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ff0acfb568
Before this change, Hasher would sometimes try to stop a bolt db that was already stopped, resulting in an error. This change fixes the issue by checking first whether the db is already stopped. https://forum.rclone.org/t/hasher-with-gdrive-backend-does-not-return-sha1-sha256-for-old-files/44680/11?u=nielash
322 lines
6.5 KiB
Go
322 lines
6.5 KiB
Go
//go:build !plan9 && !js
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// +build !plan9,!js
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// Package kv provides key/value database.
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package kv
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import (
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"context"
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"fmt"
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"os"
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"path/filepath"
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"strings"
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"sync"
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"time"
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"github.com/rclone/rclone/fs"
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"github.com/rclone/rclone/fs/config"
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"github.com/rclone/rclone/lib/encoder"
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"go.etcd.io/bbolt"
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)
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const (
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initTime = 24 * time.Hour // something reasonably long
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dbFileMode = 0600
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dbDirMode = 0700
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queueSize = 2
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)
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// DB represents a key-value database
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type DB struct {
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name string
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path string
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facility string
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refs int
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bolt *bbolt.DB
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mu sync.Mutex
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canWrite bool
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queue chan *request
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lockTime time.Duration
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idleTime time.Duration
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openTime time.Duration
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idleTimer *time.Timer
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lockTimer *time.Timer
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}
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var (
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dbMap = map[string]*DB{}
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dbMut sync.Mutex
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atExit bool
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)
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// Supported returns true on supported OSes
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func Supported() bool { return true }
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// makeName makes a store name
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func makeName(facility string, f fs.Fs) string {
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var name string
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if f != nil {
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name = f.Name()
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if idx := strings.Index(name, "{"); idx != -1 {
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name = name[:idx]
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}
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name = encoder.OS.FromStandardPath(name)
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name += "~"
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}
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return name + facility + ".bolt"
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}
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// Start a new key-value database
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func Start(ctx context.Context, facility string, f fs.Fs) (*DB, error) {
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dbMut.Lock()
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defer dbMut.Unlock()
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if db := lockedGet(facility, f); db != nil {
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return db, nil
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}
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dir := filepath.Join(config.GetCacheDir(), "kv")
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if err := os.MkdirAll(dir, dbDirMode); err != nil {
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return nil, err
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}
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name := makeName(facility, f)
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lockTime := fs.GetConfig(ctx).KvLockTime
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db := &DB{
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name: name,
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path: filepath.Join(dir, name),
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facility: facility,
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refs: 1,
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lockTime: lockTime,
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idleTime: lockTime / 4,
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openTime: lockTime * 2,
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idleTimer: time.NewTimer(initTime),
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lockTimer: time.NewTimer(initTime),
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queue: make(chan *request, queueSize),
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}
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fi, err := os.Stat(db.path)
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if strings.HasSuffix(os.Args[0], ".test") || (err == nil && fi.Size() == 0) {
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_ = os.Remove(db.path)
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fs.Infof(db.name, "drop cache remaining after unit test")
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}
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if err = db.open(ctx, false); err != nil && err != ErrEmpty {
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return nil, fmt.Errorf("cannot open db: %s: %w", db.path, err)
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}
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dbMap[name] = db
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go db.loop()
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return db, nil
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}
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// Get returns database record for given filesystem and facility
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func Get(facility string, f fs.Fs) *DB {
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dbMut.Lock()
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defer dbMut.Unlock()
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return lockedGet(facility, f)
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}
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func lockedGet(facility string, f fs.Fs) *DB {
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name := makeName(facility, f)
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db := dbMap[name]
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if db != nil {
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db.mu.Lock()
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db.refs++
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db.mu.Unlock()
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}
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return db
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}
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// Path returns database path
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func (db *DB) Path() string { return db.path }
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var modeNames = map[bool]string{false: "reading", true: "writing"}
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func (db *DB) open(ctx context.Context, forWrite bool) (err error) {
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if db.bolt != nil && (db.canWrite || !forWrite) {
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return nil
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}
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_ = db.close()
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db.canWrite = forWrite
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if !forWrite {
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// mitigate https://github.com/etcd-io/bbolt/issues/98
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_, err = os.Stat(db.path)
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if os.IsNotExist(err) {
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return ErrEmpty
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}
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}
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opt := &bbolt.Options{
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Timeout: db.openTime,
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ReadOnly: !forWrite,
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}
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openMode := modeNames[forWrite]
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startTime := time.Now()
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var bolt *bbolt.DB
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retry := 1
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maxRetries := fs.GetConfig(ctx).LowLevelRetries
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for {
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bolt, err = bbolt.Open(db.path, dbFileMode, opt)
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if err == nil || retry >= maxRetries {
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break
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}
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fs.Debugf(db.name, "Retry #%d opening for %s: %v", retry, openMode, err)
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retry++
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}
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if err != nil {
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return err
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}
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fs.Debugf(db.name, "Opened for %s in %v", openMode, time.Since(startTime))
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_ = db.lockTimer.Reset(db.lockTime)
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_ = db.idleTimer.Reset(db.idleTime)
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db.bolt = bolt
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return nil
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}
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func (db *DB) close() (err error) {
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if db.bolt != nil {
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_ = db.lockTimer.Stop()
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_ = db.idleTimer.Stop()
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err = db.bolt.Close()
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db.bolt = nil
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fs.Debugf(db.name, "released")
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}
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return
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}
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// loop over database operations sequentially
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func (db *DB) loop() {
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ctx := context.Background()
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var req *request
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quit := false
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for !quit {
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select {
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case req = <-db.queue:
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if quit = req.handle(ctx, db); !quit {
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req.wg.Done()
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_ = db.idleTimer.Reset(db.idleTime)
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}
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case <-db.idleTimer.C:
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_ = db.close()
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case <-db.lockTimer.C:
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_ = db.close()
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}
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}
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db.queue = nil
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if !atExit {
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dbMut.Lock()
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delete(dbMap, db.name)
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dbMut.Unlock()
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}
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req.wg.Done()
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}
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// Do a key-value operation and return error when done
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func (db *DB) Do(write bool, op Op) error {
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if db == nil || db.queue == nil {
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return ErrInactive
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}
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r := &request{
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op: op,
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wr: write,
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}
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r.wg.Add(1)
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db.queue <- r
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r.wg.Wait()
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return r.err
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}
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// request encapsulates a synchronous operation and its results
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type request struct {
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op Op
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wr bool
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err error
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wg sync.WaitGroup
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}
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// handle a key-value request with given DB
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// returns true as a signal to quit the loop
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func (r *request) handle(ctx context.Context, db *DB) bool {
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db.mu.Lock()
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defer db.mu.Unlock()
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if op, stop := r.op.(*opStop); stop {
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r.err = db.close()
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if op.remove {
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if err := os.Remove(db.path); !os.IsNotExist(err) {
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r.err = err
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}
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}
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db.refs--
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return db.refs <= 0
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}
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r.err = db.execute(ctx, r.op, r.wr)
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return false
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}
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// execute a key-value DB operation
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func (db *DB) execute(ctx context.Context, op Op, write bool) error {
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if err := db.open(ctx, write); err != nil {
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return err
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}
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if write {
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return db.bolt.Update(func(tx *bbolt.Tx) error {
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b, err := tx.CreateBucketIfNotExists([]byte(db.facility))
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if err != nil || b == nil {
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return ErrEmpty
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}
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return op.Do(ctx, &bucketAdapter{b})
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})
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}
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return db.bolt.View(func(tx *bbolt.Tx) error {
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b := tx.Bucket([]byte(db.facility))
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if b == nil {
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return ErrEmpty
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}
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return op.Do(ctx, &bucketAdapter{b})
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})
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}
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// bucketAdapter is a thin wrapper adapting kv.Bucket to bbolt.Bucket
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type bucketAdapter struct {
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*bbolt.Bucket
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}
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func (b *bucketAdapter) Cursor() Cursor {
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return b.Bucket.Cursor()
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}
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// Stop a database loop, optionally removing the file
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func (db *DB) Stop(remove bool) error {
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return db.Do(false, &opStop{remove: remove})
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}
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// IsStopped returns true if db is already stopped
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func (db *DB) IsStopped() bool {
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return len(dbMap) == 0
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}
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// opStop: close database and stop operation loop
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type opStop struct {
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remove bool
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}
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func (*opStop) Do(context.Context, Bucket) error {
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return nil
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}
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// Exit immediately stops all databases
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func Exit() {
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dbMut.Lock()
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atExit = true
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for _, s := range dbMap {
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s.refs = 0
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_ = s.Stop(false)
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}
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dbMap = map[string]*DB{}
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atExit = false
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dbMut.Unlock()
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}
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