Files
carbon-lang/toolchain/driver/driver_test.cpp
T
Chandler Carruth 72cb9d0d06 Refactor testing exe path and benchmark main handling. (#4216)
Consolidates both main libraries into `//testing/base`, and factors out
the exe path handling for benchmarks and unit tests into a common
library to remove duplication. Refactors how that logic is managed to be
cleaner and avoid a confusing bool that came up in code review.

Updates all the tests and benchmarks that use these. I still need to
update other benchmarks to use the same main, but I wanted to keep this
PR somewhat minimal.

This also fixes a bug noticed in passing that the compilation benchmark
didn't have the required dependency on the benchmark library itself,
just the benchmark main library.
2024-08-14 17:50:08 +00:00

217 lines
7.9 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 "toolchain/driver/driver.h"
#include <gmock/gmock.h>
#include <gtest/gtest.h>
#include <filesystem>
#include <fstream>
#include <utility>
#include "llvm/ADT/ScopeExit.h"
#include "llvm/Object/Binary.h"
#include "llvm/Support/FormatVariadic.h"
#include "testing/base/global_exe_path.h"
#include "testing/base/test_raw_ostream.h"
#include "toolchain/testing/yaml_test_helpers.h"
namespace Carbon {
namespace {
using ::Carbon::Testing::TestRawOstream;
using ::testing::_;
using ::testing::ContainsRegex;
using ::testing::HasSubstr;
using ::testing::StrEq;
namespace Yaml = ::Carbon::Testing::Yaml;
// Reads a file to string.
// TODO: Extract this to a helper and share it with other tests.
static auto ReadFile(std::filesystem::path path) -> std::string {
std::ifstream proto_file(path);
std::stringstream buffer;
buffer << proto_file.rdbuf();
proto_file.close();
return buffer.str();
}
class DriverTest : public testing::Test {
protected:
DriverTest()
: installation_(
InstallPaths::MakeForBazelRunfiles(Testing::GetExePath())),
driver_(fs_, &installation_, test_output_stream_, test_error_stream_) {
char* tmpdir_env = getenv("TEST_TMPDIR");
CARBON_CHECK(tmpdir_env != nullptr);
test_tmpdir_ = tmpdir_env;
}
auto MakeTestFile(llvm::StringRef text,
llvm::StringRef filename = "test_file.carbon")
-> llvm::StringRef {
fs_.addFile(filename, /*ModificationTime=*/0,
llvm::MemoryBuffer::getMemBuffer(text));
return filename;
}
// Makes a temp directory and changes the working directory to it. Returns an
// LLVM `scope_exit` that will restore the working directory and remove the
// temporary directory (and everything it contains) when destroyed.
auto ScopedTempWorkingDir() {
// Save our current working directory.
std::error_code ec;
auto original_dir = std::filesystem::current_path(ec);
CARBON_CHECK(!ec) << ec.message();
const auto* unit_test = ::testing::UnitTest::GetInstance();
const auto* test_info = unit_test->current_test_info();
std::filesystem::path test_dir = test_tmpdir_.append(
llvm::formatv("{0}_{1}", test_info->test_suite_name(),
test_info->name())
.str());
std::filesystem::create_directory(test_dir, ec);
CARBON_CHECK(!ec) << "Could not create test working dir '" << test_dir
<< "': " << ec.message();
std::filesystem::current_path(test_dir, ec);
CARBON_CHECK(!ec) << "Could not change the current working dir to '"
<< test_dir << "': " << ec.message();
return llvm::make_scope_exit([original_dir, test_dir] {
std::error_code ec;
std::filesystem::current_path(original_dir, ec);
CARBON_CHECK(!ec) << "Could not change the current working dir to '"
<< original_dir << "': " << ec.message();
std::filesystem::remove_all(test_dir, ec);
CARBON_CHECK(!ec) << "Could not remove the test working dir '" << test_dir
<< "': " << ec.message();
});
}
llvm::vfs::InMemoryFileSystem fs_;
const InstallPaths installation_;
TestRawOstream test_output_stream_;
TestRawOstream test_error_stream_;
// Some tests work directly with files in the test temporary directory.
std::filesystem::path test_tmpdir_;
Driver driver_;
};
TEST_F(DriverTest, BadCommandErrors) {
EXPECT_FALSE(driver_.RunCommand({}).success);
EXPECT_THAT(test_error_stream_.TakeStr(), HasSubstr("ERROR"));
EXPECT_FALSE(driver_.RunCommand({"foo"}).success);
EXPECT_THAT(test_error_stream_.TakeStr(), HasSubstr("ERROR"));
EXPECT_FALSE(driver_.RunCommand({"foo --bar --baz"}).success);
EXPECT_THAT(test_error_stream_.TakeStr(), HasSubstr("ERROR"));
}
TEST_F(DriverTest, CompileCommandErrors) {
// No input file. This error message is important so check all of it.
EXPECT_FALSE(driver_.RunCommand({"compile"}).success);
EXPECT_THAT(
test_error_stream_.TakeStr(),
StrEq("ERROR: Not all required positional arguments were provided. First "
"missing and required positional argument: 'FILE'\n"));
// Invalid output filename. No reliably error message here.
// TODO: Likely want a different filename on Windows.
auto empty_file = MakeTestFile("");
EXPECT_FALSE(driver_
.RunCommand({"compile", "--no-prelude-import",
"--output=/dev/empty", empty_file})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(),
ContainsRegex("ERROR: .*/dev/empty.*"));
}
TEST_F(DriverTest, DumpTokens) {
auto file = MakeTestFile("Hello World");
EXPECT_TRUE(driver_
.RunCommand({"compile", "--no-prelude-import", "--phase=lex",
"--dump-tokens", file})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
// Verify there is output without examining it.
EXPECT_THAT(Yaml::Value::FromText(test_output_stream_.TakeStr()),
Yaml::IsYaml(_));
}
TEST_F(DriverTest, DumpParseTree) {
auto file = MakeTestFile("var v: () = ();");
EXPECT_TRUE(driver_
.RunCommand({"compile", "--no-prelude-import",
"--phase=parse", "--dump-parse-tree", file})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
// Verify there is output without examining it.
EXPECT_THAT(Yaml::Value::FromText(test_output_stream_.TakeStr()),
Yaml::IsYaml(_));
}
TEST_F(DriverTest, StdoutOutput) {
// Use explicit filenames so we can look for those to validate output.
MakeTestFile("fn Main() {}", "test.carbon");
EXPECT_TRUE(driver_
.RunCommand({"compile", "--no-prelude-import", "--output=-",
"test.carbon"})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
// The default is textual assembly.
EXPECT_THAT(test_output_stream_.TakeStr(), ContainsRegex("Main:"));
EXPECT_TRUE(driver_
.RunCommand({"compile", "--no-prelude-import", "--output=-",
"--force-obj-output", "test.carbon"})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
std::string output = test_output_stream_.TakeStr();
auto result =
llvm::object::createBinary(llvm::MemoryBufferRef(output, "test_output"));
if (auto error = result.takeError()) {
FAIL() << toString(std::move(error));
}
EXPECT_TRUE(result->get()->isObject());
}
TEST_F(DriverTest, FileOutput) {
auto scope = ScopedTempWorkingDir();
// Use explicit filenames as the default output filename is computed from
// this, and we can use this to validate output.
MakeTestFile("fn Main() {}", "test.carbon");
// Object output (the default) uses `.o`.
// TODO: This should actually reflect the platform defaults.
EXPECT_TRUE(
driver_.RunCommand({"compile", "--no-prelude-import", "test.carbon"})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
// Ensure we wrote an object file of some form with the correct name.
auto result = llvm::object::createBinary("test.o");
if (auto error = result.takeError()) {
FAIL() << toString(std::move(error));
}
EXPECT_TRUE(result->getBinary()->isObject());
// Assembly output uses `.s`.
// TODO: This should actually reflect the platform defaults.
EXPECT_TRUE(driver_
.RunCommand({"compile", "--no-prelude-import", "--asm-output",
"test.carbon"})
.success);
EXPECT_THAT(test_error_stream_.TakeStr(), StrEq(""));
// TODO: This may need to be tailored to other assembly formats.
EXPECT_THAT(ReadFile("test.s"), ContainsRegex("Main:"));
}
} // namespace
} // namespace Carbon