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-rw-r--r--modules/fbx/fbx_parser/FBXDocument.cpp2
-rw-r--r--modules/fbx/fbx_parser/FBXDocument.h2
-rw-r--r--modules/fbx/fbx_parser/FBXMeshGeometry.cpp8
-rw-r--r--modules/fbx/fbx_parser/FBXMeshGeometry.h4
4 files changed, 8 insertions, 8 deletions
diff --git a/modules/fbx/fbx_parser/FBXDocument.cpp b/modules/fbx/fbx_parser/FBXDocument.cpp
index bb85d6ff7c..89c69d2ee8 100644
--- a/modules/fbx/fbx_parser/FBXDocument.cpp
+++ b/modules/fbx/fbx_parser/FBXDocument.cpp
@@ -487,7 +487,7 @@ const std::vector<const AnimationStack *> &Document::AnimationStacks() const {
const AnimationStack *stack = lazy->Get<AnimationStack>();
ERR_CONTINUE_MSG(!stack, "invalid ptr to AnimationStack - conversion failure");
- // We push back the weak reference :) to keep things simple, as ownership is on the parser side so it wont be cleaned up.
+ // We push back the weak reference :) to keep things simple, as ownership is on the parser side so it won't be cleaned up.
animationStacksResolved.push_back(stack);
}
diff --git a/modules/fbx/fbx_parser/FBXDocument.h b/modules/fbx/fbx_parser/FBXDocument.h
index 9664cd763a..e01e0471aa 100644
--- a/modules/fbx/fbx_parser/FBXDocument.h
+++ b/modules/fbx/fbx_parser/FBXDocument.h
@@ -699,7 +699,7 @@ private:
typedef std::vector<int64_t> KeyTimeList;
typedef std::vector<float> KeyValueList;
-/** Represents a FBX animation curve (i.e. a 1-dimensional set of keyframes and values therefor) */
+/** Represents a FBX animation curve (i.e. a 1-dimensional set of keyframes and values therefore) */
class AnimationCurve : public Object {
public:
AnimationCurve(uint64_t id, const ElementPtr element, const std::string &name, const Document &doc);
diff --git a/modules/fbx/fbx_parser/FBXMeshGeometry.cpp b/modules/fbx/fbx_parser/FBXMeshGeometry.cpp
index a28e7565c6..2cc25a0690 100644
--- a/modules/fbx/fbx_parser/FBXMeshGeometry.cpp
+++ b/modules/fbx/fbx_parser/FBXMeshGeometry.cpp
@@ -125,7 +125,7 @@ MeshGeometry::MeshGeometry(uint64_t id, const ElementPtr element, const std::str
ScopePtr sc = element->Compound();
ERR_FAIL_COND_MSG(sc == nullptr, "failed to read geometry, prevented crash");
- ERR_FAIL_COND_MSG(!HasElement(sc, "Vertices"), "Detected mesh with no vertexes, didn't populate the mesh");
+ ERR_FAIL_COND_MSG(!HasElement(sc, "Vertices"), "Detected mesh with no vertices, didn't populate the mesh");
// must have Mesh elements:
const ElementPtr Vertices = GetRequiredElement(sc, "Vertices", element);
@@ -140,7 +140,7 @@ MeshGeometry::MeshGeometry(uint64_t id, const ElementPtr element, const std::str
ParseVectorDataArray(m_vertices, Vertices);
ParseVectorDataArray(m_face_indices, PolygonVertexIndex);
- ERR_FAIL_COND_MSG(m_vertices.empty(), "mesh with no vertexes in FBX file, did you mean to delete it?");
+ ERR_FAIL_COND_MSG(m_vertices.empty(), "mesh with no vertices in FBX file, did you mean to delete it?");
ERR_FAIL_COND_MSG(m_face_indices.empty(), "mesh has no faces, was this intended?");
// Retrieve layer elements, for all of the mesh
@@ -278,7 +278,7 @@ MeshGeometry::MeshGeometry(uint64_t id, const ElementPtr element, const std::str
}
}
// As the algorithm above, this check is useless. Because the first
- // ever vertex is always considered the begining of a polygon.
+ // ever vertex is always considered the beginning of a polygon.
ERR_FAIL_COND_MSG(found_it == false, "Was not possible to find the first vertex of this polygon. FBX file is corrupted.");
} else {
@@ -418,7 +418,7 @@ MeshGeometry::MappingData<T> MeshGeometry::resolve_vertex_data_array(
// parse data into array
ParseVectorDataArray(tempData.data, GetRequiredElement(source, dataElementName));
- // index array wont always exist
+ // index array won't always exist
const ElementPtr element = GetOptionalElement(source, indexDataElementName);
if (element) {
ParseVectorDataArray(tempData.index, element);
diff --git a/modules/fbx/fbx_parser/FBXMeshGeometry.h b/modules/fbx/fbx_parser/FBXMeshGeometry.h
index 05493c4aec..c9b25f008d 100644
--- a/modules/fbx/fbx_parser/FBXMeshGeometry.h
+++ b/modules/fbx/fbx_parser/FBXMeshGeometry.h
@@ -122,7 +122,7 @@ typedef std::vector<int> MatIndexArray;
/// ## Map Type:
/// * None The mapping is undetermined.
/// * ByVertex There will be one mapping coordinate for each surface control point/vertex (ControlPoint is a vertex).
-/// * If you have direct reference type verticies[x]
+/// * If you have direct reference type vertices[x]
/// * If you have IndexToDirect reference type the UV
/// * ByPolygonVertex There will be one mapping coordinate for each vertex, for every polygon of which it is a part. This means that a vertex will have as many mapping coordinates as polygons of which it is a part. (Sorted by polygon, referencing vertex)
/// * ByPolygon There can be only one mapping coordinate for the whole polygon.
@@ -186,7 +186,7 @@ public:
/// Returns -1 if the vertices doesn't form an edge. Vertex order, doesn't
// matter.
static int get_edge_id(const std::vector<Edge> &p_map, int p_vertex_a, int p_vertex_b);
- // Retuns the edge point bu that ID, or the edge with -1 vertices if the
+ // Returns the edge point bu that ID, or the edge with -1 vertices if the
// id is not valid.
static Edge get_edge(const std::vector<Edge> &p_map, int p_id);