Files
carbon-lang/toolchain/driver/driver_test.cpp
T
Chandler Carruth e34e240263 Move the core standard library to the installation. (#3995)
This removes the `data_dir` from the driver favoring the installation
abstraction for the both locating the prelude and linking utilities.

With this, an installed toolchain should also be able to compile and
link Carbon successfully, and the build of the examples should exercise
this path almost exactly. (The only difference is using the driver
`cc_binary` directly rather than relying on the symlink from inside the
install tree.)
2024-06-01 05:16:44 +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/gtest_main.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::GetTestExePath())),
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