mirror of
https://github.com/isledecomp/isle.git
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68bb20f04f
* WIP * Create globals * Add Read * Name Init * Add LegoCharacter init data * Add define for NULL * Use MxS8 * Add LegoCharacterLOD * WIP CreateROI * Fix * WIP * Match * Match * Match, implement Find * Fix MeshBuilder * Fix * space
187 lines
4.2 KiB
C++
187 lines
4.2 KiB
C++
#include "impl.h"
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using namespace TglImpl;
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DECOMP_SIZE_ASSERT(MeshBuilder, 0x04);
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DECOMP_SIZE_ASSERT(MeshBuilderImpl, 0x08);
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// FUNCTION: LEGO1 0x100a3830
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void* MeshBuilderImpl::ImplementationDataPtr()
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{
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return reinterpret_cast<void*>(&m_data);
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}
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// FUNCTION: LEGO1 0x100a3840
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Mesh* MeshBuilderImpl::CreateMesh(
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unsigned long faceCount,
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unsigned long vertexCount,
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float (*pPositions)[3],
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float (*pNormals)[3],
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float (*pTextureCoordinates)[2],
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unsigned long (*pFaceIndices)[3],
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unsigned long (*pTextureIndices)[3],
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ShadingModel shadingModel
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)
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{
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MeshImpl* pMeshImpl = new MeshImpl;
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if (CreateMeshImpl(
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pMeshImpl,
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faceCount,
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vertexCount,
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pPositions,
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pNormals,
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pTextureCoordinates,
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pFaceIndices,
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pTextureIndices,
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shadingModel
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) == Error) {
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delete pMeshImpl;
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pMeshImpl = NULL;
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}
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return pMeshImpl;
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}
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inline Result MeshSetTextureMappingMode(MeshImpl::MeshData* pMesh, TextureMappingMode mode)
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{
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if (mode == PerspectiveCorrect) {
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return ResultVal(pMesh->groupMesh->SetGroupMapping(pMesh->groupIndex, D3DRMMAP_PERSPCORRECT));
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}
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else {
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return ResultVal(pMesh->groupMesh->SetGroupMapping(pMesh->groupIndex, 0));
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}
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}
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inline Result CreateMesh(
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IDirect3DRMMesh* pD3DRM,
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unsigned long faceCount,
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unsigned long vertexCount,
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float (*pPositions)[3],
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float (*pNormals)[3],
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float (*pTextureCoordinates)[2],
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unsigned long (*pFaceIndices)[3],
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unsigned long (*pTextureIndices)[3],
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ShadingModel shadingModel,
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MeshImpl::MeshDataType& rpMesh
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)
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{
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unsigned long* faceIndices = (unsigned long*) pFaceIndices;
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D3DRMGROUPINDEX groupIndex = 0;
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int count = faceCount * 3;
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int index = 0;
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unsigned int* fData = new unsigned int[count];
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D3DRMVERTEX* vertices = new D3DRMVERTEX[vertexCount];
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memset(vertices, 0, sizeof(*vertices) * vertexCount);
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rpMesh = new MeshImpl::MeshData;
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rpMesh->groupMesh = pD3DRM;
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for (int i = 0; i < count; i++) {
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if ((*((unsigned short*) &faceIndices[i] + 1) >> 0x0f) & 0x01) {
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unsigned long j = *(unsigned short*) &faceIndices[i];
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vertices[index].position.x = pPositions[j][0];
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vertices[index].position.y = pPositions[j][1];
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vertices[index].position.z = pPositions[j][2];
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j = *((unsigned short*) &faceIndices[i] + 1) & MAXSHORT;
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vertices[index].normal.x = pNormals[j][0];
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vertices[index].normal.y = pNormals[j][1];
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vertices[index].normal.z = pNormals[j][2];
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if (pTextureIndices != NULL && pTextureCoordinates != NULL) {
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j = ((unsigned long*) pTextureIndices)[i];
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vertices[index].tu = pTextureCoordinates[j][0];
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vertices[index].tv = pTextureCoordinates[j][1];
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}
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fData[i] = index;
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index++;
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}
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else {
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fData[i] = *(unsigned short*) &faceIndices[i];
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}
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}
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Result result;
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result = ResultVal(pD3DRM->AddGroup(vertexCount, faceCount, 3, fData, &groupIndex));
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if (Succeeded(result)) {
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rpMesh->groupIndex = groupIndex;
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result = ResultVal(pD3DRM->SetVertices(groupIndex, 0, vertexCount, vertices));
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}
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if (!Succeeded(result)) {
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if (rpMesh) {
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delete rpMesh;
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}
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rpMesh = NULL;
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}
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else {
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result = MeshSetTextureMappingMode(rpMesh, PerspectiveCorrect);
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}
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if (fData != NULL) {
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delete[] fData;
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}
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if (vertices != NULL) {
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delete[] vertices;
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}
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return result;
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}
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inline Result MeshBuilderImpl::CreateMeshImpl(
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MeshImpl* pMeshImpl,
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unsigned long faceCount,
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unsigned long vertexCount,
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float (*pPositions)[3],
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float (*pNormals)[3],
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float (*pTextureCoordinates)[2],
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unsigned long (*pFaceIndices)[3],
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unsigned long (*pTextureIndices)[3],
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ShadingModel shadingModel
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)
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{
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return ::CreateMesh(
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m_data,
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faceCount,
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vertexCount,
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pPositions,
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pNormals,
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pTextureCoordinates,
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pFaceIndices,
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pTextureIndices,
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shadingModel,
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pMeshImpl->ImplementationData()
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);
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}
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// FUNCTION: LEGO1 0x100a3ae0
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Result MeshBuilderImpl::GetBoundingBox(float min[3], float max[3])
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{
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D3DRMBOX box;
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Result result = ResultVal(m_data->GetBox(&box));
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if (result == Success) {
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min[0] = box.min.x;
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min[1] = box.min.y;
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min[2] = box.min.z;
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max[0] = box.max.x;
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max[1] = box.max.y;
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max[2] = box.max.z;
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}
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return result;
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}
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// FUNCTION: LEGO1 0x100a3b40
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MeshBuilder* MeshBuilderImpl::Clone()
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{
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MeshBuilderImpl* mesh = new MeshBuilderImpl();
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int ret = m_data->Clone(0, IID_IDirect3DRMMesh, (void**) &mesh->m_data);
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if (ret < 0) {
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delete mesh;
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mesh = NULL;
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}
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return mesh;
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}
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