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Diffstat (limited to 'modules/fbx/editor_scene_importer_fbx.cpp')
-rw-r--r--modules/fbx/editor_scene_importer_fbx.cpp50
1 files changed, 25 insertions, 25 deletions
diff --git a/modules/fbx/editor_scene_importer_fbx.cpp b/modules/fbx/editor_scene_importer_fbx.cpp
index 4da0b55f42..40deaae74d 100644
--- a/modules/fbx/editor_scene_importer_fbx.cpp
+++ b/modules/fbx/editor_scene_importer_fbx.cpp
@@ -258,24 +258,24 @@ struct EditorSceneImporterAssetImportInterpolate {
//thank you for existing, partial specialization
template <>
-struct EditorSceneImporterAssetImportInterpolate<Quat> {
- Quat lerp(const Quat &a, const Quat &b, float c) const {
- ERR_FAIL_COND_V(!a.is_normalized(), Quat());
- ERR_FAIL_COND_V(!b.is_normalized(), Quat());
+struct EditorSceneImporterAssetImportInterpolate<Quaternion> {
+ Quaternion lerp(const Quaternion &a, const Quaternion &b, float c) const {
+ ERR_FAIL_COND_V(!a.is_normalized(), Quaternion());
+ ERR_FAIL_COND_V(!b.is_normalized(), Quaternion());
return a.slerp(b, c).normalized();
}
- Quat catmull_rom(const Quat &p0, const Quat &p1, const Quat &p2, const Quat &p3, float c) {
- ERR_FAIL_COND_V(!p1.is_normalized(), Quat());
- ERR_FAIL_COND_V(!p2.is_normalized(), Quat());
+ Quaternion catmull_rom(const Quaternion &p0, const Quaternion &p1, const Quaternion &p2, const Quaternion &p3, float c) {
+ ERR_FAIL_COND_V(!p1.is_normalized(), Quaternion());
+ ERR_FAIL_COND_V(!p2.is_normalized(), Quaternion());
return p1.slerp(p2, c).normalized();
}
- Quat bezier(Quat start, Quat control_1, Quat control_2, Quat end, float t) {
- ERR_FAIL_COND_V(!start.is_normalized(), Quat());
- ERR_FAIL_COND_V(!end.is_normalized(), Quat());
+ Quaternion bezier(Quaternion start, Quaternion control_1, Quaternion control_2, Quaternion end, float t) {
+ ERR_FAIL_COND_V(!start.is_normalized(), Quaternion());
+ ERR_FAIL_COND_V(!end.is_normalized(), Quaternion());
return start.slerp(end, t).normalized();
}
@@ -888,7 +888,7 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
// we need to know what object the curves are for.
// we need the target ID and the target name for the track reduction.
- FBXDocParser::Model::RotOrder quat_rotation_order = FBXDocParser::Model::RotOrder_EulerXYZ;
+ FBXDocParser::Model::RotOrder quaternion_rotation_order = FBXDocParser::Model::RotOrder_EulerXYZ;
// T:: R:: S:: Visible:: Custom::
for (const FBXDocParser::AnimationCurveNode *curve_node : node_list) {
@@ -910,7 +910,7 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
continue;
} else {
//print_verbose("[doc] applied rotation order: " + itos(target->RotationOrder()));
- quat_rotation_order = target->RotationOrder();
+ quaternion_rotation_order = target->RotationOrder();
}
uint64_t target_id = target->ID();
@@ -1086,7 +1086,7 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
Vector<float> pos_times;
Vector<Vector3> scale_values;
Vector<float> scale_times;
- Vector<Quat> rot_values;
+ Vector<Quaternion> rot_values;
Vector<float> rot_times;
double max_duration = 0;
@@ -1122,8 +1122,8 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
bool got_pre = false;
bool got_post = false;
- Quat post_rotation;
- Quat pre_rotation;
+ Quaternion post_rotation;
+ Quaternion pre_rotation;
// Rotation matrix
const Vector3 &PreRotation = FBXDocParser::PropertyGet<Vector3>(props, "PreRotation", got_pre);
@@ -1137,24 +1137,24 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
post_rotation = ImportUtils::EulerToQuaternion(rot_order, ImportUtils::deg2rad(PostRotation));
}
- Quat lastQuat = Quat();
+ Quaternion lastQuaternion = Quaternion();
for (std::pair<int64_t, Vector3> rotation_key : rotation_keys.keyframes) {
double animation_track_time = CONVERT_FBX_TIME(rotation_key.first);
//print_verbose("euler rotation key: " + rotation_key.second);
- Quat rot_key_value = ImportUtils::EulerToQuaternion(quat_rotation_order, ImportUtils::deg2rad(rotation_key.second));
+ Quaternion rot_key_value = ImportUtils::EulerToQuaternion(quaternion_rotation_order, ImportUtils::deg2rad(rotation_key.second));
- if (lastQuat != Quat() && rot_key_value.dot(lastQuat) < 0) {
+ if (lastQuaternion != Quaternion() && rot_key_value.dot(lastQuaternion) < 0) {
rot_key_value.x = -rot_key_value.x;
rot_key_value.y = -rot_key_value.y;
rot_key_value.z = -rot_key_value.z;
rot_key_value.w = -rot_key_value.w;
}
// pre_post rotation possibly could fix orientation
- Quat final_rotation = pre_rotation * rot_key_value * post_rotation;
+ Quaternion final_rotation = pre_rotation * rot_key_value * post_rotation;
- lastQuat = final_rotation;
+ lastQuaternion = final_rotation;
if (animation_track_time > max_duration) {
max_duration = animation_track_time;
@@ -1182,13 +1182,13 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
}
const Vector3 def_pos = translation_keys.has_default ? (translation_keys.default_value * state.scale) : bone_rest.origin;
- const Quat def_rot = rotation_keys.has_default ? ImportUtils::EulerToQuaternion(quat_rotation_order, ImportUtils::deg2rad(rotation_keys.default_value)) : bone_rest.basis.get_rotation_quat();
+ const Quaternion def_rot = rotation_keys.has_default ? ImportUtils::EulerToQuaternion(quaternion_rotation_order, ImportUtils::deg2rad(rotation_keys.default_value)) : bone_rest.basis.get_rotation_quaternion();
const Vector3 def_scale = scale_keys.has_default ? scale_keys.default_value : bone_rest.basis.get_scale();
print_verbose("track defaults: p(" + def_pos + ") s(" + def_scale + ") r(" + def_rot + ")");
while (true) {
Vector3 pos = def_pos;
- Quat rot = def_rot;
+ Quaternion rot = def_rot;
Vector3 scale = def_scale;
if (pos_values.size()) {
@@ -1197,7 +1197,7 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
}
if (rot_values.size()) {
- rot = _interpolate_track<Quat>(rot_times, rot_values, time,
+ rot = _interpolate_track<Quaternion>(rot_times, rot_values, time,
AssetImportAnimation::INTERP_LINEAR);
}
@@ -1209,12 +1209,12 @@ Node3D *EditorSceneImporterFBX::_generate_scene(
// node animations must also include pivots
if (skeleton_bone >= 0) {
Transform3D xform = Transform3D();
- xform.basis.set_quat_scale(rot, scale);
+ xform.basis.set_quaternion_scale(rot, scale);
xform.origin = pos;
const Transform3D t = bone_rest.affine_inverse() * xform;
// populate this again
- rot = t.basis.get_rotation_quat();
+ rot = t.basis.get_rotation_quaternion();
rot.normalize();
scale = t.basis.get_scale();
pos = t.origin;