shaders: Expose hints about used const buffers.
This commit is contained in:
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bb0c3fc828
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73d9c494ea
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@ -140,6 +140,11 @@ public:
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return declarations.GetResult() + shader.GetResult();
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return declarations.GetResult() + shader.GetResult();
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}
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}
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/// Returns entries in the shader that are useful for external functions
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ShaderEntries GetEntries() const {
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return {GetConstBuffersDeclarations()};
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}
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private:
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private:
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/// Gets the Subroutine object corresponding to the specified address.
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/// Gets the Subroutine object corresponding to the specified address.
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const Subroutine& GetSubroutine(u32 begin, u32 end) const {
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const Subroutine& GetSubroutine(u32 begin, u32 end) const {
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@ -186,10 +191,9 @@ private:
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}
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}
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/// Generates code representing a uniform (C buffer) register.
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/// Generates code representing a uniform (C buffer) register.
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std::string GetUniform(const Uniform& reg) const {
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std::string GetUniform(const Uniform& reg) {
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std::string index = std::to_string(reg.index);
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declr_const_buffers[reg.index].MarkAsUsed(reg.index, reg.offset);
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return "uniform_" + index + "[" + std::to_string(reg.offset >> 2) + "][" +
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return 'c' + std::to_string(reg.index) + '[' + std::to_string(reg.offset) + ']';
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std::to_string(reg.offset & 3) + "]";
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}
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}
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/**
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/**
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@ -439,6 +443,14 @@ private:
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GenerateDeclarations();
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GenerateDeclarations();
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}
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}
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/// Returns a list of constant buffer declarations
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std::vector<ConstBufferEntry> GetConstBuffersDeclarations() const {
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std::vector<ConstBufferEntry> result;
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std::copy_if(declr_const_buffers.begin(), declr_const_buffers.end(),
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std::back_inserter(result), [](const auto& entry) { return entry.IsUsed(); });
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return result;
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}
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/// Add declarations for registers
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/// Add declarations for registers
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void GenerateDeclarations() {
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void GenerateDeclarations() {
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for (const auto& reg : declr_register) {
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for (const auto& reg : declr_register) {
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@ -463,6 +475,17 @@ private:
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") out vec4 " + GetOutputAttribute(index) + ";");
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") out vec4 " + GetOutputAttribute(index) + ";");
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}
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}
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declarations.AddLine("");
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declarations.AddLine("");
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unsigned const_buffer_layout = 0;
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for (const auto& entry : GetConstBuffersDeclarations()) {
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declarations.AddLine("layout(std430, binding = " + std::to_string(const_buffer_layout) +
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") buffer c" + std::to_string(entry.GetIndex()) + "_buffer");
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declarations.AddLine("{");
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declarations.AddLine(" float c" + std::to_string(entry.GetIndex()) + "[];");
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declarations.AddLine("};");
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declarations.AddLine("");
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++const_buffer_layout;
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}
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}
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}
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private:
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private:
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@ -478,18 +501,19 @@ private:
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std::set<std::string> declr_register;
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std::set<std::string> declr_register;
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std::set<Attribute::Index> declr_input_attribute;
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std::set<Attribute::Index> declr_input_attribute;
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std::set<Attribute::Index> declr_output_attribute;
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std::set<Attribute::Index> declr_output_attribute;
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}; // namespace Decompiler
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std::array<ConstBufferEntry, Maxwell3D::Regs::MaxConstBuffers> declr_const_buffers;
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};
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std::string GetCommonDeclarations() {
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std::string GetCommonDeclarations() {
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return "bool exec_shader();";
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return "bool exec_shader();";
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}
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}
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boost::optional<std::string> DecompileProgram(const ProgramCode& program_code, u32 main_offset,
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boost::optional<ProgramResult> DecompileProgram(const ProgramCode& program_code, u32 main_offset,
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Maxwell3D::Regs::ShaderStage stage) {
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Maxwell3D::Regs::ShaderStage stage) {
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try {
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try {
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auto subroutines = ControlFlowAnalyzer(program_code, main_offset).GetSubroutines();
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auto subroutines = ControlFlowAnalyzer(program_code, main_offset).GetSubroutines();
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GLSLGenerator generator(subroutines, program_code, main_offset, stage);
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GLSLGenerator generator(subroutines, program_code, main_offset, stage);
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return generator.GetShaderCode();
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return ProgramResult{generator.GetShaderCode(), generator.GetEntries()};
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} catch (const DecompileFail& exception) {
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} catch (const DecompileFail& exception) {
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LOG_ERROR(HW_GPU, "Shader decompilation failed: %s", exception.what());
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LOG_ERROR(HW_GPU, "Shader decompilation failed: %s", exception.what());
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}
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}
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@ -17,7 +17,7 @@ using Tegra::Engines::Maxwell3D;
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std::string GetCommonDeclarations();
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std::string GetCommonDeclarations();
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boost::optional<std::string> DecompileProgram(const ProgramCode& program_code, u32 main_offset,
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boost::optional<ProgramResult> DecompileProgram(const ProgramCode& program_code, u32 main_offset,
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Maxwell3D::Regs::ShaderStage stage);
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Maxwell3D::Regs::ShaderStage stage);
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} // namespace Decompiler
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} // namespace Decompiler
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@ -3,18 +3,60 @@
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// Refer to the license.txt file included.
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// Refer to the license.txt file included.
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#include "common/assert.h"
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#include "common/assert.h"
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#include "video_core/engines/maxwell_3d.h"
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#include "video_core/renderer_opengl/gl_shader_decompiler.h"
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#include "video_core/renderer_opengl/gl_shader_gen.h"
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#include "video_core/renderer_opengl/gl_shader_gen.h"
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namespace GLShader {
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namespace GLShader {
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std::string GenerateVertexShader(const ShaderSetup& setup, const MaxwellVSConfig& config) {
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using Tegra::Engines::Maxwell3D;
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UNREACHABLE();
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return {};
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static constexpr u32 PROGRAM_OFFSET{10};
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ProgramResult GenerateVertexShader(const ShaderSetup& setup, const MaxwellVSConfig& config) {
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std::string out = "#version 430 core\n";
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out += "#extension GL_ARB_separate_shader_objects : enable\n\n";
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out += Decompiler::GetCommonDeclarations();
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ProgramResult program = Decompiler::DecompileProgram(setup.program_code, PROGRAM_OFFSET,
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Maxwell3D::Regs::ShaderStage::Vertex)
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.get_value_or({});
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out += R"(
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out gl_PerVertex {
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vec4 gl_Position;
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};
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void main() {
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exec_shader();
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}
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}
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std::string GenerateFragmentShader(const ShaderSetup& setup, const MaxwellFSConfig& config) {
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)";
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UNREACHABLE();
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out += program.first;
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return {};
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return {out, program.second};
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}
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ProgramResult GenerateFragmentShader(const ShaderSetup& setup, const MaxwellFSConfig& config) {
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std::string out = "#version 430 core\n";
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out += "#extension GL_ARB_separate_shader_objects : enable\n\n";
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out += Decompiler::GetCommonDeclarations();
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ProgramResult program = Decompiler::DecompileProgram(setup.program_code, PROGRAM_OFFSET,
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Maxwell3D::Regs::ShaderStage::Fragment)
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.get_value_or({});
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out += R"(
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out vec4 color;
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uniform sampler2D tex[32];
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void main() {
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exec_shader();
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}
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)";
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out += program.first;
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return {out, program.second};
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}
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}
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} // namespace GLShader
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} // namespace GLShader
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@ -7,6 +7,8 @@
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#include <array>
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#include <array>
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#include <string>
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#include <string>
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#include <type_traits>
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#include <type_traits>
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#include <utility>
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#include <vector>
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#include "common/common_types.h"
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#include "common/common_types.h"
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#include "common/hash.h"
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#include "common/hash.h"
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@ -16,6 +18,38 @@ constexpr size_t MAX_PROGRAM_CODE_LENGTH{0x1000};
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using ProgramCode = std::array<u64, MAX_PROGRAM_CODE_LENGTH>;
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using ProgramCode = std::array<u64, MAX_PROGRAM_CODE_LENGTH>;
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class ConstBufferEntry {
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public:
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void MarkAsUsed(unsigned index, unsigned offset) {
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is_used = true;
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this->index = index;
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max_offset = std::max(max_offset, offset);
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}
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bool IsUsed() const {
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return is_used;
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}
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unsigned GetIndex() const {
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return index;
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}
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unsigned GetSize() const {
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return max_offset + 1;
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}
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private:
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bool is_used{};
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unsigned index{};
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unsigned max_offset{};
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};
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struct ShaderEntries {
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std::vector<ConstBufferEntry> const_buffer_entries;
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};
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using ProgramResult = std::pair<std::string, ShaderEntries>;
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struct ShaderSetup {
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struct ShaderSetup {
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ShaderSetup(ProgramCode&& program_code) : program_code(std::move(program_code)) {}
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ShaderSetup(ProgramCode&& program_code) : program_code(std::move(program_code)) {}
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@ -58,13 +92,13 @@ struct MaxwellFSConfig : Common::HashableStruct<MaxwellShaderConfigCommon> {
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* Generates the GLSL vertex shader program source code for the given VS program
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* Generates the GLSL vertex shader program source code for the given VS program
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* @returns String of the shader source code
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* @returns String of the shader source code
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*/
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*/
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std::string GenerateVertexShader(const ShaderSetup& setup, const MaxwellVSConfig& config);
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ProgramResult GenerateVertexShader(const ShaderSetup& setup, const MaxwellVSConfig& config);
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/**
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/**
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* Generates the GLSL fragment shader program source code for the given FS program
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* Generates the GLSL fragment shader program source code for the given FS program
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* @returns String of the shader source code
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* @returns String of the shader source code
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*/
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*/
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std::string GenerateFragmentShader(const ShaderSetup& setup, const MaxwellFSConfig& config);
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ProgramResult GenerateFragmentShader(const ShaderSetup& setup, const MaxwellFSConfig& config);
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} // namespace GLShader
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} // namespace GLShader
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@ -41,19 +41,25 @@ class OGLShaderStage {
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public:
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public:
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OGLShaderStage() = default;
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OGLShaderStage() = default;
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void Create(const char* source, GLenum type) {
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void Create(const ProgramResult& program_result, GLenum type) {
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OGLShader shader;
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OGLShader shader;
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shader.Create(source, type);
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shader.Create(program_result.first.c_str(), type);
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program.Create(true, shader.handle);
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program.Create(true, shader.handle);
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Impl::SetShaderUniformBlockBindings(program.handle);
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Impl::SetShaderUniformBlockBindings(program.handle);
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Impl::SetShaderSamplerBindings(program.handle);
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Impl::SetShaderSamplerBindings(program.handle);
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entries = program_result.second;
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}
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}
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GLuint GetHandle() const {
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GLuint GetHandle() const {
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return program.handle;
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return program.handle;
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}
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}
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ShaderEntries GetEntries() const {
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return entries;
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}
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private:
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private:
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OGLProgram program;
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OGLProgram program;
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ShaderEntries entries;
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};
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};
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// TODO(wwylele): beautify this doc
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// TODO(wwylele): beautify this doc
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@ -61,25 +67,28 @@ private:
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// The double cache is needed because diffent KeyConfigType, which includes a hash of the code
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// The double cache is needed because diffent KeyConfigType, which includes a hash of the code
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// region (including its leftover unused code) can generate the same GLSL code.
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// region (including its leftover unused code) can generate the same GLSL code.
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template <typename KeyConfigType,
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template <typename KeyConfigType,
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std::string (*CodeGenerator)(const ShaderSetup&, const KeyConfigType&), GLenum ShaderType>
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ProgramResult (*CodeGenerator)(const ShaderSetup&, const KeyConfigType&),
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GLenum ShaderType>
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class ShaderCache {
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class ShaderCache {
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public:
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public:
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ShaderCache() = default;
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ShaderCache() = default;
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GLuint Get(const KeyConfigType& key, const ShaderSetup& setup) {
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using Result = std::pair<GLuint, ShaderEntries>;
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Result Get(const KeyConfigType& key, const ShaderSetup& setup) {
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auto map_it = shader_map.find(key);
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auto map_it = shader_map.find(key);
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if (map_it == shader_map.end()) {
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if (map_it == shader_map.end()) {
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std::string program = CodeGenerator(setup, key);
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ProgramResult program = CodeGenerator(setup, key);
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auto [iter, new_shader] = shader_cache.emplace(program, OGLShaderStage{});
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auto [iter, new_shader] = shader_cache.emplace(program.first, OGLShaderStage{});
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OGLShaderStage& cached_shader = iter->second;
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OGLShaderStage& cached_shader = iter->second;
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if (new_shader) {
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if (new_shader) {
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cached_shader.Create(program.c_str(), ShaderType);
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cached_shader.Create(program, ShaderType);
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}
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}
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shader_map[key] = &cached_shader;
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shader_map[key] = &cached_shader;
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return cached_shader.GetHandle();
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return {cached_shader.GetHandle(), program.second};
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} else {
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} else {
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return map_it->second->GetHandle();
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return {map_it->second->GetHandle(), map_it->second->GetEntries()};
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}
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}
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}
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}
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@ -98,12 +107,18 @@ public:
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pipeline.Create();
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pipeline.Create();
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}
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}
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void UseProgrammableVertexShader(const MaxwellVSConfig& config, const ShaderSetup setup) {
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ShaderEntries UseProgrammableVertexShader(const MaxwellVSConfig& config,
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current.vs = vertex_shaders.Get(config, setup);
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const ShaderSetup setup) {
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ShaderEntries result;
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std::tie(current.vs, result) = vertex_shaders.Get(config, setup);
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return result;
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}
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}
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void UseProgrammableFragmentShader(const MaxwellFSConfig& config, const ShaderSetup setup) {
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ShaderEntries UseProgrammableFragmentShader(const MaxwellFSConfig& config,
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current.fs = fragment_shaders.Get(config, setup);
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const ShaderSetup setup) {
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ShaderEntries result;
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std::tie(current.fs, result) = fragment_shaders.Get(config, setup);
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return result;
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}
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}
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void UseTrivialGeometryShader() {
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void UseTrivialGeometryShader() {
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