forked from blender/blender
Export curves #46
@ -26,7 +26,7 @@ class Engine;
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class BlenderSceneDelegate : public pxr::HdSceneDelegate {
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class BlenderSceneDelegate : public pxr::HdSceneDelegate {
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friend ObjectData; /* has access to instances */
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friend ObjectData; /* has access to instances */
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friend CurvesData; /* has access to curves */
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friend CurvesData; /* has access to materials */
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friend MeshData; /* has access to materials */
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friend MeshData; /* has access to materials */
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friend MaterialData; /* has access to objects and instancers */
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friend MaterialData; /* has access to objects and instancers */
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@ -156,18 +156,16 @@ void CurvesData::write_curves(Curves *curves)
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vertices_.reserve(curves->geometry.curve_num);
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vertices_.reserve(curves->geometry.curve_num);
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for (int i = 0; i < curves->geometry.curve_num; i++) {
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for (int i = 0; i < curves->geometry.curve_num; i++) {
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const int first_point_index = *(curves->geometry.curve_offsets + i);
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int first_point_index = *(curves->geometry.curve_offsets + i);
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const int num_points = *(curves->geometry.curve_offsets + i + 1) - first_point_index;
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int num_points = *(curves->geometry.curve_offsets + i + 1) - first_point_index;
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curve_vertex_counts_.push_back(num_points);
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curve_vertex_counts_.push_back(num_points);
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/* Set radius similar to Cycles if isn't set */
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/* Set radius similar to Cycles if isn't set */
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float radius = radii ? radii[i] : 0.01f;
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widths_.push_back(radii ? radii[i] : 0.01f);
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widths_.push_back(radius);
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for (int j = 0; j < num_points; j++) {
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for (int j = 0; j < num_points; j++) {
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const int index = first_point_index + j;
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int ind = first_point_index + j;
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vertices_.push_back(
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vertices_.push_back(pxr::GfVec3f(positions[ind][0], positions[ind][1], positions[ind][2]));
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pxr::GfVec3f(positions[index][0], positions[index][1], positions[index][2]));
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}
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}
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}
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}
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@ -180,10 +178,11 @@ void CurvesData::write_uv_maps(Curves *curves)
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const float(*uvs)[2] = (const float(*)[2])CustomData_get_layer_named(
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const float(*uvs)[2] = (const float(*)[2])CustomData_get_layer_named(
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&curves->geometry.curve_data, CD_PROP_FLOAT2, "surface_uv_coordinate");
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&curves->geometry.curve_data, CD_PROP_FLOAT2, "surface_uv_coordinate");
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if (uvs) {
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for (int i = 0; i < curves->geometry.curve_num; i++) {
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for (int i = 0; i < curves->geometry.curve_num; i++) {
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uvs_.push_back(pxr::GfVec2f(uvs[i][0], uvs[i][1]));
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uvs_.push_back(pxr::GfVec2f(uvs[i][0], uvs[i][1]));
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}
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}
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}
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}
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}
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void CurvesData::write_material()
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void CurvesData::write_material()
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@ -39,7 +39,7 @@ class CurvesData : public ObjectData {
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pxr::VtIntArray curve_vertex_counts_;
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pxr::VtIntArray curve_vertex_counts_;
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pxr::VtVec3fArray vertices_;
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pxr::VtVec3fArray vertices_;
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pxr::VtVec2fArray uvs_;
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pxr::VtVec2fArray uvs_;
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pxr::VtFloatArray width_;
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pxr::VtFloatArray widths_;
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MaterialData *mat_data_ = nullptr;
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MaterialData *mat_data_ = nullptr;
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};
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};
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@ -65,10 +65,6 @@ void MaterialData::update()
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if (m_data) {
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if (m_data) {
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m_data->update_double_sided(this);
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m_data->update_double_sided(this);
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}
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}
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CurvesData *c_data = dynamic_cast<CurvesData *>(it.second.get());
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if (c_data) {
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c_data->update_double_sided(this);
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}
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}
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}
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for (auto &it : scene_delegate_->instancers_) {
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for (auto &it : scene_delegate_->instancers_) {
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it.second->update_double_sided(this);
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it.second->update_double_sided(this);
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