ledisdb/server/replication.go

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package server
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import (
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"bytes"
"errors"
"fmt"
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"github.com/siddontang/go/log"
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"github.com/siddontang/go/num"
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"github.com/siddontang/go/sync2"
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goledis "github.com/siddontang/ledisdb/client/go/ledis"
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"github.com/siddontang/ledisdb/ledis"
"github.com/siddontang/ledisdb/rpl"
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"net"
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"os"
"path"
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"strings"
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"sync"
"time"
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)
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var (
errConnectMaster = errors.New("connect master error")
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errReplClosed = errors.New("replication is closed")
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)
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const (
// slave needs to connect to its master
replConnectState int32 = iota + 1
// slave-master connection is in progress
replConnectingState
// perform the synchronization
replSyncState
// slave is online
replConnectedState
)
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type master struct {
sync.Mutex
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conn *goledis.Conn
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app *App
quit chan struct{}
addr string
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wg sync.WaitGroup
syncBuf bytes.Buffer
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state sync2.AtomicInt32
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}
func newMaster(app *App) *master {
m := new(master)
m.app = app
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m.quit = make(chan struct{}, 1)
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m.state.Set(replConnectState)
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return m
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}
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func (m *master) Close() {
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m.quit <- struct{}{}
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m.closeConn()
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m.wg.Wait()
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select {
case <-m.quit:
default:
}
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m.state.Set(replConnectState)
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}
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func (m *master) resetConn() error {
if len(m.addr) == 0 {
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return fmt.Errorf("no assign master addr")
}
if m.conn != nil {
m.conn.Close()
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}
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m.conn = goledis.NewConn(m.addr)
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return nil
}
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func (m *master) closeConn() {
if m.conn != nil {
//for replication, we send quit command to close gracefully
m.conn.Send("quit")
m.conn.Close()
}
}
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func (m *master) stopReplication() error {
m.Close()
return nil
}
func (m *master) startReplication(masterAddr string, restart bool) error {
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//stop last replcation, if avaliable
m.Close()
m.addr = masterAddr
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m.app.cfg.SetReadonly(true)
m.wg.Add(1)
go m.runReplication(restart)
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return nil
}
func (m *master) runReplication(restart bool) {
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defer func() {
m.state.Set(replConnectState)
m.wg.Done()
}()
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m.state.Set(replConnectingState)
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if err := m.resetConn(); err != nil {
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log.Errorf("reset conn error %s", err.Error())
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return
}
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for {
select {
case <-m.quit:
return
default:
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if _, err := m.conn.Do("ping"); err != nil {
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log.Errorf("ping master %s error %s, try 2s later", m.addr, err.Error())
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time.Sleep(2 * time.Second)
continue
}
}
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m.state.Set(replConnectedState)
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if err := m.replConf(); err != nil {
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log.Errorf("replconf error %s", err.Error())
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return
}
if restart {
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m.state.Set(replSyncState)
if err := m.fullSync(); err != nil {
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log.Errorf("restart fullsync error %s", err.Error())
return
}
}
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for {
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select {
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case <-m.quit:
return
default:
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m.state.Set(replConnectedState)
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if err := m.sync(); err != nil {
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log.Errorf("sync error %s", err.Error())
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return
}
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}
}
}
return
}
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func (m *master) replConf() error {
_, port, err := net.SplitHostPort(m.app.cfg.Addr)
if err != nil {
return err
}
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if s, err := goledis.String(m.conn.Do("replconf", "listening-port", port)); err != nil {
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return err
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} else if strings.ToUpper(s) != "OK" {
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return fmt.Errorf("not ok but %s", s)
}
return nil
}
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func (m *master) fullSync() error {
log.Info("begin full sync")
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if err := m.conn.Send("fullsync"); err != nil {
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return err
}
dumpPath := path.Join(m.app.cfg.DataDir, "master.dump")
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f, err := os.OpenFile(dumpPath, os.O_CREATE|os.O_WRONLY, 0644)
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if err != nil {
return err
}
defer os.Remove(dumpPath)
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err = m.conn.ReceiveBulkTo(f)
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f.Close()
if err != nil {
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log.Errorf("read dump data error %s", err.Error())
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return err
}
if _, err = m.app.ldb.LoadDumpFile(dumpPath); err != nil {
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log.Errorf("load dump file error %s", err.Error())
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return err
}
return nil
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}
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func (m *master) nextSyncLogID() (uint64, error) {
s, err := m.app.ldb.ReplicationStat()
if err != nil {
return 0, err
}
if s.LastID > s.CommitID {
return s.LastID + 1, nil
} else {
return s.CommitID + 1, nil
}
}
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func (m *master) sync() error {
var err error
var syncID uint64
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if syncID, err = m.nextSyncLogID(); err != nil {
return err
}
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if err := m.conn.Send("sync", syncID); err != nil {
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return err
}
m.syncBuf.Reset()
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if err = m.conn.ReceiveBulkTo(&m.syncBuf); err != nil {
switch err.Error() {
case ledis.ErrLogMissed.Error():
return m.fullSync()
case ledis.ErrRplNotSupport.Error():
m.stopReplication()
return nil
default:
return err
}
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}
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buf := m.syncBuf.Bytes()
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if len(buf) < 8 {
return fmt.Errorf("inavlid sync size %d", len(buf))
}
m.app.info.Replication.MasterLastLogID.Set(num.BytesToUint64(buf))
var t bytes.Buffer
m.app.info.dumpReplication(&t)
buf = buf[8:]
if len(buf) == 0 {
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return nil
}
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m.state.Set(replSyncState)
if err = m.app.ldb.StoreLogsFromData(buf); err != nil {
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return err
}
return nil
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}
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func (app *App) slaveof(masterAddr string, restart bool, readonly bool) error {
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app.m.Lock()
defer app.m.Unlock()
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//in master mode and no slaveof, only set readonly
if len(app.cfg.SlaveOf) == 0 && len(masterAddr) == 0 {
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app.cfg.SetReadonly(readonly)
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return nil
}
if !app.ldb.ReplicationUsed() {
return fmt.Errorf("slaveof must enable replication")
}
app.cfg.SlaveOf = masterAddr
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if len(masterAddr) == 0 {
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if err := app.m.stopReplication(); err != nil {
return err
}
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app.cfg.SetReadonly(readonly)
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} else {
return app.m.startReplication(masterAddr, restart)
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}
return nil
}
func (app *App) tryReSlaveof() error {
app.m.Lock()
defer app.m.Unlock()
if !app.ldb.ReplicationUsed() {
return nil
}
if len(app.cfg.SlaveOf) == 0 {
return nil
} else {
return app.m.startReplication(app.cfg.SlaveOf, true)
}
}
func (app *App) addSlave(c *client) {
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addr := c.slaveListeningAddr
app.slock.Lock()
defer app.slock.Unlock()
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app.slaves[addr] = c
}
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func (app *App) removeSlave(c *client, activeQuit bool) {
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addr := c.slaveListeningAddr
app.slock.Lock()
defer app.slock.Unlock()
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if _, ok := app.slaves[addr]; ok {
delete(app.slaves, addr)
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log.Infof("remove slave %s", addr)
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if activeQuit {
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asyncNotifyUint64(app.slaveSyncAck, c.lastLogID.Get())
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}
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}
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}
func (app *App) slaveAck(c *client) {
addr := c.slaveListeningAddr
app.slock.Lock()
defer app.slock.Unlock()
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if _, ok := app.slaves[addr]; !ok {
//slave not add
return
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}
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asyncNotifyUint64(app.slaveSyncAck, c.lastLogID.Get())
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}
func asyncNotifyUint64(ch chan uint64, v uint64) {
select {
case ch <- v:
default:
}
}
func (app *App) publishNewLog(l *rpl.Log) {
if !app.cfg.Replication.Sync {
//no sync replication, we will do async
return
}
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app.info.Replication.PubLogNum.Add(1)
app.slock.Lock()
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slaveNum := len(app.slaves)
total := (slaveNum + 1) / 2
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if app.cfg.Replication.WaitMaxSlaveAcks > 0 {
total = num.MinInt(total, app.cfg.Replication.WaitMaxSlaveAcks)
}
n := 0
logId := l.ID
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for _, s := range app.slaves {
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lastLogID := s.lastLogID.Get()
if lastLogID == logId {
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//slave has already owned this log
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n++
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} else if lastLogID > logId {
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log.Errorf("invalid slave %s, lastlogid %d > %d", s.slaveListeningAddr, lastLogID, logId)
}
}
app.slock.Unlock()
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if n >= total {
//at least total slaves have owned this log
return
}
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startTime := time.Now()
done := make(chan struct{}, 1)
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go func() {
n := 0
for i := 0; i < slaveNum; i++ {
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id := <-app.slaveSyncAck
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if id < logId {
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log.Infof("some slave may close with last logid %d < %d", id, logId)
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} else {
n++
if n >= total {
break
}
}
}
done <- struct{}{}
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}()
select {
case <-done:
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case <-time.After(time.Duration(app.cfg.Replication.WaitSyncTime) * time.Millisecond):
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log.Info("replication wait timeout")
}
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stopTime := time.Now()
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app.info.Replication.PubLogAckNum.Add(1)
app.info.Replication.PubLogTotalAckTime.Add(stopTime.Sub(startTime))
}