#include "MaterialLoader.h" #include "Graphics/Graphics.h" #include "Asset/MaterialAsset.h" #include "Asset/AssetRegistry.h" #include "Material/Material.h" #include "Window/WindowManager.h" #include "Material/ShaderExpression.h" #include "Asset/TextureAsset.h" #include #include using namespace Seele; using json = nlohmann::json; MaterialLoader::MaterialLoader(Gfx::PGraphics graphics) : graphics(graphics) { OMaterialAsset placeholderAsset = new MaterialAsset(); import(MaterialImportArgs{ .filePath = std::filesystem::absolute("./shaders/Placeholder.json"), .importPath = "", }, placeholderAsset); AssetRegistry::get().assetRoot->materials[""] = std::move(placeholderAsset); } MaterialLoader::~MaterialLoader() { } void MaterialLoader::importAsset(MaterialImportArgs args) { std::filesystem::path assetPath = args.filePath.filename(); assetPath.replace_extension("asset"); OMaterialAsset asset = new MaterialAsset(args.importPath, assetPath.stem().string()); asset->setStatus(Asset::Status::Loading); PMaterialAsset ref = asset; AssetRegistry::get().registerMaterial(std::move(asset)); import(args, ref); } void MaterialLoader::import(MaterialImportArgs args, PMaterialAsset asset) { auto jsonstream = std::ifstream(args.filePath.c_str()); json j; jsonstream >> j; std::string materialName = j["name"].get() + "Material"; Gfx::ODescriptorLayout layout = graphics->createDescriptorLayout(materialName + "Layout"); //Shader file needs to conform to the slang standard, which prohibits _ materialName.erase(std::remove(materialName.begin(), materialName.end(), '_'), materialName.end()); materialName.erase(std::remove(materialName.begin(), materialName.end(), '.'), materialName.end()); uint32 uniformBufferOffset = 0; uint32 bindingCounter = 0; // Uniform buffers are always binding 0 int32 uniformBinding = -1; Map expressions; uint32 key = 0; uint32 auxKey = 0; Array parameters; for(auto& param : j["params"].items()) { std::string type = param.value()["type"].get(); auto defaultValue = param.value().find("default"); // TODO: ALIGNMENT RULES if(type.compare("float") == 0) { OFloatParameter p = new FloatParameter(param.key(), uniformBufferOffset, 0); if(uniformBinding == -1) { layout->addDescriptorBinding(bindingCounter, Gfx::SE_DESCRIPTOR_TYPE_UNIFORM_BUFFER); uniformBinding = bindingCounter++; } uniformBufferOffset += 4; if(defaultValue != param.value().end()) { p->data = std::stof(defaultValue.value().get()); } parameters.add(p->key); expressions[p->key] = std::move(p); } // TODO: ALIGNMENT RULES else if(type.compare("float3") == 0) { OVectorParameter p = new VectorParameter(param.key(), uniformBufferOffset, 0); if(uniformBinding == -1) { layout->addDescriptorBinding(bindingCounter, Gfx::SE_DESCRIPTOR_TYPE_UNIFORM_BUFFER); uniformBinding = bindingCounter++; } uniformBufferOffset += 12; if(defaultValue != param.value().end()) { p->data = parseVector(defaultValue.value().get().c_str()); } parameters.add(p->key); expressions[p->key] = std::move(p); } else if(type.compare("Texture2D") == 0) { OTextureParameter p = new TextureParameter(param.key(), 0, bindingCounter); layout->addDescriptorBinding(bindingCounter++, Gfx::SE_DESCRIPTOR_TYPE_SAMPLED_IMAGE); if(defaultValue != param.value().end()) { std::string defaultString = defaultValue.value().get(); p->data = AssetRegistry::findTexture(defaultString); } if(p->data == nullptr) { p->data = AssetRegistry::findTexture(""); // this will return placeholder texture } parameters.add(p->key); expressions[p->key] = std::move(p); } else if(type.compare("SamplerState") == 0) { OSamplerParameter p = new SamplerParameter(param.key(), 0, bindingCounter); layout->addDescriptorBinding(bindingCounter++, Gfx::SE_DESCRIPTOR_TYPE_SAMPLER); p->data = graphics->createSamplerState({}); parameters.add(p->key); expressions[p->key] = std::move(p); } else { std::cout << "Error unsupported parameter type" << std::endl; } } uint32 uniformDataSize = uniformBufferOffset; auto referenceExpression = [&auxKey, &expressions](json obj) -> std::string { if(obj.is_string()) { std::string str = obj.get(); if (expressions.contains(str)) { return str; } OConstantExpression c = new ConstantExpression(str, ExpressionType::UNKNOWN); std::string name = std::format("Const{0}", auxKey++); c->key = name; expressions[c->key] = std::move(c); return name; } else { return std::format("{0}", obj.get()); } }; MaterialNode mat; for(auto& param : j["code"].items()) { auto& obj = param.value(); std::string exp = obj["exp"].get(); if(exp.compare("Add") == 0) { OAddExpression p = new AddExpression(); std::string name = std::format("{0}", key++); p->key = name; p->inputs["lhs"].source = referenceExpression(obj["lhs"]); p->inputs["rhs"].source = referenceExpression(obj["rhs"]); expressions[name] = std::move(p); } if(exp.compare("Sub") == 0) { OSubExpression p = new SubExpression(); std::string name = std::format("{0}", key++); p->key = name; p->inputs["lhs"].source = referenceExpression(obj["lhs"]); p->inputs["rhs"].source = referenceExpression(obj["rhs"]); expressions[name] = std::move(p); } if(exp.compare("Mul") == 0) { OMulExpression p = new MulExpression(); std::string name = std::format("{0}", key++); p->key = name; p->inputs["lhs"].source = referenceExpression(obj["lhs"]); p->inputs["rhs"].source = referenceExpression(obj["rhs"]); expressions[name] = std::move(p); } if(exp.compare("Swizzle") == 0) { OSwizzleExpression p = new SwizzleExpression(); std::string name = std::format("{0}", key); p->key = name; p->inputs["target"].source = referenceExpression(obj["target"]); int32 i = 0; for(auto& c : obj["comp"].items()) { p->comp[i++] = c.value().get(); } expressions[name] = std::move(p); } if(exp.compare("Sample") == 0) { OSampleExpression p = new SampleExpression(); std::string name = std::format("{0}", key); p->key = name; p->inputs["texture"].source = referenceExpression(obj["texture"]); p->inputs["sampler"].source = referenceExpression(obj["sampler"]); p->inputs["coords"].source = referenceExpression(obj["coords"]); expressions[name] = std::move(p); } if(exp.compare("BRDF") == 0) { mat.profile = obj["profile"].get(); for(auto& val : obj["values"].items()) { mat.variables[val.key()] = referenceExpression(val.value()); } } } layout->create(); asset->material = new Material( graphics, std::move(layout), uniformDataSize, uniformBinding, materialName, std::move(expressions), std::move(parameters), std::move(mat) ); asset->material->compile(); graphics->getShaderCompiler()->registerMaterial(asset->material); asset->setStatus(Asset::Status::Ready); if (asset->getName().empty()) { return; } auto stream = AssetRegistry::createWriteStream((std::filesystem::path(asset->folderPath) / asset->getName()).string().append(".asset"), std::ios::binary); ArchiveBuffer archive; Serialization::save(archive, MaterialAsset::IDENTIFIER); Serialization::save(archive, asset->getName()); Serialization::save(archive, asset->getFolderPath()); asset->save(archive); archive.writeToStream(stream); ////co_return; } PMaterialAsset MaterialLoader::getPlaceHolderMaterial() { return placeholderMaterial; }