CmMeshData.cpp 11 KB

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  1. #include "CmMeshData.h"
  2. #include "CmVector2.h"
  3. #include "CmVector3.h"
  4. #include "CmHardwareBufferManager.h"
  5. #include "CmMeshDataRTTI.h"
  6. #include "CmVertexDeclaration.h"
  7. #include "CmVertexDataDesc.h"
  8. #include "CmException.h"
  9. namespace CamelotFramework
  10. {
  11. MeshData::MeshData(UINT32 numVertices, UINT32 numIndexes, const VertexDataDescPtr& vertexData, IndexBuffer::IndexType indexType)
  12. :mNumVertices(numVertices), mNumIndices(numIndexes), mVertexData(vertexData), mIndexType(indexType), mData(nullptr), mResourceIndexOffset(0),
  13. mResourceVertexOffset(0)
  14. {
  15. allocateInternalBuffer();
  16. }
  17. MeshData::MeshData()
  18. :mNumVertices(0), mNumIndices(0), mIndexType(IndexBuffer::IT_32BIT), mData(nullptr),
  19. mResourceIndexOffset(0), mResourceVertexOffset(0)
  20. { }
  21. MeshData::~MeshData()
  22. { }
  23. UINT32 MeshData::getNumIndices() const
  24. {
  25. return mNumIndices;
  26. }
  27. UINT16* MeshData::getIndices16() const
  28. {
  29. if(mIndexType != IndexBuffer::IT_16BIT)
  30. CM_EXCEPT(InternalErrorException, "Attempting to get 16bit index buffer, but internally allocated buffer is 32 bit.");
  31. UINT32 indexBufferOffset = getIndexBufferOffset();
  32. return (UINT16*)(getData() + indexBufferOffset);
  33. }
  34. UINT32* MeshData::getIndices32() const
  35. {
  36. if(mIndexType != IndexBuffer::IT_32BIT)
  37. CM_EXCEPT(InternalErrorException, "Attempting to get 32bit index buffer, but internally allocated buffer is 16 bit.");
  38. UINT32 indexBufferOffset = getIndexBufferOffset();
  39. return (UINT32*)(getData() + indexBufferOffset);
  40. }
  41. UINT32 MeshData::getInternalBufferSize()
  42. {
  43. return getIndexBufferSize() + getStreamSize();
  44. }
  45. // TODO - This doesn't handle the case where multiple elements in same slot have different data types
  46. // - actually it will likely corrupt memory in that case
  47. MeshDataPtr MeshData::combine(const Vector<MeshDataPtr>::type& meshes, const Vector<Vector<SubMesh>::type>::type& allSubMeshes,
  48. Vector<SubMesh>::type& subMeshes)
  49. {
  50. UINT32 totalVertexCount = 0;
  51. UINT32 totalIndexCount = 0;
  52. for(auto& meshData : meshes)
  53. {
  54. totalVertexCount += meshData->getNumVertices();
  55. totalIndexCount += meshData->getNumIndices();
  56. }
  57. VertexDataDescPtr combinedVertexData = cm_shared_ptr<VertexDataDesc, PoolAlloc>();
  58. MeshDataPtr combinedMeshData = cm_shared_ptr<MeshData, PoolAlloc>(totalVertexCount, totalIndexCount, combinedVertexData);
  59. Vector<VertexElement>::type combinedVertexElements;
  60. for(auto& meshData : meshes)
  61. {
  62. for(UINT32 i = 0; i < meshData->getVertexDesc()->getNumElements(); i++)
  63. {
  64. const VertexElement& newElement = meshData->getVertexDesc()->getElement(i);
  65. INT32 alreadyExistsIdx = -1;
  66. UINT32 idx = 0;
  67. for(auto& existingElement : combinedVertexElements)
  68. {
  69. if(newElement.getSemantic() == existingElement.getSemantic() && newElement.getSemanticIdx() == existingElement.getSemanticIdx()
  70. && newElement.getStreamIdx() == existingElement.getStreamIdx())
  71. {
  72. if(newElement.getType() != existingElement.getType())
  73. {
  74. CM_EXCEPT(NotImplementedException, "Two elements have same semantics but different types. This is not supported yet.");
  75. }
  76. alreadyExistsIdx = idx;
  77. break;
  78. }
  79. idx++;
  80. }
  81. if(alreadyExistsIdx == -1)
  82. {
  83. combinedVertexElements.push_back(newElement);
  84. combinedVertexData->addVertElem(newElement.getType(), newElement.getSemantic(), newElement.getSemanticIdx(), newElement.getStreamIdx());
  85. }
  86. }
  87. }
  88. VertexDataDescPtr vertexData = combinedMeshData->getVertexDesc();
  89. // Copy indices
  90. UINT32 vertexOffset = 0;
  91. UINT32 indexOffset = 0;
  92. UINT32* idxPtr = combinedMeshData->getIndices32();
  93. for(auto& meshData : meshes)
  94. {
  95. UINT32 numIndices = meshData->getNumIndices();
  96. UINT32* srcData = meshData->getIndices32();
  97. for(UINT32 j = 0; j < numIndices; j++)
  98. idxPtr[j] = srcData[j] + vertexOffset;
  99. subMeshes.push_back(SubMesh(indexOffset, numIndices, DOT_TRIANGLE_LIST));
  100. indexOffset += numIndices;
  101. idxPtr += numIndices;
  102. vertexOffset += meshData->getNumVertices();
  103. }
  104. // Copy sub-meshes
  105. UINT32 meshIdx = 0;
  106. indexOffset = 0;
  107. for(auto& meshData : meshes)
  108. {
  109. UINT32 numIndices = meshData->getNumIndices();
  110. const Vector<SubMesh>::type curSubMeshes = allSubMeshes[meshIdx];
  111. for(auto& subMesh : curSubMeshes)
  112. {
  113. subMeshes.push_back(SubMesh(subMesh.indexOffset + indexOffset, subMesh.indexCount, subMesh.drawOp));
  114. }
  115. indexOffset += numIndices;
  116. meshIdx++;
  117. }
  118. // Copy vertices
  119. vertexOffset = 0;
  120. for(auto& meshData : meshes)
  121. {
  122. for(auto& element : combinedVertexElements)
  123. {
  124. UINT32 dstVertexStride = vertexData->getVertexStride(element.getStreamIdx());
  125. UINT8* dstData = combinedMeshData->getElementData(element.getSemantic(), element.getSemanticIdx(), element.getStreamIdx());
  126. dstData += vertexOffset * dstVertexStride;
  127. UINT32 numSrcVertices = meshData->getNumVertices();
  128. UINT32 vertexSize = vertexData->getElementSize(element.getSemantic(), element.getSemanticIdx(), element.getStreamIdx());
  129. if(meshData->getVertexDesc()->hasElement(element.getSemantic(), element.getSemanticIdx(), element.getStreamIdx()))
  130. {
  131. UINT32 srcVertexStride = vertexData->getVertexStride(element.getStreamIdx());
  132. UINT8* srcData = meshData->getElementData(element.getSemantic(), element.getSemanticIdx(), element.getStreamIdx());
  133. for(UINT32 i = 0; i < numSrcVertices; i++)
  134. {
  135. memcpy(dstData, srcData, vertexSize);
  136. dstData += dstVertexStride;
  137. srcData += srcVertexStride;
  138. }
  139. }
  140. else
  141. {
  142. for(UINT32 i = 0; i < numSrcVertices; i++)
  143. {
  144. memset(dstData, 0, vertexSize);
  145. dstData += dstVertexStride;
  146. }
  147. }
  148. }
  149. vertexOffset += meshData->getNumVertices();
  150. }
  151. return combinedMeshData;
  152. }
  153. void MeshData::setVertexData(VertexElementSemantic semantic, UINT8* data, UINT32 size, UINT32 semanticIdx, UINT32 streamIdx)
  154. {
  155. assert(data != nullptr);
  156. if(!mVertexData->hasElement(semantic, semanticIdx, streamIdx))
  157. {
  158. CM_EXCEPT(InvalidParametersException, "MeshData doesn't contain an element of specified type: Semantic: " + toString(semantic) + ", Semantic index: "
  159. + toString(semanticIdx) + ", Stream index: " + toString(streamIdx));
  160. }
  161. UINT32 elementSize = mVertexData->getElementSize(semantic, semanticIdx, streamIdx);
  162. UINT32 totalSize = elementSize * mNumVertices;
  163. if(totalSize != size)
  164. {
  165. CM_EXCEPT(InvalidParametersException, "Buffer sizes don't match. Expected: " + toString(totalSize) + ". Got: " + toString(size));
  166. }
  167. UINT32 indexBufferOffset = getIndexBufferSize();
  168. UINT32 elementOffset = getElementOffset(semantic, semanticIdx, streamIdx);
  169. UINT32 vertexStride = mVertexData->getVertexStride(streamIdx);
  170. UINT8* dst = getData() + indexBufferOffset + elementOffset;
  171. UINT8* src = data;
  172. for(UINT32 i = 0; i < mNumVertices; i++)
  173. {
  174. memcpy(dst, src, elementSize);
  175. dst += vertexStride;
  176. src += elementSize;
  177. }
  178. }
  179. VertexElemIter<Vector2> MeshData::getVec2DataIter(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx)
  180. {
  181. UINT8* data;
  182. UINT32 vertexStride;
  183. getDataForIterator(semantic, semanticIdx, streamIdx, data, vertexStride);
  184. return VertexElemIter<Vector2>(data, vertexStride, mNumVertices);
  185. }
  186. VertexElemIter<Vector3> MeshData::getVec3DataIter(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx)
  187. {
  188. UINT8* data;
  189. UINT32 vertexStride;
  190. getDataForIterator(semantic, semanticIdx, streamIdx, data, vertexStride);
  191. return VertexElemIter<Vector3>(data, vertexStride, mNumVertices);
  192. }
  193. VertexElemIter<Vector4> MeshData::getVec4DataIter(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx)
  194. {
  195. UINT8* data;
  196. UINT32 vertexStride;
  197. getDataForIterator(semantic, semanticIdx, streamIdx, data, vertexStride);
  198. return VertexElemIter<Vector4>(data, vertexStride, mNumVertices);
  199. }
  200. VertexElemIter<UINT32> MeshData::getDWORDDataIter(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx)
  201. {
  202. UINT8* data;
  203. UINT32 vertexStride;
  204. getDataForIterator(semantic, semanticIdx, streamIdx, data, vertexStride);
  205. return VertexElemIter<UINT32>(data, vertexStride, mNumVertices);
  206. }
  207. void MeshData::getDataForIterator(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx, UINT8*& data, UINT32& stride) const
  208. {
  209. if(!mVertexData->hasElement(semantic, semanticIdx, streamIdx))
  210. {
  211. CM_EXCEPT(InvalidParametersException, "MeshData doesn't contain an element of specified type: Semantic: " + toString(semantic) + ", Semantic index: "
  212. + toString(semanticIdx) + ", Stream index: " + toString(streamIdx));
  213. }
  214. UINT32 indexBufferOffset = getIndexBufferSize();
  215. UINT32 elementOffset = getElementOffset(semantic, semanticIdx, streamIdx);
  216. data = getData() + indexBufferOffset + elementOffset;
  217. stride = mVertexData->getVertexStride(streamIdx);
  218. }
  219. UINT32 MeshData::getIndexBufferOffset() const
  220. {
  221. return 0;
  222. }
  223. UINT32 MeshData::getStreamOffset(UINT32 streamIdx) const
  224. {
  225. UINT32 streamOffset = mVertexData->getStreamOffset(streamIdx);
  226. return streamOffset * mNumVertices;
  227. }
  228. UINT8* MeshData::getElementData(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx) const
  229. {
  230. return getData() + getIndexBufferSize() + getElementOffset(semantic, semanticIdx, streamIdx);
  231. }
  232. UINT8* MeshData::getStreamData(UINT32 streamIdx) const
  233. {
  234. return getData() + getIndexBufferSize() + getStreamOffset(streamIdx);
  235. }
  236. UINT32 MeshData::getIndexElementSize() const
  237. {
  238. return mIndexType == IndexBuffer::IT_32BIT ? sizeof(UINT32) : sizeof(UINT16);
  239. }
  240. UINT32 MeshData::getElementOffset(VertexElementSemantic semantic, UINT32 semanticIdx, UINT32 streamIdx) const
  241. {
  242. return getStreamOffset(streamIdx) + mVertexData->getElementOffsetFromStream(semantic, semanticIdx, streamIdx);
  243. }
  244. UINT32 MeshData::getIndexBufferSize() const
  245. {
  246. return mNumIndices * getIndexElementSize();
  247. }
  248. UINT32 MeshData::getStreamSize(UINT32 streamIdx) const
  249. {
  250. return mVertexData->getVertexStride(streamIdx) * mNumVertices;
  251. }
  252. UINT32 MeshData::getStreamSize() const
  253. {
  254. return mVertexData->getVertexStride() * mNumVertices;
  255. }
  256. /************************************************************************/
  257. /* SERIALIZATION */
  258. /************************************************************************/
  259. RTTITypeBase* MeshData::getRTTIStatic()
  260. {
  261. return MeshDataRTTI::instance();
  262. }
  263. RTTITypeBase* MeshData::getRTTI() const
  264. {
  265. return MeshData::getRTTIStatic();
  266. }
  267. }