raft_test.go 88 KB

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  1. // Copyright 2015 The etcd Authors
  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 raft
  15. import (
  16. "bytes"
  17. "fmt"
  18. "math"
  19. "math/rand"
  20. "reflect"
  21. "testing"
  22. pb "github.com/coreos/etcd/raft/raftpb"
  23. )
  24. // nextEnts returns the appliable entries and updates the applied index
  25. func nextEnts(r *raft, s *MemoryStorage) (ents []pb.Entry) {
  26. // Transfer all unstable entries to "stable" storage.
  27. s.Append(r.raftLog.unstableEntries())
  28. r.raftLog.stableTo(r.raftLog.lastIndex(), r.raftLog.lastTerm())
  29. ents = r.raftLog.nextEnts()
  30. r.raftLog.appliedTo(r.raftLog.committed)
  31. return ents
  32. }
  33. type stateMachine interface {
  34. Step(m pb.Message) error
  35. readMessages() []pb.Message
  36. }
  37. func (r *raft) readMessages() []pb.Message {
  38. msgs := r.msgs
  39. r.msgs = make([]pb.Message, 0)
  40. return msgs
  41. }
  42. func TestProgressBecomeProbe(t *testing.T) {
  43. match := uint64(1)
  44. tests := []struct {
  45. p *Progress
  46. wnext uint64
  47. }{
  48. {
  49. &Progress{State: ProgressStateReplicate, Match: match, Next: 5, ins: newInflights(256)},
  50. 2,
  51. },
  52. {
  53. // snapshot finish
  54. &Progress{State: ProgressStateSnapshot, Match: match, Next: 5, PendingSnapshot: 10, ins: newInflights(256)},
  55. 11,
  56. },
  57. {
  58. // snapshot failure
  59. &Progress{State: ProgressStateSnapshot, Match: match, Next: 5, PendingSnapshot: 0, ins: newInflights(256)},
  60. 2,
  61. },
  62. }
  63. for i, tt := range tests {
  64. tt.p.becomeProbe()
  65. if tt.p.State != ProgressStateProbe {
  66. t.Errorf("#%d: state = %s, want %s", i, tt.p.State, ProgressStateProbe)
  67. }
  68. if tt.p.Match != match {
  69. t.Errorf("#%d: match = %d, want %d", i, tt.p.Match, match)
  70. }
  71. if tt.p.Next != tt.wnext {
  72. t.Errorf("#%d: next = %d, want %d", i, tt.p.Next, tt.wnext)
  73. }
  74. }
  75. }
  76. func TestProgressBecomeReplicate(t *testing.T) {
  77. p := &Progress{State: ProgressStateProbe, Match: 1, Next: 5, ins: newInflights(256)}
  78. p.becomeReplicate()
  79. if p.State != ProgressStateReplicate {
  80. t.Errorf("state = %s, want %s", p.State, ProgressStateReplicate)
  81. }
  82. if p.Match != 1 {
  83. t.Errorf("match = %d, want 1", p.Match)
  84. }
  85. if w := p.Match + 1; p.Next != w {
  86. t.Errorf("next = %d, want %d", p.Next, w)
  87. }
  88. }
  89. func TestProgressBecomeSnapshot(t *testing.T) {
  90. p := &Progress{State: ProgressStateProbe, Match: 1, Next: 5, ins: newInflights(256)}
  91. p.becomeSnapshot(10)
  92. if p.State != ProgressStateSnapshot {
  93. t.Errorf("state = %s, want %s", p.State, ProgressStateSnapshot)
  94. }
  95. if p.Match != 1 {
  96. t.Errorf("match = %d, want 1", p.Match)
  97. }
  98. if p.PendingSnapshot != 10 {
  99. t.Errorf("pendingSnapshot = %d, want 10", p.PendingSnapshot)
  100. }
  101. }
  102. func TestProgressUpdate(t *testing.T) {
  103. prevM, prevN := uint64(3), uint64(5)
  104. tests := []struct {
  105. update uint64
  106. wm uint64
  107. wn uint64
  108. wok bool
  109. }{
  110. {prevM - 1, prevM, prevN, false}, // do not decrease match, next
  111. {prevM, prevM, prevN, false}, // do not decrease next
  112. {prevM + 1, prevM + 1, prevN, true}, // increase match, do not decrease next
  113. {prevM + 2, prevM + 2, prevN + 1, true}, // increase match, next
  114. }
  115. for i, tt := range tests {
  116. p := &Progress{
  117. Match: prevM,
  118. Next: prevN,
  119. }
  120. ok := p.maybeUpdate(tt.update)
  121. if ok != tt.wok {
  122. t.Errorf("#%d: ok= %v, want %v", i, ok, tt.wok)
  123. }
  124. if p.Match != tt.wm {
  125. t.Errorf("#%d: match= %d, want %d", i, p.Match, tt.wm)
  126. }
  127. if p.Next != tt.wn {
  128. t.Errorf("#%d: next= %d, want %d", i, p.Next, tt.wn)
  129. }
  130. }
  131. }
  132. func TestProgressMaybeDecr(t *testing.T) {
  133. tests := []struct {
  134. state ProgressStateType
  135. m uint64
  136. n uint64
  137. rejected uint64
  138. last uint64
  139. w bool
  140. wn uint64
  141. }{
  142. {
  143. // state replicate and rejected is not greater than match
  144. ProgressStateReplicate, 5, 10, 5, 5, false, 10,
  145. },
  146. {
  147. // state replicate and rejected is not greater than match
  148. ProgressStateReplicate, 5, 10, 4, 4, false, 10,
  149. },
  150. {
  151. // state replicate and rejected is greater than match
  152. // directly decrease to match+1
  153. ProgressStateReplicate, 5, 10, 9, 9, true, 6,
  154. },
  155. {
  156. // next-1 != rejected is always false
  157. ProgressStateProbe, 0, 0, 0, 0, false, 0,
  158. },
  159. {
  160. // next-1 != rejected is always false
  161. ProgressStateProbe, 0, 10, 5, 5, false, 10,
  162. },
  163. {
  164. // next>1 = decremented by 1
  165. ProgressStateProbe, 0, 10, 9, 9, true, 9,
  166. },
  167. {
  168. // next>1 = decremented by 1
  169. ProgressStateProbe, 0, 2, 1, 1, true, 1,
  170. },
  171. {
  172. // next<=1 = reset to 1
  173. ProgressStateProbe, 0, 1, 0, 0, true, 1,
  174. },
  175. {
  176. // decrease to min(rejected, last+1)
  177. ProgressStateProbe, 0, 10, 9, 2, true, 3,
  178. },
  179. {
  180. // rejected < 1, reset to 1
  181. ProgressStateProbe, 0, 10, 9, 0, true, 1,
  182. },
  183. }
  184. for i, tt := range tests {
  185. p := &Progress{
  186. State: tt.state,
  187. Match: tt.m,
  188. Next: tt.n,
  189. }
  190. if g := p.maybeDecrTo(tt.rejected, tt.last); g != tt.w {
  191. t.Errorf("#%d: maybeDecrTo= %t, want %t", i, g, tt.w)
  192. }
  193. if gm := p.Match; gm != tt.m {
  194. t.Errorf("#%d: match= %d, want %d", i, gm, tt.m)
  195. }
  196. if gn := p.Next; gn != tt.wn {
  197. t.Errorf("#%d: next= %d, want %d", i, gn, tt.wn)
  198. }
  199. }
  200. }
  201. func TestProgressIsPaused(t *testing.T) {
  202. tests := []struct {
  203. state ProgressStateType
  204. paused bool
  205. w bool
  206. }{
  207. {ProgressStateProbe, false, false},
  208. {ProgressStateProbe, true, true},
  209. {ProgressStateReplicate, false, false},
  210. {ProgressStateReplicate, true, false},
  211. {ProgressStateSnapshot, false, true},
  212. {ProgressStateSnapshot, true, true},
  213. }
  214. for i, tt := range tests {
  215. p := &Progress{
  216. State: tt.state,
  217. Paused: tt.paused,
  218. ins: newInflights(256),
  219. }
  220. if g := p.IsPaused(); g != tt.w {
  221. t.Errorf("#%d: paused= %t, want %t", i, g, tt.w)
  222. }
  223. }
  224. }
  225. // TestProgressResume ensures that progress.maybeUpdate and progress.maybeDecrTo
  226. // will reset progress.paused.
  227. func TestProgressResume(t *testing.T) {
  228. p := &Progress{
  229. Next: 2,
  230. Paused: true,
  231. }
  232. p.maybeDecrTo(1, 1)
  233. if p.Paused {
  234. t.Errorf("paused= %v, want false", p.Paused)
  235. }
  236. p.Paused = true
  237. p.maybeUpdate(2)
  238. if p.Paused {
  239. t.Errorf("paused= %v, want false", p.Paused)
  240. }
  241. }
  242. // TestProgressResumeByHeartbeat ensures raft.heartbeat reset progress.paused by heartbeat.
  243. func TestProgressResumeByHeartbeat(t *testing.T) {
  244. r := newTestRaft(1, []uint64{1, 2}, 5, 1, NewMemoryStorage())
  245. r.becomeCandidate()
  246. r.becomeLeader()
  247. r.prs[2].Paused = true
  248. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgBeat})
  249. if r.prs[2].Paused {
  250. t.Errorf("paused = %v, want false", r.prs[2].Paused)
  251. }
  252. }
  253. func TestProgressPaused(t *testing.T) {
  254. r := newTestRaft(1, []uint64{1, 2}, 5, 1, NewMemoryStorage())
  255. r.becomeCandidate()
  256. r.becomeLeader()
  257. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  258. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  259. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  260. ms := r.readMessages()
  261. if len(ms) != 1 {
  262. t.Errorf("len(ms) = %d, want 1", len(ms))
  263. }
  264. }
  265. func TestLeaderElection(t *testing.T) {
  266. testLeaderElection(t, false)
  267. }
  268. func TestLeaderElectionPreVote(t *testing.T) {
  269. testLeaderElection(t, true)
  270. }
  271. func testLeaderElection(t *testing.T, preVote bool) {
  272. var cfg func(*Config)
  273. if preVote {
  274. cfg = preVoteConfig
  275. }
  276. tests := []struct {
  277. *network
  278. state StateType
  279. expTerm uint64
  280. }{
  281. {newNetworkWithConfig(cfg, nil, nil, nil), StateLeader, 1},
  282. {newNetworkWithConfig(cfg, nil, nil, nopStepper), StateLeader, 1},
  283. {newNetworkWithConfig(cfg, nil, nopStepper, nopStepper), StateCandidate, 1},
  284. {newNetworkWithConfig(cfg, nil, nopStepper, nopStepper, nil), StateCandidate, 1},
  285. {newNetworkWithConfig(cfg, nil, nopStepper, nopStepper, nil, nil), StateLeader, 1},
  286. // three logs further along than 0, but in the same term so rejections
  287. // are returned instead of the votes being ignored.
  288. {newNetworkWithConfig(cfg,
  289. nil, entsWithConfig(cfg, 1), entsWithConfig(cfg, 1), entsWithConfig(cfg, 1, 1), nil),
  290. StateFollower, 1},
  291. }
  292. for i, tt := range tests {
  293. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  294. sm := tt.network.peers[1].(*raft)
  295. var expState StateType
  296. var expTerm uint64
  297. if tt.state == StateCandidate && preVote {
  298. // In pre-vote mode, an election that fails to complete
  299. // leaves the node in pre-candidate state without advancing
  300. // the term.
  301. expState = StatePreCandidate
  302. expTerm = 0
  303. } else {
  304. expState = tt.state
  305. expTerm = tt.expTerm
  306. }
  307. if sm.state != expState {
  308. t.Errorf("#%d: state = %s, want %s", i, sm.state, expState)
  309. }
  310. if g := sm.Term; g != expTerm {
  311. t.Errorf("#%d: term = %d, want %d", i, g, expTerm)
  312. }
  313. }
  314. }
  315. func TestLeaderCycle(t *testing.T) {
  316. testLeaderCycle(t, false)
  317. }
  318. func TestLeaderCyclePreVote(t *testing.T) {
  319. testLeaderCycle(t, true)
  320. }
  321. // testLeaderCycle verifies that each node in a cluster can campaign
  322. // and be elected in turn. This ensures that elections (including
  323. // pre-vote) work when not starting from a clean slate (as they do in
  324. // TestLeaderElection)
  325. func testLeaderCycle(t *testing.T, preVote bool) {
  326. var cfg func(*Config)
  327. if preVote {
  328. cfg = preVoteConfig
  329. }
  330. n := newNetworkWithConfig(cfg, nil, nil, nil)
  331. for campaignerID := uint64(1); campaignerID <= 3; campaignerID++ {
  332. n.send(pb.Message{From: campaignerID, To: campaignerID, Type: pb.MsgHup})
  333. for _, peer := range n.peers {
  334. sm := peer.(*raft)
  335. if sm.id == campaignerID && sm.state != StateLeader {
  336. t.Errorf("preVote=%v: campaigning node %d state = %v, want StateLeader",
  337. preVote, sm.id, sm.state)
  338. } else if sm.id != campaignerID && sm.state != StateFollower {
  339. t.Errorf("preVote=%v: after campaign of node %d, "+
  340. "node %d had state = %v, want StateFollower",
  341. preVote, campaignerID, sm.id, sm.state)
  342. }
  343. }
  344. }
  345. }
  346. // TestLeaderElectionOverwriteNewerLogs tests a scenario in which a
  347. // newly-elected leader does *not* have the newest (i.e. highest term)
  348. // log entries, and must overwrite higher-term log entries with
  349. // lower-term ones.
  350. func TestLeaderElectionOverwriteNewerLogs(t *testing.T) {
  351. testLeaderElectionOverwriteNewerLogs(t, false)
  352. }
  353. func TestLeaderElectionOverwriteNewerLogsPreVote(t *testing.T) {
  354. testLeaderElectionOverwriteNewerLogs(t, true)
  355. }
  356. func testLeaderElectionOverwriteNewerLogs(t *testing.T, preVote bool) {
  357. var cfg func(*Config)
  358. if preVote {
  359. cfg = preVoteConfig
  360. }
  361. // This network represents the results of the following sequence of
  362. // events:
  363. // - Node 1 won the election in term 1.
  364. // - Node 1 replicated a log entry to node 2 but died before sending
  365. // it to other nodes.
  366. // - Node 3 won the second election in term 2.
  367. // - Node 3 wrote an entry to its logs but died without sending it
  368. // to any other nodes.
  369. //
  370. // At this point, nodes 1, 2, and 3 all have uncommitted entries in
  371. // their logs and could win an election at term 3. The winner's log
  372. // entry overwrites the losers'. (TestLeaderSyncFollowerLog tests
  373. // the case where older log entries are overwritten, so this test
  374. // focuses on the case where the newer entries are lost).
  375. n := newNetworkWithConfig(cfg,
  376. entsWithConfig(cfg, 1), // Node 1: Won first election
  377. entsWithConfig(cfg, 1), // Node 2: Got logs from node 1
  378. entsWithConfig(cfg, 2), // Node 3: Won second election
  379. votedWithConfig(cfg, 3, 2), // Node 4: Voted but didn't get logs
  380. votedWithConfig(cfg, 3, 2)) // Node 5: Voted but didn't get logs
  381. // Node 1 campaigns. The election fails because a quorum of nodes
  382. // know about the election that already happened at term 2. Node 1's
  383. // term is pushed ahead to 2.
  384. n.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  385. sm1 := n.peers[1].(*raft)
  386. if sm1.state != StateFollower {
  387. t.Errorf("state = %s, want StateFollower", sm1.state)
  388. }
  389. if sm1.Term != 2 {
  390. t.Errorf("term = %d, want 2", sm1.Term)
  391. }
  392. // Node 1 campaigns again with a higher term. This time it succeeds.
  393. n.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  394. if sm1.state != StateLeader {
  395. t.Errorf("state = %s, want StateLeader", sm1.state)
  396. }
  397. if sm1.Term != 3 {
  398. t.Errorf("term = %d, want 3", sm1.Term)
  399. }
  400. // Now all nodes agree on a log entry with term 1 at index 1 (and
  401. // term 3 at index 2).
  402. for i := range n.peers {
  403. sm := n.peers[i].(*raft)
  404. entries := sm.raftLog.allEntries()
  405. if len(entries) != 2 {
  406. t.Fatalf("node %d: len(entries) == %d, want 2", i, len(entries))
  407. }
  408. if entries[0].Term != 1 {
  409. t.Errorf("node %d: term at index 1 == %d, want 1", i, entries[0].Term)
  410. }
  411. if entries[1].Term != 3 {
  412. t.Errorf("node %d: term at index 2 == %d, want 3", i, entries[1].Term)
  413. }
  414. }
  415. }
  416. func TestVoteFromAnyState(t *testing.T) {
  417. testVoteFromAnyState(t, pb.MsgVote)
  418. }
  419. func TestPreVoteFromAnyState(t *testing.T) {
  420. testVoteFromAnyState(t, pb.MsgPreVote)
  421. }
  422. func testVoteFromAnyState(t *testing.T, vt pb.MessageType) {
  423. for st := StateType(0); st < numStates; st++ {
  424. r := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  425. r.Term = 1
  426. switch st {
  427. case StateFollower:
  428. r.becomeFollower(r.Term, 3)
  429. case StatePreCandidate:
  430. r.becomePreCandidate()
  431. case StateCandidate:
  432. r.becomeCandidate()
  433. case StateLeader:
  434. r.becomeCandidate()
  435. r.becomeLeader()
  436. }
  437. // Note that setting our state above may have advanced r.Term
  438. // past its initial value.
  439. origTerm := r.Term
  440. newTerm := r.Term + 1
  441. msg := pb.Message{
  442. From: 2,
  443. To: 1,
  444. Type: vt,
  445. Term: newTerm,
  446. LogTerm: newTerm,
  447. Index: 42,
  448. }
  449. if err := r.Step(msg); err != nil {
  450. t.Errorf("%s,%s: Step failed: %s", vt, st, err)
  451. }
  452. if len(r.msgs) != 1 {
  453. t.Errorf("%s,%s: %d response messages, want 1: %+v", vt, st, len(r.msgs), r.msgs)
  454. } else {
  455. resp := r.msgs[0]
  456. if resp.Type != voteRespMsgType(vt) {
  457. t.Errorf("%s,%s: response message is %s, want %s",
  458. vt, st, resp.Type, voteRespMsgType(vt))
  459. }
  460. if resp.Reject {
  461. t.Errorf("%s,%s: unexpected rejection", vt, st)
  462. }
  463. }
  464. // If this was a real vote, we reset our state and term.
  465. if vt == pb.MsgVote {
  466. if r.state != StateFollower {
  467. t.Errorf("%s,%s: state %s, want %s", vt, StateFollower, r.state, st)
  468. }
  469. if r.Term != newTerm {
  470. t.Errorf("%s,%s: term %d, want %d", vt, st, r.Term, newTerm)
  471. }
  472. if r.Vote != 2 {
  473. t.Errorf("%s,%s: vote %d, want 2", vt, st, r.Vote)
  474. }
  475. } else {
  476. // In a prevote, nothing changes.
  477. if r.state != st {
  478. t.Errorf("%s,%s: state %s, want %s", vt, st, r.state, st)
  479. }
  480. if r.Term != origTerm {
  481. t.Errorf("%s,%s: term %d, want %d", vt, st, r.Term, origTerm)
  482. }
  483. // if st == StateFollower or StatePreCandidate, r hasn't voted yet.
  484. // In StateCandidate or StateLeader, it's voted for itself.
  485. if r.Vote != None && r.Vote != 1 {
  486. t.Errorf("%s,%s: vote %d, want %d or 1", vt, st, r.Vote, None)
  487. }
  488. }
  489. }
  490. }
  491. func TestLogReplication(t *testing.T) {
  492. tests := []struct {
  493. *network
  494. msgs []pb.Message
  495. wcommitted uint64
  496. }{
  497. {
  498. newNetwork(nil, nil, nil),
  499. []pb.Message{
  500. {From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  501. },
  502. 2,
  503. },
  504. {
  505. newNetwork(nil, nil, nil),
  506. []pb.Message{
  507. {From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  508. {From: 1, To: 2, Type: pb.MsgHup},
  509. {From: 1, To: 2, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  510. },
  511. 4,
  512. },
  513. }
  514. for i, tt := range tests {
  515. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  516. for _, m := range tt.msgs {
  517. tt.send(m)
  518. }
  519. for j, x := range tt.network.peers {
  520. sm := x.(*raft)
  521. if sm.raftLog.committed != tt.wcommitted {
  522. t.Errorf("#%d.%d: committed = %d, want %d", i, j, sm.raftLog.committed, tt.wcommitted)
  523. }
  524. ents := []pb.Entry{}
  525. for _, e := range nextEnts(sm, tt.network.storage[j]) {
  526. if e.Data != nil {
  527. ents = append(ents, e)
  528. }
  529. }
  530. props := []pb.Message{}
  531. for _, m := range tt.msgs {
  532. if m.Type == pb.MsgProp {
  533. props = append(props, m)
  534. }
  535. }
  536. for k, m := range props {
  537. if !bytes.Equal(ents[k].Data, m.Entries[0].Data) {
  538. t.Errorf("#%d.%d: data = %d, want %d", i, j, ents[k].Data, m.Entries[0].Data)
  539. }
  540. }
  541. }
  542. }
  543. }
  544. func TestSingleNodeCommit(t *testing.T) {
  545. tt := newNetwork(nil)
  546. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  547. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  548. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  549. sm := tt.peers[1].(*raft)
  550. if sm.raftLog.committed != 3 {
  551. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 3)
  552. }
  553. }
  554. // TestCannotCommitWithoutNewTermEntry tests the entries cannot be committed
  555. // when leader changes, no new proposal comes in and ChangeTerm proposal is
  556. // filtered.
  557. func TestCannotCommitWithoutNewTermEntry(t *testing.T) {
  558. tt := newNetwork(nil, nil, nil, nil, nil)
  559. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  560. // 0 cannot reach 2,3,4
  561. tt.cut(1, 3)
  562. tt.cut(1, 4)
  563. tt.cut(1, 5)
  564. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  565. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  566. sm := tt.peers[1].(*raft)
  567. if sm.raftLog.committed != 1 {
  568. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  569. }
  570. // network recovery
  571. tt.recover()
  572. // avoid committing ChangeTerm proposal
  573. tt.ignore(pb.MsgApp)
  574. // elect 2 as the new leader with term 2
  575. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgHup})
  576. // no log entries from previous term should be committed
  577. sm = tt.peers[2].(*raft)
  578. if sm.raftLog.committed != 1 {
  579. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  580. }
  581. tt.recover()
  582. // send heartbeat; reset wait
  583. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgBeat})
  584. // append an entry at current term
  585. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  586. // expect the committed to be advanced
  587. if sm.raftLog.committed != 5 {
  588. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 5)
  589. }
  590. }
  591. // TestCommitWithoutNewTermEntry tests the entries could be committed
  592. // when leader changes, no new proposal comes in.
  593. func TestCommitWithoutNewTermEntry(t *testing.T) {
  594. tt := newNetwork(nil, nil, nil, nil, nil)
  595. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  596. // 0 cannot reach 2,3,4
  597. tt.cut(1, 3)
  598. tt.cut(1, 4)
  599. tt.cut(1, 5)
  600. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  601. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  602. sm := tt.peers[1].(*raft)
  603. if sm.raftLog.committed != 1 {
  604. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  605. }
  606. // network recovery
  607. tt.recover()
  608. // elect 1 as the new leader with term 2
  609. // after append a ChangeTerm entry from the current term, all entries
  610. // should be committed
  611. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgHup})
  612. if sm.raftLog.committed != 4 {
  613. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 4)
  614. }
  615. }
  616. func TestDuelingCandidates(t *testing.T) {
  617. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  618. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  619. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  620. nt := newNetwork(a, b, c)
  621. nt.cut(1, 3)
  622. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  623. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  624. // 1 becomes leader since it receives votes from 1 and 2
  625. sm := nt.peers[1].(*raft)
  626. if sm.state != StateLeader {
  627. t.Errorf("state = %s, want %s", sm.state, StateLeader)
  628. }
  629. // 3 stays as candidate since it receives a vote from 3 and a rejection from 2
  630. sm = nt.peers[3].(*raft)
  631. if sm.state != StateCandidate {
  632. t.Errorf("state = %s, want %s", sm.state, StateCandidate)
  633. }
  634. nt.recover()
  635. // candidate 3 now increases its term and tries to vote again
  636. // we expect it to disrupt the leader 1 since it has a higher term
  637. // 3 will be follower again since both 1 and 2 rejects its vote request since 3 does not have a long enough log
  638. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  639. wlog := &raftLog{
  640. storage: &MemoryStorage{ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}}},
  641. committed: 1,
  642. unstable: unstable{offset: 2},
  643. }
  644. tests := []struct {
  645. sm *raft
  646. state StateType
  647. term uint64
  648. raftLog *raftLog
  649. }{
  650. {a, StateFollower, 2, wlog},
  651. {b, StateFollower, 2, wlog},
  652. {c, StateFollower, 2, newLog(NewMemoryStorage(), raftLogger)},
  653. }
  654. for i, tt := range tests {
  655. if g := tt.sm.state; g != tt.state {
  656. t.Errorf("#%d: state = %s, want %s", i, g, tt.state)
  657. }
  658. if g := tt.sm.Term; g != tt.term {
  659. t.Errorf("#%d: term = %d, want %d", i, g, tt.term)
  660. }
  661. base := ltoa(tt.raftLog)
  662. if sm, ok := nt.peers[1+uint64(i)].(*raft); ok {
  663. l := ltoa(sm.raftLog)
  664. if g := diffu(base, l); g != "" {
  665. t.Errorf("#%d: diff:\n%s", i, g)
  666. }
  667. } else {
  668. t.Logf("#%d: empty log", i)
  669. }
  670. }
  671. }
  672. func TestDuelingPreCandidates(t *testing.T) {
  673. cfgA := newTestConfig(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  674. cfgB := newTestConfig(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  675. cfgC := newTestConfig(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  676. cfgA.PreVote = true
  677. cfgB.PreVote = true
  678. cfgC.PreVote = true
  679. a := newRaft(cfgA)
  680. b := newRaft(cfgB)
  681. c := newRaft(cfgC)
  682. nt := newNetwork(a, b, c)
  683. nt.cut(1, 3)
  684. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  685. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  686. // 1 becomes leader since it receives votes from 1 and 2
  687. sm := nt.peers[1].(*raft)
  688. if sm.state != StateLeader {
  689. t.Errorf("state = %s, want %s", sm.state, StateLeader)
  690. }
  691. // 3 campaigns then reverts to follower when its PreVote is rejected
  692. sm = nt.peers[3].(*raft)
  693. if sm.state != StateFollower {
  694. t.Errorf("state = %s, want %s", sm.state, StateFollower)
  695. }
  696. nt.recover()
  697. // Candidate 3 now increases its term and tries to vote again.
  698. // With PreVote, it does not disrupt the leader.
  699. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  700. wlog := &raftLog{
  701. storage: &MemoryStorage{ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}}},
  702. committed: 1,
  703. unstable: unstable{offset: 2},
  704. }
  705. tests := []struct {
  706. sm *raft
  707. state StateType
  708. term uint64
  709. raftLog *raftLog
  710. }{
  711. {a, StateLeader, 1, wlog},
  712. {b, StateFollower, 1, wlog},
  713. {c, StateFollower, 1, newLog(NewMemoryStorage(), raftLogger)},
  714. }
  715. for i, tt := range tests {
  716. if g := tt.sm.state; g != tt.state {
  717. t.Errorf("#%d: state = %s, want %s", i, g, tt.state)
  718. }
  719. if g := tt.sm.Term; g != tt.term {
  720. t.Errorf("#%d: term = %d, want %d", i, g, tt.term)
  721. }
  722. base := ltoa(tt.raftLog)
  723. if sm, ok := nt.peers[1+uint64(i)].(*raft); ok {
  724. l := ltoa(sm.raftLog)
  725. if g := diffu(base, l); g != "" {
  726. t.Errorf("#%d: diff:\n%s", i, g)
  727. }
  728. } else {
  729. t.Logf("#%d: empty log", i)
  730. }
  731. }
  732. }
  733. func TestCandidateConcede(t *testing.T) {
  734. tt := newNetwork(nil, nil, nil)
  735. tt.isolate(1)
  736. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  737. tt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  738. // heal the partition
  739. tt.recover()
  740. // send heartbeat; reset wait
  741. tt.send(pb.Message{From: 3, To: 3, Type: pb.MsgBeat})
  742. data := []byte("force follower")
  743. // send a proposal to 3 to flush out a MsgApp to 1
  744. tt.send(pb.Message{From: 3, To: 3, Type: pb.MsgProp, Entries: []pb.Entry{{Data: data}}})
  745. // send heartbeat; flush out commit
  746. tt.send(pb.Message{From: 3, To: 3, Type: pb.MsgBeat})
  747. a := tt.peers[1].(*raft)
  748. if g := a.state; g != StateFollower {
  749. t.Errorf("state = %s, want %s", g, StateFollower)
  750. }
  751. if g := a.Term; g != 1 {
  752. t.Errorf("term = %d, want %d", g, 1)
  753. }
  754. wantLog := ltoa(&raftLog{
  755. storage: &MemoryStorage{
  756. ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Index: 2, Data: data}},
  757. },
  758. unstable: unstable{offset: 3},
  759. committed: 2,
  760. })
  761. for i, p := range tt.peers {
  762. if sm, ok := p.(*raft); ok {
  763. l := ltoa(sm.raftLog)
  764. if g := diffu(wantLog, l); g != "" {
  765. t.Errorf("#%d: diff:\n%s", i, g)
  766. }
  767. } else {
  768. t.Logf("#%d: empty log", i)
  769. }
  770. }
  771. }
  772. func TestSingleNodeCandidate(t *testing.T) {
  773. tt := newNetwork(nil)
  774. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  775. sm := tt.peers[1].(*raft)
  776. if sm.state != StateLeader {
  777. t.Errorf("state = %d, want %d", sm.state, StateLeader)
  778. }
  779. }
  780. func TestSingleNodePreCandidate(t *testing.T) {
  781. tt := newNetworkWithConfig(preVoteConfig, nil)
  782. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  783. sm := tt.peers[1].(*raft)
  784. if sm.state != StateLeader {
  785. t.Errorf("state = %d, want %d", sm.state, StateLeader)
  786. }
  787. }
  788. func TestOldMessages(t *testing.T) {
  789. tt := newNetwork(nil, nil, nil)
  790. // make 0 leader @ term 3
  791. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  792. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgHup})
  793. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  794. // pretend we're an old leader trying to make progress; this entry is expected to be ignored.
  795. tt.send(pb.Message{From: 2, To: 1, Type: pb.MsgApp, Term: 2, Entries: []pb.Entry{{Index: 3, Term: 2}}})
  796. // commit a new entry
  797. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  798. ilog := &raftLog{
  799. storage: &MemoryStorage{
  800. ents: []pb.Entry{
  801. {}, {Data: nil, Term: 1, Index: 1},
  802. {Data: nil, Term: 2, Index: 2}, {Data: nil, Term: 3, Index: 3},
  803. {Data: []byte("somedata"), Term: 3, Index: 4},
  804. },
  805. },
  806. unstable: unstable{offset: 5},
  807. committed: 4,
  808. }
  809. base := ltoa(ilog)
  810. for i, p := range tt.peers {
  811. if sm, ok := p.(*raft); ok {
  812. l := ltoa(sm.raftLog)
  813. if g := diffu(base, l); g != "" {
  814. t.Errorf("#%d: diff:\n%s", i, g)
  815. }
  816. } else {
  817. t.Logf("#%d: empty log", i)
  818. }
  819. }
  820. }
  821. // TestOldMessagesReply - optimization - reply with new term.
  822. func TestProposal(t *testing.T) {
  823. tests := []struct {
  824. *network
  825. success bool
  826. }{
  827. {newNetwork(nil, nil, nil), true},
  828. {newNetwork(nil, nil, nopStepper), true},
  829. {newNetwork(nil, nopStepper, nopStepper), false},
  830. {newNetwork(nil, nopStepper, nopStepper, nil), false},
  831. {newNetwork(nil, nopStepper, nopStepper, nil, nil), true},
  832. }
  833. for j, tt := range tests {
  834. send := func(m pb.Message) {
  835. defer func() {
  836. // only recover is we expect it to panic so
  837. // panics we don't expect go up.
  838. if !tt.success {
  839. e := recover()
  840. if e != nil {
  841. t.Logf("#%d: err: %s", j, e)
  842. }
  843. }
  844. }()
  845. tt.send(m)
  846. }
  847. data := []byte("somedata")
  848. // promote 0 the leader
  849. send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  850. send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: data}}})
  851. wantLog := newLog(NewMemoryStorage(), raftLogger)
  852. if tt.success {
  853. wantLog = &raftLog{
  854. storage: &MemoryStorage{
  855. ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Index: 2, Data: data}},
  856. },
  857. unstable: unstable{offset: 3},
  858. committed: 2}
  859. }
  860. base := ltoa(wantLog)
  861. for i, p := range tt.peers {
  862. if sm, ok := p.(*raft); ok {
  863. l := ltoa(sm.raftLog)
  864. if g := diffu(base, l); g != "" {
  865. t.Errorf("#%d: diff:\n%s", i, g)
  866. }
  867. } else {
  868. t.Logf("#%d: empty log", i)
  869. }
  870. }
  871. sm := tt.network.peers[1].(*raft)
  872. if g := sm.Term; g != 1 {
  873. t.Errorf("#%d: term = %d, want %d", j, g, 1)
  874. }
  875. }
  876. }
  877. func TestProposalByProxy(t *testing.T) {
  878. data := []byte("somedata")
  879. tests := []*network{
  880. newNetwork(nil, nil, nil),
  881. newNetwork(nil, nil, nopStepper),
  882. }
  883. for j, tt := range tests {
  884. // promote 0 the leader
  885. tt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  886. // propose via follower
  887. tt.send(pb.Message{From: 2, To: 2, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  888. wantLog := &raftLog{
  889. storage: &MemoryStorage{
  890. ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Data: data, Index: 2}},
  891. },
  892. unstable: unstable{offset: 3},
  893. committed: 2}
  894. base := ltoa(wantLog)
  895. for i, p := range tt.peers {
  896. if sm, ok := p.(*raft); ok {
  897. l := ltoa(sm.raftLog)
  898. if g := diffu(base, l); g != "" {
  899. t.Errorf("#%d: diff:\n%s", i, g)
  900. }
  901. } else {
  902. t.Logf("#%d: empty log", i)
  903. }
  904. }
  905. sm := tt.peers[1].(*raft)
  906. if g := sm.Term; g != 1 {
  907. t.Errorf("#%d: term = %d, want %d", j, g, 1)
  908. }
  909. }
  910. }
  911. func TestCommit(t *testing.T) {
  912. tests := []struct {
  913. matches []uint64
  914. logs []pb.Entry
  915. smTerm uint64
  916. w uint64
  917. }{
  918. // single
  919. {[]uint64{1}, []pb.Entry{{Index: 1, Term: 1}}, 1, 1},
  920. {[]uint64{1}, []pb.Entry{{Index: 1, Term: 1}}, 2, 0},
  921. {[]uint64{2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 2, 2},
  922. {[]uint64{1}, []pb.Entry{{Index: 1, Term: 2}}, 2, 1},
  923. // odd
  924. {[]uint64{2, 1, 1}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 1, 1},
  925. {[]uint64{2, 1, 1}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 1}}, 2, 0},
  926. {[]uint64{2, 1, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 2, 2},
  927. {[]uint64{2, 1, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 1}}, 2, 0},
  928. // even
  929. {[]uint64{2, 1, 1, 1}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 1, 1},
  930. {[]uint64{2, 1, 1, 1}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 1}}, 2, 0},
  931. {[]uint64{2, 1, 1, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 1, 1},
  932. {[]uint64{2, 1, 1, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 1}}, 2, 0},
  933. {[]uint64{2, 1, 2, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}}, 2, 2},
  934. {[]uint64{2, 1, 2, 2}, []pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 1}}, 2, 0},
  935. }
  936. for i, tt := range tests {
  937. storage := NewMemoryStorage()
  938. storage.Append(tt.logs)
  939. storage.hardState = pb.HardState{Term: tt.smTerm}
  940. sm := newTestRaft(1, []uint64{1}, 5, 1, storage)
  941. for j := 0; j < len(tt.matches); j++ {
  942. sm.setProgress(uint64(j)+1, tt.matches[j], tt.matches[j]+1)
  943. }
  944. sm.maybeCommit()
  945. if g := sm.raftLog.committed; g != tt.w {
  946. t.Errorf("#%d: committed = %d, want %d", i, g, tt.w)
  947. }
  948. }
  949. }
  950. func TestPastElectionTimeout(t *testing.T) {
  951. tests := []struct {
  952. elapse int
  953. wprobability float64
  954. round bool
  955. }{
  956. {5, 0, false},
  957. {10, 0.1, true},
  958. {13, 0.4, true},
  959. {15, 0.6, true},
  960. {18, 0.9, true},
  961. {20, 1, false},
  962. }
  963. for i, tt := range tests {
  964. sm := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  965. sm.electionElapsed = tt.elapse
  966. c := 0
  967. for j := 0; j < 10000; j++ {
  968. sm.resetRandomizedElectionTimeout()
  969. if sm.pastElectionTimeout() {
  970. c++
  971. }
  972. }
  973. got := float64(c) / 10000.0
  974. if tt.round {
  975. got = math.Floor(got*10+0.5) / 10.0
  976. }
  977. if got != tt.wprobability {
  978. t.Errorf("#%d: probability = %v, want %v", i, got, tt.wprobability)
  979. }
  980. }
  981. }
  982. // ensure that the Step function ignores the message from old term and does not pass it to the
  983. // actual stepX function.
  984. func TestStepIgnoreOldTermMsg(t *testing.T) {
  985. called := false
  986. fakeStep := func(r *raft, m pb.Message) {
  987. called = true
  988. }
  989. sm := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  990. sm.step = fakeStep
  991. sm.Term = 2
  992. sm.Step(pb.Message{Type: pb.MsgApp, Term: sm.Term - 1})
  993. if called {
  994. t.Errorf("stepFunc called = %v , want %v", called, false)
  995. }
  996. }
  997. // TestHandleMsgApp ensures:
  998. // 1. Reply false if log doesn’t contain an entry at prevLogIndex whose term matches prevLogTerm.
  999. // 2. If an existing entry conflicts with a new one (same index but different terms),
  1000. // delete the existing entry and all that follow it; append any new entries not already in the log.
  1001. // 3. If leaderCommit > commitIndex, set commitIndex = min(leaderCommit, index of last new entry).
  1002. func TestHandleMsgApp(t *testing.T) {
  1003. tests := []struct {
  1004. m pb.Message
  1005. wIndex uint64
  1006. wCommit uint64
  1007. wReject bool
  1008. }{
  1009. // Ensure 1
  1010. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 3, Index: 2, Commit: 3}, 2, 0, true}, // previous log mismatch
  1011. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 3, Index: 3, Commit: 3}, 2, 0, true}, // previous log non-exist
  1012. // Ensure 2
  1013. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 1, Index: 1, Commit: 1}, 2, 1, false},
  1014. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 0, Index: 0, Commit: 1, Entries: []pb.Entry{{Index: 1, Term: 2}}}, 1, 1, false},
  1015. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 3, Entries: []pb.Entry{{Index: 3, Term: 2}, {Index: 4, Term: 2}}}, 4, 3, false},
  1016. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 4, Entries: []pb.Entry{{Index: 3, Term: 2}}}, 3, 3, false},
  1017. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 1, Index: 1, Commit: 4, Entries: []pb.Entry{{Index: 2, Term: 2}}}, 2, 2, false},
  1018. // Ensure 3
  1019. {pb.Message{Type: pb.MsgApp, Term: 1, LogTerm: 1, Index: 1, Commit: 3}, 2, 1, false}, // match entry 1, commit up to last new entry 1
  1020. {pb.Message{Type: pb.MsgApp, Term: 1, LogTerm: 1, Index: 1, Commit: 3, Entries: []pb.Entry{{Index: 2, Term: 2}}}, 2, 2, false}, // match entry 1, commit up to last new entry 2
  1021. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 3}, 2, 2, false}, // match entry 2, commit up to last new entry 2
  1022. {pb.Message{Type: pb.MsgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 4}, 2, 2, false}, // commit up to log.last()
  1023. }
  1024. for i, tt := range tests {
  1025. storage := NewMemoryStorage()
  1026. storage.Append([]pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}})
  1027. sm := newTestRaft(1, []uint64{1}, 10, 1, storage)
  1028. sm.becomeFollower(2, None)
  1029. sm.handleAppendEntries(tt.m)
  1030. if sm.raftLog.lastIndex() != tt.wIndex {
  1031. t.Errorf("#%d: lastIndex = %d, want %d", i, sm.raftLog.lastIndex(), tt.wIndex)
  1032. }
  1033. if sm.raftLog.committed != tt.wCommit {
  1034. t.Errorf("#%d: committed = %d, want %d", i, sm.raftLog.committed, tt.wCommit)
  1035. }
  1036. m := sm.readMessages()
  1037. if len(m) != 1 {
  1038. t.Fatalf("#%d: msg = nil, want 1", i)
  1039. }
  1040. if m[0].Reject != tt.wReject {
  1041. t.Errorf("#%d: reject = %v, want %v", i, m[0].Reject, tt.wReject)
  1042. }
  1043. }
  1044. }
  1045. // TestHandleHeartbeat ensures that the follower commits to the commit in the message.
  1046. func TestHandleHeartbeat(t *testing.T) {
  1047. commit := uint64(2)
  1048. tests := []struct {
  1049. m pb.Message
  1050. wCommit uint64
  1051. }{
  1052. {pb.Message{From: 2, To: 1, Type: pb.MsgHeartbeat, Term: 2, Commit: commit + 1}, commit + 1},
  1053. {pb.Message{From: 2, To: 1, Type: pb.MsgHeartbeat, Term: 2, Commit: commit - 1}, commit}, // do not decrease commit
  1054. }
  1055. for i, tt := range tests {
  1056. storage := NewMemoryStorage()
  1057. storage.Append([]pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}, {Index: 3, Term: 3}})
  1058. sm := newTestRaft(1, []uint64{1, 2}, 5, 1, storage)
  1059. sm.becomeFollower(2, 2)
  1060. sm.raftLog.commitTo(commit)
  1061. sm.handleHeartbeat(tt.m)
  1062. if sm.raftLog.committed != tt.wCommit {
  1063. t.Errorf("#%d: committed = %d, want %d", i, sm.raftLog.committed, tt.wCommit)
  1064. }
  1065. m := sm.readMessages()
  1066. if len(m) != 1 {
  1067. t.Fatalf("#%d: msg = nil, want 1", i)
  1068. }
  1069. if m[0].Type != pb.MsgHeartbeatResp {
  1070. t.Errorf("#%d: type = %v, want MsgHeartbeatResp", i, m[0].Type)
  1071. }
  1072. }
  1073. }
  1074. // TestHandleHeartbeatResp ensures that we re-send log entries when we get a heartbeat response.
  1075. func TestHandleHeartbeatResp(t *testing.T) {
  1076. storage := NewMemoryStorage()
  1077. storage.Append([]pb.Entry{{Index: 1, Term: 1}, {Index: 2, Term: 2}, {Index: 3, Term: 3}})
  1078. sm := newTestRaft(1, []uint64{1, 2}, 5, 1, storage)
  1079. sm.becomeCandidate()
  1080. sm.becomeLeader()
  1081. sm.raftLog.commitTo(sm.raftLog.lastIndex())
  1082. // A heartbeat response from a node that is behind; re-send MsgApp
  1083. sm.Step(pb.Message{From: 2, Type: pb.MsgHeartbeatResp})
  1084. msgs := sm.readMessages()
  1085. if len(msgs) != 1 {
  1086. t.Fatalf("len(msgs) = %d, want 1", len(msgs))
  1087. }
  1088. if msgs[0].Type != pb.MsgApp {
  1089. t.Errorf("type = %v, want MsgApp", msgs[0].Type)
  1090. }
  1091. // A second heartbeat response with no AppResp does not re-send because we are in the wait state.
  1092. sm.Step(pb.Message{From: 2, Type: pb.MsgHeartbeatResp})
  1093. msgs = sm.readMessages()
  1094. if len(msgs) != 0 {
  1095. t.Fatalf("len(msgs) = %d, want 0", len(msgs))
  1096. }
  1097. // Send a heartbeat to reset the wait state; next heartbeat will re-send MsgApp.
  1098. sm.bcastHeartbeat()
  1099. sm.Step(pb.Message{From: 2, Type: pb.MsgHeartbeatResp})
  1100. msgs = sm.readMessages()
  1101. if len(msgs) != 2 {
  1102. t.Fatalf("len(msgs) = %d, want 2", len(msgs))
  1103. }
  1104. if msgs[0].Type != pb.MsgHeartbeat {
  1105. t.Errorf("type = %v, want MsgHeartbeat", msgs[0].Type)
  1106. }
  1107. if msgs[1].Type != pb.MsgApp {
  1108. t.Errorf("type = %v, want MsgApp", msgs[1].Type)
  1109. }
  1110. // Once we have an MsgAppResp, heartbeats no longer send MsgApp.
  1111. sm.Step(pb.Message{
  1112. From: 2,
  1113. Type: pb.MsgAppResp,
  1114. Index: msgs[1].Index + uint64(len(msgs[1].Entries)),
  1115. })
  1116. // Consume the message sent in response to MsgAppResp
  1117. sm.readMessages()
  1118. sm.bcastHeartbeat() // reset wait state
  1119. sm.Step(pb.Message{From: 2, Type: pb.MsgHeartbeatResp})
  1120. msgs = sm.readMessages()
  1121. if len(msgs) != 1 {
  1122. t.Fatalf("len(msgs) = %d, want 1: %+v", len(msgs), msgs)
  1123. }
  1124. if msgs[0].Type != pb.MsgHeartbeat {
  1125. t.Errorf("type = %v, want MsgHeartbeat", msgs[0].Type)
  1126. }
  1127. }
  1128. // TestMsgAppRespWaitReset verifies the resume behavior of a leader
  1129. // MsgAppResp.
  1130. func TestMsgAppRespWaitReset(t *testing.T) {
  1131. sm := newTestRaft(1, []uint64{1, 2, 3}, 5, 1, NewMemoryStorage())
  1132. sm.becomeCandidate()
  1133. sm.becomeLeader()
  1134. // The new leader has just emitted a new Term 4 entry; consume those messages
  1135. // from the outgoing queue.
  1136. sm.bcastAppend()
  1137. sm.readMessages()
  1138. // Node 2 acks the first entry, making it committed.
  1139. sm.Step(pb.Message{
  1140. From: 2,
  1141. Type: pb.MsgAppResp,
  1142. Index: 1,
  1143. })
  1144. if sm.raftLog.committed != 1 {
  1145. t.Fatalf("expected committed to be 1, got %d", sm.raftLog.committed)
  1146. }
  1147. // Also consume the MsgApp messages that update Commit on the followers.
  1148. sm.readMessages()
  1149. // A new command is now proposed on node 1.
  1150. sm.Step(pb.Message{
  1151. From: 1,
  1152. Type: pb.MsgProp,
  1153. Entries: []pb.Entry{{}},
  1154. })
  1155. // The command is broadcast to all nodes not in the wait state.
  1156. // Node 2 left the wait state due to its MsgAppResp, but node 3 is still waiting.
  1157. msgs := sm.readMessages()
  1158. if len(msgs) != 1 {
  1159. t.Fatalf("expected 1 message, got %d: %+v", len(msgs), msgs)
  1160. }
  1161. if msgs[0].Type != pb.MsgApp || msgs[0].To != 2 {
  1162. t.Errorf("expected MsgApp to node 2, got %v to %d", msgs[0].Type, msgs[0].To)
  1163. }
  1164. if len(msgs[0].Entries) != 1 || msgs[0].Entries[0].Index != 2 {
  1165. t.Errorf("expected to send entry 2, but got %v", msgs[0].Entries)
  1166. }
  1167. // Now Node 3 acks the first entry. This releases the wait and entry 2 is sent.
  1168. sm.Step(pb.Message{
  1169. From: 3,
  1170. Type: pb.MsgAppResp,
  1171. Index: 1,
  1172. })
  1173. msgs = sm.readMessages()
  1174. if len(msgs) != 1 {
  1175. t.Fatalf("expected 1 message, got %d: %+v", len(msgs), msgs)
  1176. }
  1177. if msgs[0].Type != pb.MsgApp || msgs[0].To != 3 {
  1178. t.Errorf("expected MsgApp to node 3, got %v to %d", msgs[0].Type, msgs[0].To)
  1179. }
  1180. if len(msgs[0].Entries) != 1 || msgs[0].Entries[0].Index != 2 {
  1181. t.Errorf("expected to send entry 2, but got %v", msgs[0].Entries)
  1182. }
  1183. }
  1184. func TestRecvMsgVote(t *testing.T) {
  1185. testRecvMsgVote(t, pb.MsgVote)
  1186. }
  1187. func testRecvMsgVote(t *testing.T, msgType pb.MessageType) {
  1188. tests := []struct {
  1189. state StateType
  1190. i, term uint64
  1191. voteFor uint64
  1192. wreject bool
  1193. }{
  1194. {StateFollower, 0, 0, None, true},
  1195. {StateFollower, 0, 1, None, true},
  1196. {StateFollower, 0, 2, None, true},
  1197. {StateFollower, 0, 3, None, false},
  1198. {StateFollower, 1, 0, None, true},
  1199. {StateFollower, 1, 1, None, true},
  1200. {StateFollower, 1, 2, None, true},
  1201. {StateFollower, 1, 3, None, false},
  1202. {StateFollower, 2, 0, None, true},
  1203. {StateFollower, 2, 1, None, true},
  1204. {StateFollower, 2, 2, None, false},
  1205. {StateFollower, 2, 3, None, false},
  1206. {StateFollower, 3, 0, None, true},
  1207. {StateFollower, 3, 1, None, true},
  1208. {StateFollower, 3, 2, None, false},
  1209. {StateFollower, 3, 3, None, false},
  1210. {StateFollower, 3, 2, 2, false},
  1211. {StateFollower, 3, 2, 1, true},
  1212. {StateLeader, 3, 3, 1, true},
  1213. {StatePreCandidate, 3, 3, 1, true},
  1214. {StateCandidate, 3, 3, 1, true},
  1215. }
  1216. for i, tt := range tests {
  1217. sm := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  1218. sm.state = tt.state
  1219. switch tt.state {
  1220. case StateFollower:
  1221. sm.step = stepFollower
  1222. case StateCandidate, StatePreCandidate:
  1223. sm.step = stepCandidate
  1224. case StateLeader:
  1225. sm.step = stepLeader
  1226. }
  1227. sm.Vote = tt.voteFor
  1228. sm.raftLog = &raftLog{
  1229. storage: &MemoryStorage{ents: []pb.Entry{{}, {Index: 1, Term: 2}, {Index: 2, Term: 2}}},
  1230. unstable: unstable{offset: 3},
  1231. }
  1232. sm.Step(pb.Message{Type: msgType, From: 2, Index: tt.i, LogTerm: tt.term})
  1233. msgs := sm.readMessages()
  1234. if g := len(msgs); g != 1 {
  1235. t.Fatalf("#%d: len(msgs) = %d, want 1", i, g)
  1236. continue
  1237. }
  1238. if g := msgs[0].Type; g != voteRespMsgType(msgType) {
  1239. t.Errorf("#%d, m.Type = %v, want %v", i, g, voteRespMsgType(msgType))
  1240. }
  1241. if g := msgs[0].Reject; g != tt.wreject {
  1242. t.Errorf("#%d, m.Reject = %v, want %v", i, g, tt.wreject)
  1243. }
  1244. }
  1245. }
  1246. func TestStateTransition(t *testing.T) {
  1247. tests := []struct {
  1248. from StateType
  1249. to StateType
  1250. wallow bool
  1251. wterm uint64
  1252. wlead uint64
  1253. }{
  1254. {StateFollower, StateFollower, true, 1, None},
  1255. {StateFollower, StatePreCandidate, true, 0, None},
  1256. {StateFollower, StateCandidate, true, 1, None},
  1257. {StateFollower, StateLeader, false, 0, None},
  1258. {StatePreCandidate, StateFollower, true, 0, None},
  1259. {StatePreCandidate, StatePreCandidate, true, 0, None},
  1260. {StatePreCandidate, StateCandidate, true, 1, None},
  1261. {StatePreCandidate, StateLeader, true, 0, 1},
  1262. {StateCandidate, StateFollower, true, 0, None},
  1263. {StateCandidate, StatePreCandidate, true, 0, None},
  1264. {StateCandidate, StateCandidate, true, 1, None},
  1265. {StateCandidate, StateLeader, true, 0, 1},
  1266. {StateLeader, StateFollower, true, 1, None},
  1267. {StateLeader, StatePreCandidate, false, 0, None},
  1268. {StateLeader, StateCandidate, false, 1, None},
  1269. {StateLeader, StateLeader, true, 0, 1},
  1270. }
  1271. for i, tt := range tests {
  1272. func() {
  1273. defer func() {
  1274. if r := recover(); r != nil {
  1275. if tt.wallow {
  1276. t.Errorf("%d: allow = %v, want %v", i, false, true)
  1277. }
  1278. }
  1279. }()
  1280. sm := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  1281. sm.state = tt.from
  1282. switch tt.to {
  1283. case StateFollower:
  1284. sm.becomeFollower(tt.wterm, tt.wlead)
  1285. case StatePreCandidate:
  1286. sm.becomePreCandidate()
  1287. case StateCandidate:
  1288. sm.becomeCandidate()
  1289. case StateLeader:
  1290. sm.becomeLeader()
  1291. }
  1292. if sm.Term != tt.wterm {
  1293. t.Errorf("%d: term = %d, want %d", i, sm.Term, tt.wterm)
  1294. }
  1295. if sm.lead != tt.wlead {
  1296. t.Errorf("%d: lead = %d, want %d", i, sm.lead, tt.wlead)
  1297. }
  1298. }()
  1299. }
  1300. }
  1301. func TestAllServerStepdown(t *testing.T) {
  1302. tests := []struct {
  1303. state StateType
  1304. wstate StateType
  1305. wterm uint64
  1306. windex uint64
  1307. }{
  1308. {StateFollower, StateFollower, 3, 0},
  1309. {StatePreCandidate, StateFollower, 3, 0},
  1310. {StateCandidate, StateFollower, 3, 0},
  1311. {StateLeader, StateFollower, 3, 1},
  1312. }
  1313. tmsgTypes := [...]pb.MessageType{pb.MsgVote, pb.MsgApp}
  1314. tterm := uint64(3)
  1315. for i, tt := range tests {
  1316. sm := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1317. switch tt.state {
  1318. case StateFollower:
  1319. sm.becomeFollower(1, None)
  1320. case StateCandidate:
  1321. sm.becomeCandidate()
  1322. case StateLeader:
  1323. sm.becomeCandidate()
  1324. sm.becomeLeader()
  1325. }
  1326. for j, msgType := range tmsgTypes {
  1327. sm.Step(pb.Message{From: 2, Type: msgType, Term: tterm, LogTerm: tterm})
  1328. if sm.state != tt.wstate {
  1329. t.Errorf("#%d.%d state = %v , want %v", i, j, sm.state, tt.wstate)
  1330. }
  1331. if sm.Term != tt.wterm {
  1332. t.Errorf("#%d.%d term = %v , want %v", i, j, sm.Term, tt.wterm)
  1333. }
  1334. if uint64(sm.raftLog.lastIndex()) != tt.windex {
  1335. t.Errorf("#%d.%d index = %v , want %v", i, j, sm.raftLog.lastIndex(), tt.windex)
  1336. }
  1337. if uint64(len(sm.raftLog.allEntries())) != tt.windex {
  1338. t.Errorf("#%d.%d len(ents) = %v , want %v", i, j, len(sm.raftLog.allEntries()), tt.windex)
  1339. }
  1340. wlead := uint64(2)
  1341. if msgType == pb.MsgVote {
  1342. wlead = None
  1343. }
  1344. if sm.lead != wlead {
  1345. t.Errorf("#%d, sm.lead = %d, want %d", i, sm.lead, None)
  1346. }
  1347. }
  1348. }
  1349. }
  1350. func TestLeaderStepdownWhenQuorumActive(t *testing.T) {
  1351. sm := newTestRaft(1, []uint64{1, 2, 3}, 5, 1, NewMemoryStorage())
  1352. sm.checkQuorum = true
  1353. sm.becomeCandidate()
  1354. sm.becomeLeader()
  1355. for i := 0; i < sm.electionTimeout+1; i++ {
  1356. sm.Step(pb.Message{From: 2, Type: pb.MsgHeartbeatResp, Term: sm.Term})
  1357. sm.tick()
  1358. }
  1359. if sm.state != StateLeader {
  1360. t.Errorf("state = %v, want %v", sm.state, StateLeader)
  1361. }
  1362. }
  1363. func TestLeaderStepdownWhenQuorumLost(t *testing.T) {
  1364. sm := newTestRaft(1, []uint64{1, 2, 3}, 5, 1, NewMemoryStorage())
  1365. sm.checkQuorum = true
  1366. sm.becomeCandidate()
  1367. sm.becomeLeader()
  1368. for i := 0; i < sm.electionTimeout+1; i++ {
  1369. sm.tick()
  1370. }
  1371. if sm.state != StateFollower {
  1372. t.Errorf("state = %v, want %v", sm.state, StateFollower)
  1373. }
  1374. }
  1375. func TestLeaderSupersedingWithCheckQuorum(t *testing.T) {
  1376. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1377. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1378. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1379. a.checkQuorum = true
  1380. b.checkQuorum = true
  1381. c.checkQuorum = true
  1382. nt := newNetwork(a, b, c)
  1383. setRandomizedElectionTimeout(b, b.electionTimeout+1)
  1384. for i := 0; i < b.electionTimeout; i++ {
  1385. b.tick()
  1386. }
  1387. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1388. if a.state != StateLeader {
  1389. t.Errorf("state = %s, want %s", a.state, StateLeader)
  1390. }
  1391. if c.state != StateFollower {
  1392. t.Errorf("state = %s, want %s", c.state, StateFollower)
  1393. }
  1394. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  1395. // Peer b rejected c's vote since its electionElapsed had not reached to electionTimeout
  1396. if c.state != StateCandidate {
  1397. t.Errorf("state = %s, want %s", c.state, StateCandidate)
  1398. }
  1399. // Letting b's electionElapsed reach to electionTimeout
  1400. for i := 0; i < b.electionTimeout; i++ {
  1401. b.tick()
  1402. }
  1403. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  1404. if c.state != StateLeader {
  1405. t.Errorf("state = %s, want %s", c.state, StateLeader)
  1406. }
  1407. }
  1408. func TestLeaderElectionWithCheckQuorum(t *testing.T) {
  1409. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1410. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1411. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1412. a.checkQuorum = true
  1413. b.checkQuorum = true
  1414. c.checkQuorum = true
  1415. nt := newNetwork(a, b, c)
  1416. setRandomizedElectionTimeout(a, a.electionTimeout+1)
  1417. setRandomizedElectionTimeout(b, b.electionTimeout+2)
  1418. // Immediately after creation, votes are cast regardless of the
  1419. // election timeout.
  1420. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1421. if a.state != StateLeader {
  1422. t.Errorf("state = %s, want %s", a.state, StateLeader)
  1423. }
  1424. if c.state != StateFollower {
  1425. t.Errorf("state = %s, want %s", c.state, StateFollower)
  1426. }
  1427. // need to reset randomizedElectionTimeout larger than electionTimeout again,
  1428. // because the value might be reset to electionTimeout since the last state changes
  1429. setRandomizedElectionTimeout(a, a.electionTimeout+1)
  1430. setRandomizedElectionTimeout(b, b.electionTimeout+2)
  1431. for i := 0; i < a.electionTimeout; i++ {
  1432. a.tick()
  1433. }
  1434. for i := 0; i < b.electionTimeout; i++ {
  1435. b.tick()
  1436. }
  1437. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  1438. if a.state != StateFollower {
  1439. t.Errorf("state = %s, want %s", a.state, StateFollower)
  1440. }
  1441. if c.state != StateLeader {
  1442. t.Errorf("state = %s, want %s", c.state, StateLeader)
  1443. }
  1444. }
  1445. // TestFreeStuckCandidateWithCheckQuorum ensures that a candidate with a higher term
  1446. // can disrupt the leader even if the leader still "officially" holds the lease, The
  1447. // leader is expected to step down and adopt the candidate's term
  1448. func TestFreeStuckCandidateWithCheckQuorum(t *testing.T) {
  1449. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1450. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1451. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1452. a.checkQuorum = true
  1453. b.checkQuorum = true
  1454. c.checkQuorum = true
  1455. nt := newNetwork(a, b, c)
  1456. setRandomizedElectionTimeout(b, b.electionTimeout+1)
  1457. for i := 0; i < b.electionTimeout; i++ {
  1458. b.tick()
  1459. }
  1460. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1461. nt.isolate(1)
  1462. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  1463. if b.state != StateFollower {
  1464. t.Errorf("state = %s, want %s", b.state, StateFollower)
  1465. }
  1466. if c.state != StateCandidate {
  1467. t.Errorf("state = %s, want %s", c.state, StateCandidate)
  1468. }
  1469. if c.Term != b.Term+1 {
  1470. t.Errorf("term = %d, want %d", c.Term, b.Term+1)
  1471. }
  1472. // Vote again for safety
  1473. nt.send(pb.Message{From: 3, To: 3, Type: pb.MsgHup})
  1474. if b.state != StateFollower {
  1475. t.Errorf("state = %s, want %s", b.state, StateFollower)
  1476. }
  1477. if c.state != StateCandidate {
  1478. t.Errorf("state = %s, want %s", c.state, StateCandidate)
  1479. }
  1480. if c.Term != b.Term+2 {
  1481. t.Errorf("term = %d, want %d", c.Term, b.Term+2)
  1482. }
  1483. nt.recover()
  1484. nt.send(pb.Message{From: 1, To: 3, Type: pb.MsgHeartbeat, Term: a.Term})
  1485. // Disrupt the leader so that the stuck peer is freed
  1486. if a.state != StateFollower {
  1487. t.Errorf("state = %s, want %s", a.state, StateFollower)
  1488. }
  1489. if c.Term != a.Term {
  1490. t.Errorf("term = %d, want %d", c.Term, a.Term)
  1491. }
  1492. }
  1493. func TestNonPromotableVoterWithCheckQuorum(t *testing.T) {
  1494. a := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  1495. b := newTestRaft(2, []uint64{1}, 10, 1, NewMemoryStorage())
  1496. a.checkQuorum = true
  1497. b.checkQuorum = true
  1498. nt := newNetwork(a, b)
  1499. setRandomizedElectionTimeout(b, b.electionTimeout+1)
  1500. // Need to remove 2 again to make it a non-promotable node since newNetwork overwritten some internal states
  1501. b.delProgress(2)
  1502. if b.promotable() {
  1503. t.Fatalf("promotable = %v, want false", b.promotable())
  1504. }
  1505. for i := 0; i < b.electionTimeout; i++ {
  1506. b.tick()
  1507. }
  1508. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1509. if a.state != StateLeader {
  1510. t.Errorf("state = %s, want %s", a.state, StateLeader)
  1511. }
  1512. if b.state != StateFollower {
  1513. t.Errorf("state = %s, want %s", b.state, StateFollower)
  1514. }
  1515. if b.lead != 1 {
  1516. t.Errorf("lead = %d, want 1", b.lead)
  1517. }
  1518. }
  1519. func TestReadOnlyOptionSafe(t *testing.T) {
  1520. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1521. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1522. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1523. nt := newNetwork(a, b, c)
  1524. setRandomizedElectionTimeout(b, b.electionTimeout+1)
  1525. for i := 0; i < b.electionTimeout; i++ {
  1526. b.tick()
  1527. }
  1528. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1529. if a.state != StateLeader {
  1530. t.Fatalf("state = %s, want %s", a.state, StateLeader)
  1531. }
  1532. tests := []struct {
  1533. sm *raft
  1534. proposals int
  1535. wri uint64
  1536. wctx []byte
  1537. }{
  1538. {a, 10, 11, []byte("ctx1")},
  1539. {b, 10, 21, []byte("ctx2")},
  1540. {c, 10, 31, []byte("ctx3")},
  1541. {a, 10, 41, []byte("ctx4")},
  1542. {b, 10, 51, []byte("ctx5")},
  1543. {c, 10, 61, []byte("ctx6")},
  1544. }
  1545. for i, tt := range tests {
  1546. for j := 0; j < tt.proposals; j++ {
  1547. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  1548. }
  1549. nt.send(pb.Message{From: tt.sm.id, To: tt.sm.id, Type: pb.MsgReadIndex, Entries: []pb.Entry{{Data: tt.wctx}}})
  1550. r := tt.sm
  1551. if len(r.readStates) == 0 {
  1552. t.Errorf("#%d: len(readStates) = 0, want non-zero", i)
  1553. }
  1554. rs := r.readStates[0]
  1555. if rs.Index != tt.wri {
  1556. t.Errorf("#%d: readIndex = %d, want %d", i, rs.Index, tt.wri)
  1557. }
  1558. if !bytes.Equal(rs.RequestCtx, tt.wctx) {
  1559. t.Errorf("#%d: requestCtx = %v, want %v", i, rs.RequestCtx, tt.wctx)
  1560. }
  1561. r.readStates = nil
  1562. }
  1563. }
  1564. func TestReadOnlyOptionLease(t *testing.T) {
  1565. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1566. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1567. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1568. a.readOnly.option = ReadOnlyLeaseBased
  1569. b.readOnly.option = ReadOnlyLeaseBased
  1570. c.readOnly.option = ReadOnlyLeaseBased
  1571. a.checkQuorum = true
  1572. b.checkQuorum = true
  1573. c.checkQuorum = true
  1574. nt := newNetwork(a, b, c)
  1575. setRandomizedElectionTimeout(b, b.electionTimeout+1)
  1576. for i := 0; i < b.electionTimeout; i++ {
  1577. b.tick()
  1578. }
  1579. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1580. if a.state != StateLeader {
  1581. t.Fatalf("state = %s, want %s", a.state, StateLeader)
  1582. }
  1583. tests := []struct {
  1584. sm *raft
  1585. proposals int
  1586. wri uint64
  1587. wctx []byte
  1588. }{
  1589. {a, 10, 11, []byte("ctx1")},
  1590. {b, 10, 21, []byte("ctx2")},
  1591. {c, 10, 31, []byte("ctx3")},
  1592. {a, 10, 41, []byte("ctx4")},
  1593. {b, 10, 51, []byte("ctx5")},
  1594. {c, 10, 61, []byte("ctx6")},
  1595. }
  1596. for i, tt := range tests {
  1597. for j := 0; j < tt.proposals; j++ {
  1598. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  1599. }
  1600. nt.send(pb.Message{From: tt.sm.id, To: tt.sm.id, Type: pb.MsgReadIndex, Entries: []pb.Entry{{Data: tt.wctx}}})
  1601. r := tt.sm
  1602. rs := r.readStates[0]
  1603. if rs.Index != tt.wri {
  1604. t.Errorf("#%d: readIndex = %d, want %d", i, rs.Index, tt.wri)
  1605. }
  1606. if !bytes.Equal(rs.RequestCtx, tt.wctx) {
  1607. t.Errorf("#%d: requestCtx = %v, want %v", i, rs.RequestCtx, tt.wctx)
  1608. }
  1609. r.readStates = nil
  1610. }
  1611. }
  1612. func TestReadOnlyOptionLeaseWithoutCheckQuorum(t *testing.T) {
  1613. a := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1614. b := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1615. c := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1616. a.readOnly.option = ReadOnlyLeaseBased
  1617. b.readOnly.option = ReadOnlyLeaseBased
  1618. c.readOnly.option = ReadOnlyLeaseBased
  1619. nt := newNetwork(a, b, c)
  1620. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  1621. ctx := []byte("ctx1")
  1622. nt.send(pb.Message{From: 2, To: 2, Type: pb.MsgReadIndex, Entries: []pb.Entry{{Data: ctx}}})
  1623. rs := b.readStates[0]
  1624. if rs.Index != None {
  1625. t.Errorf("readIndex = %d, want %d", rs.Index, None)
  1626. }
  1627. if !bytes.Equal(rs.RequestCtx, ctx) {
  1628. t.Errorf("requestCtx = %v, want %v", rs.RequestCtx, ctx)
  1629. }
  1630. }
  1631. func TestLeaderAppResp(t *testing.T) {
  1632. // initial progress: match = 0; next = 3
  1633. tests := []struct {
  1634. index uint64
  1635. reject bool
  1636. // progress
  1637. wmatch uint64
  1638. wnext uint64
  1639. // message
  1640. wmsgNum int
  1641. windex uint64
  1642. wcommitted uint64
  1643. }{
  1644. {3, true, 0, 3, 0, 0, 0}, // stale resp; no replies
  1645. {2, true, 0, 2, 1, 1, 0}, // denied resp; leader does not commit; decrease next and send probing msg
  1646. {2, false, 2, 4, 2, 2, 2}, // accept resp; leader commits; broadcast with commit index
  1647. {0, false, 0, 3, 0, 0, 0}, // ignore heartbeat replies
  1648. }
  1649. for i, tt := range tests {
  1650. // sm term is 1 after it becomes the leader.
  1651. // thus the last log term must be 1 to be committed.
  1652. sm := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1653. sm.raftLog = &raftLog{
  1654. storage: &MemoryStorage{ents: []pb.Entry{{}, {Index: 1, Term: 0}, {Index: 2, Term: 1}}},
  1655. unstable: unstable{offset: 3},
  1656. }
  1657. sm.becomeCandidate()
  1658. sm.becomeLeader()
  1659. sm.readMessages()
  1660. sm.Step(pb.Message{From: 2, Type: pb.MsgAppResp, Index: tt.index, Term: sm.Term, Reject: tt.reject, RejectHint: tt.index})
  1661. p := sm.prs[2]
  1662. if p.Match != tt.wmatch {
  1663. t.Errorf("#%d match = %d, want %d", i, p.Match, tt.wmatch)
  1664. }
  1665. if p.Next != tt.wnext {
  1666. t.Errorf("#%d next = %d, want %d", i, p.Next, tt.wnext)
  1667. }
  1668. msgs := sm.readMessages()
  1669. if len(msgs) != tt.wmsgNum {
  1670. t.Errorf("#%d msgNum = %d, want %d", i, len(msgs), tt.wmsgNum)
  1671. }
  1672. for j, msg := range msgs {
  1673. if msg.Index != tt.windex {
  1674. t.Errorf("#%d.%d index = %d, want %d", i, j, msg.Index, tt.windex)
  1675. }
  1676. if msg.Commit != tt.wcommitted {
  1677. t.Errorf("#%d.%d commit = %d, want %d", i, j, msg.Commit, tt.wcommitted)
  1678. }
  1679. }
  1680. }
  1681. }
  1682. // When the leader receives a heartbeat tick, it should
  1683. // send a MsgApp with m.Index = 0, m.LogTerm=0 and empty entries.
  1684. func TestBcastBeat(t *testing.T) {
  1685. offset := uint64(1000)
  1686. // make a state machine with log.offset = 1000
  1687. s := pb.Snapshot{
  1688. Metadata: pb.SnapshotMetadata{
  1689. Index: offset,
  1690. Term: 1,
  1691. ConfState: pb.ConfState{Nodes: []uint64{1, 2, 3}},
  1692. },
  1693. }
  1694. storage := NewMemoryStorage()
  1695. storage.ApplySnapshot(s)
  1696. sm := newTestRaft(1, nil, 10, 1, storage)
  1697. sm.Term = 1
  1698. sm.becomeCandidate()
  1699. sm.becomeLeader()
  1700. for i := 0; i < 10; i++ {
  1701. sm.appendEntry(pb.Entry{Index: uint64(i) + 1})
  1702. }
  1703. // slow follower
  1704. sm.prs[2].Match, sm.prs[2].Next = 5, 6
  1705. // normal follower
  1706. sm.prs[3].Match, sm.prs[3].Next = sm.raftLog.lastIndex(), sm.raftLog.lastIndex()+1
  1707. sm.Step(pb.Message{Type: pb.MsgBeat})
  1708. msgs := sm.readMessages()
  1709. if len(msgs) != 2 {
  1710. t.Fatalf("len(msgs) = %v, want 2", len(msgs))
  1711. }
  1712. wantCommitMap := map[uint64]uint64{
  1713. 2: min(sm.raftLog.committed, sm.prs[2].Match),
  1714. 3: min(sm.raftLog.committed, sm.prs[3].Match),
  1715. }
  1716. for i, m := range msgs {
  1717. if m.Type != pb.MsgHeartbeat {
  1718. t.Fatalf("#%d: type = %v, want = %v", i, m.Type, pb.MsgHeartbeat)
  1719. }
  1720. if m.Index != 0 {
  1721. t.Fatalf("#%d: prevIndex = %d, want %d", i, m.Index, 0)
  1722. }
  1723. if m.LogTerm != 0 {
  1724. t.Fatalf("#%d: prevTerm = %d, want %d", i, m.LogTerm, 0)
  1725. }
  1726. if wantCommitMap[m.To] == 0 {
  1727. t.Fatalf("#%d: unexpected to %d", i, m.To)
  1728. } else {
  1729. if m.Commit != wantCommitMap[m.To] {
  1730. t.Fatalf("#%d: commit = %d, want %d", i, m.Commit, wantCommitMap[m.To])
  1731. }
  1732. delete(wantCommitMap, m.To)
  1733. }
  1734. if len(m.Entries) != 0 {
  1735. t.Fatalf("#%d: len(entries) = %d, want 0", i, len(m.Entries))
  1736. }
  1737. }
  1738. }
  1739. // tests the output of the state machine when receiving MsgBeat
  1740. func TestRecvMsgBeat(t *testing.T) {
  1741. tests := []struct {
  1742. state StateType
  1743. wMsg int
  1744. }{
  1745. {StateLeader, 2},
  1746. // candidate and follower should ignore MsgBeat
  1747. {StateCandidate, 0},
  1748. {StateFollower, 0},
  1749. }
  1750. for i, tt := range tests {
  1751. sm := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  1752. sm.raftLog = &raftLog{storage: &MemoryStorage{ents: []pb.Entry{{}, {Index: 1, Term: 0}, {Index: 2, Term: 1}}}}
  1753. sm.Term = 1
  1754. sm.state = tt.state
  1755. switch tt.state {
  1756. case StateFollower:
  1757. sm.step = stepFollower
  1758. case StateCandidate:
  1759. sm.step = stepCandidate
  1760. case StateLeader:
  1761. sm.step = stepLeader
  1762. }
  1763. sm.Step(pb.Message{From: 1, To: 1, Type: pb.MsgBeat})
  1764. msgs := sm.readMessages()
  1765. if len(msgs) != tt.wMsg {
  1766. t.Errorf("%d: len(msgs) = %d, want %d", i, len(msgs), tt.wMsg)
  1767. }
  1768. for _, m := range msgs {
  1769. if m.Type != pb.MsgHeartbeat {
  1770. t.Errorf("%d: msg.type = %v, want %v", i, m.Type, pb.MsgHeartbeat)
  1771. }
  1772. }
  1773. }
  1774. }
  1775. func TestLeaderIncreaseNext(t *testing.T) {
  1776. previousEnts := []pb.Entry{{Term: 1, Index: 1}, {Term: 1, Index: 2}, {Term: 1, Index: 3}}
  1777. tests := []struct {
  1778. // progress
  1779. state ProgressStateType
  1780. next uint64
  1781. wnext uint64
  1782. }{
  1783. // state replicate, optimistically increase next
  1784. // previous entries + noop entry + propose + 1
  1785. {ProgressStateReplicate, 2, uint64(len(previousEnts) + 1 + 1 + 1)},
  1786. // state probe, not optimistically increase next
  1787. {ProgressStateProbe, 2, 2},
  1788. }
  1789. for i, tt := range tests {
  1790. sm := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  1791. sm.raftLog.append(previousEnts...)
  1792. sm.becomeCandidate()
  1793. sm.becomeLeader()
  1794. sm.prs[2].State = tt.state
  1795. sm.prs[2].Next = tt.next
  1796. sm.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  1797. p := sm.prs[2]
  1798. if p.Next != tt.wnext {
  1799. t.Errorf("#%d next = %d, want %d", i, p.Next, tt.wnext)
  1800. }
  1801. }
  1802. }
  1803. func TestSendAppendForProgressProbe(t *testing.T) {
  1804. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  1805. r.becomeCandidate()
  1806. r.becomeLeader()
  1807. r.readMessages()
  1808. r.prs[2].becomeProbe()
  1809. // each round is a heartbeat
  1810. for i := 0; i < 3; i++ {
  1811. // we expect that raft will only send out one msgAPP per heartbeat timeout
  1812. r.appendEntry(pb.Entry{Data: []byte("somedata")})
  1813. r.sendAppend(2)
  1814. msg := r.readMessages()
  1815. if len(msg) != 1 {
  1816. t.Errorf("len(msg) = %d, want %d", len(msg), 1)
  1817. }
  1818. if msg[0].Index != 0 {
  1819. t.Errorf("index = %d, want %d", msg[0].Index, 0)
  1820. }
  1821. if !r.prs[2].Paused {
  1822. t.Errorf("paused = %v, want true", r.prs[2].Paused)
  1823. }
  1824. for j := 0; j < 10; j++ {
  1825. r.appendEntry(pb.Entry{Data: []byte("somedata")})
  1826. r.sendAppend(2)
  1827. if l := len(r.readMessages()); l != 0 {
  1828. t.Errorf("len(msg) = %d, want %d", l, 0)
  1829. }
  1830. }
  1831. // do a heartbeat
  1832. for j := 0; j < r.heartbeatTimeout; j++ {
  1833. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgBeat})
  1834. }
  1835. // consume the heartbeat
  1836. msg = r.readMessages()
  1837. if len(msg) != 1 {
  1838. t.Errorf("len(msg) = %d, want %d", len(msg), 1)
  1839. }
  1840. if msg[0].Type != pb.MsgHeartbeat {
  1841. t.Errorf("type = %v, want %v", msg[0].Type, pb.MsgHeartbeat)
  1842. }
  1843. }
  1844. }
  1845. func TestSendAppendForProgressReplicate(t *testing.T) {
  1846. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  1847. r.becomeCandidate()
  1848. r.becomeLeader()
  1849. r.readMessages()
  1850. r.prs[2].becomeReplicate()
  1851. for i := 0; i < 10; i++ {
  1852. r.appendEntry(pb.Entry{Data: []byte("somedata")})
  1853. r.sendAppend(2)
  1854. msgs := r.readMessages()
  1855. if len(msgs) != 1 {
  1856. t.Errorf("len(msg) = %d, want %d", len(msgs), 1)
  1857. }
  1858. }
  1859. }
  1860. func TestSendAppendForProgressSnapshot(t *testing.T) {
  1861. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  1862. r.becomeCandidate()
  1863. r.becomeLeader()
  1864. r.readMessages()
  1865. r.prs[2].becomeSnapshot(10)
  1866. for i := 0; i < 10; i++ {
  1867. r.appendEntry(pb.Entry{Data: []byte("somedata")})
  1868. r.sendAppend(2)
  1869. msgs := r.readMessages()
  1870. if len(msgs) != 0 {
  1871. t.Errorf("len(msg) = %d, want %d", len(msgs), 0)
  1872. }
  1873. }
  1874. }
  1875. func TestRecvMsgUnreachable(t *testing.T) {
  1876. previousEnts := []pb.Entry{{Term: 1, Index: 1}, {Term: 1, Index: 2}, {Term: 1, Index: 3}}
  1877. s := NewMemoryStorage()
  1878. s.Append(previousEnts)
  1879. r := newTestRaft(1, []uint64{1, 2}, 10, 1, s)
  1880. r.becomeCandidate()
  1881. r.becomeLeader()
  1882. r.readMessages()
  1883. // set node 2 to state replicate
  1884. r.prs[2].Match = 3
  1885. r.prs[2].becomeReplicate()
  1886. r.prs[2].optimisticUpdate(5)
  1887. r.Step(pb.Message{From: 2, To: 1, Type: pb.MsgUnreachable})
  1888. if r.prs[2].State != ProgressStateProbe {
  1889. t.Errorf("state = %s, want %s", r.prs[2].State, ProgressStateProbe)
  1890. }
  1891. if wnext := r.prs[2].Match + 1; r.prs[2].Next != wnext {
  1892. t.Errorf("next = %d, want %d", r.prs[2].Next, wnext)
  1893. }
  1894. }
  1895. func TestRestore(t *testing.T) {
  1896. s := pb.Snapshot{
  1897. Metadata: pb.SnapshotMetadata{
  1898. Index: 11, // magic number
  1899. Term: 11, // magic number
  1900. ConfState: pb.ConfState{Nodes: []uint64{1, 2, 3}},
  1901. },
  1902. }
  1903. storage := NewMemoryStorage()
  1904. sm := newTestRaft(1, []uint64{1, 2}, 10, 1, storage)
  1905. if ok := sm.restore(s); !ok {
  1906. t.Fatal("restore fail, want succeed")
  1907. }
  1908. if sm.raftLog.lastIndex() != s.Metadata.Index {
  1909. t.Errorf("log.lastIndex = %d, want %d", sm.raftLog.lastIndex(), s.Metadata.Index)
  1910. }
  1911. if mustTerm(sm.raftLog.term(s.Metadata.Index)) != s.Metadata.Term {
  1912. t.Errorf("log.lastTerm = %d, want %d", mustTerm(sm.raftLog.term(s.Metadata.Index)), s.Metadata.Term)
  1913. }
  1914. sg := sm.nodes()
  1915. if !reflect.DeepEqual(sg, s.Metadata.ConfState.Nodes) {
  1916. t.Errorf("sm.Nodes = %+v, want %+v", sg, s.Metadata.ConfState.Nodes)
  1917. }
  1918. if ok := sm.restore(s); ok {
  1919. t.Fatal("restore succeed, want fail")
  1920. }
  1921. }
  1922. func TestRestoreIgnoreSnapshot(t *testing.T) {
  1923. previousEnts := []pb.Entry{{Term: 1, Index: 1}, {Term: 1, Index: 2}, {Term: 1, Index: 3}}
  1924. commit := uint64(1)
  1925. storage := NewMemoryStorage()
  1926. sm := newTestRaft(1, []uint64{1, 2}, 10, 1, storage)
  1927. sm.raftLog.append(previousEnts...)
  1928. sm.raftLog.commitTo(commit)
  1929. s := pb.Snapshot{
  1930. Metadata: pb.SnapshotMetadata{
  1931. Index: commit,
  1932. Term: 1,
  1933. ConfState: pb.ConfState{Nodes: []uint64{1, 2}},
  1934. },
  1935. }
  1936. // ignore snapshot
  1937. if ok := sm.restore(s); ok {
  1938. t.Errorf("restore = %t, want %t", ok, false)
  1939. }
  1940. if sm.raftLog.committed != commit {
  1941. t.Errorf("commit = %d, want %d", sm.raftLog.committed, commit)
  1942. }
  1943. // ignore snapshot and fast forward commit
  1944. s.Metadata.Index = commit + 1
  1945. if ok := sm.restore(s); ok {
  1946. t.Errorf("restore = %t, want %t", ok, false)
  1947. }
  1948. if sm.raftLog.committed != commit+1 {
  1949. t.Errorf("commit = %d, want %d", sm.raftLog.committed, commit+1)
  1950. }
  1951. }
  1952. func TestProvideSnap(t *testing.T) {
  1953. // restore the state machine from a snapshot so it has a compacted log and a snapshot
  1954. s := pb.Snapshot{
  1955. Metadata: pb.SnapshotMetadata{
  1956. Index: 11, // magic number
  1957. Term: 11, // magic number
  1958. ConfState: pb.ConfState{Nodes: []uint64{1, 2}},
  1959. },
  1960. }
  1961. storage := NewMemoryStorage()
  1962. sm := newTestRaft(1, []uint64{1}, 10, 1, storage)
  1963. sm.restore(s)
  1964. sm.becomeCandidate()
  1965. sm.becomeLeader()
  1966. // force set the next of node 2, so that node 2 needs a snapshot
  1967. sm.prs[2].Next = sm.raftLog.firstIndex()
  1968. sm.Step(pb.Message{From: 2, To: 1, Type: pb.MsgAppResp, Index: sm.prs[2].Next - 1, Reject: true})
  1969. msgs := sm.readMessages()
  1970. if len(msgs) != 1 {
  1971. t.Fatalf("len(msgs) = %d, want 1", len(msgs))
  1972. }
  1973. m := msgs[0]
  1974. if m.Type != pb.MsgSnap {
  1975. t.Errorf("m.Type = %v, want %v", m.Type, pb.MsgSnap)
  1976. }
  1977. }
  1978. func TestIgnoreProvidingSnap(t *testing.T) {
  1979. // restore the state machine from a snapshot so it has a compacted log and a snapshot
  1980. s := pb.Snapshot{
  1981. Metadata: pb.SnapshotMetadata{
  1982. Index: 11, // magic number
  1983. Term: 11, // magic number
  1984. ConfState: pb.ConfState{Nodes: []uint64{1, 2}},
  1985. },
  1986. }
  1987. storage := NewMemoryStorage()
  1988. sm := newTestRaft(1, []uint64{1}, 10, 1, storage)
  1989. sm.restore(s)
  1990. sm.becomeCandidate()
  1991. sm.becomeLeader()
  1992. // force set the next of node 2, so that node 2 needs a snapshot
  1993. // change node 2 to be inactive, expect node 1 ignore sending snapshot to 2
  1994. sm.prs[2].Next = sm.raftLog.firstIndex() - 1
  1995. sm.prs[2].RecentActive = false
  1996. sm.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  1997. msgs := sm.readMessages()
  1998. if len(msgs) != 0 {
  1999. t.Errorf("len(msgs) = %d, want 0", len(msgs))
  2000. }
  2001. }
  2002. func TestRestoreFromSnapMsg(t *testing.T) {
  2003. s := pb.Snapshot{
  2004. Metadata: pb.SnapshotMetadata{
  2005. Index: 11, // magic number
  2006. Term: 11, // magic number
  2007. ConfState: pb.ConfState{Nodes: []uint64{1, 2}},
  2008. },
  2009. }
  2010. m := pb.Message{Type: pb.MsgSnap, From: 1, Term: 2, Snapshot: s}
  2011. sm := newTestRaft(2, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2012. sm.Step(m)
  2013. if sm.lead != uint64(1) {
  2014. t.Errorf("sm.lead = %d, want 1", sm.lead)
  2015. }
  2016. // TODO(bdarnell): what should this test?
  2017. }
  2018. func TestSlowNodeRestore(t *testing.T) {
  2019. nt := newNetwork(nil, nil, nil)
  2020. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2021. nt.isolate(3)
  2022. for j := 0; j <= 100; j++ {
  2023. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2024. }
  2025. lead := nt.peers[1].(*raft)
  2026. nextEnts(lead, nt.storage[1])
  2027. nt.storage[1].CreateSnapshot(lead.raftLog.applied, &pb.ConfState{Nodes: lead.nodes()}, nil)
  2028. nt.storage[1].Compact(lead.raftLog.applied)
  2029. nt.recover()
  2030. // send heartbeats so that the leader can learn everyone is active.
  2031. // node 3 will only be considered as active when node 1 receives a reply from it.
  2032. for {
  2033. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgBeat})
  2034. if lead.prs[3].RecentActive {
  2035. break
  2036. }
  2037. }
  2038. // trigger a snapshot
  2039. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2040. follower := nt.peers[3].(*raft)
  2041. // trigger a commit
  2042. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2043. if follower.raftLog.committed != lead.raftLog.committed {
  2044. t.Errorf("follower.committed = %d, want %d", follower.raftLog.committed, lead.raftLog.committed)
  2045. }
  2046. }
  2047. // TestStepConfig tests that when raft step msgProp in EntryConfChange type,
  2048. // it appends the entry to log and sets pendingConf to be true.
  2049. func TestStepConfig(t *testing.T) {
  2050. // a raft that cannot make progress
  2051. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2052. r.becomeCandidate()
  2053. r.becomeLeader()
  2054. index := r.raftLog.lastIndex()
  2055. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Type: pb.EntryConfChange}}})
  2056. if g := r.raftLog.lastIndex(); g != index+1 {
  2057. t.Errorf("index = %d, want %d", g, index+1)
  2058. }
  2059. if !r.pendingConf {
  2060. t.Errorf("pendingConf = %v, want true", r.pendingConf)
  2061. }
  2062. }
  2063. // TestStepIgnoreConfig tests that if raft step the second msgProp in
  2064. // EntryConfChange type when the first one is uncommitted, the node will set
  2065. // the proposal to noop and keep its original state.
  2066. func TestStepIgnoreConfig(t *testing.T) {
  2067. // a raft that cannot make progress
  2068. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2069. r.becomeCandidate()
  2070. r.becomeLeader()
  2071. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Type: pb.EntryConfChange}}})
  2072. index := r.raftLog.lastIndex()
  2073. pendingConf := r.pendingConf
  2074. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{Type: pb.EntryConfChange}}})
  2075. wents := []pb.Entry{{Type: pb.EntryNormal, Term: 1, Index: 3, Data: nil}}
  2076. ents, err := r.raftLog.entries(index+1, noLimit)
  2077. if err != nil {
  2078. t.Fatalf("unexpected error %v", err)
  2079. }
  2080. if !reflect.DeepEqual(ents, wents) {
  2081. t.Errorf("ents = %+v, want %+v", ents, wents)
  2082. }
  2083. if r.pendingConf != pendingConf {
  2084. t.Errorf("pendingConf = %v, want %v", r.pendingConf, pendingConf)
  2085. }
  2086. }
  2087. // TestRecoverPendingConfig tests that new leader recovers its pendingConf flag
  2088. // based on uncommitted entries.
  2089. func TestRecoverPendingConfig(t *testing.T) {
  2090. tests := []struct {
  2091. entType pb.EntryType
  2092. wpending bool
  2093. }{
  2094. {pb.EntryNormal, false},
  2095. {pb.EntryConfChange, true},
  2096. }
  2097. for i, tt := range tests {
  2098. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2099. r.appendEntry(pb.Entry{Type: tt.entType})
  2100. r.becomeCandidate()
  2101. r.becomeLeader()
  2102. if r.pendingConf != tt.wpending {
  2103. t.Errorf("#%d: pendingConf = %v, want %v", i, r.pendingConf, tt.wpending)
  2104. }
  2105. }
  2106. }
  2107. // TestRecoverDoublePendingConfig tests that new leader will panic if
  2108. // there exist two uncommitted config entries.
  2109. func TestRecoverDoublePendingConfig(t *testing.T) {
  2110. func() {
  2111. defer func() {
  2112. if err := recover(); err == nil {
  2113. t.Errorf("expect panic, but nothing happens")
  2114. }
  2115. }()
  2116. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2117. r.appendEntry(pb.Entry{Type: pb.EntryConfChange})
  2118. r.appendEntry(pb.Entry{Type: pb.EntryConfChange})
  2119. r.becomeCandidate()
  2120. r.becomeLeader()
  2121. }()
  2122. }
  2123. // TestAddNode tests that addNode could update pendingConf and nodes correctly.
  2124. func TestAddNode(t *testing.T) {
  2125. r := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  2126. r.pendingConf = true
  2127. r.addNode(2)
  2128. if r.pendingConf {
  2129. t.Errorf("pendingConf = %v, want false", r.pendingConf)
  2130. }
  2131. nodes := r.nodes()
  2132. wnodes := []uint64{1, 2}
  2133. if !reflect.DeepEqual(nodes, wnodes) {
  2134. t.Errorf("nodes = %v, want %v", nodes, wnodes)
  2135. }
  2136. }
  2137. // TestRemoveNode tests that removeNode could update pendingConf, nodes and
  2138. // and removed list correctly.
  2139. func TestRemoveNode(t *testing.T) {
  2140. r := newTestRaft(1, []uint64{1, 2}, 10, 1, NewMemoryStorage())
  2141. r.pendingConf = true
  2142. r.removeNode(2)
  2143. if r.pendingConf {
  2144. t.Errorf("pendingConf = %v, want false", r.pendingConf)
  2145. }
  2146. w := []uint64{1}
  2147. if g := r.nodes(); !reflect.DeepEqual(g, w) {
  2148. t.Errorf("nodes = %v, want %v", g, w)
  2149. }
  2150. // remove all nodes from cluster
  2151. r.removeNode(1)
  2152. w = []uint64{}
  2153. if g := r.nodes(); !reflect.DeepEqual(g, w) {
  2154. t.Errorf("nodes = %v, want %v", g, w)
  2155. }
  2156. }
  2157. func TestPromotable(t *testing.T) {
  2158. id := uint64(1)
  2159. tests := []struct {
  2160. peers []uint64
  2161. wp bool
  2162. }{
  2163. {[]uint64{1}, true},
  2164. {[]uint64{1, 2, 3}, true},
  2165. {[]uint64{}, false},
  2166. {[]uint64{2, 3}, false},
  2167. }
  2168. for i, tt := range tests {
  2169. r := newTestRaft(id, tt.peers, 5, 1, NewMemoryStorage())
  2170. if g := r.promotable(); g != tt.wp {
  2171. t.Errorf("#%d: promotable = %v, want %v", i, g, tt.wp)
  2172. }
  2173. }
  2174. }
  2175. func TestRaftNodes(t *testing.T) {
  2176. tests := []struct {
  2177. ids []uint64
  2178. wids []uint64
  2179. }{
  2180. {
  2181. []uint64{1, 2, 3},
  2182. []uint64{1, 2, 3},
  2183. },
  2184. {
  2185. []uint64{3, 2, 1},
  2186. []uint64{1, 2, 3},
  2187. },
  2188. }
  2189. for i, tt := range tests {
  2190. r := newTestRaft(1, tt.ids, 10, 1, NewMemoryStorage())
  2191. if !reflect.DeepEqual(r.nodes(), tt.wids) {
  2192. t.Errorf("#%d: nodes = %+v, want %+v", i, r.nodes(), tt.wids)
  2193. }
  2194. }
  2195. }
  2196. func TestCampaignWhileLeader(t *testing.T) {
  2197. testCampaignWhileLeader(t, false)
  2198. }
  2199. func TestPreCampaignWhileLeader(t *testing.T) {
  2200. testCampaignWhileLeader(t, true)
  2201. }
  2202. func testCampaignWhileLeader(t *testing.T, preVote bool) {
  2203. cfg := newTestConfig(1, []uint64{1}, 5, 1, NewMemoryStorage())
  2204. cfg.PreVote = preVote
  2205. r := newRaft(cfg)
  2206. if r.state != StateFollower {
  2207. t.Errorf("expected new node to be follower but got %s", r.state)
  2208. }
  2209. // We don't call campaign() directly because it comes after the check
  2210. // for our current state.
  2211. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2212. if r.state != StateLeader {
  2213. t.Errorf("expected single-node election to become leader but got %s", r.state)
  2214. }
  2215. term := r.Term
  2216. r.Step(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2217. if r.state != StateLeader {
  2218. t.Errorf("expected to remain leader but got %s", r.state)
  2219. }
  2220. if r.Term != term {
  2221. t.Errorf("expected to remain in term %v but got %v", term, r.Term)
  2222. }
  2223. }
  2224. // TestCommitAfterRemoveNode verifies that pending commands can become
  2225. // committed when a config change reduces the quorum requirements.
  2226. func TestCommitAfterRemoveNode(t *testing.T) {
  2227. // Create a cluster with two nodes.
  2228. s := NewMemoryStorage()
  2229. r := newTestRaft(1, []uint64{1, 2}, 5, 1, s)
  2230. r.becomeCandidate()
  2231. r.becomeLeader()
  2232. // Begin to remove the second node.
  2233. cc := pb.ConfChange{
  2234. Type: pb.ConfChangeRemoveNode,
  2235. NodeID: 2,
  2236. }
  2237. ccData, err := cc.Marshal()
  2238. if err != nil {
  2239. t.Fatal(err)
  2240. }
  2241. r.Step(pb.Message{
  2242. Type: pb.MsgProp,
  2243. Entries: []pb.Entry{
  2244. {Type: pb.EntryConfChange, Data: ccData},
  2245. },
  2246. })
  2247. // Stabilize the log and make sure nothing is committed yet.
  2248. if ents := nextEnts(r, s); len(ents) > 0 {
  2249. t.Fatalf("unexpected committed entries: %v", ents)
  2250. }
  2251. ccIndex := r.raftLog.lastIndex()
  2252. // While the config change is pending, make another proposal.
  2253. r.Step(pb.Message{
  2254. Type: pb.MsgProp,
  2255. Entries: []pb.Entry{
  2256. {Type: pb.EntryNormal, Data: []byte("hello")},
  2257. },
  2258. })
  2259. // Node 2 acknowledges the config change, committing it.
  2260. r.Step(pb.Message{
  2261. Type: pb.MsgAppResp,
  2262. From: 2,
  2263. Index: ccIndex,
  2264. })
  2265. ents := nextEnts(r, s)
  2266. if len(ents) != 2 {
  2267. t.Fatalf("expected two committed entries, got %v", ents)
  2268. }
  2269. if ents[0].Type != pb.EntryNormal || ents[0].Data != nil {
  2270. t.Fatalf("expected ents[0] to be empty, but got %v", ents[0])
  2271. }
  2272. if ents[1].Type != pb.EntryConfChange {
  2273. t.Fatalf("expected ents[1] to be EntryConfChange, got %v", ents[1])
  2274. }
  2275. // Apply the config change. This reduces quorum requirements so the
  2276. // pending command can now commit.
  2277. r.removeNode(2)
  2278. ents = nextEnts(r, s)
  2279. if len(ents) != 1 || ents[0].Type != pb.EntryNormal ||
  2280. string(ents[0].Data) != "hello" {
  2281. t.Fatalf("expected one committed EntryNormal, got %v", ents)
  2282. }
  2283. }
  2284. // TestLeaderTransferToUpToDateNode verifies transferring should succeed
  2285. // if the transferee has the most up-to-date log entries when transfer starts.
  2286. func TestLeaderTransferToUpToDateNode(t *testing.T) {
  2287. nt := newNetwork(nil, nil, nil)
  2288. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2289. lead := nt.peers[1].(*raft)
  2290. if lead.lead != 1 {
  2291. t.Fatalf("after election leader is %x, want 1", lead.lead)
  2292. }
  2293. // Transfer leadership to 2.
  2294. nt.send(pb.Message{From: 2, To: 1, Type: pb.MsgTransferLeader})
  2295. checkLeaderTransferState(t, lead, StateFollower, 2)
  2296. // After some log replication, transfer leadership back to 1.
  2297. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2298. nt.send(pb.Message{From: 1, To: 2, Type: pb.MsgTransferLeader})
  2299. checkLeaderTransferState(t, lead, StateLeader, 1)
  2300. }
  2301. // TestLeaderTransferToUpToDateNodeFromFollower verifies transferring should succeed
  2302. // if the transferee has the most up-to-date log entries when transfer starts.
  2303. // Not like TestLeaderTransferToUpToDateNode, where the leader transfer message
  2304. // is sent to the leader, in this test case every leader transfer message is sent
  2305. // to the follower.
  2306. func TestLeaderTransferToUpToDateNodeFromFollower(t *testing.T) {
  2307. nt := newNetwork(nil, nil, nil)
  2308. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2309. lead := nt.peers[1].(*raft)
  2310. if lead.lead != 1 {
  2311. t.Fatalf("after election leader is %x, want 1", lead.lead)
  2312. }
  2313. // Transfer leadership to 2.
  2314. nt.send(pb.Message{From: 2, To: 2, Type: pb.MsgTransferLeader})
  2315. checkLeaderTransferState(t, lead, StateFollower, 2)
  2316. // After some log replication, transfer leadership back to 1.
  2317. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2318. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgTransferLeader})
  2319. checkLeaderTransferState(t, lead, StateLeader, 1)
  2320. }
  2321. // TestLeaderTransferWithCheckQuorum ensures transferring leader still works
  2322. // even the current leader is still under its leader lease
  2323. func TestLeaderTransferWithCheckQuorum(t *testing.T) {
  2324. nt := newNetwork(nil, nil, nil)
  2325. for i := 1; i < 4; i++ {
  2326. r := nt.peers[uint64(i)].(*raft)
  2327. r.checkQuorum = true
  2328. setRandomizedElectionTimeout(r, r.electionTimeout+i)
  2329. }
  2330. // Letting peer 2 electionElapsed reach to timeout so that it can vote for peer 1
  2331. f := nt.peers[2].(*raft)
  2332. for i := 0; i < f.electionTimeout; i++ {
  2333. f.tick()
  2334. }
  2335. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2336. lead := nt.peers[1].(*raft)
  2337. if lead.lead != 1 {
  2338. t.Fatalf("after election leader is %x, want 1", lead.lead)
  2339. }
  2340. // Transfer leadership to 2.
  2341. nt.send(pb.Message{From: 2, To: 1, Type: pb.MsgTransferLeader})
  2342. checkLeaderTransferState(t, lead, StateFollower, 2)
  2343. // After some log replication, transfer leadership back to 1.
  2344. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2345. nt.send(pb.Message{From: 1, To: 2, Type: pb.MsgTransferLeader})
  2346. checkLeaderTransferState(t, lead, StateLeader, 1)
  2347. }
  2348. func TestLeaderTransferToSlowFollower(t *testing.T) {
  2349. defaultLogger.EnableDebug()
  2350. nt := newNetwork(nil, nil, nil)
  2351. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2352. nt.isolate(3)
  2353. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2354. nt.recover()
  2355. lead := nt.peers[1].(*raft)
  2356. if lead.prs[3].Match != 1 {
  2357. t.Fatalf("node 1 has match %x for node 3, want %x", lead.prs[3].Match, 1)
  2358. }
  2359. // Transfer leadership to 3 when node 3 is lack of log.
  2360. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2361. checkLeaderTransferState(t, lead, StateFollower, 3)
  2362. }
  2363. func TestLeaderTransferAfterSnapshot(t *testing.T) {
  2364. nt := newNetwork(nil, nil, nil)
  2365. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2366. nt.isolate(3)
  2367. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2368. lead := nt.peers[1].(*raft)
  2369. nextEnts(lead, nt.storage[1])
  2370. nt.storage[1].CreateSnapshot(lead.raftLog.applied, &pb.ConfState{Nodes: lead.nodes()}, nil)
  2371. nt.storage[1].Compact(lead.raftLog.applied)
  2372. nt.recover()
  2373. if lead.prs[3].Match != 1 {
  2374. t.Fatalf("node 1 has match %x for node 3, want %x", lead.prs[3].Match, 1)
  2375. }
  2376. // Transfer leadership to 3 when node 3 is lack of snapshot.
  2377. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2378. // Send pb.MsgHeartbeatResp to leader to trigger a snapshot for node 3.
  2379. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgHeartbeatResp})
  2380. checkLeaderTransferState(t, lead, StateFollower, 3)
  2381. }
  2382. func TestLeaderTransferToSelf(t *testing.T) {
  2383. nt := newNetwork(nil, nil, nil)
  2384. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2385. lead := nt.peers[1].(*raft)
  2386. // Transfer leadership to self, there will be noop.
  2387. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgTransferLeader})
  2388. checkLeaderTransferState(t, lead, StateLeader, 1)
  2389. }
  2390. func TestLeaderTransferToNonExistingNode(t *testing.T) {
  2391. nt := newNetwork(nil, nil, nil)
  2392. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2393. lead := nt.peers[1].(*raft)
  2394. // Transfer leadership to non-existing node, there will be noop.
  2395. nt.send(pb.Message{From: 4, To: 1, Type: pb.MsgTransferLeader})
  2396. checkLeaderTransferState(t, lead, StateLeader, 1)
  2397. }
  2398. func TestLeaderTransferTimeout(t *testing.T) {
  2399. nt := newNetwork(nil, nil, nil)
  2400. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2401. nt.isolate(3)
  2402. lead := nt.peers[1].(*raft)
  2403. // Transfer leadership to isolated node, wait for timeout.
  2404. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2405. if lead.leadTransferee != 3 {
  2406. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2407. }
  2408. for i := 0; i < lead.heartbeatTimeout; i++ {
  2409. lead.tick()
  2410. }
  2411. if lead.leadTransferee != 3 {
  2412. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2413. }
  2414. for i := 0; i < lead.electionTimeout-lead.heartbeatTimeout; i++ {
  2415. lead.tick()
  2416. }
  2417. checkLeaderTransferState(t, lead, StateLeader, 1)
  2418. }
  2419. func TestLeaderTransferIgnoreProposal(t *testing.T) {
  2420. nt := newNetwork(nil, nil, nil)
  2421. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2422. nt.isolate(3)
  2423. lead := nt.peers[1].(*raft)
  2424. // Transfer leadership to isolated node to let transfer pending, then send proposal.
  2425. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2426. if lead.leadTransferee != 3 {
  2427. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2428. }
  2429. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgProp, Entries: []pb.Entry{{}}})
  2430. if lead.prs[1].Match != 1 {
  2431. t.Fatalf("node 1 has match %x, want %x", lead.prs[1].Match, 1)
  2432. }
  2433. }
  2434. func TestLeaderTransferReceiveHigherTermVote(t *testing.T) {
  2435. nt := newNetwork(nil, nil, nil)
  2436. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2437. nt.isolate(3)
  2438. lead := nt.peers[1].(*raft)
  2439. // Transfer leadership to isolated node to let transfer pending.
  2440. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2441. if lead.leadTransferee != 3 {
  2442. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2443. }
  2444. nt.send(pb.Message{From: 2, To: 2, Type: pb.MsgHup, Index: 1, Term: 2})
  2445. checkLeaderTransferState(t, lead, StateFollower, 2)
  2446. }
  2447. func TestLeaderTransferRemoveNode(t *testing.T) {
  2448. nt := newNetwork(nil, nil, nil)
  2449. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2450. nt.ignore(pb.MsgTimeoutNow)
  2451. lead := nt.peers[1].(*raft)
  2452. // The leadTransferee is removed when leadship transferring.
  2453. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2454. if lead.leadTransferee != 3 {
  2455. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2456. }
  2457. lead.removeNode(3)
  2458. checkLeaderTransferState(t, lead, StateLeader, 1)
  2459. }
  2460. // TestLeaderTransferBack verifies leadership can transfer back to self when last transfer is pending.
  2461. func TestLeaderTransferBack(t *testing.T) {
  2462. nt := newNetwork(nil, nil, nil)
  2463. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2464. nt.isolate(3)
  2465. lead := nt.peers[1].(*raft)
  2466. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2467. if lead.leadTransferee != 3 {
  2468. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2469. }
  2470. // Transfer leadership back to self.
  2471. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgTransferLeader})
  2472. checkLeaderTransferState(t, lead, StateLeader, 1)
  2473. }
  2474. // TestLeaderTransferSecondTransferToAnotherNode verifies leader can transfer to another node
  2475. // when last transfer is pending.
  2476. func TestLeaderTransferSecondTransferToAnotherNode(t *testing.T) {
  2477. nt := newNetwork(nil, nil, nil)
  2478. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2479. nt.isolate(3)
  2480. lead := nt.peers[1].(*raft)
  2481. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2482. if lead.leadTransferee != 3 {
  2483. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2484. }
  2485. // Transfer leadership to another node.
  2486. nt.send(pb.Message{From: 2, To: 1, Type: pb.MsgTransferLeader})
  2487. checkLeaderTransferState(t, lead, StateFollower, 2)
  2488. }
  2489. // TestLeaderTransferSecondTransferToSameNode verifies second transfer leader request
  2490. // to the same node should not extend the timeout while the first one is pending.
  2491. func TestLeaderTransferSecondTransferToSameNode(t *testing.T) {
  2492. nt := newNetwork(nil, nil, nil)
  2493. nt.send(pb.Message{From: 1, To: 1, Type: pb.MsgHup})
  2494. nt.isolate(3)
  2495. lead := nt.peers[1].(*raft)
  2496. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2497. if lead.leadTransferee != 3 {
  2498. t.Fatalf("wait transferring, leadTransferee = %v, want %v", lead.leadTransferee, 3)
  2499. }
  2500. for i := 0; i < lead.heartbeatTimeout; i++ {
  2501. lead.tick()
  2502. }
  2503. // Second transfer leadership request to the same node.
  2504. nt.send(pb.Message{From: 3, To: 1, Type: pb.MsgTransferLeader})
  2505. for i := 0; i < lead.electionTimeout-lead.heartbeatTimeout; i++ {
  2506. lead.tick()
  2507. }
  2508. checkLeaderTransferState(t, lead, StateLeader, 1)
  2509. }
  2510. func checkLeaderTransferState(t *testing.T, r *raft, state StateType, lead uint64) {
  2511. if r.state != state || r.lead != lead {
  2512. t.Fatalf("after transferring, node has state %v lead %v, want state %v lead %v", r.state, r.lead, state, lead)
  2513. }
  2514. if r.leadTransferee != None {
  2515. t.Fatalf("after transferring, node has leadTransferee %v, want leadTransferee %v", r.leadTransferee, None)
  2516. }
  2517. }
  2518. // TestTransferNonMember verifies that when a MsgTimeoutNow arrives at
  2519. // a node that has been removed from the group, nothing happens.
  2520. // (previously, if the node also got votes, it would panic as it
  2521. // transitioned to StateLeader)
  2522. func TestTransferNonMember(t *testing.T) {
  2523. r := newTestRaft(1, []uint64{2, 3, 4}, 5, 1, NewMemoryStorage())
  2524. r.Step(pb.Message{From: 2, To: 1, Type: pb.MsgTimeoutNow})
  2525. r.Step(pb.Message{From: 2, To: 1, Type: pb.MsgVoteResp})
  2526. r.Step(pb.Message{From: 3, To: 1, Type: pb.MsgVoteResp})
  2527. if r.state != StateFollower {
  2528. t.Fatalf("state is %s, want StateFollower", r.state)
  2529. }
  2530. }
  2531. func entsWithConfig(configFunc func(*Config), terms ...uint64) *raft {
  2532. storage := NewMemoryStorage()
  2533. for i, term := range terms {
  2534. storage.Append([]pb.Entry{{Index: uint64(i + 1), Term: term}})
  2535. }
  2536. cfg := newTestConfig(1, []uint64{}, 5, 1, storage)
  2537. if configFunc != nil {
  2538. configFunc(cfg)
  2539. }
  2540. sm := newRaft(cfg)
  2541. sm.reset(terms[len(terms)-1])
  2542. return sm
  2543. }
  2544. // votedWithConfig creates a raft state machine with Vote and Term set
  2545. // to the given value but no log entries (indicating that it voted in
  2546. // the given term but has not received any logs).
  2547. func votedWithConfig(configFunc func(*Config), vote, term uint64) *raft {
  2548. storage := NewMemoryStorage()
  2549. storage.SetHardState(pb.HardState{Vote: vote, Term: term})
  2550. cfg := newTestConfig(1, []uint64{}, 5, 1, storage)
  2551. if configFunc != nil {
  2552. configFunc(cfg)
  2553. }
  2554. sm := newRaft(cfg)
  2555. sm.reset(term)
  2556. return sm
  2557. }
  2558. type network struct {
  2559. peers map[uint64]stateMachine
  2560. storage map[uint64]*MemoryStorage
  2561. dropm map[connem]float64
  2562. ignorem map[pb.MessageType]bool
  2563. }
  2564. // newNetwork initializes a network from peers.
  2565. // A nil node will be replaced with a new *stateMachine.
  2566. // A *stateMachine will get its k, id.
  2567. // When using stateMachine, the address list is always [1, n].
  2568. func newNetwork(peers ...stateMachine) *network {
  2569. return newNetworkWithConfig(nil, peers...)
  2570. }
  2571. // newNetworkWithConfig is like newNetwork but calls the given func to
  2572. // modify the configuration of any state machines it creates.
  2573. func newNetworkWithConfig(configFunc func(*Config), peers ...stateMachine) *network {
  2574. size := len(peers)
  2575. peerAddrs := idsBySize(size)
  2576. npeers := make(map[uint64]stateMachine, size)
  2577. nstorage := make(map[uint64]*MemoryStorage, size)
  2578. for j, p := range peers {
  2579. id := peerAddrs[j]
  2580. switch v := p.(type) {
  2581. case nil:
  2582. nstorage[id] = NewMemoryStorage()
  2583. cfg := newTestConfig(id, peerAddrs, 10, 1, nstorage[id])
  2584. if configFunc != nil {
  2585. configFunc(cfg)
  2586. }
  2587. sm := newRaft(cfg)
  2588. npeers[id] = sm
  2589. case *raft:
  2590. v.id = id
  2591. v.prs = make(map[uint64]*Progress)
  2592. for i := 0; i < size; i++ {
  2593. v.prs[peerAddrs[i]] = &Progress{}
  2594. }
  2595. v.reset(v.Term)
  2596. npeers[id] = v
  2597. case *blackHole:
  2598. npeers[id] = v
  2599. default:
  2600. panic(fmt.Sprintf("unexpected state machine type: %T", p))
  2601. }
  2602. }
  2603. return &network{
  2604. peers: npeers,
  2605. storage: nstorage,
  2606. dropm: make(map[connem]float64),
  2607. ignorem: make(map[pb.MessageType]bool),
  2608. }
  2609. }
  2610. func preVoteConfig(c *Config) {
  2611. c.PreVote = true
  2612. }
  2613. func (nw *network) send(msgs ...pb.Message) {
  2614. for len(msgs) > 0 {
  2615. m := msgs[0]
  2616. p := nw.peers[m.To]
  2617. p.Step(m)
  2618. msgs = append(msgs[1:], nw.filter(p.readMessages())...)
  2619. }
  2620. }
  2621. func (nw *network) drop(from, to uint64, perc float64) {
  2622. nw.dropm[connem{from, to}] = perc
  2623. }
  2624. func (nw *network) cut(one, other uint64) {
  2625. nw.drop(one, other, 1)
  2626. nw.drop(other, one, 1)
  2627. }
  2628. func (nw *network) isolate(id uint64) {
  2629. for i := 0; i < len(nw.peers); i++ {
  2630. nid := uint64(i) + 1
  2631. if nid != id {
  2632. nw.drop(id, nid, 1.0)
  2633. nw.drop(nid, id, 1.0)
  2634. }
  2635. }
  2636. }
  2637. func (nw *network) ignore(t pb.MessageType) {
  2638. nw.ignorem[t] = true
  2639. }
  2640. func (nw *network) recover() {
  2641. nw.dropm = make(map[connem]float64)
  2642. nw.ignorem = make(map[pb.MessageType]bool)
  2643. }
  2644. func (nw *network) filter(msgs []pb.Message) []pb.Message {
  2645. mm := []pb.Message{}
  2646. for _, m := range msgs {
  2647. if nw.ignorem[m.Type] {
  2648. continue
  2649. }
  2650. switch m.Type {
  2651. case pb.MsgHup:
  2652. // hups never go over the network, so don't drop them but panic
  2653. panic("unexpected msgHup")
  2654. default:
  2655. perc := nw.dropm[connem{m.From, m.To}]
  2656. if n := rand.Float64(); n < perc {
  2657. continue
  2658. }
  2659. }
  2660. mm = append(mm, m)
  2661. }
  2662. return mm
  2663. }
  2664. type connem struct {
  2665. from, to uint64
  2666. }
  2667. type blackHole struct{}
  2668. func (blackHole) Step(pb.Message) error { return nil }
  2669. func (blackHole) readMessages() []pb.Message { return nil }
  2670. var nopStepper = &blackHole{}
  2671. func idsBySize(size int) []uint64 {
  2672. ids := make([]uint64, size)
  2673. for i := 0; i < size; i++ {
  2674. ids[i] = 1 + uint64(i)
  2675. }
  2676. return ids
  2677. }
  2678. // setRandomizedElectionTimeout set up the value by caller instead of choosing
  2679. // by system, in some test scenario we need to fill in some expected value to
  2680. // ensure the certainty
  2681. func setRandomizedElectionTimeout(r *raft, v int) {
  2682. r.randomizedElectionTimeout = v
  2683. }
  2684. func newTestConfig(id uint64, peers []uint64, election, heartbeat int, storage Storage) *Config {
  2685. return &Config{
  2686. ID: id,
  2687. peers: peers,
  2688. ElectionTick: election,
  2689. HeartbeatTick: heartbeat,
  2690. Storage: storage,
  2691. MaxSizePerMsg: noLimit,
  2692. MaxInflightMsgs: 256,
  2693. }
  2694. }
  2695. func newTestRaft(id uint64, peers []uint64, election, heartbeat int, storage Storage) *raft {
  2696. return newRaft(newTestConfig(id, peers, election, heartbeat, storage))
  2697. }