glsl: WIP var forward declaration
to fix Loop control flow.
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2a71333716
commit
f6bbc76336
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@ -29,7 +29,10 @@ std::string_view SamplerType(TextureType type) {
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return "sampler2DArray";
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case TextureType::Color3D:
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return "sampler3D";
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case TextureType::ColorCube:
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return "samplerCube";
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default:
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fmt::print("Texture type: {}", type);
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throw NotImplementedException("Texture type: {}", type);
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}
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}
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@ -39,7 +42,6 @@ std::string_view SamplerType(TextureType type) {
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EmitContext::EmitContext(IR::Program& program, Bindings& bindings, const Profile& profile_,
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const RuntimeInfo& runtime_info_)
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: info{program.info}, profile{profile_}, runtime_info{runtime_info_} {
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std::string header = "";
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SetupExtensions(header);
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stage = program.stage;
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switch (program.stage) {
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@ -67,12 +69,11 @@ EmitContext::EmitContext(IR::Program& program, Bindings& bindings, const Profile
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program.workgroup_size[2]);
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break;
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}
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code += header;
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const std::string_view attr_stage{stage == Stage::Fragment ? "fragment" : "vertex"};
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for (size_t index = 0; index < info.input_generics.size(); ++index) {
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const auto& generic{info.input_generics[index]};
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if (generic.used) {
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Add("layout(location={}) {} in vec4 in_attr{};", index,
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header += fmt::format("layout(location={}) {} in vec4 in_attr{};", index,
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InterpDecorator(generic.interpolation), index);
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}
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}
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@ -80,11 +81,11 @@ EmitContext::EmitContext(IR::Program& program, Bindings& bindings, const Profile
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if (!info.stores_frag_color[index]) {
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continue;
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}
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Add("layout(location={})out vec4 frag_color{};", index, index);
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header += fmt::format("layout(location={})out vec4 frag_color{};", index, index);
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}
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for (size_t index = 0; index < info.stores_generics.size(); ++index) {
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if (info.stores_generics[index]) {
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Add("layout(location={}) out vec4 out_attr{};", index, index);
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header += fmt::format("layout(location={}) out vec4 out_attr{};", index, index);
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}
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}
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DefineConstantBuffers(bindings);
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@ -92,14 +93,15 @@ EmitContext::EmitContext(IR::Program& program, Bindings& bindings, const Profile
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SetupImages(bindings);
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DefineHelperFunctions();
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Add("void main(){{");
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header += "void main(){\n";
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if (stage == Stage::VertexA || stage == Stage::VertexB) {
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Add("gl_Position = vec4(0.0f, 0.0f, 0.0f, 1.0f);");
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}
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}
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void EmitContext::SetupExtensions(std::string& header) {
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void EmitContext::SetupExtensions(std::string&) {
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header += "#extension GL_ARB_separate_shader_objects : enable\n";
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// header += "#extension GL_ARB_texture_cube_map_array : enable\n";
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if (info.uses_int64) {
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header += "#extension GL_ARB_gpu_shader_int64 : enable\n";
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}
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@ -127,7 +129,8 @@ void EmitContext::DefineConstantBuffers(Bindings& bindings) {
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return;
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}
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for (const auto& desc : info.constant_buffer_descriptors) {
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Add("layout(std140,binding={}) uniform {}_cbuf_{}{{vec4 {}_cbuf{}[{}];}};",
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header += fmt::format(
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"layout(std140,binding={}) uniform {}_cbuf_{}{{vec4 {}_cbuf{}[{}];}};",
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bindings.uniform_buffer, stage_name, desc.index, stage_name, desc.index, 4 * 1024);
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bindings.uniform_buffer += desc.count;
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}
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@ -138,53 +141,53 @@ void EmitContext::DefineStorageBuffers(Bindings& bindings) {
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return;
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}
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for (const auto& desc : info.storage_buffers_descriptors) {
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Add("layout(std430,binding={}) buffer ssbo_{}{{uint ssbo{}[];}};", bindings.storage_buffer,
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bindings.storage_buffer, desc.cbuf_index);
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header += fmt::format("layout(std430,binding={}) buffer ssbo_{}{{uint ssbo{}[];}};",
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bindings.storage_buffer, bindings.storage_buffer, desc.cbuf_index);
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bindings.storage_buffer += desc.count;
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}
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}
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void EmitContext::DefineHelperFunctions() {
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if (info.uses_global_increment) {
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code += "uint CasIncrement(uint op_a,uint op_b){return(op_a>=op_b)?0u:(op_a+1u);}\n";
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header += "uint CasIncrement(uint op_a,uint op_b){return(op_a>=op_b)?0u:(op_a+1u);}\n";
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}
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if (info.uses_global_decrement) {
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code +=
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header +=
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"uint CasDecrement(uint op_a,uint op_b){return(op_a==0||op_a>op_b)?op_b:(op_a-1u);}\n";
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}
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if (info.uses_atomic_f32_add) {
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code += "uint CasFloatAdd(uint op_a,float op_b){return "
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header += "uint CasFloatAdd(uint op_a,float op_b){return "
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"floatBitsToUint(uintBitsToFloat(op_a)+op_b);}\n";
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}
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if (info.uses_atomic_f32x2_add) {
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code += "uint CasFloatAdd32x2(uint op_a,vec2 op_b){return "
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header += "uint CasFloatAdd32x2(uint op_a,vec2 op_b){return "
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"packHalf2x16(unpackHalf2x16(op_a)+op_b);}\n";
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}
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if (info.uses_atomic_f32x2_min) {
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code += "uint CasFloatMin32x2(uint op_a,vec2 op_b){return "
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header += "uint CasFloatMin32x2(uint op_a,vec2 op_b){return "
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"packHalf2x16(min(unpackHalf2x16(op_a),op_b));}\n";
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}
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if (info.uses_atomic_f32x2_max) {
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code += "uint CasFloatMax32x2(uint op_a,vec2 op_b){return "
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header += "uint CasFloatMax32x2(uint op_a,vec2 op_b){return "
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"packHalf2x16(max(unpackHalf2x16(op_a),op_b));}\n";
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}
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if (info.uses_atomic_f16x2_add) {
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code += "uint CasFloatAdd16x2(uint op_a,f16vec2 op_b){return "
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header += "uint CasFloatAdd16x2(uint op_a,f16vec2 op_b){return "
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"packFloat2x16(unpackFloat2x16(op_a)+op_b);}\n";
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}
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if (info.uses_atomic_f16x2_min) {
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code += "uint CasFloatMin16x2(uint op_a,f16vec2 op_b){return "
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header += "uint CasFloatMin16x2(uint op_a,f16vec2 op_b){return "
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"packFloat2x16(min(unpackFloat2x16(op_a),op_b));}\n";
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}
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if (info.uses_atomic_f16x2_max) {
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code += "uint CasFloatMax16x2(uint op_a,f16vec2 op_b){return "
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header += "uint CasFloatMax16x2(uint op_a,f16vec2 op_b){return "
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"packFloat2x16(max(unpackFloat2x16(op_a),op_b));}\n";
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}
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if (info.uses_atomic_s32_min) {
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code += "uint CasMinS32(uint op_a,uint op_b){return uint(min(int(op_a),int(op_b)));}";
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header += "uint CasMinS32(uint op_a,uint op_b){return uint(min(int(op_a),int(op_b)));}";
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}
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if (info.uses_atomic_s32_max) {
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code += "uint CasMaxS32(uint op_a,uint op_b){return uint(max(int(op_a),int(op_b)));}";
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header += "uint CasMaxS32(uint op_a,uint op_b){return uint(max(int(op_a),int(op_b)));}";
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}
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}
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@ -215,7 +218,8 @@ void EmitContext::SetupImages(Bindings& bindings) {
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texture_bindings.push_back(bindings.texture);
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const auto indices{bindings.texture + desc.count};
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for (u32 index = bindings.texture; index < indices; ++index) {
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Add("layout(binding={}) uniform {} tex{};", bindings.texture, sampler_type, index);
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header += fmt::format("layout(binding={}) uniform {} tex{};", bindings.texture,
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sampler_type, index);
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}
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bindings.texture += desc.count;
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}
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@ -119,6 +119,7 @@ public:
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code += '\n';
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}
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std::string header;
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std::string code;
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RegAlloc reg_alloc;
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const Info& info;
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@ -83,6 +83,7 @@ void Invoke(EmitContext& ctx, IR::Inst* inst) {
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}
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void EmitInst(EmitContext& ctx, IR::Inst* inst) {
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// ctx.Add("/* {} */", inst->GetOpcode());
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switch (inst->GetOpcode()) {
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#define OPCODE(name, result_type, ...) \
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case IR::Opcode::name: \
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@ -108,12 +109,9 @@ void PrecolorInst(IR::Inst& phi) {
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if (arg.IsImmediate()) {
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ir.PhiMove(phi, arg);
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} else {
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ir.PhiMove(phi, IR::Value{&*arg.InstRecursive()});
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ir.PhiMove(phi, IR::Value{arg.InstRecursive()});
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}
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}
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for (size_t i = 0; i < num_args; ++i) {
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IR::IREmitter{*phi.PhiBlock(i)}.Reference(IR::Value{&phi});
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}
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}
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void Precolor(const IR::Program& program) {
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@ -144,10 +142,7 @@ void EmitCode(EmitContext& ctx, const IR::Program& program) {
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ctx.Add("break;");
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}
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} else {
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// TODO: implement this
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ctx.Add("MOV.S.CC RC,{};"
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"BRK (NE.x);",
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0);
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ctx.Add("if({}){{break;}}", ctx.reg_alloc.Consume(node.data.break_node.cond));
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}
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break;
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case IR::AbstractSyntaxNode::Type::Return:
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@ -155,10 +150,12 @@ void EmitCode(EmitContext& ctx, const IR::Program& program) {
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ctx.Add("return;");
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break;
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case IR::AbstractSyntaxNode::Type::Loop:
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ctx.Add("do{{");
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ctx.Add("for(;;){{");
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break;
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case IR::AbstractSyntaxNode::Type::Repeat:
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ctx.Add("}}while({});", ctx.reg_alloc.Consume(node.data.repeat.cond));
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ctx.Add("if({}){{", ctx.reg_alloc.Consume(node.data.repeat.cond));
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ctx.Add("continue;\n}}else{{");
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ctx.Add("break;\n}}\n}}");
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break;
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default:
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fmt::print("{}", node.type);
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@ -182,7 +179,11 @@ std::string EmitGLSL(const Profile& profile, const RuntimeInfo& runtime_info, IR
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Precolor(program);
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EmitCode(ctx, program);
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const std::string version{fmt::format("#version 450{}\n", GlslVersionSpecifier(ctx))};
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ctx.code.insert(0, version);
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ctx.header.insert(0, version);
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for (size_t index = 0; index < ctx.reg_alloc.num_used_registers; ++index) {
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ctx.header += fmt::format("{} R{};", ctx.reg_alloc.reg_types[index], index);
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}
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ctx.code.insert(0, ctx.header);
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ctx.code += "}";
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fmt::print("\n{}\n", ctx.code);
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return ctx.code;
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@ -28,8 +28,8 @@ void SetSignFlag(EmitContext& ctx, IR::Inst& inst, std::string_view result) {
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}
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} // Anonymous namespace
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void EmitIAdd32(EmitContext& ctx, IR::Inst& inst, std::string_view a, std::string_view b) {
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const auto result{ctx.reg_alloc.Define(inst)};
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ctx.Add("uint {}={}+{};", result, a, b);
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const auto result{ctx.reg_alloc.Define(inst, Type::U32)};
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ctx.Add("{}={}+{};", result, a, b);
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SetZeroFlag(ctx, inst, result);
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SetSignFlag(ctx, inst, result);
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}
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@ -120,8 +120,8 @@ void EmitBitFieldSExtract(EmitContext& ctx, IR::Inst& inst, std::string_view bas
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void EmitBitFieldUExtract(EmitContext& ctx, IR::Inst& inst, std::string_view base,
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std::string_view offset, std::string_view count) {
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const auto result{ctx.reg_alloc.Define(inst)};
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ctx.Add("uint {}=bitfieldExtract({},int({}),int({}));", result, base, offset, count);
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const auto result{ctx.reg_alloc.Define(inst, Type::U32)};
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ctx.Add("{}=bitfieldExtract({},int({}),int({}));", result, base, offset, count);
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SetZeroFlag(ctx, inst, result);
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SetSignFlag(ctx, inst, result);
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}
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@ -74,7 +74,9 @@ std::string RegAlloc::Define(IR::Inst& inst, Type type) {
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std::string type_str = "";
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if (!register_defined[id.index]) {
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register_defined[id.index] = true;
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type_str = GetGlslType(type);
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// type_str = GetGlslType(type);
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reg_types.push_back(GetGlslType(type));
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++num_used_registers;
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}
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inst.SetDefinition<Id>(id);
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return type_str + Representation(id);
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@ -5,6 +5,7 @@
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#pragma once
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#include <bitset>
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#include <vector>
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#include "common/bit_field.h"
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#include "common/common_types.h"
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@ -61,19 +62,21 @@ public:
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std::string Define(IR::Inst& inst, IR::Type type);
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std::string Consume(const IR::Value& value);
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std::string Consume(IR::Inst& inst);
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std::string GetGlslType(Type type);
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std::string GetGlslType(IR::Type type);
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size_t num_used_registers{};
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std::vector<std::string> reg_types;
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private:
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static constexpr size_t NUM_REGS = 4096;
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static constexpr size_t NUM_ELEMENTS = 4;
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std::string Consume(IR::Inst& inst);
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Type RegType(IR::Type type);
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Id Alloc();
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void Free(Id id);
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size_t num_used_registers{};
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std::bitset<NUM_REGS> register_use{};
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std::bitset<NUM_REGS> register_defined{};
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};
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