forked from Mirrorlandia_minetest/irrlicht
Add IMeshBufffer::clone for buffer copies, use it in CMeshManipulator::createMeshCopy
CMeshManipulator::createMeshCopy creates new meshes which have copies of the actual meshbuffers instead of copying everything into SMeshBuffers (which didn't support 32 bit or any of the other special features). git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/trunk@6335 dfc29bdd-3216-0410-991c-e03cc46cb475
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@ -1,5 +1,6 @@
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--------------------------
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Changes in 1.9 (not yet released)
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- Add IMeshBufffer::clone function to create buffer copies. CMeshManipulator::createMeshCopy uses that now and works now with all types of meshbuffers.
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- obj writer can now write 32 bit buffers
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- obj meshloader can now load 32 bit buffers when setPreferredIndexType is set to EIT_32BIT.
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It's 16 bit meshes use now also an IDynamicMeshbuffer instead of an SMeshBuffer.
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@ -120,6 +120,40 @@ namespace scene
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return EMBT_DYNAMIC;
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}
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//! Create copy of the meshbuffer
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virtual IMeshBuffer* createClone(int cloneFlags) const IRR_OVERRIDE
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{
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CDynamicMeshBuffer* clone = new CDynamicMeshBuffer(VertexBuffer->getType(), IndexBuffer->getType());
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if (cloneFlags & ECF_VERTICES)
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{
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const u32 numVertices = VertexBuffer->size();
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clone->VertexBuffer->reallocate(numVertices);
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for ( u32 i=0; i<numVertices; ++i )
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{
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clone->VertexBuffer->push_back((*VertexBuffer)[i]);
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}
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clone->BoundingBox = BoundingBox;
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}
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if (cloneFlags & ECF_INDICES)
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{
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const u32 numIndices = IndexBuffer->size();
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clone->IndexBuffer->reallocate(numIndices);
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for ( u32 i=0; i<numIndices; ++i )
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{
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clone->IndexBuffer->push_back((*IndexBuffer)[i]);
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}
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}
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clone->VertexBuffer->setHardwareMappingHint(VertexBuffer->getHardwareMappingHint());
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clone->IndexBuffer->setHardwareMappingHint(clone->IndexBuffer->getHardwareMappingHint());
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clone->Material = Material;
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clone->PrimitiveType = PrimitiveType;
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return clone;
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}
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video::SMaterial Material;
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core::aabbox3d<f32> BoundingBox;
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//! Primitive type used for rendering (triangles, lines, ...)
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@ -292,9 +292,33 @@ namespace scene
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return getTypeT();
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}
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//! Create copy of the meshbuffer
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virtual IMeshBuffer* createClone(int cloneFlags) const IRR_OVERRIDE
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{
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CMeshBuffer<T> * clone = new CMeshBuffer<T>();
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if (cloneFlags & ECF_VERTICES)
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{
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clone->Vertices = Vertices;
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clone->BoundingBox = BoundingBox;
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}
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if (cloneFlags & ECF_INDICES)
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{
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clone->Indices = Indices;
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}
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clone->PrimitiveType = PrimitiveType;
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clone->Material = getMaterial();
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clone->MappingHint_Vertex = MappingHint_Vertex;
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clone->MappingHint_Index = MappingHint_Index;
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return clone;
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}
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//! Returns type of the class implementing the IMeshBuffer for template specialization
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// Minor note: Some compilers (VS) allow directly specializating the virtual function,
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// but this will fail on other compilers (GCC).
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// Minor note: Some compilers (VS) allow directly specializing the virtual function,
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// but this will fail on other compilers (GCC). So using a helper function.
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EMESH_BUFFER_TYPE getTypeT() const;
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u32 ChangedID_Vertex;
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@ -190,6 +190,16 @@ namespace scene
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return EMBT_UNKNOWN;
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}
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//! Bitflags with options for cloning
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enum ECloneFlags
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{
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ECF_VERTICES = 1, //! clone the vertices (or copy pointer for SSharedMeshBuffer)
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ECF_INDICES = 2 //! clone the indices
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};
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//! Create a new object with a copy of the meshbuffer
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//\param cloneFlags A combination of ECloneFlags
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virtual IMeshBuffer* createClone(int cloneFlags=ECF_VERTICES|ECF_INDICES) const = 0;
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};
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@ -229,9 +229,7 @@ namespace scene
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u8 axis, const core::vector3df& offset) const=0;
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//! Clones a static IMesh into a modifiable SMesh.
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/** All meshbuffers in the returned SMesh
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are of type SMeshBuffer or SMeshBufferLightMap.
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\param mesh Mesh to copy.
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/** \param mesh Mesh to copy.
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\return Cloned mesh. If you no longer need the
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cloned mesh, you should call SMesh::drop(). See
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IReferenceCounted::drop() for more information. */
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@ -18,17 +18,27 @@ namespace scene
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class IVertexBuffer : public virtual IReferenceCounted
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{
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public:
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//! Pointer to first element of vertex data
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virtual void* getData() =0;
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virtual video::E_VERTEX_TYPE getType() const =0;
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virtual void setType(video::E_VERTEX_TYPE vertexType) =0;
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//! Number of bytes per element
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virtual u32 stride() const =0;
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//! Number of elements
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virtual u32 size() const =0;
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//! Add vertex to end. Note that depending on vertex type this will be one of the types derived from video::S3DVertex.
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virtual void push_back(const video::S3DVertex &element) =0;
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virtual video::S3DVertex& operator [](const u32 index) const =0;
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virtual video::S3DVertex& getLast() =0;
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virtual void set_used(u32 usedNow) =0;
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virtual void reallocate(u32 new_size) =0;
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virtual u32 allocated_size() const =0;
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//! Same as getData() - not sure why we got 2, should probably deprecate (and we don't always have video::S3DVertex*, so just confusing)
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virtual video::S3DVertex* pointer() =0;
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//! get the current hardware mapping hint
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@ -172,9 +172,16 @@ namespace scene
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}
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//! append the vertices and indices to the current buffer
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virtual void append(const void* const vertices, u32 numVertices, const u16* const indices, u32 numIndices) IRR_OVERRIDE {}
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virtual void append(const void* const vertices, u32 numVertices, const u16* const indices, u32 numIndices) IRR_OVERRIDE
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{
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// can't do that as it doesn't own the vertex memory
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}
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//! append the meshbuffer to the current buffer
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virtual void append(const IMeshBuffer* const other) IRR_OVERRIDE {}
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virtual void append(const IMeshBuffer* const other) IRR_OVERRIDE
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{
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// can't do that as it doesn't own the vertex memory
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}
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//! get the current hardware mapping hint
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virtual E_HARDWARE_MAPPING getHardwareMappingHint_Vertex() const IRR_OVERRIDE
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@ -232,6 +239,30 @@ namespace scene
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return EMBT_SHARED;
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}
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//! Create copy of the meshbuffer
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virtual IMeshBuffer* createClone(int cloneFlags) const IRR_OVERRIDE
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{
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SSharedMeshBuffer * clone = new SSharedMeshBuffer();
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if (cloneFlags & ECF_VERTICES)
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{
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clone->Vertices = Vertices;
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clone->BoundingBox = BoundingBox;
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}
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if (cloneFlags & ECF_INDICES)
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{
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clone->Indices = Indices;
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}
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clone->Material = Material;
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clone->MappingHintVertex = MappingHintVertex;
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clone->MappingHintIndex = MappingHintIndex;
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clone->PrimitiveType = PrimitiveType;
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return clone;
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}
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//! Material of this meshBuffer
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video::SMaterial Material;
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@ -389,6 +389,35 @@ struct SSkinMeshBuffer : public IMeshBuffer
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return EMBT_SKIN;
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}
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//! Create copy of the meshbuffer
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virtual IMeshBuffer* createClone(int cloneFlags) const IRR_OVERRIDE
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{
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SSkinMeshBuffer* clone = new SSkinMeshBuffer(VertexType);
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if (cloneFlags & ECF_VERTICES)
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{
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clone->Vertices_Tangents = Vertices_Tangents;
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clone->Vertices_2TCoords = Vertices_2TCoords;
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clone->Vertices_Standard = Vertices_Standard;
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clone->BoundingBox = BoundingBox;
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clone->BoundingBoxNeedsRecalculated = BoundingBoxNeedsRecalculated;
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}
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if (cloneFlags & ECF_INDICES)
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{
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clone->Indices = Indices;
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}
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clone->Transformation = Transformation;
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clone->Material = getMaterial();
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clone->PrimitiveType = PrimitiveType;
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clone->MappingHint_Vertex = MappingHint_Vertex;
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clone->MappingHint_Index = MappingHint_Index;
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return clone;
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}
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//! Call this after changing the positions of any vertex.
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void boundingBoxNeedsRecalculated(void) { BoundingBoxNeedsRecalculated = true; }
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@ -577,8 +577,7 @@ void CMeshManipulator::makePlanarTextureMapping(scene::IMesh* mesh, f32 resoluti
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}
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//! Clones a static IMesh into a modifyable SMesh.
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// not yet 32bit
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//! Clones a static IMesh into a modifiable SMesh.
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SMesh* CMeshManipulator::createMeshCopy(scene::IMesh* mesh) const
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{
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if (!mesh)
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@ -590,66 +589,10 @@ SMesh* CMeshManipulator::createMeshCopy(scene::IMesh* mesh) const
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for ( u32 b=0; b<meshBufferCount; ++b)
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{
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const IMeshBuffer* const mb = mesh->getMeshBuffer(b);
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switch(mb->getVertexType())
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{
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case video::EVT_STANDARD:
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{
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SMeshBuffer* buffer = new SMeshBuffer();
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buffer->Material = mb->getMaterial();
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const u32 vcount = mb->getVertexCount();
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buffer->Vertices.reallocate(vcount);
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video::S3DVertex* vertices = (video::S3DVertex*)mb->getVertices();
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for (u32 i=0; i < vcount; ++i)
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buffer->Vertices.push_back(vertices[i]);
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const u32 icount = mb->getIndexCount();
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buffer->Indices.reallocate(icount);
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const u16* indices = mb->getIndices();
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for (u32 i=0; i < icount; ++i)
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buffer->Indices.push_back(indices[i]);
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clone->addMeshBuffer(buffer);
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buffer->drop();
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}
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break;
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case video::EVT_2TCOORDS:
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{
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SMeshBufferLightMap* buffer = new SMeshBufferLightMap();
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buffer->Material = mb->getMaterial();
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const u32 vcount = mb->getVertexCount();
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buffer->Vertices.reallocate(vcount);
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video::S3DVertex2TCoords* vertices = (video::S3DVertex2TCoords*)mb->getVertices();
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for (u32 i=0; i < vcount; ++i)
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buffer->Vertices.push_back(vertices[i]);
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const u32 icount = mb->getIndexCount();
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buffer->Indices.reallocate(icount);
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const u16* indices = mb->getIndices();
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for (u32 i=0; i < icount; ++i)
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buffer->Indices.push_back(indices[i]);
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clone->addMeshBuffer(buffer);
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buffer->drop();
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}
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break;
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case video::EVT_TANGENTS:
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{
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SMeshBufferTangents* buffer = new SMeshBufferTangents();
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buffer->Material = mb->getMaterial();
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const u32 vcount = mb->getVertexCount();
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buffer->Vertices.reallocate(vcount);
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video::S3DVertexTangents* vertices = (video::S3DVertexTangents*)mb->getVertices();
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for (u32 i=0; i < vcount; ++i)
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buffer->Vertices.push_back(vertices[i]);
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const u32 icount = mb->getIndexCount();
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buffer->Indices.reallocate(icount);
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const u16* indices = mb->getIndices();
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for (u32 i=0; i < icount; ++i)
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buffer->Indices.push_back(indices[i]);
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clone->addMeshBuffer(buffer);
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buffer->drop();
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}
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break;
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}// end switch
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}// end for all mesh buffers
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IMeshBuffer* bufferClone = mesh->getMeshBuffer(b)->createClone();
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clone->addMeshBuffer(bufferClone);
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bufferClone->drop();
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}
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clone->BoundingBox = mesh->getBoundingBox();
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return clone;
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@ -127,10 +127,10 @@ bool COBJMeshWriter::writeMesh(io::IWriteFile* file, scene::IMesh* mesh, s32 fla
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file->write(num.c_str(), num.size());
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file->write("\n",1);
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unsigned int idx2=0, idx1=0, idx0 = 0;
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const u32 indexCount = buffer->getIndexCount();
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for (j=0; j<indexCount; j+=3)
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{
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unsigned int idx2, idx1, idx0;
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switch(buffer->getIndexType())
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{
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case video::EIT_16BIT:
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@ -1,4 +1,4 @@
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Tests finished. 72 tests of 72 passed.
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Compiled as DEBUG
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Test suite pass at GMT Thu Apr 14 13:52:29 2022
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Test suite pass at GMT Thu Apr 14 16:41:11 2022
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