mirror of https://github.com/k3s-io/k3s
218 lines
5.9 KiB
Go
218 lines
5.9 KiB
Go
// Copyright 2017 The etcd Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package v3compactor
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import (
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"context"
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"sync"
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"time"
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pb "go.etcd.io/etcd/etcdserver/etcdserverpb"
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"go.etcd.io/etcd/mvcc"
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"github.com/jonboulle/clockwork"
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"go.uber.org/zap"
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)
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// Periodic compacts the log by purging revisions older than
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// the configured retention time.
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type Periodic struct {
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lg *zap.Logger
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clock clockwork.Clock
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period time.Duration
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rg RevGetter
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c Compactable
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revs []int64
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ctx context.Context
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cancel context.CancelFunc
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// mu protects paused
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mu sync.RWMutex
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paused bool
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}
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// newPeriodic creates a new instance of Periodic compactor that purges
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// the log older than h Duration.
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func newPeriodic(lg *zap.Logger, clock clockwork.Clock, h time.Duration, rg RevGetter, c Compactable) *Periodic {
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pc := &Periodic{
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lg: lg,
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clock: clock,
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period: h,
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rg: rg,
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c: c,
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revs: make([]int64, 0),
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}
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pc.ctx, pc.cancel = context.WithCancel(context.Background())
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return pc
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}
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/*
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Compaction period 1-hour:
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1. compute compaction period, which is 1-hour
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2. record revisions for every 1/10 of 1-hour (6-minute)
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3. keep recording revisions with no compaction for first 1-hour
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4. do compact with revs[0]
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- success? contiue on for-loop and move sliding window; revs = revs[1:]
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- failure? update revs, and retry after 1/10 of 1-hour (6-minute)
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Compaction period 24-hour:
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1. compute compaction period, which is 1-hour
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2. record revisions for every 1/10 of 1-hour (6-minute)
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3. keep recording revisions with no compaction for first 24-hour
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4. do compact with revs[0]
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- success? contiue on for-loop and move sliding window; revs = revs[1:]
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- failure? update revs, and retry after 1/10 of 1-hour (6-minute)
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Compaction period 59-min:
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1. compute compaction period, which is 59-min
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2. record revisions for every 1/10 of 59-min (5.9-min)
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3. keep recording revisions with no compaction for first 59-min
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4. do compact with revs[0]
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- success? contiue on for-loop and move sliding window; revs = revs[1:]
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- failure? update revs, and retry after 1/10 of 59-min (5.9-min)
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Compaction period 5-sec:
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1. compute compaction period, which is 5-sec
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2. record revisions for every 1/10 of 5-sec (0.5-sec)
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3. keep recording revisions with no compaction for first 5-sec
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4. do compact with revs[0]
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- success? contiue on for-loop and move sliding window; revs = revs[1:]
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- failure? update revs, and retry after 1/10 of 5-sec (0.5-sec)
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*/
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// Run runs periodic compactor.
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func (pc *Periodic) Run() {
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compactInterval := pc.getCompactInterval()
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retryInterval := pc.getRetryInterval()
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retentions := pc.getRetentions()
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go func() {
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lastSuccess := pc.clock.Now()
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baseInterval := pc.period
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for {
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pc.revs = append(pc.revs, pc.rg.Rev())
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if len(pc.revs) > retentions {
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pc.revs = pc.revs[1:] // pc.revs[0] is always the rev at pc.period ago
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}
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select {
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case <-pc.ctx.Done():
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return
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case <-pc.clock.After(retryInterval):
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pc.mu.Lock()
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p := pc.paused
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pc.mu.Unlock()
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if p {
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continue
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}
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}
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if pc.clock.Now().Sub(lastSuccess) < baseInterval {
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continue
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}
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// wait up to initial given period
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if baseInterval == pc.period {
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baseInterval = compactInterval
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}
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rev := pc.revs[0]
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if pc.lg != nil {
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pc.lg.Info(
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"starting auto periodic compaction",
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zap.Int64("revision", rev),
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zap.Duration("compact-period", pc.period),
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)
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} else {
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plog.Noticef("Starting auto-compaction at revision %d (retention: %v)", rev, pc.period)
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}
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_, err := pc.c.Compact(pc.ctx, &pb.CompactionRequest{Revision: rev})
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if err == nil || err == mvcc.ErrCompacted {
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if pc.lg != nil {
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pc.lg.Info(
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"completed auto periodic compaction",
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zap.Int64("revision", rev),
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zap.Duration("compact-period", pc.period),
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zap.Duration("took", time.Since(lastSuccess)),
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)
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} else {
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plog.Noticef("Finished auto-compaction at revision %d", rev)
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}
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lastSuccess = pc.clock.Now()
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} else {
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if pc.lg != nil {
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pc.lg.Warn(
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"failed auto periodic compaction",
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zap.Int64("revision", rev),
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zap.Duration("compact-period", pc.period),
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zap.Duration("retry-interval", retryInterval),
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zap.Error(err),
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)
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} else {
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plog.Noticef("Failed auto-compaction at revision %d (%v)", rev, err)
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plog.Noticef("Retry after %v", retryInterval)
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}
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}
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}
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}()
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}
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// if given compaction period x is <1-hour, compact every x duration.
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// (e.g. --auto-compaction-mode 'periodic' --auto-compaction-retention='10m', then compact every 10-minute)
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// if given compaction period x is >1-hour, compact every hour.
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// (e.g. --auto-compaction-mode 'periodic' --auto-compaction-retention='2h', then compact every 1-hour)
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func (pc *Periodic) getCompactInterval() time.Duration {
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itv := pc.period
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if itv > time.Hour {
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itv = time.Hour
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}
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return itv
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}
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func (pc *Periodic) getRetentions() int {
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return int(pc.period/pc.getRetryInterval()) + 1
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}
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const retryDivisor = 10
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func (pc *Periodic) getRetryInterval() time.Duration {
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itv := pc.period
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if itv > time.Hour {
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itv = time.Hour
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}
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return itv / retryDivisor
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}
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// Stop stops periodic compactor.
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func (pc *Periodic) Stop() {
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pc.cancel()
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}
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// Pause pauses periodic compactor.
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func (pc *Periodic) Pause() {
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pc.mu.Lock()
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pc.paused = true
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pc.mu.Unlock()
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}
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// Resume resumes periodic compactor.
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func (pc *Periodic) Resume() {
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pc.mu.Lock()
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pc.paused = false
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pc.mu.Unlock()
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}
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