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persister.go
138 lines (103 loc) · 3.41 KB
/
persister.go
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// Copyright 2016-Present Couchbase, Inc.
//
// Use of this software is governed by the Business Source License included
// in the file licenses/BSL-Couchbase.txt. As of the Change Date specified
// in that file, in accordance with the Business Source License, use of this
// software will be governed by the Apache License, Version 2.0, included in
// the file licenses/APL2.txt.
package moss
import (
"sync/atomic"
"time"
)
// runPersister() implements the persister task.
func (m *collection) runPersister() {
defer func() {
close(m.donePersisterCh)
atomic.AddUint64(&m.stats.TotPersisterEnd, 1)
}()
if m.options.LowerLevelUpdate == nil {
return
}
OUTER:
for {
atomic.AddUint64(&m.stats.TotPersisterLoop, 1)
m.m.Lock()
for m.stackDirtyBase == nil && !m.isClosed() {
// There's a concurrency scenario where imagine that
// persistence takes a long time. Also, imagine that
// there are no more incoming batches (so, stackDirtyTop
// is empty).
//
// That allows the merger to complete a merging cycle (so,
// stackDirtyMid is non-empty with unpersisted data) and
// the merger is now just waiting for either more incoming
// batches or waiting to be awoken.
//
// So, we notify/awake the merger here so that it can feed
// stackDirtyMid down to the persister as stackDirtyBase.
if m.waitDirtyIncomingCh != nil && // Merger is indeed asleep.
(m.stackDirtyMid != nil && len(m.stackDirtyMid.a) > 0) &&
(m.stackDirtyTop == nil || len(m.stackDirtyTop.a) <= 0) {
m.NotifyMerger("from-persister", false)
}
atomic.AddUint64(&m.stats.TotPersisterWaitBeg, 1)
m.stackDirtyBaseCond.Wait()
atomic.AddUint64(&m.stats.TotPersisterWaitEnd, 1)
}
stackDirtyBase := m.stackDirtyBase
m.m.Unlock()
if m.isClosed() {
return
}
startTime := time.Now()
atomic.AddUint64(&m.stats.TotPersisterLowerLevelUpdateBeg, 1)
llssNext, err := m.options.LowerLevelUpdate(stackDirtyBase)
if err != nil {
atomic.AddUint64(&m.stats.TotPersisterLowerLevelUpdateErr, 1)
m.Logf("collection: runPersister, LowerLevelUpdate, err: %v", err)
m.OnError(err)
continue OUTER
}
atomic.AddUint64(&m.stats.TotPersisterLowerLevelUpdateEnd, 1)
var stackDirtyBasePrev *segmentStack
var stackCleanPrev *segmentStack
m.m.Lock()
m.invalidateLatestSnapshotLOCKED()
stackCleanPrev = m.stackClean
if m.options.CachePersisted {
m.stackClean = m.stackDirtyBase
} else {
m.stackClean = nil
stackDirtyBasePrev = m.stackDirtyBase
}
m.stackDirtyBase = nil
waitDirtyOutgoingCh := m.waitDirtyOutgoingCh
m.waitDirtyOutgoingCh = nil
llssPrev := m.lowerLevelSnapshot
m.lowerLevelSnapshot = NewSnapshotWrapper(llssNext, nil)
m.m.Unlock()
if stackDirtyBasePrev != nil {
stackDirtyBasePrev.Close()
}
if stackCleanPrev != nil {
stackCleanPrev.Close()
}
if llssPrev != nil {
llssPrev.Close()
}
if waitDirtyOutgoingCh != nil {
close(waitDirtyOutgoingCh)
}
// ---------------------------------------------
atomic.AddUint64(&m.stats.TotPersisterLoopRepeat, 1)
m.fireEvent(EventKindPersisterProgress, time.Now().Sub(startTime))
}
// TODO: More advanced eviction of stackClean.
// TODO: Timer based eviction of stackClean?
// TODO: Randomized eviction?
// TODO: Merging of stackClean to 1 level?
// TODO: WaitForMerger() also considers stackClean?
// TODO: Track popular Get() keys?
// TODO: Track shadowing during merges for writes.
}