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https://notabug.org/scuti/lib3ddevil1
synced 2024-11-29 10:12:02 +05:30
Fixed geometry offset and handled multiple batch meshes
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ceb6409abd
commit
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@ -18,24 +18,39 @@ void writemesh(const struct MeshHeader *mh,
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// mesh header offset batches need to be changed for compability with parsing.
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// mesh header offset batches need to be changed for compability with parsing.
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struct MeshHeader newmh = *(mh);
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struct MeshHeader newmh = *(mh);
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newmh.offsetBatches = sizeof(struct Header) + sizeof(struct MeshHeader);
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newmh.offsetBatches = sizeof(struct Header) + sizeof(struct MeshHeader);
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// batch data the same treatment.
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struct BatchData newbatch = *(m -> b) -> bd;
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unsigned int vertices = m -> b -> bd -> numVertex;
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newbatch.offsetPositions = sizeof(struct MeshHeader) + sizeof(struct BatchData);
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newbatch.offsetNormals = newbatch.offsetPositions + (sizeof(struct Coordinate) * vertices);
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newbatch.offsetUVs = newbatch.offsetNormals + (sizeof(struct Coordinate) * vertices);
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newbatch.offsetBoneIndexes = newbatch.offsetUVs + (sizeof(struct UVs) * vertices);
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newbatch.offsetBoneWeights = newbatch.offsetBoneIndexes + (sizeof(struct BoneIndexes) * vertices);
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// write to file.
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write(fn, (char*)(&h), sizeof(struct Header));
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write(fn, (char*)(&h), sizeof(struct Header));
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append(fn, (char*)(&newmh), sizeof(struct MeshHeader));
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append(fn, (char*)(&newmh), sizeof(struct MeshHeader));
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append(fn, (char*)(&newbatch), sizeof(struct BatchData));
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append(fn, (char*)(m -> b -> vd.positions), sizeof(struct Coordinate) * vertices);
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struct BatchData * newBatches = malloc(newmh.numBatch * sizeof(struct BatchData));
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DEVIL1GEO.printcoordinate(m -> b -> vd.positions, 3);
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// batch data the same treatment.
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append(fn, (char*)(m -> b -> vd.normals), sizeof(struct Coordinate) * vertices);
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uint64_t previousBatch = 0;
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append(fn, (char*)(m -> b -> vd.u), sizeof(struct UVs) * vertices);
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for (int i = 0; i < newmh.numBatch; i++) {
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append(fn, (char*)(m -> b -> vd.bi), sizeof(struct BoneIndexes) * vertices);
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newBatches[i] = (m -> b) -> bd[i];
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append(fn, (char*)(m -> b -> vd.bw), sizeof(struct BoneWeights) * vertices);
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unsigned int nVertices = m -> b -> bd[i].numVertex;
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if (previousBatch == 0) {
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newBatches[i].offsetPositions = newmh.offsetBatches + ( newmh.numBatch * sizeof(struct BatchData));
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}
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else {
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newBatches[i].offsetPositions = previousBatch;
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}
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newBatches[i].offsetNormals = newBatches[i].offsetPositions + (sizeof(struct Coordinate) * nVertices);
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newBatches[i].offsetUVs = newBatches[i].offsetNormals + (sizeof(struct Coordinate) * nVertices);
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newBatches[i].offsetBoneIndexes = newBatches[i].offsetUVs + (sizeof(struct UVs) * nVertices);
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newBatches[i].offsetBoneWeights = newBatches[i].offsetBoneIndexes + (sizeof(struct BoneIndexes) * nVertices);
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append(fn, (char*)(&newBatches[i]), sizeof(struct BatchData));
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previousBatch = newBatches[i].offsetBoneWeights + (sizeof(struct BoneWeights) * nVertices);;
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}
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for (int i = 0; i < newmh.numBatch; i++) {
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unsigned int nVertices = m -> b -> bd[i].numVertex;
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append(fn, (char*)(m -> b[i].vd.positions), sizeof(struct Coordinate) * nVertices);
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DEVIL1GEO.printcoordinate(m -> b -> vd.positions, 3);
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append(fn, (char*)(m -> b[i].vd.normals), sizeof(struct Coordinate) * nVertices);
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append(fn, (char*)(m -> b[i].vd.u), sizeof(struct UVs) * nVertices);
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append(fn, (char*)(m -> b[i].vd.bi), sizeof(struct BoneIndexes) * nVertices);
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append(fn, (char*)(m -> b[i].vd.bw), sizeof(struct BoneWeights) * nVertices);
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}
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free(fn);
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free(fn);
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}
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}
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