ProgramBuilder: Migrate away from using Ignore()
The `Ignore()` intrinsic is about to be deprecated, so don't use it for testing. Bug: tint:1213 Change-Id: Ib5d5966da6d566a9f02940970ebd79d520b5e0e8 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/67065 Commit-Queue: Ben Clayton <bclayton@google.com> Kokoro: Ben Clayton <bclayton@google.com> Reviewed-by: David Neto <dneto@google.com> Reviewed-by: James Price <jrprice@google.com>
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@ -1643,11 +1643,11 @@ class ProgramBuilder {
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const ast::PhonyExpression* Phony() { return create<ast::PhonyExpression>(); }
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/// @param expr the expression to ignore
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/// @returns a `ast::CallStatement` that calls the `ignore` intrinsic which is
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/// passed the single `expr` argument
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/// @returns a `ast::AssignmentStatement` that assigns 'expr' to the phony
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/// (underscore) variable.
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template <typename EXPR>
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const ast::CallStatement* Ignore(EXPR&& expr) {
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return create<ast::CallStatement>(Call("ignore", Expr(expr)));
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const ast::AssignmentStatement* Ignore(EXPR&& expr) {
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return create<ast::AssignmentStatement>(Phony(), Expr(expr));
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}
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/// @param lhs the left hand argument to the addition operation
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@ -190,28 +190,33 @@ TEST_F(MslGeneratorImplTest, Emit_ForLoopWithSimpleInit) {
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}
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TEST_F(MslGeneratorImplTest, Emit_ForLoopWithMultiStmtInit) {
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// fn f(i : i32) {}
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//
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// var<workgroup> a : atomic<i32>;
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// for({ignore(1); ignore(2);}; ; ) {
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// for({f(1); f(2);}; ; ) {
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// return;
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// }
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Func("f", {Param("i", ty.i32())}, ty.void_(), {});
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auto f = [&](auto&& expr) { return CallStmt(Call("f", expr)); };
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Func("a_statement", {}, ty.void_(), {});
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Global("a", ty.atomic<i32>(), ast::StorageClass::kWorkgroup);
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auto* multi_stmt = Block(Ignore(1), Ignore(2));
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auto* f =
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auto* multi_stmt = Block(f(1), f(2));
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auto* loop =
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For(multi_stmt, nullptr, nullptr, Block(CallStmt(Call("a_statement"))));
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WrapInFunction(f);
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WrapInFunction(loop);
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GeneratorImpl& gen = Build();
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gen.increment_indent();
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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ASSERT_TRUE(gen.EmitStatement(loop)) << gen.error();
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EXPECT_EQ(gen.result(), R"( {
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{
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(void) 1;
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(void) 2;
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f(1);
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f(2);
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}
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for(; ; ) {
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a_statement();
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@ -267,29 +272,34 @@ TEST_F(MslGeneratorImplTest, Emit_ForLoopWithSimpleCont) {
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}
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TEST_F(MslGeneratorImplTest, Emit_ForLoopWithMultiStmtCont) {
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// fn f(i : i32) {}
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//
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// var<workgroup> a : atomic<i32>;
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// for(; ; { ignore(1); ignore(2); }) {
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// for(; ; { f(1); f(2); }) {
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// return;
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// }
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Func("f", {Param("i", ty.i32())}, ty.void_(), {});
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auto f = [&](auto&& expr) { return CallStmt(Call("f", expr)); };
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Func("a_statement", {}, ty.void_(), {});
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Global("a", ty.atomic<i32>(), ast::StorageClass::kWorkgroup);
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auto* multi_stmt = Block(Ignore(1), Ignore(2));
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auto* f =
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auto* multi_stmt = Block(f(1), f(2));
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auto* loop =
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For(nullptr, nullptr, multi_stmt, Block(CallStmt(Call("a_statement"))));
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WrapInFunction(f);
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WrapInFunction(loop);
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GeneratorImpl& gen = Build();
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gen.increment_indent();
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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ASSERT_TRUE(gen.EmitStatement(loop)) << gen.error();
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EXPECT_EQ(gen.result(), R"( while (true) {
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a_statement();
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{
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(void) 1;
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(void) 2;
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f(1);
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f(2);
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}
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}
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)");
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@ -320,36 +330,41 @@ TEST_F(MslGeneratorImplTest, Emit_ForLoopWithSimpleInitCondCont) {
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}
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TEST_F(MslGeneratorImplTest, Emit_ForLoopWithMultiStmtInitCondCont) {
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// fn f(i : i32) {}
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//
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// var<workgroup> a : atomic<i32>;
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// for({ ignore(1); ignore(2); }; true; { ignore(3); ignore(4); }) {
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// for({ f(1); f(2); }; true; { f(3); f(4); }) {
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// return;
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// }
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Func("f", {Param("i", ty.i32())}, ty.void_(), {});
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auto f = [&](auto&& expr) { return CallStmt(Call("f", expr)); };
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Func("a_statement", {}, ty.void_(), {});
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Global("a", ty.atomic<i32>(), ast::StorageClass::kWorkgroup);
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auto* multi_stmt_a = Block(Ignore(1), Ignore(2));
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auto* multi_stmt_b = Block(Ignore(3), Ignore(4));
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auto* f = For(multi_stmt_a, Expr(true), multi_stmt_b,
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auto* multi_stmt_a = Block(f(1), f(2));
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auto* multi_stmt_b = Block(f(3), f(4));
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auto* loop = For(multi_stmt_a, Expr(true), multi_stmt_b,
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Block(CallStmt(Call("a_statement"))));
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WrapInFunction(f);
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WrapInFunction(loop);
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GeneratorImpl& gen = Build();
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gen.increment_indent();
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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ASSERT_TRUE(gen.EmitStatement(loop)) << gen.error();
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EXPECT_EQ(gen.result(), R"( {
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{
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(void) 1;
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(void) 2;
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f(1);
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f(2);
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}
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while (true) {
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if (!(true)) { break; }
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a_statement();
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{
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(void) 3;
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(void) 4;
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f(3);
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f(4);
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}
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}
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}
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@ -79,8 +79,8 @@ TEST_F(WgslGeneratorImplTest, Emit_ForLoopWithMultiStmtInit) {
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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EXPECT_EQ(gen.result(), R"( for({
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ignore(1);
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ignore(2);
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_ = 1;
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_ = 2;
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}; ; ) {
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return;
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}
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@ -143,8 +143,8 @@ TEST_F(WgslGeneratorImplTest, Emit_ForLoopWithMultiStmtCont) {
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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EXPECT_EQ(gen.result(), R"( for(; ; {
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ignore(1);
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ignore(2);
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_ = 1;
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_ = 2;
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}) {
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return;
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}
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@ -188,11 +188,11 @@ TEST_F(WgslGeneratorImplTest, Emit_ForLoopWithMultiStmtInitCondCont) {
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ASSERT_TRUE(gen.EmitStatement(f)) << gen.error();
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EXPECT_EQ(gen.result(), R"( for({
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ignore(1);
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ignore(2);
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_ = 1;
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_ = 2;
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}; true; {
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ignore(3);
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ignore(4);
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_ = 3;
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_ = 4;
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}) {
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return;
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}
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