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Previously this was kept in `//toolchain/install` so it would be near to the code that actually defines the installation layout. However, that creates somewhat unfortunate dependency cycles between `//toolchain/install` and other directories. Exacerbating this, a subsequent PR is likely to add dependencies on it from `//toolchain/base` itself that suggests that is the correct layering. This PR just moves the code mechanically with as few other edits as possible.
428 lines
17 KiB
C++
428 lines
17 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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#ifndef CARBON_TOOLCHAIN_DRIVER_RUNTIMES_CACHE_H_
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#define CARBON_TOOLCHAIN_DRIVER_RUNTIMES_CACHE_H_
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#include <chrono>
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#include <filesystem>
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#include <utility>
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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/ostream.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/StringRef.h"
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#include "toolchain/base/install_paths.h"
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namespace Carbon {
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// Manages a runtimes directory.
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//
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// Carbon (including Clang) relies on a set of runtime libraries and data files.
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// These are organized into a directory modeled by a `Runtimes` object, with
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// different components of those runtimes built into subdirectories. The
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// `Runtimes` object in turn provides access to each of these subdirectories.
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//
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// Different components are managed in separate directories based on how they
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// are _built_, and each one may contain a mixture of one or more runtime
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// libraries or data files. The separation of each component is so that we don't
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// force building all of them in a configuration where only one makes sense or
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// is typically needed.
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//
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// Beyond providing access, a `Runtimes` object also supports orchestrating the
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// build of these components into their designated subdirectories, including
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// synchronizing between different threads or processes trying to build the same
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// component.
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//
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// TODO: Add libc++ to the runtimes tree.
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// TODO: Add the Core library to the runtimes tree.
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class Runtimes {
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public:
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class Builder;
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class Cache;
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enum Component {
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ClangResourceDir,
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LibUnwind,
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Libcxx,
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NumComponents,
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};
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// Creates a `Runtimes` object for a specific existing directory.
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//
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// Requires that the `path` is an absolute path that is an existing directory.
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static auto Make(std::filesystem::path path,
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llvm::raw_ostream* vlog_stream = nullptr)
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-> ErrorOr<Runtimes>;
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// Default construction produces an unformed runtimes that can only be
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// assigned to or destroyed.
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Runtimes() = default;
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// A specific runtimes object is move-only as it owns the relevant filesystem
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// resources.
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Runtimes(Runtimes&& arg) noexcept
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: base_path_(std::move(arg.base_path_)),
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base_dir_(std::exchange(arg.base_dir_, {})),
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lock_file_(std::exchange(arg.lock_file_, {})),
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flock_(std::exchange(arg.flock_, {})),
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vlog_stream_(arg.vlog_stream_) {}
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auto operator=(Runtimes&& arg) noexcept -> Runtimes& {
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Destroy();
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base_path_ = std::move(arg.base_path_);
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base_dir_ = std::exchange(arg.base_dir_, {});
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lock_file_ = std::exchange(arg.lock_file_, {});
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flock_ = std::exchange(arg.flock_, {});
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vlog_stream_ = arg.vlog_stream_;
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return *this;
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}
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~Runtimes() { Destroy(); }
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// The base path for the runtimes.
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auto base_path() const -> const std::filesystem::path& { return base_path_; }
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// The base directory for the runtimes.
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auto base_dir() const -> Filesystem::DirRef { return base_dir_; }
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// Gets the path to an _existing_ Clang resource directory.
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//
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// Clang's resource directory contains all of the compiler-builtin runtime
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// libraries, headers, and data files.
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//
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// This will return the path to the Clang resource directory if it exists in
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// the runtimes tree. Otherwise, it will return an error.
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auto Get(Component component) -> ErrorOr<std::filesystem::path>;
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// Builds or returns a Clang resource directory.
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//
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// If there is an existing, built Clang resource directory, this will return
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// its path, the same as `GetExistingClangResourceDir` would. However, if
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// there is not yet a Clang resource directory in this runtimes tree, returns
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// a `Builder` object that can be used to build and commit a Clang resource
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// directory to this runtimes tree.
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auto Build(Component component)
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-> ErrorOr<std::variant<std::filesystem::path, Builder>>;
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private:
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friend Builder;
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friend Cache;
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friend class RuntimesTestPeer;
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// The deadline for acquiring a lock to build a new component of the runtimes.
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// This needs to be quite large as this is how long racing processes or
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// threads will wait to allow some other process to complete building the
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// component. The result is that this should be significantly longer than the
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// expected slowest-to-build component.
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//
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// Note, nothing goes _wrong_ if this deadline is exceeded, but multiple
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// copies of the component may end up being built and all but one thrown away.
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static constexpr Filesystem::Duration BuildLockDeadline =
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std::chrono::seconds(200);
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// The interval at which to poll for a build lock. This needs to be small
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// enough that we don't waste an excessive amount of time if a build of the
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// component completes *just* after a poll. Typically, that means we want this
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// to be significant lower than the expected time it would take to build the
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// component. Note that we don't poll if the component has been completely
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// built prior to the query coming in, so this doesn't form the _minimum_ time
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// to find a component of the runtimes tree.
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static constexpr Filesystem::Duration BuildLockPollInterval =
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std::chrono::milliseconds(200);
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// The path to the clang resource directory within the runtimes tree.
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//
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// This uses `std::string_view` to simply using with paths.
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static constexpr auto ComponentPath(Component component) -> std::string_view {
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switch (component) {
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case ClangResourceDir:
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return "clang_resource_dir";
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case LibUnwind:
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return "libunwind";
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case Libcxx:
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return "libcxx";
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case NumComponents:
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CARBON_FATAL("Invalid component");
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}
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}
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// A format string used to form the lock file for a given directory in the
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// runtimes tree. This needs to be C-string, so directly expose the character
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// array.
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static constexpr char LockFileFormat[] = ".{0}.lock";
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explicit Runtimes(std::filesystem::path base_path, Filesystem::Dir base_dir,
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Filesystem::WriteFile lock_file, Filesystem::FileLock flock,
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llvm::raw_ostream* vlog_stream = nullptr)
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: base_path_(std::move(base_path)),
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base_dir_(std::move(base_dir)),
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lock_file_(std::move(lock_file)),
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flock_(std::move(flock)),
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vlog_stream_(vlog_stream) {
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CARBON_CHECK(base_path_.is_absolute(),
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"The base path must be absolute: {0}", base_path_);
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}
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// Implementation of building the Clang resource directory. This exposes the
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// deadline and poll interval to allow testing with artificial values.
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auto BuildImpl(Component component, Filesystem::Duration deadline,
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Filesystem::Duration poll_interval)
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-> ErrorOr<std::variant<std::filesystem::path, Builder>>;
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auto Destroy() -> void;
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std::filesystem::path base_path_;
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Filesystem::Dir base_dir_;
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Filesystem::WriteFile lock_file_;
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Filesystem::FileLock flock_;
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llvm::raw_ostream* vlog_stream_ = nullptr;
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};
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// A managed cache of `Runtimes` directories.
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//
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// This class manages and provides access to a cache of runtimes. Each entry in
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// the cache is a runtimes directory for a specific set of `Feature`s,
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// represented by an object of the `Runtimes` type. An entry is sometimes
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// referred to simply as the "runtimes" in a specific context. Each of these
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// entries can consist of one or more components that together make up a
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// collection of runtime libraries, runtime data files, or other runtime
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// resources. However, entries are never combined -- each entry represents a
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// distinct target environment, potentially ABI, and set of runtimes that could
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// be used.
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//
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// The cache looks up entries based on the set of `Feature`s and the input
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// sources used to build them (including the compiler itself). Whenever looking
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// up an entry not already present in the cache, the cache will evict old
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// entries before creating the new one. The eviction strategy is to remove any
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// entries more than a year old, as well as the least-recently used entries
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// until there will only be a maximum of 50 entries in the cache. The goal is to
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// allow multiple versions and build features to stay resident in the cache
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// while providing a stable upper bound on the disk space used.
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//
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// The cache can be formed around a specific directory, or it can search for a
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// system-default directory. The system default directory follows the guidance
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// of the XDG Base Directory Specification:
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// https://specifications.freedesktop.org/basedir-spec/latest/
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//
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// This tries to place the system cache in
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// `$XDG_CACHE_HOME/carbon_runtimes_cache`, followed by
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// `$HOME/.cache/carbon_runtimes_cache`. A fallback if neither works is to
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// create a temporary directory for the cache. This temporary directory is owned
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// by the `Cache` object and will be removed when it is destroyed.
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//
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// These system-wide paths are only used if the installation contains a digest
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// file that can be used to ensure different builds and installs of Carbon don't
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// incorrectly share cache entries built from different sources. When missing, a
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// temporary directory is used.
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class Runtimes::Cache {
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public:
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// The features of a cached runtimes directory.
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//
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// TODO: Add support for more build flags that we want to enable when building
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// runtimes such as sanitizers and CPU-specific optimizations.
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struct Features {
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std::string target;
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};
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Cache() = default;
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// The cache is move-only as it owns open resources for the cache directory.
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Cache(Cache&& arg) noexcept
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: vlog_stream_(arg.vlog_stream_),
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cache_key_(std::move(arg.cache_key_)),
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path_(std::move(arg.path_)),
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dir_owner_(std::exchange(arg.dir_owner_, {})),
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dir_(arg.dir_) {}
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auto operator=(Cache&& arg) noexcept -> Cache& {
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vlog_stream_ = arg.vlog_stream_;
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cache_key_ = std::move(arg.cache_key_);
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path_ = std::move(arg.path_);
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dir_owner_ = std::exchange(arg.dir_owner_, {});
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dir_ = arg.dir_;
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return *this;
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}
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// Creates a cache object for the current system.
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//
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// This will try to locate and use a persistent cache on the system if it can,
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// and otherwise fall back to creating a temporary cache. If either of these
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// hit unrecoverable errors, that error is returned instead. See the class
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// comment for more details about the overall strategy.
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static auto MakeSystem(const InstallPaths& install,
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llvm::raw_ostream* vlog_stream = nullptr)
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-> ErrorOr<Cache> {
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Cache cache(vlog_stream);
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CARBON_RETURN_IF_ERROR(cache.InitSystemCache(install));
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return cache;
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}
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// Creates a cache object referencing an explicit cache path.
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//
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// The path must be an existing, writable directory.
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static auto MakeCustom(const InstallPaths& install,
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std::filesystem::path cache_path,
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llvm::raw_ostream* vlog_stream = nullptr)
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-> ErrorOr<Cache> {
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Cache cache(vlog_stream);
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CARBON_RETURN_IF_ERROR(cache.InitCachePath(install, cache_path));
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return cache;
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}
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// The path to the cache directory.
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auto path() const -> const std::filesystem::path& { return path_; }
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// Looks up a runtimes directory in the cache.
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//
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// This will return a `Runtimes` object for the given features. If an entry
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// for these features does not exist in the cache, any stale cache entries
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// will be pruned if needed, and then a new entry will be created and
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// returned.
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auto Lookup(const Features& features) -> ErrorOr<Runtimes>;
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private:
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friend class RuntimesTestPeer;
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static constexpr int MinNumEntries = 10;
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static constexpr int MaxNumEntries = 50;
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// The maximum age of a cache entry. Cache entries older than this will always
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// evicted if there are more than the minimum number of entries.
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static constexpr auto MaxEntryAge = std::chrono::years(1);
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// The maximum age of a locked cache entry. Cache entries older than this will
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// be evicted if needed without regard to any held lock from a process
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// currently using that entry.
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static constexpr auto MaxLockedEntryAge = std::chrono::days(10);
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// Entries are locked while in use to avoid them being removed concurrently,
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// but the lock will be disregarded for entries older than
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// `MaxLockedEntryAge`. We use a relatively short deadline and fast poll
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// interval here as this is on the critical path even for an existing, built
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// runtimes entry.
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static constexpr auto RuntimesLockDeadline = std::chrono::milliseconds(100);
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static constexpr auto RuntimesLockPollInterval = std::chrono::milliseconds(1);
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struct Entry {
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std::filesystem::path path;
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Filesystem::Duration age;
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};
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explicit Cache(llvm::raw_ostream* vlog_stream) : vlog_stream_(vlog_stream) {}
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// Tries to find a viable cache root.
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//
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// This must be an existing directory, not one we create. We use the XDG base
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// directory specification as the basis for these directories:
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// https://specifications.freedesktop.org/basedir-spec/
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//
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// Note that there is a concept of a "runtimes" directory in this spec, but it
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// uses a different meaning of the term "runtimes" than ours. Runtimes for
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// Carbon are cached, persistent built library data, not something that only
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// exists during the running of the Carbon tool like a socket.
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auto FindXdgCachePath() -> std::optional<std::filesystem::path>;
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// Initializes a system cache in a temporary directory.
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//
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// The cache will create and own a temporary directory, removing it on
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// destruction. This limits the caching lifetime but is used as a fallback
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// when unable to create a persistent cache.
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auto InitTmpSystemCache() -> ErrorOr<Success>;
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// Helper function implementing the logic for `MakeSystem`.
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auto InitSystemCache(const InstallPaths& install) -> ErrorOr<Success>;
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// Helper function implementing the logic for `MakeCustom`.
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auto InitCachePath(const InstallPaths& install,
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std::filesystem::path cache_path) -> ErrorOr<Success>;
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// Computes the ages for each input path, and combines the path and age into
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// the returned vector of `Entry` objects. This consumes the input paths when
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// building the output `Entry` structs, and so accepts the vector of paths by
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// value.
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auto ComputeEntryAges(llvm::SmallVector<std::filesystem::path> entry_paths)
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-> llvm::SmallVector<Entry>;
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// Prunes stale cache entries sufficiently to insert the provided new entry
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// path into the cache without growing it beyond the thresholds for the cache
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// size.
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//
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// Errors during pruning are logged rather than returned as this is expected
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// to be a background operation and not something we can always recover from.
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auto PruneStaleRuntimes(const std::filesystem::path& new_entry_path) -> void;
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llvm::raw_ostream* vlog_stream_ = nullptr;
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std::string cache_key_;
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std::filesystem::path path_;
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std::variant<Filesystem::Dir, Filesystem::RemovingDir> dir_owner_;
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// A reference to whichever form of `dir_owner_` is in use.
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Filesystem::DirRef dir_;
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};
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// Builder for a new directory in a runtimes tree.
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//
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// This manages a staging directory for the build that will then be committed
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// into the destination once fully built.
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class Runtimes::Builder : public Printable<Builder> {
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public:
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Builder(Builder&& arg) noexcept
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: runtimes_(std::exchange(arg.runtimes_, nullptr)),
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lock_file_(std::exchange(arg.lock_file_, {})),
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flock_(std::exchange(arg.flock_, {})),
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dir_(std::exchange(arg.dir_, {})),
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dest_(arg.dest_) {}
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auto operator=(Builder&& arg) noexcept -> Builder& {
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Destroy();
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runtimes_ = std::exchange(arg.runtimes_, nullptr);
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lock_file_ = std::exchange(arg.lock_file_, {});
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flock_ = std::exchange(arg.flock_, {});
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dir_ = std::exchange(arg.dir_, {});
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dest_ = arg.dest_;
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return *this;
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}
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~Builder() { Destroy(); }
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// The build's staging directory.
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auto dir() const -> Filesystem::DirRef { return dir_; }
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// The build's staging directory path.
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auto path() const -> const std::filesystem::path& { return dir_.abs_path(); }
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// Commits the new runtime to the cache.
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//
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// This will move the contents of the temporary directory to the final
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// destination in the cache.
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auto Commit() && -> ErrorOr<std::filesystem::path>;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "Runtimes::Builder{.path = '" << path() << "'}";
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}
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private:
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friend Runtimes;
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friend class RuntimesTestPeer;
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Builder() = default;
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explicit Builder(Runtimes& runtimes, Filesystem::ReadWriteFile lock_file,
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Filesystem::FileLock flock, Filesystem::RemovingDir tmp_dir,
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std::string_view dest)
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: runtimes_(&runtimes),
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vlog_stream_(runtimes.vlog_stream_),
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lock_file_(std::move(lock_file)),
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flock_(std::move(flock)),
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dir_(std::move(tmp_dir)),
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dest_(dest) {}
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auto ReleaseFileLock() -> void;
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auto Destroy() -> void;
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Runtimes* runtimes_ = nullptr;
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llvm::raw_ostream* vlog_stream_ = nullptr;
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Filesystem::ReadWriteFile lock_file_;
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Filesystem::FileLock flock_;
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Filesystem::RemovingDir dir_;
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std::string_view dest_;
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};
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} // namespace Carbon
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#endif // CARBON_TOOLCHAIN_DRIVER_RUNTIMES_CACHE_H_
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