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vertex-col
...
devel
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37
README.md
37
README.md
@@ -10,7 +10,7 @@
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[](https://coveralls.io/github/syoyo/tinyobjloader?branch=master)
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http://syoyo.github.io/tinyobjloader/
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[https://github.com/syoyo/tinyobjloader](https://github.com/syoyo/tinyobjloader)
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Tiny but powerful single file wavefront obj loader written in C++. No dependency except for C++ STL. It can parse over 10M polygons with moderate memory and time.
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@@ -26,11 +26,20 @@ Old version is available `v0.9.x` branch https://github.com/syoyo/tinyobjloader/
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## What's new
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### Version 2.x
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* Refactor API
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* Support triangulation for concave polygons(#151)
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### Version 1.x
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Avaiable in `v1.x.y` branch.
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* 20 Aug, 2016 : Bump version v1.0.0. New data structure and API!
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### Old version
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### Older version
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Previous old version is avaiable in `v0.9.x` branch.
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Older version is avaiable in `v0.9.x` branch.
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## Example
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@@ -49,7 +58,11 @@ http://casual-effects.com/data/index.html
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TinyObjLoader is successfully used in ...
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### New version(v1.0.x)
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### New version(v2.x)
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* Your project here! (Letting us know via github issue is welcome!)
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### Old version(v1.x)
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* Double precision support through `TINYOBJLOADER_USE_DOUBLE` thanks to noma
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* Loading models in Vulkan Tutorial https://vulkan-tutorial.com/Loading_models
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@@ -58,9 +71,9 @@ TinyObjLoader is successfully used in ...
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* cudabox: CUDA Solid Voxelizer Engine https://github.com/gaspardzoss/cudavox
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* Drake: A planning, control, and analysis toolbox for nonlinear dynamical systems https://github.com/RobotLocomotion/drake
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* VFPR - a Vulkan Forward Plus Renderer : https://github.com/WindyDarian/Vulkan-Forward-Plus-Renderer
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* Your project here!
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* Your project here! (Letting us know via github issue is welcome!)
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### Old version(v0.9.x)
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### Older version(v0.9.x)
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* bullet3 https://github.com/erwincoumans/bullet3
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* pbrt-v2 https://github.com/mmp/pbrt-v2
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@@ -228,12 +241,12 @@ for (size_t s = 0; s < shapes.size(); s++) {
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for (size_t v = 0; v < fv; v++) {
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// access to vertex
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tinyobj::index_t idx = shapes[s].mesh.indices[index_offset + v];
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tinyobj::real_t vx = attrib.vertices[3*idx.vertex_index+0];
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tinyobj::real_t vy = attrib.vertices[3*idx.vertex_index+1];
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tinyobj::real_t vz = attrib.vertices[3*idx.vertex_index+2];
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tinyobj::real_t nx = attrib.normals[3*idx.normal_index+0];
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tinyobj::real_t ny = attrib.normals[3*idx.normal_index+1];
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tinyobj::real_t nz = attrib.normals[3*idx.normal_index+2];
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tinyobj::real_t vx = attrib.vertices[idx.vertex_index].x;
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tinyobj::real_t vy = attrib.vertices[idx.vertex_index].y;
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tinyobj::real_t vz = attrib.vertices[idx.vertex_index].z;
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tinyobj::real_t nx = attrib.normals[idx.normal_index].x;
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tinyobj::real_t ny = attrib.normals[idx.normal_index].y;
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tinyobj::real_t nz = attrib.normals[idx.normal_index].z;
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tinyobj::real_t tx = attrib.texcoords[2*idx.texcoord_index+0];
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tinyobj::real_t ty = attrib.texcoords[2*idx.texcoord_index+1];
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// Optional: vertex colors
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@@ -29,6 +29,12 @@ extern "C" {
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#endif
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#endif
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#ifdef __clang__
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#if __has_warning("-Wzero-as-null-pointer-constant")
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#pragma clang diagnostic ignored "-Wzero-as-null-pointer-constant"
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#endif
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#endif
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class timerutil {
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public:
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#ifdef _WIN32
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@@ -106,24 +112,24 @@ static void PrintInfo(const tinyobj::attrib_t& attrib,
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std::cout << "# of shapes : " << shapes.size() << std::endl;
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std::cout << "# of materials : " << materials.size() << std::endl;
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for (size_t v = 0; v < attrib.vertices.size() / 3; v++) {
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for (size_t v = 0; v < attrib.vertices.size(); v++) {
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printf(" v[%ld] = (%f, %f, %f)\n", static_cast<long>(v),
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static_cast<const double>(attrib.vertices[3 * v + 0]),
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static_cast<const double>(attrib.vertices[3 * v + 1]),
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static_cast<const double>(attrib.vertices[3 * v + 2]));
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static_cast<const double>(attrib.vertices[v].x),
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static_cast<const double>(attrib.vertices[v].y),
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static_cast<const double>(attrib.vertices[v].z));
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}
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for (size_t v = 0; v < attrib.normals.size() / 3; v++) {
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for (size_t v = 0; v < attrib.normals.size(); v++) {
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printf(" n[%ld] = (%f, %f, %f)\n", static_cast<long>(v),
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static_cast<const double>(attrib.normals[3 * v + 0]),
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static_cast<const double>(attrib.normals[3 * v + 1]),
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static_cast<const double>(attrib.normals[3 * v + 2]));
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static_cast<const double>(attrib.normals[v].x),
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static_cast<const double>(attrib.normals[v].y),
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static_cast<const double>(attrib.normals[v].z));
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}
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for (size_t v = 0; v < attrib.texcoords.size() / 2; v++) {
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for (size_t v = 0; v < attrib.texcoords.size(); v++) {
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printf(" uv[%ld] = (%f, %f)\n", static_cast<long>(v),
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static_cast<const double>(attrib.texcoords[2 * v + 0]),
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static_cast<const double>(attrib.texcoords[2 * v + 1]));
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static_cast<const double>(attrib.texcoords[v].x),
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static_cast<const double>(attrib.texcoords[v].y));
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}
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// For each shape
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@@ -361,7 +367,7 @@ static bool TestStreamLoadObj() {
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virtual ~MaterialStringStreamReader() {}
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virtual bool operator()(const std::string& matId,
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std::vector<material_t>* materials,
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std::map<std::string, int>* matMap,
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std::map<unsigned int, int>* matMap,
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std::string* err) {
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(void)matId;
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std::string warning;
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2
models/issue-140-zero-face-idx.mtl
Normal file
2
models/issue-140-zero-face-idx.mtl
Normal file
@@ -0,0 +1,2 @@
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newmtl main
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Kd 1 1 1
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17
models/issue-140-zero-face-idx.obj
Normal file
17
models/issue-140-zero-face-idx.obj
Normal file
@@ -0,0 +1,17 @@
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mtllib issue-140-zero-face-idx.mtl
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v -0.5 -0.5 0
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v 0.5 -0.5 0
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v 0.5 0.5 0
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v -0.5 0.5 0
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vt 0 0 0
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vt 1 0 0
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vt 1 1 0
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vt 0 1 0
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vn 0 0 -1
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usemtl main
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f 0/0/0 1/1/0 3/3/0
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f 1/1/0 3/3/0 2/2/0
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7
models/norm-texopt.mtl
Normal file
7
models/norm-texopt.mtl
Normal file
@@ -0,0 +1,7 @@
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newmtl default
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Ka 0 0 0
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Kd 0 0 0
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Ks 0 0 0
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Kt 0.1 0.2 0.3
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norm -bm 3 normalmap.jpg
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7
models/norm-texopt.obj
Normal file
7
models/norm-texopt.obj
Normal file
@@ -0,0 +1,7 @@
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mtllib norm-texopt.mtl
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o Test
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v 1.864151 -1.219172 -5.532511
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v 0.575869 -0.666304 5.896140
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v 0.940448 1.000000 -1.971128
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usemtl default
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f 1 2 3
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28
models/texture-filename-with-whitespace.mtl
Normal file
28
models/texture-filename-with-whitespace.mtl
Normal file
@@ -0,0 +1,28 @@
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newmtl white
|
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Ka 0 0 0
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Kd 1 1 1
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Ks 0 0 0
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# filename with white space.
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map_Kd texture 01.png
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newmtl red
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Ka 0 0 0
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Kd 1 0 0
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Ks 0 0 0
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# texture option + filename with white space.
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bump -bm 2 bump 01.png
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newmtl green
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Ka 0 0 0
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Kd 0 1 0
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Ks 0 0 0
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|
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newmtl blue
|
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Ka 0 0 0
|
||||
Kd 0 0 1
|
||||
Ks 0 0 0
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newmtl light
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Ka 20 20 20
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Kd 1 1 1
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Ks 0 0 0
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31
models/texture-filename-with-whitespace.obj
Normal file
31
models/texture-filename-with-whitespace.obj
Normal file
@@ -0,0 +1,31 @@
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mtllib texture-filename-with-whitespace.mtl
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v 0.000000 2.000000 2.000000
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v 0.000000 0.000000 2.000000
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v 2.000000 0.000000 2.000000
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v 2.000000 2.000000 2.000000
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v 0.000000 2.000000 0.000000
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v 0.000000 0.000000 0.000000
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v 2.000000 0.000000 0.000000
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v 2.000000 2.000000 0.000000
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# 8 vertices
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g front cube
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usemtl white
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f 1 2 3 4
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g back cube
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# expects white material
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f 8 7 6 5
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g right cube
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usemtl red
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f 4 3 7 8
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g top cube
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usemtl white
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f 5 1 4 8
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g left cube
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usemtl green
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f 5 6 2 1
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g bottom cube
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usemtl white
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f 2 6 7 3
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# 6 elements
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@@ -48,7 +48,7 @@ static PyObject* pyLoadObj(PyObject* self, PyObject* args) {
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pyshapes = PyDict_New();
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pymaterials = PyDict_New();
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pymaterial_indices = PyDict_New();
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pymaterial_indices = PyList_New(0);
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rtndict = PyDict_New();
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attribobj = PyDict_New();
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@@ -124,53 +124,52 @@ static PyObject* pyLoadObj(PyObject* self, PyObject* args) {
|
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PyDict_SetItemString(pyshapes, (*shape).name.c_str(), meshobj);
|
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}
|
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|
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long material_index = 0;
|
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for (std::vector<tinyobj::material_t>::iterator mat = materials.begin();
|
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mat != materials.end(); mat++) {
|
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PyObject* matobj = PyDict_New();
|
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PyObject* unknown_parameter = PyDict_New();
|
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|
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for (std::map<std::string, std::string>::iterator p =
|
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(*mat).unknown_parameter.begin();
|
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p != (*mat).unknown_parameter.end(); ++p) {
|
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mat->unknown_parameter.begin();
|
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p != mat->unknown_parameter.end(); ++p) {
|
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PyDict_SetItemString(unknown_parameter, p->first.c_str(),
|
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PyUnicode_FromString(p->second.c_str()));
|
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}
|
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|
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PyDict_SetItemString(matobj, "shininess",
|
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PyFloat_FromDouble((*mat).shininess));
|
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PyDict_SetItemString(matobj, "ior", PyFloat_FromDouble((*mat).ior));
|
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PyFloat_FromDouble(mat->shininess));
|
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PyDict_SetItemString(matobj, "ior", PyFloat_FromDouble(mat->ior));
|
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PyDict_SetItemString(matobj, "dissolve",
|
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PyFloat_FromDouble((*mat).dissolve));
|
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PyDict_SetItemString(matobj, "illum", PyLong_FromLong((*mat).illum));
|
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PyFloat_FromDouble(mat->dissolve));
|
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PyDict_SetItemString(matobj, "illum", PyLong_FromLong(mat->illum));
|
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PyDict_SetItemString(matobj, "ambient_texname",
|
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PyUnicode_FromString((*mat).ambient_texname.c_str()));
|
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PyUnicode_FromString(mat->ambient_texname.c_str()));
|
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PyDict_SetItemString(matobj, "diffuse_texname",
|
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PyUnicode_FromString((*mat).diffuse_texname.c_str()));
|
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PyUnicode_FromString(mat->diffuse_texname.c_str()));
|
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PyDict_SetItemString(matobj, "specular_texname",
|
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PyUnicode_FromString((*mat).specular_texname.c_str()));
|
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PyUnicode_FromString(mat->specular_texname.c_str()));
|
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PyDict_SetItemString(
|
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matobj, "specular_highlight_texname",
|
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PyUnicode_FromString((*mat).specular_highlight_texname.c_str()));
|
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PyUnicode_FromString(mat->specular_highlight_texname.c_str()));
|
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PyDict_SetItemString(matobj, "bump_texname",
|
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PyUnicode_FromString((*mat).bump_texname.c_str()));
|
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PyUnicode_FromString(mat->bump_texname.c_str()));
|
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PyDict_SetItemString(
|
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matobj, "displacement_texname",
|
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PyUnicode_FromString((*mat).displacement_texname.c_str()));
|
||||
PyUnicode_FromString(mat->displacement_texname.c_str()));
|
||||
PyDict_SetItemString(matobj, "alpha_texname",
|
||||
PyUnicode_FromString((*mat).alpha_texname.c_str()));
|
||||
PyDict_SetItemString(matobj, "ambient", pyTupleFromfloat3((*mat).ambient));
|
||||
PyDict_SetItemString(matobj, "diffuse", pyTupleFromfloat3((*mat).diffuse));
|
||||
PyUnicode_FromString(mat->alpha_texname.c_str()));
|
||||
PyDict_SetItemString(matobj, "ambient", pyTupleFromfloat3(mat->ambient));
|
||||
PyDict_SetItemString(matobj, "diffuse", pyTupleFromfloat3(mat->diffuse));
|
||||
PyDict_SetItemString(matobj, "specular",
|
||||
pyTupleFromfloat3((*mat).specular));
|
||||
pyTupleFromfloat3(mat->specular));
|
||||
PyDict_SetItemString(matobj, "transmittance",
|
||||
pyTupleFromfloat3((*mat).transmittance));
|
||||
pyTupleFromfloat3(mat->transmittance));
|
||||
PyDict_SetItemString(matobj, "emission",
|
||||
pyTupleFromfloat3((*mat).emission));
|
||||
pyTupleFromfloat3(mat->emission));
|
||||
PyDict_SetItemString(matobj, "unknown_parameter", unknown_parameter);
|
||||
|
||||
PyDict_SetItemString(pymaterials, (*mat).name.c_str(), matobj);
|
||||
PyDict_SetItemString(pymaterial_indices, PyLong_FromLong(material_index++), (*mat).name.c_str());
|
||||
PyDict_SetItemString(pymaterials, mat->name.c_str(), matobj);
|
||||
PyList_Append(pymaterial_indices, PyUnicode_FromString(mat->name.c_str()));
|
||||
}
|
||||
|
||||
PyDict_SetItemString(rtndict, "shapes", pyshapes);
|
||||
|
||||
@@ -22,22 +22,22 @@ static void PrintInfo(const tinyobj::attrib_t &attrib, const std::vector<tinyobj
|
||||
|
||||
for (size_t v = 0; v < attrib.vertices.size() / 3; v++) {
|
||||
printf(" v[%ld] = (%f, %f, %f)\n", v,
|
||||
static_cast<const double>(attrib.vertices[3*v+0]),
|
||||
static_cast<const double>(attrib.vertices[3*v+1]),
|
||||
static_cast<const double>(attrib.vertices[3*v+2]));
|
||||
static_cast<const double>(attrib.vertices[v].x),
|
||||
static_cast<const double>(attrib.vertices[v].y),
|
||||
static_cast<const double>(attrib.vertices[v].z));
|
||||
}
|
||||
|
||||
for (size_t v = 0; v < attrib.normals.size() / 3; v++) {
|
||||
printf(" n[%ld] = (%f, %f, %f)\n", v,
|
||||
static_cast<const double>(attrib.normals[3*v+0]),
|
||||
static_cast<const double>(attrib.normals[3*v+1]),
|
||||
static_cast<const double>(attrib.normals[3*v+2]));
|
||||
static_cast<const double>(attrib.normals[v].x),
|
||||
static_cast<const double>(attrib.normals[v].y),
|
||||
static_cast<const double>(attrib.normals[v].z));
|
||||
}
|
||||
|
||||
for (size_t v = 0; v < attrib.texcoords.size() / 2; v++) {
|
||||
printf(" uv[%ld] = (%f, %f)\n", v,
|
||||
static_cast<const double>(attrib.texcoords[2*v+0]),
|
||||
static_cast<const double>(attrib.texcoords[2*v+1]));
|
||||
static_cast<const double>(attrib.texcoords[v].x),
|
||||
static_cast<const double>(attrib.texcoords[v].y));
|
||||
}
|
||||
|
||||
for (size_t i = 0; i < shapes.size(); i++) {
|
||||
@@ -303,7 +303,8 @@ std::string matStream(
|
||||
virtual bool operator() (
|
||||
const std::string& matId,
|
||||
std::vector<material_t>* materials,
|
||||
std::map<std::string, int>* matMap,
|
||||
//std::map<std::string, int>* matMap,
|
||||
std::map<uint32_t, int>* matMap,
|
||||
std::string* err)
|
||||
{
|
||||
(void)matId;
|
||||
@@ -631,13 +632,14 @@ TEST_CASE("vertex-col-ext", "[Issue144]") {
|
||||
std::vector<tinyobj::material_t> materials;
|
||||
|
||||
std::string err;
|
||||
|
||||
bool ret = tinyobj::LoadObj(&attrib, &shapes, &materials, &err, "../models/cube-vertexcol.obj", gMtlBasePath);
|
||||
|
||||
if (!err.empty()) {
|
||||
std::cerr << err << std::endl;
|
||||
}
|
||||
|
||||
PrintInfo(attrib, shapes, materials);
|
||||
//PrintInfo(attrib, shapes, materials);
|
||||
|
||||
REQUIRE(true == ret);
|
||||
REQUIRE((8 * 3) == attrib.colors.size());
|
||||
@@ -655,6 +657,64 @@ TEST_CASE("vertex-col-ext", "[Issue144]") {
|
||||
REQUIRE(1 == Approx(attrib.colors[3 * 7 + 0]));
|
||||
REQUIRE(1 == Approx(attrib.colors[3 * 7 + 1]));
|
||||
REQUIRE(1 == Approx(attrib.colors[3 * 7 + 2]));
|
||||
}
|
||||
|
||||
TEST_CASE("norm_texopts", "[norm]") {
|
||||
tinyobj::attrib_t attrib;
|
||||
std::vector<tinyobj::shape_t> shapes;
|
||||
std::vector<tinyobj::material_t> materials;
|
||||
|
||||
std::string err;
|
||||
bool ret = tinyobj::LoadObj(&attrib, &shapes, &materials, &err, "../models/norm-texopt.obj", gMtlBasePath);
|
||||
|
||||
if (!err.empty()) {
|
||||
std::cerr << err << std::endl;
|
||||
}
|
||||
|
||||
REQUIRE(true == ret);
|
||||
REQUIRE(1 == shapes.size());
|
||||
REQUIRE(1 == materials.size());
|
||||
REQUIRE(3.0 == Approx(materials[0].normal_texopt.bump_multiplier));
|
||||
|
||||
}
|
||||
|
||||
TEST_CASE("zero-face-idx-value", "[Issue140]") {
|
||||
tinyobj::attrib_t attrib;
|
||||
std::vector<tinyobj::shape_t> shapes;
|
||||
std::vector<tinyobj::material_t> materials;
|
||||
|
||||
std::string err;
|
||||
bool ret = tinyobj::LoadObj(&attrib, &shapes, &materials, &err, "../models/issue-140-zero-face-idx.obj", gMtlBasePath);
|
||||
|
||||
|
||||
if (!err.empty()) {
|
||||
std::cerr << err << std::endl;
|
||||
}
|
||||
REQUIRE(false == ret);
|
||||
REQUIRE(!err.empty());
|
||||
|
||||
}
|
||||
|
||||
TEST_CASE("texture-name-whitespace", "[Issue145]") {
|
||||
tinyobj::attrib_t attrib;
|
||||
std::vector<tinyobj::shape_t> shapes;
|
||||
std::vector<tinyobj::material_t> materials;
|
||||
|
||||
std::string err;
|
||||
bool ret = tinyobj::LoadObj(&attrib, &shapes, &materials, &err, "../models/texture-filename-with-whitespace.obj", gMtlBasePath);
|
||||
|
||||
|
||||
if (!err.empty()) {
|
||||
std::cerr << "[Issue145] " << err << std::endl;
|
||||
}
|
||||
|
||||
REQUIRE(true == ret);
|
||||
REQUIRE(err.empty());
|
||||
REQUIRE(2 < materials.size());
|
||||
|
||||
REQUIRE(0 == materials[0].diffuse_texname.compare("texture 01.png"));
|
||||
REQUIRE(0 == materials[1].bump_texname.compare("bump 01.png"));
|
||||
REQUIRE(2 == Approx(materials[1].bump_texopt.bump_multiplier));
|
||||
|
||||
}
|
||||
|
||||
|
||||
2031
tiny_obj_loader.h
2031
tiny_obj_loader.h
File diff suppressed because it is too large
Load Diff
Reference in New Issue
Block a user