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205 lines
4.3 KiB
205 lines
4.3 KiB
package storage
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import (
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"io/ioutil"
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"os"
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"strings"
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"sync"
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"fmt"
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"github.com/chrislusf/seaweedfs/weed/glog"
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)
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type DiskLocation struct {
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Directory string
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MaxVolumeCount int
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volumes map[VolumeId]*Volume
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sync.RWMutex
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}
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func NewDiskLocation(dir string, maxVolumeCount int) *DiskLocation {
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location := &DiskLocation{Directory: dir, MaxVolumeCount: maxVolumeCount}
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location.volumes = make(map[VolumeId]*Volume)
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return location
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}
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func (l *DiskLocation) volumeIdFromPath(dir os.FileInfo) (VolumeId, string, error) {
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name := dir.Name()
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if !dir.IsDir() && strings.HasSuffix(name, ".dat") {
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collection := ""
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base := name[:len(name)-len(".dat")]
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i := strings.LastIndex(base, "_")
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if i > 0 {
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collection, base = base[0:i], base[i+1:]
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}
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vol, err := NewVolumeId(base)
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return vol, collection, err
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}
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return 0, "", fmt.Errorf("Path is not a volume: %s", name)
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}
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func (l *DiskLocation) loadExistingVolume(dir os.FileInfo, needleMapKind NeedleMapType, mutex *sync.RWMutex) {
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name := dir.Name()
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if !dir.IsDir() && strings.HasSuffix(name, ".dat") {
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vid, collection, err := l.volumeIdFromPath(dir)
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if err == nil {
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mutex.RLock()
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_, found := l.volumes[vid]
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mutex.RUnlock()
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if !found {
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if v, e := NewVolume(l.Directory, collection, vid, needleMapKind, nil, nil, 0); e == nil {
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mutex.Lock()
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l.volumes[vid] = v
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mutex.Unlock()
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glog.V(0).Infof("data file %s, replicaPlacement=%s v=%d size=%d ttl=%s",
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l.Directory+"/"+name, v.ReplicaPlacement, v.Version(), v.Size(), v.Ttl.String())
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} else {
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glog.V(0).Infof("new volume %s error %s", name, e)
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}
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}
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}
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}
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}
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func (l *DiskLocation) concurrentLoadingVolumes(needleMapKind NeedleMapType, concurrentFlag bool) {
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var concurrency int
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if concurrentFlag {
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//You could choose a better optimized concurency value after testing at your environment
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concurrency = 10
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} else {
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concurrency = 1
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}
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task_queue := make(chan os.FileInfo, 10*concurrency)
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go func() {
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if dirs, err := ioutil.ReadDir(l.Directory); err == nil {
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for _, dir := range dirs {
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task_queue <- dir
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}
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}
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close(task_queue)
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}()
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var wg sync.WaitGroup
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var mutex sync.RWMutex
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for workerNum := 0; workerNum < concurrency; workerNum++ {
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wg.Add(1)
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go func() {
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defer wg.Done()
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for dir := range task_queue {
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l.loadExistingVolume(dir, needleMapKind, &mutex)
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}
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}()
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}
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wg.Wait()
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}
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func (l *DiskLocation) loadExistingVolumes(needleMapKind NeedleMapType) {
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l.Lock()
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defer l.Unlock()
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l.concurrentLoadingVolumes(needleMapKind, true)
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glog.V(0).Infoln("Store started on dir:", l.Directory, "with", len(l.volumes), "volumes", "max", l.MaxVolumeCount)
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}
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func (l *DiskLocation) DeleteCollectionFromDiskLocation(collection string) (e error) {
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l.Lock()
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defer l.Unlock()
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for k, v := range l.volumes {
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if v.Collection == collection {
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e = l.deleteVolumeById(k)
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if e != nil {
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return
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}
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}
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}
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return
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}
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func (l *DiskLocation) deleteVolumeById(vid VolumeId) (e error) {
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v, ok := l.volumes[vid]
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if !ok {
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return
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}
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e = v.Destroy()
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if e != nil {
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return
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}
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delete(l.volumes, vid)
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return
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}
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func (l *DiskLocation) LoadVolume(vid VolumeId, needleMapKind NeedleMapType) bool {
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if dirs, err := ioutil.ReadDir(l.Directory); err == nil {
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for _, dir := range dirs {
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volId, _, err := l.volumeIdFromPath(dir)
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if vid == volId && err == nil {
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var mutex sync.RWMutex
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l.loadExistingVolume(dir, needleMapKind, &mutex)
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return true
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}
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}
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}
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return false
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}
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func (l *DiskLocation) DeleteVolume(vid VolumeId) error {
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l.Lock()
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defer l.Unlock()
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_, ok := l.volumes[vid]
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if !ok {
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return fmt.Errorf("Volume not found, VolumeId: %d", vid)
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}
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return l.deleteVolumeById(vid)
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}
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func (l *DiskLocation) UnloadVolume(vid VolumeId) error {
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l.Lock()
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defer l.Unlock()
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_, ok := l.volumes[vid]
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if !ok {
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return fmt.Errorf("Volume not loaded, VolumeId: %d", vid)
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}
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delete(l.volumes, vid)
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return nil
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}
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func (l *DiskLocation) SetVolume(vid VolumeId, volume *Volume) {
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l.Lock()
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defer l.Unlock()
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l.volumes[vid] = volume
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}
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func (l *DiskLocation) FindVolume(vid VolumeId) (*Volume, bool) {
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l.RLock()
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defer l.RUnlock()
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v, ok := l.volumes[vid]
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return v, ok
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}
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func (l *DiskLocation) VolumesLen() int {
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l.RLock()
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defer l.RUnlock()
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return len(l.volumes)
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}
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func (l *DiskLocation) Close() {
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l.Lock()
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defer l.Unlock()
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for _, v := range l.volumes {
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v.Close()
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}
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return
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}
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