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VideoVulkan/ShaderCompiler: Use a std::optional instead of bool+out variable
Now that we utilize C++17, we can simply return an optional containing the code instead of using an out variable and a boolean result, essentially combining them into one. This provides a much more straightforward interface.
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@ -108,11 +108,11 @@ static const char SUBGROUP_HELPER_HEADER[] = R"(
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#define SUBGROUP_MAX(value) value = subgroupMax(value)
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)";
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bool CompileShaderToSPV(SPIRVCodeVector* out_code, EShLanguage stage, const char* stage_filename,
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std::string_view source, std::string_view header)
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std::optional<SPIRVCodeVector> CompileShaderToSPV(EShLanguage stage, const char* stage_filename,
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std::string_view source, std::string_view header)
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{
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if (!InitializeGlslang())
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return false;
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return std::nullopt;
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std::unique_ptr<glslang::TShader> shader = std::make_unique<glslang::TShader>(stage);
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std::unique_ptr<glslang::TProgram> program;
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@ -172,7 +172,7 @@ bool CompileShaderToSPV(SPIRVCodeVector* out_code, EShLanguage stage, const char
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includer))
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{
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DumpBadShader("Failed to parse shader");
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return false;
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return std::nullopt;
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}
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// Even though there's only a single shader, we still need to link it to generate SPV
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@ -181,18 +181,19 @@ bool CompileShaderToSPV(SPIRVCodeVector* out_code, EShLanguage stage, const char
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if (!program->link(messages))
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{
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DumpBadShader("Failed to link program");
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return false;
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return std::nullopt;
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}
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glslang::TIntermediate* intermediate = program->getIntermediate(stage);
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if (!intermediate)
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{
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DumpBadShader("Failed to generate SPIR-V");
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return false;
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return std::nullopt;
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}
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SPIRVCodeVector out_code;
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spv::SpvBuildLogger logger;
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glslang::GlslangToSpv(*intermediate, *out_code, &logger);
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glslang::GlslangToSpv(*intermediate, out_code, &logger);
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// Write out messages
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// Temporary: skip if it contains "Warning, version 450 is not yet complete; most version-specific
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@ -230,11 +231,11 @@ bool CompileShaderToSPV(SPIRVCodeVector* out_code, EShLanguage stage, const char
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stream << "SPIR-V conversion messages: " << std::endl;
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stream << spv_messages;
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stream << "SPIR-V:" << std::endl;
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spv::Disassemble(stream, *out_code);
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spv::Disassemble(stream, out_code);
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}
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}
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return true;
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return out_code;
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}
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bool InitializeGlslang()
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@ -356,24 +357,24 @@ const TBuiltInResource* GetCompilerResourceLimits()
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return &limits;
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}
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bool CompileVertexShader(SPIRVCodeVector* out_code, std::string_view source_code)
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std::optional<SPIRVCodeVector> CompileVertexShader(std::string_view source_code)
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{
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return CompileShaderToSPV(out_code, EShLangVertex, "vs", source_code, SHADER_HEADER);
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return CompileShaderToSPV(EShLangVertex, "vs", source_code, SHADER_HEADER);
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}
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bool CompileGeometryShader(SPIRVCodeVector* out_code, std::string_view source_code)
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std::optional<SPIRVCodeVector> CompileGeometryShader(std::string_view source_code)
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{
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return CompileShaderToSPV(out_code, EShLangGeometry, "gs", source_code, SHADER_HEADER);
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return CompileShaderToSPV(EShLangGeometry, "gs", source_code, SHADER_HEADER);
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}
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bool CompileFragmentShader(SPIRVCodeVector* out_code, std::string_view source_code)
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std::optional<SPIRVCodeVector> CompileFragmentShader(std::string_view source_code)
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{
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return CompileShaderToSPV(out_code, EShLangFragment, "ps", source_code, SHADER_HEADER);
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return CompileShaderToSPV(EShLangFragment, "ps", source_code, SHADER_HEADER);
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}
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bool CompileComputeShader(SPIRVCodeVector* out_code, std::string_view source_code)
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std::optional<SPIRVCodeVector> CompileComputeShader(std::string_view source_code)
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{
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return CompileShaderToSPV(out_code, EShLangCompute, "cs", source_code, COMPUTE_SHADER_HEADER);
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return CompileShaderToSPV(EShLangCompute, "cs", source_code, COMPUTE_SHADER_HEADER);
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}
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} // namespace ShaderCompiler
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@ -5,6 +5,7 @@
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#pragma once
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#include <cstddef>
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#include <optional>
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#include <string_view>
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#include <vector>
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@ -19,16 +20,16 @@ using SPIRVCodeType = u32;
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using SPIRVCodeVector = std::vector<SPIRVCodeType>;
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// Compile a vertex shader to SPIR-V.
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bool CompileVertexShader(SPIRVCodeVector* out_code, std::string_view source_code);
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std::optional<SPIRVCodeVector> CompileVertexShader(std::string_view source_code);
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// Compile a geometry shader to SPIR-V.
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bool CompileGeometryShader(SPIRVCodeVector* out_code, std::string_view source_code);
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std::optional<SPIRVCodeVector> CompileGeometryShader(std::string_view source_code);
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// Compile a fragment shader to SPIR-V.
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bool CompileFragmentShader(SPIRVCodeVector* out_code, std::string_view source_code);
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std::optional<SPIRVCodeVector> CompileFragmentShader(std::string_view source_code);
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// Compile a compute shader to SPIR-V.
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bool CompileComputeShader(SPIRVCodeVector* out_code, std::string_view source_code);
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std::optional<SPIRVCodeVector> CompileComputeShader(std::string_view source_code);
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} // namespace ShaderCompiler
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} // namespace Vulkan
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@ -88,31 +88,29 @@ static std::unique_ptr<VKShader> CreateShaderObject(ShaderStage stage,
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std::unique_ptr<VKShader> VKShader::CreateFromSource(ShaderStage stage, std::string_view source)
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{
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ShaderCompiler::SPIRVCodeVector spv;
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bool result;
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std::optional<ShaderCompiler::SPIRVCodeVector> spv;
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switch (stage)
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{
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case ShaderStage::Vertex:
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result = ShaderCompiler::CompileVertexShader(&spv, source);
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spv = ShaderCompiler::CompileVertexShader(source);
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break;
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case ShaderStage::Geometry:
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result = ShaderCompiler::CompileGeometryShader(&spv, source);
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spv = ShaderCompiler::CompileGeometryShader(source);
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break;
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case ShaderStage::Pixel:
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result = ShaderCompiler::CompileFragmentShader(&spv, source);
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spv = ShaderCompiler::CompileFragmentShader(source);
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break;
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case ShaderStage::Compute:
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result = ShaderCompiler::CompileComputeShader(&spv, source);
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spv = ShaderCompiler::CompileComputeShader(source);
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break;
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default:
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result = false;
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break;
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}
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if (!result)
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if (!spv)
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return nullptr;
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return CreateShaderObject(stage, std::move(spv));
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return CreateShaderObject(stage, std::move(*spv));
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}
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std::unique_ptr<VKShader> VKShader::CreateFromBinary(ShaderStage stage, const void* data,
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