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https://github.com/yuzu-emu/yuzu.git
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commit
96cafbe4cc
@ -32,6 +32,12 @@ namespace Shader {
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static std::unordered_map<u64, CompiledShader*> shader_map;
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static std::unordered_map<u64, CompiledShader*> shader_map;
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static JitCompiler jit;
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static JitCompiler jit;
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static CompiledShader* jit_shader;
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static CompiledShader* jit_shader;
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static void ClearCache() {
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shader_map.clear();
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jit.Clear();
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LOG_INFO(HW_GPU, "Shader JIT cache cleared");
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}
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#endif // ARCHITECTURE_x86_64
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#endif // ARCHITECTURE_x86_64
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void Setup(UnitState<false>& state) {
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void Setup(UnitState<false>& state) {
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@ -45,6 +51,12 @@ void Setup(UnitState<false>& state) {
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if (iter != shader_map.end()) {
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if (iter != shader_map.end()) {
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jit_shader = iter->second;
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jit_shader = iter->second;
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} else {
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} else {
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// Check if remaining JIT code space is enough for at least one more (massive) shader
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if (jit.GetSpaceLeft() < jit_shader_size) {
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// If not, clear the cache of all previously compiled shaders
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ClearCache();
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}
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jit_shader = jit.Compile();
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jit_shader = jit.Compile();
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shader_map.emplace(cache_key, jit_shader);
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shader_map.emplace(cache_key, jit_shader);
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}
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}
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@ -54,7 +66,7 @@ void Setup(UnitState<false>& state) {
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void Shutdown() {
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void Shutdown() {
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#ifdef ARCHITECTURE_x86_64
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#ifdef ARCHITECTURE_x86_64
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shader_map.clear();
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ClearCache();
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#endif // ARCHITECTURE_x86_64
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#endif // ARCHITECTURE_x86_64
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}
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}
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@ -135,7 +147,7 @@ OutputVertex Run(UnitState<false>& state, const InputVertex& input, int num_attr
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std::fmin(std::fabs(ret.color[i].ToFloat32()), 1.0f));
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std::fmin(std::fabs(ret.color[i].ToFloat32()), 1.0f));
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}
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}
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LOG_TRACE(Render_Software, "Output vertex: pos(%.2f, %.2f, %.2f, %.2f), quat(%.2f, %.2f, %.2f, %.2f), "
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LOG_TRACE(HW_GPU, "Output vertex: pos(%.2f, %.2f, %.2f, %.2f), quat(%.2f, %.2f, %.2f, %.2f), "
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"col(%.2f, %.2f, %.2f, %.2f), tc0(%.2f, %.2f), view(%.2f, %.2f, %.2f)",
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"col(%.2f, %.2f, %.2f, %.2f), tc0(%.2f, %.2f), view(%.2f, %.2f, %.2f)",
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ret.pos.x.ToFloat32(), ret.pos.y.ToFloat32(), ret.pos.z.ToFloat32(), ret.pos.w.ToFloat32(),
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ret.pos.x.ToFloat32(), ret.pos.y.ToFloat32(), ret.pos.z.ToFloat32(), ret.pos.w.ToFloat32(),
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ret.quat.x.ToFloat32(), ret.quat.y.ToFloat32(), ret.quat.z.ToFloat32(), ret.quat.w.ToFloat32(),
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ret.quat.x.ToFloat32(), ret.quat.y.ToFloat32(), ret.quat.z.ToFloat32(), ret.quat.w.ToFloat32(),
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@ -645,7 +645,8 @@ void JitCompiler::Compile_MAD(Instruction instr) {
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}
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}
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void JitCompiler::Compile_IF(Instruction instr) {
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void JitCompiler::Compile_IF(Instruction instr) {
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards if-statements not supported");
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards if-statements (%d -> %d) not supported",
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*offset_ptr, instr.flow_control.dest_offset.Value());
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// Evaluate the "IF" condition
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// Evaluate the "IF" condition
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if (instr.opcode.Value() == OpCode::Id::IFU) {
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if (instr.opcode.Value() == OpCode::Id::IFU) {
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@ -676,7 +677,8 @@ void JitCompiler::Compile_IF(Instruction instr) {
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}
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}
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void JitCompiler::Compile_LOOP(Instruction instr) {
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void JitCompiler::Compile_LOOP(Instruction instr) {
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards loops not supported");
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards loops (%d -> %d) not supported",
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*offset_ptr, instr.flow_control.dest_offset.Value());
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ASSERT_MSG(!looping, "Nested loops not supported");
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ASSERT_MSG(!looping, "Nested loops not supported");
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looping = true;
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looping = true;
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@ -704,7 +706,8 @@ void JitCompiler::Compile_LOOP(Instruction instr) {
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}
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}
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void JitCompiler::Compile_JMP(Instruction instr) {
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void JitCompiler::Compile_JMP(Instruction instr) {
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards jumps not supported");
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ASSERT_MSG(instr.flow_control.dest_offset > *offset_ptr, "Backwards jumps (%d -> %d) not supported",
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*offset_ptr, instr.flow_control.dest_offset.Value());
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if (instr.opcode.Value() == OpCode::Id::JMPC)
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if (instr.opcode.Value() == OpCode::Id::JMPC)
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Compile_EvaluateCondition(instr);
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Compile_EvaluateCondition(instr);
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@ -748,7 +751,7 @@ void JitCompiler::Compile_NextInstr(unsigned* offset) {
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} else {
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} else {
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// Unhandled instruction
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// Unhandled instruction
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LOG_CRITICAL(HW_GPU, "Unhandled instruction: 0x%02x (0x%08x)",
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LOG_CRITICAL(HW_GPU, "Unhandled instruction: 0x%02x (0x%08x)",
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instr.opcode.Value().EffectiveOpCode(), instr.hex);
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instr.opcode.Value().EffectiveOpCode(), instr.hex);
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}
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}
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}
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}
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@ -787,7 +790,7 @@ CompiledShader* JitCompiler::Compile() {
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}
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}
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JitCompiler::JitCompiler() {
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JitCompiler::JitCompiler() {
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AllocCodeSpace(1024 * 1024 * 4);
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AllocCodeSpace(jit_cache_size);
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}
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}
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void JitCompiler::Clear() {
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void JitCompiler::Clear() {
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@ -19,6 +19,11 @@ namespace Pica {
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namespace Shader {
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namespace Shader {
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/// Memory needed to be available to compile the next shader (otherwise, clear the cache)
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constexpr size_t jit_shader_size = 1024 * 512;
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/// Memory allocated for the JIT code space cache
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constexpr size_t jit_cache_size = 1024 * 1024 * 8;
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using CompiledShader = void(void* registers);
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using CompiledShader = void(void* registers);
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/**
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/**
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