//===--- LockFileManager.cpp - File-level Locking Utility------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #include "llvm/Support/LockFileManager.h" #include "llvm/ADT/SmallVector.h" #include "llvm/ADT/StringExtras.h" #include "llvm/Config/llvm-config.h" // for LLVM_ON_UNIX #include "llvm/Support/Errc.h" #include "llvm/Support/ErrorOr.h" #include "llvm/Support/ExponentialBackoff.h" #include "llvm/Support/FileSystem.h" #include "llvm/Support/MemoryBuffer.h" #include "llvm/Support/Process.h" #include "llvm/Support/Signals.h" #include "llvm/Support/raw_ostream.h" #include #include #include #include #include #include #ifdef _WIN32 #include #endif #if LLVM_ON_UNIX #include #endif #if defined(__APPLE__) && defined(__ENVIRONMENT_MAC_OS_X_VERSION_MIN_REQUIRED__) && (__ENVIRONMENT_MAC_OS_X_VERSION_MIN_REQUIRED__ > 1050) #define USE_OSX_GETHOSTUUID 1 #else #define USE_OSX_GETHOSTUUID 0 #endif #if USE_OSX_GETHOSTUUID #include #endif using namespace llvm; /// Attempt to read the lock file with the given name, if it exists. /// /// \param LockFileName The name of the lock file to read. /// /// \returns The process ID of the process that owns this lock file std::optional LockFileManager::readLockFile(StringRef LockFileName) { // Read the owning host and PID out of the lock file. If it appears that the // owning process is dead, the lock file is invalid. ErrorOr> MBOrErr = MemoryBuffer::getFile(LockFileName); if (!MBOrErr) { sys::fs::remove(LockFileName); return std::nullopt; } MemoryBuffer &MB = *MBOrErr.get(); StringRef Hostname; StringRef PIDStr; std::tie(Hostname, PIDStr) = getToken(MB.getBuffer(), " "); PIDStr = PIDStr.substr(PIDStr.find_first_not_of(' ')); int PID; if (!PIDStr.getAsInteger(10, PID)) { OwnedByAnother Owner; Owner.OwnerHostName = Hostname; Owner.OwnerPID = PID; if (processStillExecuting(Owner.OwnerHostName, Owner.OwnerPID)) return Owner; } // Delete the lock file. It's invalid anyway. sys::fs::remove(LockFileName); return std::nullopt; } static std::error_code getHostID(SmallVectorImpl &HostID) { HostID.clear(); #if USE_OSX_GETHOSTUUID // On OS X, use the more stable hardware UUID instead of hostname. struct timespec wait = {1, 0}; // 1 second. uuid_t uuid; if (gethostuuid(uuid, &wait) != 0) return errnoAsErrorCode(); uuid_string_t UUIDStr; uuid_unparse(uuid, UUIDStr); StringRef UUIDRef(UUIDStr); HostID.append(UUIDRef.begin(), UUIDRef.end()); #elif LLVM_ON_UNIX char HostName[256]; HostName[255] = 0; HostName[0] = 0; gethostname(HostName, 255); StringRef HostNameRef(HostName); HostID.append(HostNameRef.begin(), HostNameRef.end()); #else StringRef Dummy("localhost"); HostID.append(Dummy.begin(), Dummy.end()); #endif return std::error_code(); } bool LockFileManager::processStillExecuting(StringRef HostID, int PID) { #if LLVM_ON_UNIX && !defined(__ANDROID__) SmallString<256> StoredHostID; if (getHostID(StoredHostID)) return true; // Conservatively assume it's executing on error. // Check whether the process is dead. If so, we're done. if (StoredHostID == HostID && getsid(PID) == -1 && errno == ESRCH) return false; #endif return true; } namespace { /// An RAII helper object ensure that the unique lock file is removed. /// /// Ensures that if there is an error or a signal before we finish acquiring the /// lock, the unique file will be removed. And if we successfully take the lock, /// the signal handler is left in place so that signals while the lock is held /// will remove the unique lock file. The caller should ensure there is a /// matching call to sys::DontRemoveFileOnSignal when the lock is released. class RemoveUniqueLockFileOnSignal { StringRef Filename; bool RemoveImmediately; public: RemoveUniqueLockFileOnSignal(StringRef Name) : Filename(Name), RemoveImmediately(true) { sys::RemoveFileOnSignal(Filename, nullptr); } ~RemoveUniqueLockFileOnSignal() { if (!RemoveImmediately) { // Leave the signal handler enabled. It will be removed when the lock is // released. return; } sys::fs::remove(Filename); sys::DontRemoveFileOnSignal(Filename); } void lockAcquired() { RemoveImmediately = false; } }; } // end anonymous namespace LockFileManager::LockFileManager(StringRef FileName) : FileName(FileName), Owner(OwnerUnknown{}) {} Expected LockFileManager::tryLock() { assert(std::holds_alternative(Owner) && "lock has already been attempted"); SmallString<128> AbsoluteFileName(FileName); if (std::error_code EC = sys::fs::make_absolute(AbsoluteFileName)) return createStringError(EC, "failed to obtain absolute path for " + AbsoluteFileName); LockFileName = AbsoluteFileName; LockFileName += ".lock"; // If the lock file already exists, don't bother to try to create our own // lock file; it won't work anyway. Just figure out who owns this lock file. if (auto LockFileOwner = readLockFile(LockFileName)) { Owner = std::move(*LockFileOwner); return false; } // Create a lock file that is unique to this instance. UniqueLockFileName = LockFileName; UniqueLockFileName += "-%%%%%%%%"; int UniqueLockFileID; if (std::error_code EC = sys::fs::createUniqueFile( UniqueLockFileName, UniqueLockFileID, UniqueLockFileName)) return createStringError(EC, "failed to create unique file " + UniqueLockFileName); // Clean up the unique file on signal or scope exit. RemoveUniqueLockFileOnSignal RemoveUniqueFile(UniqueLockFileName); // Write our process ID to our unique lock file. { SmallString<256> HostID; if (auto EC = getHostID(HostID)) return createStringError(EC, "failed to get host id"); raw_fd_ostream Out(UniqueLockFileID, /*shouldClose=*/true); Out << HostID << ' ' << sys::Process::getProcessId(); Out.close(); if (Out.has_error()) { // We failed to write out PID, so report the error and fail. Error Err = createStringError(Out.error(), "failed to write to " + UniqueLockFileName); // Don't call report_fatal_error. Out.clear_error(); return std::move(Err); } } while (true) { // Create a link from the lock file name. If this succeeds, we're done. std::error_code EC = sys::fs::create_link(UniqueLockFileName, LockFileName); if (!EC) { RemoveUniqueFile.lockAcquired(); Owner = OwnedByUs{}; return true; } if (EC != errc::file_exists) return createStringError(EC, "failed to create link " + LockFileName + " to " + UniqueLockFileName); // Someone else managed to create the lock file first. Read the process ID // from the lock file. if (auto LockFileOwner = readLockFile(LockFileName)) { Owner = std::move(*LockFileOwner); return false; } if (!sys::fs::exists(LockFileName)) { // The previous owner released the lock file before we could read it. // Try to get ownership again. continue; } // There is a lock file that nobody owns; try to clean it up and get // ownership. if ((EC = sys::fs::remove(LockFileName))) return createStringError(EC, "failed to remove lockfile " + UniqueLockFileName); } } LockFileManager::~LockFileManager() { if (!std::holds_alternative(Owner)) return; // Since we own the lock, remove the lock file and our own unique lock file. sys::fs::remove(LockFileName); sys::fs::remove(UniqueLockFileName); // The unique file is now gone, so remove it from the signal handler. This // matches a sys::RemoveFileOnSignal() in LockFileManager(). sys::DontRemoveFileOnSignal(UniqueLockFileName); } WaitForUnlockResult LockFileManager::waitForUnlockFor(std::chrono::seconds MaxSeconds) { auto *LockFileOwner = std::get_if(&Owner); assert(LockFileOwner && "waiting for lock to be unlocked without knowing the owner"); // Since we don't yet have an event-based method to wait for the lock file, // use randomized exponential backoff, similar to Ethernet collision // algorithm. This improves performance on machines with high core counts // when the file lock is heavily contended by multiple clang processes using namespace std::chrono_literals; ExponentialBackoff Backoff(MaxSeconds, 10ms, 500ms); // Wait first as this is only called when the lock is known to be held. while (Backoff.waitForNextAttempt()) { // FIXME: implement event-based waiting if (sys::fs::access(LockFileName.c_str(), sys::fs::AccessMode::Exist) == errc::no_such_file_or_directory) return WaitForUnlockResult::Success; // If the process owning the lock died without cleaning up, just bail out. if (!processStillExecuting(LockFileOwner->OwnerHostName, LockFileOwner->OwnerPID)) return WaitForUnlockResult::OwnerDied; } // Give up. return WaitForUnlockResult::Timeout; } std::error_code LockFileManager::unsafeMaybeUnlock() { return sys::fs::remove(LockFileName); }