Files
fishtanks/src/Model.cpp
T
Jace 74239300bd Merge commit 'e3aab96a750d6e5d6f8ff42ffdb5a23a47ab929d' into render_queue
Conflicts:
	assets
	src/GameWorld.cpp
	src/Renderer.cpp
	src/Renderer.h
	src/Systems/RenderSystem.cpp
2014-05-26 04:21:08 +02:00

281 lines
7.6 KiB
C++
Executable File

#include "PrecompiledHeader.h"
#include "Model.h"
Model::Model(std::shared_ptr<ResourceManager> rm, OBJ &obj)
{
OBJ::MaterialInfo* currentMaterial = nullptr;
TextureGroup* currentTexGroup = nullptr;
int index = 0;
for (auto face : obj.Faces)
{
if (face.Material == nullptr)
{
LOG_ERROR("Missing material for .obj file \"%s\"", obj.Path().string().c_str());
return;
}
// New material
if (face.Material != currentMaterial)
{
currentMaterial = face.Material;
// Load texture
auto texture = std::shared_ptr<Texture>(rm->Load<Texture>("Texture", currentMaterial->DiffuseTexture.FileName));
// TODO: Load normal map
std::shared_ptr<Texture> normalMap = nullptr;
if (!currentMaterial->NormalMap.FileName.empty())
{
normalMap = std::shared_ptr<Texture>(rm->Load<Texture>("Texture", currentMaterial->NormalMap.FileName));
}
else
{
normalMap = std::shared_ptr<Texture>(rm->Load<Texture>("Texture", "Textures/NeutralNormalMap.png"));
}
// Load specular map
std::shared_ptr<Texture> specularMap = nullptr;
if (!currentMaterial->SpecularMap.FileName.empty())
{
specularMap = std::shared_ptr<Texture>(rm->Load<Texture>("Texture", currentMaterial->SpecularMap.FileName));
}
else
{
specularMap = std::shared_ptr<Texture>(rm->Load<Texture>("Texture", "Textures/NeutralSpecularMap.png"));
}
// TODO: Load material parameters
// Create new texture group (start index of new group is upcoming index)
TextureGroup texGroup = { texture, normalMap, specularMap, index, index };
TextureGroups.push_back(texGroup);
currentTexGroup = &TextureGroups.back();
}
/*std::unordered_map<int, glm::vec3> similarNormals;
std::unordered_map<int, int> normalCount;
for (auto &faceDef : face.Definitions)
{
if (faceDef.NormalIndex == 0)
continue;
similarNormals[faceDef.VertexIndex - 1] += normal;
normalCount[faceDef.VertexIndex - 1]++;
int index = pair.first;
glm::vec3 averagedNormal = ;
Normals[]
}*/
// Face definitions
for (auto faceDef : face.Definitions)
{
glm::vec3 vertex;
std::tie(vertex.x, vertex.y, vertex.z) = obj.Vertices.at(faceDef.VertexIndex - 1);
Vertices.push_back(vertex);
if (faceDef.NormalIndex != 0)
{
glm::vec3 normal;
std::tie(normal.x, normal.y, normal.z) = obj.Normals.at(faceDef.NormalIndex - 1);
Normals.push_back(normal);
}
if (faceDef.TextureCoordIndex != 0)
{
glm::vec2 texCoord;
// TODO: W-coord?
std::tie(texCoord.x, texCoord.y, std::ignore) = obj.TextureCoords.at(faceDef.TextureCoordIndex - 1);
TextureCoords.push_back(texCoord);
}
currentTexGroup->EndIndex = index;
index++;
}
}
if (Vertices.size() > 0)
{
CreateTangents();
//getSimilarVertexIndex();
CreateBuffers(Vertices, Normals, TangentNormals, BiTangentNormals, TextureCoords);
}
else
{
LOG_WARNING("Loaded OBJ with no vertices!");
}
}
void Model::CreateBuffers( std::vector<glm::vec3> vertices, std::vector<glm::vec3> normals, std::vector<glm::vec3> tangents, std::vector<glm::vec3> biTangents, std::vector<glm::vec2>textureCoords)
{
LOG_INFO("Generating VertexBuffer");
glGenBuffers(1, &VertexBuffer);
if (vertices.size() > 0)
{
glBindBuffer(GL_ARRAY_BUFFER, VertexBuffer);
glBufferData(GL_ARRAY_BUFFER, vertices.size() * sizeof(glm::vec3), &vertices[0], GL_STATIC_DRAW);
GLERROR("GLEW: BufferFail, VertexBuffer");
}
else
{
LOG_WARNING("Created empty vertex buffer!");
}
LOG_INFO("Generating NormalBuffer");
glGenBuffers(1, &NormalBuffer);
if (normals.size() > 0)
{
glBindBuffer(GL_ARRAY_BUFFER, NormalBuffer);
glBufferData(GL_ARRAY_BUFFER, normals.size() * sizeof(glm::vec3), &normals[0], GL_STATIC_DRAW);
GLERROR("GLEW: BufferFail, NormalBuffer");
}
else
{
LOG_WARNING("Created empty normal buffer!");
}
LOG_INFO("Generating TangentNormalsBuffer");
glGenBuffers(1, &TangentNormalsBuffer);
if (tangents.size() > 0)
{
glBindBuffer(GL_ARRAY_BUFFER, TangentNormalsBuffer);
glBufferData(GL_ARRAY_BUFFER, tangents.size() * sizeof(glm::vec3), &tangents[0], GL_STATIC_DRAW);
GLERROR("GLEW: BufferFail, TangentNormalsBuffer");
}
else
{
LOG_WARNING("Created empty tangent buffer!");
}
LOG_INFO("Generating BiTangentNormalsBuffer");
glGenBuffers(1, &BiTangentNormalsBuffer);
if (biTangents.size() > 0)
{
glBindBuffer(GL_ARRAY_BUFFER, BiTangentNormalsBuffer);
glBufferData(GL_ARRAY_BUFFER, biTangents.size() * sizeof(glm::vec3), &biTangents[0], GL_STATIC_DRAW);
GLERROR("GLEW: BufferFail, BiTangentNormalsBuffer");
}
else
{
LOG_WARNING("Created empty biTangent buffer!");
}
LOG_INFO("Generating textureCoordBuffer");
glGenBuffers(1, &TextureCoordBuffer);
if (textureCoords.size() > 0)
{
glBindBuffer(GL_ARRAY_BUFFER, TextureCoordBuffer);
glBufferData(GL_ARRAY_BUFFER, textureCoords.size() * sizeof(glm::vec2), &textureCoords[0], GL_STATIC_DRAW);
GLERROR("GLEW: BufferFail, TextureCoordBuffer");
}
else
{
LOG_WARNING("Created empty texture coordinate buffer!");
}
glGenVertexArrays(1, &VAO);
glBindVertexArray(VAO);
GLERROR("GLEW: BufferFail4");
glBindBuffer(GL_ARRAY_BUFFER, VertexBuffer);
glVertexAttribPointer(0, 3, GL_FLOAT, GL_FALSE, 0, 0);
GLERROR("GLEW: BufferFail5");
glBindBuffer(GL_ARRAY_BUFFER, NormalBuffer);
glVertexAttribPointer(1, 3, GL_FLOAT, GL_FALSE, 0, 0);
GLERROR("GLEW: BufferFail5");
glBindBuffer(GL_ARRAY_BUFFER, TextureCoordBuffer);
glVertexAttribPointer(2, 2, GL_FLOAT, GL_FALSE, 0, 0);
GLERROR("GLEW: BufferFail5");
glBindBuffer(GL_ARRAY_BUFFER, TangentNormalsBuffer);
glVertexAttribPointer(3, 3, GL_FLOAT, GL_FALSE, 0, 0);
GLERROR("GLEW: BufferFail5");
glBindBuffer(GL_ARRAY_BUFFER, BiTangentNormalsBuffer);
glVertexAttribPointer(4, 3, GL_FLOAT, GL_FALSE, 0, 0);
GLERROR("GLEW: BufferFail5");
glEnableVertexAttribArray(0);
glEnableVertexAttribArray(1);
glEnableVertexAttribArray(2);
glEnableVertexAttribArray(3);
glEnableVertexAttribArray(4);
GLERROR("GLEW: BufferFail5");
}
bool Model::IsNear( float v1, float v2 )
{
return fabs(v1 - v2) < 0.001f;
}
void Model::getSimilarVertexIndex()
{
for(int i = 0; i < Vertices.size(); i++)
{
for(int t = 0; t < Vertices.size(); t++)
{
if(i != t)
{
if(IsNear(Vertices[i].x, Vertices[t].x)
&& IsNear(Vertices[i].y, Vertices[t].y)
&& IsNear(Vertices[i].z, Vertices[t].z)
)
{
glm::vec3 tempNormal, tempTangent, tempBiTangent;
tempNormal = Normals[i] + Normals[t];
tempTangent = TangentNormals[i] + TangentNormals[t];
tempBiTangent = BiTangentNormals[i] + BiTangentNormals[t];
Normals[i] = tempNormal;
Normals[t] = tempNormal;
TangentNormals[i] = tempTangent;
TangentNormals[t] = tempTangent;
BiTangentNormals[i] = tempBiTangent;
BiTangentNormals[t] = tempBiTangent;
}
}
}
}
}
void Model::CreateTangents()
{
for(int i = 0; i < Vertices.size(); i += 3)
{
glm::vec3 v0 = Vertices[i];
glm::vec3 v1 = Vertices[i+1];
glm::vec3 v2 = Vertices[i+2];
glm::vec2 uv0 = TextureCoords[i];
glm::vec2 uv1 = TextureCoords[i+1];
glm::vec2 uv2 = TextureCoords[i+2];
//Calculate the edge of the triangle
glm::vec3 edge1 = v1-v0;
glm::vec3 edge2 = v2-v0;
glm::vec2 deltaUV1 = uv1 - uv0;
glm::vec2 deltaUV2 = uv2 - uv0;
float r = 1.0f / (deltaUV1.x * deltaUV2.y - deltaUV1.y * deltaUV2.x);
glm::vec3 tangent, biTangent;
tangent = (edge1 * deltaUV2.y - edge2 * deltaUV1.y) * r;
biTangent = (edge2 * deltaUV1.x - edge1 * deltaUV2.x) * r;
TangentNormals.push_back(tangent);
TangentNormals.push_back(tangent);
TangentNormals.push_back(tangent);
BiTangentNormals.push_back(biTangent);
BiTangentNormals.push_back(biTangent);
BiTangentNormals.push_back(biTangent);
}
}