//go:build aix // +build aix /* * SPDX-FileCopyrightText: © 2017-2026 Istari Digital, Inc. * SPDX-License-Identifier: Apache-2.0 */ package badger import ( "errors" "fmt" "os" "path/filepath" "sync" "golang.org/x/sys/unix" "github.com/dgraph-io/badger/v4/y" ) // AIX flock locks files, not descriptors. So, multiple descriptors cannot // be used in the same file. The first to close removals the lock on the // file. type directoryLockGuard struct { // The absolute path to our pid file. path string // Was this a shared lock for a read-only database? readOnly bool } // AIX flocking is file x process, not fd x file x process like linux. We can // only hold one descriptor with a lock open at any given time. type aixFlock struct { file *os.File count int readOnly bool } // Keep a map of locks synchronized by a mutex. var aixFlockMap = map[string]*aixFlock{} var aixFlockMapLock sync.Mutex // acquireDirectoryLock gets a lock on the directory (using flock). If // this is not read-only, it will also write our pid to // dirPath/pidFileName for convenience. func acquireDirectoryLock(dirPath string, pidFileName string, readOnly bool) ( *directoryLockGuard, error) { // Convert to absolute path so that Release still works even if we do an unbalanced // chdir in the meantime. absPidFilePath, err := filepath.Abs(filepath.Join(dirPath, pidFileName)) if err != nil { return nil, y.Wrapf(err, "cannot get absolute path for pid lock file") } aixFlockMapLock.Lock() defer aixFlockMapLock.Unlock() lg := &directoryLockGuard{absPidFilePath, readOnly} if lock, fnd := aixFlockMap[absPidFilePath]; fnd { if !readOnly || lock.readOnly != readOnly { return nil, fmt.Errorf( "Cannot acquire directory lock on %q. Another process is using this Badger database.", dirPath) } lock.count++ } else { // This is the first acquirer, set up a lock file and register it. f, err := os.OpenFile(absPidFilePath, os.O_RDWR|os.O_CREATE, 0666) if err != nil { return nil, y.Wrapf(err, "cannot create/open pid file %q", absPidFilePath) } opts := unix.F_WRLCK if readOnly { opts = unix.F_RDLCK } flckt := unix.Flock_t{int16(opts), 0, 0, 0, 0, 0, 0} err = unix.FcntlFlock(uintptr(f.Fd()), unix.F_SETLK, &flckt) if err != nil { f.Close() return nil, y.Wrapf(err, "Cannot acquire directory lock on %q. Another process is using this Badger database.", dirPath) } if !readOnly { f.Truncate(0) // Write our pid to the file. _, err = f.Write([]byte(fmt.Sprintf("%d\n", os.Getpid()))) if err != nil { f.Close() return nil, y.Wrapf(err, "Cannot write pid file %q", absPidFilePath) } } aixFlockMap[absPidFilePath] = &aixFlock{f, 1, readOnly} } return lg, nil } // Release deletes the pid file and releases our lock on the directory. func (guard *directoryLockGuard) release() error { var err error aixFlockMapLock.Lock() defer aixFlockMapLock.Unlock() if lock, fnd := aixFlockMap[guard.path]; fnd { lock.count-- if lock.count == 0 { if !lock.readOnly { // Try to clear the PID if we succeed. lock.file.Truncate(0) os.Remove(guard.path) } if closeErr := lock.file.Close(); err == nil { err = closeErr } delete(aixFlockMap, guard.path) guard.path = "" } } else { err = errors.New(fmt.Sprintf("unknown lock %v", guard.path)) } return err } // openDir opens a directory for syncing. func openDir(path string) (*os.File, error) { return os.Open(path) } // When you create or delete a file, you have to ensure the directory entry for the file is synced // in order to guarantee the file is visible (if the system crashes). (See the man page for fsync, // or see https://github.com/coreos/etcd/issues/6368 for an example.) func syncDir(dir string) error { var err error // AIX does not support fsync on a directory. // Data durability on crash may be affected. return err }