| // Copyright 2020 The Tint Authors. |
| // |
| // Licensed under the Apache License, Version 2.0 (the "License"); |
| // you may not use this file except in compliance with the License. |
| // You may obtain a copy of the License at |
| // |
| // http://www.apache.org/licenses/LICENSE-2.0 |
| // |
| // Unless required by applicable law or agreed to in writing, software |
| // distributed under the License is distributed on an "AS IS" BASIS, |
| // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
| // See the License for the specific language governing permissions and |
| // limitations under the License. |
| |
| #include "src/type_determiner.h" |
| |
| #include <memory> |
| #include <utility> |
| #include <vector> |
| |
| #include "gtest/gtest.h" |
| #include "src/ast/array_accessor_expression.h" |
| #include "src/ast/assignment_statement.h" |
| #include "src/ast/binary_expression.h" |
| #include "src/ast/bitcast_expression.h" |
| #include "src/ast/block_statement.h" |
| #include "src/ast/bool_literal.h" |
| #include "src/ast/break_statement.h" |
| #include "src/ast/call_expression.h" |
| #include "src/ast/call_statement.h" |
| #include "src/ast/case_statement.h" |
| #include "src/ast/continue_statement.h" |
| #include "src/ast/else_statement.h" |
| #include "src/ast/float_literal.h" |
| #include "src/ast/identifier_expression.h" |
| #include "src/ast/if_statement.h" |
| #include "src/ast/loop_statement.h" |
| #include "src/ast/member_accessor_expression.h" |
| #include "src/ast/pipeline_stage.h" |
| #include "src/ast/return_statement.h" |
| #include "src/ast/scalar_constructor_expression.h" |
| #include "src/ast/sint_literal.h" |
| #include "src/ast/stage_decoration.h" |
| #include "src/ast/struct.h" |
| #include "src/ast/struct_member.h" |
| #include "src/ast/switch_statement.h" |
| #include "src/ast/type/alias_type.h" |
| #include "src/ast/type/array_type.h" |
| #include "src/ast/type/bool_type.h" |
| #include "src/ast/type/depth_texture_type.h" |
| #include "src/ast/type/f32_type.h" |
| #include "src/ast/type/i32_type.h" |
| #include "src/ast/type/matrix_type.h" |
| #include "src/ast/type/pointer_type.h" |
| #include "src/ast/type/sampled_texture_type.h" |
| #include "src/ast/type/sampler_type.h" |
| #include "src/ast/type/storage_texture_type.h" |
| #include "src/ast/type/struct_type.h" |
| #include "src/ast/type/texture_type.h" |
| #include "src/ast/type/u32_type.h" |
| #include "src/ast/type/vector_type.h" |
| #include "src/ast/type_constructor_expression.h" |
| #include "src/ast/uint_literal.h" |
| #include "src/ast/unary_op_expression.h" |
| #include "src/ast/variable_decl_statement.h" |
| |
| namespace tint { |
| namespace { |
| |
| class FakeStmt : public ast::Statement { |
| public: |
| bool IsValid() const override { return true; } |
| void to_str(std::ostream& out, size_t) const override { out << "Fake"; } |
| }; |
| |
| class FakeExpr : public ast::Expression { |
| public: |
| bool IsValid() const override { return true; } |
| void to_str(std::ostream&, size_t) const override {} |
| }; |
| |
| class TypeDeterminerHelper { |
| public: |
| TypeDeterminerHelper() |
| : td_(std::make_unique<TypeDeterminer>(&ctx_, &mod_)) {} |
| |
| TypeDeterminer* td() const { return td_.get(); } |
| ast::Module* mod() { return &mod_; } |
| Context* ctx() { return &ctx_; } |
| |
| private: |
| Context ctx_; |
| ast::Module mod_; |
| std::unique_ptr<TypeDeterminer> td_; |
| }; |
| |
| class TypeDeterminerTest : public TypeDeterminerHelper, public testing::Test {}; |
| |
| template <typename T> |
| class TypeDeterminerTestWithParam : public TypeDeterminerHelper, |
| public testing::TestWithParam<T> {}; |
| |
| TEST_F(TypeDeterminerTest, Error_WithEmptySource) { |
| FakeStmt s; |
| s.set_source(Source{0, 0}); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&s)); |
| EXPECT_EQ(td()->error(), |
| "unknown statement type for type determination: Fake"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Error_Unknown) { |
| FakeStmt s; |
| s.set_source(Source{2, 30}); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&s)); |
| EXPECT_EQ(td()->error(), |
| "2:30: unknown statement type for type determination: Fake"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Assign) { |
| ast::type::F32Type f32; |
| ast::type::I32Type i32; |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| ast::AssignmentStatement assign(std::move(lhs), std::move(rhs)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&assign)); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Case) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>(std::move(lhs), |
| std::move(rhs))); |
| |
| ast::CaseSelectorList lit; |
| lit.push_back(std::make_unique<ast::SintLiteral>(&i32, 3)); |
| ast::CaseStatement cse(std::move(lit), std::move(body)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&cse)); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Block) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| ast::BlockStatement block; |
| block.append(std::make_unique<ast::AssignmentStatement>(std::move(lhs), |
| std::move(rhs))); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&block)); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Else) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>(std::move(lhs), |
| std::move(rhs))); |
| |
| ast::ElseStatement stmt(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3)), |
| std::move(body)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&stmt)); |
| ASSERT_NE(stmt.condition()->result_type(), nullptr); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| EXPECT_TRUE(stmt.condition()->result_type()->IsI32()); |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_If) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto else_lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* else_lhs_ptr = else_lhs.get(); |
| |
| auto else_rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* else_rhs_ptr = else_rhs.get(); |
| |
| auto else_body = std::make_unique<ast::BlockStatement>(); |
| else_body->append(std::make_unique<ast::AssignmentStatement>( |
| std::move(else_lhs), std::move(else_rhs))); |
| |
| auto else_stmt = std::make_unique<ast::ElseStatement>( |
| std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3)), |
| std::move(else_body)); |
| |
| ast::ElseStatementList else_stmts; |
| else_stmts.push_back(std::move(else_stmt)); |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>(std::move(lhs), |
| std::move(rhs))); |
| |
| ast::IfStatement stmt(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3)), |
| std::move(body)); |
| stmt.set_else_statements(std::move(else_stmts)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&stmt)); |
| ASSERT_NE(stmt.condition()->result_type(), nullptr); |
| ASSERT_NE(else_lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(else_rhs_ptr->result_type(), nullptr); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| EXPECT_TRUE(stmt.condition()->result_type()->IsI32()); |
| EXPECT_TRUE(else_lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(else_rhs_ptr->result_type()->IsF32()); |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Loop) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto body_lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* body_lhs_ptr = body_lhs.get(); |
| |
| auto body_rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* body_rhs_ptr = body_rhs.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>(std::move(body_lhs), |
| std::move(body_rhs))); |
| |
| auto continuing_lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* continuing_lhs_ptr = continuing_lhs.get(); |
| |
| auto continuing_rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* continuing_rhs_ptr = continuing_rhs.get(); |
| |
| auto continuing = std::make_unique<ast::BlockStatement>(); |
| continuing->append(std::make_unique<ast::AssignmentStatement>( |
| std::move(continuing_lhs), std::move(continuing_rhs))); |
| |
| ast::LoopStatement stmt(std::move(body), std::move(continuing)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&stmt)); |
| ASSERT_NE(body_lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(body_rhs_ptr->result_type(), nullptr); |
| ASSERT_NE(continuing_lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(continuing_rhs_ptr->result_type(), nullptr); |
| EXPECT_TRUE(body_lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(body_rhs_ptr->result_type()->IsF32()); |
| EXPECT_TRUE(continuing_lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(continuing_rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Return) { |
| ast::type::I32Type i32; |
| |
| auto cond = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* cond_ptr = cond.get(); |
| |
| ast::ReturnStatement ret(std::move(cond)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&ret)); |
| ASSERT_NE(cond_ptr->result_type(), nullptr); |
| EXPECT_TRUE(cond_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Return_WithoutValue) { |
| ast::type::I32Type i32; |
| ast::ReturnStatement ret; |
| EXPECT_TRUE(td()->DetermineResultType(&ret)); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Switch) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| auto lhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto* lhs_ptr = lhs.get(); |
| |
| auto rhs = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.3f)); |
| auto* rhs_ptr = rhs.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>(std::move(lhs), |
| std::move(rhs))); |
| |
| ast::CaseSelectorList lit; |
| lit.push_back(std::make_unique<ast::SintLiteral>(&i32, 3)); |
| |
| ast::CaseStatementList cases; |
| cases.push_back( |
| std::make_unique<ast::CaseStatement>(std::move(lit), std::move(body))); |
| |
| ast::SwitchStatement stmt(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)), |
| std::move(cases)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&stmt)) << td()->error(); |
| ASSERT_NE(stmt.condition()->result_type(), nullptr); |
| ASSERT_NE(lhs_ptr->result_type(), nullptr); |
| ASSERT_NE(rhs_ptr->result_type(), nullptr); |
| |
| EXPECT_TRUE(stmt.condition()->result_type()->IsI32()); |
| EXPECT_TRUE(lhs_ptr->result_type()->IsI32()); |
| EXPECT_TRUE(rhs_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Call) { |
| ast::type::F32Type f32; |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| mod()->AddFunction(std::move(func)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| auto expr = std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("my_func"), |
| std::move(call_params)); |
| auto* expr_ptr = expr.get(); |
| |
| ast::CallStatement call(std::move(expr)); |
| EXPECT_TRUE(td()->DetermineResultType(&call)); |
| ASSERT_NE(expr_ptr->result_type(), nullptr); |
| EXPECT_TRUE(expr_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_Call_undeclared) { |
| // fn main() -> void {func(); return; } |
| // fn func() -> void { return; } |
| ast::type::F32Type f32; |
| ast::ExpressionList call_params; |
| auto call_expr = std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>(Source{12, 34}, "func"), |
| std::move(call_params)); |
| ast::VariableList params0; |
| auto func_main = |
| std::make_unique<ast::Function>("main", std::move(params0), &f32); |
| auto main_body = std::make_unique<ast::BlockStatement>(); |
| main_body->append(std::make_unique<ast::CallStatement>(std::move(call_expr))); |
| main_body->append(std::make_unique<ast::ReturnStatement>()); |
| func_main->set_body(std::move(main_body)); |
| mod()->AddFunction(std::move(func_main)); |
| |
| auto func = std::make_unique<ast::Function>("func", std::move(params0), &f32); |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::ReturnStatement>()); |
| func->set_body(std::move(body)); |
| mod()->AddFunction(std::move(func)); |
| |
| EXPECT_FALSE(td()->Determine()) << td()->error(); |
| EXPECT_EQ(td()->error(), |
| "12:34: v-0006: identifier must be declared before use: func"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_VariableDecl) { |
| ast::type::I32Type i32; |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &i32); |
| var->set_constructor(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2))); |
| auto* init_ptr = var->constructor(); |
| |
| ast::VariableDeclStatement decl(std::move(var)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&decl)); |
| ASSERT_NE(init_ptr->result_type(), nullptr); |
| EXPECT_TRUE(init_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Stmt_VariableDecl_ModuleScope) { |
| ast::type::I32Type i32; |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &i32); |
| var->set_constructor(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2))); |
| auto* init_ptr = var->constructor(); |
| |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| ASSERT_NE(init_ptr->result_type(), nullptr); |
| EXPECT_TRUE(init_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Error_Unknown) { |
| FakeExpr e; |
| e.set_source(Source{2, 30}); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&e)); |
| EXPECT_EQ(td()->error(), "2:30: unknown expression for type determination"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Array) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::ArrayType ary(&f32, 3); |
| |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto var = std::make_unique<ast::Variable>( |
| "my_var", ast::StorageClass::kFunction, &ary); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::IdentifierExpression>("my_var"), std::move(idx)); |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| ASSERT_TRUE(acc.result_type()->IsPointer()); |
| |
| auto* ptr = acc.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Alias_Array) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::ArrayType ary(&f32, 3); |
| ast::type::AliasType aary("myarrty", &ary); |
| |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto var = std::make_unique<ast::Variable>( |
| "my_var", ast::StorageClass::kFunction, &aary); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::IdentifierExpression>("my_var"), std::move(idx)); |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| ASSERT_TRUE(acc.result_type()->IsPointer()); |
| |
| auto* ptr = acc.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Array_Constant) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::ArrayType ary(&f32, 3); |
| |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto var = std::make_unique<ast::Variable>( |
| "my_var", ast::StorageClass::kFunction, &ary); |
| var->set_is_const(true); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::IdentifierExpression>("my_var"), std::move(idx)); |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| EXPECT_TRUE(acc.result_type()->IsF32()) << acc.result_type()->type_name(); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Matrix) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat(&f32, 3, 2); |
| |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &mat); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::IdentifierExpression>("my_var"), std::move(idx)); |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| ASSERT_TRUE(acc.result_type()->IsPointer()); |
| |
| auto* ptr = acc.result_type()->AsPointer(); |
| ASSERT_TRUE(ptr->type()->IsVector()); |
| EXPECT_EQ(ptr->type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Matrix_BothDimensions) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat(&f32, 3, 2); |
| |
| auto idx1 = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto idx2 = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1)); |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &mat); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::ArrayAccessorExpression>( |
| std::make_unique<ast::IdentifierExpression>("my_var"), |
| std::move(idx1)), |
| std::move(idx2)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| ASSERT_TRUE(acc.result_type()->IsPointer()); |
| |
| auto* ptr = acc.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_ArrayAccessor_Vector) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2)); |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &vec); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ArrayAccessorExpression acc( |
| std::make_unique<ast::IdentifierExpression>("my_var"), std::move(idx)); |
| EXPECT_TRUE(td()->DetermineResultType(&acc)); |
| ASSERT_NE(acc.result_type(), nullptr); |
| ASSERT_TRUE(acc.result_type()->IsPointer()); |
| |
| auto* ptr = acc.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Bitcast) { |
| ast::type::F32Type f32; |
| ast::BitcastExpression bitcast( |
| &f32, std::make_unique<ast::IdentifierExpression>("name")); |
| |
| ast::Variable v("name", ast::StorageClass::kPrivate, &f32); |
| td()->RegisterVariableForTesting(&v); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&bitcast)); |
| ASSERT_NE(bitcast.result_type(), nullptr); |
| EXPECT_TRUE(bitcast.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Call) { |
| ast::type::F32Type f32; |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| mod()->AddFunction(std::move(func)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| ast::CallExpression call( |
| std::make_unique<ast::IdentifierExpression>("my_func"), |
| std::move(call_params)); |
| EXPECT_TRUE(td()->DetermineResultType(&call)); |
| ASSERT_NE(call.result_type(), nullptr); |
| EXPECT_TRUE(call.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Call_WithParams) { |
| ast::type::F32Type f32; |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| mod()->AddFunction(std::move(func)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.4))); |
| |
| auto* param_ptr = call_params.back().get(); |
| |
| ast::CallExpression call( |
| std::make_unique<ast::IdentifierExpression>("my_func"), |
| std::move(call_params)); |
| EXPECT_TRUE(td()->DetermineResultType(&call)); |
| ASSERT_NE(param_ptr->result_type(), nullptr); |
| EXPECT_TRUE(param_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Call_Intrinsic) { |
| ast::type::F32Type f32; |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 2.4))); |
| |
| ast::CallExpression call(std::make_unique<ast::IdentifierExpression>("round"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)); |
| ASSERT_NE(call.result_type(), nullptr); |
| EXPECT_TRUE(call.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Cast) { |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::IdentifierExpression>("name")); |
| ast::TypeConstructorExpression cast(&f32, std::move(params)); |
| |
| ast::Variable v("name", ast::StorageClass::kPrivate, &f32); |
| td()->RegisterVariableForTesting(&v); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&cast)); |
| ASSERT_NE(cast.result_type(), nullptr); |
| EXPECT_TRUE(cast.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Constructor_Scalar) { |
| ast::type::F32Type f32; |
| ast::ScalarConstructorExpression s( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&s)); |
| ASSERT_NE(s.result_type(), nullptr); |
| EXPECT_TRUE(s.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Constructor_Type) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::TypeConstructorExpression tc(&vec, std::move(vals)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&tc)); |
| ASSERT_NE(tc.result_type(), nullptr); |
| ASSERT_TRUE(tc.result_type()->IsVector()); |
| EXPECT_TRUE(tc.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(tc.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_GlobalVariable) { |
| ast::type::F32Type f32; |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::IdentifierExpression ident("my_var"); |
| EXPECT_TRUE(td()->DetermineResultType(&ident)); |
| ASSERT_NE(ident.result_type(), nullptr); |
| EXPECT_TRUE(ident.result_type()->IsPointer()); |
| EXPECT_TRUE(ident.result_type()->AsPointer()->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_GlobalConstant) { |
| ast::type::F32Type f32; |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| var->set_is_const(true); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::IdentifierExpression ident("my_var"); |
| EXPECT_TRUE(td()->DetermineResultType(&ident)); |
| ASSERT_NE(ident.result_type(), nullptr); |
| EXPECT_TRUE(ident.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_FunctionVariable_Const) { |
| ast::type::F32Type f32; |
| |
| auto my_var = std::make_unique<ast::IdentifierExpression>("my_var"); |
| auto* my_var_ptr = my_var.get(); |
| |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| var->set_is_const(true); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::VariableDeclStatement>(std::move(var))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::move(my_var), |
| std::make_unique<ast::IdentifierExpression>("my_var"))); |
| |
| ast::Function f("my_func", {}, &f32); |
| f.set_body(std::move(body)); |
| |
| EXPECT_TRUE(td()->DetermineFunction(&f)); |
| |
| ASSERT_NE(my_var_ptr->result_type(), nullptr); |
| EXPECT_TRUE(my_var_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_FunctionVariable) { |
| ast::type::F32Type f32; |
| |
| auto my_var = std::make_unique<ast::IdentifierExpression>("my_var"); |
| auto* my_var_ptr = my_var.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::VariableDeclStatement>( |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &f32))); |
| |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::move(my_var), |
| std::make_unique<ast::IdentifierExpression>("my_var"))); |
| |
| ast::Function f("my_func", {}, &f32); |
| f.set_body(std::move(body)); |
| |
| EXPECT_TRUE(td()->DetermineFunction(&f)); |
| |
| ASSERT_NE(my_var_ptr->result_type(), nullptr); |
| EXPECT_TRUE(my_var_ptr->result_type()->IsPointer()); |
| EXPECT_TRUE(my_var_ptr->result_type()->AsPointer()->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_Function_Ptr) { |
| ast::type::F32Type f32; |
| ast::type::PointerType ptr(&f32, ast::StorageClass::kFunction); |
| |
| auto my_var = std::make_unique<ast::IdentifierExpression>("my_var"); |
| auto* my_var_ptr = my_var.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::VariableDeclStatement>( |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &ptr))); |
| |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::move(my_var), |
| std::make_unique<ast::IdentifierExpression>("my_var"))); |
| |
| ast::Function f("my_func", {}, &f32); |
| f.set_body(std::move(body)); |
| |
| EXPECT_TRUE(td()->DetermineFunction(&f)); |
| |
| ASSERT_NE(my_var_ptr->result_type(), nullptr); |
| EXPECT_TRUE(my_var_ptr->result_type()->IsPointer()); |
| EXPECT_TRUE(my_var_ptr->result_type()->AsPointer()->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_Function) { |
| ast::type::F32Type f32; |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| mod()->AddFunction(std::move(func)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::IdentifierExpression ident("my_func"); |
| EXPECT_TRUE(td()->DetermineResultType(&ident)); |
| ASSERT_NE(ident.result_type(), nullptr); |
| EXPECT_TRUE(ident.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Identifier_Unknown) { |
| ast::IdentifierExpression a("a"); |
| EXPECT_FALSE(td()->DetermineResultType(&a)); |
| } |
| |
| TEST_F(TypeDeterminerTest, Function_RegisterInputOutputVariables) { |
| ast::type::F32Type f32; |
| |
| auto in_var = std::make_unique<ast::Variable>( |
| "in_var", ast::StorageClass::kInput, &f32); |
| auto out_var = std::make_unique<ast::Variable>( |
| "out_var", ast::StorageClass::kOutput, &f32); |
| auto sb_var = std::make_unique<ast::Variable>( |
| "sb_var", ast::StorageClass::kStorageBuffer, &f32); |
| auto wg_var = std::make_unique<ast::Variable>( |
| "wg_var", ast::StorageClass::kWorkgroup, &f32); |
| auto priv_var = std::make_unique<ast::Variable>( |
| "priv_var", ast::StorageClass::kPrivate, &f32); |
| |
| auto* in_ptr = in_var.get(); |
| auto* out_ptr = out_var.get(); |
| auto* sb_ptr = sb_var.get(); |
| auto* wg_ptr = wg_var.get(); |
| auto* priv_ptr = priv_var.get(); |
| |
| mod()->AddGlobalVariable(std::move(in_var)); |
| mod()->AddGlobalVariable(std::move(out_var)); |
| mod()->AddGlobalVariable(std::move(sb_var)); |
| mod()->AddGlobalVariable(std::move(wg_var)); |
| mod()->AddGlobalVariable(std::move(priv_var)); |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| auto* func_ptr = func.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("out_var"), |
| std::make_unique<ast::IdentifierExpression>("in_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("wg_var"), |
| std::make_unique<ast::IdentifierExpression>("wg_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("sb_var"), |
| std::make_unique<ast::IdentifierExpression>("sb_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("priv_var"), |
| std::make_unique<ast::IdentifierExpression>("priv_var"))); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| const auto& vars = func_ptr->referenced_module_variables(); |
| ASSERT_EQ(vars.size(), 5u); |
| EXPECT_EQ(vars[0], out_ptr); |
| EXPECT_EQ(vars[1], in_ptr); |
| EXPECT_EQ(vars[2], wg_ptr); |
| EXPECT_EQ(vars[3], sb_ptr); |
| EXPECT_EQ(vars[4], priv_ptr); |
| } |
| |
| TEST_F(TypeDeterminerTest, Function_RegisterInputOutputVariables_SubFunction) { |
| ast::type::F32Type f32; |
| |
| auto in_var = std::make_unique<ast::Variable>( |
| "in_var", ast::StorageClass::kInput, &f32); |
| auto out_var = std::make_unique<ast::Variable>( |
| "out_var", ast::StorageClass::kOutput, &f32); |
| auto sb_var = std::make_unique<ast::Variable>( |
| "sb_var", ast::StorageClass::kStorageBuffer, &f32); |
| auto wg_var = std::make_unique<ast::Variable>( |
| "wg_var", ast::StorageClass::kWorkgroup, &f32); |
| auto priv_var = std::make_unique<ast::Variable>( |
| "priv_var", ast::StorageClass::kPrivate, &f32); |
| |
| auto* in_ptr = in_var.get(); |
| auto* out_ptr = out_var.get(); |
| auto* sb_ptr = sb_var.get(); |
| auto* wg_ptr = wg_var.get(); |
| auto* priv_ptr = priv_var.get(); |
| |
| mod()->AddGlobalVariable(std::move(in_var)); |
| mod()->AddGlobalVariable(std::move(out_var)); |
| mod()->AddGlobalVariable(std::move(sb_var)); |
| mod()->AddGlobalVariable(std::move(wg_var)); |
| mod()->AddGlobalVariable(std::move(priv_var)); |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("out_var"), |
| std::make_unique<ast::IdentifierExpression>("in_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("wg_var"), |
| std::make_unique<ast::IdentifierExpression>("wg_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("sb_var"), |
| std::make_unique<ast::IdentifierExpression>("sb_var"))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("priv_var"), |
| std::make_unique<ast::IdentifierExpression>("priv_var"))); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| auto func2 = std::make_unique<ast::Function>("func", std::move(params), &f32); |
| auto* func2_ptr = func2.get(); |
| |
| body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("out_var"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("my_func"), |
| ast::ExpressionList{}))); |
| func2->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func2)); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()); |
| |
| const auto& vars = func2_ptr->referenced_module_variables(); |
| ASSERT_EQ(vars.size(), 5u); |
| EXPECT_EQ(vars[0], out_ptr); |
| EXPECT_EQ(vars[1], in_ptr); |
| EXPECT_EQ(vars[2], wg_ptr); |
| EXPECT_EQ(vars[3], sb_ptr); |
| EXPECT_EQ(vars[4], priv_ptr); |
| } |
| |
| TEST_F(TypeDeterminerTest, Function_NotRegisterFunctionVariable) { |
| ast::type::F32Type f32; |
| |
| auto var = std::make_unique<ast::Variable>( |
| "in_var", ast::StorageClass::kFunction, &f32); |
| |
| ast::VariableList params; |
| auto func = |
| std::make_unique<ast::Function>("my_func", std::move(params), &f32); |
| auto* func_ptr = func.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::VariableDeclStatement>(std::move(var))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("var"), |
| std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f)))); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| ast::Variable v("var", ast::StorageClass::kFunction, &f32); |
| td()->RegisterVariableForTesting(&v); |
| |
| // Register the function |
| EXPECT_TRUE(td()->Determine()) << td()->error(); |
| |
| EXPECT_EQ(func_ptr->referenced_module_variables().size(), 0u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_MemberAccessor_Struct) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| ast::StructMemberDecorationList decos; |
| ast::StructMemberList members; |
| members.push_back(std::make_unique<ast::StructMember>("first_member", &i32, |
| std::move(decos))); |
| members.push_back(std::make_unique<ast::StructMember>("second_member", &f32, |
| std::move(decos))); |
| |
| auto strct = std::make_unique<ast::Struct>(std::move(members)); |
| |
| ast::type::StructType st("S", std::move(strct)); |
| |
| auto var = std::make_unique<ast::Variable>("my_struct", |
| ast::StorageClass::kNone, &st); |
| |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("my_struct"); |
| auto mem_ident = std::make_unique<ast::IdentifierExpression>("second_member"); |
| |
| ast::MemberAccessorExpression mem(std::move(ident), std::move(mem_ident)); |
| EXPECT_TRUE(td()->DetermineResultType(&mem)); |
| ASSERT_NE(mem.result_type(), nullptr); |
| ASSERT_TRUE(mem.result_type()->IsPointer()); |
| |
| auto* ptr = mem.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_MemberAccessor_Struct_Alias) { |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| ast::StructMemberDecorationList decos; |
| ast::StructMemberList members; |
| members.push_back(std::make_unique<ast::StructMember>("first_member", &i32, |
| std::move(decos))); |
| members.push_back(std::make_unique<ast::StructMember>("second_member", &f32, |
| std::move(decos))); |
| |
| auto strct = std::make_unique<ast::Struct>(std::move(members)); |
| |
| auto st = std::make_unique<ast::type::StructType>("alias", std::move(strct)); |
| ast::type::AliasType alias("alias", st.get()); |
| |
| auto var = std::make_unique<ast::Variable>("my_struct", |
| ast::StorageClass::kNone, &alias); |
| |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("my_struct"); |
| auto mem_ident = std::make_unique<ast::IdentifierExpression>("second_member"); |
| |
| ast::MemberAccessorExpression mem(std::move(ident), std::move(mem_ident)); |
| EXPECT_TRUE(td()->DetermineResultType(&mem)); |
| ASSERT_NE(mem.result_type(), nullptr); |
| ASSERT_TRUE(mem.result_type()->IsPointer()); |
| |
| auto* ptr = mem.result_type()->AsPointer(); |
| EXPECT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_MemberAccessor_VectorSwizzle) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_vec", ast::StorageClass::kNone, |
| &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("my_vec"); |
| auto swizzle = std::make_unique<ast::IdentifierExpression>("xy"); |
| |
| ast::MemberAccessorExpression mem(std::move(ident), std::move(swizzle)); |
| EXPECT_TRUE(td()->DetermineResultType(&mem)) << td()->error(); |
| ASSERT_NE(mem.result_type(), nullptr); |
| ASSERT_TRUE(mem.result_type()->IsVector()); |
| EXPECT_TRUE(mem.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(mem.result_type()->AsVector()->size(), 2u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_MemberAccessor_VectorSwizzle_SingleElement) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_vec", ast::StorageClass::kNone, |
| &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("my_vec"); |
| auto swizzle = std::make_unique<ast::IdentifierExpression>("x"); |
| |
| ast::MemberAccessorExpression mem(std::move(ident), std::move(swizzle)); |
| EXPECT_TRUE(td()->DetermineResultType(&mem)) << td()->error(); |
| ASSERT_NE(mem.result_type(), nullptr); |
| ASSERT_TRUE(mem.result_type()->IsPointer()); |
| |
| auto* ptr = mem.result_type()->AsPointer(); |
| ASSERT_TRUE(ptr->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Accessor_MultiLevel) { |
| // struct b { |
| // vec4<f32> foo |
| // } |
| // struct A { |
| // vec3<struct b> mem |
| // } |
| // var c : A |
| // c.mem[0].foo.yx |
| // -> vec2<f32> |
| // |
| // MemberAccessor{ |
| // MemberAccessor{ |
| // ArrayAccessor{ |
| // MemberAccessor{ |
| // Identifier{c} |
| // Identifier{mem} |
| // } |
| // ScalarConstructor{0} |
| // } |
| // Identifier{foo} |
| // } |
| // Identifier{yx} |
| // } |
| // |
| ast::type::I32Type i32; |
| ast::type::F32Type f32; |
| |
| ast::type::VectorType vec4(&f32, 4); |
| |
| ast::StructMemberDecorationList decos; |
| ast::StructMemberList b_members; |
| b_members.push_back( |
| std::make_unique<ast::StructMember>("foo", &vec4, std::move(decos))); |
| |
| auto strctB = std::make_unique<ast::Struct>(std::move(b_members)); |
| ast::type::StructType stB("B", std::move(strctB)); |
| |
| ast::type::VectorType vecB(&stB, 3); |
| |
| ast::StructMemberList a_members; |
| a_members.push_back( |
| std::make_unique<ast::StructMember>("mem", &vecB, std::move(decos))); |
| |
| auto strctA = std::make_unique<ast::Struct>(std::move(a_members)); |
| |
| ast::type::StructType stA("A", std::move(strctA)); |
| |
| auto var = |
| std::make_unique<ast::Variable>("c", ast::StorageClass::kNone, &stA); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("c"); |
| auto mem_ident = std::make_unique<ast::IdentifierExpression>("mem"); |
| auto foo_ident = std::make_unique<ast::IdentifierExpression>("foo"); |
| auto idx = std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 0)); |
| auto swizzle = std::make_unique<ast::IdentifierExpression>("yx"); |
| |
| ast::MemberAccessorExpression mem( |
| std::make_unique<ast::MemberAccessorExpression>( |
| std::make_unique<ast::ArrayAccessorExpression>( |
| std::make_unique<ast::MemberAccessorExpression>( |
| std::move(ident), std::move(mem_ident)), |
| std::move(idx)), |
| std::move(foo_ident)), |
| std::move(swizzle)); |
| EXPECT_TRUE(td()->DetermineResultType(&mem)) << td()->error(); |
| |
| ASSERT_NE(mem.result_type(), nullptr); |
| ASSERT_TRUE(mem.result_type()->IsVector()); |
| EXPECT_TRUE(mem.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(mem.result_type()->AsVector()->size(), 2u); |
| } |
| |
| using Expr_Binary_BitwiseTest = TypeDeterminerTestWithParam<ast::BinaryOp>; |
| TEST_P(Expr_Binary_BitwiseTest, Scalar) { |
| auto op = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &i32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsI32()); |
| } |
| |
| TEST_P(Expr_Binary_BitwiseTest, Vector) { |
| auto op = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec3(&i32, 3); |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| Expr_Binary_BitwiseTest, |
| testing::Values(ast::BinaryOp::kAnd, |
| ast::BinaryOp::kOr, |
| ast::BinaryOp::kXor, |
| ast::BinaryOp::kShiftLeft, |
| ast::BinaryOp::kShiftRight, |
| ast::BinaryOp::kAdd, |
| ast::BinaryOp::kSubtract, |
| ast::BinaryOp::kDivide, |
| ast::BinaryOp::kModulo)); |
| |
| using Expr_Binary_LogicalTest = TypeDeterminerTestWithParam<ast::BinaryOp>; |
| TEST_P(Expr_Binary_LogicalTest, Scalar) { |
| auto op = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| |
| auto var = std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, |
| &bool_type); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsBool()); |
| } |
| |
| TEST_P(Expr_Binary_LogicalTest, Vector) { |
| auto op = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| ast::type::VectorType vec3(&bool_type, 3); |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsBool()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| Expr_Binary_LogicalTest, |
| testing::Values(ast::BinaryOp::kLogicalAnd, |
| ast::BinaryOp::kLogicalOr)); |
| |
| using Expr_Binary_CompareTest = TypeDeterminerTestWithParam<ast::BinaryOp>; |
| TEST_P(Expr_Binary_CompareTest, Scalar) { |
| auto op = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &i32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsBool()); |
| } |
| |
| TEST_P(Expr_Binary_CompareTest, Vector) { |
| auto op = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec3(&i32, 3); |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| op, std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsBool()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| Expr_Binary_CompareTest, |
| testing::Values(ast::BinaryOp::kEqual, |
| ast::BinaryOp::kNotEqual, |
| ast::BinaryOp::kLessThan, |
| ast::BinaryOp::kGreaterThan, |
| ast::BinaryOp::kLessThanEqual, |
| ast::BinaryOp::kGreaterThanEqual)); |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Scalar_Scalar) { |
| ast::type::I32Type i32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("val", ast::StorageClass::kNone, &i32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("val"), |
| std::make_unique<ast::IdentifierExpression>("val")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsI32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Vector_Scalar) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto scalar = |
| std::make_unique<ast::Variable>("scalar", ast::StorageClass::kNone, &f32); |
| auto vector = std::make_unique<ast::Variable>( |
| "vector", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(scalar)); |
| mod()->AddGlobalVariable(std::move(vector)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("vector"), |
| std::make_unique<ast::IdentifierExpression>("scalar")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Scalar_Vector) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto scalar = |
| std::make_unique<ast::Variable>("scalar", ast::StorageClass::kNone, &f32); |
| auto vector = std::make_unique<ast::Variable>( |
| "vector", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(scalar)); |
| mod()->AddGlobalVariable(std::move(vector)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("scalar"), |
| std::make_unique<ast::IdentifierExpression>("vector")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Vector_Vector) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto vector = std::make_unique<ast::Variable>( |
| "vector", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(vector)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("vector"), |
| std::make_unique<ast::IdentifierExpression>("vector")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Matrix_Scalar) { |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat3x2(&f32, 3, 2); |
| |
| auto scalar = |
| std::make_unique<ast::Variable>("scalar", ast::StorageClass::kNone, &f32); |
| auto matrix = std::make_unique<ast::Variable>( |
| "matrix", ast::StorageClass::kNone, &mat3x2); |
| mod()->AddGlobalVariable(std::move(scalar)); |
| mod()->AddGlobalVariable(std::move(matrix)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("matrix"), |
| std::make_unique<ast::IdentifierExpression>("scalar")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsMatrix()); |
| |
| auto* mat = expr.result_type()->AsMatrix(); |
| EXPECT_TRUE(mat->type()->IsF32()); |
| EXPECT_EQ(mat->rows(), 3u); |
| EXPECT_EQ(mat->columns(), 2u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Scalar_Matrix) { |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat3x2(&f32, 3, 2); |
| |
| auto scalar = |
| std::make_unique<ast::Variable>("scalar", ast::StorageClass::kNone, &f32); |
| auto matrix = std::make_unique<ast::Variable>( |
| "matrix", ast::StorageClass::kNone, &mat3x2); |
| mod()->AddGlobalVariable(std::move(scalar)); |
| mod()->AddGlobalVariable(std::move(matrix)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("scalar"), |
| std::make_unique<ast::IdentifierExpression>("matrix")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsMatrix()); |
| |
| auto* mat = expr.result_type()->AsMatrix(); |
| EXPECT_TRUE(mat->type()->IsF32()); |
| EXPECT_EQ(mat->rows(), 3u); |
| EXPECT_EQ(mat->columns(), 2u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Matrix_Vector) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 2); |
| ast::type::MatrixType mat3x2(&f32, 3, 2); |
| |
| auto vector = std::make_unique<ast::Variable>( |
| "vector", ast::StorageClass::kNone, &vec3); |
| auto matrix = std::make_unique<ast::Variable>( |
| "matrix", ast::StorageClass::kNone, &mat3x2); |
| mod()->AddGlobalVariable(std::move(vector)); |
| mod()->AddGlobalVariable(std::move(matrix)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("matrix"), |
| std::make_unique<ast::IdentifierExpression>("vector")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Vector_Matrix) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| ast::type::MatrixType mat3x2(&f32, 3, 2); |
| |
| auto vector = std::make_unique<ast::Variable>( |
| "vector", ast::StorageClass::kNone, &vec3); |
| auto matrix = std::make_unique<ast::Variable>( |
| "matrix", ast::StorageClass::kNone, &mat3x2); |
| mod()->AddGlobalVariable(std::move(vector)); |
| mod()->AddGlobalVariable(std::move(matrix)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("vector"), |
| std::make_unique<ast::IdentifierExpression>("matrix")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 2u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Expr_Binary_Multiply_Matrix_Matrix) { |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat4x3(&f32, 4, 3); |
| ast::type::MatrixType mat3x4(&f32, 3, 4); |
| |
| auto matrix1 = std::make_unique<ast::Variable>( |
| "mat4x3", ast::StorageClass::kNone, &mat4x3); |
| auto matrix2 = std::make_unique<ast::Variable>( |
| "mat3x4", ast::StorageClass::kNone, &mat3x4); |
| mod()->AddGlobalVariable(std::move(matrix1)); |
| mod()->AddGlobalVariable(std::move(matrix2)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::BinaryExpression expr( |
| ast::BinaryOp::kMultiply, |
| std::make_unique<ast::IdentifierExpression>("mat4x3"), |
| std::make_unique<ast::IdentifierExpression>("mat3x4")); |
| |
| ASSERT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsMatrix()); |
| |
| auto* mat = expr.result_type()->AsMatrix(); |
| EXPECT_TRUE(mat->type()->IsF32()); |
| EXPECT_EQ(mat->rows(), 4u); |
| EXPECT_EQ(mat->columns(), 4u); |
| } |
| |
| using IntrinsicDerivativeTest = TypeDeterminerTestWithParam<std::string>; |
| TEST_P(IntrinsicDerivativeTest, Scalar) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("ident", ast::StorageClass::kNone, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("ident")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsF32()); |
| } |
| |
| TEST_P(IntrinsicDerivativeTest, Vector) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec4(&f32, 4); |
| |
| auto var = |
| std::make_unique<ast::Variable>("ident", ast::StorageClass::kNone, &vec4); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("ident")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| TEST_P(IntrinsicDerivativeTest, MissingParam) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec4(&f32, 4); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for " + name); |
| } |
| |
| TEST_P(IntrinsicDerivativeTest, ToomManyParams) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec4(&f32, 4); |
| |
| auto var1 = std::make_unique<ast::Variable>("ident1", |
| ast::StorageClass::kNone, &vec4); |
| auto var2 = std::make_unique<ast::Variable>("ident2", |
| ast::StorageClass::kNone, &vec4); |
| mod()->AddGlobalVariable(std::move(var1)); |
| mod()->AddGlobalVariable(std::move(var2)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("ident1")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("ident2")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for " + name); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| IntrinsicDerivativeTest, |
| testing::Values("dpdx", |
| "dpdxCoarse", |
| "dpdxFine", |
| "dpdy", |
| "dpdyCoarse", |
| "dpdyFine", |
| "fwidth", |
| "fwidthCoarse", |
| "fwidthFine")); |
| |
| using Intrinsic = TypeDeterminerTestWithParam<std::string>; |
| TEST_P(Intrinsic, Test) { |
| auto name = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| ast::type::VectorType vec3(&bool_type, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsBool()); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| Intrinsic, |
| testing::Values("any", "all")); |
| |
| using Intrinsic_FloatMethod = TypeDeterminerTestWithParam<std::string>; |
| TEST_P(Intrinsic_FloatMethod, Vector) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsBool()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(Intrinsic_FloatMethod, Scalar) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsBool()); |
| } |
| |
| TEST_P(Intrinsic_FloatMethod, MissingParam) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for " + name); |
| } |
| |
| TEST_P(Intrinsic_FloatMethod, TooManyParams) { |
| auto name = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>(name), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for " + name); |
| } |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| Intrinsic_FloatMethod, |
| testing::Values("isInf", "isNan", "isFinite", "isNormal")); |
| |
| enum class TextureType { kF32, kI32, kU32 }; |
| inline std::ostream& operator<<(std::ostream& out, TextureType data) { |
| if (data == TextureType::kF32) { |
| out << "f32"; |
| } else if (data == TextureType::kI32) { |
| out << "i32"; |
| } else { |
| out << "u32"; |
| } |
| return out; |
| } |
| |
| struct TextureTestParams { |
| ast::type::TextureDimension dim; |
| TextureType type = TextureType::kF32; |
| ast::type::ImageFormat format = ast::type::ImageFormat::kR16Float; |
| }; |
| inline std::ostream& operator<<(std::ostream& out, TextureTestParams data) { |
| out << data.dim << "_" << data.type; |
| return out; |
| } |
| |
| class Intrinsic_TextureOperation |
| : public TypeDeterminerTestWithParam<TextureTestParams> { |
| public: |
| std::unique_ptr<ast::type::Type> get_coords_type( |
| ast::type::TextureDimension dim, |
| ast::type::Type* type) { |
| if (dim == ast::type::TextureDimension::k1d) { |
| if (type->IsI32()) { |
| return std::make_unique<ast::type::I32Type>(); |
| } else if (type->IsU32()) { |
| return std::make_unique<ast::type::U32Type>(); |
| } else { |
| return std::make_unique<ast::type::F32Type>(); |
| } |
| } else if (dim == ast::type::TextureDimension::k1dArray || |
| dim == ast::type::TextureDimension::k2d) { |
| return std::make_unique<ast::type::VectorType>(type, 2); |
| } else if (dim == ast::type::TextureDimension::kCubeArray) { |
| return std::make_unique<ast::type::VectorType>(type, 4); |
| } else { |
| return std::make_unique<ast::type::VectorType>(type, 3); |
| } |
| } |
| |
| void add_call_param(std::string name, |
| ast::type::Type* type, |
| ast::ExpressionList* call_params) { |
| auto var = |
| std::make_unique<ast::Variable>(name, ast::StorageClass::kNone, type); |
| mod()->AddGlobalVariable(std::move(var)); |
| call_params->push_back(std::make_unique<ast::IdentifierExpression>(name)); |
| } |
| |
| std::unique_ptr<ast::type::Type> subtype(TextureType type) { |
| if (type == TextureType::kF32) { |
| return std::make_unique<ast::type::F32Type>(); |
| } |
| if (type == TextureType::kI32) { |
| return std::make_unique<ast::type::I32Type>(); |
| } |
| return std::make_unique<ast::type::U32Type>(); |
| } |
| }; |
| |
| using Intrinsic_StorageTextureOperation = Intrinsic_TextureOperation; |
| TEST_P(Intrinsic_StorageTextureOperation, TextureLoadRo) { |
| auto dim = GetParam().dim; |
| auto type = GetParam().type; |
| auto format = GetParam().format; |
| |
| ast::type::I32Type i32; |
| auto coords_type = get_coords_type(dim, &i32); |
| |
| ast::type::Type* texture_type = |
| ctx()->type_mgr().Get(std::make_unique<ast::type::StorageTextureType>( |
| dim, ast::AccessControl::kReadOnly, format)); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type, &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| add_call_param("lod", &i32, &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureLoad"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| if (type == TextureType::kF32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } else if (type == TextureType::kI32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| } else { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsU32()); |
| } |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| Intrinsic_StorageTextureOperation, |
| testing::Values( |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kF32, |
| ast::type::ImageFormat::kR16Float}, |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kI32, |
| ast::type::ImageFormat::kR16Sint}, |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kU32, |
| ast::type::ImageFormat::kR8Unorm}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kF32, ast::type::ImageFormat::kR16Float}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kI32, ast::type::ImageFormat::kR16Sint}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kU32, ast::type::ImageFormat::kR8Unorm}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kF32, |
| ast::type::ImageFormat::kR16Float}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kI32, |
| ast::type::ImageFormat::kR16Sint}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kU32, |
| ast::type::ImageFormat::kR8Unorm}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kF32, ast::type::ImageFormat::kR16Float}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kI32, ast::type::ImageFormat::kR16Sint}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kU32, ast::type::ImageFormat::kR8Unorm}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kF32, |
| ast::type::ImageFormat::kR16Float}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kI32, |
| ast::type::ImageFormat::kR16Sint}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kU32, |
| ast::type::ImageFormat::kR8Unorm})); |
| |
| using Intrinsic_SampledTextureOperation = Intrinsic_TextureOperation; |
| TEST_P(Intrinsic_SampledTextureOperation, TextureLoadSampled) { |
| auto dim = GetParam().dim; |
| auto type = GetParam().type; |
| |
| ast::type::I32Type i32; |
| std::unique_ptr<ast::type::Type> s = subtype(type); |
| auto coords_type = get_coords_type(dim, &i32); |
| auto texture_type = |
| std::make_unique<ast::type::SampledTextureType>(dim, s.get()); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type.get(), &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| add_call_param("lod", &i32, &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureLoad"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| if (type == TextureType::kF32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } else if (type == TextureType::kI32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| } else { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsU32()); |
| } |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| TEST_P(Intrinsic_SampledTextureOperation, TextureSample) { |
| auto dim = GetParam().dim; |
| auto type = GetParam().type; |
| |
| auto s = subtype(type); |
| ast::type::F32Type f32; |
| auto sampler_type = std::make_unique<ast::type::SamplerType>( |
| ast::type::SamplerKind::kSampler); |
| auto coords_type = get_coords_type(dim, &f32); |
| auto texture_type = |
| std::make_unique<ast::type::SampledTextureType>(dim, s.get()); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type.get(), &call_params); |
| add_call_param("sampler", sampler_type.get(), &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureSample"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| if (type == TextureType::kF32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } else if (type == TextureType::kI32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| } else { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsU32()); |
| } |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| TEST_P(Intrinsic_SampledTextureOperation, TextureSampleLevel) { |
| auto dim = GetParam().dim; |
| auto type = GetParam().type; |
| |
| ast::type::F32Type f32; |
| auto s = subtype(type); |
| auto sampler_type = std::make_unique<ast::type::SamplerType>( |
| ast::type::SamplerKind::kSampler); |
| auto coords_type = get_coords_type(dim, &f32); |
| auto texture_type = |
| std::make_unique<ast::type::SampledTextureType>(dim, s.get()); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type.get(), &call_params); |
| add_call_param("sampler", sampler_type.get(), &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| add_call_param("lod", &f32, &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureSampleLevel"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| if (type == TextureType::kF32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } else if (type == TextureType::kI32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| } else { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsU32()); |
| } |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| TEST_P(Intrinsic_SampledTextureOperation, TextureSampleBias) { |
| auto dim = GetParam().dim; |
| auto type = GetParam().type; |
| |
| ast::type::F32Type f32; |
| auto s = subtype(type); |
| auto sampler_type = std::make_unique<ast::type::SamplerType>( |
| ast::type::SamplerKind::kSampler); |
| auto coords_type = get_coords_type(dim, &f32); |
| auto texture_type = |
| std::make_unique<ast::type::SampledTextureType>(dim, s.get()); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type.get(), &call_params); |
| add_call_param("sampler", sampler_type.get(), &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| add_call_param("bias", &f32, &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureSampleBias"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsVector()); |
| if (type == TextureType::kF32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } else if (type == TextureType::kI32) { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsI32()); |
| } else { |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsU32()); |
| } |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 4u); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| Intrinsic_SampledTextureOperation, |
| testing::Values( |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::k1d, TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::k1dArray, |
| TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::k2d, TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray, |
| TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::k3d, TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::kCube, |
| TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::kCube, |
| TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::kCube, |
| TextureType::kU32}, |
| TextureTestParams{ast::type::TextureDimension::kCubeArray, |
| TextureType::kF32}, |
| TextureTestParams{ast::type::TextureDimension::kCubeArray, |
| TextureType::kI32}, |
| TextureTestParams{ast::type::TextureDimension::kCubeArray, |
| TextureType::kU32})); |
| |
| using Intrinsic_DepthTextureOperation = Intrinsic_TextureOperation; |
| TEST_P(Intrinsic_DepthTextureOperation, TextureSampleCompare) { |
| auto dim = GetParam().dim; |
| |
| ast::type::F32Type f32; |
| auto sampler_type = std::make_unique<ast::type::SamplerType>( |
| ast::type::SamplerKind::kComparisonSampler); |
| auto coords_type = get_coords_type(dim, &f32); |
| auto texture_type = std::make_unique<ast::type::DepthTextureType>(dim); |
| |
| ast::ExpressionList call_params; |
| |
| add_call_param("texture", texture_type.get(), &call_params); |
| add_call_param("sampler_comparison", sampler_type.get(), &call_params); |
| add_call_param("coords", coords_type.get(), &call_params); |
| add_call_param("depth_reference", &f32, &call_params); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("textureSampleCompare"), |
| std::move(call_params)); |
| |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsF32()); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| Intrinsic_DepthTextureOperation, |
| testing::Values(TextureTestParams{ast::type::TextureDimension::k2d}, |
| TextureTestParams{ast::type::TextureDimension::k2dArray}, |
| TextureTestParams{ast::type::TextureDimension::kCube}, |
| TextureTestParams{ |
| ast::type::TextureDimension::kCubeArray})); |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_Dot) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| |
| ast::CallExpression expr(std::make_unique<ast::IdentifierExpression>("dot"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_Select) { |
| ast::type::F32Type f32; |
| ast::type::BoolType bool_type; |
| ast::type::VectorType vec3(&f32, 3); |
| ast::type::VectorType bool_vec3(&bool_type, 3); |
| |
| auto var = std::make_unique<ast::Variable>("my_var", ast::StorageClass::kNone, |
| &vec3); |
| auto bool_var = std::make_unique<ast::Variable>( |
| "bool_var", ast::StorageClass::kNone, &bool_vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| mod()->AddGlobalVariable(std::move(bool_var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("my_var")); |
| call_params.push_back( |
| std::make_unique<ast::IdentifierExpression>("bool_var")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("select"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)) << td()->error(); |
| ASSERT_NE(expr.result_type(), nullptr); |
| EXPECT_TRUE(expr.result_type()->IsVector()); |
| EXPECT_EQ(expr.result_type()->AsVector()->size(), 3u); |
| EXPECT_TRUE(expr.result_type()->AsVector()->type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_Select_TooFewParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = |
| std::make_unique<ast::Variable>("v", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("select"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for select expected 3 got 1"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_Select_TooManyParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| |
| auto var = |
| std::make_unique<ast::Variable>("v", ast::StorageClass::kNone, &vec3); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("select"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for select expected 3 got 4"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_OuterProduct) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| ast::type::VectorType vec2(&f32, 2); |
| |
| auto var1 = |
| std::make_unique<ast::Variable>("v3", ast::StorageClass::kNone, &vec3); |
| auto var2 = |
| std::make_unique<ast::Variable>("v2", ast::StorageClass::kNone, &vec2); |
| mod()->AddGlobalVariable(std::move(var1)); |
| mod()->AddGlobalVariable(std::move(var2)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v3")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v2")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("outerProduct"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_TRUE(td()->DetermineResultType(&expr)); |
| |
| ASSERT_NE(expr.result_type(), nullptr); |
| ASSERT_TRUE(expr.result_type()->IsMatrix()); |
| |
| auto* mat = expr.result_type()->AsMatrix(); |
| EXPECT_TRUE(mat->type()->IsF32()); |
| EXPECT_EQ(mat->rows(), 3u); |
| EXPECT_EQ(mat->columns(), 2u); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_OuterProduct_TooFewParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| ast::type::VectorType vec2(&f32, 2); |
| |
| auto var2 = |
| std::make_unique<ast::Variable>("v2", ast::StorageClass::kNone, &vec2); |
| mod()->AddGlobalVariable(std::move(var2)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v2")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("outerProduct"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for outerProduct"); |
| } |
| |
| TEST_F(TypeDeterminerTest, Intrinsic_OuterProduct_TooManyParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec3(&f32, 3); |
| ast::type::VectorType vec2(&f32, 2); |
| |
| auto var2 = |
| std::make_unique<ast::Variable>("v2", ast::StorageClass::kNone, &vec2); |
| mod()->AddGlobalVariable(std::move(var2)); |
| |
| ast::ExpressionList call_params; |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v2")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v2")); |
| call_params.push_back(std::make_unique<ast::IdentifierExpression>("v2")); |
| |
| ast::CallExpression expr( |
| std::make_unique<ast::IdentifierExpression>("outerProduct"), |
| std::move(call_params)); |
| |
| // Register the variable |
| EXPECT_TRUE(td()->Determine()); |
| EXPECT_FALSE(td()->DetermineResultType(&expr)); |
| EXPECT_EQ(td()->error(), "incorrect number of parameters for outerProduct"); |
| } |
| |
| using UnaryOpExpressionTest = TypeDeterminerTestWithParam<ast::UnaryOp>; |
| TEST_P(UnaryOpExpressionTest, Expr_UnaryOp) { |
| auto op = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::type::VectorType vec4(&f32, 4); |
| |
| auto var = |
| std::make_unique<ast::Variable>("ident", ast::StorageClass::kNone, &vec4); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| EXPECT_TRUE(td()->Determine()); |
| |
| ast::UnaryOpExpression der( |
| op, std::make_unique<ast::IdentifierExpression>("ident")); |
| EXPECT_TRUE(td()->DetermineResultType(&der)); |
| ASSERT_NE(der.result_type(), nullptr); |
| ASSERT_TRUE(der.result_type()->IsVector()); |
| EXPECT_TRUE(der.result_type()->AsVector()->type()->IsF32()); |
| EXPECT_EQ(der.result_type()->AsVector()->size(), 4u); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| UnaryOpExpressionTest, |
| testing::Values(ast::UnaryOp::kNegation, |
| ast::UnaryOp::kNot)); |
| |
| TEST_F(TypeDeterminerTest, StorageClass_SetsIfMissing) { |
| ast::type::I32Type i32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("var", ast::StorageClass::kNone, &i32); |
| auto* var_ptr = var.get(); |
| auto stmt = std::make_unique<ast::VariableDeclStatement>(std::move(var)); |
| |
| auto func = |
| std::make_unique<ast::Function>("func", ast::VariableList{}, &i32); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::move(stmt)); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| EXPECT_TRUE(td()->Determine()) << td()->error(); |
| EXPECT_EQ(var_ptr->storage_class(), ast::StorageClass::kFunction); |
| } |
| |
| TEST_F(TypeDeterminerTest, StorageClass_DoesNotSetOnConst) { |
| ast::type::I32Type i32; |
| |
| auto var = |
| std::make_unique<ast::Variable>("var", ast::StorageClass::kNone, &i32); |
| var->set_is_const(true); |
| auto* var_ptr = var.get(); |
| auto stmt = std::make_unique<ast::VariableDeclStatement>(std::move(var)); |
| |
| auto func = |
| std::make_unique<ast::Function>("func", ast::VariableList{}, &i32); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::move(stmt)); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| EXPECT_TRUE(td()->Determine()) << td()->error(); |
| EXPECT_EQ(var_ptr->storage_class(), ast::StorageClass::kNone); |
| } |
| |
| TEST_F(TypeDeterminerTest, StorageClass_NonFunctionClassError) { |
| ast::type::I32Type i32; |
| |
| auto var = std::make_unique<ast::Variable>( |
| "var", ast::StorageClass::kWorkgroup, &i32); |
| auto stmt = std::make_unique<ast::VariableDeclStatement>(std::move(var)); |
| |
| auto func = |
| std::make_unique<ast::Function>("func", ast::VariableList{}, &i32); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::move(stmt)); |
| func->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func)); |
| |
| EXPECT_FALSE(td()->Determine()); |
| EXPECT_EQ(td()->error(), |
| "function variable has a non-function storage class"); |
| } |
| |
| struct IntrinsicData { |
| const char* name; |
| ast::Intrinsic intrinsic; |
| }; |
| inline std::ostream& operator<<(std::ostream& out, IntrinsicData data) { |
| out << data.name; |
| return out; |
| } |
| using IntrinsicDataTest = TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(IntrinsicDataTest, Lookup) { |
| auto param = GetParam(); |
| |
| ast::IdentifierExpression ident(param.name); |
| EXPECT_TRUE(td()->SetIntrinsicIfNeeded(&ident)); |
| EXPECT_EQ(ident.intrinsic(), param.intrinsic); |
| EXPECT_TRUE(ident.IsIntrinsic()); |
| } |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| IntrinsicDataTest, |
| testing::Values( |
| IntrinsicData{"abs", ast::Intrinsic::kAbs}, |
| IntrinsicData{"acos", ast::Intrinsic::kAcos}, |
| IntrinsicData{"all", ast::Intrinsic::kAll}, |
| IntrinsicData{"any", ast::Intrinsic::kAny}, |
| IntrinsicData{"arrayLength", ast::Intrinsic::kArrayLength}, |
| IntrinsicData{"asin", ast::Intrinsic::kAsin}, |
| IntrinsicData{"atan", ast::Intrinsic::kAtan}, |
| IntrinsicData{"atan2", ast::Intrinsic::kAtan2}, |
| IntrinsicData{"ceil", ast::Intrinsic::kCeil}, |
| IntrinsicData{"clamp", ast::Intrinsic::kClamp}, |
| IntrinsicData{"cos", ast::Intrinsic::kCos}, |
| IntrinsicData{"cosh", ast::Intrinsic::kCosh}, |
| IntrinsicData{"countOneBits", ast::Intrinsic::kCountOneBits}, |
| IntrinsicData{"cross", ast::Intrinsic::kCross}, |
| IntrinsicData{"determinant", ast::Intrinsic::kDeterminant}, |
| IntrinsicData{"distance", ast::Intrinsic::kDistance}, |
| IntrinsicData{"dot", ast::Intrinsic::kDot}, |
| IntrinsicData{"dpdx", ast::Intrinsic::kDpdx}, |
| IntrinsicData{"dpdxCoarse", ast::Intrinsic::kDpdxCoarse}, |
| IntrinsicData{"dpdxFine", ast::Intrinsic::kDpdxFine}, |
| IntrinsicData{"dpdy", ast::Intrinsic::kDpdy}, |
| IntrinsicData{"dpdyCoarse", ast::Intrinsic::kDpdyCoarse}, |
| IntrinsicData{"dpdyFine", ast::Intrinsic::kDpdyFine}, |
| IntrinsicData{"exp", ast::Intrinsic::kExp}, |
| IntrinsicData{"exp2", ast::Intrinsic::kExp2}, |
| IntrinsicData{"faceForward", ast::Intrinsic::kFaceForward}, |
| IntrinsicData{"floor", ast::Intrinsic::kFloor}, |
| IntrinsicData{"fma", ast::Intrinsic::kFma}, |
| IntrinsicData{"fract", ast::Intrinsic::kFract}, |
| IntrinsicData{"frexp", ast::Intrinsic::kFrexp}, |
| IntrinsicData{"fwidth", ast::Intrinsic::kFwidth}, |
| IntrinsicData{"fwidthCoarse", ast::Intrinsic::kFwidthCoarse}, |
| IntrinsicData{"fwidthFine", ast::Intrinsic::kFwidthFine}, |
| IntrinsicData{"inverseSqrt", ast::Intrinsic::kInverseSqrt}, |
| IntrinsicData{"isFinite", ast::Intrinsic::kIsFinite}, |
| IntrinsicData{"isInf", ast::Intrinsic::kIsInf}, |
| IntrinsicData{"isNan", ast::Intrinsic::kIsNan}, |
| IntrinsicData{"isNormal", ast::Intrinsic::kIsNormal}, |
| IntrinsicData{"ldexp", ast::Intrinsic::kLdexp}, |
| IntrinsicData{"length", ast::Intrinsic::kLength}, |
| IntrinsicData{"log", ast::Intrinsic::kLog}, |
| IntrinsicData{"log2", ast::Intrinsic::kLog2}, |
| IntrinsicData{"max", ast::Intrinsic::kMax}, |
| IntrinsicData{"min", ast::Intrinsic::kMin}, |
| IntrinsicData{"mix", ast::Intrinsic::kMix}, |
| IntrinsicData{"modf", ast::Intrinsic::kModf}, |
| IntrinsicData{"normalize", ast::Intrinsic::kNormalize}, |
| IntrinsicData{"outerProduct", ast::Intrinsic::kOuterProduct}, |
| IntrinsicData{"pow", ast::Intrinsic::kPow}, |
| IntrinsicData{"reflect", ast::Intrinsic::kReflect}, |
| IntrinsicData{"reverseBits", ast::Intrinsic::kReverseBits}, |
| IntrinsicData{"round", ast::Intrinsic::kRound}, |
| IntrinsicData{"select", ast::Intrinsic::kSelect}, |
| IntrinsicData{"sign", ast::Intrinsic::kSign}, |
| IntrinsicData{"sin", ast::Intrinsic::kSin}, |
| IntrinsicData{"sinh", ast::Intrinsic::kSinh}, |
| IntrinsicData{"smoothStep", ast::Intrinsic::kSmoothStep}, |
| IntrinsicData{"sqrt", ast::Intrinsic::kSqrt}, |
| IntrinsicData{"step", ast::Intrinsic::kStep}, |
| IntrinsicData{"tan", ast::Intrinsic::kTan}, |
| IntrinsicData{"tanh", ast::Intrinsic::kTanh}, |
| IntrinsicData{"textureLoad", ast::Intrinsic::kTextureLoad}, |
| IntrinsicData{"textureSample", ast::Intrinsic::kTextureSample}, |
| IntrinsicData{"textureSampleBias", ast::Intrinsic::kTextureSampleBias}, |
| IntrinsicData{"textureSampleCompare", |
| ast::Intrinsic::kTextureSampleCompare}, |
| IntrinsicData{"textureSampleLevel", |
| ast::Intrinsic::kTextureSampleLevel}, |
| IntrinsicData{"trunc", ast::Intrinsic::kTrunc})); |
| |
| TEST_F(TypeDeterminerTest, IntrinsicNotSetIfNotMatched) { |
| ast::IdentifierExpression ident("not_intrinsic"); |
| EXPECT_FALSE(td()->SetIntrinsicIfNeeded(&ident)); |
| EXPECT_EQ(ident.intrinsic(), ast::Intrinsic::kNone); |
| EXPECT_FALSE(ident.IsIntrinsic()); |
| } |
| |
| using ImportData_SingleParamTest = TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_SingleParamTest, Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_P(ImportData_SingleParamTest, Vector) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_SingleParamTest, Error_Integer) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float scalar or float vector values"); |
| } |
| |
| TEST_P(ImportData_SingleParamTest, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 0"); |
| } |
| |
| TEST_P(ImportData_SingleParamTest, Error_MultipleParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 3"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| ImportData_SingleParamTest, |
| testing::Values(IntrinsicData{"acos", ast::Intrinsic::kAcos}, |
| IntrinsicData{"asin", ast::Intrinsic::kAsin}, |
| IntrinsicData{"atan", ast::Intrinsic::kAtan}, |
| IntrinsicData{"ceil", ast::Intrinsic::kCeil}, |
| IntrinsicData{"cos", ast::Intrinsic::kCos}, |
| IntrinsicData{"cosh", ast::Intrinsic::kCosh}, |
| IntrinsicData{"exp", ast::Intrinsic::kExp}, |
| IntrinsicData{"exp2", ast::Intrinsic::kExp2}, |
| IntrinsicData{"floor", ast::Intrinsic::kFloor}, |
| IntrinsicData{"fract", ast::Intrinsic::kFract}, |
| IntrinsicData{"inverseSqrt", ast::Intrinsic::kInverseSqrt}, |
| IntrinsicData{"log", ast::Intrinsic::kLog}, |
| IntrinsicData{"log2", ast::Intrinsic::kLog2}, |
| IntrinsicData{"normalize", ast::Intrinsic::kNormalize}, |
| IntrinsicData{"round", ast::Intrinsic::kRound}, |
| IntrinsicData{"sign", ast::Intrinsic::kSign}, |
| IntrinsicData{"sin", ast::Intrinsic::kSin}, |
| IntrinsicData{"sinh", ast::Intrinsic::kSinh}, |
| IntrinsicData{"sqrt", ast::Intrinsic::kSqrt}, |
| IntrinsicData{"tan", ast::Intrinsic::kTan}, |
| IntrinsicData{"tanh", ast::Intrinsic::kTanh}, |
| IntrinsicData{"trunc", ast::Intrinsic::kTrunc})); |
| |
| using ImportData_SingleParam_FloatOrInt_Test = |
| TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Float_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Float_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Sint_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, -11))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Sint_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_signed_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Uint_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsU32()); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Uint_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| ast::type::VectorType vec(&u32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_unsigned_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Error_Bool) { |
| auto param = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, false))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float or int, scalar or vector values"); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 0"); |
| } |
| |
| TEST_P(ImportData_SingleParam_FloatOrInt_Test, Error_MultipleParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 3"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| ImportData_SingleParam_FloatOrInt_Test, |
| testing::Values(IntrinsicData{"abs", |
| ast::Intrinsic::kAbs})); |
| |
| TEST_F(TypeDeterminerTest, ImportData_Length_Scalar) { |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| ASSERT_TRUE(td()->DetermineResultType(params)) << td()->error(); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("length"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Length_FloatVector) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("length"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Length_Error_Integer) { |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("length"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect type for length. Requires float scalar or float vector " |
| "values"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Length_Error_NoParams) { |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("length"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for length. Expected 1 got 0"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Length_Error_MultipleParams) { |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("length"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for length. Expected 1 got 3"); |
| } |
| |
| using ImportData_TwoParamTest = TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_TwoParamTest, Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Vector) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_Integer) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float scalar or float vector values"); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 0"); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_OneParam) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 1"); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_MismatchedParamCount) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec2(&f32, 2); |
| ast::type::VectorType vec3(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec2, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_MismatchedParamType) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_TwoParamTest, Error_TooManyParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 3"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| ImportData_TwoParamTest, |
| testing::Values(IntrinsicData{"atan2", ast::Intrinsic::kAtan2}, |
| IntrinsicData{"pow", ast::Intrinsic::kPow}, |
| IntrinsicData{"step", ast::Intrinsic::kStep}, |
| IntrinsicData{"reflect", ast::Intrinsic::kReflect})); |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Scalar) { |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Vector) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_Integer) { |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect type for distance. Requires float scalar or float " |
| "vector values"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_NoParams) { |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for distance. Expected 2 got 0"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_OneParam) { |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for distance. Expected 2 got 1"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_MismatchedParamCount) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec2(&f32, 2); |
| ast::type::VectorType vec3(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec2, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), "mismatched parameter types for distance"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_MismatchedParamType) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), "mismatched parameter types for distance"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Distance_Error_TooManyParams) { |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("distance"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for distance. Expected 2 got 3"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross_Error_Scalar) { |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect type for cross. Requires float vector values"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross_Error_IntType) { |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect type for cross. Requires float vector values"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross_Error_MissingParams) { |
| ast::ExpressionList params; |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for cross. Expected 2 got 0"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross_Error_TooFewParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for cross. Expected 2 got 1"); |
| } |
| |
| TEST_F(TypeDeterminerTest, ImportData_Cross_Error_TooManyParams) { |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("cross"); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| "incorrect number of parameters for cross. Expected 2 got 3"); |
| } |
| |
| using ImportData_ThreeParamTest = TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_ThreeParamTest, Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Vector) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_Integer) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 2))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float scalar or float vector values"); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 0"); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_OneParam) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 1"); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_TwoParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 2"); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_MismatchedParamCount) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec2(&f32, 2); |
| ast::type::VectorType vec3(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec2, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_MismatchedParamType) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_ThreeParamTest, Error_TooManyParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 4"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| ImportData_ThreeParamTest, |
| testing::Values(IntrinsicData{"mix", ast::Intrinsic::kMix}, |
| IntrinsicData{"smoothStep", ast::Intrinsic::kSmoothStep}, |
| IntrinsicData{"fma", ast::Intrinsic::kFma}, |
| IntrinsicData{"faceForward", |
| ast::Intrinsic::kFaceForward})); |
| |
| using ImportData_ThreeParam_FloatOrInt_Test = |
| TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Float_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_scalar()); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Float_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Sint_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Sint_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_signed_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Uint_Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsU32()); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Uint_Vector) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| ast::type::VectorType vec(&u32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_unsigned_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_Bool) { |
| auto param = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, true))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, false))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, true))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float or int, scalar or vector values"); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 0"); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_OneParam) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 1"); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_TwoParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 2"); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_MismatchedParamCount) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec2(&f32, 2); |
| ast::type::VectorType vec3(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList vals_3; |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals_3.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec2, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_2))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_3))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_MismatchedParamType) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3.0f))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.0f))); |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_ThreeParam_FloatOrInt_Test, Error_TooManyParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 3 got 4"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| ImportData_ThreeParam_FloatOrInt_Test, |
| testing::Values(IntrinsicData{ |
| "clamp", ast::Intrinsic::kClamp})); |
| |
| using ImportData_Int_SingleParamTest = |
| TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_Int_SingleParamTest, Scalar) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_integer_scalar()); |
| } |
| |
| TEST_P(ImportData_Int_SingleParamTest, Vector) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_signed_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_Int_SingleParamTest, Error_Float) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1.f))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires integer scalar or integer vector values"); |
| } |
| |
| TEST_P(ImportData_Int_SingleParamTest, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 0"); |
| } |
| |
| TEST_P(ImportData_Int_SingleParamTest, Error_MultipleParams) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 3"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| ImportData_Int_SingleParamTest, |
| testing::Values( |
| IntrinsicData{"countOneBits", ast::Intrinsic::kCountOneBits}, |
| IntrinsicData{"reverseBits", ast::Intrinsic::kReverseBits})); |
| |
| using ImportData_FloatOrInt_TwoParamTest = |
| TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Scalar_Signed) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsI32()); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Scalar_Unsigned) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsU32()); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Scalar_Float) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsF32()); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Vector_Signed) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_signed_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Vector_Unsigned) { |
| auto param = GetParam(); |
| |
| ast::type::U32Type u32; |
| ast::type::VectorType vec(&u32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::UintLiteral>(&u32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_unsigned_integer_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Vector_Float) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::VectorType vec(&f32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::FloatLiteral>(&f32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->is_float_vector()); |
| EXPECT_EQ(ident_ptr->result_type()->AsVector()->size(), 3u); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_Bool) { |
| auto param = GetParam(); |
| |
| ast::type::BoolType bool_type; |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, true))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::BoolLiteral>(&bool_type, false))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("incorrect type for ") + param.name + |
| ". Requires float or int, scalar or vector values"); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 0"); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_OneParam) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 1"); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_MismatchedParamCount) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec2(&i32, 2); |
| ast::type::VectorType vec3(&i32, 3); |
| |
| ast::ExpressionList vals_1; |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_1.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| ast::ExpressionList vals_2; |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals_2.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec2, std::move(vals_1))); |
| params.push_back(std::make_unique<ast::TypeConstructorExpression>( |
| &vec3, std::move(vals_2))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_MismatchedParamType) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::type::VectorType vec(&i32, 3); |
| |
| ast::ExpressionList vals; |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| vals.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 3))); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back( |
| std::make_unique<ast::TypeConstructorExpression>(&vec, std::move(vals))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), |
| std::string("mismatched parameter types for ") + param.name); |
| } |
| |
| TEST_P(ImportData_FloatOrInt_TwoParamTest, Error_TooManyParams) { |
| auto param = GetParam(); |
| |
| ast::type::I32Type i32; |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| params.push_back(std::make_unique<ast::ScalarConstructorExpression>( |
| std::make_unique<ast::SintLiteral>(&i32, 1))); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 2 got 3"); |
| } |
| |
| INSTANTIATE_TEST_SUITE_P( |
| TypeDeterminerTest, |
| ImportData_FloatOrInt_TwoParamTest, |
| testing::Values(IntrinsicData{"min", ast::Intrinsic::kMin}, |
| IntrinsicData{"max", ast::Intrinsic::kMax})); |
| |
| TEST_F(TypeDeterminerTest, ImportData_GLSL_Determinant) { |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat(&f32, 3, 3); |
| |
| auto var = std::make_unique<ast::Variable>( |
| "var", ast::StorageClass::kFunction, &mat); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::IdentifierExpression>("var")); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>("determinant"); |
| auto* ident_ptr = ident.get(); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_TRUE(td()->DetermineResultType(&call)) << td()->error(); |
| ASSERT_NE(ident_ptr->result_type(), nullptr); |
| EXPECT_TRUE(ident_ptr->result_type()->IsF32()); |
| } |
| |
| using ImportData_Matrix_OneParam_Test = |
| TypeDeterminerTestWithParam<IntrinsicData>; |
| TEST_P(ImportData_Matrix_OneParam_Test, Error_Float) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| |
| auto var = std::make_unique<ast::Variable>( |
| "var", ast::StorageClass::kFunction, &f32); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::IdentifierExpression>("var")); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect type for ") + param.name + |
| ". Requires matrix value"); |
| } |
| |
| TEST_P(ImportData_Matrix_OneParam_Test, NoParams) { |
| auto param = GetParam(); |
| |
| ast::ExpressionList params; |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 0"); |
| } |
| |
| TEST_P(ImportData_Matrix_OneParam_Test, TooManyParams) { |
| auto param = GetParam(); |
| |
| ast::type::F32Type f32; |
| ast::type::MatrixType mat(&f32, 3, 3); |
| |
| auto var = std::make_unique<ast::Variable>( |
| "var", ast::StorageClass::kFunction, &mat); |
| mod()->AddGlobalVariable(std::move(var)); |
| |
| // Register the global |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| ast::ExpressionList params; |
| params.push_back(std::make_unique<ast::IdentifierExpression>("var")); |
| params.push_back(std::make_unique<ast::IdentifierExpression>("var")); |
| |
| auto ident = std::make_unique<ast::IdentifierExpression>(param.name); |
| ast::CallExpression call(std::move(ident), std::move(params)); |
| |
| EXPECT_FALSE(td()->DetermineResultType(&call)); |
| EXPECT_EQ(td()->error(), std::string("incorrect number of parameters for ") + |
| param.name + ". Expected 1 got 2"); |
| } |
| INSTANTIATE_TEST_SUITE_P(TypeDeterminerTest, |
| ImportData_Matrix_OneParam_Test, |
| testing::Values(IntrinsicData{ |
| "determinant", ast::Intrinsic::kDeterminant})); |
| |
| TEST_F(TypeDeterminerTest, Function_EntryPoints_StageDecoration) { |
| ast::type::F32Type f32; |
| |
| // fn b() {} |
| // fn c() { b(); } |
| // fn a() { c(); } |
| // fn ep_1() { a(); b(); } |
| // fn ep_2() { c();} |
| // |
| // c -> {ep_1, ep_2} |
| // a -> {ep_1} |
| // b -> {ep_1, ep_2} |
| // ep_1 -> {} |
| // ep_2 -> {} |
| |
| ast::VariableList params; |
| auto func_b = std::make_unique<ast::Function>("b", std::move(params), &f32); |
| auto* func_b_ptr = func_b.get(); |
| |
| auto body = std::make_unique<ast::BlockStatement>(); |
| func_b->set_body(std::move(body)); |
| |
| auto func_c = std::make_unique<ast::Function>("c", std::move(params), &f32); |
| auto* func_c_ptr = func_c.get(); |
| |
| body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("second"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("b"), |
| ast::ExpressionList{}))); |
| func_c->set_body(std::move(body)); |
| |
| auto func_a = std::make_unique<ast::Function>("a", std::move(params), &f32); |
| auto* func_a_ptr = func_a.get(); |
| |
| body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("first"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("c"), |
| ast::ExpressionList{}))); |
| func_a->set_body(std::move(body)); |
| |
| auto ep_1 = std::make_unique<ast::Function>("ep_1", std::move(params), &f32); |
| ep_1->add_decoration( |
| std::make_unique<ast::StageDecoration>(ast::PipelineStage::kVertex)); |
| auto* ep_1_ptr = ep_1.get(); |
| |
| body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("call_a"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("a"), |
| ast::ExpressionList{}))); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("call_b"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("b"), |
| ast::ExpressionList{}))); |
| ep_1->set_body(std::move(body)); |
| |
| auto ep_2 = std::make_unique<ast::Function>("ep_2", std::move(params), &f32); |
| ep_2->add_decoration( |
| std::make_unique<ast::StageDecoration>(ast::PipelineStage::kVertex)); |
| auto* ep_2_ptr = ep_2.get(); |
| |
| body = std::make_unique<ast::BlockStatement>(); |
| body->append(std::make_unique<ast::AssignmentStatement>( |
| std::make_unique<ast::IdentifierExpression>("call_c"), |
| std::make_unique<ast::CallExpression>( |
| std::make_unique<ast::IdentifierExpression>("c"), |
| ast::ExpressionList{}))); |
| ep_2->set_body(std::move(body)); |
| |
| mod()->AddFunction(std::move(func_b)); |
| mod()->AddFunction(std::move(func_c)); |
| mod()->AddFunction(std::move(func_a)); |
| mod()->AddFunction(std::move(ep_1)); |
| mod()->AddFunction(std::move(ep_2)); |
| |
| mod()->AddGlobalVariable(std::make_unique<ast::Variable>( |
| "first", ast::StorageClass::kPrivate, &f32)); |
| mod()->AddGlobalVariable(std::make_unique<ast::Variable>( |
| "second", ast::StorageClass::kPrivate, &f32)); |
| mod()->AddGlobalVariable(std::make_unique<ast::Variable>( |
| "call_a", ast::StorageClass::kPrivate, &f32)); |
| mod()->AddGlobalVariable(std::make_unique<ast::Variable>( |
| "call_b", ast::StorageClass::kPrivate, &f32)); |
| mod()->AddGlobalVariable(std::make_unique<ast::Variable>( |
| "call_c", ast::StorageClass::kPrivate, &f32)); |
| |
| // Register the functions and calculate the callers |
| ASSERT_TRUE(td()->Determine()) << td()->error(); |
| |
| const auto& b_eps = func_b_ptr->ancestor_entry_points(); |
| ASSERT_EQ(2u, b_eps.size()); |
| EXPECT_EQ("ep_1", b_eps[0]); |
| EXPECT_EQ("ep_2", b_eps[1]); |
| |
| const auto& a_eps = func_a_ptr->ancestor_entry_points(); |
| ASSERT_EQ(1u, a_eps.size()); |
| EXPECT_EQ("ep_1", a_eps[0]); |
| |
| const auto& c_eps = func_c_ptr->ancestor_entry_points(); |
| ASSERT_EQ(2u, c_eps.size()); |
| EXPECT_EQ("ep_1", c_eps[0]); |
| EXPECT_EQ("ep_2", c_eps[1]); |
| |
| EXPECT_TRUE(ep_1_ptr->ancestor_entry_points().empty()); |
| EXPECT_TRUE(ep_2_ptr->ancestor_entry_points().empty()); |
| } |
| |
| } // namespace |
| } // namespace tint |