dawn-cmake/src/program_test.cc

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// 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/program.h"
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#include <sstream>
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#include <utility>
#include "gmock/gmock.h"
#include "src/ast/function.h"
#include "src/ast/return_statement.h"
#include "src/ast/test_helper.h"
#include "src/ast/variable.h"
#include "src/type/alias_type.h"
#include "src/type/f32_type.h"
#include "src/type/struct_type.h"
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namespace tint {
namespace {
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using ProgramTest = ast::TestHelper;
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TEST_F(ProgramTest, Creation) {
Program program(std::move(*this));
EXPECT_EQ(program.AST().Functions().size(), 0u);
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}
TEST_F(ProgramTest, ToStrEmitsPreambleAndPostamble) {
Program program(std::move(*this));
const auto str = program.to_str();
auto* const expected = "Module{\n}\n";
EXPECT_EQ(str, expected);
}
TEST_F(ProgramTest, IsValid_Empty) {
Program program(std::move(*this));
EXPECT_TRUE(program.IsValid());
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}
TEST_F(ProgramTest, IsValid_GlobalVariable) {
Simplify usage of the TypeDeterminer in tests Make private all TypeDeterminer::DetermineXXX() methods, forcing all tests to use the root-level TypeDeterminer::Determine() method. Remove TypeDeterminer::RegisterVariableForTesting(). The main use for calling the TypeDeterminer::DetermineXXX() methods was to perform type determination on a partial AST. This was messy and often resulting in multiple calls into TypeDeterminer. Most tests already perform a full TypeDeterminer::Determine() call when the program is built, so many of these were redundant. The exposure of these internal methods for testing also makes refactoring the TypeDeterminer extremely difficult. Add a number of ProgramBuilder helper methods for attaching the partial AST in these tests to the root of the AST, greatly simplifying the use of the TypeDeterminer: * ProgramBuilder::Global() and ProgramBuilder::GlobalConst() are helpers that register the variable returned by ProgramBuilder::Var() and ProgramBuilder::Const(), respectively. * ProgramBuilder::WrapInFunction() is a variadic function that accepts variables, expressions and statements, attaching these to the root of the AST via a dummy function. Most test classes now no longer use their own TypeDeterminer, and instead properly depend on the automatic type determination performed at Program build time. Bug: tint:390 Change-Id: Ie901890420c5de170cdf2a7aaef9b96fc3bebd60 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/40062 Commit-Queue: Ben Clayton <bclayton@google.com> Reviewed-by: David Neto <dneto@google.com>
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Global("var", ast::StorageClass::kInput, ty.f32());
Program program(std::move(*this));
EXPECT_TRUE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Null_GlobalVariable) {
AST().AddGlobalVariable(nullptr);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Invalid_GlobalVariable) {
Simplify usage of the TypeDeterminer in tests Make private all TypeDeterminer::DetermineXXX() methods, forcing all tests to use the root-level TypeDeterminer::Determine() method. Remove TypeDeterminer::RegisterVariableForTesting(). The main use for calling the TypeDeterminer::DetermineXXX() methods was to perform type determination on a partial AST. This was messy and often resulting in multiple calls into TypeDeterminer. Most tests already perform a full TypeDeterminer::Determine() call when the program is built, so many of these were redundant. The exposure of these internal methods for testing also makes refactoring the TypeDeterminer extremely difficult. Add a number of ProgramBuilder helper methods for attaching the partial AST in these tests to the root of the AST, greatly simplifying the use of the TypeDeterminer: * ProgramBuilder::Global() and ProgramBuilder::GlobalConst() are helpers that register the variable returned by ProgramBuilder::Var() and ProgramBuilder::Const(), respectively. * ProgramBuilder::WrapInFunction() is a variadic function that accepts variables, expressions and statements, attaching these to the root of the AST via a dummy function. Most test classes now no longer use their own TypeDeterminer, and instead properly depend on the automatic type determination performed at Program build time. Bug: tint:390 Change-Id: Ie901890420c5de170cdf2a7aaef9b96fc3bebd60 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/40062 Commit-Queue: Ben Clayton <bclayton@google.com> Reviewed-by: David Neto <dneto@google.com>
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Global("var", ast::StorageClass::kInput, nullptr);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Alias) {
auto* alias = ty.alias("alias", ty.f32());
AST().AddConstructedType(alias);
Program program(std::move(*this));
EXPECT_TRUE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Null_Alias) {
AST().AddConstructedType(nullptr);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Struct) {
auto* st = ty.struct_("name", {});
auto* alias = ty.alias("name", st);
AST().AddConstructedType(alias);
Program program(std::move(*this));
EXPECT_TRUE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Struct_EmptyName) {
auto* st = ty.struct_("", {});
auto* alias = ty.alias("name", st);
AST().AddConstructedType(alias);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Function) {
Func("main", ast::VariableList(), ty.f32(), ast::StatementList{},
ast::FunctionDecorationList{});
Program program(std::move(*this));
EXPECT_TRUE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Null_Function) {
AST().AddFunction(nullptr);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Invalid_Function) {
Func("main", ast::VariableList{}, nullptr, ast::StatementList{},
ast::FunctionDecorationList{});
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
}
TEST_F(ProgramTest, IsValid_Invalid_UnknownVar) {
Func("main", ast::VariableList{}, nullptr,
ast::StatementList{
create<ast::ReturnStatement>(Expr("unknown_ident")),
},
ast::FunctionDecorationList{});
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
EXPECT_NE(program.Diagnostics().count(), 0u);
}
TEST_F(ProgramTest, IsValid_GeneratesError) {
AST().AddGlobalVariable(nullptr);
Program program(std::move(*this));
EXPECT_FALSE(program.IsValid());
EXPECT_EQ(program.Diagnostics().count(), 1u);
EXPECT_EQ(program.Diagnostics().error_count(), 1u);
EXPECT_EQ(program.Diagnostics().begin()->message,
"invalid program generated");
}
} // namespace
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} // namespace tint