d6457ee485
Use `sync.Once` to prevent locks of stopping GC. It will also allow to safely call `Shard.Close` multiple times. Signed-off-by: Leonard Lyubich <leonard@nspcc.ru>
378 lines
7 KiB
Go
378 lines
7 KiB
Go
package shard
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import (
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"context"
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"sync"
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"time"
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"github.com/nspcc-dev/neofs-api-go/pkg/object"
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meta "github.com/nspcc-dev/neofs-node/pkg/local_object_storage/metabase"
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"github.com/nspcc-dev/neofs-node/pkg/util"
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"github.com/nspcc-dev/neofs-node/pkg/util/logger"
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"go.uber.org/zap"
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)
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// Event represents class of external events.
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type Event interface {
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typ() eventType
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}
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type eventType int
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const (
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_ eventType = iota
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eventNewEpoch
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)
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type newEpoch struct {
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epoch uint64
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}
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func (e newEpoch) typ() eventType {
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return eventNewEpoch
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}
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// EventNewEpoch returns new epoch event.
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func EventNewEpoch(e uint64) Event {
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return newEpoch{
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epoch: e,
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}
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}
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type eventHandler func(context.Context, Event)
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type eventHandlers struct {
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prevGroup sync.WaitGroup
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cancelFunc context.CancelFunc
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handlers []eventHandler
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}
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type gc struct {
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*gcCfg
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onceStop sync.Once
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stopChannel chan struct{}
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workerPool util.WorkerPool
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remover func()
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mEventHandler map[eventType]*eventHandlers
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}
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type gcCfg struct {
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eventChanInit func() <-chan Event
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removerInterval time.Duration
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log *logger.Logger
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workerPoolInit func(int) util.WorkerPool
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}
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func defaultGCCfg() *gcCfg {
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ch := make(chan Event)
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close(ch)
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return &gcCfg{
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eventChanInit: func() <-chan Event {
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return ch
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},
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removerInterval: 10 * time.Second,
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log: zap.L(),
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workerPoolInit: func(int) util.WorkerPool {
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return nil
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},
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}
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}
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func (gc *gc) init() {
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sz := 0
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for _, v := range gc.mEventHandler {
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sz += len(v.handlers)
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}
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if sz > 0 {
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gc.workerPool = gc.workerPoolInit(sz)
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}
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go gc.tickRemover()
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go gc.listenEvents()
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}
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func (gc *gc) listenEvents() {
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eventChan := gc.eventChanInit()
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for {
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event, ok := <-eventChan
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if !ok {
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gc.log.Warn("stop event listener by closed channel")
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return
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}
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v, ok := gc.mEventHandler[event.typ()]
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if !ok {
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continue
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}
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v.cancelFunc()
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v.prevGroup.Wait()
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var ctx context.Context
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ctx, v.cancelFunc = context.WithCancel(context.Background())
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v.prevGroup.Add(len(v.handlers))
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for i := range v.handlers {
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h := v.handlers[i]
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err := gc.workerPool.Submit(func() {
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h(ctx, event)
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v.prevGroup.Done()
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})
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if err != nil {
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gc.log.Warn("could not submit GC job to worker pool",
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zap.String("error", err.Error()),
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)
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v.prevGroup.Done()
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}
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}
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}
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}
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func (gc *gc) tickRemover() {
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timer := time.NewTimer(gc.removerInterval)
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defer timer.Stop()
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for {
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select {
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case <-gc.stopChannel:
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if gc.workerPool != nil {
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gc.workerPool.Release()
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}
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gc.log.Debug("GC is stopped")
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return
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case <-timer.C:
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gc.remover()
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timer.Reset(gc.removerInterval)
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}
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}
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}
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func (gc *gc) stop() {
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gc.onceStop.Do(func() {
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gc.stopChannel <- struct{}{}
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})
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}
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// iterates over metabase graveyard and deletes objects
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// with GC-marked graves.
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func (s *Shard) removeGarbage() {
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buf := make([]*object.Address, 0, s.rmBatchSize)
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// iterate over metabase graveyard and accumulate
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// objects with GC mark (no more the s.rmBatchSize objects)
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err := s.metaBase.IterateOverGraveyard(func(g *meta.Grave) error {
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if g.WithGCMark() {
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buf = append(buf, g.Address())
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}
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if len(buf) == s.rmBatchSize {
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return meta.ErrInterruptIterator
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}
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return nil
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})
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if err != nil {
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s.log.Warn("iterator over metabase graveyard failed",
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zap.String("error", err.Error()),
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)
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return
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} else if len(buf) == 0 {
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return
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}
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// delete accumulated objects
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_, err = s.Delete(new(DeletePrm).
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WithAddresses(buf...),
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)
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if err != nil {
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s.log.Warn("could not delete the objects",
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zap.String("error", err.Error()),
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)
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return
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}
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}
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func (s *Shard) collectExpiredObjects(ctx context.Context, e Event) {
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epoch := e.(newEpoch).epoch
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var expired []*object.Address
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// collect expired non-tombstone object
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err := s.metaBase.IterateExpired(epoch, func(expiredObject *meta.ExpiredObject) error {
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select {
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case <-ctx.Done():
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return meta.ErrInterruptIterator
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default:
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}
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if expiredObject.Type() != object.TypeTombstone {
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expired = append(expired, expiredObject.Address())
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}
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return nil
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})
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if err != nil {
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s.log.Warn("iterator over expired objects failed",
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zap.String("error", err.Error()),
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)
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return
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} else if len(expired) == 0 {
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return
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}
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// check if context canceled
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select {
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case <-ctx.Done():
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return
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default:
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}
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// inhume the collected objects
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_, err = s.metaBase.Inhume(new(meta.InhumePrm).
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WithAddresses(expired...).
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WithGCMark(),
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)
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if err != nil {
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s.log.Warn("could not inhume the objects",
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zap.String("error", err.Error()),
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)
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return
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}
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}
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// TODO: can be unified with Shard.collectExpiredObjects.
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func (s *Shard) collectExpiredTombstones(ctx context.Context, e Event) {
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epoch := e.(newEpoch).epoch
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var expired []*object.Address
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// collect expired tombstone objects
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err := s.metaBase.IterateExpired(epoch, func(expiredObject *meta.ExpiredObject) error {
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select {
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case <-ctx.Done():
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return meta.ErrInterruptIterator
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default:
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}
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if expiredObject.Type() == object.TypeTombstone {
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expired = append(expired, expiredObject.Address())
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}
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return nil
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})
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if err != nil {
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s.log.Warn("iterator over expired tombstones failed",
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zap.String("error", err.Error()),
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)
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return
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} else if len(expired) == 0 {
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return
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}
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// check if context canceled
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select {
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case <-ctx.Done():
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return
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default:
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}
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s.expiredTombstonesCallback(ctx, expired)
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}
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// HandleExpiredTombstones marks to be removed all objects that are
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// protected by tombstones with string addresses from tss.
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// If successful, marks tombstones themselves as garbage.
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//
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// Does not modify tss.
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func (s *Shard) HandleExpiredTombstones(tss map[string]struct{}) {
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inhume := make([]*object.Address, 0, len(tss))
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// Collect all objects covered by the tombstones.
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err := s.metaBase.IterateCoveredByTombstones(tss, func(addr *object.Address) error {
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inhume = append(inhume, addr)
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return nil
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})
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if err != nil {
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s.log.Warn("iterator over expired objects failed",
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zap.String("error", err.Error()),
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)
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return
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}
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// Mark collected objects as garbage.
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var pInhume meta.InhumePrm
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pInhume.WithGCMark()
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if len(inhume) > 0 {
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// inhume objects
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pInhume.WithAddresses(inhume...)
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_, err = s.metaBase.Inhume(&pInhume)
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if err != nil {
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s.log.Warn("could not inhume objects under the expired tombstone",
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zap.String("error", err.Error()),
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)
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return
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}
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}
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// Mark the tombstones as garbage.
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inhume = inhume[:0]
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for strAddr := range tss {
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// parse address
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// TODO: make type of map values *object.Address since keys are calculated from addresses
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addr := object.NewAddress()
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err = addr.Parse(strAddr)
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if err != nil {
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s.log.Error("could not parse tombstone address",
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zap.String("text", strAddr),
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zap.String("error", err.Error()),
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)
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continue // try process other tombstones
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}
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inhume = append(inhume, addr)
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}
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pInhume.WithAddresses(inhume...) // GC mark is already set above
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// inhume tombstones
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_, err = s.metaBase.Inhume(&pInhume)
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if err != nil {
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s.log.Warn("could not mark tombstones as garbage",
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zap.String("error", err.Error()),
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)
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return
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}
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}
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