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https://github.com/carbon-language/carbon-lang.git
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Refactors the link driver to automatically compile and cache the carbon prelude for use in linking. Implements a `carbon_library` rule for compiling the Core library dependencies in the examples.
201 lines
8.6 KiB
C++
201 lines
8.6 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 "toolchain/driver/link_driver.h"
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#include "common/filesystem.h"
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#include "toolchain/base/runtimes_build_info.h"
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#include "toolchain/driver/carbon_runtimes.h"
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namespace Carbon {
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LinkDriver::LinkDriver(LinkOptions* options) : options_(options) {}
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namespace {
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auto object_search(Filesystem::DirRef base_dir, std::filesystem::path base_path,
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llvm::SmallVector<std::string>& prelude_paths) -> void {
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llvm::SmallVector<std::filesystem::path> work_paths({"."});
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while (!work_paths.empty()) {
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auto relative_path = work_paths.back();
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work_paths.pop_back();
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auto relative_dir = base_dir.OpenDir(relative_path);
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CARBON_CHECK(relative_dir.ok());
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llvm::SmallVector<std::filesystem::path> relative_sub_paths;
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llvm::SmallVector<std::filesystem::path> relative_file_paths;
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CARBON_CHECK(
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relative_dir
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->AppendEntriesIf(relative_sub_paths, relative_file_paths,
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[&relative_dir](llvm::StringRef name) -> bool {
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auto path = std::filesystem::path(name.str());
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auto stat = relative_dir->Stat(path);
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CARBON_CHECK(stat.ok());
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if (stat->is_dir()) {
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return true;
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}
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return path.extension() == ".o";
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})
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.ok());
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llvm::append_range(
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work_paths,
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llvm::map_range(relative_sub_paths,
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[relative_path](std::filesystem::path sub_path) {
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return relative_path / sub_path;
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}));
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llvm::append_range(
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prelude_paths,
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llvm::map_range(
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relative_file_paths,
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[relative_path, base_path](std::filesystem::path file_path) {
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return (base_path / relative_path / file_path).string();
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}));
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}
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}
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} // namespace
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auto LinkDriver::Link(DriverEnv& driver_env) -> DriverResult {
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// TODO: Currently we use the Clang driver to link. This works well on Unix
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// OSes but we likely need to directly build logic to invoke `link.exe` on
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// Windows where `cl.exe` doesn't typically cover that logic.
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// Use a reasonably large small vector here to minimize allocations. We expect
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// to link reasonably large numbers of object files.
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llvm::SmallVector<llvm::StringRef, 128> clang_args;
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// We link using a C++ mode of the driver.
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clang_args.push_back("--driver-mode=g++");
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// Pass the target down to Clang to pick up the correct defaults.
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std::string target_arg =
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llvm::formatv("--target={0}", options_->codegen_options->target).str();
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clang_args.push_back(target_arg);
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if (!options_->output_filename.empty()) {
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clang_args.push_back("-o");
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clang_args.push_back(options_->output_filename);
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} else if (options_->extra_clang_args.empty()) {
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CARBON_DIAGNOSTIC(LinkOutputOptionMissing, Error,
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"no output specified to a link command and no extra "
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"Clang options that can provide an output");
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driver_env.emitter.Emit(LinkOutputOptionMissing);
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return {.success = false};
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}
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if (options_->object_filenames.empty() &&
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options_->extra_clang_args.empty()) {
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CARBON_DIAGNOSTIC(LinkObjectFilesMissing, Error,
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"no object files provided to link command and no extra "
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"Clang options that could provide them");
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driver_env.emitter.Emit(LinkObjectFilesMissing);
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return {.success = false};
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}
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// Find or build the Carbon Core runtimes for linking the prelude into the
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// binary.
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bool include_prelude = false;
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std::filesystem::path core_path;
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Filesystem::DirRef runtimes_dir;
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std::filesystem::path runtimes_path;
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std::optional<Runtimes> runtimes_cache;
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if (options_->link_prelude_files) {
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if (driver_env.prebuilt_runtimes) {
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auto error_or_path =
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driver_env.prebuilt_runtimes->Get(Runtimes::CarbonCore);
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CARBON_CHECK(error_or_path.ok(),
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"Prebuilt runtimes failed to fetch for Carbon prelude: {}",
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error_or_path.error().message());
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core_path = std::move(*error_or_path);
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runtimes_dir = driver_env.prebuilt_runtimes->base_dir();
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runtimes_path = driver_env.prebuilt_runtimes->base_path();
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include_prelude = true;
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} else if (driver_env.build_runtimes_on_demand) {
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Runtimes::Cache::Features features = {
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.target = options_->codegen_options->target.str()};
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auto runtimes_or_error = driver_env.runtimes_cache.Lookup(features);
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CARBON_CHECK(runtimes_or_error.ok(), "Runtimes cache lookup failed: {}",
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runtimes_or_error.error().message());
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auto runtimes = std::move(*runtimes_or_error);
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CarbonPreludeBuilder prelude_builder(&driver_env, &runtimes,
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options_->codegen_options);
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auto path_or_error = std::move(prelude_builder).Build();
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if (!path_or_error.ok()) {
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CARBON_DIAGNOSTIC(LinkCarbonPreludeBuildFailed, Error,
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"Failed to build Carbon prelude during linking: {0}",
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std::string);
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driver_env.emitter.Emit(LinkCarbonPreludeBuildFailed,
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path_or_error.error().message());
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return {.success = false};
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}
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core_path = std::move(*path_or_error);
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runtimes_dir = runtimes.base_dir();
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runtimes_path = runtimes.base_path();
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// Keep the Runtimes object in scope so we can use it during linking.
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runtimes_cache = std::move(runtimes);
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include_prelude = true;
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}
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}
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// Note that we append any extra Clang args before our object filenames. This
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// allows us to propagate object filenames that collide with Clang flags using
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// `--` before the filenames. While in theory, this could create a problem in
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// the presence of mixtures of object files in the two lists and the order
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// being dependent, we don't expect that in practice.
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clang_args.append(options_->extra_clang_args.begin(),
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options_->extra_clang_args.end());
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clang_args.push_back("--");
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// Append the Carbon prelude object files to the link.
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// TODO: should also be able to link in the rest of the Core object files,
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// if needed.
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llvm::SmallVector<std::string> prelude_paths;
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if (include_prelude) {
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// Open subdirectory specifically for the object files relative to the
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// runtimes base path.
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auto relative_path = core_path.lexically_relative(runtimes_path);
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auto core_dir_or_error = runtimes_dir.OpenDir(relative_path);
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CARBON_CHECK(core_dir_or_error.ok(),
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"Failed to open prelude binaries directory at {}, error: {}",
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runtimes_path / relative_path, core_dir_or_error.error());
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auto core_dir = std::move(*core_dir_or_error);
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object_search(core_dir, core_path, prelude_paths);
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CARBON_CHECK(!prelude_paths.empty(), "Found no prelude files at {}",
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runtimes_path / relative_path);
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llvm::append_range(
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clang_args, llvm::map_range(prelude_paths, [](const std::string& path) {
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return llvm::StringRef(path);
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}));
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}
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clang_args.append(options_->object_filenames.begin(),
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options_->object_filenames.end());
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ClangRunner runner(driver_env.installation, driver_env.fs,
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driver_env.vlog_stream);
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ErrorOr<bool> run_result =
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driver_env.prebuilt_runtimes
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? runner.RunWithPrebuiltRuntimes(clang_args,
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*driver_env.prebuilt_runtimes,
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driver_env.enable_leaking)
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: driver_env.build_runtimes_on_demand
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? runner.Run(clang_args, driver_env.runtimes_cache,
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*driver_env.thread_pool, driver_env.enable_leaking)
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: runner.RunWithNoRuntimes(clang_args, driver_env.enable_leaking);
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if (!run_result.ok()) {
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// This is not a Clang failure, but a failure to even run Clang, so we need
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// to diagnose it here.
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CARBON_DIAGNOSTIC(FailureRunningClangToLink, Error,
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"failure running `clang` to perform linking: {0}",
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std::string);
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driver_env.emitter.Emit(FailureRunningClangToLink,
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run_result.error().message());
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return {.success = false};
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}
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// Successfully ran Clang to perform the link, return its result.
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return {.success = *run_result};
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}
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} // namespace Carbon
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