cluster.go 16 KB

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  1. package networkdb
  2. import (
  3. "bytes"
  4. "crypto/rand"
  5. "encoding/hex"
  6. "fmt"
  7. "log"
  8. "math/big"
  9. rnd "math/rand"
  10. "net"
  11. "strings"
  12. "time"
  13. "github.com/Sirupsen/logrus"
  14. "github.com/hashicorp/memberlist"
  15. )
  16. const (
  17. reapInterval = 30 * time.Minute
  18. reapPeriod = 5 * time.Second
  19. retryInterval = 1 * time.Second
  20. nodeReapInterval = 24 * time.Hour
  21. nodeReapPeriod = 2 * time.Hour
  22. )
  23. type logWriter struct{}
  24. func (l *logWriter) Write(p []byte) (int, error) {
  25. str := string(p)
  26. str = strings.TrimSuffix(str, "\n")
  27. switch {
  28. case strings.HasPrefix(str, "[WARN] "):
  29. str = strings.TrimPrefix(str, "[WARN] ")
  30. logrus.Warn(str)
  31. case strings.HasPrefix(str, "[DEBUG] "):
  32. str = strings.TrimPrefix(str, "[DEBUG] ")
  33. logrus.Debug(str)
  34. case strings.HasPrefix(str, "[INFO] "):
  35. str = strings.TrimPrefix(str, "[INFO] ")
  36. logrus.Info(str)
  37. case strings.HasPrefix(str, "[ERR] "):
  38. str = strings.TrimPrefix(str, "[ERR] ")
  39. logrus.Warn(str)
  40. }
  41. return len(p), nil
  42. }
  43. // SetKey adds a new key to the key ring
  44. func (nDB *NetworkDB) SetKey(key []byte) {
  45. logrus.Debugf("Adding key %s", hex.EncodeToString(key)[0:5])
  46. nDB.Lock()
  47. defer nDB.Unlock()
  48. for _, dbKey := range nDB.config.Keys {
  49. if bytes.Equal(key, dbKey) {
  50. return
  51. }
  52. }
  53. nDB.config.Keys = append(nDB.config.Keys, key)
  54. if nDB.keyring != nil {
  55. nDB.keyring.AddKey(key)
  56. }
  57. }
  58. // SetPrimaryKey sets the given key as the primary key. This should have
  59. // been added apriori through SetKey
  60. func (nDB *NetworkDB) SetPrimaryKey(key []byte) {
  61. logrus.Debugf("Primary Key %s", hex.EncodeToString(key)[0:5])
  62. nDB.RLock()
  63. defer nDB.RUnlock()
  64. for _, dbKey := range nDB.config.Keys {
  65. if bytes.Equal(key, dbKey) {
  66. if nDB.keyring != nil {
  67. nDB.keyring.UseKey(dbKey)
  68. }
  69. break
  70. }
  71. }
  72. }
  73. // RemoveKey removes a key from the key ring. The key being removed
  74. // can't be the primary key
  75. func (nDB *NetworkDB) RemoveKey(key []byte) {
  76. logrus.Debugf("Remove Key %s", hex.EncodeToString(key)[0:5])
  77. nDB.Lock()
  78. defer nDB.Unlock()
  79. for i, dbKey := range nDB.config.Keys {
  80. if bytes.Equal(key, dbKey) {
  81. nDB.config.Keys = append(nDB.config.Keys[:i], nDB.config.Keys[i+1:]...)
  82. if nDB.keyring != nil {
  83. nDB.keyring.RemoveKey(dbKey)
  84. }
  85. break
  86. }
  87. }
  88. }
  89. func (nDB *NetworkDB) clusterInit() error {
  90. nDB.lastStatsTimestamp = time.Now()
  91. nDB.lastHealthTimestamp = nDB.lastStatsTimestamp
  92. config := memberlist.DefaultLANConfig()
  93. config.Name = nDB.config.NodeName
  94. config.BindAddr = nDB.config.BindAddr
  95. config.AdvertiseAddr = nDB.config.AdvertiseAddr
  96. config.UDPBufferSize = nDB.config.PacketBufferSize
  97. if nDB.config.BindPort != 0 {
  98. config.BindPort = nDB.config.BindPort
  99. }
  100. config.ProtocolVersion = memberlist.ProtocolVersion2Compatible
  101. config.Delegate = &delegate{nDB: nDB}
  102. config.Events = &eventDelegate{nDB: nDB}
  103. // custom logger that does not add time or date, so they are not
  104. // duplicated by logrus
  105. config.Logger = log.New(&logWriter{}, "", 0)
  106. var err error
  107. if len(nDB.config.Keys) > 0 {
  108. for i, key := range nDB.config.Keys {
  109. logrus.Debugf("Encryption key %d: %s", i+1, hex.EncodeToString(key)[0:5])
  110. }
  111. nDB.keyring, err = memberlist.NewKeyring(nDB.config.Keys, nDB.config.Keys[0])
  112. if err != nil {
  113. return err
  114. }
  115. config.Keyring = nDB.keyring
  116. }
  117. nDB.networkBroadcasts = &memberlist.TransmitLimitedQueue{
  118. NumNodes: func() int {
  119. nDB.RLock()
  120. num := len(nDB.nodes)
  121. nDB.RUnlock()
  122. return num
  123. },
  124. RetransmitMult: config.RetransmitMult,
  125. }
  126. nDB.nodeBroadcasts = &memberlist.TransmitLimitedQueue{
  127. NumNodes: func() int {
  128. nDB.RLock()
  129. num := len(nDB.nodes)
  130. nDB.RUnlock()
  131. return num
  132. },
  133. RetransmitMult: config.RetransmitMult,
  134. }
  135. mlist, err := memberlist.Create(config)
  136. if err != nil {
  137. return fmt.Errorf("failed to create memberlist: %v", err)
  138. }
  139. nDB.stopCh = make(chan struct{})
  140. nDB.memberlist = mlist
  141. for _, trigger := range []struct {
  142. interval time.Duration
  143. fn func()
  144. }{
  145. {reapPeriod, nDB.reapState},
  146. {config.GossipInterval, nDB.gossip},
  147. {config.PushPullInterval, nDB.bulkSyncTables},
  148. {retryInterval, nDB.reconnectNode},
  149. {nodeReapPeriod, nDB.reapDeadNode},
  150. } {
  151. t := time.NewTicker(trigger.interval)
  152. go nDB.triggerFunc(trigger.interval, t.C, nDB.stopCh, trigger.fn)
  153. nDB.tickers = append(nDB.tickers, t)
  154. }
  155. return nil
  156. }
  157. func (nDB *NetworkDB) retryJoin(members []string, stop <-chan struct{}) {
  158. t := time.NewTicker(retryInterval)
  159. defer t.Stop()
  160. for {
  161. select {
  162. case <-t.C:
  163. if _, err := nDB.memberlist.Join(members); err != nil {
  164. logrus.Errorf("Failed to join memberlist %s on retry: %v", members, err)
  165. continue
  166. }
  167. if err := nDB.sendNodeEvent(NodeEventTypeJoin); err != nil {
  168. logrus.Errorf("failed to send node join on retry: %v", err)
  169. continue
  170. }
  171. return
  172. case <-stop:
  173. return
  174. }
  175. }
  176. }
  177. func (nDB *NetworkDB) clusterJoin(members []string) error {
  178. mlist := nDB.memberlist
  179. if _, err := mlist.Join(members); err != nil {
  180. // In case of failure, keep retrying join until it succeeds or the cluster is shutdown.
  181. go nDB.retryJoin(members, nDB.stopCh)
  182. return fmt.Errorf("could not join node to memberlist: %v", err)
  183. }
  184. if err := nDB.sendNodeEvent(NodeEventTypeJoin); err != nil {
  185. return fmt.Errorf("failed to send node join: %v", err)
  186. }
  187. return nil
  188. }
  189. func (nDB *NetworkDB) clusterLeave() error {
  190. mlist := nDB.memberlist
  191. if err := nDB.sendNodeEvent(NodeEventTypeLeave); err != nil {
  192. logrus.Errorf("failed to send node leave: %v", err)
  193. }
  194. if err := mlist.Leave(time.Second); err != nil {
  195. return err
  196. }
  197. close(nDB.stopCh)
  198. for _, t := range nDB.tickers {
  199. t.Stop()
  200. }
  201. return mlist.Shutdown()
  202. }
  203. func (nDB *NetworkDB) triggerFunc(stagger time.Duration, C <-chan time.Time, stop <-chan struct{}, f func()) {
  204. // Use a random stagger to avoid syncronizing
  205. randStagger := time.Duration(uint64(rnd.Int63()) % uint64(stagger))
  206. select {
  207. case <-time.After(randStagger):
  208. case <-stop:
  209. return
  210. }
  211. for {
  212. select {
  213. case <-C:
  214. f()
  215. case <-stop:
  216. return
  217. }
  218. }
  219. }
  220. func (nDB *NetworkDB) reapDeadNode() {
  221. nDB.Lock()
  222. defer nDB.Unlock()
  223. for id, n := range nDB.failedNodes {
  224. if n.reapTime > 0 {
  225. n.reapTime -= nodeReapPeriod
  226. continue
  227. }
  228. logrus.Debugf("Removing failed node %v from gossip cluster", n.Name)
  229. delete(nDB.failedNodes, id)
  230. }
  231. }
  232. func (nDB *NetworkDB) reconnectNode() {
  233. nDB.RLock()
  234. if len(nDB.failedNodes) == 0 {
  235. nDB.RUnlock()
  236. return
  237. }
  238. nodes := make([]*node, 0, len(nDB.failedNodes))
  239. for _, n := range nDB.failedNodes {
  240. nodes = append(nodes, n)
  241. }
  242. nDB.RUnlock()
  243. node := nodes[randomOffset(len(nodes))]
  244. addr := net.UDPAddr{IP: node.Addr, Port: int(node.Port)}
  245. if _, err := nDB.memberlist.Join([]string{addr.String()}); err != nil {
  246. return
  247. }
  248. if err := nDB.sendNodeEvent(NodeEventTypeJoin); err != nil {
  249. return
  250. }
  251. // Update all the local table state to a new time to
  252. // force update on the node we are trying to rejoin, just in
  253. // case that node has these in deleting state still. This is
  254. // facilitate fast convergence after recovering from a gossip
  255. // failure.
  256. nDB.updateLocalTableTime()
  257. logrus.Debugf("Initiating bulk sync with node %s after reconnect", node.Name)
  258. nDB.bulkSync([]string{node.Name}, true)
  259. }
  260. // For timing the entry deletion in the repaer APIs that doesn't use monotonic clock
  261. // source (time.Now, Sub etc.) should be avoided. Hence we use reapTime in every
  262. // entry which is set initially to reapInterval and decremented by reapPeriod every time
  263. // the reaper runs. NOTE nDB.reapTableEntries updates the reapTime with a readlock. This
  264. // is safe as long as no other concurrent path touches the reapTime field.
  265. func (nDB *NetworkDB) reapState() {
  266. nDB.reapNetworks()
  267. nDB.reapTableEntries()
  268. }
  269. func (nDB *NetworkDB) reapNetworks() {
  270. nDB.Lock()
  271. for _, nn := range nDB.networks {
  272. for id, n := range nn {
  273. if n.leaving {
  274. if n.reapTime <= 0 {
  275. delete(nn, id)
  276. continue
  277. }
  278. n.reapTime -= reapPeriod
  279. }
  280. }
  281. }
  282. nDB.Unlock()
  283. }
  284. func (nDB *NetworkDB) reapTableEntries() {
  285. var paths []string
  286. nDB.RLock()
  287. nDB.indexes[byTable].Walk(func(path string, v interface{}) bool {
  288. entry, ok := v.(*entry)
  289. if !ok {
  290. return false
  291. }
  292. if !entry.deleting {
  293. return false
  294. }
  295. if entry.reapTime > 0 {
  296. entry.reapTime -= reapPeriod
  297. return false
  298. }
  299. paths = append(paths, path)
  300. return false
  301. })
  302. nDB.RUnlock()
  303. nDB.Lock()
  304. for _, path := range paths {
  305. params := strings.Split(path[1:], "/")
  306. tname := params[0]
  307. nid := params[1]
  308. key := params[2]
  309. if _, ok := nDB.indexes[byTable].Delete(fmt.Sprintf("/%s/%s/%s", tname, nid, key)); !ok {
  310. logrus.Errorf("Could not delete entry in table %s with network id %s and key %s as it does not exist", tname, nid, key)
  311. }
  312. if _, ok := nDB.indexes[byNetwork].Delete(fmt.Sprintf("/%s/%s/%s", nid, tname, key)); !ok {
  313. logrus.Errorf("Could not delete entry in network %s with table name %s and key %s as it does not exist", nid, tname, key)
  314. }
  315. }
  316. nDB.Unlock()
  317. }
  318. func (nDB *NetworkDB) gossip() {
  319. networkNodes := make(map[string][]string)
  320. nDB.RLock()
  321. thisNodeNetworks := nDB.networks[nDB.config.NodeName]
  322. for nid := range thisNodeNetworks {
  323. networkNodes[nid] = nDB.networkNodes[nid]
  324. }
  325. printStats := time.Since(nDB.lastStatsTimestamp) >= nDB.config.StatsPrintPeriod
  326. printHealth := time.Since(nDB.lastHealthTimestamp) >= nDB.config.HealthPrintPeriod
  327. nDB.RUnlock()
  328. if printHealth {
  329. healthScore := nDB.memberlist.GetHealthScore()
  330. if healthScore != 0 {
  331. logrus.Warnf("NetworkDB stats - healthscore:%d (connectivity issues)", healthScore)
  332. }
  333. nDB.lastHealthTimestamp = time.Now()
  334. }
  335. for nid, nodes := range networkNodes {
  336. mNodes := nDB.mRandomNodes(3, nodes)
  337. bytesAvail := nDB.config.PacketBufferSize - compoundHeaderOverhead
  338. nDB.RLock()
  339. network, ok := thisNodeNetworks[nid]
  340. nDB.RUnlock()
  341. if !ok || network == nil {
  342. // It is normal for the network to be removed
  343. // between the time we collect the network
  344. // attachments of this node and processing
  345. // them here.
  346. continue
  347. }
  348. broadcastQ := network.tableBroadcasts
  349. if broadcastQ == nil {
  350. logrus.Errorf("Invalid broadcastQ encountered while gossiping for network %s", nid)
  351. continue
  352. }
  353. msgs := broadcastQ.GetBroadcasts(compoundOverhead, bytesAvail)
  354. // Collect stats and print the queue info, note this code is here also to have a view of the queues empty
  355. network.qMessagesSent += len(msgs)
  356. if printStats {
  357. logrus.Infof("NetworkDB stats - Queue net:%s qLen:%d netPeers:%d netMsg/s:%d",
  358. nid, broadcastQ.NumQueued(), broadcastQ.NumNodes(), network.qMessagesSent/int((nDB.config.StatsPrintPeriod/time.Second)))
  359. network.qMessagesSent = 0
  360. }
  361. if len(msgs) == 0 {
  362. continue
  363. }
  364. // Create a compound message
  365. compound := makeCompoundMessage(msgs)
  366. for _, node := range mNodes {
  367. nDB.RLock()
  368. mnode := nDB.nodes[node]
  369. nDB.RUnlock()
  370. if mnode == nil {
  371. break
  372. }
  373. // Send the compound message
  374. if err := nDB.memberlist.SendBestEffort(&mnode.Node, compound); err != nil {
  375. logrus.Errorf("Failed to send gossip to %s: %s", mnode.Addr, err)
  376. }
  377. }
  378. }
  379. // Reset the stats
  380. if printStats {
  381. nDB.lastStatsTimestamp = time.Now()
  382. }
  383. }
  384. func (nDB *NetworkDB) bulkSyncTables() {
  385. var networks []string
  386. nDB.RLock()
  387. for nid, network := range nDB.networks[nDB.config.NodeName] {
  388. if network.leaving {
  389. continue
  390. }
  391. networks = append(networks, nid)
  392. }
  393. nDB.RUnlock()
  394. for {
  395. if len(networks) == 0 {
  396. break
  397. }
  398. nid := networks[0]
  399. networks = networks[1:]
  400. nDB.RLock()
  401. nodes := nDB.networkNodes[nid]
  402. nDB.RUnlock()
  403. // No peer nodes on this network. Move on.
  404. if len(nodes) == 0 {
  405. continue
  406. }
  407. completed, err := nDB.bulkSync(nodes, false)
  408. if err != nil {
  409. logrus.Errorf("periodic bulk sync failure for network %s: %v", nid, err)
  410. continue
  411. }
  412. // Remove all the networks for which we have
  413. // successfully completed bulk sync in this iteration.
  414. updatedNetworks := make([]string, 0, len(networks))
  415. for _, nid := range networks {
  416. var found bool
  417. for _, completedNid := range completed {
  418. if nid == completedNid {
  419. found = true
  420. break
  421. }
  422. }
  423. if !found {
  424. updatedNetworks = append(updatedNetworks, nid)
  425. }
  426. }
  427. networks = updatedNetworks
  428. }
  429. }
  430. func (nDB *NetworkDB) bulkSync(nodes []string, all bool) ([]string, error) {
  431. if !all {
  432. // Get 2 random nodes. 2nd node will be tried if the bulk sync to
  433. // 1st node fails.
  434. nodes = nDB.mRandomNodes(2, nodes)
  435. }
  436. if len(nodes) == 0 {
  437. return nil, nil
  438. }
  439. var err error
  440. var networks []string
  441. for _, node := range nodes {
  442. if node == nDB.config.NodeName {
  443. continue
  444. }
  445. logrus.Debugf("%s: Initiating bulk sync with node %v", nDB.config.NodeName, node)
  446. networks = nDB.findCommonNetworks(node)
  447. err = nDB.bulkSyncNode(networks, node, true)
  448. // if its periodic bulksync stop after the first successful sync
  449. if !all && err == nil {
  450. break
  451. }
  452. if err != nil {
  453. err = fmt.Errorf("bulk sync to node %s failed: %v", node, err)
  454. logrus.Warn(err.Error())
  455. }
  456. }
  457. if err != nil {
  458. return nil, err
  459. }
  460. return networks, nil
  461. }
  462. // Bulk sync all the table entries belonging to a set of networks to a
  463. // single peer node. It can be unsolicited or can be in response to an
  464. // unsolicited bulk sync
  465. func (nDB *NetworkDB) bulkSyncNode(networks []string, node string, unsolicited bool) error {
  466. var msgs [][]byte
  467. var unsolMsg string
  468. if unsolicited {
  469. unsolMsg = "unsolicited"
  470. }
  471. logrus.Debugf("%s: Initiating %s bulk sync for networks %v with node %s", nDB.config.NodeName, unsolMsg, networks, node)
  472. nDB.RLock()
  473. mnode := nDB.nodes[node]
  474. if mnode == nil {
  475. nDB.RUnlock()
  476. return nil
  477. }
  478. for _, nid := range networks {
  479. nDB.indexes[byNetwork].WalkPrefix(fmt.Sprintf("/%s", nid), func(path string, v interface{}) bool {
  480. entry, ok := v.(*entry)
  481. if !ok {
  482. return false
  483. }
  484. eType := TableEventTypeCreate
  485. if entry.deleting {
  486. eType = TableEventTypeDelete
  487. }
  488. params := strings.Split(path[1:], "/")
  489. tEvent := TableEvent{
  490. Type: eType,
  491. LTime: entry.ltime,
  492. NodeName: entry.node,
  493. NetworkID: nid,
  494. TableName: params[1],
  495. Key: params[2],
  496. Value: entry.value,
  497. }
  498. msg, err := encodeMessage(MessageTypeTableEvent, &tEvent)
  499. if err != nil {
  500. logrus.Errorf("Encode failure during bulk sync: %#v", tEvent)
  501. return false
  502. }
  503. msgs = append(msgs, msg)
  504. return false
  505. })
  506. }
  507. nDB.RUnlock()
  508. // Create a compound message
  509. compound := makeCompoundMessage(msgs)
  510. bsm := BulkSyncMessage{
  511. LTime: nDB.tableClock.Time(),
  512. Unsolicited: unsolicited,
  513. NodeName: nDB.config.NodeName,
  514. Networks: networks,
  515. Payload: compound,
  516. }
  517. buf, err := encodeMessage(MessageTypeBulkSync, &bsm)
  518. if err != nil {
  519. return fmt.Errorf("failed to encode bulk sync message: %v", err)
  520. }
  521. nDB.Lock()
  522. ch := make(chan struct{})
  523. nDB.bulkSyncAckTbl[node] = ch
  524. nDB.Unlock()
  525. err = nDB.memberlist.SendReliable(&mnode.Node, buf)
  526. if err != nil {
  527. nDB.Lock()
  528. delete(nDB.bulkSyncAckTbl, node)
  529. nDB.Unlock()
  530. return fmt.Errorf("failed to send a TCP message during bulk sync: %v", err)
  531. }
  532. // Wait on a response only if it is unsolicited.
  533. if unsolicited {
  534. startTime := time.Now()
  535. t := time.NewTimer(30 * time.Second)
  536. select {
  537. case <-t.C:
  538. logrus.Errorf("Bulk sync to node %s timed out", node)
  539. case <-ch:
  540. logrus.Debugf("%s: Bulk sync to node %s took %s", nDB.config.NodeName, node, time.Since(startTime))
  541. }
  542. t.Stop()
  543. }
  544. return nil
  545. }
  546. // Returns a random offset between 0 and n
  547. func randomOffset(n int) int {
  548. if n == 0 {
  549. return 0
  550. }
  551. val, err := rand.Int(rand.Reader, big.NewInt(int64(n)))
  552. if err != nil {
  553. logrus.Errorf("Failed to get a random offset: %v", err)
  554. return 0
  555. }
  556. return int(val.Int64())
  557. }
  558. // mRandomNodes is used to select up to m random nodes. It is possible
  559. // that less than m nodes are returned.
  560. func (nDB *NetworkDB) mRandomNodes(m int, nodes []string) []string {
  561. n := len(nodes)
  562. mNodes := make([]string, 0, m)
  563. OUTER:
  564. // Probe up to 3*n times, with large n this is not necessary
  565. // since k << n, but with small n we want search to be
  566. // exhaustive
  567. for i := 0; i < 3*n && len(mNodes) < m; i++ {
  568. // Get random node
  569. idx := randomOffset(n)
  570. node := nodes[idx]
  571. if node == nDB.config.NodeName {
  572. continue
  573. }
  574. // Check if we have this node already
  575. for j := 0; j < len(mNodes); j++ {
  576. if node == mNodes[j] {
  577. continue OUTER
  578. }
  579. }
  580. // Append the node
  581. mNodes = append(mNodes, node)
  582. }
  583. return mNodes
  584. }