mirror of
https://github.com/HarbourMasters/Shipwright.git
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09432ee7f4
* Initial Linux/GCC support commit * Add instructins for linux in the README * apply suggestions by @Erotemic and @Emill * Fix python 3.10 symlink line * Fix func_80041E80 type mismatch (#3) Type mismatch functions.h:664 * Makefile: clean OTRExporter/libultraship/ZAPDTR with distclean and fix CXX_FILES * Makefile: find C/CXX_FILES automatically * Makefile: remove ugly conditions in find commands * cleanup _MSC_VER usage * fix Windows build * cleanup extraction scripts * fix Windows build * Fix Windows path separator issue * fix rumble support for linux * use glew-cmake in dockerfile * add pulseaudio backend * fix ZAPDTR linkage * Check for "soh.elf" in directory (#6) hide second button if `soh.exe` or `soh.elf` is present * Fix hardcoded segment addresses (#5) * fix condition * hack lus -> soh dep for ZAPDTR Co-authored-by: sholdee <102821812+sholdee@users.noreply.github.com> Co-authored-by: qurious-pixel <62252937+qurious-pixel@users.noreply.github.com> Co-authored-by: GaryOderNichts <12049776+GaryOderNichts@users.noreply.github.com>
93 lines
2.5 KiB
C++
93 lines
2.5 KiB
C++
#include "Model.h"
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namespace Ship
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{
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Vertex::Vertex()
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{
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pos = Vec3f(0, 0, 0);
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normal = Vec3f(0, 0, 0);
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color = Color3b(0, 0, 0);
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uv = Vec2f(0, 0);
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}
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Vertex::Vertex(BinaryReader* reader)
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{
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pos = reader->ReadVec3f();
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normal = reader->ReadVec3f();
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color = reader->ReadColor3b();
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uv = reader->ReadVec2f();
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}
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void ModelV0::ParseFileBinary(BinaryReader* reader, Resource* res)
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{
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Model* mdl = (Model*)res;
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uint32_t headerStart = reader->GetBaseAddress();
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modelType = (ModelType)reader->ReadByte();
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numVerts = reader->ReadUInt32();
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numPolys = reader->ReadUInt32();
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vertices = reader->ReadUInt32();
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normals = reader->ReadUInt32();
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faces = reader->ReadUInt32();
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vertexColors = reader->ReadUInt32();
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uvCoords = reader->ReadUInt32();
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boneWeights = reader->ReadUInt32();
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Vertex* vtxData = new Vertex[numVerts];
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uint32_t* indicesData = new uint32_t[numPolys];
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if (vertices != 0)
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{
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reader->Seek(headerStart + vertices, SeekOffsetType::Start);
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for (uint32_t i = 0; i < numVerts; i++)
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vtxData[i].pos = reader->ReadVec3f();
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}
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if (normals != 0)
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{
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reader->Seek(headerStart + normals, SeekOffsetType::Start);
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for (uint32_t i = 0; i < numVerts; i++)
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vtxData[i].normal = reader->ReadVec3f();
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}
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if (vertexColors != 0)
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{
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reader->Seek(headerStart + vertexColors, SeekOffsetType::Start);
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for (uint32_t i = 0; i < numVerts; i++)
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vtxData[i].color = reader->ReadColor3b();
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}
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if (uvCoords != 0)
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{
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reader->Seek(headerStart + uvCoords, SeekOffsetType::Start);
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for (uint32_t i = 0; i < numVerts; i++)
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vtxData[i].uv = reader->ReadVec2f();
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}
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if (boneWeights != 0)
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{
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reader->Seek(headerStart + boneWeights, SeekOffsetType::Start);
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mdl->boneWeights = new Vec2f[numVerts];
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for (uint32_t i = 0; i < numVerts; i++)
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mdl->boneWeights[i] = reader->ReadVec2f();
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}
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if (faces != 0)
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{
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reader->Seek(headerStart + faces, SeekOffsetType::Start);
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reader->Read((char*)indicesData, numPolys * sizeof(uint32_t));
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}
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mdl->vertices = vtxData;
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mdl->indices = indicesData;
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}
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} |