Files
carbon-lang/executable_semantics/ast/expression_test.cpp
T
Jon Meow 70797e8bf8 Mass rename SourceLoc and Tag (#860)
This does a mass rename of:

-   `SourceLoc()` -> `source_loc()` for property naming
    - `loc` -> `source_loc_` for underscore+consistency
    - Generally changing function args to `source_loc` for consistency
-   `Tag()` -> `kind()` for property naming and `Kind` parity
    - `tag` -> `kind_` for underscore

Also renames `Pos` and `Results` on `Action`. These are a bit of an exception in that most base classes only have `Tag` and maybe `SourceLoc`, whereas `Action` has a little more. I felt okay having `source_loc()` and `kind()` on the base class where children do `Exp()` and the like, but it felt weird to me to mix it on the same class.

The reason for doing this cross-class in one PR is so that I can do it efficiently with a global replace in the codebase, rather than e.g. changing `Expression` but having to read through compiler errors to determine where it's calling `Expression`'s `Tag` versus a different `Tag`. The end result should be equivalent.
2021-09-29 16:52:12 -07:00

152 lines
5.5 KiB
C++

// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
#include "executable_semantics/ast/expression.h"
#include <string>
#include "executable_semantics/ast/paren_contents.h"
#include "executable_semantics/common/arena.h"
#include "gmock/gmock.h"
#include "gtest/gtest.h"
#include "llvm/Support/Casting.h"
namespace Carbon {
namespace {
using llvm::cast;
using testing::ElementsAre;
using testing::IsEmpty;
// Matches a FieldInitializer named `name` whose `expression` is an
// `IntLiteral`
MATCHER_P(IntFieldNamed, name, "") {
return arg.name == std::string(name) &&
arg.expression->kind() == Expression::Kind::IntLiteral;
}
static auto FakeSourceLoc(int line_num) -> SourceLocation {
return SourceLocation("<test>", line_num);
}
class ExpressionTest : public ::testing::Test {
protected:
Arena arena;
};
TEST_F(ExpressionTest, EmptyAsExpression) {
ParenContents<Expression> contents = {.elements = {},
.has_trailing_comma = false};
Nonnull<const Expression*> expression =
ExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(expression->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(expression->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*expression).Fields(), IsEmpty());
}
TEST_F(ExpressionTest, EmptyAsTuple) {
ParenContents<Expression> contents = {.elements = {},
.has_trailing_comma = false};
Nonnull<const Expression*> tuple =
TupleExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(tuple->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(tuple->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*tuple).Fields(), IsEmpty());
}
TEST_F(ExpressionTest, UnaryNoCommaAsExpression) {
// Equivalent to a code fragment like
// ```
// (
// 42
// )
// ```
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)}},
.has_trailing_comma = false};
Nonnull<const Expression*> expression =
ExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(expression->source_loc(), FakeSourceLoc(2));
ASSERT_EQ(expression->kind(), Expression::Kind::IntLiteral);
}
TEST_F(ExpressionTest, UnaryNoCommaAsTuple) {
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)}},
.has_trailing_comma = false};
Nonnull<const Expression*> tuple =
TupleExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(tuple->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(tuple->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*tuple).Fields(),
ElementsAre(IntFieldNamed("0")));
}
TEST_F(ExpressionTest, UnaryWithCommaAsExpression) {
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)}},
.has_trailing_comma = true};
Nonnull<const Expression*> expression =
ExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(expression->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(expression->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*expression).Fields(),
ElementsAre(IntFieldNamed("0")));
}
TEST_F(ExpressionTest, UnaryWithCommaAsTuple) {
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)}},
.has_trailing_comma = true};
Nonnull<const Expression*> tuple =
TupleExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(tuple->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(tuple->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*tuple).Fields(),
ElementsAre(IntFieldNamed("0")));
}
TEST_F(ExpressionTest, BinaryAsExpression) {
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)},
{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(3), 42)}},
.has_trailing_comma = true};
Nonnull<const Expression*> expression =
ExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(expression->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(expression->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*expression).Fields(),
ElementsAre(IntFieldNamed("0"), IntFieldNamed("1")));
}
TEST_F(ExpressionTest, BinaryAsTuple) {
ParenContents<Expression> contents = {
.elements = {{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(2), 42)},
{.name = std::nullopt,
.term = arena.New<IntLiteral>(FakeSourceLoc(3), 42)}},
.has_trailing_comma = true};
Nonnull<const Expression*> tuple =
TupleExpressionFromParenContents(&arena, FakeSourceLoc(1), contents);
EXPECT_EQ(tuple->source_loc(), FakeSourceLoc(1));
ASSERT_EQ(tuple->kind(), Expression::Kind::TupleLiteral);
EXPECT_THAT(cast<TupleLiteral>(*tuple).Fields(),
ElementsAre(IntFieldNamed("0"), IntFieldNamed("1")));
}
} // namespace
} // namespace Carbon