Fix structure builtin emission
Fix the Renamer to preserve builtin structure member names. Fix the HLSL writer to emit the modf / frexp result type even if there is no private / function storage usage of the types. Fixed: chromium:1236161 Change-Id: I93b9d92980682f9a9cb090d07b04e4c3f6a2f705 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/60922 Reviewed-by: James Price <jrprice@google.com> Kokoro: Kokoro <noreply+kokoro@google.com> Commit-Queue: Ben Clayton <bclayton@google.com>
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@ -896,7 +896,8 @@ Output Renamer::Run(const Program* in, const DataMap& inputs) {
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// Disable auto-cloning of symbols, since we want to rename them.
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CloneContext ctx(&out, in, false);
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// Swizzles and intrinsic calls need to keep their symbols preserved.
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// Swizzles, intrinsic calls and builtin structure members need to keep their
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// symbols preserved.
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std::unordered_set<ast::IdentifierExpression*> preserve;
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for (auto* node : in->ASTNodes().Objects()) {
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if (auto* member = node->As<ast::MemberAccessorExpression>()) {
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@ -908,6 +909,12 @@ Output Renamer::Run(const Program* in, const DataMap& inputs) {
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}
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if (sem->Is<sem::Swizzle>()) {
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preserve.emplace(member->member());
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} else if (auto* str_expr = in->Sem().Get(member->structure())) {
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if (auto* ty = str_expr->Type()->UnwrapRef()->As<sem::Struct>()) {
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if (ty->Declaration() == nullptr) { // Builtin structure
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preserve.emplace(member->member());
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}
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}
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}
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} else if (auto* call = node->As<ast::CallExpression>()) {
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auto* sem = in->Sem().Get(call);
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@ -149,6 +149,41 @@ fn tint_symbol() -> [[builtin(position)]] vec4<f32> {
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EXPECT_THAT(data->remappings, ContainerEq(expected_remappings));
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}
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TEST_F(RenamerTest, PreserveBuiltinTypes) {
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auto* src = R"(
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[[stage(compute), workgroup_size(1)]]
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fn entry() {
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var a = modf(1.0).whole;
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var b = modf(1.0).fract;
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var c = frexp(1.0).sig;
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var d = frexp(1.0).exp;
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}
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)";
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auto* expect = R"(
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[[stage(compute), workgroup_size(1)]]
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fn tint_symbol() {
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var tint_symbol_1 = modf(1.0).whole;
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var tint_symbol_2 = modf(1.0).fract;
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var tint_symbol_3 = frexp(1.0).sig;
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var tint_symbol_4 = frexp(1.0).exp;
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}
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)";
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auto got = Run<Renamer>(src);
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EXPECT_EQ(expect, str(got));
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auto* data = got.data.Get<Renamer::Data>();
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ASSERT_NE(data, nullptr);
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Renamer::Data::Remappings expected_remappings = {
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{"entry", "tint_symbol"}, {"a", "tint_symbol_1"}, {"b", "tint_symbol_2"},
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{"c", "tint_symbol_3"}, {"d", "tint_symbol_4"},
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};
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EXPECT_THAT(data->remappings, ContainerEq(expected_remappings));
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}
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TEST_F(RenamerTest, AttemptSymbolCollision) {
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auto* src = R"(
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[[stage(vertex)]]
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@ -139,8 +139,20 @@ bool GeneratorImpl::Generate() {
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return false;
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}
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} else if (auto* str = decl->As<ast::Struct>()) {
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if (!EmitStructType(current_buffer_, builder_.Sem().Get(str))) {
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return false;
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auto* ty = builder_.Sem().Get(str);
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auto storage_class_uses = ty->StorageClassUsage();
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if (storage_class_uses.size() !=
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(storage_class_uses.count(ast::StorageClass::kStorage) +
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storage_class_uses.count(ast::StorageClass::kUniform))) {
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// The structure is used as something other than a storage buffer or
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// uniform buffer, so it needs to be emitted.
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// Storage buffer are read and written to via a ByteAddressBuffer
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// instead of true structure.
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// Structures used as uniform buffer are read from an array of vectors
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// instead of true structure.
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if (!EmitStructType(current_buffer_, ty)) {
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return false;
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}
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}
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} else if (auto* func = decl->As<ast::Function>()) {
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if (func->IsEntryPoint()) {
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@ -3135,19 +3147,6 @@ bool GeneratorImpl::EmitTypeAndName(std::ostream& out,
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}
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bool GeneratorImpl::EmitStructType(TextBuffer* b, const sem::Struct* str) {
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auto storage_class_uses = str->StorageClassUsage();
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if (storage_class_uses.size() ==
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(storage_class_uses.count(ast::StorageClass::kStorage) +
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storage_class_uses.count(ast::StorageClass::kUniform))) {
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// The only use of the structure is as a storage buffer and / or uniform
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// buffer.
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// Structures used as storage buffer are read and written to via a
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// ByteAddressBuffer instead of true structure.
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// Structures used as uniform buffer are read from an array of vectors
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// instead of true structure.
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return true;
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}
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line(b) << "struct " << StructName(str) << " {";
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{
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ScopedIndent si(b);
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@ -198,10 +198,8 @@ TEST_F(HlslGeneratorImplTest_Type, EmitType_StructDecl_OmittedIfStorageBuffer) {
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GeneratorImpl& gen = Build();
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TextGenerator::TextBuffer buf;
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auto* sem_s = program->TypeOf(s)->As<sem::Struct>();
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ASSERT_TRUE(gen.EmitStructType(&buf, sem_s)) << gen.error();
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EXPECT_EQ(buf.String(), "");
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ASSERT_TRUE(gen.Generate()) << gen.error();
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EXPECT_EQ(gen.result(), "RWByteAddressBuffer g : register(u0, space0);\n");
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}
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TEST_F(HlslGeneratorImplTest_Type, EmitType_Struct) {
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@ -0,0 +1,3 @@
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// flags: --transform renamer
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fn i(){let s=modf(1.).whole;}
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@ -0,0 +1,19 @@
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struct modf_result {
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float fract;
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float whole;
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};
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modf_result tint_modf(float param_0) {
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float whole;
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float fract = modf(param_0, whole);
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modf_result result = {fract, whole};
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return result;
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}
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[numthreads(1, 1, 1)]
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void unused_entry_point() {
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return;
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}
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void i() {
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const float s = tint_modf(1.0f).whole;
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}
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@ -0,0 +1,18 @@
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#include <metal_stdlib>
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using namespace metal;
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struct modf_result {
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float fract;
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float whole;
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};
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modf_result tint_modf(float param_0) {
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float whole;
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float fract = modf(param_0, whole);
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return {fract, whole};
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}
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void i() {
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float const s = tint_modf(1.0f).whole;
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}
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@ -0,0 +1,32 @@
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; SPIR-V
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; Version: 1.3
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; Generator: Google Tint Compiler; 0
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; Bound: 13
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; Schema: 0
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OpCapability Shader
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%10 = OpExtInstImport "GLSL.std.450"
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OpMemoryModel Logical GLSL450
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OpEntryPoint GLCompute %unused_entry_point "unused_entry_point"
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OpExecutionMode %unused_entry_point LocalSize 1 1 1
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OpName %unused_entry_point "unused_entry_point"
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OpName %tint_symbol "tint_symbol"
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OpName %_modf_result "_modf_result"
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OpMemberName %_modf_result 0 "fract"
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OpMemberName %_modf_result 1 "whole"
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OpMemberDecorate %_modf_result 0 Offset 0
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OpMemberDecorate %_modf_result 1 Offset 4
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%void = OpTypeVoid
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%1 = OpTypeFunction %void
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%float = OpTypeFloat 32
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%_modf_result = OpTypeStruct %float %float
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%float_1 = OpConstant %float 1
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%unused_entry_point = OpFunction %void None %1
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%4 = OpLabel
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OpReturn
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OpFunctionEnd
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%tint_symbol = OpFunction %void None %1
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%6 = OpLabel
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%7 = OpExtInst %_modf_result %10 ModfStruct %float_1
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%12 = OpCompositeExtract %float %7 1
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OpReturn
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OpFunctionEnd
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@ -0,0 +1,3 @@
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fn tint_symbol() {
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let tint_symbol_1 = modf(1.0).whole;
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}
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