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-rw-r--r--src/shader_recompiler/backend/spirv/emit_spirv.cpp61
-rw-r--r--src/shader_recompiler/backend/spirv/emit_spirv.h40
2 files changed, 49 insertions, 52 deletions
diff --git a/src/shader_recompiler/backend/spirv/emit_spirv.cpp b/src/shader_recompiler/backend/spirv/emit_spirv.cpp
index e29e448c7..0895414b4 100644
--- a/src/shader_recompiler/backend/spirv/emit_spirv.cpp
+++ b/src/shader_recompiler/backend/spirv/emit_spirv.cpp
@@ -64,31 +64,49 @@ EmitSPIRV::EmitSPIRV(IR::Program& program) {
64 std::system("spirv-cross shader.spv"); 64 std::system("spirv-cross shader.spv");
65} 65}
66 66
67template <auto method, typename... Args>
68static void SetDefinition(EmitSPIRV& emit, EmitContext& ctx, IR::Inst* inst, Args... args) {
69 const Id forward_id{inst->Definition<Id>()};
70 const bool has_forward_id{Sirit::ValidId(forward_id)};
71 Id current_id{};
72 if (has_forward_id) {
73 current_id = ctx.ExchangeCurrentId(forward_id);
74 }
75 const Id new_id{(emit.*method)(ctx, std::forward<Args>(args)...)};
76 if (has_forward_id) {
77 ctx.ExchangeCurrentId(current_id);
78 } else {
79 inst->SetDefinition<Id>(new_id);
80 }
81}
82
67template <auto method> 83template <auto method>
68static void Invoke(EmitSPIRV& emit, EmitContext& ctx, IR::Inst* inst) { 84static void Invoke(EmitSPIRV& emit, EmitContext& ctx, IR::Inst* inst) {
69 using M = decltype(method); 85 using M = decltype(method);
70 using std::is_invocable_r_v; 86 using std::is_invocable_r_v;
71 if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&>) { 87 if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&>) {
72 ctx.Define(inst, (emit.*method)(ctx)); 88 SetDefinition<method>(emit, ctx, inst);
73 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id>) { 89 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id>) {
74 ctx.Define(inst, (emit.*method)(ctx, ctx.Def(inst->Arg(0)))); 90 SetDefinition<method>(emit, ctx, inst, ctx.Def(inst->Arg(0)));
75 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, Id>) { 91 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, Id>) {
76 ctx.Define(inst, (emit.*method)(ctx, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)))); 92 SetDefinition<method>(emit, ctx, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)));
77 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, Id, Id>) { 93 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, Id, Id>) {
78 ctx.Define(inst, (emit.*method)(ctx, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)), 94 SetDefinition<method>(emit, ctx, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)),
79 ctx.Def(inst->Arg(2)))); 95 ctx.Def(inst->Arg(2)));
96 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, IR::Inst*>) {
97 SetDefinition<method>(emit, ctx, inst, inst);
80 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, IR::Inst*, Id, Id>) { 98 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, IR::Inst*, Id, Id>) {
81 ctx.Define(inst, (emit.*method)(ctx, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)))); 99 SetDefinition<method>(emit, ctx, inst, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)));
82 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, IR::Inst*, Id, Id, Id>) { 100 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, IR::Inst*, Id, Id, Id>) {
83 ctx.Define(inst, (emit.*method)(ctx, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)), 101 SetDefinition<method>(emit, ctx, inst, inst, ctx.Def(inst->Arg(0)), ctx.Def(inst->Arg(1)),
84 ctx.Def(inst->Arg(2)))); 102 ctx.Def(inst->Arg(2)));
85 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, u32>) { 103 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, Id, u32>) {
86 ctx.Define(inst, (emit.*method)(ctx, ctx.Def(inst->Arg(0)), inst->Arg(1).U32())); 104 SetDefinition<method>(emit, ctx, inst, ctx.Def(inst->Arg(0)), inst->Arg(1).U32());
87 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, const IR::Value&>) { 105 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, const IR::Value&>) {
88 ctx.Define(inst, (emit.*method)(ctx, inst->Arg(0))); 106 SetDefinition<method>(emit, ctx, inst, inst->Arg(0));
89 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, const IR::Value&, 107 } else if constexpr (is_invocable_r_v<Id, M, EmitSPIRV&, EmitContext&, const IR::Value&,
90 const IR::Value&>) { 108 const IR::Value&>) {
91 ctx.Define(inst, (emit.*method)(ctx, inst->Arg(0), inst->Arg(1))); 109 SetDefinition<method>(emit, ctx, inst, inst->Arg(0), inst->Arg(1));
92 } else if constexpr (is_invocable_r_v<void, M, EmitSPIRV&, EmitContext&, IR::Inst*>) { 110 } else if constexpr (is_invocable_r_v<void, M, EmitSPIRV&, EmitContext&, IR::Inst*>) {
93 (emit.*method)(ctx, inst); 111 (emit.*method)(ctx, inst);
94 } else if constexpr (is_invocable_r_v<void, M, EmitSPIRV&, EmitContext&>) { 112 } else if constexpr (is_invocable_r_v<void, M, EmitSPIRV&, EmitContext&>) {
@@ -122,11 +140,28 @@ static Id TypeId(const EmitContext& ctx, IR::Type type) {
122 140
123Id EmitSPIRV::EmitPhi(EmitContext& ctx, IR::Inst* inst) { 141Id EmitSPIRV::EmitPhi(EmitContext& ctx, IR::Inst* inst) {
124 const size_t num_args{inst->NumArgs()}; 142 const size_t num_args{inst->NumArgs()};
125 boost::container::small_vector<Id, 64> operands; 143 boost::container::small_vector<Id, 32> operands;
126 operands.reserve(num_args * 2); 144 operands.reserve(num_args * 2);
127 for (size_t index = 0; index < num_args; ++index) { 145 for (size_t index = 0; index < num_args; ++index) {
146 // Phi nodes can have forward declarations, if an argument is not defined provide a forward
147 // declaration of it. Invoke will take care of giving it the right definition when it's
148 // actually defined.
149 const IR::Value arg{inst->Arg(index)};
150 Id def{};
151 if (arg.IsImmediate()) {
152 // Let the context handle immediate definitions, as it already knows how
153 def = ctx.Def(arg);
154 } else {
155 IR::Inst* const arg_inst{arg.Inst()};
156 def = arg_inst->Definition<Id>();
157 if (!Sirit::ValidId(def)) {
158 // If it hasn't been defined, get a forward declaration
159 def = ctx.ForwardDeclarationId();
160 arg_inst->SetDefinition<Id>(def);
161 }
162 }
128 IR::Block* const phi_block{inst->PhiBlock(index)}; 163 IR::Block* const phi_block{inst->PhiBlock(index)};
129 operands.push_back(ctx.Def(inst->Arg(index))); 164 operands.push_back(def);
130 operands.push_back(ctx.BlockLabel(phi_block)); 165 operands.push_back(ctx.BlockLabel(phi_block));
131 } 166 }
132 const Id result_type{TypeId(ctx, inst->Arg(0).Type())}; 167 const Id result_type{TypeId(ctx, inst->Arg(0).Type())};
diff --git a/src/shader_recompiler/backend/spirv/emit_spirv.h b/src/shader_recompiler/backend/spirv/emit_spirv.h
index 6b09757d1..7d76377b5 100644
--- a/src/shader_recompiler/backend/spirv/emit_spirv.h
+++ b/src/shader_recompiler/backend/spirv/emit_spirv.h
@@ -6,8 +6,6 @@
6 6
7#include <sirit/sirit.h> 7#include <sirit/sirit.h>
8 8
9#include <boost/container/flat_map.hpp>
10
11#include "common/common_types.h" 9#include "common/common_types.h"
12#include "shader_recompiler/frontend/ir/microinstruction.h" 10#include "shader_recompiler/frontend/ir/microinstruction.h"
13#include "shader_recompiler/frontend/ir/program.h" 11#include "shader_recompiler/frontend/ir/program.h"
@@ -16,37 +14,6 @@ namespace Shader::Backend::SPIRV {
16 14
17using Sirit::Id; 15using Sirit::Id;
18 16
19class DefMap {
20public:
21 void Define(IR::Inst* inst, Id def_id) {
22 const InstInfo info{.use_count{inst->UseCount()}, .def_id{def_id}};
23 const auto it{map.insert(map.end(), std::make_pair(inst, info))};
24 if (it == map.end()) {
25 throw LogicError("Defining already defined instruction");
26 }
27 }
28
29 [[nodiscard]] Id Consume(IR::Inst* inst) {
30 const auto it{map.find(inst)};
31 if (it == map.end()) {
32 throw LogicError("Consuming undefined instruction");
33 }
34 const Id def_id{it->second.def_id};
35 if (--it->second.use_count == 0) {
36 map.erase(it);
37 }
38 return def_id;
39 }
40
41private:
42 struct InstInfo {
43 int use_count;
44 Id def_id;
45 };
46
47 boost::container::flat_map<IR::Inst*, InstInfo> map;
48};
49
50class VectorTypes { 17class VectorTypes {
51public: 18public:
52 void Define(Sirit::Module& sirit_ctx, Id base_type, std::string_view name) { 19 void Define(Sirit::Module& sirit_ctx, Id base_type, std::string_view name) {
@@ -76,7 +43,7 @@ public:
76 43
77 [[nodiscard]] Id Def(const IR::Value& value) { 44 [[nodiscard]] Id Def(const IR::Value& value) {
78 if (!value.IsImmediate()) { 45 if (!value.IsImmediate()) {
79 return def_map.Consume(value.Inst()); 46 return value.Inst()->Definition<Id>();
80 } 47 }
81 switch (value.Type()) { 48 switch (value.Type()) {
82 case IR::Type::U1: 49 case IR::Type::U1:
@@ -90,10 +57,6 @@ public:
90 } 57 }
91 } 58 }
92 59
93 void Define(IR::Inst* inst, Id def_id) {
94 def_map.Define(inst, def_id);
95 }
96
97 [[nodiscard]] Id BlockLabel(IR::Block* block) const { 60 [[nodiscard]] Id BlockLabel(IR::Block* block) const {
98 const auto it{std::ranges::lower_bound(block_label_map, block, {}, 61 const auto it{std::ranges::lower_bound(block_label_map, block, {},
99 &std::pair<IR::Block*, Id>::first)}; 62 &std::pair<IR::Block*, Id>::first)};
@@ -117,7 +80,6 @@ public:
117 Id local_invocation_id{}; 80 Id local_invocation_id{};
118 81
119private: 82private:
120 DefMap def_map;
121 std::vector<std::pair<IR::Block*, Id>> block_label_map; 83 std::vector<std::pair<IR::Block*, Id>> block_label_map;
122}; 84};
123 85