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In explorer, we already support parsing a string_view, so use that. In toolchain, we need to build support, probably using vfs, so that's a todo. bazel test //explorer:file_test --runs_per_test=5 - branch: Stats over 250 runs: max = 18.3s, min = 5.2s, avg = 11.2s, dev = 2.9s - trunk: Stats over 250 runs: max = 22.3s, min = 5.9s, avg = 12.1s, dev = 2.8s Not a dramatic improvement, but maybe more effective long-term, and this'd been requested on #2876
302 lines
10 KiB
C++
302 lines
10 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#include "testing/file_test/file_test_base.h"
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#include <filesystem>
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#include <fstream>
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#include "common/check.h"
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#include "llvm/ADT/Twine.h"
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#include "llvm/Support/InitLLVM.h"
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namespace Carbon::Testing {
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// The length of the base directory.
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static int base_dir_len = 0;
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// The name of the `.subset` target.
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static std::string* subset_target = nullptr;
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using ::testing::Eq;
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void FileTestBase::RegisterTests(
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const char* fixture_label,
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const llvm::SmallVector<std::filesystem::path>& paths,
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std::function<FileTestBase*(const std::filesystem::path&)> factory) {
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// Use RegisterTest instead of INSTANTIATE_TEST_CASE_P because of ordering
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// issues between container initialization and test instantiation by
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// InitGoogleTest.
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for (const auto& path : paths) {
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std::string test_name = path.string().substr(base_dir_len);
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testing::RegisterTest(fixture_label, test_name.c_str(), nullptr,
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test_name.c_str(), __FILE__, __LINE__,
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[=]() { return factory(path); });
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}
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}
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// Reads a file to string.
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static auto ReadFile(std::filesystem::path path) -> std::string {
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std::ifstream proto_file(path);
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std::stringstream buffer;
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buffer << proto_file.rdbuf();
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proto_file.close();
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return buffer.str();
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}
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// Splits outputs to string_view because gtest handles string_view by default.
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static auto SplitOutput(llvm::StringRef output)
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-> llvm::SmallVector<std::string_view> {
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if (output.empty()) {
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return {};
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}
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llvm::SmallVector<llvm::StringRef> lines;
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llvm::StringRef(output).split(lines, "\n");
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return llvm::SmallVector<std::string_view>(lines.begin(), lines.end());
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}
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// Runs a test and compares output. This keeps output split by line so that
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// issues are a little easier to identify by the different line.
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auto FileTestBase::TestBody() -> void {
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const char* src_dir = getenv("TEST_SRCDIR");
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CARBON_CHECK(src_dir);
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std::string test_file = path().lexically_relative(
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std::filesystem::path(src_dir).append("carbon"));
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llvm::errs() << "\nTo test this file alone, run:\n bazel test "
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<< *subset_target << " --test_arg=" << test_file << "\n\n";
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// Store the file so that test_files can use references to content.
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std::string test_content = ReadFile(path());
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// Load expected output.
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llvm::SmallVector<TestFile> test_files;
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llvm::SmallVector<testing::Matcher<std::string>> expected_stdout;
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llvm::SmallVector<testing::Matcher<std::string>> expected_stderr;
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ProcessTestFile(test_content, test_files, expected_stdout, expected_stderr);
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if (HasFailure()) {
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return;
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}
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// Capture trace streaming, but only when in debug mode.
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std::string stdout;
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std::string stderr;
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llvm::raw_string_ostream stdout_ostream(stdout);
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llvm::raw_string_ostream stderr_ostream(stderr);
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bool run_succeeded = RunWithFiles(test_files, stdout_ostream, stderr_ostream);
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if (HasFailure()) {
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return;
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}
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EXPECT_THAT(!llvm::StringRef(path().filename()).starts_with("fail_"),
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Eq(run_succeeded))
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<< "Tests should be prefixed with `fail_` if and only if running them "
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"is expected to fail.";
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// Check results.
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EXPECT_THAT(SplitOutput(stdout), ElementsAreArray(expected_stdout));
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EXPECT_THAT(SplitOutput(stderr), ElementsAreArray(expected_stderr));
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}
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auto FileTestBase::ProcessTestFile(
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llvm::StringRef file_content, llvm::SmallVector<TestFile>& test_files,
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llvm::SmallVector<testing::Matcher<std::string>>& expected_stdout,
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llvm::SmallVector<testing::Matcher<std::string>>& expected_stderr) -> void {
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llvm::StringRef cursor = file_content;
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bool found_content_pre_split = false;
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int line_index = 0;
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llvm::StringRef current_file_name;
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const char* current_file_start = nullptr;
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while (!cursor.empty()) {
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auto [line, next_cursor] = cursor.split("\n");
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cursor = next_cursor;
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static constexpr llvm::StringLiteral SplitPrefix = "// ---";
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if (line.consume_front(SplitPrefix)) {
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// On a file split, add the previous file, then start a new one.
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if (current_file_start) {
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test_files.push_back(TestFile(
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current_file_name.str(),
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llvm::StringRef(
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current_file_start,
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line.begin() - current_file_start - SplitPrefix.size())));
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} else {
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// For the first split, we make sure there was no content prior.
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ASSERT_FALSE(found_content_pre_split)
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<< "When using split files, there must be no content before the "
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"first split file.";
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}
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current_file_name = line.trim();
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current_file_start = cursor.begin();
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line_index = 0;
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continue;
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} else if (!current_file_start && !line.starts_with("//") &&
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!line.trim().empty()) {
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found_content_pre_split = true;
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}
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++line_index;
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// Process expectations when found.
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auto line_trimmed = line.ltrim();
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if (!line_trimmed.consume_front("// CHECK")) {
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continue;
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}
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if (line_trimmed.consume_front(":STDOUT:")) {
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expected_stdout.push_back(TransformExpectation(line_index, line_trimmed));
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} else if (line_trimmed.consume_front(":STDERR:")) {
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expected_stderr.push_back(TransformExpectation(line_index, line_trimmed));
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} else {
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FAIL() << "Unexpected CHECK in input: " << line.str();
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}
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}
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if (current_file_start) {
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test_files.push_back(
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TestFile(current_file_name.str(),
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llvm::StringRef(current_file_start,
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file_content.end() - current_file_start)));
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} else {
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// If no file splitting happened, use the main file as the test file.
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test_files.push_back(TestFile(path().filename().string(), file_content));
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}
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// Assume there is always a suffix `\n` in output.
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if (!expected_stdout.empty()) {
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expected_stdout.push_back(testing::StrEq(""));
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}
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if (!expected_stderr.empty()) {
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expected_stderr.push_back(testing::StrEq(""));
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}
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}
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auto FileTestBase::TransformExpectation(int line_index, llvm::StringRef in)
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-> testing::Matcher<std::string> {
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if (in.empty()) {
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return testing::StrEq("");
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}
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CARBON_CHECK(in[0] == ' ') << "Malformated input: " << in;
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std::string str = in.substr(1).str();
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for (int pos = 0; pos < static_cast<int>(str.size());) {
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switch (str[pos]) {
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case '(':
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case ')':
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case ']':
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case '}':
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case '.':
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case '^':
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case '$':
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case '*':
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case '+':
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case '?':
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case '|':
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case '\\': {
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// Escape regex characters.
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str.insert(pos, "\\");
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pos += 2;
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break;
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}
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case '[': {
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llvm::StringRef line_keyword_cursor = llvm::StringRef(str).substr(pos);
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if (line_keyword_cursor.consume_front("[[")) {
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static constexpr llvm::StringLiteral LineKeyword = "@LINE";
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if (line_keyword_cursor.consume_front(LineKeyword)) {
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// Allow + or - here; consumeInteger handles -.
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line_keyword_cursor.consume_front("+");
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int offset;
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// consumeInteger returns true for errors, not false.
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CARBON_CHECK(!line_keyword_cursor.consumeInteger(10, offset) &&
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line_keyword_cursor.consume_front("]]"))
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<< "Unexpected @LINE offset at `"
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<< line_keyword_cursor.substr(0, 5) << "` in: " << in;
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std::string int_str = llvm::Twine(line_index + offset).str();
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int remove_len = (line_keyword_cursor.data() - str.data()) - pos;
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str.replace(pos, remove_len, int_str);
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pos += int_str.size();
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} else {
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CARBON_FATAL() << "Unexpected [[, should be {{\\[\\[}} at `"
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<< line_keyword_cursor.substr(0, 5)
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<< "` in: " << in;
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}
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} else {
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// Escape the `[`.
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str.insert(pos, "\\");
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pos += 2;
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}
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break;
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}
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case '{': {
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if (pos + 1 == static_cast<int>(str.size()) || str[pos + 1] != '{') {
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// Single `{`, escape it.
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str.insert(pos, "\\");
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pos += 2;
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} else {
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// Replace the `{{...}}` regex syntax with standard `(...)` syntax.
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str.replace(pos, 2, "(");
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for (++pos; pos < static_cast<int>(str.size() - 1); ++pos) {
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if (str[pos] == '}' && str[pos + 1] == '}') {
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str.replace(pos, 2, ")");
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++pos;
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break;
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}
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}
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}
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break;
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}
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default: {
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++pos;
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}
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}
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}
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return testing::MatchesRegex(str);
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}
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} // namespace Carbon::Testing
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auto main(int argc, char** argv) -> int {
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testing::InitGoogleTest(&argc, argv);
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llvm::setBugReportMsg(
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"Please report issues to "
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"https://github.com/carbon-language/carbon-lang/issues and include the "
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"crash backtrace.\n");
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llvm::InitLLVM init_llvm(argc, argv);
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if (argc < 2) {
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llvm::errs() << "At least one test file must be provided.\n";
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return EXIT_FAILURE;
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}
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const char* target = getenv("TEST_TARGET");
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CARBON_CHECK(target != nullptr);
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// Configure the name of the subset target.
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std::string subset_target_storage = target;
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static constexpr char SubsetSuffix[] = ".subset";
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if (!llvm::StringRef(subset_target_storage).ends_with(SubsetSuffix)) {
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subset_target_storage += SubsetSuffix;
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}
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Carbon::Testing::subset_target = &subset_target_storage;
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// Configure the base directory for test names.
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llvm::StringRef target_dir = target;
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std::error_code ec;
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std::filesystem::path working_dir = std::filesystem::current_path(ec);
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CARBON_CHECK(!ec) << ec.message();
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// Leaves one slash.
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CARBON_CHECK(target_dir.consume_front("/"));
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target_dir = target_dir.substr(0, target_dir.rfind(":"));
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std::string base_dir = working_dir.string() + target_dir.str() + "/";
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Carbon::Testing::base_dir_len = base_dir.size();
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// Register tests based on their absolute path.
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llvm::SmallVector<std::filesystem::path> paths;
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for (int i = 1; i < argc; ++i) {
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auto path = std::filesystem::absolute(argv[i], ec);
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CARBON_CHECK(!ec) << argv[i] << ": " << ec.message();
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CARBON_CHECK(llvm::StringRef(path.string()).starts_with(base_dir))
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<< "\n " << path << "\n should start with\n " << base_dir;
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paths.push_back(path);
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}
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Carbon::Testing::RegisterFileTests(paths);
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return RUN_ALL_TESTS();
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}
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