Files
Seele/src/Engine/Material/Material.cpp
T
2024-04-19 22:44:00 +02:00

144 lines
4.7 KiB
C++

#include "Material.h"
#include "Graphics/Enums.h"
#include "Serialization/Serialization.h"
#include "Window/WindowManager.h"
#include "MaterialInstance.h"
#include "Graphics/Graphics.h"
#include "Graphics/Shader.h"
#include <fstream>
using namespace Seele;
Material::Material()
{
}
Material::Material(Gfx::PGraphics graphics,
Gfx::ODescriptorLayout layout,
uint32 uniformDataSize,
uint32 uniformBinding,
std::string materialName,
Array<OShaderExpression> expressions,
Array<std::string> parameter,
MaterialNode brdf)
: graphics(graphics)
, uniformDataSize(uniformDataSize)
, uniformBinding(uniformBinding)
, instanceId(0)
, layout(std::move(layout))
, materialName(materialName)
, codeExpressions(std::move(expressions))
, parameters(std::move(parameter))
, brdf(std::move(brdf))
{
}
Material::~Material()
{
}
OMaterialInstance Material::instantiate()
{
return new MaterialInstance(
instanceId++,
graphics,
codeExpressions,
parameters,
uniformBinding,
uniformDataSize);
}
void Material::save(ArchiveBuffer& buffer) const
{
Serialization::save(buffer, uniformDataSize);
Serialization::save(buffer, uniformBinding);
Serialization::save(buffer, instanceId);
Serialization::save(buffer, materialName);
Serialization::save(buffer, codeExpressions);
Serialization::save(buffer, parameters);
Serialization::save(buffer, brdf);
Serialization::save(buffer, layout->getName());
const auto& bindings = layout->getBindings();
Serialization::save(buffer, bindings.size());
for (const auto& binding : bindings)
{
Serialization::save(buffer, binding.binding);
Serialization::save(buffer, binding.descriptorType);
Serialization::save(buffer, binding.textureType);
Serialization::save(buffer, binding.descriptorCount);
Serialization::save(buffer, binding.bindingFlags);
Serialization::save(buffer, binding.shaderStages);
}
}
void Material::load(ArchiveBuffer& buffer)
{
graphics = buffer.getGraphics();
Serialization::load(buffer, uniformDataSize);
Serialization::load(buffer, uniformBinding);
Serialization::load(buffer, instanceId);
Serialization::load(buffer, materialName);
Serialization::load(buffer, codeExpressions);
Serialization::load(buffer, parameters);
Serialization::load(buffer, brdf);
std::string descriptorName;
Serialization::load(buffer, descriptorName);
uint64 numBindings;
Serialization::load(buffer, numBindings);
layout = graphics->createDescriptorLayout(descriptorName);
for (uint64 i = 0; i < numBindings; ++i)
{
uint32 binding;
Serialization::load(buffer, binding);
Gfx::SeDescriptorType descriptorType;
Serialization::load(buffer, descriptorType);
Gfx::SeImageViewType textureType;
Serialization::load(buffer, textureType);
uint32 descriptorCount;
Serialization::load(buffer, descriptorCount);
Gfx::SeDescriptorBindingFlags bindingFlags;
Serialization::load(buffer, bindingFlags);
Gfx::SeShaderStageFlags shaderStages;
Serialization::load(buffer, shaderStages);
layout->addDescriptorBinding(Gfx::DescriptorBinding{.binding = binding, .descriptorType = descriptorType, .textureType = textureType, .descriptorCount = descriptorCount, .bindingFlags = bindingFlags, .shaderStages = shaderStages,});
}
layout->create();
}
void Material::compile()
{
std::ofstream codeStream("./shaders/generated/"+materialName+".slang");
codeStream << "import Material;\n";
codeStream << "import BRDF;\n";
codeStream << "import MaterialParameter;\n";
codeStream << "struct " << materialName << " : IMaterial {\n";
for(const auto& parameter : parameters)
{
PShaderParameter handle = PShaderExpression(*codeExpressions.find([&parameter](const OShaderExpression& exp) {return exp->key == parameter; }));
handle->generateDeclaration(codeStream);
}
codeStream << "\ttypedef " << brdf.profile << " BRDF;\n";
codeStream << "\t" << brdf.profile << " prepare(MaterialParameter input) {\n";
codeStream << "\t\t" << brdf.profile << " result;\n";
Map<std::string, std::string> varState;
// initialize variable state
for(const auto& expr :codeExpressions)
{
codeStream << "\t\t" << expr->evaluate(varState);
}
for(const auto& [name, exp] : brdf.variables)
{
codeStream << "\t\tresult." << name << " = " << varState[exp] << ";" << std::endl;
}
codeStream << "\t\treturn result;\n";
codeStream << "\t}\n";
codeStream << "};\n";
graphics->getShaderCompiler()->registerMaterial(this);
}