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-rw-r--r--scene/3d/cpu_particles_3d.cpp503
1 files changed, 343 insertions, 160 deletions
diff --git a/scene/3d/cpu_particles_3d.cpp b/scene/3d/cpu_particles_3d.cpp
index aa29728c73..48ef41e015 100644
--- a/scene/3d/cpu_particles_3d.cpp
+++ b/scene/3d/cpu_particles_3d.cpp
@@ -32,8 +32,8 @@
#include "scene/3d/camera_3d.h"
#include "scene/3d/gpu_particles_3d.h"
+#include "scene/main/viewport.h"
#include "scene/resources/particles_material.h"
-#include "servers/rendering_server.h"
AABB CPUParticles3D::get_aabb() const {
return AABB();
@@ -78,7 +78,7 @@ void CPUParticles3D::set_amount(int p_amount) {
particle_order.resize(p_amount);
}
-void CPUParticles3D::set_lifetime(float p_lifetime) {
+void CPUParticles3D::set_lifetime(double p_lifetime) {
ERR_FAIL_COND_MSG(p_lifetime <= 0, "Particles lifetime must be greater than 0.");
lifetime = p_lifetime;
}
@@ -87,19 +87,19 @@ void CPUParticles3D::set_one_shot(bool p_one_shot) {
one_shot = p_one_shot;
}
-void CPUParticles3D::set_pre_process_time(float p_time) {
+void CPUParticles3D::set_pre_process_time(double p_time) {
pre_process_time = p_time;
}
-void CPUParticles3D::set_explosiveness_ratio(float p_ratio) {
+void CPUParticles3D::set_explosiveness_ratio(real_t p_ratio) {
explosiveness_ratio = p_ratio;
}
-void CPUParticles3D::set_randomness_ratio(float p_ratio) {
+void CPUParticles3D::set_randomness_ratio(real_t p_ratio) {
randomness_ratio = p_ratio;
}
-void CPUParticles3D::set_lifetime_randomness(float p_random) {
+void CPUParticles3D::set_lifetime_randomness(double p_random) {
lifetime_randomness = p_random;
}
@@ -107,7 +107,7 @@ void CPUParticles3D::set_use_local_coordinates(bool p_enable) {
local_coords = p_enable;
}
-void CPUParticles3D::set_speed_scale(float p_scale) {
+void CPUParticles3D::set_speed_scale(double p_scale) {
speed_scale = p_scale;
}
@@ -119,7 +119,7 @@ int CPUParticles3D::get_amount() const {
return particles.size();
}
-float CPUParticles3D::get_lifetime() const {
+double CPUParticles3D::get_lifetime() const {
return lifetime;
}
@@ -127,19 +127,19 @@ bool CPUParticles3D::get_one_shot() const {
return one_shot;
}
-float CPUParticles3D::get_pre_process_time() const {
+double CPUParticles3D::get_pre_process_time() const {
return pre_process_time;
}
-float CPUParticles3D::get_explosiveness_ratio() const {
+real_t CPUParticles3D::get_explosiveness_ratio() const {
return explosiveness_ratio;
}
-float CPUParticles3D::get_randomness_ratio() const {
+real_t CPUParticles3D::get_randomness_ratio() const {
return randomness_ratio;
}
-float CPUParticles3D::get_lifetime_randomness() const {
+double CPUParticles3D::get_lifetime_randomness() const {
return lifetime_randomness;
}
@@ -147,7 +147,7 @@ bool CPUParticles3D::get_use_local_coordinates() const {
return local_coords;
}
-float CPUParticles3D::get_speed_scale() const {
+double CPUParticles3D::get_speed_scale() const {
return speed_scale;
}
@@ -212,7 +212,7 @@ TypedArray<String> CPUParticles3D::get_configuration_warnings() const {
warnings.push_back(TTR("Nothing is visible because no mesh has been assigned."));
}
- if (!anim_material_found && (get_param(PARAM_ANIM_SPEED) != 0.0 || get_param(PARAM_ANIM_OFFSET) != 0.0 ||
+ if (!anim_material_found && (get_param_max(PARAM_ANIM_SPEED) != 0.0 || get_param_max(PARAM_ANIM_OFFSET) != 0.0 ||
get_param_curve(PARAM_ANIM_SPEED).is_valid() || get_param_curve(PARAM_ANIM_OFFSET).is_valid())) {
warnings.push_back(TTR("CPUParticles3D animation requires the usage of a StandardMaterial3D whose Billboard Mode is set to \"Particle Billboard\"."));
}
@@ -247,47 +247,52 @@ Vector3 CPUParticles3D::get_direction() const {
return direction;
}
-void CPUParticles3D::set_spread(float p_spread) {
+void CPUParticles3D::set_spread(real_t p_spread) {
spread = p_spread;
}
-float CPUParticles3D::get_spread() const {
+real_t CPUParticles3D::get_spread() const {
return spread;
}
-void CPUParticles3D::set_flatness(float p_flatness) {
+void CPUParticles3D::set_flatness(real_t p_flatness) {
flatness = p_flatness;
}
-float CPUParticles3D::get_flatness() const {
+real_t CPUParticles3D::get_flatness() const {
return flatness;
}
-void CPUParticles3D::set_param(Parameter p_param, float p_value) {
+void CPUParticles3D::set_param_min(Parameter p_param, real_t p_value) {
ERR_FAIL_INDEX(p_param, PARAM_MAX);
- parameters[p_param] = p_value;
+ parameters_min[p_param] = p_value;
+ if (parameters_min[p_param] > parameters_max[p_param]) {
+ set_param_max(p_param, p_value);
+ }
}
-float CPUParticles3D::get_param(Parameter p_param) const {
+real_t CPUParticles3D::get_param_min(Parameter p_param) const {
ERR_FAIL_INDEX_V(p_param, PARAM_MAX, 0);
- return parameters[p_param];
+ return parameters_min[p_param];
}
-void CPUParticles3D::set_param_randomness(Parameter p_param, float p_value) {
+void CPUParticles3D::set_param_max(Parameter p_param, real_t p_value) {
ERR_FAIL_INDEX(p_param, PARAM_MAX);
-
- randomness[p_param] = p_value;
+ parameters_max[p_param] = p_value;
+ if (parameters_min[p_param] > parameters_max[p_param]) {
+ set_param_min(p_param, p_value);
+ }
}
-float CPUParticles3D::get_param_randomness(Parameter p_param) const {
+real_t CPUParticles3D::get_param_max(Parameter p_param) const {
ERR_FAIL_INDEX_V(p_param, PARAM_MAX, 0);
- return randomness[p_param];
+ return parameters_max[p_param];
}
-static void _adjust_curve_range(const Ref<Curve> &p_curve, float p_min, float p_max) {
+static void _adjust_curve_range(const Ref<Curve> &p_curve, real_t p_min, real_t p_max) {
Ref<Curve> curve = p_curve;
if (!curve.is_valid()) {
return;
@@ -381,7 +386,7 @@ void CPUParticles3D::set_emission_shape(EmissionShape p_shape) {
emission_shape = p_shape;
}
-void CPUParticles3D::set_emission_sphere_radius(float p_radius) {
+void CPUParticles3D::set_emission_sphere_radius(real_t p_radius) {
emission_sphere_radius = p_radius;
}
@@ -401,7 +406,40 @@ void CPUParticles3D::set_emission_colors(const Vector<Color> &p_colors) {
emission_colors = p_colors;
}
-float CPUParticles3D::get_emission_sphere_radius() const {
+void CPUParticles3D::set_emission_ring_axis(Vector3 p_axis) {
+ emission_ring_axis = p_axis;
+}
+
+void CPUParticles3D::set_emission_ring_height(real_t p_height) {
+ emission_ring_height = p_height;
+}
+
+void CPUParticles3D::set_emission_ring_radius(real_t p_radius) {
+ emission_ring_radius = p_radius;
+}
+
+void CPUParticles3D::set_emission_ring_inner_radius(real_t p_radius) {
+ emission_ring_inner_radius = p_radius;
+}
+
+void CPUParticles3D::set_scale_curve_x(Ref<Curve> p_scale_curve) {
+ scale_curve_x = p_scale_curve;
+}
+
+void CPUParticles3D::set_scale_curve_y(Ref<Curve> p_scale_curve) {
+ scale_curve_y = p_scale_curve;
+}
+
+void CPUParticles3D::set_scale_curve_z(Ref<Curve> p_scale_curve) {
+ scale_curve_z = p_scale_curve;
+}
+
+void CPUParticles3D::set_split_scale(bool p_split_scale) {
+ split_scale = p_split_scale;
+ notify_property_list_changed();
+}
+
+real_t CPUParticles3D::get_emission_sphere_radius() const {
return emission_sphere_radius;
}
@@ -421,6 +459,22 @@ Vector<Color> CPUParticles3D::get_emission_colors() const {
return emission_colors;
}
+Vector3 CPUParticles3D::get_emission_ring_axis() const {
+ return emission_ring_axis;
+}
+
+real_t CPUParticles3D::get_emission_ring_height() const {
+ return emission_ring_height;
+}
+
+real_t CPUParticles3D::get_emission_ring_radius() const {
+ return emission_ring_radius;
+}
+
+real_t CPUParticles3D::get_emission_ring_inner_radius() const {
+ return emission_ring_inner_radius;
+}
+
CPUParticles3D::EmissionShape CPUParticles3D::get_emission_shape() const {
return emission_shape;
}
@@ -433,29 +487,49 @@ Vector3 CPUParticles3D::get_gravity() const {
return gravity;
}
-void CPUParticles3D::_validate_property(PropertyInfo &property) const {
- if (property.name == "color" && color_ramp.is_valid()) {
- property.usage = 0;
- }
+Ref<Curve> CPUParticles3D::get_scale_curve_x() const {
+ return scale_curve_x;
+}
+
+Ref<Curve> CPUParticles3D::get_scale_curve_y() const {
+ return scale_curve_y;
+}
+
+Ref<Curve> CPUParticles3D::get_scale_curve_z() const {
+ return scale_curve_z;
+}
+bool CPUParticles3D::get_split_scale() {
+ return split_scale;
+}
+
+void CPUParticles3D::_validate_property(PropertyInfo &property) const {
if (property.name == "emission_sphere_radius" && emission_shape != EMISSION_SHAPE_SPHERE) {
- property.usage = 0;
+ property.usage = PROPERTY_USAGE_NONE;
}
if (property.name == "emission_box_extents" && emission_shape != EMISSION_SHAPE_BOX) {
- property.usage = 0;
+ property.usage = PROPERTY_USAGE_NONE;
}
- if ((property.name == "emission_point_texture" || property.name == "emission_color_texture") && (emission_shape < EMISSION_SHAPE_POINTS)) {
- property.usage = 0;
+ if ((property.name == "emission_point_texture" || property.name == "emission_color_texture" || property.name == "emission_points") && (emission_shape != EMISSION_SHAPE_POINTS && (emission_shape != EMISSION_SHAPE_DIRECTED_POINTS))) {
+ property.usage = PROPERTY_USAGE_NONE;
}
if (property.name == "emission_normals" && emission_shape != EMISSION_SHAPE_DIRECTED_POINTS) {
- property.usage = 0;
+ property.usage = PROPERTY_USAGE_NONE;
+ }
+
+ if (property.name.begins_with("emission_ring_") && emission_shape != EMISSION_SHAPE_RING) {
+ property.usage = PROPERTY_USAGE_NONE;
}
if (property.name.begins_with("orbit_") && !particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
- property.usage = 0;
+ property.usage = PROPERTY_USAGE_NONE;
+ }
+
+ if (property.name.begins_with("scale_curve_") && !split_scale) {
+ property.usage = PROPERTY_USAGE_NONE;
}
}
@@ -466,7 +540,7 @@ static uint32_t idhash(uint32_t x) {
return x;
}
-static float rand_from_seed(uint32_t &seed) {
+static real_t rand_from_seed(uint32_t &seed) {
int k;
int s = int(seed);
if (s == 0) {
@@ -478,7 +552,7 @@ static float rand_from_seed(uint32_t &seed) {
s += 2147483647;
}
seed = uint32_t(s);
- return float(seed % uint32_t(65536)) / 65535.0;
+ return (seed % uint32_t(65536)) / 65535.0;
}
void CPUParticles3D::_update_internal() {
@@ -487,7 +561,7 @@ void CPUParticles3D::_update_internal() {
return;
}
- float delta = get_process_delta_time();
+ double delta = get_process_delta_time();
if (emitting) {
inactive_time = 0;
} else {
@@ -509,14 +583,14 @@ void CPUParticles3D::_update_internal() {
bool processed = false;
if (time == 0 && pre_process_time > 0.0) {
- float frame_time;
+ double frame_time;
if (fixed_fps > 0) {
frame_time = 1.0 / fixed_fps;
} else {
frame_time = 1.0 / 30.0;
}
- float todo = pre_process_time;
+ double todo = pre_process_time;
while (todo >= 0) {
_particles_process(frame_time);
@@ -526,16 +600,16 @@ void CPUParticles3D::_update_internal() {
}
if (fixed_fps > 0) {
- float frame_time = 1.0 / fixed_fps;
- float decr = frame_time;
+ double frame_time = 1.0 / fixed_fps;
+ double decr = frame_time;
- float ldelta = delta;
+ double ldelta = delta;
if (ldelta > 0.1) { //avoid recursive stalls if fps goes below 10
ldelta = 0.1;
} else if (ldelta <= 0.0) { //unlikely but..
ldelta = 0.001;
}
- float todo = frame_remainder + ldelta;
+ double todo = frame_remainder + ldelta;
while (todo >= frame_time) {
_particles_process(frame_time);
@@ -555,7 +629,7 @@ void CPUParticles3D::_update_internal() {
}
}
-void CPUParticles3D::_particles_process(float p_delta) {
+void CPUParticles3D::_particles_process(double p_delta) {
p_delta *= speed_scale;
int pcount = particles.size();
@@ -563,7 +637,7 @@ void CPUParticles3D::_particles_process(float p_delta) {
Particle *parray = w;
- float prev_time = time;
+ double prev_time = time;
time += p_delta;
if (time > lifetime) {
time = Math::fmod(time, lifetime);
@@ -574,14 +648,14 @@ void CPUParticles3D::_particles_process(float p_delta) {
}
}
- Transform emission_xform;
+ Transform3D emission_xform;
Basis velocity_xform;
if (!local_coords) {
emission_xform = get_global_transform();
velocity_xform = emission_xform.basis;
}
- float system_phase = time / lifetime;
+ double system_phase = time / lifetime;
for (int i = 0; i < pcount; i++) {
Particle &p = parray[i];
@@ -590,12 +664,12 @@ void CPUParticles3D::_particles_process(float p_delta) {
continue;
}
- float local_delta = p_delta;
+ double local_delta = p_delta;
// The phase is a ratio between 0 (birth) and 1 (end of life) for each particle.
// While we use time in tests later on, for randomness we use the phase as done in the
// original shader code, and we later multiply by lifetime to get the time.
- float restart_phase = float(i) / float(pcount);
+ double restart_phase = double(i) / double(pcount);
if (randomness_ratio > 0.0) {
uint32_t seed = cycle;
@@ -604,12 +678,12 @@ void CPUParticles3D::_particles_process(float p_delta) {
}
seed *= uint32_t(pcount);
seed += uint32_t(i);
- float random = float(idhash(seed) % uint32_t(65536)) / 65536.0;
- restart_phase += randomness_ratio * random * 1.0 / float(pcount);
+ double random = double(idhash(seed) % uint32_t(65536)) / 65536.0;
+ restart_phase += randomness_ratio * random * 1.0 / double(pcount);
}
restart_phase *= (1.0 - explosiveness_ratio);
- float restart_time = restart_phase * lifetime;
+ double restart_time = restart_phase * lifetime;
bool restart = false;
if (time > prev_time) {
@@ -650,17 +724,17 @@ void CPUParticles3D::_particles_process(float p_delta) {
}
p.active = true;
- /*float tex_linear_velocity = 0;
+ /*real_t tex_linear_velocity = 0;
if (curve_parameters[PARAM_INITIAL_LINEAR_VELOCITY].is_valid()) {
tex_linear_velocity = curve_parameters[PARAM_INITIAL_LINEAR_VELOCITY]->interpolate(0);
}*/
- float tex_angle = 0.0;
+ real_t tex_angle = 0.0;
if (curve_parameters[PARAM_ANGLE].is_valid()) {
tex_angle = curve_parameters[PARAM_ANGLE]->interpolate(tv);
}
- float tex_anim_offset = 0.0;
+ real_t tex_anim_offset = 0.0;
if (curve_parameters[PARAM_ANGLE].is_valid()) {
tex_anim_offset = curve_parameters[PARAM_ANGLE]->interpolate(tv);
}
@@ -673,27 +747,40 @@ void CPUParticles3D::_particles_process(float p_delta) {
p.anim_offset_rand = Math::randf();
if (particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
- float angle1_rad = Math::atan2(direction.y, direction.x) + Math::deg2rad((Math::randf() * 2.0 - 1.0) * spread);
+ real_t angle1_rad = Math::atan2(direction.y, direction.x) + Math::deg2rad((Math::randf() * 2.0 - 1.0) * spread);
Vector3 rot = Vector3(Math::cos(angle1_rad), Math::sin(angle1_rad), 0.0);
- p.velocity = rot * parameters[PARAM_INITIAL_LINEAR_VELOCITY] * Math::lerp(1.0f, float(Math::randf()), randomness[PARAM_INITIAL_LINEAR_VELOCITY]);
+ p.velocity = rot * Math::lerp(parameters_min[PARAM_INITIAL_LINEAR_VELOCITY], parameters_max[PARAM_INITIAL_LINEAR_VELOCITY], Math::randf());
} else {
//initiate velocity spread in 3D
- float angle1_rad = Math::atan2(direction.x, direction.z) + Math::deg2rad((Math::randf() * 2.0 - 1.0) * spread);
- float angle2_rad = Math::atan2(direction.y, Math::abs(direction.z)) + Math::deg2rad((Math::randf() * 2.0 - 1.0) * (1.0 - flatness) * spread);
+ real_t angle1_rad = Math::deg2rad((Math::randf() * (real_t)2.0 - (real_t)1.0) * spread);
+ real_t angle2_rad = Math::deg2rad((Math::randf() * (real_t)2.0 - (real_t)1.0) * ((real_t)1.0 - flatness) * spread);
Vector3 direction_xz = Vector3(Math::sin(angle1_rad), 0, Math::cos(angle1_rad));
Vector3 direction_yz = Vector3(0, Math::sin(angle2_rad), Math::cos(angle2_rad));
- direction_yz.z = direction_yz.z / MAX(0.0001, Math::sqrt(ABS(direction_yz.z))); //better uniform distribution
- Vector3 direction = Vector3(direction_xz.x * direction_yz.z, direction_yz.y, direction_xz.z * direction_yz.z);
- direction.normalize();
- p.velocity = direction * parameters[PARAM_INITIAL_LINEAR_VELOCITY] * Math::lerp(1.0f, float(Math::randf()), randomness[PARAM_INITIAL_LINEAR_VELOCITY]);
+ Vector3 spread_direction = Vector3(direction_xz.x * direction_yz.z, direction_yz.y, direction_xz.z * direction_yz.z);
+ Vector3 direction_nrm = direction;
+ if (direction_nrm.length_squared() > 0) {
+ direction_nrm.normalize();
+ } else {
+ direction_nrm = Vector3(0, 0, 1);
+ }
+ // rotate spread to direction
+ Vector3 binormal = Vector3(0.0, 1.0, 0.0).cross(direction_nrm);
+ if (binormal.length_squared() < 0.00000001) {
+ // direction is parallel to Y. Choose Z as the binormal.
+ binormal = Vector3(0.0, 0.0, 1.0);
+ }
+ binormal.normalize();
+ Vector3 normal = binormal.cross(direction_nrm);
+ spread_direction = binormal * spread_direction.x + normal * spread_direction.y + direction_nrm * spread_direction.z;
+ p.velocity = spread_direction * Math::lerp(parameters_min[PARAM_INITIAL_LINEAR_VELOCITY], parameters_max[PARAM_INITIAL_LINEAR_VELOCITY], float(Math::randf()));
}
- float base_angle = (parameters[PARAM_ANGLE] + tex_angle) * Math::lerp(1.0f, p.angle_rand, randomness[PARAM_ANGLE]);
+ real_t base_angle = tex_angle * Math::lerp(parameters_min[PARAM_ANGLE], parameters_max[PARAM_ANGLE], p.angle_rand);
p.custom[0] = Math::deg2rad(base_angle); //angle
p.custom[1] = 0.0; //phase
- p.custom[2] = (parameters[PARAM_ANIM_OFFSET] + tex_anim_offset) * Math::lerp(1.0f, p.anim_offset_rand, randomness[PARAM_ANIM_OFFSET]); //animation offset (0-1)
- p.transform = Transform();
+ p.custom[2] = tex_anim_offset * Math::lerp(parameters_min[PARAM_ANIM_OFFSET], parameters_max[PARAM_ANIM_OFFSET], p.anim_offset_rand); //animation offset (0-1)
+ p.transform = Transform3D();
p.time = 0;
p.lifetime = lifetime * (1.0 - Math::randf() * lifetime_randomness);
p.base_color = Color(1, 1, 1, 1);
@@ -750,6 +837,21 @@ void CPUParticles3D::_particles_process(float p_delta) {
p.base_color = emission_colors.get(random_idx);
}
} break;
+ case EMISSION_SHAPE_RING: {
+ real_t ring_random_angle = Math::randf() * Math_TAU;
+ real_t ring_random_radius = Math::randf() * (emission_ring_radius - emission_ring_inner_radius) + emission_ring_inner_radius;
+ Vector3 axis = emission_ring_axis.normalized();
+ Vector3 ortho_axis = Vector3();
+ if (axis == Vector3(1.0, 0.0, 0.0)) {
+ ortho_axis = Vector3(0.0, 1.0, 0.0).cross(axis);
+ } else {
+ ortho_axis = Vector3(1.0, 0.0, 0.0).cross(axis);
+ }
+ ortho_axis = ortho_axis.normalized();
+ ortho_axis.rotate(axis, ring_random_angle);
+ ortho_axis = ortho_axis.normalized();
+ p.transform.origin = ortho_axis * ring_random_radius + (Math::randf() * emission_ring_height - emission_ring_height / 2.0) * axis;
+ } break;
case EMISSION_SHAPE_MAX: { // Max value for validity check.
break;
}
@@ -777,53 +879,53 @@ void CPUParticles3D::_particles_process(float p_delta) {
p.custom[1] = p.time / lifetime;
tv = p.time / p.lifetime;
- float tex_linear_velocity = 0.0;
+ real_t tex_linear_velocity = 0.0;
if (curve_parameters[PARAM_INITIAL_LINEAR_VELOCITY].is_valid()) {
tex_linear_velocity = curve_parameters[PARAM_INITIAL_LINEAR_VELOCITY]->interpolate(tv);
}
- float tex_orbit_velocity = 0.0;
+ real_t tex_orbit_velocity = 0.0;
if (particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
if (curve_parameters[PARAM_ORBIT_VELOCITY].is_valid()) {
tex_orbit_velocity = curve_parameters[PARAM_ORBIT_VELOCITY]->interpolate(tv);
}
}
- float tex_angular_velocity = 0.0;
+ real_t tex_angular_velocity = 0.0;
if (curve_parameters[PARAM_ANGULAR_VELOCITY].is_valid()) {
tex_angular_velocity = curve_parameters[PARAM_ANGULAR_VELOCITY]->interpolate(tv);
}
- float tex_linear_accel = 0.0;
+ real_t tex_linear_accel = 0.0;
if (curve_parameters[PARAM_LINEAR_ACCEL].is_valid()) {
tex_linear_accel = curve_parameters[PARAM_LINEAR_ACCEL]->interpolate(tv);
}
- float tex_tangential_accel = 0.0;
+ real_t tex_tangential_accel = 0.0;
if (curve_parameters[PARAM_TANGENTIAL_ACCEL].is_valid()) {
tex_tangential_accel = curve_parameters[PARAM_TANGENTIAL_ACCEL]->interpolate(tv);
}
- float tex_radial_accel = 0.0;
+ real_t tex_radial_accel = 0.0;
if (curve_parameters[PARAM_RADIAL_ACCEL].is_valid()) {
tex_radial_accel = curve_parameters[PARAM_RADIAL_ACCEL]->interpolate(tv);
}
- float tex_damping = 0.0;
+ real_t tex_damping = 0.0;
if (curve_parameters[PARAM_DAMPING].is_valid()) {
tex_damping = curve_parameters[PARAM_DAMPING]->interpolate(tv);
}
- float tex_angle = 0.0;
+ real_t tex_angle = 0.0;
if (curve_parameters[PARAM_ANGLE].is_valid()) {
tex_angle = curve_parameters[PARAM_ANGLE]->interpolate(tv);
}
- float tex_anim_speed = 0.0;
+ real_t tex_anim_speed = 0.0;
if (curve_parameters[PARAM_ANIM_SPEED].is_valid()) {
tex_anim_speed = curve_parameters[PARAM_ANIM_SPEED]->interpolate(tv);
}
- float tex_anim_offset = 0.0;
+ real_t tex_anim_offset = 0.0;
if (curve_parameters[PARAM_ANIM_OFFSET].is_valid()) {
tex_anim_offset = curve_parameters[PARAM_ANIM_OFFSET]->interpolate(tv);
}
@@ -834,28 +936,27 @@ void CPUParticles3D::_particles_process(float p_delta) {
position.z = 0.0;
}
//apply linear acceleration
- force += p.velocity.length() > 0.0 ? p.velocity.normalized() * (parameters[PARAM_LINEAR_ACCEL] + tex_linear_accel) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_LINEAR_ACCEL]) : Vector3();
+ force += p.velocity.length() > 0.0 ? p.velocity.normalized() * tex_linear_accel * Math::lerp(parameters_min[PARAM_LINEAR_ACCEL], parameters_max[PARAM_LINEAR_ACCEL], rand_from_seed(alt_seed)) : Vector3();
//apply radial acceleration
Vector3 org = emission_xform.origin;
Vector3 diff = position - org;
- force += diff.length() > 0.0 ? diff.normalized() * (parameters[PARAM_RADIAL_ACCEL] + tex_radial_accel) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_RADIAL_ACCEL]) : Vector3();
- //apply tangential acceleration;
+ force += diff.length() > 0.0 ? diff.normalized() * (tex_radial_accel)*Math::lerp(parameters_min[PARAM_RADIAL_ACCEL], parameters_max[PARAM_RADIAL_ACCEL], rand_from_seed(alt_seed)) : Vector3();
if (particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
Vector2 yx = Vector2(diff.y, diff.x);
Vector2 yx2 = (yx * Vector2(-1.0, 1.0)).normalized();
- force += yx.length() > 0.0 ? Vector3(yx2.x, yx2.y, 0.0) * ((parameters[PARAM_TANGENTIAL_ACCEL] + tex_tangential_accel) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_TANGENTIAL_ACCEL])) : Vector3();
+ force += yx.length() > 0.0 ? Vector3(yx2.x, yx2.y, 0.0) * (tex_tangential_accel * Math::lerp(parameters_min[PARAM_TANGENTIAL_ACCEL], parameters_max[PARAM_TANGENTIAL_ACCEL], rand_from_seed(alt_seed))) : Vector3();
} else {
Vector3 crossDiff = diff.normalized().cross(gravity.normalized());
- force += crossDiff.length() > 0.0 ? crossDiff.normalized() * ((parameters[PARAM_TANGENTIAL_ACCEL] + tex_tangential_accel) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_TANGENTIAL_ACCEL])) : Vector3();
+ force += crossDiff.length() > 0.0 ? crossDiff.normalized() * (tex_tangential_accel * Math::lerp(parameters_min[PARAM_TANGENTIAL_ACCEL], parameters_max[PARAM_TANGENTIAL_ACCEL], rand_from_seed(alt_seed))) : Vector3();
}
//apply attractor forces
p.velocity += force * local_delta;
//orbit velocity
if (particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
- float orbit_amount = (parameters[PARAM_ORBIT_VELOCITY] + tex_orbit_velocity) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_ORBIT_VELOCITY]);
+ real_t orbit_amount = tex_orbit_velocity * Math::lerp(parameters_min[PARAM_ORBIT_VELOCITY], parameters_max[PARAM_ORBIT_VELOCITY], rand_from_seed(alt_seed));
if (orbit_amount != 0.0) {
- float ang = orbit_amount * local_delta * Math_TAU;
+ real_t ang = orbit_amount * local_delta * Math_TAU;
// Not sure why the ParticlesMaterial code uses a clockwise rotation matrix,
// but we use -ang here to reproduce its behavior.
Transform2D rot = Transform2D(-ang, Vector2());
@@ -867,9 +968,10 @@ void CPUParticles3D::_particles_process(float p_delta) {
if (curve_parameters[PARAM_INITIAL_LINEAR_VELOCITY].is_valid()) {
p.velocity = p.velocity.normalized() * tex_linear_velocity;
}
- if (parameters[PARAM_DAMPING] + tex_damping > 0.0) {
- float v = p.velocity.length();
- float damp = (parameters[PARAM_DAMPING] + tex_damping) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_DAMPING]);
+
+ if (parameters_max[PARAM_DAMPING] + tex_damping > 0.0) {
+ real_t v = p.velocity.length();
+ real_t damp = tex_damping * Math::lerp(parameters_min[PARAM_DAMPING], parameters_max[PARAM_DAMPING], rand_from_seed(alt_seed));
v -= damp * local_delta;
if (v < 0.0) {
p.velocity = Vector3();
@@ -877,27 +979,48 @@ void CPUParticles3D::_particles_process(float p_delta) {
p.velocity = p.velocity.normalized() * v;
}
}
- float base_angle = (parameters[PARAM_ANGLE] + tex_angle) * Math::lerp(1.0f, p.angle_rand, randomness[PARAM_ANGLE]);
- base_angle += p.custom[1] * lifetime * (parameters[PARAM_ANGULAR_VELOCITY] + tex_angular_velocity) * Math::lerp(1.0f, rand_from_seed(alt_seed) * 2.0f - 1.0f, randomness[PARAM_ANGULAR_VELOCITY]);
+ real_t base_angle = (tex_angle)*Math::lerp(parameters_min[PARAM_ANGLE], parameters_max[PARAM_ANGLE], p.angle_rand);
+ base_angle += p.custom[1] * lifetime * tex_angular_velocity * Math::lerp(parameters_min[PARAM_ANGULAR_VELOCITY], parameters_max[PARAM_ANGULAR_VELOCITY], rand_from_seed(alt_seed));
p.custom[0] = Math::deg2rad(base_angle); //angle
- p.custom[2] = (parameters[PARAM_ANIM_OFFSET] + tex_anim_offset) * Math::lerp(1.0f, p.anim_offset_rand, randomness[PARAM_ANIM_OFFSET]) + p.custom[1] * (parameters[PARAM_ANIM_SPEED] + tex_anim_speed) * Math::lerp(1.0f, rand_from_seed(alt_seed), randomness[PARAM_ANIM_SPEED]); //angle
+ p.custom[2] = tex_anim_offset * Math::lerp(parameters_min[PARAM_ANIM_OFFSET], parameters_max[PARAM_ANIM_OFFSET], p.anim_offset_rand) + p.custom[1] * tex_anim_speed * Math::lerp(parameters_min[PARAM_ANIM_SPEED], parameters_max[PARAM_ANIM_SPEED], rand_from_seed(alt_seed)); //angle
}
//apply color
//apply hue rotation
- float tex_scale = 1.0;
- if (curve_parameters[PARAM_SCALE].is_valid()) {
- tex_scale = curve_parameters[PARAM_SCALE]->interpolate(tv);
+ Vector3 tex_scale = Vector3(1.0, 1.0, 1.0);
+ if (split_scale) {
+ if (scale_curve_x.is_valid()) {
+ tex_scale.x = scale_curve_x->interpolate(tv);
+ } else {
+ tex_scale.x = 1.0;
+ }
+ if (scale_curve_y.is_valid()) {
+ tex_scale.y = scale_curve_y->interpolate(tv);
+ } else {
+ tex_scale.y = 1.0;
+ }
+ if (scale_curve_z.is_valid()) {
+ tex_scale.z = scale_curve_z->interpolate(tv);
+ } else {
+ tex_scale.z = 1.0;
+ }
+ } else {
+ if (curve_parameters[PARAM_SCALE].is_valid()) {
+ float tmp_scale = curve_parameters[PARAM_SCALE]->interpolate(tv);
+ tex_scale.x = tmp_scale;
+ tex_scale.y = tmp_scale;
+ tex_scale.z = tmp_scale;
+ }
}
- float tex_hue_variation = 0.0;
+ real_t tex_hue_variation = 0.0;
if (curve_parameters[PARAM_HUE_VARIATION].is_valid()) {
tex_hue_variation = curve_parameters[PARAM_HUE_VARIATION]->interpolate(tv);
}
- float hue_rot_angle = (parameters[PARAM_HUE_VARIATION] + tex_hue_variation) * Math_TAU * Math::lerp(1.0f, p.hue_rot_rand * 2.0f - 1.0f, randomness[PARAM_HUE_VARIATION]);
- float hue_rot_c = Math::cos(hue_rot_angle);
- float hue_rot_s = Math::sin(hue_rot_angle);
+ real_t hue_rot_angle = (tex_hue_variation)*Math_TAU * Math::lerp(parameters_min[PARAM_HUE_VARIATION], parameters_max[PARAM_HUE_VARIATION], p.hue_rot_rand);
+ real_t hue_rot_c = Math::cos(hue_rot_angle);
+ real_t hue_rot_s = Math::sin(hue_rot_angle);
Basis hue_rot_mat;
{
@@ -965,13 +1088,21 @@ void CPUParticles3D::_particles_process(float p_delta) {
}
}
+ p.transform.basis = p.transform.basis.orthonormalized();
//scale by scale
- float base_scale = tex_scale * Math::lerp(parameters[PARAM_SCALE], 1.0f, p.scale_rand * randomness[PARAM_SCALE]);
- if (base_scale < 0.000001) {
- base_scale = 0.000001;
+
+ Vector3 base_scale = tex_scale * Math::lerp(parameters_min[PARAM_SCALE], parameters_max[PARAM_SCALE], p.scale_rand);
+ if (base_scale.x < CMP_EPSILON) {
+ base_scale.x = CMP_EPSILON;
+ }
+ if (base_scale.y < CMP_EPSILON) {
+ base_scale.y = CMP_EPSILON;
+ }
+ if (base_scale.z < CMP_EPSILON) {
+ base_scale.z = CMP_EPSILON;
}
- p.transform.basis.scale(Vector3(1, 1, 1) * base_scale);
+ p.transform.basis.scale(base_scale);
if (particle_flags[PARTICLE_FLAG_DISABLE_Z]) {
p.velocity.z = 0.0;
@@ -1007,7 +1138,7 @@ void CPUParticles3D::_update_particle_data_buffer() {
sorter.sort(order, pc);
} else if (draw_order == DRAW_ORDER_VIEW_DEPTH) {
ERR_FAIL_NULL(get_viewport());
- Camera3D *c = get_viewport()->get_camera();
+ Camera3D *c = get_viewport()->get_camera_3d();
if (c) {
Vector3 dir = c->get_global_transform().basis.get_axis(2); //far away to close
@@ -1030,7 +1161,7 @@ void CPUParticles3D::_update_particle_data_buffer() {
for (int i = 0; i < pc; i++) {
int idx = order ? order[i] : i;
- Transform t = r[idx].transform;
+ Transform3D t = r[idx].transform;
if (!local_coords) {
t = inv_emission_transform * t;
@@ -1050,7 +1181,7 @@ void CPUParticles3D::_update_particle_data_buffer() {
ptr[10] = t.basis.elements[2][2];
ptr[11] = t.origin.z;
} else {
- memset(ptr, 0, sizeof(float) * 12);
+ memset(ptr, 0, sizeof(Transform3D));
}
Color c = r[idx].color;
@@ -1139,7 +1270,7 @@ void CPUParticles3D::_notification(int p_what) {
float *ptr = w;
for (int i = 0; i < pc; i++) {
- Transform t = inv_emission_transform * r[i].transform;
+ Transform3D t = inv_emission_transform * r[i].transform;
if (r[i].active) {
ptr[0] = t.basis.elements[0][0];
@@ -1207,18 +1338,25 @@ void CPUParticles3D::convert_from_particles(Node *p_particles) {
set_emission_shape(EmissionShape(material->get_emission_shape()));
set_emission_sphere_radius(material->get_emission_sphere_radius());
set_emission_box_extents(material->get_emission_box_extents());
+ Ref<CurveXYZTexture> scale3D = material->get_param_texture(ParticlesMaterial::PARAM_SCALE);
+ if (scale3D.is_valid()) {
+ split_scale = true;
+ scale_curve_x = scale3D->get_curve_x();
+ scale_curve_y = scale3D->get_curve_y();
+ scale_curve_z = scale3D->get_curve_z();
+ }
set_gravity(material->get_gravity());
set_lifetime_randomness(material->get_lifetime_randomness());
#define CONVERT_PARAM(m_param) \
- set_param(m_param, material->get_param(ParticlesMaterial::m_param)); \
+ set_param_min(m_param, material->get_param_min(ParticlesMaterial::m_param)); \
{ \
Ref<CurveTexture> ctex = material->get_param_texture(ParticlesMaterial::m_param); \
if (ctex.is_valid()) \
set_param_curve(m_param, ctex->get_curve()); \
} \
- set_param_randomness(m_param, material->get_param_randomness(ParticlesMaterial::m_param));
+ set_param_max(m_param, material->get_param_max(ParticlesMaterial::m_param));
CONVERT_PARAM(PARAM_INITIAL_LINEAR_VELOCITY);
CONVERT_PARAM(PARAM_ANGULAR_VELOCITY);
@@ -1273,11 +1411,11 @@ void CPUParticles3D::_bind_methods() {
ClassDB::bind_method(D_METHOD("restart"), &CPUParticles3D::restart);
ADD_PROPERTY(PropertyInfo(Variant::BOOL, "emitting"), "set_emitting", "is_emitting");
- ADD_PROPERTY(PropertyInfo(Variant::INT, "amount", PROPERTY_HINT_EXP_RANGE, "1,1000000,1"), "set_amount", "get_amount");
+ ADD_PROPERTY(PropertyInfo(Variant::INT, "amount", PROPERTY_HINT_RANGE, "1,1000000,1,exp"), "set_amount", "get_amount");
ADD_GROUP("Time", "");
- ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "lifetime", PROPERTY_HINT_EXP_RANGE, "0.01,600.0,0.01,or_greater"), "set_lifetime", "get_lifetime");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "lifetime", PROPERTY_HINT_RANGE, "0.01,600.0,0.01,or_greater,exp"), "set_lifetime", "get_lifetime");
ADD_PROPERTY(PropertyInfo(Variant::BOOL, "one_shot"), "set_one_shot", "get_one_shot");
- ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "preprocess", PROPERTY_HINT_EXP_RANGE, "0.00,600.0,0.01"), "set_pre_process_time", "get_pre_process_time");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "preprocess", PROPERTY_HINT_RANGE, "0.00,600.0,0.01,exp"), "set_pre_process_time", "get_pre_process_time");
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "speed_scale", PROPERTY_HINT_RANGE, "0,64,0.01"), "set_speed_scale", "get_speed_scale");
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "explosiveness", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_explosiveness_ratio", "get_explosiveness_ratio");
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "randomness", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_randomness_ratio", "get_randomness_ratio");
@@ -1304,11 +1442,11 @@ void CPUParticles3D::_bind_methods() {
ClassDB::bind_method(D_METHOD("set_flatness", "amount"), &CPUParticles3D::set_flatness);
ClassDB::bind_method(D_METHOD("get_flatness"), &CPUParticles3D::get_flatness);
- ClassDB::bind_method(D_METHOD("set_param", "param", "value"), &CPUParticles3D::set_param);
- ClassDB::bind_method(D_METHOD("get_param", "param"), &CPUParticles3D::get_param);
+ ClassDB::bind_method(D_METHOD("set_param_min", "param", "value"), &CPUParticles3D::set_param_min);
+ ClassDB::bind_method(D_METHOD("get_param_min", "param"), &CPUParticles3D::get_param_min);
- ClassDB::bind_method(D_METHOD("set_param_randomness", "param", "randomness"), &CPUParticles3D::set_param_randomness);
- ClassDB::bind_method(D_METHOD("get_param_randomness", "param"), &CPUParticles3D::get_param_randomness);
+ ClassDB::bind_method(D_METHOD("set_param_max", "param", "value"), &CPUParticles3D::set_param_max);
+ ClassDB::bind_method(D_METHOD("get_param_max", "param"), &CPUParticles3D::get_param_max);
ClassDB::bind_method(D_METHOD("set_param_curve", "param", "curve"), &CPUParticles3D::set_param_curve);
ClassDB::bind_method(D_METHOD("get_param_curve", "param"), &CPUParticles3D::get_param_curve);
@@ -1340,18 +1478,46 @@ void CPUParticles3D::_bind_methods() {
ClassDB::bind_method(D_METHOD("set_emission_colors", "array"), &CPUParticles3D::set_emission_colors);
ClassDB::bind_method(D_METHOD("get_emission_colors"), &CPUParticles3D::get_emission_colors);
+ ClassDB::bind_method(D_METHOD("set_emission_ring_axis", "axis"), &CPUParticles3D::set_emission_ring_axis);
+ ClassDB::bind_method(D_METHOD("get_emission_ring_axis"), &CPUParticles3D::get_emission_ring_axis);
+
+ ClassDB::bind_method(D_METHOD("set_emission_ring_height", "height"), &CPUParticles3D::set_emission_ring_height);
+ ClassDB::bind_method(D_METHOD("get_emission_ring_height"), &CPUParticles3D::get_emission_ring_height);
+
+ ClassDB::bind_method(D_METHOD("set_emission_ring_radius", "radius"), &CPUParticles3D::set_emission_ring_radius);
+ ClassDB::bind_method(D_METHOD("get_emission_ring_radius"), &CPUParticles3D::get_emission_ring_radius);
+
+ ClassDB::bind_method(D_METHOD("set_emission_ring_inner_radius", "inner_radius"), &CPUParticles3D::set_emission_ring_inner_radius);
+ ClassDB::bind_method(D_METHOD("get_emission_ring_inner_radius"), &CPUParticles3D::get_emission_ring_inner_radius);
+
ClassDB::bind_method(D_METHOD("get_gravity"), &CPUParticles3D::get_gravity);
ClassDB::bind_method(D_METHOD("set_gravity", "accel_vec"), &CPUParticles3D::set_gravity);
+ ClassDB::bind_method(D_METHOD("get_split_scale"), &CPUParticles3D::get_split_scale);
+ ClassDB::bind_method(D_METHOD("set_split_scale", "split_scale"), &CPUParticles3D::set_split_scale);
+
+ ClassDB::bind_method(D_METHOD("get_scale_curve_x"), &CPUParticles3D::get_scale_curve_x);
+ ClassDB::bind_method(D_METHOD("set_scale_curve_x", "scale_curve"), &CPUParticles3D::set_scale_curve_x);
+
+ ClassDB::bind_method(D_METHOD("get_scale_curve_y"), &CPUParticles3D::get_scale_curve_y);
+ ClassDB::bind_method(D_METHOD("set_scale_curve_y", "scale_curve"), &CPUParticles3D::set_scale_curve_y);
+
+ ClassDB::bind_method(D_METHOD("get_scale_curve_z"), &CPUParticles3D::get_scale_curve_z);
+ ClassDB::bind_method(D_METHOD("set_scale_curve_z", "scale_curve"), &CPUParticles3D::set_scale_curve_z);
+
ClassDB::bind_method(D_METHOD("convert_from_particles", "particles"), &CPUParticles3D::convert_from_particles);
ADD_GROUP("Emission Shape", "emission_");
- ADD_PROPERTY(PropertyInfo(Variant::INT, "emission_shape", PROPERTY_HINT_ENUM, "Point,Sphere,Box,Points,Directed Points", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED), "set_emission_shape", "get_emission_shape");
+ ADD_PROPERTY(PropertyInfo(Variant::INT, "emission_shape", PROPERTY_HINT_ENUM, "Point,Sphere,Box,Points,Directed Points,Ring", PROPERTY_USAGE_DEFAULT | PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED), "set_emission_shape", "get_emission_shape");
ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "emission_sphere_radius", PROPERTY_HINT_RANGE, "0.01,128,0.01"), "set_emission_sphere_radius", "get_emission_sphere_radius");
ADD_PROPERTY(PropertyInfo(Variant::VECTOR3, "emission_box_extents"), "set_emission_box_extents", "get_emission_box_extents");
ADD_PROPERTY(PropertyInfo(Variant::PACKED_VECTOR3_ARRAY, "emission_points"), "set_emission_points", "get_emission_points");
ADD_PROPERTY(PropertyInfo(Variant::PACKED_VECTOR3_ARRAY, "emission_normals"), "set_emission_normals", "get_emission_normals");
ADD_PROPERTY(PropertyInfo(Variant::PACKED_COLOR_ARRAY, "emission_colors"), "set_emission_colors", "get_emission_colors");
+ ADD_PROPERTY(PropertyInfo(Variant::VECTOR3, "emission_ring_axis"), "set_emission_ring_axis", "get_emission_ring_axis");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "emission_ring_height"), "set_emission_ring_height", "get_emission_ring_height");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "emission_ring_radius"), "set_emission_ring_radius", "get_emission_ring_radius");
+ ADD_PROPERTY(PropertyInfo(Variant::FLOAT, "emission_ring_inner_radius"), "set_emission_ring_inner_radius", "get_emission_ring_inner_radius");
ADD_GROUP("Particle Flags", "particle_flag_");
ADD_PROPERTYI(PropertyInfo(Variant::BOOL, "particle_flag_align_y"), "set_particle_flag", "get_particle_flag", PARTICLE_FLAG_ALIGN_Y_TO_VELOCITY);
ADD_PROPERTYI(PropertyInfo(Variant::BOOL, "particle_flag_rotate_y"), "set_particle_flag", "get_particle_flag", PARTICLE_FLAG_ROTATE_Y);
@@ -1363,54 +1529,58 @@ void CPUParticles3D::_bind_methods() {
ADD_GROUP("Gravity", "");
ADD_PROPERTY(PropertyInfo(Variant::VECTOR3, "gravity"), "set_gravity", "get_gravity");
ADD_GROUP("Initial Velocity", "initial_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "initial_velocity", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param", "get_param", PARAM_INITIAL_LINEAR_VELOCITY);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "initial_velocity_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_INITIAL_LINEAR_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "initial_velocity_min", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param_min", "get_param_min", PARAM_INITIAL_LINEAR_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "initial_velocity_max", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param_max", "get_param_max", PARAM_INITIAL_LINEAR_VELOCITY);
ADD_GROUP("Angular Velocity", "angular_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angular_velocity", PROPERTY_HINT_RANGE, "-720,720,0.01,or_lesser,or_greater"), "set_param", "get_param", PARAM_ANGULAR_VELOCITY);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angular_velocity_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_ANGULAR_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angular_velocity_min", PROPERTY_HINT_RANGE, "-720,720,0.01,or_lesser,or_greater"), "set_param_min", "get_param_min", PARAM_ANGULAR_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angular_velocity_max", PROPERTY_HINT_RANGE, "-720,720,0.01,or_lesser,or_greater"), "set_param_max", "get_param_max", PARAM_ANGULAR_VELOCITY);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "angular_velocity_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_ANGULAR_VELOCITY);
ADD_GROUP("Orbit Velocity", "orbit_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "orbit_velocity", PROPERTY_HINT_RANGE, "-1000,1000,0.01,or_lesser,or_greater"), "set_param", "get_param", PARAM_ORBIT_VELOCITY);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "orbit_velocity_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_ORBIT_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "orbit_velocity_min", PROPERTY_HINT_RANGE, "-1000,1000,0.01,or_lesser,or_greater"), "set_param_min", "get_param_min", PARAM_ORBIT_VELOCITY);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "orbit_velocity_max", PROPERTY_HINT_RANGE, "-1000,1000,0.01,or_lesser,or_greater"), "set_param_max", "get_param_max", PARAM_ORBIT_VELOCITY);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "orbit_velocity_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_ORBIT_VELOCITY);
ADD_GROUP("Linear Accel", "linear_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "linear_accel", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param", "get_param", PARAM_LINEAR_ACCEL);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "linear_accel_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_LINEAR_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "linear_accel_min", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_min", "get_param_min", PARAM_LINEAR_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "linear_accel_max", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_max", "get_param_max", PARAM_LINEAR_ACCEL);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "linear_accel_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_LINEAR_ACCEL);
ADD_GROUP("Radial Accel", "radial_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "radial_accel", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param", "get_param", PARAM_RADIAL_ACCEL);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "radial_accel_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_RADIAL_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "radial_accel_min", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_min", "get_param_min", PARAM_RADIAL_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "radial_accel_max", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_max", "get_param_max", PARAM_RADIAL_ACCEL);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "radial_accel_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_RADIAL_ACCEL);
ADD_GROUP("Tangential Accel", "tangential_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "tangential_accel", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param", "get_param", PARAM_TANGENTIAL_ACCEL);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "tangential_accel_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_TANGENTIAL_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "tangential_accel_min", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_min", "get_param_min", PARAM_TANGENTIAL_ACCEL);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "tangential_accel_max", PROPERTY_HINT_RANGE, "-100,100,0.01,or_lesser,or_greater"), "set_param_max", "get_param_max", PARAM_TANGENTIAL_ACCEL);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "tangential_accel_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_TANGENTIAL_ACCEL);
ADD_GROUP("Damping", "");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "damping", PROPERTY_HINT_RANGE, "0,100,0.01"), "set_param", "get_param", PARAM_DAMPING);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "damping_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_DAMPING);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "damping_min", PROPERTY_HINT_RANGE, "0,100,0.01"), "set_param_min", "get_param_min", PARAM_DAMPING);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "damping_max", PROPERTY_HINT_RANGE, "0,100,0.01"), "set_param_max", "get_param_max", PARAM_DAMPING);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "damping_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_DAMPING);
ADD_GROUP("Angle", "");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angle", PROPERTY_HINT_RANGE, "-720,720,0.1,or_lesser,or_greater"), "set_param", "get_param", PARAM_ANGLE);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angle_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_ANGLE);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angle_min", PROPERTY_HINT_RANGE, "-720,720,0.1,or_lesser,or_greater,degrees"), "set_param_min", "get_param_min", PARAM_ANGLE);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "angle_max", PROPERTY_HINT_RANGE, "-720,720,0.1,or_lesser,or_greater,degrees"), "set_param_max", "get_param_max", PARAM_ANGLE);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "angle_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_ANGLE);
ADD_GROUP("Scale", "");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "scale_amount", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param", "get_param", PARAM_SCALE);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "scale_amount_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_SCALE);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "scale_amount_min", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param_min", "get_param_min", PARAM_SCALE);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "scale_amount_max", PROPERTY_HINT_RANGE, "0,1000,0.01,or_greater"), "set_param_max", "get_param_max", PARAM_SCALE);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "scale_amount_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_SCALE);
+ ADD_PROPERTY(PropertyInfo(Variant::BOOL, "split_scale"), "set_split_scale", "get_split_scale");
+ ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "scale_curve_x", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_scale_curve_x", "get_scale_curve_x");
+ ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "scale_curve_y", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_scale_curve_y", "get_scale_curve_y");
+ ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "scale_curve_z", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_scale_curve_z", "get_scale_curve_z");
ADD_GROUP("Color", "");
ADD_PROPERTY(PropertyInfo(Variant::COLOR, "color"), "set_color", "get_color");
ADD_PROPERTY(PropertyInfo(Variant::OBJECT, "color_ramp", PROPERTY_HINT_RESOURCE_TYPE, "Gradient"), "set_color_ramp", "get_color_ramp");
ADD_GROUP("Hue Variation", "hue_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "hue_variation", PROPERTY_HINT_RANGE, "-1,1,0.01"), "set_param", "get_param", PARAM_HUE_VARIATION);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "hue_variation_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_HUE_VARIATION);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "hue_variation_min", PROPERTY_HINT_RANGE, "-1,1,0.01"), "set_param_min", "get_param_min", PARAM_HUE_VARIATION);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "hue_variation_max", PROPERTY_HINT_RANGE, "-1,1,0.01"), "set_param_max", "get_param_max", PARAM_HUE_VARIATION);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "hue_variation_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_HUE_VARIATION);
ADD_GROUP("Animation", "anim_");
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_speed", PROPERTY_HINT_RANGE, "0,128,0.01,or_greater"), "set_param", "get_param", PARAM_ANIM_SPEED);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_speed_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_ANIM_SPEED);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_speed_min", PROPERTY_HINT_RANGE, "0,128,0.01,or_greater,or_lesser"), "set_param_min", "get_param_min", PARAM_ANIM_SPEED);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_speed_max", PROPERTY_HINT_RANGE, "0,128,0.01,or_greater,or_lesser"), "set_param_max", "get_param_max", PARAM_ANIM_SPEED);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "anim_speed_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_ANIM_SPEED);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_offset", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param", "get_param", PARAM_ANIM_OFFSET);
- ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_offset_random", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_randomness", "get_param_randomness", PARAM_ANIM_OFFSET);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_offset_min", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_min", "get_param_min", PARAM_ANIM_OFFSET);
+ ADD_PROPERTYI(PropertyInfo(Variant::FLOAT, "anim_offset_max", PROPERTY_HINT_RANGE, "0,1,0.01"), "set_param_max", "get_param_max", PARAM_ANIM_OFFSET);
ADD_PROPERTYI(PropertyInfo(Variant::OBJECT, "anim_offset_curve", PROPERTY_HINT_RESOURCE_TYPE, "Curve"), "set_param_curve", "get_param_curve", PARAM_ANIM_OFFSET);
BIND_ENUM_CONSTANT(PARAM_INITIAL_LINEAR_VELOCITY);
@@ -1437,6 +1607,7 @@ void CPUParticles3D::_bind_methods() {
BIND_ENUM_CONSTANT(EMISSION_SHAPE_BOX);
BIND_ENUM_CONSTANT(EMISSION_SHAPE_POINTS);
BIND_ENUM_CONSTANT(EMISSION_SHAPE_DIRECTED_POINTS);
+ BIND_ENUM_CONSTANT(EMISSION_SHAPE_RING);
BIND_ENUM_CONSTANT(EMISSION_SHAPE_MAX);
}
@@ -1450,28 +1621,40 @@ CPUParticles3D::CPUParticles3D() {
set_emitting(true);
set_amount(8);
- set_param(PARAM_INITIAL_LINEAR_VELOCITY, 0);
- set_param(PARAM_ANGULAR_VELOCITY, 0);
- set_param(PARAM_ORBIT_VELOCITY, 0);
- set_param(PARAM_LINEAR_ACCEL, 0);
- set_param(PARAM_RADIAL_ACCEL, 0);
- set_param(PARAM_TANGENTIAL_ACCEL, 0);
- set_param(PARAM_DAMPING, 0);
- set_param(PARAM_ANGLE, 0);
- set_param(PARAM_SCALE, 1);
- set_param(PARAM_HUE_VARIATION, 0);
- set_param(PARAM_ANIM_SPEED, 0);
- set_param(PARAM_ANIM_OFFSET, 0);
+ set_param_min(PARAM_INITIAL_LINEAR_VELOCITY, 0);
+ set_param_min(PARAM_ANGULAR_VELOCITY, 0);
+ set_param_min(PARAM_ORBIT_VELOCITY, 0);
+ set_param_min(PARAM_LINEAR_ACCEL, 0);
+ set_param_min(PARAM_RADIAL_ACCEL, 0);
+ set_param_min(PARAM_TANGENTIAL_ACCEL, 0);
+ set_param_min(PARAM_DAMPING, 0);
+ set_param_min(PARAM_ANGLE, 0);
+ set_param_min(PARAM_SCALE, 1);
+ set_param_min(PARAM_HUE_VARIATION, 0);
+ set_param_min(PARAM_ANIM_SPEED, 0);
+ set_param_min(PARAM_ANIM_OFFSET, 0);
+ set_param_max(PARAM_INITIAL_LINEAR_VELOCITY, 0);
+ set_param_max(PARAM_ANGULAR_VELOCITY, 0);
+ set_param_max(PARAM_ORBIT_VELOCITY, 0);
+ set_param_max(PARAM_LINEAR_ACCEL, 0);
+ set_param_max(PARAM_RADIAL_ACCEL, 0);
+ set_param_max(PARAM_TANGENTIAL_ACCEL, 0);
+ set_param_max(PARAM_DAMPING, 0);
+ set_param_max(PARAM_ANGLE, 0);
+ set_param_max(PARAM_SCALE, 1);
+ set_param_max(PARAM_HUE_VARIATION, 0);
+ set_param_max(PARAM_ANIM_SPEED, 0);
+ set_param_max(PARAM_ANIM_OFFSET, 0);
set_emission_shape(EMISSION_SHAPE_POINT);
set_emission_sphere_radius(1);
set_emission_box_extents(Vector3(1, 1, 1));
+ set_emission_ring_axis(Vector3(0, 0, 1.0));
+ set_emission_ring_height(1);
+ set_emission_ring_radius(1);
+ set_emission_ring_inner_radius(0);
set_gravity(Vector3(0, -9.8, 0));
- for (int i = 0; i < PARAM_MAX; i++) {
- set_param_randomness(Parameter(i), 0);
- }
-
for (int i = 0; i < PARTICLE_FLAG_MAX; i++) {
particle_flags[i] = false;
}