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This shifts the Bazel toolchain configuration of our installation to build all of the Clang runtimes Carbon uses on-demand natively in Bazel. We export the information about how to build into a generated Starlark file, and emit BUILD files and Starlark logic into the installation to orchestrate the build. This requires some complex management of Bazel toolchains -- we need to first set-up a "runtimes toolchain" that doesn't have runtimes of its own, but can be used to _build_ runtimes. Then we build the runtimes using that toolchain, and assemble them into the standard layout for a Carbon runtimes tree. Finally we configure the _actual_ toolchain with this built tree. Currently, this is only setup for the installed toolchain, but I plan to factor this runtimes build into one that can be used directly as well to break up the monolithic runtimes build step into Bazel-integrated build of the runtimes. This will also serve as the foundation for adding bootstrapping support directly to our Bazel build. --------- Co-authored-by: Dana Jansens <danakj@orodu.net>
541 lines
20 KiB
C++
541 lines
20 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/clang_runtimes.h"
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#include <unistd.h>
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#include <algorithm>
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#include <filesystem>
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#include <functional>
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#include <mutex>
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#include <numeric>
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#include <optional>
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#include <string_view>
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#include <utility>
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#include <variant>
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#include "common/check.h"
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#include "common/error.h"
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#include "common/filesystem.h"
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#include "common/latch.h"
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#include "common/vlog.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/STLFunctionalExtras.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/IR/LLVMContext.h"
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#include "llvm/Object/Archive.h"
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#include "llvm/Object/ArchiveWriter.h"
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#include "llvm/Support/Error.h"
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#include "llvm/Support/FormatAdapters.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "llvm/Support/Path.h"
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#include "llvm/Support/ThreadPool.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/TargetParser/Host.h"
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#include "llvm/TargetParser/Triple.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/base/runtimes_build_info.h"
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#include "toolchain/driver/clang_runner.h"
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#include "toolchain/driver/runtimes_cache.h"
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namespace Carbon {
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auto ClangRuntimesBuilderBase::ArchiveBuilder::Setup(Latch::Handle latch_handle)
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-> void {
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// `NewArchiveMember` isn't default constructable unfortunately, so we have to
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// manually populate the vector with errors that we'll replace with the actual
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// result in each thread.
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objs_.reserve(src_files_.size());
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for (const auto& _ : src_files_) {
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objs_.push_back(Error("Never constructed archive member!"));
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}
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// Finish building the archive when the last compile finishes.
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Latch::Handle comp_latch_handle =
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compilation_latch_.Init([this, latch_handle] { result_ = Finish(); });
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// Add all the compiles to the thread pool to run concurrently. The latch
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// handle ensures the last one triggers the finishing closure above.
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for (auto [src_file, obj] : llvm::zip_equal(src_files_, objs_)) {
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builder_->tasks_.async([this, comp_latch_handle, src_file, &obj]() mutable {
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obj = CompileMember(src_file);
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});
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}
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}
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auto ClangRuntimesBuilderBase::ArchiveBuilder::Finish() -> ErrorOr<Success> {
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// We build this directly into the desired location as this is expected to be
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// a staging directory and cleaned up on errors. We do need to create any
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// intermediate directories.
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Filesystem::DirRef runtimes_dir = builder_->runtimes_builder_->dir();
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if (archive_path_.has_parent_path()) {
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CARBON_RETURN_IF_ERROR(
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runtimes_dir.CreateDirectories(archive_path_.parent_path()));
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}
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// Check if any compilations ended up producing an error. If so, return the
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// first error for the entire function. Otherwise, move the archive member
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// into a direct vector to match the required archive building API.
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llvm::SmallVector<llvm::NewArchiveMember> unwrapped_objs;
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unwrapped_objs.reserve(objs_.size());
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for (auto& obj : objs_) {
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if (!obj.ok()) {
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return std::move(obj).error();
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}
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unwrapped_objs.push_back(*std::move(obj));
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}
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objs_.clear();
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// Remove any directories created for the object files, the files should
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// already be removed. We walk the sorted list of these in reverse so we
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// remove child directories before parent directories.
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for (const auto& obj_dir : llvm::reverse(obj_dirs_)) {
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auto rmdir_result = runtimes_dir.Rmdir(obj_dir);
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// Don't return an error on failure here as this has no problematic
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// effect, just log that we couldn't clean up a directory.
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if (!rmdir_result.ok()) {
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CARBON_VLOG("Unable to remove object directory `{0}` in the runtime: {1}",
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obj_dir.native(), rmdir_result.error());
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}
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}
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// Write the actual archive.
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CARBON_ASSIGN_OR_RETURN(
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Filesystem::WriteFile archive_file,
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runtimes_dir.OpenWriteOnly(archive_path_, Filesystem::CreateAlways));
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{
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llvm::raw_fd_ostream archive_os = archive_file.WriteStream();
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llvm::Error archive_err = llvm::writeArchiveToStream(
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archive_os, unwrapped_objs, llvm::SymtabWritingMode::NormalSymtab,
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builder_->target_triple_.isOSDarwin() ? llvm::object::Archive::K_DARWIN
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: llvm::object::Archive::K_GNU,
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/*Deterministic=*/true, /*Thin=*/false);
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// The presence of an error is `true`.
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if (archive_err) {
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(void)std::move(archive_file).Close();
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return Error(llvm::toString(std::move(archive_err)));
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}
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}
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// Close and return any errors, potentially from the writes above.
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CARBON_RETURN_IF_ERROR(std::move(archive_file).Close());
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return Success();
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}
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auto ClangRuntimesBuilderBase::ArchiveBuilder::CreateObjDir(
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const std::filesystem::path& src_path) -> ErrorOr<Success> {
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auto obj_dir_path = src_path.parent_path();
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if (obj_dir_path.empty()) {
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return Success();
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}
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std::scoped_lock lock(obj_dirs_mu_);
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auto* it = std::lower_bound(obj_dirs_.begin(), obj_dirs_.end(), obj_dir_path);
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if (it != obj_dirs_.end() && *it == obj_dir_path) {
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return Success();
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}
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auto create_result =
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builder_->runtimes_builder_->dir().CreateDirectories(obj_dir_path);
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if (!create_result.ok()) {
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return Error(llvm::formatv(
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"Unable to create object directory mirroring source file `{0}`: {1}",
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src_path, create_result.error()));
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}
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it = obj_dirs_.insert(it, obj_dir_path);
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// Also insert any parent paths. These should always sort earlier.
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CARBON_DCHECK(!obj_dir_path.has_parent_path() ||
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obj_dir_path.parent_path() < obj_dir_path);
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obj_dir_path = obj_dir_path.parent_path();
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while (!obj_dir_path.empty()) {
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it = std::lower_bound(obj_dirs_.begin(), it, obj_dir_path);
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if (*it != obj_dir_path) {
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it = obj_dirs_.insert(it, obj_dir_path);
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}
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obj_dir_path = obj_dir_path.parent_path();
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}
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return Success();
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}
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auto ClangRuntimesBuilderBase::ArchiveBuilder::CompileMember(
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llvm::StringRef src_file) -> ErrorOr<llvm::NewArchiveMember> {
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// Create any obj subdirectories needed for this file.
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CARBON_RETURN_IF_ERROR(CreateObjDir(src_file.str()));
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std::filesystem::path src_path = srcs_root_ / std::string_view(src_file);
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std::filesystem::path obj_path =
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builder_->runtimes_builder_->path() / std::string_view(src_file);
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obj_path += ".o";
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CARBON_VLOG("Building `{0}' from `{1}`...\n", obj_path, src_file);
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llvm::SmallVector<llvm::StringRef> args(cflags_);
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// Add language-specific flags based on file extension.
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//
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// Currently, we hard code a sufficiently "recent" C++ standard, but this is
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// arbitrary and brittle. We'll have to update these any time one of the
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// libraries uses a too-new feature.
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//
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// TODO: We should eventually switch to something more like `/std:c++latest`
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// in MSVC-style command lines, but would need that implemented in Clang.
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if (src_file.ends_with(".c")) {
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args.push_back("-std=c11");
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} else if (src_file.ends_with(".cpp")) {
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args.push_back("-std=c++26");
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}
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// Collect the additional required flags and dynamic flags for this builder.
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args.append({
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"-c",
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builder_->target_flag_,
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"-o",
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obj_path.native(),
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src_path.native(),
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});
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CARBON_ASSIGN_OR_RETURN(bool success,
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builder_->clang_->RunWithNoRuntimes(args));
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if (!success) {
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return Error(
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llvm::formatv("Failed to compile runtime source file '{0}'", src_file));
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}
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auto obj_result = llvm::NewArchiveMember::getFile(obj_path.native(),
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/*Deterministic=*/true);
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if (!obj_result) {
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return Error(llvm::formatv("Unable to read `{0}` object file: {1}",
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src_file,
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llvm::fmt_consume(obj_result.takeError())));
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}
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// Only use the basename as the member name to match the behavior of `ar`. We
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// also specifically use the LLVM path function rather than the standard
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// library as it allows us to get the filename within the member-owned
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// filename storage.
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obj_result->MemberName = llvm::sys::path::filename(obj_result->MemberName);
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// Unlink the object file once we've read it -- we only want to retain the
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// copy inside the archive member and there's no advantage to using
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// thin-archives or something else that leaves the object file in place.
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// However, we log and ignore any errors here as they aren't fatal.
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auto unlink_result = builder_->runtimes_builder_->dir().Unlink(obj_path);
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if (!unlink_result.ok()) {
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CARBON_VLOG("Unable to unlink object file `{0}`: {1}\n", obj_path,
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unlink_result.error());
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}
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return std::move(*obj_result);
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}
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template <Runtimes::Component Component>
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requires IsClangArchiveRuntimes<Component>
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ClangArchiveRuntimesBuilder<Component>::ClangArchiveRuntimesBuilder(
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ClangRunner* clang, llvm::ThreadPoolInterface* threads,
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llvm::Triple target_triple, Runtimes* runtimes)
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: ClangRuntimesBuilderBase(clang, threads, std::move(target_triple)) {
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// Ensure we're on a platform where we _can_ build a working runtime.
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if (target_triple_.isOSWindows()) {
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result_ =
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Error("TODO: Windows runtimes are untested and not yet supported.");
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return;
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}
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auto build_dir_or_error = runtimes->Build(Component);
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if (!build_dir_or_error.ok()) {
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result_ = std::move(build_dir_or_error).error();
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return;
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}
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auto build_dir = *(std::move(build_dir_or_error));
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CARBON_KIND_SWITCH(std::move(build_dir)) {
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case CARBON_KIND(std::filesystem::path build_dir_path): {
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// Found cached build.
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result_ = std::move(build_dir_path);
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return;
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}
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case CARBON_KIND(Runtimes::Builder builder): {
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runtimes_builder_ = std::move(builder);
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// Building the runtimes is handled below.
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break;
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}
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}
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if constexpr (Component == Runtimes::LibUnwind) {
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archive_path_ = std::filesystem::path("lib") / "libunwind.a";
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include_paths_ = {installation().libunwind_path() / "include"};
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} else if constexpr (Component == Runtimes::Libcxx) {
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archive_path_ = std::filesystem::path("lib") / "libc++.a";
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include_paths_ = {
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installation().libcxx_path() / "include",
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// Some private headers of libc++ are nested in the source directory.
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installation().libcxx_path() / "src",
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installation().libcxxabi_path() / "include",
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// Libc++ also uses llvm-libc header-only libraries for parts of its
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// implementation. All the `#include`s are relative to the root of the
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// internal libc source tree rather than an `include` directory.
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installation().libc_path() / "internal",
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};
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} else {
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static_assert(false,
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"Invalid runtimes component for an archive runtime builder.");
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}
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archive_.emplace(this, archive_path_, installation().runtimes_root(),
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CollectSrcFiles(), CollectCflags());
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tasks_.async([this]() mutable { Setup(); });
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}
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template <Runtimes::Component Component>
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requires IsClangArchiveRuntimes<Component>
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auto ClangArchiveRuntimesBuilder<Component>::CollectSrcFiles()
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-> llvm::SmallVector<llvm::StringRef> {
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if constexpr (Component == Runtimes::LibUnwind) {
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return llvm::to_vector_of<llvm::StringRef>(llvm::make_filter_range(
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RuntimesBuildInfo::LibunwindSrcs, [](llvm::StringRef src) {
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return src.ends_with(".c") || src.ends_with(".cpp") ||
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src.ends_with(".S");
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}));
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} else if constexpr (Component == Runtimes::Libcxx) {
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auto libcxx_target_srcs =
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target_triple_.isOSWindows()
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? llvm::ArrayRef(RuntimesBuildInfo::LibcxxWin32Srcs)
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: target_triple_.isMacOSX()
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? llvm::ArrayRef(RuntimesBuildInfo::LibcxxMacosSrcs)
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: llvm::ArrayRef(RuntimesBuildInfo::LibcxxLinuxSrcs);
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auto libcxx_srcs = llvm::make_filter_range(
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libcxx_target_srcs,
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[](llvm::StringRef src) { return src.ends_with(".cpp"); });
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auto libcxxabi_srcs = llvm::make_filter_range(
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RuntimesBuildInfo::LibcxxabiSrcs,
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[](llvm::StringRef src) { return src.ends_with(".cpp"); });
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return llvm::to_vector(
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llvm::concat<llvm::StringRef>(libcxx_srcs, libcxxabi_srcs));
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} else {
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static_assert(false,
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"Invalid runtimes component for an archive runtime builder.");
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}
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}
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template <Runtimes::Component Component>
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requires IsClangArchiveRuntimes<Component>
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auto ClangArchiveRuntimesBuilder<Component>::CollectCflags()
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-> llvm::SmallVector<llvm::StringRef> {
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// Start with some hard-coded flags used across any runtime.
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//
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// TODO: It would be nice to plumb through an option to enable (some) warnings
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// when building runtimes, especially for folks working directly on the Carbon
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// toolchain to validate our builds of runtimes.
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llvm::SmallVector<llvm::StringRef> cflags = {
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"-no-canonical-prefixes",
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"-w",
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};
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if constexpr (Component == Runtimes::LibUnwind) {
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llvm::append_range(cflags, RuntimesBuildInfo::LibunwindCopts);
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} else if constexpr (Component == Runtimes::Libcxx) {
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llvm::append_range(cflags, RuntimesBuildInfo::LibcxxCopts);
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} else {
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static_assert(false,
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"Invalid runtimes component for an archive runtime builder.");
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}
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for (const auto& include_path : include_paths_) {
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cflags.append({"-I", include_path.native()});
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}
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return cflags;
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}
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template <Runtimes::Component Component>
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requires IsClangArchiveRuntimes<Component>
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auto ClangArchiveRuntimesBuilder<Component>::Setup() -> void {
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// Finish building the runtime once the archive is built.
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Latch::Handle latch_handle = step_counter_.Init(
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[this]() mutable { tasks_.async([this]() mutable { Finish(); }); });
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// Start building the archive itself with a handle to detect when complete.
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archive_->Setup(std::move(latch_handle));
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}
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template <Runtimes::Component Component>
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requires IsClangArchiveRuntimes<Component>
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auto ClangArchiveRuntimesBuilder<Component>::Finish() -> void {
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CARBON_VLOG("Finished building {0}...\n", archive_path_);
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if (!archive_->result().ok()) {
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result_ = std::move(archive_->result()).error();
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return;
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}
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result_ = (*std::move(runtimes_builder_)).Commit();
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}
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template class ClangArchiveRuntimesBuilder<Runtimes::LibUnwind>;
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template class ClangArchiveRuntimesBuilder<Runtimes::Libcxx>;
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ClangResourceDirBuilder::ClangResourceDirBuilder(
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ClangRunner* clang, llvm::ThreadPoolInterface* threads,
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llvm::Triple target_triple, Runtimes* runtimes)
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: ClangRuntimesBuilderBase(clang, threads, std::move(target_triple)),
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crt_begin_result_(Error("Never built CRT begin file!")),
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crt_end_result_(Error("Never built CRT end file!")) {
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// Ensure we're on a platform where we _can_ build a working runtime.
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if (target_triple_.isOSWindows()) {
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result_ =
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Error("TODO: Windows runtimes are untested and not yet supported.");
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return;
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}
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auto build_dir_or_error = runtimes->Build(Runtimes::ClangResourceDir);
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if (!build_dir_or_error.ok()) {
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result_ = std::move(build_dir_or_error).error();
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return;
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}
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auto build_dir = *std::move(build_dir_or_error);
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if (std::holds_alternative<std::filesystem::path>(build_dir)) {
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// Found cached build.
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result_ = std::get<std::filesystem::path>(std::move(build_dir));
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return;
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}
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runtimes_builder_ = std::get<Runtimes::Builder>(std::move(build_dir));
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lib_path_ = std::filesystem::path("lib") / target_triple_.str();
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// TODO: Currently, we only need a single include path to see headers inside
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// the `builtins` directory. However, we're anticipating needing more, for
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// example to support SipHash. If that need doesn't materialize, we should
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// simplify this to a single path instead of a vector.
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include_paths_.push_back(installation().runtimes_root() / "builtins");
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llvm::SmallVector<llvm::StringRef> copts = {
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"-no-canonical-prefixes",
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"-w",
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};
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llvm::append_range(copts, RuntimesBuildInfo::BuiltinsCopts);
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for (const auto& include_path : include_paths_) {
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copts.append({"-I", include_path.native()});
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}
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archive_.emplace(this, lib_path_ / "libclang_rt.builtins.a",
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installation().runtimes_root(), CollectBuiltinsSrcFiles(),
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copts);
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tasks_.async([this]() { Setup(); });
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}
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auto ClangResourceDirBuilder::CollectBuiltinsSrcFiles()
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-> llvm::SmallVector<llvm::StringRef> {
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llvm::SmallVector<llvm::StringRef> src_files;
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if (target_triple_.isAArch64()) {
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llvm::append_range(src_files, RuntimesBuildInfo::BuiltinsAarch64Srcs);
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} else if (target_triple_.isX86()) {
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if (target_triple_.isArch64Bit()) {
|
|
llvm::append_range(src_files, RuntimesBuildInfo::BuiltinsX86_64Srcs);
|
|
} else {
|
|
// TODO: This should be turned into a nice user-facing diagnostic about an
|
|
// unsupported target.
|
|
CARBON_CHECK(
|
|
target_triple_.isArch32Bit(),
|
|
"The Carbon toolchain doesn't currently support 16-bit x86.");
|
|
llvm::append_range(src_files, RuntimesBuildInfo::BuiltinsI386Srcs);
|
|
}
|
|
} else {
|
|
// TODO: This should be turned into a nice user-facing diagnostic about an
|
|
// unsupported target.
|
|
CARBON_FATAL("Target architecture is not supported: {0}",
|
|
target_triple_.str());
|
|
}
|
|
|
|
// Only compile source files, not headers.
|
|
llvm::erase_if(src_files,
|
|
[](llvm::StringRef file) { return file.ends_with(".h"); });
|
|
return src_files;
|
|
}
|
|
|
|
auto ClangResourceDirBuilder::Setup() -> void {
|
|
// Symlink the installation's `include` and `share` directories.
|
|
std::filesystem::path install_resource_path =
|
|
installation().clang_resource_path();
|
|
if (auto result = runtimes_builder_->dir().Symlink(
|
|
"include", install_resource_path / "include");
|
|
!result.ok()) {
|
|
result_ = std::move(result).error();
|
|
return;
|
|
}
|
|
|
|
// Create the target's `lib` directory.
|
|
auto lib_dir_result = runtimes_builder_->dir().CreateDirectories(lib_path_);
|
|
if (!lib_dir_result.ok()) {
|
|
result_ = std::move(lib_dir_result).error();
|
|
return;
|
|
}
|
|
lib_dir_ = *std::move(lib_dir_result);
|
|
|
|
Latch::Handle latch_handle =
|
|
step_counter_.Init([this] { tasks_.async([this] { Finish(); }); });
|
|
|
|
// For Linux targets, the system libc (typically glibc) doesn't necessarily
|
|
// provide the CRT begin/end files, and so we need to build them.
|
|
if (target_triple_.isOSLinux()) {
|
|
tasks_.async([this, latch_handle] {
|
|
crt_begin_result_ = BuildCrtFile(RuntimesBuildInfo::CrtBegin);
|
|
});
|
|
tasks_.async([this, latch_handle] {
|
|
crt_end_result_ = BuildCrtFile(RuntimesBuildInfo::CrtEnd);
|
|
});
|
|
}
|
|
|
|
archive_->Setup(std::move(latch_handle));
|
|
}
|
|
|
|
auto ClangResourceDirBuilder::Finish() -> void {
|
|
CARBON_VLOG("Finished building resource dir...\n");
|
|
if (!archive_->result().ok()) {
|
|
result_ = std::move(archive_->result()).error();
|
|
return;
|
|
}
|
|
if (target_triple_.isOSLinux()) {
|
|
for (ErrorOr<Success>* result : {&crt_begin_result_, &crt_end_result_}) {
|
|
if (!result->ok()) {
|
|
result_ = std::move(*result).error();
|
|
return;
|
|
}
|
|
}
|
|
}
|
|
|
|
result_ = (*std::move(runtimes_builder_)).Commit();
|
|
}
|
|
|
|
auto ClangResourceDirBuilder::BuildCrtFile(llvm::StringRef src_file)
|
|
-> ErrorOr<Success> {
|
|
CARBON_CHECK(src_file == RuntimesBuildInfo::CrtBegin ||
|
|
src_file == RuntimesBuildInfo::CrtEnd);
|
|
std::filesystem::path out_path =
|
|
runtimes_builder_->path() / lib_path_ /
|
|
(src_file == RuntimesBuildInfo::CrtBegin ? "clang_rt.crtbegin.o"
|
|
: "clang_rt.crtend.o");
|
|
std::filesystem::path src_path =
|
|
installation().runtimes_root() / std::string_view(src_file);
|
|
CARBON_VLOG("Building `{0}' from `{1}`...\n", out_path, src_path);
|
|
|
|
llvm::SmallVector<llvm::StringRef> copts = {
|
|
"-no-canonical-prefixes",
|
|
"-w",
|
|
target_flag_,
|
|
};
|
|
llvm::append_range(copts, RuntimesBuildInfo::CrtCopts);
|
|
copts.append({
|
|
"-c",
|
|
"-o",
|
|
out_path.native(),
|
|
src_path.native(),
|
|
});
|
|
|
|
CARBON_ASSIGN_OR_RETURN(bool success, clang_->RunWithNoRuntimes(copts));
|
|
|
|
if (success) {
|
|
return Success();
|
|
}
|
|
return Error(llvm::formatv("Failed to compile CRT file: {0}", src_file));
|
|
}
|
|
|
|
} // namespace Carbon
|