obj loader
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@@ -1,7 +1,6 @@
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------------ Tyra's v2.0 roadmap to publish on GitHub ------------
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--- H4570
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- [Loaders] ".tyrobj" format
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- [Loaders] DFF loader as static Mesh loader
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- [Game] Update intellisense from docker
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- [Texture] Test cache hits with large amount of textures (dolphin sample?)
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@@ -126,8 +126,6 @@ void TyrobjLoader::loadFile(FILE* file, const std::string& path,
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char* lineHeader = new char[128];
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while (res != EOF) {
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res = fscanf(file, "%s", lineHeader);
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if (strcmp(lineHeader, "v") == 0) {
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readVertices(&readInfo, file, frameIndex, inputData, outputData);
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} else if (strcmp(lineHeader, "vt") == 0) {
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@@ -141,6 +139,8 @@ void TyrobjLoader::loadFile(FILE* file, const std::string& path,
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} else if (strcmp(lineHeader, "f") == 0) {
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readFaces(&readInfo, file, frameIndex, inputData, outputData);
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}
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res = fscanf(file, "%s", lineHeader);
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}
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delete[] lineHeader;
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@@ -207,114 +207,114 @@ void TyrobjLoader::readMaterials(TyraobjReadInfo* info, FILE* file,
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info->faceI = 0;
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}
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int test123 = 0;
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void TyrobjLoader::readFaces(TyraobjReadInfo* info, FILE* file,
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const u16& frameIndex,
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const TyraobjData& inputData,
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MeshBuilderData* outputData) {
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// int* x = nullptr;
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// fpos_t start;
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// fgetpos(file, &start);
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// int matches =
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// fscanf(file, "%d/%d/%d %d/%d/%d %d/%d/%d\n", x, x, x, x, x, x, x, x,
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// x);
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// fsetpos(file, &start);
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// int newerMatches = 0;
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int* x = new int[9];
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fpos_t start;
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fgetpos(file, &start);
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int matches = fscanf(file, "%d/%d/%d %d/%d/%d %d/%d/%d\n", &x[0], &x[1],
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&x[2], &x[3], &x[4], &x[5], &x[6], &x[7], &x[8]);
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fsetpos(file, &start);
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// // TODO: No support of vc!
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// u32 vertexIndex[3], coordIndex[3], normalIndex[3]; // ,colorIndex[3];
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// for (u16 i = 0; i < 3; i++) {
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// vertexIndex[i] = 0;
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// coordIndex[i] = 0;
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// normalIndex[i] = 0;
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// // colorIndex[i] = 0;
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// }
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// TODO: No support of vc!
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u32 vertexIndex[3], coordIndex[3], normalIndex[3]; // ,colorIndex[3];
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for (u16 i = 0; i < 3; i++) {
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vertexIndex[i] = 0;
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coordIndex[i] = 0;
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normalIndex[i] = 0;
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// colorIndex[i] = 0;
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}
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// switch (matches) {
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// /** Vs, VTs and VNs all set */
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// case 9: {
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// fscanf(file, "%d/%d/%d %d/%d/%d %d/%d/%d\n", &vertexIndex[0],
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// &coordIndex[0], &normalIndex[0], &vertexIndex[1],
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// &coordIndex[1], &normalIndex[1], &vertexIndex[2],
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// &coordIndex[2], &normalIndex[2]);
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// } break;
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int newerMatches = 0;
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// /** Loaded only two digits (V, VT) succesfuly. Not setting
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// VN. */
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// case 3: {
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// fscanf(file, "%d/%d/ %d/%d/ %d/%d/\n", &vertexIndex[0], &coordIndex[0],
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// &vertexIndex[1], &coordIndex[1], &vertexIndex[2],
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// &coordIndex[2]);
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// } break;
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switch (matches) {
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/** Vs, VTs and VNs all set */
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case 9: {
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fscanf(file, "%d/%d/%d %d/%d/%d %d/%d/%d\n", &vertexIndex[0],
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&coordIndex[0], &normalIndex[0], &vertexIndex[1], &coordIndex[1],
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&normalIndex[1], &vertexIndex[2], &coordIndex[2], &normalIndex[2]);
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} break;
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// /** Only V set. Checking for existance of VT or VN. */
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// case 1: {
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// /** Check for existance of V/// configuration.. */
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// newerMatches = fscanf(file, "%d// %d// %d//\n", x, x, x);
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// fsetpos(file, &start);
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// if (newerMatches == 3) {
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// /** Configuration confirmed. */
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// fscanf(file, "%d// %d// %d//\n", &vertexIndex[0], &vertexIndex[1],
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// &vertexIndex[2]);
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// } else {
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// /** Failed, checking configuration V//VN */
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// newerMatches = fscanf(file, "%d//%d %d//%d %d//%d", x, x, x, x, x,
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// x); fsetpos(file, &start); TYRA_ASSERT(newerMatches == 6, "Unknown
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// .obj face for .obj file!");
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// /** Configuration confirmed. */
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// newerMatches = fscanf(file, "%d//%d %d//%d %d//%d", &vertexIndex[0],
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// &normalIndex[0], &vertexIndex[1],
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// &normalIndex[1], &vertexIndex[2],
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// &normalIndex[2]);
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// }
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// break;
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// } break;
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// default: {
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// TYRA_TRAP("Unknown faces format in .obj file!");
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// break;
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// }
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// }
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/** Loaded only two digits (V, VT) succesfuly. Not setting
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VN. */
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case 3: {
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fscanf(file, "%d/%d/ %d/%d/ %d/%d/\n", &vertexIndex[0], &coordIndex[0],
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&vertexIndex[1], &coordIndex[1], &vertexIndex[2], &coordIndex[2]);
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} break;
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// if (matches == 9 || matches == 2 || matches == 1) {
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// outputData->materials[info->materialsI]->vertexFaces[info->faceI] =
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// vertexIndex[0] - 1;
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// outputData->materials[info->materialsI]->vertexFaces[info->faceI + 1] =
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// vertexIndex[1] - 1;
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// outputData->materials[info->materialsI]->vertexFaces[info->faceI + 2] =
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// vertexIndex[2] - 1;
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// }
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/** Only V set. Checking for existance of VT or VN. */
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case 1: {
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/** Check for existance of V/// configuration.. */
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newerMatches = fscanf(file, "%d// %d// %d//\n", &x[0], &x[1], &x[2]);
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fsetpos(file, &start);
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if (newerMatches == 3) {
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/** Configuration confirmed. */
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fscanf(file, "%d// %d// %d//\n", &vertexIndex[0], &vertexIndex[1],
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&vertexIndex[2]);
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} else {
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/** Failed, checking configuration V//VN */
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newerMatches = fscanf(file, "%d//%d %d//%d %d//%d", &x[0], &x[1], &x[2],
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&x[3], &x[4], &x[5]);
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fsetpos(file, &start);
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TYRA_ASSERT(newerMatches == 6, "Unknown .obj face for .obj file!");
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/** Configuration confirmed. */
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newerMatches = fscanf(file, "%d//%d %d//%d %d//%d", &vertexIndex[0],
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&normalIndex[0], &vertexIndex[1], &normalIndex[1],
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&vertexIndex[2], &normalIndex[2]);
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}
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break;
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} break;
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default: {
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TYRA_TRAP("Unknown faces format in .obj file!");
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break;
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}
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}
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// if (matches == 9 || matches == 2) {
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// outputData->materials[info->materialsI]->textureCoordFaces[info->faceI] =
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// coordIndex[0] - 1;
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// outputData->materials[info->materialsI]
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// ->textureCoordFaces[info->faceI + 1] = coordIndex[1] - 1;
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// outputData->materials[info->materialsI]
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// ->textureCoordFaces[info->faceI + 2] = coordIndex[2] - 1;
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// }
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// Set vertex indices
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if (matches == 9 || matches == 2 || matches == 1) {
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outputData->materials[info->materialsI]->vertexFaces[info->faceI] =
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vertexIndex[0] - 1;
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outputData->materials[info->materialsI]->vertexFaces[info->faceI + 1] =
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vertexIndex[1] - 1;
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outputData->materials[info->materialsI]->vertexFaces[info->faceI + 2] =
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vertexIndex[2] - 1;
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}
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// if (matches == 9) {
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// outputData->materials[info->materialsI]->normalFaces[info->faceI] =
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// normalIndex[0] - 1;
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// outputData->materials[info->materialsI]->normalFaces[info->faceI + 1] =
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// normalIndex[1] - 1;
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// outputData->materials[info->materialsI]->normalFaces[info->faceI + 2] =
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// normalIndex[2] - 1;
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// info->faceI += 3;
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// } else if (matches == 2) {
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// info->faceI += 2;
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// } else if (matches == 1) {
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// if (newerMatches == 3) {
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// info->faceI += 1;
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// } else if (newerMatches == 6) {
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// outputData->materials[info->materialsI]->normalFaces[info->faceI] =
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// normalIndex[0] - 1;
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// outputData->materials[info->materialsI]->normalFaces[info->faceI + 1] =
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// normalIndex[1] - 1;
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// outputData->materials[info->materialsI]->normalFaces[info->faceI + 2] =
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// normalIndex[2] - 1;
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// info->faceI += 2;
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// }
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// }
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// Set texture coord indices
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if (matches == 9 || matches == 2) {
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outputData->materials[info->materialsI]->textureCoordFaces[info->faceI] =
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coordIndex[0] - 1;
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outputData->materials[info->materialsI]
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->textureCoordFaces[info->faceI + 1] = coordIndex[1] - 1;
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outputData->materials[info->materialsI]
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->textureCoordFaces[info->faceI + 2] = coordIndex[2] - 1;
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}
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// Set normal indices
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if (matches == 9) {
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outputData->materials[info->materialsI]->normalFaces[info->faceI] =
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normalIndex[0] - 1;
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outputData->materials[info->materialsI]->normalFaces[info->faceI + 1] =
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normalIndex[1] - 1;
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outputData->materials[info->materialsI]->normalFaces[info->faceI + 2] =
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normalIndex[2] - 1;
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} else if (matches == 1 && newerMatches == 6) {
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outputData->materials[info->materialsI]->normalFaces[info->faceI] =
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normalIndex[0] - 1;
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outputData->materials[info->materialsI]->normalFaces[info->faceI + 1] =
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normalIndex[1] - 1;
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outputData->materials[info->materialsI]->normalFaces[info->faceI + 2] =
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normalIndex[2] - 1;
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}
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// Push index
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info->faceI += 3;
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delete[] x;
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}
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} // namespace Tyra
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@@ -130,6 +130,7 @@ void H4570::loop() {
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}
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for (u8 i = 0; i < warriorsCount; i++) warriors[i]->animate();
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cube->animate();
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engine->renderer.beginFrame(CameraInfo3D(&cameraPosition, &cameraLookAt));
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{
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@@ -148,7 +149,7 @@ void H4570::loop() {
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engine->renderer.renderer3D.usePipeline(&dynpip);
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{
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// dynpip.render(cube);
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dynpip.render(cube);
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Threading::switchThread();
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for (u8 i = 0; i < warriorsCount; i++) {
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dynpip.render(warriors[i], dynOptions);
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@@ -196,35 +197,10 @@ DynamicMesh* getWarrior(Renderer* renderer) {
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DynamicMesh* getCube(Renderer* renderer) {
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TyrobjLoader loader;
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auto* data =
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loader.load(FileUtils::fromCwd("untitled.tyrobj"), 2, .08F, false);
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loader.load(FileUtils::fromCwd("untitled.tyrobj"), 2, 3.0F, false);
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TYRA_LOG("Frames count: ", data->framesCount);
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TYRA_LOG("Materials count: ", data->materialsCount);
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for (u32 i = 0; i < data->framesCount; i++) {
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TYRA_LOG("Vertex count ", i, ": ", data->frames[i]->verticesCount);
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for (u32 j = 0; j < data->frames[i]->verticesCount; j++) {
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TYRA_LOG("Vertex ", j, ": ", data->frames[i]->vertices[j].getPrint());
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}
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TYRA_LOG("Normals count ", i, ": ", data->frames[i]->normalsCount);
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for (u32 j = 0; j < data->frames[i]->normalsCount; j++) {
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TYRA_LOG("Normal ", j, ": ", data->frames[i]->normals[j].getPrint());
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}
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}
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for (u32 i = 0; i < data->materialsCount; i++) {
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TYRA_LOG("Material ", i, ": ", data->materials[i]->name);
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TYRA_LOG("Faces count: ", data->materials[i]->count);
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for (u32 j = 0; j < data->materials[i]->count; j++) {
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TYRA_LOG("Vertex face ", j, ": ", data->materials[i]->vertexFaces);
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TYRA_LOG("Normal face ", j, ": ", data->materials[i]->normalFaces);
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}
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}
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TYRA_BREAKPOINT();
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auto* result = new DynamicMesh(*data);
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// result->translation.translateZ(-30.0F);
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result->translation.translateZ(-30.0F);
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delete data;
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result->playAnimation(0, result->getFramesCount() - 1);
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