {
} else {
shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
}
-
- shadow_color = directional_lights.data[i].shadow_color4.rgb;
}
if (directional_lights.data[i].blend_splits) {
- vec3 shadow_color_blend = vec3(0.0);
float pssm_blend;
float shadow2;
@@ -1187,7 +1229,6 @@ void main() {
}
pssm_blend = smoothstep(0.0, directional_lights.data[i].shadow_split_offsets.x, depth_z);
- shadow_color_blend = directional_lights.data[i].shadow_color2.rgb;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 2)
@@ -1205,8 +1246,6 @@ void main() {
}
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.x, directional_lights.data[i].shadow_split_offsets.y, depth_z);
-
- shadow_color_blend = directional_lights.data[i].shadow_color3.rgb;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 3)
@@ -1223,7 +1262,6 @@ void main() {
}
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.y, directional_lights.data[i].shadow_split_offsets.z, depth_z);
- shadow_color_blend = directional_lights.data[i].shadow_color4.rgb;
} else {
pssm_blend = 0.0; //if no blend, same coord will be used (divide by z will result in same value, and already cached)
}
@@ -1231,7 +1269,6 @@ void main() {
pssm_blend = sqrt(pssm_blend);
shadow = mix(shadow, shadow2, pssm_blend);
- shadow_color = mix(shadow_color, shadow_color_blend, pssm_blend);
}
shadow = mix(shadow, 1.0, smoothstep(directional_lights.data[i].fade_from, directional_lights.data[i].fade_to, vertex.z)); //done with negative values for performance
@@ -1245,6 +1282,7 @@ void main() {
float depth_z = -vertex.z;
vec4 pssm_coord;
+ float blur_factor;
vec3 light_dir = directional_lights.data[i].direction;
vec3 base_normal_bias = normalize(normal_interp) * (1.0 - max(0.0, dot(light_dir, -normalize(normal_interp))));
@@ -1260,56 +1298,71 @@ void main() {
BIAS_FUNC(v, 0)
pssm_coord = (directional_lights.data[i].shadow_matrix1 * v);
+ blur_factor = 1.0;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 1)
pssm_coord = (directional_lights.data[i].shadow_matrix2 * v);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.y;
+ ;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 2)
pssm_coord = (directional_lights.data[i].shadow_matrix3 * v);
-
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.z;
} else {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 3)
pssm_coord = (directional_lights.data[i].shadow_matrix4 * v);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.w;
}
pssm_coord /= pssm_coord.w;
- shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
+ shadow = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale * blur_factor, pssm_coord);
if (directional_lights.data[i].blend_splits) {
float pssm_blend;
+ float blur_factor2;
if (depth_z < directional_lights.data[i].shadow_split_offsets.x) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 1)
pssm_coord = (directional_lights.data[i].shadow_matrix2 * v);
pssm_blend = smoothstep(0.0, directional_lights.data[i].shadow_split_offsets.x, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.y;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.y) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 2)
pssm_coord = (directional_lights.data[i].shadow_matrix3 * v);
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.x, directional_lights.data[i].shadow_split_offsets.y, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.z;
} else if (depth_z < directional_lights.data[i].shadow_split_offsets.z) {
vec4 v = vec4(vertex, 1.0);
BIAS_FUNC(v, 3)
pssm_coord = (directional_lights.data[i].shadow_matrix4 * v);
pssm_blend = smoothstep(directional_lights.data[i].shadow_split_offsets.y, directional_lights.data[i].shadow_split_offsets.z, depth_z);
+ // Adjust shadow blur with reference to the first split to reduce discrepancy between shadow splits.
+ blur_factor2 = directional_lights.data[i].shadow_split_offsets.x / directional_lights.data[i].shadow_split_offsets.w;
} else {
pssm_blend = 0.0; //if no blend, same coord will be used (divide by z will result in same value, and already cached)
+ blur_factor2 = 1.0;
}
pssm_coord /= pssm_coord.w;
- float shadow2 = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale, pssm_coord);
+ float shadow2 = sample_directional_pcf_shadow(directional_shadow_atlas, scene_data.directional_shadow_pixel_size * directional_lights.data[i].soft_shadow_scale * blur_factor2, pssm_coord);
shadow = mix(shadow, shadow2, pssm_blend);
}
@@ -1365,7 +1418,7 @@ void main() {
rim, rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
binormal, tangent, anisotropy,
@@ -1412,10 +1465,11 @@ void main() {
rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
- tangent, binormal, anisotropy,
+ tangent,
+ binormal, anisotropy,
#endif
diffuse_light, specular_light);
}
@@ -1456,10 +1510,11 @@ void main() {
rim_tint,
#endif
#ifdef LIGHT_CLEARCOAT_USED
- clearcoat, clearcoat_gloss,
+ clearcoat, clearcoat_roughness, normalize(normal_interp),
#endif
#ifdef LIGHT_ANISOTROPY_USED
- tangent, binormal, anisotropy,
+ tangent,
+ binormal, anisotropy,
#endif
diffuse_light, specular_light);
}
diff --git a/servers/rendering/renderer_rd/shaders/scene_forward_mobile_inc.glsl b/servers/rendering/renderer_rd/shaders/scene_forward_mobile_inc.glsl
index a9a4fce82a..91ef19ab67 100644
--- a/servers/rendering/renderer_rd/shaders/scene_forward_mobile_inc.glsl
+++ b/servers/rendering/renderer_rd/shaders/scene_forward_mobile_inc.glsl
@@ -7,7 +7,7 @@
#include "decal_data_inc.glsl"
-#if !defined(MODE_RENDER_DEPTH) || defined(MODE_RENDER_MATERIAL) || defined(TANGENT_USED) || defined(NORMAL_MAP_USED)
+#if !defined(MODE_RENDER_DEPTH) || defined(MODE_RENDER_MATERIAL) || defined(TANGENT_USED) || defined(NORMAL_MAP_USED) || defined(LIGHT_ANISOTROPY_USED)
#ifndef NORMAL_USED
#define NORMAL_USED
#endif
@@ -15,7 +15,7 @@
/* don't exceed 128 bytes!! */
/* put instance data into our push content, not a array */
-layout(push_constant, binding = 0, std430) uniform DrawCall {
+layout(push_constant, std430) uniform DrawCall {
highp mat4 transform; // 64 - 64
uint flags; // 04 - 68
uint instance_uniforms_ofs; //base offset in global buffer for instance variables // 04 - 72
@@ -128,8 +128,8 @@ global_variables;
layout(set = 1, binding = 0, std140) uniform SceneData {
highp mat4 projection_matrix;
highp mat4 inv_projection_matrix;
- highp mat4 camera_matrix;
- highp mat4 inv_camera_matrix;
+ highp mat4 inv_view_matrix;
+ highp mat4 view_matrix;
// only used for multiview
highp mat4 projection_matrix_view[MAX_VIEWS];
diff --git a/servers/rendering/renderer_rd/shaders/screen_space_reflection.glsl b/servers/rendering/renderer_rd/shaders/screen_space_reflection.glsl
index 78e0a85341..a416891ff2 100644
--- a/servers/rendering/renderer_rd/shaders/screen_space_reflection.glsl
+++ b/servers/rendering/renderer_rd/shaders/screen_space_reflection.glsl
@@ -15,7 +15,7 @@ layout(r8, set = 1, binding = 1) uniform restrict writeonly image2D blur_radius_
layout(rgba8, set = 2, binding = 0) uniform restrict readonly image2D source_normal_roughness;
layout(set = 3, binding = 0) uniform sampler2D source_metallic;
-layout(push_constant, binding = 2, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec4 proj_info;
ivec2 screen_size;
@@ -190,8 +190,7 @@ void main() {
}
vec2 final_pos;
- float grad;
- grad = steps_taken / float(params.num_steps);
+ float grad = (steps_taken + 1.0) / float(params.num_steps);
float initial_fade = params.curve_fade_in == 0.0 ? 1.0 : pow(clamp(grad, 0.0, 1.0), params.curve_fade_in);
float fade = pow(clamp(1.0 - grad, 0.0, 1.0), params.distance_fade) * initial_fade;
final_pos = pos;
@@ -223,7 +222,6 @@ void main() {
blur_radius = (a * (sqrt(a2 + fh2) - a)) / (4.0f * h);
}
}
-
final_color = imageLoad(source_diffuse, ivec2((final_pos - 0.5) * pixel_size));
imageStore(blur_radius_image, ssC, vec4(blur_radius / 255.0)); //stored in r8
diff --git a/servers/rendering/renderer_rd/shaders/screen_space_reflection_filter.glsl b/servers/rendering/renderer_rd/shaders/screen_space_reflection_filter.glsl
index 62d1cffb0a..20e1712496 100644
--- a/servers/rendering/renderer_rd/shaders/screen_space_reflection_filter.glsl
+++ b/servers/rendering/renderer_rd/shaders/screen_space_reflection_filter.glsl
@@ -16,7 +16,7 @@ layout(r8, set = 2, binding = 1) uniform restrict writeonly image2D dest_radius;
#endif
layout(r32f, set = 3, binding = 0) uniform restrict readonly image2D source_depth;
-layout(push_constant, binding = 2, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec4 proj_info;
bool orthogonal;
diff --git a/servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl b/servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl
index 2328effe7b..3f537e273a 100644
--- a/servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl
+++ b/servers/rendering/renderer_rd/shaders/screen_space_reflection_scale.glsl
@@ -13,7 +13,7 @@ layout(rgba16f, set = 2, binding = 0) uniform restrict writeonly image2D dest_ss
layout(r32f, set = 3, binding = 0) uniform restrict writeonly image2D dest_depth;
layout(rgba8, set = 3, binding = 1) uniform restrict writeonly image2D dest_normal;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
float camera_z_near;
float camera_z_far;
diff --git a/servers/rendering/renderer_rd/shaders/sdfgi_debug.glsl b/servers/rendering/renderer_rd/shaders/sdfgi_debug.glsl
index 8b58796962..802a410825 100644
--- a/servers/rendering/renderer_rd/shaders/sdfgi_debug.glsl
+++ b/servers/rendering/renderer_rd/shaders/sdfgi_debug.glsl
@@ -32,7 +32,7 @@ layout(rgba16f, set = 0, binding = 10) uniform restrict writeonly image2D screen
layout(set = 0, binding = 11) uniform texture2DArray lightprobe_texture;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 grid_size;
uint max_cascades;
diff --git a/servers/rendering/renderer_rd/shaders/sdfgi_debug_probes.glsl b/servers/rendering/renderer_rd/shaders/sdfgi_debug_probes.glsl
index 4290d5b869..e0be0bca12 100644
--- a/servers/rendering/renderer_rd/shaders/sdfgi_debug_probes.glsl
+++ b/servers/rendering/renderer_rd/shaders/sdfgi_debug_probes.glsl
@@ -6,7 +6,7 @@
#define MAX_CASCADES 8
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
mat4 projection;
uint band_power;
@@ -160,7 +160,7 @@ layout(location = 0) out vec4 frag_color;
layout(set = 0, binding = 2) uniform texture2DArray lightprobe_texture;
layout(set = 0, binding = 3) uniform sampler linear_sampler;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
mat4 projection;
uint band_power;
diff --git a/servers/rendering/renderer_rd/shaders/sdfgi_direct_light.glsl b/servers/rendering/renderer_rd/shaders/sdfgi_direct_light.glsl
index d6e5c6a92e..b95fad650e 100644
--- a/servers/rendering/renderer_rd/shaders/sdfgi_direct_light.glsl
+++ b/servers/rendering/renderer_rd/shaders/sdfgi_direct_light.glsl
@@ -70,8 +70,6 @@ struct Light {
float cos_spot_angle;
float inv_spot_attenuation;
float radius;
-
- vec4 shadow_color;
};
layout(set = 0, binding = 9, std140) buffer restrict readonly Lights {
@@ -82,7 +80,7 @@ lights;
layout(set = 0, binding = 10) uniform texture2DArray lightprobe_texture;
layout(set = 0, binding = 11) uniform texture3D occlusion_texture;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 grid_size;
uint max_cascades;
diff --git a/servers/rendering/renderer_rd/shaders/sdfgi_integrate.glsl b/servers/rendering/renderer_rd/shaders/sdfgi_integrate.glsl
index eedd28959c..9c03297f5c 100644
--- a/servers/rendering/renderer_rd/shaders/sdfgi_integrate.glsl
+++ b/servers/rendering/renderer_rd/shaders/sdfgi_integrate.glsl
@@ -52,7 +52,7 @@ layout(set = 1, binding = 1) uniform sampler linear_sampler_mipmaps;
#define SKY_MODE_COLOR 1
#define SKY_MODE_SKY 2
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 grid_size;
uint max_cascades;
diff --git a/servers/rendering/renderer_rd/shaders/sdfgi_preprocess.glsl b/servers/rendering/renderer_rd/shaders/sdfgi_preprocess.glsl
index 4d9fa85a74..bce98f4054 100644
--- a/servers/rendering/renderer_rd/shaders/sdfgi_preprocess.glsl
+++ b/servers/rendering/renderer_rd/shaders/sdfgi_preprocess.glsl
@@ -102,7 +102,7 @@ dispatch_data;
struct ProcessVoxel {
uint position; // xyz 7 bit packed, extra 11 bits for neighbors.
- uint albedo; //rgb bits 0-15 albedo, bits 16-21 are normal bits (set if geometry exists toward that side), extra 11 bits for neibhbours
+ uint albedo; //rgb bits 0-15 albedo, bits 16-21 are normal bits (set if geometry exists toward that side), extra 11 bits for neighbours
uint light; //rgbe8985 encoded total saved light, extra 2 bits for neighbours
uint light_aniso; //55555 light anisotropy, extra 2 bits for neighbours
//total neighbours: 26
@@ -135,7 +135,7 @@ dispatch_data;
struct ProcessVoxel {
uint position; // xyz 7 bit packed, extra 11 bits for neighbors.
- uint albedo; //rgb bits 0-15 albedo, bits 16-21 are normal bits (set if geometry exists toward that side), extra 11 bits for neibhbours
+ uint albedo; //rgb bits 0-15 albedo, bits 16-21 are normal bits (set if geometry exists toward that side), extra 11 bits for neighbours
uint light; //rgbe8985 encoded total saved light, extra 2 bits for neighbours
uint light_aniso; //55555 light anisotropy, extra 2 bits for neighbours
//total neighbours: 26
@@ -155,7 +155,7 @@ layout(r16ui, set = 0, binding = 2) uniform restrict readonly uimage3D src_occlu
#endif
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec3 scroll;
int grid_size;
diff --git a/servers/rendering/renderer_rd/shaders/skeleton.glsl b/servers/rendering/renderer_rd/shaders/skeleton.glsl
index b831005256..4ef6a26443 100644
--- a/servers/rendering/renderer_rd/shaders/skeleton.glsl
+++ b/servers/rendering/renderer_rd/shaders/skeleton.glsl
@@ -36,7 +36,7 @@ layout(set = 2, binding = 0, std430) buffer restrict readonly SkeletonData {
}
bone_transforms;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
bool has_normal;
bool has_tangent;
bool has_skeleton;
diff --git a/servers/rendering/renderer_rd/shaders/sky.glsl b/servers/rendering/renderer_rd/shaders/sky.glsl
index d07a454ade..5b4594da99 100644
--- a/servers/rendering/renderer_rd/shaders/sky.glsl
+++ b/servers/rendering/renderer_rd/shaders/sky.glsl
@@ -12,7 +12,7 @@
layout(location = 0) out vec2 uv_interp;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
mat3 orientation;
vec4 projections[MAX_VIEWS];
vec4 position_multiplier;
@@ -52,7 +52,7 @@ void main() {
layout(location = 0) in vec2 uv_interp;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
mat3 orientation;
vec4 projections[MAX_VIEWS];
vec4 position_multiplier;
@@ -180,12 +180,11 @@ void main() {
cube_normal.x = (cube_normal.z * (-uv_interp.x - params.projections[ViewIndex].x)) / params.projections[ViewIndex].y;
cube_normal.y = -(cube_normal.z * (-uv_interp.y - params.projections[ViewIndex].z)) / params.projections[ViewIndex].w;
cube_normal = mat3(params.orientation) * cube_normal;
- cube_normal.z = -cube_normal.z;
cube_normal = normalize(cube_normal);
vec2 uv = uv_interp * 0.5 + 0.5;
- vec2 panorama_coords = vec2(atan(cube_normal.x, cube_normal.z), acos(cube_normal.y));
+ vec2 panorama_coords = vec2(atan(cube_normal.x, -cube_normal.z), acos(cube_normal.y));
if (panorama_coords.x < 0.0) {
panorama_coords.x += M_PI * 2.0;
@@ -200,13 +199,11 @@ void main() {
vec4 custom_fog = vec4(0.0);
#ifdef USE_CUBEMAP_PASS
- vec3 inverted_cube_normal = cube_normal;
- inverted_cube_normal.z *= -1.0;
#ifdef USES_HALF_RES_COLOR
- half_res_color = texture(samplerCube(half_res, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), inverted_cube_normal) * params.luminance_multiplier;
+ half_res_color = texture(samplerCube(half_res, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), cube_normal) * params.luminance_multiplier;
#endif
#ifdef USES_QUARTER_RES_COLOR
- quarter_res_color = texture(samplerCube(quarter_res, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), inverted_cube_normal) * params.luminance_multiplier;
+ quarter_res_color = texture(samplerCube(quarter_res, material_samplers[SAMPLER_LINEAR_WITH_MIPMAPS_CLAMP]), cube_normal) * params.luminance_multiplier;
#endif
#else
#ifdef USES_HALF_RES_COLOR
diff --git a/servers/rendering/renderer_rd/shaders/sort.glsl b/servers/rendering/renderer_rd/shaders/sort.glsl
index 307e60dc21..48cf69012a 100644
--- a/servers/rendering/renderer_rd/shaders/sort.glsl
+++ b/servers/rendering/renderer_rd/shaders/sort.glsl
@@ -47,7 +47,7 @@ layout(set = 1, binding = 0, std430) restrict buffer SortBuffer {
}
sort_buffer;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint total_elements;
uint pad[3];
ivec4 job_params;
diff --git a/servers/rendering/renderer_rd/shaders/ssao_downsample.glsl b/servers/rendering/renderer_rd/shaders/ss_effects_downsample.glsl
index ee0db6a6f0..134aae5ce7 100644
--- a/servers/rendering/renderer_rd/shaders/ssao_downsample.glsl
+++ b/servers/rendering/renderer_rd/shaders/ss_effects_downsample.glsl
@@ -25,7 +25,7 @@
layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec2 pixel_size;
float z_far;
float z_near;
@@ -42,6 +42,9 @@ layout(r16f, set = 1, binding = 0) uniform restrict writeonly image2DArray dest_
layout(r16f, set = 2, binding = 0) uniform restrict writeonly image2DArray dest_image1;
layout(r16f, set = 2, binding = 1) uniform restrict writeonly image2DArray dest_image2;
layout(r16f, set = 2, binding = 2) uniform restrict writeonly image2DArray dest_image3;
+#ifdef GENERATE_FULL_MIPS
+layout(r16f, set = 2, binding = 3) uniform restrict writeonly image2DArray dest_image4;
+#endif
#endif
vec4 screen_space_to_view_space_depth(vec4 p_depth) {
@@ -150,7 +153,27 @@ void prepare_depths_and_mips(vec4 p_samples, uvec2 p_output_coord, uvec2 p_gtid)
float avg = mip_smart_average(vec4(sample_00, sample_01, sample_10, sample_11));
imageStore(dest_image3, ivec3(p_output_coord.x, p_output_coord.y, depth_array_index), vec4(avg));
+#ifndef GENERATE_FULL_MIPS
+ }
+#else
+ depth_buffer[depth_array_index][buffer_coord.x][buffer_coord.y] = avg;
}
+ still_alive = p_gtid.x % 16 == depth_array_offset.x && depth_array_offset.y % 16 == depth_array_offset.y;
+
+ p_output_coord /= 2;
+ groupMemoryBarrier();
+ barrier();
+
+ if (still_alive) {
+ float sample_00 = depth_buffer[depth_array_index][buffer_coord.x + 0][buffer_coord.y + 0];
+ float sample_01 = depth_buffer[depth_array_index][buffer_coord.x + 0][buffer_coord.y + 8];
+ float sample_10 = depth_buffer[depth_array_index][buffer_coord.x + 8][buffer_coord.y + 0];
+ float sample_11 = depth_buffer[depth_array_index][buffer_coord.x + 8][buffer_coord.y + 8];
+
+ float avg = mip_smart_average(vec4(sample_00, sample_01, sample_10, sample_11));
+ imageStore(dest_image4, ivec3(p_output_coord.x, p_output_coord.y, depth_array_index), vec4(avg));
+ }
+#endif
}
#else
#ifndef USE_HALF_BUFFERS
diff --git a/servers/rendering/renderer_rd/shaders/ssao.glsl b/servers/rendering/renderer_rd/shaders/ssao.glsl
index 6e945edfcd..2a87e273bc 100644
--- a/servers/rendering/renderer_rd/shaders/ssao.glsl
+++ b/servers/rendering/renderer_rd/shaders/ssao.glsl
@@ -23,8 +23,6 @@
#VERSION_DEFINES
-#define SSAO_ADAPTIVE_TAP_BASE_COUNT 5
-
#define INTELSSAO_MAIN_DISK_SAMPLE_COUNT (32)
const vec4 sample_pattern[INTELSSAO_MAIN_DISK_SAMPLE_COUNT] = {
vec4(0.78488064, 0.56661671, 1.500000, -0.126083), vec4(0.26022232, -0.29575172, 1.500000, -1.064030), vec4(0.10459357, 0.08372527, 1.110000, -2.730563), vec4(-0.68286800, 0.04963045, 1.090000, -0.498827),
@@ -62,7 +60,6 @@ const int num_taps[5] = { 3, 5, 12, 0, 0 };
#define SSAO_REDUCE_RADIUS_NEAR_SCREEN_BORDER_ENABLE_AT_QUALITY_PRESET (1)
#define SSAO_MAX_TAPS 32
-#define SSAO_MAX_REF_TAPS 512
#define SSAO_ADAPTIVE_TAP_BASE_COUNT 5
#define SSAO_ADAPTIVE_TAP_FLEXIBLE_COUNT (SSAO_MAX_TAPS - SSAO_ADAPTIVE_TAP_BASE_COUNT)
#define SSAO_DEPTH_MIP_LEVELS 4
@@ -88,7 +85,7 @@ counter;
layout(rg8, set = 2, binding = 0) uniform restrict writeonly image2D dest_image;
// This push_constant is full - 128 bytes - if you need to add more data, consider adding to the uniform buffer instead
-layout(push_constant, binding = 3, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
int pass;
int quality;
diff --git a/servers/rendering/renderer_rd/shaders/ssao_blur.glsl b/servers/rendering/renderer_rd/shaders/ssao_blur.glsl
index d9cd2b4e85..f42734c46d 100644
--- a/servers/rendering/renderer_rd/shaders/ssao_blur.glsl
+++ b/servers/rendering/renderer_rd/shaders/ssao_blur.glsl
@@ -29,7 +29,7 @@ layout(set = 0, binding = 0) uniform sampler2D source_ssao;
layout(rg8, set = 1, binding = 0) uniform restrict writeonly image2D dest_image;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float edge_sharpness;
float pad;
vec2 half_screen_pixel_size;
@@ -128,19 +128,19 @@ void main() {
#ifdef MODE_NON_SMART
- vec2 halfPixel = params.half_screen_pixel_size * 0.5f;
+ vec2 half_pixel = params.half_screen_pixel_size * 0.5;
vec2 uv = (vec2(gl_GlobalInvocationID.xy) + vec2(0.5, 0.5)) * params.half_screen_pixel_size;
- vec2 centre = textureLod(source_ssao, vec2(uv), 0.0).xy;
+ vec2 center = textureLod(source_ssao, vec2(uv), 0.0).xy;
vec4 vals;
- vals.x = textureLod(source_ssao, vec2(uv + vec2(-halfPixel.x * 3, -halfPixel.y)), 0.0).x;
- vals.y = textureLod(source_ssao, vec2(uv + vec2(+halfPixel.x, -halfPixel.y * 3)), 0.0).x;
- vals.z = textureLod(source_ssao, vec2(uv + vec2(-halfPixel.x, +halfPixel.y * 3)), 0.0).x;
- vals.w = textureLod(source_ssao, vec2(uv + vec2(+halfPixel.x * 3, +halfPixel.y)), 0.0).x;
+ vals.x = textureLod(source_ssao, vec2(uv + vec2(-half_pixel.x * 3, -half_pixel.y)), 0.0).x;
+ vals.y = textureLod(source_ssao, vec2(uv + vec2(+half_pixel.x, -half_pixel.y * 3)), 0.0).x;
+ vals.z = textureLod(source_ssao, vec2(uv + vec2(-half_pixel.x, +half_pixel.y * 3)), 0.0).x;
+ vals.w = textureLod(source_ssao, vec2(uv + vec2(+half_pixel.x * 3, +half_pixel.y)), 0.0).x;
- vec2 sampled = vec2(dot(vals, vec4(0.2)) + centre.x * 0.2, centre.y);
+ vec2 sampled = vec2(dot(vals, vec4(0.2)) + center.x * 0.2, center.y);
#else
#ifdef MODE_SMART
diff --git a/servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl b/servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl
index 687fe1e6e2..04f98964e8 100644
--- a/servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl
+++ b/servers/rendering/renderer_rd/shaders/ssao_importance_map.glsl
@@ -26,7 +26,7 @@
layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
#ifdef GENERATE_MAP
-layout(set = 0, binding = 0) uniform sampler2DArray source_ssao;
+layout(set = 0, binding = 0) uniform sampler2DArray source_texture;
#else
layout(set = 0, binding = 0) uniform sampler2D source_importance;
#endif
@@ -39,7 +39,7 @@ layout(set = 2, binding = 0, std430) buffer Counter {
counter;
#endif
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec2 half_screen_pixel_size;
float intensity;
float power;
@@ -56,11 +56,10 @@ void main() {
vec2 base_uv = (vec2(base_position) + vec2(0.5f, 0.5f)) * params.half_screen_pixel_size;
- float avg = 0.0;
float minV = 1.0;
float maxV = 0.0;
for (int i = 0; i < 4; i++) {
- vec4 vals = textureGather(source_ssao, vec3(base_uv, i));
+ vec4 vals = textureGather(source_texture, vec3(base_uv, i));
// apply the same modifications that would have been applied in the main shader
vals = params.intensity * vals;
@@ -69,8 +68,6 @@ void main() {
vals = pow(clamp(vals, 0.0, 1.0), vec4(params.power));
- avg += dot(vec4(vals.x, vals.y, vals.z, vals.w), vec4(1.0 / 16.0, 1.0 / 16.0, 1.0 / 16.0, 1.0 / 16.0));
-
maxV = max(maxV, max(max(vals.x, vals.y), max(vals.z, vals.w)));
minV = min(minV, min(min(vals.x, vals.y), min(vals.z, vals.w)));
}
diff --git a/servers/rendering/renderer_rd/shaders/ssao_interleave.glsl b/servers/rendering/renderer_rd/shaders/ssao_interleave.glsl
index 0907423d5d..f6a9a92fac 100644
--- a/servers/rendering/renderer_rd/shaders/ssao_interleave.glsl
+++ b/servers/rendering/renderer_rd/shaders/ssao_interleave.glsl
@@ -27,7 +27,7 @@ layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
layout(rgba8, set = 0, binding = 0) uniform restrict writeonly image2D dest_image;
layout(set = 1, binding = 0) uniform sampler2DArray source_texture;
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
float inv_sharpness;
uint size_modifier;
vec2 pixel_size;
diff --git a/servers/rendering/renderer_rd/shaders/ssil.glsl b/servers/rendering/renderer_rd/shaders/ssil.glsl
new file mode 100644
index 0000000000..513791dfbf
--- /dev/null
+++ b/servers/rendering/renderer_rd/shaders/ssil.glsl
@@ -0,0 +1,444 @@
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+// Copyright (c) 2016, Intel Corporation
+// Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated
+// documentation files (the "Software"), to deal in the Software without restriction, including without limitation
+// the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to
+// permit persons to whom the Software is furnished to do so, subject to the following conditions:
+// The above copyright notice and this permission notice shall be included in all copies or substantial portions of
+// the Software.
+// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO
+// THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
+// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+// TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+// SOFTWARE.
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+// File changes (yyyy-mm-dd)
+// 2016-09-07: filip.strugar@intel.com: first commit
+// 2020-12-05: clayjohn: convert to Vulkan and Godot
+// 2021-05-27: clayjohn: convert SSAO to SSIL
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+
+#[compute]
+
+#version 450
+
+#VERSION_DEFINES
+
+#define SSIL_MAIN_DISK_SAMPLE_COUNT (32)
+const vec4 sample_pattern[SSIL_MAIN_DISK_SAMPLE_COUNT] = {
+ vec4(0.78488064, 0.56661671, 1.500000, -0.126083), vec4(0.26022232, -0.29575172, 1.500000, -1.064030), vec4(0.10459357, 0.08372527, 1.110000, -2.730563), vec4(-0.68286800, 0.04963045, 1.090000, -0.498827),
+ vec4(-0.13570161, -0.64190155, 1.250000, -0.532765), vec4(-0.26193795, -0.08205118, 0.670000, -1.783245), vec4(-0.61177456, 0.66664219, 0.710000, -0.044234), vec4(0.43675563, 0.25119025, 0.610000, -1.167283),
+ vec4(0.07884444, 0.86618668, 0.640000, -0.459002), vec4(-0.12790935, -0.29869005, 0.600000, -1.729424), vec4(-0.04031125, 0.02413622, 0.600000, -4.792042), vec4(0.16201244, -0.52851415, 0.790000, -1.067055),
+ vec4(-0.70991218, 0.47301072, 0.640000, -0.335236), vec4(0.03277707, -0.22349690, 0.600000, -1.982384), vec4(0.68921727, 0.36800742, 0.630000, -0.266718), vec4(0.29251814, 0.37775412, 0.610000, -1.422520),
+ vec4(-0.12224089, 0.96582592, 0.600000, -0.426142), vec4(0.11071457, -0.16131058, 0.600000, -2.165947), vec4(0.46562141, -0.59747696, 0.600000, -0.189760), vec4(-0.51548797, 0.11804193, 0.600000, -1.246800),
+ vec4(0.89141309, -0.42090443, 0.600000, 0.028192), vec4(-0.32402530, -0.01591529, 0.600000, -1.543018), vec4(0.60771245, 0.41635221, 0.600000, -0.605411), vec4(0.02379565, -0.08239821, 0.600000, -3.809046),
+ vec4(0.48951152, -0.23657045, 0.600000, -1.189011), vec4(-0.17611565, -0.81696892, 0.600000, -0.513724), vec4(-0.33930185, -0.20732205, 0.600000, -1.698047), vec4(-0.91974425, 0.05403209, 0.600000, 0.062246),
+ vec4(-0.15064627, -0.14949332, 0.600000, -1.896062), vec4(0.53180975, -0.35210401, 0.600000, -0.758838), vec4(0.41487166, 0.81442589, 0.600000, -0.505648), vec4(-0.24106961, -0.32721516, 0.600000, -1.665244)
+};
+
+// these values can be changed (up to SSIL_MAX_TAPS) with no changes required elsewhere; values for 4th and 5th preset are ignored but array needed to avoid compilation errors
+// the actual number of texture samples is two times this value (each "tap" has two symmetrical depth texture samples)
+const int num_taps[5] = { 3, 5, 12, 0, 0 };
+
+#define SSIL_TILT_SAMPLES_ENABLE_AT_QUALITY_PRESET (99) // to disable simply set to 99 or similar
+#define SSIL_TILT_SAMPLES_AMOUNT (0.4)
+//
+#define SSIL_HALOING_REDUCTION_ENABLE_AT_QUALITY_PRESET (1) // to disable simply set to 99 or similar
+#define SSIL_HALOING_REDUCTION_AMOUNT (0.8) // values from 0.0 - 1.0, 1.0 means max weighting (will cause artifacts, 0.8 is more reasonable)
+//
+#define SSIL_DEPTH_MIPS_ENABLE_AT_QUALITY_PRESET (2)
+#define SSIL_DEPTH_MIPS_GLOBAL_OFFSET (-4.3) // best noise/quality/performance tradeoff, found empirically
+//
+// !!warning!! the edge handling is hard-coded to 'disabled' on quality level 0, and enabled above, on the C++ side; while toggling it here will work for
+// testing purposes, it will not yield performance gains (or correct results)
+#define SSIL_DEPTH_BASED_EDGES_ENABLE_AT_QUALITY_PRESET (1)
+//
+#define SSIL_REDUCE_RADIUS_NEAR_SCREEN_BORDER_ENABLE_AT_QUALITY_PRESET (1)
+
+#define SSIL_MAX_TAPS 32
+#define SSIL_ADAPTIVE_TAP_BASE_COUNT 5
+#define SSIL_ADAPTIVE_TAP_FLEXIBLE_COUNT (SSIL_MAX_TAPS - SSIL_ADAPTIVE_TAP_BASE_COUNT)
+#define SSIL_DEPTH_MIP_LEVELS 4
+
+layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
+
+layout(set = 0, binding = 0) uniform sampler2DArray source_depth_mipmaps;
+layout(rgba8, set = 0, binding = 1) uniform restrict readonly image2D source_normal;
+layout(set = 0, binding = 2) uniform Constants { //get into a lower set
+ vec4 rotation_matrices[20];
+}
+constants;
+
+#ifdef ADAPTIVE
+layout(rgba16, set = 1, binding = 0) uniform restrict readonly image2DArray source_ssil;
+layout(set = 1, binding = 1) uniform sampler2D source_importance;
+layout(set = 1, binding = 2, std430) buffer Counter {
+ uint sum;
+}
+counter;
+#endif
+
+layout(rgba16, set = 2, binding = 0) uniform restrict writeonly image2D dest_image;
+layout(r8, set = 2, binding = 1) uniform image2D edges_weights_image;
+
+layout(set = 3, binding = 0) uniform sampler2D last_frame;
+layout(set = 3, binding = 1) uniform ProjectionConstants {
+ mat4 reprojection;
+}
+projection_constants;
+
+layout(push_constant, std430) uniform Params {
+ ivec2 screen_size;
+ int pass;
+ int quality;
+
+ vec2 half_screen_pixel_size;
+ vec2 half_screen_pixel_size_x025;
+
+ vec2 NDC_to_view_mul;
+ vec2 NDC_to_view_add;
+
+ vec2 pad2;
+ float z_near;
+ float z_far;
+
+ float radius;
+ float intensity;
+ int size_multiplier;
+ int pad;
+
+ float fade_out_mul;
+ float fade_out_add;
+ float normal_rejection_amount;
+ float inv_radius_near_limit;
+
+ bool is_orthogonal;
+ float neg_inv_radius;
+ float load_counter_avg_div;
+ float adaptive_sample_limit;
+
+ ivec2 pass_coord_offset;
+ vec2 pass_uv_offset;
+}
+params;
+
+float pack_edges(vec4 p_edgesLRTB) {
+ p_edgesLRTB = round(clamp(p_edgesLRTB, 0.0, 1.0) * 3.05);
+ return dot(p_edgesLRTB, vec4(64.0 / 255.0, 16.0 / 255.0, 4.0 / 255.0, 1.0 / 255.0));
+}
+
+vec3 NDC_to_view_space(vec2 p_pos, float p_viewspace_depth) {
+ if (params.is_orthogonal) {
+ return vec3((params.NDC_to_view_mul * p_pos.xy + params.NDC_to_view_add), p_viewspace_depth);
+ } else {
+ return vec3((params.NDC_to_view_mul * p_pos.xy + params.NDC_to_view_add) * p_viewspace_depth, p_viewspace_depth);
+ }
+}
+
+// calculate effect radius and fit our screen sampling pattern inside it
+void calculate_radius_parameters(const float p_pix_center_length, const vec2 p_pixel_size_at_center, out float r_lookup_radius, out float r_radius, out float r_fallof_sq) {
+ r_radius = params.radius;
+
+ // when too close, on-screen sampling disk will grow beyond screen size; limit this to avoid closeup temporal artifacts
+ const float too_close_limit = clamp(p_pix_center_length * params.inv_radius_near_limit, 0.0, 1.0) * 0.8 + 0.2;
+
+ r_radius *= too_close_limit;
+
+ // 0.85 is to reduce the radius to allow for more samples on a slope to still stay within influence
+ r_lookup_radius = (0.85 * r_radius) / p_pixel_size_at_center.x;
+
+ // used to calculate falloff (both for AO samples and per-sample weights)
+ r_fallof_sq = -1.0 / (r_radius * r_radius);
+}
+
+vec4 calculate_edges(const float p_center_z, const float p_left_z, const float p_right_z, const float p_top_z, const float p_bottom_z) {
+ // slope-sensitive depth-based edge detection
+ vec4 edgesLRTB = vec4(p_left_z, p_right_z, p_top_z, p_bottom_z) - p_center_z;
+ vec4 edgesLRTB_slope_adjusted = edgesLRTB + edgesLRTB.yxwz;
+ edgesLRTB = min(abs(edgesLRTB), abs(edgesLRTB_slope_adjusted));
+ return clamp((1.3 - edgesLRTB / (p_center_z * 0.040)), 0.0, 1.0);
+}
+
+vec3 decode_normal(vec3 p_encoded_normal) {
+ vec3 normal = p_encoded_normal * 2.0 - 1.0;
+ return normal;
+}
+
+vec3 load_normal(ivec2 p_pos) {
+ vec3 encoded_normal = imageLoad(source_normal, p_pos).xyz;
+ encoded_normal.z = 1.0 - encoded_normal.z;
+ return decode_normal(encoded_normal);
+}
+
+vec3 load_normal(ivec2 p_pos, ivec2 p_offset) {
+ vec3 encoded_normal = imageLoad(source_normal, p_pos + p_offset).xyz;
+ encoded_normal.z = 1.0 - encoded_normal.z;
+ return decode_normal(encoded_normal);
+}
+
+// all vectors in viewspace
+float calculate_pixel_obscurance(vec3 p_pixel_normal, vec3 p_hit_delta, float p_fallof_sq) {
+ float length_sq = dot(p_hit_delta, p_hit_delta);
+ float NdotD = dot(p_pixel_normal, p_hit_delta) / sqrt(length_sq);
+
+ float falloff_mult = max(0.0, length_sq * p_fallof_sq + 1.0);
+
+ return max(0, NdotD - 0.05) * falloff_mult;
+}
+
+void SSIL_tap_inner(const int p_quality_level, inout vec3 r_color_sum, inout float r_obscurance_sum, inout float r_weight_sum, const vec2 p_sampling_uv, const float p_mip_level, const vec3 p_pix_center_pos, vec3 p_pixel_normal, const float p_fallof_sq, const float p_weight_mod) {
+ // get depth at sample
+ float viewspace_sample_z = textureLod(source_depth_mipmaps, vec3(p_sampling_uv, params.pass), p_mip_level).x;
+ vec3 sample_normal = load_normal(ivec2(p_sampling_uv * vec2(params.screen_size)));
+
+ // convert to viewspace
+ vec3 hit_pos = NDC_to_view_space(p_sampling_uv.xy, viewspace_sample_z);
+ vec3 hit_delta = hit_pos - p_pix_center_pos;
+
+ float obscurance = calculate_pixel_obscurance(p_pixel_normal, hit_delta, p_fallof_sq);
+ float weight = 1.0;
+
+ if (p_quality_level >= SSIL_HALOING_REDUCTION_ENABLE_AT_QUALITY_PRESET) {
+ float reduct = max(0, -hit_delta.z);
+ reduct = clamp(reduct * params.neg_inv_radius + 2.0, 0.0, 1.0);
+ weight = SSIL_HALOING_REDUCTION_AMOUNT * reduct + (1.0 - SSIL_HALOING_REDUCTION_AMOUNT);
+ }
+
+ // Translate sampling_uv to last screen's coordinates
+ const vec4 sample_pos = projection_constants.reprojection * vec4(p_sampling_uv * 2.0 - 1.0, (viewspace_sample_z - params.z_near) / (params.z_far - params.z_near) * 2.0 - 1.0, 1.0);
+ vec2 reprojected_sampling_uv = (sample_pos.xy / sample_pos.w) * 0.5 + 0.5;
+
+ weight *= p_weight_mod;
+
+ r_obscurance_sum += obscurance * weight;
+
+ vec3 sample_color = textureLod(last_frame, reprojected_sampling_uv, 5.0).rgb;
+ // Reduce impact of fireflies by tonemapping before averaging: http://graphicrants.blogspot.com/2013/12/tone-mapping.html
+ sample_color /= (1.0 + dot(sample_color, vec3(0.299, 0.587, 0.114)));
+ r_color_sum += sample_color * obscurance * weight * mix(1.0, smoothstep(0.0, 0.1, -dot(sample_normal, normalize(hit_delta))), params.normal_rejection_amount);
+ r_weight_sum += weight;
+}
+
+void SSILTap(const int p_quality_level, inout vec3 r_color_sum, inout float r_obscurance_sum, inout float r_weight_sum, const int p_tap_index, const mat2 p_rot_scale, const vec3 p_pix_center_pos, vec3 p_pixel_normal, const vec2 p_normalized_screen_pos, const float p_mip_offset, const float p_fallof_sq, float p_weight_mod, vec2 p_norm_xy, float p_norm_xy_length) {
+ vec2 sample_offset;
+ float sample_pow_2_len;
+
+ // patterns
+ {
+ vec4 new_sample = sample_pattern[p_tap_index];
+ sample_offset = new_sample.xy * p_rot_scale;
+ sample_pow_2_len = new_sample.w; // precalculated, same as: sample_pow_2_len = log2( length( new_sample.xy ) );
+ p_weight_mod *= new_sample.z;
+ }
+
+ // snap to pixel center (more correct obscurance math, avoids artifacts)
+ sample_offset = round(sample_offset);
+
+ // calculate MIP based on the sample distance from the centre, similar to as described
+ // in http://graphics.cs.williams.edu/papers/SAOHPG12/.
+ float mip_level = (p_quality_level < SSIL_DEPTH_MIPS_ENABLE_AT_QUALITY_PRESET) ? (0) : (sample_pow_2_len + p_mip_offset);
+
+ vec2 sampling_uv = sample_offset * params.half_screen_pixel_size + p_normalized_screen_pos;
+
+ SSIL_tap_inner(p_quality_level, r_color_sum, r_obscurance_sum, r_weight_sum, sampling_uv, mip_level, p_pix_center_pos, p_pixel_normal, p_fallof_sq, p_weight_mod);
+
+ // for the second tap, just use the mirrored offset
+ vec2 sample_offset_mirrored_uv = -sample_offset;
+
+ // tilt the second set of samples so that the disk is effectively rotated by the normal
+ // effective at removing one set of artifacts, but too expensive for lower quality settings
+ if (p_quality_level >= SSIL_TILT_SAMPLES_ENABLE_AT_QUALITY_PRESET) {
+ float dot_norm = dot(sample_offset_mirrored_uv, p_norm_xy);
+ sample_offset_mirrored_uv -= dot_norm * p_norm_xy_length * p_norm_xy;
+ sample_offset_mirrored_uv = round(sample_offset_mirrored_uv);
+ }
+
+ // snap to pixel center (more correct obscurance math, avoids artifacts)
+ vec2 sampling_mirrored_uv = sample_offset_mirrored_uv * params.half_screen_pixel_size + p_normalized_screen_pos;
+
+ SSIL_tap_inner(p_quality_level, r_color_sum, r_obscurance_sum, r_weight_sum, sampling_mirrored_uv, mip_level, p_pix_center_pos, p_pixel_normal, p_fallof_sq, p_weight_mod);
+}
+
+void generate_SSIL(out vec3 r_color, out vec4 r_edges, out float r_obscurance, out float r_weight, const vec2 p_pos, int p_quality_level, bool p_adaptive_base) {
+ vec2 pos_rounded = trunc(p_pos);
+ uvec2 upos = uvec2(pos_rounded);
+
+ const int number_of_taps = (p_adaptive_base) ? (SSIL_ADAPTIVE_TAP_BASE_COUNT) : (num_taps[p_quality_level]);
+ float pix_z, pix_left_z, pix_top_z, pix_right_z, pix_bottom_z;
+
+ vec4 valuesUL = textureGather(source_depth_mipmaps, vec3(pos_rounded * params.half_screen_pixel_size, params.pass));
+ vec4 valuesBR = textureGather(source_depth_mipmaps, vec3((pos_rounded + vec2(1.0)) * params.half_screen_pixel_size, params.pass));
+
+ // get this pixel's viewspace depth
+ pix_z = valuesUL.y;
+
+ // get left right top bottom neighbouring pixels for edge detection (gets compiled out on quality_level == 0)
+ pix_left_z = valuesUL.x;
+ pix_top_z = valuesUL.z;
+ pix_right_z = valuesBR.z;
+ pix_bottom_z = valuesBR.x;
+
+ vec2 normalized_screen_pos = pos_rounded * params.half_screen_pixel_size + params.half_screen_pixel_size_x025;
+ vec3 pix_center_pos = NDC_to_view_space(normalized_screen_pos, pix_z);
+
+ // Load this pixel's viewspace normal
+ uvec2 full_res_coord = upos * 2 * params.size_multiplier + params.pass_coord_offset.xy;
+ vec3 pixel_normal = load_normal(ivec2(full_res_coord));
+
+ const vec2 pixel_size_at_center = NDC_to_view_space(normalized_screen_pos.xy + params.half_screen_pixel_size, pix_center_pos.z).xy - pix_center_pos.xy;
+
+ float pixel_lookup_radius;
+ float fallof_sq;
+
+ // calculate effect radius and fit our screen sampling pattern inside it
+ float viewspace_radius;
+ calculate_radius_parameters(length(pix_center_pos), pixel_size_at_center, pixel_lookup_radius, viewspace_radius, fallof_sq);
+
+ // calculate samples rotation/scaling
+ mat2 rot_scale_matrix;
+ uint pseudo_random_index;
+
+ {
+ vec4 rotation_scale;
+ // reduce effect radius near the screen edges slightly; ideally, one would render a larger depth buffer (5% on each side) instead
+ if (!p_adaptive_base && (p_quality_level >= SSIL_REDUCE_RADIUS_NEAR_SCREEN_BORDER_ENABLE_AT_QUALITY_PRESET)) {
+ float near_screen_border = min(min(normalized_screen_pos.x, 1.0 - normalized_screen_pos.x), min(normalized_screen_pos.y, 1.0 - normalized_screen_pos.y));
+ near_screen_border = clamp(10.0 * near_screen_border + 0.6, 0.0, 1.0);
+ pixel_lookup_radius *= near_screen_border;
+ }
+
+ // load & update pseudo-random rotation matrix
+ pseudo_random_index = uint(pos_rounded.y * 2 + pos_rounded.x) % 5;
+ rotation_scale = constants.rotation_matrices[params.pass * 5 + pseudo_random_index];
+ rot_scale_matrix = mat2(rotation_scale.x * pixel_lookup_radius, rotation_scale.y * pixel_lookup_radius, rotation_scale.z * pixel_lookup_radius, rotation_scale.w * pixel_lookup_radius);
+ }
+
+ // the main obscurance & sample weight storage
+ vec3 color_sum = vec3(0.0);
+ float obscurance_sum = 0.0;
+ float weight_sum = 0.0;
+
+ // edge mask for between this and left/right/top/bottom neighbour pixels - not used in quality level 0 so initialize to "no edge" (1 is no edge, 0 is edge)
+ vec4 edgesLRTB = vec4(1.0, 1.0, 1.0, 1.0);
+
+ // Move center pixel slightly towards camera to avoid imprecision artifacts due to using of 16bit depth buffer; a lot smaller offsets needed when using 32bit floats
+ pix_center_pos *= 0.9992;
+
+ if (!p_adaptive_base && (p_quality_level >= SSIL_DEPTH_BASED_EDGES_ENABLE_AT_QUALITY_PRESET)) {
+ edgesLRTB = calculate_edges(pix_z, pix_left_z, pix_right_z, pix_top_z, pix_bottom_z);
+ }
+
+ const float global_mip_offset = SSIL_DEPTH_MIPS_GLOBAL_OFFSET;
+ float mip_offset = (p_quality_level < SSIL_DEPTH_MIPS_ENABLE_AT_QUALITY_PRESET) ? (0) : (log2(pixel_lookup_radius) + global_mip_offset);
+
+ // Used to tilt the second set of samples so that the disk is effectively rotated by the normal
+ // effective at removing one set of artifacts, but too expensive for lower quality settings
+ vec2 norm_xy = vec2(pixel_normal.x, pixel_normal.y);
+ float norm_xy_length = length(norm_xy);
+ norm_xy /= vec2(norm_xy_length, -norm_xy_length);
+ norm_xy_length *= SSIL_TILT_SAMPLES_AMOUNT;
+
+ // standard, non-adaptive approach
+ if ((p_quality_level != 3) || p_adaptive_base) {
+ for (int i = 0; i < number_of_taps; i++) {
+ SSILTap(p_quality_level, color_sum, obscurance_sum, weight_sum, i, rot_scale_matrix, pix_center_pos, pixel_normal, normalized_screen_pos, mip_offset, fallof_sq, 1.0, norm_xy, norm_xy_length);
+ }
+ }
+#ifdef ADAPTIVE
+ else {
+ // add new ones if needed
+ vec2 full_res_uv = normalized_screen_pos + params.pass_uv_offset.xy;
+ float importance = textureLod(source_importance, full_res_uv, 0.0).x;
+
+ //Need to store obscurance from base pass
+ // load existing base values
+ vec4 base_values = imageLoad(source_ssil, ivec3(upos, params.pass));
+ weight_sum += imageLoad(edges_weights_image, ivec2(upos)).r * float(SSIL_ADAPTIVE_TAP_BASE_COUNT * 4.0);
+ color_sum += (base_values.rgb) * weight_sum;
+ obscurance_sum += (base_values.a) * weight_sum;
+
+ // increase importance around edges
+ float edge_count = dot(1.0 - edgesLRTB, vec4(1.0, 1.0, 1.0, 1.0));
+
+ float avg_total_importance = float(counter.sum) * params.load_counter_avg_div;
+
+ float importance_limiter = clamp(params.adaptive_sample_limit / avg_total_importance, 0.0, 1.0);
+ importance *= importance_limiter;
+
+ float additional_sample_count = SSIL_ADAPTIVE_TAP_FLEXIBLE_COUNT * importance;
+
+ const float blend_range = 3.0;
+ const float blend_range_inv = 1.0 / blend_range;
+
+ additional_sample_count += 0.5;
+ uint additional_samples = uint(additional_sample_count);
+ uint additional_samples_to = min(SSIL_MAX_TAPS, additional_samples + SSIL_ADAPTIVE_TAP_BASE_COUNT);
+
+ for (uint i = SSIL_ADAPTIVE_TAP_BASE_COUNT; i < additional_samples_to; i++) {
+ additional_sample_count -= 1.0f;
+ float weight_mod = clamp(additional_sample_count * blend_range_inv, 0.0, 1.0);
+ SSILTap(p_quality_level, color_sum, obscurance_sum, weight_sum, int(i), rot_scale_matrix, pix_center_pos, pixel_normal, normalized_screen_pos, mip_offset, fallof_sq, weight_mod, norm_xy, norm_xy_length);
+ }
+ }
+#endif
+
+ // Early out for adaptive base
+ if (p_adaptive_base) {
+ vec3 color = color_sum / weight_sum;
+
+ r_color = color;
+ r_edges = vec4(0.0);
+ r_obscurance = obscurance_sum / weight_sum;
+ r_weight = weight_sum;
+ return;
+ }
+
+ // Calculate weighted average
+ vec3 color = color_sum / weight_sum;
+ color /= 1.0 - dot(color, vec3(0.299, 0.587, 0.114));
+
+ // Calculate fadeout (1 close, gradient, 0 far)
+ float fade_out = clamp(pix_center_pos.z * params.fade_out_mul + params.fade_out_add, 0.0, 1.0);
+
+ // Reduce the SSIL if we're on the edge to remove artifacts on edges (we don't care for the lower quality one)
+ if (!p_adaptive_base && (p_quality_level >= SSIL_DEPTH_BASED_EDGES_ENABLE_AT_QUALITY_PRESET)) {
+ // when there's more than 2 opposite edges, start fading out the occlusion to reduce aliasing artifacts
+ float edge_fadeout_factor = clamp((1.0 - edgesLRTB.x - edgesLRTB.y) * 0.35, 0.0, 1.0) + clamp((1.0 - edgesLRTB.z - edgesLRTB.w) * 0.35, 0.0, 1.0);
+
+ fade_out *= clamp(1.0 - edge_fadeout_factor, 0.0, 1.0);
+ }
+
+ color = params.intensity * color;
+
+ color *= fade_out;
+
+ // outputs!
+ r_color = color;
+ r_edges = edgesLRTB; // These are used to prevent blurring across edges, 1 means no edge, 0 means edge, 0.5 means half way there, etc.
+ r_obscurance = clamp((obscurance_sum / weight_sum) * params.intensity, 0.0, 1.0);
+ r_weight = weight_sum;
+}
+
+void main() {
+ vec3 out_color;
+ float out_obscurance;
+ float out_weight;
+ vec4 out_edges;
+ ivec2 ssC = ivec2(gl_GlobalInvocationID.xy);
+ if (any(greaterThanEqual(ssC, params.screen_size))) { //too large, do nothing
+ return;
+ }
+
+ vec2 uv = vec2(gl_GlobalInvocationID) + vec2(0.5);
+#ifdef SSIL_BASE
+ generate_SSIL(out_color, out_edges, out_obscurance, out_weight, uv, params.quality, true);
+
+ imageStore(dest_image, ssC, vec4(out_color, out_obscurance));
+ imageStore(edges_weights_image, ssC, vec4(out_weight / (float(SSIL_ADAPTIVE_TAP_BASE_COUNT) * 4.0)));
+#else
+ generate_SSIL(out_color, out_edges, out_obscurance, out_weight, uv, params.quality, false); // pass in quality levels
+
+ imageStore(dest_image, ssC, vec4(out_color, out_obscurance));
+ imageStore(edges_weights_image, ssC, vec4(pack_edges(out_edges)));
+#endif
+}
diff --git a/servers/rendering/renderer_rd/shaders/ssil_blur.glsl b/servers/rendering/renderer_rd/shaders/ssil_blur.glsl
new file mode 100644
index 0000000000..ee21d46a74
--- /dev/null
+++ b/servers/rendering/renderer_rd/shaders/ssil_blur.glsl
@@ -0,0 +1,124 @@
+#[compute]
+
+#version 450
+
+#VERSION_DEFINES
+
+layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
+
+layout(set = 0, binding = 0) uniform sampler2D source_ssil;
+
+layout(rgba16, set = 1, binding = 0) uniform restrict writeonly image2D dest_image;
+
+layout(r8, set = 2, binding = 0) uniform restrict readonly image2D source_edges;
+
+layout(push_constant, std430) uniform Params {
+ float edge_sharpness;
+ float pad;
+ vec2 half_screen_pixel_size;
+}
+params;
+
+vec4 unpack_edges(float p_packed_val) {
+ uint packed_val = uint(p_packed_val * 255.5);
+ vec4 edgesLRTB;
+ edgesLRTB.x = float((packed_val >> 6) & 0x03) / 3.0;
+ edgesLRTB.y = float((packed_val >> 4) & 0x03) / 3.0;
+ edgesLRTB.z = float((packed_val >> 2) & 0x03) / 3.0;
+ edgesLRTB.w = float((packed_val >> 0) & 0x03) / 3.0;
+
+ return clamp(edgesLRTB + params.edge_sharpness, 0.0, 1.0);
+}
+
+void add_sample(vec4 p_ssil_value, float p_edge_value, inout vec4 r_sum, inout float r_sum_weight) {
+ float weight = p_edge_value;
+
+ r_sum += (weight * p_ssil_value);
+ r_sum_weight += weight;
+}
+
+#ifdef MODE_WIDE
+vec4 sample_blurred_wide(ivec2 p_pos, vec2 p_coord) {
+ vec4 ssil_value = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, 0));
+ vec4 ssil_valueL = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(-2, 0));
+ vec4 ssil_valueT = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, -2));
+ vec4 ssil_valueR = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(2, 0));
+ vec4 ssil_valueB = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, 2));
+
+ vec4 edgesLRTB = unpack_edges(imageLoad(source_edges, p_pos).r);
+ edgesLRTB.x *= unpack_edges(imageLoad(source_edges, p_pos + ivec2(-2, 0)).r).y;
+ edgesLRTB.z *= unpack_edges(imageLoad(source_edges, p_pos + ivec2(0, -2)).r).w;
+ edgesLRTB.y *= unpack_edges(imageLoad(source_edges, p_pos + ivec2(2, 0)).r).x;
+ edgesLRTB.w *= unpack_edges(imageLoad(source_edges, p_pos + ivec2(0, 2)).r).z;
+
+ float sum_weight = 0.8;
+ vec4 sum = ssil_value * sum_weight;
+
+ add_sample(ssil_valueL, edgesLRTB.x, sum, sum_weight);
+ add_sample(ssil_valueR, edgesLRTB.y, sum, sum_weight);
+ add_sample(ssil_valueT, edgesLRTB.z, sum, sum_weight);
+ add_sample(ssil_valueB, edgesLRTB.w, sum, sum_weight);
+
+ vec4 ssil_avg = sum / sum_weight;
+
+ ssil_value = ssil_avg;
+
+ return ssil_value;
+}
+#endif
+
+#ifdef MODE_SMART
+vec4 sample_blurred(ivec2 p_pos, vec2 p_coord) {
+ vec4 vC = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, 0));
+ vec4 vL = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(-1, 0));
+ vec4 vT = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, -1));
+ vec4 vR = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(1, 0));
+ vec4 vB = textureLodOffset(source_ssil, vec2(p_coord), 0.0, ivec2(0, 1));
+
+ float packed_edges = imageLoad(source_edges, p_pos).r;
+ vec4 edgesLRTB = unpack_edges(packed_edges);
+
+ float sum_weight = 0.5;
+ vec4 sum = vC * sum_weight;
+
+ add_sample(vL, edgesLRTB.x, sum, sum_weight);
+ add_sample(vR, edgesLRTB.y, sum, sum_weight);
+ add_sample(vT, edgesLRTB.z, sum, sum_weight);
+ add_sample(vB, edgesLRTB.w, sum, sum_weight);
+
+ vec4 ssil_avg = sum / sum_weight;
+
+ vec4 ssil_value = ssil_avg;
+
+ return ssil_value;
+}
+#endif
+
+void main() {
+ // Pixel being shaded
+ ivec2 ssC = ivec2(gl_GlobalInvocationID.xy);
+
+#ifdef MODE_NON_SMART
+
+ vec2 half_pixel = params.half_screen_pixel_size * 0.5;
+
+ vec2 uv = (vec2(gl_GlobalInvocationID.xy) + vec2(0.5, 0.5)) * params.half_screen_pixel_size;
+
+ vec4 centre = textureLod(source_ssil, uv, 0.0);
+
+ vec4 value = textureLod(source_ssil, vec2(uv + vec2(-half_pixel.x * 3, -half_pixel.y)), 0.0) * 0.2;
+ value += textureLod(source_ssil, vec2(uv + vec2(+half_pixel.x, -half_pixel.y * 3)), 0.0) * 0.2;
+ value += textureLod(source_ssil, vec2(uv + vec2(-half_pixel.x, +half_pixel.y * 3)), 0.0) * 0.2;
+ value += textureLod(source_ssil, vec2(uv + vec2(+half_pixel.x * 3, +half_pixel.y)), 0.0) * 0.2;
+
+ vec4 sampled = value + centre * 0.2;
+
+#else
+#ifdef MODE_SMART
+ vec4 sampled = sample_blurred(ssC, (vec2(gl_GlobalInvocationID.xy) + vec2(0.5, 0.5)) * params.half_screen_pixel_size);
+#else // MODE_WIDE
+ vec4 sampled = sample_blurred_wide(ssC, (vec2(gl_GlobalInvocationID.xy) + vec2(0.5, 0.5)) * params.half_screen_pixel_size);
+#endif
+#endif // MODE_NON_SMART
+ imageStore(dest_image, ssC, sampled);
+}
diff --git a/servers/rendering/renderer_rd/shaders/ssil_importance_map.glsl b/servers/rendering/renderer_rd/shaders/ssil_importance_map.glsl
new file mode 100644
index 0000000000..8818f8cada
--- /dev/null
+++ b/servers/rendering/renderer_rd/shaders/ssil_importance_map.glsl
@@ -0,0 +1,124 @@
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+// Copyright (c) 2016, Intel Corporation
+// Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated
+// documentation files (the "Software"), to deal in the Software without restriction, including without limitation
+// the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to
+// permit persons to whom the Software is furnished to do so, subject to the following conditions:
+// The above copyright notice and this permission notice shall be included in all copies or substantial portions of
+// the Software.
+// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO
+// THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
+// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+// TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+// SOFTWARE.
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+// File changes (yyyy-mm-dd)
+// 2016-09-07: filip.strugar@intel.com: first commit
+// 2020-12-05: clayjohn: convert to Vulkan and Godot
+///////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
+
+#[compute]
+
+#version 450
+
+#VERSION_DEFINES
+
+layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
+
+#ifdef GENERATE_MAP
+layout(set = 0, binding = 0) uniform sampler2DArray source_texture;
+#else
+layout(set = 0, binding = 0) uniform sampler2D source_importance;
+#endif
+layout(r8, set = 1, binding = 0) uniform restrict writeonly image2D dest_image;
+
+#ifdef PROCESS_MAPB
+layout(set = 2, binding = 0, std430) buffer Counter {
+ uint sum;
+}
+counter;
+#endif
+
+layout(push_constant, std430) uniform Params {
+ vec2 half_screen_pixel_size;
+ float intensity;
+ float pad;
+}
+params;
+
+void main() {
+ // Pixel being shaded
+ ivec2 ssC = ivec2(gl_GlobalInvocationID.xy);
+
+#ifdef GENERATE_MAP
+ // importance map stuff
+ uvec2 base_position = ssC * 2;
+
+ float avg = 0.0;
+ float minV = 1.0;
+ float maxV = 0.0;
+ for (int i = 0; i < 4; i++) {
+ vec3 value_a = texelFetch(source_texture, ivec3(base_position, i), 0).rgb * params.intensity;
+ vec3 value_b = texelFetch(source_texture, ivec3(base_position, i) + ivec3(0, 1, 0), 0).rgb * params.intensity;
+ vec3 value_c = texelFetch(source_texture, ivec3(base_position, i) + ivec3(1, 0, 0), 0).rgb * params.intensity;
+ vec3 value_d = texelFetch(source_texture, ivec3(base_position, i) + ivec3(1, 1, 0), 0).rgb * params.intensity;
+
+ // Calculate luminance (black and white value)
+ float a = dot(value_a, vec3(0.2125, 0.7154, 0.0721));
+ float b = dot(value_b, vec3(0.2125, 0.7154, 0.0721));
+ float c = dot(value_c, vec3(0.2125, 0.7154, 0.0721));
+ float d = dot(value_d, vec3(0.2125, 0.7154, 0.0721));
+
+ maxV = max(maxV, max(max(a, b), max(c, d)));
+ minV = min(minV, min(min(a, b), min(c, d)));
+ }
+
+ float min_max_diff = maxV - minV;
+
+ imageStore(dest_image, ssC, vec4(pow(clamp(min_max_diff * 2.0, 0.0, 1.0), 0.6)));
+#endif
+
+#ifdef PROCESS_MAPA
+ vec2 uv = (vec2(ssC) + 0.5) * params.half_screen_pixel_size * 2.0;
+
+ float centre = textureLod(source_importance, uv, 0.0).x;
+
+ vec2 half_pixel = params.half_screen_pixel_size;
+
+ vec4 vals;
+ vals.x = textureLod(source_importance, uv + vec2(-half_pixel.x * 3, -half_pixel.y), 0.0).x;
+ vals.y = textureLod(source_importance, uv + vec2(+half_pixel.x, -half_pixel.y * 3), 0.0).x;
+ vals.z = textureLod(source_importance, uv + vec2(+half_pixel.x * 3, +half_pixel.y), 0.0).x;
+ vals.w = textureLod(source_importance, uv + vec2(-half_pixel.x, +half_pixel.y * 3), 0.0).x;
+
+ float avg = dot(vals, vec4(0.25, 0.25, 0.25, 0.25));
+
+ imageStore(dest_image, ssC, vec4(avg));
+#endif
+
+#ifdef PROCESS_MAPB
+ vec2 uv = (vec2(ssC) + 0.5f) * params.half_screen_pixel_size * 2.0;
+
+ float centre = textureLod(source_importance, uv, 0.0).x;
+
+ vec2 half_pixel = params.half_screen_pixel_size;
+
+ vec4 vals;
+ vals.x = textureLod(source_importance, uv + vec2(-half_pixel.x, -half_pixel.y * 3), 0.0).x;
+ vals.y = textureLod(source_importance, uv + vec2(+half_pixel.x * 3, -half_pixel.y), 0.0).x;
+ vals.z = textureLod(source_importance, uv + vec2(+half_pixel.x, +half_pixel.y * 3), 0.0).x;
+ vals.w = textureLod(source_importance, uv + vec2(-half_pixel.x * 3, +half_pixel.y), 0.0).x;
+
+ float avg = dot(vals, vec4(0.25, 0.25, 0.25, 0.25));
+
+ imageStore(dest_image, ssC, vec4(avg));
+
+ // sum the average; to avoid overflowing we assume max AO resolution is not bigger than 16384x16384; so quarter res (used here) will be 4096x4096, which leaves us with 8 bits per pixel
+ uint sum = uint(clamp(avg, 0.0, 1.0) * 255.0 + 0.5);
+
+ // save every 9th to avoid InterlockedAdd congestion - since we're blurring, this is good enough; compensated by multiplying load_counter_avg_div by 9
+ if (((ssC.x % 3) + (ssC.y % 3)) == 0) {
+ atomicAdd(counter.sum, sum);
+ }
+#endif
+}
diff --git a/servers/rendering/renderer_rd/shaders/ssil_interleave.glsl b/servers/rendering/renderer_rd/shaders/ssil_interleave.glsl
new file mode 100644
index 0000000000..fa4309353d
--- /dev/null
+++ b/servers/rendering/renderer_rd/shaders/ssil_interleave.glsl
@@ -0,0 +1,102 @@
+#[compute]
+
+#version 450
+
+#VERSION_DEFINES
+
+layout(local_size_x = 8, local_size_y = 8, local_size_z = 1) in;
+
+layout(rgba16, set = 0, binding = 0) uniform restrict writeonly image2D dest_image;
+layout(set = 1, binding = 0) uniform sampler2DArray source_texture;
+layout(r8, set = 2, binding = 0) uniform restrict readonly image2DArray source_edges;
+
+layout(push_constant, std430) uniform Params {
+ float inv_sharpness;
+ uint size_modifier;
+ vec2 pixel_size;
+}
+params;
+
+vec4 unpack_edges(float p_packed_val) {
+ uint packed_val = uint(p_packed_val * 255.5);
+ vec4 edgesLRTB;
+ edgesLRTB.x = float((packed_val >> 6) & 0x03) / 3.0;
+ edgesLRTB.y = float((packed_val >> 4) & 0x03) / 3.0;
+ edgesLRTB.z = float((packed_val >> 2) & 0x03) / 3.0;
+ edgesLRTB.w = float((packed_val >> 0) & 0x03) / 3.0;
+
+ return clamp(edgesLRTB + params.inv_sharpness, 0.0, 1.0);
+}
+
+void main() {
+ ivec2 ssC = ivec2(gl_GlobalInvocationID.xy);
+ if (any(greaterThanEqual(ssC, ivec2(1.0 / params.pixel_size)))) { //too large, do nothing
+ return;
+ }
+
+#ifdef MODE_SMART
+ uvec2 pix_pos = uvec2(gl_GlobalInvocationID.xy);
+ vec2 uv = (gl_GlobalInvocationID.xy + vec2(0.5)) * params.pixel_size;
+
+ // calculate index in the four deinterleaved source array texture
+ int mx = int(pix_pos.x % 2);
+ int my = int(pix_pos.y % 2);
+ int index_center = mx + my * 2; // center index
+ int index_horizontal = (1 - mx) + my * 2; // neighbouring, horizontal
+ int index_vertical = mx + (1 - my) * 2; // neighbouring, vertical
+ int index_diagonal = (1 - mx) + (1 - my) * 2; // diagonal
+
+ vec4 color = texelFetch(source_texture, ivec3(pix_pos / uvec2(params.size_modifier), index_center), 0);
+
+ vec4 edgesLRTB = unpack_edges(imageLoad(source_edges, ivec3(pix_pos / uvec2(params.size_modifier), index_center)).r);
+
+ // convert index shifts to sampling offsets
+ float fmx = float(mx);
+ float fmy = float(my);
+
+ // in case of an edge, push sampling offsets away from the edge (towards pixel center)
+ float fmxe = (edgesLRTB.y - edgesLRTB.x);
+ float fmye = (edgesLRTB.w - edgesLRTB.z);
+
+ // calculate final sampling offsets and sample using bilinear filter
+ vec2 uv_horizontal = (gl_GlobalInvocationID.xy + vec2(0.5) + vec2(fmx + fmxe - 0.5, 0.5 - fmy)) * params.pixel_size;
+ vec4 color_horizontal = textureLod(source_texture, vec3(uv_horizontal, index_horizontal), 0.0);
+ vec2 uv_vertical = (gl_GlobalInvocationID.xy + vec2(0.5) + vec2(0.5 - fmx, fmy - 0.5 + fmye)) * params.pixel_size;
+ vec4 color_vertical = textureLod(source_texture, vec3(uv_vertical, index_vertical), 0.0);
+ vec2 uv_diagonal = (gl_GlobalInvocationID.xy + vec2(0.5) + vec2(fmx - 0.5 + fmxe, fmy - 0.5 + fmye)) * params.pixel_size;
+ vec4 color_diagonal = textureLod(source_texture, vec3(uv_diagonal, index_diagonal), 0.0);
+
+ // reduce weight for samples near edge - if the edge is on both sides, weight goes to 0
+ vec4 blendWeights;
+ blendWeights.x = 1.0;
+ blendWeights.y = (edgesLRTB.x + edgesLRTB.y) * 0.5;
+ blendWeights.z = (edgesLRTB.z + edgesLRTB.w) * 0.5;
+ blendWeights.w = (blendWeights.y + blendWeights.z) * 0.5;
+
+ // calculate weighted average
+ float blendWeightsSum = dot(blendWeights, vec4(1.0, 1.0, 1.0, 1.0));
+ color += color_horizontal * blendWeights.y;
+ color += color_vertical * blendWeights.z;
+ color += color_diagonal * blendWeights.w;
+ color /= blendWeightsSum;
+
+ imageStore(dest_image, ivec2(gl_GlobalInvocationID.xy), color);
+#else // !MODE_SMART
+
+ vec2 uv = (gl_GlobalInvocationID.xy + vec2(0.5)) * params.pixel_size;
+#ifdef MODE_HALF
+ vec4 a = textureLod(source_texture, vec3(uv, 0), 0.0);
+ vec4 d = textureLod(source_texture, vec3(uv, 3), 0.0);
+ vec4 avg = (a + d) * 0.5;
+
+#else
+ vec4 a = textureLod(source_texture, vec3(uv, 0), 0.0);
+ vec4 b = textureLod(source_texture, vec3(uv, 1), 0.0);
+ vec4 c = textureLod(source_texture, vec3(uv, 2), 0.0);
+ vec4 d = textureLod(source_texture, vec3(uv, 3), 0.0);
+ vec4 avg = (a + b + c + d) * 0.25;
+
+#endif
+ imageStore(dest_image, ivec2(gl_GlobalInvocationID.xy), avg);
+#endif
+}
diff --git a/servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl b/servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl
index 9367b641c2..fb35d3cde6 100644
--- a/servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl
+++ b/servers/rendering/renderer_rd/shaders/subsurface_scattering.glsl
@@ -87,7 +87,7 @@ const vec4 skin_kernel[kernel_size] = vec4[](
#endif //USE_11_SAMPLES
-layout(push_constant, binding = 1, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec2 screen_size;
float camera_z_far;
float camera_z_near;
diff --git a/servers/rendering/renderer_rd/shaders/volumetric_fog.glsl b/servers/rendering/renderer_rd/shaders/volumetric_fog.glsl
index 181d3b272f..a2a4c91894 100644
--- a/servers/rendering/renderer_rd/shaders/volumetric_fog.glsl
+++ b/servers/rendering/renderer_rd/shaders/volumetric_fog.glsl
@@ -33,7 +33,7 @@ layout(set = 0, binding = 2, std430) restrict readonly buffer GlobalVariableData
}
global_variables;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
vec3 position;
float pad;
diff --git a/servers/rendering/renderer_rd/shaders/volumetric_fog_process.glsl b/servers/rendering/renderer_rd/shaders/volumetric_fog_process.glsl
index 999e8d0844..347fd13b28 100644
--- a/servers/rendering/renderer_rd/shaders/volumetric_fog_process.glsl
+++ b/servers/rendering/renderer_rd/shaders/volumetric_fog_process.glsl
@@ -76,19 +76,15 @@ layout(set = 0, binding = 10) uniform sampler shadow_sampler;
#define MAX_VOXEL_GI_INSTANCES 8
struct VoxelGIData {
- mat4 xform;
- vec3 bounds;
- float dynamic_range;
+ mat4 xform; // 64 - 64
- float bias;
- float normal_bias;
- bool blend_ambient;
- uint texture_slot;
+ vec3 bounds; // 12 - 76
+ float dynamic_range; // 4 - 80
- float anisotropy_strength;
- float ambient_occlusion;
- float ambient_occlusion_size;
- uint mipmaps;
+ float bias; // 4 - 84
+ float normal_bias; // 4 - 88
+ bool blend_ambient; // 4 - 92
+ uint mipmaps; // 4 - 96
};
layout(set = 0, binding = 11, std140) uniform VoxelGIs {
@@ -239,7 +235,6 @@ void cluster_get_item_range(uint p_offset, out uint item_min, out uint item_max,
uint item_min_max = cluster_buffer.data[p_offset];
item_min = item_min_max & 0xFFFF;
item_max = item_min_max >> 16;
- ;
item_from = item_min >> 5;
item_to = (item_max == 0) ? 0 : ((item_max - 1) >> 5) + 1; //side effect of how it is stored, as item_max 0 means no elements
@@ -387,7 +382,6 @@ void main() {
float depth_z = -view_pos.z;
vec4 pssm_coord;
- vec3 shadow_color = directional_lights.data[i].shadow_color1.rgb;
vec3 light_dir = directional_lights.data[i].direction;
vec4 v = vec4(view_pos, 1.0);
float z_range;
@@ -418,7 +412,7 @@ void main() {
shadow = mix(shadow, 1.0, smoothstep(directional_lights.data[i].fade_from, directional_lights.data[i].fade_to, view_pos.z)); //done with negative values for performance
- shadow_attenuation = mix(shadow_color, vec3(1.0), shadow);
+ shadow_attenuation = mix(vec3(0.0), vec3(1.0), shadow);
}
total_light += shadow_attenuation * directional_lights.data[i].color * directional_lights.data[i].energy * henyey_greenstein(dot(normalize(view_pos), normalize(directional_lights.data[i].direction)), params.phase_g);
diff --git a/servers/rendering/renderer_rd/shaders/voxel_gi.glsl b/servers/rendering/renderer_rd/shaders/voxel_gi.glsl
index 779f04ed35..577c6d0cd0 100644
--- a/servers/rendering/renderer_rd/shaders/voxel_gi.glsl
+++ b/servers/rendering/renderer_rd/shaders/voxel_gi.glsl
@@ -13,7 +13,6 @@ layout(local_size_x = 64, local_size_y = 1, local_size_z = 1) in;
#ifndef MODE_DYNAMIC
#define NO_CHILDREN 0xFFFFFFFF
-#define GREY_VEC vec3(0.33333, 0.33333, 0.33333)
struct CellChildren {
uint children[8];
@@ -75,7 +74,7 @@ layout(set = 0, binding = 5) uniform texture3D color_texture;
#ifndef MODE_DYNAMIC
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec3 limits;
uint stack_size;
@@ -109,7 +108,7 @@ layout(rgba8, set = 0, binding = 5) uniform restrict writeonly image3D color_tex
#ifdef MODE_DYNAMIC
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec3 limits;
uint light_count; //when not lighting
ivec3 x_dir;
diff --git a/servers/rendering/renderer_rd/shaders/voxel_gi_debug.glsl b/servers/rendering/renderer_rd/shaders/voxel_gi_debug.glsl
index 281c496df3..fd7a2bf8ad 100644
--- a/servers/rendering/renderer_rd/shaders/voxel_gi_debug.glsl
+++ b/servers/rendering/renderer_rd/shaders/voxel_gi_debug.glsl
@@ -20,7 +20,7 @@ layout(set = 0, binding = 2) uniform texture3D color_tex;
layout(set = 0, binding = 3) uniform sampler tex_sampler;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
mat4 projection;
uint cell_offset;
float dynamic_range;
@@ -90,66 +90,10 @@ void main() {
#endif
#ifdef MODE_DEBUG_LIGHT
-
-#ifdef USE_ANISOTROPY
-
-#define POS_X 0
-#define POS_Y 1
-#define POS_Z 2
-#define NEG_X 3
-#define NEG_Y 4
-#define NEG_Z 5
-
- const uint triangle_aniso[12] = uint[](
- NEG_X,
- NEG_Z,
- NEG_Y,
- NEG_Z,
- NEG_X,
- NEG_Y,
- POS_Z,
- POS_X,
- POS_X,
- POS_Y,
- POS_Y,
- POS_Z);
-
- color_interp.xyz = texelFetch(sampler3D(color_tex, tex_sampler), ivec3(posu), int(params.level)).xyz * params.dynamic_range;
- vec3 aniso_pos = texelFetch(sampler3D(aniso_pos_tex, tex_sampler), ivec3(posu), int(params.level)).xyz;
- vec3 aniso_neg = texelFetch(sampler3D(aniso_neg_tex, tex_sampler), ivec3(posu), int(params.level)).xyz;
- uint side = triangle_aniso[gl_VertexIndex / 3];
-
- float strength = 0.0;
- switch (side) {
- case POS_X:
- strength = aniso_pos.x;
- break;
- case POS_Y:
- strength = aniso_pos.y;
- break;
- case POS_Z:
- strength = aniso_pos.z;
- break;
- case NEG_X:
- strength = aniso_neg.x;
- break;
- case NEG_Y:
- strength = aniso_neg.y;
- break;
- case NEG_Z:
- strength = aniso_neg.z;
- break;
- }
-
- color_interp.xyz *= strength;
-
-#else
color_interp = texelFetch(sampler3D(color_tex, tex_sampler), ivec3(posu), int(params.level));
color_interp.xyz *params.dynamic_range;
-
#endif
-#endif
float scale = (1 << params.level);
gl_Position = params.projection * vec4((vec3(posu) + vertex) * scale, 1.0);
diff --git a/servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl b/servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl
index e20b3f680d..47a611a543 100644
--- a/servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl
+++ b/servers/rendering/renderer_rd/shaders/voxel_gi_sdf.glsl
@@ -6,10 +6,9 @@
layout(local_size_x = 4, local_size_y = 4, local_size_z = 4) in;
-#define MAX_DISTANCE 100000
+#define MAX_DISTANCE 100000.0
#define NO_CHILDREN 0xFFFFFFFF
-#define GREY_VEC vec3(0.33333, 0.33333, 0.33333)
struct CellChildren {
uint children[8];
@@ -34,7 +33,7 @@ cell_data;
layout(r8ui, set = 0, binding = 3) uniform restrict writeonly uimage3D sdf_tex;
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
uint offset;
uint end;
uint pad0;
@@ -44,7 +43,7 @@ params;
void main() {
vec3 pos = vec3(gl_GlobalInvocationID);
- float closest_dist = 100000.0;
+ float closest_dist = MAX_DISTANCE;
for (uint i = params.offset; i < params.end; i++) {
vec3 posu = vec3(uvec3(cell_data.data[i].position & 0x7FF, (cell_data.data[i].position >> 11) & 0x3FF, cell_data.data[i].position >> 21));
@@ -67,7 +66,7 @@ void main() {
}
#if 0
-layout(push_constant, binding = 0, std430) uniform Params {
+layout(push_constant, std430) uniform Params {
ivec3 limits;
uint stack_size;
}
diff --git a/servers/rendering/renderer_rd/storage_rd/SCsub b/servers/rendering/renderer_rd/storage_rd/SCsub
new file mode 100644
index 0000000000..86681f9c74
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/SCsub
@@ -0,0 +1,5 @@
+#!/usr/bin/env python
+
+Import("env")
+
+env.add_source_files(env.servers_sources, "*.cpp")
diff --git a/servers/rendering/renderer_rd/storage_rd/light_storage.cpp b/servers/rendering/renderer_rd/storage_rd/light_storage.cpp
new file mode 100644
index 0000000000..56a4525b8e
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/light_storage.cpp
@@ -0,0 +1,788 @@
+/*************************************************************************/
+/* light_storage.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "light_storage.h"
+#include "core/config/project_settings.h"
+#include "texture_storage.h"
+
+using namespace RendererRD;
+
+LightStorage *LightStorage::singleton = nullptr;
+
+LightStorage *LightStorage::get_singleton() {
+ return singleton;
+}
+
+LightStorage::LightStorage() {
+ singleton = this;
+
+ TextureStorage *texture_storage = TextureStorage::get_singleton();
+
+ using_lightmap_array = true; // high end
+ if (using_lightmap_array) {
+ uint64_t textures_per_stage = RD::get_singleton()->limit_get(RD::LIMIT_MAX_TEXTURES_PER_SHADER_STAGE);
+
+ if (textures_per_stage <= 256) {
+ lightmap_textures.resize(32);
+ } else {
+ lightmap_textures.resize(1024);
+ }
+
+ for (int i = 0; i < lightmap_textures.size(); i++) {
+ lightmap_textures.write[i] = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+ }
+ }
+
+ lightmap_probe_capture_update_speed = GLOBAL_GET("rendering/lightmapping/probe_capture/update_speed");
+}
+
+LightStorage::~LightStorage() {
+ singleton = nullptr;
+}
+
+/* LIGHT */
+
+void LightStorage::_light_initialize(RID p_light, RS::LightType p_type) {
+ Light light;
+ light.type = p_type;
+
+ light.param[RS::LIGHT_PARAM_ENERGY] = 1.0;
+ light.param[RS::LIGHT_PARAM_INDIRECT_ENERGY] = 1.0;
+ light.param[RS::LIGHT_PARAM_SPECULAR] = 0.5;
+ light.param[RS::LIGHT_PARAM_RANGE] = 1.0;
+ light.param[RS::LIGHT_PARAM_SIZE] = 0.0;
+ light.param[RS::LIGHT_PARAM_ATTENUATION] = 1.0;
+ light.param[RS::LIGHT_PARAM_SPOT_ANGLE] = 45;
+ light.param[RS::LIGHT_PARAM_SPOT_ATTENUATION] = 1.0;
+ light.param[RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE] = 0;
+ light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET] = 0.1;
+ light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET] = 0.3;
+ light.param[RS::LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET] = 0.6;
+ light.param[RS::LIGHT_PARAM_SHADOW_FADE_START] = 0.8;
+ light.param[RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS] = 1.0;
+ light.param[RS::LIGHT_PARAM_SHADOW_BIAS] = 0.02;
+ light.param[RS::LIGHT_PARAM_SHADOW_BLUR] = 0;
+ light.param[RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE] = 20.0;
+ light.param[RS::LIGHT_PARAM_SHADOW_VOLUMETRIC_FOG_FADE] = 0.1;
+ light.param[RS::LIGHT_PARAM_TRANSMITTANCE_BIAS] = 0.05;
+
+ light_owner.initialize_rid(p_light, light);
+}
+
+RID LightStorage::directional_light_allocate() {
+ return light_owner.allocate_rid();
+}
+
+void LightStorage::directional_light_initialize(RID p_light) {
+ _light_initialize(p_light, RS::LIGHT_DIRECTIONAL);
+}
+
+RID LightStorage::omni_light_allocate() {
+ return light_owner.allocate_rid();
+}
+
+void LightStorage::omni_light_initialize(RID p_light) {
+ _light_initialize(p_light, RS::LIGHT_OMNI);
+}
+
+RID LightStorage::spot_light_allocate() {
+ return light_owner.allocate_rid();
+}
+
+void LightStorage::spot_light_initialize(RID p_light) {
+ _light_initialize(p_light, RS::LIGHT_SPOT);
+}
+
+void LightStorage::light_free(RID p_rid) {
+ light_set_projector(p_rid, RID()); //clear projector
+
+ // delete the texture
+ Light *light = light_owner.get_or_null(p_rid);
+ light->dependency.deleted_notify(p_rid);
+ light_owner.free(p_rid);
+}
+
+void LightStorage::light_set_color(RID p_light, const Color &p_color) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->color = p_color;
+}
+
+void LightStorage::light_set_param(RID p_light, RS::LightParam p_param, float p_value) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+ ERR_FAIL_INDEX(p_param, RS::LIGHT_PARAM_MAX);
+
+ if (light->param[p_param] == p_value) {
+ return;
+ }
+
+ switch (p_param) {
+ case RS::LIGHT_PARAM_RANGE:
+ case RS::LIGHT_PARAM_SPOT_ANGLE:
+ case RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE:
+ case RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET:
+ case RS::LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET:
+ case RS::LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET:
+ case RS::LIGHT_PARAM_SHADOW_NORMAL_BIAS:
+ case RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE:
+ case RS::LIGHT_PARAM_SHADOW_BIAS: {
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+ } break;
+ case RS::LIGHT_PARAM_SIZE: {
+ if ((light->param[p_param] > CMP_EPSILON) != (p_value > CMP_EPSILON)) {
+ //changing from no size to size and the opposite
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT_SOFT_SHADOW_AND_PROJECTOR);
+ }
+ } break;
+ default: {
+ }
+ }
+
+ light->param[p_param] = p_value;
+}
+
+void LightStorage::light_set_shadow(RID p_light, bool p_enabled) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+ light->shadow = p_enabled;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_set_projector(RID p_light, RID p_texture) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ if (light->projector == p_texture) {
+ return;
+ }
+
+ if (light->type != RS::LIGHT_DIRECTIONAL && light->projector.is_valid()) {
+ texture_storage->texture_remove_from_decal_atlas(light->projector, light->type == RS::LIGHT_OMNI);
+ }
+
+ light->projector = p_texture;
+
+ if (light->type != RS::LIGHT_DIRECTIONAL) {
+ if (light->projector.is_valid()) {
+ texture_storage->texture_add_to_decal_atlas(light->projector, light->type == RS::LIGHT_OMNI);
+ }
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT_SOFT_SHADOW_AND_PROJECTOR);
+ }
+}
+
+void LightStorage::light_set_negative(RID p_light, bool p_enable) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->negative = p_enable;
+}
+
+void LightStorage::light_set_cull_mask(RID p_light, uint32_t p_mask) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->cull_mask = p_mask;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->distance_fade = p_enabled;
+ light->distance_fade_begin = p_begin;
+ light->distance_fade_shadow = p_shadow;
+ light->distance_fade_length = p_length;
+}
+
+void LightStorage::light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->reverse_cull = p_enabled;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->bake_mode = p_bake_mode;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->max_sdfgi_cascade = p_cascade;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->omni_shadow_mode = p_mode;
+
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+RS::LightOmniShadowMode LightStorage::light_omni_get_shadow_mode(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_OMNI_SHADOW_CUBE);
+
+ return light->omni_shadow_mode;
+}
+
+void LightStorage::light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->directional_shadow_mode = p_mode;
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+void LightStorage::light_directional_set_blend_splits(RID p_light, bool p_enable) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->directional_blend_splits = p_enable;
+ light->version++;
+ light->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_LIGHT);
+}
+
+bool LightStorage::light_directional_get_blend_splits(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, false);
+
+ return light->directional_blend_splits;
+}
+
+void LightStorage::light_directional_set_sky_mode(RID p_light, RS::LightDirectionalSkyMode p_mode) {
+ Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND(!light);
+
+ light->directional_sky_mode = p_mode;
+}
+
+RS::LightDirectionalSkyMode LightStorage::light_directional_get_sky_mode(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_AND_SKY);
+
+ return light->directional_sky_mode;
+}
+
+RS::LightDirectionalShadowMode LightStorage::light_directional_get_shadow_mode(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL);
+
+ return light->directional_shadow_mode;
+}
+
+uint32_t LightStorage::light_get_max_sdfgi_cascade(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0);
+
+ return light->max_sdfgi_cascade;
+}
+
+RS::LightBakeMode LightStorage::light_get_bake_mode(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_BAKE_DISABLED);
+
+ return light->bake_mode;
+}
+
+uint64_t LightStorage::light_get_version(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0);
+
+ return light->version;
+}
+
+AABB LightStorage::light_get_aabb(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, AABB());
+
+ switch (light->type) {
+ case RS::LIGHT_SPOT: {
+ float len = light->param[RS::LIGHT_PARAM_RANGE];
+ float size = Math::tan(Math::deg2rad(light->param[RS::LIGHT_PARAM_SPOT_ANGLE])) * len;
+ return AABB(Vector3(-size, -size, -len), Vector3(size * 2, size * 2, len));
+ };
+ case RS::LIGHT_OMNI: {
+ float r = light->param[RS::LIGHT_PARAM_RANGE];
+ return AABB(-Vector3(r, r, r), Vector3(r, r, r) * 2);
+ };
+ case RS::LIGHT_DIRECTIONAL: {
+ return AABB();
+ };
+ }
+
+ ERR_FAIL_V(AABB());
+}
+
+/* REFLECTION PROBE */
+
+RID LightStorage::reflection_probe_allocate() {
+ return reflection_probe_owner.allocate_rid();
+}
+
+void LightStorage::reflection_probe_initialize(RID p_reflection_probe) {
+ reflection_probe_owner.initialize_rid(p_reflection_probe, ReflectionProbe());
+}
+
+void LightStorage::reflection_probe_free(RID p_rid) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_rid);
+ reflection_probe->dependency.deleted_notify(p_rid);
+ reflection_probe_owner.free(p_rid);
+};
+
+void LightStorage::reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->update_mode = p_mode;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_intensity(RID p_probe, float p_intensity) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->intensity = p_intensity;
+}
+
+void LightStorage::reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->ambient_mode = p_mode;
+}
+
+void LightStorage::reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->ambient_color = p_color;
+}
+
+void LightStorage::reflection_probe_set_ambient_energy(RID p_probe, float p_energy) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->ambient_color_energy = p_energy;
+}
+
+void LightStorage::reflection_probe_set_max_distance(RID p_probe, float p_distance) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->max_distance = p_distance;
+
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ if (reflection_probe->extents == p_extents) {
+ return;
+ }
+ reflection_probe->extents = p_extents;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->origin_offset = p_offset;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_as_interior(RID p_probe, bool p_enable) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->interior = p_enable;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->box_projection = p_enable;
+}
+
+void LightStorage::reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->enable_shadows = p_enable;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->cull_mask = p_layers;
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+void LightStorage::reflection_probe_set_resolution(RID p_probe, int p_resolution) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+ ERR_FAIL_COND(p_resolution < 32);
+
+ reflection_probe->resolution = p_resolution;
+}
+
+void LightStorage::reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_ratio) {
+ ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND(!reflection_probe);
+
+ reflection_probe->mesh_lod_threshold = p_ratio;
+
+ reflection_probe->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_REFLECTION_PROBE);
+}
+
+AABB LightStorage::reflection_probe_get_aabb(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, AABB());
+
+ AABB aabb;
+ aabb.position = -reflection_probe->extents;
+ aabb.size = reflection_probe->extents * 2.0;
+
+ return aabb;
+}
+
+RS::ReflectionProbeUpdateMode LightStorage::reflection_probe_get_update_mode(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, RS::REFLECTION_PROBE_UPDATE_ALWAYS);
+
+ return reflection_probe->update_mode;
+}
+
+uint32_t LightStorage::reflection_probe_get_cull_mask(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->cull_mask;
+}
+
+Vector3 LightStorage::reflection_probe_get_extents(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, Vector3());
+
+ return reflection_probe->extents;
+}
+
+Vector3 LightStorage::reflection_probe_get_origin_offset(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, Vector3());
+
+ return reflection_probe->origin_offset;
+}
+
+bool LightStorage::reflection_probe_renders_shadows(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, false);
+
+ return reflection_probe->enable_shadows;
+}
+
+float LightStorage::reflection_probe_get_origin_max_distance(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->max_distance;
+}
+
+float LightStorage::reflection_probe_get_mesh_lod_threshold(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->mesh_lod_threshold;
+}
+
+int LightStorage::reflection_probe_get_resolution(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->resolution;
+}
+
+float LightStorage::reflection_probe_get_intensity(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->intensity;
+}
+
+bool LightStorage::reflection_probe_is_interior(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, false);
+
+ return reflection_probe->interior;
+}
+
+bool LightStorage::reflection_probe_is_box_projection(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, false);
+
+ return reflection_probe->box_projection;
+}
+
+RS::ReflectionProbeAmbientMode LightStorage::reflection_probe_get_ambient_mode(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, RS::REFLECTION_PROBE_AMBIENT_DISABLED);
+ return reflection_probe->ambient_mode;
+}
+
+Color LightStorage::reflection_probe_get_ambient_color(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, Color());
+
+ return reflection_probe->ambient_color;
+}
+float LightStorage::reflection_probe_get_ambient_color_energy(RID p_probe) const {
+ const ReflectionProbe *reflection_probe = reflection_probe_owner.get_or_null(p_probe);
+ ERR_FAIL_COND_V(!reflection_probe, 0);
+
+ return reflection_probe->ambient_color_energy;
+}
+
+/* LIGHTMAP API */
+
+RID LightStorage::lightmap_allocate() {
+ return lightmap_owner.allocate_rid();
+}
+
+void LightStorage::lightmap_initialize(RID p_lightmap) {
+ lightmap_owner.initialize_rid(p_lightmap, Lightmap());
+}
+
+void LightStorage::lightmap_free(RID p_rid) {
+ lightmap_set_textures(p_rid, RID(), false);
+ Lightmap *lightmap = lightmap_owner.get_or_null(p_rid);
+ lightmap->dependency.deleted_notify(p_rid);
+ lightmap_owner.free(p_rid);
+}
+
+void LightStorage::lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) {
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND(!lm);
+
+ lightmap_array_version++;
+
+ //erase lightmap users
+ if (lm->light_texture.is_valid()) {
+ RendererRD::Texture *t = RendererRD::TextureStorage::get_singleton()->get_texture(lm->light_texture);
+ if (t) {
+ t->lightmap_users.erase(p_lightmap);
+ }
+ }
+
+ RendererRD::Texture *t = RendererRD::TextureStorage::get_singleton()->get_texture(p_light);
+ lm->light_texture = p_light;
+ lm->uses_spherical_harmonics = p_uses_spherical_haromics;
+
+ RID default_2d_array = texture_storage->texture_rd_get_default(RendererRD::DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+ if (!t) {
+ if (using_lightmap_array) {
+ if (lm->array_index >= 0) {
+ lightmap_textures.write[lm->array_index] = default_2d_array;
+ lm->array_index = -1;
+ }
+ }
+
+ return;
+ }
+
+ t->lightmap_users.insert(p_lightmap);
+
+ if (using_lightmap_array) {
+ if (lm->array_index < 0) {
+ //not in array, try to put in array
+ for (int i = 0; i < lightmap_textures.size(); i++) {
+ if (lightmap_textures[i] == default_2d_array) {
+ lm->array_index = i;
+ break;
+ }
+ }
+ }
+ ERR_FAIL_COND_MSG(lm->array_index < 0, "Maximum amount of lightmaps in use (" + itos(lightmap_textures.size()) + ") has been exceeded, lightmap will nod display properly.");
+
+ lightmap_textures.write[lm->array_index] = t->rd_texture;
+ }
+}
+
+void LightStorage::lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND(!lm);
+ lm->bounds = p_bounds;
+}
+
+void LightStorage::lightmap_set_probe_interior(RID p_lightmap, bool p_interior) {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND(!lm);
+ lm->interior = p_interior;
+}
+
+void LightStorage::lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND(!lm);
+
+ if (p_points.size()) {
+ ERR_FAIL_COND(p_points.size() * 9 != p_point_sh.size());
+ ERR_FAIL_COND((p_tetrahedra.size() % 4) != 0);
+ ERR_FAIL_COND((p_bsp_tree.size() % 6) != 0);
+ }
+
+ lm->points = p_points;
+ lm->bsp_tree = p_bsp_tree;
+ lm->point_sh = p_point_sh;
+ lm->tetrahedra = p_tetrahedra;
+}
+
+PackedVector3Array LightStorage::lightmap_get_probe_capture_points(RID p_lightmap) const {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, PackedVector3Array());
+
+ return lm->points;
+}
+
+PackedColorArray LightStorage::lightmap_get_probe_capture_sh(RID p_lightmap) const {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, PackedColorArray());
+ return lm->point_sh;
+}
+
+PackedInt32Array LightStorage::lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, PackedInt32Array());
+ return lm->tetrahedra;
+}
+
+PackedInt32Array LightStorage::lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, PackedInt32Array());
+ return lm->bsp_tree;
+}
+
+void LightStorage::lightmap_set_probe_capture_update_speed(float p_speed) {
+ lightmap_probe_capture_update_speed = p_speed;
+}
+
+void LightStorage::lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) {
+ Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND(!lm);
+
+ for (int i = 0; i < 9; i++) {
+ r_sh[i] = Color(0, 0, 0, 0);
+ }
+
+ if (!lm->points.size() || !lm->bsp_tree.size() || !lm->tetrahedra.size()) {
+ return;
+ }
+
+ static_assert(sizeof(Lightmap::BSP) == 24);
+
+ const Lightmap::BSP *bsp = (const Lightmap::BSP *)lm->bsp_tree.ptr();
+ int32_t node = 0;
+ while (node >= 0) {
+ if (Plane(bsp[node].plane[0], bsp[node].plane[1], bsp[node].plane[2], bsp[node].plane[3]).is_point_over(p_point)) {
+#ifdef DEBUG_ENABLED
+ ERR_FAIL_COND(bsp[node].over >= 0 && bsp[node].over < node);
+#endif
+
+ node = bsp[node].over;
+ } else {
+#ifdef DEBUG_ENABLED
+ ERR_FAIL_COND(bsp[node].under >= 0 && bsp[node].under < node);
+#endif
+ node = bsp[node].under;
+ }
+ }
+
+ if (node == Lightmap::BSP::EMPTY_LEAF) {
+ return; //nothing could be done
+ }
+
+ node = ABS(node) - 1;
+
+ uint32_t *tetrahedron = (uint32_t *)&lm->tetrahedra[node * 4];
+ Vector3 points[4] = { lm->points[tetrahedron[0]], lm->points[tetrahedron[1]], lm->points[tetrahedron[2]], lm->points[tetrahedron[3]] };
+ const Color *sh_colors[4]{ &lm->point_sh[tetrahedron[0] * 9], &lm->point_sh[tetrahedron[1] * 9], &lm->point_sh[tetrahedron[2] * 9], &lm->point_sh[tetrahedron[3] * 9] };
+ Color barycentric = Geometry3D::tetrahedron_get_barycentric_coords(points[0], points[1], points[2], points[3], p_point);
+
+ for (int i = 0; i < 4; i++) {
+ float c = CLAMP(barycentric[i], 0.0, 1.0);
+ for (int j = 0; j < 9; j++) {
+ r_sh[j] += sh_colors[i][j] * c;
+ }
+ }
+}
+
+bool LightStorage::lightmap_is_interior(RID p_lightmap) const {
+ const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, false);
+ return lm->interior;
+}
+
+AABB LightStorage::lightmap_get_aabb(RID p_lightmap) const {
+ const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, AABB());
+ return lm->bounds;
+}
diff --git a/servers/rendering/renderer_rd/storage_rd/light_storage.h b/servers/rendering/renderer_rd/storage_rd/light_storage.h
new file mode 100644
index 0000000000..3cc455692d
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/light_storage.h
@@ -0,0 +1,370 @@
+/*************************************************************************/
+/* light_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef LIGHT_STORAGE_RD_H
+#define LIGHT_STORAGE_RD_H
+
+#include "core/templates/local_vector.h"
+#include "core/templates/rid_owner.h"
+#include "core/templates/self_list.h"
+#include "servers/rendering/storage/light_storage.h"
+
+namespace RendererRD {
+
+/* LIGHT */
+
+struct Light {
+ RS::LightType type;
+ float param[RS::LIGHT_PARAM_MAX];
+ Color color = Color(1, 1, 1, 1);
+ RID projector;
+ bool shadow = false;
+ bool negative = false;
+ bool reverse_cull = false;
+ RS::LightBakeMode bake_mode = RS::LIGHT_BAKE_DYNAMIC;
+ uint32_t max_sdfgi_cascade = 2;
+ uint32_t cull_mask = 0xFFFFFFFF;
+ bool distance_fade = false;
+ real_t distance_fade_begin = 40.0;
+ real_t distance_fade_shadow = 50.0;
+ real_t distance_fade_length = 10.0;
+ RS::LightOmniShadowMode omni_shadow_mode = RS::LIGHT_OMNI_SHADOW_DUAL_PARABOLOID;
+ RS::LightDirectionalShadowMode directional_shadow_mode = RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL;
+ bool directional_blend_splits = false;
+ RS::LightDirectionalSkyMode directional_sky_mode = RS::LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_AND_SKY;
+ uint64_t version = 0;
+
+ RendererStorage::Dependency dependency;
+};
+
+/* REFLECTION PROBE */
+
+struct ReflectionProbe {
+ RS::ReflectionProbeUpdateMode update_mode = RS::REFLECTION_PROBE_UPDATE_ONCE;
+ int resolution = 256;
+ float intensity = 1.0;
+ RS::ReflectionProbeAmbientMode ambient_mode = RS::REFLECTION_PROBE_AMBIENT_ENVIRONMENT;
+ Color ambient_color;
+ float ambient_color_energy = 1.0;
+ float max_distance = 0;
+ Vector3 extents = Vector3(1, 1, 1);
+ Vector3 origin_offset;
+ bool interior = false;
+ bool box_projection = false;
+ bool enable_shadows = false;
+ uint32_t cull_mask = (1 << 20) - 1;
+ float mesh_lod_threshold = 0.01;
+
+ RendererStorage::Dependency dependency;
+};
+
+/* LIGHTMAP */
+
+struct Lightmap {
+ RID light_texture;
+ bool uses_spherical_harmonics = false;
+ bool interior = false;
+ AABB bounds = AABB(Vector3(), Vector3(1, 1, 1));
+ int32_t array_index = -1; //unassigned
+ PackedVector3Array points;
+ PackedColorArray point_sh;
+ PackedInt32Array tetrahedra;
+ PackedInt32Array bsp_tree;
+
+ struct BSP {
+ static const int32_t EMPTY_LEAF = INT32_MIN;
+ float plane[4];
+ int32_t over = EMPTY_LEAF, under = EMPTY_LEAF;
+ };
+
+ RendererStorage::Dependency dependency;
+};
+
+class LightStorage : public RendererLightStorage {
+private:
+ static LightStorage *singleton;
+
+ /* LIGHT */
+ mutable RID_Owner<Light, true> light_owner;
+
+ /* REFLECTION PROBE */
+ mutable RID_Owner<ReflectionProbe, true> reflection_probe_owner;
+
+ /* LIGHTMAP */
+
+ bool using_lightmap_array;
+ Vector<RID> lightmap_textures;
+ uint64_t lightmap_array_version = 0;
+ float lightmap_probe_capture_update_speed = 4;
+
+ mutable RID_Owner<Lightmap, true> lightmap_owner;
+
+public:
+ static LightStorage *get_singleton();
+
+ LightStorage();
+ virtual ~LightStorage();
+
+ /* LIGHT */
+
+ Light *get_light(RID p_rid) { return light_owner.get_or_null(p_rid); };
+ bool owns_light(RID p_rid) { return light_owner.owns(p_rid); };
+
+ void _light_initialize(RID p_rid, RS::LightType p_type);
+
+ virtual RID directional_light_allocate() override;
+ virtual void directional_light_initialize(RID p_light) override;
+
+ virtual RID omni_light_allocate() override;
+ virtual void omni_light_initialize(RID p_light) override;
+
+ virtual RID spot_light_allocate() override;
+ virtual void spot_light_initialize(RID p_light) override;
+
+ virtual void light_free(RID p_rid) override;
+
+ virtual void light_set_color(RID p_light, const Color &p_color) override;
+ virtual void light_set_param(RID p_light, RS::LightParam p_param, float p_value) override;
+ virtual void light_set_shadow(RID p_light, bool p_enabled) override;
+ virtual void light_set_projector(RID p_light, RID p_texture) override;
+ virtual void light_set_negative(RID p_light, bool p_enable) override;
+ virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) override;
+ virtual void light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) override;
+ virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) override;
+ virtual void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) override;
+ virtual void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) override;
+
+ virtual void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) override;
+
+ virtual void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) override;
+ virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) override;
+ virtual bool light_directional_get_blend_splits(RID p_light) const override;
+ virtual void light_directional_set_sky_mode(RID p_light, RS::LightDirectionalSkyMode p_mode) override;
+ virtual RS::LightDirectionalSkyMode light_directional_get_sky_mode(RID p_light) const override;
+
+ virtual RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) override;
+ virtual RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) override;
+
+ virtual RS::LightType light_get_type(RID p_light) const override {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
+
+ return light->type;
+ }
+ virtual AABB light_get_aabb(RID p_light) const override;
+
+ virtual float light_get_param(RID p_light, RS::LightParam p_param) override {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0);
+
+ return light->param[p_param];
+ }
+
+ _FORCE_INLINE_ RID light_get_projector(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RID());
+
+ return light->projector;
+ }
+
+ virtual Color light_get_color(RID p_light) override {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, Color());
+
+ return light->color;
+ }
+
+ _FORCE_INLINE_ uint32_t light_get_cull_mask(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0);
+
+ return light->cull_mask;
+ }
+
+ _FORCE_INLINE_ bool light_is_distance_fade_enabled(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ return light->distance_fade;
+ }
+
+ _FORCE_INLINE_ float light_get_distance_fade_begin(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ return light->distance_fade_begin;
+ }
+
+ _FORCE_INLINE_ float light_get_distance_fade_shadow(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ return light->distance_fade_shadow;
+ }
+
+ _FORCE_INLINE_ float light_get_distance_fade_length(RID p_light) {
+ const Light *light = light_owner.get_or_null(p_light);
+ return light->distance_fade_length;
+ }
+
+ virtual bool light_has_shadow(RID p_light) const override {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
+
+ return light->shadow;
+ }
+
+ virtual bool light_has_projector(RID p_light) const override {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
+
+ return light_owner.owns(light->projector);
+ }
+
+ _FORCE_INLINE_ bool light_is_negative(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, RS::LIGHT_DIRECTIONAL);
+
+ return light->negative;
+ }
+
+ _FORCE_INLINE_ float light_get_transmittance_bias(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0.0);
+
+ return light->param[RS::LIGHT_PARAM_TRANSMITTANCE_BIAS];
+ }
+
+ _FORCE_INLINE_ float light_get_shadow_volumetric_fog_fade(RID p_light) const {
+ const Light *light = light_owner.get_or_null(p_light);
+ ERR_FAIL_COND_V(!light, 0.0);
+
+ return light->param[RS::LIGHT_PARAM_SHADOW_VOLUMETRIC_FOG_FADE];
+ }
+
+ virtual RS::LightBakeMode light_get_bake_mode(RID p_light) override;
+ virtual uint32_t light_get_max_sdfgi_cascade(RID p_light) override;
+ virtual uint64_t light_get_version(RID p_light) const override;
+
+ /* REFLECTION PROBE */
+
+ ReflectionProbe *get_reflection_probe(RID p_rid) { return reflection_probe_owner.get_or_null(p_rid); };
+ bool owns_reflection_probe(RID p_rid) { return reflection_probe_owner.owns(p_rid); };
+
+ virtual RID reflection_probe_allocate() override;
+ virtual void reflection_probe_initialize(RID p_reflection_probe) override;
+ virtual void reflection_probe_free(RID p_rid) override;
+
+ virtual void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) override;
+ virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) override;
+ virtual void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) override;
+ virtual void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) override;
+ virtual void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) override;
+ virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) override;
+ virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) override;
+ virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) override;
+ virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) override;
+ virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) override;
+ virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) override;
+ virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) override;
+ virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) override;
+ virtual void reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_ratio) override;
+
+ virtual AABB reflection_probe_get_aabb(RID p_probe) const override;
+ virtual RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const override;
+ virtual uint32_t reflection_probe_get_cull_mask(RID p_probe) const override;
+ virtual Vector3 reflection_probe_get_extents(RID p_probe) const override;
+ virtual Vector3 reflection_probe_get_origin_offset(RID p_probe) const override;
+ virtual float reflection_probe_get_origin_max_distance(RID p_probe) const override;
+ virtual float reflection_probe_get_mesh_lod_threshold(RID p_probe) const override;
+
+ int reflection_probe_get_resolution(RID p_probe) const;
+ virtual bool reflection_probe_renders_shadows(RID p_probe) const override;
+
+ float reflection_probe_get_intensity(RID p_probe) const;
+ bool reflection_probe_is_interior(RID p_probe) const;
+ bool reflection_probe_is_box_projection(RID p_probe) const;
+ RS::ReflectionProbeAmbientMode reflection_probe_get_ambient_mode(RID p_probe) const;
+ Color reflection_probe_get_ambient_color(RID p_probe) const;
+ float reflection_probe_get_ambient_color_energy(RID p_probe) const;
+
+ /* LIGHTMAP */
+
+ Lightmap *get_lightmap(RID p_rid) { return lightmap_owner.get_or_null(p_rid); };
+ bool owns_lightmap(RID p_rid) { return lightmap_owner.owns(p_rid); };
+
+ virtual RID lightmap_allocate() override;
+ virtual void lightmap_initialize(RID p_lightmap) override;
+ virtual void lightmap_free(RID p_rid) override;
+
+ virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) override;
+ virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) override;
+ virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) override;
+ virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) override;
+ virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const override;
+ virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const override;
+ virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const override;
+ virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const override;
+ virtual AABB lightmap_get_aabb(RID p_lightmap) const override;
+ virtual bool lightmap_is_interior(RID p_lightmap) const override;
+ virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) override;
+ virtual void lightmap_set_probe_capture_update_speed(float p_speed) override;
+
+ virtual float lightmap_get_probe_capture_update_speed() const override {
+ return lightmap_probe_capture_update_speed;
+ }
+ _FORCE_INLINE_ RID lightmap_get_texture(RID p_lightmap) const {
+ const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ ERR_FAIL_COND_V(!lm, RID());
+ return lm->light_texture;
+ }
+ _FORCE_INLINE_ int32_t lightmap_get_array_index(RID p_lightmap) const {
+ ERR_FAIL_COND_V(!using_lightmap_array, -1); //only for arrays
+ const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ return lm->array_index;
+ }
+ _FORCE_INLINE_ bool lightmap_uses_spherical_harmonics(RID p_lightmap) const {
+ ERR_FAIL_COND_V(!using_lightmap_array, false); //only for arrays
+ const Lightmap *lm = lightmap_owner.get_or_null(p_lightmap);
+ return lm->uses_spherical_harmonics;
+ }
+ _FORCE_INLINE_ uint64_t lightmap_array_get_version() const {
+ ERR_FAIL_COND_V(!using_lightmap_array, 0); //only for arrays
+ return lightmap_array_version;
+ }
+
+ _FORCE_INLINE_ int lightmap_array_get_size() const {
+ ERR_FAIL_COND_V(!using_lightmap_array, 0); //only for arrays
+ return lightmap_textures.size();
+ }
+
+ _FORCE_INLINE_ const Vector<RID> &lightmap_array_get_textures() const {
+ ERR_FAIL_COND_V(!using_lightmap_array, lightmap_textures); //only for arrays
+ return lightmap_textures;
+ }
+};
+
+} // namespace RendererRD
+
+#endif // !LIGHT_STORAGE_RD_H
diff --git a/servers/rendering/renderer_rd/storage_rd/material_storage.cpp b/servers/rendering/renderer_rd/storage_rd/material_storage.cpp
new file mode 100644
index 0000000000..9ca2973fd4
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/material_storage.cpp
@@ -0,0 +1,2626 @@
+/*************************************************************************/
+/* material_storage.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "material_storage.h"
+#include "core/config/engine.h"
+#include "core/config/project_settings.h"
+#include "core/io/resource_loader.h"
+#include "texture_storage.h"
+
+using namespace RendererRD;
+
+///////////////////////////////////////////////////////////////////////////
+// UBI helper functions
+
+_FORCE_INLINE_ static void _fill_std140_variant_ubo_value(ShaderLanguage::DataType type, int p_array_size, const Variant &value, uint8_t *data, bool p_linear_color) {
+ switch (type) {
+ case ShaderLanguage::TYPE_BOOL: {
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size > 0) {
+ const PackedInt32Array &ba = value;
+ int s = ba.size();
+ const int *r = ba.ptr();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = (r[i] != 0) ? 1 : 0;
+ } else {
+ gui[j] = 0;
+ }
+ gui[j + 1] = 0; // ignored
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ bool v = value;
+ gui[0] = v ? 1 : 0;
+ }
+ } break;
+ case ShaderLanguage::TYPE_BVEC2: {
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size > 0) {
+ const PackedInt32Array &ba = value;
+ int s = ba.size();
+ const int *r = ba.ptr();
+ int count = 2 * p_array_size;
+
+ for (int i = 0, j = 0; i < count; i += 2, j += 4) {
+ if (i < s) {
+ gui[j] = r[i] ? 1 : 0;
+ gui[j + 1] = r[i + 1] ? 1 : 0;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ }
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ int v = value;
+ gui[0] = v & 1 ? 1 : 0;
+ gui[1] = v & 2 ? 1 : 0;
+ }
+ } break;
+ case ShaderLanguage::TYPE_BVEC3: {
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size > 0) {
+ const PackedInt32Array &ba = value;
+ int s = ba.size();
+ const int *r = ba.ptr();
+ int count = 3 * p_array_size;
+
+ for (int i = 0, j = 0; i < count; i += 3, j += 4) {
+ if (i < s) {
+ gui[j] = r[i] ? 1 : 0;
+ gui[j + 1] = r[i + 1] ? 1 : 0;
+ gui[j + 2] = r[i + 2] ? 1 : 0;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ }
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ int v = value;
+ gui[0] = (v & 1) ? 1 : 0;
+ gui[1] = (v & 2) ? 1 : 0;
+ gui[2] = (v & 4) ? 1 : 0;
+ }
+ } break;
+ case ShaderLanguage::TYPE_BVEC4: {
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size > 0) {
+ const PackedInt32Array &ba = value;
+ int s = ba.size();
+ const int *r = ba.ptr();
+ int count = 4 * p_array_size;
+
+ for (int i = 0; i < count; i += 4) {
+ if (i < s) {
+ gui[i] = r[i] ? 1 : 0;
+ gui[i + 1] = r[i + 1] ? 1 : 0;
+ gui[i + 2] = r[i + 2] ? 1 : 0;
+ gui[i + 3] = r[i + 3] ? 1 : 0;
+ } else {
+ gui[i] = 0;
+ gui[i + 1] = 0;
+ gui[i + 2] = 0;
+ gui[i + 3] = 0;
+ }
+ }
+ } else {
+ int v = value;
+ gui[0] = (v & 1) ? 1 : 0;
+ gui[1] = (v & 2) ? 1 : 0;
+ gui[2] = (v & 4) ? 1 : 0;
+ gui[3] = (v & 8) ? 1 : 0;
+ }
+ } break;
+ case ShaderLanguage::TYPE_INT: {
+ int32_t *gui = (int32_t *)data;
+
+ if (p_array_size > 0) {
+ Vector<int> iv = value;
+ int s = iv.size();
+ const int *r = iv.ptr();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ } else {
+ gui[j] = 0;
+ }
+ gui[j + 1] = 0; // ignored
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ int v = value;
+ gui[0] = v;
+ }
+ } break;
+ case ShaderLanguage::TYPE_IVEC2: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ int32_t *gui = (int32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 2 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0, j = 0; i < count; i += 2, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ gui[j + 1] = r[i + 1];
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ }
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_IVEC3: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ int32_t *gui = (int32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 3 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0, j = 0; i < count; i += 3, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ gui[j + 1] = r[i + 1];
+ gui[j + 2] = r[i + 2];
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ }
+ gui[j + 3] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_IVEC4: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ int32_t *gui = (int32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 4 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0; i < count; i += 4) {
+ if (i < s) {
+ gui[i] = r[i];
+ gui[i + 1] = r[i + 1];
+ gui[i + 2] = r[i + 2];
+ gui[i + 3] = r[i + 3];
+ } else {
+ gui[i] = 0;
+ gui[i + 1] = 0;
+ gui[i + 2] = 0;
+ gui[i + 3] = 0;
+ }
+ }
+ } break;
+ case ShaderLanguage::TYPE_UINT: {
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size > 0) {
+ Vector<int> iv = value;
+ int s = iv.size();
+ const int *r = iv.ptr();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ } else {
+ gui[j] = 0;
+ }
+ gui[j + 1] = 0; // ignored
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ int v = value;
+ gui[0] = v;
+ }
+ } break;
+ case ShaderLanguage::TYPE_UVEC2: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 2 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0, j = 0; i < count; i += 2, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ gui[j + 1] = r[i + 1];
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ }
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_UVEC3: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 3 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0, j = 0; i < count; i += 3, j += 4) {
+ if (i < s) {
+ gui[j] = r[i];
+ gui[j + 1] = r[i + 1];
+ gui[j + 2] = r[i + 2];
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ }
+ gui[j + 3] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_UVEC4: {
+ Vector<int> iv = value;
+ int s = iv.size();
+ uint32_t *gui = (uint32_t *)data;
+
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+ int count = 4 * p_array_size;
+
+ const int *r = iv.ptr();
+ for (int i = 0; i < count; i++) {
+ if (i < s) {
+ gui[i] = r[i];
+ gui[i + 1] = r[i + 1];
+ gui[i + 2] = r[i + 2];
+ gui[i + 3] = r[i + 3];
+ } else {
+ gui[i] = 0;
+ gui[i + 1] = 0;
+ gui[i + 2] = 0;
+ gui[i + 3] = 0;
+ }
+ }
+ } break;
+ case ShaderLanguage::TYPE_FLOAT: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ const PackedFloat32Array &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = a[i];
+ } else {
+ gui[j] = 0;
+ }
+ gui[j + 1] = 0; // ignored
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ float v = value;
+ gui[0] = v;
+ }
+ } break;
+ case ShaderLanguage::TYPE_VEC2: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ const PackedVector2Array &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = a[i].x;
+ gui[j + 1] = a[i].y;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ }
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ Vector2 v = value;
+ gui[0] = v.x;
+ gui[1] = v.y;
+ }
+ } break;
+ case ShaderLanguage::TYPE_VEC3: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ if (value.get_type() == Variant::PACKED_COLOR_ARRAY) {
+ const PackedColorArray &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ Color color = a[i];
+ if (p_linear_color) {
+ color = color.srgb_to_linear();
+ }
+ gui[j] = color.r;
+ gui[j + 1] = color.g;
+ gui[j + 2] = color.b;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ }
+ gui[j + 3] = 0; // ignored
+ }
+ } else {
+ const PackedVector3Array &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ gui[j] = a[i].x;
+ gui[j + 1] = a[i].y;
+ gui[j + 2] = a[i].z;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ }
+ gui[j + 3] = 0; // ignored
+ }
+ }
+ } else {
+ if (value.get_type() == Variant::COLOR) {
+ Color v = value;
+
+ if (p_linear_color) {
+ v = v.srgb_to_linear();
+ }
+
+ gui[0] = v.r;
+ gui[1] = v.g;
+ gui[2] = v.b;
+ } else {
+ Vector3 v = value;
+ gui[0] = v.x;
+ gui[1] = v.y;
+ gui[2] = v.z;
+ }
+ }
+ } break;
+ case ShaderLanguage::TYPE_VEC4: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ if (value.get_type() == Variant::PACKED_COLOR_ARRAY) {
+ const PackedColorArray &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size; i++, j += 4) {
+ if (i < s) {
+ Color color = a[i];
+ if (p_linear_color) {
+ color = color.srgb_to_linear();
+ }
+ gui[j] = color.r;
+ gui[j + 1] = color.g;
+ gui[j + 2] = color.b;
+ gui[j + 3] = color.a;
+ } else {
+ gui[j] = 0;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+ gui[j + 3] = 0;
+ }
+ }
+ } else {
+ const PackedFloat32Array &a = value;
+ int s = a.size();
+ int count = 4 * p_array_size;
+
+ for (int i = 0; i < count; i += 4) {
+ if (i + 3 < s) {
+ gui[i] = a[i];
+ gui[i + 1] = a[i + 1];
+ gui[i + 2] = a[i + 2];
+ gui[i + 3] = a[i + 3];
+ } else {
+ gui[i] = 0;
+ gui[i + 1] = 0;
+ gui[i + 2] = 0;
+ gui[i + 3] = 0;
+ }
+ }
+ }
+ } else {
+ if (value.get_type() == Variant::COLOR) {
+ Color v = value;
+
+ if (p_linear_color) {
+ v = v.srgb_to_linear();
+ }
+
+ gui[0] = v.r;
+ gui[1] = v.g;
+ gui[2] = v.b;
+ gui[3] = v.a;
+ } else if (value.get_type() == Variant::RECT2) {
+ Rect2 v = value;
+
+ gui[0] = v.position.x;
+ gui[1] = v.position.y;
+ gui[2] = v.size.x;
+ gui[3] = v.size.y;
+ } else if (value.get_type() == Variant::QUATERNION) {
+ Quaternion v = value;
+
+ gui[0] = v.x;
+ gui[1] = v.y;
+ gui[2] = v.z;
+ gui[3] = v.w;
+ } else {
+ Plane v = value;
+
+ gui[0] = v.normal.x;
+ gui[1] = v.normal.y;
+ gui[2] = v.normal.z;
+ gui[3] = v.d;
+ }
+ }
+ } break;
+ case ShaderLanguage::TYPE_MAT2: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ const PackedFloat32Array &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size * 4; i += 4, j += 8) {
+ if (i + 3 < s) {
+ gui[j] = a[i];
+ gui[j + 1] = a[i + 1];
+
+ gui[j + 4] = a[i + 2];
+ gui[j + 5] = a[i + 3];
+ } else {
+ gui[j] = 1;
+ gui[j + 1] = 0;
+
+ gui[j + 4] = 0;
+ gui[j + 5] = 1;
+ }
+ gui[j + 2] = 0; // ignored
+ gui[j + 3] = 0; // ignored
+ gui[j + 6] = 0; // ignored
+ gui[j + 7] = 0; // ignored
+ }
+ } else {
+ Transform2D v = value;
+
+ //in std140 members of mat2 are treated as vec4s
+ gui[0] = v.columns[0][0];
+ gui[1] = v.columns[0][1];
+ gui[2] = 0; // ignored
+ gui[3] = 0; // ignored
+
+ gui[4] = v.columns[1][0];
+ gui[5] = v.columns[1][1];
+ gui[6] = 0; // ignored
+ gui[7] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_MAT3: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ const PackedFloat32Array &a = value;
+ int s = a.size();
+
+ for (int i = 0, j = 0; i < p_array_size * 9; i += 9, j += 12) {
+ if (i + 8 < s) {
+ gui[j] = a[i];
+ gui[j + 1] = a[i + 1];
+ gui[j + 2] = a[i + 2];
+
+ gui[j + 4] = a[i + 3];
+ gui[j + 5] = a[i + 4];
+ gui[j + 6] = a[i + 5];
+
+ gui[j + 8] = a[i + 6];
+ gui[j + 9] = a[i + 7];
+ gui[j + 10] = a[i + 8];
+ } else {
+ gui[j] = 1;
+ gui[j + 1] = 0;
+ gui[j + 2] = 0;
+
+ gui[j + 4] = 0;
+ gui[j + 5] = 1;
+ gui[j + 6] = 0;
+
+ gui[j + 8] = 0;
+ gui[j + 9] = 0;
+ gui[j + 10] = 1;
+ }
+ gui[j + 3] = 0; // ignored
+ gui[j + 7] = 0; // ignored
+ gui[j + 11] = 0; // ignored
+ }
+ } else {
+ Basis v = value;
+ gui[0] = v.rows[0][0];
+ gui[1] = v.rows[1][0];
+ gui[2] = v.rows[2][0];
+ gui[3] = 0; // ignored
+
+ gui[4] = v.rows[0][1];
+ gui[5] = v.rows[1][1];
+ gui[6] = v.rows[2][1];
+ gui[7] = 0; // ignored
+
+ gui[8] = v.rows[0][2];
+ gui[9] = v.rows[1][2];
+ gui[10] = v.rows[2][2];
+ gui[11] = 0; // ignored
+ }
+ } break;
+ case ShaderLanguage::TYPE_MAT4: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ if (p_array_size > 0) {
+ const PackedFloat32Array &a = value;
+ int s = a.size();
+
+ for (int i = 0; i < p_array_size * 16; i += 16) {
+ if (i + 15 < s) {
+ gui[i] = a[i];
+ gui[i + 1] = a[i + 1];
+ gui[i + 2] = a[i + 2];
+ gui[i + 3] = a[i + 3];
+
+ gui[i + 4] = a[i + 4];
+ gui[i + 5] = a[i + 5];
+ gui[i + 6] = a[i + 6];
+ gui[i + 7] = a[i + 7];
+
+ gui[i + 8] = a[i + 8];
+ gui[i + 9] = a[i + 9];
+ gui[i + 10] = a[i + 10];
+ gui[i + 11] = a[i + 11];
+
+ gui[i + 12] = a[i + 12];
+ gui[i + 13] = a[i + 13];
+ gui[i + 14] = a[i + 14];
+ gui[i + 15] = a[i + 15];
+ } else {
+ gui[i] = 1;
+ gui[i + 1] = 0;
+ gui[i + 2] = 0;
+ gui[i + 3] = 0;
+
+ gui[i + 4] = 0;
+ gui[i + 5] = 1;
+ gui[i + 6] = 0;
+ gui[i + 7] = 0;
+
+ gui[i + 8] = 0;
+ gui[i + 9] = 0;
+ gui[i + 10] = 1;
+ gui[i + 11] = 0;
+
+ gui[i + 12] = 0;
+ gui[i + 13] = 0;
+ gui[i + 14] = 0;
+ gui[i + 15] = 1;
+ }
+ }
+ } else {
+ Transform3D v = value;
+ gui[0] = v.basis.rows[0][0];
+ gui[1] = v.basis.rows[1][0];
+ gui[2] = v.basis.rows[2][0];
+ gui[3] = 0;
+
+ gui[4] = v.basis.rows[0][1];
+ gui[5] = v.basis.rows[1][1];
+ gui[6] = v.basis.rows[2][1];
+ gui[7] = 0;
+
+ gui[8] = v.basis.rows[0][2];
+ gui[9] = v.basis.rows[1][2];
+ gui[10] = v.basis.rows[2][2];
+ gui[11] = 0;
+
+ gui[12] = v.origin.x;
+ gui[13] = v.origin.y;
+ gui[14] = v.origin.z;
+ gui[15] = 1;
+ }
+ } break;
+ default: {
+ }
+ }
+}
+
+_FORCE_INLINE_ static void _fill_std140_ubo_value(ShaderLanguage::DataType type, const Vector<ShaderLanguage::ConstantNode::Value> &value, uint8_t *data) {
+ switch (type) {
+ case ShaderLanguage::TYPE_BOOL: {
+ uint32_t *gui = (uint32_t *)data;
+ *gui = value[0].boolean ? 1 : 0;
+ } break;
+ case ShaderLanguage::TYPE_BVEC2: {
+ uint32_t *gui = (uint32_t *)data;
+ gui[0] = value[0].boolean ? 1 : 0;
+ gui[1] = value[1].boolean ? 1 : 0;
+
+ } break;
+ case ShaderLanguage::TYPE_BVEC3: {
+ uint32_t *gui = (uint32_t *)data;
+ gui[0] = value[0].boolean ? 1 : 0;
+ gui[1] = value[1].boolean ? 1 : 0;
+ gui[2] = value[2].boolean ? 1 : 0;
+
+ } break;
+ case ShaderLanguage::TYPE_BVEC4: {
+ uint32_t *gui = (uint32_t *)data;
+ gui[0] = value[0].boolean ? 1 : 0;
+ gui[1] = value[1].boolean ? 1 : 0;
+ gui[2] = value[2].boolean ? 1 : 0;
+ gui[3] = value[3].boolean ? 1 : 0;
+
+ } break;
+ case ShaderLanguage::TYPE_INT: {
+ int32_t *gui = (int32_t *)data;
+ gui[0] = value[0].sint;
+
+ } break;
+ case ShaderLanguage::TYPE_IVEC2: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 2; i++) {
+ gui[i] = value[i].sint;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_IVEC3: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 3; i++) {
+ gui[i] = value[i].sint;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_IVEC4: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 4; i++) {
+ gui[i] = value[i].sint;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_UINT: {
+ uint32_t *gui = (uint32_t *)data;
+ gui[0] = value[0].uint;
+
+ } break;
+ case ShaderLanguage::TYPE_UVEC2: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 2; i++) {
+ gui[i] = value[i].uint;
+ }
+ } break;
+ case ShaderLanguage::TYPE_UVEC3: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 3; i++) {
+ gui[i] = value[i].uint;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_UVEC4: {
+ int32_t *gui = (int32_t *)data;
+
+ for (int i = 0; i < 4; i++) {
+ gui[i] = value[i].uint;
+ }
+ } break;
+ case ShaderLanguage::TYPE_FLOAT: {
+ float *gui = reinterpret_cast<float *>(data);
+ gui[0] = value[0].real;
+
+ } break;
+ case ShaderLanguage::TYPE_VEC2: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ for (int i = 0; i < 2; i++) {
+ gui[i] = value[i].real;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_VEC3: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ for (int i = 0; i < 3; i++) {
+ gui[i] = value[i].real;
+ }
+
+ } break;
+ case ShaderLanguage::TYPE_VEC4: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ for (int i = 0; i < 4; i++) {
+ gui[i] = value[i].real;
+ }
+ } break;
+ case ShaderLanguage::TYPE_MAT2: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ //in std140 members of mat2 are treated as vec4s
+ gui[0] = value[0].real;
+ gui[1] = value[1].real;
+ gui[2] = 0;
+ gui[3] = 0;
+ gui[4] = value[2].real;
+ gui[5] = value[3].real;
+ gui[6] = 0;
+ gui[7] = 0;
+ } break;
+ case ShaderLanguage::TYPE_MAT3: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ gui[0] = value[0].real;
+ gui[1] = value[1].real;
+ gui[2] = value[2].real;
+ gui[3] = 0;
+ gui[4] = value[3].real;
+ gui[5] = value[4].real;
+ gui[6] = value[5].real;
+ gui[7] = 0;
+ gui[8] = value[6].real;
+ gui[9] = value[7].real;
+ gui[10] = value[8].real;
+ gui[11] = 0;
+ } break;
+ case ShaderLanguage::TYPE_MAT4: {
+ float *gui = reinterpret_cast<float *>(data);
+
+ for (int i = 0; i < 16; i++) {
+ gui[i] = value[i].real;
+ }
+ } break;
+ default: {
+ }
+ }
+}
+
+_FORCE_INLINE_ static void _fill_std140_ubo_empty(ShaderLanguage::DataType type, int p_array_size, uint8_t *data) {
+ if (p_array_size <= 0) {
+ p_array_size = 1;
+ }
+
+ switch (type) {
+ case ShaderLanguage::TYPE_BOOL:
+ case ShaderLanguage::TYPE_INT:
+ case ShaderLanguage::TYPE_UINT:
+ case ShaderLanguage::TYPE_FLOAT: {
+ memset(data, 0, 4 * p_array_size);
+ } break;
+ case ShaderLanguage::TYPE_BVEC2:
+ case ShaderLanguage::TYPE_IVEC2:
+ case ShaderLanguage::TYPE_UVEC2:
+ case ShaderLanguage::TYPE_VEC2: {
+ memset(data, 0, 8 * p_array_size);
+ } break;
+ case ShaderLanguage::TYPE_BVEC3:
+ case ShaderLanguage::TYPE_IVEC3:
+ case ShaderLanguage::TYPE_UVEC3:
+ case ShaderLanguage::TYPE_VEC3:
+ case ShaderLanguage::TYPE_BVEC4:
+ case ShaderLanguage::TYPE_IVEC4:
+ case ShaderLanguage::TYPE_UVEC4:
+ case ShaderLanguage::TYPE_VEC4: {
+ memset(data, 0, 16 * p_array_size);
+ } break;
+ case ShaderLanguage::TYPE_MAT2: {
+ memset(data, 0, 32 * p_array_size);
+ } break;
+ case ShaderLanguage::TYPE_MAT3: {
+ memset(data, 0, 48 * p_array_size);
+ } break;
+ case ShaderLanguage::TYPE_MAT4: {
+ memset(data, 0, 64 * p_array_size);
+ } break;
+
+ default: {
+ }
+ }
+}
+
+///////////////////////////////////////////////////////////////////////////
+// MaterialData
+
+void MaterialData::update_uniform_buffer(const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Map<StringName, Variant> &p_parameters, uint8_t *p_buffer, uint32_t p_buffer_size, bool p_use_linear_color) {
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ bool uses_global_buffer = false;
+
+ for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : p_uniforms) {
+ if (E.value.order < 0) {
+ continue; // texture, does not go here
+ }
+
+ if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
+ continue; //instance uniforms don't appear in the buffer
+ }
+
+ if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_GLOBAL) {
+ //this is a global variable, get the index to it
+ GlobalVariables::Variable *gv = material_storage->global_variables.variables.getptr(E.key);
+ uint32_t index = 0;
+ if (gv) {
+ index = gv->buffer_index;
+ } else {
+ WARN_PRINT("Shader uses global uniform '" + E.key + "', but it was removed at some point. Material will not display correctly.");
+ }
+
+ uint32_t offset = p_uniform_offsets[E.value.order];
+ uint32_t *intptr = (uint32_t *)&p_buffer[offset];
+ *intptr = index;
+ uses_global_buffer = true;
+ continue;
+ }
+
+ //regular uniform
+ uint32_t offset = p_uniform_offsets[E.value.order];
+#ifdef DEBUG_ENABLED
+ uint32_t size = 0U;
+ // The following code enforces a 16-byte alignment of uniform arrays.
+ if (E.value.array_size > 0) {
+ size = ShaderLanguage::get_datatype_size(E.value.type) * E.value.array_size;
+ int m = (16 * E.value.array_size);
+ if ((size % m) != 0U) {
+ size += m - (size % m);
+ }
+ } else {
+ size = ShaderLanguage::get_datatype_size(E.value.type);
+ }
+ ERR_CONTINUE(offset + size > p_buffer_size);
+#endif
+ uint8_t *data = &p_buffer[offset];
+ const Map<StringName, Variant>::Element *V = p_parameters.find(E.key);
+
+ if (V) {
+ //user provided
+ _fill_std140_variant_ubo_value(E.value.type, E.value.array_size, V->get(), data, p_use_linear_color);
+
+ } else if (E.value.default_value.size()) {
+ //default value
+ _fill_std140_ubo_value(E.value.type, E.value.default_value, data);
+ //value=E.value.default_value;
+ } else {
+ //zero because it was not provided
+ if ((E.value.type == ShaderLanguage::TYPE_VEC3 || E.value.type == ShaderLanguage::TYPE_VEC4) && E.value.hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
+ //colors must be set as black, with alpha as 1.0
+ _fill_std140_variant_ubo_value(E.value.type, E.value.array_size, Color(0, 0, 0, 1), data, p_use_linear_color);
+ } else {
+ //else just zero it out
+ _fill_std140_ubo_empty(E.value.type, E.value.array_size, data);
+ }
+ }
+ }
+
+ if (uses_global_buffer != (global_buffer_E != nullptr)) {
+ if (uses_global_buffer) {
+ global_buffer_E = material_storage->global_variables.materials_using_buffer.push_back(self);
+ } else {
+ material_storage->global_variables.materials_using_buffer.erase(global_buffer_E);
+ global_buffer_E = nullptr;
+ }
+ }
+}
+
+MaterialData::~MaterialData() {
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+ if (global_buffer_E) {
+ //unregister global buffers
+ material_storage->global_variables.materials_using_buffer.erase(global_buffer_E);
+ }
+
+ if (global_texture_E) {
+ //unregister global textures
+
+ for (const KeyValue<StringName, uint64_t> &E : used_global_textures) {
+ GlobalVariables::Variable *v = material_storage->global_variables.variables.getptr(E.key);
+ if (v) {
+ v->texture_materials.erase(self);
+ }
+ }
+ //unregister material from those using global textures
+ material_storage->global_variables.materials_using_texture.erase(global_texture_E);
+ }
+
+ if (uniform_buffer.is_valid()) {
+ RD::get_singleton()->free(uniform_buffer);
+ }
+}
+
+void MaterialData::update_textures(const Map<StringName, Variant> &p_parameters, const Map<StringName, Map<int, RID>> &p_default_textures, const Vector<ShaderCompiler::GeneratedCode::Texture> &p_texture_uniforms, RID *p_textures, bool p_use_linear_color) {
+ TextureStorage *texture_storage = TextureStorage::get_singleton();
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+#ifdef TOOLS_ENABLED
+ Texture *roughness_detect_texture = nullptr;
+ RS::TextureDetectRoughnessChannel roughness_channel = RS::TEXTURE_DETECT_ROUGHNESS_R;
+ Texture *normal_detect_texture = nullptr;
+#endif
+
+ bool uses_global_textures = false;
+ global_textures_pass++;
+
+ for (int i = 0, k = 0; i < p_texture_uniforms.size(); i++) {
+ const StringName &uniform_name = p_texture_uniforms[i].name;
+ int uniform_array_size = p_texture_uniforms[i].array_size;
+
+ Vector<RID> textures;
+
+ if (p_texture_uniforms[i].global) {
+ uses_global_textures = true;
+
+ GlobalVariables::Variable *v = material_storage->global_variables.variables.getptr(uniform_name);
+ if (v) {
+ if (v->buffer_index >= 0) {
+ WARN_PRINT("Shader uses global uniform texture '" + String(uniform_name) + "', but it changed type and is no longer a texture!.");
+
+ } else {
+ Map<StringName, uint64_t>::Element *E = used_global_textures.find(uniform_name);
+ if (!E) {
+ E = used_global_textures.insert(uniform_name, global_textures_pass);
+ v->texture_materials.insert(self);
+ } else {
+ E->get() = global_textures_pass;
+ }
+
+ textures.push_back(v->override.get_type() != Variant::NIL ? v->override : v->value);
+ }
+
+ } else {
+ WARN_PRINT("Shader uses global uniform texture '" + String(uniform_name) + "', but it was removed at some point. Material will not display correctly.");
+ }
+ } else {
+ const Map<StringName, Variant>::Element *V = p_parameters.find(uniform_name);
+ if (V) {
+ if (V->get().is_array()) {
+ Array array = (Array)V->get();
+ if (uniform_array_size > 0) {
+ for (int j = 0; j < array.size(); j++) {
+ textures.push_back(array[j]);
+ }
+ } else {
+ if (array.size() > 0) {
+ textures.push_back(array[0]);
+ }
+ }
+ } else {
+ textures.push_back(V->get());
+ }
+ }
+
+ if (uniform_array_size > 0) {
+ if (textures.size() < uniform_array_size) {
+ const Map<StringName, Map<int, RID>>::Element *W = p_default_textures.find(uniform_name);
+ for (int j = textures.size(); j < uniform_array_size; j++) {
+ if (W && W->get().has(j)) {
+ textures.push_back(W->get()[j]);
+ } else {
+ textures.push_back(RID());
+ }
+ }
+ }
+ } else if (textures.is_empty()) {
+ const Map<StringName, Map<int, RID>>::Element *W = p_default_textures.find(uniform_name);
+ if (W && W->get().has(0)) {
+ textures.push_back(W->get()[0]);
+ }
+ }
+ }
+
+ RID rd_texture;
+
+ if (textures.is_empty()) {
+ //check default usage
+ switch (p_texture_uniforms[i].type) {
+ case ShaderLanguage::TYPE_ISAMPLER2D:
+ case ShaderLanguage::TYPE_USAMPLER2D:
+ case ShaderLanguage::TYPE_SAMPLER2D: {
+ switch (p_texture_uniforms[i].hint) {
+ case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK:
+ case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_BLACK);
+ } break;
+ case ShaderLanguage::ShaderNode::Uniform::HINT_ANISOTROPY: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_ANISO);
+ } break;
+ case ShaderLanguage::ShaderNode::Uniform::HINT_NORMAL: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_NORMAL);
+ } break;
+ case ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_NORMAL: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_NORMAL);
+ } break;
+ default: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE);
+ } break;
+ }
+ } break;
+
+ case ShaderLanguage::TYPE_SAMPLERCUBE: {
+ switch (p_texture_uniforms[i].hint) {
+ case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK:
+ case ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_BLACK);
+ } break;
+ default: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_WHITE);
+ } break;
+ }
+ } break;
+ case ShaderLanguage::TYPE_SAMPLERCUBEARRAY: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK);
+ } break;
+
+ case ShaderLanguage::TYPE_ISAMPLER3D:
+ case ShaderLanguage::TYPE_USAMPLER3D:
+ case ShaderLanguage::TYPE_SAMPLER3D: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_3D_WHITE);
+ } break;
+
+ case ShaderLanguage::TYPE_ISAMPLER2DARRAY:
+ case ShaderLanguage::TYPE_USAMPLER2DARRAY:
+ case ShaderLanguage::TYPE_SAMPLER2DARRAY: {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE);
+ } break;
+
+ default: {
+ }
+ }
+#ifdef TOOLS_ENABLED
+ if (roughness_detect_texture && normal_detect_texture && !normal_detect_texture->path.is_empty()) {
+ roughness_detect_texture->detect_roughness_callback(roughness_detect_texture->detect_roughness_callback_ud, normal_detect_texture->path, roughness_channel);
+ }
+#endif
+ if (uniform_array_size > 0) {
+ for (int j = 0; j < uniform_array_size; j++) {
+ p_textures[k++] = rd_texture;
+ }
+ } else {
+ p_textures[k++] = rd_texture;
+ }
+ } else {
+ bool srgb = p_use_linear_color && (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ALBEDO || p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_BLACK_ALBEDO);
+
+ for (int j = 0; j < textures.size(); j++) {
+ Texture *tex = TextureStorage::get_singleton()->get_texture(textures[j]);
+
+ if (tex) {
+ rd_texture = (srgb && tex->rd_texture_srgb.is_valid()) ? tex->rd_texture_srgb : tex->rd_texture;
+#ifdef TOOLS_ENABLED
+ if (tex->detect_3d_callback && p_use_linear_color) {
+ tex->detect_3d_callback(tex->detect_3d_callback_ud);
+ }
+ if (tex->detect_normal_callback && (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_NORMAL || p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_NORMAL)) {
+ if (p_texture_uniforms[i].hint == ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_NORMAL) {
+ normal_detect_texture = tex;
+ }
+ tex->detect_normal_callback(tex->detect_normal_callback_ud);
+ }
+ if (tex->detect_roughness_callback && (p_texture_uniforms[i].hint >= ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_R || p_texture_uniforms[i].hint <= ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_GRAY)) {
+ //find the normal texture
+ roughness_detect_texture = tex;
+ roughness_channel = RS::TextureDetectRoughnessChannel(p_texture_uniforms[i].hint - ShaderLanguage::ShaderNode::Uniform::HINT_ROUGHNESS_R);
+ }
+#endif
+ }
+ if (rd_texture.is_null()) {
+ rd_texture = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE);
+ }
+#ifdef TOOLS_ENABLED
+ if (roughness_detect_texture && normal_detect_texture && !normal_detect_texture->path.is_empty()) {
+ roughness_detect_texture->detect_roughness_callback(roughness_detect_texture->detect_roughness_callback_ud, normal_detect_texture->path, roughness_channel);
+ }
+#endif
+ p_textures[k++] = rd_texture;
+ }
+ }
+ }
+ {
+ //for textures no longer used, unregister them
+ List<Map<StringName, uint64_t>::Element *> to_delete;
+ for (Map<StringName, uint64_t>::Element *E = used_global_textures.front(); E; E = E->next()) {
+ if (E->get() != global_textures_pass) {
+ to_delete.push_back(E);
+
+ GlobalVariables::Variable *v = material_storage->global_variables.variables.getptr(E->key());
+ if (v) {
+ v->texture_materials.erase(self);
+ }
+ }
+ }
+
+ while (to_delete.front()) {
+ used_global_textures.erase(to_delete.front()->get());
+ to_delete.pop_front();
+ }
+ //handle registering/unregistering global textures
+ if (uses_global_textures != (global_texture_E != nullptr)) {
+ if (uses_global_textures) {
+ global_texture_E = material_storage->global_variables.materials_using_texture.push_back(self);
+ } else {
+ material_storage->global_variables.materials_using_texture.erase(global_texture_E);
+ global_texture_E = nullptr;
+ }
+ }
+ }
+}
+
+void MaterialData::free_parameters_uniform_set(RID p_uniform_set) {
+ if (p_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(p_uniform_set)) {
+ RD::get_singleton()->uniform_set_set_invalidation_callback(p_uniform_set, nullptr, nullptr);
+ RD::get_singleton()->free(p_uniform_set);
+ }
+}
+
+bool MaterialData::update_parameters_uniform_set(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty, const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Vector<ShaderCompiler::GeneratedCode::Texture> &p_texture_uniforms, const Map<StringName, Map<int, RID>> &p_default_texture_params, uint32_t p_ubo_size, RID &uniform_set, RID p_shader, uint32_t p_shader_uniform_set, uint32_t p_barrier) {
+ if ((uint32_t)ubo_data.size() != p_ubo_size) {
+ p_uniform_dirty = true;
+ if (uniform_buffer.is_valid()) {
+ RD::get_singleton()->free(uniform_buffer);
+ uniform_buffer = RID();
+ }
+
+ ubo_data.resize(p_ubo_size);
+ if (ubo_data.size()) {
+ uniform_buffer = RD::get_singleton()->uniform_buffer_create(ubo_data.size());
+ memset(ubo_data.ptrw(), 0, ubo_data.size()); //clear
+ }
+
+ //clear previous uniform set
+ if (uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
+ RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, nullptr, nullptr);
+ RD::get_singleton()->free(uniform_set);
+ uniform_set = RID();
+ }
+ }
+
+ //check whether buffer changed
+ if (p_uniform_dirty && ubo_data.size()) {
+ update_uniform_buffer(p_uniforms, p_uniform_offsets, p_parameters, ubo_data.ptrw(), ubo_data.size(), true);
+ RD::get_singleton()->buffer_update(uniform_buffer, 0, ubo_data.size(), ubo_data.ptrw(), p_barrier);
+ }
+
+ uint32_t tex_uniform_count = 0U;
+ for (int i = 0; i < p_texture_uniforms.size(); i++) {
+ tex_uniform_count += uint32_t(p_texture_uniforms[i].array_size > 0 ? p_texture_uniforms[i].array_size : 1);
+ }
+
+ if ((uint32_t)texture_cache.size() != tex_uniform_count || p_textures_dirty) {
+ texture_cache.resize(tex_uniform_count);
+ p_textures_dirty = true;
+
+ //clear previous uniform set
+ if (uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
+ RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, nullptr, nullptr);
+ RD::get_singleton()->free(uniform_set);
+ uniform_set = RID();
+ }
+ }
+
+ if (p_textures_dirty && tex_uniform_count) {
+ update_textures(p_parameters, p_default_texture_params, p_texture_uniforms, texture_cache.ptrw(), true);
+ }
+
+ if (p_ubo_size == 0 && p_texture_uniforms.size() == 0) {
+ // This material does not require an uniform set, so don't create it.
+ return false;
+ }
+
+ if (!p_textures_dirty && uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
+ //no reason to update uniform set, only UBO (or nothing) was needed to update
+ return false;
+ }
+
+ Vector<RD::Uniform> uniforms;
+
+ {
+ if (p_ubo_size) {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_UNIFORM_BUFFER;
+ u.binding = 0;
+ u.append_id(uniform_buffer);
+ uniforms.push_back(u);
+ }
+
+ const RID *textures = texture_cache.ptrw();
+ for (int i = 0, k = 0; i < p_texture_uniforms.size(); i++) {
+ const int array_size = p_texture_uniforms[i].array_size;
+
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 1 + k;
+ if (array_size > 0) {
+ for (int j = 0; j < array_size; j++) {
+ u.append_id(textures[k++]);
+ }
+ } else {
+ u.append_id(textures[k++]);
+ }
+ uniforms.push_back(u);
+ }
+ }
+
+ uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_shader_uniform_set);
+
+ RD::get_singleton()->uniform_set_set_invalidation_callback(uniform_set, MaterialStorage::_material_uniform_set_erased, &self);
+
+ return true;
+}
+
+///////////////////////////////////////////////////////////////////////////
+// MaterialStorage
+
+MaterialStorage *MaterialStorage::singleton = nullptr;
+
+MaterialStorage *MaterialStorage::get_singleton() {
+ return singleton;
+}
+
+MaterialStorage::MaterialStorage() {
+ singleton = this;
+
+ //default samplers
+ for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
+ for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
+ RD::SamplerState sampler_state;
+ switch (i) {
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.max_lod = 0;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.max_lod = 0;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.use_anisotropy = true;
+ sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.use_anisotropy = true;
+ sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
+
+ } break;
+ default: {
+ }
+ }
+ switch (j) {
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_MIRROR: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ } break;
+ default: {
+ }
+ }
+
+ default_rd_samplers[i][j] = RD::get_singleton()->sampler_create(sampler_state);
+ }
+ }
+
+ //custom sampler
+ sampler_rd_configure_custom(0.0f);
+
+ for (int i = 0; i < SHADER_TYPE_MAX; i++) {
+ shader_data_request_func[i] = nullptr;
+ }
+
+ static_assert(sizeof(GlobalVariables::Value) == 16);
+
+ global_variables.buffer_size = MAX(4096, (int)GLOBAL_GET("rendering/limits/global_shader_variables/buffer_size"));
+ global_variables.buffer_values = memnew_arr(GlobalVariables::Value, global_variables.buffer_size);
+ memset(global_variables.buffer_values, 0, sizeof(GlobalVariables::Value) * global_variables.buffer_size);
+ global_variables.buffer_usage = memnew_arr(GlobalVariables::ValueUsage, global_variables.buffer_size);
+ global_variables.buffer_dirty_regions = memnew_arr(bool, global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE);
+ memset(global_variables.buffer_dirty_regions, 0, sizeof(bool) * global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE);
+ global_variables.buffer = RD::get_singleton()->storage_buffer_create(sizeof(GlobalVariables::Value) * global_variables.buffer_size);
+}
+
+MaterialStorage::~MaterialStorage() {
+ memdelete_arr(global_variables.buffer_values);
+ memdelete_arr(global_variables.buffer_usage);
+ memdelete_arr(global_variables.buffer_dirty_regions);
+ RD::get_singleton()->free(global_variables.buffer);
+
+ //def samplers
+ for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
+ for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
+ RD::get_singleton()->free(default_rd_samplers[i][j]);
+ }
+ }
+
+ //custom samplers
+ for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
+ for (int j = 0; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
+ if (custom_rd_samplers[i][j].is_valid()) {
+ RD::get_singleton()->free(custom_rd_samplers[i][j]);
+ }
+ }
+ }
+
+ singleton = nullptr;
+}
+
+/* Samplers */
+
+void MaterialStorage::sampler_rd_configure_custom(float p_mipmap_bias) {
+ for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
+ for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
+ RD::SamplerState sampler_state;
+ switch (i) {
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.max_lod = 0;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.max_lod = 0;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.lod_bias = p_mipmap_bias;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.lod_bias = p_mipmap_bias;
+
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_NEAREST;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_NEAREST;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.lod_bias = p_mipmap_bias;
+ sampler_state.use_anisotropy = true;
+ sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC: {
+ sampler_state.mag_filter = RD::SAMPLER_FILTER_LINEAR;
+ sampler_state.min_filter = RD::SAMPLER_FILTER_LINEAR;
+ if (GLOBAL_GET("rendering/textures/default_filters/use_nearest_mipmap_filter")) {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_NEAREST;
+ } else {
+ sampler_state.mip_filter = RD::SAMPLER_FILTER_LINEAR;
+ }
+ sampler_state.lod_bias = p_mipmap_bias;
+ sampler_state.use_anisotropy = true;
+ sampler_state.anisotropy_max = 1 << int(GLOBAL_GET("rendering/textures/default_filters/anisotropic_filtering_level"));
+
+ } break;
+ default: {
+ }
+ }
+ switch (j) {
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_CLAMP_TO_EDGE;
+
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_REPEAT;
+ } break;
+ case RS::CANVAS_ITEM_TEXTURE_REPEAT_MIRROR: {
+ sampler_state.repeat_u = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler_state.repeat_v = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ sampler_state.repeat_w = RD::SAMPLER_REPEAT_MODE_MIRRORED_REPEAT;
+ } break;
+ default: {
+ }
+ }
+
+ if (custom_rd_samplers[i][j].is_valid()) {
+ RD::get_singleton()->free(custom_rd_samplers[i][j]);
+ }
+
+ custom_rd_samplers[i][j] = RD::get_singleton()->sampler_create(sampler_state);
+ }
+ }
+}
+
+/* GLOBAL VARIABLE API */
+
+int32_t MaterialStorage::_global_variable_allocate(uint32_t p_elements) {
+ int32_t idx = 0;
+ while (idx + p_elements <= global_variables.buffer_size) {
+ if (global_variables.buffer_usage[idx].elements == 0) {
+ bool valid = true;
+ for (uint32_t i = 1; i < p_elements; i++) {
+ if (global_variables.buffer_usage[idx + i].elements > 0) {
+ valid = false;
+ idx += i + global_variables.buffer_usage[idx + i].elements;
+ break;
+ }
+ }
+
+ if (!valid) {
+ continue; //if not valid, idx is in new position
+ }
+
+ return idx;
+ } else {
+ idx += global_variables.buffer_usage[idx].elements;
+ }
+ }
+
+ return -1;
+}
+
+void MaterialStorage::_global_variable_store_in_buffer(int32_t p_index, RS::GlobalVariableType p_type, const Variant &p_value) {
+ switch (p_type) {
+ case RS::GLOBAL_VAR_TYPE_BOOL: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ bool b = p_value;
+ bv.x = b ? 1.0 : 0.0;
+ bv.y = 0.0;
+ bv.z = 0.0;
+ bv.w = 0.0;
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_BVEC2: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ uint32_t bvec = p_value;
+ bv.x = (bvec & 1) ? 1.0 : 0.0;
+ bv.y = (bvec & 2) ? 1.0 : 0.0;
+ bv.z = 0.0;
+ bv.w = 0.0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_BVEC3: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ uint32_t bvec = p_value;
+ bv.x = (bvec & 1) ? 1.0 : 0.0;
+ bv.y = (bvec & 2) ? 1.0 : 0.0;
+ bv.z = (bvec & 4) ? 1.0 : 0.0;
+ bv.w = 0.0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_BVEC4: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ uint32_t bvec = p_value;
+ bv.x = (bvec & 1) ? 1.0 : 0.0;
+ bv.y = (bvec & 2) ? 1.0 : 0.0;
+ bv.z = (bvec & 4) ? 1.0 : 0.0;
+ bv.w = (bvec & 8) ? 1.0 : 0.0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_INT: {
+ GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
+ int32_t v = p_value;
+ bv.x = v;
+ bv.y = 0;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_IVEC2: {
+ GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
+ Vector2i v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_IVEC3: {
+ GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
+ Vector3i v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = v.z;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_IVEC4: {
+ GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
+ Vector<int32_t> v = p_value;
+ bv.x = v.size() >= 1 ? v[0] : 0;
+ bv.y = v.size() >= 2 ? v[1] : 0;
+ bv.z = v.size() >= 3 ? v[2] : 0;
+ bv.w = v.size() >= 4 ? v[3] : 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_RECT2I: {
+ GlobalVariables::ValueInt &bv = *(GlobalVariables::ValueInt *)&global_variables.buffer_values[p_index];
+ Rect2i v = p_value;
+ bv.x = v.position.x;
+ bv.y = v.position.y;
+ bv.z = v.size.x;
+ bv.w = v.size.y;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_UINT: {
+ GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
+ uint32_t v = p_value;
+ bv.x = v;
+ bv.y = 0;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_UVEC2: {
+ GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
+ Vector2i v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_UVEC3: {
+ GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
+ Vector3i v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = v.z;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_UVEC4: {
+ GlobalVariables::ValueUInt &bv = *(GlobalVariables::ValueUInt *)&global_variables.buffer_values[p_index];
+ Vector<int32_t> v = p_value;
+ bv.x = v.size() >= 1 ? v[0] : 0;
+ bv.y = v.size() >= 2 ? v[1] : 0;
+ bv.z = v.size() >= 3 ? v[2] : 0;
+ bv.w = v.size() >= 4 ? v[3] : 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_FLOAT: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ float v = p_value;
+ bv.x = v;
+ bv.y = 0;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_VEC2: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ Vector2 v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = 0;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_VEC3: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ Vector3 v = p_value;
+ bv.x = v.x;
+ bv.y = v.y;
+ bv.z = v.z;
+ bv.w = 0;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_VEC4: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ Plane v = p_value;
+ bv.x = v.normal.x;
+ bv.y = v.normal.y;
+ bv.z = v.normal.z;
+ bv.w = v.d;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_COLOR: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ Color v = p_value;
+ bv.x = v.r;
+ bv.y = v.g;
+ bv.z = v.b;
+ bv.w = v.a;
+
+ GlobalVariables::Value &bv_linear = global_variables.buffer_values[p_index + 1];
+ v = v.srgb_to_linear();
+ bv_linear.x = v.r;
+ bv_linear.y = v.g;
+ bv_linear.z = v.b;
+ bv_linear.w = v.a;
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_RECT2: {
+ GlobalVariables::Value &bv = global_variables.buffer_values[p_index];
+ Rect2 v = p_value;
+ bv.x = v.position.x;
+ bv.y = v.position.y;
+ bv.z = v.size.x;
+ bv.w = v.size.y;
+ } break;
+ case RS::GLOBAL_VAR_TYPE_MAT2: {
+ GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
+ Vector<float> m2 = p_value;
+ if (m2.size() < 4) {
+ m2.resize(4);
+ }
+ bv[0].x = m2[0];
+ bv[0].y = m2[1];
+ bv[0].z = 0;
+ bv[0].w = 0;
+
+ bv[1].x = m2[2];
+ bv[1].y = m2[3];
+ bv[1].z = 0;
+ bv[1].w = 0;
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_MAT3: {
+ GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
+ Basis v = p_value;
+ bv[0].x = v.rows[0][0];
+ bv[0].y = v.rows[1][0];
+ bv[0].z = v.rows[2][0];
+ bv[0].w = 0;
+
+ bv[1].x = v.rows[0][1];
+ bv[1].y = v.rows[1][1];
+ bv[1].z = v.rows[2][1];
+ bv[1].w = 0;
+
+ bv[2].x = v.rows[0][2];
+ bv[2].y = v.rows[1][2];
+ bv[2].z = v.rows[2][2];
+ bv[2].w = 0;
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_MAT4: {
+ GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
+
+ Vector<float> m2 = p_value;
+ if (m2.size() < 16) {
+ m2.resize(16);
+ }
+
+ bv[0].x = m2[0];
+ bv[0].y = m2[1];
+ bv[0].z = m2[2];
+ bv[0].w = m2[3];
+
+ bv[1].x = m2[4];
+ bv[1].y = m2[5];
+ bv[1].z = m2[6];
+ bv[1].w = m2[7];
+
+ bv[2].x = m2[8];
+ bv[2].y = m2[9];
+ bv[2].z = m2[10];
+ bv[2].w = m2[11];
+
+ bv[3].x = m2[12];
+ bv[3].y = m2[13];
+ bv[3].z = m2[14];
+ bv[3].w = m2[15];
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_TRANSFORM_2D: {
+ GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
+ Transform2D v = p_value;
+ bv[0].x = v.columns[0][0];
+ bv[0].y = v.columns[0][1];
+ bv[0].z = 0;
+ bv[0].w = 0;
+
+ bv[1].x = v.columns[1][0];
+ bv[1].y = v.columns[1][1];
+ bv[1].z = 0;
+ bv[1].w = 0;
+
+ bv[2].x = v.columns[2][0];
+ bv[2].y = v.columns[2][1];
+ bv[2].z = 1;
+ bv[2].w = 0;
+
+ } break;
+ case RS::GLOBAL_VAR_TYPE_TRANSFORM: {
+ GlobalVariables::Value *bv = &global_variables.buffer_values[p_index];
+ Transform3D v = p_value;
+ bv[0].x = v.basis.rows[0][0];
+ bv[0].y = v.basis.rows[1][0];
+ bv[0].z = v.basis.rows[2][0];
+ bv[0].w = 0;
+
+ bv[1].x = v.basis.rows[0][1];
+ bv[1].y = v.basis.rows[1][1];
+ bv[1].z = v.basis.rows[2][1];
+ bv[1].w = 0;
+
+ bv[2].x = v.basis.rows[0][2];
+ bv[2].y = v.basis.rows[1][2];
+ bv[2].z = v.basis.rows[2][2];
+ bv[2].w = 0;
+
+ bv[3].x = v.origin.x;
+ bv[3].y = v.origin.y;
+ bv[3].z = v.origin.z;
+ bv[3].w = 1;
+
+ } break;
+ default: {
+ ERR_FAIL();
+ }
+ }
+}
+
+void MaterialStorage::_global_variable_mark_buffer_dirty(int32_t p_index, int32_t p_elements) {
+ int32_t prev_chunk = -1;
+
+ for (int32_t i = 0; i < p_elements; i++) {
+ int32_t chunk = (p_index + i) / GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
+ if (chunk != prev_chunk) {
+ if (!global_variables.buffer_dirty_regions[chunk]) {
+ global_variables.buffer_dirty_regions[chunk] = true;
+ global_variables.buffer_dirty_region_count++;
+ }
+ }
+
+ prev_chunk = chunk;
+ }
+}
+
+void MaterialStorage::global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) {
+ ERR_FAIL_COND(global_variables.variables.has(p_name));
+ GlobalVariables::Variable gv;
+ gv.type = p_type;
+ gv.value = p_value;
+ gv.buffer_index = -1;
+
+ if (p_type >= RS::GLOBAL_VAR_TYPE_SAMPLER2D) {
+ //is texture
+ global_variables.must_update_texture_materials = true; //normally there are none
+ } else {
+ gv.buffer_elements = 1;
+ if (p_type == RS::GLOBAL_VAR_TYPE_COLOR || p_type == RS::GLOBAL_VAR_TYPE_MAT2) {
+ //color needs to elements to store srgb and linear
+ gv.buffer_elements = 2;
+ }
+ if (p_type == RS::GLOBAL_VAR_TYPE_MAT3 || p_type == RS::GLOBAL_VAR_TYPE_TRANSFORM_2D) {
+ //color needs to elements to store srgb and linear
+ gv.buffer_elements = 3;
+ }
+ if (p_type == RS::GLOBAL_VAR_TYPE_MAT4 || p_type == RS::GLOBAL_VAR_TYPE_TRANSFORM) {
+ //color needs to elements to store srgb and linear
+ gv.buffer_elements = 4;
+ }
+
+ //is vector, allocate in buffer and update index
+ gv.buffer_index = _global_variable_allocate(gv.buffer_elements);
+ ERR_FAIL_COND_MSG(gv.buffer_index < 0, vformat("Failed allocating global variable '%s' out of buffer memory. Consider increasing it in the Project Settings.", String(p_name)));
+ global_variables.buffer_usage[gv.buffer_index].elements = gv.buffer_elements;
+ _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
+ _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
+
+ global_variables.must_update_buffer_materials = true; //normally there are none
+ }
+
+ global_variables.variables[p_name] = gv;
+}
+
+void MaterialStorage::global_variable_remove(const StringName &p_name) {
+ if (!global_variables.variables.has(p_name)) {
+ return;
+ }
+ const GlobalVariables::Variable &gv = global_variables.variables[p_name];
+
+ if (gv.buffer_index >= 0) {
+ global_variables.buffer_usage[gv.buffer_index].elements = 0;
+ global_variables.must_update_buffer_materials = true;
+ } else {
+ global_variables.must_update_texture_materials = true;
+ }
+
+ global_variables.variables.erase(p_name);
+}
+
+Vector<StringName> MaterialStorage::global_variable_get_list() const {
+ if (!Engine::get_singleton()->is_editor_hint()) {
+ ERR_FAIL_V_MSG(Vector<StringName>(), "This function should never be used outside the editor, it can severely damage performance.");
+ }
+
+ const StringName *K = nullptr;
+ Vector<StringName> names;
+ while ((K = global_variables.variables.next(K))) {
+ names.push_back(*K);
+ }
+ names.sort_custom<StringName::AlphCompare>();
+ return names;
+}
+
+void MaterialStorage::global_variable_set(const StringName &p_name, const Variant &p_value) {
+ ERR_FAIL_COND(!global_variables.variables.has(p_name));
+ GlobalVariables::Variable &gv = global_variables.variables[p_name];
+ gv.value = p_value;
+ if (gv.override.get_type() == Variant::NIL) {
+ if (gv.buffer_index >= 0) {
+ //buffer
+ _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
+ _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
+ } else {
+ //texture
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ for (Set<RID>::Element *E = gv.texture_materials.front(); E; E = E->next()) {
+ Material *material = material_storage->get_material(E->get());
+ ERR_CONTINUE(!material);
+ material_storage->_material_queue_update(material, false, true);
+ }
+ }
+ }
+}
+
+void MaterialStorage::global_variable_set_override(const StringName &p_name, const Variant &p_value) {
+ if (!global_variables.variables.has(p_name)) {
+ return; //variable may not exist
+ }
+
+ ERR_FAIL_COND(p_value.get_type() == Variant::OBJECT);
+
+ GlobalVariables::Variable &gv = global_variables.variables[p_name];
+
+ gv.override = p_value;
+
+ if (gv.buffer_index >= 0) {
+ //buffer
+ if (gv.override.get_type() == Variant::NIL) {
+ _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.value);
+ } else {
+ _global_variable_store_in_buffer(gv.buffer_index, gv.type, gv.override);
+ }
+
+ _global_variable_mark_buffer_dirty(gv.buffer_index, gv.buffer_elements);
+ } else {
+ //texture
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ for (Set<RID>::Element *E = gv.texture_materials.front(); E; E = E->next()) {
+ Material *material = material_storage->get_material(E->get());
+ ERR_CONTINUE(!material);
+ material_storage->_material_queue_update(material, false, true);
+ }
+ }
+}
+
+Variant MaterialStorage::global_variable_get(const StringName &p_name) const {
+ if (!Engine::get_singleton()->is_editor_hint()) {
+ ERR_FAIL_V_MSG(Variant(), "This function should never be used outside the editor, it can severely damage performance.");
+ }
+
+ if (!global_variables.variables.has(p_name)) {
+ return Variant();
+ }
+
+ return global_variables.variables[p_name].value;
+}
+
+RS::GlobalVariableType MaterialStorage::global_variable_get_type_internal(const StringName &p_name) const {
+ if (!global_variables.variables.has(p_name)) {
+ return RS::GLOBAL_VAR_TYPE_MAX;
+ }
+
+ return global_variables.variables[p_name].type;
+}
+
+RS::GlobalVariableType MaterialStorage::global_variable_get_type(const StringName &p_name) const {
+ if (!Engine::get_singleton()->is_editor_hint()) {
+ ERR_FAIL_V_MSG(RS::GLOBAL_VAR_TYPE_MAX, "This function should never be used outside the editor, it can severely damage performance.");
+ }
+
+ return global_variable_get_type_internal(p_name);
+}
+
+void MaterialStorage::global_variables_load_settings(bool p_load_textures) {
+ List<PropertyInfo> settings;
+ ProjectSettings::get_singleton()->get_property_list(&settings);
+
+ for (const PropertyInfo &E : settings) {
+ if (E.name.begins_with("shader_globals/")) {
+ StringName name = E.name.get_slice("/", 1);
+ Dictionary d = ProjectSettings::get_singleton()->get(E.name);
+
+ ERR_CONTINUE(!d.has("type"));
+ ERR_CONTINUE(!d.has("value"));
+
+ String type = d["type"];
+
+ static const char *global_var_type_names[RS::GLOBAL_VAR_TYPE_MAX] = {
+ "bool",
+ "bvec2",
+ "bvec3",
+ "bvec4",
+ "int",
+ "ivec2",
+ "ivec3",
+ "ivec4",
+ "rect2i",
+ "uint",
+ "uvec2",
+ "uvec3",
+ "uvec4",
+ "float",
+ "vec2",
+ "vec3",
+ "vec4",
+ "color",
+ "rect2",
+ "mat2",
+ "mat3",
+ "mat4",
+ "transform_2d",
+ "transform",
+ "sampler2D",
+ "sampler2DArray",
+ "sampler3D",
+ "samplerCube",
+ };
+
+ RS::GlobalVariableType gvtype = RS::GLOBAL_VAR_TYPE_MAX;
+
+ for (int i = 0; i < RS::GLOBAL_VAR_TYPE_MAX; i++) {
+ if (global_var_type_names[i] == type) {
+ gvtype = RS::GlobalVariableType(i);
+ break;
+ }
+ }
+
+ ERR_CONTINUE(gvtype == RS::GLOBAL_VAR_TYPE_MAX); //type invalid
+
+ Variant value = d["value"];
+
+ if (gvtype >= RS::GLOBAL_VAR_TYPE_SAMPLER2D) {
+ //textire
+ if (!p_load_textures) {
+ value = RID();
+ continue;
+ }
+
+ String path = value;
+ Ref<Resource> resource = ResourceLoader::load(path);
+ ERR_CONTINUE(resource.is_null());
+ value = resource;
+ }
+
+ if (global_variables.variables.has(name)) {
+ //has it, update it
+ global_variable_set(name, value);
+ } else {
+ global_variable_add(name, gvtype, value);
+ }
+ }
+ }
+}
+
+void MaterialStorage::global_variables_clear() {
+ global_variables.variables.clear(); //not right but for now enough
+}
+
+RID MaterialStorage::global_variables_get_storage_buffer() const {
+ return global_variables.buffer;
+}
+
+int32_t MaterialStorage::global_variables_instance_allocate(RID p_instance) {
+ ERR_FAIL_COND_V(global_variables.instance_buffer_pos.has(p_instance), -1);
+ int32_t pos = _global_variable_allocate(ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES);
+ global_variables.instance_buffer_pos[p_instance] = pos; //save anyway
+ ERR_FAIL_COND_V_MSG(pos < 0, -1, "Too many instances using shader instance variables. Increase buffer size in Project Settings.");
+ global_variables.buffer_usage[pos].elements = ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES;
+ return pos;
+}
+
+void MaterialStorage::global_variables_instance_free(RID p_instance) {
+ ERR_FAIL_COND(!global_variables.instance_buffer_pos.has(p_instance));
+ int32_t pos = global_variables.instance_buffer_pos[p_instance];
+ if (pos >= 0) {
+ global_variables.buffer_usage[pos].elements = 0;
+ }
+ global_variables.instance_buffer_pos.erase(p_instance);
+}
+
+void MaterialStorage::global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) {
+ if (!global_variables.instance_buffer_pos.has(p_instance)) {
+ return; //just not allocated, ignore
+ }
+ int32_t pos = global_variables.instance_buffer_pos[p_instance];
+
+ if (pos < 0) {
+ return; //again, not allocated, ignore
+ }
+ ERR_FAIL_INDEX(p_index, ShaderLanguage::MAX_INSTANCE_UNIFORM_INDICES);
+ ERR_FAIL_COND_MSG(p_value.get_type() > Variant::COLOR, "Unsupported variant type for instance parameter: " + Variant::get_type_name(p_value.get_type())); //anything greater not supported
+
+ const ShaderLanguage::DataType datatype_from_value[Variant::COLOR + 1] = {
+ ShaderLanguage::TYPE_MAX, //nil
+ ShaderLanguage::TYPE_BOOL, //bool
+ ShaderLanguage::TYPE_INT, //int
+ ShaderLanguage::TYPE_FLOAT, //float
+ ShaderLanguage::TYPE_MAX, //string
+ ShaderLanguage::TYPE_VEC2, //vec2
+ ShaderLanguage::TYPE_IVEC2, //vec2i
+ ShaderLanguage::TYPE_VEC4, //rect2
+ ShaderLanguage::TYPE_IVEC4, //rect2i
+ ShaderLanguage::TYPE_VEC3, // vec3
+ ShaderLanguage::TYPE_IVEC3, //vec3i
+ ShaderLanguage::TYPE_MAX, //xform2d not supported here
+ ShaderLanguage::TYPE_VEC4, //plane
+ ShaderLanguage::TYPE_VEC4, //quat
+ ShaderLanguage::TYPE_MAX, //aabb not supported here
+ ShaderLanguage::TYPE_MAX, //basis not supported here
+ ShaderLanguage::TYPE_MAX, //xform not supported here
+ ShaderLanguage::TYPE_VEC4 //color
+ };
+
+ ShaderLanguage::DataType datatype = datatype_from_value[p_value.get_type()];
+
+ ERR_FAIL_COND_MSG(datatype == ShaderLanguage::TYPE_MAX, "Unsupported variant type for instance parameter: " + Variant::get_type_name(p_value.get_type())); //anything greater not supported
+
+ pos += p_index;
+
+ _fill_std140_variant_ubo_value(datatype, 0, p_value, (uint8_t *)&global_variables.buffer_values[pos], true); //instances always use linear color in this renderer
+ _global_variable_mark_buffer_dirty(pos, 1);
+}
+
+void MaterialStorage::_update_global_variables() {
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+ if (global_variables.buffer_dirty_region_count > 0) {
+ uint32_t total_regions = global_variables.buffer_size / GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
+ if (total_regions / global_variables.buffer_dirty_region_count <= 4) {
+ // 25% of regions dirty, just update all buffer
+ RD::get_singleton()->buffer_update(global_variables.buffer, 0, sizeof(GlobalVariables::Value) * global_variables.buffer_size, global_variables.buffer_values);
+ memset(global_variables.buffer_dirty_regions, 0, sizeof(bool) * total_regions);
+ } else {
+ uint32_t region_byte_size = sizeof(GlobalVariables::Value) * GlobalVariables::BUFFER_DIRTY_REGION_SIZE;
+
+ for (uint32_t i = 0; i < total_regions; i++) {
+ if (global_variables.buffer_dirty_regions[i]) {
+ RD::get_singleton()->buffer_update(global_variables.buffer, i * region_byte_size, region_byte_size, &global_variables.buffer_values[i * GlobalVariables::BUFFER_DIRTY_REGION_SIZE]);
+
+ global_variables.buffer_dirty_regions[i] = false;
+ }
+ }
+ }
+
+ global_variables.buffer_dirty_region_count = 0;
+ }
+
+ if (global_variables.must_update_buffer_materials) {
+ // only happens in the case of a buffer variable added or removed,
+ // so not often.
+ for (const RID &E : global_variables.materials_using_buffer) {
+ Material *material = material_storage->get_material(E);
+ ERR_CONTINUE(!material); //wtf
+
+ material_storage->_material_queue_update(material, true, false);
+ }
+
+ global_variables.must_update_buffer_materials = false;
+ }
+
+ if (global_variables.must_update_texture_materials) {
+ // only happens in the case of a buffer variable added or removed,
+ // so not often.
+ for (const RID &E : global_variables.materials_using_texture) {
+ Material *material = material_storage->get_material(E);
+ ERR_CONTINUE(!material); //wtf
+
+ material_storage->_material_queue_update(material, false, true);
+ }
+
+ global_variables.must_update_texture_materials = false;
+ }
+}
+
+/* SHADER API */
+
+RID MaterialStorage::shader_allocate() {
+ return shader_owner.allocate_rid();
+}
+
+void MaterialStorage::shader_initialize(RID p_rid) {
+ Shader shader;
+ shader.data = nullptr;
+ shader.type = SHADER_TYPE_MAX;
+
+ shader_owner.initialize_rid(p_rid, shader);
+}
+
+void MaterialStorage::shader_free(RID p_rid) {
+ Shader *shader = shader_owner.get_or_null(p_rid);
+ ERR_FAIL_COND(!shader);
+
+ //make material unreference this
+ while (shader->owners.size()) {
+ material_set_shader(shader->owners.front()->get()->self, RID());
+ }
+
+ //clear data if exists
+ if (shader->data) {
+ memdelete(shader->data);
+ }
+ shader_owner.free(p_rid);
+}
+
+void MaterialStorage::shader_set_code(RID p_shader, const String &p_code) {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND(!shader);
+
+ shader->code = p_code;
+ String mode_string = ShaderLanguage::get_shader_type(p_code);
+
+ ShaderType new_type;
+ if (mode_string == "canvas_item") {
+ new_type = SHADER_TYPE_2D;
+ } else if (mode_string == "particles") {
+ new_type = SHADER_TYPE_PARTICLES;
+ } else if (mode_string == "spatial") {
+ new_type = SHADER_TYPE_3D;
+ } else if (mode_string == "sky") {
+ new_type = SHADER_TYPE_SKY;
+ } else if (mode_string == "fog") {
+ new_type = SHADER_TYPE_FOG;
+ } else {
+ new_type = SHADER_TYPE_MAX;
+ }
+
+ if (new_type != shader->type) {
+ if (shader->data) {
+ memdelete(shader->data);
+ shader->data = nullptr;
+ }
+
+ for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
+ Material *material = E->get();
+ material->shader_type = new_type;
+ if (material->data) {
+ memdelete(material->data);
+ material->data = nullptr;
+ }
+ }
+
+ shader->type = new_type;
+
+ if (new_type < SHADER_TYPE_MAX && shader_data_request_func[new_type]) {
+ shader->data = shader_data_request_func[new_type]();
+ } else {
+ shader->type = SHADER_TYPE_MAX; //invalid
+ }
+
+ for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
+ Material *material = E->get();
+ if (shader->data) {
+ material->data = material_get_data_request_function(new_type)(shader->data);
+ material->data->self = material->self;
+ material->data->set_next_pass(material->next_pass);
+ material->data->set_render_priority(material->priority);
+ }
+ material->shader_type = new_type;
+ }
+
+ if (shader->data) {
+ for (const KeyValue<StringName, Map<int, RID>> &E : shader->default_texture_parameter) {
+ for (const KeyValue<int, RID> &E2 : E.value) {
+ shader->data->set_default_texture_param(E.key, E2.value, E2.key);
+ }
+ }
+ }
+ }
+
+ if (shader->data) {
+ shader->data->set_code(p_code);
+ }
+
+ for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
+ Material *material = E->get();
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ _material_queue_update(material, true, true);
+ }
+}
+
+String MaterialStorage::shader_get_code(RID p_shader) const {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND_V(!shader, String());
+ return shader->code;
+}
+
+void MaterialStorage::shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND(!shader);
+ if (shader->data) {
+ return shader->data->get_param_list(p_param_list);
+ }
+}
+
+void MaterialStorage::shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND(!shader);
+
+ if (p_texture.is_valid() && TextureStorage::get_singleton()->owns_texture(p_texture)) {
+ if (!shader->default_texture_parameter.has(p_name)) {
+ shader->default_texture_parameter[p_name] = Map<int, RID>();
+ }
+ shader->default_texture_parameter[p_name][p_index] = p_texture;
+ } else {
+ if (shader->default_texture_parameter.has(p_name) && shader->default_texture_parameter[p_name].has(p_index)) {
+ shader->default_texture_parameter[p_name].erase(p_index);
+
+ if (shader->default_texture_parameter[p_name].is_empty()) {
+ shader->default_texture_parameter.erase(p_name);
+ }
+ }
+ }
+ if (shader->data) {
+ shader->data->set_default_texture_param(p_name, p_texture, p_index);
+ }
+ for (Set<Material *>::Element *E = shader->owners.front(); E; E = E->next()) {
+ Material *material = E->get();
+ _material_queue_update(material, false, true);
+ }
+}
+
+RID MaterialStorage::shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND_V(!shader, RID());
+ if (shader->default_texture_parameter.has(p_name) && shader->default_texture_parameter[p_name].has(p_index)) {
+ return shader->default_texture_parameter[p_name][p_index];
+ }
+
+ return RID();
+}
+
+Variant MaterialStorage::shader_get_param_default(RID p_shader, const StringName &p_param) const {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND_V(!shader, Variant());
+ if (shader->data) {
+ return shader->data->get_default_parameter(p_param);
+ }
+ return Variant();
+}
+
+void MaterialStorage::shader_set_data_request_function(ShaderType p_shader_type, ShaderDataRequestFunction p_function) {
+ ERR_FAIL_INDEX(p_shader_type, SHADER_TYPE_MAX);
+ shader_data_request_func[p_shader_type] = p_function;
+}
+
+RS::ShaderNativeSourceCode MaterialStorage::shader_get_native_source_code(RID p_shader) const {
+ Shader *shader = shader_owner.get_or_null(p_shader);
+ ERR_FAIL_COND_V(!shader, RS::ShaderNativeSourceCode());
+ if (shader->data) {
+ return shader->data->get_native_source_code();
+ }
+ return RS::ShaderNativeSourceCode();
+}
+
+/* MATERIAL API */
+
+void MaterialStorage::_material_uniform_set_erased(void *p_material) {
+ RID rid = *(RID *)p_material;
+ Material *material = MaterialStorage::get_singleton()->get_material(rid);
+ if (material) {
+ if (material->data) {
+ // Uniform set may be gone because a dependency was erased. This happens
+ // if a texture is deleted, so re-create it.
+ MaterialStorage::get_singleton()->_material_queue_update(material, false, true);
+ }
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ }
+}
+
+void MaterialStorage::_material_queue_update(Material *material, bool p_uniform, bool p_texture) {
+ material->uniform_dirty = material->uniform_dirty || p_uniform;
+ material->texture_dirty = material->texture_dirty || p_texture;
+
+ if (material->update_element.in_list()) {
+ return;
+ }
+
+ material_update_list.add(&material->update_element);
+}
+
+void MaterialStorage::_update_queued_materials() {
+ while (material_update_list.first()) {
+ Material *material = material_update_list.first()->self();
+ bool uniforms_changed = false;
+
+ if (material->data) {
+ uniforms_changed = material->data->update_parameters(material->params, material->uniform_dirty, material->texture_dirty);
+ }
+ material->texture_dirty = false;
+ material->uniform_dirty = false;
+
+ material_update_list.remove(&material->update_element);
+
+ if (uniforms_changed) {
+ //some implementations such as 3D renderer cache the matreial uniform set, so update is required
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ }
+ }
+}
+
+RID MaterialStorage::material_allocate() {
+ return material_owner.allocate_rid();
+}
+
+void MaterialStorage::material_initialize(RID p_rid) {
+ material_owner.initialize_rid(p_rid);
+ Material *material = material_owner.get_or_null(p_rid);
+ material->self = p_rid;
+}
+
+void MaterialStorage::material_free(RID p_rid) {
+ Material *material = material_owner.get_or_null(p_rid);
+ ERR_FAIL_COND(!material);
+
+ material_set_shader(p_rid, RID()); //clean up shader
+ material->dependency.deleted_notify(p_rid);
+
+ material_owner.free(p_rid);
+}
+
+void MaterialStorage::material_set_shader(RID p_material, RID p_shader) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+
+ if (material->data) {
+ memdelete(material->data);
+ material->data = nullptr;
+ }
+
+ if (material->shader) {
+ material->shader->owners.erase(material);
+ material->shader = nullptr;
+ material->shader_type = SHADER_TYPE_MAX;
+ }
+
+ if (p_shader.is_null()) {
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ material->shader_id = 0;
+ return;
+ }
+
+ Shader *shader = get_shader(p_shader);
+ ERR_FAIL_COND(!shader);
+ material->shader = shader;
+ material->shader_type = shader->type;
+ material->shader_id = p_shader.get_local_index();
+ shader->owners.insert(material);
+
+ if (shader->type == SHADER_TYPE_MAX) {
+ return;
+ }
+
+ ERR_FAIL_COND(shader->data == nullptr);
+
+ material->data = material_data_request_func[shader->type](shader->data);
+ material->data->self = p_material;
+ material->data->set_next_pass(material->next_pass);
+ material->data->set_render_priority(material->priority);
+ //updating happens later
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ _material_queue_update(material, true, true);
+}
+
+void MaterialStorage::material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+
+ if (p_value.get_type() == Variant::NIL) {
+ material->params.erase(p_param);
+ } else {
+ ERR_FAIL_COND(p_value.get_type() == Variant::OBJECT); //object not allowed
+ material->params[p_param] = p_value;
+ }
+
+ if (material->shader && material->shader->data) { //shader is valid
+ bool is_texture = material->shader->data->is_param_texture(p_param);
+ _material_queue_update(material, !is_texture, is_texture);
+ } else {
+ _material_queue_update(material, true, true);
+ }
+}
+
+Variant MaterialStorage::material_get_param(RID p_material, const StringName &p_param) const {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND_V(!material, Variant());
+ if (material->params.has(p_param)) {
+ return material->params[p_param];
+ } else {
+ return Variant();
+ }
+}
+
+void MaterialStorage::material_set_next_pass(RID p_material, RID p_next_material) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+
+ if (material->next_pass == p_next_material) {
+ return;
+ }
+
+ material->next_pass = p_next_material;
+ if (material->data) {
+ material->data->set_next_pass(p_next_material);
+ }
+
+ material->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+}
+
+void MaterialStorage::material_set_render_priority(RID p_material, int priority) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+ material->priority = priority;
+ if (material->data) {
+ material->data->set_render_priority(priority);
+ }
+}
+
+bool MaterialStorage::material_is_animated(RID p_material) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND_V(!material, false);
+ if (material->shader && material->shader->data) {
+ if (material->shader->data->is_animated()) {
+ return true;
+ } else if (material->next_pass.is_valid()) {
+ return material_is_animated(material->next_pass);
+ }
+ }
+ return false; //by default nothing is animated
+}
+
+bool MaterialStorage::material_casts_shadows(RID p_material) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND_V(!material, true);
+ if (material->shader && material->shader->data) {
+ if (material->shader->data->casts_shadows()) {
+ return true;
+ } else if (material->next_pass.is_valid()) {
+ return material_casts_shadows(material->next_pass);
+ }
+ }
+ return true; //by default everything casts shadows
+}
+
+void MaterialStorage::material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+ if (material->shader && material->shader->data) {
+ material->shader->data->get_instance_param_list(r_parameters);
+
+ if (material->next_pass.is_valid()) {
+ material_get_instance_shader_parameters(material->next_pass, r_parameters);
+ }
+ }
+}
+
+void MaterialStorage::material_update_dependency(RID p_material, RendererStorage::DependencyTracker *p_instance) {
+ Material *material = material_owner.get_or_null(p_material);
+ ERR_FAIL_COND(!material);
+ p_instance->update_dependency(&material->dependency);
+ if (material->next_pass.is_valid()) {
+ material_update_dependency(material->next_pass, p_instance);
+ }
+}
+
+void MaterialStorage::material_set_data_request_function(ShaderType p_shader_type, MaterialDataRequestFunction p_function) {
+ ERR_FAIL_INDEX(p_shader_type, SHADER_TYPE_MAX);
+ material_data_request_func[p_shader_type] = p_function;
+}
+
+MaterialDataRequestFunction MaterialStorage::material_get_data_request_function(ShaderType p_shader_type) {
+ ERR_FAIL_INDEX_V(p_shader_type, SHADER_TYPE_MAX, nullptr);
+ return material_data_request_func[p_shader_type];
+}
diff --git a/servers/rendering/renderer_rd/storage_rd/material_storage.h b/servers/rendering/renderer_rd/storage_rd/material_storage.h
new file mode 100644
index 0000000000..c8cc418c3a
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/material_storage.h
@@ -0,0 +1,333 @@
+/*************************************************************************/
+/* material_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MATERIAL_STORAGE_RD_H
+#define MATERIAL_STORAGE_RD_H
+
+#include "core/templates/local_vector.h"
+#include "core/templates/rid_owner.h"
+#include "core/templates/self_list.h"
+#include "servers/rendering/shader_compiler.h"
+#include "servers/rendering/shader_language.h"
+#include "servers/rendering/storage/material_storage.h"
+
+namespace RendererRD {
+
+class MaterialStorage;
+
+/* SHADER Structs */
+
+enum ShaderType {
+ SHADER_TYPE_2D,
+ SHADER_TYPE_3D,
+ SHADER_TYPE_PARTICLES,
+ SHADER_TYPE_SKY,
+ SHADER_TYPE_FOG,
+ SHADER_TYPE_MAX
+};
+
+struct ShaderData {
+ virtual void set_code(const String &p_Code) = 0;
+ virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) = 0;
+ virtual void get_param_list(List<PropertyInfo> *p_param_list) const = 0;
+
+ virtual void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const = 0;
+ virtual bool is_param_texture(const StringName &p_param) const = 0;
+ virtual bool is_animated() const = 0;
+ virtual bool casts_shadows() const = 0;
+ virtual Variant get_default_parameter(const StringName &p_parameter) const = 0;
+ virtual RS::ShaderNativeSourceCode get_native_source_code() const { return RS::ShaderNativeSourceCode(); }
+
+ virtual ~ShaderData() {}
+};
+
+typedef ShaderData *(*ShaderDataRequestFunction)();
+
+struct Material;
+
+struct Shader {
+ ShaderData *data = nullptr;
+ String code;
+ ShaderType type;
+ Map<StringName, Map<int, RID>> default_texture_parameter;
+ Set<Material *> owners;
+};
+
+/* Material structs */
+
+struct MaterialData {
+ void update_uniform_buffer(const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Map<StringName, Variant> &p_parameters, uint8_t *p_buffer, uint32_t p_buffer_size, bool p_use_linear_color);
+ void update_textures(const Map<StringName, Variant> &p_parameters, const Map<StringName, Map<int, RID>> &p_default_textures, const Vector<ShaderCompiler::GeneratedCode::Texture> &p_texture_uniforms, RID *p_textures, bool p_use_linear_color);
+
+ virtual void set_render_priority(int p_priority) = 0;
+ virtual void set_next_pass(RID p_pass) = 0;
+ virtual bool update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) = 0;
+ virtual ~MaterialData();
+
+ //to be used internally by update_parameters, in the most common configuration of material parameters
+ bool update_parameters_uniform_set(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty, const Map<StringName, ShaderLanguage::ShaderNode::Uniform> &p_uniforms, const uint32_t *p_uniform_offsets, const Vector<ShaderCompiler::GeneratedCode::Texture> &p_texture_uniforms, const Map<StringName, Map<int, RID>> &p_default_texture_params, uint32_t p_ubo_size, RID &uniform_set, RID p_shader, uint32_t p_shader_uniform_set, uint32_t p_barrier = RD::BARRIER_MASK_ALL);
+ void free_parameters_uniform_set(RID p_uniform_set);
+
+private:
+ friend class MaterialStorage;
+ RID self;
+ List<RID>::Element *global_buffer_E = nullptr;
+ List<RID>::Element *global_texture_E = nullptr;
+ uint64_t global_textures_pass = 0;
+ Map<StringName, uint64_t> used_global_textures;
+
+ //internally by update_parameters_uniform_set
+ Vector<uint8_t> ubo_data;
+ RID uniform_buffer;
+ Vector<RID> texture_cache;
+};
+
+typedef MaterialData *(*MaterialDataRequestFunction)(ShaderData *);
+
+struct Material {
+ RID self;
+ MaterialData *data = nullptr;
+ Shader *shader = nullptr;
+ //shortcut to shader data and type
+ ShaderType shader_type = SHADER_TYPE_MAX;
+ uint32_t shader_id = 0;
+ bool uniform_dirty = false;
+ bool texture_dirty = false;
+ Map<StringName, Variant> params;
+ int32_t priority = 0;
+ RID next_pass;
+ SelfList<Material> update_element;
+
+ RendererStorage::Dependency dependency;
+
+ Material() :
+ update_element(this) {}
+};
+
+/* Global variable structs */
+struct GlobalVariables {
+ enum {
+ BUFFER_DIRTY_REGION_SIZE = 1024
+ };
+ struct Variable {
+ Set<RID> texture_materials; // materials using this
+
+ RS::GlobalVariableType type;
+ Variant value;
+ Variant override;
+ int32_t buffer_index; //for vectors
+ int32_t buffer_elements; //for vectors
+ };
+
+ HashMap<StringName, Variable> variables;
+
+ struct Value {
+ float x;
+ float y;
+ float z;
+ float w;
+ };
+
+ struct ValueInt {
+ int32_t x;
+ int32_t y;
+ int32_t z;
+ int32_t w;
+ };
+
+ struct ValueUInt {
+ uint32_t x;
+ uint32_t y;
+ uint32_t z;
+ uint32_t w;
+ };
+
+ struct ValueUsage {
+ uint32_t elements = 0;
+ };
+
+ List<RID> materials_using_buffer;
+ List<RID> materials_using_texture;
+
+ RID buffer;
+ Value *buffer_values = nullptr;
+ ValueUsage *buffer_usage = nullptr;
+ bool *buffer_dirty_regions = nullptr;
+ uint32_t buffer_dirty_region_count = 0;
+
+ uint32_t buffer_size;
+
+ bool must_update_texture_materials = false;
+ bool must_update_buffer_materials = false;
+
+ HashMap<RID, int32_t> instance_buffer_pos;
+};
+
+class MaterialStorage : public RendererMaterialStorage {
+private:
+ friend struct MaterialData;
+ static MaterialStorage *singleton;
+
+ /* Samplers */
+
+ RID default_rd_samplers[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
+ RID custom_rd_samplers[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
+
+ /* GLOBAL VARIABLE API */
+
+ GlobalVariables global_variables;
+
+ int32_t _global_variable_allocate(uint32_t p_elements);
+ void _global_variable_store_in_buffer(int32_t p_index, RS::GlobalVariableType p_type, const Variant &p_value);
+ void _global_variable_mark_buffer_dirty(int32_t p_index, int32_t p_elements);
+
+ /* SHADER API */
+
+ ShaderDataRequestFunction shader_data_request_func[SHADER_TYPE_MAX];
+ mutable RID_Owner<Shader, true> shader_owner;
+
+ /* MATERIAL API */
+ MaterialDataRequestFunction material_data_request_func[SHADER_TYPE_MAX];
+ mutable RID_Owner<Material, true> material_owner;
+
+ SelfList<Material>::List material_update_list;
+
+ static void _material_uniform_set_erased(void *p_material);
+
+public:
+ static MaterialStorage *get_singleton();
+
+ MaterialStorage();
+ virtual ~MaterialStorage();
+
+ /* Samplers */
+
+ _FORCE_INLINE_ RID sampler_rd_get_default(RS::CanvasItemTextureFilter p_filter, RS::CanvasItemTextureRepeat p_repeat) {
+ return default_rd_samplers[p_filter][p_repeat];
+ }
+ _FORCE_INLINE_ RID sampler_rd_get_custom(RS::CanvasItemTextureFilter p_filter, RS::CanvasItemTextureRepeat p_repeat) {
+ return custom_rd_samplers[p_filter][p_repeat];
+ }
+
+ void sampler_rd_configure_custom(float mipmap_bias);
+
+ // void sampler_rd_set_default(float p_mipmap_bias);
+
+ /* GLOBAL VARIABLE API */
+
+ void _update_global_variables();
+
+ virtual void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) override;
+ virtual void global_variable_remove(const StringName &p_name) override;
+ virtual Vector<StringName> global_variable_get_list() const override;
+
+ virtual void global_variable_set(const StringName &p_name, const Variant &p_value) override;
+ virtual void global_variable_set_override(const StringName &p_name, const Variant &p_value) override;
+ virtual Variant global_variable_get(const StringName &p_name) const override;
+ virtual RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const override;
+ RS::GlobalVariableType global_variable_get_type_internal(const StringName &p_name) const;
+
+ virtual void global_variables_load_settings(bool p_load_textures = true) override;
+ virtual void global_variables_clear() override;
+
+ virtual int32_t global_variables_instance_allocate(RID p_instance) override;
+ virtual void global_variables_instance_free(RID p_instance) override;
+ virtual void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) override;
+
+ RID global_variables_get_storage_buffer() const;
+
+ /* SHADER API */
+
+ Shader *get_shader(RID p_rid) { return shader_owner.get_or_null(p_rid); };
+ bool owns_shader(RID p_rid) { return shader_owner.owns(p_rid); };
+
+ virtual RID shader_allocate() override;
+ virtual void shader_initialize(RID p_shader) override;
+ virtual void shader_free(RID p_rid) override;
+
+ virtual void shader_set_code(RID p_shader, const String &p_code) override;
+ virtual String shader_get_code(RID p_shader) const override;
+ virtual void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const override;
+
+ virtual void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) override;
+ virtual RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const override;
+ virtual Variant shader_get_param_default(RID p_shader, const StringName &p_param) const override;
+ void shader_set_data_request_function(ShaderType p_shader_type, ShaderDataRequestFunction p_function);
+
+ virtual RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const override;
+
+ /* MATERIAL API */
+
+ Material *get_material(RID p_rid) { return material_owner.get_or_null(p_rid); };
+ bool owns_material(RID p_rid) { return material_owner.owns(p_rid); };
+
+ void _material_queue_update(Material *material, bool p_uniform, bool p_texture);
+ void _update_queued_materials();
+
+ virtual RID material_allocate() override;
+ virtual void material_initialize(RID p_material) override;
+ virtual void material_free(RID p_rid) override;
+
+ virtual void material_set_shader(RID p_material, RID p_shader) override;
+
+ virtual void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) override;
+ virtual Variant material_get_param(RID p_material, const StringName &p_param) const override;
+
+ virtual void material_set_next_pass(RID p_material, RID p_next_material) override;
+ virtual void material_set_render_priority(RID p_material, int priority) override;
+
+ virtual bool material_is_animated(RID p_material) override;
+ virtual bool material_casts_shadows(RID p_material) override;
+
+ virtual void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) override;
+
+ virtual void material_update_dependency(RID p_material, RendererStorage::DependencyTracker *p_instance) override;
+
+ void material_set_data_request_function(ShaderType p_shader_type, MaterialDataRequestFunction p_function);
+ MaterialDataRequestFunction material_get_data_request_function(ShaderType p_shader_type);
+
+ _FORCE_INLINE_ uint32_t material_get_shader_id(RID p_material) {
+ Material *material = material_owner.get_or_null(p_material);
+ return material->shader_id;
+ }
+
+ _FORCE_INLINE_ MaterialData *material_get_data(RID p_material, ShaderType p_shader_type) {
+ Material *material = material_owner.get_or_null(p_material);
+ if (!material || material->shader_type != p_shader_type) {
+ return nullptr;
+ } else {
+ return material->data;
+ }
+ }
+};
+
+} // namespace RendererRD
+
+#endif // !MATERIAL_STORAGE_RD_H
diff --git a/servers/rendering/renderer_rd/storage_rd/mesh_storage.cpp b/servers/rendering/renderer_rd/storage_rd/mesh_storage.cpp
new file mode 100644
index 0000000000..9b7b0d2c25
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/mesh_storage.cpp
@@ -0,0 +1,1921 @@
+/*************************************************************************/
+/* mesh_storage.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "mesh_storage.h"
+
+using namespace RendererRD;
+
+MeshStorage *MeshStorage::singleton = nullptr;
+
+MeshStorage *MeshStorage::get_singleton() {
+ return singleton;
+}
+
+MeshStorage::MeshStorage() {
+ singleton = this;
+
+ default_rd_storage_buffer = RD::get_singleton()->storage_buffer_create(sizeof(uint32_t) * 4);
+
+ //default rd buffers
+ {
+ Vector<uint8_t> buffer;
+ {
+ buffer.resize(sizeof(float) * 3);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 0.0;
+ fptr[1] = 0.0;
+ fptr[2] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_VERTEX] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //normal
+ buffer.resize(sizeof(float) * 3);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 1.0;
+ fptr[1] = 0.0;
+ fptr[2] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_NORMAL] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //tangent
+ buffer.resize(sizeof(float) * 4);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 1.0;
+ fptr[1] = 0.0;
+ fptr[2] = 0.0;
+ fptr[3] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TANGENT] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //color
+ buffer.resize(sizeof(float) * 4);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 1.0;
+ fptr[1] = 1.0;
+ fptr[2] = 1.0;
+ fptr[3] = 1.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_COLOR] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //tex uv 1
+ buffer.resize(sizeof(float) * 2);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 0.0;
+ fptr[1] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TEX_UV] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+ { //tex uv 2
+ buffer.resize(sizeof(float) * 2);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 0.0;
+ fptr[1] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_TEX_UV2] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ for (int i = 0; i < RS::ARRAY_CUSTOM_COUNT; i++) {
+ buffer.resize(sizeof(float) * 4);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 0.0;
+ fptr[1] = 0.0;
+ fptr[2] = 0.0;
+ fptr[3] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_CUSTOM0 + i] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //bones
+ buffer.resize(sizeof(uint32_t) * 4);
+ {
+ uint8_t *w = buffer.ptrw();
+ uint32_t *fptr = reinterpret_cast<uint32_t *>(w);
+ fptr[0] = 0;
+ fptr[1] = 0;
+ fptr[2] = 0;
+ fptr[3] = 0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_BONES] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+
+ { //weights
+ buffer.resize(sizeof(float) * 4);
+ {
+ uint8_t *w = buffer.ptrw();
+ float *fptr = reinterpret_cast<float *>(w);
+ fptr[0] = 0.0;
+ fptr[1] = 0.0;
+ fptr[2] = 0.0;
+ fptr[3] = 0.0;
+ }
+ mesh_default_rd_buffers[DEFAULT_RD_BUFFER_WEIGHTS] = RD::get_singleton()->vertex_buffer_create(buffer.size(), buffer);
+ }
+ }
+
+ {
+ Vector<String> skeleton_modes;
+ skeleton_modes.push_back("\n#define MODE_2D\n");
+ skeleton_modes.push_back("");
+
+ skeleton_shader.shader.initialize(skeleton_modes);
+ skeleton_shader.version = skeleton_shader.shader.version_create();
+ for (int i = 0; i < SkeletonShader::SHADER_MODE_MAX; i++) {
+ skeleton_shader.version_shader[i] = skeleton_shader.shader.version_get_shader(skeleton_shader.version, i);
+ skeleton_shader.pipeline[i] = RD::get_singleton()->compute_pipeline_create(skeleton_shader.version_shader[i]);
+ }
+
+ {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.binding = 0;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.append_id(default_rd_storage_buffer);
+ uniforms.push_back(u);
+ }
+ skeleton_shader.default_skeleton_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SKELETON);
+ }
+ }
+}
+
+MeshStorage::~MeshStorage() {
+ //def buffers
+ for (int i = 0; i < DEFAULT_RD_BUFFER_MAX; i++) {
+ RD::get_singleton()->free(mesh_default_rd_buffers[i]);
+ }
+
+ skeleton_shader.shader.version_free(skeleton_shader.version);
+
+ RD::get_singleton()->free(default_rd_storage_buffer);
+
+ singleton = nullptr;
+}
+
+/* MESH API */
+
+RID MeshStorage::mesh_allocate() {
+ return mesh_owner.allocate_rid();
+}
+
+void MeshStorage::mesh_initialize(RID p_rid) {
+ mesh_owner.initialize_rid(p_rid, Mesh());
+}
+
+void MeshStorage::mesh_free(RID p_rid) {
+ mesh_clear(p_rid);
+ mesh_set_shadow_mesh(p_rid, RID());
+ Mesh *mesh = mesh_owner.get_or_null(p_rid);
+ mesh->dependency.deleted_notify(p_rid);
+ if (mesh->instances.size()) {
+ ERR_PRINT("deleting mesh with active instances");
+ }
+ if (mesh->shadow_owners.size()) {
+ for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
+ Mesh *shadow_owner = E->get();
+ shadow_owner->shadow_mesh = RID();
+ shadow_owner->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+ }
+ }
+ mesh_owner.free(p_rid);
+}
+
+void MeshStorage::mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) {
+ ERR_FAIL_COND(p_blend_shape_count < 0);
+
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+
+ ERR_FAIL_COND(mesh->surface_count > 0); //surfaces already exist
+
+ mesh->blend_shape_count = p_blend_shape_count;
+}
+
+/// Returns stride
+void MeshStorage::mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+
+ ERR_FAIL_COND(mesh->surface_count == RS::MAX_MESH_SURFACES);
+
+#ifdef DEBUG_ENABLED
+ //do a validation, to catch errors first
+ {
+ uint32_t stride = 0;
+ uint32_t attrib_stride = 0;
+ uint32_t skin_stride = 0;
+
+ for (int i = 0; i < RS::ARRAY_WEIGHTS; i++) {
+ if ((p_surface.format & (1 << i))) {
+ switch (i) {
+ case RS::ARRAY_VERTEX: {
+ if (p_surface.format & RS::ARRAY_FLAG_USE_2D_VERTICES) {
+ stride += sizeof(float) * 2;
+ } else {
+ stride += sizeof(float) * 3;
+ }
+
+ } break;
+ case RS::ARRAY_NORMAL: {
+ stride += sizeof(int32_t);
+
+ } break;
+ case RS::ARRAY_TANGENT: {
+ stride += sizeof(int32_t);
+
+ } break;
+ case RS::ARRAY_COLOR: {
+ attrib_stride += sizeof(uint32_t);
+ } break;
+ case RS::ARRAY_TEX_UV: {
+ attrib_stride += sizeof(float) * 2;
+
+ } break;
+ case RS::ARRAY_TEX_UV2: {
+ attrib_stride += sizeof(float) * 2;
+
+ } break;
+ case RS::ARRAY_CUSTOM0:
+ case RS::ARRAY_CUSTOM1:
+ case RS::ARRAY_CUSTOM2:
+ case RS::ARRAY_CUSTOM3: {
+ int idx = i - RS::ARRAY_CUSTOM0;
+ const uint32_t fmt_shift[RS::ARRAY_CUSTOM_COUNT] = { RS::ARRAY_FORMAT_CUSTOM0_SHIFT, RS::ARRAY_FORMAT_CUSTOM1_SHIFT, RS::ARRAY_FORMAT_CUSTOM2_SHIFT, RS::ARRAY_FORMAT_CUSTOM3_SHIFT };
+ uint32_t fmt = (p_surface.format >> fmt_shift[idx]) & RS::ARRAY_FORMAT_CUSTOM_MASK;
+ const uint32_t fmtsize[RS::ARRAY_CUSTOM_MAX] = { 4, 4, 4, 8, 4, 8, 12, 16 };
+ attrib_stride += fmtsize[fmt];
+
+ } break;
+ case RS::ARRAY_WEIGHTS:
+ case RS::ARRAY_BONES: {
+ //uses a separate array
+ bool use_8 = p_surface.format & RS::ARRAY_FLAG_USE_8_BONE_WEIGHTS;
+ skin_stride += sizeof(int16_t) * (use_8 ? 16 : 8);
+ } break;
+ }
+ }
+ }
+
+ int expected_size = stride * p_surface.vertex_count;
+ ERR_FAIL_COND_MSG(expected_size != p_surface.vertex_data.size(), "Size of vertex data provided (" + itos(p_surface.vertex_data.size()) + ") does not match expected (" + itos(expected_size) + ")");
+
+ int bs_expected_size = expected_size * mesh->blend_shape_count;
+
+ ERR_FAIL_COND_MSG(bs_expected_size != p_surface.blend_shape_data.size(), "Size of blend shape data provided (" + itos(p_surface.blend_shape_data.size()) + ") does not match expected (" + itos(bs_expected_size) + ")");
+
+ int expected_attrib_size = attrib_stride * p_surface.vertex_count;
+ ERR_FAIL_COND_MSG(expected_attrib_size != p_surface.attribute_data.size(), "Size of attribute data provided (" + itos(p_surface.attribute_data.size()) + ") does not match expected (" + itos(expected_attrib_size) + ")");
+
+ if ((p_surface.format & RS::ARRAY_FORMAT_WEIGHTS) && (p_surface.format & RS::ARRAY_FORMAT_BONES)) {
+ expected_size = skin_stride * p_surface.vertex_count;
+ ERR_FAIL_COND_MSG(expected_size != p_surface.skin_data.size(), "Size of skin data provided (" + itos(p_surface.skin_data.size()) + ") does not match expected (" + itos(expected_size) + ")");
+ }
+ }
+
+#endif
+
+ Mesh::Surface *s = memnew(Mesh::Surface);
+
+ s->format = p_surface.format;
+ s->primitive = p_surface.primitive;
+
+ bool use_as_storage = (p_surface.skin_data.size() || mesh->blend_shape_count > 0);
+
+ s->vertex_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.vertex_data.size(), p_surface.vertex_data, use_as_storage);
+ s->vertex_buffer_size = p_surface.vertex_data.size();
+
+ if (p_surface.attribute_data.size()) {
+ s->attribute_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.attribute_data.size(), p_surface.attribute_data);
+ }
+ if (p_surface.skin_data.size()) {
+ s->skin_buffer = RD::get_singleton()->vertex_buffer_create(p_surface.skin_data.size(), p_surface.skin_data, use_as_storage);
+ s->skin_buffer_size = p_surface.skin_data.size();
+ }
+
+ s->vertex_count = p_surface.vertex_count;
+
+ if (p_surface.format & RS::ARRAY_FORMAT_BONES) {
+ mesh->has_bone_weights = true;
+ }
+
+ if (p_surface.index_count) {
+ bool is_index_16 = p_surface.vertex_count <= 65536;
+
+ s->index_buffer = RD::get_singleton()->index_buffer_create(p_surface.index_count, is_index_16 ? RD::INDEX_BUFFER_FORMAT_UINT16 : RD::INDEX_BUFFER_FORMAT_UINT32, p_surface.index_data, false);
+ s->index_count = p_surface.index_count;
+ s->index_array = RD::get_singleton()->index_array_create(s->index_buffer, 0, s->index_count);
+ if (p_surface.lods.size()) {
+ s->lods = memnew_arr(Mesh::Surface::LOD, p_surface.lods.size());
+ s->lod_count = p_surface.lods.size();
+
+ for (int i = 0; i < p_surface.lods.size(); i++) {
+ uint32_t indices = p_surface.lods[i].index_data.size() / (is_index_16 ? 2 : 4);
+ s->lods[i].index_buffer = RD::get_singleton()->index_buffer_create(indices, is_index_16 ? RD::INDEX_BUFFER_FORMAT_UINT16 : RD::INDEX_BUFFER_FORMAT_UINT32, p_surface.lods[i].index_data);
+ s->lods[i].index_array = RD::get_singleton()->index_array_create(s->lods[i].index_buffer, 0, indices);
+ s->lods[i].edge_length = p_surface.lods[i].edge_length;
+ s->lods[i].index_count = indices;
+ }
+ }
+ }
+
+ s->aabb = p_surface.aabb;
+ s->bone_aabbs = p_surface.bone_aabbs; //only really useful for returning them.
+
+ if (mesh->blend_shape_count > 0) {
+ s->blend_shape_buffer = RD::get_singleton()->storage_buffer_create(p_surface.blend_shape_data.size(), p_surface.blend_shape_data);
+ }
+
+ if (use_as_storage) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.binding = 0;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.append_id(s->vertex_buffer);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.binding = 1;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ if (s->skin_buffer.is_valid()) {
+ u.append_id(s->skin_buffer);
+ } else {
+ u.append_id(default_rd_storage_buffer);
+ }
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.binding = 2;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ if (s->blend_shape_buffer.is_valid()) {
+ u.append_id(s->blend_shape_buffer);
+ } else {
+ u.append_id(default_rd_storage_buffer);
+ }
+ uniforms.push_back(u);
+ }
+
+ s->uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SURFACE);
+ }
+
+ if (mesh->surface_count == 0) {
+ mesh->bone_aabbs = p_surface.bone_aabbs;
+ mesh->aabb = p_surface.aabb;
+ } else {
+ if (mesh->bone_aabbs.size() < p_surface.bone_aabbs.size()) {
+ // ArrayMesh::_surface_set_data only allocates bone_aabbs up to max_bone
+ // Each surface may affect different numbers of bones.
+ mesh->bone_aabbs.resize(p_surface.bone_aabbs.size());
+ }
+ for (int i = 0; i < p_surface.bone_aabbs.size(); i++) {
+ mesh->bone_aabbs.write[i].merge_with(p_surface.bone_aabbs[i]);
+ }
+ mesh->aabb.merge_with(p_surface.aabb);
+ }
+
+ s->material = p_surface.material;
+
+ mesh->surfaces = (Mesh::Surface **)memrealloc(mesh->surfaces, sizeof(Mesh::Surface *) * (mesh->surface_count + 1));
+ mesh->surfaces[mesh->surface_count] = s;
+ mesh->surface_count++;
+
+ for (MeshInstance *mi : mesh->instances) {
+ _mesh_instance_add_surface(mi, mesh, mesh->surface_count - 1);
+ }
+
+ mesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+
+ for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
+ Mesh *shadow_owner = E->get();
+ shadow_owner->shadow_mesh = RID();
+ shadow_owner->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+ }
+
+ mesh->material_cache.clear();
+}
+
+int MeshStorage::mesh_get_blend_shape_count(RID p_mesh) const {
+ const Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, -1);
+ return mesh->blend_shape_count;
+}
+
+void MeshStorage::mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ ERR_FAIL_INDEX((int)p_mode, 2);
+
+ mesh->blend_shape_mode = p_mode;
+}
+
+RS::BlendShapeMode MeshStorage::mesh_get_blend_shape_mode(RID p_mesh) const {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, RS::BLEND_SHAPE_MODE_NORMALIZED);
+ return mesh->blend_shape_mode;
+}
+
+void MeshStorage::mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
+ ERR_FAIL_COND(p_data.size() == 0);
+ uint64_t data_size = p_data.size();
+ const uint8_t *r = p_data.ptr();
+
+ RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->vertex_buffer, p_offset, data_size, r);
+}
+
+void MeshStorage::mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
+ ERR_FAIL_COND(p_data.size() == 0);
+ ERR_FAIL_COND(mesh->surfaces[p_surface]->attribute_buffer.is_null());
+ uint64_t data_size = p_data.size();
+ const uint8_t *r = p_data.ptr();
+
+ RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->attribute_buffer, p_offset, data_size, r);
+}
+
+void MeshStorage::mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
+ ERR_FAIL_COND(p_data.size() == 0);
+ ERR_FAIL_COND(mesh->surfaces[p_surface]->skin_buffer.is_null());
+ uint64_t data_size = p_data.size();
+ const uint8_t *r = p_data.ptr();
+
+ RD::get_singleton()->buffer_update(mesh->surfaces[p_surface]->skin_buffer, p_offset, data_size, r);
+}
+
+void MeshStorage::mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ ERR_FAIL_UNSIGNED_INDEX((uint32_t)p_surface, mesh->surface_count);
+ mesh->surfaces[p_surface]->material = p_material;
+
+ mesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MATERIAL);
+ mesh->material_cache.clear();
+}
+
+RID MeshStorage::mesh_surface_get_material(RID p_mesh, int p_surface) const {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, RID());
+ ERR_FAIL_UNSIGNED_INDEX_V((uint32_t)p_surface, mesh->surface_count, RID());
+
+ return mesh->surfaces[p_surface]->material;
+}
+
+RS::SurfaceData MeshStorage::mesh_get_surface(RID p_mesh, int p_surface) const {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, RS::SurfaceData());
+ ERR_FAIL_UNSIGNED_INDEX_V((uint32_t)p_surface, mesh->surface_count, RS::SurfaceData());
+
+ Mesh::Surface &s = *mesh->surfaces[p_surface];
+
+ RS::SurfaceData sd;
+ sd.format = s.format;
+ sd.vertex_data = RD::get_singleton()->buffer_get_data(s.vertex_buffer);
+ if (s.attribute_buffer.is_valid()) {
+ sd.attribute_data = RD::get_singleton()->buffer_get_data(s.attribute_buffer);
+ }
+ if (s.skin_buffer.is_valid()) {
+ sd.skin_data = RD::get_singleton()->buffer_get_data(s.skin_buffer);
+ }
+ sd.vertex_count = s.vertex_count;
+ sd.index_count = s.index_count;
+ sd.primitive = s.primitive;
+
+ if (sd.index_count) {
+ sd.index_data = RD::get_singleton()->buffer_get_data(s.index_buffer);
+ }
+ sd.aabb = s.aabb;
+ for (uint32_t i = 0; i < s.lod_count; i++) {
+ RS::SurfaceData::LOD lod;
+ lod.edge_length = s.lods[i].edge_length;
+ lod.index_data = RD::get_singleton()->buffer_get_data(s.lods[i].index_buffer);
+ sd.lods.push_back(lod);
+ }
+
+ sd.bone_aabbs = s.bone_aabbs;
+
+ if (s.blend_shape_buffer.is_valid()) {
+ sd.blend_shape_data = RD::get_singleton()->buffer_get_data(s.blend_shape_buffer);
+ }
+
+ return sd;
+}
+
+int MeshStorage::mesh_get_surface_count(RID p_mesh) const {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, 0);
+ return mesh->surface_count;
+}
+
+void MeshStorage::mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ mesh->custom_aabb = p_aabb;
+}
+
+AABB MeshStorage::mesh_get_custom_aabb(RID p_mesh) const {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, AABB());
+ return mesh->custom_aabb;
+}
+
+AABB MeshStorage::mesh_get_aabb(RID p_mesh, RID p_skeleton) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, AABB());
+
+ if (mesh->custom_aabb != AABB()) {
+ return mesh->custom_aabb;
+ }
+
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ if (!skeleton || skeleton->size == 0) {
+ return mesh->aabb;
+ }
+
+ AABB aabb;
+
+ for (uint32_t i = 0; i < mesh->surface_count; i++) {
+ AABB laabb;
+ if ((mesh->surfaces[i]->format & RS::ARRAY_FORMAT_BONES) && mesh->surfaces[i]->bone_aabbs.size()) {
+ int bs = mesh->surfaces[i]->bone_aabbs.size();
+ const AABB *skbones = mesh->surfaces[i]->bone_aabbs.ptr();
+
+ int sbs = skeleton->size;
+ ERR_CONTINUE(bs > sbs);
+ const float *baseptr = skeleton->data.ptr();
+
+ bool first = true;
+
+ if (skeleton->use_2d) {
+ for (int j = 0; j < bs; j++) {
+ if (skbones[0].size == Vector3()) {
+ continue; //bone is unused
+ }
+
+ const float *dataptr = baseptr + j * 8;
+
+ Transform3D mtx;
+
+ mtx.basis.rows[0].x = dataptr[0];
+ mtx.basis.rows[1].x = dataptr[1];
+ mtx.origin.x = dataptr[3];
+
+ mtx.basis.rows[0].y = dataptr[4];
+ mtx.basis.rows[1].y = dataptr[5];
+ mtx.origin.y = dataptr[7];
+
+ AABB baabb = mtx.xform(skbones[j]);
+
+ if (first) {
+ laabb = baabb;
+ first = false;
+ } else {
+ laabb.merge_with(baabb);
+ }
+ }
+ } else {
+ for (int j = 0; j < bs; j++) {
+ if (skbones[0].size == Vector3()) {
+ continue; //bone is unused
+ }
+
+ const float *dataptr = baseptr + j * 12;
+
+ Transform3D mtx;
+
+ mtx.basis.rows[0][0] = dataptr[0];
+ mtx.basis.rows[0][1] = dataptr[1];
+ mtx.basis.rows[0][2] = dataptr[2];
+ mtx.origin.x = dataptr[3];
+ mtx.basis.rows[1][0] = dataptr[4];
+ mtx.basis.rows[1][1] = dataptr[5];
+ mtx.basis.rows[1][2] = dataptr[6];
+ mtx.origin.y = dataptr[7];
+ mtx.basis.rows[2][0] = dataptr[8];
+ mtx.basis.rows[2][1] = dataptr[9];
+ mtx.basis.rows[2][2] = dataptr[10];
+ mtx.origin.z = dataptr[11];
+
+ AABB baabb = mtx.xform(skbones[j]);
+ if (first) {
+ laabb = baabb;
+ first = false;
+ } else {
+ laabb.merge_with(baabb);
+ }
+ }
+ }
+
+ if (laabb.size == Vector3()) {
+ laabb = mesh->surfaces[i]->aabb;
+ }
+ } else {
+ laabb = mesh->surfaces[i]->aabb;
+ }
+
+ if (i == 0) {
+ aabb = laabb;
+ } else {
+ aabb.merge_with(laabb);
+ }
+ }
+
+ return aabb;
+}
+
+void MeshStorage::mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+
+ Mesh *shadow_mesh = mesh_owner.get_or_null(mesh->shadow_mesh);
+ if (shadow_mesh) {
+ shadow_mesh->shadow_owners.erase(mesh);
+ }
+ mesh->shadow_mesh = p_shadow_mesh;
+
+ shadow_mesh = mesh_owner.get_or_null(mesh->shadow_mesh);
+
+ if (shadow_mesh) {
+ shadow_mesh->shadow_owners.insert(mesh);
+ }
+
+ mesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+}
+
+void MeshStorage::mesh_clear(RID p_mesh) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND(!mesh);
+ for (uint32_t i = 0; i < mesh->surface_count; i++) {
+ Mesh::Surface &s = *mesh->surfaces[i];
+ RD::get_singleton()->free(s.vertex_buffer); //clears arrays as dependency automatically, including all versions
+ if (s.attribute_buffer.is_valid()) {
+ RD::get_singleton()->free(s.attribute_buffer);
+ }
+ if (s.skin_buffer.is_valid()) {
+ RD::get_singleton()->free(s.skin_buffer);
+ }
+ if (s.versions) {
+ memfree(s.versions); //reallocs, so free with memfree.
+ }
+
+ if (s.index_buffer.is_valid()) {
+ RD::get_singleton()->free(s.index_buffer);
+ }
+
+ if (s.lod_count) {
+ for (uint32_t j = 0; j < s.lod_count; j++) {
+ RD::get_singleton()->free(s.lods[j].index_buffer);
+ }
+ memdelete_arr(s.lods);
+ }
+
+ if (s.blend_shape_buffer.is_valid()) {
+ RD::get_singleton()->free(s.blend_shape_buffer);
+ }
+
+ memdelete(mesh->surfaces[i]);
+ }
+ if (mesh->surfaces) {
+ memfree(mesh->surfaces);
+ }
+
+ mesh->surfaces = nullptr;
+ mesh->surface_count = 0;
+ mesh->material_cache.clear();
+ //clear instance data
+ for (MeshInstance *mi : mesh->instances) {
+ _mesh_instance_clear(mi);
+ }
+ mesh->has_bone_weights = false;
+ mesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+
+ for (Set<Mesh *>::Element *E = mesh->shadow_owners.front(); E; E = E->next()) {
+ Mesh *shadow_owner = E->get();
+ shadow_owner->shadow_mesh = RID();
+ shadow_owner->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+ }
+}
+
+bool MeshStorage::mesh_needs_instance(RID p_mesh, bool p_has_skeleton) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, false);
+
+ return mesh->blend_shape_count > 0 || (mesh->has_bone_weights && p_has_skeleton);
+}
+
+/* MESH INSTANCE */
+
+RID MeshStorage::mesh_instance_create(RID p_base) {
+ Mesh *mesh = mesh_owner.get_or_null(p_base);
+ ERR_FAIL_COND_V(!mesh, RID());
+
+ RID rid = mesh_instance_owner.make_rid();
+ MeshInstance *mi = mesh_instance_owner.get_or_null(rid);
+
+ mi->mesh = mesh;
+
+ for (uint32_t i = 0; i < mesh->surface_count; i++) {
+ _mesh_instance_add_surface(mi, mesh, i);
+ }
+
+ mi->I = mesh->instances.push_back(mi);
+
+ mi->dirty = true;
+
+ return rid;
+}
+
+void MeshStorage::mesh_instance_free(RID p_rid) {
+ MeshInstance *mi = mesh_instance_owner.get_or_null(p_rid);
+ _mesh_instance_clear(mi);
+ mi->mesh->instances.erase(mi->I);
+ mi->I = nullptr;
+
+ mesh_instance_owner.free(p_rid);
+}
+
+void MeshStorage::mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) {
+ MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
+ if (mi->skeleton == p_skeleton) {
+ return;
+ }
+ mi->skeleton = p_skeleton;
+ mi->skeleton_version = 0;
+ mi->dirty = true;
+}
+
+void MeshStorage::mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) {
+ MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
+ ERR_FAIL_COND(!mi);
+ ERR_FAIL_INDEX(p_shape, (int)mi->blend_weights.size());
+ mi->blend_weights[p_shape] = p_weight;
+ mi->weights_dirty = true;
+ //will be eventually updated
+}
+
+void MeshStorage::_mesh_instance_clear(MeshInstance *mi) {
+ for (uint32_t i = 0; i < mi->surfaces.size(); i++) {
+ if (mi->surfaces[i].versions) {
+ for (uint32_t j = 0; j < mi->surfaces[i].version_count; j++) {
+ RD::get_singleton()->free(mi->surfaces[i].versions[j].vertex_array);
+ }
+ memfree(mi->surfaces[i].versions);
+ }
+ if (mi->surfaces[i].vertex_buffer.is_valid()) {
+ RD::get_singleton()->free(mi->surfaces[i].vertex_buffer);
+ }
+ }
+ mi->surfaces.clear();
+
+ if (mi->blend_weights_buffer.is_valid()) {
+ RD::get_singleton()->free(mi->blend_weights_buffer);
+ }
+ mi->blend_weights.clear();
+ mi->weights_dirty = false;
+ mi->skeleton_version = 0;
+}
+
+void MeshStorage::_mesh_instance_add_surface(MeshInstance *mi, Mesh *mesh, uint32_t p_surface) {
+ if (mesh->blend_shape_count > 0 && mi->blend_weights_buffer.is_null()) {
+ mi->blend_weights.resize(mesh->blend_shape_count);
+ for (uint32_t i = 0; i < mi->blend_weights.size(); i++) {
+ mi->blend_weights[i] = 0;
+ }
+ mi->blend_weights_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * mi->blend_weights.size(), mi->blend_weights.to_byte_array());
+ mi->weights_dirty = true;
+ }
+
+ MeshInstance::Surface s;
+ if (mesh->blend_shape_count > 0 || (mesh->surfaces[p_surface]->format & RS::ARRAY_FORMAT_BONES)) {
+ //surface warrants transform
+ s.vertex_buffer = RD::get_singleton()->vertex_buffer_create(mesh->surfaces[p_surface]->vertex_buffer_size, Vector<uint8_t>(), true);
+
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.binding = 1;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.append_id(s.vertex_buffer);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.binding = 2;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ if (mi->blend_weights_buffer.is_valid()) {
+ u.append_id(mi->blend_weights_buffer);
+ } else {
+ u.append_id(default_rd_storage_buffer);
+ }
+ uniforms.push_back(u);
+ }
+ s.uniform_set = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_INSTANCE);
+ }
+
+ mi->surfaces.push_back(s);
+ mi->dirty = true;
+}
+
+void MeshStorage::mesh_instance_check_for_update(RID p_mesh_instance) {
+ MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
+
+ bool needs_update = mi->dirty;
+
+ if (mi->weights_dirty && !mi->weight_update_list.in_list()) {
+ dirty_mesh_instance_weights.add(&mi->weight_update_list);
+ needs_update = true;
+ }
+
+ if (mi->array_update_list.in_list()) {
+ return;
+ }
+
+ if (!needs_update && mi->skeleton.is_valid()) {
+ Skeleton *sk = skeleton_owner.get_or_null(mi->skeleton);
+ if (sk && sk->version != mi->skeleton_version) {
+ needs_update = true;
+ }
+ }
+
+ if (needs_update) {
+ dirty_mesh_instance_arrays.add(&mi->array_update_list);
+ }
+}
+
+void MeshStorage::update_mesh_instances() {
+ while (dirty_mesh_instance_weights.first()) {
+ MeshInstance *mi = dirty_mesh_instance_weights.first()->self();
+
+ if (mi->blend_weights_buffer.is_valid()) {
+ RD::get_singleton()->buffer_update(mi->blend_weights_buffer, 0, mi->blend_weights.size() * sizeof(float), mi->blend_weights.ptr());
+ }
+ dirty_mesh_instance_weights.remove(&mi->weight_update_list);
+ mi->weights_dirty = false;
+ }
+ if (dirty_mesh_instance_arrays.first() == nullptr) {
+ return; //nothing to do
+ }
+
+ //process skeletons and blend shapes
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+
+ while (dirty_mesh_instance_arrays.first()) {
+ MeshInstance *mi = dirty_mesh_instance_arrays.first()->self();
+
+ Skeleton *sk = skeleton_owner.get_or_null(mi->skeleton);
+
+ for (uint32_t i = 0; i < mi->surfaces.size(); i++) {
+ if (mi->surfaces[i].uniform_set == RID() || mi->mesh->surfaces[i]->uniform_set == RID()) {
+ continue;
+ }
+
+ bool array_is_2d = mi->mesh->surfaces[i]->format & RS::ARRAY_FLAG_USE_2D_VERTICES;
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, skeleton_shader.pipeline[array_is_2d ? SkeletonShader::SHADER_MODE_2D : SkeletonShader::SHADER_MODE_3D]);
+
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, mi->surfaces[i].uniform_set, SkeletonShader::UNIFORM_SET_INSTANCE);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, mi->mesh->surfaces[i]->uniform_set, SkeletonShader::UNIFORM_SET_SURFACE);
+ if (sk && sk->uniform_set_mi.is_valid()) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, sk->uniform_set_mi, SkeletonShader::UNIFORM_SET_SKELETON);
+ } else {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, skeleton_shader.default_skeleton_uniform_set, SkeletonShader::UNIFORM_SET_SKELETON);
+ }
+
+ SkeletonShader::PushConstant push_constant;
+
+ push_constant.has_normal = mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_NORMAL;
+ push_constant.has_tangent = mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_TANGENT;
+ push_constant.has_skeleton = sk != nullptr && sk->use_2d == array_is_2d && (mi->mesh->surfaces[i]->format & RS::ARRAY_FORMAT_BONES);
+ push_constant.has_blend_shape = mi->mesh->blend_shape_count > 0;
+
+ push_constant.vertex_count = mi->mesh->surfaces[i]->vertex_count;
+ push_constant.vertex_stride = (mi->mesh->surfaces[i]->vertex_buffer_size / mi->mesh->surfaces[i]->vertex_count) / 4;
+ push_constant.skin_stride = (mi->mesh->surfaces[i]->skin_buffer_size / mi->mesh->surfaces[i]->vertex_count) / 4;
+ push_constant.skin_weight_offset = (mi->mesh->surfaces[i]->format & RS::ARRAY_FLAG_USE_8_BONE_WEIGHTS) ? 4 : 2;
+
+ push_constant.blend_shape_count = mi->mesh->blend_shape_count;
+ push_constant.normalized_blend_shapes = mi->mesh->blend_shape_mode == RS::BLEND_SHAPE_MODE_NORMALIZED;
+ push_constant.pad0 = 0;
+ push_constant.pad1 = 0;
+
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(SkeletonShader::PushConstant));
+
+ //dispatch without barrier, so all is done at the same time
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.vertex_count, 1, 1);
+ }
+
+ mi->dirty = false;
+ if (sk) {
+ mi->skeleton_version = sk->version;
+ }
+ dirty_mesh_instance_arrays.remove(&mi->array_update_list);
+ }
+
+ RD::get_singleton()->compute_list_end();
+}
+
+void MeshStorage::_mesh_surface_generate_version_for_input_mask(Mesh::Surface::Version &v, Mesh::Surface *s, uint32_t p_input_mask, MeshInstance::Surface *mis) {
+ Vector<RD::VertexAttribute> attributes;
+ Vector<RID> buffers;
+
+ uint32_t stride = 0;
+ uint32_t attribute_stride = 0;
+ uint32_t skin_stride = 0;
+
+ for (int i = 0; i < RS::ARRAY_INDEX; i++) {
+ RD::VertexAttribute vd;
+ RID buffer;
+ vd.location = i;
+
+ if (!(s->format & (1 << i))) {
+ // Not supplied by surface, use default value
+ buffer = mesh_default_rd_buffers[i];
+ vd.stride = 0;
+ switch (i) {
+ case RS::ARRAY_VERTEX: {
+ vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
+
+ } break;
+ case RS::ARRAY_NORMAL: {
+ vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
+ } break;
+ case RS::ARRAY_TANGENT: {
+ vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+ } break;
+ case RS::ARRAY_COLOR: {
+ vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+
+ } break;
+ case RS::ARRAY_TEX_UV: {
+ vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+
+ } break;
+ case RS::ARRAY_TEX_UV2: {
+ vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+ } break;
+ case RS::ARRAY_CUSTOM0:
+ case RS::ARRAY_CUSTOM1:
+ case RS::ARRAY_CUSTOM2:
+ case RS::ARRAY_CUSTOM3: {
+ //assumed weights too
+ vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+ } break;
+ case RS::ARRAY_BONES: {
+ //assumed weights too
+ vd.format = RD::DATA_FORMAT_R32G32B32A32_UINT;
+ } break;
+ case RS::ARRAY_WEIGHTS: {
+ //assumed weights too
+ vd.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+ } break;
+ }
+ } else {
+ //Supplied, use it
+
+ vd.stride = 1; //mark that it needs a stride set (default uses 0)
+
+ switch (i) {
+ case RS::ARRAY_VERTEX: {
+ vd.offset = stride;
+
+ if (s->format & RS::ARRAY_FLAG_USE_2D_VERTICES) {
+ vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+ stride += sizeof(float) * 2;
+ } else {
+ vd.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
+ stride += sizeof(float) * 3;
+ }
+
+ if (mis) {
+ buffer = mis->vertex_buffer;
+ } else {
+ buffer = s->vertex_buffer;
+ }
+
+ } break;
+ case RS::ARRAY_NORMAL: {
+ vd.offset = stride;
+
+ vd.format = RD::DATA_FORMAT_A2B10G10R10_UNORM_PACK32;
+
+ stride += sizeof(uint32_t);
+ if (mis) {
+ buffer = mis->vertex_buffer;
+ } else {
+ buffer = s->vertex_buffer;
+ }
+ } break;
+ case RS::ARRAY_TANGENT: {
+ vd.offset = stride;
+
+ vd.format = RD::DATA_FORMAT_A2B10G10R10_UNORM_PACK32;
+ stride += sizeof(uint32_t);
+ if (mis) {
+ buffer = mis->vertex_buffer;
+ } else {
+ buffer = s->vertex_buffer;
+ }
+ } break;
+ case RS::ARRAY_COLOR: {
+ vd.offset = attribute_stride;
+
+ vd.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ attribute_stride += sizeof(int8_t) * 4;
+ buffer = s->attribute_buffer;
+ } break;
+ case RS::ARRAY_TEX_UV: {
+ vd.offset = attribute_stride;
+
+ vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+ attribute_stride += sizeof(float) * 2;
+ buffer = s->attribute_buffer;
+
+ } break;
+ case RS::ARRAY_TEX_UV2: {
+ vd.offset = attribute_stride;
+
+ vd.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+ attribute_stride += sizeof(float) * 2;
+ buffer = s->attribute_buffer;
+ } break;
+ case RS::ARRAY_CUSTOM0:
+ case RS::ARRAY_CUSTOM1:
+ case RS::ARRAY_CUSTOM2:
+ case RS::ARRAY_CUSTOM3: {
+ vd.offset = attribute_stride;
+
+ int idx = i - RS::ARRAY_CUSTOM0;
+ const uint32_t fmt_shift[RS::ARRAY_CUSTOM_COUNT] = { RS::ARRAY_FORMAT_CUSTOM0_SHIFT, RS::ARRAY_FORMAT_CUSTOM1_SHIFT, RS::ARRAY_FORMAT_CUSTOM2_SHIFT, RS::ARRAY_FORMAT_CUSTOM3_SHIFT };
+ uint32_t fmt = (s->format >> fmt_shift[idx]) & RS::ARRAY_FORMAT_CUSTOM_MASK;
+ const uint32_t fmtsize[RS::ARRAY_CUSTOM_MAX] = { 4, 4, 4, 8, 4, 8, 12, 16 };
+ const RD::DataFormat fmtrd[RS::ARRAY_CUSTOM_MAX] = { RD::DATA_FORMAT_R8G8B8A8_UNORM, RD::DATA_FORMAT_R8G8B8A8_SNORM, RD::DATA_FORMAT_R16G16_SFLOAT, RD::DATA_FORMAT_R16G16B16A16_SFLOAT, RD::DATA_FORMAT_R32_SFLOAT, RD::DATA_FORMAT_R32G32_SFLOAT, RD::DATA_FORMAT_R32G32B32_SFLOAT, RD::DATA_FORMAT_R32G32B32A32_SFLOAT };
+ vd.format = fmtrd[fmt];
+ attribute_stride += fmtsize[fmt];
+ buffer = s->attribute_buffer;
+ } break;
+ case RS::ARRAY_BONES: {
+ vd.offset = skin_stride;
+
+ vd.format = RD::DATA_FORMAT_R16G16B16A16_UINT;
+ skin_stride += sizeof(int16_t) * 4;
+ buffer = s->skin_buffer;
+ } break;
+ case RS::ARRAY_WEIGHTS: {
+ vd.offset = skin_stride;
+
+ vd.format = RD::DATA_FORMAT_R16G16B16A16_UNORM;
+ skin_stride += sizeof(int16_t) * 4;
+ buffer = s->skin_buffer;
+ } break;
+ }
+ }
+
+ if (!(p_input_mask & (1 << i))) {
+ continue; // Shader does not need this, skip it (but computing stride was important anyway)
+ }
+
+ attributes.push_back(vd);
+ buffers.push_back(buffer);
+ }
+
+ //update final stride
+ for (int i = 0; i < attributes.size(); i++) {
+ if (attributes[i].stride == 0) {
+ continue; //default location
+ }
+ int loc = attributes[i].location;
+
+ if (loc < RS::ARRAY_COLOR) {
+ attributes.write[i].stride = stride;
+ } else if (loc < RS::ARRAY_BONES) {
+ attributes.write[i].stride = attribute_stride;
+ } else {
+ attributes.write[i].stride = skin_stride;
+ }
+ }
+
+ v.input_mask = p_input_mask;
+ v.vertex_format = RD::get_singleton()->vertex_format_create(attributes);
+ v.vertex_array = RD::get_singleton()->vertex_array_create(s->vertex_count, v.vertex_format, buffers);
+}
+
+////////////////// MULTIMESH
+
+RID MeshStorage::multimesh_allocate() {
+ return multimesh_owner.allocate_rid();
+}
+void MeshStorage::multimesh_initialize(RID p_rid) {
+ multimesh_owner.initialize_rid(p_rid, MultiMesh());
+}
+
+void MeshStorage::multimesh_free(RID p_rid) {
+ _update_dirty_multimeshes();
+ multimesh_allocate_data(p_rid, 0, RS::MULTIMESH_TRANSFORM_2D);
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_rid);
+ multimesh->dependency.deleted_notify(p_rid);
+ multimesh_owner.free(p_rid);
+}
+
+void MeshStorage::multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors, bool p_use_custom_data) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+
+ if (multimesh->instances == p_instances && multimesh->xform_format == p_transform_format && multimesh->uses_colors == p_use_colors && multimesh->uses_custom_data == p_use_custom_data) {
+ return;
+ }
+
+ if (multimesh->buffer.is_valid()) {
+ RD::get_singleton()->free(multimesh->buffer);
+ multimesh->buffer = RID();
+ multimesh->uniform_set_2d = RID(); //cleared by dependency
+ multimesh->uniform_set_3d = RID(); //cleared by dependency
+ }
+
+ if (multimesh->data_cache_dirty_regions) {
+ memdelete_arr(multimesh->data_cache_dirty_regions);
+ multimesh->data_cache_dirty_regions = nullptr;
+ multimesh->data_cache_used_dirty_regions = 0;
+ }
+
+ multimesh->instances = p_instances;
+ multimesh->xform_format = p_transform_format;
+ multimesh->uses_colors = p_use_colors;
+ multimesh->color_offset_cache = p_transform_format == RS::MULTIMESH_TRANSFORM_2D ? 8 : 12;
+ multimesh->uses_custom_data = p_use_custom_data;
+ multimesh->custom_data_offset_cache = multimesh->color_offset_cache + (p_use_colors ? 4 : 0);
+ multimesh->stride_cache = multimesh->custom_data_offset_cache + (p_use_custom_data ? 4 : 0);
+ multimesh->buffer_set = false;
+
+ //print_line("allocate, elements: " + itos(p_instances) + " 2D: " + itos(p_transform_format == RS::MULTIMESH_TRANSFORM_2D) + " colors " + itos(multimesh->uses_colors) + " data " + itos(multimesh->uses_custom_data) + " stride " + itos(multimesh->stride_cache) + " total size " + itos(multimesh->stride_cache * multimesh->instances));
+ multimesh->data_cache = Vector<float>();
+ multimesh->aabb = AABB();
+ multimesh->aabb_dirty = false;
+ multimesh->visible_instances = MIN(multimesh->visible_instances, multimesh->instances);
+
+ if (multimesh->instances) {
+ multimesh->buffer = RD::get_singleton()->storage_buffer_create(multimesh->instances * multimesh->stride_cache * 4);
+ }
+
+ multimesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MULTIMESH);
+}
+
+int MeshStorage::multimesh_get_instance_count(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, 0);
+ return multimesh->instances;
+}
+
+void MeshStorage::multimesh_set_mesh(RID p_multimesh, RID p_mesh) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ if (multimesh->mesh == p_mesh) {
+ return;
+ }
+ multimesh->mesh = p_mesh;
+
+ if (multimesh->instances == 0) {
+ return;
+ }
+
+ if (multimesh->data_cache.size()) {
+ //we have a data cache, just mark it dirt
+ _multimesh_mark_all_dirty(multimesh, false, true);
+ } else if (multimesh->instances) {
+ //need to re-create AABB unfortunately, calling this has a penalty
+ if (multimesh->buffer_set) {
+ Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
+ const uint8_t *r = buffer.ptr();
+ const float *data = reinterpret_cast<const float *>(r);
+ _multimesh_re_create_aabb(multimesh, data, multimesh->instances);
+ }
+ }
+
+ multimesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MESH);
+}
+
+#define MULTIMESH_DIRTY_REGION_SIZE 512
+
+void MeshStorage::_multimesh_make_local(MultiMesh *multimesh) const {
+ if (multimesh->data_cache.size() > 0) {
+ return; //already local
+ }
+ ERR_FAIL_COND(multimesh->data_cache.size() > 0);
+ // this means that the user wants to load/save individual elements,
+ // for this, the data must reside on CPU, so just copy it there.
+ multimesh->data_cache.resize(multimesh->instances * multimesh->stride_cache);
+ {
+ float *w = multimesh->data_cache.ptrw();
+
+ if (multimesh->buffer_set) {
+ Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
+ {
+ const uint8_t *r = buffer.ptr();
+ memcpy(w, r, buffer.size());
+ }
+ } else {
+ memset(w, 0, (size_t)multimesh->instances * multimesh->stride_cache * sizeof(float));
+ }
+ }
+ uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+ multimesh->data_cache_dirty_regions = memnew_arr(bool, data_cache_dirty_region_count);
+ for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
+ multimesh->data_cache_dirty_regions[i] = false;
+ }
+ multimesh->data_cache_used_dirty_regions = 0;
+}
+
+void MeshStorage::_multimesh_mark_dirty(MultiMesh *multimesh, int p_index, bool p_aabb) {
+ uint32_t region_index = p_index / MULTIMESH_DIRTY_REGION_SIZE;
+#ifdef DEBUG_ENABLED
+ uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+ ERR_FAIL_UNSIGNED_INDEX(region_index, data_cache_dirty_region_count); //bug
+#endif
+ if (!multimesh->data_cache_dirty_regions[region_index]) {
+ multimesh->data_cache_dirty_regions[region_index] = true;
+ multimesh->data_cache_used_dirty_regions++;
+ }
+
+ if (p_aabb) {
+ multimesh->aabb_dirty = true;
+ }
+
+ if (!multimesh->dirty) {
+ multimesh->dirty_list = multimesh_dirty_list;
+ multimesh_dirty_list = multimesh;
+ multimesh->dirty = true;
+ }
+}
+
+void MeshStorage::_multimesh_mark_all_dirty(MultiMesh *multimesh, bool p_data, bool p_aabb) {
+ if (p_data) {
+ uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+
+ for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
+ if (!multimesh->data_cache_dirty_regions[i]) {
+ multimesh->data_cache_dirty_regions[i] = true;
+ multimesh->data_cache_used_dirty_regions++;
+ }
+ }
+ }
+
+ if (p_aabb) {
+ multimesh->aabb_dirty = true;
+ }
+
+ if (!multimesh->dirty) {
+ multimesh->dirty_list = multimesh_dirty_list;
+ multimesh_dirty_list = multimesh;
+ multimesh->dirty = true;
+ }
+}
+
+void MeshStorage::_multimesh_re_create_aabb(MultiMesh *multimesh, const float *p_data, int p_instances) {
+ ERR_FAIL_COND(multimesh->mesh.is_null());
+ AABB aabb;
+ AABB mesh_aabb = mesh_get_aabb(multimesh->mesh);
+ for (int i = 0; i < p_instances; i++) {
+ const float *data = p_data + multimesh->stride_cache * i;
+ Transform3D t;
+
+ if (multimesh->xform_format == RS::MULTIMESH_TRANSFORM_3D) {
+ t.basis.rows[0][0] = data[0];
+ t.basis.rows[0][1] = data[1];
+ t.basis.rows[0][2] = data[2];
+ t.origin.x = data[3];
+ t.basis.rows[1][0] = data[4];
+ t.basis.rows[1][1] = data[5];
+ t.basis.rows[1][2] = data[6];
+ t.origin.y = data[7];
+ t.basis.rows[2][0] = data[8];
+ t.basis.rows[2][1] = data[9];
+ t.basis.rows[2][2] = data[10];
+ t.origin.z = data[11];
+
+ } else {
+ t.basis.rows[0].x = data[0];
+ t.basis.rows[1].x = data[1];
+ t.origin.x = data[3];
+
+ t.basis.rows[0].y = data[4];
+ t.basis.rows[1].y = data[5];
+ t.origin.y = data[7];
+ }
+
+ if (i == 0) {
+ aabb = t.xform(mesh_aabb);
+ } else {
+ aabb.merge_with(t.xform(mesh_aabb));
+ }
+ }
+
+ multimesh->aabb = aabb;
+}
+
+void MeshStorage::multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_INDEX(p_index, multimesh->instances);
+ ERR_FAIL_COND(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_3D);
+
+ _multimesh_make_local(multimesh);
+
+ {
+ float *w = multimesh->data_cache.ptrw();
+
+ float *dataptr = w + p_index * multimesh->stride_cache;
+
+ dataptr[0] = p_transform.basis.rows[0][0];
+ dataptr[1] = p_transform.basis.rows[0][1];
+ dataptr[2] = p_transform.basis.rows[0][2];
+ dataptr[3] = p_transform.origin.x;
+ dataptr[4] = p_transform.basis.rows[1][0];
+ dataptr[5] = p_transform.basis.rows[1][1];
+ dataptr[6] = p_transform.basis.rows[1][2];
+ dataptr[7] = p_transform.origin.y;
+ dataptr[8] = p_transform.basis.rows[2][0];
+ dataptr[9] = p_transform.basis.rows[2][1];
+ dataptr[10] = p_transform.basis.rows[2][2];
+ dataptr[11] = p_transform.origin.z;
+ }
+
+ _multimesh_mark_dirty(multimesh, p_index, true);
+}
+
+void MeshStorage::multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_INDEX(p_index, multimesh->instances);
+ ERR_FAIL_COND(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_2D);
+
+ _multimesh_make_local(multimesh);
+
+ {
+ float *w = multimesh->data_cache.ptrw();
+
+ float *dataptr = w + p_index * multimesh->stride_cache;
+
+ dataptr[0] = p_transform.columns[0][0];
+ dataptr[1] = p_transform.columns[1][0];
+ dataptr[2] = 0;
+ dataptr[3] = p_transform.columns[2][0];
+ dataptr[4] = p_transform.columns[0][1];
+ dataptr[5] = p_transform.columns[1][1];
+ dataptr[6] = 0;
+ dataptr[7] = p_transform.columns[2][1];
+ }
+
+ _multimesh_mark_dirty(multimesh, p_index, true);
+}
+
+void MeshStorage::multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_INDEX(p_index, multimesh->instances);
+ ERR_FAIL_COND(!multimesh->uses_colors);
+
+ _multimesh_make_local(multimesh);
+
+ {
+ float *w = multimesh->data_cache.ptrw();
+
+ float *dataptr = w + p_index * multimesh->stride_cache + multimesh->color_offset_cache;
+
+ dataptr[0] = p_color.r;
+ dataptr[1] = p_color.g;
+ dataptr[2] = p_color.b;
+ dataptr[3] = p_color.a;
+ }
+
+ _multimesh_mark_dirty(multimesh, p_index, false);
+}
+
+void MeshStorage::multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_INDEX(p_index, multimesh->instances);
+ ERR_FAIL_COND(!multimesh->uses_custom_data);
+
+ _multimesh_make_local(multimesh);
+
+ {
+ float *w = multimesh->data_cache.ptrw();
+
+ float *dataptr = w + p_index * multimesh->stride_cache + multimesh->custom_data_offset_cache;
+
+ dataptr[0] = p_color.r;
+ dataptr[1] = p_color.g;
+ dataptr[2] = p_color.b;
+ dataptr[3] = p_color.a;
+ }
+
+ _multimesh_mark_dirty(multimesh, p_index, false);
+}
+
+RID MeshStorage::multimesh_get_mesh(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, RID());
+
+ return multimesh->mesh;
+}
+
+Transform3D MeshStorage::multimesh_instance_get_transform(RID p_multimesh, int p_index) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, Transform3D());
+ ERR_FAIL_INDEX_V(p_index, multimesh->instances, Transform3D());
+ ERR_FAIL_COND_V(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_3D, Transform3D());
+
+ _multimesh_make_local(multimesh);
+
+ Transform3D t;
+ {
+ const float *r = multimesh->data_cache.ptr();
+
+ const float *dataptr = r + p_index * multimesh->stride_cache;
+
+ t.basis.rows[0][0] = dataptr[0];
+ t.basis.rows[0][1] = dataptr[1];
+ t.basis.rows[0][2] = dataptr[2];
+ t.origin.x = dataptr[3];
+ t.basis.rows[1][0] = dataptr[4];
+ t.basis.rows[1][1] = dataptr[5];
+ t.basis.rows[1][2] = dataptr[6];
+ t.origin.y = dataptr[7];
+ t.basis.rows[2][0] = dataptr[8];
+ t.basis.rows[2][1] = dataptr[9];
+ t.basis.rows[2][2] = dataptr[10];
+ t.origin.z = dataptr[11];
+ }
+
+ return t;
+}
+
+Transform2D MeshStorage::multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, Transform2D());
+ ERR_FAIL_INDEX_V(p_index, multimesh->instances, Transform2D());
+ ERR_FAIL_COND_V(multimesh->xform_format != RS::MULTIMESH_TRANSFORM_2D, Transform2D());
+
+ _multimesh_make_local(multimesh);
+
+ Transform2D t;
+ {
+ const float *r = multimesh->data_cache.ptr();
+
+ const float *dataptr = r + p_index * multimesh->stride_cache;
+
+ t.columns[0][0] = dataptr[0];
+ t.columns[1][0] = dataptr[1];
+ t.columns[2][0] = dataptr[3];
+ t.columns[0][1] = dataptr[4];
+ t.columns[1][1] = dataptr[5];
+ t.columns[2][1] = dataptr[7];
+ }
+
+ return t;
+}
+
+Color MeshStorage::multimesh_instance_get_color(RID p_multimesh, int p_index) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, Color());
+ ERR_FAIL_INDEX_V(p_index, multimesh->instances, Color());
+ ERR_FAIL_COND_V(!multimesh->uses_colors, Color());
+
+ _multimesh_make_local(multimesh);
+
+ Color c;
+ {
+ const float *r = multimesh->data_cache.ptr();
+
+ const float *dataptr = r + p_index * multimesh->stride_cache + multimesh->color_offset_cache;
+
+ c.r = dataptr[0];
+ c.g = dataptr[1];
+ c.b = dataptr[2];
+ c.a = dataptr[3];
+ }
+
+ return c;
+}
+
+Color MeshStorage::multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, Color());
+ ERR_FAIL_INDEX_V(p_index, multimesh->instances, Color());
+ ERR_FAIL_COND_V(!multimesh->uses_custom_data, Color());
+
+ _multimesh_make_local(multimesh);
+
+ Color c;
+ {
+ const float *r = multimesh->data_cache.ptr();
+
+ const float *dataptr = r + p_index * multimesh->stride_cache + multimesh->custom_data_offset_cache;
+
+ c.r = dataptr[0];
+ c.g = dataptr[1];
+ c.b = dataptr[2];
+ c.a = dataptr[3];
+ }
+
+ return c;
+}
+
+void MeshStorage::multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_COND(p_buffer.size() != (multimesh->instances * (int)multimesh->stride_cache));
+
+ {
+ const float *r = p_buffer.ptr();
+ RD::get_singleton()->buffer_update(multimesh->buffer, 0, p_buffer.size() * sizeof(float), r);
+ multimesh->buffer_set = true;
+ }
+
+ if (multimesh->data_cache.size()) {
+ //if we have a data cache, just update it
+ multimesh->data_cache = p_buffer;
+ {
+ //clear dirty since nothing will be dirty anymore
+ uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+ for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
+ multimesh->data_cache_dirty_regions[i] = false;
+ }
+ multimesh->data_cache_used_dirty_regions = 0;
+ }
+
+ _multimesh_mark_all_dirty(multimesh, false, true); //update AABB
+ } else if (multimesh->mesh.is_valid()) {
+ //if we have a mesh set, we need to re-generate the AABB from the new data
+ const float *data = p_buffer.ptr();
+
+ _multimesh_re_create_aabb(multimesh, data, multimesh->instances);
+ multimesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+ }
+}
+
+Vector<float> MeshStorage::multimesh_get_buffer(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, Vector<float>());
+ if (multimesh->buffer.is_null()) {
+ return Vector<float>();
+ } else if (multimesh->data_cache.size()) {
+ return multimesh->data_cache;
+ } else {
+ //get from memory
+
+ Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(multimesh->buffer);
+ Vector<float> ret;
+ ret.resize(multimesh->instances * multimesh->stride_cache);
+ {
+ float *w = ret.ptrw();
+ const uint8_t *r = buffer.ptr();
+ memcpy(w, r, buffer.size());
+ }
+
+ return ret;
+ }
+}
+
+void MeshStorage::multimesh_set_visible_instances(RID p_multimesh, int p_visible) {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND(!multimesh);
+ ERR_FAIL_COND(p_visible < -1 || p_visible > multimesh->instances);
+ if (multimesh->visible_instances == p_visible) {
+ return;
+ }
+
+ if (multimesh->data_cache.size()) {
+ //there is a data cache..
+ _multimesh_mark_all_dirty(multimesh, false, true);
+ }
+
+ multimesh->visible_instances = p_visible;
+
+ multimesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_MULTIMESH_VISIBLE_INSTANCES);
+}
+
+int MeshStorage::multimesh_get_visible_instances(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, 0);
+ return multimesh->visible_instances;
+}
+
+AABB MeshStorage::multimesh_get_aabb(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ ERR_FAIL_COND_V(!multimesh, AABB());
+ if (multimesh->aabb_dirty) {
+ const_cast<MeshStorage *>(this)->_update_dirty_multimeshes();
+ }
+ return multimesh->aabb;
+}
+
+void MeshStorage::_update_dirty_multimeshes() {
+ while (multimesh_dirty_list) {
+ MultiMesh *multimesh = multimesh_dirty_list;
+
+ if (multimesh->data_cache.size()) { //may have been cleared, so only process if it exists
+ const float *data = multimesh->data_cache.ptr();
+
+ uint32_t visible_instances = multimesh->visible_instances >= 0 ? multimesh->visible_instances : multimesh->instances;
+
+ if (multimesh->data_cache_used_dirty_regions) {
+ uint32_t data_cache_dirty_region_count = (multimesh->instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+ uint32_t visible_region_count = visible_instances == 0 ? 0 : (visible_instances - 1) / MULTIMESH_DIRTY_REGION_SIZE + 1;
+
+ uint32_t region_size = multimesh->stride_cache * MULTIMESH_DIRTY_REGION_SIZE * sizeof(float);
+
+ if (multimesh->data_cache_used_dirty_regions > 32 || multimesh->data_cache_used_dirty_regions > visible_region_count / 2) {
+ //if there too many dirty regions, or represent the majority of regions, just copy all, else transfer cost piles up too much
+ RD::get_singleton()->buffer_update(multimesh->buffer, 0, MIN(visible_region_count * region_size, multimesh->instances * (uint32_t)multimesh->stride_cache * (uint32_t)sizeof(float)), data);
+ } else {
+ //not that many regions? update them all
+ for (uint32_t i = 0; i < visible_region_count; i++) {
+ if (multimesh->data_cache_dirty_regions[i]) {
+ uint32_t offset = i * region_size;
+ uint32_t size = multimesh->stride_cache * (uint32_t)multimesh->instances * (uint32_t)sizeof(float);
+ uint32_t region_start_index = multimesh->stride_cache * MULTIMESH_DIRTY_REGION_SIZE * i;
+ RD::get_singleton()->buffer_update(multimesh->buffer, offset, MIN(region_size, size - offset), &data[region_start_index]);
+ }
+ }
+ }
+
+ for (uint32_t i = 0; i < data_cache_dirty_region_count; i++) {
+ multimesh->data_cache_dirty_regions[i] = false;
+ }
+
+ multimesh->data_cache_used_dirty_regions = 0;
+ }
+
+ if (multimesh->aabb_dirty) {
+ //aabb is dirty..
+ _multimesh_re_create_aabb(multimesh, data, visible_instances);
+ multimesh->aabb_dirty = false;
+ multimesh->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+ }
+ }
+
+ multimesh_dirty_list = multimesh->dirty_list;
+
+ multimesh->dirty_list = nullptr;
+ multimesh->dirty = false;
+ }
+
+ multimesh_dirty_list = nullptr;
+}
+
+/* SKELETON API */
+
+RID MeshStorage::skeleton_allocate() {
+ return skeleton_owner.allocate_rid();
+}
+void MeshStorage::skeleton_initialize(RID p_rid) {
+ skeleton_owner.initialize_rid(p_rid, Skeleton());
+}
+
+void MeshStorage::skeleton_free(RID p_rid) {
+ _update_dirty_skeletons();
+ skeleton_allocate_data(p_rid, 0);
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_rid);
+ skeleton->dependency.deleted_notify(p_rid);
+ skeleton_owner.free(p_rid);
+}
+
+void MeshStorage::_skeleton_make_dirty(Skeleton *skeleton) {
+ if (!skeleton->dirty) {
+ skeleton->dirty = true;
+ skeleton->dirty_list = skeleton_dirty_list;
+ skeleton_dirty_list = skeleton;
+ }
+}
+
+void MeshStorage::skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton) {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+ ERR_FAIL_COND(!skeleton);
+ ERR_FAIL_COND(p_bones < 0);
+
+ if (skeleton->size == p_bones && skeleton->use_2d == p_2d_skeleton) {
+ return;
+ }
+
+ skeleton->size = p_bones;
+ skeleton->use_2d = p_2d_skeleton;
+ skeleton->uniform_set_3d = RID();
+
+ if (skeleton->buffer.is_valid()) {
+ RD::get_singleton()->free(skeleton->buffer);
+ skeleton->buffer = RID();
+ skeleton->data.clear();
+ skeleton->uniform_set_mi = RID();
+ }
+
+ if (skeleton->size) {
+ skeleton->data.resize(skeleton->size * (skeleton->use_2d ? 8 : 12));
+ skeleton->buffer = RD::get_singleton()->storage_buffer_create(skeleton->data.size() * sizeof(float));
+ memset(skeleton->data.ptrw(), 0, skeleton->data.size() * sizeof(float));
+
+ _skeleton_make_dirty(skeleton);
+
+ {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.binding = 0;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.append_id(skeleton->buffer);
+ uniforms.push_back(u);
+ }
+ skeleton->uniform_set_mi = RD::get_singleton()->uniform_set_create(uniforms, skeleton_shader.version_shader[0], SkeletonShader::UNIFORM_SET_SKELETON);
+ }
+ }
+
+ skeleton->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_SKELETON_DATA);
+}
+
+int MeshStorage::skeleton_get_bone_count(RID p_skeleton) const {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+ ERR_FAIL_COND_V(!skeleton, 0);
+
+ return skeleton->size;
+}
+
+void MeshStorage::skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ ERR_FAIL_COND(!skeleton);
+ ERR_FAIL_INDEX(p_bone, skeleton->size);
+ ERR_FAIL_COND(skeleton->use_2d);
+
+ float *dataptr = skeleton->data.ptrw() + p_bone * 12;
+
+ dataptr[0] = p_transform.basis.rows[0][0];
+ dataptr[1] = p_transform.basis.rows[0][1];
+ dataptr[2] = p_transform.basis.rows[0][2];
+ dataptr[3] = p_transform.origin.x;
+ dataptr[4] = p_transform.basis.rows[1][0];
+ dataptr[5] = p_transform.basis.rows[1][1];
+ dataptr[6] = p_transform.basis.rows[1][2];
+ dataptr[7] = p_transform.origin.y;
+ dataptr[8] = p_transform.basis.rows[2][0];
+ dataptr[9] = p_transform.basis.rows[2][1];
+ dataptr[10] = p_transform.basis.rows[2][2];
+ dataptr[11] = p_transform.origin.z;
+
+ _skeleton_make_dirty(skeleton);
+}
+
+Transform3D MeshStorage::skeleton_bone_get_transform(RID p_skeleton, int p_bone) const {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ ERR_FAIL_COND_V(!skeleton, Transform3D());
+ ERR_FAIL_INDEX_V(p_bone, skeleton->size, Transform3D());
+ ERR_FAIL_COND_V(skeleton->use_2d, Transform3D());
+
+ const float *dataptr = skeleton->data.ptr() + p_bone * 12;
+
+ Transform3D t;
+
+ t.basis.rows[0][0] = dataptr[0];
+ t.basis.rows[0][1] = dataptr[1];
+ t.basis.rows[0][2] = dataptr[2];
+ t.origin.x = dataptr[3];
+ t.basis.rows[1][0] = dataptr[4];
+ t.basis.rows[1][1] = dataptr[5];
+ t.basis.rows[1][2] = dataptr[6];
+ t.origin.y = dataptr[7];
+ t.basis.rows[2][0] = dataptr[8];
+ t.basis.rows[2][1] = dataptr[9];
+ t.basis.rows[2][2] = dataptr[10];
+ t.origin.z = dataptr[11];
+
+ return t;
+}
+
+void MeshStorage::skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ ERR_FAIL_COND(!skeleton);
+ ERR_FAIL_INDEX(p_bone, skeleton->size);
+ ERR_FAIL_COND(!skeleton->use_2d);
+
+ float *dataptr = skeleton->data.ptrw() + p_bone * 8;
+
+ dataptr[0] = p_transform.columns[0][0];
+ dataptr[1] = p_transform.columns[1][0];
+ dataptr[2] = 0;
+ dataptr[3] = p_transform.columns[2][0];
+ dataptr[4] = p_transform.columns[0][1];
+ dataptr[5] = p_transform.columns[1][1];
+ dataptr[6] = 0;
+ dataptr[7] = p_transform.columns[2][1];
+
+ _skeleton_make_dirty(skeleton);
+}
+
+Transform2D MeshStorage::skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ ERR_FAIL_COND_V(!skeleton, Transform2D());
+ ERR_FAIL_INDEX_V(p_bone, skeleton->size, Transform2D());
+ ERR_FAIL_COND_V(!skeleton->use_2d, Transform2D());
+
+ const float *dataptr = skeleton->data.ptr() + p_bone * 8;
+
+ Transform2D t;
+ t.columns[0][0] = dataptr[0];
+ t.columns[1][0] = dataptr[1];
+ t.columns[2][0] = dataptr[3];
+ t.columns[0][1] = dataptr[4];
+ t.columns[1][1] = dataptr[5];
+ t.columns[2][1] = dataptr[7];
+
+ return t;
+}
+
+void MeshStorage::skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+
+ ERR_FAIL_COND(!skeleton->use_2d);
+
+ skeleton->base_transform_2d = p_base_transform;
+}
+
+void MeshStorage::_update_dirty_skeletons() {
+ while (skeleton_dirty_list) {
+ Skeleton *skeleton = skeleton_dirty_list;
+
+ if (skeleton->size) {
+ RD::get_singleton()->buffer_update(skeleton->buffer, 0, skeleton->data.size() * sizeof(float), skeleton->data.ptr());
+ }
+
+ skeleton_dirty_list = skeleton->dirty_list;
+
+ skeleton->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_SKELETON_BONES);
+
+ skeleton->version++;
+
+ skeleton->dirty = false;
+ skeleton->dirty_list = nullptr;
+ }
+
+ skeleton_dirty_list = nullptr;
+}
+
+void MeshStorage::skeleton_update_dependency(RID p_skeleton, RendererStorage::DependencyTracker *p_instance) {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+ ERR_FAIL_COND(!skeleton);
+
+ p_instance->update_dependency(&skeleton->dependency);
+}
diff --git a/servers/rendering/renderer_rd/storage_rd/mesh_storage.h b/servers/rendering/renderer_rd/storage_rd/mesh_storage.h
new file mode 100644
index 0000000000..7d3f603afd
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/mesh_storage.h
@@ -0,0 +1,706 @@
+/*************************************************************************/
+/* mesh_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MESH_STORAGE_RD_H
+#define MESH_STORAGE_RD_H
+
+#include "core/templates/local_vector.h"
+#include "core/templates/rid_owner.h"
+#include "core/templates/self_list.h"
+#include "servers/rendering/renderer_rd/shaders/skeleton.glsl.gen.h"
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering/storage/mesh_storage.h"
+
+namespace RendererRD {
+
+/* Mesh */
+
+enum DefaultRDBuffer {
+ DEFAULT_RD_BUFFER_VERTEX,
+ DEFAULT_RD_BUFFER_NORMAL,
+ DEFAULT_RD_BUFFER_TANGENT,
+ DEFAULT_RD_BUFFER_COLOR,
+ DEFAULT_RD_BUFFER_TEX_UV,
+ DEFAULT_RD_BUFFER_TEX_UV2,
+ DEFAULT_RD_BUFFER_CUSTOM0,
+ DEFAULT_RD_BUFFER_CUSTOM1,
+ DEFAULT_RD_BUFFER_CUSTOM2,
+ DEFAULT_RD_BUFFER_CUSTOM3,
+ DEFAULT_RD_BUFFER_BONES,
+ DEFAULT_RD_BUFFER_WEIGHTS,
+ DEFAULT_RD_BUFFER_MAX,
+};
+
+struct MeshInstance;
+
+struct Mesh {
+ struct Surface {
+ RS::PrimitiveType primitive = RS::PRIMITIVE_POINTS;
+ uint32_t format = 0;
+
+ RID vertex_buffer;
+ RID attribute_buffer;
+ RID skin_buffer;
+ uint32_t vertex_count = 0;
+ uint32_t vertex_buffer_size = 0;
+ uint32_t skin_buffer_size = 0;
+
+ // A different pipeline needs to be allocated
+ // depending on the inputs available in the
+ // material.
+ // There are never that many geometry/material
+ // combinations, so a simple array is the most
+ // cache-efficient structure.
+
+ struct Version {
+ uint32_t input_mask = 0;
+ RD::VertexFormatID vertex_format = 0;
+ RID vertex_array;
+ };
+
+ SpinLock version_lock; //needed to access versions
+ Version *versions = nullptr; //allocated on demand
+ uint32_t version_count = 0;
+
+ RID index_buffer;
+ RID index_array;
+ uint32_t index_count = 0;
+
+ struct LOD {
+ float edge_length = 0.0;
+ uint32_t index_count = 0;
+ RID index_buffer;
+ RID index_array;
+ };
+
+ LOD *lods = nullptr;
+ uint32_t lod_count = 0;
+
+ AABB aabb;
+
+ Vector<AABB> bone_aabbs;
+
+ RID blend_shape_buffer;
+
+ RID material;
+
+ uint32_t render_index = 0;
+ uint64_t render_pass = 0;
+
+ uint32_t multimesh_render_index = 0;
+ uint64_t multimesh_render_pass = 0;
+
+ uint32_t particles_render_index = 0;
+ uint64_t particles_render_pass = 0;
+
+ RID uniform_set;
+ };
+
+ uint32_t blend_shape_count = 0;
+ RS::BlendShapeMode blend_shape_mode = RS::BLEND_SHAPE_MODE_NORMALIZED;
+
+ Surface **surfaces = nullptr;
+ uint32_t surface_count = 0;
+
+ Vector<AABB> bone_aabbs;
+
+ bool has_bone_weights = false;
+
+ AABB aabb;
+ AABB custom_aabb;
+
+ Vector<RID> material_cache;
+
+ List<MeshInstance *> instances;
+
+ RID shadow_mesh;
+ Set<Mesh *> shadow_owners;
+
+ RendererStorage::Dependency dependency;
+};
+
+/* Mesh Instance */
+
+struct MeshInstance {
+ Mesh *mesh = nullptr;
+ RID skeleton;
+ struct Surface {
+ RID vertex_buffer;
+ RID uniform_set;
+
+ Mesh::Surface::Version *versions = nullptr; //allocated on demand
+ uint32_t version_count = 0;
+ };
+ LocalVector<Surface> surfaces;
+ LocalVector<float> blend_weights;
+
+ RID blend_weights_buffer;
+ List<MeshInstance *>::Element *I = nullptr; //used to erase itself
+ uint64_t skeleton_version = 0;
+ bool dirty = false;
+ bool weights_dirty = false;
+ SelfList<MeshInstance> weight_update_list;
+ SelfList<MeshInstance> array_update_list;
+ MeshInstance() :
+ weight_update_list(this), array_update_list(this) {}
+};
+
+/* MultiMesh */
+
+struct MultiMesh {
+ RID mesh;
+ int instances = 0;
+ RS::MultimeshTransformFormat xform_format = RS::MULTIMESH_TRANSFORM_3D;
+ bool uses_colors = false;
+ bool uses_custom_data = false;
+ int visible_instances = -1;
+ AABB aabb;
+ bool aabb_dirty = false;
+ bool buffer_set = false;
+ uint32_t stride_cache = 0;
+ uint32_t color_offset_cache = 0;
+ uint32_t custom_data_offset_cache = 0;
+
+ Vector<float> data_cache; //used if individual setting is used
+ bool *data_cache_dirty_regions = nullptr;
+ uint32_t data_cache_used_dirty_regions = 0;
+
+ RID buffer; //storage buffer
+ RID uniform_set_3d;
+ RID uniform_set_2d;
+
+ bool dirty = false;
+ MultiMesh *dirty_list = nullptr;
+
+ RendererStorage::Dependency dependency;
+};
+
+/* Skeleton */
+
+struct SkeletonShader {
+ struct PushConstant {
+ uint32_t has_normal;
+ uint32_t has_tangent;
+ uint32_t has_skeleton;
+ uint32_t has_blend_shape;
+
+ uint32_t vertex_count;
+ uint32_t vertex_stride;
+ uint32_t skin_stride;
+ uint32_t skin_weight_offset;
+
+ uint32_t blend_shape_count;
+ uint32_t normalized_blend_shapes;
+ uint32_t pad0;
+ uint32_t pad1;
+ };
+
+ enum {
+ UNIFORM_SET_INSTANCE = 0,
+ UNIFORM_SET_SURFACE = 1,
+ UNIFORM_SET_SKELETON = 2,
+ };
+ enum {
+ SHADER_MODE_2D,
+ SHADER_MODE_3D,
+ SHADER_MODE_MAX
+ };
+
+ SkeletonShaderRD shader;
+ RID version;
+ RID version_shader[SHADER_MODE_MAX];
+ RID pipeline[SHADER_MODE_MAX];
+
+ RID default_skeleton_uniform_set;
+};
+
+struct Skeleton {
+ bool use_2d = false;
+ int size = 0;
+ Vector<float> data;
+ RID buffer;
+
+ bool dirty = false;
+ Skeleton *dirty_list = nullptr;
+ Transform2D base_transform_2d;
+
+ RID uniform_set_3d;
+ RID uniform_set_mi;
+
+ uint64_t version = 1;
+
+ RendererStorage::Dependency dependency;
+};
+
+class MeshStorage : public RendererMeshStorage {
+private:
+ static MeshStorage *singleton;
+
+ RID mesh_default_rd_buffers[DEFAULT_RD_BUFFER_MAX];
+ RID default_rd_storage_buffer;
+
+ /* Mesh */
+
+ mutable RID_Owner<Mesh, true> mesh_owner;
+
+ void _mesh_surface_generate_version_for_input_mask(Mesh::Surface::Version &v, Mesh::Surface *s, uint32_t p_input_mask, MeshInstance::Surface *mis = nullptr);
+
+ /* Mesh Instance API */
+
+ void _mesh_instance_clear(MeshInstance *mi);
+ void _mesh_instance_add_surface(MeshInstance *mi, Mesh *mesh, uint32_t p_surface);
+
+ mutable RID_Owner<MeshInstance> mesh_instance_owner;
+
+ SelfList<MeshInstance>::List dirty_mesh_instance_weights;
+ SelfList<MeshInstance>::List dirty_mesh_instance_arrays;
+
+ /* MultiMesh */
+
+ mutable RID_Owner<MultiMesh, true> multimesh_owner;
+
+ MultiMesh *multimesh_dirty_list = nullptr;
+
+ _FORCE_INLINE_ void _multimesh_make_local(MultiMesh *multimesh) const;
+ _FORCE_INLINE_ void _multimesh_mark_dirty(MultiMesh *multimesh, int p_index, bool p_aabb);
+ _FORCE_INLINE_ void _multimesh_mark_all_dirty(MultiMesh *multimesh, bool p_data, bool p_aabb);
+ _FORCE_INLINE_ void _multimesh_re_create_aabb(MultiMesh *multimesh, const float *p_data, int p_instances);
+
+ /* Skeleton */
+
+ SkeletonShader skeleton_shader;
+
+ mutable RID_Owner<Skeleton, true> skeleton_owner;
+
+ _FORCE_INLINE_ void _skeleton_make_dirty(Skeleton *skeleton);
+
+ Skeleton *skeleton_dirty_list = nullptr;
+
+public:
+ static MeshStorage *get_singleton();
+
+ MeshStorage();
+ virtual ~MeshStorage();
+
+ RID get_default_rd_storage_buffer() { return default_rd_storage_buffer; }
+
+ /* MESH API */
+
+ Mesh *get_mesh(RID p_rid) { return mesh_owner.get_or_null(p_rid); };
+ bool owns_mesh(RID p_rid) { return mesh_owner.owns(p_rid); };
+
+ virtual RID mesh_allocate() override;
+ virtual void mesh_initialize(RID p_mesh) override;
+ virtual void mesh_free(RID p_rid) override;
+
+ virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) override;
+
+ /// Return stride
+ virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) override;
+
+ virtual int mesh_get_blend_shape_count(RID p_mesh) const override;
+
+ virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) override;
+ virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const override;
+
+ virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override;
+ virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override;
+ virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) override;
+
+ virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) override;
+ virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const override;
+
+ virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const override;
+
+ virtual int mesh_get_surface_count(RID p_mesh) const override;
+
+ virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) override;
+ virtual AABB mesh_get_custom_aabb(RID p_mesh) const override;
+
+ virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) override;
+ virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) override;
+
+ virtual void mesh_clear(RID p_mesh) override;
+
+ virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) override;
+
+ _FORCE_INLINE_ const RID *mesh_get_surface_count_and_materials(RID p_mesh, uint32_t &r_surface_count) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, nullptr);
+ r_surface_count = mesh->surface_count;
+ if (r_surface_count == 0) {
+ return nullptr;
+ }
+ if (mesh->material_cache.is_empty()) {
+ mesh->material_cache.resize(mesh->surface_count);
+ for (uint32_t i = 0; i < r_surface_count; i++) {
+ mesh->material_cache.write[i] = mesh->surfaces[i]->material;
+ }
+ }
+
+ return mesh->material_cache.ptr();
+ }
+
+ _FORCE_INLINE_ void *mesh_get_surface(RID p_mesh, uint32_t p_surface_index) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, nullptr);
+ ERR_FAIL_UNSIGNED_INDEX_V(p_surface_index, mesh->surface_count, nullptr);
+
+ return mesh->surfaces[p_surface_index];
+ }
+
+ _FORCE_INLINE_ RID mesh_get_shadow_mesh(RID p_mesh) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ ERR_FAIL_COND_V(!mesh, RID());
+
+ return mesh->shadow_mesh;
+ }
+
+ _FORCE_INLINE_ RS::PrimitiveType mesh_surface_get_primitive(void *p_surface) {
+ Mesh::Surface *surface = reinterpret_cast<Mesh::Surface *>(p_surface);
+ return surface->primitive;
+ }
+
+ _FORCE_INLINE_ bool mesh_surface_has_lod(void *p_surface) const {
+ Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
+ return s->lod_count > 0;
+ }
+
+ _FORCE_INLINE_ uint32_t mesh_surface_get_vertices_drawn_count(void *p_surface) const {
+ Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
+ return s->index_count ? s->index_count : s->vertex_count;
+ }
+
+ _FORCE_INLINE_ uint32_t mesh_surface_get_lod(void *p_surface, float p_model_scale, float p_distance_threshold, float p_mesh_lod_threshold, uint32_t *r_index_count = nullptr) const {
+ Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
+
+ int32_t current_lod = -1;
+ if (r_index_count) {
+ *r_index_count = s->index_count;
+ }
+ for (uint32_t i = 0; i < s->lod_count; i++) {
+ float screen_size = s->lods[i].edge_length * p_model_scale / p_distance_threshold;
+ if (screen_size > p_mesh_lod_threshold) {
+ break;
+ }
+ current_lod = i;
+ }
+ if (current_lod == -1) {
+ return 0;
+ } else {
+ if (r_index_count) {
+ *r_index_count = s->lods[current_lod].index_count;
+ }
+ return current_lod + 1;
+ }
+ }
+
+ _FORCE_INLINE_ RID mesh_surface_get_index_array(void *p_surface, uint32_t p_lod) const {
+ Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
+
+ if (p_lod == 0) {
+ return s->index_array;
+ } else {
+ return s->lods[p_lod - 1].index_array;
+ }
+ }
+
+ _FORCE_INLINE_ void mesh_surface_get_vertex_arrays_and_format(void *p_surface, uint32_t p_input_mask, RID &r_vertex_array_rd, RD::VertexFormatID &r_vertex_format) {
+ Mesh::Surface *s = reinterpret_cast<Mesh::Surface *>(p_surface);
+
+ s->version_lock.lock();
+
+ //there will never be more than, at much, 3 or 4 versions, so iterating is the fastest way
+
+ for (uint32_t i = 0; i < s->version_count; i++) {
+ if (s->versions[i].input_mask != p_input_mask) {
+ continue;
+ }
+ //we have this version, hooray
+ r_vertex_format = s->versions[i].vertex_format;
+ r_vertex_array_rd = s->versions[i].vertex_array;
+ s->version_lock.unlock();
+ return;
+ }
+
+ uint32_t version = s->version_count;
+ s->version_count++;
+ s->versions = (Mesh::Surface::Version *)memrealloc(s->versions, sizeof(Mesh::Surface::Version) * s->version_count);
+
+ _mesh_surface_generate_version_for_input_mask(s->versions[version], s, p_input_mask);
+
+ r_vertex_format = s->versions[version].vertex_format;
+ r_vertex_array_rd = s->versions[version].vertex_array;
+
+ s->version_lock.unlock();
+ }
+
+ _FORCE_INLINE_ void mesh_instance_surface_get_vertex_arrays_and_format(RID p_mesh_instance, uint32_t p_surface_index, uint32_t p_input_mask, RID &r_vertex_array_rd, RD::VertexFormatID &r_vertex_format) {
+ MeshInstance *mi = mesh_instance_owner.get_or_null(p_mesh_instance);
+ ERR_FAIL_COND(!mi);
+ Mesh *mesh = mi->mesh;
+ ERR_FAIL_UNSIGNED_INDEX(p_surface_index, mesh->surface_count);
+
+ MeshInstance::Surface *mis = &mi->surfaces[p_surface_index];
+ Mesh::Surface *s = mesh->surfaces[p_surface_index];
+
+ s->version_lock.lock();
+
+ //there will never be more than, at much, 3 or 4 versions, so iterating is the fastest way
+
+ for (uint32_t i = 0; i < mis->version_count; i++) {
+ if (mis->versions[i].input_mask != p_input_mask) {
+ continue;
+ }
+ //we have this version, hooray
+ r_vertex_format = mis->versions[i].vertex_format;
+ r_vertex_array_rd = mis->versions[i].vertex_array;
+ s->version_lock.unlock();
+ return;
+ }
+
+ uint32_t version = mis->version_count;
+ mis->version_count++;
+ mis->versions = (Mesh::Surface::Version *)memrealloc(mis->versions, sizeof(Mesh::Surface::Version) * mis->version_count);
+
+ _mesh_surface_generate_version_for_input_mask(mis->versions[version], s, p_input_mask, mis);
+
+ r_vertex_format = mis->versions[version].vertex_format;
+ r_vertex_array_rd = mis->versions[version].vertex_array;
+
+ s->version_lock.unlock();
+ }
+
+ _FORCE_INLINE_ RID mesh_get_default_rd_buffer(DefaultRDBuffer p_buffer) {
+ ERR_FAIL_INDEX_V(p_buffer, DEFAULT_RD_BUFFER_MAX, RID());
+ return mesh_default_rd_buffers[p_buffer];
+ }
+
+ _FORCE_INLINE_ uint32_t mesh_surface_get_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ Mesh::Surface *s = mesh->surfaces[p_surface_index];
+
+ if (s->render_pass != p_render_pass) {
+ (*r_index)++;
+ s->render_pass = p_render_pass;
+ s->render_index = *r_index;
+ }
+
+ return s->render_index;
+ }
+
+ _FORCE_INLINE_ uint32_t mesh_surface_get_multimesh_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ Mesh::Surface *s = mesh->surfaces[p_surface_index];
+
+ if (s->multimesh_render_pass != p_render_pass) {
+ (*r_index)++;
+ s->multimesh_render_pass = p_render_pass;
+ s->multimesh_render_index = *r_index;
+ }
+
+ return s->multimesh_render_index;
+ }
+
+ _FORCE_INLINE_ uint32_t mesh_surface_get_particles_render_pass_index(RID p_mesh, uint32_t p_surface_index, uint64_t p_render_pass, uint32_t *r_index) {
+ Mesh *mesh = mesh_owner.get_or_null(p_mesh);
+ Mesh::Surface *s = mesh->surfaces[p_surface_index];
+
+ if (s->particles_render_pass != p_render_pass) {
+ (*r_index)++;
+ s->particles_render_pass = p_render_pass;
+ s->particles_render_index = *r_index;
+ }
+
+ return s->particles_render_index;
+ }
+
+ /* MESH INSTANCE API */
+
+ MeshInstance *get_mesh_instance(RID p_rid) { return mesh_instance_owner.get_or_null(p_rid); };
+ bool owns_mesh_instance(RID p_rid) { return mesh_instance_owner.owns(p_rid); };
+
+ virtual RID mesh_instance_create(RID p_base) override;
+ virtual void mesh_instance_free(RID p_rid) override;
+ virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) override;
+ virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) override;
+ virtual void mesh_instance_check_for_update(RID p_mesh_instance) override;
+ virtual void update_mesh_instances() override;
+
+ /* MULTIMESH API */
+
+ MultiMesh *get_multimesh(RID p_rid) { return multimesh_owner.get_or_null(p_rid); };
+ bool owns_multimesh(RID p_rid) { return multimesh_owner.owns(p_rid); };
+
+ virtual RID multimesh_allocate() override;
+ virtual void multimesh_initialize(RID p_multimesh) override;
+ virtual void multimesh_free(RID p_rid) override;
+
+ virtual void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) override;
+ virtual int multimesh_get_instance_count(RID p_multimesh) const override;
+
+ virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) override;
+ virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) override;
+ virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) override;
+ virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) override;
+ virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) override;
+
+ virtual RID multimesh_get_mesh(RID p_multimesh) const override;
+
+ virtual Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const override;
+ virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const override;
+ virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const override;
+ virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const override;
+
+ virtual void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) override;
+ virtual Vector<float> multimesh_get_buffer(RID p_multimesh) const override;
+
+ virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) override;
+ virtual int multimesh_get_visible_instances(RID p_multimesh) const override;
+
+ virtual AABB multimesh_get_aabb(RID p_multimesh) const override;
+
+ void _update_dirty_multimeshes();
+
+ _FORCE_INLINE_ RS::MultimeshTransformFormat multimesh_get_transform_format(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ return multimesh->xform_format;
+ }
+
+ _FORCE_INLINE_ bool multimesh_uses_colors(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ return multimesh->uses_colors;
+ }
+
+ _FORCE_INLINE_ bool multimesh_uses_custom_data(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ return multimesh->uses_custom_data;
+ }
+
+ _FORCE_INLINE_ uint32_t multimesh_get_instances_to_draw(RID p_multimesh) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ if (multimesh->visible_instances >= 0) {
+ return multimesh->visible_instances;
+ }
+ return multimesh->instances;
+ }
+
+ _FORCE_INLINE_ RID multimesh_get_3d_uniform_set(RID p_multimesh, RID p_shader, uint32_t p_set) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ if (multimesh == nullptr) {
+ return RID();
+ }
+ if (!multimesh->uniform_set_3d.is_valid()) {
+ if (!multimesh->buffer.is_valid()) {
+ return RID();
+ }
+ Vector<RD::Uniform> uniforms;
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(multimesh->buffer);
+ uniforms.push_back(u);
+ multimesh->uniform_set_3d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
+ }
+
+ return multimesh->uniform_set_3d;
+ }
+
+ _FORCE_INLINE_ RID multimesh_get_2d_uniform_set(RID p_multimesh, RID p_shader, uint32_t p_set) const {
+ MultiMesh *multimesh = multimesh_owner.get_or_null(p_multimesh);
+ if (multimesh == nullptr) {
+ return RID();
+ }
+ if (!multimesh->uniform_set_2d.is_valid()) {
+ if (!multimesh->buffer.is_valid()) {
+ return RID();
+ }
+ Vector<RD::Uniform> uniforms;
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(multimesh->buffer);
+ uniforms.push_back(u);
+ multimesh->uniform_set_2d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
+ }
+
+ return multimesh->uniform_set_2d;
+ }
+
+ /* SKELETON API */
+
+ Skeleton *get_skeleton(RID p_rid) { return skeleton_owner.get_or_null(p_rid); };
+ bool owns_skeleton(RID p_rid) { return skeleton_owner.owns(p_rid); };
+
+ virtual RID skeleton_allocate() override;
+ virtual void skeleton_initialize(RID p_skeleton) override;
+ virtual void skeleton_free(RID p_rid) override;
+
+ virtual void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) override;
+ virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) override;
+ void skeleton_set_world_transform(RID p_skeleton, bool p_enable, const Transform3D &p_world_transform);
+ virtual int skeleton_get_bone_count(RID p_skeleton) const override;
+ virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) override;
+ virtual Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const override;
+ virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) override;
+ virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const override;
+
+ virtual void skeleton_update_dependency(RID p_skeleton, RendererStorage::DependencyTracker *p_instance) override;
+
+ void _update_dirty_skeletons();
+
+ _FORCE_INLINE_ bool skeleton_is_valid(RID p_skeleton) {
+ return skeleton_owner.get_or_null(p_skeleton) != nullptr;
+ }
+
+ _FORCE_INLINE_ RID skeleton_get_3d_uniform_set(RID p_skeleton, RID p_shader, uint32_t p_set) const {
+ Skeleton *skeleton = skeleton_owner.get_or_null(p_skeleton);
+ ERR_FAIL_COND_V(!skeleton, RID());
+ ERR_FAIL_COND_V(skeleton->size == 0, RID());
+ if (skeleton->use_2d) {
+ return RID();
+ }
+ if (!skeleton->uniform_set_3d.is_valid()) {
+ Vector<RD::Uniform> uniforms;
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(skeleton->buffer);
+ uniforms.push_back(u);
+ skeleton->uniform_set_3d = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
+ }
+
+ return skeleton->uniform_set_3d;
+ }
+};
+
+} // namespace RendererRD
+
+#endif // !MESH_STORAGE_RD_H
diff --git a/servers/rendering/renderer_rd/storage_rd/particles_storage.cpp b/servers/rendering/renderer_rd/storage_rd/particles_storage.cpp
new file mode 100644
index 0000000000..094120f908
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/particles_storage.cpp
@@ -0,0 +1,1893 @@
+/*************************************************************************/
+/* particles_storage.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "particles_storage.h"
+#include "servers/rendering/renderer_rd/renderer_compositor_rd.h"
+#include "servers/rendering/renderer_rd/renderer_storage_rd.h"
+#include "servers/rendering/rendering_server_globals.h"
+#include "texture_storage.h"
+
+using namespace RendererRD;
+
+ParticlesStorage *ParticlesStorage::singleton = nullptr;
+
+ParticlesStorage *ParticlesStorage::get_singleton() {
+ return singleton;
+}
+
+ParticlesStorage::ParticlesStorage() {
+ singleton = this;
+
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+ /* Particles */
+
+ {
+ // Initialize particles
+ Vector<String> particles_modes;
+ particles_modes.push_back("");
+ particles_shader.shader.initialize(particles_modes, String());
+ }
+ MaterialStorage::get_singleton()->shader_set_data_request_function(SHADER_TYPE_PARTICLES, _create_particles_shader_funcs);
+ MaterialStorage::get_singleton()->material_set_data_request_function(SHADER_TYPE_PARTICLES, _create_particles_material_funcs);
+
+ {
+ ShaderCompiler::DefaultIdentifierActions actions;
+
+ actions.renames["COLOR"] = "PARTICLE.color";
+ actions.renames["VELOCITY"] = "PARTICLE.velocity";
+ //actions.renames["MASS"] = "mass"; ?
+ actions.renames["ACTIVE"] = "particle_active";
+ actions.renames["RESTART"] = "restart";
+ actions.renames["CUSTOM"] = "PARTICLE.custom";
+ for (int i = 0; i < ParticlesShader::MAX_USERDATAS; i++) {
+ String udname = "USERDATA" + itos(i + 1);
+ actions.renames[udname] = "PARTICLE.userdata" + itos(i + 1);
+ actions.usage_defines[udname] = "#define USERDATA" + itos(i + 1) + "_USED\n";
+ }
+ actions.renames["TRANSFORM"] = "PARTICLE.xform";
+ actions.renames["TIME"] = "frame_history.data[0].time";
+ actions.renames["PI"] = _MKSTR(Math_PI);
+ actions.renames["TAU"] = _MKSTR(Math_TAU);
+ actions.renames["E"] = _MKSTR(Math_E);
+ actions.renames["LIFETIME"] = "params.lifetime";
+ actions.renames["DELTA"] = "local_delta";
+ actions.renames["NUMBER"] = "particle_number";
+ actions.renames["INDEX"] = "index";
+ //actions.renames["GRAVITY"] = "current_gravity";
+ actions.renames["EMISSION_TRANSFORM"] = "FRAME.emission_transform";
+ actions.renames["RANDOM_SEED"] = "FRAME.random_seed";
+ actions.renames["FLAG_EMIT_POSITION"] = "EMISSION_FLAG_HAS_POSITION";
+ actions.renames["FLAG_EMIT_ROT_SCALE"] = "EMISSION_FLAG_HAS_ROTATION_SCALE";
+ actions.renames["FLAG_EMIT_VELOCITY"] = "EMISSION_FLAG_HAS_VELOCITY";
+ actions.renames["FLAG_EMIT_COLOR"] = "EMISSION_FLAG_HAS_COLOR";
+ actions.renames["FLAG_EMIT_CUSTOM"] = "EMISSION_FLAG_HAS_CUSTOM";
+ actions.renames["RESTART_POSITION"] = "restart_position";
+ actions.renames["RESTART_ROT_SCALE"] = "restart_rotation_scale";
+ actions.renames["RESTART_VELOCITY"] = "restart_velocity";
+ actions.renames["RESTART_COLOR"] = "restart_color";
+ actions.renames["RESTART_CUSTOM"] = "restart_custom";
+ actions.renames["emit_subparticle"] = "emit_subparticle";
+ actions.renames["COLLIDED"] = "collided";
+ actions.renames["COLLISION_NORMAL"] = "collision_normal";
+ actions.renames["COLLISION_DEPTH"] = "collision_depth";
+ actions.renames["ATTRACTOR_FORCE"] = "attractor_force";
+
+ actions.render_mode_defines["disable_force"] = "#define DISABLE_FORCE\n";
+ actions.render_mode_defines["disable_velocity"] = "#define DISABLE_VELOCITY\n";
+ actions.render_mode_defines["keep_data"] = "#define ENABLE_KEEP_DATA\n";
+ actions.render_mode_defines["collision_use_scale"] = "#define USE_COLLISON_SCALE\n";
+
+ actions.sampler_array_name = "material_samplers";
+ actions.base_texture_binding_index = 1;
+ actions.texture_layout_set = 3;
+ actions.base_uniform_string = "material.";
+ actions.base_varying_index = 10;
+
+ actions.default_filter = ShaderLanguage::FILTER_LINEAR_MIPMAP;
+ actions.default_repeat = ShaderLanguage::REPEAT_ENABLE;
+ actions.global_buffer_array_variable = "global_variables.data";
+
+ particles_shader.compiler.initialize(actions);
+ }
+
+ {
+ // default material and shader for particles shader
+ particles_shader.default_shader = material_storage->shader_allocate();
+ material_storage->shader_initialize(particles_shader.default_shader);
+ material_storage->shader_set_code(particles_shader.default_shader, R"(
+// Default particles shader.
+
+shader_type particles;
+
+void process() {
+ COLOR = vec4(1.0);
+}
+)");
+ particles_shader.default_material = material_storage->material_allocate();
+ material_storage->material_initialize(particles_shader.default_material);
+ material_storage->material_set_shader(particles_shader.default_material, particles_shader.default_shader);
+
+ ParticlesMaterialData *md = static_cast<ParticlesMaterialData *>(material_storage->material_get_data(particles_shader.default_material, SHADER_TYPE_PARTICLES));
+ particles_shader.default_shader_rd = particles_shader.shader.version_get_shader(md->shader_data->version, 0);
+
+ Vector<RD::Uniform> uniforms;
+
+ {
+ Vector<RID> ids;
+ ids.resize(12);
+ RID *ids_ptr = ids.ptrw();
+ ids_ptr[0] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[1] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[2] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[3] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[4] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[5] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_DISABLED);
+ ids_ptr[6] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[7] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[8] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[9] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[10] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_NEAREST_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+ ids_ptr[11] = material_storage->sampler_rd_get_default(RS::CANVAS_ITEM_TEXTURE_FILTER_LINEAR_WITH_MIPMAPS_ANISOTROPIC, RS::CANVAS_ITEM_TEXTURE_REPEAT_ENABLED);
+
+ RD::Uniform u(RD::UNIFORM_TYPE_SAMPLER, 1, ids);
+ uniforms.push_back(u);
+ }
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 2;
+ u.append_id(material_storage->global_variables_get_storage_buffer());
+ uniforms.push_back(u);
+ }
+
+ particles_shader.base_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 0);
+ }
+
+ {
+ Vector<String> copy_modes;
+ for (int i = 0; i <= ParticlesShader::MAX_USERDATAS; i++) {
+ if (i == 0) {
+ copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n");
+ copy_modes.push_back("\n#define MODE_FILL_SORT_BUFFER\n#define USE_SORT_BUFFER\n");
+ copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n#define USE_SORT_BUFFER\n");
+ } else {
+ copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n#define USERDATA_COUNT " + itos(i) + "\n");
+ copy_modes.push_back("\n#define MODE_FILL_SORT_BUFFER\n#define USE_SORT_BUFFER\n#define USERDATA_COUNT " + itos(i) + "\n");
+ copy_modes.push_back("\n#define MODE_FILL_INSTANCES\n#define USE_SORT_BUFFER\n#define USERDATA_COUNT " + itos(i) + "\n");
+ }
+ }
+
+ particles_shader.copy_shader.initialize(copy_modes);
+
+ particles_shader.copy_shader_version = particles_shader.copy_shader.version_create();
+
+ for (int i = 0; i <= ParticlesShader::MAX_USERDATAS; i++) {
+ for (int j = 0; j < ParticlesShader::COPY_MODE_MAX; j++) {
+ particles_shader.copy_pipelines[i * ParticlesShader::COPY_MODE_MAX + j] = RD::get_singleton()->compute_pipeline_create(particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, i * ParticlesShader::COPY_MODE_MAX + j));
+ }
+ }
+ }
+}
+
+ParticlesStorage::~ParticlesStorage() {
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+ particles_shader.copy_shader.version_free(particles_shader.copy_shader_version);
+
+ material_storage->material_free(particles_shader.default_material);
+ material_storage->shader_free(particles_shader.default_shader);
+
+ singleton = nullptr;
+}
+
+/* PARTICLES */
+
+RID ParticlesStorage::particles_allocate() {
+ return particles_owner.allocate_rid();
+}
+
+void ParticlesStorage::particles_initialize(RID p_rid) {
+ particles_owner.initialize_rid(p_rid, Particles());
+}
+
+void ParticlesStorage::particles_free(RID p_rid) {
+ update_particles();
+ Particles *particles = particles_owner.get_or_null(p_rid);
+ particles->dependency.deleted_notify(p_rid);
+ _particles_free_data(particles);
+ particles_owner.free(p_rid);
+}
+
+void ParticlesStorage::particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ if (particles->mode == p_mode) {
+ return;
+ }
+
+ _particles_free_data(particles);
+
+ particles->mode = p_mode;
+}
+
+void ParticlesStorage::particles_set_emitting(RID p_particles, bool p_emitting) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->emitting = p_emitting;
+}
+
+bool ParticlesStorage::particles_get_emitting(RID p_particles) {
+ ERR_FAIL_COND_V_MSG(RSG::threaded, false, "This function should never be used with threaded rendering, as it stalls the renderer.");
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, false);
+
+ return particles->emitting;
+}
+
+void ParticlesStorage::_particles_free_data(Particles *particles) {
+ if (particles->particle_buffer.is_valid()) {
+ RD::get_singleton()->free(particles->particle_buffer);
+ particles->particle_buffer = RID();
+ RD::get_singleton()->free(particles->particle_instance_buffer);
+ particles->particle_instance_buffer = RID();
+ }
+
+ particles->userdata_count = 0;
+
+ if (particles->frame_params_buffer.is_valid()) {
+ RD::get_singleton()->free(particles->frame_params_buffer);
+ particles->frame_params_buffer = RID();
+ }
+ particles->particles_transforms_buffer_uniform_set = RID();
+
+ if (RD::get_singleton()->uniform_set_is_valid(particles->trail_bind_pose_uniform_set)) {
+ RD::get_singleton()->free(particles->trail_bind_pose_uniform_set);
+ }
+ particles->trail_bind_pose_uniform_set = RID();
+
+ if (particles->trail_bind_pose_buffer.is_valid()) {
+ RD::get_singleton()->free(particles->trail_bind_pose_buffer);
+ particles->trail_bind_pose_buffer = RID();
+ }
+ if (RD::get_singleton()->uniform_set_is_valid(particles->collision_textures_uniform_set)) {
+ RD::get_singleton()->free(particles->collision_textures_uniform_set);
+ }
+ particles->collision_textures_uniform_set = RID();
+
+ if (particles->particles_sort_buffer.is_valid()) {
+ RD::get_singleton()->free(particles->particles_sort_buffer);
+ particles->particles_sort_buffer = RID();
+ particles->particles_sort_uniform_set = RID();
+ }
+
+ if (particles->emission_buffer != nullptr) {
+ particles->emission_buffer = nullptr;
+ particles->emission_buffer_data.clear();
+ RD::get_singleton()->free(particles->emission_storage_buffer);
+ particles->emission_storage_buffer = RID();
+ }
+
+ if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
+ //will need to be re-created
+ RD::get_singleton()->free(particles->particles_material_uniform_set);
+ }
+ particles->particles_material_uniform_set = RID();
+}
+
+void ParticlesStorage::particles_set_amount(RID p_particles, int p_amount) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ if (particles->amount == p_amount) {
+ return;
+ }
+
+ _particles_free_data(particles);
+
+ particles->amount = p_amount;
+
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES);
+}
+
+void ParticlesStorage::particles_set_lifetime(RID p_particles, double p_lifetime) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->lifetime = p_lifetime;
+}
+
+void ParticlesStorage::particles_set_one_shot(RID p_particles, bool p_one_shot) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->one_shot = p_one_shot;
+}
+
+void ParticlesStorage::particles_set_pre_process_time(RID p_particles, double p_time) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->pre_process_time = p_time;
+}
+void ParticlesStorage::particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->explosiveness = p_ratio;
+}
+void ParticlesStorage::particles_set_randomness_ratio(RID p_particles, real_t p_ratio) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->randomness = p_ratio;
+}
+
+void ParticlesStorage::particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->custom_aabb = p_aabb;
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void ParticlesStorage::particles_set_speed_scale(RID p_particles, double p_scale) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->speed_scale = p_scale;
+}
+void ParticlesStorage::particles_set_use_local_coordinates(RID p_particles, bool p_enable) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->use_local_coords = p_enable;
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES);
+}
+
+void ParticlesStorage::particles_set_fixed_fps(RID p_particles, int p_fps) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->fixed_fps = p_fps;
+
+ _particles_free_data(particles);
+
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES);
+}
+
+void ParticlesStorage::particles_set_interpolate(RID p_particles, bool p_enable) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->interpolate = p_enable;
+}
+
+void ParticlesStorage::particles_set_fractional_delta(RID p_particles, bool p_enable) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->fractional_delta = p_enable;
+}
+
+void ParticlesStorage::particles_set_trails(RID p_particles, bool p_enable, double p_length) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ ERR_FAIL_COND(p_length < 0.1);
+ p_length = MIN(10.0, p_length);
+
+ particles->trails_enabled = p_enable;
+ particles->trail_length = p_length;
+
+ _particles_free_data(particles);
+
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES);
+}
+
+void ParticlesStorage::particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ if (particles->trail_bind_pose_buffer.is_valid() && particles->trail_bind_poses.size() != p_bind_poses.size()) {
+ _particles_free_data(particles);
+
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+ }
+ particles->trail_bind_poses = p_bind_poses;
+ particles->trail_bind_poses_dirty = true;
+
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES);
+}
+
+void ParticlesStorage::particles_set_collision_base_size(RID p_particles, real_t p_size) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->collision_base_size = p_size;
+}
+
+void ParticlesStorage::particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->transform_align = p_transform_align;
+}
+
+void ParticlesStorage::particles_set_process_material(RID p_particles, RID p_material) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->process_material = p_material;
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_PARTICLES); //the instance buffer may have changed
+}
+
+RID ParticlesStorage::particles_get_process_material(RID p_particles) const {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, RID());
+
+ return particles->process_material;
+}
+
+void ParticlesStorage::particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->draw_order = p_order;
+}
+
+void ParticlesStorage::particles_set_draw_passes(RID p_particles, int p_passes) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->draw_passes.resize(p_passes);
+}
+
+void ParticlesStorage::particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ ERR_FAIL_INDEX(p_pass, particles->draw_passes.size());
+ particles->draw_passes.write[p_pass] = p_mesh;
+}
+
+void ParticlesStorage::particles_restart(RID p_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->restart_request = true;
+}
+
+void ParticlesStorage::_particles_allocate_emission_buffer(Particles *particles) {
+ ERR_FAIL_COND(particles->emission_buffer != nullptr);
+
+ particles->emission_buffer_data.resize(sizeof(ParticleEmissionBuffer::Data) * particles->amount + sizeof(uint32_t) * 4);
+ memset(particles->emission_buffer_data.ptrw(), 0, particles->emission_buffer_data.size());
+ particles->emission_buffer = reinterpret_cast<ParticleEmissionBuffer *>(particles->emission_buffer_data.ptrw());
+ particles->emission_buffer->particle_max = particles->amount;
+
+ particles->emission_storage_buffer = RD::get_singleton()->storage_buffer_create(particles->emission_buffer_data.size(), particles->emission_buffer_data);
+
+ if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
+ //will need to be re-created
+ RD::get_singleton()->free(particles->particles_material_uniform_set);
+ particles->particles_material_uniform_set = RID();
+ }
+}
+
+void ParticlesStorage::particles_set_subemitter(RID p_particles, RID p_subemitter_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ ERR_FAIL_COND(p_particles == p_subemitter_particles);
+
+ particles->sub_emitter = p_subemitter_particles;
+
+ if (RD::get_singleton()->uniform_set_is_valid(particles->particles_material_uniform_set)) {
+ RD::get_singleton()->free(particles->particles_material_uniform_set);
+ particles->particles_material_uniform_set = RID(); //clear and force to re create sub emitting
+ }
+}
+
+void ParticlesStorage::particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ ERR_FAIL_COND(particles->amount == 0);
+
+ if (particles->emitting) {
+ particles->clear = true;
+ particles->emitting = false;
+ }
+
+ if (particles->emission_buffer == nullptr) {
+ _particles_allocate_emission_buffer(particles);
+ }
+
+ if (particles->inactive) {
+ //in case it was inactive, make active again
+ particles->inactive = false;
+ particles->inactive_time = 0;
+ }
+
+ int32_t idx = particles->emission_buffer->particle_count;
+ if (idx < particles->emission_buffer->particle_max) {
+ RendererStorageRD::store_transform(p_transform, particles->emission_buffer->data[idx].xform);
+
+ particles->emission_buffer->data[idx].velocity[0] = p_velocity.x;
+ particles->emission_buffer->data[idx].velocity[1] = p_velocity.y;
+ particles->emission_buffer->data[idx].velocity[2] = p_velocity.z;
+
+ particles->emission_buffer->data[idx].custom[0] = p_custom.r;
+ particles->emission_buffer->data[idx].custom[1] = p_custom.g;
+ particles->emission_buffer->data[idx].custom[2] = p_custom.b;
+ particles->emission_buffer->data[idx].custom[3] = p_custom.a;
+
+ particles->emission_buffer->data[idx].color[0] = p_color.r;
+ particles->emission_buffer->data[idx].color[1] = p_color.g;
+ particles->emission_buffer->data[idx].color[2] = p_color.b;
+ particles->emission_buffer->data[idx].color[3] = p_color.a;
+
+ particles->emission_buffer->data[idx].flags = p_emit_flags;
+ particles->emission_buffer->particle_count++;
+ }
+}
+
+void ParticlesStorage::particles_request_process(RID p_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ if (!particles->dirty) {
+ particles->dirty = true;
+ particles->update_list = particle_update_list;
+ particle_update_list = particles;
+ }
+}
+
+AABB ParticlesStorage::particles_get_current_aabb(RID p_particles) {
+ if (RSG::threaded) {
+ WARN_PRINT_ONCE("Calling this function with threaded rendering enabled stalls the renderer, use with care.");
+ }
+
+ const Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, AABB());
+
+ int total_amount = particles->amount;
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ total_amount *= particles->trail_bind_poses.size();
+ }
+
+ Vector<uint8_t> buffer = RD::get_singleton()->buffer_get_data(particles->particle_buffer);
+ ERR_FAIL_COND_V(buffer.size() != (int)(total_amount * sizeof(ParticleData)), AABB());
+
+ Transform3D inv = particles->emission_transform.affine_inverse();
+
+ AABB aabb;
+ if (buffer.size()) {
+ bool first = true;
+
+ const uint8_t *data_ptr = (const uint8_t *)buffer.ptr();
+ uint32_t particle_data_size = sizeof(ParticleData) + sizeof(float) * particles->userdata_count;
+
+ for (int i = 0; i < total_amount; i++) {
+ const ParticleData &particle_data = *(const ParticleData *)&data_ptr[particle_data_size * i];
+ if (particle_data.active) {
+ Vector3 pos = Vector3(particle_data.xform[12], particle_data.xform[13], particle_data.xform[14]);
+ if (!particles->use_local_coords) {
+ pos = inv.xform(pos);
+ }
+ if (first) {
+ aabb.position = pos;
+ first = false;
+ } else {
+ aabb.expand_to(pos);
+ }
+ }
+ }
+ }
+
+ float longest_axis_size = 0;
+ for (int i = 0; i < particles->draw_passes.size(); i++) {
+ if (particles->draw_passes[i].is_valid()) {
+ AABB maabb = MeshStorage::get_singleton()->mesh_get_aabb(particles->draw_passes[i], RID());
+ longest_axis_size = MAX(maabb.get_longest_axis_size(), longest_axis_size);
+ }
+ }
+
+ aabb.grow_by(longest_axis_size);
+
+ return aabb;
+}
+
+AABB ParticlesStorage::particles_get_aabb(RID p_particles) const {
+ const Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, AABB());
+
+ return particles->custom_aabb;
+}
+
+void ParticlesStorage::particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ particles->emission_transform = p_transform;
+}
+
+int ParticlesStorage::particles_get_draw_passes(RID p_particles) const {
+ const Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, 0);
+
+ return particles->draw_passes.size();
+}
+
+RID ParticlesStorage::particles_get_draw_pass_mesh(RID p_particles, int p_pass) const {
+ const Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, RID());
+ ERR_FAIL_INDEX_V(p_pass, particles->draw_passes.size(), RID());
+
+ return particles->draw_passes[p_pass];
+}
+
+void ParticlesStorage::particles_add_collision(RID p_particles, RID p_particles_collision_instance) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->collisions.insert(p_particles_collision_instance);
+}
+
+void ParticlesStorage::particles_remove_collision(RID p_particles, RID p_particles_collision_instance) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->collisions.erase(p_particles_collision_instance);
+}
+
+void ParticlesStorage::particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+ particles->has_sdf_collision = p_enable;
+ particles->sdf_collision_transform = p_xform;
+ particles->sdf_collision_to_screen = p_to_screen;
+ particles->sdf_collision_texture = p_texture;
+}
+
+void ParticlesStorage::_particles_process(Particles *p_particles, double p_delta) {
+ TextureStorage *texture_storage = TextureStorage::get_singleton();
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+ if (p_particles->particles_material_uniform_set.is_null() || !RD::get_singleton()->uniform_set_is_valid(p_particles->particles_material_uniform_set)) {
+ Vector<RD::Uniform> uniforms;
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(p_particles->frame_params_buffer);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 1;
+ u.append_id(p_particles->particle_buffer);
+ uniforms.push_back(u);
+ }
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 2;
+ if (p_particles->emission_storage_buffer.is_valid()) {
+ u.append_id(p_particles->emission_storage_buffer);
+ } else {
+ u.append_id(MeshStorage::get_singleton()->get_default_rd_storage_buffer());
+ }
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 3;
+ Particles *sub_emitter = particles_owner.get_or_null(p_particles->sub_emitter);
+ if (sub_emitter) {
+ if (sub_emitter->emission_buffer == nullptr) { //no emission buffer, allocate emission buffer
+ _particles_allocate_emission_buffer(sub_emitter);
+ }
+ u.append_id(sub_emitter->emission_storage_buffer);
+ } else {
+ u.append_id(MeshStorage::get_singleton()->get_default_rd_storage_buffer());
+ }
+ uniforms.push_back(u);
+ }
+
+ p_particles->particles_material_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 1);
+ }
+
+ double new_phase = Math::fmod((double)p_particles->phase + (p_delta / p_particles->lifetime) * p_particles->speed_scale, 1.0);
+
+ //move back history (if there is any)
+ for (uint32_t i = p_particles->frame_history.size() - 1; i > 0; i--) {
+ p_particles->frame_history[i] = p_particles->frame_history[i - 1];
+ }
+ //update current frame
+ ParticlesFrameParams &frame_params = p_particles->frame_history[0];
+
+ if (p_particles->clear) {
+ p_particles->cycle_number = 0;
+ p_particles->random_seed = Math::rand();
+ } else if (new_phase < p_particles->phase) {
+ if (p_particles->one_shot) {
+ p_particles->emitting = false;
+ }
+ p_particles->cycle_number++;
+ }
+
+ frame_params.emitting = p_particles->emitting;
+ frame_params.system_phase = new_phase;
+ frame_params.prev_system_phase = p_particles->phase;
+
+ p_particles->phase = new_phase;
+
+ frame_params.time = RendererCompositorRD::singleton->get_total_time();
+ frame_params.delta = p_delta * p_particles->speed_scale;
+ frame_params.random_seed = p_particles->random_seed;
+ frame_params.explosiveness = p_particles->explosiveness;
+ frame_params.randomness = p_particles->randomness;
+
+ if (p_particles->use_local_coords) {
+ RendererStorageRD::store_transform(Transform3D(), frame_params.emission_transform);
+ } else {
+ RendererStorageRD::store_transform(p_particles->emission_transform, frame_params.emission_transform);
+ }
+
+ frame_params.cycle = p_particles->cycle_number;
+ frame_params.frame = p_particles->frame_counter++;
+ frame_params.pad0 = 0;
+ frame_params.pad1 = 0;
+ frame_params.pad2 = 0;
+
+ { //collision and attractors
+
+ frame_params.collider_count = 0;
+ frame_params.attractor_count = 0;
+ frame_params.particle_size = p_particles->collision_base_size;
+
+ RID collision_3d_textures[ParticlesFrameParams::MAX_3D_TEXTURES];
+ RID collision_heightmap_texture;
+
+ Transform3D to_particles;
+ if (p_particles->use_local_coords) {
+ to_particles = p_particles->emission_transform.affine_inverse();
+ }
+
+ if (p_particles->has_sdf_collision && RD::get_singleton()->texture_is_valid(p_particles->sdf_collision_texture)) {
+ //2D collision
+
+ Transform2D xform = p_particles->sdf_collision_transform; //will use dotproduct manually so invert beforehand
+ Transform2D revert = xform.affine_inverse();
+ frame_params.collider_count = 1;
+ frame_params.colliders[0].transform[0] = xform.columns[0][0];
+ frame_params.colliders[0].transform[1] = xform.columns[0][1];
+ frame_params.colliders[0].transform[2] = 0;
+ frame_params.colliders[0].transform[3] = xform.columns[2][0];
+
+ frame_params.colliders[0].transform[4] = xform.columns[1][0];
+ frame_params.colliders[0].transform[5] = xform.columns[1][1];
+ frame_params.colliders[0].transform[6] = 0;
+ frame_params.colliders[0].transform[7] = xform.columns[2][1];
+
+ frame_params.colliders[0].transform[8] = revert.columns[0][0];
+ frame_params.colliders[0].transform[9] = revert.columns[0][1];
+ frame_params.colliders[0].transform[10] = 0;
+ frame_params.colliders[0].transform[11] = revert.columns[2][0];
+
+ frame_params.colliders[0].transform[12] = revert.columns[1][0];
+ frame_params.colliders[0].transform[13] = revert.columns[1][1];
+ frame_params.colliders[0].transform[14] = 0;
+ frame_params.colliders[0].transform[15] = revert.columns[2][1];
+
+ frame_params.colliders[0].extents[0] = p_particles->sdf_collision_to_screen.size.x;
+ frame_params.colliders[0].extents[1] = p_particles->sdf_collision_to_screen.size.y;
+ frame_params.colliders[0].extents[2] = p_particles->sdf_collision_to_screen.position.x;
+ frame_params.colliders[0].scale = p_particles->sdf_collision_to_screen.position.y;
+ frame_params.colliders[0].texture_index = 0;
+ frame_params.colliders[0].type = ParticlesFrameParams::COLLISION_TYPE_2D_SDF;
+
+ collision_heightmap_texture = p_particles->sdf_collision_texture;
+
+ //replace in all other history frames where used because parameters are no longer valid if screen moves
+ for (uint32_t i = 1; i < p_particles->frame_history.size(); i++) {
+ if (p_particles->frame_history[i].collider_count > 0 && p_particles->frame_history[i].colliders[0].type == ParticlesFrameParams::COLLISION_TYPE_2D_SDF) {
+ p_particles->frame_history[i].colliders[0] = frame_params.colliders[0];
+ }
+ }
+ }
+
+ uint32_t collision_3d_textures_used = 0;
+ for (const Set<RID>::Element *E = p_particles->collisions.front(); E; E = E->next()) {
+ ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(E->get());
+ if (!pci || !pci->active) {
+ continue;
+ }
+ ParticlesCollision *pc = particles_collision_owner.get_or_null(pci->collision);
+ ERR_CONTINUE(!pc);
+
+ Transform3D to_collider = pci->transform;
+ if (p_particles->use_local_coords) {
+ to_collider = to_particles * to_collider;
+ }
+ Vector3 scale = to_collider.basis.get_scale();
+ to_collider.basis.orthonormalize();
+
+ if (pc->type <= RS::PARTICLES_COLLISION_TYPE_VECTOR_FIELD_ATTRACT) {
+ //attractor
+ if (frame_params.attractor_count >= ParticlesFrameParams::MAX_ATTRACTORS) {
+ continue;
+ }
+
+ ParticlesFrameParams::Attractor &attr = frame_params.attractors[frame_params.attractor_count];
+
+ RendererStorageRD::store_transform(to_collider, attr.transform);
+ attr.strength = pc->attractor_strength;
+ attr.attenuation = pc->attractor_attenuation;
+ attr.directionality = pc->attractor_directionality;
+
+ switch (pc->type) {
+ case RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT: {
+ attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_SPHERE;
+ float radius = pc->radius;
+ radius *= (scale.x + scale.y + scale.z) / 3.0;
+ attr.extents[0] = radius;
+ attr.extents[1] = radius;
+ attr.extents[2] = radius;
+ } break;
+ case RS::PARTICLES_COLLISION_TYPE_BOX_ATTRACT: {
+ attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_BOX;
+ Vector3 extents = pc->extents * scale;
+ attr.extents[0] = extents.x;
+ attr.extents[1] = extents.y;
+ attr.extents[2] = extents.z;
+ } break;
+ case RS::PARTICLES_COLLISION_TYPE_VECTOR_FIELD_ATTRACT: {
+ if (collision_3d_textures_used >= ParticlesFrameParams::MAX_3D_TEXTURES) {
+ continue;
+ }
+ attr.type = ParticlesFrameParams::ATTRACTOR_TYPE_VECTOR_FIELD;
+ Vector3 extents = pc->extents * scale;
+ attr.extents[0] = extents.x;
+ attr.extents[1] = extents.y;
+ attr.extents[2] = extents.z;
+ attr.texture_index = collision_3d_textures_used;
+
+ collision_3d_textures[collision_3d_textures_used] = pc->field_texture;
+ collision_3d_textures_used++;
+ } break;
+ default: {
+ }
+ }
+
+ frame_params.attractor_count++;
+ } else {
+ //collider
+ if (frame_params.collider_count >= ParticlesFrameParams::MAX_COLLIDERS) {
+ continue;
+ }
+
+ ParticlesFrameParams::Collider &col = frame_params.colliders[frame_params.collider_count];
+
+ RendererStorageRD::store_transform(to_collider, col.transform);
+ switch (pc->type) {
+ case RS::PARTICLES_COLLISION_TYPE_SPHERE_COLLIDE: {
+ col.type = ParticlesFrameParams::COLLISION_TYPE_SPHERE;
+ float radius = pc->radius;
+ radius *= (scale.x + scale.y + scale.z) / 3.0;
+ col.extents[0] = radius;
+ col.extents[1] = radius;
+ col.extents[2] = radius;
+ } break;
+ case RS::PARTICLES_COLLISION_TYPE_BOX_COLLIDE: {
+ col.type = ParticlesFrameParams::COLLISION_TYPE_BOX;
+ Vector3 extents = pc->extents * scale;
+ col.extents[0] = extents.x;
+ col.extents[1] = extents.y;
+ col.extents[2] = extents.z;
+ } break;
+ case RS::PARTICLES_COLLISION_TYPE_SDF_COLLIDE: {
+ if (collision_3d_textures_used >= ParticlesFrameParams::MAX_3D_TEXTURES) {
+ continue;
+ }
+ col.type = ParticlesFrameParams::COLLISION_TYPE_SDF;
+ Vector3 extents = pc->extents * scale;
+ col.extents[0] = extents.x;
+ col.extents[1] = extents.y;
+ col.extents[2] = extents.z;
+ col.texture_index = collision_3d_textures_used;
+ col.scale = (scale.x + scale.y + scale.z) * 0.333333333333; //non uniform scale non supported
+
+ collision_3d_textures[collision_3d_textures_used] = pc->field_texture;
+ collision_3d_textures_used++;
+ } break;
+ case RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE: {
+ if (collision_heightmap_texture != RID()) { //already taken
+ continue;
+ }
+
+ col.type = ParticlesFrameParams::COLLISION_TYPE_HEIGHT_FIELD;
+ Vector3 extents = pc->extents * scale;
+ col.extents[0] = extents.x;
+ col.extents[1] = extents.y;
+ col.extents[2] = extents.z;
+ collision_heightmap_texture = pc->heightfield_texture;
+ } break;
+ default: {
+ }
+ }
+
+ frame_params.collider_count++;
+ }
+ }
+
+ bool different = false;
+ if (collision_3d_textures_used == p_particles->collision_3d_textures_used) {
+ for (int i = 0; i < ParticlesFrameParams::MAX_3D_TEXTURES; i++) {
+ if (p_particles->collision_3d_textures[i] != collision_3d_textures[i]) {
+ different = true;
+ break;
+ }
+ }
+ }
+
+ if (collision_heightmap_texture != p_particles->collision_heightmap_texture) {
+ different = true;
+ }
+
+ bool uniform_set_valid = RD::get_singleton()->uniform_set_is_valid(p_particles->collision_textures_uniform_set);
+
+ if (different || !uniform_set_valid) {
+ if (uniform_set_valid) {
+ RD::get_singleton()->free(p_particles->collision_textures_uniform_set);
+ }
+
+ Vector<RD::Uniform> uniforms;
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 0;
+ for (uint32_t i = 0; i < ParticlesFrameParams::MAX_3D_TEXTURES; i++) {
+ RID rd_tex;
+ if (i < collision_3d_textures_used) {
+ Texture *t = TextureStorage::get_singleton()->get_texture(collision_3d_textures[i]);
+ if (t && t->type == Texture::TYPE_3D) {
+ rd_tex = t->rd_texture;
+ }
+ }
+
+ if (rd_tex == RID()) {
+ rd_tex = texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_3D_WHITE);
+ }
+ u.append_id(rd_tex);
+ }
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 1;
+ if (collision_heightmap_texture.is_valid()) {
+ u.append_id(collision_heightmap_texture);
+ } else {
+ u.append_id(texture_storage->texture_rd_get_default(DEFAULT_RD_TEXTURE_BLACK));
+ }
+ uniforms.push_back(u);
+ }
+ p_particles->collision_textures_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.default_shader_rd, 2);
+ }
+ }
+
+ ParticlesShader::PushConstant push_constant;
+
+ int process_amount = p_particles->amount;
+
+ if (p_particles->trails_enabled && p_particles->trail_bind_poses.size() > 1) {
+ process_amount *= p_particles->trail_bind_poses.size();
+ }
+ push_constant.clear = p_particles->clear;
+ push_constant.total_particles = p_particles->amount;
+ push_constant.lifetime = p_particles->lifetime;
+ push_constant.trail_size = p_particles->trail_params.size();
+ push_constant.use_fractional_delta = p_particles->fractional_delta;
+ push_constant.sub_emitter_mode = !p_particles->emitting && p_particles->emission_buffer && (p_particles->emission_buffer->particle_count > 0 || p_particles->force_sub_emit);
+ push_constant.trail_pass = false;
+
+ p_particles->force_sub_emit = false; //reset
+
+ Particles *sub_emitter = particles_owner.get_or_null(p_particles->sub_emitter);
+
+ if (sub_emitter && sub_emitter->emission_storage_buffer.is_valid()) {
+ // print_line("updating subemitter buffer");
+ int32_t zero[4] = { 0, sub_emitter->amount, 0, 0 };
+ RD::get_singleton()->buffer_update(sub_emitter->emission_storage_buffer, 0, sizeof(uint32_t) * 4, zero);
+ push_constant.can_emit = true;
+
+ if (sub_emitter->emitting) {
+ sub_emitter->emitting = false;
+ sub_emitter->clear = true; //will need to clear if it was emitting, sorry
+ }
+ //make sure the sub emitter processes particles too
+ sub_emitter->inactive = false;
+ sub_emitter->inactive_time = 0;
+
+ sub_emitter->force_sub_emit = true;
+
+ } else {
+ push_constant.can_emit = false;
+ }
+
+ if (p_particles->emission_buffer && p_particles->emission_buffer->particle_count) {
+ RD::get_singleton()->buffer_update(p_particles->emission_storage_buffer, 0, sizeof(uint32_t) * 4 + sizeof(ParticleEmissionBuffer::Data) * p_particles->emission_buffer->particle_count, p_particles->emission_buffer);
+ p_particles->emission_buffer->particle_count = 0;
+ }
+
+ p_particles->clear = false;
+
+ if (p_particles->trail_params.size() > 1) {
+ //fill the trail params
+ for (uint32_t i = 0; i < p_particles->trail_params.size(); i++) {
+ uint32_t src_idx = i * p_particles->frame_history.size() / p_particles->trail_params.size();
+ p_particles->trail_params[i] = p_particles->frame_history[src_idx];
+ }
+ } else {
+ p_particles->trail_params[0] = p_particles->frame_history[0];
+ }
+
+ RD::get_singleton()->buffer_update(p_particles->frame_params_buffer, 0, sizeof(ParticlesFrameParams) * p_particles->trail_params.size(), p_particles->trail_params.ptr());
+
+ ParticlesMaterialData *m = static_cast<ParticlesMaterialData *>(material_storage->material_get_data(p_particles->process_material, SHADER_TYPE_PARTICLES));
+ if (!m) {
+ m = static_cast<ParticlesMaterialData *>(material_storage->material_get_data(particles_shader.default_material, SHADER_TYPE_PARTICLES));
+ }
+
+ ERR_FAIL_COND(!m);
+
+ p_particles->has_collision_cache = m->shader_data->uses_collision;
+
+ //todo should maybe compute all particle systems together?
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, m->shader_data->pipeline);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles_shader.base_uniform_set, 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, p_particles->particles_material_uniform_set, 1);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, p_particles->collision_textures_uniform_set, 2);
+
+ if (m->uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(m->uniform_set)) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, m->uniform_set, 3);
+ }
+
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(ParticlesShader::PushConstant));
+
+ if (p_particles->trails_enabled && p_particles->trail_bind_poses.size() > 1) {
+ //trails requires two passes in order to catch particle starts
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount / p_particles->trail_bind_poses.size(), 1, 1);
+
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+
+ push_constant.trail_pass = true;
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(ParticlesShader::PushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount - p_particles->amount, 1, 1);
+ } else {
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, process_amount, 1, 1);
+ }
+
+ RD::get_singleton()->compute_list_end();
+}
+
+void ParticlesStorage::particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND(!particles);
+
+ if (particles->draw_order != RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD_Y_TO_VELOCITY) {
+ return;
+ }
+
+ if (particles->particle_buffer.is_null()) {
+ return; //particles have not processed yet
+ }
+
+ bool do_sort = particles->draw_order == RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH;
+
+ //copy to sort buffer
+ if (do_sort && particles->particles_sort_buffer == RID()) {
+ uint32_t size = particles->amount;
+ if (size & 1) {
+ size++; //make multiple of 16
+ }
+ size *= sizeof(float) * 2;
+ particles->particles_sort_buffer = RD::get_singleton()->storage_buffer_create(size);
+
+ {
+ Vector<RD::Uniform> uniforms;
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(particles->particles_sort_buffer);
+ uniforms.push_back(u);
+ }
+
+ particles->particles_sort_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, ParticlesShader::COPY_MODE_FILL_SORT_BUFFER), 1);
+ }
+ }
+
+ ParticlesShader::CopyPushConstant copy_push_constant;
+
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ int fixed_fps = 60.0;
+ if (particles->fixed_fps > 0) {
+ fixed_fps = particles->fixed_fps;
+ }
+
+ copy_push_constant.trail_size = particles->trail_bind_poses.size();
+ copy_push_constant.trail_total = particles->frame_history.size();
+ copy_push_constant.frame_delta = 1.0 / fixed_fps;
+ } else {
+ copy_push_constant.trail_size = 1;
+ copy_push_constant.trail_total = 1;
+ copy_push_constant.frame_delta = 0.0;
+ }
+
+ copy_push_constant.order_by_lifetime = (particles->draw_order == RS::PARTICLES_DRAW_ORDER_LIFETIME || particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME);
+ copy_push_constant.lifetime_split = MIN(particles->amount * particles->phase, particles->amount - 1);
+ copy_push_constant.lifetime_reverse = particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME;
+
+ copy_push_constant.frame_remainder = particles->interpolate ? particles->frame_remainder : 0.0;
+ copy_push_constant.total_particles = particles->amount;
+ copy_push_constant.copy_mode_2d = false;
+
+ Vector3 axis = -p_axis; // cameras look to z negative
+
+ if (particles->use_local_coords) {
+ axis = particles->emission_transform.basis.xform_inv(axis).normalized();
+ }
+
+ copy_push_constant.sort_direction[0] = axis.x;
+ copy_push_constant.sort_direction[1] = axis.y;
+ copy_push_constant.sort_direction[2] = axis.z;
+
+ copy_push_constant.align_up[0] = p_up_axis.x;
+ copy_push_constant.align_up[1] = p_up_axis.y;
+ copy_push_constant.align_up[2] = p_up_axis.z;
+
+ copy_push_constant.align_mode = particles->transform_align;
+
+ if (do_sort) {
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[ParticlesShader::COPY_MODE_FILL_SORT_BUFFER + particles->userdata_count * ParticlesShader::COPY_MODE_MAX]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_sort_uniform_set, 1);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, particles->amount, 1, 1);
+
+ RD::get_singleton()->compute_list_end();
+ RendererStorageRD::base_singleton->get_effects()->sort_buffer(particles->particles_sort_uniform_set, particles->amount);
+ }
+
+ copy_push_constant.total_particles *= copy_push_constant.total_particles;
+
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+ uint32_t copy_pipeline = do_sort ? ParticlesShader::COPY_MODE_FILL_INSTANCES_WITH_SORT_BUFFER : ParticlesShader::COPY_MODE_FILL_INSTANCES;
+ copy_pipeline += particles->userdata_count * ParticlesShader::COPY_MODE_MAX;
+ copy_push_constant.copy_mode_2d = particles->mode == RS::PARTICLES_MODE_2D ? 1 : 0;
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[copy_pipeline]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
+ if (do_sort) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_sort_uniform_set, 1);
+ }
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
+
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, copy_push_constant.total_particles, 1, 1);
+
+ RD::get_singleton()->compute_list_end();
+}
+
+void ParticlesStorage::_particles_update_buffers(Particles *particles) {
+ uint32_t userdata_count = 0;
+
+ const Material *material = MaterialStorage::get_singleton()->get_material(particles->process_material);
+ if (material && material->shader && material->shader->data) {
+ const ParticlesShaderData *shader_data = static_cast<const ParticlesShaderData *>(material->shader->data);
+ userdata_count = shader_data->userdata_count;
+ }
+
+ if (userdata_count != particles->userdata_count) {
+ // Mismatch userdata, re-create buffers.
+ _particles_free_data(particles);
+ }
+
+ if (particles->amount > 0 && particles->particle_buffer.is_null()) {
+ int total_amount = particles->amount;
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ total_amount *= particles->trail_bind_poses.size();
+ }
+
+ uint32_t xform_size = particles->mode == RS::PARTICLES_MODE_2D ? 2 : 3;
+
+ particles->particle_buffer = RD::get_singleton()->storage_buffer_create((sizeof(ParticleData) + userdata_count * sizeof(float) * 4) * total_amount);
+
+ particles->userdata_count = userdata_count;
+
+ particles->particle_instance_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * 4 * (xform_size + 1 + 1) * total_amount);
+ //needs to clear it
+
+ {
+ Vector<RD::Uniform> uniforms;
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 1;
+ u.append_id(particles->particle_buffer);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 2;
+ u.append_id(particles->particle_instance_buffer);
+ uniforms.push_back(u);
+ }
+
+ particles->particles_copy_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, 0), 0);
+ }
+ }
+}
+void ParticlesStorage::update_particles() {
+ while (particle_update_list) {
+ //use transform feedback to process particles
+
+ Particles *particles = particle_update_list;
+
+ //take and remove
+ particle_update_list = particles->update_list;
+ particles->update_list = nullptr;
+ particles->dirty = false;
+
+ _particles_update_buffers(particles);
+
+ if (particles->restart_request) {
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+ particles->restart_request = false;
+ }
+
+ if (particles->inactive && !particles->emitting) {
+ //go next
+ continue;
+ }
+
+ if (particles->emitting) {
+ if (particles->inactive) {
+ //restart system from scratch
+ particles->prev_ticks = 0;
+ particles->phase = 0;
+ particles->prev_phase = 0;
+ particles->clear = true;
+ }
+ particles->inactive = false;
+ particles->inactive_time = 0;
+ } else {
+ particles->inactive_time += particles->speed_scale * RendererCompositorRD::singleton->get_frame_delta_time();
+ if (particles->inactive_time > particles->lifetime * 1.2) {
+ particles->inactive = true;
+ continue;
+ }
+ }
+
+#ifndef _MSC_VER
+#warning Should use display refresh rate for all this
+#endif
+
+ float screen_hz = 60;
+
+ int fixed_fps = 0;
+ if (particles->fixed_fps > 0) {
+ fixed_fps = particles->fixed_fps;
+ } else if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ fixed_fps = screen_hz;
+ }
+ {
+ //update trails
+ int history_size = 1;
+ int trail_steps = 1;
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ history_size = MAX(1, int(particles->trail_length * fixed_fps));
+ trail_steps = particles->trail_bind_poses.size();
+ }
+
+ if (uint32_t(history_size) != particles->frame_history.size()) {
+ particles->frame_history.resize(history_size);
+ memset(particles->frame_history.ptr(), 0, sizeof(ParticlesFrameParams) * history_size);
+ }
+
+ if (uint32_t(trail_steps) != particles->trail_params.size() || particles->frame_params_buffer.is_null()) {
+ particles->trail_params.resize(trail_steps);
+ if (particles->frame_params_buffer.is_valid()) {
+ RD::get_singleton()->free(particles->frame_params_buffer);
+ }
+ particles->frame_params_buffer = RD::get_singleton()->storage_buffer_create(sizeof(ParticlesFrameParams) * trail_steps);
+ }
+
+ if (particles->trail_bind_poses.size() > 1 && particles->trail_bind_pose_buffer.is_null()) {
+ particles->trail_bind_pose_buffer = RD::get_singleton()->storage_buffer_create(sizeof(float) * 16 * particles->trail_bind_poses.size());
+ particles->trail_bind_poses_dirty = true;
+ }
+
+ if (particles->trail_bind_pose_uniform_set.is_null()) {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ if (particles->trail_bind_pose_buffer.is_valid()) {
+ u.append_id(particles->trail_bind_pose_buffer);
+ } else {
+ u.append_id(MeshStorage::get_singleton()->get_default_rd_storage_buffer());
+ }
+ uniforms.push_back(u);
+ }
+
+ particles->trail_bind_pose_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, particles_shader.copy_shader.version_get_shader(particles_shader.copy_shader_version, 0), 2);
+ }
+
+ if (particles->trail_bind_pose_buffer.is_valid() && particles->trail_bind_poses_dirty) {
+ if (particles_shader.pose_update_buffer.size() < uint32_t(particles->trail_bind_poses.size()) * 16) {
+ particles_shader.pose_update_buffer.resize(particles->trail_bind_poses.size() * 16);
+ }
+
+ for (int i = 0; i < particles->trail_bind_poses.size(); i++) {
+ RendererStorageRD::store_transform(particles->trail_bind_poses[i], &particles_shader.pose_update_buffer[i * 16]);
+ }
+
+ RD::get_singleton()->buffer_update(particles->trail_bind_pose_buffer, 0, particles->trail_bind_poses.size() * 16 * sizeof(float), particles_shader.pose_update_buffer.ptr());
+ }
+ }
+
+ bool zero_time_scale = Engine::get_singleton()->get_time_scale() <= 0.0;
+
+ if (particles->clear && particles->pre_process_time > 0.0) {
+ double frame_time;
+ if (fixed_fps > 0) {
+ frame_time = 1.0 / fixed_fps;
+ } else {
+ frame_time = 1.0 / 30.0;
+ }
+
+ double todo = particles->pre_process_time;
+
+ while (todo >= 0) {
+ _particles_process(particles, frame_time);
+ todo -= frame_time;
+ }
+ }
+
+ if (fixed_fps > 0) {
+ double frame_time;
+ double decr;
+ if (zero_time_scale) {
+ frame_time = 0.0;
+ decr = 1.0 / fixed_fps;
+ } else {
+ frame_time = 1.0 / fixed_fps;
+ decr = frame_time;
+ }
+ double delta = RendererCompositorRD::singleton->get_frame_delta_time();
+ if (delta > 0.1) { //avoid recursive stalls if fps goes below 10
+ delta = 0.1;
+ } else if (delta <= 0.0) { //unlikely but..
+ delta = 0.001;
+ }
+ double todo = particles->frame_remainder + delta;
+
+ while (todo >= frame_time) {
+ _particles_process(particles, frame_time);
+ todo -= decr;
+ }
+
+ particles->frame_remainder = todo;
+
+ } else {
+ if (zero_time_scale) {
+ _particles_process(particles, 0.0);
+ } else {
+ _particles_process(particles, RendererCompositorRD::singleton->get_frame_delta_time());
+ }
+ }
+
+ //copy particles to instance buffer
+
+ if (particles->draw_order != RS::PARTICLES_DRAW_ORDER_VIEW_DEPTH && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD && particles->transform_align != RS::PARTICLES_TRANSFORM_ALIGN_Z_BILLBOARD_Y_TO_VELOCITY) {
+ //does not need view dependent operation, do copy here
+ ParticlesShader::CopyPushConstant copy_push_constant;
+
+ int total_amount = particles->amount;
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ total_amount *= particles->trail_bind_poses.size();
+ }
+
+ // Affect 2D only.
+ if (particles->use_local_coords) {
+ // In local mode, particle positions are calculated locally (relative to the node position)
+ // and they're also drawn locally.
+ // It works as expected, so we just pass an identity transform.
+ RendererStorageRD::store_transform(Transform3D(), copy_push_constant.inv_emission_transform);
+ } else {
+ // In global mode, particle positions are calculated globally (relative to the canvas origin)
+ // but they're drawn locally.
+ // So, we need to pass the inverse of the emission transform to bring the
+ // particles to local coordinates before drawing.
+ Transform3D inv = particles->emission_transform.affine_inverse();
+ RendererStorageRD::store_transform(inv, copy_push_constant.inv_emission_transform);
+ }
+
+ copy_push_constant.total_particles = total_amount;
+ copy_push_constant.frame_remainder = particles->interpolate ? particles->frame_remainder : 0.0;
+ copy_push_constant.align_mode = particles->transform_align;
+ copy_push_constant.align_up[0] = 0;
+ copy_push_constant.align_up[1] = 0;
+ copy_push_constant.align_up[2] = 0;
+
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ copy_push_constant.trail_size = particles->trail_bind_poses.size();
+ copy_push_constant.trail_total = particles->frame_history.size();
+ copy_push_constant.frame_delta = 1.0 / fixed_fps;
+ } else {
+ copy_push_constant.trail_size = 1;
+ copy_push_constant.trail_total = 1;
+ copy_push_constant.frame_delta = 0.0;
+ }
+
+ copy_push_constant.order_by_lifetime = (particles->draw_order == RS::PARTICLES_DRAW_ORDER_LIFETIME || particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME);
+ copy_push_constant.lifetime_split = MIN(particles->amount * particles->phase, particles->amount - 1);
+ copy_push_constant.lifetime_reverse = particles->draw_order == RS::PARTICLES_DRAW_ORDER_REVERSE_LIFETIME;
+
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+ copy_push_constant.copy_mode_2d = particles->mode == RS::PARTICLES_MODE_2D ? 1 : 0;
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, particles_shader.copy_pipelines[ParticlesShader::COPY_MODE_FILL_INSTANCES + particles->userdata_count * ParticlesShader::COPY_MODE_MAX]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->particles_copy_uniform_set, 0);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, particles->trail_bind_pose_uniform_set, 2);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &copy_push_constant, sizeof(ParticlesShader::CopyPushConstant));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, total_amount, 1, 1);
+
+ RD::get_singleton()->compute_list_end();
+ }
+
+ particles->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+ }
+}
+
+bool ParticlesStorage::particles_is_inactive(RID p_particles) const {
+ ERR_FAIL_COND_V_MSG(RSG::threaded, false, "This function should never be used with threaded rendering, as it stalls the renderer.");
+ const Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, false);
+ return !particles->emitting && particles->inactive;
+}
+
+/* Particles SHADER */
+
+void ParticlesStorage::ParticlesShaderData::set_code(const String &p_code) {
+ ParticlesStorage *particles_storage = ParticlesStorage::get_singleton();
+ //compile
+
+ code = p_code;
+ valid = false;
+ ubo_size = 0;
+ uniforms.clear();
+ uses_collision = false;
+
+ if (code.is_empty()) {
+ return; //just invalid, but no error
+ }
+
+ ShaderCompiler::GeneratedCode gen_code;
+ ShaderCompiler::IdentifierActions actions;
+ actions.entry_point_stages["start"] = ShaderCompiler::STAGE_COMPUTE;
+ actions.entry_point_stages["process"] = ShaderCompiler::STAGE_COMPUTE;
+
+ /*
+ uses_time = false;
+
+ actions.render_mode_flags["use_half_res_pass"] = &uses_half_res;
+ actions.render_mode_flags["use_quarter_res_pass"] = &uses_quarter_res;
+
+ actions.usage_flag_pointers["TIME"] = &uses_time;
+*/
+
+ actions.usage_flag_pointers["COLLIDED"] = &uses_collision;
+
+ userdata_count = 0;
+ for (uint32_t i = 0; i < ParticlesShader::MAX_USERDATAS; i++) {
+ userdatas_used[i] = false;
+ actions.usage_flag_pointers["USERDATA" + itos(i + 1)] = &userdatas_used[i];
+ }
+
+ actions.uniforms = &uniforms;
+
+ Error err = particles_storage->particles_shader.compiler.compile(RS::SHADER_PARTICLES, code, &actions, path, gen_code);
+ ERR_FAIL_COND_MSG(err != OK, "Shader compilation failed.");
+
+ if (version.is_null()) {
+ version = particles_storage->particles_shader.shader.version_create();
+ }
+
+ for (uint32_t i = 0; i < ParticlesShader::MAX_USERDATAS; i++) {
+ if (userdatas_used[i]) {
+ userdata_count++;
+ }
+ }
+
+ particles_storage->particles_shader.shader.version_set_compute_code(version, gen_code.code, gen_code.uniforms, gen_code.stage_globals[ShaderCompiler::STAGE_COMPUTE], gen_code.defines);
+ ERR_FAIL_COND(!particles_storage->particles_shader.shader.version_is_valid(version));
+
+ ubo_size = gen_code.uniform_total_size;
+ ubo_offsets = gen_code.uniform_offsets;
+ texture_uniforms = gen_code.texture_uniforms;
+
+ //update pipelines
+
+ pipeline = RD::get_singleton()->compute_pipeline_create(particles_storage->particles_shader.shader.version_get_shader(version, 0));
+
+ valid = true;
+}
+
+void ParticlesStorage::ParticlesShaderData::set_default_texture_param(const StringName &p_name, RID p_texture, int p_index) {
+ if (!p_texture.is_valid()) {
+ if (default_texture_params.has(p_name) && default_texture_params[p_name].has(p_index)) {
+ default_texture_params[p_name].erase(p_index);
+
+ if (default_texture_params[p_name].is_empty()) {
+ default_texture_params.erase(p_name);
+ }
+ }
+ } else {
+ if (!default_texture_params.has(p_name)) {
+ default_texture_params[p_name] = Map<int, RID>();
+ }
+ default_texture_params[p_name][p_index] = p_texture;
+ }
+}
+
+void ParticlesStorage::ParticlesShaderData::get_param_list(List<PropertyInfo> *p_param_list) const {
+ Map<int, StringName> order;
+
+ for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
+ if (E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_GLOBAL || E.value.scope == ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
+ continue;
+ }
+
+ if (E.value.texture_order >= 0) {
+ order[E.value.texture_order + 100000] = E.key;
+ } else {
+ order[E.value.order] = E.key;
+ }
+ }
+
+ for (const KeyValue<int, StringName> &E : order) {
+ PropertyInfo pi = ShaderLanguage::uniform_to_property_info(uniforms[E.value]);
+ pi.name = E.value;
+ p_param_list->push_back(pi);
+ }
+}
+
+void ParticlesStorage::ParticlesShaderData::get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const {
+ for (const KeyValue<StringName, ShaderLanguage::ShaderNode::Uniform> &E : uniforms) {
+ if (E.value.scope != ShaderLanguage::ShaderNode::Uniform::SCOPE_INSTANCE) {
+ continue;
+ }
+
+ RendererMaterialStorage::InstanceShaderParam p;
+ p.info = ShaderLanguage::uniform_to_property_info(E.value);
+ p.info.name = E.key; //supply name
+ p.index = E.value.instance_index;
+ p.default_value = ShaderLanguage::constant_value_to_variant(E.value.default_value, E.value.type, E.value.array_size, E.value.hint);
+ p_param_list->push_back(p);
+ }
+}
+
+bool ParticlesStorage::ParticlesShaderData::is_param_texture(const StringName &p_param) const {
+ if (!uniforms.has(p_param)) {
+ return false;
+ }
+
+ return uniforms[p_param].texture_order >= 0;
+}
+
+bool ParticlesStorage::ParticlesShaderData::is_animated() const {
+ return false;
+}
+
+bool ParticlesStorage::ParticlesShaderData::casts_shadows() const {
+ return false;
+}
+
+Variant ParticlesStorage::ParticlesShaderData::get_default_parameter(const StringName &p_parameter) const {
+ if (uniforms.has(p_parameter)) {
+ ShaderLanguage::ShaderNode::Uniform uniform = uniforms[p_parameter];
+ Vector<ShaderLanguage::ConstantNode::Value> default_value = uniform.default_value;
+ return ShaderLanguage::constant_value_to_variant(default_value, uniform.type, uniform.array_size, uniform.hint);
+ }
+ return Variant();
+}
+
+RS::ShaderNativeSourceCode ParticlesStorage::ParticlesShaderData::get_native_source_code() const {
+ return ParticlesStorage::get_singleton()->particles_shader.shader.version_get_native_source_code(version);
+}
+
+ParticlesStorage::ParticlesShaderData::~ParticlesShaderData() {
+ //pipeline variants will clear themselves if shader is gone
+ if (version.is_valid()) {
+ ParticlesStorage::get_singleton()->particles_shader.shader.version_free(version);
+ }
+}
+
+ShaderData *ParticlesStorage::_create_particles_shader_func() {
+ ParticlesShaderData *shader_data = memnew(ParticlesShaderData);
+ return shader_data;
+}
+
+bool ParticlesStorage::ParticlesMaterialData::update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty) {
+ return update_parameters_uniform_set(p_parameters, p_uniform_dirty, p_textures_dirty, shader_data->uniforms, shader_data->ubo_offsets.ptr(), shader_data->texture_uniforms, shader_data->default_texture_params, shader_data->ubo_size, uniform_set, ParticlesStorage::get_singleton()->particles_shader.shader.version_get_shader(shader_data->version, 0), 3);
+}
+
+ParticlesStorage::ParticlesMaterialData::~ParticlesMaterialData() {
+ free_parameters_uniform_set(uniform_set);
+}
+
+MaterialData *ParticlesStorage::_create_particles_material_func(ParticlesShaderData *p_shader) {
+ ParticlesMaterialData *material_data = memnew(ParticlesMaterialData);
+ material_data->shader_data = p_shader;
+ //update will happen later anyway so do nothing.
+ return material_data;
+}
+////////
+
+/* PARTICLES COLLISION API */
+
+RID ParticlesStorage::particles_collision_allocate() {
+ return particles_collision_owner.allocate_rid();
+}
+void ParticlesStorage::particles_collision_initialize(RID p_rid) {
+ particles_collision_owner.initialize_rid(p_rid, ParticlesCollision());
+}
+
+void ParticlesStorage::particles_collision_free(RID p_rid) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_rid);
+
+ if (particles_collision->heightfield_texture.is_valid()) {
+ RD::get_singleton()->free(particles_collision->heightfield_texture);
+ }
+ particles_collision->dependency.deleted_notify(p_rid);
+ particles_collision_owner.free(p_rid);
+}
+
+RID ParticlesStorage::particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND_V(!particles_collision, RID());
+ ERR_FAIL_COND_V(particles_collision->type != RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE, RID());
+
+ if (particles_collision->heightfield_texture == RID()) {
+ //create
+ const int resolutions[RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_MAX] = { 256, 512, 1024, 2048, 4096, 8192 };
+ Size2i size;
+ if (particles_collision->extents.x > particles_collision->extents.z) {
+ size.x = resolutions[particles_collision->heightfield_resolution];
+ size.y = int32_t(particles_collision->extents.z / particles_collision->extents.x * size.x);
+ } else {
+ size.y = resolutions[particles_collision->heightfield_resolution];
+ size.x = int32_t(particles_collision->extents.x / particles_collision->extents.z * size.y);
+ }
+
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_D32_SFLOAT;
+ tf.width = size.x;
+ tf.height = size.y;
+ tf.texture_type = RD::TEXTURE_TYPE_2D;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
+
+ particles_collision->heightfield_texture = RD::get_singleton()->texture_create(tf, RD::TextureView());
+
+ Vector<RID> fb_tex;
+ fb_tex.push_back(particles_collision->heightfield_texture);
+ particles_collision->heightfield_fb = RD::get_singleton()->framebuffer_create(fb_tex);
+ particles_collision->heightfield_fb_size = size;
+ }
+
+ return particles_collision->heightfield_fb;
+}
+
+void ParticlesStorage::particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ if (p_type == particles_collision->type) {
+ return;
+ }
+
+ if (particles_collision->heightfield_texture.is_valid()) {
+ RD::get_singleton()->free(particles_collision->heightfield_texture);
+ particles_collision->heightfield_texture = RID();
+ }
+ particles_collision->type = p_type;
+ particles_collision->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void ParticlesStorage::particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+ particles_collision->cull_mask = p_cull_mask;
+}
+
+void ParticlesStorage::particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->radius = p_radius;
+ particles_collision->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void ParticlesStorage::particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->extents = p_extents;
+ particles_collision->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void ParticlesStorage::particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->attractor_strength = p_strength;
+}
+
+void ParticlesStorage::particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->attractor_directionality = p_directionality;
+}
+
+void ParticlesStorage::particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->attractor_attenuation = p_curve;
+}
+
+void ParticlesStorage::particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+
+ particles_collision->field_texture = p_texture;
+}
+
+void ParticlesStorage::particles_collision_height_field_update(RID p_particles_collision) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+ particles_collision->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void ParticlesStorage::particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND(!particles_collision);
+ ERR_FAIL_INDEX(p_resolution, RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_MAX);
+
+ if (particles_collision->heightfield_resolution == p_resolution) {
+ return;
+ }
+
+ particles_collision->heightfield_resolution = p_resolution;
+
+ if (particles_collision->heightfield_texture.is_valid()) {
+ RD::get_singleton()->free(particles_collision->heightfield_texture);
+ particles_collision->heightfield_texture = RID();
+ }
+}
+
+AABB ParticlesStorage::particles_collision_get_aabb(RID p_particles_collision) const {
+ ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND_V(!particles_collision, AABB());
+
+ switch (particles_collision->type) {
+ case RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT:
+ case RS::PARTICLES_COLLISION_TYPE_SPHERE_COLLIDE: {
+ AABB aabb;
+ aabb.position = -Vector3(1, 1, 1) * particles_collision->radius;
+ aabb.size = Vector3(2, 2, 2) * particles_collision->radius;
+ return aabb;
+ }
+ default: {
+ AABB aabb;
+ aabb.position = -particles_collision->extents;
+ aabb.size = particles_collision->extents * 2;
+ return aabb;
+ }
+ }
+
+ return AABB();
+}
+
+Vector3 ParticlesStorage::particles_collision_get_extents(RID p_particles_collision) const {
+ const ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND_V(!particles_collision, Vector3());
+ return particles_collision->extents;
+}
+
+bool ParticlesStorage::particles_collision_is_heightfield(RID p_particles_collision) const {
+ const ParticlesCollision *particles_collision = particles_collision_owner.get_or_null(p_particles_collision);
+ ERR_FAIL_COND_V(!particles_collision, false);
+ return particles_collision->type == RS::PARTICLES_COLLISION_TYPE_HEIGHTFIELD_COLLIDE;
+}
+
+RID ParticlesStorage::particles_collision_instance_create(RID p_collision) {
+ ParticlesCollisionInstance pci;
+ pci.collision = p_collision;
+ return particles_collision_instance_owner.make_rid(pci);
+}
+
+void ParticlesStorage::particles_collision_instance_free(RID p_rid) {
+ particles_collision_instance_owner.free(p_rid);
+}
+
+void ParticlesStorage::particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) {
+ ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(p_collision_instance);
+ ERR_FAIL_COND(!pci);
+ pci->transform = p_transform;
+}
+
+void ParticlesStorage::particles_collision_instance_set_active(RID p_collision_instance, bool p_active) {
+ ParticlesCollisionInstance *pci = particles_collision_instance_owner.get_or_null(p_collision_instance);
+ ERR_FAIL_COND(!pci);
+ pci->active = p_active;
+}
diff --git a/servers/rendering/renderer_rd/storage_rd/particles_storage.h b/servers/rendering/renderer_rd/storage_rd/particles_storage.h
new file mode 100644
index 0000000000..c6480794c1
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/particles_storage.h
@@ -0,0 +1,564 @@
+/*************************************************************************/
+/* particles_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef PARTICLES_STORAGE_RD_H
+#define PARTICLES_STORAGE_RD_H
+
+#include "core/templates/local_vector.h"
+#include "core/templates/rid_owner.h"
+#include "core/templates/self_list.h"
+#include "servers/rendering/renderer_rd/shaders/particles.glsl.gen.h"
+#include "servers/rendering/renderer_rd/shaders/particles_copy.glsl.gen.h"
+#include "servers/rendering/renderer_rd/storage_rd/material_storage.h"
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering/shader_compiler.h"
+#include "servers/rendering/storage/particles_storage.h"
+
+namespace RendererRD {
+
+/* PARTICLES */
+
+struct ParticleData {
+ float xform[16];
+ float velocity[3];
+ uint32_t active;
+ float color[4];
+ float custom[3];
+ float lifetime;
+};
+
+struct ParticlesFrameParams {
+ enum {
+ MAX_ATTRACTORS = 32,
+ MAX_COLLIDERS = 32,
+ MAX_3D_TEXTURES = 7
+ };
+
+ enum AttractorType {
+ ATTRACTOR_TYPE_SPHERE,
+ ATTRACTOR_TYPE_BOX,
+ ATTRACTOR_TYPE_VECTOR_FIELD,
+ };
+
+ struct Attractor {
+ float transform[16];
+ float extents[3]; //exents or radius
+ uint32_t type;
+
+ uint32_t texture_index; //texture index for vector field
+ float strength;
+ float attenuation;
+ float directionality;
+ };
+
+ enum CollisionType {
+ COLLISION_TYPE_SPHERE,
+ COLLISION_TYPE_BOX,
+ COLLISION_TYPE_SDF,
+ COLLISION_TYPE_HEIGHT_FIELD,
+ COLLISION_TYPE_2D_SDF,
+
+ };
+
+ struct Collider {
+ float transform[16];
+ float extents[3]; //exents or radius
+ uint32_t type;
+
+ uint32_t texture_index; //texture index for vector field
+ real_t scale;
+ uint32_t pad[2];
+ };
+
+ uint32_t emitting;
+ float system_phase;
+ float prev_system_phase;
+ uint32_t cycle;
+
+ real_t explosiveness;
+ real_t randomness;
+ float time;
+ float delta;
+
+ uint32_t frame;
+ uint32_t pad0;
+ uint32_t pad1;
+ uint32_t pad2;
+
+ uint32_t random_seed;
+ uint32_t attractor_count;
+ uint32_t collider_count;
+ float particle_size;
+
+ float emission_transform[16];
+
+ Attractor attractors[MAX_ATTRACTORS];
+ Collider colliders[MAX_COLLIDERS];
+};
+
+struct ParticleEmissionBufferData {
+};
+
+struct ParticleEmissionBuffer {
+ struct Data {
+ float xform[16];
+ float velocity[3];
+ uint32_t flags;
+ float color[4];
+ float custom[4];
+ };
+
+ int32_t particle_count;
+ int32_t particle_max;
+ uint32_t pad1;
+ uint32_t pad2;
+ Data data[1]; //its 2020 and empty arrays are still non standard in C++
+};
+
+struct Particles {
+ RS::ParticlesMode mode = RS::PARTICLES_MODE_3D;
+ bool inactive = true;
+ double inactive_time = 0.0;
+ bool emitting = false;
+ bool one_shot = false;
+ int amount = 0;
+ double lifetime = 1.0;
+ double pre_process_time = 0.0;
+ real_t explosiveness = 0.0;
+ real_t randomness = 0.0;
+ bool restart_request = false;
+ AABB custom_aabb = AABB(Vector3(-4, -4, -4), Vector3(8, 8, 8));
+ bool use_local_coords = true;
+ bool has_collision_cache = false;
+
+ bool has_sdf_collision = false;
+ Transform2D sdf_collision_transform;
+ Rect2 sdf_collision_to_screen;
+ RID sdf_collision_texture;
+
+ RID process_material;
+ uint32_t frame_counter = 0;
+ RS::ParticlesTransformAlign transform_align = RS::PARTICLES_TRANSFORM_ALIGN_DISABLED;
+
+ RS::ParticlesDrawOrder draw_order = RS::PARTICLES_DRAW_ORDER_INDEX;
+
+ Vector<RID> draw_passes;
+ Vector<Transform3D> trail_bind_poses;
+ bool trail_bind_poses_dirty = false;
+ RID trail_bind_pose_buffer;
+ RID trail_bind_pose_uniform_set;
+
+ RID particle_buffer;
+ RID particle_instance_buffer;
+ RID frame_params_buffer;
+
+ uint32_t userdata_count = 0;
+
+ RID particles_material_uniform_set;
+ RID particles_copy_uniform_set;
+ RID particles_transforms_buffer_uniform_set;
+ RID collision_textures_uniform_set;
+
+ RID collision_3d_textures[ParticlesFrameParams::MAX_3D_TEXTURES];
+ uint32_t collision_3d_textures_used = 0;
+ RID collision_heightmap_texture;
+
+ RID particles_sort_buffer;
+ RID particles_sort_uniform_set;
+
+ bool dirty = false;
+ Particles *update_list = nullptr;
+
+ RID sub_emitter;
+
+ double phase = 0.0;
+ double prev_phase = 0.0;
+ uint64_t prev_ticks = 0;
+ uint32_t random_seed = 0;
+
+ uint32_t cycle_number = 0;
+
+ double speed_scale = 1.0;
+
+ int fixed_fps = 30;
+ bool interpolate = true;
+ bool fractional_delta = false;
+ double frame_remainder = 0;
+ real_t collision_base_size = 0.01;
+
+ bool clear = true;
+
+ bool force_sub_emit = false;
+
+ Transform3D emission_transform;
+
+ Vector<uint8_t> emission_buffer_data;
+
+ ParticleEmissionBuffer *emission_buffer = nullptr;
+ RID emission_storage_buffer;
+
+ Set<RID> collisions;
+
+ RendererStorage::Dependency dependency;
+
+ double trail_length = 1.0;
+ bool trails_enabled = false;
+ LocalVector<ParticlesFrameParams> frame_history;
+ LocalVector<ParticlesFrameParams> trail_params;
+
+ Particles() {
+ }
+};
+
+/* Particles Collision */
+
+struct ParticlesCollision {
+ RS::ParticlesCollisionType type = RS::PARTICLES_COLLISION_TYPE_SPHERE_ATTRACT;
+ uint32_t cull_mask = 0xFFFFFFFF;
+ float radius = 1.0;
+ Vector3 extents = Vector3(1, 1, 1);
+ float attractor_strength = 1.0;
+ float attractor_attenuation = 1.0;
+ float attractor_directionality = 0.0;
+ RID field_texture;
+ RID heightfield_texture;
+ RID heightfield_fb;
+ Size2i heightfield_fb_size;
+
+ RS::ParticlesCollisionHeightfieldResolution heightfield_resolution = RS::PARTICLES_COLLISION_HEIGHTFIELD_RESOLUTION_1024;
+
+ RendererStorage::Dependency dependency;
+};
+
+struct ParticlesCollisionInstance {
+ RID collision;
+ Transform3D transform;
+ bool active = false;
+};
+
+class ParticlesStorage : public RendererParticlesStorage {
+private:
+ static ParticlesStorage *singleton;
+
+ /* PARTICLES */
+
+ void _particles_process(Particles *p_particles, double p_delta);
+ void _particles_allocate_emission_buffer(Particles *particles);
+ void _particles_free_data(Particles *particles);
+ void _particles_update_buffers(Particles *particles);
+
+ struct ParticlesShader {
+ struct PushConstant {
+ float lifetime;
+ uint32_t clear;
+ uint32_t total_particles;
+ uint32_t trail_size;
+
+ uint32_t use_fractional_delta;
+ uint32_t sub_emitter_mode;
+ uint32_t can_emit;
+ uint32_t trail_pass;
+ };
+
+ ParticlesShaderRD shader;
+ ShaderCompiler compiler;
+
+ RID default_shader;
+ RID default_material;
+ RID default_shader_rd;
+
+ RID base_uniform_set;
+
+ struct CopyPushConstant {
+ float sort_direction[3];
+ uint32_t total_particles;
+
+ uint32_t trail_size;
+ uint32_t trail_total;
+ float frame_delta;
+ float frame_remainder;
+
+ float align_up[3];
+ uint32_t align_mode;
+
+ uint32_t order_by_lifetime;
+ uint32_t lifetime_split;
+ uint32_t lifetime_reverse;
+ uint32_t copy_mode_2d;
+
+ float inv_emission_transform[16];
+ };
+
+ enum {
+ MAX_USERDATAS = 6
+ };
+ enum {
+ COPY_MODE_FILL_INSTANCES,
+ COPY_MODE_FILL_SORT_BUFFER,
+ COPY_MODE_FILL_INSTANCES_WITH_SORT_BUFFER,
+ COPY_MODE_MAX,
+ };
+
+ ParticlesCopyShaderRD copy_shader;
+ RID copy_shader_version;
+ RID copy_pipelines[COPY_MODE_MAX * (MAX_USERDATAS + 1)];
+
+ LocalVector<float> pose_update_buffer;
+
+ } particles_shader;
+
+ Particles *particle_update_list = nullptr;
+
+ mutable RID_Owner<Particles, true> particles_owner;
+
+ /* Particle Shader */
+
+ struct ParticlesShaderData : public ShaderData {
+ bool valid = false;
+ RID version;
+ bool uses_collision = false;
+
+ Map<StringName, ShaderLanguage::ShaderNode::Uniform> uniforms;
+ Vector<ShaderCompiler::GeneratedCode::Texture> texture_uniforms;
+
+ Vector<uint32_t> ubo_offsets;
+ uint32_t ubo_size = 0;
+
+ String path;
+ String code;
+ Map<StringName, Map<int, RID>> default_texture_params;
+
+ RID pipeline;
+
+ bool uses_time = false;
+
+ bool userdatas_used[ParticlesShader::MAX_USERDATAS] = {};
+ uint32_t userdata_count = 0;
+
+ virtual void set_code(const String &p_Code);
+ virtual void set_default_texture_param(const StringName &p_name, RID p_texture, int p_index);
+ virtual void get_param_list(List<PropertyInfo> *p_param_list) const;
+ virtual void get_instance_param_list(List<RendererMaterialStorage::InstanceShaderParam> *p_param_list) const;
+ virtual bool is_param_texture(const StringName &p_param) const;
+ virtual bool is_animated() const;
+ virtual bool casts_shadows() const;
+ virtual Variant get_default_parameter(const StringName &p_parameter) const;
+ virtual RS::ShaderNativeSourceCode get_native_source_code() const;
+
+ ParticlesShaderData() {}
+ virtual ~ParticlesShaderData();
+ };
+
+ ShaderData *_create_particles_shader_func();
+ static ShaderData *_create_particles_shader_funcs() {
+ return ParticlesStorage::get_singleton()->_create_particles_shader_func();
+ }
+
+ struct ParticlesMaterialData : public MaterialData {
+ ParticlesShaderData *shader_data = nullptr;
+ RID uniform_set;
+
+ virtual void set_render_priority(int p_priority) {}
+ virtual void set_next_pass(RID p_pass) {}
+ virtual bool update_parameters(const Map<StringName, Variant> &p_parameters, bool p_uniform_dirty, bool p_textures_dirty);
+ virtual ~ParticlesMaterialData();
+ };
+
+ MaterialData *_create_particles_material_func(ParticlesShaderData *p_shader);
+ static MaterialData *_create_particles_material_funcs(ShaderData *p_shader) {
+ return ParticlesStorage::get_singleton()->_create_particles_material_func(static_cast<ParticlesShaderData *>(p_shader));
+ }
+
+ /* Particles Collision */
+
+ mutable RID_Owner<ParticlesCollision, true> particles_collision_owner;
+
+ mutable RID_Owner<ParticlesCollisionInstance> particles_collision_instance_owner;
+
+public:
+ static ParticlesStorage *get_singleton();
+
+ ParticlesStorage();
+ virtual ~ParticlesStorage();
+
+ /* PARTICLES */
+
+ Particles *get_particles(RID p_rid) { return particles_owner.get_or_null(p_rid); }
+ bool owns_particles(RID p_rid) { return particles_owner.owns(p_rid); }
+
+ virtual RID particles_allocate() override;
+ virtual void particles_initialize(RID p_particles_collision) override;
+ virtual void particles_free(RID p_rid) override;
+
+ virtual void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) override;
+ virtual void particles_set_emitting(RID p_particles, bool p_emitting) override;
+ virtual void particles_set_amount(RID p_particles, int p_amount) override;
+ virtual void particles_set_lifetime(RID p_particles, double p_lifetime) override;
+ virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) override;
+ virtual void particles_set_pre_process_time(RID p_particles, double p_time) override;
+ virtual void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) override;
+ virtual void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) override;
+ virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) override;
+ virtual void particles_set_speed_scale(RID p_particles, double p_scale) override;
+ virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) override;
+ virtual void particles_set_process_material(RID p_particles, RID p_material) override;
+ virtual RID particles_get_process_material(RID p_particles) const override;
+
+ virtual void particles_set_fixed_fps(RID p_particles, int p_fps) override;
+ virtual void particles_set_interpolate(RID p_particles, bool p_enable) override;
+ virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) override;
+ virtual void particles_set_collision_base_size(RID p_particles, real_t p_size) override;
+ virtual void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) override;
+
+ virtual void particles_set_trails(RID p_particles, bool p_enable, double p_length) override;
+ virtual void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) override;
+
+ virtual void particles_restart(RID p_particles) override;
+ virtual void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) override;
+
+ virtual void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) override;
+
+ virtual void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) override;
+
+ virtual void particles_set_draw_passes(RID p_particles, int p_count) override;
+ virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) override;
+
+ virtual void particles_request_process(RID p_particles) override;
+ virtual AABB particles_get_current_aabb(RID p_particles) override;
+ virtual AABB particles_get_aabb(RID p_particles) const override;
+
+ virtual void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) override;
+
+ virtual bool particles_get_emitting(RID p_particles) override;
+ virtual int particles_get_draw_passes(RID p_particles) const override;
+ virtual RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const override;
+
+ virtual void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) override;
+
+ virtual bool particles_is_inactive(RID p_particles) const override;
+
+ _FORCE_INLINE_ RS::ParticlesMode particles_get_mode(RID p_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, RS::PARTICLES_MODE_2D);
+ return particles->mode;
+ }
+
+ _FORCE_INLINE_ uint32_t particles_get_amount(RID p_particles, uint32_t &r_trail_divisor) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, 0);
+
+ if (particles->trails_enabled && particles->trail_bind_poses.size() > 1) {
+ r_trail_divisor = particles->trail_bind_poses.size();
+ } else {
+ r_trail_divisor = 1;
+ }
+
+ return particles->amount * r_trail_divisor;
+ }
+
+ _FORCE_INLINE_ bool particles_has_collision(RID p_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, 0);
+
+ return particles->has_collision_cache;
+ }
+
+ _FORCE_INLINE_ uint32_t particles_is_using_local_coords(RID p_particles) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, false);
+
+ return particles->use_local_coords;
+ }
+
+ _FORCE_INLINE_ RID particles_get_instance_buffer_uniform_set(RID p_particles, RID p_shader, uint32_t p_set) {
+ Particles *particles = particles_owner.get_or_null(p_particles);
+ ERR_FAIL_COND_V(!particles, RID());
+ if (particles->particles_transforms_buffer_uniform_set.is_null()) {
+ _particles_update_buffers(particles);
+
+ Vector<RD::Uniform> uniforms;
+
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_STORAGE_BUFFER;
+ u.binding = 0;
+ u.append_id(particles->particle_instance_buffer);
+ uniforms.push_back(u);
+ }
+
+ particles->particles_transforms_buffer_uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_shader, p_set);
+ }
+
+ return particles->particles_transforms_buffer_uniform_set;
+ }
+
+ virtual void particles_add_collision(RID p_particles, RID p_particles_collision_instance) override;
+ virtual void particles_remove_collision(RID p_particles, RID p_particles_collision_instance) override;
+ virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) override;
+
+ virtual void update_particles() override;
+
+ /* Particles Collision */
+
+ ParticlesCollision *get_particles_collision(RID p_rid) { return particles_collision_owner.get_or_null(p_rid); }
+ bool owns_particles_collision(RID p_rid) { return particles_collision_owner.owns(p_rid); }
+
+ virtual RID particles_collision_allocate() override;
+ virtual void particles_collision_initialize(RID p_particles_collision) override;
+ virtual void particles_collision_free(RID p_rid) override;
+
+ virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) override;
+ virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) override;
+ virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) override; //for spheres
+ virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) override; //for non-spheres
+ virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) override;
+ virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) override;
+ virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) override;
+ virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) override; //for SDF and vector field, heightfield is dynamic
+ virtual void particles_collision_height_field_update(RID p_particles_collision) override; //for SDF and vector field
+ virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) override; //for SDF and vector field
+ virtual AABB particles_collision_get_aabb(RID p_particles_collision) const override;
+ Vector3 particles_collision_get_extents(RID p_particles_collision) const;
+ virtual bool particles_collision_is_heightfield(RID p_particles_collision) const override;
+ virtual RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const override;
+
+ //used from 2D and 3D
+ ParticlesCollisionInstance *get_particles_collision_instance(RID p_rid) { return particles_collision_instance_owner.get_or_null(p_rid); }
+ bool owns_particles_collision_instance(RID p_rid) { return particles_collision_instance_owner.owns(p_rid); }
+
+ virtual RID particles_collision_instance_create(RID p_collision) override;
+ virtual void particles_collision_instance_free(RID p_rid) override;
+ virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) override;
+ virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) override;
+};
+
+} // namespace RendererRD
+
+#endif // !PARTICLES_STORAGE_RD_H
diff --git a/servers/rendering/renderer_rd/storage_rd/texture_storage.cpp b/servers/rendering/renderer_rd/storage_rd/texture_storage.cpp
new file mode 100644
index 0000000000..3b52a187f6
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/texture_storage.cpp
@@ -0,0 +1,2752 @@
+/*************************************************************************/
+/* texture_storage.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "texture_storage.h"
+
+#include "../renderer_storage_rd.h"
+
+using namespace RendererRD;
+
+///////////////////////////////////////////////////////////////////////////
+// CanvasTexture
+
+void CanvasTexture::clear_sets() {
+ if (cleared_cache) {
+ return;
+ }
+ for (int i = 1; i < RS::CANVAS_ITEM_TEXTURE_FILTER_MAX; i++) {
+ for (int j = 1; j < RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX; j++) {
+ if (RD::get_singleton()->uniform_set_is_valid(uniform_sets[i][j])) {
+ RD::get_singleton()->free(uniform_sets[i][j]);
+ uniform_sets[i][j] = RID();
+ }
+ }
+ }
+ cleared_cache = true;
+}
+
+CanvasTexture::~CanvasTexture() {
+ clear_sets();
+}
+
+///////////////////////////////////////////////////////////////////////////
+// Texture
+
+void Texture::cleanup() {
+ if (RD::get_singleton()->texture_is_valid(rd_texture_srgb)) {
+ //erase this first, as it's a dependency of the one below
+ RD::get_singleton()->free(rd_texture_srgb);
+ }
+ if (RD::get_singleton()->texture_is_valid(rd_texture)) {
+ RD::get_singleton()->free(rd_texture);
+ }
+ if (canvas_texture) {
+ memdelete(canvas_texture);
+ }
+}
+
+///////////////////////////////////////////////////////////////////////////
+// TextureStorage
+
+TextureStorage *TextureStorage::singleton = nullptr;
+
+TextureStorage *TextureStorage::get_singleton() {
+ return singleton;
+}
+
+TextureStorage::TextureStorage() {
+ singleton = this;
+
+ { //create default textures
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 255);
+ pv.set(i * 4 + 1, 255);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 128);
+ pv.set(i * 4 + 1, 128);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_NORMAL] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 255);
+ pv.set(i * 4 + 1, 128);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_ANISO] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+
+ {
+ RD::TextureFormat tf;
+ tf.format = RD::DATA_FORMAT_D16_UNORM;
+ tf.width = 4;
+ tf.height = 4;
+ tf.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
+ tf.texture_type = RD::TEXTURE_TYPE_2D;
+
+ Vector<uint8_t> sv;
+ sv.resize(16 * 2);
+ uint16_t *ptr = (uint16_t *)sv.ptrw();
+ for (int i = 0; i < 16; i++) {
+ ptr[i] = Math::make_half_float(1.0f);
+ }
+
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(sv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_DEPTH] = RD::get_singleton()->texture_create(tf, RD::TextureView(), vpv);
+ }
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 0);
+ }
+
+ default_rd_textures[DEFAULT_RD_TEXTURE_MULTIMESH_BUFFER] = RD::get_singleton()->texture_buffer_create(16, RD::DATA_FORMAT_R8G8B8A8_UNORM, pv);
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 0);
+ }
+
+ {
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UINT;
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_2D_UINT] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { //create default cubemap
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.array_layers = 6;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_CUBE_ARRAY;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 0);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ for (int i = 0; i < 6; i++) {
+ vpv.push_back(pv);
+ }
+ default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { //create default cubemap array
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.array_layers = 6;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_CUBE;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 0);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ for (int i = 0; i < 6; i++) {
+ vpv.push_back(pv);
+ }
+ default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { //create default cubemap white array
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.array_layers = 6;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_CUBE;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 255);
+ pv.set(i * 4 + 1, 255);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ for (int i = 0; i < 6; i++) {
+ vpv.push_back(pv);
+ }
+ default_rd_textures[DEFAULT_RD_TEXTURE_CUBEMAP_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { //create default 3D
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.depth = 4;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_3D;
+
+ Vector<uint8_t> pv;
+ pv.resize(64 * 4);
+ for (int i = 0; i < 64; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 0);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_3D_BLACK] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ for (int i = 0; i < 64; i++) {
+ pv.set(i * 4 + 0, 255);
+ pv.set(i * 4 + 1, 255);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_3D_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { //create default array
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.array_layers = 1;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 255);
+ pv.set(i * 4 + 1, 255);
+ pv.set(i * 4 + 2, 255);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ default_rd_textures[DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE] = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+ }
+
+ { // default atlas texture
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+
+ for (int i = 0; i < 16; i++) {
+ pv.set(i * 4 + 0, 0);
+ pv.set(i * 4 + 1, 0);
+ pv.set(i * 4 + 2, 0);
+ pv.set(i * 4 + 3, 255);
+ }
+
+ {
+ //take the chance and initialize decal atlas to something
+ Vector<Vector<uint8_t>> vpv;
+ vpv.push_back(pv);
+ decal_atlas.texture = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ decal_atlas.texture_srgb = decal_atlas.texture;
+ }
+ }
+
+ {
+ Vector<String> sdf_modes;
+ sdf_modes.push_back("\n#define MODE_LOAD\n");
+ sdf_modes.push_back("\n#define MODE_LOAD_SHRINK\n");
+ sdf_modes.push_back("\n#define MODE_PROCESS\n");
+ sdf_modes.push_back("\n#define MODE_PROCESS_OPTIMIZED\n");
+ sdf_modes.push_back("\n#define MODE_STORE\n");
+ sdf_modes.push_back("\n#define MODE_STORE_SHRINK\n");
+
+ rt_sdf.shader.initialize(sdf_modes);
+
+ rt_sdf.shader_version = rt_sdf.shader.version_create();
+
+ for (int i = 0; i < RenderTargetSDF::SHADER_MAX; i++) {
+ rt_sdf.pipelines[i] = RD::get_singleton()->compute_pipeline_create(rt_sdf.shader.version_get_shader(rt_sdf.shader_version, i));
+ }
+ }
+}
+
+TextureStorage::~TextureStorage() {
+ rt_sdf.shader.version_free(rt_sdf.shader_version);
+
+ if (decal_atlas.textures.size()) {
+ ERR_PRINT("Decal Atlas: " + itos(decal_atlas.textures.size()) + " textures were not removed from the atlas.");
+ }
+
+ if (decal_atlas.texture.is_valid()) {
+ RD::get_singleton()->free(decal_atlas.texture);
+ }
+
+ //def textures
+ for (int i = 0; i < DEFAULT_RD_TEXTURE_MAX; i++) {
+ if (default_rd_textures[i].is_valid()) {
+ RD::get_singleton()->free(default_rd_textures[i]);
+ }
+ }
+
+ singleton = nullptr;
+}
+
+bool TextureStorage::can_create_resources_async() const {
+ return true;
+}
+
+/* Canvas Texture API */
+
+RID TextureStorage::canvas_texture_allocate() {
+ return canvas_texture_owner.allocate_rid();
+}
+
+void TextureStorage::canvas_texture_initialize(RID p_rid) {
+ canvas_texture_owner.initialize_rid(p_rid);
+}
+
+void TextureStorage::canvas_texture_free(RID p_rid) {
+ canvas_texture_owner.free(p_rid);
+}
+
+void TextureStorage::canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) {
+ CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
+ ERR_FAIL_NULL(ct);
+
+ switch (p_channel) {
+ case RS::CANVAS_TEXTURE_CHANNEL_DIFFUSE: {
+ ct->diffuse = p_texture;
+ } break;
+ case RS::CANVAS_TEXTURE_CHANNEL_NORMAL: {
+ ct->normal_map = p_texture;
+ } break;
+ case RS::CANVAS_TEXTURE_CHANNEL_SPECULAR: {
+ ct->specular = p_texture;
+ } break;
+ }
+
+ ct->clear_sets();
+}
+
+void TextureStorage::canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_specular_color, float p_shininess) {
+ CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
+ ERR_FAIL_NULL(ct);
+
+ ct->specular_color.r = p_specular_color.r;
+ ct->specular_color.g = p_specular_color.g;
+ ct->specular_color.b = p_specular_color.b;
+ ct->specular_color.a = p_shininess;
+ ct->clear_sets();
+}
+
+void TextureStorage::canvas_texture_set_texture_filter(RID p_canvas_texture, RS::CanvasItemTextureFilter p_filter) {
+ CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
+ ERR_FAIL_NULL(ct);
+
+ ct->texture_filter = p_filter;
+ ct->clear_sets();
+}
+
+void TextureStorage::canvas_texture_set_texture_repeat(RID p_canvas_texture, RS::CanvasItemTextureRepeat p_repeat) {
+ CanvasTexture *ct = canvas_texture_owner.get_or_null(p_canvas_texture);
+ ERR_FAIL_NULL(ct);
+ ct->texture_repeat = p_repeat;
+ ct->clear_sets();
+}
+
+bool TextureStorage::canvas_texture_get_uniform_set(RID p_texture, RS::CanvasItemTextureFilter p_base_filter, RS::CanvasItemTextureRepeat p_base_repeat, RID p_base_shader, int p_base_set, RID &r_uniform_set, Size2i &r_size, Color &r_specular_shininess, bool &r_use_normal, bool &r_use_specular) {
+ MaterialStorage *material_storage = MaterialStorage::get_singleton();
+
+ CanvasTexture *ct = nullptr;
+ Texture *t = get_texture(p_texture);
+
+ // TODO once we have our texture storage split off we'll look into moving this code into canvas_texture
+
+ if (t) {
+ //regular texture
+ if (!t->canvas_texture) {
+ t->canvas_texture = memnew(CanvasTexture);
+ t->canvas_texture->diffuse = p_texture;
+ }
+
+ ct = t->canvas_texture;
+ } else {
+ ct = get_canvas_texture(p_texture);
+ }
+
+ if (!ct) {
+ return false; //invalid texture RID
+ }
+
+ RS::CanvasItemTextureFilter filter = ct->texture_filter != RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT ? ct->texture_filter : p_base_filter;
+ ERR_FAIL_COND_V(filter == RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT, false);
+
+ RS::CanvasItemTextureRepeat repeat = ct->texture_repeat != RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT ? ct->texture_repeat : p_base_repeat;
+ ERR_FAIL_COND_V(repeat == RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT, false);
+
+ RID uniform_set = ct->uniform_sets[filter][repeat];
+ if (!RD::get_singleton()->uniform_set_is_valid(uniform_set)) {
+ //create and update
+ Vector<RD::Uniform> uniforms;
+ { //diffuse
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 0;
+
+ t = get_texture(ct->diffuse);
+ if (!t) {
+ u.append_id(texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE));
+ ct->size_cache = Size2i(1, 1);
+ } else {
+ u.append_id(t->rd_texture);
+ ct->size_cache = Size2i(t->width_2d, t->height_2d);
+ }
+ uniforms.push_back(u);
+ }
+ { //normal
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 1;
+
+ t = get_texture(ct->normal_map);
+ if (!t) {
+ u.append_id(texture_rd_get_default(DEFAULT_RD_TEXTURE_NORMAL));
+ ct->use_normal_cache = false;
+ } else {
+ u.append_id(t->rd_texture);
+ ct->use_normal_cache = true;
+ }
+ uniforms.push_back(u);
+ }
+ { //specular
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_TEXTURE;
+ u.binding = 2;
+
+ t = get_texture(ct->specular);
+ if (!t) {
+ u.append_id(texture_rd_get_default(DEFAULT_RD_TEXTURE_WHITE));
+ ct->use_specular_cache = false;
+ } else {
+ u.append_id(t->rd_texture);
+ ct->use_specular_cache = true;
+ }
+ uniforms.push_back(u);
+ }
+ { //sampler
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_SAMPLER;
+ u.binding = 3;
+ u.append_id(material_storage->sampler_rd_get_default(filter, repeat));
+ uniforms.push_back(u);
+ }
+
+ uniform_set = RD::get_singleton()->uniform_set_create(uniforms, p_base_shader, p_base_set);
+ ct->uniform_sets[filter][repeat] = uniform_set;
+ ct->cleared_cache = false;
+ }
+
+ r_uniform_set = uniform_set;
+ r_size = ct->size_cache;
+ r_specular_shininess = ct->specular_color;
+ r_use_normal = ct->use_normal_cache;
+ r_use_specular = ct->use_specular_cache;
+
+ return true;
+}
+
+/* Texture API */
+
+RID TextureStorage::texture_allocate() {
+ return texture_owner.allocate_rid();
+}
+
+void TextureStorage::texture_free(RID p_texture) {
+ Texture *t = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!t);
+ ERR_FAIL_COND(t->is_render_target);
+
+ t->cleanup();
+
+ if (t->is_proxy && t->proxy_to.is_valid()) {
+ Texture *proxy_to = texture_owner.get_or_null(t->proxy_to);
+ if (proxy_to) {
+ proxy_to->proxies.erase(p_texture);
+ }
+ }
+
+ decal_atlas_remove_texture(p_texture);
+
+ for (int i = 0; i < t->proxies.size(); i++) {
+ Texture *p = texture_owner.get_or_null(t->proxies[i]);
+ ERR_CONTINUE(!p);
+ p->proxy_to = RID();
+ p->rd_texture = RID();
+ p->rd_texture_srgb = RID();
+ }
+
+ texture_owner.free(p_texture);
+}
+
+void TextureStorage::texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) {
+ TextureToRDFormat ret_format;
+ Ref<Image> image = _validate_texture_format(p_image, ret_format);
+
+ Texture texture;
+
+ texture.type = Texture::TYPE_2D;
+
+ texture.width = p_image->get_width();
+ texture.height = p_image->get_height();
+ texture.layers = 1;
+ texture.mipmaps = p_image->get_mipmap_count() + 1;
+ texture.depth = 1;
+ texture.format = p_image->get_format();
+ texture.validated_format = image->get_format();
+
+ texture.rd_type = RD::TEXTURE_TYPE_2D;
+ texture.rd_format = ret_format.format;
+ texture.rd_format_srgb = ret_format.format_srgb;
+
+ RD::TextureFormat rd_format;
+ RD::TextureView rd_view;
+ { //attempt register
+ rd_format.format = texture.rd_format;
+ rd_format.width = texture.width;
+ rd_format.height = texture.height;
+ rd_format.depth = 1;
+ rd_format.array_layers = 1;
+ rd_format.mipmaps = texture.mipmaps;
+ rd_format.texture_type = texture.rd_type;
+ rd_format.samples = RD::TEXTURE_SAMPLES_1;
+ rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_format.shareable_formats.push_back(texture.rd_format);
+ rd_format.shareable_formats.push_back(texture.rd_format_srgb);
+ }
+ }
+ {
+ rd_view.swizzle_r = ret_format.swizzle_r;
+ rd_view.swizzle_g = ret_format.swizzle_g;
+ rd_view.swizzle_b = ret_format.swizzle_b;
+ rd_view.swizzle_a = ret_format.swizzle_a;
+ }
+ Vector<uint8_t> data = image->get_data(); //use image data
+ Vector<Vector<uint8_t>> data_slices;
+ data_slices.push_back(data);
+ texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
+ ERR_FAIL_COND(texture.rd_texture.is_null());
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_view.format_override = texture.rd_format_srgb;
+ texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
+ if (texture.rd_texture_srgb.is_null()) {
+ RD::get_singleton()->free(texture.rd_texture);
+ ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
+ }
+ }
+
+ //used for 2D, overridable
+ texture.width_2d = texture.width;
+ texture.height_2d = texture.height;
+ texture.is_render_target = false;
+ texture.rd_view = rd_view;
+ texture.is_proxy = false;
+
+ texture_owner.initialize_rid(p_texture, texture);
+}
+
+void TextureStorage::texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) {
+ ERR_FAIL_COND(p_layers.size() == 0);
+
+ ERR_FAIL_COND(p_layered_type == RS::TEXTURE_LAYERED_CUBEMAP && p_layers.size() != 6);
+ ERR_FAIL_COND(p_layered_type == RS::TEXTURE_LAYERED_CUBEMAP_ARRAY && (p_layers.size() < 6 || (p_layers.size() % 6) != 0));
+
+ TextureToRDFormat ret_format;
+ Vector<Ref<Image>> images;
+ {
+ int valid_width = 0;
+ int valid_height = 0;
+ bool valid_mipmaps = false;
+ Image::Format valid_format = Image::FORMAT_MAX;
+
+ for (int i = 0; i < p_layers.size(); i++) {
+ ERR_FAIL_COND(p_layers[i]->is_empty());
+
+ if (i == 0) {
+ valid_width = p_layers[i]->get_width();
+ valid_height = p_layers[i]->get_height();
+ valid_format = p_layers[i]->get_format();
+ valid_mipmaps = p_layers[i]->has_mipmaps();
+ } else {
+ ERR_FAIL_COND(p_layers[i]->get_width() != valid_width);
+ ERR_FAIL_COND(p_layers[i]->get_height() != valid_height);
+ ERR_FAIL_COND(p_layers[i]->get_format() != valid_format);
+ ERR_FAIL_COND(p_layers[i]->has_mipmaps() != valid_mipmaps);
+ }
+
+ images.push_back(_validate_texture_format(p_layers[i], ret_format));
+ }
+ }
+
+ Texture texture;
+
+ texture.type = Texture::TYPE_LAYERED;
+ texture.layered_type = p_layered_type;
+
+ texture.width = p_layers[0]->get_width();
+ texture.height = p_layers[0]->get_height();
+ texture.layers = p_layers.size();
+ texture.mipmaps = p_layers[0]->get_mipmap_count() + 1;
+ texture.depth = 1;
+ texture.format = p_layers[0]->get_format();
+ texture.validated_format = images[0]->get_format();
+
+ switch (p_layered_type) {
+ case RS::TEXTURE_LAYERED_2D_ARRAY: {
+ texture.rd_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ } break;
+ case RS::TEXTURE_LAYERED_CUBEMAP: {
+ texture.rd_type = RD::TEXTURE_TYPE_CUBE;
+ } break;
+ case RS::TEXTURE_LAYERED_CUBEMAP_ARRAY: {
+ texture.rd_type = RD::TEXTURE_TYPE_CUBE_ARRAY;
+ } break;
+ }
+
+ texture.rd_format = ret_format.format;
+ texture.rd_format_srgb = ret_format.format_srgb;
+
+ RD::TextureFormat rd_format;
+ RD::TextureView rd_view;
+ { //attempt register
+ rd_format.format = texture.rd_format;
+ rd_format.width = texture.width;
+ rd_format.height = texture.height;
+ rd_format.depth = 1;
+ rd_format.array_layers = texture.layers;
+ rd_format.mipmaps = texture.mipmaps;
+ rd_format.texture_type = texture.rd_type;
+ rd_format.samples = RD::TEXTURE_SAMPLES_1;
+ rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_format.shareable_formats.push_back(texture.rd_format);
+ rd_format.shareable_formats.push_back(texture.rd_format_srgb);
+ }
+ }
+ {
+ rd_view.swizzle_r = ret_format.swizzle_r;
+ rd_view.swizzle_g = ret_format.swizzle_g;
+ rd_view.swizzle_b = ret_format.swizzle_b;
+ rd_view.swizzle_a = ret_format.swizzle_a;
+ }
+ Vector<Vector<uint8_t>> data_slices;
+ for (int i = 0; i < images.size(); i++) {
+ Vector<uint8_t> data = images[i]->get_data(); //use image data
+ data_slices.push_back(data);
+ }
+ texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
+ ERR_FAIL_COND(texture.rd_texture.is_null());
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_view.format_override = texture.rd_format_srgb;
+ texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
+ if (texture.rd_texture_srgb.is_null()) {
+ RD::get_singleton()->free(texture.rd_texture);
+ ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
+ }
+ }
+
+ //used for 2D, overridable
+ texture.width_2d = texture.width;
+ texture.height_2d = texture.height;
+ texture.is_render_target = false;
+ texture.rd_view = rd_view;
+ texture.is_proxy = false;
+
+ texture_owner.initialize_rid(p_texture, texture);
+}
+
+void TextureStorage::texture_3d_initialize(RID p_texture, Image::Format p_format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) {
+ ERR_FAIL_COND(p_data.size() == 0);
+
+ Image::Image3DValidateError verr = Image::validate_3d_image(p_format, p_width, p_height, p_depth, p_mipmaps, p_data);
+ if (verr != Image::VALIDATE_3D_OK) {
+ ERR_FAIL_MSG(Image::get_3d_image_validation_error_text(verr));
+ }
+
+ TextureToRDFormat ret_format;
+ Image::Format validated_format = Image::FORMAT_MAX;
+ Vector<uint8_t> all_data;
+ uint32_t mipmap_count = 0;
+ Vector<Texture::BufferSlice3D> slices;
+ {
+ Vector<Ref<Image>> images;
+ uint32_t all_data_size = 0;
+ images.resize(p_data.size());
+ for (int i = 0; i < p_data.size(); i++) {
+ TextureToRDFormat f;
+ images.write[i] = _validate_texture_format(p_data[i], f);
+ if (i == 0) {
+ ret_format = f;
+ validated_format = images[0]->get_format();
+ }
+
+ all_data_size += images[i]->get_data().size();
+ }
+
+ all_data.resize(all_data_size); //consolidate all data here
+ uint32_t offset = 0;
+ Size2i prev_size;
+ for (int i = 0; i < p_data.size(); i++) {
+ uint32_t s = images[i]->get_data().size();
+
+ memcpy(&all_data.write[offset], images[i]->get_data().ptr(), s);
+ {
+ Texture::BufferSlice3D slice;
+ slice.size.width = images[i]->get_width();
+ slice.size.height = images[i]->get_height();
+ slice.offset = offset;
+ slice.buffer_size = s;
+ slices.push_back(slice);
+ }
+ offset += s;
+
+ Size2i img_size(images[i]->get_width(), images[i]->get_height());
+ if (img_size != prev_size) {
+ mipmap_count++;
+ }
+ prev_size = img_size;
+ }
+ }
+
+ Texture texture;
+
+ texture.type = Texture::TYPE_3D;
+ texture.width = p_width;
+ texture.height = p_height;
+ texture.depth = p_depth;
+ texture.mipmaps = mipmap_count;
+ texture.format = p_data[0]->get_format();
+ texture.validated_format = validated_format;
+
+ texture.buffer_size_3d = all_data.size();
+ texture.buffer_slices_3d = slices;
+
+ texture.rd_type = RD::TEXTURE_TYPE_3D;
+ texture.rd_format = ret_format.format;
+ texture.rd_format_srgb = ret_format.format_srgb;
+
+ RD::TextureFormat rd_format;
+ RD::TextureView rd_view;
+ { //attempt register
+ rd_format.format = texture.rd_format;
+ rd_format.width = texture.width;
+ rd_format.height = texture.height;
+ rd_format.depth = texture.depth;
+ rd_format.array_layers = 1;
+ rd_format.mipmaps = texture.mipmaps;
+ rd_format.texture_type = texture.rd_type;
+ rd_format.samples = RD::TEXTURE_SAMPLES_1;
+ rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_format.shareable_formats.push_back(texture.rd_format);
+ rd_format.shareable_formats.push_back(texture.rd_format_srgb);
+ }
+ }
+ {
+ rd_view.swizzle_r = ret_format.swizzle_r;
+ rd_view.swizzle_g = ret_format.swizzle_g;
+ rd_view.swizzle_b = ret_format.swizzle_b;
+ rd_view.swizzle_a = ret_format.swizzle_a;
+ }
+ Vector<Vector<uint8_t>> data_slices;
+ data_slices.push_back(all_data); //one slice
+
+ texture.rd_texture = RD::get_singleton()->texture_create(rd_format, rd_view, data_slices);
+ ERR_FAIL_COND(texture.rd_texture.is_null());
+ if (texture.rd_format_srgb != RD::DATA_FORMAT_MAX) {
+ rd_view.format_override = texture.rd_format_srgb;
+ texture.rd_texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, texture.rd_texture);
+ if (texture.rd_texture_srgb.is_null()) {
+ RD::get_singleton()->free(texture.rd_texture);
+ ERR_FAIL_COND(texture.rd_texture_srgb.is_null());
+ }
+ }
+
+ //used for 2D, overridable
+ texture.width_2d = texture.width;
+ texture.height_2d = texture.height;
+ texture.is_render_target = false;
+ texture.rd_view = rd_view;
+ texture.is_proxy = false;
+
+ texture_owner.initialize_rid(p_texture, texture);
+}
+
+void TextureStorage::texture_proxy_initialize(RID p_texture, RID p_base) {
+ Texture *tex = texture_owner.get_or_null(p_base);
+ ERR_FAIL_COND(!tex);
+ Texture proxy_tex = *tex;
+
+ proxy_tex.rd_view.format_override = tex->rd_format;
+ proxy_tex.rd_texture = RD::get_singleton()->texture_create_shared(proxy_tex.rd_view, tex->rd_texture);
+ if (proxy_tex.rd_texture_srgb.is_valid()) {
+ proxy_tex.rd_view.format_override = tex->rd_format_srgb;
+ proxy_tex.rd_texture_srgb = RD::get_singleton()->texture_create_shared(proxy_tex.rd_view, tex->rd_texture);
+ }
+ proxy_tex.proxy_to = p_base;
+ proxy_tex.is_render_target = false;
+ proxy_tex.is_proxy = true;
+ proxy_tex.proxies.clear();
+
+ texture_owner.initialize_rid(p_texture, proxy_tex);
+
+ tex->proxies.push_back(p_texture);
+}
+
+void TextureStorage::_texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer, bool p_immediate) {
+ ERR_FAIL_COND(p_image.is_null() || p_image->is_empty());
+
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+ ERR_FAIL_COND(tex->is_render_target);
+ ERR_FAIL_COND(p_image->get_width() != tex->width || p_image->get_height() != tex->height);
+ ERR_FAIL_COND(p_image->get_format() != tex->format);
+
+ if (tex->type == Texture::TYPE_LAYERED) {
+ ERR_FAIL_INDEX(p_layer, tex->layers);
+ }
+
+#ifdef TOOLS_ENABLED
+ tex->image_cache_2d.unref();
+#endif
+ TextureToRDFormat f;
+ Ref<Image> validated = _validate_texture_format(p_image, f);
+
+ RD::get_singleton()->texture_update(tex->rd_texture, p_layer, validated->get_data());
+}
+
+void TextureStorage::texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer) {
+ _texture_2d_update(p_texture, p_image, p_layer, false);
+}
+
+void TextureStorage::texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+ ERR_FAIL_COND(tex->type != Texture::TYPE_3D);
+
+ Image::Image3DValidateError verr = Image::validate_3d_image(tex->format, tex->width, tex->height, tex->depth, tex->mipmaps > 1, p_data);
+ if (verr != Image::VALIDATE_3D_OK) {
+ ERR_FAIL_MSG(Image::get_3d_image_validation_error_text(verr));
+ }
+
+ Vector<uint8_t> all_data;
+ {
+ Vector<Ref<Image>> images;
+ uint32_t all_data_size = 0;
+ images.resize(p_data.size());
+ for (int i = 0; i < p_data.size(); i++) {
+ Ref<Image> image = p_data[i];
+ if (image->get_format() != tex->validated_format) {
+ image = image->duplicate();
+ image->convert(tex->validated_format);
+ }
+ all_data_size += images[i]->get_data().size();
+ images.push_back(image);
+ }
+
+ all_data.resize(all_data_size); //consolidate all data here
+ uint32_t offset = 0;
+
+ for (int i = 0; i < p_data.size(); i++) {
+ uint32_t s = images[i]->get_data().size();
+ memcpy(&all_data.write[offset], images[i]->get_data().ptr(), s);
+ offset += s;
+ }
+ }
+
+ RD::get_singleton()->texture_update(tex->rd_texture, 0, all_data);
+}
+
+void TextureStorage::texture_proxy_update(RID p_texture, RID p_proxy_to) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+ ERR_FAIL_COND(!tex->is_proxy);
+ Texture *proxy_to = texture_owner.get_or_null(p_proxy_to);
+ ERR_FAIL_COND(!proxy_to);
+ ERR_FAIL_COND(proxy_to->is_proxy);
+
+ if (tex->proxy_to.is_valid()) {
+ //unlink proxy
+ if (RD::get_singleton()->texture_is_valid(tex->rd_texture)) {
+ RD::get_singleton()->free(tex->rd_texture);
+ tex->rd_texture = RID();
+ }
+ if (RD::get_singleton()->texture_is_valid(tex->rd_texture_srgb)) {
+ RD::get_singleton()->free(tex->rd_texture_srgb);
+ tex->rd_texture_srgb = RID();
+ }
+ Texture *prev_tex = texture_owner.get_or_null(tex->proxy_to);
+ ERR_FAIL_COND(!prev_tex);
+ prev_tex->proxies.erase(p_texture);
+ }
+
+ *tex = *proxy_to;
+
+ tex->proxy_to = p_proxy_to;
+ tex->is_render_target = false;
+ tex->is_proxy = true;
+ tex->proxies.clear();
+ proxy_to->proxies.push_back(p_texture);
+
+ tex->rd_view.format_override = tex->rd_format;
+ tex->rd_texture = RD::get_singleton()->texture_create_shared(tex->rd_view, proxy_to->rd_texture);
+ if (tex->rd_texture_srgb.is_valid()) {
+ tex->rd_view.format_override = tex->rd_format_srgb;
+ tex->rd_texture_srgb = RD::get_singleton()->texture_create_shared(tex->rd_view, proxy_to->rd_texture);
+ }
+}
+
+//these two APIs can be used together or in combination with the others.
+void TextureStorage::texture_2d_placeholder_initialize(RID p_texture) {
+ //this could be better optimized to reuse an existing image , done this way
+ //for now to get it working
+ Ref<Image> image;
+ image.instantiate();
+ image->create(4, 4, false, Image::FORMAT_RGBA8);
+ image->fill(Color(1, 0, 1, 1));
+
+ texture_2d_initialize(p_texture, image);
+}
+
+void TextureStorage::texture_2d_layered_placeholder_initialize(RID p_texture, RS::TextureLayeredType p_layered_type) {
+ //this could be better optimized to reuse an existing image , done this way
+ //for now to get it working
+ Ref<Image> image;
+ image.instantiate();
+ image->create(4, 4, false, Image::FORMAT_RGBA8);
+ image->fill(Color(1, 0, 1, 1));
+
+ Vector<Ref<Image>> images;
+ if (p_layered_type == RS::TEXTURE_LAYERED_2D_ARRAY) {
+ images.push_back(image);
+ } else {
+ //cube
+ for (int i = 0; i < 6; i++) {
+ images.push_back(image);
+ }
+ }
+
+ texture_2d_layered_initialize(p_texture, images, p_layered_type);
+}
+
+void TextureStorage::texture_3d_placeholder_initialize(RID p_texture) {
+ //this could be better optimized to reuse an existing image , done this way
+ //for now to get it working
+ Ref<Image> image;
+ image.instantiate();
+ image->create(4, 4, false, Image::FORMAT_RGBA8);
+ image->fill(Color(1, 0, 1, 1));
+
+ Vector<Ref<Image>> images;
+ //cube
+ for (int i = 0; i < 4; i++) {
+ images.push_back(image);
+ }
+
+ texture_3d_initialize(p_texture, Image::FORMAT_RGBA8, 4, 4, 4, false, images);
+}
+
+Ref<Image> TextureStorage::texture_2d_get(RID p_texture) const {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND_V(!tex, Ref<Image>());
+
+#ifdef TOOLS_ENABLED
+ if (tex->image_cache_2d.is_valid() && !tex->is_render_target) {
+ return tex->image_cache_2d;
+ }
+#endif
+ Vector<uint8_t> data = RD::get_singleton()->texture_get_data(tex->rd_texture, 0);
+ ERR_FAIL_COND_V(data.size() == 0, Ref<Image>());
+ Ref<Image> image;
+ image.instantiate();
+ image->create(tex->width, tex->height, tex->mipmaps > 1, tex->validated_format, data);
+ ERR_FAIL_COND_V(image->is_empty(), Ref<Image>());
+ if (tex->format != tex->validated_format) {
+ image->convert(tex->format);
+ }
+
+#ifdef TOOLS_ENABLED
+ if (Engine::get_singleton()->is_editor_hint() && !tex->is_render_target) {
+ tex->image_cache_2d = image;
+ }
+#endif
+
+ return image;
+}
+
+Ref<Image> TextureStorage::texture_2d_layer_get(RID p_texture, int p_layer) const {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND_V(!tex, Ref<Image>());
+
+ Vector<uint8_t> data = RD::get_singleton()->texture_get_data(tex->rd_texture, p_layer);
+ ERR_FAIL_COND_V(data.size() == 0, Ref<Image>());
+ Ref<Image> image;
+ image.instantiate();
+ image->create(tex->width, tex->height, tex->mipmaps > 1, tex->validated_format, data);
+ ERR_FAIL_COND_V(image->is_empty(), Ref<Image>());
+ if (tex->format != tex->validated_format) {
+ image->convert(tex->format);
+ }
+
+ return image;
+}
+
+Vector<Ref<Image>> TextureStorage::texture_3d_get(RID p_texture) const {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND_V(!tex, Vector<Ref<Image>>());
+ ERR_FAIL_COND_V(tex->type != Texture::TYPE_3D, Vector<Ref<Image>>());
+
+ Vector<uint8_t> all_data = RD::get_singleton()->texture_get_data(tex->rd_texture, 0);
+
+ ERR_FAIL_COND_V(all_data.size() != (int)tex->buffer_size_3d, Vector<Ref<Image>>());
+
+ Vector<Ref<Image>> ret;
+
+ for (int i = 0; i < tex->buffer_slices_3d.size(); i++) {
+ const Texture::BufferSlice3D &bs = tex->buffer_slices_3d[i];
+ ERR_FAIL_COND_V(bs.offset >= (uint32_t)all_data.size(), Vector<Ref<Image>>());
+ ERR_FAIL_COND_V(bs.offset + bs.buffer_size > (uint32_t)all_data.size(), Vector<Ref<Image>>());
+ Vector<uint8_t> sub_region = all_data.slice(bs.offset, bs.offset + bs.buffer_size);
+
+ Ref<Image> img;
+ img.instantiate();
+ img->create(bs.size.width, bs.size.height, false, tex->validated_format, sub_region);
+ ERR_FAIL_COND_V(img->is_empty(), Vector<Ref<Image>>());
+ if (tex->format != tex->validated_format) {
+ img->convert(tex->format);
+ }
+
+ ret.push_back(img);
+ }
+
+ return ret;
+}
+
+void TextureStorage::texture_replace(RID p_texture, RID p_by_texture) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+ ERR_FAIL_COND(tex->proxy_to.is_valid()); //can't replace proxy
+ Texture *by_tex = texture_owner.get_or_null(p_by_texture);
+ ERR_FAIL_COND(!by_tex);
+ ERR_FAIL_COND(by_tex->proxy_to.is_valid()); //can't replace proxy
+
+ if (tex == by_tex) {
+ return;
+ }
+
+ if (tex->rd_texture_srgb.is_valid()) {
+ RD::get_singleton()->free(tex->rd_texture_srgb);
+ }
+ RD::get_singleton()->free(tex->rd_texture);
+
+ if (tex->canvas_texture) {
+ memdelete(tex->canvas_texture);
+ tex->canvas_texture = nullptr;
+ }
+
+ Vector<RID> proxies_to_update = tex->proxies;
+ Vector<RID> proxies_to_redirect = by_tex->proxies;
+
+ *tex = *by_tex;
+
+ tex->proxies = proxies_to_update; //restore proxies, so they can be updated
+
+ if (tex->canvas_texture) {
+ tex->canvas_texture->diffuse = p_texture; //update
+ }
+
+ for (int i = 0; i < proxies_to_update.size(); i++) {
+ texture_proxy_update(proxies_to_update[i], p_texture);
+ }
+ for (int i = 0; i < proxies_to_redirect.size(); i++) {
+ texture_proxy_update(proxies_to_redirect[i], p_texture);
+ }
+ //delete last, so proxies can be updated
+ texture_owner.free(p_by_texture);
+
+ decal_atlas_mark_dirty_on_texture(p_texture);
+}
+
+void TextureStorage::texture_set_size_override(RID p_texture, int p_width, int p_height) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+ ERR_FAIL_COND(tex->type != Texture::TYPE_2D);
+
+ tex->width_2d = p_width;
+ tex->height_2d = p_height;
+}
+
+void TextureStorage::texture_set_path(RID p_texture, const String &p_path) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+
+ tex->path = p_path;
+}
+
+String TextureStorage::texture_get_path(RID p_texture) const {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND_V(!tex, String());
+
+ return tex->path;
+}
+
+void TextureStorage::texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+
+ tex->detect_3d_callback_ud = p_userdata;
+ tex->detect_3d_callback = p_callback;
+}
+
+void TextureStorage::texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+
+ tex->detect_normal_callback_ud = p_userdata;
+ tex->detect_normal_callback = p_callback;
+}
+
+void TextureStorage::texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) {
+ Texture *tex = texture_owner.get_or_null(p_texture);
+ ERR_FAIL_COND(!tex);
+
+ tex->detect_roughness_callback_ud = p_userdata;
+ tex->detect_roughness_callback = p_callback;
+}
+
+void TextureStorage::texture_debug_usage(List<RS::TextureInfo> *r_info) {
+}
+
+void TextureStorage::texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) {
+}
+
+Size2 TextureStorage::texture_size_with_proxy(RID p_proxy) {
+ return texture_2d_get_size(p_proxy);
+}
+
+Ref<Image> TextureStorage::_validate_texture_format(const Ref<Image> &p_image, TextureToRDFormat &r_format) {
+ Ref<Image> image = p_image->duplicate();
+
+ switch (p_image->get_format()) {
+ case Image::FORMAT_L8: {
+ r_format.format = RD::DATA_FORMAT_R8_UNORM;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break; //luminance
+ case Image::FORMAT_LA8: {
+ r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_G;
+ } break; //luminance-alpha
+ case Image::FORMAT_R8: {
+ r_format.format = RD::DATA_FORMAT_R8_UNORM;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_RG8: {
+ r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_RGB8: {
+ //this format is not mandatory for specification, check if supported first
+ if (false && RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R8G8B8_UNORM, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT) && RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R8G8B8_SRGB, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_R8G8B8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8_SRGB;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break;
+ case Image::FORMAT_RGBA8: {
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break;
+ case Image::FORMAT_RGBA4444: {
+ r_format.format = RD::DATA_FORMAT_B4G4R4A4_UNORM_PACK16;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_B; //needs swizzle
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break;
+ case Image::FORMAT_RGB565: {
+ r_format.format = RD::DATA_FORMAT_B5G6R5_UNORM_PACK16;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break;
+ case Image::FORMAT_RF: {
+ r_format.format = RD::DATA_FORMAT_R32_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break; //float
+ case Image::FORMAT_RGF: {
+ r_format.format = RD::DATA_FORMAT_R32G32_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_RGBF: {
+ //this format is not mandatory for specification, check if supported first
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R32G32B32_SFLOAT, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_R32G32B32_SFLOAT;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+ image->convert(Image::FORMAT_RGBAF);
+ }
+
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_RGBAF: {
+ r_format.format = RD::DATA_FORMAT_R32G32B32A32_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+
+ } break;
+ case Image::FORMAT_RH: {
+ r_format.format = RD::DATA_FORMAT_R16_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break; //half float
+ case Image::FORMAT_RGH: {
+ r_format.format = RD::DATA_FORMAT_R16G16_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break;
+ case Image::FORMAT_RGBH: {
+ //this format is not mandatory for specification, check if supported first
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_R16G16B16_SFLOAT, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_R16G16B16_SFLOAT;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ image->convert(Image::FORMAT_RGBAH);
+ }
+
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_RGBAH: {
+ r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+
+ } break;
+ case Image::FORMAT_RGBE9995: {
+ r_format.format = RD::DATA_FORMAT_E5B9G9R9_UFLOAT_PACK32;
+#ifndef _MSC_VER
+#warning TODO need to make a function in Image to swap bits for this
+#endif
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_IDENTITY;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_IDENTITY;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_IDENTITY;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_IDENTITY;
+ } break;
+ case Image::FORMAT_DXT1: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC1_RGB_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC1_RGB_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_BC1_RGB_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break; //s3tc bc1
+ case Image::FORMAT_DXT3: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC2_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC2_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_BC2_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+
+ } break; //bc2
+ case Image::FORMAT_DXT5: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC3_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC3_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_BC3_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break; //bc3
+ case Image::FORMAT_RGTC_R: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC4_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC4_UNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8_UNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_R8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break;
+ case Image::FORMAT_RGTC_RG: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC5_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC5_UNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_RG8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break;
+ case Image::FORMAT_BPTC_RGBA: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC7_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC7_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_BC7_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+
+ } break; //btpc bc7
+ case Image::FORMAT_BPTC_RGBF: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC6H_SFLOAT_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC6H_SFLOAT_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBAH);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break; //float bc6h
+ case Image::FORMAT_BPTC_RGBFU: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC6H_UFLOAT_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC6H_UFLOAT_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R16G16B16A16_SFLOAT;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBAH);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break; //unsigned float bc6hu
+ case Image::FORMAT_ETC2_R11: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_EAC_R11_UNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8_UNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_R8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break; //etc2
+ case Image::FORMAT_ETC2_R11S: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11_SNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_EAC_R11_SNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8_SNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_R8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break; //signed: {} break; NOT srgb.
+ case Image::FORMAT_ETC2_RG11: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11G11_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_EAC_R11G11_UNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8_UNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_RG8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_ETC2_RG11S: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_EAC_R11G11_SNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_EAC_R11G11_SNORM_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8_SNORM;
+ image->decompress();
+ image->convert(Image::FORMAT_RG8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_ETC:
+ case Image::FORMAT_ETC2_RGB8: {
+ //ETC2 is backwards compatible with ETC1, and all modern platforms support it
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+
+ } break;
+ case Image::FORMAT_ETC2_RGBA8: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break;
+ case Image::FORMAT_ETC2_RGB8A1: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ } break;
+ case Image::FORMAT_ETC2_RA_AS_RG: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_A;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+ case Image::FORMAT_DXT5_RA_AS_RG: {
+ if (RD::get_singleton()->texture_is_format_supported_for_usage(RD::DATA_FORMAT_BC3_UNORM_BLOCK, RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_UPDATE_BIT)) {
+ r_format.format = RD::DATA_FORMAT_BC3_UNORM_BLOCK;
+ r_format.format_srgb = RD::DATA_FORMAT_BC3_SRGB_BLOCK;
+ } else {
+ //not supported, reconvert
+ r_format.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ r_format.format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ image->decompress();
+ image->convert(Image::FORMAT_RGBA8);
+ }
+ r_format.swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ r_format.swizzle_g = RD::TEXTURE_SWIZZLE_A;
+ r_format.swizzle_b = RD::TEXTURE_SWIZZLE_ZERO;
+ r_format.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ } break;
+
+ default: {
+ }
+ }
+
+ return image;
+}
+
+/* DECAL API */
+
+RID TextureStorage::decal_atlas_get_texture() const {
+ return decal_atlas.texture;
+}
+
+RID TextureStorage::decal_atlas_get_texture_srgb() const {
+ return decal_atlas.texture_srgb;
+}
+
+RID TextureStorage::decal_allocate() {
+ return decal_owner.allocate_rid();
+}
+
+void TextureStorage::decal_initialize(RID p_decal) {
+ decal_owner.initialize_rid(p_decal, Decal());
+}
+
+void TextureStorage::decal_free(RID p_rid) {
+ Decal *decal = decal_owner.get_or_null(p_rid);
+ for (int i = 0; i < RS::DECAL_TEXTURE_MAX; i++) {
+ if (decal->textures[i].is_valid() && owns_texture(decal->textures[i])) {
+ texture_remove_from_decal_atlas(decal->textures[i]);
+ }
+ }
+ decal->dependency.deleted_notify(p_rid);
+ decal_owner.free(p_rid);
+}
+
+void TextureStorage::decal_set_extents(RID p_decal, const Vector3 &p_extents) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->extents = p_extents;
+ decal->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void TextureStorage::decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ ERR_FAIL_INDEX(p_type, RS::DECAL_TEXTURE_MAX);
+
+ if (decal->textures[p_type] == p_texture) {
+ return;
+ }
+
+ ERR_FAIL_COND(p_texture.is_valid() && !owns_texture(p_texture));
+
+ if (decal->textures[p_type].is_valid() && owns_texture(decal->textures[p_type])) {
+ texture_remove_from_decal_atlas(decal->textures[p_type]);
+ }
+
+ decal->textures[p_type] = p_texture;
+
+ if (decal->textures[p_type].is_valid()) {
+ texture_add_to_decal_atlas(decal->textures[p_type]);
+ }
+
+ decal->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_DECAL);
+}
+
+void TextureStorage::decal_set_emission_energy(RID p_decal, float p_energy) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->emission_energy = p_energy;
+}
+
+void TextureStorage::decal_set_albedo_mix(RID p_decal, float p_mix) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->albedo_mix = p_mix;
+}
+
+void TextureStorage::decal_set_modulate(RID p_decal, const Color &p_modulate) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->modulate = p_modulate;
+}
+
+void TextureStorage::decal_set_cull_mask(RID p_decal, uint32_t p_layers) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->cull_mask = p_layers;
+ decal->dependency.changed_notify(RendererStorage::DEPENDENCY_CHANGED_AABB);
+}
+
+void TextureStorage::decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->distance_fade = p_enabled;
+ decal->distance_fade_begin = p_begin;
+ decal->distance_fade_length = p_length;
+}
+
+void TextureStorage::decal_set_fade(RID p_decal, float p_above, float p_below) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->upper_fade = p_above;
+ decal->lower_fade = p_below;
+}
+
+void TextureStorage::decal_set_normal_fade(RID p_decal, float p_fade) {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND(!decal);
+ decal->normal_fade = p_fade;
+}
+
+void TextureStorage::decal_atlas_mark_dirty_on_texture(RID p_texture) {
+ if (decal_atlas.textures.has(p_texture)) {
+ //belongs to decal atlas..
+
+ decal_atlas.dirty = true; //mark it dirty since it was most likely modified
+ }
+}
+
+void TextureStorage::decal_atlas_remove_texture(RID p_texture) {
+ if (decal_atlas.textures.has(p_texture)) {
+ decal_atlas.textures.erase(p_texture);
+ //there is not much a point of making it dirty, just let it be.
+ }
+}
+
+AABB TextureStorage::decal_get_aabb(RID p_decal) const {
+ Decal *decal = decal_owner.get_or_null(p_decal);
+ ERR_FAIL_COND_V(!decal, AABB());
+
+ return AABB(-decal->extents, decal->extents * 2.0);
+}
+
+void TextureStorage::update_decal_atlas() {
+ EffectsRD *effects = RendererStorageRD::base_singleton->get_effects();
+ ERR_FAIL_NULL(effects);
+
+ if (!decal_atlas.dirty) {
+ return; //nothing to do
+ }
+
+ decal_atlas.dirty = false;
+
+ if (decal_atlas.texture.is_valid()) {
+ RD::get_singleton()->free(decal_atlas.texture);
+ decal_atlas.texture = RID();
+ decal_atlas.texture_srgb = RID();
+ decal_atlas.texture_mipmaps.clear();
+ }
+
+ int border = 1 << decal_atlas.mipmaps;
+
+ if (decal_atlas.textures.size()) {
+ //generate atlas
+ Vector<DecalAtlas::SortItem> itemsv;
+ itemsv.resize(decal_atlas.textures.size());
+ int base_size = 8;
+ const RID *K = nullptr;
+
+ int idx = 0;
+ while ((K = decal_atlas.textures.next(K))) {
+ DecalAtlas::SortItem &si = itemsv.write[idx];
+
+ Texture *src_tex = get_texture(*K);
+
+ si.size.width = (src_tex->width / border) + 1;
+ si.size.height = (src_tex->height / border) + 1;
+ si.pixel_size = Size2i(src_tex->width, src_tex->height);
+
+ if (base_size < si.size.width) {
+ base_size = nearest_power_of_2_templated(si.size.width);
+ }
+
+ si.texture = *K;
+ idx++;
+ }
+
+ //sort items by size
+ itemsv.sort();
+
+ //attempt to create atlas
+ int item_count = itemsv.size();
+ DecalAtlas::SortItem *items = itemsv.ptrw();
+
+ int atlas_height = 0;
+
+ while (true) {
+ Vector<int> v_offsetsv;
+ v_offsetsv.resize(base_size);
+
+ int *v_offsets = v_offsetsv.ptrw();
+ memset(v_offsets, 0, sizeof(int) * base_size);
+
+ int max_height = 0;
+
+ for (int i = 0; i < item_count; i++) {
+ //best fit
+ DecalAtlas::SortItem &si = items[i];
+ int best_idx = -1;
+ int best_height = 0x7FFFFFFF;
+ for (int j = 0; j <= base_size - si.size.width; j++) {
+ int height = 0;
+ for (int k = 0; k < si.size.width; k++) {
+ int h = v_offsets[k + j];
+ if (h > height) {
+ height = h;
+ if (height > best_height) {
+ break; //already bad
+ }
+ }
+ }
+
+ if (height < best_height) {
+ best_height = height;
+ best_idx = j;
+ }
+ }
+
+ //update
+ for (int k = 0; k < si.size.width; k++) {
+ v_offsets[k + best_idx] = best_height + si.size.height;
+ }
+
+ si.pos.x = best_idx;
+ si.pos.y = best_height;
+
+ if (si.pos.y + si.size.height > max_height) {
+ max_height = si.pos.y + si.size.height;
+ }
+ }
+
+ if (max_height <= base_size * 2) {
+ atlas_height = max_height;
+ break; //good ratio, break;
+ }
+
+ base_size *= 2;
+ }
+
+ decal_atlas.size.width = base_size * border;
+ decal_atlas.size.height = nearest_power_of_2_templated(atlas_height * border);
+
+ for (int i = 0; i < item_count; i++) {
+ DecalAtlas::Texture *t = decal_atlas.textures.getptr(items[i].texture);
+ t->uv_rect.position = items[i].pos * border + Vector2i(border / 2, border / 2);
+ t->uv_rect.size = items[i].pixel_size;
+
+ t->uv_rect.position /= Size2(decal_atlas.size);
+ t->uv_rect.size /= Size2(decal_atlas.size);
+ }
+ } else {
+ //use border as size, so it at least has enough mipmaps
+ decal_atlas.size.width = border;
+ decal_atlas.size.height = border;
+ }
+
+ //blit textures
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = decal_atlas.size.width;
+ tformat.height = decal_atlas.size.height;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_TO_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D;
+ tformat.mipmaps = decal_atlas.mipmaps;
+ tformat.shareable_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_UNORM);
+ tformat.shareable_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_SRGB);
+
+ decal_atlas.texture = RD::get_singleton()->texture_create(tformat, RD::TextureView());
+ RD::get_singleton()->texture_clear(decal_atlas.texture, Color(0, 0, 0, 0), 0, decal_atlas.mipmaps, 0, 1);
+
+ {
+ //create the framebuffer
+
+ Size2i s = decal_atlas.size;
+
+ for (int i = 0; i < decal_atlas.mipmaps; i++) {
+ DecalAtlas::MipMap mm;
+ mm.texture = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), decal_atlas.texture, 0, i);
+ Vector<RID> fb;
+ fb.push_back(mm.texture);
+ mm.fb = RD::get_singleton()->framebuffer_create(fb);
+ mm.size = s;
+ decal_atlas.texture_mipmaps.push_back(mm);
+
+ s.width = MAX(1, s.width >> 1);
+ s.height = MAX(1, s.height >> 1);
+ }
+ {
+ //create the SRGB variant
+ RD::TextureView rd_view;
+ rd_view.format_override = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ decal_atlas.texture_srgb = RD::get_singleton()->texture_create_shared(rd_view, decal_atlas.texture);
+ }
+ }
+
+ RID prev_texture;
+ for (int i = 0; i < decal_atlas.texture_mipmaps.size(); i++) {
+ const DecalAtlas::MipMap &mm = decal_atlas.texture_mipmaps[i];
+
+ Color clear_color(0, 0, 0, 0);
+
+ if (decal_atlas.textures.size()) {
+ if (i == 0) {
+ Vector<Color> cc;
+ cc.push_back(clear_color);
+
+ RD::DrawListID draw_list = RD::get_singleton()->draw_list_begin(mm.fb, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_DROP, RD::FINAL_ACTION_DISCARD, cc);
+
+ const RID *K = nullptr;
+ while ((K = decal_atlas.textures.next(K))) {
+ DecalAtlas::Texture *t = decal_atlas.textures.getptr(*K);
+ Texture *src_tex = get_texture(*K);
+ effects->copy_to_atlas_fb(src_tex->rd_texture, mm.fb, t->uv_rect, draw_list, false, t->panorama_to_dp_users > 0);
+ }
+
+ RD::get_singleton()->draw_list_end();
+
+ prev_texture = mm.texture;
+ } else {
+ effects->copy_to_fb_rect(prev_texture, mm.fb, Rect2i(Point2i(), mm.size));
+ prev_texture = mm.texture;
+ }
+ } else {
+ RD::get_singleton()->texture_clear(mm.texture, clear_color, 0, 1, 0, 1);
+ }
+ }
+}
+
+void TextureStorage::texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp) {
+ if (!decal_atlas.textures.has(p_texture)) {
+ DecalAtlas::Texture t;
+ t.users = 1;
+ t.panorama_to_dp_users = p_panorama_to_dp ? 1 : 0;
+ decal_atlas.textures[p_texture] = t;
+ decal_atlas.dirty = true;
+ } else {
+ DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
+ t->users++;
+ if (p_panorama_to_dp) {
+ t->panorama_to_dp_users++;
+ }
+ }
+}
+
+void TextureStorage::texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp) {
+ DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
+ ERR_FAIL_COND(!t);
+ t->users--;
+ if (p_panorama_to_dp) {
+ ERR_FAIL_COND(t->panorama_to_dp_users == 0);
+ t->panorama_to_dp_users--;
+ }
+ if (t->users == 0) {
+ decal_atlas.textures.erase(p_texture);
+ //do not mark it dirty, there is no need to since it remains working
+ }
+}
+
+/* RENDER TARGET API */
+
+void TextureStorage::_clear_render_target(RenderTarget *rt) {
+ //free in reverse dependency order
+ if (rt->framebuffer.is_valid()) {
+ RD::get_singleton()->free(rt->framebuffer);
+ rt->framebuffer_uniform_set = RID(); //chain deleted
+ }
+
+ if (rt->color.is_valid()) {
+ RD::get_singleton()->free(rt->color);
+ }
+
+ if (rt->backbuffer.is_valid()) {
+ RD::get_singleton()->free(rt->backbuffer);
+ rt->backbuffer = RID();
+ rt->backbuffer_mipmaps.clear();
+ rt->backbuffer_uniform_set = RID(); //chain deleted
+ }
+
+ _render_target_clear_sdf(rt);
+
+ rt->framebuffer = RID();
+ rt->color = RID();
+}
+
+void TextureStorage::_update_render_target(RenderTarget *rt) {
+ if (rt->texture.is_null()) {
+ //create a placeholder until updated
+ rt->texture = texture_allocate();
+ texture_2d_placeholder_initialize(rt->texture);
+ Texture *tex = get_texture(rt->texture);
+ tex->is_render_target = true;
+ }
+
+ _clear_render_target(rt);
+
+ if (rt->size.width == 0 || rt->size.height == 0) {
+ return;
+ }
+ //until we implement support for HDR monitors (and render target is attached to screen), this is enough.
+ rt->color_format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ rt->color_format_srgb = RD::DATA_FORMAT_R8G8B8A8_SRGB;
+ rt->image_format = rt->flags[RENDER_TARGET_TRANSPARENT] ? Image::FORMAT_RGBA8 : Image::FORMAT_RGB8;
+
+ RD::TextureFormat rd_format;
+ RD::TextureView rd_view;
+ { //attempt register
+ rd_format.format = rt->color_format;
+ rd_format.width = rt->size.width;
+ rd_format.height = rt->size.height;
+ rd_format.depth = 1;
+ rd_format.array_layers = rt->view_count; // for stereo we create two (or more) layers, need to see if we can make fallback work like this too if we don't have multiview
+ rd_format.mipmaps = 1;
+ if (rd_format.array_layers > 1) { // why are we not using rt->texture_type ??
+ rd_format.texture_type = RD::TEXTURE_TYPE_2D_ARRAY;
+ } else {
+ rd_format.texture_type = RD::TEXTURE_TYPE_2D;
+ }
+ rd_format.samples = RD::TEXTURE_SAMPLES_1;
+ rd_format.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_CAN_COPY_FROM_BIT;
+ rd_format.shareable_formats.push_back(rt->color_format);
+ rd_format.shareable_formats.push_back(rt->color_format_srgb);
+ }
+
+ rt->color = RD::get_singleton()->texture_create(rd_format, rd_view);
+ ERR_FAIL_COND(rt->color.is_null());
+
+ Vector<RID> fb_textures;
+ fb_textures.push_back(rt->color);
+ rt->framebuffer = RD::get_singleton()->framebuffer_create(fb_textures, RenderingDevice::INVALID_ID, rt->view_count);
+ if (rt->framebuffer.is_null()) {
+ _clear_render_target(rt);
+ ERR_FAIL_COND(rt->framebuffer.is_null());
+ }
+
+ { //update texture
+
+ Texture *tex = get_texture(rt->texture);
+
+ //free existing textures
+ if (RD::get_singleton()->texture_is_valid(tex->rd_texture)) {
+ RD::get_singleton()->free(tex->rd_texture);
+ }
+ if (RD::get_singleton()->texture_is_valid(tex->rd_texture_srgb)) {
+ RD::get_singleton()->free(tex->rd_texture_srgb);
+ }
+
+ tex->rd_texture = RID();
+ tex->rd_texture_srgb = RID();
+
+ //create shared textures to the color buffer,
+ //so transparent can be supported
+ RD::TextureView view;
+ view.format_override = rt->color_format;
+ if (!rt->flags[RENDER_TARGET_TRANSPARENT]) {
+ view.swizzle_a = RD::TEXTURE_SWIZZLE_ONE;
+ }
+ tex->rd_texture = RD::get_singleton()->texture_create_shared(view, rt->color);
+ if (rt->color_format_srgb != RD::DATA_FORMAT_MAX) {
+ view.format_override = rt->color_format_srgb;
+ tex->rd_texture_srgb = RD::get_singleton()->texture_create_shared(view, rt->color);
+ }
+ tex->rd_view = view;
+ tex->width = rt->size.width;
+ tex->height = rt->size.height;
+ tex->width_2d = rt->size.width;
+ tex->height_2d = rt->size.height;
+ tex->rd_format = rt->color_format;
+ tex->rd_format_srgb = rt->color_format_srgb;
+ tex->format = rt->image_format;
+
+ Vector<RID> proxies = tex->proxies; //make a copy, since update may change it
+ for (int i = 0; i < proxies.size(); i++) {
+ texture_proxy_update(proxies[i], rt->texture);
+ }
+ }
+}
+
+void TextureStorage::_create_render_target_backbuffer(RenderTarget *rt) {
+ ERR_FAIL_COND(rt->backbuffer.is_valid());
+
+ uint32_t mipmaps_required = Image::get_image_required_mipmaps(rt->size.width, rt->size.height, Image::FORMAT_RGBA8);
+ RD::TextureFormat tf;
+ tf.format = rt->color_format;
+ tf.width = rt->size.width;
+ tf.height = rt->size.height;
+ tf.texture_type = RD::TEXTURE_TYPE_2D;
+ tf.usage_bits = RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | RD::TEXTURE_USAGE_STORAGE_BIT | RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_CAN_COPY_TO_BIT;
+ tf.mipmaps = mipmaps_required;
+
+ rt->backbuffer = RD::get_singleton()->texture_create(tf, RD::TextureView());
+ RD::get_singleton()->set_resource_name(rt->backbuffer, "Render Target Back Buffer");
+ rt->backbuffer_mipmap0 = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rt->backbuffer, 0, 0);
+ RD::get_singleton()->set_resource_name(rt->backbuffer_mipmap0, "Back Buffer slice mipmap 0");
+
+ {
+ Vector<RID> fb_tex;
+ fb_tex.push_back(rt->backbuffer_mipmap0);
+ rt->backbuffer_fb = RD::get_singleton()->framebuffer_create(fb_tex);
+ }
+
+ if (rt->framebuffer_uniform_set.is_valid() && RD::get_singleton()->uniform_set_is_valid(rt->framebuffer_uniform_set)) {
+ //the new one will require the backbuffer.
+ RD::get_singleton()->free(rt->framebuffer_uniform_set);
+ rt->framebuffer_uniform_set = RID();
+ }
+ //create mipmaps
+ for (uint32_t i = 1; i < mipmaps_required; i++) {
+ RID mipmap = RD::get_singleton()->texture_create_shared_from_slice(RD::TextureView(), rt->backbuffer, 0, i);
+ RD::get_singleton()->set_resource_name(mipmap, "Back Buffer slice mip: " + itos(i));
+
+ rt->backbuffer_mipmaps.push_back(mipmap);
+ }
+}
+
+RID TextureStorage::render_target_create() {
+ RenderTarget render_target;
+
+ render_target.was_used = false;
+ render_target.clear_requested = false;
+
+ for (int i = 0; i < RENDER_TARGET_FLAG_MAX; i++) {
+ render_target.flags[i] = false;
+ }
+ _update_render_target(&render_target);
+ return render_target_owner.make_rid(render_target);
+}
+
+void TextureStorage::render_target_free(RID p_rid) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_rid);
+
+ _clear_render_target(rt);
+
+ if (rt->texture.is_valid()) {
+ Texture *tex = get_texture(rt->texture);
+ tex->is_render_target = false;
+ texture_free(rt->texture);
+ }
+
+ render_target_owner.free(p_rid);
+}
+
+void TextureStorage::render_target_set_position(RID p_render_target, int p_x, int p_y) {
+ //unused for this render target
+}
+
+void TextureStorage::render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ if (rt->size.x != p_width || rt->size.y != p_height || rt->view_count != p_view_count) {
+ rt->size.x = p_width;
+ rt->size.y = p_height;
+ rt->view_count = p_view_count;
+ _update_render_target(rt);
+ }
+}
+
+RID TextureStorage::render_target_get_texture(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+
+ return rt->texture;
+}
+
+void TextureStorage::render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) {
+}
+
+void TextureStorage::render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->flags[p_flag] = p_value;
+ _update_render_target(rt);
+}
+
+bool TextureStorage::render_target_was_used(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, false);
+ return rt->was_used;
+}
+
+void TextureStorage::render_target_set_as_unused(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->was_used = false;
+}
+
+Size2 TextureStorage::render_target_get_size(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, Size2());
+
+ return rt->size;
+}
+
+RID TextureStorage::render_target_get_rd_framebuffer(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+
+ return rt->framebuffer;
+}
+
+RID TextureStorage::render_target_get_rd_texture(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+
+ return rt->color;
+}
+
+RID TextureStorage::render_target_get_rd_backbuffer(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+ return rt->backbuffer;
+}
+
+RID TextureStorage::render_target_get_rd_backbuffer_framebuffer(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+
+ if (!rt->backbuffer.is_valid()) {
+ _create_render_target_backbuffer(rt);
+ }
+
+ return rt->backbuffer_fb;
+}
+
+void TextureStorage::render_target_request_clear(RID p_render_target, const Color &p_clear_color) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->clear_requested = true;
+ rt->clear_color = p_clear_color;
+}
+
+bool TextureStorage::render_target_is_clear_requested(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, false);
+ return rt->clear_requested;
+}
+
+Color TextureStorage::render_target_get_clear_request_color(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, Color());
+ return rt->clear_color;
+}
+
+void TextureStorage::render_target_disable_clear_request(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->clear_requested = false;
+}
+
+void TextureStorage::render_target_do_clear_request(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ if (!rt->clear_requested) {
+ return;
+ }
+ Vector<Color> clear_colors;
+ clear_colors.push_back(rt->clear_color);
+ RD::get_singleton()->draw_list_begin(rt->framebuffer, RD::INITIAL_ACTION_CLEAR, RD::FINAL_ACTION_READ, RD::INITIAL_ACTION_KEEP, RD::FINAL_ACTION_DISCARD, clear_colors);
+ RD::get_singleton()->draw_list_end();
+ rt->clear_requested = false;
+}
+
+void TextureStorage::render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ if (rt->sdf_oversize == p_size && rt->sdf_scale == p_scale) {
+ return;
+ }
+
+ rt->sdf_oversize = p_size;
+ rt->sdf_scale = p_scale;
+
+ _render_target_clear_sdf(rt);
+}
+
+Rect2i TextureStorage::_render_target_get_sdf_rect(const RenderTarget *rt) const {
+ Size2i margin;
+ int scale;
+ switch (rt->sdf_oversize) {
+ case RS::VIEWPORT_SDF_OVERSIZE_100_PERCENT: {
+ scale = 100;
+ } break;
+ case RS::VIEWPORT_SDF_OVERSIZE_120_PERCENT: {
+ scale = 120;
+ } break;
+ case RS::VIEWPORT_SDF_OVERSIZE_150_PERCENT: {
+ scale = 150;
+ } break;
+ case RS::VIEWPORT_SDF_OVERSIZE_200_PERCENT: {
+ scale = 200;
+ } break;
+ default: {
+ }
+ }
+
+ margin = (rt->size * scale / 100) - rt->size;
+
+ Rect2i r(Vector2i(), rt->size);
+ r.position -= margin;
+ r.size += margin * 2;
+
+ return r;
+}
+
+Rect2i TextureStorage::render_target_get_sdf_rect(RID p_render_target) const {
+ const RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, Rect2i());
+
+ return _render_target_get_sdf_rect(rt);
+}
+
+void TextureStorage::render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+
+ rt->sdf_enabled = p_enabled;
+}
+
+bool TextureStorage::render_target_is_sdf_enabled(RID p_render_target) const {
+ const RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, false);
+
+ return rt->sdf_enabled;
+}
+
+RID TextureStorage::render_target_get_sdf_texture(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+ if (rt->sdf_buffer_read.is_null()) {
+ // no texture, create a dummy one for the 2D uniform set
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8G8B8A8_UNORM;
+ tformat.width = 4;
+ tformat.height = 4;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D;
+
+ Vector<uint8_t> pv;
+ pv.resize(16 * 4);
+ memset(pv.ptrw(), 0, 16 * 4);
+ Vector<Vector<uint8_t>> vpv;
+
+ rt->sdf_buffer_read = RD::get_singleton()->texture_create(tformat, RD::TextureView(), vpv);
+ }
+
+ return rt->sdf_buffer_read;
+}
+
+void TextureStorage::_render_target_allocate_sdf(RenderTarget *rt) {
+ ERR_FAIL_COND(rt->sdf_buffer_write_fb.is_valid());
+ if (rt->sdf_buffer_read.is_valid()) {
+ RD::get_singleton()->free(rt->sdf_buffer_read);
+ rt->sdf_buffer_read = RID();
+ }
+
+ Size2i size = _render_target_get_sdf_rect(rt).size;
+
+ RD::TextureFormat tformat;
+ tformat.format = RD::DATA_FORMAT_R8_UNORM;
+ tformat.width = size.width;
+ tformat.height = size.height;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT | RD::TEXTURE_USAGE_COLOR_ATTACHMENT_BIT;
+ tformat.texture_type = RD::TEXTURE_TYPE_2D;
+
+ rt->sdf_buffer_write = RD::get_singleton()->texture_create(tformat, RD::TextureView());
+
+ {
+ Vector<RID> write_fb;
+ write_fb.push_back(rt->sdf_buffer_write);
+ rt->sdf_buffer_write_fb = RD::get_singleton()->framebuffer_create(write_fb);
+ }
+
+ int scale;
+ switch (rt->sdf_scale) {
+ case RS::VIEWPORT_SDF_SCALE_100_PERCENT: {
+ scale = 100;
+ } break;
+ case RS::VIEWPORT_SDF_SCALE_50_PERCENT: {
+ scale = 50;
+ } break;
+ case RS::VIEWPORT_SDF_SCALE_25_PERCENT: {
+ scale = 25;
+ } break;
+ default: {
+ scale = 100;
+ } break;
+ }
+
+ rt->process_size = size * scale / 100;
+ rt->process_size.x = MAX(rt->process_size.x, 1);
+ rt->process_size.y = MAX(rt->process_size.y, 1);
+
+ tformat.format = RD::DATA_FORMAT_R16G16_SINT;
+ tformat.width = rt->process_size.width;
+ tformat.height = rt->process_size.height;
+ tformat.usage_bits = RD::TEXTURE_USAGE_STORAGE_BIT;
+
+ rt->sdf_buffer_process[0] = RD::get_singleton()->texture_create(tformat, RD::TextureView());
+ rt->sdf_buffer_process[1] = RD::get_singleton()->texture_create(tformat, RD::TextureView());
+
+ tformat.format = RD::DATA_FORMAT_R16_SNORM;
+ tformat.usage_bits = RD::TEXTURE_USAGE_SAMPLING_BIT | RD::TEXTURE_USAGE_STORAGE_BIT;
+
+ rt->sdf_buffer_read = RD::get_singleton()->texture_create(tformat, RD::TextureView());
+
+ {
+ Vector<RD::Uniform> uniforms;
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 1;
+ u.append_id(rt->sdf_buffer_write);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 2;
+ u.append_id(rt->sdf_buffer_read);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 3;
+ u.append_id(rt->sdf_buffer_process[0]);
+ uniforms.push_back(u);
+ }
+ {
+ RD::Uniform u;
+ u.uniform_type = RD::UNIFORM_TYPE_IMAGE;
+ u.binding = 4;
+ u.append_id(rt->sdf_buffer_process[1]);
+ uniforms.push_back(u);
+ }
+
+ rt->sdf_buffer_process_uniform_sets[0] = RD::get_singleton()->uniform_set_create(uniforms, rt_sdf.shader.version_get_shader(rt_sdf.shader_version, 0), 0);
+ RID aux2 = uniforms.write[2].get_id(0);
+ RID aux3 = uniforms.write[3].get_id(0);
+ uniforms.write[2].set_id(0, aux3);
+ uniforms.write[3].set_id(0, aux2);
+ rt->sdf_buffer_process_uniform_sets[1] = RD::get_singleton()->uniform_set_create(uniforms, rt_sdf.shader.version_get_shader(rt_sdf.shader_version, 0), 0);
+ }
+}
+
+void TextureStorage::_render_target_clear_sdf(RenderTarget *rt) {
+ if (rt->sdf_buffer_read.is_valid()) {
+ RD::get_singleton()->free(rt->sdf_buffer_read);
+ rt->sdf_buffer_read = RID();
+ }
+ if (rt->sdf_buffer_write_fb.is_valid()) {
+ RD::get_singleton()->free(rt->sdf_buffer_write);
+ RD::get_singleton()->free(rt->sdf_buffer_process[0]);
+ RD::get_singleton()->free(rt->sdf_buffer_process[1]);
+ rt->sdf_buffer_write = RID();
+ rt->sdf_buffer_write_fb = RID();
+ rt->sdf_buffer_process[0] = RID();
+ rt->sdf_buffer_process[1] = RID();
+ rt->sdf_buffer_process_uniform_sets[0] = RID();
+ rt->sdf_buffer_process_uniform_sets[1] = RID();
+ }
+}
+
+RID TextureStorage::render_target_get_sdf_framebuffer(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+
+ if (rt->sdf_buffer_write_fb.is_null()) {
+ _render_target_allocate_sdf(rt);
+ }
+
+ return rt->sdf_buffer_write_fb;
+}
+void TextureStorage::render_target_sdf_process(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ ERR_FAIL_COND(rt->sdf_buffer_write_fb.is_null());
+
+ RenderTargetSDF::PushConstant push_constant;
+
+ Rect2i r = _render_target_get_sdf_rect(rt);
+
+ push_constant.size[0] = r.size.width;
+ push_constant.size[1] = r.size.height;
+ push_constant.stride = 0;
+ push_constant.shift = 0;
+ push_constant.base_size[0] = r.size.width;
+ push_constant.base_size[1] = r.size.height;
+
+ bool shrink = false;
+
+ switch (rt->sdf_scale) {
+ case RS::VIEWPORT_SDF_SCALE_50_PERCENT: {
+ push_constant.size[0] >>= 1;
+ push_constant.size[1] >>= 1;
+ push_constant.shift = 1;
+ shrink = true;
+ } break;
+ case RS::VIEWPORT_SDF_SCALE_25_PERCENT: {
+ push_constant.size[0] >>= 2;
+ push_constant.size[1] >>= 2;
+ push_constant.shift = 2;
+ shrink = true;
+ } break;
+ default: {
+ };
+ }
+
+ RD::ComputeListID compute_list = RD::get_singleton()->compute_list_begin();
+
+ /* Load */
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[shrink ? RenderTargetSDF::SHADER_LOAD_SHRINK : RenderTargetSDF::SHADER_LOAD]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[1], 0); //fill [0]
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
+
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
+
+ /* Process */
+
+ int stride = nearest_power_of_2_templated(MAX(push_constant.size[0], push_constant.size[1]) / 2);
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[RenderTargetSDF::SHADER_PROCESS]);
+
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ bool swap = false;
+
+ //jumpflood
+ while (stride > 0) {
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[swap ? 1 : 0], 0);
+ push_constant.stride = stride;
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
+ stride /= 2;
+ swap = !swap;
+ RD::get_singleton()->compute_list_add_barrier(compute_list);
+ }
+
+ /* Store */
+
+ RD::get_singleton()->compute_list_bind_compute_pipeline(compute_list, rt_sdf.pipelines[shrink ? RenderTargetSDF::SHADER_STORE_SHRINK : RenderTargetSDF::SHADER_STORE]);
+ RD::get_singleton()->compute_list_bind_uniform_set(compute_list, rt->sdf_buffer_process_uniform_sets[swap ? 1 : 0], 0);
+ RD::get_singleton()->compute_list_set_push_constant(compute_list, &push_constant, sizeof(RenderTargetSDF::PushConstant));
+ RD::get_singleton()->compute_list_dispatch_threads(compute_list, push_constant.size[0], push_constant.size[1], 1);
+
+ RD::get_singleton()->compute_list_end();
+}
+
+void TextureStorage::render_target_copy_to_back_buffer(RID p_render_target, const Rect2i &p_region, bool p_gen_mipmaps) {
+ EffectsRD *effects = RendererStorageRD::base_singleton->get_effects();
+ ERR_FAIL_NULL(effects);
+
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ if (!rt->backbuffer.is_valid()) {
+ _create_render_target_backbuffer(rt);
+ }
+
+ Rect2i region;
+ if (p_region == Rect2i()) {
+ region.size = rt->size;
+ } else {
+ region = Rect2i(Size2i(), rt->size).intersection(p_region);
+ if (region.size == Size2i()) {
+ return; //nothing to do
+ }
+ }
+
+ //single texture copy for backbuffer
+ //RD::get_singleton()->texture_copy(rt->color, rt->backbuffer_mipmap0, Vector3(region.position.x, region.position.y, 0), Vector3(region.position.x, region.position.y, 0), Vector3(region.size.x, region.size.y, 1), 0, 0, 0, 0, true);
+ effects->copy_to_rect(rt->color, rt->backbuffer_mipmap0, region, false, false, false, true, true);
+
+ if (!p_gen_mipmaps) {
+ return;
+ }
+ RD::get_singleton()->draw_command_begin_label("Gaussian Blur Mipmaps");
+ //then mipmap blur
+ RID prev_texture = rt->color; //use color, not backbuffer, as bb has mipmaps.
+
+ for (int i = 0; i < rt->backbuffer_mipmaps.size(); i++) {
+ region.position.x >>= 1;
+ region.position.y >>= 1;
+ region.size.x = MAX(1, region.size.x >> 1);
+ region.size.y = MAX(1, region.size.y >> 1);
+
+ RID mipmap = rt->backbuffer_mipmaps[i];
+ effects->gaussian_blur(prev_texture, mipmap, region, true);
+ prev_texture = mipmap;
+ }
+ RD::get_singleton()->draw_command_end_label();
+}
+
+void TextureStorage::render_target_clear_back_buffer(RID p_render_target, const Rect2i &p_region, const Color &p_color) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+
+ EffectsRD *effects = RendererStorageRD::base_singleton->get_effects();
+ ERR_FAIL_NULL(effects);
+
+ if (!rt->backbuffer.is_valid()) {
+ _create_render_target_backbuffer(rt);
+ }
+
+ Rect2i region;
+ if (p_region == Rect2i()) {
+ region.size = rt->size;
+ } else {
+ region = Rect2i(Size2i(), rt->size).intersection(p_region);
+ if (region.size == Size2i()) {
+ return; //nothing to do
+ }
+ }
+
+ //single texture copy for backbuffer
+ effects->set_color(rt->backbuffer_mipmap0, p_color, region, true);
+}
+
+void TextureStorage::render_target_gen_back_buffer_mipmaps(RID p_render_target, const Rect2i &p_region) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+
+ EffectsRD *effects = RendererStorageRD::base_singleton->get_effects();
+ ERR_FAIL_NULL(effects);
+
+ if (!rt->backbuffer.is_valid()) {
+ _create_render_target_backbuffer(rt);
+ }
+
+ Rect2i region;
+ if (p_region == Rect2i()) {
+ region.size = rt->size;
+ } else {
+ region = Rect2i(Size2i(), rt->size).intersection(p_region);
+ if (region.size == Size2i()) {
+ return; //nothing to do
+ }
+ }
+ RD::get_singleton()->draw_command_begin_label("Gaussian Blur Mipmaps2");
+ //then mipmap blur
+ RID prev_texture = rt->backbuffer_mipmap0;
+
+ for (int i = 0; i < rt->backbuffer_mipmaps.size(); i++) {
+ region.position.x >>= 1;
+ region.position.y >>= 1;
+ region.size.x = MAX(1, region.size.x >> 1);
+ region.size.y = MAX(1, region.size.y >> 1);
+
+ RID mipmap = rt->backbuffer_mipmaps[i];
+ effects->gaussian_blur(prev_texture, mipmap, region, true);
+ prev_texture = mipmap;
+ }
+ RD::get_singleton()->draw_command_end_label();
+}
+
+RID TextureStorage::render_target_get_framebuffer_uniform_set(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+ return rt->framebuffer_uniform_set;
+}
+RID TextureStorage::render_target_get_backbuffer_uniform_set(RID p_render_target) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND_V(!rt, RID());
+ return rt->backbuffer_uniform_set;
+}
+
+void TextureStorage::render_target_set_framebuffer_uniform_set(RID p_render_target, RID p_uniform_set) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->framebuffer_uniform_set = p_uniform_set;
+}
+
+void TextureStorage::render_target_set_backbuffer_uniform_set(RID p_render_target, RID p_uniform_set) {
+ RenderTarget *rt = render_target_owner.get_or_null(p_render_target);
+ ERR_FAIL_COND(!rt);
+ rt->backbuffer_uniform_set = p_uniform_set;
+}
diff --git a/servers/rendering/renderer_rd/storage_rd/texture_storage.h b/servers/rendering/renderer_rd/storage_rd/texture_storage.h
new file mode 100644
index 0000000000..a6f50803e4
--- /dev/null
+++ b/servers/rendering/renderer_rd/storage_rd/texture_storage.h
@@ -0,0 +1,566 @@
+/*************************************************************************/
+/* texture_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef TEXTURE_STORAGE_RD_H
+#define TEXTURE_STORAGE_RD_H
+
+#include "core/templates/rid_owner.h"
+#include "servers/rendering/renderer_rd/shaders/canvas_sdf.glsl.gen.h"
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering/storage/texture_storage.h"
+
+namespace RendererRD {
+
+enum DefaultRDTexture {
+ DEFAULT_RD_TEXTURE_WHITE,
+ DEFAULT_RD_TEXTURE_BLACK,
+ DEFAULT_RD_TEXTURE_NORMAL,
+ DEFAULT_RD_TEXTURE_ANISO,
+ DEFAULT_RD_TEXTURE_DEPTH,
+ DEFAULT_RD_TEXTURE_MULTIMESH_BUFFER,
+ DEFAULT_RD_TEXTURE_CUBEMAP_BLACK,
+ DEFAULT_RD_TEXTURE_CUBEMAP_ARRAY_BLACK,
+ DEFAULT_RD_TEXTURE_CUBEMAP_WHITE,
+ DEFAULT_RD_TEXTURE_3D_WHITE,
+ DEFAULT_RD_TEXTURE_3D_BLACK,
+ DEFAULT_RD_TEXTURE_2D_ARRAY_WHITE,
+ DEFAULT_RD_TEXTURE_2D_UINT,
+ DEFAULT_RD_TEXTURE_MAX
+};
+
+class CanvasTexture {
+public:
+ RID diffuse;
+ RID normal_map;
+ RID specular;
+ Color specular_color = Color(1, 1, 1, 1);
+ float shininess = 1.0;
+
+ RS::CanvasItemTextureFilter texture_filter = RS::CANVAS_ITEM_TEXTURE_FILTER_DEFAULT;
+ RS::CanvasItemTextureRepeat texture_repeat = RS::CANVAS_ITEM_TEXTURE_REPEAT_DEFAULT;
+ RID uniform_sets[RS::CANVAS_ITEM_TEXTURE_FILTER_MAX][RS::CANVAS_ITEM_TEXTURE_REPEAT_MAX];
+
+ Size2i size_cache = Size2i(1, 1);
+ bool use_normal_cache = false;
+ bool use_specular_cache = false;
+ bool cleared_cache = true;
+
+ void clear_sets();
+ ~CanvasTexture();
+};
+
+class Texture {
+public:
+ enum Type {
+ TYPE_2D,
+ TYPE_LAYERED,
+ TYPE_3D
+ };
+
+ Type type;
+ RS::TextureLayeredType layered_type = RS::TEXTURE_LAYERED_2D_ARRAY;
+
+ RenderingDevice::TextureType rd_type;
+ RID rd_texture;
+ RID rd_texture_srgb;
+ RenderingDevice::DataFormat rd_format;
+ RenderingDevice::DataFormat rd_format_srgb;
+
+ RD::TextureView rd_view;
+
+ Image::Format format;
+ Image::Format validated_format;
+
+ int width;
+ int height;
+ int depth;
+ int layers;
+ int mipmaps;
+
+ int height_2d;
+ int width_2d;
+
+ struct BufferSlice3D {
+ Size2i size;
+ uint32_t offset = 0;
+ uint32_t buffer_size = 0;
+ };
+ Vector<BufferSlice3D> buffer_slices_3d;
+ uint32_t buffer_size_3d = 0;
+
+ bool is_render_target;
+ bool is_proxy;
+
+ Ref<Image> image_cache_2d;
+ String path;
+
+ RID proxy_to;
+ Vector<RID> proxies;
+
+ Set<RID> lightmap_users;
+
+ RS::TextureDetectCallback detect_3d_callback = nullptr;
+ void *detect_3d_callback_ud = nullptr;
+
+ RS::TextureDetectCallback detect_normal_callback = nullptr;
+ void *detect_normal_callback_ud = nullptr;
+
+ RS::TextureDetectRoughnessCallback detect_roughness_callback = nullptr;
+ void *detect_roughness_callback_ud = nullptr;
+
+ CanvasTexture *canvas_texture = nullptr;
+
+ void cleanup();
+};
+
+struct DecalAtlas {
+ struct Texture {
+ int panorama_to_dp_users;
+ int users;
+ Rect2 uv_rect;
+ };
+
+ struct SortItem {
+ RID texture;
+ Size2i pixel_size;
+ Size2i size;
+ Point2i pos;
+
+ bool operator<(const SortItem &p_item) const {
+ //sort larger to smaller
+ if (size.height == p_item.size.height) {
+ return size.width > p_item.size.width;
+ } else {
+ return size.height > p_item.size.height;
+ }
+ }
+ };
+
+ HashMap<RID, Texture> textures;
+ bool dirty = true;
+ int mipmaps = 5;
+
+ RID texture;
+ RID texture_srgb;
+ struct MipMap {
+ RID fb;
+ RID texture;
+ Size2i size;
+ };
+ Vector<MipMap> texture_mipmaps;
+
+ Size2i size;
+};
+
+struct Decal {
+ Vector3 extents = Vector3(1, 1, 1);
+ RID textures[RS::DECAL_TEXTURE_MAX];
+ float emission_energy = 1.0;
+ float albedo_mix = 1.0;
+ Color modulate = Color(1, 1, 1, 1);
+ uint32_t cull_mask = (1 << 20) - 1;
+ float upper_fade = 0.3;
+ float lower_fade = 0.3;
+ bool distance_fade = false;
+ float distance_fade_begin = 10;
+ float distance_fade_length = 1;
+ float normal_fade = 0.0;
+
+ RendererStorage::Dependency dependency;
+};
+
+struct RenderTarget {
+ Size2i size;
+ uint32_t view_count;
+ RID framebuffer;
+ RID color;
+
+ //used for retrieving from CPU
+ RD::DataFormat color_format = RD::DATA_FORMAT_R4G4_UNORM_PACK8;
+ RD::DataFormat color_format_srgb = RD::DATA_FORMAT_R4G4_UNORM_PACK8;
+ Image::Format image_format = Image::FORMAT_L8;
+
+ bool flags[RendererTextureStorage::RENDER_TARGET_FLAG_MAX];
+
+ bool sdf_enabled = false;
+
+ RID backbuffer; //used for effects
+ RID backbuffer_fb;
+ RID backbuffer_mipmap0;
+
+ Vector<RID> backbuffer_mipmaps;
+
+ RID framebuffer_uniform_set;
+ RID backbuffer_uniform_set;
+
+ RID sdf_buffer_write;
+ RID sdf_buffer_write_fb;
+ RID sdf_buffer_process[2];
+ RID sdf_buffer_read;
+ RID sdf_buffer_process_uniform_sets[2];
+ RS::ViewportSDFOversize sdf_oversize = RS::VIEWPORT_SDF_OVERSIZE_120_PERCENT;
+ RS::ViewportSDFScale sdf_scale = RS::VIEWPORT_SDF_SCALE_50_PERCENT;
+ Size2i process_size;
+
+ //texture generated for this owner (nor RD).
+ RID texture;
+ bool was_used;
+
+ //clear request
+ bool clear_requested;
+ Color clear_color;
+};
+
+struct RenderTargetSDF {
+ enum {
+ SHADER_LOAD,
+ SHADER_LOAD_SHRINK,
+ SHADER_PROCESS,
+ SHADER_PROCESS_OPTIMIZED,
+ SHADER_STORE,
+ SHADER_STORE_SHRINK,
+ SHADER_MAX
+ };
+
+ struct PushConstant {
+ int32_t size[2];
+ int32_t stride;
+ int32_t shift;
+ int32_t base_size[2];
+ int32_t pad[2];
+ };
+
+ CanvasSdfShaderRD shader;
+ RID shader_version;
+ RID pipelines[SHADER_MAX];
+};
+
+class TextureStorage : public RendererTextureStorage {
+private:
+ static TextureStorage *singleton;
+
+ /* Canvas Texture API */
+
+ RID_Owner<RendererRD::CanvasTexture, true> canvas_texture_owner;
+
+ /* Texture API */
+
+ //textures can be created from threads, so this RID_Owner is thread safe
+ mutable RID_Owner<Texture, true> texture_owner;
+
+ struct TextureToRDFormat {
+ RD::DataFormat format;
+ RD::DataFormat format_srgb;
+ RD::TextureSwizzle swizzle_r;
+ RD::TextureSwizzle swizzle_g;
+ RD::TextureSwizzle swizzle_b;
+ RD::TextureSwizzle swizzle_a;
+ TextureToRDFormat() {
+ format = RD::DATA_FORMAT_MAX;
+ format_srgb = RD::DATA_FORMAT_MAX;
+ swizzle_r = RD::TEXTURE_SWIZZLE_R;
+ swizzle_g = RD::TEXTURE_SWIZZLE_G;
+ swizzle_b = RD::TEXTURE_SWIZZLE_B;
+ swizzle_a = RD::TEXTURE_SWIZZLE_A;
+ }
+ };
+
+ Ref<Image> _validate_texture_format(const Ref<Image> &p_image, TextureToRDFormat &r_format);
+ void _texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0, bool p_immediate = false);
+
+ /* DECAL API */
+
+ DecalAtlas decal_atlas;
+
+ mutable RID_Owner<Decal, true> decal_owner;
+
+ /* RENDER TARGET API */
+
+ mutable RID_Owner<RenderTarget> render_target_owner;
+
+ void _clear_render_target(RenderTarget *rt);
+ void _update_render_target(RenderTarget *rt);
+ void _create_render_target_backbuffer(RenderTarget *rt);
+ void _render_target_allocate_sdf(RenderTarget *rt);
+ void _render_target_clear_sdf(RenderTarget *rt);
+ Rect2i _render_target_get_sdf_rect(const RenderTarget *rt) const;
+
+ RenderTargetSDF rt_sdf;
+
+public:
+ static TextureStorage *get_singleton();
+
+ RID default_rd_textures[DEFAULT_RD_TEXTURE_MAX];
+
+ _FORCE_INLINE_ RID texture_rd_get_default(DefaultRDTexture p_texture) {
+ return default_rd_textures[p_texture];
+ }
+
+ TextureStorage();
+ virtual ~TextureStorage();
+
+ /* Canvas Texture API */
+
+ CanvasTexture *get_canvas_texture(RID p_rid) { return canvas_texture_owner.get_or_null(p_rid); };
+ bool owns_canvas_texture(RID p_rid) { return canvas_texture_owner.owns(p_rid); };
+
+ virtual RID canvas_texture_allocate() override;
+ virtual void canvas_texture_initialize(RID p_rid) override;
+ virtual void canvas_texture_free(RID p_rid) override;
+
+ virtual void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) override;
+ virtual void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) override;
+
+ virtual void canvas_texture_set_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) override;
+ virtual void canvas_texture_set_texture_repeat(RID p_item, RS::CanvasItemTextureRepeat p_repeat) override;
+
+ bool canvas_texture_get_uniform_set(RID p_texture, RS::CanvasItemTextureFilter p_base_filter, RS::CanvasItemTextureRepeat p_base_repeat, RID p_base_shader, int p_base_set, RID &r_uniform_set, Size2i &r_size, Color &r_specular_shininess, bool &r_use_normal, bool &r_use_specular);
+
+ /* Texture API */
+
+ Texture *get_texture(RID p_rid) { return texture_owner.get_or_null(p_rid); };
+ bool owns_texture(RID p_rid) { return texture_owner.owns(p_rid); };
+
+ virtual bool can_create_resources_async() const override;
+
+ virtual RID texture_allocate() override;
+ virtual void texture_free(RID p_rid) override;
+
+ virtual void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) override;
+ virtual void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) override;
+ virtual void texture_3d_initialize(RID p_texture, Image::Format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) override;
+ virtual void texture_proxy_initialize(RID p_texture, RID p_base) override; //all slices, then all the mipmaps, must be coherent
+
+ virtual void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) override;
+ virtual void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) override;
+ virtual void texture_proxy_update(RID p_proxy, RID p_base) override;
+
+ //these two APIs can be used together or in combination with the others.
+ virtual void texture_2d_placeholder_initialize(RID p_texture) override;
+ virtual void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type) override;
+ virtual void texture_3d_placeholder_initialize(RID p_texture) override;
+
+ virtual Ref<Image> texture_2d_get(RID p_texture) const override;
+ virtual Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const override;
+ virtual Vector<Ref<Image>> texture_3d_get(RID p_texture) const override;
+
+ virtual void texture_replace(RID p_texture, RID p_by_texture) override;
+ virtual void texture_set_size_override(RID p_texture, int p_width, int p_height) override;
+
+ virtual void texture_set_path(RID p_texture, const String &p_path) override;
+ virtual String texture_get_path(RID p_texture) const override;
+
+ virtual void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override;
+ virtual void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) override;
+ virtual void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) override;
+
+ virtual void texture_debug_usage(List<RS::TextureInfo> *r_info) override;
+
+ virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) override;
+
+ virtual Size2 texture_size_with_proxy(RID p_proxy) override;
+
+ //internal usage
+
+ _FORCE_INLINE_ RID texture_get_rd_texture(RID p_texture, bool p_srgb = false) {
+ if (p_texture.is_null()) {
+ return RID();
+ }
+ RendererRD::Texture *tex = texture_owner.get_or_null(p_texture);
+
+ if (!tex) {
+ return RID();
+ }
+ return (p_srgb && tex->rd_texture_srgb.is_valid()) ? tex->rd_texture_srgb : tex->rd_texture;
+ }
+
+ _FORCE_INLINE_ Size2i texture_2d_get_size(RID p_texture) {
+ if (p_texture.is_null()) {
+ return Size2i();
+ }
+ RendererRD::Texture *tex = texture_owner.get_or_null(p_texture);
+
+ if (!tex) {
+ return Size2i();
+ }
+ return Size2i(tex->width_2d, tex->height_2d);
+ }
+
+ /* DECAL API */
+
+ void update_decal_atlas();
+
+ Decal *get_decal(RID p_rid) { return decal_owner.get_or_null(p_rid); };
+ bool owns_decal(RID p_rid) { return decal_owner.owns(p_rid); };
+
+ RID decal_atlas_get_texture() const;
+ RID decal_atlas_get_texture_srgb() const;
+ _FORCE_INLINE_ Rect2 decal_atlas_get_texture_rect(RID p_texture) {
+ DecalAtlas::Texture *t = decal_atlas.textures.getptr(p_texture);
+ if (!t) {
+ return Rect2();
+ }
+
+ return t->uv_rect;
+ }
+
+ virtual RID decal_allocate() override;
+ virtual void decal_initialize(RID p_decal) override;
+ virtual void decal_free(RID p_rid) override;
+
+ virtual void decal_set_extents(RID p_decal, const Vector3 &p_extents) override;
+ virtual void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) override;
+ virtual void decal_set_emission_energy(RID p_decal, float p_energy) override;
+ virtual void decal_set_albedo_mix(RID p_decal, float p_mix) override;
+ virtual void decal_set_modulate(RID p_decal, const Color &p_modulate) override;
+ virtual void decal_set_cull_mask(RID p_decal, uint32_t p_layers) override;
+ virtual void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) override;
+ virtual void decal_set_fade(RID p_decal, float p_above, float p_below) override;
+ virtual void decal_set_normal_fade(RID p_decal, float p_fade) override;
+
+ void decal_atlas_mark_dirty_on_texture(RID p_texture);
+ void decal_atlas_remove_texture(RID p_texture);
+
+ virtual void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override;
+ virtual void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) override;
+
+ _FORCE_INLINE_ Vector3 decal_get_extents(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->extents;
+ }
+
+ _FORCE_INLINE_ RID decal_get_texture(RID p_decal, RS::DecalTexture p_texture) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->textures[p_texture];
+ }
+
+ _FORCE_INLINE_ Color decal_get_modulate(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->modulate;
+ }
+
+ _FORCE_INLINE_ float decal_get_emission_energy(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->emission_energy;
+ }
+
+ _FORCE_INLINE_ float decal_get_albedo_mix(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->albedo_mix;
+ }
+
+ _FORCE_INLINE_ uint32_t decal_get_cull_mask(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->cull_mask;
+ }
+
+ _FORCE_INLINE_ float decal_get_upper_fade(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->upper_fade;
+ }
+
+ _FORCE_INLINE_ float decal_get_lower_fade(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->lower_fade;
+ }
+
+ _FORCE_INLINE_ float decal_get_normal_fade(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->normal_fade;
+ }
+
+ _FORCE_INLINE_ bool decal_is_distance_fade_enabled(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->distance_fade;
+ }
+
+ _FORCE_INLINE_ float decal_get_distance_fade_begin(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->distance_fade_begin;
+ }
+
+ _FORCE_INLINE_ float decal_get_distance_fade_length(RID p_decal) {
+ const Decal *decal = decal_owner.get_or_null(p_decal);
+ return decal->distance_fade_length;
+ }
+
+ virtual AABB decal_get_aabb(RID p_decal) const override;
+
+ /* RENDER TARGET API */
+
+ RenderTarget *get_render_target(RID p_rid) { return render_target_owner.get_or_null(p_rid); };
+ bool owns_render_target(RID p_rid) { return render_target_owner.owns(p_rid); };
+
+ virtual RID render_target_create() override;
+ virtual void render_target_free(RID p_rid) override;
+
+ virtual void render_target_set_position(RID p_render_target, int p_x, int p_y) override;
+ virtual void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) override;
+ virtual RID render_target_get_texture(RID p_render_target) override;
+ virtual void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) override;
+ virtual void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) override;
+ virtual bool render_target_was_used(RID p_render_target) override;
+ virtual void render_target_set_as_unused(RID p_render_target) override;
+
+ void render_target_copy_to_back_buffer(RID p_render_target, const Rect2i &p_region, bool p_gen_mipmaps);
+ void render_target_clear_back_buffer(RID p_render_target, const Rect2i &p_region, const Color &p_color);
+ void render_target_gen_back_buffer_mipmaps(RID p_render_target, const Rect2i &p_region);
+ RID render_target_get_back_buffer_uniform_set(RID p_render_target, RID p_base_shader);
+
+ virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color) override;
+ virtual bool render_target_is_clear_requested(RID p_render_target) override;
+ virtual Color render_target_get_clear_request_color(RID p_render_target) override;
+ virtual void render_target_disable_clear_request(RID p_render_target) override;
+ virtual void render_target_do_clear_request(RID p_render_target) override;
+
+ virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) override;
+ RID render_target_get_sdf_texture(RID p_render_target);
+ RID render_target_get_sdf_framebuffer(RID p_render_target);
+ void render_target_sdf_process(RID p_render_target);
+ virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const override;
+ virtual void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) override;
+ bool render_target_is_sdf_enabled(RID p_render_target) const;
+
+ Size2 render_target_get_size(RID p_render_target);
+ RID render_target_get_rd_framebuffer(RID p_render_target);
+ RID render_target_get_rd_texture(RID p_render_target);
+ RID render_target_get_rd_backbuffer(RID p_render_target);
+ RID render_target_get_rd_backbuffer_framebuffer(RID p_render_target);
+
+ RID render_target_get_framebuffer_uniform_set(RID p_render_target);
+ RID render_target_get_backbuffer_uniform_set(RID p_render_target);
+
+ void render_target_set_framebuffer_uniform_set(RID p_render_target, RID p_uniform_set);
+ void render_target_set_backbuffer_uniform_set(RID p_render_target, RID p_uniform_set);
+};
+
+} // namespace RendererRD
+
+#endif // !_TEXTURE_STORAGE_RD_H
diff --git a/servers/rendering/renderer_rd/uniform_set_cache_rd.cpp b/servers/rendering/renderer_rd/uniform_set_cache_rd.cpp
new file mode 100644
index 0000000000..84529ca400
--- /dev/null
+++ b/servers/rendering/renderer_rd/uniform_set_cache_rd.cpp
@@ -0,0 +1,64 @@
+/*************************************************************************/
+/* uniform_set_cache_rd.cpp */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#include "uniform_set_cache_rd.h"
+
+UniformSetCacheRD *UniformSetCacheRD::singleton = nullptr;
+
+void UniformSetCacheRD::_invalidate(Cache *p_cache) {
+ if (p_cache->prev) {
+ p_cache->prev->next = p_cache->next;
+ } else {
+ // At beginning of table
+ uint32_t table_idx = p_cache->hash % HASH_TABLE_SIZE;
+ hash_table[table_idx] = p_cache->next;
+ }
+
+ if (p_cache->next) {
+ p_cache->next->prev = p_cache->prev;
+ }
+
+ cache_allocator.free(p_cache);
+ cache_instances_used--;
+}
+void UniformSetCacheRD::_uniform_set_invalidation_callback(void *p_userdata) {
+ singleton->_invalidate(reinterpret_cast<Cache *>(p_userdata));
+}
+
+UniformSetCacheRD::UniformSetCacheRD() {
+ ERR_FAIL_COND(singleton != nullptr);
+ singleton = this;
+}
+
+UniformSetCacheRD::~UniformSetCacheRD() {
+ if (cache_instances_used > 0) {
+ ERR_PRINT("At exit: " + itos(cache_instances_used) + " uniform set cache instance(s) still in use.");
+ }
+}
diff --git a/servers/rendering/renderer_rd/uniform_set_cache_rd.h b/servers/rendering/renderer_rd/uniform_set_cache_rd.h
new file mode 100644
index 0000000000..e49cf4dafa
--- /dev/null
+++ b/servers/rendering/renderer_rd/uniform_set_cache_rd.h
@@ -0,0 +1,221 @@
+/*************************************************************************/
+/* uniform_set_cache_rd.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef UNIFORM_SET_CACHE_H
+#define UNIFORM_SET_CACHE_H
+
+#include "core/templates/local_vector.h"
+#include "core/templates/paged_allocator.h"
+#include "servers/rendering/rendering_device.h"
+
+class UniformSetCacheRD : public Object {
+ GDCLASS(UniformSetCacheRD, Object)
+
+ struct Cache {
+ Cache *prev = nullptr;
+ Cache *next = nullptr;
+ uint32_t hash = 0;
+ RID shader;
+ uint32_t set = 0;
+ RID cache;
+ LocalVector<RD::Uniform> uniforms;
+ };
+
+ PagedAllocator<Cache> cache_allocator;
+
+ enum {
+ HASH_TABLE_SIZE = 16381 // Prime
+ };
+
+ Cache *hash_table[HASH_TABLE_SIZE] = {};
+
+ static _FORCE_INLINE_ uint32_t _hash_uniform(const RD::Uniform &u, uint32_t h) {
+ h = hash_djb2_one_32(u.uniform_type, h);
+ h = hash_djb2_one_32(u.binding, h);
+ uint32_t rsize = u.get_id_count();
+ for (uint32_t j = 0; j < rsize; j++) {
+ h = hash_djb2_one_64(u.get_id(j).get_id(), h);
+ }
+ return h;
+ }
+
+ static _FORCE_INLINE_ bool _compare_uniform(const RD::Uniform &a, const RD::Uniform &b) {
+ if (a.binding != b.binding) {
+ return false;
+ }
+ if (a.uniform_type != b.uniform_type) {
+ return false;
+ }
+ uint32_t rsize = a.get_id_count();
+ if (rsize != b.get_id_count()) {
+ return false;
+ }
+ for (uint32_t j = 0; j < rsize; j++) {
+ if (a.get_id(j) != b.get_id(j)) {
+ return false;
+ }
+ }
+ return true;
+ }
+
+ _FORCE_INLINE_ uint32_t _hash_args(uint32_t h, const RD::Uniform &arg) {
+ return _hash_uniform(arg, h);
+ }
+
+ template <typename... Args>
+ uint32_t _hash_args(uint32_t h, const RD::Uniform &arg, Args... args) {
+ h = _hash_uniform(arg, h);
+ return _hash_args(h, args...);
+ }
+
+ _FORCE_INLINE_ bool _compare_args(uint32_t idx, const LocalVector<RD::Uniform> &uniforms, const RD::Uniform &arg) {
+ return _compare_uniform(uniforms[idx], arg);
+ }
+
+ template <typename... Args>
+ _FORCE_INLINE_ bool _compare_args(uint32_t idx, const LocalVector<RD::Uniform> &uniforms, const RD::Uniform &arg, Args... args) {
+ if (!_compare_uniform(uniforms[idx], arg)) {
+ return false;
+ }
+ return _compare_args(idx + 1, uniforms, args...);
+ }
+
+ _FORCE_INLINE_ void _create_args(Vector<RD::Uniform> &uniforms, const RD::Uniform &arg) {
+ uniforms.push_back(arg);
+ }
+
+ template <typename... Args>
+ _FORCE_INLINE_ void _create_args(Vector<RD::Uniform> &uniforms, const RD::Uniform &arg, Args... args) {
+ uniforms.push_back(arg);
+ _create_args(uniforms, args...);
+ }
+
+ static UniformSetCacheRD *singleton;
+
+ uint32_t cache_instances_used = 0;
+
+ void _invalidate(Cache *p_cache);
+ static void _uniform_set_invalidation_callback(void *p_userdata);
+
+ RID _allocate_from_uniforms(RID p_shader, uint32_t p_set, uint32_t p_hash, uint32_t p_table_idx, const Vector<RD::Uniform> &p_uniforms) {
+ RID rid = RD::get_singleton()->uniform_set_create(p_uniforms, p_shader, p_set);
+ ERR_FAIL_COND_V(rid.is_null(), rid);
+
+ Cache *c = cache_allocator.alloc();
+ c->hash = p_hash;
+ c->set = p_set;
+ c->shader = p_shader;
+ c->cache = rid;
+ c->uniforms.resize(p_uniforms.size());
+ for (uint32_t i = 0; i < c->uniforms.size(); i++) {
+ c->uniforms[i] = p_uniforms[i];
+ }
+ c->prev = nullptr;
+ c->next = hash_table[p_table_idx];
+ if (hash_table[p_table_idx]) {
+ hash_table[p_table_idx]->prev = c;
+ }
+ hash_table[p_table_idx] = c;
+
+ RD::get_singleton()->uniform_set_set_invalidation_callback(rid, _uniform_set_invalidation_callback, c);
+
+ cache_instances_used++;
+
+ return rid;
+ }
+
+public:
+ template <typename... Args>
+ RID get_cache(RID p_shader, uint32_t p_set, Args... args) {
+ uint32_t h = hash_djb2_one_64(p_shader.get_id());
+ h = hash_djb2_one_32(p_set, h);
+ h = _hash_args(h, args...);
+
+ uint32_t table_idx = h % HASH_TABLE_SIZE;
+ {
+ const Cache *c = hash_table[table_idx];
+
+ while (c) {
+ if (c->hash == h && c->set == p_set && c->shader == p_shader && _compare_args(0, c->uniforms, args...)) {
+ return c->cache;
+ }
+ c = c->next;
+ }
+ }
+
+ // Not in cache, create:
+
+ Vector<RD::Uniform> uniforms;
+ _create_args(uniforms, args...);
+
+ return _allocate_from_uniforms(p_shader, p_set, h, table_idx, uniforms);
+ }
+
+ template <typename... Args>
+ RID get_cache_vec(RID p_shader, uint32_t p_set, const Vector<RD::Uniform> &p_uniforms) {
+ uint32_t h = hash_djb2_one_64(p_shader.get_id());
+ h = hash_djb2_one_32(p_set, h);
+ for (int i = 0; i < p_uniforms.size(); i++) {
+ h = _hash_uniform(p_uniforms[i], h);
+ }
+
+ uint32_t table_idx = h % HASH_TABLE_SIZE;
+ {
+ const Cache *c = hash_table[table_idx];
+
+ while (c) {
+ if (c->hash == h && c->set == p_set && c->shader == p_shader) {
+ bool all_ok = true;
+ for (int i = 0; i < p_uniforms.size(); i++) {
+ if (!_compare_uniform(p_uniforms[i], c->uniforms[i])) {
+ all_ok = false;
+ break;
+ }
+ }
+
+ if (all_ok) {
+ return c->cache;
+ }
+ }
+ c = c->next;
+ }
+ }
+
+ // Not in cache, create:
+ return _allocate_from_uniforms(p_shader, p_set, h, table_idx, p_uniforms);
+ }
+
+ static UniformSetCacheRD *get_singleton() { return singleton; }
+
+ UniformSetCacheRD();
+ ~UniformSetCacheRD();
+};
+
+#endif // UNIFORMSETCACHE_H
diff --git a/servers/rendering/renderer_scene.cpp b/servers/rendering/renderer_scene.cpp
index dd544d4f3f..b3fdd88626 100644
--- a/servers/rendering/renderer_scene.cpp
+++ b/servers/rendering/renderer_scene.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_scene.h b/servers/rendering/renderer_scene.h
index 02c845581c..43d5b07869 100644
--- a/servers/rendering/renderer_scene.h
+++ b/servers/rendering/renderer_scene.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -31,7 +31,7 @@
#ifndef RENDERINGSERVERSCENE_H
#define RENDERINGSERVERSCENE_H
-#include "servers/rendering/renderer_compositor.h"
+#include "servers/rendering_server.h"
#include "servers/xr/xr_interface.h"
class RendererScene {
@@ -95,6 +95,7 @@ public:
virtual void instance_geometry_set_flag(RID p_instance, RS::InstanceFlags p_flags, bool p_enabled) = 0;
virtual void instance_geometry_set_cast_shadows_setting(RID p_instance, RS::ShadowCastingSetting p_shadow_casting_setting) = 0;
virtual void instance_geometry_set_material_override(RID p_instance, RID p_material) = 0;
+ virtual void instance_geometry_set_material_overlay(RID p_instance, RID p_material) = 0;
virtual void instance_geometry_set_visibility_range(RID p_instance, float p_min, float p_max, float p_min_margin, float p_max_margin, RS::VisibilityRangeFadeMode p_fade_mode) = 0;
virtual void instance_geometry_set_lightmap(RID p_instance, RID p_lightmap, const Rect2 &p_lightmap_uv_scale, int p_slice_index) = 0;
@@ -104,7 +105,7 @@ public:
virtual Variant instance_geometry_get_shader_parameter(RID p_instance, const StringName &p_parameter) const = 0;
virtual Variant instance_geometry_get_shader_parameter_default_value(RID p_instance, const StringName &p_parameter) const = 0;
- virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = false) = 0;
+ virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = true) = 0;
/* SKY API */
@@ -130,7 +131,7 @@ public:
virtual void environment_set_canvas_max_layer(RID p_env, int p_max_layer) = 0;
virtual void environment_set_ambient_light(RID p_env, const Color &p_color, RS::EnvironmentAmbientSource p_ambient = RS::ENV_AMBIENT_SOURCE_BG, float p_energy = 1.0, float p_sky_contribution = 0.0, RS::EnvironmentReflectionSource p_reflection_source = RS::ENV_REFLECTION_SOURCE_BG) = 0;
- virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) = 0;
+ virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) = 0;
virtual void environment_glow_set_use_bicubic_upscale(bool p_enable) = 0;
virtual void environment_glow_set_use_high_quality(bool p_enable) = 0;
@@ -143,10 +144,12 @@ public:
virtual void environment_set_ssr_roughness_quality(RS::EnvironmentSSRRoughnessQuality p_quality) = 0;
virtual void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_power, float p_detail, float p_horizon, float p_sharpness, float p_light_affect, float p_ao_channel_affect) = 0;
-
virtual void environment_set_ssao_quality(RS::EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
- virtual void environment_set_sdfgi(RID p_env, bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
+ virtual void environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) = 0;
+ virtual void environment_set_ssil_quality(RS::EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
+
+ virtual void environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
virtual void environment_set_sdfgi_ray_count(RS::EnvironmentSDFGIRayCount p_ray_count) = 0;
virtual void environment_set_sdfgi_frames_to_converge(RS::EnvironmentSDFGIFramesToConverge p_frames) = 0;
@@ -184,7 +187,7 @@ public:
virtual void directional_shadow_quality_set(RS::ShadowQuality p_quality) = 0;
virtual RID shadow_atlas_create() = 0;
- virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_use_16_bits = false) = 0;
+ virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_use_16_bits = true) = 0;
virtual void shadow_atlas_set_quadrant_subdivision(RID p_atlas, int p_quadrant, int p_subdivision) = 0;
/* Render Buffers */
@@ -208,7 +211,7 @@ public:
int info[RS::VIEWPORT_RENDER_INFO_TYPE_MAX][RS::VIEWPORT_RENDER_INFO_MAX] = {};
};
- virtual void render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RenderInfo *r_render_info = nullptr) = 0;
+ virtual void render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_mesh_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RenderInfo *r_render_info = nullptr) = 0;
virtual void update() = 0;
virtual void render_probes() = 0;
diff --git a/servers/rendering/renderer_scene_cull.cpp b/servers/rendering/renderer_scene_cull.cpp
index 5b834db178..6e1fa59a7a 100644
--- a/servers/rendering/renderer_scene_cull.cpp
+++ b/servers/rendering/renderer_scene_cull.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -228,7 +228,7 @@ void RendererSceneCull::_instance_pair(Instance *p_A, Instance *p_B) {
voxel_gi->lights.insert(A);
} else if (B->base_type == RS::INSTANCE_PARTICLES_COLLISION && A->base_type == RS::INSTANCE_PARTICLES) {
InstanceParticlesCollisionData *collision = static_cast<InstanceParticlesCollisionData *>(B->base_data);
- RSG::storage->particles_add_collision(A->base, collision->instance);
+ RSG::particles_storage->particles_add_collision(A->base, collision->instance);
}
}
@@ -344,7 +344,7 @@ void RendererSceneCull::_instance_unpair(Instance *p_A, Instance *p_B) {
voxel_gi->lights.erase(A);
} else if (B->base_type == RS::INSTANCE_PARTICLES_COLLISION && A->base_type == RS::INSTANCE_PARTICLES) {
InstanceParticlesCollisionData *collision = static_cast<InstanceParticlesCollisionData *>(B->base_data);
- RSG::storage->particles_remove_collision(A->base, collision->instance);
+ RSG::particles_storage->particles_remove_collision(A->base, collision->instance);
}
}
@@ -464,10 +464,10 @@ void RendererSceneCull::instance_initialize(RID p_rid) {
}
void RendererSceneCull::_instance_update_mesh_instance(Instance *p_instance) {
- bool needs_instance = RSG::storage->mesh_needs_instance(p_instance->base, p_instance->skeleton.is_valid());
+ bool needs_instance = RSG::mesh_storage->mesh_needs_instance(p_instance->base, p_instance->skeleton.is_valid());
if (needs_instance != p_instance->mesh_instance.is_valid()) {
if (needs_instance) {
- p_instance->mesh_instance = RSG::storage->mesh_instance_create(p_instance->base);
+ p_instance->mesh_instance = RSG::mesh_storage->mesh_instance_create(p_instance->base);
} else {
RSG::storage->free(p_instance->mesh_instance);
@@ -488,7 +488,7 @@ void RendererSceneCull::_instance_update_mesh_instance(Instance *p_instance) {
}
if (p_instance->mesh_instance.is_valid()) {
- RSG::storage->mesh_instance_set_skeleton(p_instance->mesh_instance, p_instance->skeleton);
+ RSG::mesh_storage->mesh_instance_set_skeleton(p_instance->mesh_instance, p_instance->skeleton);
}
}
@@ -521,7 +521,7 @@ void RendererSceneCull::instance_set_base(RID p_instance, RID p_base) {
case RS::INSTANCE_LIGHT: {
InstanceLightData *light = static_cast<InstanceLightData *>(instance->base_data);
- if (scenario && instance->visible && RSG::storage->light_get_type(instance->base) != RS::LIGHT_DIRECTIONAL && light->bake_mode == RS::LIGHT_BAKE_DYNAMIC) {
+ if (scenario && instance->visible && RSG::light_storage->light_get_type(instance->base) != RS::LIGHT_DIRECTIONAL && light->bake_mode == RS::LIGHT_BAKE_DYNAMIC) {
scenario->dynamic_lights.erase(light->instance);
}
@@ -619,7 +619,7 @@ void RendererSceneCull::instance_set_base(RID p_instance, RID p_base) {
case RS::INSTANCE_LIGHT: {
InstanceLightData *light = memnew(InstanceLightData);
- if (scenario && RSG::storage->light_get_type(p_base) == RS::LIGHT_DIRECTIONAL) {
+ if (scenario && RSG::light_storage->light_get_type(p_base) == RS::LIGHT_DIRECTIONAL) {
light->D = scenario->directional_lights.push_back(instance);
}
@@ -636,6 +636,7 @@ void RendererSceneCull::instance_set_base(RID p_instance, RID p_base) {
scene_render->geometry_instance_set_skeleton(geom->geometry_instance, instance->skeleton);
scene_render->geometry_instance_set_material_override(geom->geometry_instance, instance->material_override);
+ scene_render->geometry_instance_set_material_overlay(geom->geometry_instance, instance->material_overlay);
scene_render->geometry_instance_set_surface_materials(geom->geometry_instance, instance->materials);
scene_render->geometry_instance_set_transform(geom->geometry_instance, instance->transform, instance->aabb, instance->transformed_aabb);
scene_render->geometry_instance_set_layer_mask(geom->geometry_instance, instance->layer_mask);
@@ -658,8 +659,8 @@ void RendererSceneCull::instance_set_base(RID p_instance, RID p_base) {
} break;
case RS::INSTANCE_PARTICLES_COLLISION: {
InstanceParticlesCollisionData *collision = memnew(InstanceParticlesCollisionData);
- collision->instance = RSG::storage->particles_collision_instance_create(p_base);
- RSG::storage->particles_collision_instance_set_active(collision->instance, instance->visible);
+ collision->instance = RSG::particles_storage->particles_collision_instance_create(p_base);
+ RSG::particles_storage->particles_collision_instance_set_active(collision->instance, instance->visible);
instance->base_data = collision;
} break;
case RS::INSTANCE_FOG_VOLUME: {
@@ -800,7 +801,7 @@ void RendererSceneCull::instance_set_scenario(RID p_instance, RID p_scenario) {
case RS::INSTANCE_LIGHT: {
InstanceLightData *light = static_cast<InstanceLightData *>(instance->base_data);
- if (RSG::storage->light_get_type(instance->base) == RS::LIGHT_DIRECTIONAL) {
+ if (RSG::light_storage->light_get_type(instance->base) == RS::LIGHT_DIRECTIONAL) {
light->D = scenario->directional_lights.push_back(instance);
}
} break;
@@ -859,7 +860,7 @@ void RendererSceneCull::instance_set_transform(RID p_instance, const Transform3D
#ifdef DEBUG_ENABLED
for (int i = 0; i < 4; i++) {
- const Vector3 &v = i < 3 ? p_transform.basis.elements[i] : p_transform.origin;
+ const Vector3 &v = i < 3 ? p_transform.basis.rows[i] : p_transform.origin;
ERR_FAIL_COND(Math::is_inf(v.x));
ERR_FAIL_COND(Math::is_nan(v.x));
ERR_FAIL_COND(Math::is_inf(v.y));
@@ -889,7 +890,7 @@ void RendererSceneCull::instance_set_blend_shape_weight(RID p_instance, int p_sh
}
if (instance->mesh_instance.is_valid()) {
- RSG::storage->mesh_instance_set_blend_shape_weight(instance->mesh_instance, p_shape, p_weight);
+ RSG::mesh_storage->mesh_instance_set_blend_shape_weight(instance->mesh_instance, p_shape, p_weight);
}
}
@@ -899,7 +900,7 @@ void RendererSceneCull::instance_set_surface_override_material(RID p_instance, i
if (instance->base_type == RS::INSTANCE_MESH) {
//may not have been updated yet, may also have not been set yet. When updated will be correcte, worst case
- instance->materials.resize(MAX(p_surface + 1, RSG::storage->mesh_get_surface_count(instance->base)));
+ instance->materials.resize(MAX(p_surface + 1, RSG::mesh_storage->mesh_get_surface_count(instance->base)));
}
ERR_FAIL_INDEX(p_surface, instance->materials.size());
@@ -929,7 +930,7 @@ void RendererSceneCull::instance_set_visible(RID p_instance, bool p_visible) {
if (instance->base_type == RS::INSTANCE_LIGHT) {
InstanceLightData *light = static_cast<InstanceLightData *>(instance->base_data);
- if (instance->scenario && RSG::storage->light_get_type(instance->base) != RS::LIGHT_DIRECTIONAL && light->bake_mode == RS::LIGHT_BAKE_DYNAMIC) {
+ if (instance->scenario && RSG::light_storage->light_get_type(instance->base) != RS::LIGHT_DIRECTIONAL && light->bake_mode == RS::LIGHT_BAKE_DYNAMIC) {
if (p_visible) {
instance->scenario->dynamic_lights.push_back(light->instance);
} else {
@@ -940,7 +941,7 @@ void RendererSceneCull::instance_set_visible(RID p_instance, bool p_visible) {
if (instance->base_type == RS::INSTANCE_PARTICLES_COLLISION) {
InstanceParticlesCollisionData *collision = static_cast<InstanceParticlesCollisionData *>(instance->base_data);
- RSG::storage->particles_collision_instance_set_active(collision->instance, p_visible);
+ RSG::particles_storage->particles_collision_instance_set_active(collision->instance, p_visible);
}
if (instance->base_type == RS::INSTANCE_FOG_VOLUME) {
@@ -996,7 +997,7 @@ void RendererSceneCull::instance_attach_skeleton(RID p_instance, RID p_skeleton)
if (p_skeleton.is_valid()) {
//update the dependency now, so if cleared, we remove it
- RSG::storage->skeleton_update_dependency(p_skeleton, &instance->dependency_tracker);
+ RSG::mesh_storage->skeleton_update_dependency(p_skeleton, &instance->dependency_tracker);
}
_instance_queue_update(instance, true, true);
@@ -1222,6 +1223,19 @@ void RendererSceneCull::instance_geometry_set_material_override(RID p_instance,
}
}
+void RendererSceneCull::instance_geometry_set_material_overlay(RID p_instance, RID p_material) {
+ Instance *instance = instance_owner.get_or_null(p_instance);
+ ERR_FAIL_COND(!instance);
+
+ instance->material_overlay = p_material;
+ _instance_queue_update(instance, false, true);
+
+ if ((1 << instance->base_type) & RS::INSTANCE_GEOMETRY_MASK && instance->base_data) {
+ InstanceGeometryData *geom = static_cast<InstanceGeometryData *>(instance->base_data);
+ scene_render->geometry_instance_set_material_overlay(geom->geometry_instance, p_material);
+ }
+}
+
void RendererSceneCull::instance_geometry_set_visibility_range(RID p_instance, float p_min, float p_max, float p_min_margin, float p_max_margin, RS::VisibilityRangeFadeMode p_fade_mode) {
Instance *instance = instance_owner.get_or_null(p_instance);
ERR_FAIL_COND(!instance);
@@ -1424,7 +1438,7 @@ void RendererSceneCull::instance_geometry_set_shader_parameter(RID p_instance, c
E->get().value = p_value;
if (E->get().index >= 0 && instance->instance_allocated_shader_parameters) {
//update directly
- RSG::storage->global_variables_instance_update(p_instance, E->get().index, p_value);
+ RSG::material_storage->global_variables_instance_update(p_instance, E->get().index, p_value);
}
}
}
@@ -1476,8 +1490,8 @@ void RendererSceneCull::_update_instance(Instance *p_instance) {
scene_render->light_instance_set_aabb(light->instance, p_instance->transform.xform(p_instance->aabb));
light->shadow_dirty = true;
- RS::LightBakeMode bake_mode = RSG::storage->light_get_bake_mode(p_instance->base);
- if (RSG::storage->light_get_type(p_instance->base) != RS::LIGHT_DIRECTIONAL && bake_mode != light->bake_mode) {
+ RS::LightBakeMode bake_mode = RSG::light_storage->light_get_bake_mode(p_instance->base);
+ if (RSG::light_storage->light_get_type(p_instance->base) != RS::LIGHT_DIRECTIONAL && bake_mode != light->bake_mode) {
if (p_instance->visible && p_instance->scenario && light->bake_mode == RS::LIGHT_BAKE_DYNAMIC) {
p_instance->scenario->dynamic_lights.erase(light->instance);
}
@@ -1489,7 +1503,7 @@ void RendererSceneCull::_update_instance(Instance *p_instance) {
}
}
- uint32_t max_sdfgi_cascade = RSG::storage->light_get_max_sdfgi_cascade(p_instance->base);
+ uint32_t max_sdfgi_cascade = RSG::light_storage->light_get_max_sdfgi_cascade(p_instance->base);
if (light->max_sdfgi_cascade != max_sdfgi_cascade) {
light->max_sdfgi_cascade = max_sdfgi_cascade; //should most likely make sdfgi dirty in scenario
}
@@ -1515,15 +1529,15 @@ void RendererSceneCull::_update_instance(Instance *p_instance) {
scene_render->voxel_gi_instance_set_transform_to_data(voxel_gi->probe_instance, p_instance->transform);
} else if (p_instance->base_type == RS::INSTANCE_PARTICLES) {
- RSG::storage->particles_set_emission_transform(p_instance->base, p_instance->transform);
+ RSG::particles_storage->particles_set_emission_transform(p_instance->base, p_instance->transform);
} else if (p_instance->base_type == RS::INSTANCE_PARTICLES_COLLISION) {
InstanceParticlesCollisionData *collision = static_cast<InstanceParticlesCollisionData *>(p_instance->base_data);
//remove materials no longer used and un-own them
- if (RSG::storage->particles_collision_is_heightfield(p_instance->base)) {
+ if (RSG::particles_storage->particles_collision_is_heightfield(p_instance->base)) {
heightfield_particle_colliders_update_list.insert(p_instance);
}
- RSG::storage->particles_collision_instance_set_transform(collision->instance, p_instance->transform);
+ RSG::particles_storage->particles_collision_instance_set_transform(collision->instance, p_instance->transform);
} else if (p_instance->base_type == RS::INSTANCE_FOG_VOLUME) {
InstanceFogVolumeData *volume = static_cast<InstanceFogVolumeData *>(p_instance->base_data);
scene_render->fog_volume_instance_set_transform(volume->instance, p_instance->transform);
@@ -1632,8 +1646,8 @@ void RendererSceneCull::_update_instance(Instance *p_instance) {
case RS::INSTANCE_LIGHT: {
InstanceLightData *light_data = static_cast<InstanceLightData *>(p_instance->base_data);
idata.instance_data_rid = light_data->instance.get_id();
- light_data->uses_projector = RSG::storage->light_has_projector(p_instance->base);
- light_data->uses_softshadow = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SIZE) > CMP_EPSILON;
+ light_data->uses_projector = RSG::light_storage->light_has_projector(p_instance->base);
+ light_data->uses_softshadow = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SIZE) > CMP_EPSILON;
} break;
case RS::INSTANCE_REFLECTION_PROBE: {
@@ -1726,7 +1740,7 @@ void RendererSceneCull::_update_instance(Instance *p_instance) {
pair.pair_mask |= RS::INSTANCE_GEOMETRY_MASK;
pair.bvh = &p_instance->scenario->indexers[Scenario::INDEXER_GEOMETRY];
- if (RSG::storage->light_get_bake_mode(p_instance->base) == RS::LIGHT_BAKE_DYNAMIC) {
+ if (RSG::light_storage->light_get_bake_mode(p_instance->base) == RS::LIGHT_BAKE_DYNAMIC) {
pair.pair_mask |= (1 << RS::INSTANCE_VOXEL_GI);
pair.bvh2 = &p_instance->scenario->indexers[Scenario::INDEXER_VOLUMES];
}
@@ -1833,7 +1847,7 @@ void RendererSceneCull::_update_instance_aabb(Instance *p_instance) {
if (p_instance->custom_aabb) {
new_aabb = *p_instance->custom_aabb;
} else {
- new_aabb = RSG::storage->mesh_get_aabb(p_instance->base, p_instance->skeleton);
+ new_aabb = RSG::mesh_storage->mesh_get_aabb(p_instance->base, p_instance->skeleton);
}
} break;
@@ -1842,7 +1856,7 @@ void RendererSceneCull::_update_instance_aabb(Instance *p_instance) {
if (p_instance->custom_aabb) {
new_aabb = *p_instance->custom_aabb;
} else {
- new_aabb = RSG::storage->multimesh_get_aabb(p_instance->base);
+ new_aabb = RSG::mesh_storage->multimesh_get_aabb(p_instance->base);
}
} break;
@@ -1850,12 +1864,12 @@ void RendererSceneCull::_update_instance_aabb(Instance *p_instance) {
if (p_instance->custom_aabb) {
new_aabb = *p_instance->custom_aabb;
} else {
- new_aabb = RSG::storage->particles_get_aabb(p_instance->base);
+ new_aabb = RSG::particles_storage->particles_get_aabb(p_instance->base);
}
} break;
case RenderingServer::INSTANCE_PARTICLES_COLLISION: {
- new_aabb = RSG::storage->particles_collision_get_aabb(p_instance->base);
+ new_aabb = RSG::particles_storage->particles_collision_get_aabb(p_instance->base);
} break;
case RenderingServer::INSTANCE_FOG_VOLUME: {
@@ -1865,15 +1879,15 @@ void RendererSceneCull::_update_instance_aabb(Instance *p_instance) {
new_aabb = RSG::storage->visibility_notifier_get_aabb(p_instance->base);
} break;
case RenderingServer::INSTANCE_LIGHT: {
- new_aabb = RSG::storage->light_get_aabb(p_instance->base);
+ new_aabb = RSG::light_storage->light_get_aabb(p_instance->base);
} break;
case RenderingServer::INSTANCE_REFLECTION_PROBE: {
- new_aabb = RSG::storage->reflection_probe_get_aabb(p_instance->base);
+ new_aabb = RSG::light_storage->reflection_probe_get_aabb(p_instance->base);
} break;
case RenderingServer::INSTANCE_DECAL: {
- new_aabb = RSG::storage->decal_get_aabb(p_instance->base);
+ new_aabb = RSG::texture_storage->decal_get_aabb(p_instance->base);
} break;
case RenderingServer::INSTANCE_VOXEL_GI: {
@@ -1881,7 +1895,7 @@ void RendererSceneCull::_update_instance_aabb(Instance *p_instance) {
} break;
case RenderingServer::INSTANCE_LIGHTMAP: {
- new_aabb = RSG::storage->lightmap_get_aabb(p_instance->base);
+ new_aabb = RSG::light_storage->lightmap_get_aabb(p_instance->base);
} break;
default: {
@@ -1909,7 +1923,7 @@ void RendererSceneCull::_update_instance_lightmap_captures(Instance *p_instance)
for (Set<Instance *>::Element *E = geom->lightmap_captures.front(); E; E = E->next()) {
Instance *lightmap = E->get();
- bool interior = RSG::storage->lightmap_is_interior(lightmap->base);
+ bool interior = RSG::light_storage->lightmap_is_interior(lightmap->base);
if (inside && !interior) {
continue; //we are inside, ignore exteriors
@@ -1920,13 +1934,13 @@ void RendererSceneCull::_update_instance_lightmap_captures(Instance *p_instance)
Vector3 lm_pos = to_bounds.xform(center);
- AABB bounds = RSG::storage->lightmap_get_aabb(lightmap->base);
+ AABB bounds = RSG::light_storage->lightmap_get_aabb(lightmap->base);
if (!bounds.has_point(lm_pos)) {
continue; //not in this lightmap
}
Color sh[9];
- RSG::storage->lightmap_tap_sh_light(lightmap->base, lm_pos, sh);
+ RSG::light_storage->lightmap_tap_sh_light(lightmap->base, lm_pos, sh);
//rotate it
Basis rot = lightmap->transform.basis.orthonormalized();
@@ -1983,19 +1997,19 @@ void RendererSceneCull::_light_instance_setup_directional_shadow(int p_shadow_in
light_transform.orthonormalize(); //scale does not count on lights
real_t max_distance = p_cam_projection.get_z_far();
- real_t shadow_max = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE);
+ real_t shadow_max = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SHADOW_MAX_DISTANCE);
if (shadow_max > 0 && !p_cam_orthogonal) { //its impractical (and leads to unwanted behaviors) to set max distance in orthogonal camera
max_distance = MIN(shadow_max, max_distance);
}
max_distance = MAX(max_distance, p_cam_projection.get_z_near() + 0.001);
real_t min_distance = MIN(p_cam_projection.get_z_near(), max_distance);
- real_t pancake_size = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE);
+ real_t pancake_size = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SHADOW_PANCAKE_SIZE);
real_t range = max_distance - min_distance;
int splits = 0;
- switch (RSG::storage->light_directional_get_shadow_mode(p_instance->base)) {
+ switch (RSG::light_storage->light_directional_get_shadow_mode(p_instance->base)) {
case RS::LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL:
splits = 1;
break;
@@ -2011,21 +2025,21 @@ void RendererSceneCull::_light_instance_setup_directional_shadow(int p_shadow_in
distances[0] = min_distance;
for (int i = 0; i < splits; i++) {
- distances[i + 1] = min_distance + RSG::storage->light_get_param(p_instance->base, RS::LightParam(RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET + i)) * range;
+ distances[i + 1] = min_distance + RSG::light_storage->light_get_param(p_instance->base, RS::LightParam(RS::LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET + i)) * range;
};
distances[splits] = max_distance;
real_t texture_size = scene_render->get_directional_light_shadow_size(light->instance);
- bool overlap = RSG::storage->light_directional_get_blend_splits(p_instance->base);
+ bool overlap = RSG::light_storage->light_directional_get_blend_splits(p_instance->base);
cull.shadow_count = p_shadow_index + 1;
cull.shadows[p_shadow_index].cascade_count = splits;
cull.shadows[p_shadow_index].light_instance = light->instance;
for (int i = 0; i < splits; i++) {
- RENDER_TIMESTAMP("Culling Directional Light split" + itos(i));
+ RENDER_TIMESTAMP("Cull DirectionalLight3D, Split " + itos(i));
// setup a camera matrix for that range!
CameraMatrix camera_matrix;
@@ -2051,9 +2065,9 @@ void RendererSceneCull::_light_instance_setup_directional_shadow(int p_shadow_in
Transform3D transform = light_transform; //discard scale and stabilize light
- Vector3 x_vec = transform.basis.get_axis(Vector3::AXIS_X).normalized();
- Vector3 y_vec = transform.basis.get_axis(Vector3::AXIS_Y).normalized();
- Vector3 z_vec = transform.basis.get_axis(Vector3::AXIS_Z).normalized();
+ Vector3 x_vec = transform.basis.get_column(Vector3::AXIS_X).normalized();
+ Vector3 y_vec = transform.basis.get_column(Vector3::AXIS_Y).normalized();
+ Vector3 z_vec = transform.basis.get_column(Vector3::AXIS_Z).normalized();
//z_vec points against the camera, like in default opengl
real_t x_min = 0.f, x_max = 0.f;
@@ -2125,7 +2139,7 @@ void RendererSceneCull::_light_instance_setup_directional_shadow(int p_shadow_in
z_min_cam = z_vec.dot(center) - radius;
{
- float soft_shadow_angle = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SIZE);
+ float soft_shadow_angle = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SIZE);
if (soft_shadow_angle > 0.0) {
float z_range = (z_vec.dot(center) + radius + pancake_size) - z_min_cam;
@@ -2193,7 +2207,7 @@ void RendererSceneCull::_light_instance_setup_directional_shadow(int p_shadow_in
}
}
-bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, const Transform3D p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, bool p_cam_vaspect, RID p_shadow_atlas, Scenario *p_scenario, float p_screen_lod_threshold) {
+bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, const Transform3D p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, bool p_cam_vaspect, RID p_shadow_atlas, Scenario *p_scenario, float p_screen_mesh_lod_threshold) {
InstanceLightData *light = static_cast<InstanceLightData *>(p_instance->base_data);
Transform3D light_transform = p_instance->transform;
@@ -2201,11 +2215,11 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
bool animated_material_found = false;
- switch (RSG::storage->light_get_type(p_instance->base)) {
+ switch (RSG::light_storage->light_get_type(p_instance->base)) {
case RS::LIGHT_DIRECTIONAL: {
} break;
case RS::LIGHT_OMNI: {
- RS::LightOmniShadowMode shadow_mode = RSG::storage->light_omni_get_shadow_mode(p_instance->base);
+ RS::LightOmniShadowMode shadow_mode = RSG::light_storage->light_omni_get_shadow_mode(p_instance->base);
if (shadow_mode == RS::LIGHT_OMNI_SHADOW_DUAL_PARABOLOID || !scene_render->light_instances_can_render_shadow_cube()) {
if (max_shadows_used + 2 > MAX_UPDATE_SHADOWS) {
@@ -2213,9 +2227,9 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
}
for (int i = 0; i < 2; i++) {
//using this one ensures that raster deferred will have it
- RENDER_TIMESTAMP("Culling Shadow Paraboloid" + itos(i));
+ RENDER_TIMESTAMP("Cull OmniLight3D Shadow Paraboloid, Half " + itos(i));
- real_t radius = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
+ real_t radius = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
real_t z = i == 0 ? -1 : 1;
Vector<Plane> planes;
@@ -2257,14 +2271,14 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
}
if (instance->mesh_instance.is_valid()) {
- RSG::storage->mesh_instance_check_for_update(instance->mesh_instance);
+ RSG::mesh_storage->mesh_instance_check_for_update(instance->mesh_instance);
}
}
shadow_data.instances.push_back(static_cast<InstanceGeometryData *>(instance->base_data)->geometry_instance);
}
- RSG::storage->update_mesh_instances();
+ RSG::mesh_storage->update_mesh_instances();
scene_render->light_instance_set_shadow_transform(light->instance, CameraMatrix(), light_transform, radius, 0, i, 0);
shadow_data.light = light->instance;
@@ -2276,12 +2290,12 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
return true;
}
- real_t radius = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
+ real_t radius = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
CameraMatrix cm;
cm.set_perspective(90, 1, radius * 0.005f, radius);
for (int i = 0; i < 6; i++) {
- RENDER_TIMESTAMP("Culling Shadow Cube side" + itos(i));
+ RENDER_TIMESTAMP("Cull OmniLight3D Shadow Cube, Side " + itos(i));
//using this one ensures that raster deferred will have it
static const Vector3 view_normals[6] = {
@@ -2334,14 +2348,14 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
animated_material_found = true;
}
if (instance->mesh_instance.is_valid()) {
- RSG::storage->mesh_instance_check_for_update(instance->mesh_instance);
+ RSG::mesh_storage->mesh_instance_check_for_update(instance->mesh_instance);
}
}
shadow_data.instances.push_back(static_cast<InstanceGeometryData *>(instance->base_data)->geometry_instance);
}
- RSG::storage->update_mesh_instances();
+ RSG::mesh_storage->update_mesh_instances();
scene_render->light_instance_set_shadow_transform(light->instance, cm, xform, radius, 0, i, 0);
shadow_data.light = light->instance;
@@ -2354,14 +2368,14 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
} break;
case RS::LIGHT_SPOT: {
- RENDER_TIMESTAMP("Culling Spot Light");
+ RENDER_TIMESTAMP("Cull SpotLight3D Shadow");
if (max_shadows_used + 1 > MAX_UPDATE_SHADOWS) {
return true;
}
- real_t radius = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
- real_t angle = RSG::storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
+ real_t radius = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_RANGE);
+ real_t angle = RSG::light_storage->light_get_param(p_instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
CameraMatrix cm;
cm.set_perspective(angle * 2.0, 1.0, 0.005f * radius, radius);
@@ -2398,13 +2412,13 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
}
if (instance->mesh_instance.is_valid()) {
- RSG::storage->mesh_instance_check_for_update(instance->mesh_instance);
+ RSG::mesh_storage->mesh_instance_check_for_update(instance->mesh_instance);
}
}
shadow_data.instances.push_back(static_cast<InstanceGeometryData *>(instance->base_data)->geometry_instance);
}
- RSG::storage->update_mesh_instances();
+ RSG::mesh_storage->update_mesh_instances();
scene_render->light_instance_set_shadow_transform(light->instance, cm, light_transform, radius, 0, 0, 0);
shadow_data.light = light->instance;
@@ -2416,7 +2430,7 @@ bool RendererSceneCull::_light_instance_update_shadow(Instance *p_instance, cons
return animated_material_found;
}
-void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_screen_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RenderInfo *r_render_info) {
+void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_screen_mesh_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RenderInfo *r_render_info) {
#ifndef _3D_DISABLED
Camera *camera = camera_owner.get_or_null(p_camera);
@@ -2430,7 +2444,7 @@ void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_
Transform3D transform = camera->transform;
CameraMatrix projection;
bool vaspect = camera->vaspect;
- bool is_ortogonal = false;
+ bool is_orthogonal = false;
switch (camera->type) {
case Camera::ORTHOGONAL: {
@@ -2440,7 +2454,7 @@ void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_
camera->znear,
camera->zfar,
camera->vaspect);
- is_ortogonal = true;
+ is_orthogonal = true;
} break;
case Camera::PERSPECTIVE: {
projection.set_perspective(
@@ -2462,7 +2476,7 @@ void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_
} break;
}
- camera_data.set_camera(transform, projection, is_ortogonal, vaspect);
+ camera_data.set_camera(transform, projection, is_orthogonal, vaspect);
} else {
// Setup our camera for our XR interface.
// We can support multiple views here each with their own camera
@@ -2494,11 +2508,11 @@ void RendererSceneCull::render_camera(RID p_render_buffers, RID p_camera, RID p_
RID environment = _render_get_environment(p_camera, p_scenario);
- RENDER_TIMESTAMP("Update occlusion buffer")
+ RENDER_TIMESTAMP("Update Occlusion Buffer")
// For now just cull on the first camera
- RendererSceneOcclusionCull::get_singleton()->buffer_update(p_viewport, camera_data.main_transform, camera_data.main_projection, camera_data.is_ortogonal, RendererThreadPool::singleton->thread_work_pool);
+ RendererSceneOcclusionCull::get_singleton()->buffer_update(p_viewport, camera_data.main_transform, camera_data.main_projection, camera_data.is_orthogonal, RendererThreadPool::singleton->thread_work_pool);
- _render_scene(&camera_data, p_render_buffers, environment, camera->effects, camera->visible_layers, p_scenario, p_viewport, p_shadow_atlas, RID(), -1, p_screen_lod_threshold, true, r_render_info);
+ _render_scene(&camera_data, p_render_buffers, environment, camera->effects, camera->visible_layers, p_scenario, p_viewport, p_shadow_atlas, RID(), -1, p_screen_mesh_lod_threshold, true, r_render_info);
#endif
}
@@ -2609,7 +2623,7 @@ void RendererSceneCull::_scene_cull_threaded(uint32_t p_thread, CullData *cull_d
void RendererSceneCull::_scene_cull(CullData &cull_data, InstanceCullResult &cull_result, uint64_t p_from, uint64_t p_to) {
uint64_t frame_number = RSG::rasterizer->get_frame_number();
- float lightmap_probe_update_speed = RSG::storage->lightmap_get_probe_capture_update_speed() * RSG::rasterizer->get_frame_delta_time();
+ float lightmap_probe_update_speed = RSG::light_storage->lightmap_get_probe_capture_update_speed() * RSG::rasterizer->get_frame_delta_time();
uint32_t sdfgi_last_light_index = 0xFFFFFFFF;
uint32_t sdfgi_last_light_cascade = 0xFFFFFFFF;
@@ -2640,7 +2654,7 @@ void RendererSceneCull::_scene_cull(CullData &cull_data, InstanceCullResult &cul
if (base_type == RS::INSTANCE_LIGHT) {
cull_result.lights.push_back(idata.instance);
cull_result.light_instances.push_back(RID::from_uint64(idata.instance_data_rid));
- if (cull_data.shadow_atlas.is_valid() && RSG::storage->light_has_shadow(idata.base_rid)) {
+ if (cull_data.shadow_atlas.is_valid() && RSG::light_storage->light_has_shadow(idata.base_rid)) {
scene_render->light_instance_mark_visible(RID::from_uint64(idata.instance_data_rid)); //mark it visible for shadow allocation later
}
@@ -2700,14 +2714,14 @@ void RendererSceneCull::_scene_cull(CullData &cull_data, InstanceCullResult &cul
mesh_visible = true;
} else if (base_type == RS::INSTANCE_PARTICLES) {
//particles visible? process them
- if (RSG::storage->particles_is_inactive(idata.base_rid)) {
+ if (RSG::particles_storage->particles_is_inactive(idata.base_rid)) {
//but if nothing is going on, don't do it.
keep = false;
} else {
cull_data.cull->lock.lock();
- RSG::storage->particles_request_process(idata.base_rid);
+ RSG::particles_storage->particles_request_process(idata.base_rid);
cull_data.cull->lock.unlock();
- RSG::storage->particles_set_view_axis(idata.base_rid, -cull_data.cam_transform.basis.get_axis(2).normalized(), cull_data.cam_transform.basis.get_axis(1).normalized());
+ RSG::particles_storage->particles_set_view_axis(idata.base_rid, -cull_data.cam_transform.basis.get_column(2).normalized(), cull_data.cam_transform.basis.get_column(1).normalized());
//particles visible? request redraw
RenderingServerDefault::redraw_request();
}
@@ -2862,7 +2876,7 @@ void RendererSceneCull::_scene_cull(CullData &cull_data, InstanceCullResult &cul
}
}
-void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_camera_data, RID p_render_buffers, RID p_environment, RID p_force_camera_effects, uint32_t p_visible_layers, RID p_scenario, RID p_viewport, RID p_shadow_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, bool p_using_shadows, RendererScene::RenderInfo *r_render_info) {
+void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_camera_data, RID p_render_buffers, RID p_environment, RID p_force_camera_effects, uint32_t p_visible_layers, RID p_scenario, RID p_viewport, RID p_shadow_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, bool p_using_shadows, RendererScene::RenderInfo *r_render_info) {
Instance *render_reflection_probe = instance_owner.get_or_null(p_reflection_probe); //if null, not rendering to it
Scenario *scenario = scenario_owner.get_or_null(p_scenario);
@@ -2876,7 +2890,7 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
scene_render->sdfgi_update(p_render_buffers, p_environment, p_camera_data->main_transform.origin); //update conditions for SDFGI (whether its used or not)
}
- RENDER_TIMESTAMP("Visibility Dependencies");
+ RENDER_TIMESTAMP("Update Visibility Dependencies");
if (scenario->instance_visibility.get_bin_count() > 0) {
if (!scenario->viewport_visibility_masks.has(p_viewport)) {
@@ -2904,9 +2918,9 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
}
}
- RENDER_TIMESTAMP("Culling");
+ RENDER_TIMESTAMP("Cull 3D Scene");
- //rasterizer->set_camera(p_camera_data->main_transform, p_camera_data.main_projection, p_camera_data.is_ortogonal);
+ //rasterizer->set_camera(p_camera_data->main_transform, p_camera_data.main_projection, p_camera_data.is_orthogonal);
/* STEP 2 - CULL */
@@ -2934,7 +2948,7 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
//check shadow..
if (light) {
- if (p_using_shadows && p_shadow_atlas.is_valid() && RSG::storage->light_has_shadow(E->base) && !(RSG::storage->light_get_type(E->base) == RS::LIGHT_DIRECTIONAL && RSG::storage->light_directional_is_sky_only(E->base))) {
+ if (p_using_shadows && p_shadow_atlas.is_valid() && RSG::light_storage->light_has_shadow(E->base) && !(RSG::light_storage->light_get_type(E->base) == RS::LIGHT_DIRECTIONAL && RSG::light_storage->light_directional_get_sky_mode(E->base) == RS::LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY)) {
lights_with_shadow.push_back(E);
}
//add to list
@@ -2945,7 +2959,7 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
scene_render->set_directional_shadow_count(lights_with_shadow.size());
for (int i = 0; i < lights_with_shadow.size(); i++) {
- _light_instance_setup_directional_shadow(i, lights_with_shadow[i], p_camera_data->main_transform, p_camera_data->main_projection, p_camera_data->is_ortogonal, p_camera_data->vaspect);
+ _light_instance_setup_directional_shadow(i, lights_with_shadow[i], p_camera_data->main_transform, p_camera_data->main_projection, p_camera_data->is_orthogonal, p_camera_data->vaspect);
}
}
@@ -3023,9 +3037,9 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
if (scene_cull_result.mesh_instances.size()) {
for (uint64_t i = 0; i < scene_cull_result.mesh_instances.size(); i++) {
- RSG::storage->mesh_instance_check_for_update(scene_cull_result.mesh_instances[i]);
+ RSG::mesh_storage->mesh_instance_check_for_update(scene_cull_result.mesh_instances[i]);
}
- RSG::storage->update_mesh_instances();
+ RSG::mesh_storage->update_mesh_instances();
}
}
@@ -3056,7 +3070,7 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
for (uint32_t i = 0; i < (uint32_t)scene_cull_result.lights.size(); i++) {
Instance *ins = scene_cull_result.lights[i];
- if (!p_shadow_atlas.is_valid() || !RSG::storage->light_has_shadow(ins->base)) {
+ if (!p_shadow_atlas.is_valid() || !RSG::light_storage->light_has_shadow(ins->base)) {
continue;
}
@@ -3068,22 +3082,22 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
Transform3D cam_xf = p_camera_data->main_transform;
float zn = p_camera_data->main_projection.get_z_near();
- Plane p(-cam_xf.basis.get_axis(2), cam_xf.origin + cam_xf.basis.get_axis(2) * -zn); //camera near plane
+ Plane p(-cam_xf.basis.get_column(2), cam_xf.origin + cam_xf.basis.get_column(2) * -zn); //camera near plane
// near plane half width and height
Vector2 vp_half_extents = p_camera_data->main_projection.get_viewport_half_extents();
- switch (RSG::storage->light_get_type(ins->base)) {
+ switch (RSG::light_storage->light_get_type(ins->base)) {
case RS::LIGHT_OMNI: {
- float radius = RSG::storage->light_get_param(ins->base, RS::LIGHT_PARAM_RANGE);
+ float radius = RSG::light_storage->light_get_param(ins->base, RS::LIGHT_PARAM_RANGE);
//get two points parallel to near plane
Vector3 points[2] = {
ins->transform.origin,
- ins->transform.origin + cam_xf.basis.get_axis(0) * radius
+ ins->transform.origin + cam_xf.basis.get_column(0) * radius
};
- if (!p_camera_data->is_ortogonal) {
+ if (!p_camera_data->is_orthogonal) {
//if using perspetive, map them to near plane
for (int j = 0; j < 2; j++) {
if (p.distance_to(points[j]) < 0) {
@@ -3098,20 +3112,20 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
coverage = screen_diameter / (vp_half_extents.x + vp_half_extents.y);
} break;
case RS::LIGHT_SPOT: {
- float radius = RSG::storage->light_get_param(ins->base, RS::LIGHT_PARAM_RANGE);
- float angle = RSG::storage->light_get_param(ins->base, RS::LIGHT_PARAM_SPOT_ANGLE);
+ float radius = RSG::light_storage->light_get_param(ins->base, RS::LIGHT_PARAM_RANGE);
+ float angle = RSG::light_storage->light_get_param(ins->base, RS::LIGHT_PARAM_SPOT_ANGLE);
float w = radius * Math::sin(Math::deg2rad(angle));
float d = radius * Math::cos(Math::deg2rad(angle));
- Vector3 base = ins->transform.origin - ins->transform.basis.get_axis(2).normalized() * d;
+ Vector3 base = ins->transform.origin - ins->transform.basis.get_column(2).normalized() * d;
Vector3 points[2] = {
base,
- base + cam_xf.basis.get_axis(0) * w
+ base + cam_xf.basis.get_column(0) * w
};
- if (!p_camera_data->is_ortogonal) {
+ if (!p_camera_data->is_orthogonal) {
//if using perspetive, map them to near plane
for (int j = 0; j < 2; j++) {
if (p.distance_to(points[j]) < 0) {
@@ -3141,9 +3155,9 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
if (redraw && max_shadows_used < MAX_UPDATE_SHADOWS) {
//must redraw!
- RENDER_TIMESTAMP(">Rendering Light " + itos(i));
- light->shadow_dirty = _light_instance_update_shadow(ins, p_camera_data->main_transform, p_camera_data->main_projection, p_camera_data->is_ortogonal, p_camera_data->vaspect, p_shadow_atlas, scenario, p_screen_lod_threshold);
- RENDER_TIMESTAMP("<Rendering Light " + itos(i));
+ RENDER_TIMESTAMP("> Render Light3D " + itos(i));
+ light->shadow_dirty = _light_instance_update_shadow(ins, p_camera_data->main_transform, p_camera_data->main_projection, p_camera_data->is_orthogonal, p_camera_data->vaspect, p_shadow_atlas, scenario, p_screen_mesh_lod_threshold);
+ RENDER_TIMESTAMP("< Render Light3D " + itos(i));
} else {
light->shadow_dirty = redraw;
}
@@ -3203,8 +3217,8 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
occluders_tex = RSG::viewport->viewport_get_occluder_debug_texture(p_viewport);
}
- RENDER_TIMESTAMP("Render Scene ");
- scene_render->render_scene(p_render_buffers, p_camera_data, scene_cull_result.geometry_instances, scene_cull_result.light_instances, scene_cull_result.reflections, scene_cull_result.voxel_gi_instances, scene_cull_result.decals, scene_cull_result.lightmaps, scene_cull_result.fog_volumes, p_environment, camera_effects, p_shadow_atlas, occluders_tex, p_reflection_probe.is_valid() ? RID() : scenario->reflection_atlas, p_reflection_probe, p_reflection_probe_pass, p_screen_lod_threshold, render_shadow_data, max_shadows_used, render_sdfgi_data, cull.sdfgi.region_count, &sdfgi_update_data, r_render_info);
+ RENDER_TIMESTAMP("Render 3D Scene");
+ scene_render->render_scene(p_render_buffers, p_camera_data, scene_cull_result.geometry_instances, scene_cull_result.light_instances, scene_cull_result.reflections, scene_cull_result.voxel_gi_instances, scene_cull_result.decals, scene_cull_result.lightmaps, scene_cull_result.fog_volumes, p_environment, camera_effects, p_shadow_atlas, occluders_tex, p_reflection_probe.is_valid() ? RID() : scenario->reflection_atlas, p_reflection_probe, p_reflection_probe_pass, p_screen_mesh_lod_threshold, render_shadow_data, max_shadows_used, render_sdfgi_data, cull.sdfgi.region_count, &sdfgi_update_data, r_render_info);
for (uint32_t i = 0; i < max_shadows_used; i++) {
render_shadow_data[i].instances.clear();
@@ -3215,7 +3229,7 @@ void RendererSceneCull::_render_scene(const RendererSceneRender::CameraData *p_c
render_sdfgi_data[i].instances.clear();
}
- // virtual void render_scene(RID p_render_buffers, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold,const RenderShadowData *p_render_shadows,int p_render_shadow_count,const RenderSDFGIData *p_render_sdfgi_regions,int p_render_sdfgi_region_count,const RenderSDFGIStaticLightData *p_render_sdfgi_static_lights=nullptr) = 0;
+ // virtual void render_scene(RID p_render_buffers, const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold,const RenderShadowData *p_render_shadows,int p_render_shadow_count,const RenderSDFGIData *p_render_sdfgi_regions,int p_render_sdfgi_region_count,const RenderSDFGIStaticLightData *p_render_sdfgi_static_lights=nullptr) = 0;
}
RID RendererSceneCull::_render_get_environment(RID p_camera, RID p_scenario) {
@@ -3249,7 +3263,7 @@ void RendererSceneCull::render_empty_scene(RID p_render_buffers, RID p_scenario,
} else {
environment = scenario->fallback_environment;
}
- RENDER_TIMESTAMP("Render Empty Scene ");
+ RENDER_TIMESTAMP("Render Empty 3D Scene");
RendererSceneRender::CameraData camera_data;
camera_data.set_camera(Transform3D(), CameraMatrix(), true, false);
@@ -3289,11 +3303,11 @@ bool RendererSceneCull::_render_reflection_probe_step(Instance *p_instance, int
Vector3(0, -1, 0)
};
- Vector3 extents = RSG::storage->reflection_probe_get_extents(p_instance->base);
- Vector3 origin_offset = RSG::storage->reflection_probe_get_origin_offset(p_instance->base);
- float max_distance = RSG::storage->reflection_probe_get_origin_max_distance(p_instance->base);
+ Vector3 extents = RSG::light_storage->reflection_probe_get_extents(p_instance->base);
+ Vector3 origin_offset = RSG::light_storage->reflection_probe_get_origin_offset(p_instance->base);
+ float max_distance = RSG::light_storage->reflection_probe_get_origin_max_distance(p_instance->base);
float size = scene_render->reflection_atlas_get_size(scenario->reflection_atlas);
- float lod_threshold = RSG::storage->reflection_probe_get_lod_threshold(p_instance->base) / size;
+ float mesh_lod_threshold = RSG::light_storage->reflection_probe_get_mesh_lod_threshold(p_instance->base) / size;
Vector3 edge = view_normals[p_step] * extents;
float distance = ABS(view_normals[p_step].dot(edge) - view_normals[p_step].dot(origin_offset)); //distance from origin offset to actual view distance limit
@@ -3311,7 +3325,7 @@ bool RendererSceneCull::_render_reflection_probe_step(Instance *p_instance, int
RID shadow_atlas;
- bool use_shadows = RSG::storage->reflection_probe_renders_shadows(p_instance->base);
+ bool use_shadows = RSG::light_storage->reflection_probe_renders_shadows(p_instance->base);
if (use_shadows) {
shadow_atlas = scenario->reflection_probe_shadow_atlas;
}
@@ -3323,15 +3337,15 @@ bool RendererSceneCull::_render_reflection_probe_step(Instance *p_instance, int
environment = scenario->fallback_environment;
}
- RENDER_TIMESTAMP("Render Reflection Probe, Step " + itos(p_step));
+ RENDER_TIMESTAMP("Render ReflectionProbe, Step " + itos(p_step));
RendererSceneRender::CameraData camera_data;
camera_data.set_camera(xform, cm, false, false);
- _render_scene(&camera_data, RID(), environment, RID(), RSG::storage->reflection_probe_get_cull_mask(p_instance->base), p_instance->scenario->self, RID(), shadow_atlas, reflection_probe->instance, p_step, lod_threshold, use_shadows);
+ _render_scene(&camera_data, RID(), environment, RID(), RSG::light_storage->reflection_probe_get_cull_mask(p_instance->base), p_instance->scenario->self, RID(), shadow_atlas, reflection_probe->instance, p_step, mesh_lod_threshold, use_shadows);
} else {
//do roughness postprocess step until it believes it's done
- RENDER_TIMESTAMP("Post-Process Reflection Probe, Step " + itos(p_step));
+ RENDER_TIMESTAMP("Post-Process ReflectionProbe, Step " + itos(p_step));
return scene_render->reflection_probe_instance_postprocess_step(reflection_probe->instance);
}
@@ -3349,7 +3363,7 @@ void RendererSceneCull::render_probes() {
SelfList<InstanceReflectionProbeData> *next = ref_probe->next();
RID base = ref_probe->self()->owner->base;
- switch (RSG::storage->reflection_probe_get_update_mode(base)) {
+ switch (RSG::light_storage->reflection_probe_get_update_mode(base)) {
case RS::REFLECTION_PROBE_UPDATE_ONCE: {
if (busy) { //already rendering something
break;
@@ -3384,7 +3398,7 @@ void RendererSceneCull::render_probes() {
SelfList<InstanceVoxelGIData> *voxel_gi = voxel_gi_update_list.first();
if (voxel_gi) {
- RENDER_TIMESTAMP("Render GI Probes");
+ RENDER_TIMESTAMP("Render VoxelGI");
}
while (voxel_gi) {
@@ -3418,16 +3432,16 @@ void RendererSceneCull::render_probes() {
if (
instance_caches[idx] != instance_light->instance ||
- cache->has_shadow != RSG::storage->light_has_shadow(instance->base) ||
- cache->type != RSG::storage->light_get_type(instance->base) ||
+ cache->has_shadow != RSG::light_storage->light_has_shadow(instance->base) ||
+ cache->type != RSG::light_storage->light_get_type(instance->base) ||
cache->transform != instance->transform ||
- cache->color != RSG::storage->light_get_color(instance->base) ||
- cache->energy != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY) ||
- cache->bake_energy != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY) ||
- cache->radius != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE) ||
- cache->attenuation != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION) ||
- cache->spot_angle != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE) ||
- cache->spot_attenuation != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION)) {
+ cache->color != RSG::light_storage->light_get_color(instance->base) ||
+ cache->energy != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY) ||
+ cache->bake_energy != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY) ||
+ cache->radius != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE) ||
+ cache->attenuation != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION) ||
+ cache->spot_angle != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE) ||
+ cache->spot_attenuation != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION)) {
cache_dirty = true;
}
}
@@ -3449,17 +3463,17 @@ void RendererSceneCull::render_probes() {
if (
instance_caches[idx] != instance_light->instance ||
- cache->has_shadow != RSG::storage->light_has_shadow(instance->base) ||
- cache->type != RSG::storage->light_get_type(instance->base) ||
+ cache->has_shadow != RSG::light_storage->light_has_shadow(instance->base) ||
+ cache->type != RSG::light_storage->light_get_type(instance->base) ||
cache->transform != instance->transform ||
- cache->color != RSG::storage->light_get_color(instance->base) ||
- cache->energy != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY) ||
- cache->bake_energy != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY) ||
- cache->radius != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE) ||
- cache->attenuation != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION) ||
- cache->spot_angle != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE) ||
- cache->spot_attenuation != RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION) ||
- cache->sky_only != RSG::storage->light_directional_is_sky_only(instance->base)) {
+ cache->color != RSG::light_storage->light_get_color(instance->base) ||
+ cache->energy != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY) ||
+ cache->bake_energy != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY) ||
+ cache->radius != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE) ||
+ cache->attenuation != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION) ||
+ cache->spot_angle != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE) ||
+ cache->spot_attenuation != RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION) ||
+ cache->sky_mode != RSG::light_storage->light_directional_get_sky_mode(instance->base)) {
cache_dirty = true;
}
}
@@ -3495,16 +3509,16 @@ void RendererSceneCull::render_probes() {
InstanceVoxelGIData::LightCache *cache = &caches[idx];
instance_caches[idx] = instance_light->instance;
- cache->has_shadow = RSG::storage->light_has_shadow(instance->base);
- cache->type = RSG::storage->light_get_type(instance->base);
+ cache->has_shadow = RSG::light_storage->light_has_shadow(instance->base);
+ cache->type = RSG::light_storage->light_get_type(instance->base);
cache->transform = instance->transform;
- cache->color = RSG::storage->light_get_color(instance->base);
- cache->energy = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY);
- cache->bake_energy = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- cache->radius = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE);
- cache->attenuation = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION);
- cache->spot_angle = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
- cache->spot_attenuation = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ cache->color = RSG::light_storage->light_get_color(instance->base);
+ cache->energy = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY);
+ cache->bake_energy = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ cache->radius = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE);
+ cache->attenuation = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION);
+ cache->spot_angle = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
+ cache->spot_attenuation = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
idx++;
}
@@ -3517,17 +3531,17 @@ void RendererSceneCull::render_probes() {
InstanceVoxelGIData::LightCache *cache = &caches[idx];
instance_caches[idx] = instance_light->instance;
- cache->has_shadow = RSG::storage->light_has_shadow(instance->base);
- cache->type = RSG::storage->light_get_type(instance->base);
+ cache->has_shadow = RSG::light_storage->light_has_shadow(instance->base);
+ cache->type = RSG::light_storage->light_get_type(instance->base);
cache->transform = instance->transform;
- cache->color = RSG::storage->light_get_color(instance->base);
- cache->energy = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY);
- cache->bake_energy = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY);
- cache->radius = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE);
- cache->attenuation = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION);
- cache->spot_angle = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
- cache->spot_attenuation = RSG::storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
- cache->sky_only = RSG::storage->light_directional_is_sky_only(instance->base);
+ cache->color = RSG::light_storage->light_get_color(instance->base);
+ cache->energy = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ENERGY);
+ cache->bake_energy = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_INDIRECT_ENERGY);
+ cache->radius = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_RANGE);
+ cache->attenuation = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_ATTENUATION);
+ cache->spot_angle = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ANGLE);
+ cache->spot_attenuation = RSG::light_storage->light_get_param(instance->base, RS::LIGHT_PARAM_SPOT_ATTENUATION);
+ cache->sky_mode = RSG::light_storage->light_directional_get_sky_mode(instance->base);
idx++;
}
@@ -3578,7 +3592,7 @@ void RendererSceneCull::render_particle_colliders() {
while (heightfield_particle_colliders_update_list.front()) {
Instance *hfpc = heightfield_particle_colliders_update_list.front()->get();
- if (hfpc->scenario && hfpc->base_type == RS::INSTANCE_PARTICLES_COLLISION && RSG::storage->particles_collision_is_heightfield(hfpc->base)) {
+ if (hfpc->scenario && hfpc->base_type == RS::INSTANCE_PARTICLES_COLLISION && RSG::particles_storage->particles_collision_is_heightfield(hfpc->base)) {
//update heightfield
instance_cull_result.clear();
scene_cull_result.geometry_instances.clear();
@@ -3613,9 +3627,9 @@ void RendererSceneCull::render_particle_colliders() {
}
void RendererSceneCull::_update_instance_shader_parameters_from_material(Map<StringName, Instance::InstanceShaderParameter> &isparams, const Map<StringName, Instance::InstanceShaderParameter> &existing_isparams, RID p_material) {
- List<RendererStorage::InstanceShaderParam> plist;
- RSG::storage->material_get_instance_shader_parameters(p_material, &plist);
- for (const RendererStorage::InstanceShaderParam &E : plist) {
+ List<RendererMaterialStorage::InstanceShaderParam> plist;
+ RSG::material_storage->material_get_instance_shader_parameters(p_material, &plist);
+ for (const RendererMaterialStorage::InstanceShaderParam &E : plist) {
StringName name = E.info.name;
if (isparams.has(name)) {
if (isparams[name].info.type != E.info.type) {
@@ -3653,18 +3667,31 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
}
if (p_instance->material_override.is_valid()) {
- RSG::storage->material_update_dependency(p_instance->material_override, &p_instance->dependency_tracker);
+ RSG::material_storage->material_update_dependency(p_instance->material_override, &p_instance->dependency_tracker);
+ }
+
+ if (p_instance->material_overlay.is_valid()) {
+ RSG::material_storage->material_update_dependency(p_instance->material_overlay, &p_instance->dependency_tracker);
}
if (p_instance->base_type == RS::INSTANCE_MESH) {
//remove materials no longer used and un-own them
- int new_mat_count = RSG::storage->mesh_get_surface_count(p_instance->base);
+ int new_mat_count = RSG::mesh_storage->mesh_get_surface_count(p_instance->base);
p_instance->materials.resize(new_mat_count);
_instance_update_mesh_instance(p_instance);
}
+ if (p_instance->base_type == RS::INSTANCE_PARTICLES) {
+ // update the process material dependency
+
+ RID particle_material = RSG::particles_storage->particles_get_process_material(p_instance->base);
+ if (particle_material.is_valid()) {
+ RSG::material_storage->material_update_dependency(particle_material, &p_instance->dependency_tracker);
+ }
+ }
+
if ((1 << p_instance->base_type) & RS::INSTANCE_GEOMETRY_MASK) {
InstanceGeometryData *geom = static_cast<InstanceGeometryData *>(p_instance->base_data);
@@ -3677,10 +3704,10 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
}
if (p_instance->material_override.is_valid()) {
- if (!RSG::storage->material_casts_shadows(p_instance->material_override)) {
+ if (!RSG::material_storage->material_casts_shadows(p_instance->material_override)) {
can_cast_shadows = false;
}
- is_animated = RSG::storage->material_is_animated(p_instance->material_override);
+ is_animated = RSG::material_storage->material_is_animated(p_instance->material_override);
_update_instance_shader_parameters_from_material(isparams, p_instance->instance_shader_parameters, p_instance->material_override);
} else {
if (p_instance->base_type == RS::INSTANCE_MESH) {
@@ -3690,22 +3717,22 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
bool cast_shadows = false;
for (int i = 0; i < p_instance->materials.size(); i++) {
- RID mat = p_instance->materials[i].is_valid() ? p_instance->materials[i] : RSG::storage->mesh_surface_get_material(mesh, i);
+ RID mat = p_instance->materials[i].is_valid() ? p_instance->materials[i] : RSG::mesh_storage->mesh_surface_get_material(mesh, i);
if (!mat.is_valid()) {
cast_shadows = true;
} else {
- if (RSG::storage->material_casts_shadows(mat)) {
+ if (RSG::material_storage->material_casts_shadows(mat)) {
cast_shadows = true;
}
- if (RSG::storage->material_is_animated(mat)) {
+ if (RSG::material_storage->material_is_animated(mat)) {
is_animated = true;
}
_update_instance_shader_parameters_from_material(isparams, p_instance->instance_shader_parameters, mat);
- RSG::storage->material_update_dependency(mat, &p_instance->dependency_tracker);
+ RSG::material_storage->material_update_dependency(mat, &p_instance->dependency_tracker);
}
}
@@ -3715,28 +3742,28 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
}
} else if (p_instance->base_type == RS::INSTANCE_MULTIMESH) {
- RID mesh = RSG::storage->multimesh_get_mesh(p_instance->base);
+ RID mesh = RSG::mesh_storage->multimesh_get_mesh(p_instance->base);
if (mesh.is_valid()) {
bool cast_shadows = false;
- int sc = RSG::storage->mesh_get_surface_count(mesh);
+ int sc = RSG::mesh_storage->mesh_get_surface_count(mesh);
for (int i = 0; i < sc; i++) {
- RID mat = RSG::storage->mesh_surface_get_material(mesh, i);
+ RID mat = RSG::mesh_storage->mesh_surface_get_material(mesh, i);
if (!mat.is_valid()) {
cast_shadows = true;
} else {
- if (RSG::storage->material_casts_shadows(mat)) {
+ if (RSG::material_storage->material_casts_shadows(mat)) {
cast_shadows = true;
}
- if (RSG::storage->material_is_animated(mat)) {
+ if (RSG::material_storage->material_is_animated(mat)) {
is_animated = true;
}
_update_instance_shader_parameters_from_material(isparams, p_instance->instance_shader_parameters, mat);
- RSG::storage->material_update_dependency(mat, &p_instance->dependency_tracker);
+ RSG::material_storage->material_update_dependency(mat, &p_instance->dependency_tracker);
}
}
@@ -3749,32 +3776,32 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
} else if (p_instance->base_type == RS::INSTANCE_PARTICLES) {
bool cast_shadows = false;
- int dp = RSG::storage->particles_get_draw_passes(p_instance->base);
+ int dp = RSG::particles_storage->particles_get_draw_passes(p_instance->base);
for (int i = 0; i < dp; i++) {
- RID mesh = RSG::storage->particles_get_draw_pass_mesh(p_instance->base, i);
+ RID mesh = RSG::particles_storage->particles_get_draw_pass_mesh(p_instance->base, i);
if (!mesh.is_valid()) {
continue;
}
- int sc = RSG::storage->mesh_get_surface_count(mesh);
+ int sc = RSG::mesh_storage->mesh_get_surface_count(mesh);
for (int j = 0; j < sc; j++) {
- RID mat = RSG::storage->mesh_surface_get_material(mesh, j);
+ RID mat = RSG::mesh_storage->mesh_surface_get_material(mesh, j);
if (!mat.is_valid()) {
cast_shadows = true;
} else {
- if (RSG::storage->material_casts_shadows(mat)) {
+ if (RSG::material_storage->material_casts_shadows(mat)) {
cast_shadows = true;
}
- if (RSG::storage->material_is_animated(mat)) {
+ if (RSG::material_storage->material_is_animated(mat)) {
is_animated = true;
}
_update_instance_shader_parameters_from_material(isparams, p_instance->instance_shader_parameters, mat);
- RSG::storage->material_update_dependency(mat, &p_instance->dependency_tracker);
+ RSG::material_storage->material_update_dependency(mat, &p_instance->dependency_tracker);
}
}
}
@@ -3785,6 +3812,12 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
}
}
+ if (p_instance->material_overlay.is_valid()) {
+ can_cast_shadows = can_cast_shadows || RSG::material_storage->material_casts_shadows(p_instance->material_overlay);
+ is_animated = is_animated || RSG::material_storage->material_is_animated(p_instance->material_overlay);
+ _update_instance_shader_parameters_from_material(isparams, p_instance->instance_shader_parameters, p_instance->material_overlay);
+ }
+
if (can_cast_shadows != geom->can_cast_shadows) {
//ability to cast shadows change, let lights now
for (Set<Instance *>::Element *E = geom->lights.front(); E; E = E->next()) {
@@ -3801,16 +3834,16 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
if (p_instance->instance_allocated_shader_parameters != (p_instance->instance_shader_parameters.size() > 0)) {
p_instance->instance_allocated_shader_parameters = (p_instance->instance_shader_parameters.size() > 0);
if (p_instance->instance_allocated_shader_parameters) {
- p_instance->instance_allocated_shader_parameters_offset = RSG::storage->global_variables_instance_allocate(p_instance->self);
+ p_instance->instance_allocated_shader_parameters_offset = RSG::material_storage->global_variables_instance_allocate(p_instance->self);
scene_render->geometry_instance_set_instance_shader_parameters_offset(geom->geometry_instance, p_instance->instance_allocated_shader_parameters_offset);
for (const KeyValue<StringName, Instance::InstanceShaderParameter> &E : p_instance->instance_shader_parameters) {
if (E.value.value.get_type() != Variant::NIL) {
- RSG::storage->global_variables_instance_update(p_instance->self, E.value.index, E.value.value);
+ RSG::material_storage->global_variables_instance_update(p_instance->self, E.value.index, E.value.value);
}
}
} else {
- RSG::storage->global_variables_instance_free(p_instance->self);
+ RSG::material_storage->global_variables_instance_free(p_instance->self);
p_instance->instance_allocated_shader_parameters_offset = -1;
scene_render->geometry_instance_set_instance_shader_parameters_offset(geom->geometry_instance, -1);
}
@@ -3818,7 +3851,7 @@ void RendererSceneCull::_update_dirty_instance(Instance *p_instance) {
}
if (p_instance->skeleton.is_valid()) {
- RSG::storage->skeleton_update_dependency(p_instance->skeleton, &p_instance->dependency_tracker);
+ RSG::mesh_storage->skeleton_update_dependency(p_instance->skeleton, &p_instance->dependency_tracker);
}
p_instance->dependency_tracker.update_end();
@@ -3847,8 +3880,12 @@ void RendererSceneCull::update_dirty_instances() {
void RendererSceneCull::update() {
//optimize bvhs
- for (uint32_t i = 0; i < scenario_owner.get_rid_count(); i++) {
- Scenario *s = scenario_owner.get_ptr_by_index(i);
+
+ uint32_t rid_count = scenario_owner.get_rid_count();
+ RID *rids = (RID *)alloca(sizeof(RID) * rid_count);
+ scenario_owner.fill_owned_buffer(rids);
+ for (uint32_t i = 0; i < rid_count; i++) {
+ Scenario *s = scenario_owner.get_or_null(rids[i]);
s->indexers[Scenario::INDEXER_GEOMETRY].optimize_incremental(indexer_update_iterations);
s->indexers[Scenario::INDEXER_VOLUMES].optimize_incremental(indexer_update_iterations);
}
@@ -3897,11 +3934,12 @@ bool RendererSceneCull::free(RID p_rid) {
instance_set_scenario(p_rid, RID());
instance_set_base(p_rid, RID());
instance_geometry_set_material_override(p_rid, RID());
+ instance_geometry_set_material_overlay(p_rid, RID());
instance_attach_skeleton(p_rid, RID());
if (instance->instance_allocated_shader_parameters) {
//free the used shader parameters
- RSG::storage->global_variables_instance_free(instance->self);
+ RSG::material_storage->global_variables_instance_free(instance->self);
}
update_dirty_instances(); //in case something changed this
diff --git a/servers/rendering/renderer_scene_cull.h b/servers/rendering/renderer_scene_cull.h
index e51a1fc02e..b5e8cf702f 100644
--- a/servers/rendering/renderer_scene_cull.h
+++ b/servers/rendering/renderer_scene_cull.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -31,28 +31,23 @@
#ifndef RENDERING_SERVER_SCENE_CULL_H
#define RENDERING_SERVER_SCENE_CULL_H
-#include "core/templates/bin_sorted_array.h"
-#include "core/templates/pass_func.h"
-#include "servers/rendering/renderer_compositor.h"
-
#include "core/math/dynamic_bvh.h"
-#include "core/math/geometry_3d.h"
-#include "core/math/octree.h"
-#include "core/os/semaphore.h"
-#include "core/os/thread.h"
+#include "core/templates/bin_sorted_array.h"
#include "core/templates/local_vector.h"
#include "core/templates/paged_allocator.h"
#include "core/templates/paged_array.h"
+#include "core/templates/pass_func.h"
#include "core/templates/rid_owner.h"
#include "core/templates/self_list.h"
#include "servers/rendering/renderer_scene.h"
#include "servers/rendering/renderer_scene_occlusion_cull.h"
#include "servers/rendering/renderer_scene_render.h"
+#include "servers/rendering/renderer_storage.h"
#include "servers/xr/xr_interface.h"
class RendererSceneCull : public RendererScene {
public:
- RendererSceneRender *scene_render;
+ RendererSceneRender *scene_render = nullptr;
enum {
SDFGI_MAX_CASCADES = 8,
@@ -120,7 +115,7 @@ public:
/* VISIBILITY NOTIFIER API */
- RendererSceneOcclusionCull *dummy_occlusion_culling;
+ RendererSceneOcclusionCull *dummy_occlusion_culling = nullptr;
/* SCENARIO API */
@@ -278,7 +273,7 @@ public:
union {
uint64_t instance_data_rid;
RendererSceneRender::GeometryInstance *instance_geometry;
- InstanceVisibilityNotifierData *visibility_notifier;
+ InstanceVisibilityNotifierData *visibility_notifier = nullptr;
};
Instance *instance = nullptr;
int32_t parent_array_index = -1;
@@ -370,8 +365,8 @@ public:
/* INSTANCING API */
struct InstancePair {
- Instance *a;
- Instance *b;
+ Instance *a = nullptr;
+ Instance *b = nullptr;
SelfList<InstancePair> list_a;
SelfList<InstancePair> list_b;
InstancePair() :
@@ -390,6 +385,7 @@ public:
RID skeleton;
RID material_override;
+ RID material_overlay;
RID mesh_instance; //only used for meshes and when skeleton/blendshapes exist
@@ -413,7 +409,7 @@ public:
bool dynamic_gi : 2; //same above for dynamic objects
bool redraw_if_visible : 4;
- Instance *lightmap;
+ Instance *lightmap = nullptr;
Rect2 lightmap_uv_scale;
int lightmap_slice_index;
uint32_t lightmap_cull_index;
@@ -459,7 +455,7 @@ public:
SelfList<Instance> update_item;
- AABB *custom_aabb; // <Zylann> would using aabb directly with a bool be better?
+ AABB *custom_aabb = nullptr; // <Zylann> would using aabb directly with a bool be better?
float extra_margin;
ObjectID object_id;
@@ -469,7 +465,7 @@ public:
uint64_t version; // changes to this, and changes to base increase version
- InstanceBaseData *base_data;
+ InstanceBaseData *base_data = nullptr;
SelfList<InstancePair>::List pairs;
uint64_t pair_check;
@@ -601,7 +597,7 @@ public:
};
struct InstanceReflectionProbeData : public InstanceBaseData {
- Instance *owner;
+ Instance *owner = nullptr;
Set<Instance *> geometries;
@@ -617,7 +613,7 @@ public:
};
struct InstanceDecalData : public InstanceBaseData {
- Instance *owner;
+ Instance *owner = nullptr;
RID instance;
Set<Instance *> geometries;
@@ -660,7 +656,7 @@ public:
Set<Instance *> geometries;
- Instance *baked_light;
+ Instance *baked_light = nullptr;
RS::LightBakeMode bake_mode;
uint32_t max_sdfgi_cascade = 2;
@@ -675,7 +671,7 @@ public:
};
struct InstanceVoxelGIData : public InstanceBaseData {
- Instance *owner;
+ Instance *owner = nullptr;
Set<Instance *> geometries;
Set<Instance *> dynamic_geometries;
@@ -693,7 +689,7 @@ public:
float spot_angle;
float spot_attenuation;
bool has_shadow;
- bool sky_only;
+ RS::LightDirectionalSkyMode sky_mode;
};
Vector<LightCache> light_cache;
@@ -925,7 +921,7 @@ public:
RID_Owner<Instance, true> instance_owner;
- uint32_t geometry_instance_pair_mask; // used in traditional forward, unnecessary on clustered
+ uint32_t geometry_instance_pair_mask = 0; // used in traditional forward, unnecessary on clustered
virtual RID instance_allocate();
virtual void instance_initialize(RID p_rid);
@@ -961,6 +957,7 @@ public:
virtual void instance_geometry_set_flag(RID p_instance, RS::InstanceFlags p_flags, bool p_enabled);
virtual void instance_geometry_set_cast_shadows_setting(RID p_instance, RS::ShadowCastingSetting p_shadow_casting_setting);
virtual void instance_geometry_set_material_override(RID p_instance, RID p_material);
+ virtual void instance_geometry_set_material_overlay(RID p_instance, RID p_material);
virtual void instance_geometry_set_visibility_range(RID p_instance, float p_min, float p_max, float p_min_margin, float p_max_margin, RS::VisibilityRangeFadeMode p_fade_mode);
@@ -982,7 +979,7 @@ public:
void _light_instance_setup_directional_shadow(int p_shadow_index, Instance *p_instance, const Transform3D p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, bool p_cam_vaspect);
- _FORCE_INLINE_ bool _light_instance_update_shadow(Instance *p_instance, const Transform3D p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, bool p_cam_vaspect, RID p_shadow_atlas, Scenario *p_scenario, float p_scren_lod_threshold);
+ _FORCE_INLINE_ bool _light_instance_update_shadow(Instance *p_instance, const Transform3D p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, bool p_cam_vaspect, RID p_shadow_atlas, Scenario *p_scenario, float p_scren_mesh_lod_threshold);
RID _render_get_environment(RID p_camera, RID p_scenario);
@@ -1026,7 +1023,7 @@ public:
struct VisibilityCullData {
uint64_t viewport_mask;
- Scenario *scenario;
+ Scenario *scenario = nullptr;
Vector3 camera_position;
uint32_t cull_offset;
uint32_t cull_count;
@@ -1038,12 +1035,12 @@ public:
_FORCE_INLINE_ int _visibility_range_check(InstanceVisibilityData &r_vis_data, const Vector3 &p_camera_pos, uint64_t p_viewport_mask);
struct CullData {
- Cull *cull;
- Scenario *scenario;
+ Cull *cull = nullptr;
+ Scenario *scenario = nullptr;
RID shadow_atlas;
Transform3D cam_transform;
uint32_t visible_layers;
- Instance *render_reflection_probe;
+ Instance *render_reflection_probe = nullptr;
const RendererSceneOcclusionCull::HZBuffer *occlusion_buffer;
const CameraMatrix *camera_matrix;
uint64_t visibility_viewport_mask;
@@ -1054,10 +1051,10 @@ public:
_FORCE_INLINE_ bool _visibility_parent_check(const CullData &p_cull_data, const InstanceData &p_instance_data);
bool _render_reflection_probe_step(Instance *p_instance, int p_step);
- void _render_scene(const RendererSceneRender::CameraData *p_camera_data, RID p_render_buffers, RID p_environment, RID p_force_camera_effects, uint32_t p_visible_layers, RID p_scenario, RID p_viewport, RID p_shadow_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, bool p_using_shadows = true, RenderInfo *r_render_info = nullptr);
+ void _render_scene(const RendererSceneRender::CameraData *p_camera_data, RID p_render_buffers, RID p_environment, RID p_force_camera_effects, uint32_t p_visible_layers, RID p_scenario, RID p_viewport, RID p_shadow_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, bool p_using_shadows = true, RenderInfo *r_render_info = nullptr);
void render_empty_scene(RID p_render_buffers, RID p_scenario, RID p_shadow_atlas);
- void render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_screen_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RendererScene::RenderInfo *r_render_info = nullptr);
+ void render_camera(RID p_render_buffers, RID p_camera, RID p_scenario, RID p_viewport, Size2 p_viewport_size, float p_screen_mesh_lod_threshold, RID p_shadow_atlas, Ref<XRInterface> &p_xr_interface, RendererScene::RenderInfo *r_render_info = nullptr);
void update_dirty_instances();
void render_particle_colliders();
@@ -1108,7 +1105,10 @@ public:
PASS10(environment_set_ssao, RID, bool, float, float, float, float, float, float, float, float)
PASS6(environment_set_ssao_quality, RS::EnvironmentSSAOQuality, bool, float, int, float, float)
- PASS11(environment_set_glow, RID, bool, Vector<float>, float, float, float, float, RS::EnvironmentGlowBlendMode, float, float, float)
+ PASS6(environment_set_ssil, RID, bool, float, float, float, float)
+ PASS6(environment_set_ssil_quality, RS::EnvironmentSSILQuality, bool, float, int, float, float)
+
+ PASS13(environment_set_glow, RID, bool, Vector<float>, float, float, float, float, RS::EnvironmentGlowBlendMode, float, float, float, float, RID)
PASS1(environment_glow_set_use_bicubic_upscale, bool)
PASS1(environment_glow_set_use_high_quality, bool)
@@ -1122,7 +1122,7 @@ public:
PASS2(environment_set_volumetric_fog_volume_size, int, int)
PASS1(environment_set_volumetric_fog_filter_active, bool)
- PASS11(environment_set_sdfgi, RID, bool, RS::EnvironmentSDFGICascades, float, RS::EnvironmentSDFGIYScale, bool, float, bool, float, float, float)
+ PASS11(environment_set_sdfgi, RID, bool, int, float, RS::EnvironmentSDFGIYScale, bool, float, bool, float, float, float)
PASS1(environment_set_sdfgi_ray_count, RS::EnvironmentSDFGIRayCount)
PASS1(environment_set_sdfgi_frames_to_converge, RS::EnvironmentSDFGIFramesToConverge)
PASS1(environment_set_sdfgi_frames_to_update_light, RS::EnvironmentSDFGIFramesToUpdateLight)
diff --git a/servers/rendering/renderer_scene_occlusion_cull.cpp b/servers/rendering/renderer_scene_occlusion_cull.cpp
index 1b8aea36d7..bda0950097 100644
--- a/servers/rendering/renderer_scene_occlusion_cull.cpp
+++ b/servers/rendering/renderer_scene_occlusion_cull.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_scene_occlusion_cull.h b/servers/rendering/renderer_scene_occlusion_cull.h
index 4e4b1b94db..48412dab68 100644
--- a/servers/rendering/renderer_scene_occlusion_cull.h
+++ b/servers/rendering/renderer_scene_occlusion_cull.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_scene_render.cpp b/servers/rendering/renderer_scene_render.cpp
index 38d1218dee..a4d281fac4 100644
--- a/servers/rendering/renderer_scene_render.cpp
+++ b/servers/rendering/renderer_scene_render.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,9 +30,9 @@
#include "renderer_scene_render.h"
-void RendererSceneRender::CameraData::set_camera(const Transform3D p_transform, const CameraMatrix p_projection, bool p_is_ortogonal, bool p_vaspect) {
+void RendererSceneRender::CameraData::set_camera(const Transform3D p_transform, const CameraMatrix p_projection, bool p_is_orthogonal, bool p_vaspect) {
view_count = 1;
- is_ortogonal = p_is_ortogonal;
+ is_orthogonal = p_is_orthogonal;
vaspect = p_vaspect;
main_transform = p_transform;
@@ -42,11 +42,11 @@ void RendererSceneRender::CameraData::set_camera(const Transform3D p_transform,
view_projection[0] = p_projection;
}
-void RendererSceneRender::CameraData::set_multiview_camera(uint32_t p_view_count, const Transform3D *p_transforms, const CameraMatrix *p_projections, bool p_is_ortogonal, bool p_vaspect) {
+void RendererSceneRender::CameraData::set_multiview_camera(uint32_t p_view_count, const Transform3D *p_transforms, const CameraMatrix *p_projections, bool p_is_orthogonal, bool p_vaspect) {
ERR_FAIL_COND_MSG(p_view_count != 2, "Incorrect view count for stereoscopic view");
view_count = p_view_count;
- is_ortogonal = p_is_ortogonal;
+ is_orthogonal = p_is_orthogonal;
vaspect = p_vaspect;
Vector<Plane> planes[2];
@@ -65,7 +65,7 @@ void RendererSceneRender::CameraData::set_multiview_camera(uint32_t p_view_count
Vector3 y = n0.cross(n1).normalized();
Vector3 x = y.cross(z).normalized();
y = z.cross(x).normalized();
- main_transform.basis.set(x, y, z);
+ main_transform.basis.set_columns(x, y, z);
// 3. create a horizon plane with one of the eyes and the up vector as normal.
Plane horizon(y, p_transforms[0].origin);
diff --git a/servers/rendering/renderer_scene_render.h b/servers/rendering/renderer_scene_render.h
index 0d71ea22da..d43bfb170e 100644
--- a/servers/rendering/renderer_scene_render.h
+++ b/servers/rendering/renderer_scene_render.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -34,7 +34,6 @@
#include "core/math/camera_matrix.h"
#include "core/templates/paged_array.h"
#include "servers/rendering/renderer_scene.h"
-#include "servers/rendering/renderer_storage.h"
class RendererSceneRender {
public:
@@ -51,6 +50,7 @@ public:
virtual GeometryInstance *geometry_instance_create(RID p_base) = 0;
virtual void geometry_instance_set_skeleton(GeometryInstance *p_geometry_instance, RID p_skeleton) = 0;
virtual void geometry_instance_set_material_override(GeometryInstance *p_geometry_instance, RID p_override) = 0;
+ virtual void geometry_instance_set_material_overlay(GeometryInstance *p_geometry_instance, RID p_override) = 0;
virtual void geometry_instance_set_surface_materials(GeometryInstance *p_geometry_instance, const Vector<RID> &p_material) = 0;
virtual void geometry_instance_set_mesh_instance(GeometryInstance *p_geometry_instance, RID p_mesh_instance) = 0;
virtual void geometry_instance_set_transform(GeometryInstance *p_geometry_instance, const Transform3D &p_transform, const AABB &p_aabb, const AABB &p_transformed_aabbb) = 0;
@@ -79,11 +79,11 @@ public:
/* SHADOW ATLAS API */
virtual RID shadow_atlas_create() = 0;
- virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = false) = 0;
+ virtual void shadow_atlas_set_size(RID p_atlas, int p_size, bool p_16_bits = true) = 0;
virtual void shadow_atlas_set_quadrant_subdivision(RID p_atlas, int p_quadrant, int p_subdivision) = 0;
virtual bool shadow_atlas_update_light(RID p_atlas, RID p_light_intance, float p_coverage, uint64_t p_light_version) = 0;
- virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = false) = 0;
+ virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = true) = 0;
virtual int get_directional_light_shadow_size(RID p_light_intance) = 0;
virtual void set_directional_shadow_count(int p_count) = 0;
@@ -122,7 +122,7 @@ public:
virtual void environment_set_camera_feed_id(RID p_env, int p_camera_feed_id) = 0;
#endif
- virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) = 0;
+ virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, RS::EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) = 0;
virtual void environment_glow_set_use_bicubic_upscale(bool p_enable) = 0;
virtual void environment_glow_set_use_high_quality(bool p_enable) = 0;
@@ -134,10 +134,12 @@ public:
virtual void environment_set_ssr_roughness_quality(RS::EnvironmentSSRRoughnessQuality p_quality) = 0;
virtual void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_power, float p_detail, float p_horizon, float p_sharpness, float p_light_affect, float p_ao_channel_affect) = 0;
-
virtual void environment_set_ssao_quality(RS::EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
- virtual void environment_set_sdfgi(RID p_env, bool p_enable, RS::EnvironmentSDFGICascades p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
+ virtual void environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) = 0;
+ virtual void environment_set_ssil_quality(RS::EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
+
+ virtual void environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, RS::EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
virtual void environment_set_sdfgi_ray_count(RS::EnvironmentSDFGIRayCount p_ray_count) = 0;
virtual void environment_set_sdfgi_frames_to_converge(RS::EnvironmentSDFGIFramesToConverge p_frames) = 0;
@@ -221,7 +223,7 @@ public:
struct RenderSDFGIUpdateData {
bool update_static = false;
uint32_t static_cascade_count;
- uint32_t *static_cascade_indices;
+ uint32_t *static_cascade_indices = nullptr;
PagedArray<RID> *static_positional_lights;
const Vector<RID> *directional_lights;
@@ -232,7 +234,7 @@ public:
struct CameraData {
// flags
uint32_t view_count;
- bool is_ortogonal;
+ bool is_orthogonal;
bool vaspect;
// Main/center projection
@@ -242,13 +244,13 @@ public:
Transform3D view_offset[RendererSceneRender::MAX_RENDER_VIEWS];
CameraMatrix view_projection[RendererSceneRender::MAX_RENDER_VIEWS];
- void set_camera(const Transform3D p_transform, const CameraMatrix p_projection, bool p_is_ortogonal, bool p_vaspect);
- void set_multiview_camera(uint32_t p_view_count, const Transform3D *p_transforms, const CameraMatrix *p_projections, bool p_is_ortogonal, bool p_vaspect);
+ void set_camera(const Transform3D p_transform, const CameraMatrix p_projection, bool p_is_orthogonal, bool p_vaspect);
+ void set_multiview_camera(uint32_t p_view_count, const Transform3D *p_transforms, const CameraMatrix *p_projections, bool p_is_orthogonal, bool p_vaspect);
};
- virtual void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_render_info = nullptr) = 0;
+ virtual void render_scene(RID p_render_buffers, const CameraData *p_camera_data, const PagedArray<GeometryInstance *> &p_instances, const PagedArray<RID> &p_lights, const PagedArray<RID> &p_reflection_probes, const PagedArray<RID> &p_voxel_gi_instances, const PagedArray<RID> &p_decals, const PagedArray<RID> &p_lightmaps, const PagedArray<RID> &p_fog_volumes, RID p_environment, RID p_camera_effects, RID p_shadow_atlas, RID p_occluder_debug_tex, RID p_reflection_atlas, RID p_reflection_probe, int p_reflection_probe_pass, float p_screen_mesh_lod_threshold, const RenderShadowData *p_render_shadows, int p_render_shadow_count, const RenderSDFGIData *p_render_sdfgi_regions, int p_render_sdfgi_region_count, const RenderSDFGIUpdateData *p_sdfgi_update_data = nullptr, RendererScene::RenderInfo *r_render_info = nullptr) = 0;
- virtual void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_ortogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) = 0;
+ virtual void render_material(const Transform3D &p_cam_transform, const CameraMatrix &p_cam_projection, bool p_cam_orthogonal, const PagedArray<GeometryInstance *> &p_instances, RID p_framebuffer, const Rect2i &p_region) = 0;
virtual void render_particle_collider_heightfield(RID p_collider, const Transform3D &p_transform, const PagedArray<GeometryInstance *> &p_instances) = 0;
virtual void set_scene_pass(uint64_t p_pass) = 0;
diff --git a/servers/rendering/renderer_storage.cpp b/servers/rendering/renderer_storage.cpp
index aa005fac0a..56409ae187 100644
--- a/servers/rendering/renderer_storage.cpp
+++ b/servers/rendering/renderer_storage.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_storage.h b/servers/rendering/renderer_storage.h
index 8926bf24aa..7cf4fd0aff 100644
--- a/servers/rendering/renderer_storage.h
+++ b/servers/rendering/renderer_storage.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -54,7 +54,6 @@ public:
struct DependencyTracker;
-protected:
struct Dependency {
void changed_notify(DependencyChangedNotification p_notification);
void deleted_notify(const RID &p_rid);
@@ -66,7 +65,6 @@ protected:
Map<DependencyTracker *, uint32_t> instances;
};
-public:
struct DependencyTracker {
void *userdata = nullptr;
typedef void (*ChangedCallback)(DependencyChangedNotification, DependencyTracker *);
@@ -121,281 +119,7 @@ public:
Set<Dependency *> dependencies;
};
- virtual bool can_create_resources_async() const = 0;
- /* TEXTURE API */
-
- virtual RID texture_allocate() = 0;
-
- virtual void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) = 0;
- virtual void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) = 0;
- virtual void texture_3d_initialize(RID p_texture, Image::Format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) = 0;
- virtual void texture_proxy_initialize(RID p_texture, RID p_base) = 0; //all slices, then all the mipmaps, must be coherent
-
- virtual void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) = 0;
- virtual void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) = 0;
- virtual void texture_proxy_update(RID p_proxy, RID p_base) = 0;
-
- //these two APIs can be used together or in combination with the others.
- virtual void texture_2d_placeholder_initialize(RID p_texture) = 0;
- virtual void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type) = 0;
- virtual void texture_3d_placeholder_initialize(RID p_texture) = 0;
-
- virtual Ref<Image> texture_2d_get(RID p_texture) const = 0;
- virtual Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const = 0;
- virtual Vector<Ref<Image>> texture_3d_get(RID p_texture) const = 0;
-
- virtual void texture_replace(RID p_texture, RID p_by_texture) = 0;
- virtual void texture_set_size_override(RID p_texture, int p_width, int p_height) = 0;
-
- virtual void texture_set_path(RID p_texture, const String &p_path) = 0;
- virtual String texture_get_path(RID p_texture) const = 0;
-
- virtual void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) = 0;
- virtual void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) = 0;
- virtual void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) = 0;
-
- virtual void texture_debug_usage(List<RS::TextureInfo> *r_info) = 0;
-
- virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) = 0;
-
- virtual Size2 texture_size_with_proxy(RID p_proxy) = 0;
-
- virtual void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) = 0;
- virtual void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) = 0;
-
- /* CANVAS TEXTURE API */
-
- virtual RID canvas_texture_allocate() = 0;
- virtual void canvas_texture_initialize(RID p_rid) = 0;
-
- virtual void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) = 0;
- virtual void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) = 0;
-
- virtual void canvas_texture_set_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) = 0;
- virtual void canvas_texture_set_texture_repeat(RID p_item, RS::CanvasItemTextureRepeat p_repeat) = 0;
-
- /* SHADER API */
-
- virtual RID shader_allocate() = 0;
- virtual void shader_initialize(RID p_rid) = 0;
-
- virtual void shader_set_code(RID p_shader, const String &p_code) = 0;
- virtual String shader_get_code(RID p_shader) const = 0;
- virtual void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const = 0;
-
- virtual void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) = 0;
- virtual RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const = 0;
- virtual Variant shader_get_param_default(RID p_material, const StringName &p_param) const = 0;
-
- virtual RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const = 0;
-
- /* COMMON MATERIAL API */
-
- virtual RID material_allocate() = 0;
- virtual void material_initialize(RID p_rid) = 0;
-
- virtual void material_set_render_priority(RID p_material, int priority) = 0;
- virtual void material_set_shader(RID p_shader_material, RID p_shader) = 0;
-
- virtual void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) = 0;
- virtual Variant material_get_param(RID p_material, const StringName &p_param) const = 0;
-
- virtual void material_set_next_pass(RID p_material, RID p_next_material) = 0;
-
- virtual bool material_is_animated(RID p_material) = 0;
- virtual bool material_casts_shadows(RID p_material) = 0;
-
- struct InstanceShaderParam {
- PropertyInfo info;
- int index;
- Variant default_value;
- };
-
- virtual void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) = 0;
-
- virtual void material_update_dependency(RID p_material, DependencyTracker *p_instance) = 0;
-
- /* MESH API */
-
- virtual RID mesh_allocate() = 0;
- virtual void mesh_initialize(RID p_rid) = 0;
-
- virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) = 0;
-
- /// Returns stride
- virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) = 0;
-
- virtual int mesh_get_blend_shape_count(RID p_mesh) const = 0;
-
- virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) = 0;
- virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const = 0;
-
- virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
- virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
- virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
-
- virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) = 0;
- virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const = 0;
-
- virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const = 0;
-
- virtual int mesh_get_surface_count(RID p_mesh) const = 0;
-
- virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) = 0;
- virtual AABB mesh_get_custom_aabb(RID p_mesh) const = 0;
-
- virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) = 0;
-
- virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) = 0;
-
- virtual void mesh_clear(RID p_mesh) = 0;
-
- virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) = 0;
-
- /* MESH INSTANCE */
-
- virtual RID mesh_instance_create(RID p_base) = 0;
- virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) = 0;
- virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) = 0;
- virtual void mesh_instance_check_for_update(RID p_mesh_instance) = 0;
- virtual void update_mesh_instances() = 0;
-
- /* MULTIMESH API */
-
- virtual RID multimesh_allocate() = 0;
- virtual void multimesh_initialize(RID p_rid) = 0;
-
- virtual void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) = 0;
-
- virtual int multimesh_get_instance_count(RID p_multimesh) const = 0;
-
- virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) = 0;
- virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) = 0;
- virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) = 0;
- virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) = 0;
- virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) = 0;
-
- virtual RID multimesh_get_mesh(RID p_multimesh) const = 0;
-
- virtual Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const = 0;
- virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const = 0;
- virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const = 0;
- virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const = 0;
-
- virtual void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) = 0;
- virtual Vector<float> multimesh_get_buffer(RID p_multimesh) const = 0;
-
- virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) = 0;
- virtual int multimesh_get_visible_instances(RID p_multimesh) const = 0;
-
- virtual AABB multimesh_get_aabb(RID p_multimesh) const = 0;
-
- /* SKELETON API */
-
- virtual RID skeleton_allocate() = 0;
- virtual void skeleton_initialize(RID p_rid) = 0;
-
- virtual void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) = 0;
- virtual int skeleton_get_bone_count(RID p_skeleton) const = 0;
- virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) = 0;
- virtual Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const = 0;
- virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) = 0;
- virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const = 0;
- virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) = 0;
-
- /* Light API */
-
- virtual RID directional_light_allocate() = 0;
- virtual void directional_light_initialize(RID p_rid) = 0;
-
- virtual RID omni_light_allocate() = 0;
- virtual void omni_light_initialize(RID p_rid) = 0;
-
- virtual RID spot_light_allocate() = 0;
- virtual void spot_light_initialize(RID p_rid) = 0;
-
- virtual void light_set_color(RID p_light, const Color &p_color) = 0;
- virtual void light_set_param(RID p_light, RS::LightParam p_param, float p_value) = 0;
- virtual void light_set_shadow(RID p_light, bool p_enabled) = 0;
- virtual void light_set_shadow_color(RID p_light, const Color &p_color) = 0;
- virtual void light_set_projector(RID p_light, RID p_texture) = 0;
- virtual void light_set_negative(RID p_light, bool p_enable) = 0;
- virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) = 0;
- virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) = 0;
- virtual void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) = 0;
- virtual void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) = 0;
-
- virtual void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) = 0;
-
- virtual void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) = 0;
- virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) = 0;
- virtual bool light_directional_get_blend_splits(RID p_light) const = 0;
- virtual void light_directional_set_sky_only(RID p_light, bool p_sky_only) = 0;
- virtual bool light_directional_is_sky_only(RID p_light) const = 0;
-
- virtual RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) = 0;
- virtual RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) = 0;
-
- virtual bool light_has_shadow(RID p_light) const = 0;
-
- virtual bool light_has_projector(RID p_light) const = 0;
-
- virtual RS::LightType light_get_type(RID p_light) const = 0;
- virtual AABB light_get_aabb(RID p_light) const = 0;
- virtual float light_get_param(RID p_light, RS::LightParam p_param) = 0;
- virtual Color light_get_color(RID p_light) = 0;
- virtual RS::LightBakeMode light_get_bake_mode(RID p_light) = 0;
- virtual uint32_t light_get_max_sdfgi_cascade(RID p_light) = 0;
- virtual uint64_t light_get_version(RID p_light) const = 0;
-
- /* PROBE API */
-
- virtual RID reflection_probe_allocate() = 0;
- virtual void reflection_probe_initialize(RID p_rid) = 0;
-
- virtual void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) = 0;
- virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) = 0;
- virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) = 0;
- virtual void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) = 0;
- virtual void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) = 0;
- virtual void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) = 0;
- virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) = 0;
- virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) = 0;
- virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) = 0;
- virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) = 0;
- virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) = 0;
- virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) = 0;
- virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) = 0;
- virtual void reflection_probe_set_lod_threshold(RID p_probe, float p_ratio) = 0;
-
- virtual AABB reflection_probe_get_aabb(RID p_probe) const = 0;
- virtual RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const = 0;
- virtual uint32_t reflection_probe_get_cull_mask(RID p_probe) const = 0;
- virtual Vector3 reflection_probe_get_extents(RID p_probe) const = 0;
- virtual Vector3 reflection_probe_get_origin_offset(RID p_probe) const = 0;
- virtual float reflection_probe_get_origin_max_distance(RID p_probe) const = 0;
- virtual bool reflection_probe_renders_shadows(RID p_probe) const = 0;
- virtual float reflection_probe_get_lod_threshold(RID p_probe) const = 0;
-
virtual void base_update_dependency(RID p_base, DependencyTracker *p_instance) = 0;
- virtual void skeleton_update_dependency(RID p_base, DependencyTracker *p_instance) = 0;
-
- /* DECAL API */
-
- virtual RID decal_allocate() = 0;
- virtual void decal_initialize(RID p_rid) = 0;
-
- virtual void decal_set_extents(RID p_decal, const Vector3 &p_extents) = 0;
- virtual void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) = 0;
- virtual void decal_set_emission_energy(RID p_decal, float p_energy) = 0;
- virtual void decal_set_albedo_mix(RID p_decal, float p_mix) = 0;
- virtual void decal_set_modulate(RID p_decal, const Color &p_modulate) = 0;
- virtual void decal_set_cull_mask(RID p_decal, uint32_t p_layers) = 0;
- virtual void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) = 0;
- virtual void decal_set_fade(RID p_decal, float p_above, float p_below) = 0;
- virtual void decal_set_normal_fade(RID p_decal, float p_fade) = 0;
-
- virtual AABB decal_get_aabb(RID p_decal) const = 0;
/* VOXEL GI API */
@@ -439,102 +163,6 @@ public:
virtual uint32_t voxel_gi_get_version(RID p_probe) = 0;
- /* LIGHTMAP */
-
- virtual RID lightmap_allocate() = 0;
- virtual void lightmap_initialize(RID p_rid) = 0;
-
- virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) = 0;
- virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) = 0;
- virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) = 0;
- virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) = 0;
- virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const = 0;
- virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const = 0;
- virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const = 0;
- virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const = 0;
- virtual AABB lightmap_get_aabb(RID p_lightmap) const = 0;
- virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) = 0;
- virtual bool lightmap_is_interior(RID p_lightmap) const = 0;
- virtual void lightmap_set_probe_capture_update_speed(float p_speed) = 0;
- virtual float lightmap_get_probe_capture_update_speed() const = 0;
-
- /* PARTICLES */
-
- virtual RID particles_allocate() = 0;
- virtual void particles_initialize(RID p_rid) = 0;
- virtual void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) = 0;
-
- virtual void particles_set_emitting(RID p_particles, bool p_emitting) = 0;
- virtual bool particles_get_emitting(RID p_particles) = 0;
-
- virtual void particles_set_amount(RID p_particles, int p_amount) = 0;
- virtual void particles_set_lifetime(RID p_particles, double p_lifetime) = 0;
- virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) = 0;
- virtual void particles_set_pre_process_time(RID p_particles, double p_time) = 0;
- virtual void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) = 0;
- virtual void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) = 0;
- virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) = 0;
- virtual void particles_set_speed_scale(RID p_particles, double p_scale) = 0;
- virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) = 0;
- virtual void particles_set_process_material(RID p_particles, RID p_material) = 0;
- virtual void particles_set_fixed_fps(RID p_particles, int p_fps) = 0;
- virtual void particles_set_interpolate(RID p_particles, bool p_enable) = 0;
- virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) = 0;
- virtual void particles_set_collision_base_size(RID p_particles, real_t p_size) = 0;
-
- virtual void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) = 0;
-
- virtual void particles_set_trails(RID p_particles, bool p_enable, double p_length) = 0;
- virtual void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) = 0;
-
- virtual void particles_restart(RID p_particles) = 0;
- virtual void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) = 0;
- virtual void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) = 0;
-
- virtual bool particles_is_inactive(RID p_particles) const = 0;
-
- virtual void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) = 0;
-
- virtual void particles_set_draw_passes(RID p_particles, int p_count) = 0;
- virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) = 0;
-
- virtual void particles_request_process(RID p_particles) = 0;
- virtual AABB particles_get_current_aabb(RID p_particles) = 0;
- virtual AABB particles_get_aabb(RID p_particles) const = 0;
-
- virtual void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) = 0;
-
- virtual int particles_get_draw_passes(RID p_particles) const = 0;
- virtual RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const = 0;
-
- virtual void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) = 0;
-
- virtual void particles_add_collision(RID p_particles, RID p_particles_collision_instance) = 0;
- virtual void particles_remove_collision(RID p_particles, RID p_particles_collision_instance) = 0;
-
- virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) = 0;
-
- virtual void update_particles() = 0;
-
- /* PARTICLES COLLISION */
-
- virtual RID particles_collision_allocate() = 0;
- virtual void particles_collision_initialize(RID p_rid) = 0;
-
- virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) = 0;
- virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) = 0;
- virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) = 0; //for spheres
- virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) = 0; //for non-spheres
- virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) = 0;
- virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) = 0;
- virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) = 0;
- virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) = 0; //for SDF and vector field, heightfield is dynamic
- virtual void particles_collision_height_field_update(RID p_particles_collision) = 0; //for SDF and vector field
- virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) = 0; //for SDF and vector field
- virtual AABB particles_collision_get_aabb(RID p_particles_collision) const = 0;
- virtual bool particles_collision_is_heightfield(RID p_particles_collision) const = 0;
- virtual RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const = 0;
-
/* FOG VOLUMES */
virtual RID fog_volume_allocate() = 0;
@@ -556,56 +184,6 @@ public:
virtual AABB visibility_notifier_get_aabb(RID p_notifier) const = 0;
virtual void visibility_notifier_call(RID p_notifier, bool p_enter, bool p_deferred) = 0;
- //used from 2D and 3D
- virtual RID particles_collision_instance_create(RID p_collision) = 0;
- virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) = 0;
- virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) = 0;
-
- /* GLOBAL VARIABLES */
-
- virtual void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) = 0;
- virtual void global_variable_remove(const StringName &p_name) = 0;
- virtual Vector<StringName> global_variable_get_list() const = 0;
-
- virtual void global_variable_set(const StringName &p_name, const Variant &p_value) = 0;
- virtual void global_variable_set_override(const StringName &p_name, const Variant &p_value) = 0;
- virtual Variant global_variable_get(const StringName &p_name) const = 0;
- virtual RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const = 0;
-
- virtual void global_variables_load_settings(bool p_load_textures = true) = 0;
- virtual void global_variables_clear() = 0;
-
- virtual int32_t global_variables_instance_allocate(RID p_instance) = 0;
- virtual void global_variables_instance_free(RID p_instance) = 0;
- virtual void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) = 0;
-
- /* RENDER TARGET */
-
- enum RenderTargetFlags {
- RENDER_TARGET_TRANSPARENT,
- RENDER_TARGET_DIRECT_TO_SCREEN,
- RENDER_TARGET_FLAG_MAX
- };
-
- virtual RID render_target_create() = 0;
- virtual void render_target_set_position(RID p_render_target, int p_x, int p_y) = 0;
- virtual void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) = 0;
- virtual RID render_target_get_texture(RID p_render_target) = 0;
- virtual void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) = 0;
- virtual void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) = 0;
- virtual bool render_target_was_used(RID p_render_target) = 0;
- virtual void render_target_set_as_unused(RID p_render_target) = 0;
-
- virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color) = 0;
- virtual bool render_target_is_clear_requested(RID p_render_target) = 0;
- virtual Color render_target_get_clear_request_color(RID p_render_target) = 0;
- virtual void render_target_disable_clear_request(RID p_render_target) = 0;
- virtual void render_target_do_clear_request(RID p_render_target) = 0;
-
- virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) = 0;
- virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const = 0;
- virtual void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) = 0;
-
virtual RS::InstanceType get_base_type(RID p_rid) const = 0;
virtual bool free(RID p_rid) = 0;
@@ -620,6 +198,8 @@ public:
virtual uint64_t get_rendering_info(RS::RenderingInfo p_info) = 0;
virtual String get_video_adapter_name() const = 0;
virtual String get_video_adapter_vendor() const = 0;
+ virtual RenderingDevice::DeviceType get_video_adapter_type() const = 0;
+ virtual String get_video_adapter_api_version() const = 0;
static RendererStorage *base_singleton;
diff --git a/servers/rendering/renderer_thread_pool.cpp b/servers/rendering/renderer_thread_pool.cpp
index 98050dd508..ddf1d1bd00 100644
--- a/servers/rendering/renderer_thread_pool.cpp
+++ b/servers/rendering/renderer_thread_pool.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_thread_pool.h b/servers/rendering/renderer_thread_pool.h
index ae25415a0d..4626490d32 100644
--- a/servers/rendering/renderer_thread_pool.h
+++ b/servers/rendering/renderer_thread_pool.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/renderer_viewport.cpp b/servers/rendering/renderer_viewport.cpp
index eddf5bf53d..3ea67ae115 100644
--- a/servers/rendering/renderer_viewport.cpp
+++ b/servers/rendering/renderer_viewport.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -34,6 +34,7 @@
#include "renderer_canvas_cull.h"
#include "renderer_scene_cull.h"
#include "rendering_server_globals.h"
+#include "storage/texture_storage.h"
static Transform2D _canvas_get_transform(RendererViewport::Viewport *p_viewport, RendererCanvasCull::Canvas *p_canvas, RendererViewport::Viewport::CanvasData *p_canvas_data, const Vector2 &p_vp_size) {
Transform2D xf = p_viewport->global_transform;
@@ -42,7 +43,7 @@ static Transform2D _canvas_get_transform(RendererViewport::Viewport *p_viewport,
if (p_viewport->canvas_map.has(p_canvas->parent)) {
Transform2D c_xform = p_viewport->canvas_map[p_canvas->parent].transform;
if (p_viewport->snap_2d_transforms_to_pixel) {
- c_xform.elements[2] = c_xform.elements[2].floor();
+ c_xform.columns[2] = c_xform.columns[2].floor();
}
xf = xf * c_xform;
scale = p_canvas->parent_scale;
@@ -51,7 +52,7 @@ static Transform2D _canvas_get_transform(RendererViewport::Viewport *p_viewport,
Transform2D c_xform = p_canvas_data->transform;
if (p_viewport->snap_2d_transforms_to_pixel) {
- c_xform.elements[2] = c_xform.elements[2].floor();
+ c_xform.columns[2] = c_xform.columns[2].floor();
}
xf = xf * c_xform;
@@ -77,23 +78,21 @@ void RendererViewport::_configure_3d_render_buffers(Viewport *p_viewport) {
RSG::scene->free(p_viewport->render_buffers);
p_viewport->render_buffers = RID();
} else {
- float scaling_3d_scale = p_viewport->scaling_3d_scale;
-
+ const float scaling_3d_scale = p_viewport->scaling_3d_scale;
RS::ViewportScaling3DMode scaling_3d_mode = p_viewport->scaling_3d_mode;
bool scaling_enabled = true;
if ((scaling_3d_mode == RS::VIEWPORT_SCALING_3D_MODE_FSR) && (scaling_3d_scale > 1.0)) {
- // FSR is not design for downsampling.
- // Throw a warning and fallback to VIEWPORT_SCALING_3D_MODE_BILINEAR
- WARN_PRINT_ONCE("FSR 3D resolution scaling does not support supersampling. Falling back to bilinear scaling.");
+ // FSR is not designed for downsampling.
+ // Fall back to bilinear scaling.
scaling_3d_mode = RS::VIEWPORT_SCALING_3D_MODE_BILINEAR;
}
if ((scaling_3d_mode == RS::VIEWPORT_SCALING_3D_MODE_FSR) && !p_viewport->fsr_enabled) {
// FSR is not actually available.
- // Throw a warning and fallback to disable scaling
- WARN_PRINT_ONCE("FSR 3D resolution scaling is not available. Disabling 3D resolution scaling.");
- scaling_enabled = false;
+ // Fall back to bilinear scaling.
+ WARN_PRINT_ONCE("FSR 1.0 3D resolution scaling is not available. Falling back to bilinear 3D resolution scaling.");
+ scaling_3d_mode = RS::VIEWPORT_SCALING_3D_MODE_BILINEAR;
}
if (scaling_3d_scale == 1.0) {
@@ -145,7 +144,7 @@ void RendererViewport::_configure_3d_render_buffers(Viewport *p_viewport) {
}
void RendererViewport::_draw_3d(Viewport *p_viewport) {
- RENDER_TIMESTAMP(">Begin Rendering 3D Scene");
+ RENDER_TIMESTAMP("> Render 3D Scene");
Ref<XRInterface> xr_interface;
if (p_viewport->use_xr && XRServer::get_singleton() != nullptr) {
@@ -167,10 +166,10 @@ void RendererViewport::_draw_3d(Viewport *p_viewport) {
}
}
- float screen_lod_threshold = p_viewport->lod_threshold / float(p_viewport->size.width);
- RSG::scene->render_camera(p_viewport->render_buffers, p_viewport->camera, p_viewport->scenario, p_viewport->self, p_viewport->internal_size, screen_lod_threshold, p_viewport->shadow_atlas, xr_interface, &p_viewport->render_info);
+ float screen_mesh_lod_threshold = p_viewport->mesh_lod_threshold / float(p_viewport->size.width);
+ RSG::scene->render_camera(p_viewport->render_buffers, p_viewport->camera, p_viewport->scenario, p_viewport->self, p_viewport->internal_size, screen_mesh_lod_threshold, p_viewport->shadow_atlas, xr_interface, &p_viewport->render_info);
- RENDER_TIMESTAMP("<End Rendering 3D Scene");
+ RENDER_TIMESTAMP("< Render 3D Scene");
}
void RendererViewport::_draw_viewport(Viewport *p_viewport) {
@@ -196,8 +195,6 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
}
}
- Color bgcolor = RSG::storage->get_default_clear_color();
-
if (!p_viewport->disable_2d && !p_viewport->disable_environment && RSG::scene->is_scenario(p_viewport->scenario)) {
RID environment = RSG::scene->scenario_get_environment(p_viewport->scenario);
if (RSG::scene->is_environment(environment)) {
@@ -208,15 +205,6 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
bool can_draw_3d = RSG::scene->is_camera(p_viewport->camera) && !p_viewport->disable_3d;
- if (p_viewport->clear_mode != RS::VIEWPORT_CLEAR_NEVER) {
- if (p_viewport->transparent_bg) {
- bgcolor = Color(0, 0, 0, 0);
- }
- if (p_viewport->clear_mode == RS::VIEWPORT_CLEAR_ONLY_NEXT_FRAME) {
- p_viewport->clear_mode = RS::VIEWPORT_CLEAR_NEVER;
- }
- }
-
if ((scenario_draw_canvas_bg || can_draw_3d) && !p_viewport->render_buffers.is_valid()) {
//wants to draw 3D but there is no render buffer, create
p_viewport->render_buffers = RSG::scene->render_buffers_create();
@@ -224,15 +212,20 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
_configure_3d_render_buffers(p_viewport);
}
- RSG::storage->render_target_request_clear(p_viewport->render_target, bgcolor);
+ Color bgcolor = p_viewport->transparent_bg ? Color(0, 0, 0, 0) : RSG::storage->get_default_clear_color();
+
+ if (p_viewport->clear_mode != RS::VIEWPORT_CLEAR_NEVER) {
+ RSG::texture_storage->render_target_request_clear(p_viewport->render_target, bgcolor);
+ if (p_viewport->clear_mode == RS::VIEWPORT_CLEAR_ONLY_NEXT_FRAME) {
+ p_viewport->clear_mode = RS::VIEWPORT_CLEAR_NEVER;
+ }
+ }
if (!scenario_draw_canvas_bg && can_draw_3d) {
_draw_3d(p_viewport);
}
if (!p_viewport->disable_2d) {
- int i = 0;
-
Map<Viewport::CanvasKey, Viewport::CanvasData *> canvas_map;
Rect2 clip_rect(0, 0, p_viewport->size.x, p_viewport->size.y);
@@ -243,13 +236,13 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
RendererCanvasRender::Light *directional_lights_with_shadow = nullptr;
if (p_viewport->sdf_active) {
- //process SDF
+ // Process SDF.
- Rect2 sdf_rect = RSG::storage->render_target_get_sdf_rect(p_viewport->render_target);
+ Rect2 sdf_rect = RSG::texture_storage->render_target_get_sdf_rect(p_viewport->render_target);
RendererCanvasRender::LightOccluderInstance *occluders = nullptr;
- //make list of occluders
+ // Make list of occluders.
for (KeyValue<RID, Viewport::CanvasData> &E : p_viewport->canvas_map) {
RendererCanvasCull::Canvas *canvas = static_cast<RendererCanvasCull::Canvas *>(E.value.canvas);
Transform2D xf = _canvas_get_transform(p_viewport, canvas, &E.value, clip_rect.size);
@@ -268,32 +261,31 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
}
RSG::canvas_render->render_sdf(p_viewport->render_target, occluders);
- RSG::storage->render_target_mark_sdf_enabled(p_viewport->render_target, true);
+ RSG::texture_storage->render_target_mark_sdf_enabled(p_viewport->render_target, true);
- p_viewport->sdf_active = false; // if used, gets set active again
+ p_viewport->sdf_active = false; // If used, gets set active again.
} else {
- RSG::storage->render_target_mark_sdf_enabled(p_viewport->render_target, false);
+ RSG::texture_storage->render_target_mark_sdf_enabled(p_viewport->render_target, false);
}
Rect2 shadow_rect;
- int light_count = 0;
int shadow_count = 0;
int directional_light_count = 0;
- RENDER_TIMESTAMP("Cull Canvas Lights");
+ RENDER_TIMESTAMP("Cull 2D Lights");
for (KeyValue<RID, Viewport::CanvasData> &E : p_viewport->canvas_map) {
RendererCanvasCull::Canvas *canvas = static_cast<RendererCanvasCull::Canvas *>(E.value.canvas);
Transform2D xf = _canvas_get_transform(p_viewport, canvas, &E.value, clip_rect.size);
- //find lights in canvas
+ // Find lights in canvas.
for (Set<RendererCanvasRender::Light *>::Element *F = canvas->lights.front(); F; F = F->next()) {
RendererCanvasRender::Light *cl = F->get();
if (cl->enabled && cl->texture.is_valid()) {
//not super efficient..
- Size2 tsize = RSG::storage->texture_size_with_proxy(cl->texture);
+ Size2 tsize = RSG::texture_storage->texture_size_with_proxy(cl->texture);
tsize *= cl->scale;
Vector2 offset = tsize / 2.0;
@@ -303,12 +295,10 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
if (clip_rect.intersects_transformed(cl->xform_cache, cl->rect_cache)) {
cl->filter_next_ptr = lights;
lights = cl;
- // cl->texture_cache = nullptr;
Transform2D scale;
scale.scale(cl->rect_cache.size);
- scale.elements[2] = cl->rect_cache.position;
+ scale.columns[2] = cl->rect_cache.position;
cl->light_shader_xform = cl->xform * scale;
- //cl->light_shader_pos = cl->xform_cache[2];
if (cl->use_shadow) {
cl->shadows_next_ptr = lights_with_shadow;
if (lights_with_shadow == nullptr) {
@@ -319,11 +309,7 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
lights_with_shadow = cl;
cl->radius_cache = cl->rect_cache.size.length();
}
-
- light_count++;
}
-
- //guess this is not needed, but keeping because it may be
}
}
@@ -333,7 +319,7 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
cl->filter_next_ptr = directional_lights;
directional_lights = cl;
cl->xform_cache = xf * cl->xform;
- cl->xform_cache.elements[2] = Vector2(); //translation is pointless
+ cl->xform_cache.columns[2] = Vector2(); //translation is pointless
if (cl->use_shadow) {
cl->shadows_next_ptr = directional_lights_with_shadow;
directional_lights_with_shadow = cl;
@@ -355,8 +341,8 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
RendererCanvasRender::LightOccluderInstance *occluders = nullptr;
- RENDER_TIMESTAMP(">Render 2D Shadows");
- RENDER_TIMESTAMP("Cull Occluders");
+ RENDER_TIMESTAMP("> Render PointLight2D Shadows");
+ RENDER_TIMESTAMP("Cull LightOccluder2Ds");
//make list of occluders
for (KeyValue<RID, Viewport::CanvasData> &E : p_viewport->canvas_map) {
@@ -378,20 +364,20 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
RendererCanvasRender::Light *light = lights_with_shadow;
while (light) {
- RENDER_TIMESTAMP("Render Shadow");
+ RENDER_TIMESTAMP("Render PointLight2D Shadow");
RSG::canvas_render->light_update_shadow(light->light_internal, shadow_count++, light->xform_cache.affine_inverse(), light->item_shadow_mask, light->radius_cache / 1000.0, light->radius_cache * 1.1, occluders);
light = light->shadows_next_ptr;
}
- RENDER_TIMESTAMP("<End rendering 2D Shadows");
+ RENDER_TIMESTAMP("< Render PointLight2D Shadows");
}
if (directional_lights_with_shadow) {
//update shadows if any
RendererCanvasRender::Light *light = directional_lights_with_shadow;
while (light) {
- Vector2 light_dir = -light->xform_cache.elements[1].normalized(); // Y is light direction
+ Vector2 light_dir = -light->xform_cache.columns[1].normalized(); // Y is light direction
float cull_distance = light->directional_distance;
Vector2 light_dir_sign;
@@ -436,10 +422,9 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
RendererCanvasRender::LightOccluderInstance *occluders = nullptr;
- RENDER_TIMESTAMP(">Render Directional 2D Shadows");
+ RENDER_TIMESTAMP("> Render DirectionalLight2D Shadows");
- //make list of occluders
- int occ_cullded = 0;
+ // Make list of occluders.
for (KeyValue<RID, Viewport::CanvasData> &E : p_viewport->canvas_map) {
RendererCanvasCull::Canvas *canvas = static_cast<RendererCanvasCull::Canvas *>(E.value.canvas);
Transform2D xf = _canvas_get_transform(p_viewport, canvas, &E.value, clip_rect.size);
@@ -457,7 +442,6 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
if (F->get()->aabb_cache.intersects_filled_polygon(xf_points, point_count)) {
F->get()->next = occluders;
occluders = F->get();
- occ_cullded++;
}
}
}
@@ -467,7 +451,7 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
light = light->shadows_next_ptr;
}
- RENDER_TIMESTAMP("<Render Directional 2D Shadows");
+ RENDER_TIMESTAMP("< Render DirectionalLight2D Shadows");
}
if (scenario_draw_canvas_bg && canvas_map.front() && canvas_map.front()->key().get_layer() > scenario_canvas_max_layer) {
@@ -509,7 +493,6 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
if (RSG::canvas->was_sdf_used()) {
p_viewport->sdf_active = true;
}
- i++;
if (scenario_draw_canvas_bg && E.key.get_layer() >= scenario_canvas_max_layer) {
if (!can_draw_3d) {
@@ -531,9 +514,9 @@ void RendererViewport::_draw_viewport(Viewport *p_viewport) {
}
}
- if (RSG::storage->render_target_is_clear_requested(p_viewport->render_target)) {
+ if (RSG::texture_storage->render_target_is_clear_requested(p_viewport->render_target)) {
//was never cleared in the end, force clear it
- RSG::storage->render_target_do_clear_request(p_viewport->render_target);
+ RSG::texture_storage->render_target_do_clear_request(p_viewport->render_target);
}
if (p_viewport->measure_render_time) {
@@ -548,9 +531,13 @@ void RendererViewport::draw_viewports() {
// get our xr interface in case we need it
Ref<XRInterface> xr_interface;
+ XRServer *xr_server = XRServer::get_singleton();
+ if (xr_server != nullptr) {
+ // let our XR server know we're about to render our frames so we can get our frame timing
+ xr_server->pre_render();
- if (XRServer::get_singleton() != nullptr) {
- xr_interface = XRServer::get_singleton()->get_primary_interface();
+ // retrieve the interface responsible for rendering
+ xr_interface = xr_server->get_primary_interface();
}
if (Engine::get_singleton()->is_editor_hint()) {
@@ -562,7 +549,7 @@ void RendererViewport::draw_viewports() {
Map<DisplayServer::WindowID, Vector<BlitToScreen>> blit_to_screen_list;
//draw viewports
- RENDER_TIMESTAMP(">Render Viewports");
+ RENDER_TIMESTAMP("> Render Viewports");
//determine what is visible
draw_viewports_pass++;
@@ -582,11 +569,33 @@ void RendererViewport::draw_viewports() {
bool visible = vp->viewport_to_screen_rect != Rect2();
+ if (vp->use_xr) {
+ if (xr_interface.is_valid()) {
+ // Override our size, make sure it matches our required size and is created as a stereo target
+ Size2 xr_size = xr_interface->get_render_target_size();
+
+ // Would have been nice if we could call viewport_set_size here,
+ // but alas that takes our RID and we now have our pointer,
+ // also we only check if view_count changes in render_target_set_size so we need to call that for this to reliably change
+ vp->occlusion_buffer_dirty = vp->occlusion_buffer_dirty || (vp->size != xr_size);
+ vp->size = xr_size;
+ uint32_t view_count = xr_interface->get_view_count();
+ RSG::texture_storage->render_target_set_size(vp->render_target, vp->size.x, vp->size.y, view_count);
+
+ // Inform xr interface we're about to render its viewport, if this returns false we don't render
+ visible = xr_interface->pre_draw_viewport(vp->render_target);
+ } else {
+ // don't render anything
+ visible = false;
+ vp->size = Size2();
+ }
+ }
+
if (vp->update_mode == RS::VIEWPORT_UPDATE_ALWAYS || vp->update_mode == RS::VIEWPORT_UPDATE_ONCE) {
visible = true;
}
- if (vp->update_mode == RS::VIEWPORT_UPDATE_WHEN_VISIBLE && RSG::storage->render_target_was_used(vp->render_target)) {
+ if (vp->update_mode == RS::VIEWPORT_UPDATE_WHEN_VISIBLE && RSG::texture_storage->render_target_was_used(vp->render_target)) {
visible = true;
}
@@ -615,18 +624,13 @@ void RendererViewport::draw_viewports() {
continue; //should not draw
}
- RENDER_TIMESTAMP(">Rendering Viewport " + itos(i));
+ RENDER_TIMESTAMP("> Render Viewport " + itos(i));
- RSG::storage->render_target_set_as_unused(vp->render_target);
+ RSG::texture_storage->render_target_set_as_unused(vp->render_target);
if (vp->use_xr && xr_interface.is_valid()) {
- // override our size, make sure it matches our required size and is created as a stereo target
- vp->size = xr_interface->get_render_target_size();
- uint32_t view_count = xr_interface->get_view_count();
- RSG::storage->render_target_set_size(vp->render_target, vp->internal_size.x, vp->internal_size.y, view_count);
-
// check for an external texture destination (disabled for now, not yet supported)
- // RSG::storage->render_target_set_external_texture(vp->render_target, xr_interface->get_external_texture_for_eye(leftOrMono));
- RSG::storage->render_target_set_external_texture(vp->render_target, 0);
+ // RSG::texture_storage->render_target_set_external_texture(vp->render_target, xr_interface->get_external_texture_for_eye(leftOrMono));
+ RSG::texture_storage->render_target_set_external_texture(vp->render_target, 0);
// render...
RSG::scene->set_debug_draw_mode(vp->debug_draw);
@@ -637,7 +641,7 @@ void RendererViewport::draw_viewports() {
// measure
// commit our eyes
- Vector<BlitToScreen> blits = xr_interface->commit_views(vp->render_target, vp->viewport_to_screen_rect);
+ Vector<BlitToScreen> blits = xr_interface->post_draw_viewport(vp->render_target, vp->viewport_to_screen_rect);
if (vp->viewport_to_screen != DisplayServer::INVALID_WINDOW_ID && blits.size() > 0) {
if (!blit_to_screen_list.has(vp->viewport_to_screen)) {
blit_to_screen_list[vp->viewport_to_screen] = Vector<BlitToScreen>();
@@ -647,11 +651,8 @@ void RendererViewport::draw_viewports() {
blit_to_screen_list[vp->viewport_to_screen].push_back(blits[b]);
}
}
-
- // and for our frame timing, mark when we've finished committing our eyes
- XRServer::get_singleton()->_mark_commit();
} else {
- RSG::storage->render_target_set_external_texture(vp->render_target, 0);
+ RSG::texture_storage->render_target_set_external_texture(vp->render_target, 0);
RSG::scene->set_debug_draw_mode(vp->debug_draw);
@@ -681,7 +682,7 @@ void RendererViewport::draw_viewports() {
vp->update_mode = RS::VIEWPORT_UPDATE_DISABLED;
}
- RENDER_TIMESTAMP("<Rendering Viewport " + itos(i));
+ RENDER_TIMESTAMP("< Render Viewport " + itos(i));
objects_drawn += vp->render_info.info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_OBJECTS_IN_FRAME] + vp->render_info.info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_OBJECTS_IN_FRAME];
vertices_drawn += vp->render_info.info[RS::VIEWPORT_RENDER_INFO_TYPE_VISIBLE][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME] + vp->render_info.info[RS::VIEWPORT_RENDER_INFO_TYPE_SHADOW][RS::VIEWPORT_RENDER_INFO_PRIMITIVES_IN_FRAME];
@@ -693,7 +694,7 @@ void RendererViewport::draw_viewports() {
total_vertices_drawn = vertices_drawn;
total_draw_calls_used = draw_calls_used;
- RENDER_TIMESTAMP("<Render Viewports");
+ RENDER_TIMESTAMP("< Render Viewports");
//this needs to be called to make screen swapping more efficient
RSG::rasterizer->prepare_for_blitting_render_targets();
@@ -710,7 +711,7 @@ void RendererViewport::viewport_initialize(RID p_rid) {
viewport_owner.initialize_rid(p_rid);
Viewport *viewport = viewport_owner.get_or_null(p_rid);
viewport->self = p_rid;
- viewport->render_target = RSG::storage->render_target_create();
+ viewport->render_target = RSG::texture_storage->render_target_create();
viewport->shadow_atlas = RSG::scene->shadow_atlas_create();
viewport->viewport_render_direct_to_screen = false;
@@ -792,7 +793,7 @@ void RendererViewport::viewport_set_size(RID p_viewport, int p_width, int p_heig
viewport->size = Size2(p_width, p_height);
uint32_t view_count = viewport->get_view_count();
- RSG::storage->render_target_set_size(viewport->render_target, p_width, p_height, view_count);
+ RSG::texture_storage->render_target_set_size(viewport->render_target, p_width, p_height, view_count);
_configure_3d_render_buffers(viewport);
viewport->occlusion_buffer_dirty = true;
@@ -803,7 +804,7 @@ void RendererViewport::viewport_set_active(RID p_viewport, bool p_active) {
ERR_FAIL_COND(!viewport);
if (p_active) {
- ERR_FAIL_COND_MSG(active_viewports.find(viewport) != -1, "Can't make active a Viewport that is already active.");
+ ERR_FAIL_COND_MSG(active_viewports.has(viewport), "Can't make active a Viewport that is already active.");
viewport->occlusion_buffer_dirty = true;
active_viewports.push_back(viewport);
} else {
@@ -833,8 +834,8 @@ void RendererViewport::viewport_attach_to_screen(RID p_viewport, const Rect2 &p_
// If using OpenGL we can optimize this operation by rendering directly to system_fbo
// instead of rendering to fbo and copying to system_fbo after
if (RSG::rasterizer->is_low_end() && viewport->viewport_render_direct_to_screen) {
- RSG::storage->render_target_set_size(viewport->render_target, p_rect.size.x, p_rect.size.y, viewport->get_view_count());
- RSG::storage->render_target_set_position(viewport->render_target, p_rect.position.x, p_rect.position.y);
+ RSG::texture_storage->render_target_set_size(viewport->render_target, p_rect.size.x, p_rect.size.y, viewport->get_view_count());
+ RSG::texture_storage->render_target_set_position(viewport->render_target, p_rect.position.x, p_rect.position.y);
}
viewport->viewport_to_screen_rect = p_rect;
@@ -842,8 +843,8 @@ void RendererViewport::viewport_attach_to_screen(RID p_viewport, const Rect2 &p_
} else {
// if render_direct_to_screen was used, reset size and position
if (RSG::rasterizer->is_low_end() && viewport->viewport_render_direct_to_screen) {
- RSG::storage->render_target_set_position(viewport->render_target, 0, 0);
- RSG::storage->render_target_set_size(viewport->render_target, viewport->internal_size.x, viewport->internal_size.y, viewport->get_view_count());
+ RSG::texture_storage->render_target_set_position(viewport->render_target, 0, 0);
+ RSG::texture_storage->render_target_set_size(viewport->render_target, viewport->size.x, viewport->size.y, viewport->get_view_count());
}
viewport->viewport_to_screen_rect = Rect2();
@@ -861,17 +862,17 @@ void RendererViewport::viewport_set_render_direct_to_screen(RID p_viewport, bool
// if disabled, reset render_target size and position
if (!p_enable) {
- RSG::storage->render_target_set_position(viewport->render_target, 0, 0);
- RSG::storage->render_target_set_size(viewport->render_target, viewport->size.x, viewport->size.y, viewport->get_view_count());
+ RSG::texture_storage->render_target_set_position(viewport->render_target, 0, 0);
+ RSG::texture_storage->render_target_set_size(viewport->render_target, viewport->size.x, viewport->size.y, viewport->get_view_count());
}
- RSG::storage->render_target_set_flag(viewport->render_target, RendererStorage::RENDER_TARGET_DIRECT_TO_SCREEN, p_enable);
+ RSG::texture_storage->render_target_set_flag(viewport->render_target, RendererTextureStorage::RENDER_TARGET_DIRECT_TO_SCREEN, p_enable);
viewport->viewport_render_direct_to_screen = p_enable;
// if attached to screen already, setup screen size and position, this needs to happen after setting flag to avoid an unnecessary buffer allocation
if (RSG::rasterizer->is_low_end() && viewport->viewport_to_screen_rect != Rect2() && p_enable) {
- RSG::storage->render_target_set_size(viewport->render_target, viewport->viewport_to_screen_rect.size.x, viewport->viewport_to_screen_rect.size.y, viewport->get_view_count());
- RSG::storage->render_target_set_position(viewport->render_target, viewport->viewport_to_screen_rect.position.x, viewport->viewport_to_screen_rect.position.y);
+ RSG::texture_storage->render_target_set_size(viewport->render_target, viewport->viewport_to_screen_rect.size.x, viewport->viewport_to_screen_rect.size.y, viewport->get_view_count());
+ RSG::texture_storage->render_target_set_position(viewport->render_target, viewport->viewport_to_screen_rect.position.x, viewport->viewport_to_screen_rect.position.y);
}
}
@@ -886,7 +887,7 @@ RID RendererViewport::viewport_get_texture(RID p_viewport) const {
const Viewport *viewport = viewport_owner.get_or_null(p_viewport);
ERR_FAIL_COND_V(!viewport, RID());
- return RSG::storage->render_target_get_texture(viewport->render_target);
+ return RSG::texture_storage->render_target_get_texture(viewport->render_target);
}
RID RendererViewport::viewport_get_occluder_debug_texture(RID p_viewport) const {
@@ -979,7 +980,7 @@ void RendererViewport::viewport_set_transparent_background(RID p_viewport, bool
Viewport *viewport = viewport_owner.get_or_null(p_viewport);
ERR_FAIL_COND(!viewport);
- RSG::storage->render_target_set_flag(viewport->render_target, RendererStorage::RENDER_TARGET_TRANSPARENT, p_enabled);
+ RSG::texture_storage->render_target_set_flag(viewport->render_target, RendererTextureStorage::RENDER_TARGET_TRANSPARENT, p_enabled);
viewport->transparent_bg = p_enabled;
}
@@ -1084,11 +1085,11 @@ void RendererViewport::viewport_set_occlusion_culling_build_quality(RS::Viewport
RendererSceneOcclusionCull::get_singleton()->set_build_quality(p_quality);
}
-void RendererViewport::viewport_set_lod_threshold(RID p_viewport, float p_pixels) {
+void RendererViewport::viewport_set_mesh_lod_threshold(RID p_viewport, float p_pixels) {
Viewport *viewport = viewport_owner.get_or_null(p_viewport);
ERR_FAIL_COND(!viewport);
- viewport->lod_threshold = p_pixels;
+ viewport->mesh_lod_threshold = p_pixels;
}
int RendererViewport::viewport_get_render_info(RID p_viewport, RS::ViewportRenderInfoType p_type, RS::ViewportRenderInfo p_info) {
@@ -1162,14 +1163,14 @@ void RendererViewport::viewport_set_sdf_oversize_and_scale(RID p_viewport, RS::V
Viewport *viewport = viewport_owner.get_or_null(p_viewport);
ERR_FAIL_COND(!viewport);
- RSG::storage->render_target_set_sdf_size_and_scale(viewport->render_target, p_size, p_scale);
+ RSG::texture_storage->render_target_set_sdf_size_and_scale(viewport->render_target, p_size, p_scale);
}
bool RendererViewport::free(RID p_rid) {
if (viewport_owner.owns(p_rid)) {
Viewport *viewport = viewport_owner.get_or_null(p_rid);
- RSG::storage->free(viewport->render_target);
+ RSG::texture_storage->render_target_free(viewport->render_target);
RSG::scene->free(viewport->shadow_atlas);
if (viewport->render_buffers.is_valid()) {
RSG::scene->free(viewport->render_buffers);
diff --git a/servers/rendering/renderer_viewport.h b/servers/rendering/renderer_viewport.h
index 5bb4dbbc6f..b6e44e8436 100644
--- a/servers/rendering/renderer_viewport.h
+++ b/servers/rendering/renderer_viewport.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -91,11 +91,11 @@ public:
RID shadow_atlas;
int shadow_atlas_size;
- bool shadow_atlas_16_bits = false;
+ bool shadow_atlas_16_bits = true;
bool sdf_active;
- float lod_threshold = 1.0;
+ float mesh_lod_threshold = 1.0;
uint64_t last_pass = 0;
@@ -129,7 +129,7 @@ public:
};
struct CanvasData {
- CanvasBase *canvas;
+ CanvasBase *canvas = nullptr;
Transform2D transform;
int layer;
int sublayer;
@@ -247,7 +247,7 @@ public:
void viewport_set_global_canvas_transform(RID p_viewport, const Transform2D &p_transform);
void viewport_set_canvas_stacking(RID p_viewport, RID p_canvas, int p_layer, int p_sublayer);
- void viewport_set_shadow_atlas_size(RID p_viewport, int p_size, bool p_16_bits = false);
+ void viewport_set_shadow_atlas_size(RID p_viewport, int p_size, bool p_16_bits = true);
void viewport_set_shadow_atlas_quadrant_subdivision(RID p_viewport, int p_quadrant, int p_subdiv);
void viewport_set_msaa(RID p_viewport, RS::ViewportMSAA p_msaa);
@@ -256,7 +256,7 @@ public:
void viewport_set_use_occlusion_culling(RID p_viewport, bool p_use_occlusion_culling);
void viewport_set_occlusion_rays_per_thread(int p_rays_per_thread);
void viewport_set_occlusion_culling_build_quality(RS::ViewportOcclusionCullingBuildQuality p_quality);
- void viewport_set_lod_threshold(RID p_viewport, float p_pixels);
+ void viewport_set_mesh_lod_threshold(RID p_viewport, float p_pixels);
virtual int viewport_get_render_info(RID p_viewport, RS::ViewportRenderInfoType p_type, RS::ViewportRenderInfo p_info);
virtual void viewport_set_debug_draw(RID p_viewport, RS::ViewportDebugDraw p_draw);
diff --git a/servers/rendering/rendering_device.cpp b/servers/rendering/rendering_device.cpp
index 38f57b4624..6fc5d0b3e8 100644
--- a/servers/rendering/rendering_device.cpp
+++ b/servers/rendering/rendering_device.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -98,10 +98,10 @@ RID RenderingDevice::_texture_create_shared(const Ref<RDTextureView> &p_view, RI
return texture_create_shared(p_view->base, p_with_texture);
}
-RID RenderingDevice::_texture_create_shared_from_slice(const Ref<RDTextureView> &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, TextureSliceType p_slice_type) {
+RID RenderingDevice::_texture_create_shared_from_slice(const Ref<RDTextureView> &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, uint32_t p_mipmaps, TextureSliceType p_slice_type) {
ERR_FAIL_COND_V(p_view.is_null(), RID());
- return texture_create_shared_from_slice(p_view->base, p_with_texture, p_layer, p_mipmap, p_slice_type);
+ return texture_create_shared_from_slice(p_view->base, p_with_texture, p_layer, p_mipmap, p_mipmaps, p_slice_type);
}
RenderingDevice::FramebufferFormatID RenderingDevice::_framebuffer_format_create(const TypedArray<RDAttachmentFormat> &p_attachments, uint32_t p_view_count) {
@@ -364,7 +364,7 @@ void RenderingDevice::_compute_list_set_push_constant(ComputeListID p_list, cons
void RenderingDevice::_bind_methods() {
ClassDB::bind_method(D_METHOD("texture_create", "format", "view", "data"), &RenderingDevice::_texture_create, DEFVAL(Array()));
ClassDB::bind_method(D_METHOD("texture_create_shared", "view", "with_texture"), &RenderingDevice::_texture_create_shared);
- ClassDB::bind_method(D_METHOD("texture_create_shared_from_slice", "view", "with_texture", "layer", "mipmap", "slice_type"), &RenderingDevice::_texture_create_shared_from_slice, DEFVAL(TEXTURE_SLICE_2D));
+ ClassDB::bind_method(D_METHOD("texture_create_shared_from_slice", "view", "with_texture", "layer", "mipmap", "mipmaps", "slice_type"), &RenderingDevice::_texture_create_shared_from_slice, DEFVAL(1), DEFVAL(TEXTURE_SLICE_2D));
ClassDB::bind_method(D_METHOD("texture_update", "texture", "layer", "data", "post_barrier"), &RenderingDevice::texture_update, DEFVAL(BARRIER_MASK_ALL));
ClassDB::bind_method(D_METHOD("texture_get_data", "texture", "layer"), &RenderingDevice::texture_get_data);
@@ -451,7 +451,7 @@ void RenderingDevice::_bind_methods() {
ClassDB::bind_method(D_METHOD("compute_list_add_barrier", "compute_list"), &RenderingDevice::compute_list_add_barrier);
ClassDB::bind_method(D_METHOD("compute_list_end", "post_barrier"), &RenderingDevice::compute_list_end, DEFVAL(BARRIER_MASK_ALL));
- ClassDB::bind_method(D_METHOD("free", "rid"), &RenderingDevice::free);
+ ClassDB::bind_method(D_METHOD("free_rid", "rid"), &RenderingDevice::free);
ClassDB::bind_method(D_METHOD("capture_timestamp", "name"), &RenderingDevice::capture_timestamp);
ClassDB::bind_method(D_METHOD("get_captured_timestamps_count"), &RenderingDevice::get_captured_timestamps_count);
@@ -490,6 +490,13 @@ void RenderingDevice::_bind_methods() {
BIND_CONSTANT(BARRIER_MASK_ALL);
BIND_CONSTANT(BARRIER_MASK_NO_BARRIER);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_OTHER);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_INTEGRATED_GPU);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_DISCRETE_GPU);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_VIRTUAL_GPU);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_CPU);
+ BIND_ENUM_CONSTANT(DEVICE_TYPE_MAX);
+
BIND_ENUM_CONSTANT(DRIVER_RESOURCE_VULKAN_DEVICE);
BIND_ENUM_CONSTANT(DRIVER_RESOURCE_VULKAN_PHYSICAL_DEVICE);
BIND_ENUM_CONSTANT(DRIVER_RESOURCE_VULKAN_INSTANCE);
@@ -722,14 +729,6 @@ void RenderingDevice::_bind_methods() {
BIND_ENUM_CONSTANT(DATA_FORMAT_G16_B16_R16_3PLANE_422_UNORM);
BIND_ENUM_CONSTANT(DATA_FORMAT_G16_B16R16_2PLANE_422_UNORM);
BIND_ENUM_CONSTANT(DATA_FORMAT_G16_B16_R16_3PLANE_444_UNORM);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC2_2BPP_UNORM_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC2_4BPP_UNORM_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC1_2BPP_SRGB_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC1_4BPP_SRGB_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC2_2BPP_SRGB_BLOCK_IMG);
- BIND_ENUM_CONSTANT(DATA_FORMAT_PVRTC2_4BPP_SRGB_BLOCK_IMG);
BIND_ENUM_CONSTANT(DATA_FORMAT_MAX);
BIND_ENUM_CONSTANT(TEXTURE_TYPE_1D);
diff --git a/servers/rendering/rendering_device.h b/servers/rendering/rendering_device.h
index 563a80c12c..0973e29974 100644
--- a/servers/rendering/rendering_device.h
+++ b/servers/rendering/rendering_device.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -60,6 +60,17 @@ public:
DEVICE_DIRECTX
};
+ // This enum matches VkPhysicalDeviceType (except for `DEVICE_TYPE_MAX`).
+ // Unlike VkPhysicalDeviceType, DeviceType is exposed to the scripting API.
+ enum DeviceType {
+ DEVICE_TYPE_OTHER,
+ DEVICE_TYPE_INTEGRATED_GPU,
+ DEVICE_TYPE_DISCRETE_GPU,
+ DEVICE_TYPE_VIRTUAL_GPU,
+ DEVICE_TYPE_CPU,
+ DEVICE_TYPE_MAX,
+ };
+
enum DriverResource {
DRIVER_RESOURCE_VULKAN_DEVICE = 0,
DRIVER_RESOURCE_VULKAN_PHYSICAL_DEVICE,
@@ -381,14 +392,6 @@ public:
DATA_FORMAT_G16_B16_R16_3PLANE_422_UNORM,
DATA_FORMAT_G16_B16R16_2PLANE_422_UNORM,
DATA_FORMAT_G16_B16_R16_3PLANE_444_UNORM,
- DATA_FORMAT_PVRTC1_2BPP_UNORM_BLOCK_IMG,
- DATA_FORMAT_PVRTC1_4BPP_UNORM_BLOCK_IMG,
- DATA_FORMAT_PVRTC2_2BPP_UNORM_BLOCK_IMG,
- DATA_FORMAT_PVRTC2_4BPP_UNORM_BLOCK_IMG,
- DATA_FORMAT_PVRTC1_2BPP_SRGB_BLOCK_IMG,
- DATA_FORMAT_PVRTC1_4BPP_SRGB_BLOCK_IMG,
- DATA_FORMAT_PVRTC2_2BPP_SRGB_BLOCK_IMG,
- DATA_FORMAT_PVRTC2_4BPP_SRGB_BLOCK_IMG,
DATA_FORMAT_MAX
};
@@ -497,6 +500,7 @@ public:
virtual RID texture_create(const TextureFormat &p_format, const TextureView &p_view, const Vector<Vector<uint8_t>> &p_data = Vector<Vector<uint8_t>>()) = 0;
virtual RID texture_create_shared(const TextureView &p_view, RID p_with_texture) = 0;
+ virtual RID texture_create_from_extension(TextureType p_type, DataFormat p_format, TextureSamples p_samples, uint64_t p_flags, uint64_t p_image, uint64_t p_width, uint64_t p_height, uint64_t p_depth, uint64_t p_layers) = 0;
enum TextureSliceType {
TEXTURE_SLICE_2D,
@@ -505,7 +509,7 @@ public:
TEXTURE_SLICE_2D_ARRAY,
};
- virtual RID texture_create_shared_from_slice(const TextureView &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, TextureSliceType p_slice_type = TEXTURE_SLICE_2D) = 0;
+ virtual RID texture_create_shared_from_slice(const TextureView &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, uint32_t p_mipmaps = 1, TextureSliceType p_slice_type = TEXTURE_SLICE_2D) = 0;
virtual Error texture_update(RID p_texture, uint32_t p_layer, const Vector<uint8_t> &p_data, uint32_t p_post_barrier = BARRIER_MASK_ALL) = 0;
virtual Vector<uint8_t> texture_get_data(RID p_texture, uint32_t p_layer) = 0; // CPU textures will return immediately, while GPU textures will most likely force a flush
@@ -524,6 +528,7 @@ public:
/*********************/
struct AttachmentFormat {
+ enum { UNUSED_ATTACHMENT = 0xFFFFFFFF };
DataFormat format;
TextureSamples samples;
uint32_t usage_flags;
@@ -722,16 +727,65 @@ public:
struct Uniform {
UniformType uniform_type;
- int binding; //binding index as specified in shader
+ int binding; // Binding index as specified in shader.
+
+ private:
+ // In most cases only one ID is provided per binding, so avoid allocating memory unnecessarily for performance.
+ RID id; // If only one is provided, this is used.
+ Vector<RID> ids; // If multiple ones are provided, this is used instead.
+
+ public:
+ _FORCE_INLINE_ uint32_t get_id_count() const {
+ return (id.is_valid() ? 1 : ids.size());
+ }
+
+ _FORCE_INLINE_ RID get_id(uint32_t p_idx) const {
+ if (id.is_valid()) {
+ ERR_FAIL_COND_V(p_idx != 0, RID());
+ return id;
+ } else {
+ return ids[p_idx];
+ }
+ }
+ _FORCE_INLINE_ void set_id(uint32_t p_idx, RID p_id) {
+ if (id.is_valid()) {
+ ERR_FAIL_COND(p_idx != 0);
+ id = p_id;
+ } else {
+ ids.write[p_idx] = p_id;
+ }
+ }
+
+ _FORCE_INLINE_ void append_id(RID p_id) {
+ if (ids.is_empty()) {
+ if (id == RID()) {
+ id = p_id;
+ } else {
+ ids.push_back(id);
+ ids.push_back(p_id);
+ id = RID();
+ }
+ } else {
+ ids.push_back(p_id);
+ }
+ }
- //for single items, provide one ID, for
- //multiple items (declared as arrays in shader),
- //provide more
- //for sampler with texture, supply two IDs for each.
- //accepted IDs are: Sampler, Texture, Uniform Buffer and Texture Buffer
- Vector<RID> ids;
+ _FORCE_INLINE_ void clear_ids() {
+ id = RID();
+ ids.clear();
+ }
- Uniform() {
+ _FORCE_INLINE_ Uniform(UniformType p_type, int p_binding, RID p_id) {
+ uniform_type = p_type;
+ binding = p_binding;
+ id = p_id;
+ }
+ _FORCE_INLINE_ Uniform(UniformType p_type, int p_binding, const Vector<RID> &p_ids) {
+ uniform_type = p_type;
+ binding = p_binding;
+ ids = p_ids;
+ }
+ _FORCE_INLINE_ Uniform() {
uniform_type = UNIFORM_TYPE_IMAGE;
binding = 0;
}
@@ -739,7 +793,7 @@ public:
virtual RID uniform_set_create(const Vector<Uniform> &p_uniforms, RID p_shader, uint32_t p_shader_set) = 0;
virtual bool uniform_set_is_valid(RID p_uniform_set) = 0;
- typedef void (*UniformSetInvalidatedCallback)(const RID &, void *);
+ typedef void (*UniformSetInvalidatedCallback)(void *);
virtual void uniform_set_set_invalidation_callback(RID p_uniform_set, UniformSetInvalidatedCallback p_callback, void *p_userdata) = 0;
virtual Error buffer_update(RID p_buffer, uint32_t p_offset, uint32_t p_size, const void *p_data, uint32_t p_post_barrier = BARRIER_MASK_ALL) = 0;
@@ -1169,7 +1223,7 @@ public:
LIMIT_MAX_COMPUTE_WORKGROUP_SIZE_Z,
};
- virtual int limit_get(Limit p_limit) = 0;
+ virtual uint64_t limit_get(Limit p_limit) = 0;
//methods below not exposed, used by RenderingDeviceRD
virtual void prepare_screen_for_drawing() = 0;
@@ -1199,6 +1253,8 @@ public:
virtual String get_device_vendor_name() const = 0;
virtual String get_device_name() const = 0;
+ virtual RenderingDevice::DeviceType get_device_type() const = 0;
+ virtual String get_device_api_version() const = 0;
virtual String get_device_pipeline_cache_uuid() const = 0;
virtual uint64_t get_driver_resource(DriverResource p_resource, RID p_rid = RID(), uint64_t p_index = 0) = 0;
@@ -1210,7 +1266,7 @@ protected:
//binders to script API
RID _texture_create(const Ref<RDTextureFormat> &p_format, const Ref<RDTextureView> &p_view, const TypedArray<PackedByteArray> &p_data = Array());
RID _texture_create_shared(const Ref<RDTextureView> &p_view, RID p_with_texture);
- RID _texture_create_shared_from_slice(const Ref<RDTextureView> &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, TextureSliceType p_slice_type = TEXTURE_SLICE_2D);
+ RID _texture_create_shared_from_slice(const Ref<RDTextureView> &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, uint32_t p_mipmaps = 1, TextureSliceType p_slice_type = TEXTURE_SLICE_2D);
FramebufferFormatID _framebuffer_format_create(const TypedArray<RDAttachmentFormat> &p_attachments, uint32_t p_view_count);
FramebufferFormatID _framebuffer_format_create_multipass(const TypedArray<RDAttachmentFormat> &p_attachments, const TypedArray<RDFramebufferPass> &p_passes, uint32_t p_view_count);
@@ -1237,6 +1293,7 @@ protected:
Vector<int64_t> _draw_list_switch_to_next_pass_split(uint32_t p_splits);
};
+VARIANT_ENUM_CAST(RenderingDevice::DeviceType)
VARIANT_ENUM_CAST(RenderingDevice::DriverResource)
VARIANT_ENUM_CAST(RenderingDevice::ShaderStage)
VARIANT_ENUM_CAST(RenderingDevice::ShaderLanguage)
diff --git a/servers/rendering/rendering_device_binds.cpp b/servers/rendering/rendering_device_binds.cpp
index 3d09d83601..e50ac42027 100644
--- a/servers/rendering/rendering_device_binds.cpp
+++ b/servers/rendering/rendering_device_binds.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -99,11 +99,11 @@ Error RDShaderFile::parse_versions_from_text(const String &p_text, const String
if (reading_versions) {
String l = line.strip_edges();
if (!l.is_empty()) {
- if (l.find("=") == -1) {
+ if (!l.contains("=")) {
base_error = "Missing `=` in '" + l + "'. Version syntax is `version = \"<defines with C escaping>\";`.";
break;
}
- if (l.find(";") == -1) {
+ if (!l.contains(";")) {
// We don't require a semicolon per se, but it's needed for clang-format to handle things properly.
base_error = "Missing `;` in '" + l + "'. Version syntax is `version = \"<defines with C escaping>\";`.";
break;
diff --git a/servers/rendering/rendering_device_binds.h b/servers/rendering/rendering_device_binds.h
index 651c9b0090..ee5bf8b891 100644
--- a/servers/rendering/rendering_device_binds.h
+++ b/servers/rendering/rendering_device_binds.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -441,23 +441,23 @@ public:
RD_SETGET(RD::UniformType, uniform_type)
RD_SETGET(int32_t, binding)
- void add_id(const RID &p_id) { base.ids.push_back(p_id); }
- void clear_ids() { base.ids.clear(); }
+ void add_id(const RID &p_id) { base.append_id(p_id); }
+ void clear_ids() { base.clear_ids(); }
Array get_ids() const {
Array ids;
- for (int i = 0; i < base.ids.size(); i++) {
- ids.push_back(base.ids[i]);
+ for (uint32_t i = 0; i < base.get_id_count(); i++) {
+ ids.push_back(base.get_id(i));
}
return ids;
}
protected:
void _set_ids(const Array &p_ids) {
- base.ids.clear();
+ base.clear_ids();
for (int i = 0; i < p_ids.size(); i++) {
RID id = p_ids[i];
ERR_FAIL_COND(id.is_null());
- base.ids.push_back(id);
+ base.append_id(id);
}
}
static void _bind_methods() {
diff --git a/servers/rendering/rendering_server_default.cpp b/servers/rendering/rendering_server_default.cpp
index 2ce9a20b6b..000b253e8a 100644
--- a/servers/rendering/rendering_server_default.cpp
+++ b/servers/rendering/rendering_server_default.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -84,7 +84,7 @@ void RenderingServerDefault::_draw(bool p_swap_buffers, double frame_step) {
frame_setup_time = double(OS::get_singleton()->get_ticks_usec() - time_usec) / 1000.0;
- RSG::storage->update_particles(); //need to be done after instances are updated (colliders and particle transforms), and colliders are rendered
+ RSG::particles_storage->update_particles(); //need to be done after instances are updated (colliders and particle transforms), and colliders are rendered
RSG::scene->render_probes();
@@ -93,6 +93,12 @@ void RenderingServerDefault::_draw(bool p_swap_buffers, double frame_step) {
RSG::rasterizer->end_frame(p_swap_buffers);
+ XRServer *xr_server = XRServer::get_singleton();
+ if (xr_server != nullptr) {
+ // let our XR server know we're done so we can get our frame timing
+ xr_server->end_frame();
+ }
+
RSG::canvas->update_visibility_notifiers();
RSG::scene->update_visibility_notifiers();
@@ -255,6 +261,14 @@ String RenderingServerDefault::get_video_adapter_vendor() const {
return RSG::storage->get_video_adapter_vendor();
}
+RenderingDevice::DeviceType RenderingServerDefault::get_video_adapter_type() const {
+ return RSG::storage->get_video_adapter_type();
+}
+
+String RenderingServerDefault::get_video_adapter_api_version() const {
+ return RSG::storage->get_video_adapter_api_version();
+}
+
void RenderingServerDefault::set_frame_profiling_enabled(bool p_enable) {
RSG::storage->capturing_timestamps = p_enable;
}
@@ -388,6 +402,11 @@ RenderingServerDefault::RenderingServerDefault(bool p_create_thread) :
RendererSceneCull *sr = memnew(RendererSceneCull);
RSG::scene = sr;
RSG::rasterizer = RendererCompositor::create();
+ RSG::light_storage = RSG::rasterizer->get_light_storage();
+ RSG::material_storage = RSG::rasterizer->get_material_storage();
+ RSG::mesh_storage = RSG::rasterizer->get_mesh_storage();
+ RSG::particles_storage = RSG::rasterizer->get_particles_storage();
+ RSG::texture_storage = RSG::rasterizer->get_texture_storage();
RSG::storage = RSG::rasterizer->get_storage();
RSG::canvas_render = RSG::rasterizer->get_canvas();
sr->set_scene_render(RSG::rasterizer->get_scene());
diff --git a/servers/rendering/rendering_server_default.h b/servers/rendering/rendering_server_default.h
index b50631bb21..de4f8d9194 100644
--- a/servers/rendering/rendering_server_default.h
+++ b/servers/rendering/rendering_server_default.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -126,54 +126,53 @@ public:
#include "servers/server_wrap_mt_common.h"
-//from now on, calls forwarded to this singleton
-#define ServerName RendererStorage
-#define server_name RSG::storage
-
/* TEXTURE API */
-#define FUNCRIDTEX0(m_type) \
- virtual RID m_type##_create() override { \
- RID ret = RSG::storage->texture_allocate(); \
- if (Thread::get_caller_id() == server_thread || RSG::storage->can_create_resources_async()) { \
- RSG::storage->m_type##_initialize(ret); \
- } else { \
- command_queue.push(RSG::storage, &RendererStorage::m_type##_initialize, ret); \
- } \
- return ret; \
+#define ServerName RendererTextureStorage
+#define server_name RSG::texture_storage
+
+#define FUNCRIDTEX0(m_type) \
+ virtual RID m_type##_create() override { \
+ RID ret = RSG::texture_storage->texture_allocate(); \
+ if (Thread::get_caller_id() == server_thread || RSG::texture_storage->can_create_resources_async()) { \
+ RSG::texture_storage->m_type##_initialize(ret); \
+ } else { \
+ command_queue.push(RSG::texture_storage, &RendererTextureStorage::m_type##_initialize, ret); \
+ } \
+ return ret; \
}
-#define FUNCRIDTEX1(m_type, m_type1) \
- virtual RID m_type##_create(m_type1 p1) override { \
- RID ret = RSG::storage->texture_allocate(); \
- if (Thread::get_caller_id() == server_thread || RSG::storage->can_create_resources_async()) { \
- RSG::storage->m_type##_initialize(ret, p1); \
- } else { \
- command_queue.push(RSG::storage, &RendererStorage::m_type##_initialize, ret, p1); \
- } \
- return ret; \
+#define FUNCRIDTEX1(m_type, m_type1) \
+ virtual RID m_type##_create(m_type1 p1) override { \
+ RID ret = RSG::texture_storage->texture_allocate(); \
+ if (Thread::get_caller_id() == server_thread || RSG::texture_storage->can_create_resources_async()) { \
+ RSG::texture_storage->m_type##_initialize(ret, p1); \
+ } else { \
+ command_queue.push(RSG::texture_storage, &RendererTextureStorage::m_type##_initialize, ret, p1); \
+ } \
+ return ret; \
}
-#define FUNCRIDTEX2(m_type, m_type1, m_type2) \
- virtual RID m_type##_create(m_type1 p1, m_type2 p2) override { \
- RID ret = RSG::storage->texture_allocate(); \
- if (Thread::get_caller_id() == server_thread || RSG::storage->can_create_resources_async()) { \
- RSG::storage->m_type##_initialize(ret, p1, p2); \
- } else { \
- command_queue.push(RSG::storage, &RendererStorage::m_type##_initialize, ret, p1, p2); \
- } \
- return ret; \
+#define FUNCRIDTEX2(m_type, m_type1, m_type2) \
+ virtual RID m_type##_create(m_type1 p1, m_type2 p2) override { \
+ RID ret = RSG::texture_storage->texture_allocate(); \
+ if (Thread::get_caller_id() == server_thread || RSG::texture_storage->can_create_resources_async()) { \
+ RSG::texture_storage->m_type##_initialize(ret, p1, p2); \
+ } else { \
+ command_queue.push(RSG::texture_storage, &RendererTextureStorage::m_type##_initialize, ret, p1, p2); \
+ } \
+ return ret; \
}
-#define FUNCRIDTEX6(m_type, m_type1, m_type2, m_type3, m_type4, m_type5, m_type6) \
- virtual RID m_type##_create(m_type1 p1, m_type2 p2, m_type3 p3, m_type4 p4, m_type5 p5, m_type6 p6) override { \
- RID ret = RSG::storage->texture_allocate(); \
- if (Thread::get_caller_id() == server_thread || RSG::storage->can_create_resources_async()) { \
- RSG::storage->m_type##_initialize(ret, p1, p2, p3, p4, p5, p6); \
- } else { \
- command_queue.push(RSG::storage, &RendererStorage::m_type##_initialize, ret, p1, p2, p3, p4, p5, p6); \
- } \
- return ret; \
+#define FUNCRIDTEX6(m_type, m_type1, m_type2, m_type3, m_type4, m_type5, m_type6) \
+ virtual RID m_type##_create(m_type1 p1, m_type2 p2, m_type3 p3, m_type4 p4, m_type5 p5, m_type6 p6) override { \
+ RID ret = RSG::texture_storage->texture_allocate(); \
+ if (Thread::get_caller_id() == server_thread || RSG::texture_storage->can_create_resources_async()) { \
+ RSG::texture_storage->m_type##_initialize(ret, p1, p2, p3, p4, p5, p6); \
+ } else { \
+ command_queue.push(RSG::texture_storage, &RendererTextureStorage::m_type##_initialize, ret, p1, p2, p3, p4, p5, p6); \
+ } \
+ return ret; \
}
//these go pass-through, as they can be called from any thread
@@ -216,6 +215,12 @@ public:
/* SHADER API */
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererMaterialStorage
+#define server_name RSG::material_storage
+
FUNCRIDSPLIT(shader)
FUNC2(shader_set_code, RID, const String &)
@@ -243,24 +248,32 @@ public:
/* MESH API */
+//from now on, calls forwarded to this singleton
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererMeshStorage
+#define server_name RSG::mesh_storage
+
virtual RID mesh_create_from_surfaces(const Vector<SurfaceData> &p_surfaces, int p_blend_shape_count = 0) override {
- RID mesh = RSG::storage->mesh_allocate();
+ RID mesh = RSG::mesh_storage->mesh_allocate();
- if (Thread::get_caller_id() == server_thread || RSG::storage->can_create_resources_async()) {
+ // TODO once we have RSG::mesh_storage, add can_create_resources_async and call here instead of texture_storage!!
+
+ if (Thread::get_caller_id() == server_thread || RSG::texture_storage->can_create_resources_async()) {
if (Thread::get_caller_id() == server_thread) {
command_queue.flush_if_pending();
}
- RSG::storage->mesh_initialize(mesh);
- RSG::storage->mesh_set_blend_shape_count(mesh, p_blend_shape_count);
+ RSG::mesh_storage->mesh_initialize(mesh);
+ RSG::mesh_storage->mesh_set_blend_shape_count(mesh, p_blend_shape_count);
for (int i = 0; i < p_surfaces.size(); i++) {
- RSG::storage->mesh_add_surface(mesh, p_surfaces[i]);
+ RSG::mesh_storage->mesh_add_surface(mesh, p_surfaces[i]);
}
} else {
- command_queue.push(RSG::storage, &RendererStorage::mesh_initialize, mesh);
- command_queue.push(RSG::storage, &RendererStorage::mesh_set_blend_shape_count, mesh, p_blend_shape_count);
+ command_queue.push(RSG::mesh_storage, &RendererMeshStorage::mesh_initialize, mesh);
+ command_queue.push(RSG::mesh_storage, &RendererMeshStorage::mesh_set_blend_shape_count, mesh, p_blend_shape_count);
for (int i = 0; i < p_surfaces.size(); i++) {
- RSG::storage->mesh_add_surface(mesh, p_surfaces[i]);
- command_queue.push(RSG::storage, &RendererStorage::mesh_add_surface, mesh, p_surfaces[i]);
+ command_queue.push(RSG::mesh_storage, &RendererMeshStorage::mesh_add_surface, mesh, p_surfaces[i]);
}
}
@@ -335,6 +348,11 @@ public:
FUNC2(skeleton_set_base_transform_2d, RID, const Transform2D &)
/* Light API */
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererLightStorage
+#define server_name RSG::light_storage
FUNCRIDSPLIT(directional_light)
FUNCRIDSPLIT(omni_light)
@@ -343,10 +361,10 @@ public:
FUNC2(light_set_color, RID, const Color &)
FUNC3(light_set_param, RID, LightParam, float)
FUNC2(light_set_shadow, RID, bool)
- FUNC2(light_set_shadow_color, RID, const Color &)
FUNC2(light_set_projector, RID, RID)
FUNC2(light_set_negative, RID, bool)
FUNC2(light_set_cull_mask, RID, uint32_t)
+ FUNC5(light_set_distance_fade, RID, bool, float, float, float)
FUNC2(light_set_reverse_cull_face_mode, RID, bool)
FUNC2(light_set_bake_mode, RID, LightBakeMode)
FUNC2(light_set_max_sdfgi_cascade, RID, uint32_t)
@@ -355,7 +373,7 @@ public:
FUNC2(light_directional_set_shadow_mode, RID, LightDirectionalShadowMode)
FUNC2(light_directional_set_blend_splits, RID, bool)
- FUNC2(light_directional_set_sky_only, RID, bool)
+ FUNC2(light_directional_set_sky_mode, RID, LightDirectionalSkyMode)
/* PROBE API */
@@ -374,10 +392,30 @@ public:
FUNC2(reflection_probe_set_enable_shadows, RID, bool)
FUNC2(reflection_probe_set_cull_mask, RID, uint32_t)
FUNC2(reflection_probe_set_resolution, RID, int)
- FUNC2(reflection_probe_set_lod_threshold, RID, float)
+ FUNC2(reflection_probe_set_mesh_lod_threshold, RID, float)
+
+ /* LIGHTMAP */
+
+ FUNCRIDSPLIT(lightmap)
+
+ FUNC3(lightmap_set_textures, RID, RID, bool)
+ FUNC2(lightmap_set_probe_bounds, RID, const AABB &)
+ FUNC2(lightmap_set_probe_interior, RID, bool)
+ FUNC5(lightmap_set_probe_capture_data, RID, const PackedVector3Array &, const PackedColorArray &, const PackedInt32Array &, const PackedInt32Array &)
+ FUNC1RC(PackedVector3Array, lightmap_get_probe_capture_points, RID)
+ FUNC1RC(PackedColorArray, lightmap_get_probe_capture_sh, RID)
+ FUNC1RC(PackedInt32Array, lightmap_get_probe_capture_tetrahedra, RID)
+ FUNC1RC(PackedInt32Array, lightmap_get_probe_capture_bsp_tree, RID)
+ FUNC1(lightmap_set_probe_capture_update_speed, float)
/* DECAL API */
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererTextureStorage
+#define server_name RSG::texture_storage
+
FUNCRIDSPLIT(decal)
FUNC2(decal_set_extents, RID, const Vector3 &)
@@ -392,6 +430,13 @@ public:
/* BAKED LIGHT API */
+//from now on, calls forwarded to this singleton
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererStorage
+#define server_name RSG::storage
+
FUNCRIDSPLIT(voxel_gi)
FUNC8(voxel_gi_allocate_data, RID, const Transform3D &, const AABB &, const Vector3i &, const Vector<uint8_t> &, const Vector<uint8_t> &, const Vector<uint8_t> &, const Vector<int> &)
@@ -412,21 +457,13 @@ public:
FUNC2(voxel_gi_set_interior, RID, bool)
FUNC2(voxel_gi_set_use_two_bounces, RID, bool)
- /* LIGHTMAP */
-
- FUNCRIDSPLIT(lightmap)
+ /* PARTICLES */
- FUNC3(lightmap_set_textures, RID, RID, bool)
- FUNC2(lightmap_set_probe_bounds, RID, const AABB &)
- FUNC2(lightmap_set_probe_interior, RID, bool)
- FUNC5(lightmap_set_probe_capture_data, RID, const PackedVector3Array &, const PackedColorArray &, const PackedInt32Array &, const PackedInt32Array &)
- FUNC1RC(PackedVector3Array, lightmap_get_probe_capture_points, RID)
- FUNC1RC(PackedColorArray, lightmap_get_probe_capture_sh, RID)
- FUNC1RC(PackedInt32Array, lightmap_get_probe_capture_tetrahedra, RID)
- FUNC1RC(PackedInt32Array, lightmap_get_probe_capture_bsp_tree, RID)
- FUNC1(lightmap_set_probe_capture_update_speed, float)
+#undef ServerName
+#undef server_name
- /* PARTICLES */
+#define ServerName RendererParticlesStorage
+#define server_name RSG::particles_storage
FUNCRIDSPLIT(particles)
@@ -483,6 +520,12 @@ public:
/* FOG VOLUME */
+#undef ServerName
+#undef server_name
+
+#define ServerName RendererStorage
+#define server_name RSG::storage
+
FUNCRIDSPLIT(fog_volume)
FUNC2(fog_volume_set_shape, RID, FogVolumeShape)
@@ -575,7 +618,7 @@ public:
FUNC2(viewport_set_use_occlusion_culling, RID, bool)
FUNC1(viewport_set_occlusion_rays_per_thread, int)
FUNC1(viewport_set_occlusion_culling_build_quality, ViewportOcclusionCullingBuildQuality)
- FUNC2(viewport_set_lod_threshold, RID, float)
+ FUNC2(viewport_set_mesh_lod_threshold, RID, float)
FUNC3R(int, viewport_get_render_info, RID, ViewportRenderInfoType, ViewportRenderInfo)
FUNC2(viewport_set_debug_draw, RID, ViewportDebugDraw)
@@ -626,7 +669,10 @@ public:
FUNC10(environment_set_ssao, RID, bool, float, float, float, float, float, float, float, float)
FUNC6(environment_set_ssao_quality, EnvironmentSSAOQuality, bool, float, int, float, float)
- FUNC11(environment_set_glow, RID, bool, Vector<float>, float, float, float, float, EnvironmentGlowBlendMode, float, float, float)
+ FUNC6(environment_set_ssil, RID, bool, float, float, float, float)
+ FUNC6(environment_set_ssil_quality, EnvironmentSSILQuality, bool, float, int, float, float)
+
+ FUNC13(environment_set_glow, RID, bool, Vector<float>, float, float, float, float, EnvironmentGlowBlendMode, float, float, float, float, RID)
FUNC1(environment_glow_set_use_bicubic_upscale, bool)
FUNC1(environment_glow_set_use_high_quality, bool)
@@ -640,7 +686,7 @@ public:
FUNC2(environment_set_volumetric_fog_volume_size, int, int)
FUNC1(environment_set_volumetric_fog_filter_active, bool)
- FUNC11(environment_set_sdfgi, RID, bool, EnvironmentSDFGICascades, float, EnvironmentSDFGIYScale, bool, float, bool, float, float, float)
+ FUNC11(environment_set_sdfgi, RID, bool, int, float, EnvironmentSDFGIYScale, bool, float, bool, float, float, float)
FUNC1(environment_set_sdfgi_ray_count, EnvironmentSDFGIRayCount)
FUNC1(environment_set_sdfgi_frames_to_converge, EnvironmentSDFGIFramesToConverge)
FUNC1(environment_set_sdfgi_frames_to_update_light, EnvironmentSDFGIFramesToUpdateLight)
@@ -709,6 +755,7 @@ public:
FUNC3(instance_geometry_set_flag, RID, InstanceFlags, bool)
FUNC2(instance_geometry_set_cast_shadows_setting, RID, ShadowCastingSetting)
FUNC2(instance_geometry_set_material_override, RID, RID)
+ FUNC2(instance_geometry_set_material_overlay, RID, RID)
FUNC6(instance_geometry_set_visibility_range, RID, float, float, float, float, VisibilityRangeFadeMode)
FUNC4(instance_geometry_set_lightmap, RID, RID, const Rect2 &, int)
@@ -764,7 +811,7 @@ public:
FUNC2(canvas_item_set_draw_behind_parent, RID, bool)
- FUNC5(canvas_item_add_line, RID, const Point2 &, const Point2 &, const Color &, float)
+ FUNC6(canvas_item_add_line, RID, const Point2 &, const Point2 &, const Color &, float, bool)
FUNC5(canvas_item_add_polyline, RID, const Vector<Point2> &, const Vector<Color> &, float, bool)
FUNC4(canvas_item_add_multiline, RID, const Vector<Point2> &, const Vector<Color> &, float)
FUNC3(canvas_item_add_rect, RID, const Rect2 &, const Color &)
@@ -846,8 +893,8 @@ public:
#undef server_name
#undef ServerName
//from now on, calls forwarded to this singleton
-#define ServerName RendererStorage
-#define server_name RSG::storage
+#define ServerName RendererMaterialStorage
+#define server_name RSG::material_storage
FUNC3(global_variable_add, const StringName &, GlobalVariableType, const Variant &)
FUNC1(global_variable_remove, const StringName &)
@@ -891,6 +938,8 @@ public:
virtual uint64_t get_rendering_info(RenderingInfo p_info) override;
virtual String get_video_adapter_name() const override;
virtual String get_video_adapter_vendor() const override;
+ virtual RenderingDevice::DeviceType get_video_adapter_type() const override;
+ virtual String get_video_adapter_api_version() const override;
virtual void set_frame_profiling_enabled(bool p_enable) override;
virtual Vector<FrameProfileArea> get_frame_profile() override;
diff --git a/servers/rendering/rendering_server_globals.cpp b/servers/rendering/rendering_server_globals.cpp
index 2dda506bac..4d24dbf3b4 100644
--- a/servers/rendering/rendering_server_globals.cpp
+++ b/servers/rendering/rendering_server_globals.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -32,6 +32,11 @@
bool RenderingServerGlobals::threaded = false;
+RendererLightStorage *RenderingServerGlobals::light_storage = nullptr;
+RendererMaterialStorage *RenderingServerGlobals::material_storage = nullptr;
+RendererMeshStorage *RenderingServerGlobals::mesh_storage = nullptr;
+RendererParticlesStorage *RenderingServerGlobals::particles_storage = nullptr;
+RendererTextureStorage *RenderingServerGlobals::texture_storage = nullptr;
RendererStorage *RenderingServerGlobals::storage = nullptr;
RendererCanvasRender *RenderingServerGlobals::canvas_render = nullptr;
RendererCompositor *RenderingServerGlobals::rasterizer = nullptr;
diff --git a/servers/rendering/rendering_server_globals.h b/servers/rendering/rendering_server_globals.h
index 63755e6125..ce11fae9e8 100644
--- a/servers/rendering/rendering_server_globals.h
+++ b/servers/rendering/rendering_server_globals.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -34,6 +34,11 @@
#include "servers/rendering/renderer_canvas_cull.h"
#include "servers/rendering/renderer_canvas_render.h"
#include "servers/rendering/renderer_scene.h"
+#include "servers/rendering/storage/light_storage.h"
+#include "servers/rendering/storage/material_storage.h"
+#include "servers/rendering/storage/mesh_storage.h"
+#include "servers/rendering/storage/particles_storage.h"
+#include "servers/rendering/storage/texture_storage.h"
class RendererCanvasCull;
class RendererViewport;
@@ -43,6 +48,11 @@ class RenderingServerGlobals {
public:
static bool threaded;
+ static RendererLightStorage *light_storage;
+ static RendererMaterialStorage *material_storage;
+ static RendererMeshStorage *mesh_storage;
+ static RendererParticlesStorage *particles_storage;
+ static RendererTextureStorage *texture_storage;
static RendererStorage *storage;
static RendererCanvasRender *canvas_render;
static RendererCompositor *rasterizer;
diff --git a/servers/rendering/renderer_rd/shader_compiler_rd.cpp b/servers/rendering/shader_compiler.cpp
index 794c999d1d..812d636a0b 100644
--- a/servers/rendering/renderer_rd/shader_compiler_rd.cpp
+++ b/servers/rendering/shader_compiler.cpp
@@ -1,12 +1,12 @@
/*************************************************************************/
-/* shader_compiler_rd.cpp */
+/* shader_compiler.cpp */
/*************************************************************************/
/* This file is part of: */
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,11 +28,11 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-#include "shader_compiler_rd.h"
+#include "shader_compiler.h"
#include "core/config/project_settings.h"
#include "core/os/os.h"
-#include "renderer_storage_rd.h"
+#include "servers/rendering/shader_types.h"
#include "servers/rendering_server.h"
#define SL ShaderLanguage
@@ -54,81 +54,6 @@ static String _typestr(SL::DataType p_type) {
return type;
}
-static int _get_datatype_size(SL::DataType p_type) {
- switch (p_type) {
- case SL::TYPE_VOID:
- return 0;
- case SL::TYPE_BOOL:
- return 4;
- case SL::TYPE_BVEC2:
- return 8;
- case SL::TYPE_BVEC3:
- return 12;
- case SL::TYPE_BVEC4:
- return 16;
- case SL::TYPE_INT:
- return 4;
- case SL::TYPE_IVEC2:
- return 8;
- case SL::TYPE_IVEC3:
- return 12;
- case SL::TYPE_IVEC4:
- return 16;
- case SL::TYPE_UINT:
- return 4;
- case SL::TYPE_UVEC2:
- return 8;
- case SL::TYPE_UVEC3:
- return 12;
- case SL::TYPE_UVEC4:
- return 16;
- case SL::TYPE_FLOAT:
- return 4;
- case SL::TYPE_VEC2:
- return 8;
- case SL::TYPE_VEC3:
- return 12;
- case SL::TYPE_VEC4:
- return 16;
- case SL::TYPE_MAT2:
- return 32; // 4 * 4 + 4 * 4
- case SL::TYPE_MAT3:
- return 48; // 4 * 4 + 4 * 4 + 4 * 4
- case SL::TYPE_MAT4:
- return 64;
- case SL::TYPE_SAMPLER2D:
- return 16;
- case SL::TYPE_ISAMPLER2D:
- return 16;
- case SL::TYPE_USAMPLER2D:
- return 16;
- case SL::TYPE_SAMPLER2DARRAY:
- return 16;
- case SL::TYPE_ISAMPLER2DARRAY:
- return 16;
- case SL::TYPE_USAMPLER2DARRAY:
- return 16;
- case SL::TYPE_SAMPLER3D:
- return 16;
- case SL::TYPE_ISAMPLER3D:
- return 16;
- case SL::TYPE_USAMPLER3D:
- return 16;
- case SL::TYPE_SAMPLERCUBE:
- return 16;
- case SL::TYPE_SAMPLERCUBEARRAY:
- return 16;
- case SL::TYPE_STRUCT:
- return 0;
-
- case SL::TYPE_MAX: {
- ERR_FAIL_V(0);
- };
- }
-
- ERR_FAIL_V(0);
-}
-
static int _get_datatype_alignment(SL::DataType p_type) {
switch (p_type) {
case SL::TYPE_VOID:
@@ -257,7 +182,7 @@ static String _mkid(const String &p_id) {
static String f2sp0(float p_float) {
String num = rtoss(p_float);
- if (num.find(".") == -1 && num.find("e") == -1) {
+ if (!num.contains(".") && !num.contains("e")) {
num += ".0";
}
return num;
@@ -352,7 +277,7 @@ static String get_constant_text(SL::DataType p_type, const Vector<SL::ConstantNo
}
}
-String ShaderCompilerRD::_get_sampler_name(ShaderLanguage::TextureFilter p_filter, ShaderLanguage::TextureRepeat p_repeat) {
+String ShaderCompiler::_get_sampler_name(ShaderLanguage::TextureFilter p_filter, ShaderLanguage::TextureRepeat p_repeat) {
if (p_filter == ShaderLanguage::FILTER_DEFAULT) {
ERR_FAIL_COND_V(actions.default_filter == ShaderLanguage::FILTER_DEFAULT, String());
p_filter = actions.default_filter;
@@ -364,7 +289,7 @@ String ShaderCompilerRD::_get_sampler_name(ShaderLanguage::TextureFilter p_filte
return actions.sampler_array_name + "[" + itos(p_filter + (p_repeat == ShaderLanguage::REPEAT_ENABLE ? ShaderLanguage::FILTER_DEFAULT : 0)) + "]";
}
-void ShaderCompilerRD::_dump_function_deps(const SL::ShaderNode *p_node, const StringName &p_for_func, const Map<StringName, String> &p_func_code, String &r_to_add, Set<StringName> &added) {
+void ShaderCompiler::_dump_function_deps(const SL::ShaderNode *p_node, const StringName &p_for_func, const Map<StringName, String> &p_func_code, String &r_to_add, Set<StringName> &added) {
int fidx = -1;
for (int i = 0; i < p_node->functions.size(); i++) {
@@ -510,7 +435,7 @@ static String _get_global_variable_from_type_and_index(const String &p_buffer, c
}
}
-String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, GeneratedCode &r_gen_code, IdentifierActions &p_actions, const DefaultIdentifierActions &p_default_actions, bool p_assigning, bool p_use_scope) {
+String ShaderCompiler::_dump_node_code(const SL::Node *p_node, int p_level, GeneratedCode &r_gen_code, IdentifierActions &p_actions, const DefaultIdentifierActions &p_default_actions, bool p_assigning, bool p_use_scope) {
String code;
switch (p_node->type) {
@@ -658,12 +583,12 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
uniform_defines.write[uniform.order] = ucode;
if (is_buffer_global) {
//globals are indices into the global table
- uniform_sizes.write[uniform.order] = _get_datatype_size(ShaderLanguage::TYPE_UINT);
+ uniform_sizes.write[uniform.order] = ShaderLanguage::get_datatype_size(ShaderLanguage::TYPE_UINT);
uniform_alignments.write[uniform.order] = _get_datatype_alignment(ShaderLanguage::TYPE_UINT);
} else {
// The following code enforces a 16-byte alignment of uniform arrays.
if (uniform.array_size > 0) {
- int size = _get_datatype_size(uniform.type) * uniform.array_size;
+ int size = ShaderLanguage::get_datatype_size(uniform.type) * uniform.array_size;
int m = (16 * uniform.array_size);
if ((size % m) != 0) {
size += m - (size % m);
@@ -671,7 +596,7 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
uniform_sizes.write[uniform.order] = size;
uniform_alignments.write[uniform.order] = 16;
} else {
- uniform_sizes.write[uniform.order] = _get_datatype_size(uniform.type);
+ uniform_sizes.write[uniform.order] = ShaderLanguage::get_datatype_size(uniform.type);
uniform_alignments.write[uniform.order] = _get_datatype_alignment(uniform.type);
}
}
@@ -684,7 +609,6 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
r_gen_code.uniforms += uniform_defines[i];
}
-#if 1
// add up
int offset = 0;
for (int i = 0; i < uniform_sizes.size(); i++) {
@@ -704,41 +628,6 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
if (r_gen_code.uniform_total_size % 16 != 0) { //UBO sizes must be multiples of 16
r_gen_code.uniform_total_size += 16 - (r_gen_code.uniform_total_size % 16);
}
-#else
- // add up
- for (int i = 0; i < uniform_sizes.size(); i++) {
- if (i > 0) {
- int align = uniform_sizes[i - 1] % uniform_alignments[i];
- if (align != 0) {
- uniform_sizes[i - 1] += uniform_alignments[i] - align;
- }
-
- uniform_sizes[i] = uniform_sizes[i] + uniform_sizes[i - 1];
- }
- }
- //offset
- r_gen_code.uniform_offsets.resize(uniform_sizes.size());
- for (int i = 0; i < uniform_sizes.size(); i++) {
- if (i > 0)
- r_gen_code.uniform_offsets[i] = uniform_sizes[i - 1];
- else
- r_gen_code.uniform_offsets[i] = 0;
- }
- /*
- for(Map<StringName,SL::ShaderNode::Uniform>::Element *E=pnode->uniforms.front();E;E=E->next()) {
- if (SL::is_sampler_type(E->get().type)) {
- continue;
- }
-
- }
-
-*/
- if (uniform_sizes.size()) {
- r_gen_code.uniform_total_size = uniform_sizes[uniform_sizes.size() - 1];
- } else {
- r_gen_code.uniform_total_size = 0;
- }
-#endif
uint32_t index = p_default_actions.base_varying_index;
@@ -767,17 +656,36 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
vcode += _prestr(varying.precision, ShaderLanguage::is_float_type(varying.type));
vcode += _typestr(varying.type);
vcode += " " + _mkid(varying_name);
+ uint32_t inc = 1U;
+
if (varying.array_size > 0) {
+ inc = (uint32_t)varying.array_size;
+
vcode += "[";
vcode += itos(varying.array_size);
vcode += "]";
}
+
+ switch (varying.type) {
+ case SL::TYPE_MAT2:
+ inc *= 2U;
+ break;
+ case SL::TYPE_MAT3:
+ inc *= 3U;
+ break;
+ case SL::TYPE_MAT4:
+ inc *= 4U;
+ break;
+ default:
+ break;
+ }
+
vcode += ";\n";
r_gen_code.stage_globals[STAGE_VERTEX] += "layout(location=" + itos(index) + ") " + interp_mode + "out " + vcode;
r_gen_code.stage_globals[STAGE_FRAGMENT] += "layout(location=" + itos(index) + ") " + interp_mode + "in " + vcode;
- index++;
+ index += inc;
}
if (var_frag_to_light.size() > 0) {
@@ -869,6 +777,9 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
if (bnode->statements[i]->type == SL::Node::TYPE_CONTROL_FLOW || bnode->single_statement) {
code += scode; //use directly
+ if (bnode->use_comma_between_statements && i + 1 < bnode->statements.size()) {
+ code += ",";
+ }
} else {
code += _mktab(p_level) + scode + ";\n";
}
@@ -888,16 +799,49 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
} else {
declaration += _prestr(vdnode->precision) + _typestr(vdnode->datatype);
}
+ declaration += " ";
for (int i = 0; i < vdnode->declarations.size(); i++) {
+ bool is_array = vdnode->declarations[i].size > 0;
if (i > 0) {
declaration += ",";
- } else {
- declaration += " ";
}
declaration += _mkid(vdnode->declarations[i].name);
- if (vdnode->declarations[i].initializer) {
- declaration += "=";
- declaration += _dump_node_code(vdnode->declarations[i].initializer, p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ if (is_array) {
+ declaration += "[";
+ if (vdnode->declarations[i].size_expression != nullptr) {
+ declaration += _dump_node_code(vdnode->declarations[i].size_expression, p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ } else {
+ declaration += itos(vdnode->declarations[i].size);
+ }
+ declaration += "]";
+ }
+
+ if (!is_array || vdnode->declarations[i].single_expression) {
+ if (!vdnode->declarations[i].initializer.is_empty()) {
+ declaration += "=";
+ declaration += _dump_node_code(vdnode->declarations[i].initializer[0], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ }
+ } else {
+ int size = vdnode->declarations[i].initializer.size();
+ if (size > 0) {
+ declaration += "=";
+ if (vdnode->datatype == SL::TYPE_STRUCT) {
+ declaration += _mkid(vdnode->struct_name);
+ } else {
+ declaration += _typestr(vdnode->datatype);
+ }
+ declaration += "[";
+ declaration += itos(size);
+ declaration += "]";
+ declaration += "(";
+ for (int j = 0; j < size; j++) {
+ if (j > 0) {
+ declaration += ",";
+ }
+ declaration += _dump_node_code(vdnode->declarations[i].initializer[j], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ }
+ declaration += ")";
+ }
}
}
@@ -999,58 +943,6 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
}
code += ")";
} break;
- case SL::Node::TYPE_ARRAY_DECLARATION: {
- SL::ArrayDeclarationNode *adnode = (SL::ArrayDeclarationNode *)p_node;
- String declaration;
- declaration += _constr(adnode->is_const);
- if (adnode->datatype == SL::TYPE_STRUCT) {
- declaration += _mkid(adnode->struct_name);
- } else {
- declaration += _prestr(adnode->precision) + _typestr(adnode->datatype);
- }
- for (int i = 0; i < adnode->declarations.size(); i++) {
- if (i > 0) {
- declaration += ",";
- } else {
- declaration += " ";
- }
- declaration += _mkid(adnode->declarations[i].name);
- declaration += "[";
- if (adnode->size_expression != nullptr) {
- declaration += _dump_node_code(adnode->size_expression, p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
- } else {
- declaration += itos(adnode->declarations[i].size);
- }
- declaration += "]";
- if (adnode->declarations[i].single_expression) {
- declaration += "=";
- declaration += _dump_node_code(adnode->declarations[i].initializer[0], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
- } else {
- int sz = adnode->declarations[i].initializer.size();
- if (sz > 0) {
- declaration += "=";
- if (adnode->datatype == SL::TYPE_STRUCT) {
- declaration += _mkid(adnode->struct_name);
- } else {
- declaration += _typestr(adnode->datatype);
- }
- declaration += "[";
- declaration += itos(sz);
- declaration += "]";
- declaration += "(";
- for (int j = 0; j < sz; j++) {
- declaration += _dump_node_code(adnode->declarations[i].initializer[j], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
- if (j != sz - 1) {
- declaration += ", ";
- }
- }
- declaration += ")";
- }
- }
- }
-
- code += declaration;
- } break;
case SL::Node::TYPE_ARRAY: {
SL::ArrayNode *anode = (SL::ArrayNode *)p_node;
bool use_fragment_varying = false;
@@ -1362,10 +1254,10 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
code += _dump_node_code(cfnode->blocks[0], p_level + 1, r_gen_code, p_actions, p_default_actions, p_assigning);
} else if (cfnode->flow_op == SL::FLOW_OP_FOR) {
String left = _dump_node_code(cfnode->blocks[0], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
- String middle = _dump_node_code(cfnode->expressions[0], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
- String right = _dump_node_code(cfnode->expressions[1], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ String middle = _dump_node_code(cfnode->blocks[1], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
+ String right = _dump_node_code(cfnode->blocks[2], p_level, r_gen_code, p_actions, p_default_actions, p_assigning);
code += _mktab(p_level) + "for (" + left + ";" + middle + ";" + right + ")\n";
- code += _dump_node_code(cfnode->blocks[1], p_level + 1, r_gen_code, p_actions, p_default_actions, p_assigning);
+ code += _dump_node_code(cfnode->blocks[3], p_level + 1, r_gen_code, p_actions, p_default_actions, p_assigning);
} else if (cfnode->flow_op == SL::FLOW_OP_RETURN) {
if (cfnode->expressions.size()) {
@@ -1407,12 +1299,12 @@ String ShaderCompilerRD::_dump_node_code(const SL::Node *p_node, int p_level, Ge
return code;
}
-ShaderLanguage::DataType ShaderCompilerRD::_get_variable_type(const StringName &p_type) {
- RS::GlobalVariableType gvt = ((RendererStorageRD *)(RendererStorage::base_singleton))->global_variable_get_type_internal(p_type);
- return RS::global_variable_type_get_shader_datatype(gvt);
+ShaderLanguage::DataType ShaderCompiler::_get_variable_type(const StringName &p_type) {
+ RS::GlobalVariableType gvt = RS::get_singleton()->global_variable_get_type(p_type);
+ return (ShaderLanguage::DataType)RS::global_variable_type_get_shader_datatype(gvt);
}
-Error ShaderCompilerRD::compile(RS::ShaderMode p_mode, const String &p_code, IdentifierActions *p_actions, const String &p_path, GeneratedCode &r_gen_code) {
+Error ShaderCompiler::compile(RS::ShaderMode p_mode, const String &p_code, IdentifierActions *p_actions, const String &p_path, GeneratedCode &r_gen_code) {
SL::ShaderCompileInfo info;
info.functions = ShaderTypes::get_singleton()->get_functions(p_mode);
info.render_modes = ShaderTypes::get_singleton()->get_modes(p_mode);
@@ -1458,7 +1350,7 @@ Error ShaderCompilerRD::compile(RS::ShaderMode p_mode, const String &p_code, Ide
return OK;
}
-void ShaderCompilerRD::initialize(DefaultIdentifierActions p_actions) {
+void ShaderCompiler::initialize(DefaultIdentifierActions p_actions) {
actions = p_actions;
time_name = "TIME";
@@ -1480,149 +1372,5 @@ void ShaderCompilerRD::initialize(DefaultIdentifierActions p_actions) {
texture_functions.insert("texelFetch");
}
-ShaderCompilerRD::ShaderCompilerRD() {
-#if 0
-
- /** SPATIAL SHADER **/
-
- actions[RS::SHADER_SPATIAL].renames["WORLD_MATRIX"] = "world_transform";
- actions[RS::SHADER_SPATIAL].renames["INV_CAMERA_MATRIX"] = "camera_inverse_matrix";
- actions[RS::SHADER_SPATIAL].renames["CAMERA_MATRIX"] = "camera_matrix";
- actions[RS::SHADER_SPATIAL].renames["PROJECTION_MATRIX"] = "projection_matrix";
- actions[RS::SHADER_SPATIAL].renames["INV_PROJECTION_MATRIX"] = "inv_projection_matrix";
- actions[RS::SHADER_SPATIAL].renames["MODELVIEW_MATRIX"] = "modelview";
-
- actions[RS::SHADER_SPATIAL].renames["VERTEX"] = "vertex.xyz";
- actions[RS::SHADER_SPATIAL].renames["NORMAL"] = "normal";
- actions[RS::SHADER_SPATIAL].renames["TANGENT"] = "tangent";
- actions[RS::SHADER_SPATIAL].renames["BINORMAL"] = "binormal";
- actions[RS::SHADER_SPATIAL].renames["POSITION"] = "position";
- actions[RS::SHADER_SPATIAL].renames["UV"] = "uv_interp";
- actions[RS::SHADER_SPATIAL].renames["UV2"] = "uv2_interp";
- actions[RS::SHADER_SPATIAL].renames["COLOR"] = "color_interp";
- actions[RS::SHADER_SPATIAL].renames["POINT_SIZE"] = "gl_PointSize";
- actions[RS::SHADER_SPATIAL].renames["INSTANCE_ID"] = "gl_InstanceID";
-
- //builtins
-
- actions[RS::SHADER_SPATIAL].renames["TIME"] = "time";
- actions[RS::SHADER_SPATIAL].renames["VIEWPORT_SIZE"] = "viewport_size";
-
- actions[RS::SHADER_SPATIAL].renames["FRAGCOORD"] = "gl_FragCoord";
- actions[RS::SHADER_SPATIAL].renames["FRONT_FACING"] = "gl_FrontFacing";
- actions[RS::SHADER_SPATIAL].renames["NORMAL_MAP"] = "normal_map";
- actions[RS::SHADER_SPATIAL].renames["NORMAL_MAP_DEPTH"] = "normal_map_depth";
- actions[RS::SHADER_SPATIAL].renames["ALBEDO"] = "albedo";
- actions[RS::SHADER_SPATIAL].renames["ALPHA"] = "alpha";
- actions[RS::SHADER_SPATIAL].renames["METALLIC"] = "metallic";
- actions[RS::SHADER_SPATIAL].renames["SPECULAR"] = "specular";
- actions[RS::SHADER_SPATIAL].renames["ROUGHNESS"] = "roughness";
- actions[RS::SHADER_SPATIAL].renames["RIM"] = "rim";
- actions[RS::SHADER_SPATIAL].renames["RIM_TINT"] = "rim_tint";
- actions[RS::SHADER_SPATIAL].renames["CLEARCOAT"] = "clearcoat";
- actions[RS::SHADER_SPATIAL].renames["CLEARCOAT_GLOSS"] = "clearcoat_gloss";
- actions[RS::SHADER_SPATIAL].renames["ANISOTROPY"] = "anisotropy";
- actions[RS::SHADER_SPATIAL].renames["ANISOTROPY_FLOW"] = "anisotropy_flow";
- actions[RS::SHADER_SPATIAL].renames["SSS_STRENGTH"] = "sss_strength";
- actions[RS::SHADER_SPATIAL].renames["TRANSMISSION"] = "transmission";
- actions[RS::SHADER_SPATIAL].renames["AO"] = "ao";
- actions[RS::SHADER_SPATIAL].renames["AO_LIGHT_AFFECT"] = "ao_light_affect";
- actions[RS::SHADER_SPATIAL].renames["EMISSION"] = "emission";
- actions[RS::SHADER_SPATIAL].renames["POINT_COORD"] = "gl_PointCoord";
- actions[RS::SHADER_SPATIAL].renames["INSTANCE_CUSTOM"] = "instance_custom";
- actions[RS::SHADER_SPATIAL].renames["SCREEN_UV"] = "screen_uv";
- actions[RS::SHADER_SPATIAL].renames["SCREEN_TEXTURE"] = "screen_texture";
- actions[RS::SHADER_SPATIAL].renames["DEPTH_TEXTURE"] = "depth_buffer";
- actions[RS::SHADER_SPATIAL].renames["DEPTH"] = "gl_FragDepth";
- actions[RS::SHADER_SPATIAL].renames["ALPHA_SCISSOR"] = "alpha_scissor";
- actions[RS::SHADER_SPATIAL].renames["OUTPUT_IS_SRGB"] = "SHADER_IS_SRGB";
-
- //for light
- actions[RS::SHADER_SPATIAL].renames["VIEW"] = "view";
- actions[RS::SHADER_SPATIAL].renames["LIGHT_COLOR"] = "light_color";
- actions[RS::SHADER_SPATIAL].renames["LIGHT"] = "light";
- actions[RS::SHADER_SPATIAL].renames["ATTENUATION"] = "attenuation";
- actions[RS::SHADER_SPATIAL].renames["DIFFUSE_LIGHT"] = "diffuse_light";
- actions[RS::SHADER_SPATIAL].renames["SPECULAR_LIGHT"] = "specular_light";
-
- actions[RS::SHADER_SPATIAL].usage_defines["TANGENT"] = "#define ENABLE_TANGENT_INTERP\n";
- actions[RS::SHADER_SPATIAL].usage_defines["BINORMAL"] = "@TANGENT";
- actions[RS::SHADER_SPATIAL].usage_defines["RIM"] = "#define LIGHT_USE_RIM\n";
- actions[RS::SHADER_SPATIAL].usage_defines["RIM_TINT"] = "@RIM";
- actions[RS::SHADER_SPATIAL].usage_defines["CLEARCOAT"] = "#define LIGHT_USE_CLEARCOAT\n";
- actions[RS::SHADER_SPATIAL].usage_defines["CLEARCOAT_GLOSS"] = "@CLEARCOAT";
- actions[RS::SHADER_SPATIAL].usage_defines["ANISOTROPY"] = "#define LIGHT_USE_ANISOTROPY\n";
- actions[RS::SHADER_SPATIAL].usage_defines["ANISOTROPY_FLOW"] = "@ANISOTROPY";
- actions[RS::SHADER_SPATIAL].usage_defines["AO"] = "#define ENABLE_AO\n";
- actions[RS::SHADER_SPATIAL].usage_defines["AO_LIGHT_AFFECT"] = "#define ENABLE_AO\n";
- actions[RS::SHADER_SPATIAL].usage_defines["UV"] = "#define ENABLE_UV_INTERP\n";
- actions[RS::SHADER_SPATIAL].usage_defines["UV2"] = "#define ENABLE_UV2_INTERP\n";
- actions[RS::SHADER_SPATIAL].usage_defines["NORMAL_MAP"] = "#define ENABLE_NORMAL_MAP\n";
- actions[RS::SHADER_SPATIAL].usage_defines["NORMAL_MAP_DEPTH"] = "@NORMAL_MAP";
- actions[RS::SHADER_SPATIAL].usage_defines["COLOR"] = "#define ENABLE_COLOR_INTERP\n";
- actions[RS::SHADER_SPATIAL].usage_defines["INSTANCE_CUSTOM"] = "#define ENABLE_INSTANCE_CUSTOM\n";
- actions[RS::SHADER_SPATIAL].usage_defines["ALPHA_SCISSOR"] = "#define ALPHA_SCISSOR_USED\n";
- actions[RS::SHADER_SPATIAL].usage_defines["POSITION"] = "#define OVERRIDE_POSITION\n";
-
- actions[RS::SHADER_SPATIAL].usage_defines["SSS_STRENGTH"] = "#define ENABLE_SSS\n";
- actions[RS::SHADER_SPATIAL].usage_defines["TRANSMISSION"] = "#define TRANSMISSION_USED\n";
- actions[RS::SHADER_SPATIAL].usage_defines["SCREEN_TEXTURE"] = "#define SCREEN_TEXTURE_USED\n";
- actions[RS::SHADER_SPATIAL].usage_defines["SCREEN_UV"] = "#define SCREEN_UV_USED\n";
-
- actions[RS::SHADER_SPATIAL].usage_defines["DIFFUSE_LIGHT"] = "#define USE_LIGHT_SHADER_CODE\n";
- actions[RS::SHADER_SPATIAL].usage_defines["SPECULAR_LIGHT"] = "#define USE_LIGHT_SHADER_CODE\n";
-
- actions[RS::SHADER_SPATIAL].render_mode_defines["skip_vertex_transform"] = "#define SKIP_TRANSFORM_USED\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["world_vertex_coords"] = "#define VERTEX_WORLD_COORDS_USED\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["ensure_correct_normals"] = "#define ENSURE_CORRECT_NORMALS\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["cull_front"] = "#define DO_SIDE_CHECK\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["cull_disabled"] = "#define DO_SIDE_CHECK\n";
-
- bool force_lambert = GLOBAL_GET("rendering/shading/overrides/force_lambert_over_burley");
-
- if (!force_lambert) {
- actions[RS::SHADER_SPATIAL].render_mode_defines["diffuse_burley"] = "#define DIFFUSE_BURLEY\n";
- }
-
- actions[RS::SHADER_SPATIAL].render_mode_defines["diffuse_lambert_wrap"] = "#define DIFFUSE_LAMBERT_WRAP\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["diffuse_toon"] = "#define DIFFUSE_TOON\n";
-
- bool force_blinn = GLOBAL_GET("rendering/shading/overrides/force_blinn_over_ggx");
-
- if (!force_blinn) {
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_SCHLICK_GGX\n";
- } else {
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_schlick_ggx"] = "#define SPECULAR_BLINN\n";
- }
-
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_blinn"] = "#define SPECULAR_BLINN\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_phong"] = "#define SPECULAR_PHONG\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_toon"] = "#define SPECULAR_TOON\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["specular_disabled"] = "#define SPECULAR_DISABLED\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["shadows_disabled"] = "#define SHADOWS_DISABLED\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["ambient_light_disabled"] = "#define AMBIENT_LIGHT_DISABLED\n";
- actions[RS::SHADER_SPATIAL].render_mode_defines["shadow_to_opacity"] = "#define USE_SHADOW_TO_OPACITY\n";
-
- /* PARTICLES SHADER */
-
- actions[RS::SHADER_PARTICLES].renames["COLOR"] = "out_color";
- actions[RS::SHADER_PARTICLES].renames["VELOCITY"] = "out_velocity_active.xyz";
- actions[RS::SHADER_PARTICLES].renames["MASS"] = "mass";
- actions[RS::SHADER_PARTICLES].renames["ACTIVE"] = "shader_active";
- actions[RS::SHADER_PARTICLES].renames["RESTART"] = "restart";
- actions[RS::SHADER_PARTICLES].renames["CUSTOM"] = "out_custom";
- actions[RS::SHADER_PARTICLES].renames["TRANSFORM"] = "xform";
- actions[RS::SHADER_PARTICLES].renames["TIME"] = "time";
- actions[RS::SHADER_PARTICLES].renames["LIFETIME"] = "lifetime";
- actions[RS::SHADER_PARTICLES].renames["DELTA"] = "local_delta";
- actions[RS::SHADER_PARTICLES].renames["NUMBER"] = "particle_number";
- actions[RS::SHADER_PARTICLES].renames["INDEX"] = "index";
- actions[RS::SHADER_PARTICLES].renames["GRAVITY"] = "current_gravity";
- actions[RS::SHADER_PARTICLES].renames["EMISSION_TRANSFORM"] = "emission_transform";
- actions[RS::SHADER_PARTICLES].renames["RANDOM_SEED"] = "random_seed";
-
- actions[RS::SHADER_PARTICLES].render_mode_defines["disable_force"] = "#define DISABLE_FORCE\n";
- actions[RS::SHADER_PARTICLES].render_mode_defines["disable_velocity"] = "#define DISABLE_VELOCITY\n";
- actions[RS::SHADER_PARTICLES].render_mode_defines["keep_data"] = "#define ENABLE_KEEP_DATA\n";
-#endif
+ShaderCompiler::ShaderCompiler() {
}
diff --git a/servers/rendering/renderer_rd/shader_compiler_rd.h b/servers/rendering/shader_compiler.h
index 2ab689c27c..347ecf2988 100644
--- a/servers/rendering/renderer_rd/shader_compiler_rd.h
+++ b/servers/rendering/shader_compiler.h
@@ -1,12 +1,12 @@
/*************************************************************************/
-/* shader_compiler_rd.h */
+/* shader_compiler.h */
/*************************************************************************/
/* This file is part of: */
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -28,15 +28,14 @@
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
-#ifndef SHADER_COMPILER_RD_H
-#define SHADER_COMPILER_RD_H
+#ifndef SHADER_COMPILER_H
+#define SHADER_COMPILER_H
#include "core/templates/pair.h"
#include "servers/rendering/shader_language.h"
-#include "servers/rendering/shader_types.h"
#include "servers/rendering_server.h"
-class ShaderCompilerRD {
+class ShaderCompiler {
public:
enum Stage {
STAGE_VERTEX,
@@ -107,8 +106,8 @@ private:
void _dump_function_deps(const ShaderLanguage::ShaderNode *p_node, const StringName &p_for_func, const Map<StringName, String> &p_func_code, String &r_to_add, Set<StringName> &added);
String _dump_node_code(const ShaderLanguage::Node *p_node, int p_level, GeneratedCode &r_gen_code, IdentifierActions &p_actions, const DefaultIdentifierActions &p_default_actions, bool p_assigning, bool p_scope = true);
- const ShaderLanguage::ShaderNode *shader;
- const ShaderLanguage::FunctionNode *function;
+ const ShaderLanguage::ShaderNode *shader = nullptr;
+ const ShaderLanguage::FunctionNode *function = nullptr;
StringName current_func_name;
StringName time_name;
Set<StringName> texture_functions;
@@ -127,7 +126,7 @@ public:
Error compile(RS::ShaderMode p_mode, const String &p_code, IdentifierActions *p_actions, const String &p_path, GeneratedCode &r_gen_code);
void initialize(DefaultIdentifierActions p_actions);
- ShaderCompilerRD();
+ ShaderCompiler();
};
-#endif // SHADERCOMPILERRD_H
+#endif // SHADER_COMPILER_H
diff --git a/servers/rendering/shader_language.cpp b/servers/rendering/shader_language.cpp
index 33f4999cdf..6f70a55948 100644
--- a/servers/rendering/shader_language.cpp
+++ b/servers/rendering/shader_language.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -29,24 +29,13 @@
/*************************************************************************/
#include "shader_language.h"
+
#include "core/os/os.h"
#include "core/string/print_string.h"
#include "servers/rendering_server.h"
#define HAS_WARNING(flag) (warning_flags & flag)
-static bool _is_text_char(char32_t c) {
- return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') || (c >= '0' && c <= '9') || c == '_';
-}
-
-static bool _is_number(char32_t c) {
- return (c >= '0' && c <= '9');
-}
-
-static bool _is_hex(char32_t c) {
- return (c >= '0' && c <= '9') || (c >= 'a' && c <= 'f') || (c >= 'A' && c <= 'F');
-}
-
String ShaderLanguage::get_operator_text(Operator p_op) {
static const char *op_names[OP_MAX] = { "==",
"!=",
@@ -248,92 +237,141 @@ ShaderLanguage::Token ShaderLanguage::_make_token(TokenType p_type, const String
return tk;
}
+enum ContextFlag : uint32_t {
+ CF_UNSPECIFIED = 0U,
+ CF_BLOCK = 1U, // "void test() { <x> }"
+ CF_FUNC_DECL_PARAM_SPEC = 2U, // "void test(<x> int param) {}"
+ CF_FUNC_DECL_PARAM_TYPE = 4U, // "void test(<x> param) {}"
+ CF_IF_DECL = 8U, // "if(<x>) {}"
+ CF_BOOLEAN = 16U, // "bool t = <x>;"
+ CF_GLOBAL_SPACE = 32U, // "struct", "const", "void" etc.
+ CF_DATATYPE = 64U, // "<x> value;"
+ CF_UNIFORM_TYPE = 128U, // "uniform <x> myUniform;"
+ CF_VARYING_TYPE = 256U, // "varying <x> myVarying;"
+ CF_PRECISION_MODIFIER = 512U, // "<x> vec4 a = vec4(0.0, 1.0, 2.0, 3.0);"
+ CF_INTERPOLATION_QUALIFIER = 1024U, // "varying <x> vec3 myColor;"
+ CF_UNIFORM_KEYWORD = 2048U, // "uniform"
+ CF_CONST_KEYWORD = 4096U, // "const"
+ CF_UNIFORM_QUALIFIER = 8192U, // "<x> uniform float t;"
+};
+
+const uint32_t KCF_DATATYPE = CF_BLOCK | CF_GLOBAL_SPACE | CF_DATATYPE | CF_FUNC_DECL_PARAM_TYPE | CF_UNIFORM_TYPE;
+const uint32_t KCF_SAMPLER_DATATYPE = CF_FUNC_DECL_PARAM_TYPE | CF_UNIFORM_TYPE;
+
const ShaderLanguage::KeyWord ShaderLanguage::keyword_list[] = {
- { TK_TRUE, "true" },
- { TK_FALSE, "false" },
- { TK_TYPE_VOID, "void" },
- { TK_TYPE_BOOL, "bool" },
- { TK_TYPE_BVEC2, "bvec2" },
- { TK_TYPE_BVEC3, "bvec3" },
- { TK_TYPE_BVEC4, "bvec4" },
- { TK_TYPE_INT, "int" },
- { TK_TYPE_IVEC2, "ivec2" },
- { TK_TYPE_IVEC3, "ivec3" },
- { TK_TYPE_IVEC4, "ivec4" },
- { TK_TYPE_UINT, "uint" },
- { TK_TYPE_UVEC2, "uvec2" },
- { TK_TYPE_UVEC3, "uvec3" },
- { TK_TYPE_UVEC4, "uvec4" },
- { TK_TYPE_FLOAT, "float" },
- { TK_TYPE_VEC2, "vec2" },
- { TK_TYPE_VEC3, "vec3" },
- { TK_TYPE_VEC4, "vec4" },
- { TK_TYPE_MAT2, "mat2" },
- { TK_TYPE_MAT3, "mat3" },
- { TK_TYPE_MAT4, "mat4" },
- { TK_TYPE_SAMPLER2D, "sampler2D" },
- { TK_TYPE_ISAMPLER2D, "isampler2D" },
- { TK_TYPE_USAMPLER2D, "usampler2D" },
- { TK_TYPE_SAMPLER2DARRAY, "sampler2DArray" },
- { TK_TYPE_ISAMPLER2DARRAY, "isampler2DArray" },
- { TK_TYPE_USAMPLER2DARRAY, "usampler2DArray" },
- { TK_TYPE_SAMPLER3D, "sampler3D" },
- { TK_TYPE_ISAMPLER3D, "isampler3D" },
- { TK_TYPE_USAMPLER3D, "usampler3D" },
- { TK_TYPE_SAMPLERCUBE, "samplerCube" },
- { TK_TYPE_SAMPLERCUBEARRAY, "samplerCubeArray" },
- { TK_INTERPOLATION_FLAT, "flat" },
- { TK_INTERPOLATION_SMOOTH, "smooth" },
- { TK_CONST, "const" },
- { TK_STRUCT, "struct" },
- { TK_PRECISION_LOW, "lowp" },
- { TK_PRECISION_MID, "mediump" },
- { TK_PRECISION_HIGH, "highp" },
- { TK_CF_IF, "if" },
- { TK_CF_ELSE, "else" },
- { TK_CF_FOR, "for" },
- { TK_CF_WHILE, "while" },
- { TK_CF_DO, "do" },
- { TK_CF_SWITCH, "switch" },
- { TK_CF_CASE, "case" },
- { TK_CF_DEFAULT, "default" },
- { TK_CF_BREAK, "break" },
- { TK_CF_CONTINUE, "continue" },
- { TK_CF_RETURN, "return" },
- { TK_CF_DISCARD, "discard" },
- { TK_UNIFORM, "uniform" },
- { TK_INSTANCE, "instance" },
- { TK_GLOBAL, "global" },
- { TK_VARYING, "varying" },
- { TK_ARG_IN, "in" },
- { TK_ARG_OUT, "out" },
- { TK_ARG_INOUT, "inout" },
- { TK_RENDER_MODE, "render_mode" },
- { TK_HINT_WHITE_TEXTURE, "hint_white" },
- { TK_HINT_BLACK_TEXTURE, "hint_black" },
- { TK_HINT_NORMAL_TEXTURE, "hint_normal" },
- { TK_HINT_ROUGHNESS_NORMAL_TEXTURE, "hint_roughness_normal" },
- { TK_HINT_ROUGHNESS_R, "hint_roughness_r" },
- { TK_HINT_ROUGHNESS_G, "hint_roughness_g" },
- { TK_HINT_ROUGHNESS_B, "hint_roughness_b" },
- { TK_HINT_ROUGHNESS_A, "hint_roughness_a" },
- { TK_HINT_ROUGHNESS_GRAY, "hint_roughness_gray" },
- { TK_HINT_ANISOTROPY_TEXTURE, "hint_anisotropy" },
- { TK_HINT_ALBEDO_TEXTURE, "hint_albedo" },
- { TK_HINT_BLACK_ALBEDO_TEXTURE, "hint_black_albedo" },
- { TK_HINT_COLOR, "hint_color" },
- { TK_HINT_RANGE, "hint_range" },
- { TK_HINT_INSTANCE_INDEX, "instance_index" },
- { TK_FILTER_NEAREST, "filter_nearest" },
- { TK_FILTER_LINEAR, "filter_linear" },
- { TK_FILTER_NEAREST_MIPMAP, "filter_nearest_mipmap" },
- { TK_FILTER_LINEAR_MIPMAP, "filter_linear_mipmap" },
- { TK_FILTER_NEAREST_MIPMAP_ANISOTROPIC, "filter_nearest_mipmap_anisotropic" },
- { TK_FILTER_LINEAR_MIPMAP_ANISOTROPIC, "filter_linear_mipmap_anisotropic" },
- { TK_REPEAT_ENABLE, "repeat_enable" },
- { TK_REPEAT_DISABLE, "repeat_disable" },
- { TK_SHADER_TYPE, "shader_type" },
- { TK_ERROR, nullptr }
+ { TK_TRUE, "true", CF_BLOCK | CF_IF_DECL | CF_BOOLEAN, {}, {} },
+ { TK_FALSE, "false", CF_BLOCK | CF_IF_DECL | CF_BOOLEAN, {}, {} },
+
+ // data types
+
+ { TK_TYPE_VOID, "void", CF_GLOBAL_SPACE, {}, {} },
+ { TK_TYPE_BOOL, "bool", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_BVEC2, "bvec2", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_BVEC3, "bvec3", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_BVEC4, "bvec4", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_INT, "int", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_IVEC2, "ivec2", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_IVEC3, "ivec3", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_IVEC4, "ivec4", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_UINT, "uint", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_UVEC2, "uvec2", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_UVEC3, "uvec3", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_UVEC4, "uvec4", KCF_DATATYPE, {}, {} },
+ { TK_TYPE_FLOAT, "float", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_VEC2, "vec2", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_VEC3, "vec3", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_VEC4, "vec4", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_MAT2, "mat2", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_MAT3, "mat3", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_MAT4, "mat4", KCF_DATATYPE | CF_VARYING_TYPE, {}, {} },
+ { TK_TYPE_SAMPLER2D, "sampler2D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_ISAMPLER2D, "isampler2D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_USAMPLER2D, "usampler2D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_SAMPLER2DARRAY, "sampler2DArray", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_ISAMPLER2DARRAY, "isampler2DArray", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_USAMPLER2DARRAY, "usampler2DArray", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_SAMPLER3D, "sampler3D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_ISAMPLER3D, "isampler3D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_USAMPLER3D, "usampler3D", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_SAMPLERCUBE, "samplerCube", KCF_SAMPLER_DATATYPE, {}, {} },
+ { TK_TYPE_SAMPLERCUBEARRAY, "samplerCubeArray", KCF_SAMPLER_DATATYPE, {}, {} },
+
+ // interpolation qualifiers
+
+ { TK_INTERPOLATION_FLAT, "flat", CF_INTERPOLATION_QUALIFIER, {}, {} },
+ { TK_INTERPOLATION_SMOOTH, "smooth", CF_INTERPOLATION_QUALIFIER, {}, {} },
+
+ // precision modifiers
+
+ { TK_PRECISION_LOW, "lowp", CF_BLOCK | CF_PRECISION_MODIFIER, {}, {} },
+ { TK_PRECISION_MID, "mediump", CF_BLOCK | CF_PRECISION_MODIFIER, {}, {} },
+ { TK_PRECISION_HIGH, "highp", CF_BLOCK | CF_PRECISION_MODIFIER, {}, {} },
+
+ // global space keywords
+
+ { TK_UNIFORM, "uniform", CF_GLOBAL_SPACE | CF_UNIFORM_KEYWORD, {}, {} },
+ { TK_VARYING, "varying", CF_GLOBAL_SPACE, { "particles", "sky", "fog" }, {} },
+ { TK_CONST, "const", CF_BLOCK | CF_GLOBAL_SPACE | CF_CONST_KEYWORD, {}, {} },
+ { TK_STRUCT, "struct", CF_GLOBAL_SPACE, {}, {} },
+ { TK_SHADER_TYPE, "shader_type", CF_GLOBAL_SPACE, {}, {} },
+ { TK_RENDER_MODE, "render_mode", CF_GLOBAL_SPACE, {}, {} },
+
+ // uniform qualifiers
+
+ { TK_INSTANCE, "instance", CF_GLOBAL_SPACE | CF_UNIFORM_QUALIFIER, {}, {} },
+ { TK_GLOBAL, "global", CF_GLOBAL_SPACE | CF_UNIFORM_QUALIFIER, {}, {} },
+
+ // block keywords
+
+ { TK_CF_IF, "if", CF_BLOCK, {}, {} },
+ { TK_CF_ELSE, "else", CF_BLOCK, {}, {} },
+ { TK_CF_FOR, "for", CF_BLOCK, {}, {} },
+ { TK_CF_WHILE, "while", CF_BLOCK, {}, {} },
+ { TK_CF_DO, "do", CF_BLOCK, {}, {} },
+ { TK_CF_SWITCH, "switch", CF_BLOCK, {}, {} },
+ { TK_CF_CASE, "case", CF_BLOCK, {}, {} },
+ { TK_CF_DEFAULT, "default", CF_BLOCK, {}, {} },
+ { TK_CF_BREAK, "break", CF_BLOCK, {}, {} },
+ { TK_CF_CONTINUE, "continue", CF_BLOCK, {}, {} },
+ { TK_CF_RETURN, "return", CF_BLOCK, {}, {} },
+ { TK_CF_DISCARD, "discard", CF_BLOCK, { "particles", "sky", "fog" }, { "fragment" } },
+
+ // function specifier keywords
+
+ { TK_ARG_IN, "in", CF_FUNC_DECL_PARAM_SPEC, {}, {} },
+ { TK_ARG_OUT, "out", CF_FUNC_DECL_PARAM_SPEC, {}, {} },
+ { TK_ARG_INOUT, "inout", CF_FUNC_DECL_PARAM_SPEC, {}, {} },
+
+ // hints
+
+ { TK_HINT_RANGE, "hint_range", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_COLOR, "hint_color", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_INSTANCE_INDEX, "instance_index", CF_UNSPECIFIED, {}, {} },
+
+ // sampler hints
+
+ { TK_HINT_ALBEDO_TEXTURE, "hint_albedo", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_BLACK_ALBEDO_TEXTURE, "hint_black_albedo", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_NORMAL_TEXTURE, "hint_normal", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_WHITE_TEXTURE, "hint_white", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_BLACK_TEXTURE, "hint_black", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ANISOTROPY_TEXTURE, "hint_anisotropy", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_R, "hint_roughness_r", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_G, "hint_roughness_g", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_B, "hint_roughness_b", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_A, "hint_roughness_a", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_NORMAL_TEXTURE, "hint_roughness_normal", CF_UNSPECIFIED, {}, {} },
+ { TK_HINT_ROUGHNESS_GRAY, "hint_roughness_gray", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_NEAREST, "filter_nearest", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_LINEAR, "filter_linear", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_NEAREST_MIPMAP, "filter_nearest_mipmap", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_LINEAR_MIPMAP, "filter_linear_mipmap", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_NEAREST_MIPMAP_ANISOTROPIC, "filter_nearest_mipmap_anisotropic", CF_UNSPECIFIED, {}, {} },
+ { TK_FILTER_LINEAR_MIPMAP_ANISOTROPIC, "filter_linear_mipmap_anisotropic", CF_UNSPECIFIED, {}, {} },
+ { TK_REPEAT_ENABLE, "repeat_enable", CF_UNSPECIFIED, {}, {} },
+ { TK_REPEAT_DISABLE, "repeat_disable", CF_UNSPECIFIED, {}, {} },
+
+ { TK_ERROR, nullptr, CF_UNSPECIFIED, {}, {} }
};
ShaderLanguage::Token ShaderLanguage::_get_token() {
@@ -543,7 +581,7 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
default: {
char_idx--; //go back one, since we have no idea what this is
- if (_is_number(GETCHAR(0)) || (GETCHAR(0) == '.' && _is_number(GETCHAR(1)))) {
+ if (is_digit(GETCHAR(0)) || (GETCHAR(0) == '.' && is_digit(GETCHAR(1)))) {
// parse number
bool hexa_found = false;
bool period_found = false;
@@ -584,7 +622,7 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
const char32_t symbol = String::char_lowercase(GETCHAR(i));
bool error = false;
- if (_is_number(symbol)) {
+ if (is_digit(symbol)) {
if (end_suffix_found) {
error = true;
}
@@ -617,8 +655,8 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
break;
}
}
- } else if (!hexa_found || !_is_hex(symbol)) {
- if (_is_text_char(symbol)) {
+ } else if (!hexa_found || !is_hex_digit(symbol)) {
+ if (is_ascii_identifier_char(symbol)) {
error = true;
} else {
break;
@@ -644,12 +682,12 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
char32_t last_char = str[str.length() - 1];
- if (hexa_found) { // Integer(hex)
+ if (hexa_found) { // Integer (hex).
if (str.size() > 11 || !str.is_valid_hex_number(true)) { // > 0xFFFFFFFF
return _make_token(TK_ERROR, "Invalid (hexadecimal) numeric constant");
}
} else if (period_found || exponent_found || float_suffix_found) { // Float
- if (exponent_found && (!_is_number(last_char) && last_char != 'f')) { // checks for eg: "2E", "2E-", "2E+"
+ if (exponent_found && (!is_digit(last_char) && last_char != 'f')) { // checks for eg: "2E", "2E-", "2E+"
return _make_token(TK_ERROR, "Invalid (float) numeric constant");
}
if (period_found) {
@@ -660,7 +698,7 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
}
} else {
//checks for eg. "1." or "1.99" notations
- if (last_char != '.' && !_is_number(last_char)) {
+ if (last_char != '.' && !is_digit(last_char)) {
return _make_token(TK_ERROR, "Invalid (float) numeric constant");
}
}
@@ -690,7 +728,7 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
}
if (!str.is_valid_int()) {
if (uint_suffix_found) {
- return _make_token(TK_ERROR, "Invalid (usigned integer) numeric constant");
+ return _make_token(TK_ERROR, "Invalid (unsigned integer) numeric constant");
} else {
return _make_token(TK_ERROR, "Invalid (integer) numeric constant");
}
@@ -723,11 +761,11 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
return _make_token(TK_PERIOD);
}
- if (_is_text_char(GETCHAR(0))) {
+ if (is_ascii_identifier_char(GETCHAR(0))) {
// parse identifier
String str;
- while (_is_text_char(GETCHAR(0))) {
+ while (is_ascii_identifier_char(GETCHAR(0))) {
str += char32_t(GETCHAR(0));
char_idx++;
}
@@ -763,6 +801,19 @@ ShaderLanguage::Token ShaderLanguage::_get_token() {
#undef GETCHAR
}
+bool ShaderLanguage::_lookup_next(Token &r_tk) {
+ TkPos pre_pos = _get_tkpos();
+ int line = pre_pos.tk_line;
+ _get_token();
+ Token tk = _get_token();
+ _set_tkpos(pre_pos);
+ if (tk.line == line) {
+ r_tk = tk;
+ return true;
+ }
+ return false;
+}
+
String ShaderLanguage::token_debug(const String &p_code) {
clear();
@@ -863,6 +914,13 @@ bool ShaderLanguage::is_token_precision(TokenType p_type) {
p_type == TK_PRECISION_HIGH);
}
+bool ShaderLanguage::is_token_arg_qual(TokenType p_type) {
+ return (
+ p_type == TK_ARG_IN ||
+ p_type == TK_ARG_OUT ||
+ p_type == TK_ARG_INOUT);
+}
+
ShaderLanguage::DataPrecision ShaderLanguage::get_token_precision(TokenType p_type) {
if (p_type == TK_PRECISION_LOW) {
return PRECISION_LOWP;
@@ -977,9 +1035,8 @@ void ShaderLanguage::clear() {
completion_base = TYPE_VOID;
completion_base_array = false;
- unknown_varying_usages.clear();
-
#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_GLOBAL_SPACE;
used_constants.clear();
used_varyings.clear();
used_uniforms.clear();
@@ -2744,13 +2801,13 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
//stage based function
const StageFunctionInfo &sf = p_function_info.stage_functions[name];
if (argcount != sf.arguments.size()) {
- _set_error(vformat("Invalid number of arguments when calling stage function '%s', which expects %d arguments.", String(name), sf.arguments.size()));
+ _set_error(vformat(RTR("Invalid number of arguments when calling stage function '%s', which expects %d arguments."), String(name), sf.arguments.size()));
return false;
}
//validate arguments
for (int i = 0; i < argcount; i++) {
if (args[i] != sf.arguments[i].type) {
- _set_error(vformat("Invalid argument type when calling stage function '%s', type expected is '%s'.", String(name), String(get_datatype_name(sf.arguments[i].type))));
+ _set_error(vformat(RTR("Invalid argument type when calling stage function '%s', type expected is '%s'."), String(name), get_datatype_name(sf.arguments[i].type)));
return false;
}
}
@@ -2826,7 +2883,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
bool error = false;
if (p_func->arguments[arg]->type == Node::TYPE_VARIABLE) {
- const VariableNode *vn = (VariableNode *)p_func->arguments[arg];
+ const VariableNode *vn = static_cast<VariableNode *>(p_func->arguments[arg]);
bool is_const = false;
ConstantNode::Value value;
@@ -2838,7 +2895,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
} else {
if (p_func->arguments[arg]->type == Node::TYPE_CONSTANT) {
- ConstantNode *cn = (ConstantNode *)p_func->arguments[arg];
+ const ConstantNode *cn = static_cast<ConstantNode *>(p_func->arguments[arg]);
if (cn->get_datatype() == TYPE_INT && cn->values.size() == 1) {
int value = cn->values[0].sint;
@@ -2854,7 +2911,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
}
if (error) {
- _set_error(vformat("Expected integer constant within %s..%s range.", min, max));
+ _set_error(vformat(RTR("Expected integer constant within [%d..%d] range."), min, max));
return false;
}
}
@@ -2873,7 +2930,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
if (arg_idx < argcount) {
if (p_func->arguments[arg_idx + 1]->type != Node::TYPE_VARIABLE && p_func->arguments[arg_idx + 1]->type != Node::TYPE_MEMBER && p_func->arguments[arg_idx + 1]->type != Node::TYPE_ARRAY) {
- _set_error("Argument " + itos(arg_idx + 1) + " of function '" + String(name) + "' is not a variable, array or member.");
+ _set_error(vformat(RTR("Argument %d of function '%s' is not a variable, array, or member."), arg_idx + 1, String(name)));
return false;
}
@@ -2897,7 +2954,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
fail = true;
} else {
if (shader->varyings.has(varname)) {
- _set_error(vformat("Varyings cannot be passed for '%s' parameter!", "out"));
+ _set_error(vformat(RTR("Varyings cannot be passed for the '%s' parameter."), "out"));
return false;
}
if (p_function_info.built_ins.has(varname)) {
@@ -2910,7 +2967,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
}
if (fail) {
- _set_error(vformat("Constant value cannot be passed for '%s' parameter!", "out"));
+ _set_error(vformat(RTR("A constant value cannot be passed for the '%s' parameter."), "out"));
return false;
}
@@ -2923,7 +2980,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
n = static_cast<const MemberNode *>(n)->owner;
}
if (n->type != Node::TYPE_VARIABLE && n->type != Node::TYPE_ARRAY) {
- _set_error("Argument " + itos(arg_idx + 1) + " of function '" + String(name) + "' is not a variable, array or member.");
+ _set_error(vformat(RTR("Argument %d of function '%s' is not a variable, array, or member."), arg_idx + 1, String(name)));
return false;
}
if (n->type == Node::TYPE_VARIABLE) {
@@ -2953,7 +3010,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
if (!valid) {
- _set_error("Argument " + itos(arg_idx + 1) + " of function '" + String(name) + "' can only take a local variable, array or member.");
+ _set_error(vformat(RTR("Argument %d of function '%s' can only take a local variable, array, or member."), arg_idx + 1, String(name)));
return false;
}
}
@@ -3000,16 +3057,15 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
arglist += get_datatype_name(builtin_func_defs[builtin_idx].args[i]);
}
- String err = "Built-in function \"" + String(name) + "(" + arglist + ")\" is supported only on high-end platform!";
- _set_error(err);
+ _set_error(vformat(RTR("Built-in function \"%s(%s)\" is only supported on high-end platforms."), String(name), arglist));
return false;
}
if (failed_builtin) {
- String err = "Invalid arguments for built-in function: " + String(name) + "(";
+ String arg_list;
for (int i = 0; i < argcount; i++) {
if (i > 0) {
- err += ",";
+ arg_list += ",";
}
String arg_name;
@@ -3023,10 +3079,9 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
arg_name += itos(args3[i]);
arg_name += "]";
}
- err += arg_name;
+ arg_list += arg_name;
}
- err += ")";
- _set_error(err);
+ _set_error(vformat(RTR("Invalid arguments for the built-in function: \"%s(%s)\"."), String(name), arg_list));
return false;
}
@@ -3043,7 +3098,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
if (name == exclude_function) {
- _set_error("Recursion is not allowed");
+ _set_error(RTR("Recursion is not allowed."));
return false;
}
@@ -3056,7 +3111,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
if (!shader->functions[i].callable) {
- _set_error("Function '" + String(name) + " can't be called from source code.");
+ _set_error(vformat(RTR("Function '%s' can't be called from source code."), String(name)));
return false;
}
@@ -3115,7 +3170,7 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
arg_name += "]";
}
- _set_error(vformat("Invalid argument for \"%s(%s)\" function: argument %s should be %s but is %s.", String(name), arg_list, j + 1, func_arg_name, arg_name));
+ _set_error(vformat(RTR("Invalid argument for \"%s(%s)\" function: argument %d should be %s but is %s."), String(name), arg_list, j + 1, func_arg_name, arg_name));
fail = true;
break;
}
@@ -3152,9 +3207,9 @@ bool ShaderLanguage::_validate_function_call(BlockNode *p_block, const FunctionI
}
if (last_arg_count > args.size()) {
- _set_error(vformat("Too few arguments for \"%s(%s)\" call. Expected at least %s but received %s.", String(name), arg_list, last_arg_count, args.size()));
+ _set_error(vformat(RTR("Too few arguments for \"%s(%s)\" call. Expected at least %d but received %d."), String(name), arg_list, last_arg_count, args.size()));
} else if (last_arg_count < args.size()) {
- _set_error(vformat("Too many arguments for \"%s(%s)\" call. Expected at most %s but received %s.", String(name), arg_list, last_arg_count, args.size()));
+ _set_error(vformat(RTR("Too many arguments for \"%s(%s)\" call. Expected at most %d but received %d."), String(name), arg_list, last_arg_count, args.size()));
}
return false;
@@ -3192,7 +3247,7 @@ bool ShaderLanguage::_compare_datatypes(DataType p_datatype_a, String p_datatype
type_name2 += "]";
}
- _set_error("Invalid assignment of '" + type_name2 + "' to '" + type_name + "'");
+ _set_error(vformat(RTR("Invalid assignment of '%s' to '%s'."), type_name2, type_name));
}
return result;
}
@@ -3237,7 +3292,7 @@ bool ShaderLanguage::_parse_function_arguments(BlockNode *p_block, const Functio
return true;
} else if (tk.type != TK_COMMA) {
// something is broken
- _set_error("Expected ',' or ')' after argument");
+ _set_error(RTR("Expected ',' or ')' after argument."));
return false;
}
}
@@ -3482,7 +3537,7 @@ Variant ShaderLanguage::constant_value_to_variant(const Vector<ShaderLanguage::C
}
value = Variant(array);
} else {
- value = Variant(Plane(p_value[0].sint, p_value[1].sint, p_value[2].sint, p_value[3].sint));
+ value = Variant(Quaternion(p_value[0].sint, p_value[1].sint, p_value[2].sint, p_value[3].sint));
}
break;
case ShaderLanguage::TYPE_UINT:
@@ -3532,7 +3587,7 @@ Variant ShaderLanguage::constant_value_to_variant(const Vector<ShaderLanguage::C
}
value = Variant(array);
} else {
- value = Variant(Plane(p_value[0].uint, p_value[1].uint, p_value[2].uint, p_value[3].uint));
+ value = Variant(Quaternion(p_value[0].uint, p_value[1].uint, p_value[2].uint, p_value[3].uint));
}
break;
case ShaderLanguage::TYPE_FLOAT:
@@ -3563,13 +3618,25 @@ Variant ShaderLanguage::constant_value_to_variant(const Vector<ShaderLanguage::C
if (array_size > 0) {
array_size *= 3;
- PackedVector3Array array = PackedVector3Array();
- for (int i = 0; i < array_size; i += 3) {
- array.push_back(Vector3(p_value[i].real, p_value[i + 1].real, p_value[i + 2].real));
+ if (p_hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
+ PackedColorArray array = PackedColorArray();
+ for (int i = 0; i < array_size; i += 3) {
+ array.push_back(Color(p_value[i].real, p_value[i + 1].real, p_value[i + 2].real));
+ }
+ value = Variant(array);
+ } else {
+ PackedVector3Array array = PackedVector3Array();
+ for (int i = 0; i < array_size; i += 3) {
+ array.push_back(Vector3(p_value[i].real, p_value[i + 1].real, p_value[i + 2].real));
+ }
+ value = Variant(array);
}
- value = Variant(array);
} else {
- value = Variant(Vector3(p_value[0].real, p_value[1].real, p_value[2].real));
+ if (p_hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
+ value = Variant(Color(p_value[0].real, p_value[1].real, p_value[2].real));
+ } else {
+ value = Variant(Vector3(p_value[0].real, p_value[1].real, p_value[2].real));
+ }
}
break;
case ShaderLanguage::TYPE_VEC4:
@@ -3596,7 +3663,7 @@ Variant ShaderLanguage::constant_value_to_variant(const Vector<ShaderLanguage::C
if (p_hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
value = Variant(Color(p_value[0].real, p_value[1].real, p_value[2].real, p_value[3].real));
} else {
- value = Variant(Plane(p_value[0].real, p_value[1].real, p_value[2].real, p_value[3].real));
+ value = Variant(Quaternion(p_value[0].real, p_value[1].real, p_value[2].real, p_value[3].real));
}
}
break;
@@ -3775,9 +3842,19 @@ PropertyInfo ShaderLanguage::uniform_to_property_info(const ShaderNode::Uniform
break;
case ShaderLanguage::TYPE_VEC3:
if (p_uniform.array_size > 0) {
- pi.type = Variant::PACKED_VECTOR3_ARRAY;
+ if (p_uniform.hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
+ pi.hint = PROPERTY_HINT_COLOR_NO_ALPHA;
+ pi.type = Variant::PACKED_COLOR_ARRAY;
+ } else {
+ pi.type = Variant::PACKED_VECTOR3_ARRAY;
+ }
} else {
- pi.type = Variant::VECTOR3;
+ if (p_uniform.hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
+ pi.hint = PROPERTY_HINT_COLOR_NO_ALPHA;
+ pi.type = Variant::COLOR;
+ } else {
+ pi.type = Variant::VECTOR3;
+ }
}
break;
case ShaderLanguage::TYPE_VEC4: {
@@ -3791,7 +3868,7 @@ PropertyInfo ShaderLanguage::uniform_to_property_info(const ShaderNode::Uniform
if (p_uniform.hint == ShaderLanguage::ShaderNode::Uniform::HINT_COLOR) {
pi.type = Variant::COLOR;
} else {
- pi.type = Variant::PLANE;
+ pi.type = Variant::QUATERNION;
}
}
} break;
@@ -3868,55 +3945,77 @@ PropertyInfo ShaderLanguage::uniform_to_property_info(const ShaderNode::Uniform
return pi;
}
-uint32_t ShaderLanguage::get_type_size(DataType p_type) {
+uint32_t ShaderLanguage::get_datatype_size(ShaderLanguage::DataType p_type) {
switch (p_type) {
case TYPE_VOID:
return 0;
case TYPE_BOOL:
- case TYPE_INT:
- case TYPE_UINT:
- case TYPE_FLOAT:
return 4;
case TYPE_BVEC2:
- case TYPE_IVEC2:
- case TYPE_UVEC2:
- case TYPE_VEC2:
return 8;
case TYPE_BVEC3:
- case TYPE_IVEC3:
- case TYPE_UVEC3:
- case TYPE_VEC3:
return 12;
case TYPE_BVEC4:
+ return 16;
+ case TYPE_INT:
+ return 4;
+ case TYPE_IVEC2:
+ return 8;
+ case TYPE_IVEC3:
+ return 12;
case TYPE_IVEC4:
+ return 16;
+ case TYPE_UINT:
+ return 4;
+ case TYPE_UVEC2:
+ return 8;
+ case TYPE_UVEC3:
+ return 12;
case TYPE_UVEC4:
+ return 16;
+ case TYPE_FLOAT:
+ return 4;
+ case TYPE_VEC2:
+ return 8;
+ case TYPE_VEC3:
+ return 12;
case TYPE_VEC4:
return 16;
case TYPE_MAT2:
- return 8;
+ return 32; // 4 * 4 + 4 * 4
case TYPE_MAT3:
- return 12;
+ return 48; // 4 * 4 + 4 * 4 + 4 * 4
case TYPE_MAT4:
- return 16;
+ return 64;
case TYPE_SAMPLER2D:
+ return 16;
case TYPE_ISAMPLER2D:
+ return 16;
case TYPE_USAMPLER2D:
+ return 16;
case TYPE_SAMPLER2DARRAY:
+ return 16;
case TYPE_ISAMPLER2DARRAY:
+ return 16;
case TYPE_USAMPLER2DARRAY:
+ return 16;
case TYPE_SAMPLER3D:
+ return 16;
case TYPE_ISAMPLER3D:
+ return 16;
case TYPE_USAMPLER3D:
+ return 16;
case TYPE_SAMPLERCUBE:
+ return 16;
case TYPE_SAMPLERCUBEARRAY:
- return 4; //not really, but useful for indices
+ return 16;
case TYPE_STRUCT:
- // FIXME: Implement.
- return 0;
- case ShaderLanguage::TYPE_MAX:
return 0;
+ case TYPE_MAX: {
+ ERR_FAIL_V(0);
+ };
}
- return 0;
+ ERR_FAIL_V(0);
}
void ShaderLanguage::get_keyword_list(List<String> *r_keywords) {
@@ -4122,47 +4221,10 @@ bool ShaderLanguage::_validate_varying_assign(ShaderNode::Varying &p_varying, St
return true;
}
-bool ShaderLanguage::_validate_varying_using(ShaderNode::Varying &p_varying, String *r_message) {
- switch (p_varying.stage) {
- case ShaderNode::Varying::STAGE_UNKNOWN:
- VaryingUsage usage;
- usage.var = &p_varying;
- usage.line = tk_line;
- unknown_varying_usages.push_back(usage);
- break;
- case ShaderNode::Varying::STAGE_VERTEX:
- if (current_function == varying_function_names.fragment || current_function == varying_function_names.light) {
- p_varying.stage = ShaderNode::Varying::STAGE_VERTEX_TO_FRAGMENT_LIGHT;
- }
- break;
- case ShaderNode::Varying::STAGE_FRAGMENT:
- if (current_function == varying_function_names.light) {
- p_varying.stage = ShaderNode::Varying::STAGE_FRAGMENT_TO_LIGHT;
- }
- break;
- default:
- break;
- }
- return true;
-}
-
-bool ShaderLanguage::_check_varying_usages(int *r_error_line, String *r_error_message) const {
- for (const List<ShaderLanguage::VaryingUsage>::Element *E = unknown_varying_usages.front(); E; E = E->next()) {
- ShaderNode::Varying::Stage stage = E->get().var->stage;
- if (stage != ShaderNode::Varying::STAGE_UNKNOWN && stage != ShaderNode::Varying::STAGE_VERTEX && stage != ShaderNode::Varying::STAGE_VERTEX_TO_FRAGMENT_LIGHT) {
- *r_error_line = E->get().line;
- *r_error_message = RTR("Fragment-stage varying could not been accessed in custom function!");
- return false;
- }
- }
-
- return true;
-}
-
bool ShaderLanguage::_check_node_constness(const Node *p_node) const {
switch (p_node->type) {
case Node::TYPE_OPERATOR: {
- OperatorNode *op_node = (OperatorNode *)p_node;
+ const OperatorNode *op_node = static_cast<const OperatorNode *>(p_node);
for (int i = int(op_node->op == OP_CALL); i < op_node->arguments.size(); i++) {
if (!_check_node_constness(op_node->arguments[i])) {
return false;
@@ -4172,13 +4234,13 @@ bool ShaderLanguage::_check_node_constness(const Node *p_node) const {
case Node::TYPE_CONSTANT:
break;
case Node::TYPE_VARIABLE: {
- VariableNode *varn = (VariableNode *)p_node;
+ const VariableNode *varn = static_cast<const VariableNode *>(p_node);
if (!varn->is_const) {
return false;
}
} break;
case Node::TYPE_ARRAY: {
- ArrayNode *arrn = (ArrayNode *)p_node;
+ const ArrayNode *arrn = static_cast<const ArrayNode *>(p_node);
if (!arrn->is_const) {
return false;
}
@@ -4264,14 +4326,14 @@ bool ShaderLanguage::_propagate_function_call_sampler_uniform_settings(StringNam
ERR_FAIL_INDEX_V(p_argument, shader->functions[i].function->arguments.size(), false);
FunctionNode::Argument *arg = &shader->functions[i].function->arguments.write[p_argument];
if (arg->tex_builtin_check) {
- _set_error("Sampler argument #" + itos(p_argument) + " of function '" + String(p_name) + "' called more than once using both built-ins and uniform textures, this is not supported (use either one or the other).");
+ _set_error(vformat(RTR("Sampler argument %d of function '%s' called more than once using both built-ins and uniform textures, this is not supported (use either one or the other)."), p_argument, String(p_name)));
return false;
} else if (arg->tex_argument_check) {
//was checked, verify that filter and repeat are the same
if (arg->tex_argument_filter == p_filter && arg->tex_argument_repeat == p_repeat) {
return true;
} else {
- _set_error("Sampler argument #" + itos(p_argument) + " of function '" + String(p_name) + "' called more than once using textures that differ in either filter or repeat setting.");
+ _set_error(vformat(RTR("Sampler argument %d of function '%s' called more than once using textures that differ in either filter or repeat setting."), p_argument, String(p_name)));
return false;
}
} else {
@@ -4298,14 +4360,14 @@ bool ShaderLanguage::_propagate_function_call_sampler_builtin_reference(StringNa
ERR_FAIL_INDEX_V(p_argument, shader->functions[i].function->arguments.size(), false);
FunctionNode::Argument *arg = &shader->functions[i].function->arguments.write[p_argument];
if (arg->tex_argument_check) {
- _set_error("Sampler argument #" + itos(p_argument) + " of function '" + String(p_name) + "' called more than once using both built-ins and uniform textures, this is not supported (use either one or the other).");
+ _set_error(vformat(RTR("Sampler argument %d of function '%s' called more than once using both built-ins and uniform textures, this is not supported (use either one or the other)."), p_argument, String(p_name)));
return false;
} else if (arg->tex_builtin_check) {
//was checked, verify that the built-in is the same
if (arg->tex_builtin == p_builtin) {
return true;
} else {
- _set_error("Sampler argument #" + itos(p_argument) + " of function '" + String(p_name) + "' called more than once using different built-ins. Only calling with the same built-in is supported.");
+ _set_error(vformat(RTR("Sampler argument %d of function '%s' called more than once using different built-ins. Only calling with the same built-in is supported."), p_argument, String(p_name)));
return false;
}
} else {
@@ -4326,114 +4388,87 @@ bool ShaderLanguage::_propagate_function_call_sampler_builtin_reference(StringNa
ERR_FAIL_V(false); //bug? function not found
}
-ShaderLanguage::Node *ShaderLanguage::_parse_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, int &r_array_size) {
- int array_size = 0;
-
- Node *n = _parse_and_reduce_expression(p_block, p_function_info);
- if (n) {
- if (n->type == Node::TYPE_VARIABLE) {
- VariableNode *vn = static_cast<VariableNode *>(n);
- if (vn) {
- ConstantNode::Value v;
- DataType data_type;
- bool is_const = false;
-
- _find_identifier(p_block, false, p_function_info, vn->name, &data_type, nullptr, &is_const, nullptr, nullptr, &v);
-
- if (is_const) {
- if (data_type == TYPE_INT) {
- int32_t value = v.sint;
- if (value > 0) {
- array_size = value;
- }
- } else if (data_type == TYPE_UINT) {
- uint32_t value = v.uint;
- if (value > 0U) {
- array_size = value;
- }
- }
- }
- }
- } else if (n->type == Node::TYPE_OPERATOR) {
- _set_error("Array size expressions are not yet implemented.");
- return nullptr;
- }
+Error ShaderLanguage::_parse_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, bool p_forbid_unknown_size, Node **r_size_expression, int *r_array_size, bool *r_unknown_size) {
+ bool error = false;
+ if (r_array_size != nullptr && *r_array_size > 0) {
+ error = true;
}
-
- r_array_size = array_size;
- return n;
-}
-
-Error ShaderLanguage::_parse_global_array_size(int &r_array_size, const FunctionInfo &p_function_info) {
- if (r_array_size > 0) {
- _set_error("Array size is already defined!");
- return ERR_PARSE_ERROR;
- }
- TkPos pos = _get_tkpos();
- Token tk = _get_token();
-
- int array_size = 0;
-
- if (!tk.is_integer_constant() || ((int)tk.constant) <= 0) {
- _set_tkpos(pos);
- Node *n = _parse_array_size(nullptr, p_function_info, array_size);
- if (!n) {
- return ERR_PARSE_ERROR;
- }
- } else if (((int)tk.constant) > 0) {
- array_size = (uint32_t)tk.constant;
- }
-
- if (array_size <= 0) {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
+ if (r_unknown_size != nullptr && *r_unknown_size) {
+ error = true;
}
-
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
+ if (error) {
+ _set_error(vformat(RTR("Array size is already defined.")));
return ERR_PARSE_ERROR;
}
- r_array_size = array_size;
- return OK;
-}
-
-Error ShaderLanguage::_parse_local_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, Node *&r_size_expression, int &r_array_size, bool &r_is_unknown_size) {
TkPos pos = _get_tkpos();
Token tk = _get_token();
if (tk.type == TK_BRACKET_CLOSE) {
- r_is_unknown_size = true;
+ if (p_forbid_unknown_size) {
+ _set_error(vformat(RTR("Unknown array size is forbidden in that context.")));
+ return ERR_PARSE_ERROR;
+ }
+ if (r_unknown_size != nullptr) {
+ *r_unknown_size = true;
+ }
} else {
- int size = 0;
+ int array_size = 0;
+
if (!tk.is_integer_constant() || ((int)tk.constant) <= 0) {
_set_tkpos(pos);
- int array_size = 0;
- Node *n = _parse_array_size(p_block, p_function_info, array_size);
- if (!n) {
- return ERR_PARSE_ERROR;
+ Node *n = _parse_and_reduce_expression(p_block, p_function_info);
+ if (n) {
+ if (n->type == Node::TYPE_VARIABLE) {
+ VariableNode *vn = static_cast<VariableNode *>(n);
+ if (vn) {
+ ConstantNode::Value v;
+ DataType data_type;
+ bool is_const = false;
+
+ _find_identifier(p_block, false, p_function_info, vn->name, &data_type, nullptr, &is_const, nullptr, nullptr, &v);
+
+ if (is_const) {
+ if (data_type == TYPE_INT) {
+ int32_t value = v.sint;
+ if (value > 0) {
+ array_size = value;
+ }
+ } else if (data_type == TYPE_UINT) {
+ uint32_t value = v.uint;
+ if (value > 0U) {
+ array_size = value;
+ }
+ }
+ }
+ }
+ } else if (n->type == Node::TYPE_OPERATOR) {
+ _set_error(vformat(RTR("Array size expressions are not supported.")));
+ return ERR_PARSE_ERROR;
+ }
+ if (r_size_expression != nullptr) {
+ *r_size_expression = n;
+ }
}
- size = array_size;
- r_size_expression = n;
} else if (((int)tk.constant) > 0) {
- size = (uint32_t)tk.constant;
+ array_size = (uint32_t)tk.constant;
}
- if (size <= 0) {
- _set_error("Expected single integer constant > 0");
+ if (array_size <= 0) {
+ _set_error(RTR("Expected a positive integer constant."));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
+ _set_expected_error("]");
return ERR_PARSE_ERROR;
}
- r_array_size = size;
+ if (r_array_size != nullptr) {
+ *r_array_size = array_size;
+ }
}
-
return OK;
}
@@ -4453,49 +4488,20 @@ ShaderLanguage::Node *ShaderLanguage::_parse_array_constructor(BlockNode *p_bloc
struct_name = tk.text;
} else {
if (!is_token_variable_datatype(tk.type)) {
- _set_error("Invalid data type for array");
+ _set_error(RTR("Invalid data type for the array."));
return nullptr;
}
type = get_token_datatype(tk.type);
}
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- TkPos pos = _get_tkpos();
- tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
- undefined_size = true;
- tk = _get_token();
- } else {
- _set_tkpos(pos);
-
- Node *n = _parse_and_reduce_expression(p_block, p_function_info);
- if (!n || n->type != Node::TYPE_CONSTANT || n->get_datatype() != TYPE_INT) {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
-
- ConstantNode *cnode = (ConstantNode *)n;
- if (cnode->values.size() == 1) {
- array_size = cnode->values[0].sint;
- if (array_size <= 0) {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
- } else {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
-
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return nullptr;
- } else {
- tk = _get_token();
- }
+ Error error = _parse_array_size(p_block, p_function_info, false, nullptr, &array_size, &undefined_size);
+ if (error != OK) {
+ return nullptr;
}
+ tk = _get_token();
} else {
- _set_error("Expected '['");
+ _set_expected_error("[");
return nullptr;
}
}
@@ -4533,20 +4539,20 @@ ShaderLanguage::Node *ShaderLanguage::_parse_array_constructor(BlockNode *p_bloc
break;
} else {
if (auto_size) {
- _set_error("Expected '}' or ','");
+ _set_expected_error("}", ",");
} else {
- _set_error("Expected ')' or ','");
+ _set_expected_error(")", ",");
}
return nullptr;
}
idx++;
}
if (!auto_size && !undefined_size && an->initializer.size() != array_size) {
- _set_error("Array size mismatch");
+ _set_error(RTR("Array size mismatch."));
return nullptr;
}
} else {
- _set_error("Expected array initialization!");
+ _set_error(RTR("Expected array initialization."));
return nullptr;
}
@@ -4576,7 +4582,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_array_constructor(BlockNode *p_bloc
Node *n = _parse_and_reduce_expression(p_block, p_function_info);
if (!n) {
- _set_error("Invalid data type for array");
+ _set_error(RTR("Invalid data type for the array."));
return nullptr;
}
@@ -4589,65 +4595,42 @@ ShaderLanguage::Node *ShaderLanguage::_parse_array_constructor(BlockNode *p_bloc
}
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- TkPos pos = _get_tkpos();
- tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
+ bool is_unknown_size = false;
+ Error error = _parse_array_size(p_block, p_function_info, false, nullptr, &array_size, &is_unknown_size);
+ if (error != OK) {
+ return nullptr;
+ }
+ if (is_unknown_size) {
array_size = p_array_size;
- tk = _get_token();
- } else {
- _set_tkpos(pos);
-
- Node *n = _parse_and_reduce_expression(p_block, p_function_info);
- if (!n || n->type != Node::TYPE_CONSTANT || n->get_datatype() != TYPE_INT) {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
-
- ConstantNode *cnode = (ConstantNode *)n;
- if (cnode->values.size() == 1) {
- array_size = cnode->values[0].sint;
- if (array_size <= 0) {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
- } else {
- _set_error("Expected single integer constant > 0");
- return nullptr;
- }
-
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return nullptr;
- } else {
- tk = _get_token();
- }
}
+ tk = _get_token();
} else {
- _set_error("Expected '['");
+ _set_expected_error("[");
return nullptr;
}
if (type != p_type || struct_name != p_struct_name || array_size != p_array_size) {
- String error_str = "Cannot convert from '";
+ String from;
if (type == TYPE_STRUCT) {
- error_str += struct_name;
+ from += struct_name;
} else {
- error_str += get_datatype_name(type);
+ from += get_datatype_name(type);
}
- error_str += "[";
- error_str += itos(array_size);
- error_str += "]'";
- error_str += " to '";
+ from += "[";
+ from += itos(array_size);
+ from += "]'";
+
+ String to;
if (type == TYPE_STRUCT) {
- error_str += p_struct_name;
+ to += p_struct_name;
} else {
- error_str += get_datatype_name(p_type);
+ to += get_datatype_name(p_type);
}
- error_str += "[";
- error_str += itos(p_array_size);
- error_str += "]'";
- _set_error(error_str);
+ to += "[";
+ to += itos(p_array_size);
+ to += "]'";
+
+ _set_error(vformat(RTR("Cannot convert from '%s' to '%s'."), from, to));
return nullptr;
}
}
@@ -4678,19 +4661,19 @@ ShaderLanguage::Node *ShaderLanguage::_parse_array_constructor(BlockNode *p_bloc
break;
} else {
if (auto_size) {
- _set_error("Expected '}' or ','");
+ _set_expected_error("}", ",");
} else {
- _set_error("Expected ')' or ','");
+ _set_expected_error(")", ",");
}
return nullptr;
}
}
if (an->initializer.size() != p_array_size) {
- _set_error("Array size mismatch");
+ _set_error(RTR("Array size mismatch."));
return nullptr;
}
} else {
- _set_error("Expected array initialization!");
+ _set_error(RTR("Expected array initialization."));
return nullptr;
}
@@ -4721,7 +4704,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')' in expression");
+ _set_error(RTR("Expected ')' in expression."));
return nullptr;
}
@@ -4769,7 +4752,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
} else if (tk.type == TK_TYPE_VOID) {
//make sure void is not used in expression
- _set_error("Void value not allowed in Expression");
+ _set_error(RTR("Void value not allowed in expression."));
return nullptr;
} else if (is_token_nonvoid_datatype(tk.type) || tk.type == TK_CURLY_BRACKET_OPEN) {
if (tk.type == TK_CURLY_BRACKET_OPEN) {
@@ -4779,16 +4762,18 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
expr = _parse_array_constructor(p_block, p_function_info);
} else {
DataType datatype;
- DataPrecision precision;
- bool precision_defined = false;
+ DataPrecision precision = PRECISION_DEFAULT;
if (is_token_precision(tk.type)) {
precision = get_token_precision(tk.type);
- precision_defined = true;
tk = _get_token();
}
datatype = get_token_datatype(tk.type);
+ if (precision != PRECISION_DEFAULT && _validate_precision(datatype, precision) != OK) {
+ return nullptr;
+ }
+
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
@@ -4798,7 +4783,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
expr = _parse_array_constructor(p_block, p_function_info);
} else {
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after type name");
+ _set_error(RTR("Expected '(' after the type name."));
return nullptr;
}
//basic type constructor
@@ -4806,7 +4791,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
OperatorNode *func = alloc_node<OperatorNode>();
func->op = OP_CONSTRUCT;
- if (precision_defined) {
+ if (precision != PRECISION_DEFAULT) {
func->return_precision_cache = precision;
}
@@ -4831,7 +4816,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (!_validate_function_call(p_block, p_function_info, func, &func->return_cache, &func->struct_name)) {
- _set_error("No matching constructor found for: '" + String(funcname->name) + "'");
+ _set_error(vformat(RTR("No matching constructor found for: '%s'."), String(funcname->name)));
return nullptr;
}
@@ -4888,7 +4873,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (i + 1 < pstruct->members.size()) {
tk = _get_token();
if (tk.type != TK_COMMA) {
- _set_error("Expected ','");
+ _set_expected_error(",");
return nullptr;
}
}
@@ -4896,7 +4881,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')'");
+ _set_expected_error(")");
return nullptr;
}
@@ -4920,7 +4905,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
ShaderLanguage::BlockNode *bnode = p_block;
while (bnode) {
if (bnode->variables.has(name)) {
- _set_error("Expected function name");
+ _set_error(RTR("Expected a function name."));
return nullptr;
}
bnode = bnode->parent_block;
@@ -4957,7 +4942,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (!_validate_function_call(p_block, p_function_info, func, &func->return_cache, &func->struct_name)) {
- _set_error("No matching function found for: '" + String(funcname->name) + "'");
+ _set_error(vformat(RTR("No matching function found for: '%s'."), String(funcname->name)));
return nullptr;
}
completion_class = TAG_GLOBAL; // reset sub-class
@@ -4991,55 +4976,104 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
for (int i = 0; i < call_function->arguments.size(); i++) {
int argidx = i + 1;
if (argidx < func->arguments.size()) {
- if (call_function->arguments[i].is_const || call_function->arguments[i].qualifier == ArgumentQualifier::ARGUMENT_QUALIFIER_OUT || call_function->arguments[i].qualifier == ArgumentQualifier::ARGUMENT_QUALIFIER_INOUT) {
- bool error = false;
- Node *n = func->arguments[argidx];
- if (n->type == Node::TYPE_CONSTANT || n->type == Node::TYPE_OPERATOR) {
- if (!call_function->arguments[i].is_const) {
+ bool error = false;
+ Node *n = func->arguments[argidx];
+ ArgumentQualifier arg_qual = call_function->arguments[i].qualifier;
+ bool is_out_arg = arg_qual != ArgumentQualifier::ARGUMENT_QUALIFIER_IN;
+
+ if (n->type == Node::TYPE_VARIABLE || n->type == Node::TYPE_ARRAY) {
+ StringName varname;
+
+ if (n->type == Node::TYPE_VARIABLE) {
+ VariableNode *vn = static_cast<VariableNode *>(n);
+ varname = vn->name;
+ } else { // TYPE_ARRAY
+ ArrayNode *an = static_cast<ArrayNode *>(n);
+ varname = an->name;
+ }
+
+ if (shader->varyings.has(varname)) {
+ switch (shader->varyings[varname].stage) {
+ case ShaderNode::Varying::STAGE_UNKNOWN: {
+ _set_error(vformat(RTR("Varying '%s' must be assigned in the vertex or fragment function first."), varname));
+ return nullptr;
+ }
+ case ShaderNode::Varying::STAGE_VERTEX_TO_FRAGMENT_LIGHT:
+ [[fallthrough]];
+ case ShaderNode::Varying::STAGE_VERTEX:
+ if (is_out_arg && current_function != varying_function_names.vertex) { // inout/out
+ error = true;
+ }
+ break;
+ case ShaderNode::Varying::STAGE_FRAGMENT_TO_LIGHT:
+ [[fallthrough]];
+ case ShaderNode::Varying::STAGE_FRAGMENT:
+ if (!is_out_arg) {
+ if (current_function != varying_function_names.fragment && current_function != varying_function_names.light) {
+ error = true;
+ }
+ } else if (current_function != varying_function_names.fragment) { // inout/out
+ error = true;
+ }
+ break;
+ default:
+ break;
+ }
+
+ if (error) {
+ _set_error(vformat(RTR("Varying '%s' cannot be passed for the '%s' parameter in that context."), varname, _get_qualifier_str(arg_qual)));
+ return nullptr;
+ }
+ }
+ }
+
+ bool is_const_arg = call_function->arguments[i].is_const;
+
+ if (is_const_arg || is_out_arg) {
+ StringName varname;
+
+ if (n->type == Node::TYPE_CONSTANT || n->type == Node::TYPE_OPERATOR || n->type == Node::TYPE_ARRAY_CONSTRUCT) {
+ if (!is_const_arg) {
error = true;
}
} else if (n->type == Node::TYPE_ARRAY) {
ArrayNode *an = static_cast<ArrayNode *>(n);
- if (an->call_expression != nullptr || an->is_const) {
+ if (!is_const_arg && (an->call_expression != nullptr || an->is_const)) {
error = true;
}
+ varname = an->name;
} else if (n->type == Node::TYPE_VARIABLE) {
VariableNode *vn = static_cast<VariableNode *>(n);
- if (vn->is_const) {
+ if (vn->is_const && !is_const_arg) {
error = true;
- } else {
- StringName varname = vn->name;
- if (shader->constants.has(varname)) {
- error = true;
- } else if (shader->uniforms.has(varname)) {
- error = true;
- } else {
- if (shader->varyings.has(varname)) {
- _set_error(vformat("Varyings cannot be passed for '%s' parameter!", _get_qualifier_str(call_function->arguments[i].qualifier)));
- return nullptr;
- }
- if (p_function_info.built_ins.has(varname)) {
- BuiltInInfo info = p_function_info.built_ins[varname];
- if (info.constant) {
- error = true;
- }
- }
- }
}
+ varname = vn->name;
} else if (n->type == Node::TYPE_MEMBER) {
MemberNode *mn = static_cast<MemberNode *>(n);
- if (mn->basetype_const) {
+ if (mn->basetype_const && is_out_arg) {
error = true;
}
}
+ if (!error && varname != StringName()) {
+ if (shader->constants.has(varname)) {
+ error = true;
+ } else if (shader->uniforms.has(varname)) {
+ error = true;
+ } else if (p_function_info.built_ins.has(varname)) {
+ BuiltInInfo info = p_function_info.built_ins[varname];
+ if (info.constant) {
+ error = true;
+ }
+ }
+ }
+
if (error) {
- _set_error(vformat("Constant value cannot be passed for '%s' parameter!", _get_qualifier_str(call_function->arguments[i].qualifier)));
+ _set_error(vformat(RTR("A constant value cannot be passed for '%s' parameter."), _get_qualifier_str(arg_qual)));
return nullptr;
}
}
if (is_sampler_type(call_function->arguments[i].type)) {
//let's see where our argument comes from
- Node *n = func->arguments[argidx];
ERR_CONTINUE(n->type != Node::TYPE_VARIABLE); //bug? this should always be a variable
VariableNode *vn = static_cast<VariableNode *>(n);
StringName varname = vn->name;
@@ -5116,12 +5150,12 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
idx++;
}
if (!found) {
- _set_error("Unknown identifier in expression: " + String(identifier));
+ _set_error(vformat(RTR("Unknown identifier in expression: '%s'."), String(identifier)));
return nullptr;
}
} else {
if (!_find_identifier(p_block, false, p_function_info, identifier, &data_type, &ident_type, &is_const, &array_size, &struct_name)) {
- _set_error("Unknown identifier in expression: " + String(identifier));
+ _set_error(vformat(RTR("Unknown identifier in expression: '%s'."), String(identifier)));
return nullptr;
}
if (ident_type == IDENTIFIER_VARYING) {
@@ -5143,15 +5177,27 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
return nullptr;
}
} else {
- if (!_validate_varying_using(shader->varyings[identifier], &error)) {
- _set_error(error);
- return nullptr;
+ ShaderNode::Varying &var = shader->varyings[identifier];
+
+ switch (var.stage) {
+ case ShaderNode::Varying::STAGE_VERTEX:
+ if (current_function == varying_function_names.fragment || current_function == varying_function_names.light) {
+ var.stage = ShaderNode::Varying::STAGE_VERTEX_TO_FRAGMENT_LIGHT;
+ }
+ break;
+ case ShaderNode::Varying::STAGE_FRAGMENT:
+ if (current_function == varying_function_names.light) {
+ var.stage = ShaderNode::Varying::STAGE_FRAGMENT_TO_LIGHT;
+ }
+ break;
+ default:
+ break;
}
}
}
if (ident_type == IDENTIFIER_FUNCTION) {
- _set_error("Can't use function as identifier: " + String(identifier));
+ _set_error(vformat(RTR("Can't use function as identifier: '%s'."), String(identifier)));
return nullptr;
}
if (is_const) {
@@ -5173,7 +5219,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (tk.type == TK_OP_ASSIGN) {
if (is_const) {
- _set_error("Constants cannot be modified.");
+ _set_error(RTR("Constants cannot be modified."));
return nullptr;
}
assign_expression = _parse_array_constructor(p_block, p_function_info, data_type, struct_name, array_size);
@@ -5182,13 +5228,16 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
} else if (tk.type == TK_PERIOD) {
completion_class = TAG_ARRAY;
- p_block->block_tag = SubClassTag::TAG_ARRAY;
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_ARRAY;
+ }
call_expression = _parse_and_reduce_expression(p_block, p_function_info);
- p_block->block_tag = SubClassTag::TAG_GLOBAL;
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_GLOBAL;
+ }
if (!call_expression) {
return nullptr;
}
- data_type = call_expression->get_datatype();
} else if (tk.type == TK_BRACKET_OPEN) { // indexing
index_expression = _parse_and_reduce_expression(p_block, p_function_info);
if (!index_expression) {
@@ -5196,17 +5245,17 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (index_expression->get_array_size() != 0 || (index_expression->get_datatype() != TYPE_INT && index_expression->get_datatype() != TYPE_UINT)) {
- _set_error("Only integer expressions are allowed for indexing.");
+ _set_error(RTR("Only integer expressions are allowed for indexing."));
return nullptr;
}
if (index_expression->type == Node::TYPE_CONSTANT) {
- ConstantNode *cnode = (ConstantNode *)index_expression;
+ ConstantNode *cnode = static_cast<ConstantNode *>(index_expression);
if (cnode) {
if (!cnode->values.is_empty()) {
int value = cnode->values[0].sint;
if (value < 0 || value >= array_size) {
- _set_error(vformat("Index [%s] out of range [%s..%s]", value, 0, array_size - 1));
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), value, 0, array_size - 1));
return nullptr;
}
}
@@ -5215,7 +5264,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
tk = _get_token();
if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
+ _set_expected_error("]");
return nullptr;
}
} else {
@@ -5245,9 +5294,15 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
#ifdef DEBUG_ENABLED
if (check_warnings) {
StringName func_name;
+ BlockNode *b = p_block;
- if (p_block && p_block->parent_function) {
- func_name = p_block->parent_function->name;
+ while (b) {
+ if (b->parent_function) {
+ func_name = b->parent_function->name;
+ break;
+ } else {
+ b = b->parent_block;
+ }
}
_parse_used_identifier(identifier, ident_type, func_name);
@@ -5283,21 +5338,34 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
expression.push_back(e);
continue;
} else {
- if (tk.type != TK_SEMICOLON) {
- _set_error("Expected expression, found: " + get_token_text(tk));
- return nullptr;
- } else {
-#if DEBUG_ENABLED
- if (check_warnings && HAS_WARNING(ShaderWarning::FORMATTING_ERROR_FLAG)) {
- _add_line_warning(ShaderWarning::FORMATTING_ERROR, "Empty statement. Remove ';' to fix this warning.");
- }
-#endif // DEBUG_ENABLED
+ bool valid = false;
+ if (p_block && p_block->block_type == BlockNode::BLOCK_TYPE_FOR_EXPRESSION && tk.type == TK_PARENTHESIS_CLOSE) {
+ valid = true;
_set_tkpos(prepos);
OperatorNode *func = alloc_node<OperatorNode>();
func->op = OP_EMPTY;
expr = func;
}
+ if (!valid) {
+ if (tk.type != TK_SEMICOLON) {
+ _set_error(vformat(RTR("Expected expression, found: '%s'."), get_token_text(tk)));
+ return nullptr;
+ } else {
+#ifdef DEBUG_ENABLED
+ if (!p_block || (p_block->block_type != BlockNode::BLOCK_TYPE_FOR_INIT && p_block->block_type != BlockNode::BLOCK_TYPE_FOR_CONDITION)) {
+ if (check_warnings && HAS_WARNING(ShaderWarning::FORMATTING_ERROR_FLAG)) {
+ _add_line_warning(ShaderWarning::FORMATTING_ERROR, RTR("Empty statement. Remove ';' to fix this warning."));
+ }
+ }
+#endif // DEBUG_ENABLED
+ _set_tkpos(prepos);
+
+ OperatorNode *func = alloc_node<OperatorNode>();
+ func->op = OP_EMPTY;
+ expr = func;
+ }
+ }
}
ERR_FAIL_COND_V(!expr, nullptr);
@@ -5316,9 +5384,13 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (!expr->is_indexed() && expr->get_array_size() > 0) {
completion_class = TAG_ARRAY;
- p_block->block_tag = SubClassTag::TAG_ARRAY;
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_ARRAY;
+ }
Node *call_expression = _parse_and_reduce_expression(p_block, p_function_info);
- p_block->block_tag = SubClassTag::TAG_GLOBAL;
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_GLOBAL;
+ }
if (!call_expression) {
return nullptr;
}
@@ -5336,7 +5408,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (identifier == StringName()) {
- _set_error("Expected identifier as member");
+ _set_error(RTR("Expected an identifier as a member."));
return nullptr;
}
String ident = identifier;
@@ -5581,12 +5653,12 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (mix_error) {
- _set_error("Cannot combine symbols from different sets in expression ." + ident);
+ _set_error(vformat(RTR("Cannot combine symbols from different sets in expression '.%s'."), ident));
return nullptr;
}
if (!ok) {
- _set_error("Invalid member for " + (dt == TYPE_STRUCT ? st : get_datatype_name(dt)) + " expression: ." + ident);
+ _set_error(vformat(RTR("Invalid member for '%s' expression: '.%s'."), (dt == TYPE_STRUCT ? st : get_datatype_name(dt)), ident));
return nullptr;
}
@@ -5606,7 +5678,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
tk = _get_token();
if (tk.type == TK_OP_ASSIGN) {
if (last_type == IDENTIFIER_CONSTANT) {
- _set_error("Constants cannot be modified.");
+ _set_error(RTR("Constants cannot be modified."));
return nullptr;
}
Node *assign_expression = _parse_array_constructor(p_block, p_function_info, member_type, member_struct_name, array_size);
@@ -5616,14 +5688,16 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
mn->assign_expression = assign_expression;
} else if (tk.type == TK_PERIOD) {
completion_class = TAG_ARRAY;
- p_block->block_tag = SubClassTag::TAG_ARRAY;
- Node *call_expression = _parse_and_reduce_expression(p_block, p_function_info);
- p_block->block_tag = SubClassTag::TAG_GLOBAL;
- if (!call_expression) {
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_ARRAY;
+ }
+ mn->call_expression = _parse_and_reduce_expression(p_block, p_function_info);
+ if (p_block != nullptr) {
+ p_block->block_tag = SubClassTag::TAG_GLOBAL;
+ }
+ if (!mn->call_expression) {
return nullptr;
}
- mn->datatype = call_expression->get_datatype();
- mn->call_expression = call_expression;
} else if (tk.type == TK_BRACKET_OPEN) {
Node *index_expression = _parse_and_reduce_expression(p_block, p_function_info);
if (!index_expression) {
@@ -5631,17 +5705,17 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (index_expression->get_array_size() != 0 || (index_expression->get_datatype() != TYPE_INT && index_expression->get_datatype() != TYPE_UINT)) {
- _set_error("Only integer expressions are allowed for indexing.");
+ _set_error(RTR("Only integer expressions are allowed for indexing."));
return nullptr;
}
if (index_expression->type == Node::TYPE_CONSTANT) {
- ConstantNode *cnode = (ConstantNode *)index_expression;
+ ConstantNode *cnode = static_cast<ConstantNode *>(index_expression);
if (cnode) {
if (!cnode->values.is_empty()) {
int value = cnode->values[0].sint;
if (value < 0 || value >= array_size) {
- _set_error(vformat("Index [%s] out of range [%s..%s]", value, 0, array_size - 1));
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), value, 0, array_size - 1));
return nullptr;
}
}
@@ -5650,7 +5724,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
tk = _get_token();
if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
+ _set_expected_error("]");
return nullptr;
}
mn->index_expression = index_expression;
@@ -5677,7 +5751,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
if (index->get_array_size() != 0 || (index->get_datatype() != TYPE_INT && index->get_datatype() != TYPE_UINT)) {
- _set_error("Only integer expressions are allowed for indexing.");
+ _set_error(RTR("Only integer expressions are allowed for indexing."));
return nullptr;
}
@@ -5688,7 +5762,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (index->type == Node::TYPE_CONSTANT) {
uint32_t index_constant = static_cast<ConstantNode *>(index)->values[0].uint;
if (index_constant >= (uint32_t)expr->get_array_size()) {
- _set_error(vformat("Index [%s] out of range [%s..%s]", index_constant, 0, expr->get_array_size() - 1));
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), index_constant, 0, expr->get_array_size() - 1));
return nullptr;
}
}
@@ -5706,7 +5780,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (index->type == Node::TYPE_CONSTANT) {
uint32_t index_constant = static_cast<ConstantNode *>(index)->values[0].uint;
if (index_constant >= 2) {
- _set_error("Index out of range (0-1)");
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), index_constant, 0, 1));
return nullptr;
}
}
@@ -5740,7 +5814,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (index->type == Node::TYPE_CONSTANT) {
uint32_t index_constant = static_cast<ConstantNode *>(index)->values[0].uint;
if (index_constant >= 3) {
- _set_error("Index out of range (0-2)");
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), index_constant, 0, 2));
return nullptr;
}
}
@@ -5773,7 +5847,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
if (index->type == Node::TYPE_CONSTANT) {
uint32_t index_constant = static_cast<ConstantNode *>(index)->values[0].uint;
if (index_constant >= 4) {
- _set_error("Index out of range (0-3)");
+ _set_error(vformat(RTR("Index [%d] out of range [%d..%d]."), index_constant, 0, 3));
return nullptr;
}
}
@@ -5799,7 +5873,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
}
break;
default: {
- _set_error("Object of type '" + (expr->get_datatype() == TYPE_STRUCT ? expr->get_datatype_name() : get_datatype_name(expr->get_datatype())) + "' can't be indexed");
+ _set_error(vformat(RTR("An object of type '%s' can't be indexed."), (expr->get_datatype() == TYPE_STRUCT ? expr->get_datatype_name() : get_datatype_name(expr->get_datatype()))));
return nullptr;
}
}
@@ -5814,7 +5888,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
tk = _get_token();
if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']' after indexing expression");
+ _set_expected_error("]");
return nullptr;
}
@@ -5824,12 +5898,12 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
op->arguments.push_back(expr);
if (!_validate_operator(op, &op->return_cache, &op->return_array_size)) {
- _set_error("Invalid base type for increment/decrement operator");
+ _set_error(RTR("Invalid base type for increment/decrement operator."));
return nullptr;
}
if (!_validate_assign(expr, p_function_info)) {
- _set_error("Invalid use of increment/decrement operator in constant expression.");
+ _set_error(RTR("Invalid use of increment/decrement operator in a constant expression."));
return nullptr;
}
expr = op;
@@ -5946,7 +6020,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
o.op = OP_SELECT_ELSE;
break;
default: {
- _set_error("Invalid token for operator: " + get_token_text(tk));
+ _set_error(vformat(RTR("Invalid token for the operator: '%s'."), get_token_text(tk)));
return nullptr;
}
}
@@ -6098,7 +6172,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
ERR_FAIL_V(nullptr); //unexpected operator
}
-#if DEBUG_ENABLED
+#ifdef DEBUG_ENABLED
if (check_warnings && HAS_WARNING(ShaderWarning::FLOAT_COMPARISON_FLAG) && (op == OP_EQUAL || op == OP_NOT_EQUAL) &&
(!expression[i - 1].is_op && !expression[i + 1].is_op) &&
(expression[i - 1].node->get_datatype() == TYPE_FLOAT && expression[i + 1].node->get_datatype() == TYPE_FLOAT)) {
@@ -6125,7 +6199,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
expr_pos++;
if (expr_pos == expression.size()) {
//can happen..
- _set_error("Unexpected end of expression...");
+ _set_error(RTR("Unexpected end of expression."));
return nullptr;
}
}
@@ -6135,7 +6209,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
OperatorNode *op = alloc_node<OperatorNode>();
op->op = expression[i].op;
if ((op->op == OP_INCREMENT || op->op == OP_DECREMENT) && !_validate_assign(expression[i + 1].node, p_function_info)) {
- _set_error("Can't use increment/decrement operator in constant expression.");
+ _set_error(RTR("Can't use increment/decrement operator in a constant expression."));
return nullptr;
}
op->arguments.push_back(expression[i + 1].node);
@@ -6147,7 +6221,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
String at;
for (int j = 0; j < op->arguments.size(); j++) {
if (j > 0) {
- at += " and ";
+ at += ", ";
}
at += get_datatype_name(op->arguments[j]->get_datatype());
if (!op->arguments[j]->is_indexed() && op->arguments[j]->get_array_size() > 0) {
@@ -6156,7 +6230,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
at += "]";
}
}
- _set_error("Invalid arguments to unary operator '" + get_operator_text(op->op) + "' :" + at);
+ _set_error(vformat(RTR("Invalid arguments to unary operator '%s': %s."), get_operator_text(op->op), at));
return nullptr;
}
expression.remove_at(i + 1);
@@ -6164,12 +6238,12 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
} else if (is_ternary) {
if (next_op < 1 || next_op >= (expression.size() - 1)) {
- _set_error("Parser bug...");
+ _set_parsing_error();
ERR_FAIL_V(nullptr);
}
if (next_op + 2 >= expression.size() || !expression[next_op + 2].is_op || expression[next_op + 2].op != OP_SELECT_ELSE) {
- _set_error("Missing matching ':' for select operator");
+ _set_error(RTR("Missing matching ':' for select operator."));
return nullptr;
}
@@ -6185,7 +6259,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
String at;
for (int i = 0; i < op->arguments.size(); i++) {
if (i > 0) {
- at += " and ";
+ at += ", ";
}
at += get_datatype_name(op->arguments[i]->get_datatype());
if (!op->arguments[i]->is_indexed() && op->arguments[i]->get_array_size() > 0) {
@@ -6194,7 +6268,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
at += "]";
}
}
- _set_error("Invalid argument to ternary ?: operator: " + at);
+ _set_error(vformat(RTR("Invalid argument to ternary operator: '%s'."), at));
return nullptr;
}
@@ -6204,7 +6278,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
} else {
if (next_op < 1 || next_op >= (expression.size() - 1)) {
- _set_error("Parser bug...");
+ _set_parsing_error();
ERR_FAIL_V(nullptr);
}
@@ -6212,7 +6286,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
op->op = expression[next_op].op;
if (expression[next_op - 1].is_op) {
- _set_error("Parser bug...");
+ _set_parsing_error();
ERR_FAIL_V(nullptr);
}
@@ -6230,7 +6304,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
// can be followed by a unary op in a valid combination,
// due to how precedence works, unaries will always disappear first
- _set_error("Parser bug...");
+ _set_parsing_error();
}
op->arguments.push_back(expression[next_op - 1].node); //expression goes as left
@@ -6243,7 +6317,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
String at;
for (int i = 0; i < op->arguments.size(); i++) {
if (i > 0) {
- at += " and ";
+ at += ", ";
}
if (op->arguments[i]->get_datatype() == TYPE_STRUCT) {
at += op->arguments[i]->get_datatype_name();
@@ -6256,7 +6330,7 @@ ShaderLanguage::Node *ShaderLanguage::_parse_expression(BlockNode *p_block, cons
at += "]";
}
}
- _set_error("Invalid arguments to operator '" + get_operator_text(op->op) + "' :" + at);
+ _set_error(vformat(RTR("Invalid arguments to operator '%s': '%s'."), get_operator_text(op->op), at));
return nullptr;
}
@@ -6391,27 +6465,33 @@ ShaderLanguage::Node *ShaderLanguage::_parse_and_reduce_expression(BlockNode *p_
Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_function_info, bool p_just_one, bool p_can_break, bool p_can_continue) {
while (true) {
TkPos pos = _get_tkpos();
-
Token tk = _get_token();
+#ifdef DEBUG_ENABLED
+ Token next;
+#endif // DEBUG_ENABLED
if (p_block && p_block->block_type == BlockNode::BLOCK_TYPE_SWITCH) {
if (tk.type != TK_CF_CASE && tk.type != TK_CF_DEFAULT && tk.type != TK_CURLY_BRACKET_CLOSE) {
- _set_error("Switch may contains only case and default blocks");
+ _set_error(vformat(RTR("A switch may only contain '%s' and '%s' blocks."), "case", "default"));
return ERR_PARSE_ERROR;
}
}
bool is_struct = shader->structs.has(tk.text);
+ bool is_var_init = false;
+ bool is_condition = false;
if (tk.type == TK_CURLY_BRACKET_CLOSE) { //end of block
if (p_just_one) {
- _set_error("Unexpected '}'");
+ _set_expected_error("}");
return ERR_PARSE_ERROR;
}
return OK;
} else if (tk.type == TK_CONST || is_token_precision(tk.type) || is_token_nonvoid_datatype(tk.type) || is_struct) {
+ is_var_init = true;
+
String struct_name = "";
if (is_struct) {
struct_name = tk.text;
@@ -6421,6 +6501,16 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
#endif // DEBUG_ENABLED
}
+#ifdef DEBUG_ENABLED
+ uint32_t precision_flag = CF_PRECISION_MODIFIER;
+
+ keyword_completion_context = CF_DATATYPE;
+ if (!is_token_precision(tk.type)) {
+ if (!is_struct) {
+ keyword_completion_context |= precision_flag;
+ }
+ }
+#endif // DEBUG_ENABLED
bool is_const = false;
@@ -6442,19 +6532,35 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (!is_struct) {
is_struct = shader->structs.has(tk.text); // check again.
}
- if (is_struct && precision != PRECISION_DEFAULT) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
+
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & precision_flag) {
+ keyword_completion_context ^= precision_flag;
}
+#endif // DEBUG_ENABLED
+ }
+
+#ifdef DEBUG_ENABLED
+ if (is_const && _lookup_next(next)) {
+ if (is_token_precision(next.type)) {
+ keyword_completion_context = CF_UNSPECIFIED;
+ }
+ if (is_token_datatype(next.type)) {
+ keyword_completion_context ^= CF_DATATYPE;
+ }
+ }
+#endif // DEBUG_ENABLED
+
+ if (precision != PRECISION_DEFAULT) {
if (!is_token_nonvoid_datatype(tk.type)) {
- _set_error("Expected datatype after precision");
+ _set_error(RTR("Expected variable type after precision modifier."));
return ERR_PARSE_ERROR;
}
}
if (!is_struct) {
if (!is_token_variable_datatype(tk.type)) {
- _set_error("Invalid data type for variable (samplers not allowed)");
+ _set_error(RTR("Invalid variable type (samplers are not allowed)."));
return ERR_PARSE_ERROR;
}
}
@@ -6465,17 +6571,31 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
return ERR_PARSE_ERROR;
}
- Node *vardecl = nullptr;
+ if (precision != PRECISION_DEFAULT && _validate_precision(type, precision) != OK) {
+ return ERR_PARSE_ERROR;
+ }
+
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
+
int array_size = 0;
bool fixed_array_size = false;
bool first = true;
+ VariableDeclarationNode *vdnode = alloc_node<VariableDeclarationNode>();
+ vdnode->precision = precision;
+ if (is_struct) {
+ vdnode->struct_name = struct_name;
+ vdnode->datatype = TYPE_STRUCT;
+ } else {
+ vdnode->datatype = type;
+ };
+ vdnode->is_const = is_const;
+
do {
bool unknown_size = false;
- Node *size_expr = nullptr;
-
- ArrayDeclarationNode *anode = nullptr;
- ArrayDeclarationNode::Declaration adecl;
+ VariableDeclarationNode::Declaration decl;
tk = _get_token();
@@ -6483,17 +6603,16 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
first = false;
if (tk.type != TK_IDENTIFIER && tk.type != TK_BRACKET_OPEN) {
- _set_error("Expected identifier or '[' after datatype.");
+ _set_error(RTR("Expected an identifier or '[' after type."));
return ERR_PARSE_ERROR;
}
if (tk.type == TK_BRACKET_OPEN) {
- Error error = _parse_local_array_size(p_block, p_function_info, size_expr, array_size, unknown_size);
+ Error error = _parse_array_size(p_block, p_function_info, false, &decl.size_expression, &array_size, &unknown_size);
if (error != OK) {
return error;
}
- adecl.single_expression = false;
- adecl.size = array_size;
+ decl.size = array_size;
fixed_array_size = true;
tk = _get_token();
@@ -6501,7 +6620,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier!");
+ _set_error(RTR("Expected an identifier."));
return ERR_PARSE_ERROR;
}
@@ -6509,17 +6628,24 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
ShaderLanguage::IdentifierType itype;
if (_find_identifier(p_block, true, p_function_info, name, (ShaderLanguage::DataType *)nullptr, &itype)) {
if (itype != IDENTIFIER_FUNCTION) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
}
-
- adecl.name = name;
+ decl.name = name;
#ifdef DEBUG_ENABLED
- if (check_warnings && HAS_WARNING(ShaderWarning::UNUSED_LOCAL_VARIABLE_FLAG)) {
- if (p_block && p_block->parent_function) {
- StringName func_name = p_block->parent_function->name;
+ if (check_warnings && HAS_WARNING(ShaderWarning::UNUSED_LOCAL_VARIABLE_FLAG) && p_block) {
+ FunctionNode *parent_function = nullptr;
+ {
+ BlockNode *block = p_block;
+ while (block && !block->parent_function) {
+ block = block->parent_block;
+ }
+ parent_function = block->parent_function;
+ }
+ if (parent_function) {
+ StringName func_name = parent_function->name;
if (!used_local_vars.has(func_name)) {
used_local_vars.insert(func_name, Map<StringName, Usage>());
@@ -6540,55 +6666,33 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
- bool is_array_decl = var.array_size > 0 || unknown_size;
-
if (tk.type == TK_BRACKET_OPEN) {
- if (is_array_decl) {
- _set_error("Array size is already defined!");
- return ERR_PARSE_ERROR;
- }
-
if (RenderingServer::get_singleton()->is_low_end() && is_const) {
- _set_error("Local const arrays are supported only on high-end platform!");
+ _set_error(RTR("Local const arrays are only supported on high-end platforms."));
return ERR_PARSE_ERROR;
}
- Error error = _parse_local_array_size(p_block, p_function_info, size_expr, var.array_size, unknown_size);
+ Error error = _parse_array_size(p_block, p_function_info, false, &decl.size_expression, &var.array_size, &unknown_size);
if (error != OK) {
return error;
}
- adecl.single_expression = false;
- adecl.size = var.array_size;
+ decl.size = var.array_size;
array_size = var.array_size;
- is_array_decl = true;
tk = _get_token();
}
-
- if (is_array_decl) {
- {
- anode = alloc_node<ArrayDeclarationNode>();
-
- if (is_struct) {
- anode->struct_name = struct_name;
- anode->datatype = TYPE_STRUCT;
- } else {
- anode->datatype = type;
- }
-
- anode->precision = precision;
- anode->is_const = is_const;
- anode->size_expression = size_expr;
-
- vardecl = (Node *)anode;
- }
-
+#ifdef DEBUG_ENABLED
+ if (var.type == DataType::TYPE_BOOL) {
+ keyword_completion_context = CF_BOOLEAN;
+ }
+#endif // DEBUG_ENABLED
+ if (var.array_size > 0 || unknown_size) {
bool full_def = false;
if (tk.type == TK_OP_ASSIGN) {
if (RenderingServer::get_singleton()->is_low_end()) {
- _set_error("Array initialization is supported only on high-end platform!");
+ _set_error(RTR("Array initialization is only supported on high-end platforms."));
return ERR_PARSE_ERROR;
}
@@ -6600,11 +6704,11 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
Node *n = _parse_and_reduce_expression(p_block, p_function_info);
if (!n) {
- _set_error("Expected correct array initializer!");
+ _set_error(RTR("Expected array initializer."));
return ERR_PARSE_ERROR;
} else {
if (unknown_size) {
- adecl.size = n->get_array_size();
+ decl.size = n->get_array_size();
var.array_size = n->get_array_size();
}
@@ -6612,15 +6716,15 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
return ERR_PARSE_ERROR;
}
- adecl.single_expression = true;
- adecl.initializer.push_back(n);
+ decl.single_expression = true;
+ decl.initializer.push_back(n);
}
tk = _get_token();
} else {
if (tk.type != TK_CURLY_BRACKET_OPEN) {
if (unknown_size) {
- _set_error("Expected '{'");
+ _set_expected_error("{");
return ERR_PARSE_ERROR;
}
@@ -6630,12 +6734,8 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (is_token_precision(tk.type)) {
precision2 = get_token_precision(tk.type);
tk = _get_token();
- if (shader->structs.has(tk.text)) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
- }
if (!is_token_nonvoid_datatype(tk.type)) {
- _set_error("Expected datatype after precision");
+ _set_error(RTR("Expected data type after precision modifier."));
return ERR_PARSE_ERROR;
}
}
@@ -6648,83 +6748,64 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
struct_name2 = tk.text;
} else {
if (!is_token_variable_datatype(tk.type)) {
- _set_error("Invalid data type for array");
+ _set_error(RTR("Invalid data type for the array."));
return ERR_PARSE_ERROR;
}
type2 = get_token_datatype(tk.type);
}
+ if (precision2 != PRECISION_DEFAULT && _validate_precision(type2, precision2) != OK) {
+ return ERR_PARSE_ERROR;
+ }
+
int array_size2 = 0;
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- TkPos pos2 = _get_tkpos();
- tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
+ bool is_unknown_size = false;
+ Error error = _parse_array_size(p_block, p_function_info, false, nullptr, &array_size2, &is_unknown_size);
+ if (error != OK) {
+ return error;
+ }
+ if (is_unknown_size) {
array_size2 = var.array_size;
- tk = _get_token();
- } else {
- _set_tkpos(pos2);
-
- Node *n = _parse_and_reduce_expression(p_block, p_function_info);
- if (!n || n->type != Node::TYPE_CONSTANT || n->get_datatype() != TYPE_INT) {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
-
- ConstantNode *cnode = (ConstantNode *)n;
- if (cnode->values.size() == 1) {
- array_size2 = cnode->values[0].sint;
- if (array_size2 <= 0) {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
- } else {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
-
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- } else {
- tk = _get_token();
- }
}
+ tk = _get_token();
} else {
- _set_error("Expected '['");
+ _set_expected_error("[");
return ERR_PARSE_ERROR;
}
if (precision != precision2 || type != type2 || struct_name != struct_name2 || var.array_size != array_size2) {
- String error_str = "Cannot convert from '";
+ String from;
if (precision2 != PRECISION_DEFAULT) {
- error_str += get_precision_name(precision2);
- error_str += " ";
+ from += get_precision_name(precision2);
+ from += " ";
}
if (type2 == TYPE_STRUCT) {
- error_str += struct_name2;
+ from += struct_name2;
} else {
- error_str += get_datatype_name(type2);
+ from += get_datatype_name(type2);
}
- error_str += "[";
- error_str += itos(array_size2);
- error_str += "]'";
- error_str += " to '";
+ from += "[";
+ from += itos(array_size2);
+ from += "]'";
+
+ String to;
if (precision != PRECISION_DEFAULT) {
- error_str += get_precision_name(precision);
- error_str += " ";
+ to += get_precision_name(precision);
+ to += " ";
}
if (type == TYPE_STRUCT) {
- error_str += struct_name;
+ to += struct_name;
} else {
- error_str += get_datatype_name(type);
+ to += get_datatype_name(type);
}
- error_str += "[";
- error_str += itos(var.array_size);
- error_str += "]'";
- _set_error(error_str);
+ to += "[";
+ to += itos(var.array_size);
+ to += "]'";
+
+ _set_error(vformat(RTR("Cannot convert from '%s' to '%s'."), from, to));
return ERR_PARSE_ERROR;
}
}
@@ -6733,13 +6814,13 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (unknown_size) {
if (!curly) {
- _set_error("Expected '{'");
+ _set_expected_error("{");
return ERR_PARSE_ERROR;
}
} else {
if (full_def) {
if (curly) {
- _set_error("Expected '('");
+ _set_expected_error("(");
return ERR_PARSE_ERROR;
}
}
@@ -6752,8 +6833,8 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
return ERR_PARSE_ERROR;
}
- if (anode->is_const && n->type == Node::TYPE_OPERATOR && ((OperatorNode *)n)->op == OP_CALL) {
- _set_error("Expected constant expression");
+ if (is_const && n->type == Node::TYPE_OPERATOR && static_cast<OperatorNode *>(n)->op == OP_CALL) {
+ _set_error(RTR("Expected a constant expression."));
return ERR_PARSE_ERROR;
}
@@ -6763,28 +6844,28 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type == TK_COMMA) {
- adecl.initializer.push_back(n);
+ decl.initializer.push_back(n);
continue;
} else if (!curly && tk.type == TK_PARENTHESIS_CLOSE) {
- adecl.initializer.push_back(n);
+ decl.initializer.push_back(n);
break;
} else if (curly && tk.type == TK_CURLY_BRACKET_CLOSE) {
- adecl.initializer.push_back(n);
+ decl.initializer.push_back(n);
break;
} else {
if (curly) {
- _set_error("Expected '}' or ','");
+ _set_expected_error("}", ",");
} else {
- _set_error("Expected ')' or ','");
+ _set_expected_error(")", ",");
}
return ERR_PARSE_ERROR;
}
}
if (unknown_size) {
- adecl.size = adecl.initializer.size();
- var.array_size = adecl.initializer.size();
- } else if (adecl.initializer.size() != var.array_size) {
- _set_error("Array size mismatch");
+ decl.size = decl.initializer.size();
+ var.array_size = decl.initializer.size();
+ } else if (decl.initializer.size() != var.array_size) {
+ _set_error(RTR("Array size mismatch."));
return ERR_PARSE_ERROR;
}
tk = _get_token();
@@ -6792,48 +6873,31 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
} else {
if (unknown_size) {
- _set_error("Expected array initialization");
+ _set_error(RTR("Expected array initialization."));
return ERR_PARSE_ERROR;
}
- if (anode->is_const) {
- _set_error("Expected initialization of constant");
+ if (is_const) {
+ _set_error(RTR("Expected initialization of constant."));
return ERR_PARSE_ERROR;
}
}
array_size = var.array_size;
- anode->declarations.push_back(adecl);
} else if (tk.type == TK_OP_ASSIGN) {
- VariableDeclarationNode *node = alloc_node<VariableDeclarationNode>();
- if (is_struct) {
- node->struct_name = struct_name;
- node->datatype = TYPE_STRUCT;
- } else {
- node->datatype = type;
- }
- node->precision = precision;
- node->is_const = is_const;
- vardecl = (Node *)node;
-
- VariableDeclarationNode::Declaration decl;
- decl.name = name;
- decl.initializer = nullptr;
-
//variable created with assignment! must parse an expression
Node *n = _parse_and_reduce_expression(p_block, p_function_info);
if (!n) {
return ERR_PARSE_ERROR;
}
- if (node->is_const && n->type == Node::TYPE_OPERATOR && ((OperatorNode *)n)->op == OP_CALL) {
- OperatorNode *op = ((OperatorNode *)n);
+ if (is_const && n->type == Node::TYPE_OPERATOR && static_cast<OperatorNode *>(n)->op == OP_CALL) {
+ OperatorNode *op = static_cast<OperatorNode *>(n);
for (int i = 1; i < op->arguments.size(); i++) {
if (!_check_node_constness(op->arguments[i])) {
- _set_error("Expected constant expression for argument '" + itos(i - 1) + "' of function call after '='");
+ _set_error(vformat(RTR("Expected constant expression for argument %d of function call after '='."), i - 1));
return ERR_PARSE_ERROR;
}
}
}
- decl.initializer = n;
if (n->type == Node::TYPE_CONSTANT) {
ConstantNode *const_node = static_cast<ConstantNode *>(n);
@@ -6845,49 +6909,34 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (!_compare_datatypes(var.type, var.struct_name, var.array_size, n->get_datatype(), n->get_datatype_name(), n->get_array_size())) {
return ERR_PARSE_ERROR;
}
+
+ decl.initializer.push_back(n);
tk = _get_token();
- node->declarations.push_back(decl);
} else {
if (is_const) {
- _set_error("Expected initialization of constant");
+ _set_error(RTR("Expected initialization of constant."));
return ERR_PARSE_ERROR;
}
-
- VariableDeclarationNode *node = alloc_node<VariableDeclarationNode>();
- if (is_struct) {
- node->struct_name = struct_name;
- node->datatype = TYPE_STRUCT;
- } else {
- node->datatype = type;
- }
- node->precision = precision;
- vardecl = (Node *)node;
-
- VariableDeclarationNode::Declaration decl;
- decl.name = name;
- decl.initializer = nullptr;
- node->declarations.push_back(decl);
}
- p_block->statements.push_back(vardecl);
+ vdnode->declarations.push_back(decl);
p_block->variables[name] = var;
if (!fixed_array_size) {
array_size = 0;
}
- if (tk.type == TK_COMMA) {
- if (p_block->block_type == BlockNode::BLOCK_TYPE_FOR) {
- _set_error("Multiple declarations in 'for' loop are not implemented yet.");
- return ERR_PARSE_ERROR;
- }
- } else if (tk.type == TK_SEMICOLON) {
+ if (tk.type == TK_SEMICOLON) {
break;
- } else {
- _set_error("Expected ',' or ';' after variable");
+ } else if (tk.type != TK_COMMA) {
+ _set_expected_error(",", ";");
return ERR_PARSE_ERROR;
}
} while (tk.type == TK_COMMA); //another variable
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_BLOCK;
+#endif // DEBUG_ENABLED
+ p_block->statements.push_back(static_cast<Node *>(vdnode));
} else if (tk.type == TK_CURLY_BRACKET_OPEN) {
//a sub block, just because..
BlockNode *block = alloc_node<BlockNode>();
@@ -6900,25 +6949,31 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
//if () {}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after if");
+ _set_expected_after_error("(", "if");
return ERR_PARSE_ERROR;
}
ControlFlowNode *cf = alloc_node<ControlFlowNode>();
cf->flow_op = FLOW_OP_IF;
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_IF_DECL;
+#endif // DEBUG_ENABLED
Node *n = _parse_and_reduce_expression(p_block, p_function_info);
if (!n) {
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_BLOCK;
+#endif // DEBUG_ENABLED
if (n->get_datatype() != TYPE_BOOL) {
- _set_error("Expected boolean expression");
+ _set_error(RTR("Expected a boolean expression."));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')' after expression");
+ _set_expected_error(")");
return ERR_PARSE_ERROR;
}
@@ -6948,14 +7003,14 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
} else if (tk.type == TK_CF_SWITCH) {
if (RenderingServer::get_singleton()->is_low_end()) {
- _set_error("\"switch\" operator is supported only on high-end platform!");
+ _set_error(vformat(RTR("The '%s' operator is only supported on high-end platforms."), "switch"));
return ERR_PARSE_ERROR;
}
// switch() {}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after switch");
+ _set_expected_after_error("(", "switch");
return ERR_PARSE_ERROR;
}
ControlFlowNode *cf = alloc_node<ControlFlowNode>();
@@ -6965,17 +7020,17 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
return ERR_PARSE_ERROR;
}
if (n->get_datatype() != TYPE_INT) {
- _set_error("Expected integer expression");
+ _set_error(RTR("Expected an integer expression."));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')' after expression");
+ _set_expected_error(")");
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_CURLY_BRACKET_OPEN) {
- _set_error("Expected '{' after switch statement");
+ _set_expected_after_error("{", "switch");
return ERR_PARSE_ERROR;
}
BlockNode *switch_block = alloc_node<BlockNode>();
@@ -6996,10 +7051,10 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (tk.type == TK_CF_CASE || tk.type == TK_CF_DEFAULT) {
if (prev_type == TK_CF_DEFAULT) {
if (tk.type == TK_CF_CASE) {
- _set_error("Cases must be defined before default case.");
+ _set_error(RTR("Cases must be defined before default case."));
return ERR_PARSE_ERROR;
} else if (prev_type == TK_CF_DEFAULT) {
- _set_error("Default case must be defined only once.");
+ _set_error(RTR("Default case must be defined only once."));
return ERR_PARSE_ERROR;
}
}
@@ -7009,7 +7064,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
} else {
Set<int> constants;
for (int i = 0; i < switch_block->statements.size(); i++) { // Checks for duplicates.
- ControlFlowNode *flow = (ControlFlowNode *)switch_block->statements[i];
+ ControlFlowNode *flow = static_cast<ControlFlowNode *>(switch_block->statements[i]);
if (flow) {
if (flow->flow_op == FLOW_OP_CASE) {
if (flow->expressions[0]->type == Node::TYPE_CONSTANT) {
@@ -7018,7 +7073,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
return ERR_PARSE_ERROR;
}
if (constants.has(cn->values[0].sint)) {
- _set_error("Duplicated case label: '" + itos(cn->values[0].sint) + "'");
+ _set_error(vformat(RTR("Duplicated case label: %d."), cn->values[0].sint));
return ERR_PARSE_ERROR;
}
constants.insert(cn->values[0].sint);
@@ -7030,7 +7085,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
ConstantNode::Value v;
_find_identifier(p_block, false, p_function_info, vn->name, nullptr, nullptr, nullptr, nullptr, nullptr, &v);
if (constants.has(v.sint)) {
- _set_error("Duplicated case label: '" + itos(v.sint) + "'");
+ _set_error(vformat(RTR("Duplicated case label: %d."), v.sint));
return ERR_PARSE_ERROR;
}
constants.insert(v.sint);
@@ -7057,7 +7112,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
if (!p_block || (p_block->block_type != BlockNode::BLOCK_TYPE_SWITCH)) {
- _set_error("case must be placed within switch block");
+ _set_error(vformat(RTR("'%s' must be placed within a '%s' block."), "case", "switch"));
return ERR_PARSE_ERROR;
}
@@ -7086,7 +7141,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
}
if (!correct_constant_expression) {
- _set_error("Expected integer constant");
+ _set_error(RTR("Expected an integer constant."));
return ERR_PARSE_ERROR;
}
@@ -7110,7 +7165,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type != TK_COLON) {
- _set_error("Expected ':'");
+ _set_expected_error(":");
return ERR_PARSE_ERROR;
}
@@ -7138,14 +7193,14 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
if (!p_block || (p_block->block_type != BlockNode::BLOCK_TYPE_SWITCH)) {
- _set_error("default must be placed within switch block");
+ _set_error(vformat(RTR("'%s' must be placed within a '%s' block."), "default", "switch"));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_COLON) {
- _set_error("Expected ':'");
+ _set_expected_error(":");
return ERR_PARSE_ERROR;
}
@@ -7182,14 +7237,14 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type != TK_CF_WHILE) {
- _set_error("Expected while after do");
+ _set_expected_after_error("while", "do");
return ERR_PARSE_ERROR;
}
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after while");
+ _set_expected_after_error("(", "while");
return ERR_PARSE_ERROR;
}
@@ -7206,7 +7261,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')' after expression");
+ _set_expected_error(")");
return ERR_PARSE_ERROR;
}
if (!is_do) {
@@ -7227,7 +7282,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';'");
+ _set_expected_error(";");
return ERR_PARSE_ERROR;
}
}
@@ -7235,7 +7290,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
// for() {}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after for");
+ _set_expected_after_error("(", "for");
return ERR_PARSE_ERROR;
}
@@ -7243,43 +7298,42 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
cf->flow_op = FLOW_OP_FOR;
BlockNode *init_block = alloc_node<BlockNode>();
- init_block->block_type = BlockNode::BLOCK_TYPE_FOR;
+ init_block->block_type = BlockNode::BLOCK_TYPE_FOR_INIT;
init_block->parent_block = p_block;
init_block->single_statement = true;
cf->blocks.push_back(init_block);
- if (_parse_block(init_block, p_function_info, true, false, false) != OK) {
- return ERR_PARSE_ERROR;
- }
-
- Node *n = _parse_and_reduce_expression(init_block, p_function_info);
- if (!n) {
- return ERR_PARSE_ERROR;
- }
- if (n->get_datatype() != TYPE_BOOL) {
- _set_error("Middle expression is expected to be boolean.");
- return ERR_PARSE_ERROR;
- }
-
- tk = _get_token();
- if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';' after middle expression");
- return ERR_PARSE_ERROR;
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_DATATYPE;
+#endif // DEBUG_ENABLED
+ Error err = _parse_block(init_block, p_function_info, true, false, false);
+ if (err != OK) {
+ return err;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
- cf->expressions.push_back(n);
-
- n = _parse_and_reduce_expression(init_block, p_function_info);
- if (!n) {
- return ERR_PARSE_ERROR;
+ BlockNode *condition_block = alloc_node<BlockNode>();
+ condition_block->block_type = BlockNode::BLOCK_TYPE_FOR_CONDITION;
+ condition_block->parent_block = init_block;
+ condition_block->single_statement = true;
+ condition_block->use_comma_between_statements = true;
+ cf->blocks.push_back(condition_block);
+ err = _parse_block(condition_block, p_function_info, true, false, false);
+ if (err != OK) {
+ return err;
}
- cf->expressions.push_back(n);
-
- tk = _get_token();
- if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')' after third expression");
- return ERR_PARSE_ERROR;
+ BlockNode *expression_block = alloc_node<BlockNode>();
+ expression_block->block_type = BlockNode::BLOCK_TYPE_FOR_EXPRESSION;
+ expression_block->parent_block = init_block;
+ expression_block->single_statement = true;
+ expression_block->use_comma_between_statements = true;
+ cf->blocks.push_back(expression_block);
+ err = _parse_block(expression_block, p_function_info, true, false, false);
+ if (err != OK) {
+ return err;
}
BlockNode *block = alloc_node<BlockNode>();
@@ -7287,8 +7341,11 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
cf->blocks.push_back(block);
p_block->statements.push_back(cf);
- Error err = _parse_block(block, p_function_info, true, true, true);
- if (err) {
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_BLOCK;
+#endif // DEBUG_ENABLED
+ err = _parse_block(block, p_function_info, true, true, true);
+ if (err != OK) {
return err;
}
@@ -7301,12 +7358,12 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
}
if (!b) {
- _set_error("Bug");
+ _set_parsing_error();
return ERR_BUG;
}
if (b && b->parent_function && p_function_info.main_function) {
- _set_error(vformat("Using 'return' in '%s' processor function results in undefined behavior!", b->parent_function->name));
+ _set_error(vformat(RTR("Using '%s' in the '%s' processor function is incorrect."), "return", b->parent_function->name));
return ERR_PARSE_ERROR;
}
@@ -7325,28 +7382,40 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (tk.type == TK_SEMICOLON) {
//all is good
if (b->parent_function->return_type != TYPE_VOID) {
- _set_error("Expected return with an expression of type '" + (!return_struct_name.is_empty() ? return_struct_name : get_datatype_name(b->parent_function->return_type)) + array_size_string + "'");
+ _set_error(vformat(RTR("Expected '%s' with an expression of type '%s'."), "return", (!return_struct_name.is_empty() ? return_struct_name : get_datatype_name(b->parent_function->return_type)) + array_size_string));
return ERR_PARSE_ERROR;
}
} else {
_set_tkpos(pos); //rollback, wants expression
+#ifdef DEBUG_ENABLED
+ if (b->parent_function->return_type == DataType::TYPE_BOOL) {
+ keyword_completion_context = CF_BOOLEAN;
+ }
+#endif // DEBUG_ENABLED
+
Node *expr = _parse_and_reduce_expression(p_block, p_function_info);
if (!expr) {
return ERR_PARSE_ERROR;
}
if (b->parent_function->return_type != expr->get_datatype() || b->parent_function->return_array_size != expr->get_array_size() || return_struct_name != expr->get_datatype_name()) {
- _set_error("Expected return with an expression of type '" + (!return_struct_name.is_empty() ? return_struct_name : get_datatype_name(b->parent_function->return_type)) + array_size_string + "'");
+ _set_error(vformat(RTR("Expected return with an expression of type '%s'."), (!return_struct_name.is_empty() ? return_struct_name : get_datatype_name(b->parent_function->return_type)) + array_size_string));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';' after return expression");
+ _set_expected_after_error(";", "return");
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ if (b->parent_function->return_type == DataType::TYPE_BOOL) {
+ keyword_completion_context = CF_BLOCK;
+ }
+#endif // DEBUG_ENABLED
+
flow->expressions.push_back(expr);
}
@@ -7366,12 +7435,12 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
b = b->parent_block;
}
if (!b) {
- _set_error("Bug");
+ _set_parsing_error();
return ERR_BUG;
}
if (!b->parent_function->can_discard) {
- _set_error("Use of 'discard' is not allowed here.");
+ _set_error(vformat(RTR("Use of '%s' is not allowed here."), "discard"));
return ERR_PARSE_ERROR;
}
@@ -7381,14 +7450,14 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
pos = _get_tkpos();
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';' after discard");
+ _set_expected_after_error(";", "discard");
return ERR_PARSE_ERROR;
}
p_block->statements.push_back(flow);
} else if (tk.type == TK_CF_BREAK) {
if (!p_can_break) {
- _set_error("'break' is not allowed outside of a loop or 'switch' statement");
+ _set_error(vformat(RTR("'%s' is not allowed outside of a loop or '%s' statement."), "break", "switch"));
return ERR_PARSE_ERROR;
}
@@ -7398,7 +7467,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
pos = _get_tkpos();
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';' after break");
+ _set_expected_after_error(";", "break");
return ERR_PARSE_ERROR;
}
@@ -7414,7 +7483,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
} else if (tk.type == TK_CF_CONTINUE) {
if (!p_can_continue) {
- _set_error("'continue' is not allowed outside of a loop");
+ _set_error(vformat(RTR("'%s' is not allowed outside of a loop."), "continue"));
return ERR_PARSE_ERROR;
}
@@ -7425,7 +7494,7 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
//all is good
- _set_error("Expected ';' after continue");
+ _set_expected_after_error(";", "continue");
return ERR_PARSE_ERROR;
}
@@ -7438,11 +7507,52 @@ Error ShaderLanguage::_parse_block(BlockNode *p_block, const FunctionInfo &p_fun
if (!expr) {
return ERR_PARSE_ERROR;
}
+ is_condition = expr->type == Node::TYPE_OPERATOR && expr->get_datatype() == TYPE_BOOL;
+
+ if (expr->type == Node::TYPE_OPERATOR) {
+ OperatorNode *op = static_cast<OperatorNode *>(expr);
+ if (op->op == OP_EMPTY) {
+ is_var_init = true;
+ is_condition = true;
+ }
+ }
+
p_block->statements.push_back(expr);
tk = _get_token();
- if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';' after statement");
+ if (p_block->block_type == BlockNode::BLOCK_TYPE_FOR_CONDITION) {
+ if (tk.type == TK_COMMA) {
+ if (!is_condition) {
+ _set_error(RTR("The middle expression is expected to be a boolean operator."));
+ return ERR_PARSE_ERROR;
+ }
+ continue;
+ }
+ if (tk.type != TK_SEMICOLON) {
+ _set_expected_error(",", ";");
+ return ERR_PARSE_ERROR;
+ }
+ } else if (p_block->block_type == BlockNode::BLOCK_TYPE_FOR_EXPRESSION) {
+ if (tk.type == TK_COMMA) {
+ continue;
+ }
+ if (tk.type != TK_PARENTHESIS_CLOSE) {
+ _set_expected_error(",", ")");
+ return ERR_PARSE_ERROR;
+ }
+ } else if (tk.type != TK_SEMICOLON) {
+ _set_expected_error(";");
+ return ERR_PARSE_ERROR;
+ }
+ }
+
+ if (p_block) {
+ if (p_block->block_type == BlockNode::BLOCK_TYPE_FOR_INIT && !is_var_init) {
+ _set_error(RTR("The left expression is expected to be a variable declaration."));
+ return ERR_PARSE_ERROR;
+ }
+ if (p_block->block_type == BlockNode::BLOCK_TYPE_FOR_CONDITION && !is_condition) {
+ _set_error(RTR("The middle expression is expected to be a boolean operator."));
return ERR_PARSE_ERROR;
}
}
@@ -7481,6 +7591,25 @@ String ShaderLanguage::_get_qualifier_str(ArgumentQualifier p_qualifier) const {
return "";
}
+Error ShaderLanguage::_validate_precision(DataType p_type, DataPrecision p_precision) {
+ switch (p_type) {
+ case TYPE_STRUCT: {
+ _set_error(RTR("The precision modifier cannot be used on structs."));
+ return FAILED;
+ } break;
+ case TYPE_BOOL:
+ case TYPE_BVEC2:
+ case TYPE_BVEC3:
+ case TYPE_BVEC4: {
+ _set_error(RTR("The precision modifier cannot be used on boolean types."));
+ return FAILED;
+ } break;
+ default:
+ break;
+ }
+ return OK;
+}
+
Error ShaderLanguage::_validate_datatype(DataType p_type) {
if (RenderingServer::get_singleton()->is_low_end()) {
bool invalid_type = false;
@@ -7503,7 +7632,7 @@ Error ShaderLanguage::_validate_datatype(DataType p_type) {
}
if (invalid_type) {
- _set_error(vformat("\"%s\" type is supported only on high-end platform!", get_datatype_name(p_type)));
+ _set_error(vformat(RTR("The \"%s\" type is only supported on high-end platforms."), get_datatype_name(p_type)));
return ERR_UNAVAILABLE;
}
}
@@ -7513,25 +7642,23 @@ Error ShaderLanguage::_validate_datatype(DataType p_type) {
Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_functions, const Vector<ModeInfo> &p_render_modes, const Set<String> &p_shader_types) {
Token tk = _get_token();
TkPos prev_pos;
+ Token next;
if (tk.type != TK_SHADER_TYPE) {
- _set_error("Expected 'shader_type' at the beginning of shader. Valid types are: " + _get_shader_type_list(p_shader_types));
+ _set_error(vformat(RTR("Expected '%s' at the beginning of shader. Valid types are: %s."), "shader_type", _get_shader_type_list(p_shader_types)));
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
- tk = _get_token();
-
- if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier after 'shader_type', indicating type of shader. Valid types are: " + _get_shader_type_list(p_shader_types));
+ _get_completable_identifier(nullptr, COMPLETION_SHADER_TYPE, shader_type_identifier);
+ if (shader_type_identifier == StringName()) {
+ _set_error(vformat(RTR("Expected an identifier after '%s', indicating the type of shader. Valid types are: %s."), "shader_type", _get_shader_type_list(p_shader_types)));
return ERR_PARSE_ERROR;
}
-
- String shader_type_identifier;
-
- shader_type_identifier = tk.text;
-
if (!p_shader_types.has(shader_type_identifier)) {
- _set_error("Invalid shader type. Valid types are: " + _get_shader_type_list(p_shader_types));
+ _set_error(vformat(RTR("Invalid shader type. Valid types are: %s"), _get_shader_type_list(p_shader_types)));
return ERR_PARSE_ERROR;
}
prev_pos = _get_tkpos();
@@ -7539,16 +7666,34 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (tk.type != TK_SEMICOLON) {
_set_tkpos(prev_pos);
- _set_error("Expected ';' after 'shader_type <type>'.");
+ _set_expected_after_error(";", "shader_type " + String(shader_type_identifier));
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_GLOBAL_SPACE;
+#endif // DEBUG_ENABLED
tk = _get_token();
int texture_uniforms = 0;
int texture_binding = 0;
int uniforms = 0;
int instance_index = 0;
+#ifdef DEBUG_ENABLED
+ uint64_t uniform_buffer_size = 0;
+ uint64_t max_uniform_buffer_size = 0;
+ int uniform_buffer_exceeded_line = -1;
+
+ bool check_device_limit_warnings = false;
+ {
+ RenderingDevice *device = RenderingDevice::get_singleton();
+ if (device != nullptr) {
+ check_device_limit_warnings = check_warnings && HAS_WARNING(ShaderWarning::DEVICE_LIMIT_EXCEEDED_FLAG);
+
+ max_uniform_buffer_size = device->limit_get(RenderingDevice::LIMIT_MAX_UNIFORM_BUFFER_SIZE);
+ }
+ }
+#endif // DEBUG_ENABLED
ShaderNode::Uniform::Scope uniform_scope = ShaderNode::Uniform::SCOPE_LOCAL;
stages = &p_functions;
@@ -7564,14 +7709,14 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
_get_completable_identifier(nullptr, COMPLETION_RENDER_MODE, mode);
if (mode == StringName()) {
- _set_error("Expected identifier for render mode");
+ _set_error(RTR("Expected an identifier for render mode."));
return ERR_PARSE_ERROR;
}
const String smode = String(mode);
- if (shader->render_modes.find(mode) != -1) {
- _set_error(vformat("Duplicated render mode: '%s'.", smode));
+ if (shader->render_modes.has(mode)) {
+ _set_error(vformat(RTR("Duplicated render mode: '%s'."), smode));
return ERR_PARSE_ERROR;
}
@@ -7583,11 +7728,11 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (smode.begins_with(name)) {
if (!info.options.is_empty()) {
- if (info.options.find(smode.substr(name.length() + 1)) != -1) {
+ if (info.options.has(smode.substr(name.length() + 1))) {
found = true;
if (defined_modes.has(name)) {
- _set_error(vformat("Redefinition of render mode: '%s'. The %s mode has already been set to '%s'.", smode, name, defined_modes[name]));
+ _set_error(vformat(RTR("Redefinition of render mode: '%s'. The '%s' mode has already been set to '%s'."), smode, name, defined_modes[name]));
return ERR_PARSE_ERROR;
}
defined_modes.insert(name, smode);
@@ -7601,7 +7746,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (!found) {
- _set_error(vformat("Invalid render mode: '%s'.", smode));
+ _set_error(vformat(RTR("Invalid render mode: '%s'."), smode));
return ERR_PARSE_ERROR;
}
@@ -7613,7 +7758,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
} else if (tk.type == TK_SEMICOLON) {
break; //done
} else {
- _set_error("Unexpected token: " + get_token_text(tk));
+ _set_error(vformat(RTR("Unexpected token: '%s'."), get_token_text(tk)));
return ERR_PARSE_ERROR;
}
}
@@ -7621,21 +7766,23 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
case TK_STRUCT: {
ShaderNode::Struct st;
DataType type;
-
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
tk = _get_token();
if (tk.type == TK_IDENTIFIER) {
st.name = tk.text;
if (shader->constants.has(st.name) || shader->structs.has(st.name)) {
- _set_error("Redefinition of '" + String(st.name) + "'");
+ _set_redefinition_error(String(st.name));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_CURLY_BRACKET_OPEN) {
- _set_error("Expected '{'");
+ _set_expected_error("{");
return ERR_PARSE_ERROR;
}
} else {
- _set_error("Expected struct identifier!");
+ _set_error(RTR("Expected a struct identifier."));
return ERR_PARSE_ERROR;
}
@@ -7644,25 +7791,31 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
int member_count = 0;
Set<String> member_names;
+
while (true) { // variables list
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_DATATYPE | CF_PRECISION_MODIFIER;
+#endif // DEBUG_ENABLED
+
tk = _get_token();
if (tk.type == TK_CURLY_BRACKET_CLOSE) {
break;
}
StringName struct_name = "";
bool struct_dt = false;
- bool use_precision = false;
- DataPrecision precision = DataPrecision::PRECISION_DEFAULT;
+ DataPrecision precision = PRECISION_DEFAULT;
if (tk.type == TK_STRUCT) {
- _set_error("nested structs are not allowed!");
+ _set_error(RTR("Nested structs are not allowed."));
return ERR_PARSE_ERROR;
}
if (is_token_precision(tk.type)) {
precision = get_token_precision(tk.type);
- use_precision = true;
tk = _get_token();
+#ifdef DEBUG_ENABLED
+ keyword_completion_context ^= CF_PRECISION_MODIFIER;
+#endif // DEBUG_ENABLED
}
if (shader->structs.has(tk.text)) {
@@ -7673,25 +7826,25 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
#endif // DEBUG_ENABLED
struct_dt = true;
- if (use_precision) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
- }
}
if (!is_token_datatype(tk.type) && !struct_dt) {
- _set_error("Expected datatype.");
+ _set_error(RTR("Expected data type."));
return ERR_PARSE_ERROR;
} else {
type = struct_dt ? TYPE_STRUCT : get_token_datatype(tk.type);
- if (is_sampler_type(type)) {
- _set_error("sampler datatype not allowed here");
+ if (precision != PRECISION_DEFAULT && _validate_precision(type, precision) != OK) {
return ERR_PARSE_ERROR;
- } else if (type == TYPE_VOID) {
- _set_error("void datatype not allowed here");
+ }
+
+ if (type == TYPE_VOID || is_sampler_type(type)) {
+ _set_error(vformat(RTR("A '%s' data type is not allowed here."), get_datatype_name(type)));
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
bool first = true;
bool fixed_array_size = false;
@@ -7704,12 +7857,12 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
first = false;
if (tk.type != TK_IDENTIFIER && tk.type != TK_BRACKET_OPEN) {
- _set_error("Expected identifier or '['.");
+ _set_error(RTR("Expected an identifier or '['."));
return ERR_PARSE_ERROR;
}
if (tk.type == TK_BRACKET_OPEN) {
- Error error = _parse_global_array_size(array_size, constants);
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &array_size, nullptr);
if (error != OK) {
return error;
}
@@ -7719,7 +7872,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier!");
+ _set_error(RTR("Expected an identifier."));
return ERR_PARSE_ERROR;
}
@@ -7731,14 +7884,14 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
member->array_size = array_size;
if (member_names.has(member->name)) {
- _set_error("Redefinition of '" + String(member->name) + "'");
+ _set_redefinition_error(String(member->name));
return ERR_PARSE_ERROR;
}
member_names.insert(member->name);
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- Error error = _parse_global_array_size(member->array_size, constants);
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &member->array_size, nullptr);
if (error != OK) {
return error;
}
@@ -7750,7 +7903,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_SEMICOLON && tk.type != TK_COMMA) {
- _set_error("Expected ',' or ';' after struct member.");
+ _set_expected_error(",", ";");
return ERR_PARSE_ERROR;
}
@@ -7760,15 +7913,22 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
}
if (member_count == 0) {
- _set_error("Empty structs are not allowed!");
+ _set_error(RTR("Empty structs are not allowed."));
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
tk = _get_token();
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';'");
+ _set_expected_error(";");
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_GLOBAL_SPACE;
+#endif // DEBUG_ENABLED
+
shader->structs[st.name] = st;
shader->vstructs.push_back(st); // struct's order is important!
#ifdef DEBUG_ENABLED
@@ -7778,19 +7938,35 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
#endif // DEBUG_ENABLED
} break;
case TK_GLOBAL: {
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNIFORM_KEYWORD;
+ if (_lookup_next(next)) {
+ if (next.type == TK_UNIFORM) {
+ keyword_completion_context ^= CF_UNIFORM_KEYWORD;
+ }
+ }
+#endif // DEBUG_ENABLED
tk = _get_token();
if (tk.type != TK_UNIFORM) {
- _set_error("Expected 'uniform' after 'global'");
+ _set_expected_after_error("uniform", "global");
return ERR_PARSE_ERROR;
}
uniform_scope = ShaderNode::Uniform::SCOPE_GLOBAL;
};
[[fallthrough]];
case TK_INSTANCE: {
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNIFORM_KEYWORD;
+ if (_lookup_next(next)) {
+ if (next.type == TK_UNIFORM) {
+ keyword_completion_context ^= CF_UNIFORM_KEYWORD;
+ }
+ }
+#endif // DEBUG_ENABLED
if (uniform_scope == ShaderNode::Uniform::SCOPE_LOCAL) {
tk = _get_token();
if (tk.type != TK_UNIFORM) {
- _set_error("Expected 'uniform' after 'instance'");
+ _set_expected_after_error("uniform", "instance");
return ERR_PARSE_ERROR;
}
uniform_scope = ShaderNode::Uniform::SCOPE_INSTANCE;
@@ -7800,15 +7976,15 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
case TK_UNIFORM:
case TK_VARYING: {
bool uniform = tk.type == TK_UNIFORM;
-
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
if (!uniform) {
if (shader_type_identifier == "particles" || shader_type_identifier == "sky" || shader_type_identifier == "fog") {
- _set_error(vformat("Varyings cannot be used in '%s' shaders!", shader_type_identifier));
+ _set_error(vformat(RTR("Varyings cannot be used in '%s' shaders."), shader_type_identifier));
return ERR_PARSE_ERROR;
}
}
-
- bool precision_defined = false;
DataPrecision precision = PRECISION_DEFAULT;
DataInterpolation interpolation = INTERPOLATION_SMOOTH;
DataType type;
@@ -7816,61 +7992,126 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
int array_size = 0;
tk = _get_token();
+#ifdef DEBUG_ENABLED
+ bool temp_error = false;
+ uint32_t datatype_flag;
+
+ if (!uniform) {
+ datatype_flag = CF_VARYING_TYPE;
+ keyword_completion_context = CF_INTERPOLATION_QUALIFIER | CF_PRECISION_MODIFIER | datatype_flag;
+
+ if (_lookup_next(next)) {
+ if (is_token_interpolation(next.type)) {
+ keyword_completion_context ^= (CF_INTERPOLATION_QUALIFIER | datatype_flag);
+ } else if (is_token_precision(next.type)) {
+ keyword_completion_context ^= (CF_PRECISION_MODIFIER | datatype_flag);
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context ^= datatype_flag;
+ }
+ }
+ } else {
+ datatype_flag = CF_UNIFORM_TYPE;
+ keyword_completion_context = CF_PRECISION_MODIFIER | datatype_flag;
+
+ if (_lookup_next(next)) {
+ if (is_token_precision(next.type)) {
+ keyword_completion_context ^= (CF_PRECISION_MODIFIER | datatype_flag);
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context ^= datatype_flag;
+ }
+ }
+ }
+#endif // DEBUG_ENABLED
+
if (is_token_interpolation(tk.type)) {
if (uniform) {
- _set_error("Interpolation qualifiers are not supported for uniforms!");
+ _set_error(RTR("Interpolation qualifiers are not supported for uniforms."));
+#ifdef DEBUG_ENABLED
+ temp_error = true;
+#else
return ERR_PARSE_ERROR;
+#endif // DEBUG_ENABLED
}
interpolation = get_token_interpolation(tk.type);
tk = _get_token();
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & CF_INTERPOLATION_QUALIFIER) {
+ keyword_completion_context ^= CF_INTERPOLATION_QUALIFIER;
+ }
+ if (_lookup_next(next)) {
+ if (is_token_precision(next.type)) {
+ keyword_completion_context ^= CF_PRECISION_MODIFIER;
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context ^= datatype_flag;
+ }
+ }
+ if (temp_error) {
+ return ERR_PARSE_ERROR;
+ }
+#endif // DEBUG_ENABLED
}
if (is_token_precision(tk.type)) {
precision = get_token_precision(tk.type);
- precision_defined = true;
tk = _get_token();
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & CF_INTERPOLATION_QUALIFIER) {
+ keyword_completion_context ^= CF_INTERPOLATION_QUALIFIER;
+ }
+ if (keyword_completion_context & CF_PRECISION_MODIFIER) {
+ keyword_completion_context ^= CF_PRECISION_MODIFIER;
+ }
+ if (_lookup_next(next)) {
+ if (is_token_datatype(next.type)) {
+ keyword_completion_context = CF_UNSPECIFIED;
+ }
+ }
+#endif // DEBUG_ENABLED
}
if (shader->structs.has(tk.text)) {
if (uniform) {
- if (precision_defined) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
- }
- _set_error("struct datatype is not yet supported for uniforms!");
+ _set_error(vformat(RTR("The '%s' data type is not supported for uniforms."), "struct"));
return ERR_PARSE_ERROR;
} else {
- _set_error("struct datatype not allowed here");
+ _set_error(vformat(RTR("The '%s' data type not allowed here."), "struct"));
return ERR_PARSE_ERROR;
}
}
if (!is_token_datatype(tk.type)) {
- _set_error("Expected datatype. ");
+ _set_error(RTR("Expected data type."));
return ERR_PARSE_ERROR;
}
type = get_token_datatype(tk.type);
+ if (precision != PRECISION_DEFAULT && _validate_precision(type, precision) != OK) {
+ return ERR_PARSE_ERROR;
+ }
+
if (type == TYPE_VOID) {
- _set_error("void datatype not allowed here");
+ _set_error(vformat(RTR("The '%s' data type is not allowed here."), "void"));
return ERR_PARSE_ERROR;
}
if (!uniform && (type < TYPE_FLOAT || type > TYPE_MAT4)) {
- _set_error("Invalid type for varying, only float,vec2,vec3,vec4,mat2,mat3,mat4 or array of these types allowed.");
+ _set_error(RTR("Invalid type for varying, only 'float', 'vec2', 'vec3', 'vec4', 'mat2', 'mat3', 'mat4', or arrays of these types are allowed."));
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
tk = _get_token();
if (tk.type != TK_IDENTIFIER && tk.type != TK_BRACKET_OPEN) {
- _set_error("Expected identifier or '['.");
+ _set_error(RTR("Expected an identifier or '['."));
return ERR_PARSE_ERROR;
}
if (tk.type == TK_BRACKET_OPEN) {
- Error error = _parse_global_array_size(array_size, constants);
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &array_size, nullptr);
if (error != OK) {
return error;
}
@@ -7878,7 +8119,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier!");
+ _set_error(RTR("Expected an identifier."));
return ERR_PARSE_ERROR;
}
@@ -7886,26 +8127,26 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
name = tk.text;
if (_find_identifier(nullptr, false, constants, name)) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
if (has_builtin(p_functions, name)) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
if (uniform) {
- if (uniform_scope == ShaderNode::Uniform::SCOPE_GLOBAL) {
+ if (uniform_scope == ShaderNode::Uniform::SCOPE_GLOBAL && Engine::get_singleton()->is_editor_hint()) { // Type checking for global uniforms is not allowed outside the editor.
//validate global uniform
DataType gvtype = global_var_get_type_func(name);
if (gvtype == TYPE_MAX) {
- _set_error("Global uniform '" + String(name) + "' does not exist. Create it in Project Settings.");
+ _set_error(vformat(RTR("Global uniform '%s' does not exist. Create it in Project Settings."), String(name)));
return ERR_PARSE_ERROR;
}
if (type != gvtype) {
- _set_error("Global uniform '" + String(name) + "' must be of type '" + get_datatype_name(gvtype) + "'.");
+ _set_error(vformat(RTR("Global uniform '%s' must be of type '%s'."), String(name), get_datatype_name(gvtype)));
return ERR_PARSE_ERROR;
}
}
@@ -7918,7 +8159,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- Error error = _parse_global_array_size(uniform2.array_size, constants);
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &uniform2.array_size, nullptr);
if (error != OK) {
return error;
}
@@ -7927,7 +8168,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (is_sampler_type(type)) {
if (uniform_scope == ShaderNode::Uniform::SCOPE_INSTANCE) {
- _set_error("Uniforms with 'instance' qualifiers can't be of sampler type.");
+ _set_error(vformat(RTR("The '%s' qualifier is not supported for sampler types."), "SCOPE_INSTANCE"));
return ERR_PARSE_ERROR;
}
uniform2.texture_order = texture_uniforms++;
@@ -7943,22 +8184,40 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
} else {
if (uniform_scope == ShaderNode::Uniform::SCOPE_INSTANCE && (type == TYPE_MAT2 || type == TYPE_MAT3 || type == TYPE_MAT4)) {
- _set_error("Uniforms with 'instance' qualifiers can't be of matrix type.");
+ _set_error(vformat(RTR("The '%s' qualifier is not supported for matrix types."), "SCOPE_INSTANCE"));
return ERR_PARSE_ERROR;
}
uniform2.texture_order = -1;
if (uniform_scope != ShaderNode::Uniform::SCOPE_INSTANCE) {
uniform2.order = uniforms++;
+#ifdef DEBUG_ENABLED
+ if (check_device_limit_warnings) {
+ if (uniform2.array_size > 0) {
+ int size = get_datatype_size(uniform2.type) * uniform2.array_size;
+ int m = (16 * uniform2.array_size);
+ if ((size % m) != 0U) {
+ size += m - (size % m);
+ }
+ uniform_buffer_size += size;
+ } else {
+ uniform_buffer_size += get_datatype_size(uniform2.type);
+ }
+
+ if (uniform_buffer_exceeded_line == -1 && uniform_buffer_size > max_uniform_buffer_size) {
+ uniform_buffer_exceeded_line = tk_line;
+ }
+ }
+#endif // DEBUG_ENABLED
}
}
if (uniform2.array_size > 0) {
if (uniform_scope == ShaderNode::Uniform::SCOPE_GLOBAL) {
- _set_error("'SCOPE_GLOBAL' qualifier is not yet supported for uniform array!");
+ _set_error(vformat(RTR("The '%s' qualifier is not supported for uniform arrays."), "SCOPE_GLOBAL"));
return ERR_PARSE_ERROR;
}
if (uniform_scope == ShaderNode::Uniform::SCOPE_INSTANCE) {
- _set_error("'SCOPE_INSTANCE' qualifier is not yet supported for uniform array!");
+ _set_error(vformat(RTR("The '%s' qualifier is not supported for uniform arrays."), "SCOPE_INSTANCE"));
return ERR_PARSE_ERROR;
}
}
@@ -7976,13 +8235,13 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
completion_line = tk.line;
if (!is_token_hint(tk.type)) {
- _set_error("Expected valid type hint after ':'.");
+ _set_error(RTR("Expected valid type hint after ':'."));
return ERR_PARSE_ERROR;
}
if (uniform2.array_size > 0) {
if (tk.type != TK_HINT_COLOR) {
- _set_error("This hint is not yet supported for uniform arrays!");
+ _set_error(RTR("This hint is not supported for uniform arrays."));
return ERR_PARSE_ERROR;
}
}
@@ -8012,21 +8271,21 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
} else if (tk.type == TK_HINT_BLACK_ALBEDO_TEXTURE) {
uniform2.hint = ShaderNode::Uniform::HINT_BLACK_ALBEDO;
} else if (tk.type == TK_HINT_COLOR) {
- if (type != TYPE_VEC4) {
- _set_error("Color hint is for vec4 only");
+ if (type != TYPE_VEC3 && type != TYPE_VEC4) {
+ _set_error(vformat(RTR("Color hint is for '%s' or '%s' only."), "vec3", "vec4"));
return ERR_PARSE_ERROR;
}
uniform2.hint = ShaderNode::Uniform::HINT_COLOR;
} else if (tk.type == TK_HINT_RANGE) {
uniform2.hint = ShaderNode::Uniform::HINT_RANGE;
if (type != TYPE_FLOAT && type != TYPE_INT) {
- _set_error("Range hint is for float and int only");
+ _set_error(vformat(RTR("Range hint is for '%s' and '%s' only."), "float", "int"));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after hint_range");
+ _set_expected_after_error("(", "hint_range");
return ERR_PARSE_ERROR;
}
@@ -8040,7 +8299,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_FLOAT_CONSTANT && !tk.is_integer_constant()) {
- _set_error("Expected integer constant");
+ _set_error(RTR("Expected an integer constant."));
return ERR_PARSE_ERROR;
}
@@ -8050,7 +8309,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
if (tk.type != TK_COMMA) {
- _set_error("Expected ',' after integer constant");
+ _set_error(RTR("Expected ',' after integer constant."));
return ERR_PARSE_ERROR;
}
@@ -8064,7 +8323,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_FLOAT_CONSTANT && !tk.is_integer_constant()) {
- _set_error("Expected integer constant after ','");
+ _set_error(RTR("Expected an integer constant after ','."));
return ERR_PARSE_ERROR;
}
@@ -8077,7 +8336,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
if (tk.type != TK_FLOAT_CONSTANT && !tk.is_integer_constant()) {
- _set_error("Expected integer constant after ','");
+ _set_error(RTR("Expected an integer constant after ','."));
return ERR_PARSE_ERROR;
}
@@ -8092,44 +8351,44 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')'");
+ _set_expected_error(")");
return ERR_PARSE_ERROR;
}
} else if (tk.type == TK_HINT_INSTANCE_INDEX) {
if (custom_instance_index != -1) {
- _set_error("Can only specify 'instance_index' once.");
+ _set_error(vformat(RTR("Can only specify '%s' once."), "instance_index"));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
- _set_error("Expected '(' after 'instance_index'");
+ _set_expected_after_error("(", "instance_index");
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type == TK_OP_SUB) {
- _set_error("The instance index can't be negative.");
+ _set_error(RTR("The instance index can't be negative."));
return ERR_PARSE_ERROR;
}
if (!tk.is_integer_constant()) {
- _set_error("Expected integer constant");
+ _set_error(RTR("Expected an integer constant."));
return ERR_PARSE_ERROR;
}
custom_instance_index = tk.constant;
if (custom_instance_index >= MAX_INSTANCE_UNIFORM_INDICES) {
- _set_error("Allowed instance uniform indices are 0-" + itos(MAX_INSTANCE_UNIFORM_INDICES - 1));
+ _set_error(vformat(RTR("Allowed instance uniform indices must be within [0..%d] range."), MAX_INSTANCE_UNIFORM_INDICES - 1));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ')'");
+ _set_expected_error(")");
return ERR_PARSE_ERROR;
}
} else if (tk.type == TK_FILTER_LINEAR) {
@@ -8151,7 +8410,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (uniform2.hint != ShaderNode::Uniform::HINT_RANGE && uniform2.hint != ShaderNode::Uniform::HINT_NONE && uniform2.hint != ShaderNode::Uniform::HINT_COLOR && type <= TYPE_MAT4) {
- _set_error("This hint is only for sampler types");
+ _set_error(RTR("This hint is only for sampler types."));
return ERR_PARSE_ERROR;
}
@@ -8166,7 +8425,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
} else {
uniform2.instance_index = instance_index++;
if (instance_index > MAX_INSTANCE_UNIFORM_INDICES) {
- _set_error("Too many 'instance' uniforms in shader, maximum supported is " + itos(MAX_INSTANCE_UNIFORM_INDICES));
+ _set_error(vformat(RTR("Too many '%s' uniforms in shader, maximum supported is %d."), "instance", MAX_INSTANCE_UNIFORM_INDICES));
return ERR_PARSE_ERROR;
}
}
@@ -8176,7 +8435,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (tk.type == TK_OP_ASSIGN) {
if (uniform2.array_size > 0) {
- _set_error("Setting default value to a uniform array is not yet supported!");
+ _set_error(RTR("Setting default values to uniform arrays is not supported."));
return ERR_PARSE_ERROR;
}
@@ -8185,7 +8444,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
return ERR_PARSE_ERROR;
}
if (expr->type != Node::TYPE_CONSTANT) {
- _set_error("Expected constant expression after '='");
+ _set_error(RTR("Expected constant expression after '='."));
return ERR_PARSE_ERROR;
}
@@ -8194,7 +8453,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
uniform2.default_value.resize(cn->values.size());
if (!convert_constant(cn, uniform2.type, uniform2.default_value.ptrw())) {
- _set_error("Can't convert constant to " + get_datatype_name(uniform2.type));
+ _set_error(vformat(RTR("Can't convert constant to '%s'."), get_datatype_name(uniform2.type)));
return ERR_PARSE_ERROR;
}
tk = _get_token();
@@ -8211,10 +8470,13 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
uniform_scope = ShaderNode::Uniform::SCOPE_LOCAL;
if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';'");
+ _set_expected_error(";");
return ERR_PARSE_ERROR;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_GLOBAL_SPACE;
+#endif // DEBUG_ENABLED
completion_type = COMPLETION_NONE;
} else { // varying
ShaderNode::Varying varying;
@@ -8227,37 +8489,19 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
if (tk.type != TK_SEMICOLON && tk.type != TK_BRACKET_OPEN) {
if (array_size == 0) {
- _set_error("Expected ';' or '['");
+ _set_expected_error(";", "[");
} else {
- _set_error("Expected ';'");
+ _set_expected_error(";");
}
return ERR_PARSE_ERROR;
}
if (tk.type == TK_BRACKET_OPEN) {
- if (array_size > 0) {
- _set_error("Array size is already defined!");
- return ERR_PARSE_ERROR;
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &varying.array_size, nullptr);
+ if (error != OK) {
+ return error;
}
tk = _get_token();
- if (tk.is_integer_constant() && tk.constant > 0) {
- varying.array_size = (int)tk.constant;
-
- tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
- tk = _get_token();
- if (tk.type != TK_SEMICOLON) {
- _set_error("Expected ';'");
- return ERR_PARSE_ERROR;
- }
- } else {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- }
- } else {
- _set_error("Expected integer constant > 0");
- return ERR_PARSE_ERROR;
- }
}
shader->varyings[name] = varying;
@@ -8269,6 +8513,10 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
} break;
+ case TK_SHADER_TYPE: {
+ _set_error(RTR("Shader type is already defined."));
+ return ERR_PARSE_ERROR;
+ } break;
default: {
//function or constant variable
@@ -8291,20 +8539,27 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
if (shader->structs.has(tk.text)) {
- if (precision != PRECISION_DEFAULT) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
- }
is_struct = true;
struct_name = tk.text;
} else {
+#ifdef DEBUG_ENABLED
+ if (_lookup_next(next)) {
+ if (next.type == TK_UNIFORM) {
+ keyword_completion_context = CF_UNIFORM_QUALIFIER;
+ }
+ }
+#endif // DEBUG_ENABLED
if (!is_token_datatype(tk.type)) {
- _set_error("Expected constant, function, uniform or varying");
+ _set_error(RTR("Expected constant, function, uniform or varying."));
return ERR_PARSE_ERROR;
}
if (!is_token_variable_datatype(tk.type)) {
- _set_error("Invalid data type for constants or function return (samplers not allowed)");
+ if (is_constant) {
+ _set_error(RTR("Invalid constant type (samplers are not allowed)."));
+ } else {
+ _set_error(RTR("Invalid function type (samplers are not allowed)."));
+ }
return ERR_PARSE_ERROR;
}
}
@@ -8314,40 +8569,31 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
} else {
type = get_token_datatype(tk.type);
}
+
+ if (precision != PRECISION_DEFAULT && _validate_precision(type, precision) != OK) {
+ return ERR_PARSE_ERROR;
+ }
+
prev_pos = _get_tkpos();
tk = _get_token();
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
+
bool unknown_size = false;
+ bool fixed_array_size = false;
if (tk.type == TK_BRACKET_OPEN) {
if (is_constant && RenderingServer::get_singleton()->is_low_end()) {
- _set_error("Global const arrays are only supported on high-end platform!");
+ _set_error(RTR("Global constant arrays are only supported on high-end platforms."));
return ERR_PARSE_ERROR;
}
- bool error = false;
- tk = _get_token();
-
- if (tk.is_integer_constant()) {
- array_size = (int)tk.constant;
- if (array_size > 0) {
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- }
- } else {
- error = true;
- }
- } else if (tk.type == TK_BRACKET_CLOSE) {
- unknown_size = true;
- } else {
- error = true;
- }
- if (error) {
- _set_error("Expected integer constant > 0 or ']'");
- return ERR_PARSE_ERROR;
+ Error error = _parse_array_size(nullptr, constants, !is_constant, nullptr, &array_size, &unknown_size);
+ if (error != OK) {
+ return error;
}
-
+ fixed_array_size = true;
prev_pos = _get_tkpos();
}
@@ -8357,27 +8603,26 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (name == StringName()) {
if (is_constant) {
- _set_error("Expected identifier or '[' after datatype.");
+ _set_error(RTR("Expected an identifier or '[' after type."));
} else {
- _set_error("Expected function name after datatype.");
+ _set_error(RTR("Expected a function name after type."));
}
return ERR_PARSE_ERROR;
}
if (shader->structs.has(name) || _find_identifier(nullptr, false, constants, name) || has_builtin(p_functions, name)) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
tk = _get_token();
if (tk.type != TK_PARENTHESIS_OPEN) {
if (type == TYPE_VOID) {
- _set_error("Expected '(' after function identifier");
+ _set_error(RTR("Expected '(' after function identifier."));
return ERR_PARSE_ERROR;
}
//variable
- bool first = true;
while (true) {
ShaderNode::Constant constant;
constant.name = name;
@@ -8385,46 +8630,30 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
constant.type_str = struct_name;
constant.precision = precision;
constant.initializer = nullptr;
- constant.array_size = (first ? array_size : 0);
- first = false;
+ constant.array_size = array_size;
if (tk.type == TK_BRACKET_OPEN) {
if (RenderingServer::get_singleton()->is_low_end()) {
- _set_error("Global const arrays are only supported on high-end platform!");
+ _set_error(RTR("Global const arrays are only supported on high-end platforms."));
return ERR_PARSE_ERROR;
}
- if (constant.array_size > 0 || unknown_size) {
- _set_error("Array size is already defined!");
- return ERR_PARSE_ERROR;
+ Error error = _parse_array_size(nullptr, constants, false, nullptr, &constant.array_size, &unknown_size);
+ if (error != OK) {
+ return error;
}
tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
- unknown_size = true;
- tk = _get_token();
- } else if (tk.is_integer_constant() && ((int)tk.constant) > 0) {
- constant.array_size = (int)tk.constant;
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- }
- tk = _get_token();
- } else {
- _set_error("Expected integer constant > 0 or ']'");
- return ERR_PARSE_ERROR;
- }
}
if (tk.type == TK_OP_ASSIGN) {
if (!is_constant) {
- _set_error("Expected 'const' keyword before constant definition");
+ _set_error(vformat(RTR("Global non-constant variables are not supported. Expected '%s' keyword before constant definition."), "const"));
return ERR_PARSE_ERROR;
}
if (constant.array_size > 0 || unknown_size) {
bool full_def = false;
- ArrayDeclarationNode::Declaration decl;
+ VariableDeclarationNode::Declaration decl;
decl.name = name;
decl.size = constant.array_size;
@@ -8432,7 +8661,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (tk.type != TK_CURLY_BRACKET_OPEN) {
if (unknown_size) {
- _set_error("Expected '{'");
+ _set_expected_error("{");
return ERR_PARSE_ERROR;
}
@@ -8443,7 +8672,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
precision2 = get_token_precision(tk.type);
tk = _get_token();
if (!is_token_nonvoid_datatype(tk.type)) {
- _set_error("Expected datatype after precision");
+ _set_error(RTR("Expected data type after precision modifier."));
return ERR_PARSE_ERROR;
}
}
@@ -8456,83 +8685,60 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
struct_name2 = tk.text;
} else {
if (!is_token_variable_datatype(tk.type)) {
- _set_error("Invalid data type for array");
+ _set_error(RTR("Invalid data type for the array."));
return ERR_PARSE_ERROR;
}
type2 = get_token_datatype(tk.type);
}
int array_size2 = 0;
-
tk = _get_token();
+
if (tk.type == TK_BRACKET_OPEN) {
- prev_pos = _get_tkpos();
- tk = _get_token();
- if (tk.type == TK_BRACKET_CLOSE) {
+ bool is_unknown_size = false;
+ Error error = _parse_array_size(nullptr, constants, false, nullptr, &array_size2, &is_unknown_size);
+ if (error != OK) {
+ return error;
+ }
+ if (is_unknown_size) {
array_size2 = constant.array_size;
- tk = _get_token();
- } else {
- _set_tkpos(prev_pos);
-
- Node *n = _parse_and_reduce_expression(nullptr, constants);
- if (!n || n->type != Node::TYPE_CONSTANT || n->get_datatype() != TYPE_INT) {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
-
- ConstantNode *cnode = (ConstantNode *)n;
- if (cnode->values.size() == 1) {
- array_size2 = cnode->values[0].sint;
- if (array_size2 <= 0) {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
- } else {
- _set_error("Expected single integer constant > 0");
- return ERR_PARSE_ERROR;
- }
-
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']");
- return ERR_PARSE_ERROR;
- } else {
- tk = _get_token();
- }
}
+ tk = _get_token();
} else {
- _set_error("Expected '[");
+ _set_expected_error("[");
return ERR_PARSE_ERROR;
}
if (constant.precision != precision2 || constant.type != type2 || struct_name != struct_name2 || constant.array_size != array_size2) {
- String error_str = "Cannot convert from '";
+ String from;
if (type2 == TYPE_STRUCT) {
- error_str += struct_name2;
+ from += struct_name2;
} else {
if (precision2 != PRECISION_DEFAULT) {
- error_str += get_precision_name(precision2);
- error_str += " ";
+ from += get_precision_name(precision2);
+ from += " ";
}
- error_str += get_datatype_name(type2);
+ from += get_datatype_name(type2);
}
- error_str += "[";
- error_str += itos(array_size2);
- error_str += "]'";
- error_str += " to '";
+ from += "[";
+ from += itos(array_size2);
+ from += "]'";
+
+ String to;
if (type == TYPE_STRUCT) {
- error_str += struct_name;
+ to += struct_name;
} else {
if (precision != PRECISION_DEFAULT) {
- error_str += get_precision_name(precision);
- error_str += " ";
+ to += get_precision_name(precision);
+ to += " ";
}
- error_str += get_datatype_name(type);
+ to += get_datatype_name(type);
}
- error_str += "[";
- error_str += itos(constant.array_size);
- error_str += "]'";
- _set_error(error_str);
+ to += "[";
+ to += itos(constant.array_size);
+ to += "]'";
+
+ _set_error(vformat(RTR("Cannot convert from '%s' to '%s'."), from, to));
return ERR_PARSE_ERROR;
}
}
@@ -8541,13 +8747,13 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (unknown_size) {
if (!curly) {
- _set_error("Expected '{'");
+ _set_expected_error("{");
return ERR_PARSE_ERROR;
}
} else {
if (full_def) {
if (curly) {
- _set_error("Expected '('");
+ _set_expected_error("(");
return ERR_PARSE_ERROR;
}
}
@@ -8560,8 +8766,8 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
return ERR_PARSE_ERROR;
}
- if (n->type == Node::TYPE_OPERATOR && ((OperatorNode *)n)->op == OP_CALL) {
- _set_error("Expected constant expression");
+ if (n->type == Node::TYPE_OPERATOR && static_cast<OperatorNode *>(n)->op == OP_CALL) {
+ _set_error(RTR("Expected constant expression."));
return ERR_PARSE_ERROR;
}
@@ -8581,9 +8787,9 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
break;
} else {
if (curly) {
- _set_error("Expected '}' or ','");
+ _set_expected_error("}", ",");
} else {
- _set_error("Expected ')' or ','");
+ _set_expected_error(")", ",");
}
return ERR_PARSE_ERROR;
}
@@ -8592,11 +8798,13 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
decl.size = decl.initializer.size();
constant.array_size = decl.initializer.size();
} else if (decl.initializer.size() != constant.array_size) {
- _set_error("Array size mismatch");
+ _set_error(RTR("Array size mismatch."));
return ERR_PARSE_ERROR;
}
}
+ array_size = constant.array_size;
+
ConstantNode *expr = memnew(ConstantNode);
expr->datatype = constant.type;
@@ -8609,16 +8817,27 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
constant.initializer = static_cast<ConstantNode *>(expr);
} else {
+#ifdef DEBUG_ENABLED
+ if (constant.type == DataType::TYPE_BOOL) {
+ keyword_completion_context = CF_BOOLEAN;
+ }
+#endif // DEBUG_ENABLED
+
//variable created with assignment! must parse an expression
Node *expr = _parse_and_reduce_expression(nullptr, constants);
if (!expr) {
return ERR_PARSE_ERROR;
}
- if (expr->type == Node::TYPE_OPERATOR && ((OperatorNode *)expr)->op == OP_CALL) {
- OperatorNode *op = ((OperatorNode *)expr);
+#ifdef DEBUG_ENABLED
+ if (constant.type == DataType::TYPE_BOOL) {
+ keyword_completion_context = CF_GLOBAL_SPACE;
+ }
+#endif // DEBUG_ENABLED
+ if (expr->type == Node::TYPE_OPERATOR && static_cast<OperatorNode *>(expr)->op == OP_CALL) {
+ OperatorNode *op = static_cast<OperatorNode *>(expr);
for (int i = 1; i < op->arguments.size(); i++) {
if (!_check_node_constness(op->arguments[i])) {
- _set_error("Expected constant expression for argument '" + itos(i - 1) + "' of function call after '='");
+ _set_error(vformat(RTR("Expected constant expression for argument %d of function call after '='."), i - 1));
return ERR_PARSE_ERROR;
}
}
@@ -8633,10 +8852,10 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
} else {
if (constant.array_size > 0 || unknown_size) {
- _set_error("Expected array initialization");
+ _set_error(RTR("Expected array initialization."));
return ERR_PARSE_ERROR;
} else {
- _set_error("Expected initialization of constant");
+ _set_error(RTR("Expected initialization of constant."));
return ERR_PARSE_ERROR;
}
}
@@ -8652,27 +8871,32 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (tk.type == TK_COMMA) {
tk = _get_token();
if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier after type");
+ _set_error(RTR("Expected an identifier after type."));
return ERR_PARSE_ERROR;
}
name = tk.text;
if (_find_identifier(nullptr, false, constants, name)) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
if (has_builtin(p_functions, name)) {
- _set_error("Redefinition of '" + String(name) + "'");
+ _set_redefinition_error(String(name));
return ERR_PARSE_ERROR;
}
tk = _get_token();
+ if (!fixed_array_size) {
+ array_size = 0;
+ }
+ unknown_size = false;
+
} else if (tk.type == TK_SEMICOLON) {
break;
} else {
- _set_error("Expected ',' or ';' after constant");
+ _set_expected_error(",", ";");
return ERR_PARSE_ERROR;
}
}
@@ -8697,6 +8921,13 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
}
}
+ for (int i = 0; i < shader->functions.size(); i++) {
+ if (!shader->functions[i].callable && shader->functions[i].name == name) {
+ _set_redefinition_error(String(name));
+ return ERR_PARSE_ERROR;
+ }
+ }
+
ShaderNode::Function function;
function.callable = !p_functions.has(name);
@@ -8733,45 +8964,116 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (tk.type == TK_PARENTHESIS_CLOSE) {
break;
}
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_CONST_KEYWORD | CF_FUNC_DECL_PARAM_SPEC | CF_PRECISION_MODIFIER | CF_FUNC_DECL_PARAM_TYPE; // eg. const in mediump float
+
+ if (_lookup_next(next)) {
+ if (next.type == TK_CONST) {
+ keyword_completion_context = CF_UNSPECIFIED;
+ } else if (is_token_arg_qual(next.type)) {
+ keyword_completion_context = CF_CONST_KEYWORD;
+ } else if (is_token_precision(next.type)) {
+ keyword_completion_context = (CF_CONST_KEYWORD | CF_FUNC_DECL_PARAM_SPEC | CF_FUNC_DECL_PARAM_TYPE);
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context = (CF_CONST_KEYWORD | CF_FUNC_DECL_PARAM_SPEC | CF_PRECISION_MODIFIER);
+ }
+ }
+#endif // DEBUG_ENABLED
- bool is_const = false;
+ bool param_is_const = false;
if (tk.type == TK_CONST) {
- is_const = true;
+ param_is_const = true;
tk = _get_token();
- }
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & CF_CONST_KEYWORD) {
+ keyword_completion_context ^= CF_CONST_KEYWORD;
+ }
- ArgumentQualifier qualifier = ARGUMENT_QUALIFIER_IN;
+ if (_lookup_next(next)) {
+ if (is_token_arg_qual(next.type)) {
+ keyword_completion_context = CF_UNSPECIFIED;
+ } else if (is_token_precision(next.type)) {
+ keyword_completion_context = (CF_FUNC_DECL_PARAM_SPEC | CF_FUNC_DECL_PARAM_TYPE);
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context = (CF_FUNC_DECL_PARAM_SPEC | CF_PRECISION_MODIFIER);
+ }
+ }
+#endif // DEBUG_ENABLED
+ }
- if (tk.type == TK_ARG_IN) {
- qualifier = ARGUMENT_QUALIFIER_IN;
- tk = _get_token();
- } else if (tk.type == TK_ARG_OUT) {
- if (is_const) {
- _set_error("'out' qualifier cannot be used within a function parameter declared with 'const'.");
- return ERR_PARSE_ERROR;
+ ArgumentQualifier param_qualifier = ARGUMENT_QUALIFIER_IN;
+ if (is_token_arg_qual(tk.type)) {
+ bool error = false;
+ switch (tk.type) {
+ case TK_ARG_IN: {
+ param_qualifier = ARGUMENT_QUALIFIER_IN;
+ } break;
+ case TK_ARG_OUT: {
+ if (param_is_const) {
+ _set_error(vformat(RTR("The '%s' qualifier cannot be used within a function parameter declared with '%s'."), "out", "const"));
+ error = true;
+ }
+ param_qualifier = ARGUMENT_QUALIFIER_OUT;
+ } break;
+ case TK_ARG_INOUT: {
+ if (param_is_const) {
+ _set_error(vformat(RTR("The '%s' qualifier cannot be used within a function parameter declared with '%s'."), "inout", "const"));
+ error = true;
+ }
+ param_qualifier = ARGUMENT_QUALIFIER_INOUT;
+ } break;
+ default:
+ error = true;
+ break;
}
- qualifier = ARGUMENT_QUALIFIER_OUT;
tk = _get_token();
- } else if (tk.type == TK_ARG_INOUT) {
- if (is_const) {
- _set_error("'inout' qualifier cannot be used within a function parameter declared with 'const'.");
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & CF_CONST_KEYWORD) {
+ keyword_completion_context ^= CF_CONST_KEYWORD;
+ }
+ if (keyword_completion_context & CF_FUNC_DECL_PARAM_SPEC) {
+ keyword_completion_context ^= CF_FUNC_DECL_PARAM_SPEC;
+ }
+
+ if (_lookup_next(next)) {
+ if (is_token_precision(next.type)) {
+ keyword_completion_context = CF_FUNC_DECL_PARAM_TYPE;
+ } else if (is_token_datatype(next.type)) {
+ keyword_completion_context = CF_PRECISION_MODIFIER;
+ }
+ }
+#endif // DEBUG_ENABLED
+ if (error) {
return ERR_PARSE_ERROR;
}
- qualifier = ARGUMENT_QUALIFIER_INOUT;
- tk = _get_token();
}
- DataType ptype;
- StringName pname;
+ DataType param_type;
+ StringName param_name;
StringName param_struct_name;
- DataPrecision pprecision = PRECISION_DEFAULT;
- bool use_precision = false;
+ DataPrecision param_precision = PRECISION_DEFAULT;
int arg_array_size = 0;
if (is_token_precision(tk.type)) {
- pprecision = get_token_precision(tk.type);
+ param_precision = get_token_precision(tk.type);
tk = _get_token();
- use_precision = true;
+#ifdef DEBUG_ENABLED
+ if (keyword_completion_context & CF_CONST_KEYWORD) {
+ keyword_completion_context ^= CF_CONST_KEYWORD;
+ }
+ if (keyword_completion_context & CF_FUNC_DECL_PARAM_SPEC) {
+ keyword_completion_context ^= CF_FUNC_DECL_PARAM_SPEC;
+ }
+ if (keyword_completion_context & CF_PRECISION_MODIFIER) {
+ keyword_completion_context ^= CF_PRECISION_MODIFIER;
+ }
+
+ if (_lookup_next(next)) {
+ if (is_token_datatype(next.type)) {
+ keyword_completion_context = CF_UNSPECIFIED;
+ }
+ }
+#endif // DEBUG_ENABLED
}
is_struct = false;
@@ -8784,124 +9086,85 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
used_structs[param_struct_name].used = true;
}
#endif // DEBUG_ENABLED
- if (use_precision) {
- _set_error("Precision modifier cannot be used on structs.");
- return ERR_PARSE_ERROR;
- }
}
if (!is_struct && !is_token_datatype(tk.type)) {
- _set_error("Expected a valid datatype for argument");
+ _set_error(RTR("Expected a valid data type for argument."));
return ERR_PARSE_ERROR;
}
- if (qualifier == ARGUMENT_QUALIFIER_OUT || qualifier == ARGUMENT_QUALIFIER_INOUT) {
+ if (param_qualifier == ARGUMENT_QUALIFIER_OUT || param_qualifier == ARGUMENT_QUALIFIER_INOUT) {
if (is_sampler_type(get_token_datatype(tk.type))) {
- _set_error("Opaque types cannot be output parameters.");
+ _set_error(RTR("Opaque types cannot be output parameters."));
return ERR_PARSE_ERROR;
}
}
if (is_struct) {
- ptype = TYPE_STRUCT;
+ param_type = TYPE_STRUCT;
} else {
- ptype = get_token_datatype(tk.type);
- if (_validate_datatype(ptype) != OK) {
+ param_type = get_token_datatype(tk.type);
+ if (_validate_datatype(param_type) != OK) {
return ERR_PARSE_ERROR;
}
- if (ptype == TYPE_VOID) {
- _set_error("void not allowed in argument");
+ if (param_type == TYPE_VOID) {
+ _set_error(RTR("Void type not allowed as argument."));
return ERR_PARSE_ERROR;
}
}
+ if (param_precision != PRECISION_DEFAULT && _validate_precision(param_type, param_precision) != OK) {
+ return ERR_PARSE_ERROR;
+ }
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_UNSPECIFIED;
+#endif // DEBUG_ENABLED
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- bool error = false;
- tk = _get_token();
-
- if (tk.is_integer_constant()) {
- arg_array_size = (int)tk.constant;
-
- if (arg_array_size > 0) {
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- }
- } else {
- error = true;
- }
- } else {
- error = true;
- }
- if (error) {
- _set_error("Expected integer constant > 0");
- return ERR_PARSE_ERROR;
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &arg_array_size, nullptr);
+ if (error != OK) {
+ return error;
}
tk = _get_token();
}
if (tk.type != TK_IDENTIFIER) {
- _set_error("Expected identifier for argument name");
+ _set_error(RTR("Expected an identifier for argument name."));
return ERR_PARSE_ERROR;
}
- pname = tk.text;
+ param_name = tk.text;
ShaderLanguage::IdentifierType itype;
- if (_find_identifier(func_node->body, false, builtins, pname, (ShaderLanguage::DataType *)nullptr, &itype)) {
+ if (_find_identifier(func_node->body, false, builtins, param_name, (ShaderLanguage::DataType *)nullptr, &itype)) {
if (itype != IDENTIFIER_FUNCTION) {
- _set_error("Redefinition of '" + String(pname) + "'");
+ _set_redefinition_error(String(param_name));
return ERR_PARSE_ERROR;
}
}
- if (has_builtin(p_functions, pname)) {
- _set_error("Redefinition of '" + String(pname) + "'");
+ if (has_builtin(p_functions, param_name)) {
+ _set_redefinition_error(String(param_name));
return ERR_PARSE_ERROR;
}
FunctionNode::Argument arg;
- arg.type = ptype;
- arg.name = pname;
+ arg.type = param_type;
+ arg.name = param_name;
arg.type_str = param_struct_name;
- arg.precision = pprecision;
- arg.qualifier = qualifier;
+ arg.precision = param_precision;
+ arg.qualifier = param_qualifier;
arg.tex_argument_check = false;
arg.tex_builtin_check = false;
arg.tex_argument_filter = FILTER_DEFAULT;
arg.tex_argument_repeat = REPEAT_DEFAULT;
- arg.is_const = is_const;
+ arg.is_const = param_is_const;
tk = _get_token();
if (tk.type == TK_BRACKET_OPEN) {
- if (arg_array_size > 0) {
- _set_error("Array size is already defined!");
- return ERR_PARSE_ERROR;
- }
- bool error = false;
- tk = _get_token();
-
- if (tk.is_integer_constant()) {
- arg_array_size = (int)tk.constant;
-
- if (arg_array_size > 0) {
- tk = _get_token();
- if (tk.type != TK_BRACKET_CLOSE) {
- _set_error("Expected ']'");
- return ERR_PARSE_ERROR;
- }
- } else {
- error = true;
- }
- } else {
- error = true;
- }
-
- if (error) {
- _set_error("Expected integer constant > 0");
- return ERR_PARSE_ERROR;
+ Error error = _parse_array_size(nullptr, constants, true, nullptr, &arg_array_size, nullptr);
+ if (error != OK) {
+ return error;
}
tk = _get_token();
}
@@ -8913,7 +9176,7 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
//do none and go on
} else if (tk.type != TK_PARENTHESIS_CLOSE) {
- _set_error("Expected ',' or ')' after identifier");
+ _set_expected_error(",", ")");
return ERR_PARSE_ERROR;
}
}
@@ -8921,11 +9184,11 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
if (p_functions.has(name)) {
//if one of the core functions, make sure they are of the correct form
if (func_node->arguments.size() > 0) {
- _set_error("Function '" + String(name) + "' expects no arguments.");
+ _set_error(vformat(RTR("Function '%s' expects no arguments."), String(name)));
return ERR_PARSE_ERROR;
}
if (func_node->return_type != TYPE_VOID) {
- _set_error("Function '" + String(name) + "' must be of void return type.");
+ _set_error(vformat(RTR("Function '%s' must be of '%s' return type."), String(name), "void"));
return ERR_PARSE_ERROR;
}
}
@@ -8933,21 +9196,26 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
//all good let's parse inside the function!
tk = _get_token();
if (tk.type != TK_CURLY_BRACKET_OPEN) {
- _set_error("Expected '{' to begin function");
+ _set_error(RTR("Expected a '{' to begin function."));
return ERR_PARSE_ERROR;
}
current_function = name;
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_BLOCK;
+#endif // DEBUG_ENABLED
Error err = _parse_block(func_node->body, builtins);
if (err) {
return err;
}
-
+#ifdef DEBUG_ENABLED
+ keyword_completion_context = CF_GLOBAL_SPACE;
+#endif // DEBUG_ENABLED
if (func_node->return_type != DataType::TYPE_VOID) {
BlockNode *block = func_node->body;
if (_find_last_flow_op_in_block(block, FlowOperation::FLOW_OP_RETURN) != OK) {
- _set_error("Expected at least one return statement in a non-void function.");
+ _set_error(vformat(RTR("Expected at least one '%s' statement in a non-void function."), "return"));
return ERR_PARSE_ERROR;
}
}
@@ -8958,14 +9226,11 @@ Error ShaderLanguage::_parse_shader(const Map<StringName, FunctionInfo> &p_funct
tk = _get_token();
}
- int error_line;
- String error_message;
- if (!_check_varying_usages(&error_line, &error_message)) {
- _set_tkpos({ 0, error_line });
- _set_error(error_message);
- return ERR_PARSE_ERROR;
+#ifdef DEBUG_ENABLED
+ if (check_device_limit_warnings && uniform_buffer_exceeded_line != -1) {
+ _add_warning(ShaderWarning::DEVICE_LIMIT_EXCEEDED, uniform_buffer_exceeded_line, RTR("uniform buffer"), { uniform_buffer_size, max_uniform_buffer_size });
}
-
+#endif // DEBUG_ENABLED
return OK;
}
@@ -8984,7 +9249,7 @@ Error ShaderLanguage::_find_last_flow_op_in_op(ControlFlowNode *p_flow, FlowOper
for (int i = p_flow->blocks.size() - 1; i >= 0; i--) {
if (p_flow->blocks[i]->type == Node::TYPE_BLOCK) {
- BlockNode *last_block = (BlockNode *)p_flow->blocks[i];
+ BlockNode *last_block = static_cast<BlockNode *>(p_flow->blocks[i]);
if (_find_last_flow_op_in_block(last_block, p_op) == OK) {
found = true;
break;
@@ -9002,7 +9267,7 @@ Error ShaderLanguage::_find_last_flow_op_in_block(BlockNode *p_block, FlowOperat
for (int i = p_block->statements.size() - 1; i >= 0; i--) {
if (p_block->statements[i]->type == Node::TYPE_CONTROL_FLOW) {
- ControlFlowNode *flow = (ControlFlowNode *)p_block->statements[i];
+ ControlFlowNode *flow = static_cast<ControlFlowNode *>(p_block->statements[i]);
if (flow->flow_op == p_op) {
found = true;
break;
@@ -9013,7 +9278,7 @@ Error ShaderLanguage::_find_last_flow_op_in_block(BlockNode *p_block, FlowOperat
}
}
} else if (p_block->statements[i]->type == Node::TYPE_BLOCK) {
- BlockNode *block = (BlockNode *)p_block->statements[i];
+ BlockNode *block = static_cast<BlockNode *>(p_block->statements[i]);
if (_find_last_flow_op_in_block(block, p_op) == OK) {
found = true;
break;
@@ -9169,7 +9434,7 @@ Error ShaderLanguage::compile(const String &p_code, const ShaderCompileInfo &p_i
return OK;
}
-Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_info, List<ScriptCodeCompletionOption> *r_options, String &r_call_hint) {
+Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_info, List<ScriptLanguage::CodeCompletionOption> *r_options, String &r_call_hint) {
clear();
code = p_code;
@@ -9181,11 +9446,40 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
shader = alloc_node<ShaderNode>();
_parse_shader(p_info.functions, p_info.render_modes, p_info.shader_types);
+#ifdef DEBUG_ENABLED
+ // Adds context keywords.
+ if (keyword_completion_context != CF_UNSPECIFIED) {
+ int sz = sizeof(keyword_list) / sizeof(KeyWord);
+ for (int i = 0; i < sz; i++) {
+ if (keyword_list[i].flags == CF_UNSPECIFIED) {
+ break; // Ignore hint keywords (parsed below).
+ }
+ if (keyword_list[i].flags & keyword_completion_context) {
+ if (keyword_list[i].excluded_shader_types.has(shader_type_identifier)) {
+ continue;
+ }
+ if (!keyword_list[i].functions.is_empty() && !keyword_list[i].functions.has(current_function)) {
+ continue;
+ }
+ ScriptLanguage::CodeCompletionOption option(keyword_list[i].text, ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
+ r_options->push_back(option);
+ }
+ }
+ }
+#endif // DEBUG_ENABLED
+
switch (completion_type) {
case COMPLETION_NONE: {
//do nothing
return OK;
} break;
+ case COMPLETION_SHADER_TYPE: {
+ for (const String &shader_type : p_info.shader_types) {
+ ScriptLanguage::CodeCompletionOption option(shader_type, ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
+ r_options->push_back(option);
+ }
+ return OK;
+ } break;
case COMPLETION_RENDER_MODE: {
for (int i = 0; i < p_info.render_modes.size(); i++) {
const ModeInfo &info = p_info.render_modes[i];
@@ -9201,7 +9495,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (!found) {
for (int j = 0; j < info.options.size(); j++) {
- ScriptCodeCompletionOption option(String(info.name) + "_" + String(info.options[j]), ScriptCodeCompletionOption::KIND_ENUM);
+ ScriptLanguage::CodeCompletionOption option(String(info.name) + "_" + String(info.options[j]), ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
r_options->push_back(option);
}
}
@@ -9209,7 +9503,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
const String name = String(info.name);
if (!shader->render_modes.has(name)) {
- ScriptCodeCompletionOption option(name, ScriptCodeCompletionOption::KIND_ENUM);
+ ScriptLanguage::CodeCompletionOption option(name, ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
r_options->push_back(option);
}
}
@@ -9221,7 +9515,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (shader->structs.has(completion_struct)) {
StructNode *node = shader->structs[completion_struct].shader_struct;
for (int i = 0; i < node->members.size(); i++) {
- ScriptCodeCompletionOption option(node->members[i]->name, ScriptCodeCompletionOption::KIND_MEMBER);
+ ScriptLanguage::CodeCompletionOption option(node->members[i]->name, ScriptLanguage::CODE_COMPLETION_KIND_MEMBER);
r_options->push_back(option);
}
}
@@ -9230,7 +9524,20 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
} break;
case COMPLETION_MAIN_FUNCTION: {
for (const KeyValue<StringName, FunctionInfo> &E : p_info.functions) {
- ScriptCodeCompletionOption option(E.key, ScriptCodeCompletionOption::KIND_FUNCTION);
+ if (!E.value.main_function) {
+ continue;
+ }
+ bool found = false;
+ for (int i = 0; i < shader->functions.size(); i++) {
+ if (shader->functions[i].name == E.key) {
+ found = true;
+ break;
+ }
+ }
+ if (found) {
+ continue;
+ }
+ ScriptLanguage::CodeCompletionOption option(E.key, ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION);
r_options->push_back(option);
}
@@ -9239,7 +9546,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
case COMPLETION_IDENTIFIER:
case COMPLETION_FUNCTION_CALL: {
bool comp_ident = completion_type == COMPLETION_IDENTIFIER;
- Map<String, ScriptCodeCompletionOption::Kind> matches;
+ Map<String, ScriptLanguage::CodeCompletionKind> matches;
StringName skip_function;
BlockNode *block = completion_block;
@@ -9248,7 +9555,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (comp_ident) {
for (const KeyValue<StringName, BlockNode::Variable> &E : block->variables) {
if (E.value.line < completion_line) {
- matches.insert(E.key, ScriptCodeCompletionOption::KIND_VARIABLE);
+ matches.insert(E.key, ScriptLanguage::CODE_COMPLETION_KIND_VARIABLE);
}
}
}
@@ -9256,7 +9563,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (block->parent_function) {
if (comp_ident) {
for (int i = 0; i < block->parent_function->arguments.size(); i++) {
- matches.insert(block->parent_function->arguments[i].name, ScriptCodeCompletionOption::KIND_VARIABLE);
+ matches.insert(block->parent_function->arguments[i].name, ScriptLanguage::CODE_COMPLETION_KIND_VARIABLE);
}
}
skip_function = block->parent_function->name;
@@ -9267,9 +9574,9 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (comp_ident) {
if (p_info.functions.has("global")) {
for (const KeyValue<StringName, BuiltInInfo> &E : p_info.functions["global"].built_ins) {
- ScriptCodeCompletionOption::Kind kind = ScriptCodeCompletionOption::KIND_MEMBER;
+ ScriptLanguage::CodeCompletionKind kind = ScriptLanguage::CODE_COMPLETION_KIND_MEMBER;
if (E.value.constant) {
- kind = ScriptCodeCompletionOption::KIND_CONSTANT;
+ kind = ScriptLanguage::CODE_COMPLETION_KIND_CONSTANT;
}
matches.insert(E.key, kind);
}
@@ -9277,9 +9584,9 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (p_info.functions.has("constants")) {
for (const KeyValue<StringName, BuiltInInfo> &E : p_info.functions["constants"].built_ins) {
- ScriptCodeCompletionOption::Kind kind = ScriptCodeCompletionOption::KIND_MEMBER;
+ ScriptLanguage::CodeCompletionKind kind = ScriptLanguage::CODE_COMPLETION_KIND_MEMBER;
if (E.value.constant) {
- kind = ScriptCodeCompletionOption::KIND_CONSTANT;
+ kind = ScriptLanguage::CODE_COMPLETION_KIND_CONSTANT;
}
matches.insert(E.key, kind);
}
@@ -9287,19 +9594,22 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (skip_function != StringName() && p_info.functions.has(skip_function)) {
for (const KeyValue<StringName, BuiltInInfo> &E : p_info.functions[skip_function].built_ins) {
- ScriptCodeCompletionOption::Kind kind = ScriptCodeCompletionOption::KIND_MEMBER;
+ ScriptLanguage::CodeCompletionKind kind = ScriptLanguage::CODE_COMPLETION_KIND_MEMBER;
if (E.value.constant) {
- kind = ScriptCodeCompletionOption::KIND_CONSTANT;
+ kind = ScriptLanguage::CODE_COMPLETION_KIND_CONSTANT;
}
matches.insert(E.key, kind);
}
}
+ for (const KeyValue<StringName, ShaderNode::Constant> &E : shader->constants) {
+ matches.insert(E.key, ScriptLanguage::CODE_COMPLETION_KIND_CONSTANT);
+ }
for (const KeyValue<StringName, ShaderNode::Varying> &E : shader->varyings) {
- matches.insert(E.key, ScriptCodeCompletionOption::KIND_VARIABLE);
+ matches.insert(E.key, ScriptLanguage::CODE_COMPLETION_KIND_VARIABLE);
}
for (const KeyValue<StringName, ShaderNode::Uniform> &E : shader->uniforms) {
- matches.insert(E.key, ScriptCodeCompletionOption::KIND_MEMBER);
+ matches.insert(E.key, ScriptLanguage::CODE_COMPLETION_KIND_MEMBER);
}
}
@@ -9307,7 +9617,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (!shader->functions[i].callable || shader->functions[i].name == skip_function) {
continue;
}
- matches.insert(String(shader->functions[i].name), ScriptCodeCompletionOption::KIND_FUNCTION);
+ matches.insert(String(shader->functions[i].name), ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION);
}
int idx = 0;
@@ -9315,7 +9625,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
if (stages && stages->has(skip_function)) {
for (const KeyValue<StringName, StageFunctionInfo> &E : (*stages)[skip_function].stage_functions) {
- matches.insert(String(E.key), ScriptCodeCompletionOption::KIND_FUNCTION);
+ matches.insert(String(E.key), ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION);
}
}
@@ -9324,7 +9634,7 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
idx++;
continue;
}
- matches.insert(String(builtin_func_defs[idx].name), ScriptCodeCompletionOption::KIND_FUNCTION);
+ matches.insert(String(builtin_func_defs[idx].name), ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION);
idx++;
}
@@ -9338,15 +9648,15 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
continue;
}
if (builtin_func_defs[idx].tag == completion_class) {
- matches.insert(String(builtin_func_defs[idx].name), ScriptCodeCompletionOption::KIND_FUNCTION);
+ matches.insert(String(builtin_func_defs[idx].name), ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION);
}
idx++;
}
}
- for (const KeyValue<String, ScriptCodeCompletionOption::Kind> &E : matches) {
- ScriptCodeCompletionOption option(E.key, E.value);
- if (E.value == ScriptCodeCompletionOption::KIND_FUNCTION) {
+ for (const KeyValue<String, ScriptLanguage::CodeCompletionKind> &E : matches) {
+ ScriptLanguage::CodeCompletionOption option(E.key, E.value);
+ if (E.value == ScriptLanguage::CODE_COMPLETION_KIND_FUNCTION) {
option.insert_text += "(";
}
r_options->push_back(option);
@@ -9595,18 +9905,18 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
}
for (int i = 0; i < limit; i++) {
- r_options->push_back(ScriptCodeCompletionOption(String::chr(colv[i]), ScriptCodeCompletionOption::KIND_PLAIN_TEXT));
- r_options->push_back(ScriptCodeCompletionOption(String::chr(coordv[i]), ScriptCodeCompletionOption::KIND_PLAIN_TEXT));
- r_options->push_back(ScriptCodeCompletionOption(String::chr(coordt[i]), ScriptCodeCompletionOption::KIND_PLAIN_TEXT));
+ r_options->push_back(ScriptLanguage::CodeCompletionOption(String::chr(colv[i]), ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT));
+ r_options->push_back(ScriptLanguage::CodeCompletionOption(String::chr(coordv[i]), ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT));
+ r_options->push_back(ScriptLanguage::CodeCompletionOption(String::chr(coordt[i]), ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT));
}
} break;
case COMPLETION_HINT: {
- if (completion_base == DataType::TYPE_VEC4) {
- ScriptCodeCompletionOption option("hint_color", ScriptCodeCompletionOption::KIND_PLAIN_TEXT);
+ if (completion_base == DataType::TYPE_VEC3 || completion_base == DataType::TYPE_VEC4) {
+ ScriptLanguage::CodeCompletionOption option("hint_color", ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
r_options->push_back(option);
} else if ((completion_base == DataType::TYPE_INT || completion_base == DataType::TYPE_FLOAT) && !completion_base_array) {
- ScriptCodeCompletionOption option("hint_range", ScriptCodeCompletionOption::KIND_PLAIN_TEXT);
+ ScriptLanguage::CodeCompletionOption option("hint_range", ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
if (completion_base == DataType::TYPE_INT) {
option.insert_text = "hint_range(0, 100, 1)";
@@ -9642,12 +9952,12 @@ Error ShaderLanguage::complete(const String &p_code, const ShaderCompileInfo &p_
}
for (int i = 0; i < options.size(); i++) {
- ScriptCodeCompletionOption option(options[i], ScriptCodeCompletionOption::KIND_PLAIN_TEXT);
+ ScriptLanguage::CodeCompletionOption option(options[i], ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
r_options->push_back(option);
}
}
if (!completion_base_array) {
- ScriptCodeCompletionOption option("instance_index", ScriptCodeCompletionOption::KIND_PLAIN_TEXT);
+ ScriptLanguage::CodeCompletionOption option("instance_index", ScriptLanguage::CODE_COMPLETION_KIND_PLAIN_TEXT);
option.insert_text = "instance_index(0)";
r_options->push_back(option);
}
@@ -9673,7 +9983,7 @@ ShaderLanguage::ShaderLanguage() {
nodes = nullptr;
completion_class = TAG_GLOBAL;
-#if DEBUG_ENABLED
+#ifdef DEBUG_ENABLED
warnings_check_map.insert(ShaderWarning::UNUSED_CONSTANT, &used_constants);
warnings_check_map.insert(ShaderWarning::UNUSED_FUNCTION, &used_functions);
warnings_check_map.insert(ShaderWarning::UNUSED_STRUCT, &used_structs);
diff --git a/servers/rendering/shader_language.h b/servers/rendering/shader_language.h
index 0ed3d9fabf..80230ed54c 100644
--- a/servers/rendering/shader_language.h
+++ b/servers/rendering/shader_language.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -362,7 +362,6 @@ public:
TYPE_CONTROL_FLOW,
TYPE_MEMBER,
TYPE_ARRAY,
- TYPE_ARRAY_DECLARATION,
TYPE_ARRAY_CONSTRUCT,
TYPE_STRUCT,
};
@@ -387,7 +386,7 @@ public:
return node;
}
- Node *nodes;
+ Node *nodes = nullptr;
struct OperatorNode : public Node {
DataType return_cache = TYPE_VOID;
@@ -428,7 +427,10 @@ public:
struct Declaration {
StringName name;
- Node *initializer;
+ uint32_t size = 0U;
+ Node *size_expression = nullptr;
+ Vector<Node *> initializer;
+ bool single_expression = false;
};
Vector<Declaration> declarations;
@@ -449,8 +451,8 @@ public:
int array_size = 0;
bool is_local = false;
- virtual DataType get_datatype() const override { return datatype_cache; }
- virtual String get_datatype_name() const override { return String(struct_name); }
+ virtual DataType get_datatype() const override { return call_expression ? call_expression->get_datatype() : datatype_cache; }
+ virtual String get_datatype_name() const override { return call_expression ? call_expression->get_datatype_name() : String(struct_name); }
virtual int get_array_size() const override { return (index_expression || call_expression) ? 0 : array_size; }
virtual bool is_indexed() const override { return index_expression != nullptr; }
@@ -471,27 +473,6 @@ public:
Node(TYPE_ARRAY_CONSTRUCT) {}
};
- struct ArrayDeclarationNode : public Node {
- DataPrecision precision = PRECISION_DEFAULT;
- DataType datatype = TYPE_VOID;
- String struct_name;
- bool is_const = false;
- Node *size_expression = nullptr;
-
- struct Declaration {
- StringName name;
- uint32_t size;
- Vector<Node *> initializer;
- bool single_expression;
- };
- Vector<Declaration> declarations;
-
- virtual DataType get_datatype() const override { return datatype; }
-
- ArrayDeclarationNode() :
- Node(TYPE_ARRAY_DECLARATION) {}
- };
-
struct ConstantNode : public Node {
DataType datatype = TYPE_VOID;
String struct_name = "";
@@ -505,7 +486,7 @@ public:
};
Vector<Value> values;
- Vector<ArrayDeclarationNode::Declaration> array_declarations;
+ Vector<VariableDeclarationNode::Declaration> array_declarations;
virtual DataType get_datatype() const override { return datatype; }
virtual String get_datatype_name() const override { return struct_name; }
@@ -523,7 +504,9 @@ public:
enum BlockType {
BLOCK_TYPE_STANDART,
- BLOCK_TYPE_FOR,
+ BLOCK_TYPE_FOR_INIT,
+ BLOCK_TYPE_FOR_CONDITION,
+ BLOCK_TYPE_FOR_EXPRESSION,
BLOCK_TYPE_SWITCH,
BLOCK_TYPE_CASE,
BLOCK_TYPE_DEFAULT,
@@ -545,6 +528,7 @@ public:
Map<StringName, Variable> variables;
List<Node *> statements;
bool single_statement = false;
+ bool use_comma_between_statements = false;
BlockNode() :
Node(TYPE_BLOCK) {}
@@ -574,8 +558,8 @@ public:
Node *call_expression = nullptr;
bool has_swizzling_duplicates = false;
- virtual DataType get_datatype() const override { return datatype; }
- virtual String get_datatype_name() const override { return String(struct_name); }
+ virtual DataType get_datatype() const override { return call_expression ? call_expression->get_datatype() : datatype; }
+ virtual String get_datatype_name() const override { return call_expression ? call_expression->get_datatype_name() : String(struct_name); }
virtual int get_array_size() const override { return (index_expression || call_expression) ? 0 : array_size; }
virtual bool is_indexed() const override { return index_expression != nullptr || call_expression != nullptr; }
@@ -631,20 +615,20 @@ public:
DataType type;
StringName type_str;
DataPrecision precision;
- ConstantNode *initializer;
+ ConstantNode *initializer = nullptr;
int array_size;
};
struct Function {
StringName name;
- FunctionNode *function;
+ FunctionNode *function = nullptr;
Set<StringName> uses_function;
bool callable;
};
struct Struct {
StringName name;
- StructNode *shader_struct;
+ StructNode *shader_struct = nullptr;
};
struct Varying {
@@ -731,7 +715,7 @@ public:
bool is_op;
union {
Operator op;
- Node *node;
+ Node *node = nullptr;
};
};
@@ -742,6 +726,7 @@ public:
enum CompletionType {
COMPLETION_NONE,
+ COMPLETION_SHADER_TYPE,
COMPLETION_RENDER_MODE,
COMPLETION_MAIN_FUNCTION,
COMPLETION_IDENTIFIER,
@@ -771,6 +756,7 @@ public:
static bool is_token_interpolation(TokenType p_type);
static DataInterpolation get_token_interpolation(TokenType p_type);
static bool is_token_precision(TokenType p_type);
+ static bool is_token_arg_qual(TokenType p_type);
static DataPrecision get_token_precision(TokenType p_type);
static String get_precision_name(DataPrecision p_type);
static String get_datatype_name(DataType p_type);
@@ -787,7 +773,7 @@ public:
static bool is_sampler_type(DataType p_type);
static Variant constant_value_to_variant(const Vector<ShaderLanguage::ConstantNode::Value> &p_value, DataType p_type, int p_array_size, ShaderLanguage::ShaderNode::Uniform::Hint p_hint = ShaderLanguage::ShaderNode::Uniform::HINT_NONE);
static PropertyInfo uniform_to_property_info(const ShaderNode::Uniform &p_uniform);
- static uint32_t get_type_size(DataType p_type);
+ static uint32_t get_datatype_size(DataType p_type);
static void get_keyword_list(List<String> *r_keywords);
static bool is_control_flow_keyword(String p_keyword);
@@ -885,15 +871,18 @@ private:
struct KeyWord {
TokenType token;
const char *text;
+ uint32_t flags;
+ const Vector<String> excluded_shader_types;
+ const Vector<String> functions;
};
static const KeyWord keyword_list[];
- GlobalVariableGetTypeFunc global_var_get_type_func;
+ GlobalVariableGetTypeFunc global_var_get_type_func = nullptr;
- bool error_set;
+ bool error_set = false;
String error_str;
- int error_line;
+ int error_line = 0;
#ifdef DEBUG_ENABLED
struct Usage {
@@ -917,35 +906,31 @@ private:
List<ShaderWarning> warnings;
bool check_warnings = false;
- uint32_t warning_flags;
+ uint32_t warning_flags = 0;
- void _add_line_warning(ShaderWarning::Code p_code, const StringName &p_subject = "") {
- warnings.push_back(ShaderWarning(p_code, tk_line, p_subject));
+ void _add_line_warning(ShaderWarning::Code p_code, const StringName &p_subject = "", const Vector<Variant> &p_extra_args = Vector<Variant>()) {
+ warnings.push_back(ShaderWarning(p_code, tk_line, p_subject, p_extra_args));
+ }
+ void _add_global_warning(ShaderWarning::Code p_code, const StringName &p_subject = "", const Vector<Variant> &p_extra_args = Vector<Variant>()) {
+ warnings.push_back(ShaderWarning(p_code, -1, p_subject, p_extra_args));
}
- void _add_warning(ShaderWarning::Code p_code, int p_line, const StringName &p_subject = "") {
- warnings.push_back(ShaderWarning(p_code, p_line, p_subject));
+ void _add_warning(ShaderWarning::Code p_code, int p_line, const StringName &p_subject = "", const Vector<Variant> &p_extra_args = Vector<Variant>()) {
+ warnings.push_back(ShaderWarning(p_code, p_line, p_subject, p_extra_args));
}
void _check_warning_accums();
#endif // DEBUG_ENABLED
String code;
- int char_idx;
- int tk_line;
+ int char_idx = 0;
+ int tk_line = 0;
+ StringName shader_type_identifier;
StringName current_function;
bool last_const = false;
StringName last_name;
VaryingFunctionNames varying_function_names;
- struct VaryingUsage {
- ShaderNode::Varying *var;
- int line;
- };
- List<VaryingUsage> unknown_varying_usages;
-
- bool _check_varying_usages(int *r_error_line, String *r_error_message) const;
-
TkPos _get_tkpos() {
TkPos tkp;
tkp.char_idx = char_idx;
@@ -968,12 +953,33 @@ private:
error_str = p_str;
}
+ void _set_expected_error(const String &p_what) {
+ _set_error(vformat(RTR("Expected a '%s'."), p_what));
+ }
+
+ void _set_expected_error(const String &p_first, const String p_second) {
+ _set_error(vformat(RTR("Expected a '%s' or '%s'."), p_first, p_second));
+ }
+
+ void _set_expected_after_error(const String &p_what, const String &p_after) {
+ _set_error(vformat(RTR("Expected a '%s' after '%s'."), p_what, p_after));
+ }
+
+ void _set_redefinition_error(const String &p_what) {
+ _set_error(vformat(RTR("Redefinition of '%s'."), p_what));
+ }
+
+ void _set_parsing_error() {
+ _set_error("Parser bug.");
+ }
+
static const char *token_names[TK_MAX];
Token _make_token(TokenType p_type, const StringName &p_text = StringName());
Token _get_token();
+ bool _lookup_next(Token &r_tk);
- ShaderNode *shader;
+ ShaderNode *shader = nullptr;
enum IdentifierType {
IDENTIFIER_FUNCTION,
@@ -1020,14 +1026,18 @@ private:
};
CompletionType completion_type;
- int completion_line;
- BlockNode *completion_block;
+ int completion_line = 0;
+ BlockNode *completion_block = nullptr;
DataType completion_base;
- bool completion_base_array;
+ bool completion_base_array = false;
SubClassTag completion_class;
StringName completion_function;
StringName completion_struct;
- int completion_argument;
+ int completion_argument = 0;
+
+#ifdef DEBUG_ENABLED
+ uint32_t keyword_completion_context;
+#endif // DEBUG_ENABLED
const Map<StringName, FunctionInfo> *stages = nullptr;
@@ -1038,6 +1048,7 @@ private:
static bool is_const_suffix_lut_initialized;
+ Error _validate_precision(DataType p_type, DataPrecision p_precision);
Error _validate_datatype(DataType p_type);
bool _compare_datatypes(DataType p_datatype_a, String p_datatype_name_a, int p_array_size_a, DataType p_datatype_b, String p_datatype_name_b, int p_array_size_b);
bool _compare_datatypes_in_nodes(Node *a, Node *b);
@@ -1047,14 +1058,10 @@ private:
bool _propagate_function_call_sampler_uniform_settings(StringName p_name, int p_argument, TextureFilter p_filter, TextureRepeat p_repeat);
bool _propagate_function_call_sampler_builtin_reference(StringName p_name, int p_argument, const StringName &p_builtin);
bool _validate_varying_assign(ShaderNode::Varying &p_varying, String *r_message);
- bool _validate_varying_using(ShaderNode::Varying &p_varying, String *r_message);
bool _check_node_constness(const Node *p_node) const;
- Node *_parse_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, int &r_array_size);
- Error _parse_global_array_size(int &r_array_size, const FunctionInfo &p_function_info);
- Error _parse_local_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, Node *&r_size_expression, int &r_array_size, bool &r_is_unknown_size);
-
Node *_parse_expression(BlockNode *p_block, const FunctionInfo &p_function_info);
+ Error _parse_array_size(BlockNode *p_block, const FunctionInfo &p_function_info, bool p_forbid_unknown_size, Node **r_size_expression, int *r_array_size, bool *r_unknown_size);
Node *_parse_array_constructor(BlockNode *p_block, const FunctionInfo &p_function_info);
Node *_parse_array_constructor(BlockNode *p_block, const FunctionInfo &p_function_info, DataType p_type, const StringName &p_struct_name, int p_array_size);
ShaderLanguage::Node *_reduce_expression(BlockNode *p_block, ShaderLanguage::Node *p_node);
@@ -1095,7 +1102,7 @@ public:
};
Error compile(const String &p_code, const ShaderCompileInfo &p_info);
- Error complete(const String &p_code, const ShaderCompileInfo &p_info, List<ScriptCodeCompletionOption> *r_options, String &r_call_hint);
+ Error complete(const String &p_code, const ShaderCompileInfo &p_info, List<ScriptLanguage::CodeCompletionOption> *r_options, String &r_call_hint);
String get_error_text();
int get_error_line();
diff --git a/servers/rendering/shader_types.cpp b/servers/rendering/shader_types.cpp
index 91ba8301e2..27a69fbc2e 100644
--- a/servers/rendering/shader_types.cpp
+++ b/servers/rendering/shader_types.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -74,6 +74,7 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["POINT_SIZE"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["INSTANCE_ID"] = constt(ShaderLanguage::TYPE_INT);
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["INSTANCE_CUSTOM"] = constt(ShaderLanguage::TYPE_VEC4);
+ shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["VERTEX_ID"] = constt(ShaderLanguage::TYPE_INT);
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["ROUGHNESS"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["BONE_INDICES"] = ShaderLanguage::TYPE_UVEC4;
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["BONE_WEIGHTS"] = ShaderLanguage::TYPE_VEC4;
@@ -85,10 +86,10 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].main_function = true;
//builtins
- shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["WORLD_MATRIX"] = ShaderLanguage::TYPE_MAT4;
- shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["WORLD_NORMAL_MATRIX"] = ShaderLanguage::TYPE_MAT3;
- shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["INV_CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
- shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["MODEL_MATRIX"] = ShaderLanguage::TYPE_MAT4;
+ shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["MODEL_NORMAL_MATRIX"] = ShaderLanguage::TYPE_MAT3;
+ shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["INV_VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["PROJECTION_MATRIX"] = ShaderLanguage::TYPE_MAT4;
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["INV_PROJECTION_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["vertex"].built_ins["MODELVIEW_MATRIX"] = ShaderLanguage::TYPE_MAT4;
@@ -120,7 +121,7 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["RIM"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["RIM_TINT"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["CLEARCOAT"] = ShaderLanguage::TYPE_FLOAT;
- shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["CLEARCOAT_GLOSS"] = ShaderLanguage::TYPE_FLOAT;
+ shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["CLEARCOAT_ROUGHNESS"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["ANISOTROPY"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["ANISOTROPY_FLOW"] = ShaderLanguage::TYPE_VEC2;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["SSS_STRENGTH"] = ShaderLanguage::TYPE_FLOAT;
@@ -144,10 +145,10 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["OUTPUT_IS_SRGB"] = constt(ShaderLanguage::TYPE_BOOL);
- shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["WORLD_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
- shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["WORLD_NORMAL_MATRIX"] = constt(ShaderLanguage::TYPE_MAT3);
- shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["INV_CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
- shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["MODEL_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["MODEL_NORMAL_MATRIX"] = constt(ShaderLanguage::TYPE_MAT3);
+ shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["INV_VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["PROJECTION_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["INV_PROJECTION_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["VIEWPORT_SIZE"] = constt(ShaderLanguage::TYPE_VEC2);
@@ -162,9 +163,9 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["ALPHA_ANTIALIASING_EDGE"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_SPATIAL].functions["fragment"].built_ins["ALPHA_TEXTURE_COORDINATE"] = ShaderLanguage::TYPE_VEC2;
- shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["WORLD_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
- shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["INV_CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
- shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["CAMERA_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["MODEL_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["INV_VIEW_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["PROJECTION_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["INV_PROJECTION_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["VIEWPORT_SIZE"] = constt(ShaderLanguage::TYPE_VEC2);
@@ -177,7 +178,6 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["LIGHT"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["LIGHT_COLOR"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["ATTENUATION"] = constt(ShaderLanguage::TYPE_FLOAT);
- shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["SHADOW_ATTENUATION"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["ALBEDO"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["BACKLIGHT"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_SPATIAL].functions["light"].built_ins["METALLIC"] = constt(ShaderLanguage::TYPE_FLOAT);
@@ -201,7 +201,7 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "unshaded" });
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "wireframe" });
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "diffuse", "lambert", "lambert_wrap", "burley", "toon" });
- shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "specular", "schlick_ggx", "blinn", "phong", "toon", "disabled" });
+ shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "specular", "schlick_ggx", "toon", "disabled" });
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "skip_vertex_transform" });
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "world_vertex_coords" });
shader_modes[RS::SHADER_SPATIAL].modes.push_back({ "ensure_correct_normals" });
@@ -226,10 +226,12 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["COLOR"] = ShaderLanguage::TYPE_VEC4;
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["POINT_SIZE"] = ShaderLanguage::TYPE_FLOAT;
- shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["WORLD_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
+ shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["MODEL_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["CANVAS_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["SCREEN_MATRIX"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["INSTANCE_CUSTOM"] = constt(ShaderLanguage::TYPE_VEC4);
+ shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["INSTANCE_ID"] = constt(ShaderLanguage::TYPE_INT);
+ shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["VERTEX_ID"] = constt(ShaderLanguage::TYPE_INT);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["AT_LIGHT_PASS"] = constt(ShaderLanguage::TYPE_BOOL);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].built_ins["TEXTURE_PIXEL_SIZE"] = constt(ShaderLanguage::TYPE_VEC2);
shader_modes[RS::SHADER_CANVAS_ITEM].functions["vertex"].can_discard = false;
@@ -315,6 +317,12 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["MASS"] = ShaderLanguage::TYPE_FLOAT;
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["ACTIVE"] = ShaderLanguage::TYPE_BOOL;
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["CUSTOM"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA1"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA2"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA3"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA4"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA5"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["USERDATA6"] = ShaderLanguage::TYPE_VEC4;
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["TRANSFORM"] = ShaderLanguage::TYPE_MAT4;
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["LIFETIME"] = constt(ShaderLanguage::TYPE_FLOAT);
shader_modes[RS::SHADER_PARTICLES].functions["start"].built_ins["DELTA"] = constt(ShaderLanguage::TYPE_FLOAT);
@@ -335,6 +343,12 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["ACTIVE"] = ShaderLanguage::TYPE_BOOL;
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["RESTART"] = constt(ShaderLanguage::TYPE_BOOL);
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["CUSTOM"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA1"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA2"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA3"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA4"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA5"] = ShaderLanguage::TYPE_VEC4;
+ shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["USERDATA6"] = ShaderLanguage::TYPE_VEC4;
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["TRANSFORM"] = ShaderLanguage::TYPE_MAT4;
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["LIFETIME"] = constt(ShaderLanguage::TYPE_FLOAT);
shader_modes[RS::SHADER_PARTICLES].functions["process"].built_ins["DELTA"] = constt(ShaderLanguage::TYPE_FLOAT);
@@ -432,7 +446,6 @@ ShaderTypes::ShaderTypes() {
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["OBJECT_POSITION"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["UVW"] = constt(ShaderLanguage::TYPE_VEC3);
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["EXTENTS"] = constt(ShaderLanguage::TYPE_VEC3);
- shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["TRANSFORM"] = constt(ShaderLanguage::TYPE_MAT4);
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["SDF"] = constt(ShaderLanguage::TYPE_FLOAT);
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["ALBEDO"] = ShaderLanguage::TYPE_VEC3;
shader_modes[RS::SHADER_FOG].functions["fog"].built_ins["DENSITY"] = ShaderLanguage::TYPE_FLOAT;
diff --git a/servers/rendering/shader_types.h b/servers/rendering/shader_types.h
index 347c0ec7df..385083b670 100644
--- a/servers/rendering/shader_types.h
+++ b/servers/rendering/shader_types.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/rendering/shader_warnings.cpp b/servers/rendering/shader_warnings.cpp
index bffae484a8..639b9bd165 100644
--- a/servers/rendering/shader_warnings.cpp
+++ b/servers/rendering/shader_warnings.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -48,21 +48,23 @@ const StringName &ShaderWarning::get_subject() const {
String ShaderWarning::get_message() const {
switch (code) {
case FLOAT_COMPARISON:
- return vformat("Direct floating-point comparison (this may not evaluate to `true` as you expect). Instead, use `abs(a - b) < 0.0001` for an approximate but predictable comparison.");
+ return vformat(RTR("Direct floating-point comparison (this may not evaluate to `true` as you expect). Instead, use `abs(a - b) < 0.0001` for an approximate but predictable comparison."));
case UNUSED_CONSTANT:
- return vformat("The const '%s' is declared but never used.", subject);
+ return vformat(RTR("The const '%s' is declared but never used."), subject);
case UNUSED_FUNCTION:
- return vformat("The function '%s' is declared but never used.", subject);
+ return vformat(RTR("The function '%s' is declared but never used."), subject);
case UNUSED_STRUCT:
- return vformat("The struct '%s' is declared but never used.", subject);
+ return vformat(RTR("The struct '%s' is declared but never used."), subject);
case UNUSED_UNIFORM:
- return vformat("The uniform '%s' is declared but never used.", subject);
+ return vformat(RTR("The uniform '%s' is declared but never used."), subject);
case UNUSED_VARYING:
- return vformat("The varying '%s' is declared but never used.", subject);
+ return vformat(RTR("The varying '%s' is declared but never used."), subject);
case UNUSED_LOCAL_VARIABLE:
- return vformat("The local variable '%s' is declared but never used.", subject);
+ return vformat(RTR("The local variable '%s' is declared but never used."), subject);
case FORMATTING_ERROR:
return subject;
+ case DEVICE_LIMIT_EXCEEDED:
+ return vformat(RTR("The total size of the %s for this shader on this device has been exceeded (%d/%d). The shader may not work correctly."), subject, (int)extra_args[0], (int)extra_args[1]);
default:
break;
}
@@ -73,6 +75,10 @@ String ShaderWarning::get_name() const {
return get_name_from_code(code);
}
+Vector<Variant> ShaderWarning::get_extra_args() const {
+ return extra_args;
+}
+
String ShaderWarning::get_name_from_code(Code p_code) {
ERR_FAIL_INDEX_V(p_code, WARNING_MAX, String());
@@ -85,6 +91,7 @@ String ShaderWarning::get_name_from_code(Code p_code) {
"UNUSED_VARYING",
"UNUSED_LOCAL_VARIABLE",
"FORMATTING_ERROR",
+ "DEVICE_LIMIT_EXCEEDED",
};
static_assert((sizeof(names) / sizeof(*names)) == WARNING_MAX, "Amount of warning types don't match the amount of warning names.");
@@ -114,6 +121,7 @@ static void init_code_to_flags_map() {
code_to_flags_map->insert(ShaderWarning::UNUSED_VARYING, ShaderWarning::UNUSED_VARYING_FLAG);
code_to_flags_map->insert(ShaderWarning::UNUSED_LOCAL_VARIABLE, ShaderWarning::UNUSED_LOCAL_VARIABLE_FLAG);
code_to_flags_map->insert(ShaderWarning::FORMATTING_ERROR, ShaderWarning::FORMATTING_ERROR_FLAG);
+ code_to_flags_map->insert(ShaderWarning::DEVICE_LIMIT_EXCEEDED, ShaderWarning::DEVICE_LIMIT_EXCEEDED_FLAG);
}
ShaderWarning::CodeFlags ShaderWarning::get_flags_from_codemap(const Map<Code, bool> &p_map) {
@@ -132,8 +140,8 @@ ShaderWarning::CodeFlags ShaderWarning::get_flags_from_codemap(const Map<Code, b
return (CodeFlags)result;
}
-ShaderWarning::ShaderWarning(Code p_code, int p_line, const StringName &p_subject) :
- code(p_code), line(p_line), subject(p_subject) {
+ShaderWarning::ShaderWarning(Code p_code, int p_line, const StringName &p_subject, const Vector<Variant> &p_extra_args) :
+ code(p_code), line(p_line), subject(p_subject), extra_args(p_extra_args) {
}
#endif // DEBUG_ENABLED
diff --git a/servers/rendering/shader_warnings.h b/servers/rendering/shader_warnings.h
index 18915fffd8..e309907181 100644
--- a/servers/rendering/shader_warnings.h
+++ b/servers/rendering/shader_warnings.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -36,6 +36,7 @@
#include "core/string/string_name.h"
#include "core/templates/list.h"
#include "core/templates/map.h"
+#include "core/variant/variant.h"
class ShaderWarning {
public:
@@ -48,6 +49,7 @@ public:
UNUSED_VARYING,
UNUSED_LOCAL_VARIABLE,
FORMATTING_ERROR,
+ DEVICE_LIMIT_EXCEEDED,
WARNING_MAX,
};
@@ -61,12 +63,14 @@ public:
UNUSED_VARYING_FLAG = 32U,
UNUSED_LOCAL_VARIABLE_FLAG = 64U,
FORMATTING_ERROR_FLAG = 128U,
+ DEVICE_LIMIT_EXCEEDED_FLAG = 256U,
};
private:
Code code;
int line;
StringName subject;
+ Vector<Variant> extra_args;
public:
Code get_code() const;
@@ -74,12 +78,13 @@ public:
const StringName &get_subject() const;
String get_message() const;
String get_name() const;
+ Vector<Variant> get_extra_args() const;
static String get_name_from_code(Code p_code);
static Code get_code_from_name(const String &p_name);
static CodeFlags get_flags_from_codemap(const Map<Code, bool> &p_map);
- ShaderWarning(Code p_code = WARNING_MAX, int p_line = -1, const StringName &p_subject = "");
+ ShaderWarning(Code p_code = WARNING_MAX, int p_line = -1, const StringName &p_subject = "", const Vector<Variant> &p_extra_args = Vector<Variant>());
};
#endif // DEBUG_ENABLED
diff --git a/servers/rendering/storage/SCsub b/servers/rendering/storage/SCsub
new file mode 100644
index 0000000000..86681f9c74
--- /dev/null
+++ b/servers/rendering/storage/SCsub
@@ -0,0 +1,5 @@
+#!/usr/bin/env python
+
+Import("env")
+
+env.add_source_files(env.servers_sources, "*.cpp")
diff --git a/servers/rendering/storage/light_storage.h b/servers/rendering/storage/light_storage.h
new file mode 100644
index 0000000000..0cb0f35570
--- /dev/null
+++ b/servers/rendering/storage/light_storage.h
@@ -0,0 +1,139 @@
+/*************************************************************************/
+/* light_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef LIGHT_STORAGE_H
+#define LIGHT_STORAGE_H
+
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering_server.h"
+
+class RendererLightStorage {
+public:
+ virtual ~RendererLightStorage() {}
+
+ /* Light API */
+
+ virtual RID directional_light_allocate() = 0;
+ virtual void directional_light_initialize(RID p_rid) = 0;
+
+ virtual RID omni_light_allocate() = 0;
+ virtual void omni_light_initialize(RID p_rid) = 0;
+
+ virtual RID spot_light_allocate() = 0;
+ virtual void spot_light_initialize(RID p_rid) = 0;
+
+ virtual void light_free(RID p_rid) = 0;
+
+ virtual void light_set_color(RID p_light, const Color &p_color) = 0;
+ virtual void light_set_param(RID p_light, RS::LightParam p_param, float p_value) = 0;
+ virtual void light_set_shadow(RID p_light, bool p_enabled) = 0;
+ virtual void light_set_projector(RID p_light, RID p_texture) = 0;
+ virtual void light_set_negative(RID p_light, bool p_enable) = 0;
+ virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) = 0;
+ virtual void light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) = 0;
+ virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) = 0;
+ virtual void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) = 0;
+ virtual void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) = 0;
+
+ virtual void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) = 0;
+
+ virtual void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) = 0;
+ virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) = 0;
+ virtual bool light_directional_get_blend_splits(RID p_light) const = 0;
+ virtual void light_directional_set_sky_mode(RID p_light, RS::LightDirectionalSkyMode p_mode) = 0;
+ virtual RS::LightDirectionalSkyMode light_directional_get_sky_mode(RID p_light) const = 0;
+
+ virtual RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) = 0;
+ virtual RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) = 0;
+
+ virtual bool light_has_shadow(RID p_light) const = 0;
+
+ virtual bool light_has_projector(RID p_light) const = 0;
+
+ virtual RS::LightType light_get_type(RID p_light) const = 0;
+ virtual AABB light_get_aabb(RID p_light) const = 0;
+ virtual float light_get_param(RID p_light, RS::LightParam p_param) = 0;
+ virtual Color light_get_color(RID p_light) = 0;
+ virtual RS::LightBakeMode light_get_bake_mode(RID p_light) = 0;
+ virtual uint32_t light_get_max_sdfgi_cascade(RID p_light) = 0;
+ virtual uint64_t light_get_version(RID p_light) const = 0;
+
+ /* PROBE API */
+
+ virtual RID reflection_probe_allocate() = 0;
+ virtual void reflection_probe_initialize(RID p_rid) = 0;
+ virtual void reflection_probe_free(RID p_rid) = 0;
+
+ virtual void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) = 0;
+ virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) = 0;
+ virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) = 0;
+ virtual void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) = 0;
+ virtual void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) = 0;
+ virtual void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) = 0;
+ virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) = 0;
+ virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) = 0;
+ virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) = 0;
+ virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) = 0;
+ virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) = 0;
+ virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) = 0;
+ virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) = 0;
+ virtual void reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_ratio) = 0;
+
+ virtual AABB reflection_probe_get_aabb(RID p_probe) const = 0;
+ virtual RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const = 0;
+ virtual uint32_t reflection_probe_get_cull_mask(RID p_probe) const = 0;
+ virtual Vector3 reflection_probe_get_extents(RID p_probe) const = 0;
+ virtual Vector3 reflection_probe_get_origin_offset(RID p_probe) const = 0;
+ virtual float reflection_probe_get_origin_max_distance(RID p_probe) const = 0;
+ virtual bool reflection_probe_renders_shadows(RID p_probe) const = 0;
+ virtual float reflection_probe_get_mesh_lod_threshold(RID p_probe) const = 0;
+
+ /* LIGHTMAP */
+
+ virtual RID lightmap_allocate() = 0;
+ virtual void lightmap_initialize(RID p_rid) = 0;
+ virtual void lightmap_free(RID p_rid) = 0;
+
+ virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) = 0;
+ virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) = 0;
+ virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) = 0;
+ virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) = 0;
+ virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const = 0;
+ virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const = 0;
+ virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const = 0;
+ virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const = 0;
+ virtual AABB lightmap_get_aabb(RID p_lightmap) const = 0;
+ virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) = 0;
+ virtual bool lightmap_is_interior(RID p_lightmap) const = 0;
+ virtual void lightmap_set_probe_capture_update_speed(float p_speed) = 0;
+ virtual float lightmap_get_probe_capture_update_speed() const = 0;
+};
+
+#endif // !LIGHT_STORAGE_H
diff --git a/servers/rendering/storage/material_storage.h b/servers/rendering/storage/material_storage.h
new file mode 100644
index 0000000000..f0363f129a
--- /dev/null
+++ b/servers/rendering/storage/material_storage.h
@@ -0,0 +1,101 @@
+/*************************************************************************/
+/* material_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MATERIAL_STORAGE_H
+#define MATERIAL_STORAGE_H
+
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering_server.h"
+
+class RendererMaterialStorage {
+public:
+ virtual ~RendererMaterialStorage(){};
+
+ /* GLOBAL VARIABLE API */
+ virtual void global_variable_add(const StringName &p_name, RS::GlobalVariableType p_type, const Variant &p_value) = 0;
+ virtual void global_variable_remove(const StringName &p_name) = 0;
+ virtual Vector<StringName> global_variable_get_list() const = 0;
+
+ virtual void global_variable_set(const StringName &p_name, const Variant &p_value) = 0;
+ virtual void global_variable_set_override(const StringName &p_name, const Variant &p_value) = 0;
+ virtual Variant global_variable_get(const StringName &p_name) const = 0;
+ virtual RS::GlobalVariableType global_variable_get_type(const StringName &p_name) const = 0;
+
+ virtual void global_variables_load_settings(bool p_load_textures = true) = 0;
+ virtual void global_variables_clear() = 0;
+
+ virtual int32_t global_variables_instance_allocate(RID p_instance) = 0;
+ virtual void global_variables_instance_free(RID p_instance) = 0;
+ virtual void global_variables_instance_update(RID p_instance, int p_index, const Variant &p_value) = 0;
+
+ /* SHADER API */
+ virtual RID shader_allocate() = 0;
+ virtual void shader_initialize(RID p_rid) = 0;
+ virtual void shader_free(RID p_rid) = 0;
+
+ virtual void shader_set_code(RID p_shader, const String &p_code) = 0;
+ virtual String shader_get_code(RID p_shader) const = 0;
+ virtual void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const = 0;
+
+ virtual void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture, int p_index) = 0;
+ virtual RID shader_get_default_texture_param(RID p_shader, const StringName &p_name, int p_index) const = 0;
+ virtual Variant shader_get_param_default(RID p_material, const StringName &p_param) const = 0;
+
+ virtual RS::ShaderNativeSourceCode shader_get_native_source_code(RID p_shader) const = 0;
+
+ /* MATERIAL API */
+
+ virtual RID material_allocate() = 0;
+ virtual void material_initialize(RID p_rid) = 0;
+ virtual void material_free(RID p_rid) = 0;
+
+ virtual void material_set_render_priority(RID p_material, int priority) = 0;
+ virtual void material_set_shader(RID p_shader_material, RID p_shader) = 0;
+
+ virtual void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) = 0;
+ virtual Variant material_get_param(RID p_material, const StringName &p_param) const = 0;
+
+ virtual void material_set_next_pass(RID p_material, RID p_next_material) = 0;
+
+ virtual bool material_is_animated(RID p_material) = 0;
+ virtual bool material_casts_shadows(RID p_material) = 0;
+
+ struct InstanceShaderParam {
+ PropertyInfo info;
+ int index;
+ Variant default_value;
+ };
+
+ virtual void material_get_instance_shader_parameters(RID p_material, List<InstanceShaderParam> *r_parameters) = 0;
+
+ virtual void material_update_dependency(RID p_material, RendererStorage::DependencyTracker *p_instance) = 0;
+};
+
+#endif // !MATERIAL_STORAGE_H
diff --git a/servers/rendering/storage/mesh_storage.h b/servers/rendering/storage/mesh_storage.h
new file mode 100644
index 0000000000..1dac51319c
--- /dev/null
+++ b/servers/rendering/storage/mesh_storage.h
@@ -0,0 +1,136 @@
+/*************************************************************************/
+/* mesh_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef MESH_STORAGE_H
+#define MESH_STORAGE_H
+
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering_server.h"
+
+class RendererMeshStorage {
+public:
+ virtual ~RendererMeshStorage() {}
+
+ /* MESH API */
+
+ virtual RID mesh_allocate() = 0;
+ virtual void mesh_initialize(RID p_rid) = 0;
+ virtual void mesh_free(RID p_rid) = 0;
+
+ virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) = 0;
+
+ /// Returns stride
+ virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) = 0;
+
+ virtual int mesh_get_blend_shape_count(RID p_mesh) const = 0;
+
+ virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) = 0;
+ virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const = 0;
+
+ virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
+ virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
+ virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
+
+ virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) = 0;
+ virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const = 0;
+
+ virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const = 0;
+
+ virtual int mesh_get_surface_count(RID p_mesh) const = 0;
+
+ virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) = 0;
+ virtual AABB mesh_get_custom_aabb(RID p_mesh) const = 0;
+
+ virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) = 0;
+
+ virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) = 0;
+
+ virtual void mesh_clear(RID p_mesh) = 0;
+
+ virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) = 0;
+
+ /* MESH INSTANCE */
+
+ virtual RID mesh_instance_create(RID p_base) = 0;
+ virtual void mesh_instance_free(RID p_rid) = 0;
+ virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) = 0;
+ virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) = 0;
+ virtual void mesh_instance_check_for_update(RID p_mesh_instance) = 0;
+ virtual void update_mesh_instances() = 0;
+
+ /* MULTIMESH API */
+
+ virtual RID multimesh_allocate() = 0;
+ virtual void multimesh_initialize(RID p_rid) = 0;
+ virtual void multimesh_free(RID p_rid) = 0;
+
+ virtual void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) = 0;
+
+ virtual int multimesh_get_instance_count(RID p_multimesh) const = 0;
+
+ virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) = 0;
+ virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) = 0;
+ virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) = 0;
+ virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) = 0;
+ virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) = 0;
+
+ virtual RID multimesh_get_mesh(RID p_multimesh) const = 0;
+
+ virtual Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const = 0;
+ virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const = 0;
+ virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const = 0;
+ virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const = 0;
+
+ virtual void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) = 0;
+ virtual Vector<float> multimesh_get_buffer(RID p_multimesh) const = 0;
+
+ virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) = 0;
+ virtual int multimesh_get_visible_instances(RID p_multimesh) const = 0;
+
+ virtual AABB multimesh_get_aabb(RID p_multimesh) const = 0;
+
+ /* SKELETON API */
+
+ virtual RID skeleton_allocate() = 0;
+ virtual void skeleton_initialize(RID p_rid) = 0;
+ virtual void skeleton_free(RID p_rid) = 0;
+
+ virtual void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) = 0;
+ virtual int skeleton_get_bone_count(RID p_skeleton) const = 0;
+ virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) = 0;
+ virtual Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const = 0;
+ virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) = 0;
+ virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const = 0;
+ virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) = 0;
+
+ virtual void skeleton_update_dependency(RID p_base, RendererStorage::DependencyTracker *p_instance) = 0;
+};
+
+#endif // !MESH_STORAGE_H
diff --git a/servers/rendering/storage/particles_storage.h b/servers/rendering/storage/particles_storage.h
new file mode 100644
index 0000000000..268b5473e2
--- /dev/null
+++ b/servers/rendering/storage/particles_storage.h
@@ -0,0 +1,129 @@
+/*************************************************************************/
+/* particles_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef PARTICLES_STORAGE_H
+#define PARTICLES_STORAGE_H
+
+#include "servers/rendering/renderer_storage.h"
+#include "servers/rendering_server.h"
+
+class RendererParticlesStorage {
+public:
+ virtual ~RendererParticlesStorage() {}
+
+ /* PARTICLES */
+
+ virtual RID particles_allocate() = 0;
+ virtual void particles_initialize(RID p_rid) = 0;
+ virtual void particles_free(RID p_rid) = 0;
+
+ virtual void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) = 0;
+
+ virtual void particles_set_emitting(RID p_particles, bool p_emitting) = 0;
+ virtual bool particles_get_emitting(RID p_particles) = 0;
+
+ virtual void particles_set_amount(RID p_particles, int p_amount) = 0;
+ virtual void particles_set_lifetime(RID p_particles, double p_lifetime) = 0;
+ virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) = 0;
+ virtual void particles_set_pre_process_time(RID p_particles, double p_time) = 0;
+ virtual void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) = 0;
+ virtual void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) = 0;
+ virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) = 0;
+ virtual void particles_set_speed_scale(RID p_particles, double p_scale) = 0;
+ virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) = 0;
+ virtual void particles_set_process_material(RID p_particles, RID p_material) = 0;
+ virtual RID particles_get_process_material(RID p_particles) const = 0;
+ virtual void particles_set_fixed_fps(RID p_particles, int p_fps) = 0;
+ virtual void particles_set_interpolate(RID p_particles, bool p_enable) = 0;
+ virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) = 0;
+ virtual void particles_set_collision_base_size(RID p_particles, real_t p_size) = 0;
+
+ virtual void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) = 0;
+
+ virtual void particles_set_trails(RID p_particles, bool p_enable, double p_length) = 0;
+ virtual void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) = 0;
+
+ virtual void particles_restart(RID p_particles) = 0;
+ virtual void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) = 0;
+ virtual void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) = 0;
+
+ virtual bool particles_is_inactive(RID p_particles) const = 0;
+
+ virtual void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) = 0;
+
+ virtual void particles_set_draw_passes(RID p_particles, int p_count) = 0;
+ virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) = 0;
+
+ virtual void particles_request_process(RID p_particles) = 0;
+ virtual AABB particles_get_current_aabb(RID p_particles) = 0;
+ virtual AABB particles_get_aabb(RID p_particles) const = 0;
+
+ virtual void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) = 0;
+
+ virtual int particles_get_draw_passes(RID p_particles) const = 0;
+ virtual RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const = 0;
+
+ virtual void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) = 0;
+
+ virtual void particles_add_collision(RID p_particles, RID p_particles_collision_instance) = 0;
+ virtual void particles_remove_collision(RID p_particles, RID p_particles_collision_instance) = 0;
+
+ virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) = 0;
+
+ virtual void update_particles() = 0;
+
+ /* PARTICLES COLLISION */
+
+ virtual RID particles_collision_allocate() = 0;
+ virtual void particles_collision_initialize(RID p_rid) = 0;
+ virtual void particles_collision_free(RID p_rid) = 0;
+
+ virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) = 0;
+ virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) = 0;
+ virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) = 0; //for spheres
+ virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) = 0; //for non-spheres
+ virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) = 0;
+ virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) = 0;
+ virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) = 0;
+ virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) = 0; //for SDF and vector field, heightfield is dynamic
+ virtual void particles_collision_height_field_update(RID p_particles_collision) = 0; //for SDF and vector field
+ virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) = 0; //for SDF and vector field
+ virtual AABB particles_collision_get_aabb(RID p_particles_collision) const = 0;
+ virtual bool particles_collision_is_heightfield(RID p_particles_collision) const = 0;
+ virtual RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const = 0;
+
+ //used from 2D and 3D
+ virtual RID particles_collision_instance_create(RID p_collision) = 0;
+ virtual void particles_collision_instance_free(RID p_rid) = 0;
+ virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) = 0;
+ virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) = 0;
+};
+
+#endif // !PARTICLES_STORAGE_H
diff --git a/servers/rendering/storage/texture_storage.h b/servers/rendering/storage/texture_storage.h
new file mode 100644
index 0000000000..4c4213d7c1
--- /dev/null
+++ b/servers/rendering/storage/texture_storage.h
@@ -0,0 +1,142 @@
+/*************************************************************************/
+/* texture_storage.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef TEXTURE_STORAGE_H
+#define TEXTURE_STORAGE_H
+
+#include "servers/rendering_server.h"
+
+class RendererTextureStorage {
+public:
+ /* Canvas Texture API */
+
+ virtual RID canvas_texture_allocate() = 0;
+ virtual void canvas_texture_initialize(RID p_rid) = 0;
+ virtual void canvas_texture_free(RID p_rid) = 0;
+
+ virtual void canvas_texture_set_channel(RID p_canvas_texture, RS::CanvasTextureChannel p_channel, RID p_texture) = 0;
+ virtual void canvas_texture_set_shading_parameters(RID p_canvas_texture, const Color &p_base_color, float p_shininess) = 0;
+
+ virtual void canvas_texture_set_texture_filter(RID p_item, RS::CanvasItemTextureFilter p_filter) = 0;
+ virtual void canvas_texture_set_texture_repeat(RID p_item, RS::CanvasItemTextureRepeat p_repeat) = 0;
+
+ /* Texture API */
+ virtual bool can_create_resources_async() const = 0;
+
+ virtual ~RendererTextureStorage(){};
+
+ virtual RID texture_allocate() = 0;
+ virtual void texture_free(RID p_rid) = 0;
+
+ virtual void texture_2d_initialize(RID p_texture, const Ref<Image> &p_image) = 0;
+ virtual void texture_2d_layered_initialize(RID p_texture, const Vector<Ref<Image>> &p_layers, RS::TextureLayeredType p_layered_type) = 0;
+ virtual void texture_3d_initialize(RID p_texture, Image::Format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_data) = 0;
+ virtual void texture_proxy_initialize(RID p_texture, RID p_base) = 0; //all slices, then all the mipmaps, must be coherent
+
+ virtual void texture_2d_update(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) = 0;
+ virtual void texture_3d_update(RID p_texture, const Vector<Ref<Image>> &p_data) = 0;
+ virtual void texture_proxy_update(RID p_proxy, RID p_base) = 0;
+
+ //these two APIs can be used together or in combination with the others.
+ virtual void texture_2d_placeholder_initialize(RID p_texture) = 0;
+ virtual void texture_2d_layered_placeholder_initialize(RID p_texture, RenderingServer::TextureLayeredType p_layered_type) = 0;
+ virtual void texture_3d_placeholder_initialize(RID p_texture) = 0;
+
+ virtual Ref<Image> texture_2d_get(RID p_texture) const = 0;
+ virtual Ref<Image> texture_2d_layer_get(RID p_texture, int p_layer) const = 0;
+ virtual Vector<Ref<Image>> texture_3d_get(RID p_texture) const = 0;
+
+ virtual void texture_replace(RID p_texture, RID p_by_texture) = 0;
+ virtual void texture_set_size_override(RID p_texture, int p_width, int p_height) = 0;
+
+ virtual void texture_set_path(RID p_texture, const String &p_path) = 0;
+ virtual String texture_get_path(RID p_texture) const = 0;
+
+ virtual void texture_set_detect_3d_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) = 0;
+ virtual void texture_set_detect_normal_callback(RID p_texture, RS::TextureDetectCallback p_callback, void *p_userdata) = 0;
+ virtual void texture_set_detect_roughness_callback(RID p_texture, RS::TextureDetectRoughnessCallback p_callback, void *p_userdata) = 0;
+
+ virtual void texture_debug_usage(List<RS::TextureInfo> *r_info) = 0;
+
+ virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) = 0;
+
+ virtual Size2 texture_size_with_proxy(RID p_proxy) = 0;
+
+ /* Decal API */
+ virtual RID decal_allocate() = 0;
+ virtual void decal_initialize(RID p_rid) = 0;
+ virtual void decal_free(RID p_rid) = 0;
+
+ virtual void decal_set_extents(RID p_decal, const Vector3 &p_extents) = 0;
+ virtual void decal_set_texture(RID p_decal, RS::DecalTexture p_type, RID p_texture) = 0;
+ virtual void decal_set_emission_energy(RID p_decal, float p_energy) = 0;
+ virtual void decal_set_albedo_mix(RID p_decal, float p_mix) = 0;
+ virtual void decal_set_modulate(RID p_decal, const Color &p_modulate) = 0;
+ virtual void decal_set_cull_mask(RID p_decal, uint32_t p_layers) = 0;
+ virtual void decal_set_distance_fade(RID p_decal, bool p_enabled, float p_begin, float p_length) = 0;
+ virtual void decal_set_fade(RID p_decal, float p_above, float p_below) = 0;
+ virtual void decal_set_normal_fade(RID p_decal, float p_fade) = 0;
+
+ virtual AABB decal_get_aabb(RID p_decal) const = 0;
+
+ virtual void texture_add_to_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) = 0;
+ virtual void texture_remove_from_decal_atlas(RID p_texture, bool p_panorama_to_dp = false) = 0;
+
+ /* RENDER TARGET */
+
+ enum RenderTargetFlags {
+ RENDER_TARGET_TRANSPARENT,
+ RENDER_TARGET_DIRECT_TO_SCREEN,
+ RENDER_TARGET_FLAG_MAX
+ };
+
+ virtual RID render_target_create() = 0;
+ virtual void render_target_free(RID p_rid) = 0;
+
+ virtual void render_target_set_position(RID p_render_target, int p_x, int p_y) = 0;
+ virtual void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) = 0;
+ virtual RID render_target_get_texture(RID p_render_target) = 0;
+ virtual void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) = 0;
+ virtual void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) = 0;
+ virtual bool render_target_was_used(RID p_render_target) = 0;
+ virtual void render_target_set_as_unused(RID p_render_target) = 0;
+
+ virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color) = 0;
+ virtual bool render_target_is_clear_requested(RID p_render_target) = 0;
+ virtual Color render_target_get_clear_request_color(RID p_render_target) = 0;
+ virtual void render_target_disable_clear_request(RID p_render_target) = 0;
+ virtual void render_target_do_clear_request(RID p_render_target) = 0;
+
+ virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) = 0;
+ virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const = 0;
+ virtual void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) = 0;
+};
+
+#endif // !TEXTURE_STORAGE_H
diff --git a/servers/rendering_server.cpp b/servers/rendering_server.cpp
index 23d3bf030f..136664e333 100644
--- a/servers/rendering_server.cpp
+++ b/servers/rendering_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -32,6 +32,8 @@
#include "core/config/project_settings.h"
#include "servers/rendering/rendering_server_globals.h"
+#include "servers/rendering/shader_language.h"
+
RenderingServer *RenderingServer::singleton = nullptr;
RenderingServer *(*RenderingServer::create_func)() = nullptr;
@@ -422,12 +424,12 @@ Error RenderingServer::_surface_set_data(Array p_arrays, uint32_t p_format, uint
value |= CLAMP(int((src[i * 4 + 1] * 0.5 + 0.5) * 1023.0), 0, 1023) << 10;
value |= CLAMP(int((src[i * 4 + 2] * 0.5 + 0.5) * 1023.0), 0, 1023) << 20;
if (src[i * 4 + 3] > 0) {
- value |= 3 << 30;
+ value |= 3UL << 30;
}
memcpy(&vw[p_offsets[ai] + i * p_vertex_stride], &value, 4);
}
- } else { // if (type == Variant::PACKED_FLOAT64_ARRAY)
+ } else { // PACKED_FLOAT64_ARRAY
Vector<double> array = p_arrays[ai];
ERR_FAIL_COND_V(array.size() != p_vertex_array_len * 4, ERR_INVALID_PARAMETER);
const double *src = array.ptr();
@@ -438,7 +440,7 @@ Error RenderingServer::_surface_set_data(Array p_arrays, uint32_t p_format, uint
value |= CLAMP(int((src[i * 4 + 1] * 0.5 + 0.5) * 1023.0), 0, 1023) << 10;
value |= CLAMP(int((src[i * 4 + 2] * 0.5 + 0.5) * 1023.0), 0, 1023) << 20;
if (src[i * 4 + 3] > 0) {
- value |= 3 << 30;
+ value |= 3UL << 30;
}
memcpy(&vw[p_offsets[ai] + i * p_vertex_stride], &value, 4);
}
@@ -571,7 +573,7 @@ Error RenderingServer::_surface_set_data(Array p_arrays, uint32_t p_format, uint
memcpy(&sw[p_offsets[ai] + i * p_skin_stride], data, 2 * bone_count);
}
}
- } else { // if (type == Variant::PACKED_FLOAT64_ARRAY)
+ } else { // PACKED_FLOAT64_ARRAY
Vector<double> array = p_arrays[ai];
ERR_FAIL_COND_V(array.size() != (int32_t)(p_vertex_array_len * bone_count), ERR_INVALID_PARAMETER);
const double *src = array.ptr();
@@ -931,7 +933,7 @@ Error RenderingServer::mesh_create_surface_data_from_arrays(SurfaceData *r_surfa
}
}
- ERR_FAIL_COND_V_MSG((bsformat & RS::ARRAY_FORMAT_BLEND_SHAPE_MASK) != (format & RS::ARRAY_FORMAT_BLEND_SHAPE_MASK), ERR_INVALID_PARAMETER, "Blend shape format must match the main array format for Vertex, Normal and Tangent arrays.");
+ ERR_FAIL_COND_V_MSG(bsformat != (format & RS::ARRAY_FORMAT_BLEND_SHAPE_MASK), ERR_INVALID_PARAMETER, "Blend shape format must match the main array format for Vertex, Normal and Tangent arrays.");
}
}
@@ -977,7 +979,6 @@ Error RenderingServer::mesh_create_surface_data_from_arrays(SurfaceData *r_surfa
ERR_FAIL_COND_V_MSG(err != OK, ERR_INVALID_DATA, "Invalid array format for surface.");
Vector<uint8_t> blend_shape_data;
- uint32_t blend_shape_count = 0;
if (p_blend_shapes.size()) {
uint32_t bs_format = format & RS::ARRAY_FORMAT_BLEND_SHAPE_MASK;
@@ -994,7 +995,6 @@ Error RenderingServer::mesh_create_surface_data_from_arrays(SurfaceData *r_surfa
ERR_FAIL_COND_V_MSG(err2 != OK, ERR_INVALID_DATA, "Invalid blend shape array format for surface.");
blend_shape_data.append_array(vertex_array_shape);
- blend_shape_count++;
}
}
Vector<SurfaceData::LOD> lods;
@@ -1093,7 +1093,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
Vector2 *w = arr_2d.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const float *v = (const float *)&r[j * vertex_elem_size + offsets[i]];
+ const float *v = reinterpret_cast<const float *>(&r[j * vertex_elem_size + offsets[i]]);
w[j] = Vector2(v[0], v[1]);
}
}
@@ -1107,7 +1107,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
Vector3 *w = arr_3d.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const float *v = (const float *)&r[j * vertex_elem_size + offsets[i]];
+ const float *v = reinterpret_cast<const float *>(&r[j * vertex_elem_size + offsets[i]]);
w[j] = Vector3(v[0], v[1], v[2]);
}
}
@@ -1156,7 +1156,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
Color *w = arr.ptrw();
for (int32_t j = 0; j < p_vertex_len; j++) {
- const uint8_t *v = (const uint8_t *)&ar[j * attrib_elem_size + offsets[i]];
+ const uint8_t *v = reinterpret_cast<const uint8_t *>(&ar[j * attrib_elem_size + offsets[i]]);
w[j] = Color(v[0] / 255.0, v[1] / 255.0, v[2] / 255.0, v[3] / 255.0);
}
@@ -1170,7 +1170,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
Vector2 *w = arr.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const float *v = (const float *)&ar[j * attrib_elem_size + offsets[i]];
+ const float *v = reinterpret_cast<const float *>(&ar[j * attrib_elem_size + offsets[i]]);
w[j] = Vector2(v[0], v[1]);
}
@@ -1184,7 +1184,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
Vector2 *w = arr.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const float *v = (const float *)&ar[j * attrib_elem_size + offsets[i]];
+ const float *v = reinterpret_cast<const float *>(&ar[j * attrib_elem_size + offsets[i]]);
w[j] = Vector2(v[0], v[1]);
}
@@ -1209,7 +1209,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
uint8_t *w = arr.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const uint8_t *v = (const uint8_t *)&ar[j * attrib_elem_size + offsets[i]];
+ const uint8_t *v = reinterpret_cast<const uint8_t *>(&ar[j * attrib_elem_size + offsets[i]]);
memcpy(&w[j * s], v, s);
}
@@ -1228,7 +1228,7 @@ Array RenderingServer::_get_array_from_surface(uint32_t p_format, Vector<uint8_t
float *w = arr.ptrw();
for (int j = 0; j < p_vertex_len; j++) {
- const float *v = (const float *)&ar[j * attrib_elem_size + offsets[i]];
+ const float *v = reinterpret_cast<const float *>(&ar[j * attrib_elem_size + offsets[i]]);
memcpy(&w[j * s], v, s * sizeof(float));
}
ret[i] = arr;
@@ -1410,7 +1410,7 @@ Array RenderingServer::_mesh_surface_get_skeleton_aabb_bind(RID p_mesh, int p_su
}
#endif
-ShaderLanguage::DataType RenderingServer::global_variable_type_get_shader_datatype(GlobalVariableType p_type) {
+int RenderingServer::global_variable_type_get_shader_datatype(GlobalVariableType p_type) {
switch (p_type) {
case RS::GLOBAL_VAR_TYPE_BOOL:
return ShaderLanguage::TYPE_BOOL;
@@ -1877,10 +1877,10 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("light_set_color", "light", "color"), &RenderingServer::light_set_color);
ClassDB::bind_method(D_METHOD("light_set_param", "light", "param", "value"), &RenderingServer::light_set_param);
ClassDB::bind_method(D_METHOD("light_set_shadow", "light", "enabled"), &RenderingServer::light_set_shadow);
- ClassDB::bind_method(D_METHOD("light_set_shadow_color", "light", "color"), &RenderingServer::light_set_shadow_color);
ClassDB::bind_method(D_METHOD("light_set_projector", "light", "texture"), &RenderingServer::light_set_projector);
ClassDB::bind_method(D_METHOD("light_set_negative", "light", "enable"), &RenderingServer::light_set_negative);
ClassDB::bind_method(D_METHOD("light_set_cull_mask", "light", "mask"), &RenderingServer::light_set_cull_mask);
+ ClassDB::bind_method(D_METHOD("light_set_distance_fade", "decal", "enabled", "begin", "shadow", "length"), &RenderingServer::light_set_distance_fade);
ClassDB::bind_method(D_METHOD("light_set_reverse_cull_face_mode", "light", "enabled"), &RenderingServer::light_set_reverse_cull_face_mode);
ClassDB::bind_method(D_METHOD("light_set_bake_mode", "light", "bake_mode"), &RenderingServer::light_set_bake_mode);
ClassDB::bind_method(D_METHOD("light_set_max_sdfgi_cascade", "light", "cascade"), &RenderingServer::light_set_max_sdfgi_cascade);
@@ -1889,7 +1889,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("light_directional_set_shadow_mode", "light", "mode"), &RenderingServer::light_directional_set_shadow_mode);
ClassDB::bind_method(D_METHOD("light_directional_set_blend_splits", "light", "enable"), &RenderingServer::light_directional_set_blend_splits);
- ClassDB::bind_method(D_METHOD("light_directional_set_sky_only", "light", "enable"), &RenderingServer::light_directional_set_sky_only);
+ ClassDB::bind_method(D_METHOD("light_directional_set_sky_mode", "light", "mode"), &RenderingServer::light_directional_set_sky_mode);
ClassDB::bind_method(D_METHOD("light_projectors_set_filter", "filter"), &RenderingServer::light_projectors_set_filter);
@@ -1925,8 +1925,8 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(LIGHT_PARAM_MAX);
BIND_ENUM_CONSTANT(LIGHT_BAKE_DISABLED);
- BIND_ENUM_CONSTANT(LIGHT_BAKE_DYNAMIC);
BIND_ENUM_CONSTANT(LIGHT_BAKE_STATIC);
+ BIND_ENUM_CONSTANT(LIGHT_BAKE_DYNAMIC);
BIND_ENUM_CONSTANT(LIGHT_OMNI_SHADOW_DUAL_PARABOLOID);
BIND_ENUM_CONSTANT(LIGHT_OMNI_SHADOW_CUBE);
@@ -1935,6 +1935,10 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS);
BIND_ENUM_CONSTANT(LIGHT_DIRECTIONAL_SHADOW_PARALLEL_4_SPLITS);
+ BIND_ENUM_CONSTANT(LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_AND_SKY);
+ BIND_ENUM_CONSTANT(LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_ONLY);
+ BIND_ENUM_CONSTANT(LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY);
+
ClassDB::bind_method(D_METHOD("shadows_quality_set", "quality"), &RenderingServer::shadows_quality_set);
ClassDB::bind_method(D_METHOD("directional_shadow_quality_set", "quality"), &RenderingServer::directional_shadow_quality_set);
ClassDB::bind_method(D_METHOD("directional_shadow_atlas_set_size", "size", "is_16bits"), &RenderingServer::directional_shadow_atlas_set_size);
@@ -1963,7 +1967,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("reflection_probe_set_enable_shadows", "probe", "enable"), &RenderingServer::reflection_probe_set_enable_shadows);
ClassDB::bind_method(D_METHOD("reflection_probe_set_cull_mask", "probe", "layers"), &RenderingServer::reflection_probe_set_cull_mask);
ClassDB::bind_method(D_METHOD("reflection_probe_set_resolution", "probe", "resolution"), &RenderingServer::reflection_probe_set_resolution);
- ClassDB::bind_method(D_METHOD("reflection_probe_set_lod_threshold", "probe", "pixels"), &RenderingServer::reflection_probe_set_lod_threshold);
+ ClassDB::bind_method(D_METHOD("reflection_probe_set_mesh_lod_threshold", "probe", "pixels"), &RenderingServer::reflection_probe_set_mesh_lod_threshold);
BIND_ENUM_CONSTANT(REFLECTION_PROBE_UPDATE_ONCE);
BIND_ENUM_CONSTANT(REFLECTION_PROBE_UPDATE_ALWAYS);
@@ -1999,6 +2003,10 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(DECAL_FILTER_LINEAR_MIPMAPS);
BIND_ENUM_CONSTANT(DECAL_FILTER_LINEAR_MIPMAPS_ANISOTROPIC);
+ /* GI API (affects VoxelGI and SDFGI) */
+
+ ClassDB::bind_method(D_METHOD("gi_set_use_half_resolution", "half_resolution"), &RenderingServer::gi_set_use_half_resolution);
+
/* VOXEL GI API */
ClassDB::bind_method(D_METHOD("voxel_gi_create"), &RenderingServer::voxel_gi_create);
@@ -2274,6 +2282,7 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_DIRECTIONAL_SHADOW_ATLAS);
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_SCENE_LUMINANCE);
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_SSAO);
+ BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_SSIL);
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_PSSM_SPLITS);
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_DECAL_ATLAS);
BIND_ENUM_CONSTANT(VIEWPORT_DEBUG_DRAW_SDFGI);
@@ -2310,7 +2319,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("environment_set_bg_energy", "env", "energy"), &RenderingServer::environment_set_bg_energy);
ClassDB::bind_method(D_METHOD("environment_set_canvas_max_layer", "env", "max_layer"), &RenderingServer::environment_set_canvas_max_layer);
ClassDB::bind_method(D_METHOD("environment_set_ambient_light", "env", "color", "ambient", "energy", "sky_contibution", "reflection_source"), &RenderingServer::environment_set_ambient_light, DEFVAL(RS::ENV_AMBIENT_SOURCE_BG), DEFVAL(1.0), DEFVAL(0.0), DEFVAL(RS::ENV_REFLECTION_SOURCE_BG));
- ClassDB::bind_method(D_METHOD("environment_set_glow", "env", "enable", "levels", "intensity", "strength", "mix", "bloom_threshold", "blend_mode", "hdr_bleed_threshold", "hdr_bleed_scale", "hdr_luminance_cap"), &RenderingServer::environment_set_glow);
+ ClassDB::bind_method(D_METHOD("environment_set_glow", "env", "enable", "levels", "intensity", "strength", "mix", "bloom_threshold", "blend_mode", "hdr_bleed_threshold", "hdr_bleed_scale", "hdr_luminance_cap", "glow_map_strength", "glow_map"), &RenderingServer::environment_set_glow);
ClassDB::bind_method(D_METHOD("environment_set_tonemap", "env", "tone_mapper", "exposure", "white", "auto_exposure", "min_luminance", "max_luminance", "auto_exp_speed", "auto_exp_grey"), &RenderingServer::environment_set_tonemap);
ClassDB::bind_method(D_METHOD("environment_set_adjustment", "env", "enable", "brightness", "contrast", "saturation", "use_1d_color_correction", "color_correction"), &RenderingServer::environment_set_adjustment);
ClassDB::bind_method(D_METHOD("environment_set_ssr", "env", "enable", "max_steps", "fade_in", "fade_out", "depth_tolerance"), &RenderingServer::environment_set_ssr);
@@ -2323,6 +2332,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("environment_glow_set_use_high_quality", "enable"), &RenderingServer::environment_glow_set_use_high_quality);
ClassDB::bind_method(D_METHOD("environment_set_ssr_roughness_quality", "quality"), &RenderingServer::environment_set_ssr_roughness_quality);
ClassDB::bind_method(D_METHOD("environment_set_ssao_quality", "quality", "half_size", "adaptive_target", "blur_passes", "fadeout_from", "fadeout_to"), &RenderingServer::environment_set_ssao_quality);
+ ClassDB::bind_method(D_METHOD("environment_set_ssil_quality", "quality", "half_size", "adaptive_target", "blur_passes", "fadeout_from", "fadeout_to"), &RenderingServer::environment_set_ssil_quality);
ClassDB::bind_method(D_METHOD("environment_set_sdfgi_ray_count", "ray_count"), &RenderingServer::environment_set_sdfgi_ray_count);
ClassDB::bind_method(D_METHOD("environment_set_sdfgi_frames_to_converge", "frames"), &RenderingServer::environment_set_sdfgi_frames_to_converge);
ClassDB::bind_method(D_METHOD("environment_set_sdfgi_frames_to_update_light", "frames"), &RenderingServer::environment_set_sdfgi_frames_to_update_light);
@@ -2363,10 +2373,10 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(ENV_TONE_MAPPER_FILMIC);
BIND_ENUM_CONSTANT(ENV_TONE_MAPPER_ACES);
- BIND_ENUM_CONSTANT(ENV_SSR_ROUGNESS_QUALITY_DISABLED);
- BIND_ENUM_CONSTANT(ENV_SSR_ROUGNESS_QUALITY_LOW);
- BIND_ENUM_CONSTANT(ENV_SSR_ROUGNESS_QUALITY_MEDIUM);
- BIND_ENUM_CONSTANT(ENV_SSR_ROUGNESS_QUALITY_HIGH);
+ BIND_ENUM_CONSTANT(ENV_SSR_ROUGHNESS_QUALITY_DISABLED);
+ BIND_ENUM_CONSTANT(ENV_SSR_ROUGHNESS_QUALITY_LOW);
+ BIND_ENUM_CONSTANT(ENV_SSR_ROUGHNESS_QUALITY_MEDIUM);
+ BIND_ENUM_CONSTANT(ENV_SSR_ROUGHNESS_QUALITY_HIGH);
BIND_ENUM_CONSTANT(ENV_SSAO_QUALITY_VERY_LOW);
BIND_ENUM_CONSTANT(ENV_SSAO_QUALITY_LOW);
@@ -2374,13 +2384,15 @@ void RenderingServer::_bind_methods() {
BIND_ENUM_CONSTANT(ENV_SSAO_QUALITY_HIGH);
BIND_ENUM_CONSTANT(ENV_SSAO_QUALITY_ULTRA);
- BIND_ENUM_CONSTANT(ENV_SDFGI_CASCADES_4);
- BIND_ENUM_CONSTANT(ENV_SDFGI_CASCADES_6);
- BIND_ENUM_CONSTANT(ENV_SDFGI_CASCADES_8);
+ BIND_ENUM_CONSTANT(ENV_SSIL_QUALITY_VERY_LOW);
+ BIND_ENUM_CONSTANT(ENV_SSIL_QUALITY_LOW);
+ BIND_ENUM_CONSTANT(ENV_SSIL_QUALITY_MEDIUM);
+ BIND_ENUM_CONSTANT(ENV_SSIL_QUALITY_HIGH);
+ BIND_ENUM_CONSTANT(ENV_SSIL_QUALITY_ULTRA);
- BIND_ENUM_CONSTANT(ENV_SDFGI_Y_SCALE_DISABLED);
- BIND_ENUM_CONSTANT(ENV_SDFGI_Y_SCALE_75_PERCENT);
BIND_ENUM_CONSTANT(ENV_SDFGI_Y_SCALE_50_PERCENT);
+ BIND_ENUM_CONSTANT(ENV_SDFGI_Y_SCALE_75_PERCENT);
+ BIND_ENUM_CONSTANT(ENV_SDFGI_Y_SCALE_100_PERCENT);
BIND_ENUM_CONSTANT(ENV_SDFGI_RAY_COUNT_4);
BIND_ENUM_CONSTANT(ENV_SDFGI_RAY_COUNT_8);
@@ -2461,6 +2473,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("instance_geometry_set_flag", "instance", "flag", "enabled"), &RenderingServer::instance_geometry_set_flag);
ClassDB::bind_method(D_METHOD("instance_geometry_set_cast_shadows_setting", "instance", "shadow_casting_setting"), &RenderingServer::instance_geometry_set_cast_shadows_setting);
ClassDB::bind_method(D_METHOD("instance_geometry_set_material_override", "instance", "material"), &RenderingServer::instance_geometry_set_material_override);
+ ClassDB::bind_method(D_METHOD("instance_geometry_set_material_overlay", "instance", "material"), &RenderingServer::instance_geometry_set_material_overlay);
ClassDB::bind_method(D_METHOD("instance_geometry_set_visibility_range", "instance", "min", "max", "min_margin", "max_margin", "fade_mode"), &RenderingServer::instance_geometry_set_visibility_range);
ClassDB::bind_method(D_METHOD("instance_geometry_set_lightmap", "instance", "lightmap", "lightmap_uv_scale", "lightmap_slice"), &RenderingServer::instance_geometry_set_lightmap);
ClassDB::bind_method(D_METHOD("instance_geometry_set_lod_bias", "instance", "lod_bias"), &RenderingServer::instance_geometry_set_lod_bias);
@@ -2553,7 +2566,7 @@ void RenderingServer::_bind_methods() {
/* Primitives */
- ClassDB::bind_method(D_METHOD("canvas_item_add_line", "item", "from", "to", "color", "width"), &RenderingServer::canvas_item_add_line, DEFVAL(1.0));
+ ClassDB::bind_method(D_METHOD("canvas_item_add_line", "item", "from", "to", "color", "width", "antialiased"), &RenderingServer::canvas_item_add_line, DEFVAL(1.0), DEFVAL(false));
ClassDB::bind_method(D_METHOD("canvas_item_add_polyline", "item", "points", "colors", "width", "antialiased"), &RenderingServer::canvas_item_add_polyline, DEFVAL(1.0), DEFVAL(false));
ClassDB::bind_method(D_METHOD("canvas_item_add_rect", "item", "rect", "color"), &RenderingServer::canvas_item_add_rect);
ClassDB::bind_method(D_METHOD("canvas_item_add_circle", "item", "pos", "radius", "color"), &RenderingServer::canvas_item_add_circle);
@@ -2569,6 +2582,7 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("canvas_item_add_particles", "item", "particles", "texture"), &RenderingServer::canvas_item_add_particles);
ClassDB::bind_method(D_METHOD("canvas_item_add_set_transform", "item", "transform"), &RenderingServer::canvas_item_add_set_transform);
ClassDB::bind_method(D_METHOD("canvas_item_add_clip_ignore", "item", "ignore"), &RenderingServer::canvas_item_add_clip_ignore);
+ ClassDB::bind_method(D_METHOD("canvas_item_add_animation_slice", "item", "animation_length", "slice_begin", "slice_end", "offset"), &RenderingServer::canvas_item_add_animation_slice, DEFVAL(0.0));
ClassDB::bind_method(D_METHOD("canvas_item_set_sort_children_by_y", "item", "enabled"), &RenderingServer::canvas_item_set_sort_children_by_y);
ClassDB::bind_method(D_METHOD("canvas_item_set_z_index", "item", "z_index"), &RenderingServer::canvas_item_set_z_index);
ClassDB::bind_method(D_METHOD("canvas_item_set_z_as_relative_to_parent", "item", "enabled"), &RenderingServer::canvas_item_set_z_as_relative_to_parent);
@@ -2711,6 +2725,8 @@ void RenderingServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("get_rendering_info", "info"), &RenderingServer::get_rendering_info);
ClassDB::bind_method(D_METHOD("get_video_adapter_name"), &RenderingServer::get_video_adapter_name);
ClassDB::bind_method(D_METHOD("get_video_adapter_vendor"), &RenderingServer::get_video_adapter_vendor);
+ ClassDB::bind_method(D_METHOD("get_video_adapter_type"), &RenderingServer::get_video_adapter_type);
+ ClassDB::bind_method(D_METHOD("get_video_adapter_api_version"), &RenderingServer::get_video_adapter_api_version);
ClassDB::bind_method(D_METHOD("make_sphere_mesh", "latitudes", "longitudes", "radius"), &RenderingServer::make_sphere_mesh);
ClassDB::bind_method(D_METHOD("get_test_cube"), &RenderingServer::get_test_cube);
@@ -2759,13 +2775,14 @@ void RenderingServer::mesh_add_surface_from_mesh_data(RID p_mesh, const Geometry
const Geometry3D::MeshData::Face &f = p_mesh_data.faces[i];
for (int j = 2; j < f.indices.size(); j++) {
-#define _ADD_VERTEX(m_idx) \
- vertices.push_back(p_mesh_data.vertices[f.indices[m_idx]]); \
- normals.push_back(f.plane.normal);
+ vertices.push_back(p_mesh_data.vertices[f.indices[0]]);
+ normals.push_back(f.plane.normal);
- _ADD_VERTEX(0);
- _ADD_VERTEX(j - 1);
- _ADD_VERTEX(j);
+ vertices.push_back(p_mesh_data.vertices[f.indices[j - 1]]);
+ normals.push_back(f.plane.normal);
+
+ vertices.push_back(p_mesh_data.vertices[f.indices[j]]);
+ normals.push_back(f.plane.normal);
}
}
@@ -2806,7 +2823,6 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF_RST("rendering/textures/vram_compression/import_s3tc", true);
GLOBAL_DEF_RST("rendering/textures/vram_compression/import_etc", false);
GLOBAL_DEF_RST("rendering/textures/vram_compression/import_etc2", true);
- GLOBAL_DEF_RST("rendering/textures/vram_compression/import_pvrtc", false);
GLOBAL_DEF("rendering/textures/lossless_compression/force_png", false);
GLOBAL_DEF("rendering/textures/lossless_compression/webp_compression_level", 2);
@@ -2818,12 +2834,12 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/shadows/directional_shadow/size", 4096);
GLOBAL_DEF("rendering/shadows/directional_shadow/size.mobile", 2048);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/shadows/directional_shadow/size", PropertyInfo(Variant::INT, "rendering/shadows/directional_shadow/size", PROPERTY_HINT_RANGE, "256,16384"));
- GLOBAL_DEF("rendering/shadows/directional_shadow/soft_shadow_quality", 3);
+ GLOBAL_DEF("rendering/shadows/directional_shadow/soft_shadow_quality", 2);
GLOBAL_DEF("rendering/shadows/directional_shadow/soft_shadow_quality.mobile", 0);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/shadows/directional_shadow/soft_shadow_quality", PropertyInfo(Variant::INT, "rendering/shadows/directional_shadow/soft_shadow_quality", PROPERTY_HINT_ENUM, "Hard (Fastest),Soft Very Low (Faster),Soft Low (Fast),Soft Medium (Average),Soft High (Slow),Soft Ultra (Slowest)"));
GLOBAL_DEF("rendering/shadows/directional_shadow/16_bits", true);
- GLOBAL_DEF("rendering/shadows/shadows/soft_shadow_quality", 3);
+ GLOBAL_DEF("rendering/shadows/shadows/soft_shadow_quality", 2);
GLOBAL_DEF("rendering/shadows/shadows/soft_shadow_quality.mobile", 0);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/shadows/shadows/soft_shadow_quality", PropertyInfo(Variant::INT, "rendering/shadows/shadows/soft_shadow_quality", PROPERTY_HINT_ENUM, "Hard (Fastest),Soft Very Low (Faster),Soft Low (Fast),Soft Medium (Average),Soft High (Slow),Soft Ultra (Slowest)"));
@@ -2848,11 +2864,11 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/shader_compiler/shader_cache/strip_debug", false);
GLOBAL_DEF("rendering/shader_compiler/shader_cache/strip_debug.release", true);
- GLOBAL_DEF("rendering/reflections/sky_reflections/roughness_layers", 8);
+ GLOBAL_DEF_RST("rendering/reflections/sky_reflections/roughness_layers", 8); // Assumes a 256x256 cubemap
GLOBAL_DEF_RST("rendering/reflections/sky_reflections/texture_array_reflections", true);
GLOBAL_DEF("rendering/reflections/sky_reflections/texture_array_reflections.mobile", false);
- GLOBAL_DEF("rendering/reflections/sky_reflections/ggx_samples", 1024);
- GLOBAL_DEF("rendering/reflections/sky_reflections/ggx_samples.mobile", 128);
+ GLOBAL_DEF_RST("rendering/reflections/sky_reflections/ggx_samples", 32);
+ GLOBAL_DEF("rendering/reflections/sky_reflections/ggx_samples.mobile", 16);
GLOBAL_DEF("rendering/reflections/sky_reflections/fast_filter_high_quality", false);
GLOBAL_DEF("rendering/reflections/reflection_atlas/reflection_size", 256);
GLOBAL_DEF("rendering/reflections/reflection_atlas/reflection_size.mobile", 128);
@@ -2860,18 +2876,15 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/global_illumination/gi/use_half_resolution", false);
- GLOBAL_DEF("rendering/global_illumination/voxel_gi/quality", 1);
+ GLOBAL_DEF("rendering/global_illumination/voxel_gi/quality", 0);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/global_illumination/voxel_gi/quality", PropertyInfo(Variant::INT, "rendering/global_illumination/voxel_gi/quality", PROPERTY_HINT_ENUM, "Low (4 Cones - Fast),High (6 Cones - Slow)"));
GLOBAL_DEF("rendering/shading/overrides/force_vertex_shading", false);
GLOBAL_DEF("rendering/shading/overrides/force_vertex_shading.mobile", true);
GLOBAL_DEF("rendering/shading/overrides/force_lambert_over_burley", false);
GLOBAL_DEF("rendering/shading/overrides/force_lambert_over_burley.mobile", true);
- GLOBAL_DEF("rendering/shading/overrides/force_blinn_over_ggx", false);
- GLOBAL_DEF("rendering/shading/overrides/force_blinn_over_ggx.mobile", true);
GLOBAL_DEF("rendering/driver/depth_prepass/enable", true);
- GLOBAL_DEF("rendering/driver/depth_prepass/disable_for_vendors", "PowerVR,Mali,Adreno,Apple");
GLOBAL_DEF_RST("rendering/textures/default_filters/use_nearest_mipmap_filter", false);
GLOBAL_DEF_RST("rendering/textures/default_filters/anisotropic_filtering_level", 2);
@@ -2885,8 +2898,7 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/environment/ssao/quality", 2);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssao/quality", PropertyInfo(Variant::INT, "rendering/environment/ssao/quality", PROPERTY_HINT_ENUM, "Very Low (Fast),Low (Fast),Medium (Average),High (Slow),Ultra (Custom)"));
- GLOBAL_DEF("rendering/environment/ssao/half_size", false);
- GLOBAL_DEF("rendering/environment/ssao/half_size.mobile", true);
+ GLOBAL_DEF("rendering/environment/ssao/half_size", true);
GLOBAL_DEF("rendering/environment/ssao/adaptive_target", 0.5);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssao/adaptive_target", PropertyInfo(Variant::FLOAT, "rendering/environment/ssao/adaptive_target", PROPERTY_HINT_RANGE, "0.0,1.0,0.01"));
GLOBAL_DEF("rendering/environment/ssao/blur_passes", 2);
@@ -2896,6 +2908,18 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/environment/ssao/fadeout_to", 300.0);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssao/fadeout_to", PropertyInfo(Variant::FLOAT, "rendering/environment/ssao/fadeout_to", PROPERTY_HINT_RANGE, "64,65536,0.1,or_greater"));
+ GLOBAL_DEF("rendering/environment/ssil/quality", 2);
+ ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssil/quality", PropertyInfo(Variant::INT, "rendering/environment/ssil/quality", PROPERTY_HINT_ENUM, "Very Low (Fast),Low (Fast),Medium (Average),High (Slow),Ultra (Custom)"));
+ GLOBAL_DEF("rendering/environment/ssil/half_size", true);
+ GLOBAL_DEF("rendering/environment/ssil/adaptive_target", 0.5);
+ ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssil/adaptive_target", PropertyInfo(Variant::FLOAT, "rendering/environment/ssil/adaptive_target", PROPERTY_HINT_RANGE, "0.0,1.0,0.01"));
+ GLOBAL_DEF("rendering/environment/ssil/blur_passes", 4);
+ ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssil/blur_passes", PropertyInfo(Variant::INT, "rendering/environment/ssil/blur_passes", PROPERTY_HINT_RANGE, "0,6"));
+ GLOBAL_DEF("rendering/environment/ssil/fadeout_from", 50.0);
+ ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssil/fadeout_from", PropertyInfo(Variant::FLOAT, "rendering/environment/ssil/fadeout_from", PROPERTY_HINT_RANGE, "0.0,512,0.1,or_greater"));
+ GLOBAL_DEF("rendering/environment/ssil/fadeout_to", 300.0);
+ ProjectSettings::get_singleton()->set_custom_property_info("rendering/environment/ssil/fadeout_to", PropertyInfo(Variant::FLOAT, "rendering/environment/ssil/fadeout_to", PROPERTY_HINT_RANGE, "64,65536,0.1,or_greater"));
+
GLOBAL_DEF("rendering/anti_aliasing/screen_space_roughness_limiter/enabled", true);
GLOBAL_DEF("rendering/anti_aliasing/screen_space_roughness_limiter/amount", 0.25);
GLOBAL_DEF("rendering/anti_aliasing/screen_space_roughness_limiter/limit", 0.18);
@@ -2956,7 +2980,7 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/global_illumination/sdfgi/probe_ray_count", 1);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/global_illumination/sdfgi/probe_ray_count", PropertyInfo(Variant::INT, "rendering/global_illumination/sdfgi/probe_ray_count", PROPERTY_HINT_ENUM, "8 (Fastest),16,32,64,96,128 (Slowest)"));
- GLOBAL_DEF("rendering/global_illumination/sdfgi/frames_to_converge", 4);
+ GLOBAL_DEF("rendering/global_illumination/sdfgi/frames_to_converge", 5);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/global_illumination/sdfgi/frames_to_converge", PropertyInfo(Variant::INT, "rendering/global_illumination/sdfgi/frames_to_converge", PROPERTY_HINT_ENUM, "5 (Less Latency but Lower Quality),10,15,20,25,30 (More Latency but Higher Quality)"));
GLOBAL_DEF("rendering/global_illumination/sdfgi/frames_to_update_lights", 2);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/global_illumination/sdfgi/frames_to_update_lights", PropertyInfo(Variant::INT, "rendering/global_illumination/sdfgi/frames_to_update_lights", PROPERTY_HINT_ENUM, "1 (Slower),2,4,8,16 (Faster)"));
@@ -2978,7 +3002,7 @@ RenderingServer::RenderingServer() {
GLOBAL_DEF("rendering/limits/cluster_builder/max_clustered_elements", 512);
ProjectSettings::get_singleton()->set_custom_property_info("rendering/limits/cluster_builder/max_clustered_elements", PropertyInfo(Variant::FLOAT, "rendering/limits/cluster_builder/max_clustered_elements", PROPERTY_HINT_RANGE, "32,8192,1"));
- GLOBAL_DEF_RST("rendering/xr/enabled", false);
+ GLOBAL_DEF_RST_BASIC("xr/shaders/enabled", false);
GLOBAL_DEF_RST("rendering/2d/options/use_software_skinning", true);
GLOBAL_DEF_RST("rendering/2d/options/ninepatch_mode", 1);
diff --git a/servers/rendering_server.h b/servers/rendering_server.h
index 230132651f..d622571a47 100644
--- a/servers/rendering_server.h
+++ b/servers/rendering_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -41,14 +41,13 @@
#include "servers/display_server.h"
#include "servers/rendering/renderer_thread_pool.h"
#include "servers/rendering/rendering_device.h"
-#include "servers/rendering/shader_language.h"
class RenderingServer : public Object {
GDCLASS(RenderingServer, Object);
static RenderingServer *singleton;
- int mm_policy;
+ int mm_policy = 0;
bool render_loop_enabled = true;
Array _get_array_from_surface(uint32_t p_format, Vector<uint8_t> p_vertex_data, Vector<uint8_t> p_attrib_data, Vector<uint8_t> p_skin_data, int p_vertex_len, Vector<uint8_t> p_index_data, int p_index_len) const;
@@ -260,7 +259,7 @@ public:
ARRAY_FORMAT_WEIGHTS = 1 << ARRAY_WEIGHTS,
ARRAY_FORMAT_INDEX = 1 << ARRAY_INDEX,
- ARRAY_FORMAT_BLEND_SHAPE_MASK = (~(ARRAY_FORMAT_COLOR | ARRAY_FORMAT_TEX_UV | ARRAY_FORMAT_TEX_UV2 | ARRAY_FORMAT_BONES | ARRAY_FORMAT_WEIGHTS | ARRAY_FORMAT_CUSTOM0 | ARRAY_FORMAT_CUSTOM1 | ARRAY_FORMAT_CUSTOM2 | ARRAY_FORMAT_CUSTOM3 | ARRAY_FORMAT_INDEX)) & 0x7FFFFFFF,
+ ARRAY_FORMAT_BLEND_SHAPE_MASK = ARRAY_FORMAT_VERTEX | ARRAY_FORMAT_NORMAL | ARRAY_FORMAT_TANGENT,
ARRAY_FORMAT_CUSTOM_BASE = (ARRAY_INDEX + 1),
ARRAY_FORMAT_CUSTOM_BITS = 3,
@@ -440,16 +439,16 @@ public:
virtual void light_set_color(RID p_light, const Color &p_color) = 0;
virtual void light_set_param(RID p_light, LightParam p_param, float p_value) = 0;
virtual void light_set_shadow(RID p_light, bool p_enabled) = 0;
- virtual void light_set_shadow_color(RID p_light, const Color &p_color) = 0;
virtual void light_set_projector(RID p_light, RID p_texture) = 0;
virtual void light_set_negative(RID p_light, bool p_enable) = 0;
virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) = 0;
+ virtual void light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) = 0;
virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) = 0;
enum LightBakeMode {
LIGHT_BAKE_DISABLED,
- LIGHT_BAKE_DYNAMIC,
LIGHT_BAKE_STATIC,
+ LIGHT_BAKE_DYNAMIC,
};
virtual void light_set_bake_mode(RID p_light, LightBakeMode p_bake_mode) = 0;
@@ -470,11 +469,17 @@ public:
LIGHT_DIRECTIONAL_SHADOW_PARALLEL_4_SPLITS,
};
+ enum LightDirectionalSkyMode {
+ LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_AND_SKY,
+ LIGHT_DIRECTIONAL_SKY_MODE_LIGHT_ONLY,
+ LIGHT_DIRECTIONAL_SKY_MODE_SKY_ONLY,
+ };
+
virtual void light_directional_set_shadow_mode(RID p_light, LightDirectionalShadowMode p_mode) = 0;
virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) = 0;
- virtual void light_directional_set_sky_only(RID p_light, bool p_sky_only) = 0;
+ virtual void light_directional_set_sky_mode(RID p_light, LightDirectionalSkyMode p_mode) = 0;
- virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = false) = 0;
+ virtual void directional_shadow_atlas_set_size(int p_size, bool p_16_bits = true) = 0;
enum ShadowQuality {
SHADOW_QUALITY_HARD,
@@ -528,7 +533,7 @@ public:
virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) = 0;
virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) = 0;
virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) = 0;
- virtual void reflection_probe_set_lod_threshold(RID p_probe, float p_pixels) = 0;
+ virtual void reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_pixels) = 0;
/* DECAL API */
@@ -848,7 +853,7 @@ public:
virtual void viewport_set_sdf_oversize_and_scale(RID p_viewport, ViewportSDFOversize p_oversize, ViewportSDFScale p_scale) = 0;
- virtual void viewport_set_shadow_atlas_size(RID p_viewport, int p_size, bool p_16_bits = false) = 0;
+ virtual void viewport_set_shadow_atlas_size(RID p_viewport, int p_size, bool p_16_bits = true) = 0;
virtual void viewport_set_shadow_atlas_quadrant_subdivision(RID p_viewport, int p_quadrant, int p_subdiv) = 0;
enum ViewportMSAA {
@@ -871,7 +876,7 @@ public:
virtual void viewport_set_use_debanding(RID p_viewport, bool p_use_debanding) = 0;
- virtual void viewport_set_lod_threshold(RID p_viewport, float p_pixels) = 0;
+ virtual void viewport_set_mesh_lod_threshold(RID p_viewport, float p_pixels) = 0;
virtual void viewport_set_use_occlusion_culling(RID p_viewport, bool p_use_debanding) = 0;
virtual void viewport_set_occlusion_rays_per_thread(int p_rays_per_thread) = 0;
@@ -913,6 +918,7 @@ public:
VIEWPORT_DEBUG_DRAW_DIRECTIONAL_SHADOW_ATLAS,
VIEWPORT_DEBUG_DRAW_SCENE_LUMINANCE,
VIEWPORT_DEBUG_DRAW_SSAO,
+ VIEWPORT_DEBUG_DRAW_SSIL,
VIEWPORT_DEBUG_DRAW_PSSM_SPLITS,
VIEWPORT_DEBUG_DRAW_DECAL_ATLAS,
VIEWPORT_DEBUG_DRAW_SDFGI,
@@ -991,7 +997,7 @@ public:
ENV_GLOW_BLEND_MODE_MIX,
};
- virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap) = 0;
+ virtual void environment_set_glow(RID p_env, bool p_enable, Vector<float> p_levels, float p_intensity, float p_strength, float p_mix, float p_bloom_threshold, EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, float p_glow_map_strength, RID p_glow_map) = 0;
virtual void environment_glow_set_use_bicubic_upscale(bool p_enable) = 0;
virtual void environment_glow_set_use_high_quality(bool p_enable) = 0;
@@ -1009,10 +1015,10 @@ public:
virtual void environment_set_ssr(RID p_env, bool p_enable, int p_max_steps, float p_fade_in, float p_fade_out, float p_depth_tolerance) = 0;
enum EnvironmentSSRRoughnessQuality {
- ENV_SSR_ROUGNESS_QUALITY_DISABLED,
- ENV_SSR_ROUGNESS_QUALITY_LOW,
- ENV_SSR_ROUGNESS_QUALITY_MEDIUM,
- ENV_SSR_ROUGNESS_QUALITY_HIGH,
+ ENV_SSR_ROUGHNESS_QUALITY_DISABLED,
+ ENV_SSR_ROUGHNESS_QUALITY_LOW,
+ ENV_SSR_ROUGHNESS_QUALITY_MEDIUM,
+ ENV_SSR_ROUGHNESS_QUALITY_HIGH,
};
virtual void environment_set_ssr_roughness_quality(EnvironmentSSRRoughnessQuality p_quality) = 0;
@@ -1029,19 +1035,25 @@ public:
virtual void environment_set_ssao_quality(EnvironmentSSAOQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
- enum EnvironmentSDFGICascades {
- ENV_SDFGI_CASCADES_4,
- ENV_SDFGI_CASCADES_6,
- ENV_SDFGI_CASCADES_8,
+ virtual void environment_set_ssil(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_sharpness, float p_normal_rejection) = 0;
+
+ enum EnvironmentSSILQuality {
+ ENV_SSIL_QUALITY_VERY_LOW,
+ ENV_SSIL_QUALITY_LOW,
+ ENV_SSIL_QUALITY_MEDIUM,
+ ENV_SSIL_QUALITY_HIGH,
+ ENV_SSIL_QUALITY_ULTRA,
};
+ virtual void environment_set_ssil_quality(EnvironmentSSILQuality p_quality, bool p_half_size, float p_adaptive_target, int p_blur_passes, float p_fadeout_from, float p_fadeout_to) = 0;
+
enum EnvironmentSDFGIYScale {
- ENV_SDFGI_Y_SCALE_DISABLED,
+ ENV_SDFGI_Y_SCALE_50_PERCENT,
ENV_SDFGI_Y_SCALE_75_PERCENT,
- ENV_SDFGI_Y_SCALE_50_PERCENT
+ ENV_SDFGI_Y_SCALE_100_PERCENT,
};
- virtual void environment_set_sdfgi(RID p_env, bool p_enable, EnvironmentSDFGICascades p_cascades, float p_min_cell_size, EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
+ virtual void environment_set_sdfgi(RID p_env, bool p_enable, int p_cascades, float p_min_cell_size, EnvironmentSDFGIYScale p_y_scale, bool p_use_occlusion, float p_bounce_feedback, bool p_read_sky, float p_energy, float p_normal_bias, float p_probe_bias) = 0;
enum EnvironmentSDFGIRayCount {
ENV_SDFGI_RAY_COUNT_4,
@@ -1207,6 +1219,7 @@ public:
virtual void instance_geometry_set_flag(RID p_instance, InstanceFlags p_flags, bool p_enabled) = 0;
virtual void instance_geometry_set_cast_shadows_setting(RID p_instance, ShadowCastingSetting p_shadow_casting_setting) = 0;
virtual void instance_geometry_set_material_override(RID p_instance, RID p_material) = 0;
+ virtual void instance_geometry_set_material_overlay(RID p_instance, RID p_material) = 0;
virtual void instance_geometry_set_visibility_range(RID p_instance, float p_min, float p_max, float p_min_margin, float p_max_margin, VisibilityRangeFadeMode p_fade_mode) = 0;
virtual void instance_geometry_set_lightmap(RID p_instance, RID p_lightmap, const Rect2 &p_lightmap_uv_scale, int p_lightmap_slice) = 0;
virtual void instance_geometry_set_lod_bias(RID p_instance, float p_lod_bias) = 0;
@@ -1280,7 +1293,7 @@ public:
NINE_PATCH_TILE_FIT,
};
- virtual void canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width = 1.0) = 0;
+ virtual void canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width = 1.0, bool p_antialiased = false) = 0;
virtual void canvas_item_add_polyline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0, bool p_antialiased = false) = 0;
virtual void canvas_item_add_multiline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0) = 0;
virtual void canvas_item_add_rect(RID p_item, const Rect2 &p_rect, const Color &p_color) = 0;
@@ -1442,7 +1455,7 @@ public:
virtual void global_variables_load_settings(bool p_load_textures) = 0;
virtual void global_variables_clear() = 0;
- static ShaderLanguage::DataType global_variable_type_get_shader_datatype(GlobalVariableType p_type);
+ static int global_variable_type_get_shader_datatype(GlobalVariableType p_type);
/* FREE */
@@ -1473,6 +1486,8 @@ public:
virtual uint64_t get_rendering_info(RenderingInfo p_info) = 0;
virtual String get_video_adapter_name() const = 0;
virtual String get_video_adapter_vendor() const = 0;
+ virtual RenderingDevice::DeviceType get_video_adapter_type() const = 0;
+ virtual String get_video_adapter_api_version() const = 0;
struct FrameProfileArea {
String name;
@@ -1561,6 +1576,7 @@ VARIANT_ENUM_CAST(RenderingServer::LightParam);
VARIANT_ENUM_CAST(RenderingServer::LightBakeMode);
VARIANT_ENUM_CAST(RenderingServer::LightOmniShadowMode);
VARIANT_ENUM_CAST(RenderingServer::LightDirectionalShadowMode);
+VARIANT_ENUM_CAST(RenderingServer::LightDirectionalSkyMode);
VARIANT_ENUM_CAST(RenderingServer::LightProjectorFilter);
VARIANT_ENUM_CAST(RenderingServer::ReflectionProbeUpdateMode);
VARIANT_ENUM_CAST(RenderingServer::ReflectionProbeAmbientMode);
@@ -1593,7 +1609,7 @@ VARIANT_ENUM_CAST(RenderingServer::EnvironmentGlowBlendMode);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentToneMapper);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentSSRRoughnessQuality);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentSSAOQuality);
-VARIANT_ENUM_CAST(RenderingServer::EnvironmentSDFGICascades);
+VARIANT_ENUM_CAST(RenderingServer::EnvironmentSSILQuality);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentSDFGIFramesToConverge);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentSDFGIRayCount);
VARIANT_ENUM_CAST(RenderingServer::EnvironmentSDFGIFramesToUpdateLight);
diff --git a/servers/server_wrap_mt_common.h b/servers/server_wrap_mt_common.h
index 95d2e2254e..2c4aab0784 100644
--- a/servers/server_wrap_mt_common.h
+++ b/servers/server_wrap_mt_common.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
diff --git a/servers/text/text_server_dummy.h b/servers/text/text_server_dummy.h
new file mode 100644
index 0000000000..c603881b7c
--- /dev/null
+++ b/servers/text/text_server_dummy.h
@@ -0,0 +1,48 @@
+/*************************************************************************/
+/* text_server_dummy.h */
+/*************************************************************************/
+/* This file is part of: */
+/* GODOT ENGINE */
+/* https://godotengine.org */
+/*************************************************************************/
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
+/* */
+/* Permission is hereby granted, free of charge, to any person obtaining */
+/* a copy of this software and associated documentation files (the */
+/* "Software"), to deal in the Software without restriction, including */
+/* without limitation the rights to use, copy, modify, merge, publish, */
+/* distribute, sublicense, and/or sell copies of the Software, and to */
+/* permit persons to whom the Software is furnished to do so, subject to */
+/* the following conditions: */
+/* */
+/* The above copyright notice and this permission notice shall be */
+/* included in all copies or substantial portions of the Software. */
+/* */
+/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
+/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
+/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
+/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
+/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
+/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
+/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
+/*************************************************************************/
+
+#ifndef TEXT_SERVER_DUMMY_H
+#define TEXT_SERVER_DUMMY_H
+
+#include "servers/text/text_server_extension.h"
+
+/*************************************************************************/
+
+class TextServerDummy : public TextServerExtension {
+ GDCLASS(TextServerDummy, TextServerExtension);
+ _THREAD_SAFE_CLASS_
+
+public:
+ virtual String get_name() const override {
+ return "Dummy";
+ }
+};
+
+#endif // TEXT_SERVER_DUMMY_H
diff --git a/servers/text/text_server_extension.cpp b/servers/text/text_server_extension.cpp
index 5f83fc4206..005cb68302 100644
--- a/servers/text/text_server_extension.cpp
+++ b/servers/text/text_server_extension.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -31,247 +31,279 @@
#include "text_server_extension.h"
void TextServerExtension::_bind_methods() {
- GDVIRTUAL_BIND(_has_feature, "feature");
- GDVIRTUAL_BIND(_get_name);
- GDVIRTUAL_BIND(_get_features);
+ GDVIRTUAL_BIND(has_feature, "feature");
+ GDVIRTUAL_BIND(get_name);
+ GDVIRTUAL_BIND(get_features);
- GDVIRTUAL_BIND(_free, "rid");
- GDVIRTUAL_BIND(_has, "rid");
- GDVIRTUAL_BIND(_load_support_data, "filename");
+ GDVIRTUAL_BIND(free_rid, "rid");
+ GDVIRTUAL_BIND(has, "rid");
+ GDVIRTUAL_BIND(load_support_data, "filename");
- GDVIRTUAL_BIND(_get_support_data_filename);
- GDVIRTUAL_BIND(_get_support_data_info);
- GDVIRTUAL_BIND(_save_support_data, "filename");
+ GDVIRTUAL_BIND(get_support_data_filename);
+ GDVIRTUAL_BIND(get_support_data_info);
+ GDVIRTUAL_BIND(save_support_data, "filename");
- GDVIRTUAL_BIND(_is_locale_right_to_left, "locale");
+ GDVIRTUAL_BIND(is_locale_right_to_left, "locale");
- GDVIRTUAL_BIND(_name_to_tag, "name");
- GDVIRTUAL_BIND(_tag_to_name, "tag");
+ GDVIRTUAL_BIND(name_to_tag, "name");
+ GDVIRTUAL_BIND(tag_to_name, "tag");
/* Font interface */
- GDVIRTUAL_BIND(_create_font);
+ GDVIRTUAL_BIND(create_font);
- GDVIRTUAL_BIND(_font_set_data, "font_rid", "data");
- GDVIRTUAL_BIND(_font_set_data_ptr, "font_rid", "data_ptr", "data_size");
+ GDVIRTUAL_BIND(font_set_data, "font_rid", "data");
+ GDVIRTUAL_BIND(font_set_data_ptr, "font_rid", "data_ptr", "data_size");
- GDVIRTUAL_BIND(_font_set_style, "font_rid", "style");
- GDVIRTUAL_BIND(_font_get_style, "font_rid");
+ GDVIRTUAL_BIND(font_set_style, "font_rid", "style");
+ GDVIRTUAL_BIND(font_get_style, "font_rid");
- GDVIRTUAL_BIND(_font_set_name, "font_rid", "name");
- GDVIRTUAL_BIND(_font_get_name, "font_rid");
+ GDVIRTUAL_BIND(font_set_name, "font_rid", "name");
+ GDVIRTUAL_BIND(font_get_name, "font_rid");
- GDVIRTUAL_BIND(_font_set_style_name, "font_rid", "name_style");
- GDVIRTUAL_BIND(_font_get_style_name, "font_rid");
+ GDVIRTUAL_BIND(font_set_style_name, "font_rid", "name_style");
+ GDVIRTUAL_BIND(font_get_style_name, "font_rid");
- GDVIRTUAL_BIND(_font_set_antialiased, "font_rid", "antialiased");
- GDVIRTUAL_BIND(_font_is_antialiased, "font_rid");
+ GDVIRTUAL_BIND(font_set_antialiased, "font_rid", "antialiased");
+ GDVIRTUAL_BIND(font_is_antialiased, "font_rid");
- GDVIRTUAL_BIND(_font_set_multichannel_signed_distance_field, "font_rid", "msdf");
- GDVIRTUAL_BIND(_font_is_multichannel_signed_distance_field, "font_rid");
+ GDVIRTUAL_BIND(font_set_generate_mipmaps, "font_rid", "generate_mipmaps");
+ GDVIRTUAL_BIND(font_get_generate_mipmaps, "font_rid");
- GDVIRTUAL_BIND(_font_set_msdf_pixel_range, "font_rid", "msdf_pixel_range");
- GDVIRTUAL_BIND(_font_get_msdf_pixel_range, "font_rid");
+ GDVIRTUAL_BIND(font_set_multichannel_signed_distance_field, "font_rid", "msdf");
+ GDVIRTUAL_BIND(font_is_multichannel_signed_distance_field, "font_rid");
- GDVIRTUAL_BIND(_font_set_msdf_size, "font_rid", "msdf_size");
- GDVIRTUAL_BIND(_font_get_msdf_size, "font_rid");
+ GDVIRTUAL_BIND(font_set_msdf_pixel_range, "font_rid", "msdf_pixel_range");
+ GDVIRTUAL_BIND(font_get_msdf_pixel_range, "font_rid");
- GDVIRTUAL_BIND(_font_set_fixed_size, "font_rid", "fixed_size");
- GDVIRTUAL_BIND(_font_get_fixed_size, "font_rid");
+ GDVIRTUAL_BIND(font_set_msdf_size, "font_rid", "msdf_size");
+ GDVIRTUAL_BIND(font_get_msdf_size, "font_rid");
- GDVIRTUAL_BIND(_font_set_force_autohinter, "font_rid", "force_autohinter");
- GDVIRTUAL_BIND(_font_is_force_autohinter, "font_rid");
+ GDVIRTUAL_BIND(font_set_fixed_size, "font_rid", "fixed_size");
+ GDVIRTUAL_BIND(font_get_fixed_size, "font_rid");
- GDVIRTUAL_BIND(_font_set_hinting, "font_rid", "hinting");
- GDVIRTUAL_BIND(_font_get_hinting, "font_rid");
+ GDVIRTUAL_BIND(font_set_force_autohinter, "font_rid", "force_autohinter");
+ GDVIRTUAL_BIND(font_is_force_autohinter, "font_rid");
- GDVIRTUAL_BIND(_font_set_variation_coordinates, "font_rid", "variation_coordinates");
- GDVIRTUAL_BIND(_font_get_variation_coordinates, "font_rid");
+ GDVIRTUAL_BIND(font_set_hinting, "font_rid", "hinting");
+ GDVIRTUAL_BIND(font_get_hinting, "font_rid");
- GDVIRTUAL_BIND(_font_set_oversampling, "font_rid", "oversampling");
- GDVIRTUAL_BIND(_font_get_oversampling, "font_rid");
+ GDVIRTUAL_BIND(font_set_subpixel_positioning, "font_rid", "subpixel_positioning");
+ GDVIRTUAL_BIND(font_get_subpixel_positioning, "font_rid");
- GDVIRTUAL_BIND(_font_get_size_cache_list, "font_rid");
- GDVIRTUAL_BIND(_font_clear_size_cache, "font_rid");
- GDVIRTUAL_BIND(_font_remove_size_cache, "font_rid", "size");
+ GDVIRTUAL_BIND(font_set_embolden, "font_rid", "strength");
+ GDVIRTUAL_BIND(font_get_embolden, "font_rid");
- GDVIRTUAL_BIND(_font_set_ascent, "font_rid", "size", "ascent");
- GDVIRTUAL_BIND(_font_get_ascent, "font_rid", "size");
+ GDVIRTUAL_BIND(font_set_transform, "font_rid", "transform");
+ GDVIRTUAL_BIND(font_get_transform, "font_rid");
- GDVIRTUAL_BIND(_font_set_descent, "font_rid", "size", "descent");
- GDVIRTUAL_BIND(_font_get_descent, "font_rid", "size");
+ GDVIRTUAL_BIND(font_set_variation_coordinates, "font_rid", "variation_coordinates");
+ GDVIRTUAL_BIND(font_get_variation_coordinates, "font_rid");
- GDVIRTUAL_BIND(_font_set_underline_position, "font_rid", "size", "underline_position");
- GDVIRTUAL_BIND(_font_get_underline_position, "font_rid", "size");
+ GDVIRTUAL_BIND(font_set_oversampling, "font_rid", "oversampling");
+ GDVIRTUAL_BIND(font_get_oversampling, "font_rid");
- GDVIRTUAL_BIND(_font_set_underline_thickness, "font_rid", "size", "underline_thickness");
- GDVIRTUAL_BIND(_font_get_underline_thickness, "font_rid", "size");
+ GDVIRTUAL_BIND(font_get_size_cache_list, "font_rid");
+ GDVIRTUAL_BIND(font_clear_size_cache, "font_rid");
+ GDVIRTUAL_BIND(font_remove_size_cache, "font_rid", "size");
- GDVIRTUAL_BIND(_font_set_scale, "font_rid", "size", "scale");
- GDVIRTUAL_BIND(_font_get_scale, "font_rid", "size");
+ GDVIRTUAL_BIND(font_set_ascent, "font_rid", "size", "ascent");
+ GDVIRTUAL_BIND(font_get_ascent, "font_rid", "size");
- GDVIRTUAL_BIND(_font_set_spacing, "font_rid", "size", "spacing", "value");
- GDVIRTUAL_BIND(_font_get_spacing, "font_rid", "size", "spacing");
+ GDVIRTUAL_BIND(font_set_descent, "font_rid", "size", "descent");
+ GDVIRTUAL_BIND(font_get_descent, "font_rid", "size");
- GDVIRTUAL_BIND(_font_get_texture_count, "font_rid", "size");
- GDVIRTUAL_BIND(_font_clear_textures, "font_rid", "size");
- GDVIRTUAL_BIND(_font_remove_texture, "font_rid", "size", "texture_index");
+ GDVIRTUAL_BIND(font_set_underline_position, "font_rid", "size", "underline_position");
+ GDVIRTUAL_BIND(font_get_underline_position, "font_rid", "size");
- GDVIRTUAL_BIND(_font_set_texture_image, "font_rid", "size", "texture_index", "image");
- GDVIRTUAL_BIND(_font_get_texture_image, "font_rid", "size", "texture_index");
+ GDVIRTUAL_BIND(font_set_underline_thickness, "font_rid", "size", "underline_thickness");
+ GDVIRTUAL_BIND(font_get_underline_thickness, "font_rid", "size");
- GDVIRTUAL_BIND(_font_set_texture_offsets, "font_rid", "size", "texture_index", "offset");
- GDVIRTUAL_BIND(_font_get_texture_offsets, "font_rid", "size", "texture_index");
+ GDVIRTUAL_BIND(font_set_scale, "font_rid", "size", "scale");
+ GDVIRTUAL_BIND(font_get_scale, "font_rid", "size");
- GDVIRTUAL_BIND(_font_get_glyph_list, "font_rid", "size");
- GDVIRTUAL_BIND(_font_clear_glyphs, "font_rid", "size");
- GDVIRTUAL_BIND(_font_remove_glyph, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_spacing, "font_rid", "size", "spacing", "value");
+ GDVIRTUAL_BIND(font_get_spacing, "font_rid", "size", "spacing");
- GDVIRTUAL_BIND(_font_get_glyph_advance, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_set_glyph_advance, "font_rid", "size", "glyph", "advance");
+ GDVIRTUAL_BIND(font_get_texture_count, "font_rid", "size");
+ GDVIRTUAL_BIND(font_clear_textures, "font_rid", "size");
+ GDVIRTUAL_BIND(font_remove_texture, "font_rid", "size", "texture_index");
- GDVIRTUAL_BIND(_font_get_glyph_offset, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_set_glyph_offset, "font_rid", "size", "glyph", "offset");
+ GDVIRTUAL_BIND(font_set_texture_image, "font_rid", "size", "texture_index", "image");
+ GDVIRTUAL_BIND(font_get_texture_image, "font_rid", "size", "texture_index");
- GDVIRTUAL_BIND(_font_get_glyph_size, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_set_glyph_size, "font_rid", "size", "glyph", "gl_size");
+ GDVIRTUAL_BIND(font_set_texture_offsets, "font_rid", "size", "texture_index", "offset");
+ GDVIRTUAL_BIND(font_get_texture_offsets, "font_rid", "size", "texture_index");
- GDVIRTUAL_BIND(_font_get_glyph_uv_rect, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_set_glyph_uv_rect, "font_rid", "size", "glyph", "uv_rect");
+ GDVIRTUAL_BIND(font_get_glyph_list, "font_rid", "size");
+ GDVIRTUAL_BIND(font_clear_glyphs, "font_rid", "size");
+ GDVIRTUAL_BIND(font_remove_glyph, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_get_glyph_texture_idx, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_set_glyph_texture_idx, "font_rid", "size", "glyph", "texture_idx");
+ GDVIRTUAL_BIND(font_get_glyph_advance, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_glyph_advance, "font_rid", "size", "glyph", "advance");
- GDVIRTUAL_BIND(_font_get_glyph_contours, "font_rid", "size", "index");
+ GDVIRTUAL_BIND(font_get_glyph_offset, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_glyph_offset, "font_rid", "size", "glyph", "offset");
- GDVIRTUAL_BIND(_font_get_kerning_list, "font_rid", "size");
- GDVIRTUAL_BIND(_font_clear_kerning_map, "font_rid", "size");
- GDVIRTUAL_BIND(_font_remove_kerning, "font_rid", "size", "glyph_pair");
+ GDVIRTUAL_BIND(font_get_glyph_size, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_glyph_size, "font_rid", "size", "glyph", "gl_size");
- GDVIRTUAL_BIND(_font_set_kerning, "font_rid", "size", "glyph_pair", "kerning");
- GDVIRTUAL_BIND(_font_get_kerning, "font_rid", "size", "glyph_pair");
+ GDVIRTUAL_BIND(font_get_glyph_uv_rect, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_glyph_uv_rect, "font_rid", "size", "glyph", "uv_rect");
- GDVIRTUAL_BIND(_font_get_glyph_index, "font_rid", "size", "char", "variation_selector");
+ GDVIRTUAL_BIND(font_get_glyph_texture_idx, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_set_glyph_texture_idx, "font_rid", "size", "glyph", "texture_idx");
- GDVIRTUAL_BIND(_font_has_char, "font_rid", "char");
- GDVIRTUAL_BIND(_font_get_supported_chars, "font_rid");
+ GDVIRTUAL_BIND(font_get_glyph_texture_rid, "font_rid", "size", "glyph");
+ GDVIRTUAL_BIND(font_get_glyph_texture_size, "font_rid", "size", "glyph");
- GDVIRTUAL_BIND(_font_render_range, "font_rid", "size", "start", "end");
- GDVIRTUAL_BIND(_font_render_glyph, "font_rid", "size", "index");
+ GDVIRTUAL_BIND(font_get_glyph_contours, "font_rid", "size", "index");
- GDVIRTUAL_BIND(_font_draw_glyph, "font_rid", "canvas", "size", "pos", "index", "color");
- GDVIRTUAL_BIND(_font_draw_glyph_outline, "font_rid", "canvas", "size", "outline_size", "pos", "index", "color");
+ GDVIRTUAL_BIND(font_get_kerning_list, "font_rid", "size");
+ GDVIRTUAL_BIND(font_clear_kerning_map, "font_rid", "size");
+ GDVIRTUAL_BIND(font_remove_kerning, "font_rid", "size", "glyph_pair");
- GDVIRTUAL_BIND(_font_is_language_supported, "font_rid", "language");
- GDVIRTUAL_BIND(_font_set_language_support_override, "font_rid", "language", "supported");
- GDVIRTUAL_BIND(_font_get_language_support_override, "font_rid", "language");
- GDVIRTUAL_BIND(_font_remove_language_support_override, "font_rid", "language");
- GDVIRTUAL_BIND(_font_get_language_support_overrides, "font_rid");
+ GDVIRTUAL_BIND(font_set_kerning, "font_rid", "size", "glyph_pair", "kerning");
+ GDVIRTUAL_BIND(font_get_kerning, "font_rid", "size", "glyph_pair");
- GDVIRTUAL_BIND(_font_is_script_supported, "font_rid", "script");
- GDVIRTUAL_BIND(_font_set_script_support_override, "font_rid", "script", "supported");
- GDVIRTUAL_BIND(_font_get_script_support_override, "font_rid", "script");
- GDVIRTUAL_BIND(_font_remove_script_support_override, "font_rid", "script");
- GDVIRTUAL_BIND(_font_get_script_support_overrides, "font_rid");
+ GDVIRTUAL_BIND(font_get_glyph_index, "font_rid", "size", "char", "variation_selector");
- GDVIRTUAL_BIND(_font_supported_feature_list, "font_rid");
- GDVIRTUAL_BIND(_font_supported_variation_list, "font_rid");
+ GDVIRTUAL_BIND(font_has_char, "font_rid", "char");
+ GDVIRTUAL_BIND(font_get_supported_chars, "font_rid");
- GDVIRTUAL_BIND(_font_get_global_oversampling);
- GDVIRTUAL_BIND(_font_set_global_oversampling, "oversampling");
+ GDVIRTUAL_BIND(font_render_range, "font_rid", "size", "start", "end");
+ GDVIRTUAL_BIND(font_render_glyph, "font_rid", "size", "index");
- GDVIRTUAL_BIND(_get_hex_code_box_size, "size", "index");
- GDVIRTUAL_BIND(_draw_hex_code_box, "canvas", "size", "pos", "index", "color");
+ GDVIRTUAL_BIND(font_draw_glyph, "font_rid", "canvas", "size", "pos", "index", "color");
+ GDVIRTUAL_BIND(font_draw_glyph_outline, "font_rid", "canvas", "size", "outline_size", "pos", "index", "color");
+
+ GDVIRTUAL_BIND(font_is_language_supported, "font_rid", "language");
+ GDVIRTUAL_BIND(font_set_language_support_override, "font_rid", "language", "supported");
+ GDVIRTUAL_BIND(font_get_language_support_override, "font_rid", "language");
+ GDVIRTUAL_BIND(font_remove_language_support_override, "font_rid", "language");
+ GDVIRTUAL_BIND(font_get_language_support_overrides, "font_rid");
+
+ GDVIRTUAL_BIND(font_is_script_supported, "font_rid", "script");
+ GDVIRTUAL_BIND(font_set_script_support_override, "font_rid", "script", "supported");
+ GDVIRTUAL_BIND(font_get_script_support_override, "font_rid", "script");
+ GDVIRTUAL_BIND(font_remove_script_support_override, "font_rid", "script");
+ GDVIRTUAL_BIND(font_get_script_support_overrides, "font_rid");
+
+ GDVIRTUAL_BIND(font_set_opentype_feature_overrides, "font_rid", "overrides");
+ GDVIRTUAL_BIND(font_get_opentype_feature_overrides, "font_rid");
+
+ GDVIRTUAL_BIND(font_supported_feature_list, "font_rid");
+ GDVIRTUAL_BIND(font_supported_variation_list, "font_rid");
+
+ GDVIRTUAL_BIND(font_get_global_oversampling);
+ GDVIRTUAL_BIND(font_set_global_oversampling, "oversampling");
+
+ GDVIRTUAL_BIND(get_hex_code_box_size, "size", "index");
+ GDVIRTUAL_BIND(draw_hex_code_box, "canvas", "size", "pos", "index", "color");
/* Shaped text buffer interface */
- GDVIRTUAL_BIND(_create_shaped_text, "direction", "orientation");
+ GDVIRTUAL_BIND(create_shaped_text, "direction", "orientation");
+
+ GDVIRTUAL_BIND(shaped_text_clear, "shaped");
- GDVIRTUAL_BIND(_shaped_text_clear, "shaped");
+ GDVIRTUAL_BIND(shaped_text_set_direction, "shaped", "direction");
+ GDVIRTUAL_BIND(shaped_text_get_direction, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_inferred_direction, "shaped");
- GDVIRTUAL_BIND(_shaped_text_set_direction, "shaped", "direction");
- GDVIRTUAL_BIND(_shaped_text_get_direction, "shaped");
+ GDVIRTUAL_BIND(shaped_text_set_bidi_override, "shaped", "override");
- GDVIRTUAL_BIND(_shaped_text_set_bidi_override, "shaped", "override");
+ GDVIRTUAL_BIND(shaped_text_set_custom_punctuation, "shaped", "punct");
+ GDVIRTUAL_BIND(shaped_text_get_custom_punctuation, "shaped");
- GDVIRTUAL_BIND(_shaped_text_set_custom_punctuation, "shaped", "punct");
- GDVIRTUAL_BIND(_shaped_text_get_custom_punctuation, "shaped");
+ GDVIRTUAL_BIND(shaped_text_set_orientation, "shaped", "orientation");
+ GDVIRTUAL_BIND(shaped_text_get_orientation, "shaped");
- GDVIRTUAL_BIND(_shaped_text_set_orientation, "shaped", "orientation");
- GDVIRTUAL_BIND(_shaped_text_get_orientation, "shaped");
+ GDVIRTUAL_BIND(shaped_text_set_preserve_invalid, "shaped", "enabled");
+ GDVIRTUAL_BIND(shaped_text_get_preserve_invalid, "shaped");
- GDVIRTUAL_BIND(_shaped_text_set_preserve_invalid, "shaped", "enabled");
- GDVIRTUAL_BIND(_shaped_text_get_preserve_invalid, "shaped");
+ GDVIRTUAL_BIND(shaped_text_set_preserve_control, "shaped", "enabled");
+ GDVIRTUAL_BIND(shaped_text_get_preserve_control, "shaped");
- GDVIRTUAL_BIND(_shaped_text_set_preserve_control, "shaped", "enabled");
- GDVIRTUAL_BIND(_shaped_text_get_preserve_control, "shaped");
+ GDVIRTUAL_BIND(shaped_text_add_string, "shaped", "text", "fonts", "size", "opentype_features", "language", "meta");
+ GDVIRTUAL_BIND(shaped_text_add_object, "shaped", "key", "size", "inline_align", "length");
+ GDVIRTUAL_BIND(shaped_text_resize_object, "shaped", "key", "size", "inline_align");
- GDVIRTUAL_BIND(_shaped_text_add_string, "shaped", "text", "fonts", "size", "opentype_features", "language");
- GDVIRTUAL_BIND(_shaped_text_add_object, "shaped", "key", "size", "inline_align", "length");
- GDVIRTUAL_BIND(_shaped_text_resize_object, "shaped", "key", "size", "inline_align");
+ GDVIRTUAL_BIND(shaped_get_span_count, "shaped");
+ GDVIRTUAL_BIND(shaped_get_span_meta, "shaped", "index");
+ GDVIRTUAL_BIND(shaped_set_span_update_font, "shaped", "index", "fonts", "size", "opentype_features");
- GDVIRTUAL_BIND(_shaped_text_substr, "shaped", "start", "length");
- GDVIRTUAL_BIND(_shaped_text_get_parent, "shaped");
+ GDVIRTUAL_BIND(shaped_text_substr, "shaped", "start", "length");
+ GDVIRTUAL_BIND(shaped_text_get_parent, "shaped");
- GDVIRTUAL_BIND(_shaped_text_fit_to_width, "shaped", "width", "jst_flags");
- GDVIRTUAL_BIND(_shaped_text_tab_align, "shaped", "tab_stops");
+ GDVIRTUAL_BIND(shaped_text_fit_to_width, "shaped", "width", "jst_flags");
+ GDVIRTUAL_BIND(shaped_text_tab_align, "shaped", "tab_stops");
- GDVIRTUAL_BIND(_shaped_text_shape, "shaped");
- GDVIRTUAL_BIND(_shaped_text_update_breaks, "shaped");
- GDVIRTUAL_BIND(_shaped_text_update_justification_ops, "shaped");
+ GDVIRTUAL_BIND(shaped_text_shape, "shaped");
+ GDVIRTUAL_BIND(shaped_text_update_breaks, "shaped");
+ GDVIRTUAL_BIND(shaped_text_update_justification_ops, "shaped");
- GDVIRTUAL_BIND(_shaped_text_is_ready, "shaped");
+ GDVIRTUAL_BIND(shaped_text_is_ready, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_glyphs, "shaped", "r_glyphs");
- GDVIRTUAL_BIND(_shaped_text_sort_logical, "shaped", "r_glyphs");
- GDVIRTUAL_BIND(_shaped_text_get_glyph_count, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_glyphs, "shaped");
+ GDVIRTUAL_BIND(shaped_text_sort_logical, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_glyph_count, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_range, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_range, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_line_breaks_adv, "shaped", "width", "start", "once", "break_flags");
- GDVIRTUAL_BIND(_shaped_text_get_line_breaks, "shaped", "width", "start", "break_flags");
- GDVIRTUAL_BIND(_shaped_text_get_word_breaks, "shaped", "grapheme_flags");
+ GDVIRTUAL_BIND(shaped_text_get_line_breaks_adv, "shaped", "width", "start", "once", "break_flags");
+ GDVIRTUAL_BIND(shaped_text_get_line_breaks, "shaped", "width", "start", "break_flags");
+ GDVIRTUAL_BIND(shaped_text_get_word_breaks, "shaped", "grapheme_flags");
- GDVIRTUAL_BIND(_shaped_text_get_trim_pos, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_ellipsis_pos, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_ellipsis_glyph_count, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_ellipsis_glyphs, "shaped", "r_glyphs");
+ GDVIRTUAL_BIND(shaped_text_get_trim_pos, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_ellipsis_pos, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_ellipsis_glyph_count, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_ellipsis_glyphs, "shaped");
- GDVIRTUAL_BIND(_shaped_text_overrun_trim_to_width, "shaped", "width", "trim_flags");
+ GDVIRTUAL_BIND(shaped_text_overrun_trim_to_width, "shaped", "width", "trim_flags");
- GDVIRTUAL_BIND(_shaped_text_get_objects, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_object_rect, "shaped", "key");
+ GDVIRTUAL_BIND(shaped_text_get_objects, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_object_rect, "shaped", "key");
- GDVIRTUAL_BIND(_shaped_text_get_size, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_ascent, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_descent, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_width, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_underline_position, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_underline_thickness, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_size, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_ascent, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_descent, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_width, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_underline_position, "shaped");
+ GDVIRTUAL_BIND(shaped_text_get_underline_thickness, "shaped");
- GDVIRTUAL_BIND(_shaped_text_get_dominant_direction_in_range, "shaped", "start", "end");
+ GDVIRTUAL_BIND(shaped_text_get_dominant_direction_in_range, "shaped", "start", "end");
- GDVIRTUAL_BIND(_shaped_text_get_carets, "shaped", "position", "caret");
- GDVIRTUAL_BIND(_shaped_text_get_selection, "shaped", "start", "end");
+ GDVIRTUAL_BIND(shaped_text_get_carets, "shaped", "position", "caret");
+ GDVIRTUAL_BIND(shaped_text_get_selection, "shaped", "start", "end");
- GDVIRTUAL_BIND(_shaped_text_hit_test_grapheme, "shaped", "coord");
- GDVIRTUAL_BIND(_shaped_text_hit_test_position, "shaped", "coord");
+ GDVIRTUAL_BIND(shaped_text_hit_test_grapheme, "shaped", "coord");
+ GDVIRTUAL_BIND(shaped_text_hit_test_position, "shaped", "coord");
- GDVIRTUAL_BIND(_shaped_text_draw, "shaped", "canvas", "pos", "clip_l", "clip_r", "color");
- GDVIRTUAL_BIND(_shaped_text_draw_outline, "shaped", "canvas", "pos", "clip_l", "clip_r", "outline_size", "color");
+ GDVIRTUAL_BIND(shaped_text_draw, "shaped", "canvas", "pos", "clip_l", "clip_r", "color");
+ GDVIRTUAL_BIND(shaped_text_draw_outline, "shaped", "canvas", "pos", "clip_l", "clip_r", "outline_size", "color");
- GDVIRTUAL_BIND(_shaped_text_get_grapheme_bounds, "shaped", "pos");
- GDVIRTUAL_BIND(_shaped_text_next_grapheme_pos, "shaped", "pos");
- GDVIRTUAL_BIND(_shaped_text_prev_grapheme_pos, "shaped", "pos");
+ GDVIRTUAL_BIND(shaped_text_get_grapheme_bounds, "shaped", "pos");
+ GDVIRTUAL_BIND(shaped_text_next_grapheme_pos, "shaped", "pos");
+ GDVIRTUAL_BIND(shaped_text_prev_grapheme_pos, "shaped", "pos");
- GDVIRTUAL_BIND(_format_number, "string", "language");
- GDVIRTUAL_BIND(_parse_number, "string", "language");
- GDVIRTUAL_BIND(_percent_sign, "language");
+ GDVIRTUAL_BIND(format_number, "string", "language");
+ GDVIRTUAL_BIND(parse_number, "string", "language");
+ GDVIRTUAL_BIND(percent_sign, "language");
+
+ GDVIRTUAL_BIND(strip_diacritics, "string");
+
+ GDVIRTUAL_BIND(string_get_word_breaks, "string", "language");
+
+ GDVIRTUAL_BIND(string_to_upper, "string", "language");
+ GDVIRTUAL_BIND(string_to_lower, "string", "language");
+
+ GDVIRTUAL_BIND(parse_structured_text, "parser_type", "args", "text");
}
bool TextServerExtension::has_feature(Feature p_feature) const {
bool ret;
- if (GDVIRTUAL_CALL(_has_feature, p_feature, ret)) {
+ if (GDVIRTUAL_CALL(has_feature, p_feature, ret)) {
return ret;
}
return false;
@@ -279,27 +311,27 @@ bool TextServerExtension::has_feature(Feature p_feature) const {
String TextServerExtension::get_name() const {
String ret;
- if (GDVIRTUAL_CALL(_get_name, ret)) {
+ if (GDVIRTUAL_CALL(get_name, ret)) {
return ret;
}
return "Unknown";
}
-uint32_t TextServerExtension::get_features() const {
- uint32_t ret;
- if (GDVIRTUAL_CALL(_get_features, ret)) {
+int64_t TextServerExtension::get_features() const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(get_features, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::free(RID p_rid) {
- GDVIRTUAL_CALL(_free, p_rid);
+void TextServerExtension::free_rid(const RID &p_rid) {
+ GDVIRTUAL_CALL(free_rid, p_rid);
}
-bool TextServerExtension::has(RID p_rid) {
+bool TextServerExtension::has(const RID &p_rid) {
bool ret;
- if (GDVIRTUAL_CALL(_has, p_rid, ret)) {
+ if (GDVIRTUAL_CALL(has, p_rid, ret)) {
return ret;
}
return false;
@@ -307,7 +339,7 @@ bool TextServerExtension::has(RID p_rid) {
bool TextServerExtension::load_support_data(const String &p_filename) {
bool ret;
- if (GDVIRTUAL_CALL(_load_support_data, p_filename, ret)) {
+ if (GDVIRTUAL_CALL(load_support_data, p_filename, ret)) {
return ret;
}
return false;
@@ -315,7 +347,7 @@ bool TextServerExtension::load_support_data(const String &p_filename) {
String TextServerExtension::get_support_data_filename() const {
String ret;
- if (GDVIRTUAL_CALL(_get_support_data_filename, ret)) {
+ if (GDVIRTUAL_CALL(get_support_data_filename, ret)) {
return ret;
}
return String();
@@ -323,7 +355,7 @@ String TextServerExtension::get_support_data_filename() const {
String TextServerExtension::get_support_data_info() const {
String ret;
- if (GDVIRTUAL_CALL(_get_support_data_info, ret)) {
+ if (GDVIRTUAL_CALL(get_support_data_info, ret)) {
return ret;
}
return String();
@@ -331,7 +363,7 @@ String TextServerExtension::get_support_data_info() const {
bool TextServerExtension::save_support_data(const String &p_filename) const {
bool ret;
- if (GDVIRTUAL_CALL(_save_support_data, p_filename, ret)) {
+ if (GDVIRTUAL_CALL(save_support_data, p_filename, ret)) {
return ret;
}
return false;
@@ -339,23 +371,23 @@ bool TextServerExtension::save_support_data(const String &p_filename) const {
bool TextServerExtension::is_locale_right_to_left(const String &p_locale) const {
bool ret;
- if (GDVIRTUAL_CALL(_is_locale_right_to_left, p_locale, ret)) {
+ if (GDVIRTUAL_CALL(is_locale_right_to_left, p_locale, ret)) {
return ret;
}
return false;
}
-int32_t TextServerExtension::name_to_tag(const String &p_name) const {
- int32_t ret;
- if (GDVIRTUAL_CALL(_name_to_tag, p_name, ret)) {
+int64_t TextServerExtension::name_to_tag(const String &p_name) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(name_to_tag, p_name, ret)) {
return ret;
}
return 0;
}
-String TextServerExtension::tag_to_name(int32_t p_tag) const {
+String TextServerExtension::tag_to_name(int64_t p_tag) const {
String ret;
- if (GDVIRTUAL_CALL(_tag_to_name, p_tag, ret)) {
+ if (GDVIRTUAL_CALL(tag_to_name, p_tag, ret)) {
return ret;
}
return "";
@@ -367,546 +399,622 @@ String TextServerExtension::tag_to_name(int32_t p_tag) const {
RID TextServerExtension::create_font() {
RID ret;
- if (GDVIRTUAL_CALL(_create_font, ret)) {
+ if (GDVIRTUAL_CALL(create_font, ret)) {
return ret;
}
return RID();
}
-void TextServerExtension::font_set_data(RID p_font_rid, const PackedByteArray &p_data) {
- GDVIRTUAL_CALL(_font_set_data, p_font_rid, p_data);
+void TextServerExtension::font_set_data(const RID &p_font_rid, const PackedByteArray &p_data) {
+ GDVIRTUAL_CALL(font_set_data, p_font_rid, p_data);
}
-void TextServerExtension::font_set_data_ptr(RID p_font_rid, const uint8_t *p_data_ptr, size_t p_data_size) {
- GDVIRTUAL_CALL(_font_set_data_ptr, p_font_rid, p_data_ptr, p_data_size);
+void TextServerExtension::font_set_data_ptr(const RID &p_font_rid, const uint8_t *p_data_ptr, int64_t p_data_size) {
+ GDVIRTUAL_CALL(font_set_data_ptr, p_font_rid, p_data_ptr, p_data_size);
}
-void TextServerExtension::font_set_style(RID p_font_rid, uint32_t /*FontStyle*/ p_style) {
- GDVIRTUAL_CALL(_font_set_style, p_font_rid, p_style);
+void TextServerExtension::font_set_style(const RID &p_font_rid, int64_t /*FontStyle*/ p_style) {
+ GDVIRTUAL_CALL(font_set_style, p_font_rid, p_style);
}
-uint32_t /*FontStyle*/ TextServerExtension::font_get_style(RID p_font_rid) const {
- uint32_t ret;
- if (GDVIRTUAL_CALL(_font_get_style, p_font_rid, ret)) {
+int64_t /*FontStyle*/ TextServerExtension::font_get_style(const RID &p_font_rid) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_style, p_font_rid, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_set_style_name(RID p_font_rid, const String &p_name) {
- GDVIRTUAL_CALL(_font_set_style_name, p_font_rid, p_name);
+void TextServerExtension::font_set_style_name(const RID &p_font_rid, const String &p_name) {
+ GDVIRTUAL_CALL(font_set_style_name, p_font_rid, p_name);
}
-String TextServerExtension::font_get_style_name(RID p_font_rid) const {
+String TextServerExtension::font_get_style_name(const RID &p_font_rid) const {
String ret;
- if (GDVIRTUAL_CALL(_font_get_style_name, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_style_name, p_font_rid, ret)) {
return ret;
}
return String();
}
-void TextServerExtension::font_set_name(RID p_font_rid, const String &p_name) {
- GDVIRTUAL_CALL(_font_set_name, p_font_rid, p_name);
+void TextServerExtension::font_set_name(const RID &p_font_rid, const String &p_name) {
+ GDVIRTUAL_CALL(font_set_name, p_font_rid, p_name);
}
-String TextServerExtension::font_get_name(RID p_font_rid) const {
+String TextServerExtension::font_get_name(const RID &p_font_rid) const {
String ret;
- if (GDVIRTUAL_CALL(_font_get_name, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_name, p_font_rid, ret)) {
return ret;
}
return String();
}
-void TextServerExtension::font_set_antialiased(RID p_font_rid, bool p_antialiased) {
- GDVIRTUAL_CALL(_font_set_antialiased, p_font_rid, p_antialiased);
+void TextServerExtension::font_set_antialiased(const RID &p_font_rid, bool p_antialiased) {
+ GDVIRTUAL_CALL(font_set_antialiased, p_font_rid, p_antialiased);
}
-bool TextServerExtension::font_is_antialiased(RID p_font_rid) const {
+bool TextServerExtension::font_is_antialiased(const RID &p_font_rid) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_is_antialiased, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_is_antialiased, p_font_rid, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_set_multichannel_signed_distance_field(RID p_font_rid, bool p_msdf) {
- GDVIRTUAL_CALL(_font_set_multichannel_signed_distance_field, p_font_rid, p_msdf);
+void TextServerExtension::font_set_generate_mipmaps(const RID &p_font_rid, bool p_generate_mipmaps) {
+ GDVIRTUAL_CALL(font_set_generate_mipmaps, p_font_rid, p_generate_mipmaps);
}
-bool TextServerExtension::font_is_multichannel_signed_distance_field(RID p_font_rid) const {
+bool TextServerExtension::font_get_generate_mipmaps(const RID &p_font_rid) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_is_multichannel_signed_distance_field, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_generate_mipmaps, p_font_rid, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_set_msdf_pixel_range(RID p_font_rid, int p_msdf_pixel_range) {
- GDVIRTUAL_CALL(_font_set_msdf_pixel_range, p_font_rid, p_msdf_pixel_range);
+void TextServerExtension::font_set_multichannel_signed_distance_field(const RID &p_font_rid, bool p_msdf) {
+ GDVIRTUAL_CALL(font_set_multichannel_signed_distance_field, p_font_rid, p_msdf);
}
-int TextServerExtension::font_get_msdf_pixel_range(RID p_font_rid) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_msdf_pixel_range, p_font_rid, ret)) {
+bool TextServerExtension::font_is_multichannel_signed_distance_field(const RID &p_font_rid) const {
+ bool ret;
+ if (GDVIRTUAL_CALL(font_is_multichannel_signed_distance_field, p_font_rid, ret)) {
+ return ret;
+ }
+ return false;
+}
+
+void TextServerExtension::font_set_msdf_pixel_range(const RID &p_font_rid, int64_t p_msdf_pixel_range) {
+ GDVIRTUAL_CALL(font_set_msdf_pixel_range, p_font_rid, p_msdf_pixel_range);
+}
+
+int64_t TextServerExtension::font_get_msdf_pixel_range(const RID &p_font_rid) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_msdf_pixel_range, p_font_rid, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_set_msdf_size(RID p_font_rid, int p_msdf_size) {
- GDVIRTUAL_CALL(_font_set_msdf_size, p_font_rid, p_msdf_size);
+void TextServerExtension::font_set_msdf_size(const RID &p_font_rid, int64_t p_msdf_size) {
+ GDVIRTUAL_CALL(font_set_msdf_size, p_font_rid, p_msdf_size);
}
-int TextServerExtension::font_get_msdf_size(RID p_font_rid) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_msdf_size, p_font_rid, ret)) {
+int64_t TextServerExtension::font_get_msdf_size(const RID &p_font_rid) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_msdf_size, p_font_rid, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_set_fixed_size(RID p_font_rid, int p_fixed_size) {
- GDVIRTUAL_CALL(_font_set_fixed_size, p_font_rid, p_fixed_size);
+void TextServerExtension::font_set_fixed_size(const RID &p_font_rid, int64_t p_fixed_size) {
+ GDVIRTUAL_CALL(font_set_fixed_size, p_font_rid, p_fixed_size);
}
-int TextServerExtension::font_get_fixed_size(RID p_font_rid) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_fixed_size, p_font_rid, ret)) {
+int64_t TextServerExtension::font_get_fixed_size(const RID &p_font_rid) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_fixed_size, p_font_rid, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_set_force_autohinter(RID p_font_rid, bool p_force_autohinter) {
- GDVIRTUAL_CALL(_font_set_force_autohinter, p_font_rid, p_force_autohinter);
+void TextServerExtension::font_set_force_autohinter(const RID &p_font_rid, bool p_force_autohinter) {
+ GDVIRTUAL_CALL(font_set_force_autohinter, p_font_rid, p_force_autohinter);
}
-bool TextServerExtension::font_is_force_autohinter(RID p_font_rid) const {
+bool TextServerExtension::font_is_force_autohinter(const RID &p_font_rid) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_is_force_autohinter, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_is_force_autohinter, p_font_rid, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_set_hinting(RID p_font_rid, TextServer::Hinting p_hinting) {
- GDVIRTUAL_CALL(_font_set_hinting, p_font_rid, p_hinting);
+void TextServerExtension::font_set_hinting(const RID &p_font_rid, TextServer::Hinting p_hinting) {
+ GDVIRTUAL_CALL(font_set_hinting, p_font_rid, p_hinting);
}
-TextServer::Hinting TextServerExtension::font_get_hinting(RID p_font_rid) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_hinting, p_font_rid, ret)) {
+TextServer::Hinting TextServerExtension::font_get_hinting(const RID &p_font_rid) const {
+ TextServer::Hinting ret;
+ if (GDVIRTUAL_CALL(font_get_hinting, p_font_rid, ret)) {
return (TextServer::Hinting)ret;
}
return TextServer::Hinting::HINTING_NONE;
}
-void TextServerExtension::font_set_variation_coordinates(RID p_font_rid, const Dictionary &p_variation_coordinates) {
- GDVIRTUAL_CALL(_font_set_variation_coordinates, p_font_rid, p_variation_coordinates);
+void TextServerExtension::font_set_subpixel_positioning(const RID &p_font_rid, TextServer::SubpixelPositioning p_subpixel) {
+ GDVIRTUAL_CALL(font_set_subpixel_positioning, p_font_rid, p_subpixel);
+}
+
+TextServer::SubpixelPositioning TextServerExtension::font_get_subpixel_positioning(const RID &p_font_rid) const {
+ TextServer::SubpixelPositioning ret;
+ if (GDVIRTUAL_CALL(font_get_subpixel_positioning, p_font_rid, ret)) {
+ return (TextServer::SubpixelPositioning)ret;
+ }
+ return TextServer::SubpixelPositioning::SUBPIXEL_POSITIONING_DISABLED;
+}
+
+void TextServerExtension::font_set_embolden(const RID &p_font_rid, double p_strength) {
+ GDVIRTUAL_CALL(font_set_embolden, p_font_rid, p_strength);
+}
+
+double TextServerExtension::font_get_embolden(const RID &p_font_rid) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_embolden, p_font_rid, ret)) {
+ return ret;
+ }
+ return 0.0;
}
-Dictionary TextServerExtension::font_get_variation_coordinates(RID p_font_rid) const {
+void TextServerExtension::font_set_transform(const RID &p_font_rid, const Transform2D &p_transform) {
+ GDVIRTUAL_CALL(font_set_transform, p_font_rid, p_transform);
+}
+
+Transform2D TextServerExtension::font_get_transform(const RID &p_font_rid) const {
+ Transform2D ret;
+ if (GDVIRTUAL_CALL(font_get_transform, p_font_rid, ret)) {
+ return ret;
+ }
+ return Transform2D();
+}
+
+void TextServerExtension::font_set_variation_coordinates(const RID &p_font_rid, const Dictionary &p_variation_coordinates) {
+ GDVIRTUAL_CALL(font_set_variation_coordinates, p_font_rid, p_variation_coordinates);
+}
+
+Dictionary TextServerExtension::font_get_variation_coordinates(const RID &p_font_rid) const {
Dictionary ret;
- if (GDVIRTUAL_CALL(_font_get_variation_coordinates, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_variation_coordinates, p_font_rid, ret)) {
return ret;
}
return Dictionary();
}
-void TextServerExtension::font_set_oversampling(RID p_font_rid, float p_oversampling) {
- GDVIRTUAL_CALL(_font_set_oversampling, p_font_rid, p_oversampling);
+void TextServerExtension::font_set_oversampling(const RID &p_font_rid, double p_oversampling) {
+ GDVIRTUAL_CALL(font_set_oversampling, p_font_rid, p_oversampling);
}
-float TextServerExtension::font_get_oversampling(RID p_font_rid) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_oversampling, p_font_rid, ret)) {
+double TextServerExtension::font_get_oversampling(const RID &p_font_rid) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_oversampling, p_font_rid, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-Array TextServerExtension::font_get_size_cache_list(RID p_font_rid) const {
+Array TextServerExtension::font_get_size_cache_list(const RID &p_font_rid) const {
Array ret;
- if (GDVIRTUAL_CALL(_font_get_size_cache_list, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_size_cache_list, p_font_rid, ret)) {
return ret;
}
return Array();
}
-void TextServerExtension::font_clear_size_cache(RID p_font_rid) {
- GDVIRTUAL_CALL(_font_clear_size_cache, p_font_rid);
+void TextServerExtension::font_clear_size_cache(const RID &p_font_rid) {
+ GDVIRTUAL_CALL(font_clear_size_cache, p_font_rid);
}
-void TextServerExtension::font_remove_size_cache(RID p_font_rid, const Vector2i &p_size) {
- GDVIRTUAL_CALL(_font_remove_size_cache, p_font_rid, p_size);
+void TextServerExtension::font_remove_size_cache(const RID &p_font_rid, const Vector2i &p_size) {
+ GDVIRTUAL_CALL(font_remove_size_cache, p_font_rid, p_size);
}
-void TextServerExtension::font_set_ascent(RID p_font_rid, int p_size, float p_ascent) {
- GDVIRTUAL_CALL(_font_set_ascent, p_font_rid, p_size, p_ascent);
+void TextServerExtension::font_set_ascent(const RID &p_font_rid, int64_t p_size, double p_ascent) {
+ GDVIRTUAL_CALL(font_set_ascent, p_font_rid, p_size, p_ascent);
}
-float TextServerExtension::font_get_ascent(RID p_font_rid, int p_size) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_ascent, p_font_rid, p_size, ret)) {
+double TextServerExtension::font_get_ascent(const RID &p_font_rid, int64_t p_size) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_ascent, p_font_rid, p_size, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_descent(RID p_font_rid, int p_size, float p_descent) {
- GDVIRTUAL_CALL(_font_set_descent, p_font_rid, p_size, p_descent);
+void TextServerExtension::font_set_descent(const RID &p_font_rid, int64_t p_size, double p_descent) {
+ GDVIRTUAL_CALL(font_set_descent, p_font_rid, p_size, p_descent);
}
-float TextServerExtension::font_get_descent(RID p_font_rid, int p_size) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_descent, p_font_rid, p_size, ret)) {
+double TextServerExtension::font_get_descent(const RID &p_font_rid, int64_t p_size) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_descent, p_font_rid, p_size, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_underline_position(RID p_font_rid, int p_size, float p_underline_position) {
- GDVIRTUAL_CALL(_font_set_underline_position, p_font_rid, p_size, p_underline_position);
+void TextServerExtension::font_set_underline_position(const RID &p_font_rid, int64_t p_size, double p_underline_position) {
+ GDVIRTUAL_CALL(font_set_underline_position, p_font_rid, p_size, p_underline_position);
}
-float TextServerExtension::font_get_underline_position(RID p_font_rid, int p_size) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_underline_position, p_font_rid, p_size, ret)) {
+double TextServerExtension::font_get_underline_position(const RID &p_font_rid, int64_t p_size) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_underline_position, p_font_rid, p_size, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_underline_thickness(RID p_font_rid, int p_size, float p_underline_thickness) {
- GDVIRTUAL_CALL(_font_set_underline_thickness, p_font_rid, p_size, p_underline_thickness);
+void TextServerExtension::font_set_underline_thickness(const RID &p_font_rid, int64_t p_size, double p_underline_thickness) {
+ GDVIRTUAL_CALL(font_set_underline_thickness, p_font_rid, p_size, p_underline_thickness);
}
-float TextServerExtension::font_get_underline_thickness(RID p_font_rid, int p_size) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_underline_thickness, p_font_rid, p_size, ret)) {
+double TextServerExtension::font_get_underline_thickness(const RID &p_font_rid, int64_t p_size) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_underline_thickness, p_font_rid, p_size, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_scale(RID p_font_rid, int p_size, float p_scale) {
- GDVIRTUAL_CALL(_font_set_scale, p_font_rid, p_size, p_scale);
+void TextServerExtension::font_set_scale(const RID &p_font_rid, int64_t p_size, double p_scale) {
+ GDVIRTUAL_CALL(font_set_scale, p_font_rid, p_size, p_scale);
}
-float TextServerExtension::font_get_scale(RID p_font_rid, int p_size) const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_scale, p_font_rid, p_size, ret)) {
+double TextServerExtension::font_get_scale(const RID &p_font_rid, int64_t p_size) const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_scale, p_font_rid, p_size, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_spacing(RID p_font_rid, int p_size, TextServer::SpacingType p_spacing, int p_value) {
- GDVIRTUAL_CALL(_font_set_spacing, p_font_rid, p_size, p_spacing, p_value);
+void TextServerExtension::font_set_spacing(const RID &p_font_rid, int64_t p_size, TextServer::SpacingType p_spacing, int64_t p_value) {
+ GDVIRTUAL_CALL(font_set_spacing, p_font_rid, p_size, p_spacing, p_value);
}
-int TextServerExtension::font_get_spacing(RID p_font_rid, int p_size, TextServer::SpacingType p_spacing) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_spacing, p_font_rid, p_size, p_spacing, ret)) {
+int64_t TextServerExtension::font_get_spacing(const RID &p_font_rid, int64_t p_size, TextServer::SpacingType p_spacing) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_spacing, p_font_rid, p_size, p_spacing, ret)) {
return ret;
}
return 0;
}
-int TextServerExtension::font_get_texture_count(RID p_font_rid, const Vector2i &p_size) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_texture_count, p_font_rid, p_size, ret)) {
+int64_t TextServerExtension::font_get_texture_count(const RID &p_font_rid, const Vector2i &p_size) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_texture_count, p_font_rid, p_size, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_clear_textures(RID p_font_rid, const Vector2i &p_size) {
- GDVIRTUAL_CALL(_font_clear_textures, p_font_rid, p_size);
+void TextServerExtension::font_clear_textures(const RID &p_font_rid, const Vector2i &p_size) {
+ GDVIRTUAL_CALL(font_clear_textures, p_font_rid, p_size);
}
-void TextServerExtension::font_remove_texture(RID p_font_rid, const Vector2i &p_size, int p_texture_index) {
- GDVIRTUAL_CALL(_font_remove_texture, p_font_rid, p_size, p_texture_index);
+void TextServerExtension::font_remove_texture(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) {
+ GDVIRTUAL_CALL(font_remove_texture, p_font_rid, p_size, p_texture_index);
}
-void TextServerExtension::font_set_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const Ref<Image> &p_image) {
- GDVIRTUAL_CALL(_font_set_texture_image, p_font_rid, p_size, p_texture_index, p_image);
+void TextServerExtension::font_set_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const Ref<Image> &p_image) {
+ GDVIRTUAL_CALL(font_set_texture_image, p_font_rid, p_size, p_texture_index, p_image);
}
-Ref<Image> TextServerExtension::font_get_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const {
+Ref<Image> TextServerExtension::font_get_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const {
Ref<Image> ret;
- if (GDVIRTUAL_CALL(_font_get_texture_image, p_font_rid, p_size, p_texture_index, ret)) {
+ if (GDVIRTUAL_CALL(font_get_texture_image, p_font_rid, p_size, p_texture_index, ret)) {
return ret;
}
return Ref<Image>();
}
-void TextServerExtension::font_set_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const PackedInt32Array &p_offset) {
- GDVIRTUAL_CALL(_font_set_texture_offsets, p_font_rid, p_size, p_texture_index, p_offset);
+void TextServerExtension::font_set_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const PackedInt32Array &p_offset) {
+ GDVIRTUAL_CALL(font_set_texture_offsets, p_font_rid, p_size, p_texture_index, p_offset);
}
-PackedInt32Array TextServerExtension::font_get_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const {
+PackedInt32Array TextServerExtension::font_get_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const {
PackedInt32Array ret;
- if (GDVIRTUAL_CALL(_font_get_texture_offsets, p_font_rid, p_size, p_texture_index, ret)) {
+ if (GDVIRTUAL_CALL(font_get_texture_offsets, p_font_rid, p_size, p_texture_index, ret)) {
return ret;
}
return PackedInt32Array();
}
-Array TextServerExtension::font_get_glyph_list(RID p_font_rid, const Vector2i &p_size) const {
+Array TextServerExtension::font_get_glyph_list(const RID &p_font_rid, const Vector2i &p_size) const {
Array ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_list, p_font_rid, p_size, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_list, p_font_rid, p_size, ret)) {
return ret;
}
return Array();
}
-void TextServerExtension::font_clear_glyphs(RID p_font_rid, const Vector2i &p_size) {
- GDVIRTUAL_CALL(_font_clear_glyphs, p_font_rid, p_size);
+void TextServerExtension::font_clear_glyphs(const RID &p_font_rid, const Vector2i &p_size) {
+ GDVIRTUAL_CALL(font_clear_glyphs, p_font_rid, p_size);
}
-void TextServerExtension::font_remove_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) {
- GDVIRTUAL_CALL(_font_remove_glyph, p_font_rid, p_size, p_glyph);
+void TextServerExtension::font_remove_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) {
+ GDVIRTUAL_CALL(font_remove_glyph, p_font_rid, p_size, p_glyph);
}
-Vector2 TextServerExtension::font_get_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph) const {
+Vector2 TextServerExtension::font_get_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_advance, p_font_rid, p_size, p_glyph, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_advance, p_font_rid, p_size, p_glyph, ret)) {
return ret;
}
return Vector2();
}
-void TextServerExtension::font_set_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph, const Vector2 &p_advance) {
- GDVIRTUAL_CALL(_font_set_glyph_advance, p_font_rid, p_size, p_glyph, p_advance);
+void TextServerExtension::font_set_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph, const Vector2 &p_advance) {
+ GDVIRTUAL_CALL(font_set_glyph_advance, p_font_rid, p_size, p_glyph, p_advance);
}
-Vector2 TextServerExtension::font_get_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const {
+Vector2 TextServerExtension::font_get_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_offset, p_font_rid, p_size, p_glyph, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_offset, p_font_rid, p_size, p_glyph, ret)) {
return ret;
}
return Vector2();
}
-void TextServerExtension::font_set_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_offset) {
- GDVIRTUAL_CALL(_font_set_glyph_offset, p_font_rid, p_size, p_glyph, p_offset);
+void TextServerExtension::font_set_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_offset) {
+ GDVIRTUAL_CALL(font_set_glyph_offset, p_font_rid, p_size, p_glyph, p_offset);
}
-Vector2 TextServerExtension::font_get_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const {
+Vector2 TextServerExtension::font_get_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_size, p_font_rid, p_size, p_glyph, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_size, p_font_rid, p_size, p_glyph, ret)) {
return ret;
}
return Vector2();
}
-void TextServerExtension::font_set_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_gl_size) {
- GDVIRTUAL_CALL(_font_set_glyph_size, p_font_rid, p_size, p_glyph, p_gl_size);
+void TextServerExtension::font_set_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_gl_size) {
+ GDVIRTUAL_CALL(font_set_glyph_size, p_font_rid, p_size, p_glyph, p_gl_size);
}
-Rect2 TextServerExtension::font_get_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const {
+Rect2 TextServerExtension::font_get_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
Rect2 ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_uv_rect, p_font_rid, p_size, p_glyph, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_uv_rect, p_font_rid, p_size, p_glyph, ret)) {
return ret;
}
return Rect2();
}
-void TextServerExtension::font_set_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Rect2 &p_uv_rect) {
- GDVIRTUAL_CALL(_font_set_glyph_uv_rect, p_font_rid, p_size, p_glyph, p_uv_rect);
+void TextServerExtension::font_set_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Rect2 &p_uv_rect) {
+ GDVIRTUAL_CALL(font_set_glyph_uv_rect, p_font_rid, p_size, p_glyph, p_uv_rect);
}
-int TextServerExtension::font_get_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const {
- int ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_texture_idx, p_font_rid, p_size, p_glyph, ret)) {
+int64_t TextServerExtension::font_get_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_glyph_texture_idx, p_font_rid, p_size, p_glyph, ret)) {
return ret;
}
return 0;
}
-void TextServerExtension::font_set_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, int p_texture_idx) {
- GDVIRTUAL_CALL(_font_set_glyph_texture_idx, p_font_rid, p_size, p_glyph, p_texture_idx);
+void TextServerExtension::font_set_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, int64_t p_texture_idx) {
+ GDVIRTUAL_CALL(font_set_glyph_texture_idx, p_font_rid, p_size, p_glyph, p_texture_idx);
}
-Dictionary TextServerExtension::font_get_glyph_contours(RID p_font_rid, int p_size, int32_t p_index) const {
+RID TextServerExtension::font_get_glyph_texture_rid(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
+ RID ret;
+ if (GDVIRTUAL_CALL(font_get_glyph_texture_rid, p_font_rid, p_size, p_glyph, ret)) {
+ return ret;
+ }
+ return RID();
+}
+
+Size2 TextServerExtension::font_get_glyph_texture_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const {
+ Size2 ret;
+ if (GDVIRTUAL_CALL(font_get_glyph_texture_size, p_font_rid, p_size, p_glyph, ret)) {
+ return ret;
+ }
+ return Size2();
+}
+
+Dictionary TextServerExtension::font_get_glyph_contours(const RID &p_font_rid, int64_t p_size, int64_t p_index) const {
Dictionary ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_contours, p_font_rid, p_size, p_index, ret)) {
+ if (GDVIRTUAL_CALL(font_get_glyph_contours, p_font_rid, p_size, p_index, ret)) {
return ret;
}
return Dictionary();
}
-Array TextServerExtension::font_get_kerning_list(RID p_font_rid, int p_size) const {
+Array TextServerExtension::font_get_kerning_list(const RID &p_font_rid, int64_t p_size) const {
Array ret;
- if (GDVIRTUAL_CALL(_font_get_kerning_list, p_font_rid, p_size, ret)) {
+ if (GDVIRTUAL_CALL(font_get_kerning_list, p_font_rid, p_size, ret)) {
return ret;
}
return Array();
}
-void TextServerExtension::font_clear_kerning_map(RID p_font_rid, int p_size) {
- GDVIRTUAL_CALL(_font_clear_kerning_map, p_font_rid, p_size);
+void TextServerExtension::font_clear_kerning_map(const RID &p_font_rid, int64_t p_size) {
+ GDVIRTUAL_CALL(font_clear_kerning_map, p_font_rid, p_size);
}
-void TextServerExtension::font_remove_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) {
- GDVIRTUAL_CALL(_font_remove_kerning, p_font_rid, p_size, p_glyph_pair);
+void TextServerExtension::font_remove_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) {
+ GDVIRTUAL_CALL(font_remove_kerning, p_font_rid, p_size, p_glyph_pair);
}
-void TextServerExtension::font_set_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) {
- GDVIRTUAL_CALL(_font_set_kerning, p_font_rid, p_size, p_glyph_pair, p_kerning);
+void TextServerExtension::font_set_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) {
+ GDVIRTUAL_CALL(font_set_kerning, p_font_rid, p_size, p_glyph_pair, p_kerning);
}
-Vector2 TextServerExtension::font_get_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) const {
+Vector2 TextServerExtension::font_get_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_font_get_kerning, p_font_rid, p_size, p_glyph_pair, ret)) {
+ if (GDVIRTUAL_CALL(font_get_kerning, p_font_rid, p_size, p_glyph_pair, ret)) {
return ret;
}
return Vector2();
}
-int32_t TextServerExtension::font_get_glyph_index(RID p_font_rid, int p_size, char32_t p_char, char32_t p_variation_selector) const {
- int32_t ret;
- if (GDVIRTUAL_CALL(_font_get_glyph_index, p_font_rid, p_size, p_char, p_variation_selector, ret)) {
+int64_t TextServerExtension::font_get_glyph_index(const RID &p_font_rid, int64_t p_size, int64_t p_char, int64_t p_variation_selector) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(font_get_glyph_index, p_font_rid, p_size, p_char, p_variation_selector, ret)) {
return ret;
}
return 0;
}
-bool TextServerExtension::font_has_char(RID p_font_rid, char32_t p_char) const {
+bool TextServerExtension::font_has_char(const RID &p_font_rid, int64_t p_char) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_has_char, p_font_rid, p_char, ret)) {
+ if (GDVIRTUAL_CALL(font_has_char, p_font_rid, p_char, ret)) {
return ret;
}
return false;
}
-String TextServerExtension::font_get_supported_chars(RID p_font_rid) const {
+String TextServerExtension::font_get_supported_chars(const RID &p_font_rid) const {
String ret;
- if (GDVIRTUAL_CALL(_font_get_supported_chars, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_get_supported_chars, p_font_rid, ret)) {
return ret;
}
return String();
}
-void TextServerExtension::font_render_range(RID p_font_rid, const Vector2i &p_size, char32_t p_start, char32_t p_end) {
- GDVIRTUAL_CALL(_font_render_range, p_font_rid, p_size, p_start, p_end);
+void TextServerExtension::font_render_range(const RID &p_font_rid, const Vector2i &p_size, int64_t p_start, int64_t p_end) {
+ GDVIRTUAL_CALL(font_render_range, p_font_rid, p_size, p_start, p_end);
}
-void TextServerExtension::font_render_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_index) {
- GDVIRTUAL_CALL(_font_render_glyph, p_font_rid, p_size, p_index);
+void TextServerExtension::font_render_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_index) {
+ GDVIRTUAL_CALL(font_render_glyph, p_font_rid, p_size, p_index);
}
-void TextServerExtension::font_draw_glyph(RID p_font_rid, RID p_canvas, int p_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color) const {
- GDVIRTUAL_CALL(_font_draw_glyph, p_font_rid, p_canvas, p_size, p_pos, p_index, p_color);
+void TextServerExtension::font_draw_glyph(const RID &p_font_rid, const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const {
+ GDVIRTUAL_CALL(font_draw_glyph, p_font_rid, p_canvas, p_size, p_pos, p_index, p_color);
}
-void TextServerExtension::font_draw_glyph_outline(RID p_font_rid, RID p_canvas, int p_size, int p_outline_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color) const {
- GDVIRTUAL_CALL(_font_draw_glyph_outline, p_font_rid, p_canvas, p_size, p_outline_size, p_pos, p_index, p_color);
+void TextServerExtension::font_draw_glyph_outline(const RID &p_font_rid, const RID &p_canvas, int64_t p_size, int64_t p_outline_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const {
+ GDVIRTUAL_CALL(font_draw_glyph_outline, p_font_rid, p_canvas, p_size, p_outline_size, p_pos, p_index, p_color);
}
-bool TextServerExtension::font_is_language_supported(RID p_font_rid, const String &p_language) const {
+bool TextServerExtension::font_is_language_supported(const RID &p_font_rid, const String &p_language) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_is_language_supported, p_font_rid, p_language, ret)) {
+ if (GDVIRTUAL_CALL(font_is_language_supported, p_font_rid, p_language, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_set_language_support_override(RID p_font_rid, const String &p_language, bool p_supported) {
- GDVIRTUAL_CALL(_font_set_language_support_override, p_font_rid, p_language, p_supported);
+void TextServerExtension::font_set_language_support_override(const RID &p_font_rid, const String &p_language, bool p_supported) {
+ GDVIRTUAL_CALL(font_set_language_support_override, p_font_rid, p_language, p_supported);
}
-bool TextServerExtension::font_get_language_support_override(RID p_font_rid, const String &p_language) {
+bool TextServerExtension::font_get_language_support_override(const RID &p_font_rid, const String &p_language) {
bool ret;
- if (GDVIRTUAL_CALL(_font_get_language_support_override, p_font_rid, p_language, ret)) {
+ if (GDVIRTUAL_CALL(font_get_language_support_override, p_font_rid, p_language, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_remove_language_support_override(RID p_font_rid, const String &p_language) {
- GDVIRTUAL_CALL(_font_remove_language_support_override, p_font_rid, p_language);
+void TextServerExtension::font_remove_language_support_override(const RID &p_font_rid, const String &p_language) {
+ GDVIRTUAL_CALL(font_remove_language_support_override, p_font_rid, p_language);
}
-Vector<String> TextServerExtension::font_get_language_support_overrides(RID p_font_rid) {
- Vector<String> ret;
- if (GDVIRTUAL_CALL(_font_get_language_support_overrides, p_font_rid, ret)) {
+PackedStringArray TextServerExtension::font_get_language_support_overrides(const RID &p_font_rid) {
+ PackedStringArray ret;
+ if (GDVIRTUAL_CALL(font_get_language_support_overrides, p_font_rid, ret)) {
return ret;
}
- return Vector<String>();
+ return PackedStringArray();
}
-bool TextServerExtension::font_is_script_supported(RID p_font_rid, const String &p_script) const {
+bool TextServerExtension::font_is_script_supported(const RID &p_font_rid, const String &p_script) const {
bool ret;
- if (GDVIRTUAL_CALL(_font_is_script_supported, p_font_rid, p_script, ret)) {
+ if (GDVIRTUAL_CALL(font_is_script_supported, p_font_rid, p_script, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_set_script_support_override(RID p_font_rid, const String &p_script, bool p_supported) {
- GDVIRTUAL_CALL(_font_set_script_support_override, p_font_rid, p_script, p_supported);
+void TextServerExtension::font_set_script_support_override(const RID &p_font_rid, const String &p_script, bool p_supported) {
+ GDVIRTUAL_CALL(font_set_script_support_override, p_font_rid, p_script, p_supported);
}
-bool TextServerExtension::font_get_script_support_override(RID p_font_rid, const String &p_script) {
+bool TextServerExtension::font_get_script_support_override(const RID &p_font_rid, const String &p_script) {
bool ret;
- if (GDVIRTUAL_CALL(_font_get_script_support_override, p_font_rid, p_script, ret)) {
+ if (GDVIRTUAL_CALL(font_get_script_support_override, p_font_rid, p_script, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::font_remove_script_support_override(RID p_font_rid, const String &p_script) {
- GDVIRTUAL_CALL(_font_remove_script_support_override, p_font_rid, p_script);
+void TextServerExtension::font_remove_script_support_override(const RID &p_font_rid, const String &p_script) {
+ GDVIRTUAL_CALL(font_remove_script_support_override, p_font_rid, p_script);
+}
+
+PackedStringArray TextServerExtension::font_get_script_support_overrides(const RID &p_font_rid) {
+ PackedStringArray ret;
+ if (GDVIRTUAL_CALL(font_get_script_support_overrides, p_font_rid, ret)) {
+ return ret;
+ }
+ return PackedStringArray();
+}
+
+void TextServerExtension::font_set_opentype_feature_overrides(const RID &p_font_rid, const Dictionary &p_overrides) {
+ GDVIRTUAL_CALL(font_set_opentype_feature_overrides, p_font_rid, p_overrides);
}
-Vector<String> TextServerExtension::font_get_script_support_overrides(RID p_font_rid) {
- Vector<String> ret;
- if (GDVIRTUAL_CALL(_font_get_script_support_overrides, p_font_rid, ret)) {
+Dictionary TextServerExtension::font_get_opentype_feature_overrides(const RID &p_font_rid) const {
+ Dictionary ret;
+ if (GDVIRTUAL_CALL(font_get_opentype_feature_overrides, p_font_rid, ret)) {
return ret;
}
- return Vector<String>();
+ return Dictionary();
}
-Dictionary TextServerExtension::font_supported_feature_list(RID p_font_rid) const {
+Dictionary TextServerExtension::font_supported_feature_list(const RID &p_font_rid) const {
Dictionary ret;
- if (GDVIRTUAL_CALL(_font_supported_feature_list, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_supported_feature_list, p_font_rid, ret)) {
return ret;
}
return Dictionary();
}
-Dictionary TextServerExtension::font_supported_variation_list(RID p_font_rid) const {
+Dictionary TextServerExtension::font_supported_variation_list(const RID &p_font_rid) const {
Dictionary ret;
- if (GDVIRTUAL_CALL(_font_supported_variation_list, p_font_rid, ret)) {
+ if (GDVIRTUAL_CALL(font_supported_variation_list, p_font_rid, ret)) {
return ret;
}
return Dictionary();
}
-float TextServerExtension::font_get_global_oversampling() const {
- float ret;
- if (GDVIRTUAL_CALL(_font_get_global_oversampling, ret)) {
+double TextServerExtension::font_get_global_oversampling() const {
+ double ret;
+ if (GDVIRTUAL_CALL(font_get_global_oversampling, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-void TextServerExtension::font_set_global_oversampling(float p_oversampling) {
- GDVIRTUAL_CALL(_font_set_global_oversampling, p_oversampling);
+void TextServerExtension::font_set_global_oversampling(double p_oversampling) {
+ GDVIRTUAL_CALL(font_set_global_oversampling, p_oversampling);
}
-Vector2 TextServerExtension::get_hex_code_box_size(int p_size, char32_t p_index) const {
+Vector2 TextServerExtension::get_hex_code_box_size(int64_t p_size, int64_t p_index) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_get_hex_code_box_size, p_size, p_index, ret)) {
+ if (GDVIRTUAL_CALL(get_hex_code_box_size, p_size, p_index, ret)) {
return ret;
}
return TextServer::get_hex_code_box_size(p_size, p_index);
}
-void TextServerExtension::draw_hex_code_box(RID p_canvas, int p_size, const Vector2 &p_pos, char32_t p_index, const Color &p_color) const {
- if (!GDVIRTUAL_CALL(_draw_hex_code_box, p_canvas, p_size, p_pos, p_index, p_color)) {
+void TextServerExtension::draw_hex_code_box(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const {
+ if (!GDVIRTUAL_CALL(draw_hex_code_box, p_canvas, p_size, p_pos, p_index, p_color)) {
TextServer::draw_hex_code_box(p_canvas, p_size, p_pos, p_index, p_color);
}
}
@@ -917,401 +1025,425 @@ void TextServerExtension::draw_hex_code_box(RID p_canvas, int p_size, const Vect
RID TextServerExtension::create_shaped_text(TextServer::Direction p_direction, TextServer::Orientation p_orientation) {
RID ret;
- if (GDVIRTUAL_CALL(_create_shaped_text, p_direction, p_orientation, ret)) {
+ if (GDVIRTUAL_CALL(create_shaped_text, p_direction, p_orientation, ret)) {
return ret;
}
return RID();
}
-void TextServerExtension::shaped_text_clear(RID p_shaped) {
- GDVIRTUAL_CALL(_shaped_text_clear, p_shaped);
+void TextServerExtension::shaped_text_clear(const RID &p_shaped) {
+ GDVIRTUAL_CALL(shaped_text_clear, p_shaped);
}
-void TextServerExtension::shaped_text_set_direction(RID p_shaped, TextServer::Direction p_direction) {
- GDVIRTUAL_CALL(_shaped_text_set_direction, p_shaped, p_direction);
+void TextServerExtension::shaped_text_set_direction(const RID &p_shaped, TextServer::Direction p_direction) {
+ GDVIRTUAL_CALL(shaped_text_set_direction, p_shaped, p_direction);
}
-TextServer::Direction TextServerExtension::shaped_text_get_direction(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_direction, p_shaped, ret)) {
+TextServer::Direction TextServerExtension::shaped_text_get_direction(const RID &p_shaped) const {
+ TextServer::Direction ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_direction, p_shaped, ret)) {
return (TextServer::Direction)ret;
}
return TextServer::Direction::DIRECTION_AUTO;
}
-void TextServerExtension::shaped_text_set_orientation(RID p_shaped, TextServer::Orientation p_orientation) {
- GDVIRTUAL_CALL(_shaped_text_set_orientation, p_shaped, p_orientation);
+TextServer::Direction TextServerExtension::shaped_text_get_inferred_direction(const RID &p_shaped) const {
+ TextServer::Direction ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_inferred_direction, p_shaped, ret)) {
+ return (TextServer::Direction)ret;
+ }
+ return TextServer::Direction::DIRECTION_LTR;
+}
+
+void TextServerExtension::shaped_text_set_orientation(const RID &p_shaped, TextServer::Orientation p_orientation) {
+ GDVIRTUAL_CALL(shaped_text_set_orientation, p_shaped, p_orientation);
}
-TextServer::Orientation TextServerExtension::shaped_text_get_orientation(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_orientation, p_shaped, ret)) {
+TextServer::Orientation TextServerExtension::shaped_text_get_orientation(const RID &p_shaped) const {
+ TextServer::Orientation ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_orientation, p_shaped, ret)) {
return (TextServer::Orientation)ret;
}
return TextServer::Orientation::ORIENTATION_HORIZONTAL;
}
-void TextServerExtension::shaped_text_set_bidi_override(RID p_shaped, const Array &p_override) {
- GDVIRTUAL_CALL(_shaped_text_set_bidi_override, p_shaped, p_override);
+void TextServerExtension::shaped_text_set_bidi_override(const RID &p_shaped, const Array &p_override) {
+ GDVIRTUAL_CALL(shaped_text_set_bidi_override, p_shaped, p_override);
}
-void TextServerExtension::shaped_text_set_custom_punctuation(RID p_shaped, const String &p_punct) {
- GDVIRTUAL_CALL(_shaped_text_set_custom_punctuation, p_shaped, p_punct);
+void TextServerExtension::shaped_text_set_custom_punctuation(const RID &p_shaped, const String &p_punct) {
+ GDVIRTUAL_CALL(shaped_text_set_custom_punctuation, p_shaped, p_punct);
}
-String TextServerExtension::shaped_text_get_custom_punctuation(RID p_shaped) const {
+String TextServerExtension::shaped_text_get_custom_punctuation(const RID &p_shaped) const {
String ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_custom_punctuation, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_custom_punctuation, p_shaped, ret)) {
return ret;
}
return String();
}
-void TextServerExtension::shaped_text_set_preserve_invalid(RID p_shaped, bool p_enabled) {
- GDVIRTUAL_CALL(_shaped_text_set_preserve_invalid, p_shaped, p_enabled);
+void TextServerExtension::shaped_text_set_preserve_invalid(const RID &p_shaped, bool p_enabled) {
+ GDVIRTUAL_CALL(shaped_text_set_preserve_invalid, p_shaped, p_enabled);
}
-bool TextServerExtension::shaped_text_get_preserve_invalid(RID p_shaped) const {
+bool TextServerExtension::shaped_text_get_preserve_invalid(const RID &p_shaped) const {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_preserve_invalid, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_preserve_invalid, p_shaped, ret)) {
return ret;
}
return false;
}
-void TextServerExtension::shaped_text_set_preserve_control(RID p_shaped, bool p_enabled) {
- GDVIRTUAL_CALL(_shaped_text_set_preserve_control, p_shaped, p_enabled);
+void TextServerExtension::shaped_text_set_preserve_control(const RID &p_shaped, bool p_enabled) {
+ GDVIRTUAL_CALL(shaped_text_set_preserve_control, p_shaped, p_enabled);
}
-bool TextServerExtension::shaped_text_get_preserve_control(RID p_shaped) const {
+bool TextServerExtension::shaped_text_get_preserve_control(const RID &p_shaped) const {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_preserve_control, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_preserve_control, p_shaped, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_add_string(RID p_shaped, const String &p_text, const Vector<RID> &p_fonts, int p_size, const Dictionary &p_opentype_features, const String &p_language) {
+bool TextServerExtension::shaped_text_add_string(const RID &p_shaped, const String &p_text, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features, const String &p_language, const Variant &p_meta) {
bool ret;
- Array fonts;
- for (int i = 0; i < p_fonts.size(); i++) {
- fonts.push_back(p_fonts[i]);
- }
- if (GDVIRTUAL_CALL(_shaped_text_add_string, p_shaped, p_text, fonts, p_size, p_opentype_features, p_language, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_add_string, p_shaped, p_text, p_fonts, p_size, p_opentype_features, p_language, p_meta, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_add_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align, int p_length) {
+bool TextServerExtension::shaped_text_add_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align, int64_t p_length) {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_add_object, p_shaped, p_key, p_size, p_inline_align, p_length, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_add_object, p_shaped, p_key, p_size, p_inline_align, p_length, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_resize_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align) {
+bool TextServerExtension::shaped_text_resize_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align) {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_resize_object, p_shaped, p_key, p_size, p_inline_align, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_resize_object, p_shaped, p_key, p_size, p_inline_align, ret)) {
return ret;
}
return false;
}
-RID TextServerExtension::shaped_text_substr(RID p_shaped, int p_start, int p_length) const {
+int64_t TextServerExtension::shaped_get_span_count(const RID &p_shaped) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_get_span_count, p_shaped, ret)) {
+ return ret;
+ }
+ return 0;
+}
+
+Variant TextServerExtension::shaped_get_span_meta(const RID &p_shaped, int64_t p_index) const {
+ Variant ret;
+ if (GDVIRTUAL_CALL(shaped_get_span_meta, p_shaped, p_index, ret)) {
+ return ret;
+ }
+ return false;
+}
+
+void TextServerExtension::shaped_set_span_update_font(const RID &p_shaped, int64_t p_index, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features) {
+ GDVIRTUAL_CALL(shaped_set_span_update_font, p_shaped, p_index, p_fonts, p_size, p_opentype_features);
+}
+
+RID TextServerExtension::shaped_text_substr(const RID &p_shaped, int64_t p_start, int64_t p_length) const {
RID ret;
- if (GDVIRTUAL_CALL(_shaped_text_substr, p_shaped, p_start, p_length, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_substr, p_shaped, p_start, p_length, ret)) {
return ret;
}
return RID();
}
-RID TextServerExtension::shaped_text_get_parent(RID p_shaped) const {
+RID TextServerExtension::shaped_text_get_parent(const RID &p_shaped) const {
RID ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_parent, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_parent, p_shaped, ret)) {
return ret;
}
return RID();
}
-float TextServerExtension::shaped_text_fit_to_width(RID p_shaped, float p_width, uint16_t p_jst_flags) {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_fit_to_width, p_shaped, p_width, p_jst_flags, ret)) {
+double TextServerExtension::shaped_text_fit_to_width(const RID &p_shaped, double p_width, int64_t p_jst_flags) {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_fit_to_width, p_shaped, p_width, p_jst_flags, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-float TextServerExtension::shaped_text_tab_align(RID p_shaped, const PackedFloat32Array &p_tab_stops) {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_tab_align, p_shaped, p_tab_stops, ret)) {
+double TextServerExtension::shaped_text_tab_align(const RID &p_shaped, const PackedFloat32Array &p_tab_stops) {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_tab_align, p_shaped, p_tab_stops, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-bool TextServerExtension::shaped_text_shape(RID p_shaped) {
+bool TextServerExtension::shaped_text_shape(const RID &p_shaped) {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_shape, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_shape, p_shaped, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_update_breaks(RID p_shaped) {
+bool TextServerExtension::shaped_text_update_breaks(const RID &p_shaped) {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_update_breaks, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_update_breaks, p_shaped, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_update_justification_ops(RID p_shaped) {
+bool TextServerExtension::shaped_text_update_justification_ops(const RID &p_shaped) {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_update_justification_ops, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_update_justification_ops, p_shaped, ret)) {
return ret;
}
return false;
}
-bool TextServerExtension::shaped_text_is_ready(RID p_shaped) const {
+bool TextServerExtension::shaped_text_is_ready(const RID &p_shaped) const {
bool ret;
- if (GDVIRTUAL_CALL(_shaped_text_is_ready, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_is_ready, p_shaped, ret)) {
return ret;
}
return false;
}
-const Glyph *TextServerExtension::shaped_text_get_glyphs(RID p_shaped) const {
- const Glyph *ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_glyphs, p_shaped, &ret)) {
+const Glyph *TextServerExtension::shaped_text_get_glyphs(const RID &p_shaped) const {
+ GDNativeConstPtr<const Glyph> ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_glyphs, p_shaped, ret)) {
return ret;
}
return nullptr;
}
-const Glyph *TextServerExtension::shaped_text_sort_logical(RID p_shaped) {
- const Glyph *ret;
- if (GDVIRTUAL_CALL(_shaped_text_sort_logical, p_shaped, &ret)) {
+const Glyph *TextServerExtension::shaped_text_sort_logical(const RID &p_shaped) {
+ GDNativeConstPtr<const Glyph> ret;
+ if (GDVIRTUAL_CALL(shaped_text_sort_logical, p_shaped, ret)) {
return ret;
}
return nullptr;
}
-int TextServerExtension::shaped_text_get_glyph_count(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_glyph_count, p_shaped, ret)) {
+int64_t TextServerExtension::shaped_text_get_glyph_count(const RID &p_shaped) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_glyph_count, p_shaped, ret)) {
return ret;
}
return 0;
}
-Vector2i TextServerExtension::shaped_text_get_range(RID p_shaped) const {
+Vector2i TextServerExtension::shaped_text_get_range(const RID &p_shaped) const {
Vector2i ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_range, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_range, p_shaped, ret)) {
return ret;
}
return Vector2i();
}
-PackedInt32Array TextServerExtension::shaped_text_get_line_breaks_adv(RID p_shaped, const PackedFloat32Array &p_width, int p_start, bool p_once, uint16_t p_break_flags) const {
+PackedInt32Array TextServerExtension::shaped_text_get_line_breaks_adv(const RID &p_shaped, const PackedFloat32Array &p_width, int64_t p_start, bool p_once, int64_t p_break_flags) const {
PackedInt32Array ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_line_breaks_adv, p_shaped, p_width, p_start, p_once, p_break_flags, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_line_breaks_adv, p_shaped, p_width, p_start, p_once, p_break_flags, ret)) {
return ret;
}
return TextServer::shaped_text_get_line_breaks_adv(p_shaped, p_width, p_start, p_once, p_break_flags);
}
-PackedInt32Array TextServerExtension::shaped_text_get_line_breaks(RID p_shaped, float p_width, int p_start, uint16_t p_break_flags) const {
+PackedInt32Array TextServerExtension::shaped_text_get_line_breaks(const RID &p_shaped, double p_width, int64_t p_start, int64_t p_break_flags) const {
PackedInt32Array ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_line_breaks, p_shaped, p_width, p_start, p_break_flags, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_line_breaks, p_shaped, p_width, p_start, p_break_flags, ret)) {
return ret;
}
return TextServer::shaped_text_get_line_breaks(p_shaped, p_width, p_start, p_break_flags);
}
-PackedInt32Array TextServerExtension::shaped_text_get_word_breaks(RID p_shaped, int p_grapheme_flags) const {
+PackedInt32Array TextServerExtension::shaped_text_get_word_breaks(const RID &p_shaped, int64_t p_grapheme_flags) const {
PackedInt32Array ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_word_breaks, p_shaped, p_grapheme_flags, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_word_breaks, p_shaped, p_grapheme_flags, ret)) {
return ret;
}
return TextServer::shaped_text_get_word_breaks(p_shaped, p_grapheme_flags);
}
-int TextServerExtension::shaped_text_get_trim_pos(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_trim_pos, p_shaped, ret)) {
+int64_t TextServerExtension::shaped_text_get_trim_pos(const RID &p_shaped) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_trim_pos, p_shaped, ret)) {
return ret;
}
return -1;
}
-int TextServerExtension::shaped_text_get_ellipsis_pos(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_ellipsis_pos, p_shaped, ret)) {
+int64_t TextServerExtension::shaped_text_get_ellipsis_pos(const RID &p_shaped) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_ellipsis_pos, p_shaped, ret)) {
return ret;
}
return -1;
}
-const Glyph *TextServerExtension::shaped_text_get_ellipsis_glyphs(RID p_shaped) const {
- const Glyph *ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_ellipsis_glyphs, p_shaped, &ret)) {
+const Glyph *TextServerExtension::shaped_text_get_ellipsis_glyphs(const RID &p_shaped) const {
+ GDNativeConstPtr<const Glyph> ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_ellipsis_glyphs, p_shaped, ret)) {
return ret;
}
return nullptr;
}
-int TextServerExtension::shaped_text_get_ellipsis_glyph_count(RID p_shaped) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_ellipsis_glyph_count, p_shaped, ret)) {
+int64_t TextServerExtension::shaped_text_get_ellipsis_glyph_count(const RID &p_shaped) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_ellipsis_glyph_count, p_shaped, ret)) {
return ret;
}
return -1;
}
-void TextServerExtension::shaped_text_overrun_trim_to_width(RID p_shaped_line, float p_width, uint16_t p_trim_flags) {
- GDVIRTUAL_CALL(_shaped_text_overrun_trim_to_width, p_shaped_line, p_width, p_trim_flags);
+void TextServerExtension::shaped_text_overrun_trim_to_width(const RID &p_shaped_line, double p_width, int64_t p_trim_flags) {
+ GDVIRTUAL_CALL(shaped_text_overrun_trim_to_width, p_shaped_line, p_width, p_trim_flags);
}
-Array TextServerExtension::shaped_text_get_objects(RID p_shaped) const {
+Array TextServerExtension::shaped_text_get_objects(const RID &p_shaped) const {
Array ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_objects, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_objects, p_shaped, ret)) {
return ret;
}
return Array();
}
-Rect2 TextServerExtension::shaped_text_get_object_rect(RID p_shaped, Variant p_key) const {
+Rect2 TextServerExtension::shaped_text_get_object_rect(const RID &p_shaped, const Variant &p_key) const {
Rect2 ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_object_rect, p_shaped, p_key, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_object_rect, p_shaped, p_key, ret)) {
return ret;
}
return Rect2();
}
-Size2 TextServerExtension::shaped_text_get_size(RID p_shaped) const {
+Size2 TextServerExtension::shaped_text_get_size(const RID &p_shaped) const {
Size2 ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_size, p_shaped, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_size, p_shaped, ret)) {
return ret;
}
return Size2();
}
-float TextServerExtension::shaped_text_get_ascent(RID p_shaped) const {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_ascent, p_shaped, ret)) {
+double TextServerExtension::shaped_text_get_ascent(const RID &p_shaped) const {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_ascent, p_shaped, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-float TextServerExtension::shaped_text_get_descent(RID p_shaped) const {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_descent, p_shaped, ret)) {
+double TextServerExtension::shaped_text_get_descent(const RID &p_shaped) const {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_descent, p_shaped, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-float TextServerExtension::shaped_text_get_width(RID p_shaped) const {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_width, p_shaped, ret)) {
+double TextServerExtension::shaped_text_get_width(const RID &p_shaped) const {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_width, p_shaped, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-float TextServerExtension::shaped_text_get_underline_position(RID p_shaped) const {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_underline_position, p_shaped, ret)) {
+double TextServerExtension::shaped_text_get_underline_position(const RID &p_shaped) const {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_underline_position, p_shaped, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-float TextServerExtension::shaped_text_get_underline_thickness(RID p_shaped) const {
- float ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_underline_thickness, p_shaped, ret)) {
+double TextServerExtension::shaped_text_get_underline_thickness(const RID &p_shaped) const {
+ double ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_underline_thickness, p_shaped, ret)) {
return ret;
}
- return 0.f;
+ return 0.0;
}
-TextServer::Direction TextServerExtension::shaped_text_get_dominant_direction_in_range(RID p_shaped, int p_start, int p_end) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_dominant_direction_in_range, p_shaped, p_start, p_end, ret)) {
+TextServer::Direction TextServerExtension::shaped_text_get_dominant_direction_in_range(const RID &p_shaped, int64_t p_start, int64_t p_end) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_get_dominant_direction_in_range, p_shaped, p_start, p_end, ret)) {
return (TextServer::Direction)ret;
}
return TextServer::shaped_text_get_dominant_direction_in_range(p_shaped, p_start, p_end);
}
-CaretInfo TextServerExtension::shaped_text_get_carets(RID p_shaped, int p_position) const {
+CaretInfo TextServerExtension::shaped_text_get_carets(const RID &p_shaped, int64_t p_position) const {
CaretInfo ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_carets, p_shaped, p_position, &ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_carets, p_shaped, p_position, &ret)) {
return ret;
}
return TextServer::shaped_text_get_carets(p_shaped, p_position);
}
-Vector<Vector2> TextServerExtension::shaped_text_get_selection(RID p_shaped, int p_start, int p_end) const {
+Vector<Vector2> TextServerExtension::shaped_text_get_selection(const RID &p_shaped, int64_t p_start, int64_t p_end) const {
Vector<Vector2> ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_selection, p_shaped, p_start, p_end, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_selection, p_shaped, p_start, p_end, ret)) {
return ret;
}
return TextServer::shaped_text_get_selection(p_shaped, p_start, p_end);
}
-int TextServerExtension::shaped_text_hit_test_grapheme(RID p_shaped, float p_coords) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_hit_test_grapheme, p_shaped, p_coords, ret)) {
+int64_t TextServerExtension::shaped_text_hit_test_grapheme(const RID &p_shaped, double p_coords) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_hit_test_grapheme, p_shaped, p_coords, ret)) {
return ret;
}
return TextServer::shaped_text_hit_test_grapheme(p_shaped, p_coords);
}
-int TextServerExtension::shaped_text_hit_test_position(RID p_shaped, float p_coords) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_hit_test_position, p_shaped, p_coords, ret)) {
+int64_t TextServerExtension::shaped_text_hit_test_position(const RID &p_shaped, double p_coords) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_hit_test_position, p_shaped, p_coords, ret)) {
return ret;
}
return TextServer::shaped_text_hit_test_position(p_shaped, p_coords);
}
-void TextServerExtension::shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l, float p_clip_r, const Color &p_color) const {
- if (GDVIRTUAL_CALL(_shaped_text_draw, p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_color)) {
+void TextServerExtension::shaped_text_draw(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l, double p_clip_r, const Color &p_color) const {
+ if (GDVIRTUAL_CALL(shaped_text_draw, p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_color)) {
return;
}
TextServer::shaped_text_draw(p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_color);
}
-void TextServerExtension::shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l, float p_clip_r, int p_outline_size, const Color &p_color) const {
- if (GDVIRTUAL_CALL(_shaped_text_draw_outline, p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_outline_size, p_color)) {
+void TextServerExtension::shaped_text_draw_outline(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l, double p_clip_r, int64_t p_outline_size, const Color &p_color) const {
+ if (GDVIRTUAL_CALL(shaped_text_draw_outline, p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_outline_size, p_color)) {
return;
}
- shaped_text_draw_outline(p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_outline_size, p_color);
+ TextServer::shaped_text_draw_outline(p_shaped, p_canvas, p_pos, p_clip_l, p_clip_r, p_outline_size, p_color);
}
-Vector2 TextServerExtension::shaped_text_get_grapheme_bounds(RID p_shaped, int p_pos) const {
+Vector2 TextServerExtension::shaped_text_get_grapheme_bounds(const RID &p_shaped, int64_t p_pos) const {
Vector2 ret;
- if (GDVIRTUAL_CALL(_shaped_text_get_grapheme_bounds, p_shaped, p_pos, ret)) {
+ if (GDVIRTUAL_CALL(shaped_text_get_grapheme_bounds, p_shaped, p_pos, ret)) {
return ret;
}
return TextServer::shaped_text_get_grapheme_bounds(p_shaped, p_pos);
}
-int TextServerExtension::shaped_text_next_grapheme_pos(RID p_shaped, int p_pos) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_next_grapheme_pos, p_shaped, p_pos, ret)) {
+int64_t TextServerExtension::shaped_text_next_grapheme_pos(const RID &p_shaped, int64_t p_pos) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_next_grapheme_pos, p_shaped, p_pos, ret)) {
return ret;
}
return TextServer::shaped_text_next_grapheme_pos(p_shaped, p_pos);
}
-int TextServerExtension::shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos) const {
- int ret;
- if (GDVIRTUAL_CALL(_shaped_text_prev_grapheme_pos, p_shaped, p_pos, ret)) {
+int64_t TextServerExtension::shaped_text_prev_grapheme_pos(const RID &p_shaped, int64_t p_pos) const {
+ int64_t ret;
+ if (GDVIRTUAL_CALL(shaped_text_prev_grapheme_pos, p_shaped, p_pos, ret)) {
return ret;
}
return TextServer::shaped_text_prev_grapheme_pos(p_shaped, p_pos);
@@ -1319,26 +1451,66 @@ int TextServerExtension::shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos)
String TextServerExtension::format_number(const String &p_string, const String &p_language) const {
String ret;
- if (GDVIRTUAL_CALL(_format_number, p_string, p_language, ret)) {
+ if (GDVIRTUAL_CALL(format_number, p_string, p_language, ret)) {
return ret;
}
- return TextServer::format_number(p_string, p_language);
+ return p_string;
}
String TextServerExtension::parse_number(const String &p_string, const String &p_language) const {
String ret;
- if (GDVIRTUAL_CALL(_parse_number, p_string, p_language, ret)) {
+ if (GDVIRTUAL_CALL(parse_number, p_string, p_language, ret)) {
return ret;
}
- return TextServer::parse_number(p_string, p_language);
+ return p_string;
}
String TextServerExtension::percent_sign(const String &p_language) const {
String ret;
- if (GDVIRTUAL_CALL(_percent_sign, p_language, ret)) {
+ if (GDVIRTUAL_CALL(percent_sign, p_language, ret)) {
+ return ret;
+ }
+ return "%";
+}
+
+String TextServerExtension::strip_diacritics(const String &p_string) const {
+ String ret;
+ if (GDVIRTUAL_CALL(strip_diacritics, p_string, ret)) {
+ return ret;
+ }
+ return TextServer::strip_diacritics(p_string);
+}
+
+String TextServerExtension::string_to_upper(const String &p_string, const String &p_language) const {
+ String ret;
+ if (GDVIRTUAL_CALL(string_to_upper, p_string, p_language, ret)) {
+ return ret;
+ }
+ return p_string;
+}
+
+String TextServerExtension::string_to_lower(const String &p_string, const String &p_language) const {
+ String ret;
+ if (GDVIRTUAL_CALL(string_to_lower, p_string, p_language, ret)) {
return ret;
}
- return TextServer::percent_sign(p_language);
+ return p_string;
+}
+
+Array TextServerExtension::parse_structured_text(StructuredTextParser p_parser_type, const Array &p_args, const String &p_text) const {
+ Array ret;
+ if (GDVIRTUAL_CALL(parse_structured_text, p_parser_type, p_args, p_text, ret)) {
+ return ret;
+ }
+ return Array();
+}
+
+PackedInt32Array TextServerExtension::string_get_word_breaks(const String &p_string, const String &p_language) const {
+ PackedInt32Array ret;
+ if (GDVIRTUAL_CALL(string_get_word_breaks, p_string, p_language, ret)) {
+ return ret;
+ }
+ return PackedInt32Array();
}
TextServerExtension::TextServerExtension() {
diff --git a/servers/text/text_server_extension.h b/servers/text/text_server_extension.h
index 91d1a6b97e..7b7fc61ed7 100644
--- a/servers/text/text_server_extension.h
+++ b/servers/text/text_server_extension.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -48,399 +48,453 @@ protected:
public:
virtual bool has_feature(Feature p_feature) const override;
virtual String get_name() const override;
- virtual uint32_t get_features() const override;
- GDVIRTUAL1RC(bool, _has_feature, Feature);
- GDVIRTUAL0RC(String, _get_name);
- GDVIRTUAL0RC(uint32_t, _get_features);
+ virtual int64_t get_features() const override;
+ GDVIRTUAL1RC(bool, has_feature, Feature);
+ GDVIRTUAL0RC(String, get_name);
+ GDVIRTUAL0RC(int64_t, get_features);
- virtual void free(RID p_rid) override;
- virtual bool has(RID p_rid) override;
+ virtual void free_rid(const RID &p_rid) override;
+ virtual bool has(const RID &p_rid) override;
virtual bool load_support_data(const String &p_filename) override;
- GDVIRTUAL1(_free, RID);
- GDVIRTUAL1R(bool, _has, RID);
- GDVIRTUAL1R(bool, _load_support_data, const String &);
+ GDVIRTUAL1(free_rid, RID);
+ GDVIRTUAL1R(bool, has, RID);
+ GDVIRTUAL1R(bool, load_support_data, const String &);
virtual String get_support_data_filename() const override;
virtual String get_support_data_info() const override;
virtual bool save_support_data(const String &p_filename) const override;
- GDVIRTUAL0RC(String, _get_support_data_filename);
- GDVIRTUAL0RC(String, _get_support_data_info);
- GDVIRTUAL1RC(bool, _save_support_data, const String &);
+ GDVIRTUAL0RC(String, get_support_data_filename);
+ GDVIRTUAL0RC(String, get_support_data_info);
+ GDVIRTUAL1RC(bool, save_support_data, const String &);
virtual bool is_locale_right_to_left(const String &p_locale) const override;
- GDVIRTUAL1RC(bool, _is_locale_right_to_left, const String &);
+ GDVIRTUAL1RC(bool, is_locale_right_to_left, const String &);
- virtual int32_t name_to_tag(const String &p_name) const override;
- virtual String tag_to_name(int32_t p_tag) const override;
- GDVIRTUAL1RC(int32_t, _name_to_tag, const String &);
- GDVIRTUAL1RC(String, _tag_to_name, int32_t);
+ virtual int64_t name_to_tag(const String &p_name) const override;
+ virtual String tag_to_name(int64_t p_tag) const override;
+ GDVIRTUAL1RC(int64_t, name_to_tag, const String &);
+ GDVIRTUAL1RC(String, tag_to_name, int64_t);
/* Font interface */
virtual RID create_font() override;
- GDVIRTUAL0R(RID, _create_font);
-
- virtual void font_set_data(RID p_font_rid, const PackedByteArray &p_data) override;
- virtual void font_set_data_ptr(RID p_font_rid, const uint8_t *p_data_ptr, size_t p_data_size) override;
- GDVIRTUAL2(_font_set_data, RID, const PackedByteArray &);
- GDVIRTUAL3(_font_set_data_ptr, RID, GDNativeConstPtr<const uint8_t>, uint64_t);
-
- virtual void font_set_style(RID p_font_rid, uint32_t /*FontStyle*/ p_style) override;
- virtual uint32_t /*FontStyle*/ font_get_style(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_style, RID, uint32_t);
- GDVIRTUAL1RC(uint32_t, _font_get_style, RID);
-
- virtual void font_set_name(RID p_font_rid, const String &p_name) override;
- virtual String font_get_name(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_name, RID, const String &);
- GDVIRTUAL1RC(String, _font_get_name, RID);
-
- virtual void font_set_style_name(RID p_font_rid, const String &p_name) override;
- virtual String font_get_style_name(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_style_name, RID, const String &);
- GDVIRTUAL1RC(String, _font_get_style_name, RID);
-
- virtual void font_set_antialiased(RID p_font_rid, bool p_antialiased) override;
- virtual bool font_is_antialiased(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_antialiased, RID, bool);
- GDVIRTUAL1RC(bool, _font_is_antialiased, RID);
-
- virtual void font_set_multichannel_signed_distance_field(RID p_font_rid, bool p_msdf) override;
- virtual bool font_is_multichannel_signed_distance_field(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_multichannel_signed_distance_field, RID, bool);
- GDVIRTUAL1RC(bool, _font_is_multichannel_signed_distance_field, RID);
-
- virtual void font_set_msdf_pixel_range(RID p_font_rid, int p_msdf_pixel_range) override;
- virtual int font_get_msdf_pixel_range(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_msdf_pixel_range, RID, int);
- GDVIRTUAL1RC(int, _font_get_msdf_pixel_range, RID);
-
- virtual void font_set_msdf_size(RID p_font_rid, int p_msdf_size) override;
- virtual int font_get_msdf_size(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_msdf_size, RID, int);
- GDVIRTUAL1RC(int, _font_get_msdf_size, RID);
-
- virtual void font_set_fixed_size(RID p_font_rid, int p_fixed_size) override;
- virtual int font_get_fixed_size(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_fixed_size, RID, int);
- GDVIRTUAL1RC(int, _font_get_fixed_size, RID);
-
- virtual void font_set_force_autohinter(RID p_font_rid, bool p_force_autohinter) override;
- virtual bool font_is_force_autohinter(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_force_autohinter, RID, bool);
- GDVIRTUAL1RC(bool, _font_is_force_autohinter, RID);
-
- virtual void font_set_hinting(RID p_font_rid, Hinting p_hinting) override;
- virtual Hinting font_get_hinting(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_hinting, RID, Hinting);
- GDVIRTUAL1RC(/*Hinting*/ int, _font_get_hinting, RID);
-
- virtual void font_set_variation_coordinates(RID p_font_rid, const Dictionary &p_variation_coordinates) override;
- virtual Dictionary font_get_variation_coordinates(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_variation_coordinates, RID, Dictionary);
- GDVIRTUAL1RC(Dictionary, _font_get_variation_coordinates, RID);
-
- virtual void font_set_oversampling(RID p_font_rid, float p_oversampling) override;
- virtual float font_get_oversampling(RID p_font_rid) const override;
- GDVIRTUAL2(_font_set_oversampling, RID, float);
- GDVIRTUAL1RC(float, _font_get_oversampling, RID);
-
- virtual Array font_get_size_cache_list(RID p_font_rid) const override;
- virtual void font_clear_size_cache(RID p_font_rid) override;
- virtual void font_remove_size_cache(RID p_font_rid, const Vector2i &p_size) override;
- GDVIRTUAL1RC(Array, _font_get_size_cache_list, RID);
- GDVIRTUAL1(_font_clear_size_cache, RID);
- GDVIRTUAL2(_font_remove_size_cache, RID, const Vector2i &);
-
- virtual void font_set_ascent(RID p_font_rid, int p_size, float p_ascent) override;
- virtual float font_get_ascent(RID p_font_rid, int p_size) const override;
- GDVIRTUAL3(_font_set_ascent, RID, int, float);
- GDVIRTUAL2RC(float, _font_get_ascent, RID, int);
-
- virtual void font_set_descent(RID p_font_rid, int p_size, float p_descent) override;
- virtual float font_get_descent(RID p_font_rid, int p_size) const override;
- GDVIRTUAL3(_font_set_descent, RID, int, float);
- GDVIRTUAL2RC(float, _font_get_descent, RID, int);
-
- virtual void font_set_underline_position(RID p_font_rid, int p_size, float p_underline_position) override;
- virtual float font_get_underline_position(RID p_font_rid, int p_size) const override;
- GDVIRTUAL3(_font_set_underline_position, RID, int, float);
- GDVIRTUAL2RC(float, _font_get_underline_position, RID, int);
-
- virtual void font_set_underline_thickness(RID p_font_rid, int p_size, float p_underline_thickness) override;
- virtual float font_get_underline_thickness(RID p_font_rid, int p_size) const override;
- GDVIRTUAL3(_font_set_underline_thickness, RID, int, float);
- GDVIRTUAL2RC(float, _font_get_underline_thickness, RID, int);
-
- virtual void font_set_scale(RID p_font_rid, int p_size, float p_scale) override;
- virtual float font_get_scale(RID p_font_rid, int p_size) const override;
- GDVIRTUAL3(_font_set_scale, RID, int, float);
- GDVIRTUAL2RC(float, _font_get_scale, RID, int);
-
- virtual void font_set_spacing(RID p_font_rid, int p_size, SpacingType p_spacing, int p_value) override;
- virtual int font_get_spacing(RID p_font_rid, int p_size, SpacingType p_spacing) const override;
- GDVIRTUAL4(_font_set_spacing, RID, int, SpacingType, int);
- GDVIRTUAL3RC(int, _font_get_spacing, RID, int, SpacingType);
-
- virtual int font_get_texture_count(RID p_font_rid, const Vector2i &p_size) const override;
- virtual void font_clear_textures(RID p_font_rid, const Vector2i &p_size) override;
- virtual void font_remove_texture(RID p_font_rid, const Vector2i &p_size, int p_texture_index) override;
- GDVIRTUAL2RC(int, _font_get_texture_count, RID, const Vector2i &);
- GDVIRTUAL2(_font_clear_textures, RID, const Vector2i &);
- GDVIRTUAL3(_font_remove_texture, RID, const Vector2i &, int);
-
- virtual void font_set_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const Ref<Image> &p_image) override;
- virtual Ref<Image> font_get_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const override;
- GDVIRTUAL4(_font_set_texture_image, RID, const Vector2i &, int, const Ref<Image> &);
- GDVIRTUAL3RC(Ref<Image>, _font_get_texture_image, RID, const Vector2i &, int);
-
- virtual void font_set_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const PackedInt32Array &p_offset) override;
- virtual PackedInt32Array font_get_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const override;
- GDVIRTUAL4(_font_set_texture_offsets, RID, const Vector2i &, int, const PackedInt32Array &);
- GDVIRTUAL3RC(PackedInt32Array, _font_get_texture_offsets, RID, const Vector2i &, int);
-
- virtual Array font_get_glyph_list(RID p_font_rid, const Vector2i &p_size) const override;
- virtual void font_clear_glyphs(RID p_font_rid, const Vector2i &p_size) override;
- virtual void font_remove_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) override;
- GDVIRTUAL2RC(Array, _font_get_glyph_list, RID, const Vector2i &);
- GDVIRTUAL2(_font_clear_glyphs, RID, const Vector2i &);
- GDVIRTUAL3(_font_remove_glyph, RID, const Vector2i &, int32_t);
-
- virtual Vector2 font_get_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph) const override;
- virtual void font_set_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph, const Vector2 &p_advance) override;
- GDVIRTUAL3RC(Vector2, _font_get_glyph_advance, RID, int, int32_t);
- GDVIRTUAL4(_font_set_glyph_advance, RID, int, int32_t, const Vector2 &);
-
- virtual Vector2 font_get_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const override;
- virtual void font_set_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_offset) override;
- GDVIRTUAL3RC(Vector2, _font_get_glyph_offset, RID, const Vector2i &, int32_t);
- GDVIRTUAL4(_font_set_glyph_offset, RID, const Vector2i &, int32_t, const Vector2 &);
-
- virtual Vector2 font_get_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const override;
- virtual void font_set_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_gl_size) override;
- GDVIRTUAL3RC(Vector2, _font_get_glyph_size, RID, const Vector2i &, int32_t);
- GDVIRTUAL4(_font_set_glyph_size, RID, const Vector2i &, int32_t, const Vector2 &);
-
- virtual Rect2 font_get_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const override;
- virtual void font_set_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Rect2 &p_uv_rect) override;
- GDVIRTUAL3RC(Rect2, _font_get_glyph_uv_rect, RID, const Vector2i &, int32_t);
- GDVIRTUAL4(_font_set_glyph_uv_rect, RID, const Vector2i &, int32_t, const Rect2 &);
-
- virtual int font_get_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const override;
- virtual void font_set_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, int p_texture_idx) override;
- GDVIRTUAL3RC(int, _font_get_glyph_texture_idx, RID, const Vector2i &, int32_t);
- GDVIRTUAL4(_font_set_glyph_texture_idx, RID, const Vector2i &, int32_t, int);
-
- virtual Dictionary font_get_glyph_contours(RID p_font, int p_size, int32_t p_index) const override;
- GDVIRTUAL3RC(Dictionary, _font_get_glyph_contours, RID, int, int32_t);
-
- virtual Array font_get_kerning_list(RID p_font_rid, int p_size) const override;
- virtual void font_clear_kerning_map(RID p_font_rid, int p_size) override;
- virtual void font_remove_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) override;
- GDVIRTUAL2RC(Array, _font_get_kerning_list, RID, int);
- GDVIRTUAL2(_font_clear_kerning_map, RID, int);
- GDVIRTUAL3(_font_remove_kerning, RID, int, const Vector2i &);
-
- virtual void font_set_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) override;
- virtual Vector2 font_get_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) const override;
- GDVIRTUAL4(_font_set_kerning, RID, int, const Vector2i &, const Vector2 &);
- GDVIRTUAL3RC(Vector2, _font_get_kerning, RID, int, const Vector2i &);
-
- virtual int32_t font_get_glyph_index(RID p_font_rid, int p_size, char32_t p_char, char32_t p_variation_selector = 0) const override;
- GDVIRTUAL4RC(int32_t, _font_get_glyph_index, RID, int, char32_t, char32_t);
-
- virtual bool font_has_char(RID p_font_rid, char32_t p_char) const override;
- virtual String font_get_supported_chars(RID p_font_rid) const override;
- GDVIRTUAL2RC(bool, _font_has_char, RID, char32_t);
- GDVIRTUAL1RC(String, _font_get_supported_chars, RID);
-
- virtual void font_render_range(RID p_font, const Vector2i &p_size, char32_t p_start, char32_t p_end) override;
- virtual void font_render_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_index) override;
- GDVIRTUAL4(_font_render_range, RID, const Vector2i &, char32_t, char32_t);
- GDVIRTUAL3(_font_render_glyph, RID, const Vector2i &, int32_t);
-
- virtual void font_draw_glyph(RID p_font, RID p_canvas, int p_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color = Color(1, 1, 1)) const override;
- virtual void font_draw_glyph_outline(RID p_font, RID p_canvas, int p_size, int p_outline_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color = Color(1, 1, 1)) const override;
- GDVIRTUAL6C(_font_draw_glyph, RID, RID, int, const Vector2 &, int32_t, const Color &);
- GDVIRTUAL7C(_font_draw_glyph_outline, RID, RID, int, int, const Vector2 &, int32_t, const Color &);
-
- virtual bool font_is_language_supported(RID p_font_rid, const String &p_language) const override;
- virtual void font_set_language_support_override(RID p_font_rid, const String &p_language, bool p_supported) override;
- virtual bool font_get_language_support_override(RID p_font_rid, const String &p_language) override;
- virtual void font_remove_language_support_override(RID p_font_rid, const String &p_language) override;
- virtual Vector<String> font_get_language_support_overrides(RID p_font_rid) override;
- GDVIRTUAL2RC(bool, _font_is_language_supported, RID, const String &);
- GDVIRTUAL3(_font_set_language_support_override, RID, const String &, bool);
- GDVIRTUAL2R(bool, _font_get_language_support_override, RID, const String &);
- GDVIRTUAL2(_font_remove_language_support_override, RID, const String &);
- GDVIRTUAL1R(Vector<String>, _font_get_language_support_overrides, RID);
-
- virtual bool font_is_script_supported(RID p_font_rid, const String &p_script) const override;
- virtual void font_set_script_support_override(RID p_font_rid, const String &p_script, bool p_supported) override;
- virtual bool font_get_script_support_override(RID p_font_rid, const String &p_script) override;
- virtual void font_remove_script_support_override(RID p_font_rid, const String &p_script) override;
- virtual Vector<String> font_get_script_support_overrides(RID p_font_rid) override;
- GDVIRTUAL2RC(bool, _font_is_script_supported, RID, const String &);
- GDVIRTUAL3(_font_set_script_support_override, RID, const String &, bool);
- GDVIRTUAL2R(bool, _font_get_script_support_override, RID, const String &);
- GDVIRTUAL2(_font_remove_script_support_override, RID, const String &);
- GDVIRTUAL1R(Vector<String>, _font_get_script_support_overrides, RID);
-
- virtual Dictionary font_supported_feature_list(RID p_font_rid) const override;
- virtual Dictionary font_supported_variation_list(RID p_font_rid) const override;
- GDVIRTUAL1RC(Dictionary, _font_supported_feature_list, RID);
- GDVIRTUAL1RC(Dictionary, _font_supported_variation_list, RID);
-
- virtual float font_get_global_oversampling() const override;
- virtual void font_set_global_oversampling(float p_oversampling) override;
- GDVIRTUAL0RC(float, _font_get_global_oversampling);
- GDVIRTUAL1(_font_set_global_oversampling, float);
-
- virtual Vector2 get_hex_code_box_size(int p_size, char32_t p_index) const override;
- virtual void draw_hex_code_box(RID p_canvas, int p_size, const Vector2 &p_pos, char32_t p_index, const Color &p_color) const override;
- GDVIRTUAL2RC(Vector2, _get_hex_code_box_size, int, char32_t);
- GDVIRTUAL5C(_draw_hex_code_box, RID, int, const Vector2 &, char32_t, const Color &);
+ GDVIRTUAL0R(RID, create_font);
+
+ virtual void font_set_data(const RID &p_font_rid, const PackedByteArray &p_data) override;
+ virtual void font_set_data_ptr(const RID &p_font_rid, const uint8_t *p_data_ptr, int64_t p_data_size) override;
+ GDVIRTUAL2(font_set_data, RID, const PackedByteArray &);
+ GDVIRTUAL3(font_set_data_ptr, RID, GDNativeConstPtr<const uint8_t>, int64_t);
+
+ virtual void font_set_style(const RID &p_font_rid, int64_t /*FontStyle*/ p_style) override;
+ virtual int64_t /*FontStyle*/ font_get_style(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_style, RID, int64_t);
+ GDVIRTUAL1RC(int64_t, font_get_style, RID);
+
+ virtual void font_set_name(const RID &p_font_rid, const String &p_name) override;
+ virtual String font_get_name(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_name, RID, const String &);
+ GDVIRTUAL1RC(String, font_get_name, RID);
+
+ virtual void font_set_style_name(const RID &p_font_rid, const String &p_name) override;
+ virtual String font_get_style_name(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_style_name, RID, const String &);
+ GDVIRTUAL1RC(String, font_get_style_name, RID);
+
+ virtual void font_set_antialiased(const RID &p_font_rid, bool p_antialiased) override;
+ virtual bool font_is_antialiased(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_antialiased, RID, bool);
+ GDVIRTUAL1RC(bool, font_is_antialiased, RID);
+
+ virtual void font_set_generate_mipmaps(const RID &p_font_rid, bool p_generate_mipmaps) override;
+ virtual bool font_get_generate_mipmaps(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_generate_mipmaps, RID, bool);
+ GDVIRTUAL1RC(bool, font_get_generate_mipmaps, RID);
+
+ virtual void font_set_multichannel_signed_distance_field(const RID &p_font_rid, bool p_msdf) override;
+ virtual bool font_is_multichannel_signed_distance_field(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_multichannel_signed_distance_field, RID, bool);
+ GDVIRTUAL1RC(bool, font_is_multichannel_signed_distance_field, RID);
+
+ virtual void font_set_msdf_pixel_range(const RID &p_font_rid, int64_t p_msdf_pixel_range) override;
+ virtual int64_t font_get_msdf_pixel_range(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_msdf_pixel_range, RID, int64_t);
+ GDVIRTUAL1RC(int64_t, font_get_msdf_pixel_range, RID);
+
+ virtual void font_set_msdf_size(const RID &p_font_rid, int64_t p_msdf_size) override;
+ virtual int64_t font_get_msdf_size(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_msdf_size, RID, int64_t);
+ GDVIRTUAL1RC(int64_t, font_get_msdf_size, RID);
+
+ virtual void font_set_fixed_size(const RID &p_font_rid, int64_t p_fixed_size) override;
+ virtual int64_t font_get_fixed_size(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_fixed_size, RID, int64_t);
+ GDVIRTUAL1RC(int64_t, font_get_fixed_size, RID);
+
+ virtual void font_set_subpixel_positioning(const RID &p_font_rid, SubpixelPositioning p_subpixel) override;
+ virtual SubpixelPositioning font_get_subpixel_positioning(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_subpixel_positioning, RID, SubpixelPositioning);
+ GDVIRTUAL1RC(SubpixelPositioning, font_get_subpixel_positioning, RID);
+
+ virtual void font_set_embolden(const RID &p_font_rid, double p_strength) override;
+ virtual double font_get_embolden(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_embolden, RID, double);
+ GDVIRTUAL1RC(double, font_get_embolden, RID);
+
+ virtual void font_set_transform(const RID &p_font_rid, const Transform2D &p_transform) override;
+ virtual Transform2D font_get_transform(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_transform, RID, Transform2D);
+ GDVIRTUAL1RC(Transform2D, font_get_transform, RID);
+
+ virtual void font_set_force_autohinter(const RID &p_font_rid, bool p_force_autohinter) override;
+ virtual bool font_is_force_autohinter(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_force_autohinter, RID, bool);
+ GDVIRTUAL1RC(bool, font_is_force_autohinter, RID);
+
+ virtual void font_set_hinting(const RID &p_font_rid, Hinting p_hinting) override;
+ virtual Hinting font_get_hinting(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_hinting, RID, Hinting);
+ GDVIRTUAL1RC(Hinting, font_get_hinting, RID);
+
+ virtual void font_set_variation_coordinates(const RID &p_font_rid, const Dictionary &p_variation_coordinates) override;
+ virtual Dictionary font_get_variation_coordinates(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_variation_coordinates, RID, Dictionary);
+ GDVIRTUAL1RC(Dictionary, font_get_variation_coordinates, RID);
+
+ virtual void font_set_oversampling(const RID &p_font_rid, double p_oversampling) override;
+ virtual double font_get_oversampling(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_oversampling, RID, double);
+ GDVIRTUAL1RC(double, font_get_oversampling, RID);
+
+ virtual Array font_get_size_cache_list(const RID &p_font_rid) const override;
+ virtual void font_clear_size_cache(const RID &p_font_rid) override;
+ virtual void font_remove_size_cache(const RID &p_font_rid, const Vector2i &p_size) override;
+ GDVIRTUAL1RC(Array, font_get_size_cache_list, RID);
+ GDVIRTUAL1(font_clear_size_cache, RID);
+ GDVIRTUAL2(font_remove_size_cache, RID, const Vector2i &);
+
+ virtual void font_set_ascent(const RID &p_font_rid, int64_t p_size, double p_ascent) override;
+ virtual double font_get_ascent(const RID &p_font_rid, int64_t p_size) const override;
+ GDVIRTUAL3(font_set_ascent, RID, int64_t, double);
+ GDVIRTUAL2RC(double, font_get_ascent, RID, int64_t);
+
+ virtual void font_set_descent(const RID &p_font_rid, int64_t p_size, double p_descent) override;
+ virtual double font_get_descent(const RID &p_font_rid, int64_t p_size) const override;
+ GDVIRTUAL3(font_set_descent, RID, int64_t, double);
+ GDVIRTUAL2RC(double, font_get_descent, RID, int64_t);
+
+ virtual void font_set_underline_position(const RID &p_font_rid, int64_t p_size, double p_underline_position) override;
+ virtual double font_get_underline_position(const RID &p_font_rid, int64_t p_size) const override;
+ GDVIRTUAL3(font_set_underline_position, RID, int64_t, double);
+ GDVIRTUAL2RC(double, font_get_underline_position, RID, int64_t);
+
+ virtual void font_set_underline_thickness(const RID &p_font_rid, int64_t p_size, double p_underline_thickness) override;
+ virtual double font_get_underline_thickness(const RID &p_font_rid, int64_t p_size) const override;
+ GDVIRTUAL3(font_set_underline_thickness, RID, int64_t, double);
+ GDVIRTUAL2RC(double, font_get_underline_thickness, RID, int64_t);
+
+ virtual void font_set_scale(const RID &p_font_rid, int64_t p_size, double p_scale) override;
+ virtual double font_get_scale(const RID &p_font_rid, int64_t p_size) const override;
+ GDVIRTUAL3(font_set_scale, RID, int64_t, double);
+ GDVIRTUAL2RC(double, font_get_scale, RID, int64_t);
+
+ virtual void font_set_spacing(const RID &p_font_rid, int64_t p_size, SpacingType p_spacing, int64_t p_value) override;
+ virtual int64_t font_get_spacing(const RID &p_font_rid, int64_t p_size, SpacingType p_spacing) const override;
+ GDVIRTUAL4(font_set_spacing, RID, int64_t, SpacingType, int64_t);
+ GDVIRTUAL3RC(int64_t, font_get_spacing, RID, int64_t, SpacingType);
+
+ virtual int64_t font_get_texture_count(const RID &p_font_rid, const Vector2i &p_size) const override;
+ virtual void font_clear_textures(const RID &p_font_rid, const Vector2i &p_size) override;
+ virtual void font_remove_texture(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) override;
+ GDVIRTUAL2RC(int64_t, font_get_texture_count, RID, const Vector2i &);
+ GDVIRTUAL2(font_clear_textures, RID, const Vector2i &);
+ GDVIRTUAL3(font_remove_texture, RID, const Vector2i &, int64_t);
+
+ virtual void font_set_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const Ref<Image> &p_image) override;
+ virtual Ref<Image> font_get_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const override;
+ GDVIRTUAL4(font_set_texture_image, RID, const Vector2i &, int64_t, const Ref<Image> &);
+ GDVIRTUAL3RC(Ref<Image>, font_get_texture_image, RID, const Vector2i &, int64_t);
+
+ virtual void font_set_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const PackedInt32Array &p_offset) override;
+ virtual PackedInt32Array font_get_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const override;
+ GDVIRTUAL4(font_set_texture_offsets, RID, const Vector2i &, int64_t, const PackedInt32Array &);
+ GDVIRTUAL3RC(PackedInt32Array, font_get_texture_offsets, RID, const Vector2i &, int64_t);
+
+ virtual Array font_get_glyph_list(const RID &p_font_rid, const Vector2i &p_size) const override;
+ virtual void font_clear_glyphs(const RID &p_font_rid, const Vector2i &p_size) override;
+ virtual void font_remove_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) override;
+ GDVIRTUAL2RC(Array, font_get_glyph_list, RID, const Vector2i &);
+ GDVIRTUAL2(font_clear_glyphs, RID, const Vector2i &);
+ GDVIRTUAL3(font_remove_glyph, RID, const Vector2i &, int64_t);
+
+ virtual Vector2 font_get_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph) const override;
+ virtual void font_set_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph, const Vector2 &p_advance) override;
+ GDVIRTUAL3RC(Vector2, font_get_glyph_advance, RID, int64_t, int64_t);
+ GDVIRTUAL4(font_set_glyph_advance, RID, int64_t, int64_t, const Vector2 &);
+
+ virtual Vector2 font_get_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ virtual void font_set_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_offset) override;
+ GDVIRTUAL3RC(Vector2, font_get_glyph_offset, RID, const Vector2i &, int64_t);
+ GDVIRTUAL4(font_set_glyph_offset, RID, const Vector2i &, int64_t, const Vector2 &);
+
+ virtual Vector2 font_get_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ virtual void font_set_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_gl_size) override;
+ GDVIRTUAL3RC(Vector2, font_get_glyph_size, RID, const Vector2i &, int64_t);
+ GDVIRTUAL4(font_set_glyph_size, RID, const Vector2i &, int64_t, const Vector2 &);
+
+ virtual Rect2 font_get_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ virtual void font_set_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Rect2 &p_uv_rect) override;
+ GDVIRTUAL3RC(Rect2, font_get_glyph_uv_rect, RID, const Vector2i &, int64_t);
+ GDVIRTUAL4(font_set_glyph_uv_rect, RID, const Vector2i &, int64_t, const Rect2 &);
+
+ virtual int64_t font_get_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ virtual void font_set_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, int64_t p_texture_idx) override;
+ GDVIRTUAL3RC(int64_t, font_get_glyph_texture_idx, RID, const Vector2i &, int64_t);
+ GDVIRTUAL4(font_set_glyph_texture_idx, RID, const Vector2i &, int64_t, int64_t);
+
+ virtual RID font_get_glyph_texture_rid(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ GDVIRTUAL3RC(RID, font_get_glyph_texture_rid, RID, const Vector2i &, int64_t);
+
+ virtual Size2 font_get_glyph_texture_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const override;
+ GDVIRTUAL3RC(Size2, font_get_glyph_texture_size, RID, const Vector2i &, int64_t);
+
+ virtual Dictionary font_get_glyph_contours(const RID &p_font, int64_t p_size, int64_t p_index) const override;
+ GDVIRTUAL3RC(Dictionary, font_get_glyph_contours, RID, int64_t, int64_t);
+
+ virtual Array font_get_kerning_list(const RID &p_font_rid, int64_t p_size) const override;
+ virtual void font_clear_kerning_map(const RID &p_font_rid, int64_t p_size) override;
+ virtual void font_remove_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) override;
+ GDVIRTUAL2RC(Array, font_get_kerning_list, RID, int64_t);
+ GDVIRTUAL2(font_clear_kerning_map, RID, int64_t);
+ GDVIRTUAL3(font_remove_kerning, RID, int64_t, const Vector2i &);
+
+ virtual void font_set_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) override;
+ virtual Vector2 font_get_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) const override;
+ GDVIRTUAL4(font_set_kerning, RID, int64_t, const Vector2i &, const Vector2 &);
+ GDVIRTUAL3RC(Vector2, font_get_kerning, RID, int64_t, const Vector2i &);
+
+ virtual int64_t font_get_glyph_index(const RID &p_font_rid, int64_t p_size, int64_t p_char, int64_t p_variation_selector = 0) const override;
+ GDVIRTUAL4RC(int64_t, font_get_glyph_index, RID, int64_t, int64_t, int64_t);
+
+ virtual bool font_has_char(const RID &p_font_rid, int64_t p_char) const override;
+ virtual String font_get_supported_chars(const RID &p_font_rid) const override;
+ GDVIRTUAL2RC(bool, font_has_char, RID, int64_t);
+ GDVIRTUAL1RC(String, font_get_supported_chars, RID);
+
+ virtual void font_render_range(const RID &p_font, const Vector2i &p_size, int64_t p_start, int64_t p_end) override;
+ virtual void font_render_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_index) override;
+ GDVIRTUAL4(font_render_range, RID, const Vector2i &, int64_t, int64_t);
+ GDVIRTUAL3(font_render_glyph, RID, const Vector2i &, int64_t);
+
+ virtual void font_draw_glyph(const RID &p_font, const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color = Color(1, 1, 1)) const override;
+ virtual void font_draw_glyph_outline(const RID &p_font, const RID &p_canvas, int64_t p_size, int64_t p_outline_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color = Color(1, 1, 1)) const override;
+ GDVIRTUAL6C(font_draw_glyph, RID, RID, int64_t, const Vector2 &, int64_t, const Color &);
+ GDVIRTUAL7C(font_draw_glyph_outline, RID, RID, int64_t, int64_t, const Vector2 &, int64_t, const Color &);
+
+ virtual bool font_is_language_supported(const RID &p_font_rid, const String &p_language) const override;
+ virtual void font_set_language_support_override(const RID &p_font_rid, const String &p_language, bool p_supported) override;
+ virtual bool font_get_language_support_override(const RID &p_font_rid, const String &p_language) override;
+ virtual void font_remove_language_support_override(const RID &p_font_rid, const String &p_language) override;
+ virtual PackedStringArray font_get_language_support_overrides(const RID &p_font_rid) override;
+ GDVIRTUAL2RC(bool, font_is_language_supported, RID, const String &);
+ GDVIRTUAL3(font_set_language_support_override, RID, const String &, bool);
+ GDVIRTUAL2R(bool, font_get_language_support_override, RID, const String &);
+ GDVIRTUAL2(font_remove_language_support_override, RID, const String &);
+ GDVIRTUAL1R(PackedStringArray, font_get_language_support_overrides, RID);
+
+ virtual bool font_is_script_supported(const RID &p_font_rid, const String &p_script) const override;
+ virtual void font_set_script_support_override(const RID &p_font_rid, const String &p_script, bool p_supported) override;
+ virtual bool font_get_script_support_override(const RID &p_font_rid, const String &p_script) override;
+ virtual void font_remove_script_support_override(const RID &p_font_rid, const String &p_script) override;
+ virtual PackedStringArray font_get_script_support_overrides(const RID &p_font_rid) override;
+ GDVIRTUAL2RC(bool, font_is_script_supported, RID, const String &);
+ GDVIRTUAL3(font_set_script_support_override, RID, const String &, bool);
+ GDVIRTUAL2R(bool, font_get_script_support_override, RID, const String &);
+ GDVIRTUAL2(font_remove_script_support_override, RID, const String &);
+ GDVIRTUAL1R(PackedStringArray, font_get_script_support_overrides, RID);
+
+ virtual void font_set_opentype_feature_overrides(const RID &p_font_rid, const Dictionary &p_overrides) override;
+ virtual Dictionary font_get_opentype_feature_overrides(const RID &p_font_rid) const override;
+ GDVIRTUAL2(font_set_opentype_feature_overrides, RID, const Dictionary &);
+ GDVIRTUAL1RC(Dictionary, font_get_opentype_feature_overrides, RID);
+
+ virtual Dictionary font_supported_feature_list(const RID &p_font_rid) const override;
+ virtual Dictionary font_supported_variation_list(const RID &p_font_rid) const override;
+ GDVIRTUAL1RC(Dictionary, font_supported_feature_list, RID);
+ GDVIRTUAL1RC(Dictionary, font_supported_variation_list, RID);
+
+ virtual double font_get_global_oversampling() const override;
+ virtual void font_set_global_oversampling(double p_oversampling) override;
+ GDVIRTUAL0RC(double, font_get_global_oversampling);
+ GDVIRTUAL1(font_set_global_oversampling, double);
+
+ virtual Vector2 get_hex_code_box_size(int64_t p_size, int64_t p_index) const override;
+ virtual void draw_hex_code_box(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const override;
+ GDVIRTUAL2RC(Vector2, get_hex_code_box_size, int64_t, int64_t);
+ GDVIRTUAL5C(draw_hex_code_box, RID, int64_t, const Vector2 &, int64_t, const Color &);
/* Shaped text buffer interface */
virtual RID create_shaped_text(Direction p_direction = DIRECTION_AUTO, Orientation p_orientation = ORIENTATION_HORIZONTAL) override;
- GDVIRTUAL2R(RID, _create_shaped_text, Direction, Orientation);
-
- virtual void shaped_text_clear(RID p_shaped) override;
- GDVIRTUAL1(_shaped_text_clear, RID);
-
- virtual void shaped_text_set_direction(RID p_shaped, Direction p_direction = DIRECTION_AUTO) override;
- virtual Direction shaped_text_get_direction(RID p_shaped) const override;
- GDVIRTUAL2(_shaped_text_set_direction, RID, Direction);
- GDVIRTUAL1RC(/*Direction*/ int, _shaped_text_get_direction, RID);
-
- virtual void shaped_text_set_bidi_override(RID p_shaped, const Array &p_override) override;
- GDVIRTUAL2(_shaped_text_set_bidi_override, RID, const Array &);
-
- virtual void shaped_text_set_custom_punctuation(RID p_shaped, const String &p_punct) override;
- virtual String shaped_text_get_custom_punctuation(RID p_shaped) const override;
- GDVIRTUAL2(_shaped_text_set_custom_punctuation, RID, String);
- GDVIRTUAL1RC(String, _shaped_text_get_custom_punctuation, RID);
-
- virtual void shaped_text_set_orientation(RID p_shaped, Orientation p_orientation = ORIENTATION_HORIZONTAL) override;
- virtual Orientation shaped_text_get_orientation(RID p_shaped) const override;
- GDVIRTUAL2(_shaped_text_set_orientation, RID, Orientation);
- GDVIRTUAL1RC(/*Orientation*/ int, _shaped_text_get_orientation, RID);
-
- virtual void shaped_text_set_preserve_invalid(RID p_shaped, bool p_enabled) override;
- virtual bool shaped_text_get_preserve_invalid(RID p_shaped) const override;
- GDVIRTUAL2(_shaped_text_set_preserve_invalid, RID, bool);
- GDVIRTUAL1RC(bool, _shaped_text_get_preserve_invalid, RID);
-
- virtual void shaped_text_set_preserve_control(RID p_shaped, bool p_enabled) override;
- virtual bool shaped_text_get_preserve_control(RID p_shaped) const override;
- GDVIRTUAL2(_shaped_text_set_preserve_control, RID, bool);
- GDVIRTUAL1RC(bool, _shaped_text_get_preserve_control, RID);
-
- virtual bool shaped_text_add_string(RID p_shaped, const String &p_text, const Vector<RID> &p_fonts, int p_size, const Dictionary &p_opentype_features = Dictionary(), const String &p_language = "") override;
- virtual bool shaped_text_add_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER, int p_length = 1) override;
- virtual bool shaped_text_resize_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER) override;
- GDVIRTUAL6R(bool, _shaped_text_add_string, RID, const String &, const Array &, int, const Dictionary &, const String &);
- GDVIRTUAL5R(bool, _shaped_text_add_object, RID, Variant, const Size2 &, InlineAlignment, int);
- GDVIRTUAL4R(bool, _shaped_text_resize_object, RID, Variant, const Size2 &, InlineAlignment);
-
- virtual RID shaped_text_substr(RID p_shaped, int p_start, int p_length) const override;
- virtual RID shaped_text_get_parent(RID p_shaped) const override;
- GDVIRTUAL3RC(RID, _shaped_text_substr, RID, int, int);
- GDVIRTUAL1RC(RID, _shaped_text_get_parent, RID);
-
- virtual float shaped_text_fit_to_width(RID p_shaped, float p_width, uint16_t /*JustificationFlag*/ p_jst_flags = JUSTIFICATION_WORD_BOUND | JUSTIFICATION_KASHIDA) override;
- virtual float shaped_text_tab_align(RID p_shaped, const PackedFloat32Array &p_tab_stops) override;
- GDVIRTUAL3R(float, _shaped_text_fit_to_width, RID, float, uint16_t);
- GDVIRTUAL2R(float, _shaped_text_tab_align, RID, const PackedFloat32Array &);
-
- virtual bool shaped_text_shape(RID p_shaped) override;
- virtual bool shaped_text_update_breaks(RID p_shaped) override;
- virtual bool shaped_text_update_justification_ops(RID p_shaped) override;
- GDVIRTUAL1R(bool, _shaped_text_shape, RID);
- GDVIRTUAL1R(bool, _shaped_text_update_breaks, RID);
- GDVIRTUAL1R(bool, _shaped_text_update_justification_ops, RID);
-
- virtual bool shaped_text_is_ready(RID p_shaped) const override;
- GDVIRTUAL1RC(bool, _shaped_text_is_ready, RID);
-
- virtual const Glyph *shaped_text_get_glyphs(RID p_shaped) const override;
- virtual const Glyph *shaped_text_sort_logical(RID p_shaped) override;
- virtual int shaped_text_get_glyph_count(RID p_shaped) const override;
- GDVIRTUAL2C(_shaped_text_get_glyphs, RID, GDNativePtr<const Glyph *>);
- GDVIRTUAL2(_shaped_text_sort_logical, RID, GDNativePtr<const Glyph *>);
- GDVIRTUAL1RC(int, _shaped_text_get_glyph_count, RID);
-
- virtual Vector2i shaped_text_get_range(RID p_shaped) const override;
- GDVIRTUAL1RC(Vector2i, _shaped_text_get_range, RID);
-
- virtual PackedInt32Array shaped_text_get_line_breaks_adv(RID p_shaped, const PackedFloat32Array &p_width, int p_start = 0, bool p_once = true, uint16_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const override;
- virtual PackedInt32Array shaped_text_get_line_breaks(RID p_shaped, float p_width, int p_start = 0, uint16_t p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const override;
- virtual PackedInt32Array shaped_text_get_word_breaks(RID p_shaped, int p_grapheme_flags = GRAPHEME_IS_SPACE | GRAPHEME_IS_PUNCTUATION) const override;
- GDVIRTUAL5RC(PackedInt32Array, _shaped_text_get_line_breaks_adv, RID, const PackedFloat32Array &, int, bool, uint16_t);
- GDVIRTUAL4RC(PackedInt32Array, _shaped_text_get_line_breaks, RID, float, int, uint16_t);
- GDVIRTUAL2RC(PackedInt32Array, _shaped_text_get_word_breaks, RID, int);
-
- virtual int shaped_text_get_trim_pos(RID p_shaped) const override;
- virtual int shaped_text_get_ellipsis_pos(RID p_shaped) const override;
- virtual const Glyph *shaped_text_get_ellipsis_glyphs(RID p_shaped) const override;
- virtual int shaped_text_get_ellipsis_glyph_count(RID p_shaped) const override;
- GDVIRTUAL1RC(int, _shaped_text_get_trim_pos, RID);
- GDVIRTUAL1RC(int, _shaped_text_get_ellipsis_pos, RID);
- GDVIRTUAL2C(_shaped_text_get_ellipsis_glyphs, RID, GDNativePtr<const Glyph *>);
- GDVIRTUAL1RC(int, _shaped_text_get_ellipsis_glyph_count, RID);
-
- virtual void shaped_text_overrun_trim_to_width(RID p_shaped, float p_width, uint16_t p_trim_flags) override;
- GDVIRTUAL3(_shaped_text_overrun_trim_to_width, RID, float, uint16_t);
-
- virtual Array shaped_text_get_objects(RID p_shaped) const override;
- virtual Rect2 shaped_text_get_object_rect(RID p_shaped, Variant p_key) const override;
- GDVIRTUAL1RC(Array, _shaped_text_get_objects, RID);
- GDVIRTUAL2RC(Rect2, _shaped_text_get_object_rect, RID, Variant);
-
- virtual Size2 shaped_text_get_size(RID p_shaped) const override;
- virtual float shaped_text_get_ascent(RID p_shaped) const override;
- virtual float shaped_text_get_descent(RID p_shaped) const override;
- virtual float shaped_text_get_width(RID p_shaped) const override;
- virtual float shaped_text_get_underline_position(RID p_shaped) const override;
- virtual float shaped_text_get_underline_thickness(RID p_shaped) const override;
- GDVIRTUAL1RC(Size2, _shaped_text_get_size, RID);
- GDVIRTUAL1RC(float, _shaped_text_get_ascent, RID);
- GDVIRTUAL1RC(float, _shaped_text_get_descent, RID);
- GDVIRTUAL1RC(float, _shaped_text_get_width, RID);
- GDVIRTUAL1RC(float, _shaped_text_get_underline_position, RID);
- GDVIRTUAL1RC(float, _shaped_text_get_underline_thickness, RID);
-
- virtual Direction shaped_text_get_dominant_direction_in_range(RID p_shaped, int p_start, int p_end) const override;
- GDVIRTUAL3RC(int, _shaped_text_get_dominant_direction_in_range, RID, int, int);
-
- virtual CaretInfo shaped_text_get_carets(RID p_shaped, int p_position) const override;
- virtual Vector<Vector2> shaped_text_get_selection(RID p_shaped, int p_start, int p_end) const override;
- GDVIRTUAL3C(_shaped_text_get_carets, RID, int, GDNativePtr<CaretInfo>);
- GDVIRTUAL3RC(Vector<Vector2>, _shaped_text_get_selection, RID, int, int);
-
- virtual int shaped_text_hit_test_grapheme(RID p_shaped, float p_coords) const override;
- virtual int shaped_text_hit_test_position(RID p_shaped, float p_coords) const override;
- GDVIRTUAL2RC(int, _shaped_text_hit_test_grapheme, RID, float);
- GDVIRTUAL2RC(int, _shaped_text_hit_test_position, RID, float);
-
- virtual void shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l = -1.f, float p_clip_r = -1.f, const Color &p_color = Color(1, 1, 1)) const override;
- virtual void shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l = -1.f, float p_clip_r = -1.f, int p_outline_size = 1, const Color &p_color = Color(1, 1, 1)) const override;
- GDVIRTUAL6C(_shaped_text_draw, RID, RID, const Vector2 &, float, float, const Color &);
- GDVIRTUAL7C(_shaped_text_draw_outline, RID, RID, const Vector2 &, float, float, int, const Color &);
-
- virtual Vector2 shaped_text_get_grapheme_bounds(RID p_shaped, int p_pos) const override;
- virtual int shaped_text_next_grapheme_pos(RID p_shaped, int p_pos) const override;
- virtual int shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos) const override;
- GDVIRTUAL2RC(Vector2, _shaped_text_get_grapheme_bounds, RID, int);
- GDVIRTUAL2RC(int, _shaped_text_next_grapheme_pos, RID, int);
- GDVIRTUAL2RC(int, _shaped_text_prev_grapheme_pos, RID, int);
+ GDVIRTUAL2R(RID, create_shaped_text, Direction, Orientation);
+
+ virtual void shaped_text_clear(const RID &p_shaped) override;
+ GDVIRTUAL1(shaped_text_clear, RID);
+
+ virtual void shaped_text_set_direction(const RID &p_shaped, Direction p_direction = DIRECTION_AUTO) override;
+ virtual Direction shaped_text_get_direction(const RID &p_shaped) const override;
+ virtual Direction shaped_text_get_inferred_direction(const RID &p_shaped) const override;
+ GDVIRTUAL2(shaped_text_set_direction, RID, Direction);
+ GDVIRTUAL1RC(Direction, shaped_text_get_direction, RID);
+ GDVIRTUAL1RC(Direction, shaped_text_get_inferred_direction, RID);
+
+ virtual void shaped_text_set_bidi_override(const RID &p_shaped, const Array &p_override) override;
+ GDVIRTUAL2(shaped_text_set_bidi_override, RID, const Array &);
+
+ virtual void shaped_text_set_custom_punctuation(const RID &p_shaped, const String &p_punct) override;
+ virtual String shaped_text_get_custom_punctuation(const RID &p_shaped) const override;
+ GDVIRTUAL2(shaped_text_set_custom_punctuation, RID, String);
+ GDVIRTUAL1RC(String, shaped_text_get_custom_punctuation, RID);
+
+ virtual void shaped_text_set_orientation(const RID &p_shaped, Orientation p_orientation = ORIENTATION_HORIZONTAL) override;
+ virtual Orientation shaped_text_get_orientation(const RID &p_shaped) const override;
+ GDVIRTUAL2(shaped_text_set_orientation, RID, Orientation);
+ GDVIRTUAL1RC(Orientation, shaped_text_get_orientation, RID);
+
+ virtual void shaped_text_set_preserve_invalid(const RID &p_shaped, bool p_enabled) override;
+ virtual bool shaped_text_get_preserve_invalid(const RID &p_shaped) const override;
+ GDVIRTUAL2(shaped_text_set_preserve_invalid, RID, bool);
+ GDVIRTUAL1RC(bool, shaped_text_get_preserve_invalid, RID);
+
+ virtual void shaped_text_set_preserve_control(const RID &p_shaped, bool p_enabled) override;
+ virtual bool shaped_text_get_preserve_control(const RID &p_shaped) const override;
+ GDVIRTUAL2(shaped_text_set_preserve_control, RID, bool);
+ GDVIRTUAL1RC(bool, shaped_text_get_preserve_control, RID);
+
+ virtual bool shaped_text_add_string(const RID &p_shaped, const String &p_text, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features = Dictionary(), const String &p_language = "", const Variant &p_meta = Variant()) override;
+ virtual bool shaped_text_add_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER, int64_t p_length = 1) override;
+ virtual bool shaped_text_resize_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER) override;
+ GDVIRTUAL7R(bool, shaped_text_add_string, RID, const String &, const Array &, int64_t, const Dictionary &, const String &, const Variant &);
+ GDVIRTUAL5R(bool, shaped_text_add_object, RID, const Variant &, const Size2 &, InlineAlignment, int64_t);
+ GDVIRTUAL4R(bool, shaped_text_resize_object, RID, const Variant &, const Size2 &, InlineAlignment);
+
+ virtual int64_t shaped_get_span_count(const RID &p_shaped) const override;
+ virtual Variant shaped_get_span_meta(const RID &p_shaped, int64_t p_index) const override;
+ virtual void shaped_set_span_update_font(const RID &p_shaped, int64_t p_index, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features = Dictionary()) override;
+ GDVIRTUAL1RC(int64_t, shaped_get_span_count, RID);
+ GDVIRTUAL2RC(Variant, shaped_get_span_meta, RID, int64_t);
+ GDVIRTUAL5(shaped_set_span_update_font, RID, int64_t, const Array &, int64_t, const Dictionary &);
+
+ virtual RID shaped_text_substr(const RID &p_shaped, int64_t p_start, int64_t p_length) const override;
+ virtual RID shaped_text_get_parent(const RID &p_shaped) const override;
+ GDVIRTUAL3RC(RID, shaped_text_substr, RID, int64_t, int64_t);
+ GDVIRTUAL1RC(RID, shaped_text_get_parent, RID);
+
+ virtual double shaped_text_fit_to_width(const RID &p_shaped, double p_width, int64_t /*JustificationFlag*/ p_jst_flags = JUSTIFICATION_WORD_BOUND | JUSTIFICATION_KASHIDA) override;
+ virtual double shaped_text_tab_align(const RID &p_shaped, const PackedFloat32Array &p_tab_stops) override;
+ GDVIRTUAL3R(double, shaped_text_fit_to_width, RID, double, int64_t);
+ GDVIRTUAL2R(double, shaped_text_tab_align, RID, const PackedFloat32Array &);
+
+ virtual bool shaped_text_shape(const RID &p_shaped) override;
+ virtual bool shaped_text_update_breaks(const RID &p_shaped) override;
+ virtual bool shaped_text_update_justification_ops(const RID &p_shaped) override;
+ GDVIRTUAL1R(bool, shaped_text_shape, RID);
+ GDVIRTUAL1R(bool, shaped_text_update_breaks, RID);
+ GDVIRTUAL1R(bool, shaped_text_update_justification_ops, RID);
+
+ virtual bool shaped_text_is_ready(const RID &p_shaped) const override;
+ GDVIRTUAL1RC(bool, shaped_text_is_ready, RID);
+
+ virtual const Glyph *shaped_text_get_glyphs(const RID &p_shaped) const override;
+ virtual const Glyph *shaped_text_sort_logical(const RID &p_shaped) override;
+ virtual int64_t shaped_text_get_glyph_count(const RID &p_shaped) const override;
+ GDVIRTUAL1RC(GDNativeConstPtr<const Glyph>, shaped_text_get_glyphs, RID);
+ GDVIRTUAL1R(GDNativeConstPtr<const Glyph>, shaped_text_sort_logical, RID);
+ GDVIRTUAL1RC(int64_t, shaped_text_get_glyph_count, RID);
+
+ virtual Vector2i shaped_text_get_range(const RID &p_shaped) const override;
+ GDVIRTUAL1RC(Vector2i, shaped_text_get_range, RID);
+
+ virtual PackedInt32Array shaped_text_get_line_breaks_adv(const RID &p_shaped, const PackedFloat32Array &p_width, int64_t p_start = 0, bool p_once = true, int64_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const override;
+ virtual PackedInt32Array shaped_text_get_line_breaks(const RID &p_shaped, double p_width, int64_t p_start = 0, int64_t p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const override;
+ virtual PackedInt32Array shaped_text_get_word_breaks(const RID &p_shaped, int64_t p_grapheme_flags = GRAPHEME_IS_SPACE | GRAPHEME_IS_PUNCTUATION) const override;
+ GDVIRTUAL5RC(PackedInt32Array, shaped_text_get_line_breaks_adv, RID, const PackedFloat32Array &, int64_t, bool, int64_t);
+ GDVIRTUAL4RC(PackedInt32Array, shaped_text_get_line_breaks, RID, double, int64_t, int64_t);
+ GDVIRTUAL2RC(PackedInt32Array, shaped_text_get_word_breaks, RID, int64_t);
+
+ virtual int64_t shaped_text_get_trim_pos(const RID &p_shaped) const override;
+ virtual int64_t shaped_text_get_ellipsis_pos(const RID &p_shaped) const override;
+ virtual const Glyph *shaped_text_get_ellipsis_glyphs(const RID &p_shaped) const override;
+ virtual int64_t shaped_text_get_ellipsis_glyph_count(const RID &p_shaped) const override;
+ GDVIRTUAL1RC(int64_t, shaped_text_get_trim_pos, RID);
+ GDVIRTUAL1RC(int64_t, shaped_text_get_ellipsis_pos, RID);
+ GDVIRTUAL1RC(GDNativeConstPtr<const Glyph>, shaped_text_get_ellipsis_glyphs, RID);
+ GDVIRTUAL1RC(int64_t, shaped_text_get_ellipsis_glyph_count, RID);
+
+ virtual void shaped_text_overrun_trim_to_width(const RID &p_shaped, double p_width, int64_t p_trim_flags) override;
+ GDVIRTUAL3(shaped_text_overrun_trim_to_width, RID, double, int64_t);
+
+ virtual Array shaped_text_get_objects(const RID &p_shaped) const override;
+ virtual Rect2 shaped_text_get_object_rect(const RID &p_shaped, const Variant &p_key) const override;
+ GDVIRTUAL1RC(Array, shaped_text_get_objects, RID);
+ GDVIRTUAL2RC(Rect2, shaped_text_get_object_rect, RID, const Variant &);
+
+ virtual Size2 shaped_text_get_size(const RID &p_shaped) const override;
+ virtual double shaped_text_get_ascent(const RID &p_shaped) const override;
+ virtual double shaped_text_get_descent(const RID &p_shaped) const override;
+ virtual double shaped_text_get_width(const RID &p_shaped) const override;
+ virtual double shaped_text_get_underline_position(const RID &p_shaped) const override;
+ virtual double shaped_text_get_underline_thickness(const RID &p_shaped) const override;
+ GDVIRTUAL1RC(Size2, shaped_text_get_size, RID);
+ GDVIRTUAL1RC(double, shaped_text_get_ascent, RID);
+ GDVIRTUAL1RC(double, shaped_text_get_descent, RID);
+ GDVIRTUAL1RC(double, shaped_text_get_width, RID);
+ GDVIRTUAL1RC(double, shaped_text_get_underline_position, RID);
+ GDVIRTUAL1RC(double, shaped_text_get_underline_thickness, RID);
+
+ virtual Direction shaped_text_get_dominant_direction_in_range(const RID &p_shaped, int64_t p_start, int64_t p_end) const override;
+ GDVIRTUAL3RC(int64_t, shaped_text_get_dominant_direction_in_range, RID, int64_t, int64_t);
+
+ virtual CaretInfo shaped_text_get_carets(const RID &p_shaped, int64_t p_position) const override;
+ virtual Vector<Vector2> shaped_text_get_selection(const RID &p_shaped, int64_t p_start, int64_t p_end) const override;
+ GDVIRTUAL3C(shaped_text_get_carets, RID, int64_t, GDNativePtr<CaretInfo>);
+ GDVIRTUAL3RC(Vector<Vector2>, shaped_text_get_selection, RID, int64_t, int64_t);
+
+ virtual int64_t shaped_text_hit_test_grapheme(const RID &p_shaped, double p_coords) const override;
+ virtual int64_t shaped_text_hit_test_position(const RID &p_shaped, double p_coords) const override;
+ GDVIRTUAL2RC(int64_t, shaped_text_hit_test_grapheme, RID, double);
+ GDVIRTUAL2RC(int64_t, shaped_text_hit_test_position, RID, double);
+
+ virtual void shaped_text_draw(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l = -1.0, double p_clip_r = -1.0, const Color &p_color = Color(1, 1, 1)) const override;
+ virtual void shaped_text_draw_outline(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l = -1.0, double p_clip_r = -1.0, int64_t p_outline_size = 1, const Color &p_color = Color(1, 1, 1)) const override;
+ GDVIRTUAL6C(shaped_text_draw, RID, RID, const Vector2 &, double, double, const Color &);
+ GDVIRTUAL7C(shaped_text_draw_outline, RID, RID, const Vector2 &, double, double, int64_t, const Color &);
+
+ virtual Vector2 shaped_text_get_grapheme_bounds(const RID &p_shaped, int64_t p_pos) const override;
+ virtual int64_t shaped_text_next_grapheme_pos(const RID &p_shaped, int64_t p_pos) const override;
+ virtual int64_t shaped_text_prev_grapheme_pos(const RID &p_shaped, int64_t p_pos) const override;
+ GDVIRTUAL2RC(Vector2, shaped_text_get_grapheme_bounds, RID, int64_t);
+ GDVIRTUAL2RC(int64_t, shaped_text_next_grapheme_pos, RID, int64_t);
+ GDVIRTUAL2RC(int64_t, shaped_text_prev_grapheme_pos, RID, int64_t);
virtual String format_number(const String &p_string, const String &p_language = "") const override;
virtual String parse_number(const String &p_string, const String &p_language = "") const override;
virtual String percent_sign(const String &p_language = "") const override;
- GDVIRTUAL2RC(String, _format_number, const String &, const String &);
- GDVIRTUAL2RC(String, _parse_number, const String &, const String &);
- GDVIRTUAL1RC(String, _percent_sign, const String &);
+ GDVIRTUAL2RC(String, format_number, const String &, const String &);
+ GDVIRTUAL2RC(String, parse_number, const String &, const String &);
+ GDVIRTUAL1RC(String, percent_sign, const String &);
+
+ virtual String strip_diacritics(const String &p_string) const override;
+ GDVIRTUAL1RC(String, strip_diacritics, const String &);
+
+ virtual PackedInt32Array string_get_word_breaks(const String &p_string, const String &p_language = "") const override;
+ GDVIRTUAL2RC(PackedInt32Array, string_get_word_breaks, const String &, const String &);
+
+ virtual String string_to_upper(const String &p_string, const String &p_language = "") const override;
+ virtual String string_to_lower(const String &p_string, const String &p_language = "") const override;
+ GDVIRTUAL2RC(String, string_to_upper, const String &, const String &);
+ GDVIRTUAL2RC(String, string_to_lower, const String &, const String &);
+
+ Array parse_structured_text(StructuredTextParser p_parser_type, const Array &p_args, const String &p_text) const;
+ GDVIRTUAL3RC(Array, parse_structured_text, StructuredTextParser, const Array &, const String &);
TextServerExtension();
~TextServerExtension();
diff --git a/servers/text_server.cpp b/servers/text_server.cpp
index 2303f27495..7d9945f5d7 100644
--- a/servers/text_server.cpp
+++ b/servers/text_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -200,7 +200,7 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("tag_to_name", "tag"), &TextServer::tag_to_name);
ClassDB::bind_method(D_METHOD("has", "rid"), &TextServer::has);
- ClassDB::bind_method(D_METHOD("free_rid", "rid"), &TextServer::free); // shouldn't conflict with Object::free()
+ ClassDB::bind_method(D_METHOD("free_rid", "rid"), &TextServer::free_rid);
/* Font Interface */
@@ -220,6 +220,9 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("font_set_antialiased", "font_rid", "antialiased"), &TextServer::font_set_antialiased);
ClassDB::bind_method(D_METHOD("font_is_antialiased", "font_rid"), &TextServer::font_is_antialiased);
+ ClassDB::bind_method(D_METHOD("font_set_generate_mipmaps", "font_rid", "generate_mipmaps"), &TextServer::font_set_generate_mipmaps);
+ ClassDB::bind_method(D_METHOD("font_get_generate_mipmaps", "font_rid"), &TextServer::font_get_generate_mipmaps);
+
ClassDB::bind_method(D_METHOD("font_set_multichannel_signed_distance_field", "font_rid", "msdf"), &TextServer::font_set_multichannel_signed_distance_field);
ClassDB::bind_method(D_METHOD("font_is_multichannel_signed_distance_field", "font_rid"), &TextServer::font_is_multichannel_signed_distance_field);
@@ -235,9 +238,18 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("font_set_force_autohinter", "font_rid", "force_autohinter"), &TextServer::font_set_force_autohinter);
ClassDB::bind_method(D_METHOD("font_is_force_autohinter", "font_rid"), &TextServer::font_is_force_autohinter);
- ClassDB::bind_method(D_METHOD("font_set_hinting", "font_rid", "_hinting"), &TextServer::font_set_hinting);
+ ClassDB::bind_method(D_METHOD("font_set_hinting", "font_rid", "hinting"), &TextServer::font_set_hinting);
ClassDB::bind_method(D_METHOD("font_get_hinting", "font_rid"), &TextServer::font_get_hinting);
+ ClassDB::bind_method(D_METHOD("font_set_subpixel_positioning", "font_rid", "subpixel_positioning"), &TextServer::font_set_subpixel_positioning);
+ ClassDB::bind_method(D_METHOD("font_get_subpixel_positioning", "font_rid"), &TextServer::font_get_subpixel_positioning);
+
+ ClassDB::bind_method(D_METHOD("font_set_embolden", "font_rid", "strength"), &TextServer::font_set_embolden);
+ ClassDB::bind_method(D_METHOD("font_get_embolden", "font_rid"), &TextServer::font_get_embolden);
+
+ ClassDB::bind_method(D_METHOD("font_set_transform", "font_rid", "transform"), &TextServer::font_set_transform);
+ ClassDB::bind_method(D_METHOD("font_get_transform", "font_rid"), &TextServer::font_get_transform);
+
ClassDB::bind_method(D_METHOD("font_set_variation_coordinates", "font_rid", "variation_coordinates"), &TextServer::font_set_variation_coordinates);
ClassDB::bind_method(D_METHOD("font_get_variation_coordinates", "font_rid"), &TextServer::font_get_variation_coordinates);
@@ -295,6 +307,9 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("font_get_glyph_texture_idx", "font_rid", "size", "glyph"), &TextServer::font_get_glyph_texture_idx);
ClassDB::bind_method(D_METHOD("font_set_glyph_texture_idx", "font_rid", "size", "glyph", "texture_idx"), &TextServer::font_set_glyph_texture_idx);
+ ClassDB::bind_method(D_METHOD("font_get_glyph_texture_rid", "font_rid", "size", "glyph"), &TextServer::font_get_glyph_texture_rid);
+ ClassDB::bind_method(D_METHOD("font_get_glyph_texture_size", "font_rid", "size", "glyph"), &TextServer::font_get_glyph_texture_size);
+
ClassDB::bind_method(D_METHOD("font_get_glyph_contours", "font", "size", "index"), &TextServer::font_get_glyph_contours);
ClassDB::bind_method(D_METHOD("font_get_kerning_list", "font_rid", "size"), &TextServer::font_get_kerning_list);
@@ -327,6 +342,9 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("font_remove_script_support_override", "font_rid", "script"), &TextServer::font_remove_script_support_override);
ClassDB::bind_method(D_METHOD("font_get_script_support_overrides", "font_rid"), &TextServer::font_get_script_support_overrides);
+ ClassDB::bind_method(D_METHOD("font_set_opentype_feature_overrides", "font_rid", "overrides"), &TextServer::font_set_opentype_feature_overrides);
+ ClassDB::bind_method(D_METHOD("font_get_opentype_feature_overrides", "font_rid"), &TextServer::font_get_opentype_feature_overrides);
+
ClassDB::bind_method(D_METHOD("font_supported_feature_list", "font_rid"), &TextServer::font_supported_feature_list);
ClassDB::bind_method(D_METHOD("font_supported_variation_list", "font_rid"), &TextServer::font_supported_variation_list);
@@ -344,6 +362,7 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("shaped_text_set_direction", "shaped", "direction"), &TextServer::shaped_text_set_direction, DEFVAL(DIRECTION_AUTO));
ClassDB::bind_method(D_METHOD("shaped_text_get_direction", "shaped"), &TextServer::shaped_text_get_direction);
+ ClassDB::bind_method(D_METHOD("shaped_text_get_inferred_direction", "shaped"), &TextServer::shaped_text_get_inferred_direction);
ClassDB::bind_method(D_METHOD("shaped_text_set_bidi_override", "shaped", "override"), &TextServer::shaped_text_set_bidi_override);
@@ -359,10 +378,14 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("shaped_text_set_preserve_control", "shaped", "enabled"), &TextServer::shaped_text_set_preserve_control);
ClassDB::bind_method(D_METHOD("shaped_text_get_preserve_control", "shaped"), &TextServer::shaped_text_get_preserve_control);
- ClassDB::bind_method(D_METHOD("shaped_text_add_string", "shaped", "text", "fonts", "size", "opentype_features", "language"), &TextServer::shaped_text_add_string, DEFVAL(Dictionary()), DEFVAL(""));
+ ClassDB::bind_method(D_METHOD("shaped_text_add_string", "shaped", "text", "fonts", "size", "opentype_features", "language", "meta"), &TextServer::shaped_text_add_string, DEFVAL(Dictionary()), DEFVAL(""), DEFVAL(Variant()));
ClassDB::bind_method(D_METHOD("shaped_text_add_object", "shaped", "key", "size", "inline_align", "length"), &TextServer::shaped_text_add_object, DEFVAL(INLINE_ALIGNMENT_CENTER), DEFVAL(1));
ClassDB::bind_method(D_METHOD("shaped_text_resize_object", "shaped", "key", "size", "inline_align"), &TextServer::shaped_text_resize_object, DEFVAL(INLINE_ALIGNMENT_CENTER));
+ ClassDB::bind_method(D_METHOD("shaped_get_span_count", "shaped"), &TextServer::shaped_get_span_count);
+ ClassDB::bind_method(D_METHOD("shaped_get_span_meta", "shaped", "index"), &TextServer::shaped_get_span_meta);
+ ClassDB::bind_method(D_METHOD("shaped_set_span_update_font", "shaped", "index", "fonts", "size", "opentype_features"), &TextServer::shaped_set_span_update_font, DEFVAL(Dictionary()));
+
ClassDB::bind_method(D_METHOD("shaped_text_substr", "shaped", "start", "length"), &TextServer::shaped_text_substr);
ClassDB::bind_method(D_METHOD("shaped_text_get_parent", "shaped"), &TextServer::shaped_text_get_parent);
ClassDB::bind_method(D_METHOD("shaped_text_fit_to_width", "shaped", "width", "jst_flags"), &TextServer::shaped_text_fit_to_width, DEFVAL(JUSTIFICATION_WORD_BOUND | JUSTIFICATION_KASHIDA));
@@ -378,7 +401,7 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("shaped_text_get_range", "shaped"), &TextServer::shaped_text_get_range);
ClassDB::bind_method(D_METHOD("shaped_text_get_line_breaks_adv", "shaped", "width", "start", "once", "break_flags"), &TextServer::shaped_text_get_line_breaks_adv, DEFVAL(0), DEFVAL(true), DEFVAL(BREAK_MANDATORY | BREAK_WORD_BOUND));
ClassDB::bind_method(D_METHOD("shaped_text_get_line_breaks", "shaped", "width", "start", "break_flags"), &TextServer::shaped_text_get_line_breaks, DEFVAL(0), DEFVAL(BREAK_MANDATORY | BREAK_WORD_BOUND));
- ClassDB::bind_method(D_METHOD("shaped_text_get_word_breaks", "shaped", "grapheme_flags"), &TextServer::shaped_text_get_word_breaks);
+ ClassDB::bind_method(D_METHOD("shaped_text_get_word_breaks", "shaped", "grapheme_flags"), &TextServer::shaped_text_get_word_breaks, DEFVAL(GRAPHEME_IS_SPACE | GRAPHEME_IS_PUNCTUATION));
ClassDB::bind_method(D_METHOD("shaped_text_get_trim_pos", "shaped"), &TextServer::shaped_text_get_trim_pos);
ClassDB::bind_method(D_METHOD("shaped_text_get_ellipsis_pos", "shaped"), &TextServer::shaped_text_get_ellipsis_pos);
@@ -416,8 +439,15 @@ void TextServer::_bind_methods() {
ClassDB::bind_method(D_METHOD("parse_number", "number", "language"), &TextServer::parse_number, DEFVAL(""));
ClassDB::bind_method(D_METHOD("percent_sign", "language"), &TextServer::percent_sign, DEFVAL(""));
+ ClassDB::bind_method(D_METHOD("string_get_word_breaks", "string", "language"), &TextServer::string_get_word_breaks, DEFVAL(""));
+
ClassDB::bind_method(D_METHOD("strip_diacritics", "string"), &TextServer::strip_diacritics);
+ ClassDB::bind_method(D_METHOD("string_to_upper", "string", "language"), &TextServer::string_to_upper, DEFVAL(""));
+ ClassDB::bind_method(D_METHOD("string_to_lower", "string", "language"), &TextServer::string_to_lower, DEFVAL(""));
+
+ ClassDB::bind_method(D_METHOD("parse_structured_text", "parser_type", "args", "text"), &TextServer::parse_structured_text);
+
/* Direction */
BIND_ENUM_CONSTANT(DIRECTION_AUTO);
BIND_ENUM_CONSTANT(DIRECTION_LTR);
@@ -468,14 +498,27 @@ void TextServer::_bind_methods() {
BIND_ENUM_CONSTANT(HINTING_LIGHT);
BIND_ENUM_CONSTANT(HINTING_NORMAL);
+ /* SubpixelPositioning */
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_DISABLED);
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_AUTO);
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_ONE_HALF);
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_ONE_QUARTER);
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_ONE_HALF_MAX_SIZE);
+ BIND_ENUM_CONSTANT(SUBPIXEL_POSITIONING_ONE_QUARTER_MAX_SIZE);
+
/* Feature */
+ BIND_ENUM_CONSTANT(FEATURE_SIMPLE_LAYOUT);
BIND_ENUM_CONSTANT(FEATURE_BIDI_LAYOUT);
BIND_ENUM_CONSTANT(FEATURE_VERTICAL_LAYOUT);
BIND_ENUM_CONSTANT(FEATURE_SHAPING);
BIND_ENUM_CONSTANT(FEATURE_KASHIDA_JUSTIFICATION);
BIND_ENUM_CONSTANT(FEATURE_BREAK_ITERATORS);
+ BIND_ENUM_CONSTANT(FEATURE_FONT_BITMAP);
+ BIND_ENUM_CONSTANT(FEATURE_FONT_DYNAMIC);
+ BIND_ENUM_CONSTANT(FEATURE_FONT_MSDF);
BIND_ENUM_CONSTANT(FEATURE_FONT_SYSTEM);
BIND_ENUM_CONSTANT(FEATURE_FONT_VARIABLE);
+ BIND_ENUM_CONSTANT(FEATURE_CONTEXT_SENSITIVE_CASE_CONVERSION);
BIND_ENUM_CONSTANT(FEATURE_USE_SUPPORT_DATA);
/* FT Contour Point Types */
@@ -493,9 +536,18 @@ void TextServer::_bind_methods() {
BIND_ENUM_CONSTANT(FONT_BOLD);
BIND_ENUM_CONSTANT(FONT_ITALIC);
BIND_ENUM_CONSTANT(FONT_FIXED_WIDTH);
+
+ /* Structured text parser */
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_DEFAULT);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_URI);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_FILE);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_EMAIL);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_LIST);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_NONE);
+ BIND_ENUM_CONSTANT(STRUCTURED_TEXT_CUSTOM);
}
-Vector2 TextServer::get_hex_code_box_size(int p_size, char32_t p_index) const {
+Vector2 TextServer::get_hex_code_box_size(int64_t p_size, int64_t p_index) const {
int w = ((p_index <= 0xFF) ? 1 : ((p_index <= 0xFFFF) ? 2 : 3));
int sp = MAX(0, w - 1);
int sz = MAX(1, Math::round(p_size / 15.f));
@@ -503,7 +555,7 @@ Vector2 TextServer::get_hex_code_box_size(int p_size, char32_t p_index) const {
return Vector2(4 + 3 * w + sp + 1, 15) * sz;
}
-void TextServer::_draw_hex_code_box_number(RID p_canvas, int p_size, const Vector2 &p_pos, uint8_t p_index, const Color &p_color) const {
+void TextServer::_draw_hex_code_box_number(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, uint8_t p_index, const Color &p_color) const {
static uint8_t chars[] = { 0x7E, 0x30, 0x6D, 0x79, 0x33, 0x5B, 0x5F, 0x70, 0x7F, 0x7B, 0x77, 0x1F, 0x4E, 0x3D, 0x4F, 0x47, 0x00 };
uint8_t x = chars[p_index];
if (x & (1 << 6)) {
@@ -529,7 +581,7 @@ void TextServer::_draw_hex_code_box_number(RID p_canvas, int p_size, const Vecto
}
}
-void TextServer::draw_hex_code_box(RID p_canvas, int p_size, const Vector2 &p_pos, char32_t p_index, const Color &p_color) const {
+void TextServer::draw_hex_code_box(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const {
if (p_index == 0) {
return;
}
@@ -573,7 +625,7 @@ void TextServer::draw_hex_code_box(RID p_canvas, int p_size, const Vector2 &p_po
}
}
-PackedInt32Array TextServer::shaped_text_get_line_breaks_adv(RID p_shaped, const PackedFloat32Array &p_width, int p_start, bool p_once, uint16_t /*TextBreakFlag*/ p_break_flags) const {
+PackedInt32Array TextServer::shaped_text_get_line_breaks_adv(const RID &p_shaped, const PackedFloat32Array &p_width, int64_t p_start, bool p_once, int64_t /*TextBreakFlag*/ p_break_flags) const {
PackedInt32Array lines;
ERR_FAIL_COND_V(p_width.is_empty(), lines);
@@ -649,13 +701,13 @@ PackedInt32Array TextServer::shaped_text_get_line_breaks_adv(RID p_shaped, const
return lines;
}
-PackedInt32Array TextServer::shaped_text_get_line_breaks(RID p_shaped, float p_width, int p_start, uint16_t /*TextBreakFlag*/ p_break_flags) const {
+PackedInt32Array TextServer::shaped_text_get_line_breaks(const RID &p_shaped, double p_width, int64_t p_start, int64_t /*TextBreakFlag*/ p_break_flags) const {
PackedInt32Array lines;
const_cast<TextServer *>(this)->shaped_text_update_breaks(p_shaped);
const Vector2i &range = shaped_text_get_range(p_shaped);
- float width = 0.f;
+ double width = 0.f;
int line_start = MAX(p_start, range.x);
int last_safe_break = -1;
int word_count = 0;
@@ -717,7 +769,7 @@ PackedInt32Array TextServer::shaped_text_get_line_breaks(RID p_shaped, float p_w
return lines;
}
-PackedInt32Array TextServer::shaped_text_get_word_breaks(RID p_shaped, int p_grapheme_flags) const {
+PackedInt32Array TextServer::shaped_text_get_word_breaks(const RID &p_shaped, int64_t p_grapheme_flags) const {
PackedInt32Array words;
const_cast<TextServer *>(this)->shaped_text_update_justification_ops(p_shaped);
@@ -725,27 +777,31 @@ PackedInt32Array TextServer::shaped_text_get_word_breaks(RID p_shaped, int p_gra
int word_start = range.x;
- int l_size = shaped_text_get_glyph_count(p_shaped);
+ const int l_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *l_gl = const_cast<TextServer *>(this)->shaped_text_sort_logical(p_shaped);
for (int i = 0; i < l_size; i++) {
if (l_gl[i].count > 0) {
if ((l_gl[i].flags & p_grapheme_flags) != 0) {
- words.push_back(word_start);
- words.push_back(l_gl[i].start);
+ if (word_start != l_gl[i].start) {
+ words.push_back(word_start);
+ words.push_back(l_gl[i].start);
+ }
word_start = l_gl[i].end;
}
}
}
if (l_size > 0) {
- words.push_back(word_start);
- words.push_back(range.y);
+ if (word_start != range.y) {
+ words.push_back(word_start);
+ words.push_back(range.y);
+ }
}
return words;
}
-CaretInfo TextServer::shaped_text_get_carets(RID p_shaped, int p_position) const {
+CaretInfo TextServer::shaped_text_get_carets(const RID &p_shaped, int64_t p_position) const {
Vector<Rect2> carets;
TextServer::Orientation orientation = shaped_text_get_orientation(p_shaped);
@@ -895,7 +951,7 @@ CaretInfo TextServer::shaped_text_get_carets(RID p_shaped, int p_position) const
return caret;
}
-Dictionary TextServer::_shaped_text_get_carets_wrapper(RID p_shaped, int p_position) const {
+Dictionary TextServer::_shaped_text_get_carets_wrapper(const RID &p_shaped, int64_t p_position) const {
Dictionary ret;
CaretInfo caret = shaped_text_get_carets(p_shaped, p_position);
@@ -908,7 +964,7 @@ Dictionary TextServer::_shaped_text_get_carets_wrapper(RID p_shaped, int p_posit
return ret;
}
-TextServer::Direction TextServer::shaped_text_get_dominant_direction_in_range(RID p_shaped, int p_start, int p_end) const {
+TextServer::Direction TextServer::shaped_text_get_dominant_direction_in_range(const RID &p_shaped, int64_t p_start, int64_t p_end) const {
if (p_start == p_end) {
return DIRECTION_AUTO;
}
@@ -942,7 +998,15 @@ TextServer::Direction TextServer::shaped_text_get_dominant_direction_in_range(RI
}
}
-Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start, int p_end) const {
+_FORCE_INLINE_ void _push_range(Vector<Vector2> &r_vector, real_t p_start, real_t p_end) {
+ if (!r_vector.is_empty() && Math::is_equal_approx(r_vector[r_vector.size() - 1].y, p_start, (real_t)UNIT_EPSILON)) {
+ r_vector.write[r_vector.size() - 1].y = p_end;
+ } else {
+ r_vector.push_back(Vector2(p_start, p_end));
+ }
+}
+
+Vector<Vector2> TextServer::shaped_text_get_selection(const RID &p_shaped, int64_t p_start, int64_t p_end) const {
Vector<Vector2> ranges;
if (p_start == p_end) {
@@ -966,7 +1030,7 @@ Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start,
for (int j = 0; j < glyphs[i].count; j++) {
advance += glyphs[i + j].advance;
}
- ranges.push_back(Vector2(off, off + advance));
+ _push_range(ranges, off, off + advance);
}
// Only start of grapheme is in selection range.
if (glyphs[i].start >= start && glyphs[i].end > end) {
@@ -976,9 +1040,9 @@ Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start,
}
real_t char_adv = advance / (real_t)(glyphs[i].end - glyphs[i].start);
if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
- ranges.push_back(Vector2(off + char_adv * (glyphs[i].end - end), off + advance));
+ _push_range(ranges, off + char_adv * (glyphs[i].end - end), off + advance);
} else {
- ranges.push_back(Vector2(off, off + char_adv * (end - glyphs[i].start)));
+ _push_range(ranges, off, off + char_adv * (end - glyphs[i].start));
}
}
// Only end of grapheme is in selection range.
@@ -989,9 +1053,9 @@ Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start,
}
real_t char_adv = advance / (real_t)(glyphs[i].end - glyphs[i].start);
if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
- ranges.push_back(Vector2(off, off + char_adv * (start - glyphs[i].start)));
+ _push_range(ranges, off, off + char_adv * (glyphs[i].end - start));
} else {
- ranges.push_back(Vector2(off + char_adv * (glyphs[i].end - start), off + advance));
+ _push_range(ranges, off + char_adv * (start - glyphs[i].start), off + advance);
}
}
// Selection range is within grapheme.
@@ -1002,9 +1066,9 @@ Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start,
}
real_t char_adv = advance / (real_t)(glyphs[i].end - glyphs[i].start);
if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
- ranges.push_back(Vector2(off + char_adv * (glyphs[i].end - end), off + char_adv * (glyphs[i].end - start)));
+ _push_range(ranges, off + char_adv * (glyphs[i].end - end), off + char_adv * (glyphs[i].end - start));
} else {
- ranges.push_back(Vector2(off + char_adv * (start - glyphs[i].start), off + char_adv * (end - glyphs[i].start)));
+ _push_range(ranges, off + char_adv * (start - glyphs[i].start), off + char_adv * (end - glyphs[i].start));
}
}
}
@@ -1013,31 +1077,12 @@ Vector<Vector2> TextServer::shaped_text_get_selection(RID p_shaped, int p_start,
}
}
- // Merge intersecting ranges.
- int i = 0;
- while (i < ranges.size()) {
- i++;
- }
- i = 0;
- while (i < ranges.size()) {
- int j = i + 1;
- while (j < ranges.size()) {
- if (Math::is_equal_approx(ranges[i].y, ranges[j].x, (real_t)UNIT_EPSILON)) {
- ranges.write[i].y = ranges[j].y;
- ranges.remove_at(j);
- continue;
- }
- j++;
- }
- i++;
- }
-
return ranges;
}
-int TextServer::shaped_text_hit_test_grapheme(RID p_shaped, float p_coords) const {
+int64_t TextServer::shaped_text_hit_test_grapheme(const RID &p_shaped, double p_coords) const {
// Exact grapheme hit test, return -1 if missed.
- float off = 0.0f;
+ double off = 0.0f;
int v_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
@@ -1053,7 +1098,7 @@ int TextServer::shaped_text_hit_test_grapheme(RID p_shaped, float p_coords) cons
return -1;
}
-int TextServer::shaped_text_hit_test_position(RID p_shaped, float p_coords) const {
+int64_t TextServer::shaped_text_hit_test_position(const RID &p_shaped, double p_coords) const {
int v_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
@@ -1099,6 +1144,31 @@ int TextServer::shaped_text_hit_test_position(RID p_shaped, float p_coords) cons
return glyphs[i].start;
}
}
+ // Ligature, handle mid-grapheme hit.
+ if (p_coords >= off && p_coords < off + advance && glyphs[i].end > glyphs[i].start + 1) {
+ int cnt = glyphs[i].end - glyphs[i].start;
+ real_t char_adv = advance / (real_t)(cnt);
+ real_t sub_off = off;
+ for (int j = 0; j < cnt; j++) {
+ // Place caret to the left of clicked sub-grapheme.
+ if (p_coords >= sub_off && p_coords < sub_off + char_adv / 2) {
+ if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
+ return glyphs[i].end - j;
+ } else {
+ return glyphs[i].start + j;
+ }
+ }
+ // Place caret to the right of clicked sub-grapheme.
+ if (p_coords >= sub_off + char_adv / 2 && p_coords < sub_off + char_adv) {
+ if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
+ return glyphs[i].start + (cnt - 1) - j;
+ } else {
+ return glyphs[i].end - (cnt - 1) + j;
+ }
+ }
+ sub_off += char_adv;
+ }
+ }
// Place caret to the left of clicked grapheme.
if (p_coords >= off && p_coords < off + advance / 2) {
if ((glyphs[i].flags & GRAPHEME_IS_RTL) == GRAPHEME_IS_RTL) {
@@ -1121,7 +1191,7 @@ int TextServer::shaped_text_hit_test_position(RID p_shaped, float p_coords) cons
return 0;
}
-Vector2 TextServer::shaped_text_get_grapheme_bounds(RID p_shaped, int p_pos) const {
+Vector2 TextServer::shaped_text_get_grapheme_bounds(const RID &p_shaped, int64_t p_pos) const {
int v_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
@@ -1142,7 +1212,7 @@ Vector2 TextServer::shaped_text_get_grapheme_bounds(RID p_shaped, int p_pos) con
return Vector2();
}
-int TextServer::shaped_text_next_grapheme_pos(RID p_shaped, int p_pos) const {
+int64_t TextServer::shaped_text_next_grapheme_pos(const RID &p_shaped, int64_t p_pos) const {
int v_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
for (int i = 0; i < v_size; i++) {
@@ -1153,7 +1223,7 @@ int TextServer::shaped_text_next_grapheme_pos(RID p_shaped, int p_pos) const {
return p_pos;
}
-int TextServer::shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos) const {
+int64_t TextServer::shaped_text_prev_grapheme_pos(const RID &p_shaped, int64_t p_pos) const {
int v_size = shaped_text_get_glyph_count(p_shaped);
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
for (int i = 0; i < v_size; i++) {
@@ -1165,7 +1235,7 @@ int TextServer::shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos) const {
return p_pos;
}
-void TextServer::shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l, float p_clip_r, const Color &p_color) const {
+void TextServer::shaped_text_draw(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l, double p_clip_r, const Color &p_color) const {
TextServer::Orientation orientation = shaped_text_get_orientation(p_shaped);
bool hex_codes = shaped_text_get_preserve_control(p_shaped) || shaped_text_get_preserve_invalid(p_shaped);
@@ -1196,15 +1266,26 @@ void TextServer::shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_p
}
// Draw at the baseline.
for (int i = 0; i < v_size; i++) {
+ if (trim_pos >= 0) {
+ if (rtl) {
+ if (i < trim_pos) {
+ continue;
+ }
+ } else {
+ if (i >= trim_pos) {
+ break;
+ }
+ }
+ }
for (int j = 0; j < glyphs[i].repeat; j++) {
if (p_clip_r > 0) {
// Clip right / bottom.
if (orientation == ORIENTATION_HORIZONTAL) {
- if (ofs.x - p_pos.x > p_clip_r) {
+ if (ofs.x - p_pos.x + glyphs[i].advance > p_clip_r) {
return;
}
} else {
- if (ofs.y - p_pos.y > p_clip_r) {
+ if (ofs.y - p_pos.y + glyphs[i].advance > p_clip_r) {
return;
}
}
@@ -1223,17 +1304,6 @@ void TextServer::shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_p
}
}
}
- if (trim_pos >= 0) {
- if (rtl) {
- if (i < trim_pos && (glyphs[j].flags & TextServer::GRAPHEME_IS_VIRTUAL) != TextServer::GRAPHEME_IS_VIRTUAL) {
- continue;
- }
- } else {
- if (i >= trim_pos && (glyphs[j].flags & TextServer::GRAPHEME_IS_VIRTUAL) != TextServer::GRAPHEME_IS_VIRTUAL) {
- break;
- }
- }
- }
if (glyphs[i].font_rid != RID()) {
font_draw_glyph(glyphs[i].font_rid, p_canvas, glyphs[i].font_size, ofs + Vector2(glyphs[i].x_off, glyphs[i].y_off), glyphs[i].index, p_color);
@@ -1262,10 +1332,10 @@ void TextServer::shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_p
}
}
-void TextServer::shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l, float p_clip_r, int p_outline_size, const Color &p_color) const {
+void TextServer::shaped_text_draw_outline(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l, double p_clip_r, int64_t p_outline_size, const Color &p_color) const {
TextServer::Orientation orientation = shaped_text_get_orientation(p_shaped);
- bool rtl = (shaped_text_get_direction(p_shaped) == DIRECTION_RTL);
+ bool rtl = (shaped_text_get_inferred_direction(p_shaped) == DIRECTION_RTL);
int ellipsis_pos = shaped_text_get_ellipsis_pos(p_shaped);
int trim_pos = shaped_text_get_trim_pos(p_shaped);
@@ -1291,15 +1361,26 @@ void TextServer::shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vect
}
// Draw at the baseline.
for (int i = 0; i < v_size; i++) {
+ if (trim_pos >= 0) {
+ if (rtl) {
+ if (i < trim_pos) {
+ continue;
+ }
+ } else {
+ if (i >= trim_pos) {
+ break;
+ }
+ }
+ }
for (int j = 0; j < glyphs[i].repeat; j++) {
if (p_clip_r > 0) {
// Clip right / bottom.
if (orientation == ORIENTATION_HORIZONTAL) {
- if (ofs.x - p_pos.x > p_clip_r) {
+ if (ofs.x - p_pos.x + glyphs[i].advance > p_clip_r) {
return;
}
} else {
- if (ofs.y - p_pos.y > p_clip_r) {
+ if (ofs.y - p_pos.y + glyphs[i].advance > p_clip_r) {
return;
}
}
@@ -1318,17 +1399,6 @@ void TextServer::shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vect
}
}
}
- if (trim_pos >= 0) {
- if (rtl) {
- if (i < trim_pos) {
- continue;
- }
- } else {
- if (i >= trim_pos && (glyphs[j].flags & TextServer::GRAPHEME_IS_VIRTUAL) != TextServer::GRAPHEME_IS_VIRTUAL) {
- break;
- }
- }
- }
if (glyphs[i].font_rid != RID()) {
font_draw_glyph_outline(glyphs[i].font_rid, p_canvas, glyphs[i].font_size, p_outline_size, ofs + Vector2(glyphs[i].x_off, glyphs[i].y_off), glyphs[i].index, p_color);
}
@@ -1482,7 +1552,84 @@ String TextServer::strip_diacritics(const String &p_string) const {
return result;
}
-Array TextServer::_shaped_text_get_glyphs_wrapper(RID p_shaped) const {
+Array TextServer::parse_structured_text(StructuredTextParser p_parser_type, const Array &p_args, const String &p_text) const {
+ Array ret;
+ switch (p_parser_type) {
+ case STRUCTURED_TEXT_URI: {
+ int prev = 0;
+ for (int i = 0; i < p_text.length(); i++) {
+ if ((p_text[i] == '\\') || (p_text[i] == '/') || (p_text[i] == '.') || (p_text[i] == ':') || (p_text[i] == '&') || (p_text[i] == '=') || (p_text[i] == '@') || (p_text[i] == '?') || (p_text[i] == '#')) {
+ if (prev != i) {
+ ret.push_back(Vector2i(prev, i));
+ }
+ ret.push_back(Vector2i(i, i + 1));
+ prev = i + 1;
+ }
+ }
+ if (prev != p_text.length()) {
+ ret.push_back(Vector2i(prev, p_text.length()));
+ }
+ } break;
+ case STRUCTURED_TEXT_FILE: {
+ int prev = 0;
+ for (int i = 0; i < p_text.length(); i++) {
+ if ((p_text[i] == '\\') || (p_text[i] == '/') || (p_text[i] == ':')) {
+ if (prev != i) {
+ ret.push_back(Vector2i(prev, i));
+ }
+ ret.push_back(Vector2i(i, i + 1));
+ prev = i + 1;
+ }
+ }
+ if (prev != p_text.length()) {
+ ret.push_back(Vector2i(prev, p_text.length()));
+ }
+ } break;
+ case STRUCTURED_TEXT_EMAIL: {
+ bool local = true;
+ int prev = 0;
+ for (int i = 0; i < p_text.length(); i++) {
+ if ((p_text[i] == '@') && local) { // Add full "local" as single context.
+ local = false;
+ ret.push_back(Vector2i(prev, i));
+ ret.push_back(Vector2i(i, i + 1));
+ prev = i + 1;
+ } else if (!local & (p_text[i] == '.')) { // Add each dot separated "domain" part as context.
+ if (prev != i) {
+ ret.push_back(Vector2i(prev, i));
+ }
+ ret.push_back(Vector2i(i, i + 1));
+ prev = i + 1;
+ }
+ }
+ if (prev != p_text.length()) {
+ ret.push_back(Vector2i(prev, p_text.length()));
+ }
+ } break;
+ case STRUCTURED_TEXT_LIST: {
+ if (p_args.size() == 1 && p_args[0].get_type() == Variant::STRING) {
+ Vector<String> tags = p_text.split(String(p_args[0]));
+ int prev = 0;
+ for (int i = 0; i < tags.size(); i++) {
+ if (prev != i) {
+ ret.push_back(Vector2i(prev, prev + tags[i].length()));
+ }
+ ret.push_back(Vector2i(prev + tags[i].length(), prev + tags[i].length() + 1));
+ prev = prev + tags[i].length() + 1;
+ }
+ }
+ } break;
+ case STRUCTURED_TEXT_CUSTOM:
+ case STRUCTURED_TEXT_NONE:
+ case STRUCTURED_TEXT_DEFAULT:
+ default: {
+ ret.push_back(Vector2i(0, p_text.length()));
+ }
+ }
+ return ret;
+}
+
+Array TextServer::_shaped_text_get_glyphs_wrapper(const RID &p_shaped) const {
Array ret;
const Glyph *glyphs = shaped_text_get_glyphs(p_shaped);
@@ -1507,7 +1654,7 @@ Array TextServer::_shaped_text_get_glyphs_wrapper(RID p_shaped) const {
return ret;
}
-Array TextServer::_shaped_text_sort_logical_wrapper(RID p_shaped) {
+Array TextServer::_shaped_text_sort_logical_wrapper(const RID &p_shaped) {
Array ret;
const Glyph *glyphs = shaped_text_sort_logical(p_shaped);
@@ -1532,7 +1679,7 @@ Array TextServer::_shaped_text_sort_logical_wrapper(RID p_shaped) {
return ret;
}
-Array TextServer::_shaped_text_get_ellipsis_glyphs_wrapper(RID p_shaped) const {
+Array TextServer::_shaped_text_get_ellipsis_glyphs_wrapper(const RID &p_shaped) const {
Array ret;
const Glyph *glyphs = shaped_text_get_ellipsis_glyphs(p_shaped);
diff --git a/servers/text_server.h b/servers/text_server.h
index 56b1919c51..b08aa26917 100644
--- a/servers/text_server.h
+++ b/servers/text_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -101,15 +101,30 @@ public:
HINTING_NORMAL
};
+ enum SubpixelPositioning {
+ SUBPIXEL_POSITIONING_DISABLED = 0,
+ SUBPIXEL_POSITIONING_AUTO = 1,
+ SUBPIXEL_POSITIONING_ONE_HALF = 2,
+ SUBPIXEL_POSITIONING_ONE_QUARTER = 3,
+
+ SUBPIXEL_POSITIONING_ONE_HALF_MAX_SIZE = 20,
+ SUBPIXEL_POSITIONING_ONE_QUARTER_MAX_SIZE = 16,
+ };
+
enum Feature {
- FEATURE_BIDI_LAYOUT = 1 << 0,
- FEATURE_VERTICAL_LAYOUT = 1 << 1,
- FEATURE_SHAPING = 1 << 2,
- FEATURE_KASHIDA_JUSTIFICATION = 1 << 3,
- FEATURE_BREAK_ITERATORS = 1 << 4,
- FEATURE_FONT_SYSTEM = 1 << 5,
- FEATURE_FONT_VARIABLE = 1 << 6,
- FEATURE_USE_SUPPORT_DATA = 1 << 7
+ FEATURE_SIMPLE_LAYOUT = 1 << 0,
+ FEATURE_BIDI_LAYOUT = 1 << 1,
+ FEATURE_VERTICAL_LAYOUT = 1 << 2,
+ FEATURE_SHAPING = 1 << 3,
+ FEATURE_KASHIDA_JUSTIFICATION = 1 << 4,
+ FEATURE_BREAK_ITERATORS = 1 << 5,
+ FEATURE_FONT_BITMAP = 1 << 6,
+ FEATURE_FONT_DYNAMIC = 1 << 7,
+ FEATURE_FONT_MSDF = 1 << 8,
+ FEATURE_FONT_SYSTEM = 1 << 9,
+ FEATURE_FONT_VARIABLE = 1 << 10,
+ FEATURE_CONTEXT_SENSITIVE_CASE_CONVERSION = 1 << 11,
+ FEATURE_USE_SUPPORT_DATA = 1 << 12,
};
enum ContourPointTag {
@@ -131,76 +146,19 @@ public:
FONT_FIXED_WIDTH = 1 << 2,
};
- void _draw_hex_code_box_number(RID p_canvas, int p_size, const Vector2 &p_pos, uint8_t p_index, const Color &p_color) const;
-
-protected:
- struct TrimData {
- int trim_pos = -1;
- int ellipsis_pos = -1;
- Vector<Glyph> ellipsis_glyph_buf;
+ enum StructuredTextParser {
+ STRUCTURED_TEXT_DEFAULT,
+ STRUCTURED_TEXT_URI,
+ STRUCTURED_TEXT_FILE,
+ STRUCTURED_TEXT_EMAIL,
+ STRUCTURED_TEXT_LIST,
+ STRUCTURED_TEXT_NONE,
+ STRUCTURED_TEXT_CUSTOM
};
- struct ShapedTextData {
- Mutex mutex;
-
- /* Source data */
- RID parent; // Substring parent ShapedTextData.
-
- int start = 0; // Substring start offset in the parent string.
- int end = 0; // Substring end offset in the parent string.
-
- String text;
- String custom_punct;
- TextServer::Direction direction = DIRECTION_LTR; // Desired text direction.
- TextServer::Orientation orientation = ORIENTATION_HORIZONTAL;
-
- struct Span {
- int start = -1;
- int end = -1;
-
- Vector<RID> fonts;
- int font_size = 0;
-
- Variant embedded_key;
-
- String language;
- Dictionary features;
- };
- Vector<Span> spans;
-
- struct EmbeddedObject {
- int pos = 0;
- InlineAlignment inline_align = INLINE_ALIGNMENT_CENTER;
- Rect2 rect;
- };
- Map<Variant, EmbeddedObject> objects;
-
- /* Shaped data */
- TextServer::Direction para_direction = DIRECTION_LTR; // Detected text direction.
- bool valid = false; // String is shaped.
- bool line_breaks_valid = false; // Line and word break flags are populated (and virtual zero width spaces inserted).
- bool justification_ops_valid = false; // Virtual elongation glyphs are added to the string.
- bool sort_valid = false;
- bool text_trimmed = false;
-
- bool preserve_invalid = true; // Draw hex code box instead of missing characters.
- bool preserve_control = false; // Draw control characters.
-
- float ascent = 0.f; // Ascent for horizontal layout, 1/2 of width for vertical.
- float descent = 0.f; // Descent for horizontal layout, 1/2 of width for vertical.
- float width = 0.f; // Width for horizontal layout, height for vertical.
- float width_trimmed = 0.f;
-
- float upos = 0.f;
- float uthk = 0.f;
-
- TrimData overrun_trim_data;
- bool fit_width_minimum_reached = false;
-
- Vector<Glyph> glyphs;
- Vector<Glyph> glyphs_logical;
- };
+ void _draw_hex_code_box_number(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, uint8_t p_index, const Color &p_color) const;
+protected:
Map<char32_t, char32_t> diacritics_map;
void _diacritics_map_add(const String &p_from, char32_t p_to);
void _init_diacritics_map();
@@ -210,10 +168,10 @@ protected:
public:
virtual bool has_feature(Feature p_feature) const = 0;
virtual String get_name() const = 0;
- virtual uint32_t get_features() const = 0;
+ virtual int64_t get_features() const = 0;
- virtual void free(RID p_rid) = 0;
- virtual bool has(RID p_rid) = 0;
+ virtual void free_rid(const RID &p_rid) = 0;
+ virtual bool has(const RID &p_rid) = 0;
virtual bool load_support_data(const String &p_filename) = 0;
virtual String get_support_data_filename() const = 0;
@@ -222,237 +180,268 @@ public:
virtual bool is_locale_right_to_left(const String &p_locale) const = 0;
- virtual int32_t name_to_tag(const String &p_name) const { return 0; };
- virtual String tag_to_name(int32_t p_tag) const { return ""; };
+ virtual int64_t name_to_tag(const String &p_name) const { return 0; };
+ virtual String tag_to_name(int64_t p_tag) const { return ""; };
/* Font interface */
virtual RID create_font() = 0;
- virtual void font_set_data(RID p_font_rid, const PackedByteArray &p_data) = 0;
- virtual void font_set_data_ptr(RID p_font_rid, const uint8_t *p_data_ptr, size_t p_data_size) = 0;
+ virtual void font_set_data(const RID &p_font_rid, const PackedByteArray &p_data) = 0;
+ virtual void font_set_data_ptr(const RID &p_font_rid, const uint8_t *p_data_ptr, int64_t p_data_size) = 0;
+
+ virtual void font_set_style(const RID &p_font_rid, int64_t /*FontStyle*/ p_style) = 0;
+ virtual int64_t /*FontStyle*/ font_get_style(const RID &p_font_rid) const = 0;
+
+ virtual void font_set_name(const RID &p_font_rid, const String &p_name) = 0;
+ virtual String font_get_name(const RID &p_font_rid) const = 0;
+
+ virtual void font_set_style_name(const RID &p_font_rid, const String &p_name) = 0;
+ virtual String font_get_style_name(const RID &p_font_rid) const = 0;
+
+ virtual void font_set_antialiased(const RID &p_font_rid, bool p_antialiased) = 0;
+ virtual bool font_is_antialiased(const RID &p_font_rid) const = 0;
- virtual void font_set_style(RID p_font_rid, uint32_t /*FontStyle*/ p_style) = 0;
- virtual uint32_t /*FontStyle*/ font_get_style(RID p_font_rid) const = 0;
+ virtual void font_set_generate_mipmaps(const RID &p_font_rid, bool p_generate_mipmaps) = 0;
+ virtual bool font_get_generate_mipmaps(const RID &p_font_rid) const = 0;
- virtual void font_set_name(RID p_font_rid, const String &p_name) = 0;
- virtual String font_get_name(RID p_font_rid) const = 0;
+ virtual void font_set_multichannel_signed_distance_field(const RID &p_font_rid, bool p_msdf) = 0;
+ virtual bool font_is_multichannel_signed_distance_field(const RID &p_font_rid) const = 0;
- virtual void font_set_style_name(RID p_font_rid, const String &p_name) = 0;
- virtual String font_get_style_name(RID p_font_rid) const = 0;
+ virtual void font_set_msdf_pixel_range(const RID &p_font_rid, int64_t p_msdf_pixel_range) = 0;
+ virtual int64_t font_get_msdf_pixel_range(const RID &p_font_rid) const = 0;
- virtual void font_set_antialiased(RID p_font_rid, bool p_antialiased) = 0;
- virtual bool font_is_antialiased(RID p_font_rid) const = 0;
+ virtual void font_set_msdf_size(const RID &p_font_rid, int64_t p_msdf_size) = 0;
+ virtual int64_t font_get_msdf_size(const RID &p_font_rid) const = 0;
- virtual void font_set_multichannel_signed_distance_field(RID p_font_rid, bool p_msdf) = 0;
- virtual bool font_is_multichannel_signed_distance_field(RID p_font_rid) const = 0;
+ virtual void font_set_fixed_size(const RID &p_font_rid, int64_t p_fixed_size) = 0;
+ virtual int64_t font_get_fixed_size(const RID &p_font_rid) const = 0;
- virtual void font_set_msdf_pixel_range(RID p_font_rid, int p_msdf_pixel_range) = 0;
- virtual int font_get_msdf_pixel_range(RID p_font_rid) const = 0;
+ virtual void font_set_force_autohinter(const RID &p_font_rid, bool p_force_autohinter) = 0;
+ virtual bool font_is_force_autohinter(const RID &p_font_rid) const = 0;
- virtual void font_set_msdf_size(RID p_font_rid, int p_msdf_size) = 0;
- virtual int font_get_msdf_size(RID p_font_rid) const = 0;
+ virtual void font_set_hinting(const RID &p_font_rid, Hinting p_hinting) = 0;
+ virtual Hinting font_get_hinting(const RID &p_font_rid) const = 0;
- virtual void font_set_fixed_size(RID p_font_rid, int p_fixed_size) = 0;
- virtual int font_get_fixed_size(RID p_font_rid) const = 0;
+ virtual void font_set_subpixel_positioning(const RID &p_font_rid, SubpixelPositioning p_subpixel) = 0;
+ virtual SubpixelPositioning font_get_subpixel_positioning(const RID &p_font_rid) const = 0;
- virtual void font_set_force_autohinter(RID p_font_rid, bool p_force_autohinter) = 0;
- virtual bool font_is_force_autohinter(RID p_font_rid) const = 0;
+ virtual void font_set_embolden(const RID &p_font_rid, double p_strength) = 0;
+ virtual double font_get_embolden(const RID &p_font_rid) const = 0;
- virtual void font_set_hinting(RID p_font_rid, Hinting p_hinting) = 0;
- virtual Hinting font_get_hinting(RID p_font_rid) const = 0;
+ virtual void font_set_transform(const RID &p_font_rid, const Transform2D &p_transform) = 0;
+ virtual Transform2D font_get_transform(const RID &p_font_rid) const = 0;
- virtual void font_set_variation_coordinates(RID p_font_rid, const Dictionary &p_variation_coordinates) = 0;
- virtual Dictionary font_get_variation_coordinates(RID p_font_rid) const = 0;
+ virtual void font_set_variation_coordinates(const RID &p_font_rid, const Dictionary &p_variation_coordinates) = 0;
+ virtual Dictionary font_get_variation_coordinates(const RID &p_font_rid) const = 0;
- virtual void font_set_oversampling(RID p_font_rid, float p_oversampling) = 0;
- virtual float font_get_oversampling(RID p_font_rid) const = 0;
+ virtual void font_set_oversampling(const RID &p_font_rid, double p_oversampling) = 0;
+ virtual double font_get_oversampling(const RID &p_font_rid) const = 0;
- virtual Array font_get_size_cache_list(RID p_font_rid) const = 0;
- virtual void font_clear_size_cache(RID p_font_rid) = 0;
- virtual void font_remove_size_cache(RID p_font_rid, const Vector2i &p_size) = 0;
+ virtual Array font_get_size_cache_list(const RID &p_font_rid) const = 0;
+ virtual void font_clear_size_cache(const RID &p_font_rid) = 0;
+ virtual void font_remove_size_cache(const RID &p_font_rid, const Vector2i &p_size) = 0;
- virtual void font_set_ascent(RID p_font_rid, int p_size, float p_ascent) = 0;
- virtual float font_get_ascent(RID p_font_rid, int p_size) const = 0;
+ virtual void font_set_ascent(const RID &p_font_rid, int64_t p_size, double p_ascent) = 0;
+ virtual double font_get_ascent(const RID &p_font_rid, int64_t p_size) const = 0;
- virtual void font_set_descent(RID p_font_rid, int p_size, float p_descent) = 0;
- virtual float font_get_descent(RID p_font_rid, int p_size) const = 0;
+ virtual void font_set_descent(const RID &p_font_rid, int64_t p_size, double p_descent) = 0;
+ virtual double font_get_descent(const RID &p_font_rid, int64_t p_size) const = 0;
- virtual void font_set_underline_position(RID p_font_rid, int p_size, float p_underline_position) = 0;
- virtual float font_get_underline_position(RID p_font_rid, int p_size) const = 0;
+ virtual void font_set_underline_position(const RID &p_font_rid, int64_t p_size, double p_underline_position) = 0;
+ virtual double font_get_underline_position(const RID &p_font_rid, int64_t p_size) const = 0;
- virtual void font_set_underline_thickness(RID p_font_rid, int p_size, float p_underline_thickness) = 0;
- virtual float font_get_underline_thickness(RID p_font_rid, int p_size) const = 0;
+ virtual void font_set_underline_thickness(const RID &p_font_rid, int64_t p_size, double p_underline_thickness) = 0;
+ virtual double font_get_underline_thickness(const RID &p_font_rid, int64_t p_size) const = 0;
- virtual void font_set_scale(RID p_font_rid, int p_size, float p_scale) = 0;
- virtual float font_get_scale(RID p_font_rid, int p_size) const = 0;
+ virtual void font_set_scale(const RID &p_font_rid, int64_t p_size, double p_scale) = 0;
+ virtual double font_get_scale(const RID &p_font_rid, int64_t p_size) const = 0;
- virtual void font_set_spacing(RID p_font_rid, int p_size, SpacingType p_spacing, int p_value) = 0;
- virtual int font_get_spacing(RID p_font_rid, int p_size, SpacingType p_spacing) const = 0;
+ virtual void font_set_spacing(const RID &p_font_rid, int64_t p_size, SpacingType p_spacing, int64_t p_value) = 0;
+ virtual int64_t font_get_spacing(const RID &p_font_rid, int64_t p_size, SpacingType p_spacing) const = 0;
- virtual int font_get_texture_count(RID p_font_rid, const Vector2i &p_size) const = 0;
- virtual void font_clear_textures(RID p_font_rid, const Vector2i &p_size) = 0;
- virtual void font_remove_texture(RID p_font_rid, const Vector2i &p_size, int p_texture_index) = 0;
+ virtual int64_t font_get_texture_count(const RID &p_font_rid, const Vector2i &p_size) const = 0;
+ virtual void font_clear_textures(const RID &p_font_rid, const Vector2i &p_size) = 0;
+ virtual void font_remove_texture(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) = 0;
- virtual void font_set_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const Ref<Image> &p_image) = 0;
- virtual Ref<Image> font_get_texture_image(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const = 0;
+ virtual void font_set_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const Ref<Image> &p_image) = 0;
+ virtual Ref<Image> font_get_texture_image(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const = 0;
- virtual void font_set_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index, const PackedInt32Array &p_offset) = 0;
- virtual PackedInt32Array font_get_texture_offsets(RID p_font_rid, const Vector2i &p_size, int p_texture_index) const = 0;
+ virtual void font_set_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index, const PackedInt32Array &p_offset) = 0;
+ virtual PackedInt32Array font_get_texture_offsets(const RID &p_font_rid, const Vector2i &p_size, int64_t p_texture_index) const = 0;
- virtual Array font_get_glyph_list(RID p_font_rid, const Vector2i &p_size) const = 0;
- virtual void font_clear_glyphs(RID p_font_rid, const Vector2i &p_size) = 0;
- virtual void font_remove_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) = 0;
+ virtual Array font_get_glyph_list(const RID &p_font_rid, const Vector2i &p_size) const = 0;
+ virtual void font_clear_glyphs(const RID &p_font_rid, const Vector2i &p_size) = 0;
+ virtual void font_remove_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) = 0;
- virtual Vector2 font_get_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph) const = 0;
- virtual void font_set_glyph_advance(RID p_font_rid, int p_size, int32_t p_glyph, const Vector2 &p_advance) = 0;
+ virtual Vector2 font_get_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph) const = 0;
+ virtual void font_set_glyph_advance(const RID &p_font_rid, int64_t p_size, int64_t p_glyph, const Vector2 &p_advance) = 0;
- virtual Vector2 font_get_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const = 0;
- virtual void font_set_glyph_offset(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_offset) = 0;
+ virtual Vector2 font_get_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
+ virtual void font_set_glyph_offset(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_offset) = 0;
- virtual Vector2 font_get_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const = 0;
- virtual void font_set_glyph_size(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Vector2 &p_gl_size) = 0;
+ virtual Vector2 font_get_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
+ virtual void font_set_glyph_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Vector2 &p_gl_size) = 0;
- virtual Rect2 font_get_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const = 0;
- virtual void font_set_glyph_uv_rect(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, const Rect2 &p_uv_rect) = 0;
+ virtual Rect2 font_get_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
+ virtual void font_set_glyph_uv_rect(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, const Rect2 &p_uv_rect) = 0;
- virtual int font_get_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph) const = 0;
- virtual void font_set_glyph_texture_idx(RID p_font_rid, const Vector2i &p_size, int32_t p_glyph, int p_texture_idx) = 0;
+ virtual int64_t font_get_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
+ virtual void font_set_glyph_texture_idx(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph, int64_t p_texture_idx) = 0;
+ virtual RID font_get_glyph_texture_rid(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
+ virtual Size2 font_get_glyph_texture_size(const RID &p_font_rid, const Vector2i &p_size, int64_t p_glyph) const = 0;
- virtual Dictionary font_get_glyph_contours(RID p_font, int p_size, int32_t p_index) const = 0;
+ virtual Dictionary font_get_glyph_contours(const RID &p_font, int64_t p_size, int64_t p_index) const = 0;
- virtual Array font_get_kerning_list(RID p_font_rid, int p_size) const = 0;
- virtual void font_clear_kerning_map(RID p_font_rid, int p_size) = 0;
- virtual void font_remove_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) = 0;
+ virtual Array font_get_kerning_list(const RID &p_font_rid, int64_t p_size) const = 0;
+ virtual void font_clear_kerning_map(const RID &p_font_rid, int64_t p_size) = 0;
+ virtual void font_remove_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) = 0;
- virtual void font_set_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) = 0;
- virtual Vector2 font_get_kerning(RID p_font_rid, int p_size, const Vector2i &p_glyph_pair) const = 0;
+ virtual void font_set_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair, const Vector2 &p_kerning) = 0;
+ virtual Vector2 font_get_kerning(const RID &p_font_rid, int64_t p_size, const Vector2i &p_glyph_pair) const = 0;
- virtual int32_t font_get_glyph_index(RID p_font_rid, int p_size, char32_t p_char, char32_t p_variation_selector) const = 0;
+ virtual int64_t font_get_glyph_index(const RID &p_font_rid, int64_t p_size, int64_t p_char, int64_t p_variation_selector) const = 0;
- virtual bool font_has_char(RID p_font_rid, char32_t p_char) const = 0;
- virtual String font_get_supported_chars(RID p_font_rid) const = 0;
+ virtual bool font_has_char(const RID &p_font_rid, int64_t p_char) const = 0;
+ virtual String font_get_supported_chars(const RID &p_font_rid) const = 0;
- virtual void font_render_range(RID p_font, const Vector2i &p_size, char32_t p_start, char32_t p_end) = 0;
- virtual void font_render_glyph(RID p_font_rid, const Vector2i &p_size, int32_t p_index) = 0;
+ virtual void font_render_range(const RID &p_font, const Vector2i &p_size, int64_t p_start, int64_t p_end) = 0;
+ virtual void font_render_glyph(const RID &p_font_rid, const Vector2i &p_size, int64_t p_index) = 0;
- virtual void font_draw_glyph(RID p_font, RID p_canvas, int p_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color = Color(1, 1, 1)) const = 0;
- virtual void font_draw_glyph_outline(RID p_font, RID p_canvas, int p_size, int p_outline_size, const Vector2 &p_pos, int32_t p_index, const Color &p_color = Color(1, 1, 1)) const = 0;
+ virtual void font_draw_glyph(const RID &p_font, const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color = Color(1, 1, 1)) const = 0;
+ virtual void font_draw_glyph_outline(const RID &p_font, const RID &p_canvas, int64_t p_size, int64_t p_outline_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color = Color(1, 1, 1)) const = 0;
- virtual bool font_is_language_supported(RID p_font_rid, const String &p_language) const = 0;
- virtual void font_set_language_support_override(RID p_font_rid, const String &p_language, bool p_supported) = 0;
- virtual bool font_get_language_support_override(RID p_font_rid, const String &p_language) = 0;
- virtual void font_remove_language_support_override(RID p_font_rid, const String &p_language) = 0;
- virtual Vector<String> font_get_language_support_overrides(RID p_font_rid) = 0;
+ virtual bool font_is_language_supported(const RID &p_font_rid, const String &p_language) const = 0;
+ virtual void font_set_language_support_override(const RID &p_font_rid, const String &p_language, bool p_supported) = 0;
+ virtual bool font_get_language_support_override(const RID &p_font_rid, const String &p_language) = 0;
+ virtual void font_remove_language_support_override(const RID &p_font_rid, const String &p_language) = 0;
+ virtual PackedStringArray font_get_language_support_overrides(const RID &p_font_rid) = 0;
- virtual bool font_is_script_supported(RID p_font_rid, const String &p_script) const = 0;
- virtual void font_set_script_support_override(RID p_font_rid, const String &p_script, bool p_supported) = 0;
- virtual bool font_get_script_support_override(RID p_font_rid, const String &p_script) = 0;
- virtual void font_remove_script_support_override(RID p_font_rid, const String &p_script) = 0;
- virtual Vector<String> font_get_script_support_overrides(RID p_font_rid) = 0;
+ virtual bool font_is_script_supported(const RID &p_font_rid, const String &p_script) const = 0;
+ virtual void font_set_script_support_override(const RID &p_font_rid, const String &p_script, bool p_supported) = 0;
+ virtual bool font_get_script_support_override(const RID &p_font_rid, const String &p_script) = 0;
+ virtual void font_remove_script_support_override(const RID &p_font_rid, const String &p_script) = 0;
+ virtual PackedStringArray font_get_script_support_overrides(const RID &p_font_rid) = 0;
- virtual Dictionary font_supported_feature_list(RID p_font_rid) const = 0;
- virtual Dictionary font_supported_variation_list(RID p_font_rid) const = 0;
+ virtual void font_set_opentype_feature_overrides(const RID &p_font_rid, const Dictionary &p_overrides) = 0;
+ virtual Dictionary font_get_opentype_feature_overrides(const RID &p_font_rid) const = 0;
- virtual float font_get_global_oversampling() const = 0;
- virtual void font_set_global_oversampling(float p_oversampling) = 0;
+ virtual Dictionary font_supported_feature_list(const RID &p_font_rid) const = 0;
+ virtual Dictionary font_supported_variation_list(const RID &p_font_rid) const = 0;
- virtual Vector2 get_hex_code_box_size(int p_size, char32_t p_index) const;
- virtual void draw_hex_code_box(RID p_canvas, int p_size, const Vector2 &p_pos, char32_t p_index, const Color &p_color) const;
+ virtual double font_get_global_oversampling() const = 0;
+ virtual void font_set_global_oversampling(double p_oversampling) = 0;
+
+ virtual Vector2 get_hex_code_box_size(int64_t p_size, int64_t p_index) const;
+ virtual void draw_hex_code_box(const RID &p_canvas, int64_t p_size, const Vector2 &p_pos, int64_t p_index, const Color &p_color) const;
/* Shaped text buffer interface */
virtual RID create_shaped_text(Direction p_direction = DIRECTION_AUTO, Orientation p_orientation = ORIENTATION_HORIZONTAL) = 0;
- virtual void shaped_text_clear(RID p_shaped) = 0;
+ virtual void shaped_text_clear(const RID &p_shaped) = 0;
+
+ virtual void shaped_text_set_direction(const RID &p_shaped, Direction p_direction = DIRECTION_AUTO) = 0;
+ virtual Direction shaped_text_get_direction(const RID &p_shaped) const = 0;
+ virtual Direction shaped_text_get_inferred_direction(const RID &p_shaped) const = 0;
- virtual void shaped_text_set_direction(RID p_shaped, Direction p_direction = DIRECTION_AUTO) = 0;
- virtual Direction shaped_text_get_direction(RID p_shaped) const = 0;
+ virtual void shaped_text_set_bidi_override(const RID &p_shaped, const Array &p_override) = 0;
- virtual void shaped_text_set_bidi_override(RID p_shaped, const Array &p_override) = 0;
+ virtual void shaped_text_set_custom_punctuation(const RID &p_shaped, const String &p_punct) = 0;
+ virtual String shaped_text_get_custom_punctuation(const RID &p_shaped) const = 0;
- virtual void shaped_text_set_custom_punctuation(RID p_shaped, const String &p_punct) = 0;
- virtual String shaped_text_get_custom_punctuation(RID p_shaped) const = 0;
+ virtual void shaped_text_set_orientation(const RID &p_shaped, Orientation p_orientation = ORIENTATION_HORIZONTAL) = 0;
+ virtual Orientation shaped_text_get_orientation(const RID &p_shaped) const = 0;
- virtual void shaped_text_set_orientation(RID p_shaped, Orientation p_orientation = ORIENTATION_HORIZONTAL) = 0;
- virtual Orientation shaped_text_get_orientation(RID p_shaped) const = 0;
+ virtual void shaped_text_set_preserve_invalid(const RID &p_shaped, bool p_enabled) = 0;
+ virtual bool shaped_text_get_preserve_invalid(const RID &p_shaped) const = 0;
- virtual void shaped_text_set_preserve_invalid(RID p_shaped, bool p_enabled) = 0;
- virtual bool shaped_text_get_preserve_invalid(RID p_shaped) const = 0;
+ virtual void shaped_text_set_preserve_control(const RID &p_shaped, bool p_enabled) = 0;
+ virtual bool shaped_text_get_preserve_control(const RID &p_shaped) const = 0;
- virtual void shaped_text_set_preserve_control(RID p_shaped, bool p_enabled) = 0;
- virtual bool shaped_text_get_preserve_control(RID p_shaped) const = 0;
+ virtual bool shaped_text_add_string(const RID &p_shaped, const String &p_text, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features = Dictionary(), const String &p_language = "", const Variant &p_meta = Variant()) = 0;
+ virtual bool shaped_text_add_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER, int64_t p_length = 1) = 0;
+ virtual bool shaped_text_resize_object(const RID &p_shaped, const Variant &p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER) = 0;
- virtual bool shaped_text_add_string(RID p_shaped, const String &p_text, const Vector<RID> &p_fonts, int p_size, const Dictionary &p_opentype_features = Dictionary(), const String &p_language = "") = 0;
- virtual bool shaped_text_add_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER, int p_length = 1) = 0;
- virtual bool shaped_text_resize_object(RID p_shaped, Variant p_key, const Size2 &p_size, InlineAlignment p_inline_align = INLINE_ALIGNMENT_CENTER) = 0;
+ virtual int64_t shaped_get_span_count(const RID &p_shaped) const = 0;
+ virtual Variant shaped_get_span_meta(const RID &p_shaped, int64_t p_index) const = 0;
+ virtual void shaped_set_span_update_font(const RID &p_shaped, int64_t p_index, const Array &p_fonts, int64_t p_size, const Dictionary &p_opentype_features = Dictionary()) = 0;
- virtual RID shaped_text_substr(RID p_shaped, int p_start, int p_length) const = 0; // Copy shaped substring (e.g. line break) without reshaping, but correctly reordered, preservers range.
- virtual RID shaped_text_get_parent(RID p_shaped) const = 0;
+ virtual RID shaped_text_substr(const RID &p_shaped, int64_t p_start, int64_t p_length) const = 0; // Copy shaped substring (e.g. line break) without reshaping, but correctly reordered, preservers range.
+ virtual RID shaped_text_get_parent(const RID &p_shaped) const = 0;
- virtual float shaped_text_fit_to_width(RID p_shaped, float p_width, uint16_t /*JustificationFlag*/ p_jst_flags = JUSTIFICATION_WORD_BOUND | JUSTIFICATION_KASHIDA) = 0;
- virtual float shaped_text_tab_align(RID p_shaped, const PackedFloat32Array &p_tab_stops) = 0;
+ virtual double shaped_text_fit_to_width(const RID &p_shaped, double p_width, int64_t /*JustificationFlag*/ p_jst_flags = JUSTIFICATION_WORD_BOUND | JUSTIFICATION_KASHIDA) = 0;
+ virtual double shaped_text_tab_align(const RID &p_shaped, const PackedFloat32Array &p_tab_stops) = 0;
- virtual bool shaped_text_shape(RID p_shaped) = 0;
- virtual bool shaped_text_update_breaks(RID p_shaped) = 0;
- virtual bool shaped_text_update_justification_ops(RID p_shaped) = 0;
+ virtual bool shaped_text_shape(const RID &p_shaped) = 0;
+ virtual bool shaped_text_update_breaks(const RID &p_shaped) = 0;
+ virtual bool shaped_text_update_justification_ops(const RID &p_shaped) = 0;
- virtual bool shaped_text_is_ready(RID p_shaped) const = 0;
+ virtual bool shaped_text_is_ready(const RID &p_shaped) const = 0;
- virtual const Glyph *shaped_text_get_glyphs(RID p_shaped) const = 0;
- Array _shaped_text_get_glyphs_wrapper(RID p_shaped) const;
- virtual const Glyph *shaped_text_sort_logical(RID p_shaped) = 0;
- Array _shaped_text_sort_logical_wrapper(RID p_shaped);
- virtual int shaped_text_get_glyph_count(RID p_shaped) const = 0;
+ virtual const Glyph *shaped_text_get_glyphs(const RID &p_shaped) const = 0;
+ Array _shaped_text_get_glyphs_wrapper(const RID &p_shaped) const;
+ virtual const Glyph *shaped_text_sort_logical(const RID &p_shaped) = 0;
+ Array _shaped_text_sort_logical_wrapper(const RID &p_shaped);
+ virtual int64_t shaped_text_get_glyph_count(const RID &p_shaped) const = 0;
- virtual Vector2i shaped_text_get_range(RID p_shaped) const = 0;
+ virtual Vector2i shaped_text_get_range(const RID &p_shaped) const = 0;
- virtual PackedInt32Array shaped_text_get_line_breaks_adv(RID p_shaped, const PackedFloat32Array &p_width, int p_start = 0, bool p_once = true, uint16_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const;
- virtual PackedInt32Array shaped_text_get_line_breaks(RID p_shaped, float p_width, int p_start = 0, uint16_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const;
- virtual PackedInt32Array shaped_text_get_word_breaks(RID p_shaped, int p_grapheme_flags = GRAPHEME_IS_SPACE | GRAPHEME_IS_PUNCTUATION) const;
+ virtual PackedInt32Array shaped_text_get_line_breaks_adv(const RID &p_shaped, const PackedFloat32Array &p_width, int64_t p_start = 0, bool p_once = true, int64_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const;
+ virtual PackedInt32Array shaped_text_get_line_breaks(const RID &p_shaped, double p_width, int64_t p_start = 0, int64_t /*TextBreakFlag*/ p_break_flags = BREAK_MANDATORY | BREAK_WORD_BOUND) const;
+ virtual PackedInt32Array shaped_text_get_word_breaks(const RID &p_shaped, int64_t p_grapheme_flags = GRAPHEME_IS_SPACE | GRAPHEME_IS_PUNCTUATION) const;
- virtual int shaped_text_get_trim_pos(RID p_shaped) const = 0;
- virtual int shaped_text_get_ellipsis_pos(RID p_shaped) const = 0;
- virtual const Glyph *shaped_text_get_ellipsis_glyphs(RID p_shaped) const = 0;
- Array _shaped_text_get_ellipsis_glyphs_wrapper(RID p_shaped) const;
- virtual int shaped_text_get_ellipsis_glyph_count(RID p_shaped) const = 0;
+ virtual int64_t shaped_text_get_trim_pos(const RID &p_shaped) const = 0;
+ virtual int64_t shaped_text_get_ellipsis_pos(const RID &p_shaped) const = 0;
+ virtual const Glyph *shaped_text_get_ellipsis_glyphs(const RID &p_shaped) const = 0;
+ Array _shaped_text_get_ellipsis_glyphs_wrapper(const RID &p_shaped) const;
+ virtual int64_t shaped_text_get_ellipsis_glyph_count(const RID &p_shaped) const = 0;
- virtual void shaped_text_overrun_trim_to_width(RID p_shaped, float p_width, uint16_t p_trim_flags) = 0;
+ virtual void shaped_text_overrun_trim_to_width(const RID &p_shaped, double p_width, int64_t p_trim_flags) = 0;
- virtual Array shaped_text_get_objects(RID p_shaped) const = 0;
- virtual Rect2 shaped_text_get_object_rect(RID p_shaped, Variant p_key) const = 0;
+ virtual Array shaped_text_get_objects(const RID &p_shaped) const = 0;
+ virtual Rect2 shaped_text_get_object_rect(const RID &p_shaped, const Variant &p_key) const = 0;
- virtual Size2 shaped_text_get_size(RID p_shaped) const = 0;
- virtual float shaped_text_get_ascent(RID p_shaped) const = 0;
- virtual float shaped_text_get_descent(RID p_shaped) const = 0;
- virtual float shaped_text_get_width(RID p_shaped) const = 0;
- virtual float shaped_text_get_underline_position(RID p_shaped) const = 0;
- virtual float shaped_text_get_underline_thickness(RID p_shaped) const = 0;
+ virtual Size2 shaped_text_get_size(const RID &p_shaped) const = 0;
+ virtual double shaped_text_get_ascent(const RID &p_shaped) const = 0;
+ virtual double shaped_text_get_descent(const RID &p_shaped) const = 0;
+ virtual double shaped_text_get_width(const RID &p_shaped) const = 0;
+ virtual double shaped_text_get_underline_position(const RID &p_shaped) const = 0;
+ virtual double shaped_text_get_underline_thickness(const RID &p_shaped) const = 0;
- virtual Direction shaped_text_get_dominant_direction_in_range(RID p_shaped, int p_start, int p_end) const;
+ virtual Direction shaped_text_get_dominant_direction_in_range(const RID &p_shaped, int64_t p_start, int64_t p_end) const;
- virtual CaretInfo shaped_text_get_carets(RID p_shaped, int p_position) const;
- Dictionary _shaped_text_get_carets_wrapper(RID p_shaped, int p_position) const;
+ virtual CaretInfo shaped_text_get_carets(const RID &p_shaped, int64_t p_position) const;
+ Dictionary _shaped_text_get_carets_wrapper(const RID &p_shaped, int64_t p_position) const;
- virtual Vector<Vector2> shaped_text_get_selection(RID p_shaped, int p_start, int p_end) const;
+ virtual Vector<Vector2> shaped_text_get_selection(const RID &p_shaped, int64_t p_start, int64_t p_end) const;
- virtual int shaped_text_hit_test_grapheme(RID p_shaped, float p_coords) const; // Return grapheme index.
- virtual int shaped_text_hit_test_position(RID p_shaped, float p_coords) const; // Return caret/selection position.
+ virtual int64_t shaped_text_hit_test_grapheme(const RID &p_shaped, double p_coords) const; // Return grapheme index.
+ virtual int64_t shaped_text_hit_test_position(const RID &p_shaped, double p_coords) const; // Return caret/selection position.
- virtual Vector2 shaped_text_get_grapheme_bounds(RID p_shaped, int p_pos) const;
- virtual int shaped_text_next_grapheme_pos(RID p_shaped, int p_pos) const;
- virtual int shaped_text_prev_grapheme_pos(RID p_shaped, int p_pos) const;
+ virtual Vector2 shaped_text_get_grapheme_bounds(const RID &p_shaped, int64_t p_pos) const;
+ virtual int64_t shaped_text_next_grapheme_pos(const RID &p_shaped, int64_t p_pos) const;
+ virtual int64_t shaped_text_prev_grapheme_pos(const RID &p_shaped, int64_t p_pos) const;
// The pen position is always placed on the baseline and moveing left to right.
- virtual void shaped_text_draw(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l = -1.f, float p_clip_r = -1.f, const Color &p_color = Color(1, 1, 1)) const;
- virtual void shaped_text_draw_outline(RID p_shaped, RID p_canvas, const Vector2 &p_pos, float p_clip_l = -1.f, float p_clip_r = -1.f, int p_outline_size = 1, const Color &p_color = Color(1, 1, 1)) const;
+ virtual void shaped_text_draw(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l = -1.0, double p_clip_r = -1.0, const Color &p_color = Color(1, 1, 1)) const;
+ virtual void shaped_text_draw_outline(const RID &p_shaped, const RID &p_canvas, const Vector2 &p_pos, double p_clip_l = -1.0, double p_clip_r = -1.0, int64_t p_outline_size = 1, const Color &p_color = Color(1, 1, 1)) const;
// Number conversion.
- virtual String format_number(const String &p_string, const String &p_language = "") const { return p_string; };
- virtual String parse_number(const String &p_string, const String &p_language = "") const { return p_string; };
- virtual String percent_sign(const String &p_language = "") const { return "%"; };
+ virtual String format_number(const String &p_string, const String &p_language = "") const = 0;
+ virtual String parse_number(const String &p_string, const String &p_language = "") const = 0;
+ virtual String percent_sign(const String &p_language = "") const = 0;
+
+ // String functions.
+ virtual PackedInt32Array string_get_word_breaks(const String &p_string, const String &p_language = "") const = 0;
virtual String strip_diacritics(const String &p_string) const;
+ // Other string operations.
+ virtual String string_to_upper(const String &p_string, const String &p_language = "") const = 0;
+ virtual String string_to_lower(const String &p_string, const String &p_language = "") const = 0;
+
+ Array parse_structured_text(StructuredTextParser p_parser_type, const Array &p_args, const String &p_text) const;
+
TextServer();
~TextServer();
};
@@ -489,23 +478,6 @@ struct CaretInfo {
TextServer::Direction t_dir;
};
-struct GlyphCompare { // For line breaking reordering.
- _FORCE_INLINE_ bool operator()(const Glyph &l, const Glyph &r) const {
- if (l.start == r.start) {
- if (l.count == r.count) {
- if ((l.flags & TextServer::GRAPHEME_IS_VIRTUAL) == TextServer::GRAPHEME_IS_VIRTUAL) {
- return false;
- } else {
- return true;
- }
- }
- return l.count > r.count; // Sort first glyph with count & flags, order of the rest are irrelevant.
- } else {
- return l.start < r.start;
- }
- }
-};
-
/*************************************************************************/
class TextServerManager : public Object {
@@ -552,13 +524,14 @@ VARIANT_ENUM_CAST(TextServer::LineBreakFlag);
VARIANT_ENUM_CAST(TextServer::TextOverrunFlag);
VARIANT_ENUM_CAST(TextServer::GraphemeFlag);
VARIANT_ENUM_CAST(TextServer::Hinting);
+VARIANT_ENUM_CAST(TextServer::SubpixelPositioning);
VARIANT_ENUM_CAST(TextServer::Feature);
VARIANT_ENUM_CAST(TextServer::ContourPointTag);
VARIANT_ENUM_CAST(TextServer::SpacingType);
VARIANT_ENUM_CAST(TextServer::FontStyle);
+VARIANT_ENUM_CAST(TextServer::StructuredTextParser);
GDVIRTUAL_NATIVE_PTR(Glyph);
-GDVIRTUAL_NATIVE_PTR(Glyph *);
GDVIRTUAL_NATIVE_PTR(CaretInfo);
#endif // TEXT_SERVER_H
diff --git a/servers/xr/xr_interface.cpp b/servers/xr/xr_interface.cpp
index ca11df439c..7ae111b5e7 100644
--- a/servers/xr/xr_interface.cpp
+++ b/servers/xr/xr_interface.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -168,8 +168,5 @@ XRInterface::TrackingStatus XRInterface::get_tracking_status() const {
return XR_UNKNOWN_TRACKING;
}
-void XRInterface::notification(int p_what) {
-}
-
void XRInterface::trigger_haptic_pulse(const String &p_action_name, const StringName &p_tracker_name, double p_frequency, double p_amplitude, double p_duration_sec, double p_delay_sec) {
}
diff --git a/servers/xr/xr_interface.h b/servers/xr/xr_interface.h
index b489481f75..62eba2f00b 100644
--- a/servers/xr/xr_interface.h
+++ b/servers/xr/xr_interface.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -39,15 +39,13 @@
struct BlitToScreen;
/**
- @author Bastiaan Olij <mux213@gmail.com>
-
The XR interface is a template class on top of which we build interface to different AR, VR and tracking SDKs.
The idea is that we subclass this class, implement the logic, and then instantiate a singleton of each interface
when Godot starts. These instances do not initialize themselves but register themselves with the AR/VR server.
If the user wants to enable AR/VR the choose the interface they want to use and initialize it.
- Note that we may make this into a fully instantiable class for GDNative support.
+ Note that we may make this into a fully instantiable class for GDExtension support.
*/
class XRInterface : public RefCounted {
@@ -125,10 +123,13 @@ public:
// note, external color/depth/vrs texture support will be added here soon.
- virtual Vector<BlitToScreen> commit_views(RID p_render_target, const Rect2 &p_screen_rect) = 0; /* commit rendered views to the XR interface */
-
virtual void process() = 0;
- virtual void notification(int p_what);
+ virtual void pre_render(){};
+ virtual bool pre_draw_viewport(RID p_render_target) { return true; }; /* inform XR interface we are about to start our viewport draw process */
+ virtual Vector<BlitToScreen> post_draw_viewport(RID p_render_target, const Rect2 &p_screen_rect) = 0; /* inform XR interface we finished our viewport draw process */
+ virtual void end_frame(){};
+
+ virtual void notification(int p_what){};
XRInterface();
~XRInterface();
@@ -138,4 +139,4 @@ VARIANT_ENUM_CAST(XRInterface::Capabilities);
VARIANT_ENUM_CAST(XRInterface::TrackingStatus);
VARIANT_ENUM_CAST(XRInterface::PlayAreaMode);
-#endif // !XR_INTERFACE_H
+#endif // XR_INTERFACE_H
diff --git a/servers/xr/xr_interface_extension.cpp b/servers/xr/xr_interface_extension.cpp
index 80576ac607..a0bec0f95b 100644
--- a/servers/xr/xr_interface_extension.cpp
+++ b/servers/xr/xr_interface_extension.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -30,6 +30,7 @@
#include "xr_interface_extension.h"
#include "servers/rendering/renderer_rd/renderer_storage_rd.h"
+#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
#include "servers/rendering/renderer_storage.h"
#include "servers/rendering/rendering_server_globals.h"
@@ -52,9 +53,12 @@ void XRInterfaceExtension::_bind_methods() {
GDVIRTUAL_BIND(_get_transform_for_view, "view", "cam_transform");
GDVIRTUAL_BIND(_get_projection_for_view, "view", "aspect", "z_near", "z_far");
- GDVIRTUAL_BIND(_commit_views, "render_target", "screen_rect");
-
GDVIRTUAL_BIND(_process);
+ GDVIRTUAL_BIND(_pre_render);
+ GDVIRTUAL_BIND(_pre_draw_viewport, "render_target");
+ GDVIRTUAL_BIND(_post_draw_viewport, "render_target", "screen_rect");
+ GDVIRTUAL_BIND(_end_frame);
+
GDVIRTUAL_BIND(_notification, "what");
/** input and output **/
@@ -274,7 +278,7 @@ CameraMatrix XRInterfaceExtension::get_projection_for_view(uint32_t p_view, doub
void XRInterfaceExtension::add_blit(RID p_render_target, Rect2 p_src_rect, Rect2i p_dst_rect, bool p_use_layer, uint32_t p_layer, bool p_apply_lens_distortion, Vector2 p_eye_center, double p_k1, double p_k2, double p_upscale, double p_aspect_ratio) {
BlitToScreen blit;
- ERR_FAIL_COND_MSG(!can_add_blits, "add_blit can only be called from an XR plugin from within _commit_views!");
+ ERR_FAIL_COND_MSG(!can_add_blits, "add_blit can only be called from an XR plugin from within _post_draw_viewport!");
blit.render_target = p_render_target;
blit.src_rect = p_src_rect;
@@ -293,12 +297,31 @@ void XRInterfaceExtension::add_blit(RID p_render_target, Rect2 p_src_rect, Rect2
blits.push_back(blit);
}
-Vector<BlitToScreen> XRInterfaceExtension::commit_views(RID p_render_target, const Rect2 &p_screen_rect) {
+void XRInterfaceExtension::process() {
+ GDVIRTUAL_CALL(_process);
+}
+
+void XRInterfaceExtension::pre_render() {
+ GDVIRTUAL_CALL(_pre_render);
+}
+
+bool XRInterfaceExtension::pre_draw_viewport(RID p_render_target) {
+ bool do_render = true;
+
+ if (GDVIRTUAL_CALL(_pre_draw_viewport, p_render_target, do_render)) {
+ return do_render;
+ } else {
+ // if not implemented we're returning true
+ return true;
+ }
+}
+
+Vector<BlitToScreen> XRInterfaceExtension::post_draw_viewport(RID p_render_target, const Rect2 &p_screen_rect) {
// This is just so our XR plugin can add blits...
blits.clear();
can_add_blits = true;
- if (GDVIRTUAL_CALL(_commit_views, p_render_target, p_screen_rect)) {
+ if (GDVIRTUAL_CALL(_post_draw_viewport, p_render_target, p_screen_rect)) {
return blits;
}
@@ -306,8 +329,8 @@ Vector<BlitToScreen> XRInterfaceExtension::commit_views(RID p_render_target, con
return blits;
}
-void XRInterfaceExtension::process() {
- GDVIRTUAL_CALL(_process);
+void XRInterfaceExtension::end_frame() {
+ GDVIRTUAL_CALL(_end_frame);
}
void XRInterfaceExtension::notification(int p_what) {
@@ -317,10 +340,10 @@ void XRInterfaceExtension::notification(int p_what) {
RID XRInterfaceExtension::get_render_target_texture(RID p_render_target) {
// In due time this will need to be enhance to return the correct INTERNAL RID for the chosen rendering engine.
// So once a GLES driver is implemented we'll return that and the implemented plugin needs to handle this correctly too.
- RendererStorageRD *rd_storage = RendererStorageRD::base_singleton;
- ERR_FAIL_NULL_V_MSG(rd_storage, RID(), "Renderer storage not setup");
+ RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
+ ERR_FAIL_NULL_V_MSG(texture_storage, RID(), "Texture storage not setup");
- return rd_storage->render_target_get_rd_texture(p_render_target);
+ return texture_storage->render_target_get_rd_texture(p_render_target);
}
/*
diff --git a/servers/xr/xr_interface_extension.h b/servers/xr/xr_interface_extension.h
index 763526de96..5a436b9fd0 100644
--- a/servers/xr/xr_interface_extension.h
+++ b/servers/xr/xr_interface_extension.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -109,13 +109,20 @@ public:
GDVIRTUAL4R(PackedFloat64Array, _get_projection_for_view, uint32_t, double, double, double);
void add_blit(RID p_render_target, Rect2 p_src_rect, Rect2i p_dst_rect, bool p_use_layer = false, uint32_t p_layer = 0, bool p_apply_lens_distortion = false, Vector2 p_eye_center = Vector2(), double p_k1 = 0.0, double p_k2 = 0.0, double p_upscale = 1.0, double p_aspect_ratio = 1.0);
- virtual Vector<BlitToScreen> commit_views(RID p_render_target, const Rect2 &p_screen_rect) override;
- GDVIRTUAL2(_commit_views, RID, const Rect2 &);
virtual void process() override;
+ virtual void pre_render() override;
+ virtual bool pre_draw_viewport(RID p_render_target) override;
+ virtual Vector<BlitToScreen> post_draw_viewport(RID p_render_target, const Rect2 &p_screen_rect) override;
+ virtual void end_frame() override;
virtual void notification(int p_what) override;
GDVIRTUAL0(_process);
+ GDVIRTUAL0(_pre_render);
+ GDVIRTUAL1R(bool, _pre_draw_viewport, RID);
+ GDVIRTUAL2(_post_draw_viewport, RID, const Rect2 &);
+ GDVIRTUAL0(_end_frame);
+
GDVIRTUAL1(_notification, int);
/* access to some internals we need */
diff --git a/servers/xr/xr_pose.cpp b/servers/xr/xr_pose.cpp
index 0d05e62b46..400f13b9c2 100644
--- a/servers/xr/xr_pose.cpp
+++ b/servers/xr/xr_pose.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -33,9 +33,13 @@
#include "servers/xr_server.h"
void XRPose::_bind_methods() {
+ BIND_ENUM_CONSTANT(XR_TRACKING_CONFIDENCE_NONE);
+ BIND_ENUM_CONSTANT(XR_TRACKING_CONFIDENCE_LOW);
+ BIND_ENUM_CONSTANT(XR_TRACKING_CONFIDENCE_HIGH);
+
ClassDB::bind_method(D_METHOD("set_has_tracking_data", "has_tracking_data"), &XRPose::set_has_tracking_data);
ClassDB::bind_method(D_METHOD("get_has_tracking_data"), &XRPose::get_has_tracking_data);
- ADD_PROPERTY(PropertyInfo(Variant::STRING, "has_tracking_data"), "set_has_tracking_data", "get_has_tracking_data");
+ ADD_PROPERTY(PropertyInfo(Variant::BOOL, "has_tracking_data"), "set_has_tracking_data", "get_has_tracking_data");
ClassDB::bind_method(D_METHOD("set_name", "name"), &XRPose::set_name);
ClassDB::bind_method(D_METHOD("get_name"), &XRPose::get_name);
@@ -53,6 +57,10 @@ void XRPose::_bind_methods() {
ClassDB::bind_method(D_METHOD("set_angular_velocity", "velocity"), &XRPose::set_angular_velocity);
ClassDB::bind_method(D_METHOD("get_angular_velocity"), &XRPose::get_angular_velocity);
ADD_PROPERTY(PropertyInfo(Variant::STRING, "angular_velocity"), "set_angular_velocity", "get_angular_velocity");
+
+ ClassDB::bind_method(D_METHOD("set_tracking_confidence", "tracking_confidence"), &XRPose::set_tracking_confidence);
+ ClassDB::bind_method(D_METHOD("get_tracking_confidence"), &XRPose::get_tracking_confidence);
+ ADD_PROPERTY(PropertyInfo(Variant::INT, "tracking_confidence"), "set_tracking_confidence", "get_tracking_confidence");
}
void XRPose::set_has_tracking_data(const bool p_has_tracking_data) {
@@ -108,3 +116,11 @@ void XRPose::set_angular_velocity(const Vector3 p_velocity) {
Vector3 XRPose::get_angular_velocity() const {
return angular_velocity;
}
+
+void XRPose::set_tracking_confidence(const XRPose::TrackingConfidence p_tracking_confidence) {
+ tracking_confidence = p_tracking_confidence;
+}
+
+XRPose::TrackingConfidence XRPose::get_tracking_confidence() const {
+ return tracking_confidence;
+}
diff --git a/servers/xr/xr_pose.h b/servers/xr/xr_pose.h
index 223e95ddfe..f306c22390 100644
--- a/servers/xr/xr_pose.h
+++ b/servers/xr/xr_pose.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,12 +37,20 @@ class XRPose : public RefCounted {
GDCLASS(XRPose, RefCounted);
public:
+ // TrackingConfidence gives an indication of how reliable our transform data is.
+ enum TrackingConfidence {
+ XR_TRACKING_CONFIDENCE_NONE, // No tracking information is available for this pose.
+ XR_TRACKING_CONFIDENCE_LOW, // Tracking information may be inaccurate or estimated.
+ XR_TRACKING_CONFIDENCE_HIGH // Tracking information is deemed accurate and up to date.
+ };
+
private:
bool has_tracking_data = false;
StringName name;
Transform3D transform;
Vector3 linear_velocity;
Vector3 angular_velocity;
+ TrackingConfidence tracking_confidence = XR_TRACKING_CONFIDENCE_NONE;
protected:
static void _bind_methods();
@@ -63,6 +71,11 @@ public:
void set_angular_velocity(const Vector3 p_velocity);
Vector3 get_angular_velocity() const;
+
+ void set_tracking_confidence(const TrackingConfidence p_tracking_confidence);
+ TrackingConfidence get_tracking_confidence() const;
};
+VARIANT_ENUM_CAST(XRPose::TrackingConfidence);
+
#endif
diff --git a/servers/xr/xr_positional_tracker.cpp b/servers/xr/xr_positional_tracker.cpp
index 1313a91172..4857167a8e 100644
--- a/servers/xr/xr_positional_tracker.cpp
+++ b/servers/xr/xr_positional_tracker.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -49,6 +49,10 @@ void XRPositionalTracker::_bind_methods() {
ClassDB::bind_method(D_METHOD("set_tracker_desc", "description"), &XRPositionalTracker::set_tracker_desc);
ADD_PROPERTY(PropertyInfo(Variant::STRING, "description"), "set_tracker_desc", "get_tracker_desc");
+ ClassDB::bind_method(D_METHOD("get_tracker_profile"), &XRPositionalTracker::get_tracker_profile);
+ ClassDB::bind_method(D_METHOD("set_tracker_profile", "profile"), &XRPositionalTracker::set_tracker_profile);
+ ADD_PROPERTY(PropertyInfo(Variant::STRING, "profile"), "set_tracker_profile", "get_tracker_profile");
+
ClassDB::bind_method(D_METHOD("get_tracker_hand"), &XRPositionalTracker::get_tracker_hand);
ClassDB::bind_method(D_METHOD("set_tracker_hand", "hand"), &XRPositionalTracker::set_tracker_hand);
ADD_PROPERTY(PropertyInfo(Variant::INT, "hand", PROPERTY_HINT_ENUM, "Unknown,Left,Right"), "set_tracker_hand", "get_tracker_hand");
@@ -56,7 +60,7 @@ void XRPositionalTracker::_bind_methods() {
ClassDB::bind_method(D_METHOD("has_pose", "name"), &XRPositionalTracker::has_pose);
ClassDB::bind_method(D_METHOD("get_pose", "name"), &XRPositionalTracker::get_pose);
ClassDB::bind_method(D_METHOD("invalidate_pose", "name"), &XRPositionalTracker::invalidate_pose);
- ClassDB::bind_method(D_METHOD("set_pose", "name", "transform", "linear_velocity", "angular_velocity"), &XRPositionalTracker::set_pose);
+ ClassDB::bind_method(D_METHOD("set_pose", "name", "transform", "linear_velocity", "angular_velocity", "tracking_confidence"), &XRPositionalTracker::set_pose);
ADD_SIGNAL(MethodInfo("pose_changed", PropertyInfo(Variant::OBJECT, "pose", PROPERTY_HINT_RESOURCE_TYPE, "XRPose")));
ClassDB::bind_method(D_METHOD("get_input", "name"), &XRPositionalTracker::get_input);
@@ -65,10 +69,7 @@ void XRPositionalTracker::_bind_methods() {
ADD_SIGNAL(MethodInfo("button_released", PropertyInfo(Variant::STRING, "name")));
ADD_SIGNAL(MethodInfo("input_value_changed", PropertyInfo(Variant::STRING, "name"), PropertyInfo(Variant::FLOAT, "value")));
ADD_SIGNAL(MethodInfo("input_axis_changed", PropertyInfo(Variant::STRING, "name"), PropertyInfo(Variant::VECTOR2, "vector")));
-
- ClassDB::bind_method(D_METHOD("get_rumble"), &XRPositionalTracker::get_rumble);
- ClassDB::bind_method(D_METHOD("set_rumble", "rumble"), &XRPositionalTracker::set_rumble);
- ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "rumble"), "set_rumble", "get_rumble");
+ ADD_SIGNAL(MethodInfo("profile_changed", PropertyInfo(Variant::STRING, "role")));
};
void XRPositionalTracker::set_tracker_type(XRServer::TrackerType p_type) {
@@ -99,6 +100,18 @@ String XRPositionalTracker::get_tracker_desc() const {
return description;
}
+void XRPositionalTracker::set_tracker_profile(const String &p_profile) {
+ if (profile != p_profile) {
+ profile = p_profile;
+
+ emit_signal("profile_changed", profile);
+ }
+}
+
+String XRPositionalTracker::get_tracker_profile() const {
+ return profile;
+}
+
XRPositionalTracker::TrackerHand XRPositionalTracker::get_tracker_hand() const {
return hand;
};
@@ -137,7 +150,7 @@ void XRPositionalTracker::invalidate_pose(const StringName &p_action_name) {
}
}
-void XRPositionalTracker::set_pose(const StringName &p_action_name, const Transform3D &p_transform, const Vector3 &p_linear_velocity, const Vector3 &p_angular_velocity) {
+void XRPositionalTracker::set_pose(const StringName &p_action_name, const Transform3D &p_transform, const Vector3 &p_linear_velocity, const Vector3 &p_angular_velocity, const XRPose::TrackingConfidence p_tracking_confidence) {
Ref<XRPose> new_pose;
new_pose.instantiate();
@@ -146,9 +159,10 @@ void XRPositionalTracker::set_pose(const StringName &p_action_name, const Transf
new_pose->set_transform(p_transform);
new_pose->set_linear_velocity(p_linear_velocity);
new_pose->set_angular_velocity(p_angular_velocity);
+ new_pose->set_tracking_confidence(p_tracking_confidence);
poses[p_action_name] = new_pose;
- emit_signal("pose_changed", new_pose);
+ emit_signal(SNAME("pose_changed"), new_pose);
// TODO discuss whether we also want to create and emit an InputEventXRPose event
}
@@ -181,20 +195,20 @@ void XRPositionalTracker::set_input(const StringName &p_action_name, const Varia
case Variant::BOOL: {
bool pressed = p_value;
if (pressed) {
- emit_signal("button_pressed", p_action_name);
+ emit_signal(SNAME("button_pressed"), p_action_name);
} else {
- emit_signal("button_released", p_action_name);
+ emit_signal(SNAME("button_released"), p_action_name);
}
// TODO discuss whether we also want to create and emit an InputEventXRButton event
} break;
case Variant::FLOAT: {
- emit_signal("input_value_changed", p_action_name, p_value);
+ emit_signal(SNAME("input_value_changed"), p_action_name, p_value);
// TODO discuss whether we also want to create and emit an InputEventXRValue event
} break;
case Variant::VECTOR2: {
- emit_signal("input_axis_changed", p_action_name, p_value);
+ emit_signal(SNAME("input_axis_changed"), p_action_name, p_value);
// TODO discuss whether we also want to create and emit an InputEventXRAxis event
} break;
@@ -205,21 +219,8 @@ void XRPositionalTracker::set_input(const StringName &p_action_name, const Varia
}
}
-real_t XRPositionalTracker::get_rumble() const {
- return rumble;
-};
-
-void XRPositionalTracker::set_rumble(real_t p_rumble) {
- if (p_rumble > 0.0) {
- rumble = p_rumble;
- } else {
- rumble = 0.0;
- };
-};
-
XRPositionalTracker::XRPositionalTracker() {
type = XRServer::TRACKER_UNKNOWN;
name = "Unknown";
hand = TRACKER_HAND_UNKNOWN;
- rumble = 0.0;
};
diff --git a/servers/xr/xr_positional_tracker.h b/servers/xr/xr_positional_tracker.h
index 69eb105b5a..cd06d4a087 100644
--- a/servers/xr/xr_positional_tracker.h
+++ b/servers/xr/xr_positional_tracker.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -37,8 +37,6 @@
#include "servers/xr_server.h"
/**
- @author Bastiaan Olij <mux213@gmail.com>
-
The positional tracker object as an object that represents the position and orientation of a tracked object like a controller or headset.
An AR/VR Interface will registered the trackers it manages with our AR/VR server and update its position and orientation.
This is where potentially additional AR/VR interfaces may be active as there are AR/VR SDKs that solely deal with positional tracking.
@@ -58,16 +56,13 @@ public:
private:
XRServer::TrackerType type; // type of tracker
StringName name; // (unique) name of the tracker
- String description; // description of the tracker, this is interface dependent, for OpenXR this will be the interaction profile bound for to the tracker
+ String description; // description of the tracker
+ String profile; // this is interface dependent, for OpenXR this will be the interaction profile bound for to the tracker
TrackerHand hand; // if known, the hand this tracker is held in
Map<StringName, Ref<XRPose>> poses;
Map<StringName, Variant> inputs;
- int joy_id; // if we also have a related joystick entity, the id of the joystick
- Ref<Mesh> mesh; // when available, a mesh that can be used to render this tracker
- real_t rumble; // rumble strength, 0.0 is off, 1.0 is maximum, note that we only record here, xr_interface is responsible for execution
-
protected:
static void _bind_methods();
@@ -78,25 +73,23 @@ public:
StringName get_tracker_name() const;
void set_tracker_desc(const String &p_desc);
String get_tracker_desc() const;
+ void set_tracker_profile(const String &p_profile);
+ String get_tracker_profile() const;
XRPositionalTracker::TrackerHand get_tracker_hand() const;
void set_tracker_hand(const XRPositionalTracker::TrackerHand p_hand);
bool has_pose(const StringName &p_action_name) const;
Ref<XRPose> get_pose(const StringName &p_action_name) const;
void invalidate_pose(const StringName &p_action_name);
- void set_pose(const StringName &p_action_name, const Transform3D &p_transform, const Vector3 &p_linear_velocity, const Vector3 &p_angular_velocity);
+ void set_pose(const StringName &p_action_name, const Transform3D &p_transform, const Vector3 &p_linear_velocity, const Vector3 &p_angular_velocity, const XRPose::TrackingConfidence p_tracking_confidence = XRPose::XR_TRACKING_CONFIDENCE_HIGH);
Variant get_input(const StringName &p_action_name) const;
void set_input(const StringName &p_action_name, const Variant &p_value);
- // TODO replace by new implementation
- real_t get_rumble() const;
- void set_rumble(real_t p_rumble);
-
XRPositionalTracker();
~XRPositionalTracker() {}
};
VARIANT_ENUM_CAST(XRPositionalTracker::TrackerHand);
-#endif
+#endif // XR_POSITIONAL_TRACKER_H
diff --git a/servers/xr_server.cpp b/servers/xr_server.cpp
index 959288497d..8314e356d2 100644
--- a/servers/xr_server.cpp
+++ b/servers/xr_server.cpp
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -65,10 +65,6 @@ void XRServer::_bind_methods() {
ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "primary_interface"), "set_primary_interface", "get_primary_interface");
- ClassDB::bind_method(D_METHOD("get_last_process_usec"), &XRServer::get_last_process_usec);
- ClassDB::bind_method(D_METHOD("get_last_commit_usec"), &XRServer::get_last_commit_usec);
- ClassDB::bind_method(D_METHOD("get_last_frame_usec"), &XRServer::get_last_frame_usec);
-
BIND_ENUM_CONSTANT(TRACKER_HEAD);
BIND_ENUM_CONSTANT(TRACKER_CONTROLLER);
BIND_ENUM_CONSTANT(TRACKER_BASESTATION);
@@ -135,13 +131,13 @@ void XRServer::center_on_hmd(RotationMode p_rotation_mode, bool p_keep_height) {
// remove our tilt
if (p_rotation_mode == 1) {
// take the Y out of our Z
- new_reference_frame.basis.set_axis(2, Vector3(new_reference_frame.basis.elements[0][2], 0.0, new_reference_frame.basis.elements[2][2]).normalized());
+ new_reference_frame.basis.set_column(2, Vector3(new_reference_frame.basis.rows[0][2], 0.0, new_reference_frame.basis.rows[2][2]).normalized());
// Y is straight up
- new_reference_frame.basis.set_axis(1, Vector3(0.0, 1.0, 0.0));
+ new_reference_frame.basis.set_column(1, Vector3(0.0, 1.0, 0.0));
// and X is our cross reference
- new_reference_frame.basis.set_axis(0, new_reference_frame.basis.get_axis(1).cross(new_reference_frame.basis.get_axis(2)).normalized());
+ new_reference_frame.basis.set_column(0, new_reference_frame.basis.get_column(1).cross(new_reference_frame.basis.get_column(2)).normalized());
} else if (p_rotation_mode == 2) {
// remove our rotation, we're only interesting in centering on position
new_reference_frame.basis = Basis();
@@ -351,25 +347,11 @@ PackedStringArray XRServer::get_suggested_pose_names(const StringName &p_tracker
return arr;
}
-uint64_t XRServer::get_last_process_usec() {
- return last_process_usec;
-};
-
-uint64_t XRServer::get_last_commit_usec() {
- return last_commit_usec;
-};
-
-uint64_t XRServer::get_last_frame_usec() {
- return last_frame_usec;
-};
-
void XRServer::_process() {
- /* called from renderer_viewport.draw_viewports right before we start drawing our viewports */
+ // called from our main game loop before we handle physics and game logic
+ // note that we can have multiple interfaces active if we have interfaces that purely handle tracking
- /* mark for our frame timing */
- last_process_usec = OS::get_singleton()->get_ticks_usec();
-
- /* process all active interfaces */
+ // process all active interfaces
for (int i = 0; i < interfaces.size(); i++) {
if (!interfaces[i].is_valid()) {
// ignore, not a valid reference
@@ -379,13 +361,32 @@ void XRServer::_process() {
};
};
-void XRServer::_mark_commit() {
- /* time this */
- last_commit_usec = OS::get_singleton()->get_ticks_usec();
+void XRServer::pre_render() {
+ // called from RendererViewport.draw_viewports right before we start drawing our viewports
+ // note that we can have multiple interfaces active if we have interfaces that purely handle tracking
- /* now store our difference as we may overwrite last_process_usec before this is accessed */
- last_frame_usec = last_commit_usec - last_process_usec;
-};
+ // process all active interfaces
+ for (int i = 0; i < interfaces.size(); i++) {
+ if (!interfaces[i].is_valid()) {
+ // ignore, not a valid reference
+ } else if (interfaces[i]->is_initialized()) {
+ interfaces.write[i]->pre_render();
+ };
+ };
+}
+
+void XRServer::end_frame() {
+ // called from RenderingServerDefault after Vulkan queues have been submitted
+
+ // process all active interfaces
+ for (int i = 0; i < interfaces.size(); i++) {
+ if (!interfaces[i].is_valid()) {
+ // ignore, not a valid reference
+ } else if (interfaces[i]->is_initialized()) {
+ interfaces.write[i]->end_frame();
+ };
+ };
+}
XRServer::XRServer() {
singleton = this;
diff --git a/servers/xr_server.h b/servers/xr_server.h
index 48d73cac9a..d9188d2de1 100644
--- a/servers/xr_server.h
+++ b/servers/xr_server.h
@@ -5,8 +5,8 @@
/* GODOT ENGINE */
/* https://godotengine.org */
/*************************************************************************/
-/* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */
-/* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */
+/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
+/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
@@ -41,8 +41,6 @@ class XRInterface;
class XRPositionalTracker;
/**
- @author Bastiaan Olij <mux213@gmail.com>
-
The XR server is a singleton object that gives access to the various
objects and SDKs that are available on the system.
Because there can be multiple SDKs active this is exposed as an array
@@ -86,10 +84,6 @@ private:
Transform3D world_origin; /* our world origin point, maps a location in our virtual world to the origin point in our real world tracking volume */
Transform3D reference_frame; /* our reference frame */
- uint64_t last_process_usec; /* for frame timing, usec when we did our processing */
- uint64_t last_commit_usec; /* for frame timing, usec when we finished committing both eyes */
- uint64_t last_frame_usec; /* time it took between process and committing, we should probably average this over the last x frames */
-
protected:
static XRServer *singleton;
@@ -177,12 +171,16 @@ public:
PackedStringArray get_suggested_pose_names(const StringName &p_tracker_name) const;
// Q: Should we add get_suggested_input_names and get_suggested_haptic_names even though we don't use them for the IDE?
- uint64_t get_last_process_usec();
- uint64_t get_last_commit_usec();
- uint64_t get_last_frame_usec();
-
+ // Process is called before we handle our physics process and game process. This is where our interfaces will update controller data and such.
void _process();
- void _mark_commit();
+
+ // Pre-render is called right before we're rendering our viewports.
+ // This is where interfaces such as OpenVR and OpenXR will update positioning data.
+ // Many of these interfaces will also do a predictive sync which ensures we run at a steady framerate.
+ void pre_render();
+
+ // End-frame is called right after Godot has finished its rendering bits.
+ void end_frame();
XRServer();
~XRServer();
@@ -193,4 +191,4 @@ public:
VARIANT_ENUM_CAST(XRServer::TrackerType);
VARIANT_ENUM_CAST(XRServer::RotationMode);
-#endif
+#endif // XR_SERVER_H