mirror of
https://git.suyu.dev/suyu/sirit.git
synced 2024-12-22 20:22:02 +00:00
82 lines
3.4 KiB
C++
82 lines
3.4 KiB
C++
/* This file is part of the sirit project.
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* Copyright (c) 2018 ReinUsesLisp
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* This software may be used and distributed according to the terms of the GNU
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* Lesser General Public License version 3 or any later version.
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*/
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#include <sirit/sirit.h>
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#include <cstdio>
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#include <cstdlib>
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using u32 = uint32_t;
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class MyModule : public Sirit::Module {
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public:
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MyModule() = default;
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~MyModule() = default;
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void Generate() {
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AddCapability(spv::Capability::Shader);
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SetMemoryModel(spv::AddressingModel::Logical, spv::MemoryModel::GLSL450);
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const auto t_void = Name(OpTypeVoid(), "void");
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const auto t_uint = Name(OpTypeInt(32, false), "uint");
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const auto t_float = Name(OpTypeFloat(32), "float");
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const auto float4 = Name(OpTypeVector(t_float, 4), "float4");
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const auto in_float = Name(OpTypePointer(spv::StorageClass::Input, t_float), "in_float");
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const auto in_float4 = Name(OpTypePointer(spv::StorageClass::Input, float4), "in_float4");
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const auto out_float4 = Name(OpTypePointer(spv::StorageClass::Output, float4), "out_float4");
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const auto gl_per_vertex = Name(OpTypeStruct({float4}), "gl_PerVertex");
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const auto gl_per_vertex_ptr = Name(OpTypePointer(spv::StorageClass::Output, gl_per_vertex), "out_gl_PerVertex");
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const auto in_pos = Name(OpVariable(in_float4, spv::StorageClass::Input), "in_pos");
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const auto per_vertex = Name(OpVariable(gl_per_vertex_ptr, spv::StorageClass::Output), "per_vertex");
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Decorate(in_pos, spv::Decoration::Location, {0});
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Decorate(gl_per_vertex, spv::Decoration::Block);
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Decorate(gl_per_vertex, spv::Decoration::Block);
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MemberDecorate(gl_per_vertex, 0, spv::Decoration::BuiltIn, {static_cast<u32>(spv::BuiltIn::Position)});
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AddGlobalVariable(in_pos);
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AddGlobalVariable(per_vertex);
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const auto main_func = Emit(Name(OpFunction(t_void, spv::FunctionControlMask::MaskNone, OpTypeFunction(t_void)), "main"));
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Emit(OpLabel());
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const auto ptr_pos_x = Emit(OpAccessChain(in_float, in_pos, {Constant(t_uint, 0u)}));
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const auto ptr_pos_y = Emit(OpAccessChain(in_float, in_pos, {Constant(t_uint, 1u)}));
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const auto pos_x = Emit(OpLoad(t_float, ptr_pos_x));
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const auto pos_y = Emit(OpLoad(t_float, ptr_pos_y));
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auto tmp_position = Emit(OpUndef(float4));
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Decorate(tmp_position, spv::Decoration::FPRoundingMode, {static_cast<u32>(spv::FPRoundingMode::RTE)});
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tmp_position = Emit(OpCompositeInsert(float4, pos_x, tmp_position, {0}));
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tmp_position = Emit(OpCompositeInsert(float4, pos_y, tmp_position, {1}));
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tmp_position = Emit(OpCompositeInsert(float4, Constant(t_float, 0.f), tmp_position, {2}));
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tmp_position = Emit(OpCompositeInsert(float4, Constant(t_float, 1.f), tmp_position, {3}));
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const auto gl_position = Emit(OpAccessChain(out_float4, per_vertex, {Constant(t_uint, 0u)}));
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Emit(OpStore(gl_position, tmp_position));
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Emit(OpReturn());
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Emit(OpFunctionEnd());
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AddEntryPoint(spv::ExecutionModel::Vertex, main_func, "main", {in_pos, per_vertex});
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}
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};
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int main(int argc, char** argv) {
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MyModule module;
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module.Generate();
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std::vector<std::uint8_t> code{module.Assemble()};
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FILE* file = fopen("sirit.spv", "wb");
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fwrite(code.data(), 1, code.size(), file);
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fclose(file);
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return 0;
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}
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