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Remove all sem::Type references from the AST. ConstructedTypes are now all AST types. The parsers will still create semantic types, but these are now disjoint and ignored. The parsers will be updated with future changes to stop creating these semantic types. Resolver creates semantic types from the AST types. Most downstream logic continues to use the semantic types, however transforms will now need to rebuild AST type information instead of reassigning semantic information, as semantic nodes are fully rebuilt by the Resolver. Bug: tint:724 Change-Id: I4ce03a075f13c77648cda5c3691bae202752ecc5 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/49747 Commit-Queue: Ben Clayton <bclayton@chromium.org> Commit-Queue: Ben Clayton <bclayton@google.com> Kokoro: Kokoro <noreply+kokoro@google.com> Reviewed-by: Antonio Maiorano <amaiorano@google.com> Reviewed-by: James Price <jrprice@google.com>
308 lines
8.4 KiB
C++
308 lines
8.4 KiB
C++
// Copyright 2020 The Tint Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "gtest/gtest-spi.h"
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#include "src/ast/discard_statement.h"
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#include "src/ast/stage_decoration.h"
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#include "src/ast/test_helper.h"
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#include "src/ast/workgroup_decoration.h"
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namespace tint {
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namespace ast {
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namespace {
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using FunctionTest = TestHelper;
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TEST_F(FunctionTest, Creation) {
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VariableList params;
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params.push_back(Param("var", ty.i32()));
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auto* var = params[0];
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auto* f = Func("func", params, ty.void_(), StatementList{}, DecorationList{});
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EXPECT_EQ(f->symbol(), Symbols().Get("func"));
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ASSERT_EQ(f->params().size(), 1u);
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EXPECT_TRUE(f->return_type()->Is<ast::Void>());
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EXPECT_EQ(f->params()[0], var);
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}
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TEST_F(FunctionTest, Creation_WithSource) {
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VariableList params;
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params.push_back(Param("var", ty.i32()));
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auto* f = Func(Source{Source::Location{20, 2}}, "func", params, ty.void_(),
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StatementList{}, DecorationList{});
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auto src = f->source();
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EXPECT_EQ(src.range.begin.line, 20u);
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EXPECT_EQ(src.range.begin.column, 2u);
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}
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TEST_F(FunctionTest, Assert_InvalidName) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b;
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b.Func("", VariableList{}, b.ty.void_(), StatementList{},
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DecorationList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_Null_ReturnType) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b;
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b.Func("f", VariableList{}, nullptr, StatementList{}, DecorationList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_Null_Param) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b;
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VariableList params;
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params.push_back(b.Param("var", b.ty.i32()));
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params.push_back(nullptr);
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b.Func("f", params, b.ty.void_(), StatementList{}, DecorationList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_DifferentProgramID_Symbol) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b1;
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ProgramBuilder b2;
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b1.Func(b2.Sym("func"), VariableList{}, b1.ty.void_(), StatementList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_DifferentProgramID_Param) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b1;
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ProgramBuilder b2;
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b1.Func("func", VariableList{b2.Param("var", b2.ty.i32())},
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b1.ty.void_(), StatementList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_DifferentProgramID_Deco) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b1;
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ProgramBuilder b2;
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b1.Func("func", VariableList{}, b1.ty.void_(), StatementList{},
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DecorationList{
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b2.create<WorkgroupDecoration>(2, 4, 6),
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});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_DifferentProgramID_ReturnDeco) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b1;
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ProgramBuilder b2;
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b1.Func("func", VariableList{}, b1.ty.void_(), StatementList{},
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DecorationList{},
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DecorationList{
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b2.create<WorkgroupDecoration>(2, 4, 6),
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});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, Assert_NonConstParam) {
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EXPECT_FATAL_FAILURE(
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{
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ProgramBuilder b;
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VariableList params;
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params.push_back(b.Var("var", b.ty.i32(), ast::StorageClass::kNone));
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b.Func("f", params, b.ty.void_(), StatementList{}, DecorationList{});
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},
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"internal compiler error");
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}
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TEST_F(FunctionTest, ToStr) {
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auto* f = Func("func", VariableList{}, ty.void_(),
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StatementList{
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create<DiscardStatement>(),
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},
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DecorationList{});
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EXPECT_EQ(str(f), R"(Function func -> __void
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()
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{
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Discard{}
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}
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)");
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}
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TEST_F(FunctionTest, ToStr_WithDecoration) {
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auto* f = Func("func", VariableList{}, ty.void_(),
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StatementList{
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create<DiscardStatement>(),
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},
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DecorationList{create<WorkgroupDecoration>(2, 4, 6)});
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EXPECT_EQ(str(f), R"(Function func -> __void
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WorkgroupDecoration{2 4 6}
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()
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{
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Discard{}
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}
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)");
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}
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TEST_F(FunctionTest, ToStr_WithParams) {
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VariableList params;
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params.push_back(Param("var", ty.i32()));
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auto* f = Func("func", params, ty.void_(),
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StatementList{
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create<DiscardStatement>(),
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},
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DecorationList{});
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EXPECT_EQ(str(f), R"(Function func -> __void
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(
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VariableConst{
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var
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none
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__i32
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}
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)
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{
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Discard{}
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}
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)");
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}
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TEST_F(FunctionTest, TypeName) {
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auto* f = Func("func", VariableList{}, ty.void_(), StatementList{},
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DecorationList{});
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EXPECT_EQ(f->type_name(), "__func__void");
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}
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TEST_F(FunctionTest, TypeName_WithParams) {
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VariableList params;
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params.push_back(Param("var1", ty.i32()));
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params.push_back(Param("var2", ty.f32()));
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auto* f = Func("func", params, ty.void_(), StatementList{}, DecorationList{});
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EXPECT_EQ(f->type_name(), "__func__void__i32__f32");
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}
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TEST_F(FunctionTest, GetLastStatement) {
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VariableList params;
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auto* stmt = create<DiscardStatement>();
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auto* f =
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Func("func", params, ty.void_(), StatementList{stmt}, DecorationList{});
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EXPECT_EQ(f->get_last_statement(), stmt);
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}
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TEST_F(FunctionTest, GetLastStatement_nullptr) {
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VariableList params;
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auto* f = Func("func", params, ty.void_(), StatementList{}, DecorationList{});
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EXPECT_EQ(f->get_last_statement(), nullptr);
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}
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TEST_F(FunctionTest, WorkgroupSize_NoneSet) {
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auto* f = Func("func", VariableList{}, ty.void_(), StatementList{},
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DecorationList{});
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uint32_t x = 0;
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uint32_t y = 0;
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uint32_t z = 0;
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std::tie(x, y, z) = f->workgroup_size();
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EXPECT_EQ(x, 1u);
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EXPECT_EQ(y, 1u);
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EXPECT_EQ(z, 1u);
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}
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TEST_F(FunctionTest, WorkgroupSize) {
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auto* f = Func("func", VariableList{}, ty.void_(), StatementList{},
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DecorationList{create<WorkgroupDecoration>(2u, 4u, 6u)});
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uint32_t x = 0;
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uint32_t y = 0;
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uint32_t z = 0;
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std::tie(x, y, z) = f->workgroup_size();
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EXPECT_EQ(x, 2u);
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EXPECT_EQ(y, 4u);
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EXPECT_EQ(z, 6u);
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}
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using FunctionListTest = TestHelper;
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TEST_F(FunctionListTest, FindSymbol) {
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auto* func = Func("main", VariableList{}, ty.f32(), StatementList{},
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ast::DecorationList{});
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FunctionList list;
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list.Add(func);
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EXPECT_EQ(func, list.Find(Symbols().Register("main")));
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}
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TEST_F(FunctionListTest, FindSymbolMissing) {
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FunctionList list;
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EXPECT_EQ(nullptr, list.Find(Symbols().Register("Missing")));
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}
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TEST_F(FunctionListTest, FindSymbolStage) {
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auto* fs = Func("main", VariableList{}, ty.f32(), StatementList{},
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ast::DecorationList{
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Stage(PipelineStage::kFragment),
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});
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auto* vs = Func("main", VariableList{}, ty.f32(), StatementList{},
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ast::DecorationList{
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Stage(PipelineStage::kVertex),
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});
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FunctionList list;
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list.Add(fs);
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list.Add(vs);
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EXPECT_EQ(fs,
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list.Find(Symbols().Register("main"), PipelineStage::kFragment));
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EXPECT_EQ(vs, list.Find(Symbols().Register("main"), PipelineStage::kVertex));
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}
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TEST_F(FunctionListTest, FindSymbolStageMissing) {
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FunctionList list;
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list.Add(Func("main", VariableList{}, ty.f32(), StatementList{},
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ast::DecorationList{
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Stage(PipelineStage::kFragment),
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}));
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EXPECT_EQ(nullptr,
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list.Find(Symbols().Register("main"), PipelineStage::kVertex));
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}
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TEST_F(FunctionListTest, HasStage) {
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FunctionList list;
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list.Add(Func("main", VariableList{}, ty.f32(), StatementList{},
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ast::DecorationList{
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Stage(PipelineStage::kFragment),
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}));
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EXPECT_TRUE(list.HasStage(PipelineStage::kFragment));
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EXPECT_FALSE(list.HasStage(PipelineStage::kVertex));
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}
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} // namespace
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} // namespace ast
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} // namespace tint
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