Files
axyz/include/Engine/Rendering/RawModelCustom.h
T
Teejoon 92ab22e779 Splatmapping now working.
Rendering pipleline now support 3 different types of Material:
Basic: a material with a single color on every property (diffuse, specular, ect).
SingleTextures: a material with a single texture in all or any property. Have a single color on the rest.
SplatMapping: has a SplatMap and 0 to 5 different textures to every property. Properties with o texture uses a single color insted.

All materials with a texture has a UVRepeat, telling how many time to till in U and in V.

modelJobs now uses ShadeID, ModelID and TextureID for the Hash insted of only Texture

MayaExported exports 3 differnt types of material, the same as the piplen now supports.
2016-02-07 13:39:13 +01:00

159 lines
4.6 KiB
C++

#ifndef RawModelCustom_h__
#define RawModelCustom_h__
#ifndef USING_ASSIMP_AS_IMPORTER
#define RawModel RawModelCustom
#include <fstream>
#include <iostream>
#include <sstream>
#include <cstdlib>
#include <stack>
#include <boost/filesystem/path.hpp>
#include "../Common.h"
#include "../GLM.h"
#include "../Core/ResourceManager.h"
#include "Texture.h"
#include "Skeleton.h"
#include "boost\endian\buffers.hpp"
class RawModelCustom : public Resource
{
friend class ResourceManager;
protected:
RawModelCustom(std::string fileName);
public:
~RawModelCustom();
struct Vertex
{
glm::vec3 Position;
glm::vec3 Normal;
glm::vec3 Tangent;
glm::vec3 BiNormal;
glm::vec2 TextureCoords;
};
struct SkinedVertex : public Vertex {
glm::vec4 BoneIndices;
glm::vec4 BoneWeights;
};
struct TextureProperties {
std::string TexturePath;
glm::vec2 UVRepeat;
std::shared_ptr<::Texture> Texture;
};
struct MaterialBasic
{
float SpecularExponent;
float ReflectionFactor;
glm::vec4 DiffuseColor{ 1.0f, 1.0f, 1.0f, 1.0f };
glm::vec4 SpecularColor{ 1.0f, 1.0f, 1.0f, 1.0f };
glm::vec4 IncandescenceColor{ 1.0f, 1.0f, 1.0f, 1.0f };
unsigned int StartIndex;
unsigned int EndIndex;
//float Transparency;
};
struct MaterialSplatMapping : public MaterialBasic
{
TextureProperties SplatMap;
std::vector<TextureProperties> ColorMaps;
std::vector<TextureProperties> NormalMaps;
std::vector<TextureProperties> SpecularMaps;
std::vector<TextureProperties> IncandescenceMaps;
};
struct MaterialSingleTextures : public MaterialBasic
{
TextureProperties ColorMap;
TextureProperties NormalMap;
TextureProperties SpecularMap;
TextureProperties IncandescenceMap;
};
enum class MaterialType { Basic = 1, SplatMapping, SingleTextures };
struct MaterialProperties {
MaterialType type;
MaterialBasic* material;
};
const Vertex* Vertices() const {
if (hasSkin) {
return m_SkinedVertices.data();
} else {
return m_Vertices.data();
}
};
unsigned int VertexSize() const {
if (hasSkin) {
return sizeof(SkinedVertex);
}
else {
return sizeof(Vertex);
}
};
unsigned int NumVertices() const {
if (hasSkin) {
return m_SkinedVertices.size();
} else {
return m_Vertices.size();
}
};
bool isSkined() const { return hasSkin; };
std::vector<MaterialProperties> m_Materials;
std::vector<unsigned int> m_Indices;
Skeleton* m_Skeleton = nullptr;
glm::mat4 m_Matrix;
private:
bool hasSkin;
std::vector<Vertex> m_Vertices;
std::vector<SkinedVertex> m_SkinedVertices;
void ReadMeshFile(std::string filePath);
void ReadMeshFileHeader(std::size_t& offset, char* fileData);
void ReadMesh(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadVertices(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadIndices(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialFile(std::string filePath);
void ReadMaterials(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialSingle(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialBasic(MaterialBasic* Material, std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialSingleTexture(MaterialSingleTextures* Material, std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialSplatMapping(MaterialSplatMapping* Material, std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadMaterialTextureProperties(TextureProperties& texture, std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadAnimationFile(std::string filePath);
void ReadAnimationBindPoses(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadAnimationJoint(std::size_t& offset, char* fileData, const unsigned int& fileByteSize);
void ReadAnimationClips(std::size_t& offset, char* fileData, const unsigned int& fileByteSize, unsigned int numberOfClips);
void ReadAnimationClipSingle(std::size_t& offset, char* fileData, const unsigned int& fileByteSize, unsigned int clipIndex);
void ReadAnimationKeyFrame(std::size_t& offset, char* fileData, const unsigned int& fileByteSize, std::vector<Skeleton::Animation::Keyframe>& animation);
//void CreateSkeleton(std::vector<std::tuple<std::string, glm::mat4>> &boneInfo, std::map<std::string, int> &boneNameMapping, aiNode* node, int parentID);
};
#else
#include "RawModelAssimp.h"
#endif
#endif