raft.go 13 KB

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  1. // Copyright 2015 CoreOS, Inc.
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. package etcdserver
  15. import (
  16. "encoding/json"
  17. "expvar"
  18. "sort"
  19. "sync"
  20. "sync/atomic"
  21. "time"
  22. pb "github.com/coreos/etcd/etcdserver/etcdserverpb"
  23. "github.com/coreos/etcd/etcdserver/membership"
  24. "github.com/coreos/etcd/pkg/contention"
  25. "github.com/coreos/etcd/pkg/pbutil"
  26. "github.com/coreos/etcd/pkg/types"
  27. "github.com/coreos/etcd/raft"
  28. "github.com/coreos/etcd/raft/raftpb"
  29. "github.com/coreos/etcd/rafthttp"
  30. "github.com/coreos/etcd/wal"
  31. "github.com/coreos/etcd/wal/walpb"
  32. "github.com/coreos/pkg/capnslog"
  33. )
  34. const (
  35. // Number of entries for slow follower to catch-up after compacting
  36. // the raft storage entries.
  37. // We expect the follower has a millisecond level latency with the leader.
  38. // The max throughput is around 10K. Keep a 5K entries is enough for helping
  39. // follower to catch up.
  40. numberOfCatchUpEntries = 5000
  41. // The max throughput of etcd will not exceed 100MB/s (100K * 1KB value).
  42. // Assuming the RTT is around 10ms, 1MB max size is large enough.
  43. maxSizePerMsg = 1 * 1024 * 1024
  44. // Never overflow the rafthttp buffer, which is 4096.
  45. // TODO: a better const?
  46. maxInflightMsgs = 4096 / 8
  47. )
  48. var (
  49. // protects raftStatus
  50. raftStatusMu sync.Mutex
  51. // indirection for expvar func interface
  52. // expvar panics when publishing duplicate name
  53. // expvar does not support remove a registered name
  54. // so only register a func that calls raftStatus
  55. // and change raftStatus as we need.
  56. raftStatus func() raft.Status
  57. )
  58. func init() {
  59. raft.SetLogger(capnslog.NewPackageLogger("github.com/coreos/etcd", "raft"))
  60. expvar.Publish("raft.status", expvar.Func(func() interface{} {
  61. raftStatusMu.Lock()
  62. defer raftStatusMu.Unlock()
  63. return raftStatus()
  64. }))
  65. }
  66. type RaftTimer interface {
  67. Index() uint64
  68. Term() uint64
  69. }
  70. // apply contains entries, snapshot to be applied. Once
  71. // an apply is consumed, the entries will be persisted to
  72. // to raft storage concurrently; the application must read
  73. // raftDone before assuming the raft messages are stable.
  74. type apply struct {
  75. entries []raftpb.Entry
  76. snapshot raftpb.Snapshot
  77. raftDone <-chan struct{} // rx {} after raft has persisted messages
  78. }
  79. type raftNode struct {
  80. // Cache of the latest raft index and raft term the server has seen.
  81. // These three unit64 fields must be the first elements to keep 64-bit
  82. // alignment for atomic access to the fields.
  83. index uint64
  84. term uint64
  85. lead uint64
  86. mu sync.Mutex
  87. // last lead elected time
  88. lt time.Time
  89. raft.Node
  90. // a chan to send out apply
  91. applyc chan apply
  92. // TODO: remove the etcdserver related logic from raftNode
  93. // TODO: add a state machine interface to apply the commit entries
  94. // and do snapshot/recover
  95. s *EtcdServer
  96. // utility
  97. ticker <-chan time.Time
  98. raftStorage *raft.MemoryStorage
  99. storage Storage
  100. // transport specifies the transport to send and receive msgs to members.
  101. // Sending messages MUST NOT block. It is okay to drop messages, since
  102. // clients should timeout and reissue their messages.
  103. // If transport is nil, server will panic.
  104. transport rafthttp.Transporter
  105. td *contention.TimeoutDetector
  106. stopped chan struct{}
  107. done chan struct{}
  108. }
  109. // start prepares and starts raftNode in a new goroutine. It is no longer safe
  110. // to modify the fields after it has been started.
  111. // TODO: Ideally raftNode should get rid of the passed in server structure.
  112. func (r *raftNode) start(s *EtcdServer) {
  113. r.s = s
  114. r.applyc = make(chan apply)
  115. r.stopped = make(chan struct{})
  116. r.done = make(chan struct{})
  117. heartbeat := 200 * time.Millisecond
  118. if s.cfg != nil {
  119. heartbeat = time.Duration(s.cfg.TickMs) * time.Millisecond
  120. }
  121. // set up contention detectors for raft heartbeat message.
  122. // expect to send a heartbeat within 2 heartbeat intervals.
  123. r.td = contention.NewTimeoutDetector(2 * heartbeat)
  124. go func() {
  125. var syncC <-chan time.Time
  126. defer r.onStop()
  127. islead := false
  128. for {
  129. select {
  130. case <-r.ticker:
  131. r.Tick()
  132. case rd := <-r.Ready():
  133. if rd.SoftState != nil {
  134. if lead := atomic.LoadUint64(&r.lead); rd.SoftState.Lead != raft.None && lead != rd.SoftState.Lead {
  135. r.mu.Lock()
  136. r.lt = time.Now()
  137. r.mu.Unlock()
  138. leaderChanges.Inc()
  139. }
  140. atomic.StoreUint64(&r.lead, rd.SoftState.Lead)
  141. if rd.RaftState == raft.StateLeader {
  142. islead = true
  143. // TODO: raft should send server a notification through chan when
  144. // it promotes or demotes instead of modifying server directly.
  145. syncC = r.s.SyncTicker
  146. if r.s.lessor != nil {
  147. r.s.lessor.Promote(r.s.cfg.electionTimeout())
  148. }
  149. // TODO: remove the nil checking
  150. // current test utility does not provide the stats
  151. if r.s.stats != nil {
  152. r.s.stats.BecomeLeader()
  153. }
  154. if r.s.compactor != nil {
  155. r.s.compactor.Resume()
  156. }
  157. r.td.Reset()
  158. } else {
  159. islead = false
  160. if r.s.lessor != nil {
  161. r.s.lessor.Demote()
  162. }
  163. if r.s.compactor != nil {
  164. r.s.compactor.Pause()
  165. }
  166. syncC = nil
  167. }
  168. }
  169. raftDone := make(chan struct{}, 1)
  170. ap := apply{
  171. entries: rd.CommittedEntries,
  172. snapshot: rd.Snapshot,
  173. raftDone: raftDone,
  174. }
  175. select {
  176. case r.applyc <- ap:
  177. case <-r.stopped:
  178. return
  179. }
  180. // the leader can write to its disk in parallel with replicating to the followers and them
  181. // writing to their disks.
  182. // For more details, check raft thesis 10.2.1
  183. if islead {
  184. r.s.send(rd.Messages)
  185. }
  186. if !raft.IsEmptySnap(rd.Snapshot) {
  187. if err := r.storage.SaveSnap(rd.Snapshot); err != nil {
  188. plog.Fatalf("raft save snapshot error: %v", err)
  189. }
  190. r.raftStorage.ApplySnapshot(rd.Snapshot)
  191. plog.Infof("raft applied incoming snapshot at index %d", rd.Snapshot.Metadata.Index)
  192. }
  193. if err := r.storage.Save(rd.HardState, rd.Entries); err != nil {
  194. plog.Fatalf("raft save state and entries error: %v", err)
  195. }
  196. r.raftStorage.Append(rd.Entries)
  197. if !islead {
  198. r.s.send(rd.Messages)
  199. }
  200. raftDone <- struct{}{}
  201. r.Advance()
  202. case <-syncC:
  203. r.s.sync(r.s.cfg.ReqTimeout())
  204. case <-r.stopped:
  205. return
  206. }
  207. }
  208. }()
  209. }
  210. func (r *raftNode) apply() chan apply {
  211. return r.applyc
  212. }
  213. func (r *raftNode) leadElectedTime() time.Time {
  214. r.mu.Lock()
  215. defer r.mu.Unlock()
  216. return r.lt
  217. }
  218. func (r *raftNode) stop() {
  219. r.stopped <- struct{}{}
  220. <-r.done
  221. }
  222. func (r *raftNode) onStop() {
  223. r.Stop()
  224. r.transport.Stop()
  225. if err := r.storage.Close(); err != nil {
  226. plog.Panicf("raft close storage error: %v", err)
  227. }
  228. close(r.done)
  229. }
  230. // for testing
  231. func (r *raftNode) pauseSending() {
  232. p := r.transport.(rafthttp.Pausable)
  233. p.Pause()
  234. }
  235. func (r *raftNode) resumeSending() {
  236. p := r.transport.(rafthttp.Pausable)
  237. p.Resume()
  238. }
  239. // advanceTicksForElection advances ticks to the node for fast election.
  240. // This reduces the time to wait for first leader election if bootstrapping the whole
  241. // cluster, while leaving at least 1 heartbeat for possible existing leader
  242. // to contact it.
  243. func advanceTicksForElection(n raft.Node, electionTicks int) {
  244. for i := 0; i < electionTicks-1; i++ {
  245. n.Tick()
  246. }
  247. }
  248. func startNode(cfg *ServerConfig, cl *membership.RaftCluster, ids []types.ID) (id types.ID, n raft.Node, s *raft.MemoryStorage, w *wal.WAL) {
  249. var err error
  250. member := cl.MemberByName(cfg.Name)
  251. metadata := pbutil.MustMarshal(
  252. &pb.Metadata{
  253. NodeID: uint64(member.ID),
  254. ClusterID: uint64(cl.ID()),
  255. },
  256. )
  257. if w, err = wal.Create(cfg.WALDir(), metadata); err != nil {
  258. plog.Fatalf("create wal error: %v", err)
  259. }
  260. peers := make([]raft.Peer, len(ids))
  261. for i, id := range ids {
  262. ctx, err := json.Marshal((*cl).Member(id))
  263. if err != nil {
  264. plog.Panicf("marshal member should never fail: %v", err)
  265. }
  266. peers[i] = raft.Peer{ID: uint64(id), Context: ctx}
  267. }
  268. id = member.ID
  269. plog.Infof("starting member %s in cluster %s", id, cl.ID())
  270. s = raft.NewMemoryStorage()
  271. c := &raft.Config{
  272. ID: uint64(id),
  273. ElectionTick: cfg.ElectionTicks,
  274. HeartbeatTick: 1,
  275. Storage: s,
  276. MaxSizePerMsg: maxSizePerMsg,
  277. MaxInflightMsgs: maxInflightMsgs,
  278. CheckQuorum: true,
  279. }
  280. n = raft.StartNode(c, peers)
  281. raftStatusMu.Lock()
  282. raftStatus = n.Status
  283. raftStatusMu.Unlock()
  284. advanceTicksForElection(n, c.ElectionTick)
  285. return
  286. }
  287. func restartNode(cfg *ServerConfig, snapshot *raftpb.Snapshot) (types.ID, *membership.RaftCluster, raft.Node, *raft.MemoryStorage, *wal.WAL) {
  288. var walsnap walpb.Snapshot
  289. if snapshot != nil {
  290. walsnap.Index, walsnap.Term = snapshot.Metadata.Index, snapshot.Metadata.Term
  291. }
  292. w, id, cid, st, ents := readWAL(cfg.WALDir(), walsnap)
  293. plog.Infof("restarting member %s in cluster %s at commit index %d", id, cid, st.Commit)
  294. cl := membership.NewCluster("")
  295. cl.SetID(cid)
  296. s := raft.NewMemoryStorage()
  297. if snapshot != nil {
  298. s.ApplySnapshot(*snapshot)
  299. }
  300. s.SetHardState(st)
  301. s.Append(ents)
  302. c := &raft.Config{
  303. ID: uint64(id),
  304. ElectionTick: cfg.ElectionTicks,
  305. HeartbeatTick: 1,
  306. Storage: s,
  307. MaxSizePerMsg: maxSizePerMsg,
  308. MaxInflightMsgs: maxInflightMsgs,
  309. CheckQuorum: true,
  310. }
  311. n := raft.RestartNode(c)
  312. raftStatusMu.Lock()
  313. raftStatus = n.Status
  314. raftStatusMu.Unlock()
  315. advanceTicksForElection(n, c.ElectionTick)
  316. return id, cl, n, s, w
  317. }
  318. func restartAsStandaloneNode(cfg *ServerConfig, snapshot *raftpb.Snapshot) (types.ID, *membership.RaftCluster, raft.Node, *raft.MemoryStorage, *wal.WAL) {
  319. var walsnap walpb.Snapshot
  320. if snapshot != nil {
  321. walsnap.Index, walsnap.Term = snapshot.Metadata.Index, snapshot.Metadata.Term
  322. }
  323. w, id, cid, st, ents := readWAL(cfg.WALDir(), walsnap)
  324. // discard the previously uncommitted entries
  325. for i, ent := range ents {
  326. if ent.Index > st.Commit {
  327. plog.Infof("discarding %d uncommitted WAL entries ", len(ents)-i)
  328. ents = ents[:i]
  329. break
  330. }
  331. }
  332. // force append the configuration change entries
  333. toAppEnts := createConfigChangeEnts(getIDs(snapshot, ents), uint64(id), st.Term, st.Commit)
  334. ents = append(ents, toAppEnts...)
  335. // force commit newly appended entries
  336. err := w.Save(raftpb.HardState{}, toAppEnts)
  337. if err != nil {
  338. plog.Fatalf("%v", err)
  339. }
  340. if len(ents) != 0 {
  341. st.Commit = ents[len(ents)-1].Index
  342. }
  343. plog.Printf("forcing restart of member %s in cluster %s at commit index %d", id, cid, st.Commit)
  344. cl := membership.NewCluster("")
  345. cl.SetID(cid)
  346. s := raft.NewMemoryStorage()
  347. if snapshot != nil {
  348. s.ApplySnapshot(*snapshot)
  349. }
  350. s.SetHardState(st)
  351. s.Append(ents)
  352. c := &raft.Config{
  353. ID: uint64(id),
  354. ElectionTick: cfg.ElectionTicks,
  355. HeartbeatTick: 1,
  356. Storage: s,
  357. MaxSizePerMsg: maxSizePerMsg,
  358. MaxInflightMsgs: maxInflightMsgs,
  359. }
  360. n := raft.RestartNode(c)
  361. raftStatus = n.Status
  362. return id, cl, n, s, w
  363. }
  364. // getIDs returns an ordered set of IDs included in the given snapshot and
  365. // the entries. The given snapshot/entries can contain two kinds of
  366. // ID-related entry:
  367. // - ConfChangeAddNode, in which case the contained ID will be added into the set.
  368. // - ConfChangeRemoveNode, in which case the contained ID will be removed from the set.
  369. func getIDs(snap *raftpb.Snapshot, ents []raftpb.Entry) []uint64 {
  370. ids := make(map[uint64]bool)
  371. if snap != nil {
  372. for _, id := range snap.Metadata.ConfState.Nodes {
  373. ids[id] = true
  374. }
  375. }
  376. for _, e := range ents {
  377. if e.Type != raftpb.EntryConfChange {
  378. continue
  379. }
  380. var cc raftpb.ConfChange
  381. pbutil.MustUnmarshal(&cc, e.Data)
  382. switch cc.Type {
  383. case raftpb.ConfChangeAddNode:
  384. ids[cc.NodeID] = true
  385. case raftpb.ConfChangeRemoveNode:
  386. delete(ids, cc.NodeID)
  387. case raftpb.ConfChangeUpdateNode:
  388. // do nothing
  389. default:
  390. plog.Panicf("ConfChange Type should be either ConfChangeAddNode or ConfChangeRemoveNode!")
  391. }
  392. }
  393. sids := make(types.Uint64Slice, 0)
  394. for id := range ids {
  395. sids = append(sids, id)
  396. }
  397. sort.Sort(sids)
  398. return []uint64(sids)
  399. }
  400. // createConfigChangeEnts creates a series of Raft entries (i.e.
  401. // EntryConfChange) to remove the set of given IDs from the cluster. The ID
  402. // `self` is _not_ removed, even if present in the set.
  403. // If `self` is not inside the given ids, it creates a Raft entry to add a
  404. // default member with the given `self`.
  405. func createConfigChangeEnts(ids []uint64, self uint64, term, index uint64) []raftpb.Entry {
  406. ents := make([]raftpb.Entry, 0)
  407. next := index + 1
  408. found := false
  409. for _, id := range ids {
  410. if id == self {
  411. found = true
  412. continue
  413. }
  414. cc := &raftpb.ConfChange{
  415. Type: raftpb.ConfChangeRemoveNode,
  416. NodeID: id,
  417. }
  418. e := raftpb.Entry{
  419. Type: raftpb.EntryConfChange,
  420. Data: pbutil.MustMarshal(cc),
  421. Term: term,
  422. Index: next,
  423. }
  424. ents = append(ents, e)
  425. next++
  426. }
  427. if !found {
  428. m := membership.Member{
  429. ID: types.ID(self),
  430. RaftAttributes: membership.RaftAttributes{PeerURLs: []string{"http://localhost:7001", "http://localhost:2380"}},
  431. }
  432. ctx, err := json.Marshal(m)
  433. if err != nil {
  434. plog.Panicf("marshal member should never fail: %v", err)
  435. }
  436. cc := &raftpb.ConfChange{
  437. Type: raftpb.ConfChangeAddNode,
  438. NodeID: self,
  439. Context: ctx,
  440. }
  441. e := raftpb.Entry{
  442. Type: raftpb.EntryConfChange,
  443. Data: pbutil.MustMarshal(cc),
  444. Term: term,
  445. Index: next,
  446. }
  447. ents = append(ents, e)
  448. }
  449. return ents
  450. }