peer_server.go 23 KB

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  1. package server
  2. import (
  3. "bytes"
  4. "encoding/json"
  5. "fmt"
  6. "io/ioutil"
  7. "math/rand"
  8. "net/http"
  9. "net/url"
  10. "sort"
  11. "strconv"
  12. "sync"
  13. "time"
  14. "github.com/coreos/etcd/third_party/github.com/goraft/raft"
  15. "github.com/coreos/etcd/third_party/github.com/gorilla/mux"
  16. "github.com/coreos/etcd/discovery"
  17. etcdErr "github.com/coreos/etcd/error"
  18. "github.com/coreos/etcd/log"
  19. "github.com/coreos/etcd/metrics"
  20. "github.com/coreos/etcd/pkg/btrfs"
  21. "github.com/coreos/etcd/store"
  22. )
  23. const (
  24. // ThresholdMonitorTimeout is the time between log notifications that the
  25. // Raft heartbeat is too close to the election timeout.
  26. ThresholdMonitorTimeout = 5 * time.Second
  27. // ActiveMonitorTimeout is the time between checks on the active size of
  28. // the cluster. If the active size is different than the actual size then
  29. // etcd attempts to promote/demote to bring it to the correct number.
  30. ActiveMonitorTimeout = 1 * time.Second
  31. // PeerActivityMonitorTimeout is the time between checks for dead nodes in
  32. // the cluster.
  33. PeerActivityMonitorTimeout = 1 * time.Second
  34. )
  35. const (
  36. peerModeFlag = 0
  37. standbyModeFlag = 1
  38. )
  39. type PeerServerConfig struct {
  40. Name string
  41. Scheme string
  42. URL string
  43. SnapshotCount int
  44. RetryTimes int
  45. RetryInterval float64
  46. }
  47. type PeerServer struct {
  48. Config PeerServerConfig
  49. clusterConfig *ClusterConfig
  50. raftServer raft.Server
  51. server *Server
  52. joinIndex uint64
  53. followersStats *raftFollowersStats
  54. serverStats *raftServerStats
  55. registry *Registry
  56. store store.Store
  57. snapConf *snapshotConf
  58. mode Mode
  59. closeChan chan bool
  60. timeoutThresholdChan chan interface{}
  61. standbyPeerURL string
  62. standbyClientURL string
  63. metrics *metrics.Bucket
  64. sync.Mutex
  65. }
  66. // TODO: find a good policy to do snapshot
  67. type snapshotConf struct {
  68. // Etcd will check if snapshot is need every checkingInterval
  69. checkingInterval time.Duration
  70. // The index when the last snapshot happened
  71. lastIndex uint64
  72. // If the incremental number of index since the last snapshot
  73. // exceeds the snapshot Threshold, etcd will do a snapshot
  74. snapshotThr uint64
  75. }
  76. func NewPeerServer(psConfig PeerServerConfig, registry *Registry, store store.Store, mb *metrics.Bucket, followersStats *raftFollowersStats, serverStats *raftServerStats) *PeerServer {
  77. s := &PeerServer{
  78. Config: psConfig,
  79. clusterConfig: NewClusterConfig(),
  80. registry: registry,
  81. store: store,
  82. followersStats: followersStats,
  83. serverStats: serverStats,
  84. timeoutThresholdChan: make(chan interface{}, 1),
  85. metrics: mb,
  86. }
  87. return s
  88. }
  89. func (s *PeerServer) SetRaftServer(raftServer raft.Server) {
  90. s.snapConf = &snapshotConf{
  91. checkingInterval: time.Second * 3,
  92. // this is not accurate, we will update raft to provide an api
  93. lastIndex: raftServer.CommitIndex(),
  94. snapshotThr: uint64(s.Config.SnapshotCount),
  95. }
  96. raftServer.AddEventListener(raft.StateChangeEventType, s.raftEventLogger)
  97. raftServer.AddEventListener(raft.LeaderChangeEventType, s.raftEventLogger)
  98. raftServer.AddEventListener(raft.TermChangeEventType, s.raftEventLogger)
  99. raftServer.AddEventListener(raft.AddPeerEventType, s.raftEventLogger)
  100. raftServer.AddEventListener(raft.RemovePeerEventType, s.raftEventLogger)
  101. raftServer.AddEventListener(raft.HeartbeatIntervalEventType, s.raftEventLogger)
  102. raftServer.AddEventListener(raft.ElectionTimeoutThresholdEventType, s.raftEventLogger)
  103. raftServer.AddEventListener(raft.HeartbeatEventType, s.recordMetricEvent)
  104. s.raftServer = raftServer
  105. }
  106. // Mode retrieves the current mode of the server.
  107. func (s *PeerServer) Mode() Mode {
  108. return s.mode
  109. }
  110. // SetMode updates the current mode of the server.
  111. // Switching to a peer mode will start the Raft server.
  112. // Switching to a standby mode will stop the Raft server.
  113. func (s *PeerServer) setMode(mode Mode) {
  114. s.mode = mode
  115. switch mode {
  116. case PeerMode:
  117. if !s.raftServer.Running() {
  118. s.raftServer.Start()
  119. }
  120. case StandbyMode:
  121. if s.raftServer.Running() {
  122. s.raftServer.Stop()
  123. }
  124. }
  125. }
  126. // ClusterConfig retrieves the current cluster configuration.
  127. func (s *PeerServer) ClusterConfig() *ClusterConfig {
  128. return s.clusterConfig
  129. }
  130. // SetClusterConfig updates the current cluster configuration.
  131. // Adjusting the active size will cause the PeerServer to demote peers or
  132. // promote standbys to match the new size.
  133. func (s *PeerServer) SetClusterConfig(c *ClusterConfig) {
  134. // Set minimums.
  135. if c.ActiveSize < MinActiveSize {
  136. c.ActiveSize = MinActiveSize
  137. }
  138. if c.PromoteDelay < MinPromoteDelay {
  139. c.PromoteDelay = MinPromoteDelay
  140. }
  141. s.clusterConfig = c
  142. }
  143. // Try all possible ways to find clusters to join
  144. // Include log data in -data-dir, -discovery and -peers
  145. //
  146. // Peer discovery follows this order:
  147. // 1. previous peers in -data-dir
  148. // 2. -discovery
  149. // 3. -peers
  150. //
  151. // TODO(yichengq): RaftServer should be started as late as possible.
  152. // Current implementation to start it is not that good,
  153. // and should be refactored later.
  154. func (s *PeerServer) findCluster(discoverURL string, peers []string) {
  155. name := s.Config.Name
  156. isNewNode := s.raftServer.IsLogEmpty()
  157. // Try its best to find possible peers, and connect with them.
  158. if !isNewNode {
  159. // Take old nodes into account.
  160. allPeers := s.getKnownPeers()
  161. // Discover registered peers.
  162. // TODO(yichengq): It may mess up discoverURL if this is
  163. // set wrong by mistake. This may need to refactor discovery
  164. // module. Fix it later.
  165. if discoverURL != "" {
  166. discoverPeers, _ := s.handleDiscovery(discoverURL)
  167. allPeers = append(allPeers, discoverPeers...)
  168. }
  169. allPeers = append(allPeers, peers...)
  170. allPeers = s.removeSelfFromList(allPeers)
  171. // If there is possible peer list, use it to find cluster.
  172. if len(allPeers) > 0 {
  173. // TODO(yichengq): joinCluster may fail if there's no leader for
  174. // current cluster. It should wait if the cluster is under
  175. // leader election, or the node with changed IP cannot join
  176. // the cluster then.
  177. if err := s.startAsFollower(allPeers, 1); err == nil {
  178. log.Debugf("%s joins to the previous cluster %v", name, allPeers)
  179. return
  180. }
  181. log.Warnf("%s cannot connect to previous cluster %v", name, allPeers)
  182. }
  183. // TODO(yichengq): Think about the action that should be done
  184. // if it cannot connect any of the previous known node.
  185. s.raftServer.Start()
  186. log.Debugf("%s is restarting the cluster %v", name, allPeers)
  187. return
  188. }
  189. // Attempt cluster discovery
  190. if discoverURL != "" {
  191. discoverPeers, discoverErr := s.handleDiscovery(discoverURL)
  192. // It is registered in discover url
  193. if discoverErr == nil {
  194. // start as a leader in a new cluster
  195. if len(discoverPeers) == 0 {
  196. log.Debugf("%s is starting a new cluster via discover service", name)
  197. s.startAsLeader()
  198. } else {
  199. log.Debugf("%s is joining a cluster %v via discover service", name, discoverPeers)
  200. if err := s.startAsFollower(discoverPeers, s.Config.RetryTimes); err != nil {
  201. log.Fatal(err)
  202. }
  203. }
  204. return
  205. }
  206. log.Warnf("%s failed to connect discovery service[%v]: %v", name, discoverURL, discoverErr)
  207. if len(peers) == 0 {
  208. log.Fatalf("%s, the new leader, must register itself to discovery service as required", name)
  209. }
  210. }
  211. if len(peers) > 0 {
  212. if err := s.startAsFollower(peers, s.Config.RetryTimes); err != nil {
  213. log.Fatalf("%s cannot connect to existing cluster %v", name, peers)
  214. }
  215. return
  216. }
  217. log.Infof("%s is starting a new cluster.", s.Config.Name)
  218. s.startAsLeader()
  219. return
  220. }
  221. // Start the raft server
  222. func (s *PeerServer) Start(snapshot bool, discoverURL string, peers []string) error {
  223. s.Lock()
  224. defer s.Unlock()
  225. // LoadSnapshot
  226. if snapshot {
  227. err := s.raftServer.LoadSnapshot()
  228. if err == nil {
  229. log.Debugf("%s finished load snapshot", s.Config.Name)
  230. } else {
  231. log.Debug(err)
  232. }
  233. }
  234. s.raftServer.Init()
  235. // Set NOCOW for data directory in btrfs
  236. if btrfs.IsBtrfs(s.raftServer.LogPath()) {
  237. if err := btrfs.SetNOCOWFile(s.raftServer.LogPath()); err != nil {
  238. log.Warnf("Failed setting NOCOW: %v", err)
  239. }
  240. }
  241. s.findCluster(discoverURL, peers)
  242. s.closeChan = make(chan bool)
  243. go s.monitorSync()
  244. go s.monitorTimeoutThreshold(s.closeChan)
  245. go s.monitorActiveSize(s.closeChan)
  246. go s.monitorPeerActivity(s.closeChan)
  247. // open the snapshot
  248. if snapshot {
  249. go s.monitorSnapshot()
  250. }
  251. return nil
  252. }
  253. func (s *PeerServer) Stop() {
  254. s.Lock()
  255. defer s.Unlock()
  256. if s.closeChan != nil {
  257. close(s.closeChan)
  258. s.closeChan = nil
  259. }
  260. s.raftServer.Stop()
  261. }
  262. func (s *PeerServer) HTTPHandler() http.Handler {
  263. router := mux.NewRouter()
  264. // internal commands
  265. router.HandleFunc("/name", s.NameHttpHandler)
  266. router.HandleFunc("/version", s.VersionHttpHandler)
  267. router.HandleFunc("/version/{version:[0-9]+}/check", s.VersionCheckHttpHandler)
  268. router.HandleFunc("/upgrade", s.UpgradeHttpHandler)
  269. router.HandleFunc("/join", s.JoinHttpHandler)
  270. router.HandleFunc("/promote", s.PromoteHttpHandler).Methods("POST")
  271. router.HandleFunc("/remove/{name:.+}", s.RemoveHttpHandler)
  272. router.HandleFunc("/vote", s.VoteHttpHandler)
  273. router.HandleFunc("/log", s.GetLogHttpHandler)
  274. router.HandleFunc("/log/append", s.AppendEntriesHttpHandler)
  275. router.HandleFunc("/snapshot", s.SnapshotHttpHandler)
  276. router.HandleFunc("/snapshotRecovery", s.SnapshotRecoveryHttpHandler)
  277. router.HandleFunc("/etcdURL", s.EtcdURLHttpHandler)
  278. router.HandleFunc("/v2/admin/config", s.getClusterConfigHttpHandler).Methods("GET")
  279. router.HandleFunc("/v2/admin/config", s.setClusterConfigHttpHandler).Methods("PUT")
  280. router.HandleFunc("/v2/admin/machines", s.getMachinesHttpHandler).Methods("GET")
  281. router.HandleFunc("/v2/admin/machines/{name}", s.getMachineHttpHandler).Methods("GET")
  282. router.HandleFunc("/v2/admin/machines/{name}", s.addMachineHttpHandler).Methods("PUT")
  283. router.HandleFunc("/v2/admin/machines/{name}", s.removeMachineHttpHandler).Methods("DELETE")
  284. return router
  285. }
  286. // Retrieves the underlying Raft server.
  287. func (s *PeerServer) RaftServer() raft.Server {
  288. return s.raftServer
  289. }
  290. // Associates the client server with the peer server.
  291. func (s *PeerServer) SetServer(server *Server) {
  292. s.server = server
  293. }
  294. func (s *PeerServer) startAsLeader() {
  295. s.raftServer.Start()
  296. // leader need to join self as a peer
  297. for {
  298. c := &JoinCommandV1{
  299. MinVersion: store.MinVersion(),
  300. MaxVersion: store.MaxVersion(),
  301. Name: s.raftServer.Name(),
  302. RaftURL: s.Config.URL,
  303. EtcdURL: s.server.URL(),
  304. }
  305. _, err := s.raftServer.Do(c)
  306. if err == nil {
  307. break
  308. }
  309. }
  310. log.Debugf("%s start as a leader", s.Config.Name)
  311. }
  312. func (s *PeerServer) startAsFollower(cluster []string, retryTimes int) error {
  313. // start as a follower in a existing cluster
  314. for i := 0; ; i++ {
  315. ok := s.joinCluster(cluster)
  316. if ok {
  317. break
  318. }
  319. if i == retryTimes-1 {
  320. return fmt.Errorf("Cannot join the cluster via given peers after %x retries", s.Config.RetryTimes)
  321. }
  322. log.Warnf("%v is unable to join the cluster using any of the peers %v at %dth time. Retrying in %.1f seconds", s.Config.Name, cluster, i, s.Config.RetryInterval)
  323. time.Sleep(time.Second * time.Duration(s.Config.RetryInterval))
  324. }
  325. s.raftServer.Start()
  326. return nil
  327. }
  328. // getVersion fetches the peer version of a cluster.
  329. func getVersion(t *transporter, versionURL url.URL) (int, error) {
  330. resp, _, err := t.Get(versionURL.String())
  331. if err != nil {
  332. return 0, err
  333. }
  334. defer resp.Body.Close()
  335. body, err := ioutil.ReadAll(resp.Body)
  336. if err != nil {
  337. return 0, err
  338. }
  339. // Parse version number.
  340. version, _ := strconv.Atoi(string(body))
  341. return version, nil
  342. }
  343. // Upgradable checks whether all peers in a cluster support an upgrade to the next store version.
  344. func (s *PeerServer) Upgradable() error {
  345. nextVersion := s.store.Version() + 1
  346. for _, peerURL := range s.registry.PeerURLs(s.raftServer.Leader(), s.Config.Name) {
  347. u, err := url.Parse(peerURL)
  348. if err != nil {
  349. return fmt.Errorf("PeerServer: Cannot parse URL: '%s' (%s)", peerURL, err)
  350. }
  351. t, _ := s.raftServer.Transporter().(*transporter)
  352. checkURL := (&url.URL{Host: u.Host, Scheme: s.Config.Scheme, Path: fmt.Sprintf("/version/%d/check", nextVersion)}).String()
  353. resp, _, err := t.Get(checkURL)
  354. if err != nil {
  355. return fmt.Errorf("PeerServer: Cannot check version compatibility: %s", u.Host)
  356. }
  357. if resp.StatusCode != 200 {
  358. return fmt.Errorf("PeerServer: Version %d is not compatible with peer: %s", nextVersion, u.Host)
  359. }
  360. }
  361. return nil
  362. }
  363. // Helper function to do discovery and return results in expected format
  364. func (s *PeerServer) handleDiscovery(discoverURL string) (peers []string, err error) {
  365. peers, err = discovery.Do(discoverURL, s.Config.Name, s.Config.URL)
  366. // Warn about errors coming from discovery, this isn't fatal
  367. // since the user might have provided a peer list elsewhere,
  368. // or there is some log in data dir.
  369. if err != nil {
  370. log.Warnf("Discovery encountered an error: %v", err)
  371. return
  372. }
  373. for i := range peers {
  374. // Strip the scheme off of the peer if it has one
  375. // TODO(bp): clean this up!
  376. purl, err := url.Parse(peers[i])
  377. if err == nil {
  378. peers[i] = purl.Host
  379. }
  380. }
  381. log.Infof("Discovery fetched back peer list: %v", peers)
  382. return
  383. }
  384. // getKnownPeers gets the previous peers from log
  385. func (s *PeerServer) getKnownPeers() []string {
  386. peers := s.registry.PeerURLs(s.raftServer.Leader(), s.Config.Name)
  387. for i := range peers {
  388. u, err := url.Parse(peers[i])
  389. if err != nil {
  390. log.Debug("getPrevPeers cannot parse url %v", peers[i])
  391. }
  392. peers[i] = u.Host
  393. }
  394. return peers
  395. }
  396. // removeSelfFromList removes url of the peerServer from the peer list
  397. func (s *PeerServer) removeSelfFromList(peers []string) []string {
  398. // Remove its own peer address from the peer list to join
  399. u, err := url.Parse(s.Config.URL)
  400. if err != nil {
  401. log.Fatalf("removeSelfFromList cannot parse peer address %v", s.Config.URL)
  402. }
  403. newPeers := make([]string, 0)
  404. for _, v := range peers {
  405. if v != u.Host {
  406. newPeers = append(newPeers, v)
  407. }
  408. }
  409. return newPeers
  410. }
  411. func (s *PeerServer) joinCluster(cluster []string) bool {
  412. for _, peer := range cluster {
  413. if len(peer) == 0 {
  414. continue
  415. }
  416. err := s.joinByPeer(s.raftServer, peer, s.Config.Scheme)
  417. if err == nil {
  418. log.Debugf("%s joined the cluster via peer %s", s.Config.Name, peer)
  419. return true
  420. }
  421. if _, ok := err.(etcdErr.Error); ok {
  422. log.Fatal(err)
  423. }
  424. log.Warnf("Attempt to join via %s failed: %s", peer, err)
  425. }
  426. return false
  427. }
  428. // Send join requests to peer.
  429. func (s *PeerServer) joinByPeer(server raft.Server, peer string, scheme string) error {
  430. // t must be ok
  431. t, _ := server.Transporter().(*transporter)
  432. // Our version must match the leaders version
  433. versionURL := url.URL{Host: peer, Scheme: scheme, Path: "/version"}
  434. version, err := getVersion(t, versionURL)
  435. if err != nil {
  436. return fmt.Errorf("Error during join version check: %v", err)
  437. }
  438. if version < store.MinVersion() || version > store.MaxVersion() {
  439. return fmt.Errorf("Unable to join: cluster version is %d; version compatibility is %d - %d", version, store.MinVersion(), store.MaxVersion())
  440. }
  441. var b bytes.Buffer
  442. c := &JoinCommandV2{
  443. MinVersion: store.MinVersion(),
  444. MaxVersion: store.MaxVersion(),
  445. Name: server.Name(),
  446. PeerURL: s.Config.URL,
  447. ClientURL: s.server.URL(),
  448. }
  449. json.NewEncoder(&b).Encode(c)
  450. joinURL := url.URL{Host: peer, Scheme: scheme, Path: "/v2/admin/machines/" + server.Name()}
  451. log.Infof("Send Join Request to %s", joinURL.String())
  452. req, _ := http.NewRequest("PUT", joinURL.String(), &b)
  453. resp, err := t.client.Do(req)
  454. for {
  455. if err != nil {
  456. return fmt.Errorf("Unable to join: %v", err)
  457. }
  458. if resp != nil {
  459. defer resp.Body.Close()
  460. log.Infof("»»»» %d", resp.StatusCode)
  461. if resp.StatusCode == http.StatusOK {
  462. var msg joinMessageV2
  463. if err := json.NewDecoder(resp.Body).Decode(&msg); err != nil {
  464. log.Debugf("Error reading join response: %v", err)
  465. return err
  466. }
  467. s.joinIndex = msg.CommitIndex
  468. s.setMode(msg.Mode)
  469. if msg.Mode == StandbyMode {
  470. s.standbyClientURL = resp.Header.Get("X-Leader-Client-URL")
  471. s.standbyPeerURL = resp.Header.Get("X-Leader-Peer-URL")
  472. }
  473. return nil
  474. }
  475. if resp.StatusCode == http.StatusTemporaryRedirect {
  476. address := resp.Header.Get("Location")
  477. log.Debugf("Send Join Request to %s", address)
  478. c := &JoinCommandV2{
  479. MinVersion: store.MinVersion(),
  480. MaxVersion: store.MaxVersion(),
  481. Name: server.Name(),
  482. PeerURL: s.Config.URL,
  483. ClientURL: s.server.URL(),
  484. }
  485. json.NewEncoder(&b).Encode(c)
  486. resp, _, err = t.Put(address, &b)
  487. } else if resp.StatusCode == http.StatusBadRequest {
  488. log.Debug("Reach max number peers in the cluster")
  489. decoder := json.NewDecoder(resp.Body)
  490. err := &etcdErr.Error{}
  491. decoder.Decode(err)
  492. return *err
  493. } else {
  494. return fmt.Errorf("Unable to join")
  495. }
  496. }
  497. }
  498. }
  499. func (s *PeerServer) Stats() []byte {
  500. s.serverStats.LeaderInfo.Uptime = time.Now().Sub(s.serverStats.LeaderInfo.startTime).String()
  501. // TODO: register state listener to raft to change this field
  502. // rather than compare the state each time Stats() is called.
  503. if s.RaftServer().State() == raft.Leader {
  504. s.serverStats.LeaderInfo.Name = s.RaftServer().Name()
  505. }
  506. queue := s.serverStats.sendRateQueue
  507. s.serverStats.SendingPkgRate, s.serverStats.SendingBandwidthRate = queue.Rate()
  508. queue = s.serverStats.recvRateQueue
  509. s.serverStats.RecvingPkgRate, s.serverStats.RecvingBandwidthRate = queue.Rate()
  510. b, _ := json.Marshal(s.serverStats)
  511. return b
  512. }
  513. func (s *PeerServer) PeerStats() []byte {
  514. if s.raftServer.State() == raft.Leader {
  515. b, _ := json.Marshal(s.followersStats)
  516. return b
  517. }
  518. return nil
  519. }
  520. // raftEventLogger converts events from the Raft server into log messages.
  521. func (s *PeerServer) raftEventLogger(event raft.Event) {
  522. value := event.Value()
  523. prevValue := event.PrevValue()
  524. if value == nil {
  525. value = "<nil>"
  526. }
  527. if prevValue == nil {
  528. prevValue = "<nil>"
  529. }
  530. switch event.Type() {
  531. case raft.StateChangeEventType:
  532. log.Infof("%s: state changed from '%v' to '%v'.", s.Config.Name, prevValue, value)
  533. case raft.TermChangeEventType:
  534. log.Infof("%s: term #%v started.", s.Config.Name, value)
  535. case raft.LeaderChangeEventType:
  536. log.Infof("%s: leader changed from '%v' to '%v'.", s.Config.Name, prevValue, value)
  537. case raft.AddPeerEventType:
  538. log.Infof("%s: peer added: '%v'", s.Config.Name, value)
  539. case raft.RemovePeerEventType:
  540. log.Infof("%s: peer removed: '%v'", s.Config.Name, value)
  541. case raft.HeartbeatIntervalEventType:
  542. var name = "<unknown>"
  543. if peer, ok := value.(*raft.Peer); ok {
  544. name = peer.Name
  545. }
  546. log.Infof("%s: warning: heartbeat timed out: '%v'", s.Config.Name, name)
  547. case raft.ElectionTimeoutThresholdEventType:
  548. select {
  549. case s.timeoutThresholdChan <- value:
  550. default:
  551. }
  552. }
  553. }
  554. func (s *PeerServer) recordMetricEvent(event raft.Event) {
  555. name := fmt.Sprintf("raft.event.%s", event.Type())
  556. value := event.Value().(time.Duration)
  557. (*s.metrics).Timer(name).Update(value)
  558. }
  559. // logSnapshot logs about the snapshot that was taken.
  560. func (s *PeerServer) logSnapshot(err error, currentIndex, count uint64) {
  561. info := fmt.Sprintf("%s: snapshot of %d events at index %d", s.Config.Name, count, currentIndex)
  562. if err != nil {
  563. log.Infof("%s attempted and failed: %v", info, err)
  564. } else {
  565. log.Infof("%s completed", info)
  566. }
  567. }
  568. func (s *PeerServer) monitorSnapshot() {
  569. for {
  570. time.Sleep(s.snapConf.checkingInterval)
  571. currentIndex := s.RaftServer().CommitIndex()
  572. count := currentIndex - s.snapConf.lastIndex
  573. if uint64(count) > s.snapConf.snapshotThr {
  574. err := s.raftServer.TakeSnapshot()
  575. s.logSnapshot(err, currentIndex, count)
  576. s.snapConf.lastIndex = currentIndex
  577. }
  578. }
  579. }
  580. func (s *PeerServer) monitorSync() {
  581. ticker := time.Tick(time.Millisecond * 500)
  582. for {
  583. select {
  584. case now := <-ticker:
  585. if s.raftServer.State() == raft.Leader {
  586. s.raftServer.Do(s.store.CommandFactory().CreateSyncCommand(now))
  587. }
  588. }
  589. }
  590. }
  591. // monitorTimeoutThreshold groups timeout threshold events together and prints
  592. // them as a single log line.
  593. func (s *PeerServer) monitorTimeoutThreshold(closeChan chan bool) {
  594. for {
  595. select {
  596. case value := <-s.timeoutThresholdChan:
  597. log.Infof("%s: warning: heartbeat near election timeout: %v", s.Config.Name, value)
  598. case <-closeChan:
  599. return
  600. }
  601. time.Sleep(ThresholdMonitorTimeout)
  602. }
  603. }
  604. // monitorActiveSize has the leader periodically check the status of cluster
  605. // nodes and swaps them out for standbys as needed.
  606. func (s *PeerServer) monitorActiveSize(closeChan chan bool) {
  607. for {
  608. select {
  609. case <-time.After(ActiveMonitorTimeout):
  610. case <-closeChan:
  611. return
  612. }
  613. // Ignore while this peer is not a leader.
  614. if s.raftServer.State() != raft.Leader {
  615. continue
  616. }
  617. // Retrieve target active size and actual active size.
  618. activeSize := s.ClusterConfig().ActiveSize
  619. peerCount := s.registry.PeerCount()
  620. standbys := s.registry.Standbys()
  621. peers := s.registry.Peers()
  622. if index := sort.SearchStrings(peers, s.Config.Name); index < len(peers) && peers[index] == s.Config.Name {
  623. peers = append(peers[:index], peers[index+1:]...)
  624. }
  625. // If we have more active nodes than we should then demote.
  626. if peerCount > activeSize {
  627. peer := peers[rand.Intn(len(peers))]
  628. log.Infof("%s: demoting: %v", s.Config.Name, peer)
  629. if _, err := s.raftServer.Do(&DemoteCommand{Name: peer}); err != nil {
  630. log.Infof("%s: warning: demotion error: %v", s.Config.Name, err)
  631. }
  632. continue
  633. }
  634. // If we don't have enough active nodes then try to promote a standby.
  635. if peerCount < activeSize && len(standbys) > 0 {
  636. loop:
  637. for _, i := range rand.Perm(len(standbys)) {
  638. standby := standbys[i]
  639. standbyPeerURL, _ := s.registry.StandbyPeerURL(standby)
  640. log.Infof("%s: attempting to promote: %v (%s)", s.Config.Name, standby, standbyPeerURL)
  641. // Notify standby to promote itself.
  642. client := &http.Client{
  643. Transport: &http.Transport{
  644. DisableKeepAlives: false,
  645. ResponseHeaderTimeout: ActiveMonitorTimeout,
  646. },
  647. }
  648. resp, err := client.Post(fmt.Sprintf("%s/promote", standbyPeerURL), "application/json", nil)
  649. if err != nil {
  650. log.Infof("%s: warning: promotion error: %v", s.Config.Name, err)
  651. continue
  652. } else if resp.StatusCode != http.StatusOK {
  653. log.Infof("%s: warning: promotion failure: %v", s.Config.Name, resp.StatusCode)
  654. continue
  655. }
  656. break loop
  657. }
  658. }
  659. }
  660. }
  661. // monitorPeerActivity has the leader periodically for dead nodes and demotes them.
  662. func (s *PeerServer) monitorPeerActivity(closeChan chan bool) {
  663. for {
  664. select {
  665. case <-time.After(PeerActivityMonitorTimeout):
  666. case <-closeChan:
  667. return
  668. }
  669. // Ignore while this peer is not a leader.
  670. if s.raftServer.State() != raft.Leader {
  671. continue
  672. }
  673. // Check last activity for all peers.
  674. now := time.Now()
  675. promoteDelay := time.Duration(s.ClusterConfig().PromoteDelay) * time.Second
  676. peers := s.raftServer.Peers()
  677. for _, peer := range peers {
  678. // If the last response from the peer is longer than the promote delay
  679. // then automatically demote the peer.
  680. if !peer.LastActivity().IsZero() && now.Sub(peer.LastActivity()) > promoteDelay {
  681. log.Infof("%s: demoting node: %v; last activity %v ago", s.Config.Name, peer.Name, now.Sub(peer.LastActivity()))
  682. if _, err := s.raftServer.Do(&DemoteCommand{Name: peer.Name}); err != nil {
  683. log.Infof("%s: warning: autodemotion error: %v", s.Config.Name, err)
  684. }
  685. continue
  686. }
  687. }
  688. }
  689. }
  690. // Mode represents whether the server is an active peer or if the server is
  691. // simply acting as a standby.
  692. type Mode string
  693. const (
  694. // PeerMode is when the server is an active node in Raft.
  695. PeerMode = Mode("peer")
  696. // StandbyMode is when the server is an inactive, request-forwarding node.
  697. StandbyMode = Mode("standby")
  698. )