raft_test.go 26 KB

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  1. package raft
  2. import (
  3. "bytes"
  4. "math/rand"
  5. "reflect"
  6. "sort"
  7. "testing"
  8. pb "github.com/coreos/etcd/raft/raftpb"
  9. )
  10. // nextEnts returns the appliable entries and updates the applied index
  11. func (r *raft) nextEnts() (ents []pb.Entry) {
  12. ents = r.raftLog.nextEnts()
  13. r.raftLog.resetNextEnts()
  14. return ents
  15. }
  16. type Interface interface {
  17. Step(m pb.Message) error
  18. ReadMessages() []pb.Message
  19. }
  20. func TestLeaderElection(t *testing.T) {
  21. tests := []struct {
  22. *network
  23. state stateType
  24. }{
  25. {newNetwork(nil, nil, nil), stateLeader},
  26. {newNetwork(nil, nil, nopStepper), stateLeader},
  27. {newNetwork(nil, nopStepper, nopStepper), stateCandidate},
  28. {newNetwork(nil, nopStepper, nopStepper, nil), stateCandidate},
  29. {newNetwork(nil, nopStepper, nopStepper, nil, nil), stateLeader},
  30. // three logs further along than 0
  31. {newNetwork(nil, ents(1), ents(2), ents(1, 3), nil), stateFollower},
  32. // logs converge
  33. {newNetwork(ents(1), nil, ents(2), ents(1), nil), stateLeader},
  34. }
  35. for i, tt := range tests {
  36. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  37. sm := tt.network.peers[0].(*raft)
  38. if sm.state != tt.state {
  39. t.Errorf("#%d: state = %s, want %s", i, sm.state, tt.state)
  40. }
  41. if g := sm.Term; g != 1 {
  42. t.Errorf("#%d: term = %d, want %d", i, g, 1)
  43. }
  44. }
  45. }
  46. func TestLogReplication(t *testing.T) {
  47. tests := []struct {
  48. *network
  49. msgs []pb.Message
  50. wcommitted int64
  51. }{
  52. {
  53. newNetwork(nil, nil, nil),
  54. []pb.Message{
  55. {From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  56. },
  57. 2,
  58. },
  59. {
  60. newNetwork(nil, nil, nil),
  61. []pb.Message{
  62. {From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  63. {From: 0, To: 1, Type: msgHup},
  64. {From: 0, To: 1, Type: msgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}},
  65. },
  66. 4,
  67. },
  68. }
  69. for i, tt := range tests {
  70. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  71. for _, m := range tt.msgs {
  72. tt.send(m)
  73. }
  74. for j, x := range tt.network.peers {
  75. sm := x.(*raft)
  76. if sm.raftLog.committed != tt.wcommitted {
  77. t.Errorf("#%d.%d: committed = %d, want %d", i, j, sm.raftLog.committed, tt.wcommitted)
  78. }
  79. ents := make([]pb.Entry, 0)
  80. for _, e := range sm.nextEnts() {
  81. if e.Data != nil {
  82. ents = append(ents, e)
  83. }
  84. }
  85. props := make([]pb.Message, 0)
  86. for _, m := range tt.msgs {
  87. if m.Type == msgProp {
  88. props = append(props, m)
  89. }
  90. }
  91. for k, m := range props {
  92. if !bytes.Equal(ents[k].Data, m.Entries[0].Data) {
  93. t.Errorf("#%d.%d: data = %d, want %d", i, j, ents[k].Data, m.Entries[0].Data)
  94. }
  95. }
  96. }
  97. }
  98. }
  99. func TestSingleNodeCommit(t *testing.T) {
  100. tt := newNetwork(nil)
  101. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  102. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  103. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  104. sm := tt.peers[0].(*raft)
  105. if sm.raftLog.committed != 3 {
  106. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 3)
  107. }
  108. }
  109. // TestCannotCommitWithoutNewTermEntry tests the entries cannot be committed
  110. // when leader changes, no new proposal comes in and ChangeTerm proposal is
  111. // filtered.
  112. func TestCannotCommitWithoutNewTermEntry(t *testing.T) {
  113. tt := newNetwork(nil, nil, nil, nil, nil)
  114. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  115. // 0 cannot reach 2,3,4
  116. tt.cut(0, 2)
  117. tt.cut(0, 3)
  118. tt.cut(0, 4)
  119. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  120. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  121. sm := tt.peers[0].(*raft)
  122. if sm.raftLog.committed != 1 {
  123. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  124. }
  125. // network recovery
  126. tt.recover()
  127. // avoid committing ChangeTerm proposal
  128. tt.ignore(msgApp)
  129. // elect 1 as the new leader with term 2
  130. tt.send(pb.Message{From: 1, To: 1, Type: msgHup})
  131. // no log entries from previous term should be committed
  132. sm = tt.peers[1].(*raft)
  133. if sm.raftLog.committed != 1 {
  134. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  135. }
  136. tt.recover()
  137. // send out a heartbeat
  138. // after append a ChangeTerm entry from the current term, all entries
  139. // should be committed
  140. tt.send(pb.Message{From: 1, To: 1, Type: msgBeat})
  141. if sm.raftLog.committed != 4 {
  142. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 4)
  143. }
  144. // still be able to append a entry
  145. tt.send(pb.Message{From: 1, To: 1, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  146. if sm.raftLog.committed != 5 {
  147. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 5)
  148. }
  149. }
  150. // TestCommitWithoutNewTermEntry tests the entries could be committed
  151. // when leader changes, no new proposal comes in.
  152. func TestCommitWithoutNewTermEntry(t *testing.T) {
  153. tt := newNetwork(nil, nil, nil, nil, nil)
  154. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  155. // 0 cannot reach 2,3,4
  156. tt.cut(0, 2)
  157. tt.cut(0, 3)
  158. tt.cut(0, 4)
  159. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  160. tt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: []byte("some data")}}})
  161. sm := tt.peers[0].(*raft)
  162. if sm.raftLog.committed != 1 {
  163. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 1)
  164. }
  165. // network recovery
  166. tt.recover()
  167. // elect 1 as the new leader with term 2
  168. // after append a ChangeTerm entry from the current term, all entries
  169. // should be committed
  170. tt.send(pb.Message{From: 1, To: 1, Type: msgHup})
  171. if sm.raftLog.committed != 4 {
  172. t.Errorf("committed = %d, want %d", sm.raftLog.committed, 4)
  173. }
  174. }
  175. func TestDuelingCandidates(t *testing.T) {
  176. a := newRaft(0, nil, 0, 0) // k, id are set later
  177. b := newRaft(0, nil, 0, 0)
  178. c := newRaft(0, nil, 0, 0)
  179. nt := newNetwork(a, b, c)
  180. nt.cut(0, 2)
  181. nt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  182. nt.send(pb.Message{From: 2, To: 2, Type: msgHup})
  183. nt.recover()
  184. nt.send(pb.Message{From: 2, To: 2, Type: msgHup})
  185. wlog := &raftLog{ents: []pb.Entry{{}, pb.Entry{Data: nil, Term: 1, Index: 1}}, committed: 1}
  186. tests := []struct {
  187. sm *raft
  188. state stateType
  189. term int64
  190. raftLog *raftLog
  191. }{
  192. {a, stateFollower, 2, wlog},
  193. {b, stateFollower, 2, wlog},
  194. {c, stateFollower, 2, newLog()},
  195. }
  196. for i, tt := range tests {
  197. if g := tt.sm.state; g != tt.state {
  198. t.Errorf("#%d: state = %s, want %s", i, g, tt.state)
  199. }
  200. if g := tt.sm.Term; g != tt.term {
  201. t.Errorf("#%d: term = %d, want %d", i, g, tt.term)
  202. }
  203. base := ltoa(tt.raftLog)
  204. if sm, ok := nt.peers[int64(i)].(*raft); ok {
  205. l := ltoa(sm.raftLog)
  206. if g := diffu(base, l); g != "" {
  207. t.Errorf("#%d: diff:\n%s", i, g)
  208. }
  209. } else {
  210. t.Logf("#%d: empty log", i)
  211. }
  212. }
  213. }
  214. func TestCandidateConcede(t *testing.T) {
  215. tt := newNetwork(nil, nil, nil)
  216. tt.isolate(0)
  217. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  218. tt.send(pb.Message{From: 2, To: 2, Type: msgHup})
  219. // heal the partition
  220. tt.recover()
  221. data := []byte("force follower")
  222. // send a proposal to 2 to flush out a msgApp to 0
  223. tt.send(pb.Message{From: 2, To: 2, Type: msgProp, Entries: []pb.Entry{{Data: data}}})
  224. a := tt.peers[0].(*raft)
  225. if g := a.state; g != stateFollower {
  226. t.Errorf("state = %s, want %s", g, stateFollower)
  227. }
  228. if g := a.Term; g != 1 {
  229. t.Errorf("term = %d, want %d", g, 1)
  230. }
  231. wantLog := ltoa(&raftLog{ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Index: 2, Data: data}}, committed: 2})
  232. for i, p := range tt.peers {
  233. if sm, ok := p.(*raft); ok {
  234. l := ltoa(sm.raftLog)
  235. if g := diffu(wantLog, l); g != "" {
  236. t.Errorf("#%d: diff:\n%s", i, g)
  237. }
  238. } else {
  239. t.Logf("#%d: empty log", i)
  240. }
  241. }
  242. }
  243. func TestSingleNodeCandidate(t *testing.T) {
  244. tt := newNetwork(nil)
  245. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  246. sm := tt.peers[0].(*raft)
  247. if sm.state != stateLeader {
  248. t.Errorf("state = %d, want %d", sm.state, stateLeader)
  249. }
  250. }
  251. func TestOldMessages(t *testing.T) {
  252. tt := newNetwork(nil, nil, nil)
  253. // make 0 leader @ term 3
  254. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  255. tt.send(pb.Message{From: 1, To: 1, Type: msgHup})
  256. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  257. // pretend we're an old leader trying to make progress
  258. tt.send(pb.Message{From: 0, To: 0, Type: msgApp, Term: 1, Entries: []pb.Entry{{Term: 1}}})
  259. l := &raftLog{
  260. ents: []pb.Entry{
  261. {}, {Data: nil, Term: 1, Index: 1},
  262. {Data: nil, Term: 2, Index: 2}, {Data: nil, Term: 3, Index: 3},
  263. },
  264. committed: 3,
  265. }
  266. base := ltoa(l)
  267. for i, p := range tt.peers {
  268. if sm, ok := p.(*raft); ok {
  269. l := ltoa(sm.raftLog)
  270. if g := diffu(base, l); g != "" {
  271. t.Errorf("#%d: diff:\n%s", i, g)
  272. }
  273. } else {
  274. t.Logf("#%d: empty log", i)
  275. }
  276. }
  277. }
  278. // TestOldMessagesReply - optimization - reply with new term.
  279. func TestProposal(t *testing.T) {
  280. tests := []struct {
  281. *network
  282. success bool
  283. }{
  284. {newNetwork(nil, nil, nil), true},
  285. {newNetwork(nil, nil, nopStepper), true},
  286. {newNetwork(nil, nopStepper, nopStepper), false},
  287. {newNetwork(nil, nopStepper, nopStepper, nil), false},
  288. {newNetwork(nil, nopStepper, nopStepper, nil, nil), true},
  289. }
  290. for i, tt := range tests {
  291. send := func(m pb.Message) {
  292. defer func() {
  293. // only recover is we expect it to panic so
  294. // panics we don't expect go up.
  295. if !tt.success {
  296. e := recover()
  297. if e != nil {
  298. t.Logf("#%d: err: %s", i, e)
  299. }
  300. }
  301. }()
  302. tt.send(m)
  303. }
  304. data := []byte("somedata")
  305. // promote 0 the leader
  306. send(pb.Message{From: 0, To: 0, Type: msgHup})
  307. send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{Data: data}}})
  308. wantLog := newLog()
  309. if tt.success {
  310. wantLog = &raftLog{ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Index: 2, Data: data}}, committed: 2}
  311. }
  312. base := ltoa(wantLog)
  313. for i, p := range tt.peers {
  314. if sm, ok := p.(*raft); ok {
  315. l := ltoa(sm.raftLog)
  316. if g := diffu(base, l); g != "" {
  317. t.Errorf("#%d: diff:\n%s", i, g)
  318. }
  319. } else {
  320. t.Logf("#%d: empty log", i)
  321. }
  322. }
  323. sm := tt.network.peers[0].(*raft)
  324. if g := sm.Term; g != 1 {
  325. t.Errorf("#%d: term = %d, want %d", i, g, 1)
  326. }
  327. }
  328. }
  329. func TestProposalByProxy(t *testing.T) {
  330. data := []byte("somedata")
  331. tests := []*network{
  332. newNetwork(nil, nil, nil),
  333. newNetwork(nil, nil, nopStepper),
  334. }
  335. for i, tt := range tests {
  336. // promote 0 the leader
  337. tt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  338. // propose via follower
  339. tt.send(pb.Message{From: 1, To: 1, Type: msgProp, Entries: []pb.Entry{{Data: []byte("somedata")}}})
  340. wantLog := &raftLog{ents: []pb.Entry{{}, {Data: nil, Term: 1, Index: 1}, {Term: 1, Data: data, Index: 2}}, committed: 2}
  341. base := ltoa(wantLog)
  342. for i, p := range tt.peers {
  343. if sm, ok := p.(*raft); ok {
  344. l := ltoa(sm.raftLog)
  345. if g := diffu(base, l); g != "" {
  346. t.Errorf("#%d: diff:\n%s", i, g)
  347. }
  348. } else {
  349. t.Logf("#%d: empty log", i)
  350. }
  351. }
  352. sm := tt.peers[0].(*raft)
  353. if g := sm.Term; g != 1 {
  354. t.Errorf("#%d: term = %d, want %d", i, g, 1)
  355. }
  356. }
  357. }
  358. func TestCommit(t *testing.T) {
  359. tests := []struct {
  360. matches []int64
  361. logs []pb.Entry
  362. smTerm int64
  363. w int64
  364. }{
  365. // single
  366. {[]int64{1}, []pb.Entry{{}, {Term: 1}}, 1, 1},
  367. {[]int64{1}, []pb.Entry{{}, {Term: 1}}, 2, 0},
  368. {[]int64{2}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 2, 2},
  369. {[]int64{1}, []pb.Entry{{}, {Term: 2}}, 2, 1},
  370. // odd
  371. {[]int64{2, 1, 1}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 1, 1},
  372. {[]int64{2, 1, 1}, []pb.Entry{{}, {Term: 1}, {Term: 1}}, 2, 0},
  373. {[]int64{2, 1, 2}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 2, 2},
  374. {[]int64{2, 1, 2}, []pb.Entry{{}, {Term: 1}, {Term: 1}}, 2, 0},
  375. // even
  376. {[]int64{2, 1, 1, 1}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 1, 1},
  377. {[]int64{2, 1, 1, 1}, []pb.Entry{{}, {Term: 1}, {Term: 1}}, 2, 0},
  378. {[]int64{2, 1, 1, 2}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 1, 1},
  379. {[]int64{2, 1, 1, 2}, []pb.Entry{{}, {Term: 1}, {Term: 1}}, 2, 0},
  380. {[]int64{2, 1, 2, 2}, []pb.Entry{{}, {Term: 1}, {Term: 2}}, 2, 2},
  381. {[]int64{2, 1, 2, 2}, []pb.Entry{{}, {Term: 1}, {Term: 1}}, 2, 0},
  382. }
  383. for i, tt := range tests {
  384. prs := make(map[int64]*progress)
  385. for j := 0; j < len(tt.matches); j++ {
  386. prs[int64(j)] = &progress{tt.matches[j], tt.matches[j] + 1}
  387. }
  388. sm := &raft{raftLog: &raftLog{ents: tt.logs}, prs: prs, State: pb.State{Term: tt.smTerm}}
  389. sm.maybeCommit()
  390. if g := sm.raftLog.committed; g != tt.w {
  391. t.Errorf("#%d: committed = %d, want %d", i, g, tt.w)
  392. }
  393. }
  394. }
  395. // ensure that the Step function ignores the message from old term and does not pass it to the
  396. // acutal stepX function.
  397. func TestStepIgnoreOldTermMsg(t *testing.T) {
  398. called := false
  399. fakeStep := func(r *raft, m pb.Message) {
  400. called = true
  401. }
  402. sm := newRaft(0, []int64{0}, 0, 0)
  403. sm.step = fakeStep
  404. sm.Term = 2
  405. sm.Step(pb.Message{Type: msgApp, Term: sm.Term - 1})
  406. if called == true {
  407. t.Errorf("stepFunc called = %v , want %v", called, false)
  408. }
  409. }
  410. // TestHandleMsgApp ensures:
  411. // 1. Reply false if log doesn’t contain an entry at prevLogIndex whose term matches prevLogTerm.
  412. // 2. If an existing entry conflicts with a new one (same index but different terms),
  413. // delete the existing entry and all that follow it; append any new entries not already in the log.
  414. // 3. If leaderCommit > commitIndex, set commitIndex = min(leaderCommit, index of last new entry).
  415. func TestHandleMsgApp(t *testing.T) {
  416. tests := []struct {
  417. m pb.Message
  418. wIndex int64
  419. wCommit int64
  420. wAccept bool
  421. }{
  422. // Ensure 1
  423. {pb.Message{Type: msgApp, Term: 2, LogTerm: 3, Index: 2, Commit: 3}, 2, 0, false}, // previous log mismatch
  424. {pb.Message{Type: msgApp, Term: 2, LogTerm: 3, Index: 3, Commit: 3}, 2, 0, false}, // previous log non-exist
  425. // Ensure 2
  426. {pb.Message{Type: msgApp, Term: 2, LogTerm: 1, Index: 1, Commit: 1}, 2, 1, true},
  427. {pb.Message{Type: msgApp, Term: 2, LogTerm: 0, Index: 0, Commit: 1, Entries: []pb.Entry{{Term: 2}}}, 1, 1, true},
  428. {pb.Message{Type: msgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 3, Entries: []pb.Entry{{Term: 2}, {Term: 2}}}, 4, 3, true},
  429. {pb.Message{Type: msgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 4, Entries: []pb.Entry{{Term: 2}}}, 3, 3, true},
  430. {pb.Message{Type: msgApp, Term: 2, LogTerm: 1, Index: 1, Commit: 4, Entries: []pb.Entry{{Term: 2}}}, 2, 2, true},
  431. // Ensure 3
  432. {pb.Message{Type: msgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 2}, 2, 2, true},
  433. {pb.Message{Type: msgApp, Term: 2, LogTerm: 2, Index: 2, Commit: 4}, 2, 2, true}, // commit upto min(commit, last)
  434. }
  435. for i, tt := range tests {
  436. sm := &raft{
  437. state: stateFollower,
  438. State: pb.State{Term: 2},
  439. raftLog: &raftLog{committed: 0, ents: []pb.Entry{{}, {Term: 1}, {Term: 2}}},
  440. }
  441. sm.handleAppendEntries(tt.m)
  442. if sm.raftLog.lastIndex() != tt.wIndex {
  443. t.Errorf("#%d: lastIndex = %d, want %d", i, sm.raftLog.lastIndex(), tt.wIndex)
  444. }
  445. if sm.raftLog.committed != tt.wCommit {
  446. t.Errorf("#%d: committed = %d, want %d", i, sm.raftLog.committed, tt.wCommit)
  447. }
  448. m := sm.ReadMessages()
  449. if len(m) != 1 {
  450. t.Errorf("#%d: msg = nil, want 1")
  451. }
  452. gaccept := true
  453. if m[0].Index == -1 {
  454. gaccept = false
  455. }
  456. if gaccept != tt.wAccept {
  457. t.Errorf("#%d: accept = %v, want %v", gaccept, tt.wAccept)
  458. }
  459. }
  460. }
  461. func TestRecvMsgVote(t *testing.T) {
  462. tests := []struct {
  463. state stateType
  464. i, term int64
  465. voteFor int64
  466. w int64
  467. }{
  468. {stateFollower, 0, 0, none, -1},
  469. {stateFollower, 0, 1, none, -1},
  470. {stateFollower, 0, 2, none, -1},
  471. {stateFollower, 0, 3, none, 2},
  472. {stateFollower, 1, 0, none, -1},
  473. {stateFollower, 1, 1, none, -1},
  474. {stateFollower, 1, 2, none, -1},
  475. {stateFollower, 1, 3, none, 2},
  476. {stateFollower, 2, 0, none, -1},
  477. {stateFollower, 2, 1, none, -1},
  478. {stateFollower, 2, 2, none, 2},
  479. {stateFollower, 2, 3, none, 2},
  480. {stateFollower, 3, 0, none, -1},
  481. {stateFollower, 3, 1, none, -1},
  482. {stateFollower, 3, 2, none, 2},
  483. {stateFollower, 3, 3, none, 2},
  484. {stateFollower, 3, 2, 1, 2},
  485. {stateFollower, 3, 2, 0, -1},
  486. {stateLeader, 3, 3, 0, -1},
  487. {stateCandidate, 3, 3, 0, -1},
  488. }
  489. for i, tt := range tests {
  490. sm := newRaft(0, []int64{0}, 0, 0)
  491. sm.state = tt.state
  492. switch tt.state {
  493. case stateFollower:
  494. sm.step = stepFollower
  495. case stateCandidate:
  496. sm.step = stepCandidate
  497. case stateLeader:
  498. sm.step = stepLeader
  499. }
  500. sm.State = pb.State{Vote: tt.voteFor}
  501. sm.raftLog = &raftLog{ents: []pb.Entry{{}, {Term: 2}, {Term: 2}}}
  502. sm.Step(pb.Message{Type: msgVote, From: 1, Index: tt.i, LogTerm: tt.term})
  503. msgs := sm.ReadMessages()
  504. if g := len(msgs); g != 1 {
  505. t.Errorf("#%d: len(msgs) = %d, want 1", i, g)
  506. continue
  507. }
  508. if g := msgs[0].Index; g != tt.w {
  509. t.Errorf("#%d, m.Index = %d, want %d", i, g, tt.w)
  510. }
  511. }
  512. }
  513. func TestStateTransition(t *testing.T) {
  514. tests := []struct {
  515. from stateType
  516. to stateType
  517. wallow bool
  518. wterm int64
  519. wlead int64
  520. }{
  521. {stateFollower, stateFollower, true, 1, none},
  522. {stateFollower, stateCandidate, true, 1, none},
  523. {stateFollower, stateLeader, false, -1, none},
  524. {stateCandidate, stateFollower, true, 0, none},
  525. {stateCandidate, stateCandidate, true, 1, none},
  526. {stateCandidate, stateLeader, true, 0, 0},
  527. {stateLeader, stateFollower, true, 1, none},
  528. {stateLeader, stateCandidate, false, 1, none},
  529. {stateLeader, stateLeader, true, 0, 0},
  530. }
  531. for i, tt := range tests {
  532. func() {
  533. defer func() {
  534. if r := recover(); r != nil {
  535. if tt.wallow == true {
  536. t.Errorf("%d: allow = %v, want %v", i, false, true)
  537. }
  538. }
  539. }()
  540. sm := newRaft(0, []int64{0}, 0, 0)
  541. sm.state = tt.from
  542. switch tt.to {
  543. case stateFollower:
  544. sm.becomeFollower(tt.wterm, tt.wlead)
  545. case stateCandidate:
  546. sm.becomeCandidate()
  547. case stateLeader:
  548. sm.becomeLeader()
  549. }
  550. if sm.Term != tt.wterm {
  551. t.Errorf("%d: term = %d, want %d", i, sm.Term, tt.wterm)
  552. }
  553. if sm.lead != tt.wlead {
  554. t.Errorf("%d: lead = %d, want %d", i, sm.lead, tt.wlead)
  555. }
  556. }()
  557. }
  558. }
  559. func TestAllServerStepdown(t *testing.T) {
  560. tests := []struct {
  561. state stateType
  562. wstate stateType
  563. wterm int64
  564. windex int64
  565. }{
  566. {stateFollower, stateFollower, 3, 1},
  567. {stateCandidate, stateFollower, 3, 1},
  568. {stateLeader, stateFollower, 3, 2},
  569. }
  570. tmsgTypes := [...]int64{msgVote, msgApp}
  571. tterm := int64(3)
  572. for i, tt := range tests {
  573. sm := newRaft(0, []int64{0, 1, 2}, 0, 0)
  574. switch tt.state {
  575. case stateFollower:
  576. sm.becomeFollower(1, 0)
  577. case stateCandidate:
  578. sm.becomeCandidate()
  579. case stateLeader:
  580. sm.becomeCandidate()
  581. sm.becomeLeader()
  582. }
  583. for j, msgType := range tmsgTypes {
  584. sm.Step(pb.Message{From: 1, Type: msgType, Term: tterm, LogTerm: tterm})
  585. if sm.state != tt.wstate {
  586. t.Errorf("#%d.%d state = %v , want %v", i, j, sm.state, tt.wstate)
  587. }
  588. if sm.Term != tt.wterm {
  589. t.Errorf("#%d.%d term = %v , want %v", i, j, sm.Term, tt.wterm)
  590. }
  591. if int64(len(sm.raftLog.ents)) != tt.windex {
  592. t.Errorf("#%d.%d index = %v , want %v", i, j, len(sm.raftLog.ents), tt.windex)
  593. }
  594. wlead := int64(1)
  595. if msgType == msgVote {
  596. wlead = none
  597. }
  598. if sm.lead != wlead {
  599. t.Errorf("#%d, sm.lead = %d, want %d", i, sm.lead, none)
  600. }
  601. }
  602. }
  603. }
  604. func TestLeaderAppResp(t *testing.T) {
  605. tests := []struct {
  606. index int64
  607. wmsgNum int
  608. windex int64
  609. wcommitted int64
  610. }{
  611. {-1, 1, 1, 0}, // bad resp; leader does not commit; reply with log entries
  612. {2, 2, 2, 2}, // good resp; leader commits; broadcast with commit index
  613. }
  614. for i, tt := range tests {
  615. // sm term is 1 after it becomes the leader.
  616. // thus the last log term must be 1 to be committed.
  617. sm := newRaft(0, []int64{0, 1, 2}, 0, 0)
  618. sm.raftLog = &raftLog{ents: []pb.Entry{{}, {Term: 0}, {Term: 1}}}
  619. sm.becomeCandidate()
  620. sm.becomeLeader()
  621. sm.ReadMessages()
  622. sm.Step(pb.Message{From: 1, Type: msgAppResp, Index: tt.index, Term: sm.Term})
  623. msgs := sm.ReadMessages()
  624. if len(msgs) != tt.wmsgNum {
  625. t.Errorf("#%d msgNum = %d, want %d", i, len(msgs), tt.wmsgNum)
  626. }
  627. for j, msg := range msgs {
  628. if msg.Index != tt.windex {
  629. t.Errorf("#%d.%d index = %d, want %d", i, j, msg.Index, tt.windex)
  630. }
  631. if msg.Commit != tt.wcommitted {
  632. t.Errorf("#%d.%d commit = %d, want %d", i, j, msg.Commit, tt.wcommitted)
  633. }
  634. }
  635. }
  636. }
  637. // tests the output of the statemachine when receiving msgBeat
  638. func TestRecvMsgBeat(t *testing.T) {
  639. tests := []struct {
  640. state stateType
  641. wMsg int
  642. }{
  643. {stateLeader, 2},
  644. // candidate and follower should ignore msgBeat
  645. {stateCandidate, 0},
  646. {stateFollower, 0},
  647. }
  648. for i, tt := range tests {
  649. sm := newRaft(0, []int64{0, 1, 2}, 0, 0)
  650. sm.raftLog = &raftLog{ents: []pb.Entry{{}, {Term: 0}, {Term: 1}}}
  651. sm.Term = 1
  652. sm.state = tt.state
  653. switch tt.state {
  654. case stateFollower:
  655. sm.step = stepFollower
  656. case stateCandidate:
  657. sm.step = stepCandidate
  658. case stateLeader:
  659. sm.step = stepLeader
  660. }
  661. sm.Step(pb.Message{From: 0, To: 0, Type: msgBeat})
  662. msgs := sm.ReadMessages()
  663. if len(msgs) != tt.wMsg {
  664. t.Errorf("%d: len(msgs) = %d, want %d", i, len(msgs), tt.wMsg)
  665. }
  666. for _, m := range msgs {
  667. if m.Type != msgApp {
  668. t.Errorf("%d: msg.type = %v, want %v", m.Type, msgApp)
  669. }
  670. }
  671. }
  672. }
  673. func TestRestore(t *testing.T) {
  674. s := pb.Snapshot{
  675. Index: defaultCompactThreshold + 1,
  676. Term: defaultCompactThreshold + 1,
  677. Nodes: []int64{0, 1, 2},
  678. }
  679. sm := newRaft(0, []int64{0, 1}, 0, 0)
  680. if ok := sm.restore(s); !ok {
  681. t.Fatal("restore fail, want succeed")
  682. }
  683. if sm.raftLog.lastIndex() != s.Index {
  684. t.Errorf("log.lastIndex = %d, want %d", sm.raftLog.lastIndex(), s.Index)
  685. }
  686. if sm.raftLog.term(s.Index) != s.Term {
  687. t.Errorf("log.lastTerm = %d, want %d", sm.raftLog.term(s.Index), s.Term)
  688. }
  689. sg := int64Slice(sm.nodes())
  690. sw := int64Slice(s.Nodes)
  691. sort.Sort(sg)
  692. sort.Sort(sw)
  693. if !reflect.DeepEqual(sg, sw) {
  694. t.Errorf("sm.Nodes = %+v, want %+v", sg, sw)
  695. }
  696. if !reflect.DeepEqual(sm.raftLog.snapshot, s) {
  697. t.Errorf("snapshot = %+v, want %+v", sm.raftLog.snapshot, s)
  698. }
  699. if ok := sm.restore(s); ok {
  700. t.Fatal("restore succeed, want fail")
  701. }
  702. }
  703. func TestProvideSnap(t *testing.T) {
  704. s := pb.Snapshot{
  705. Index: defaultCompactThreshold + 1,
  706. Term: defaultCompactThreshold + 1,
  707. Nodes: []int64{0, 1},
  708. }
  709. sm := newRaft(0, []int64{0}, 0, 0)
  710. // restore the statemachin from a snapshot
  711. // so it has a compacted log and a snapshot
  712. sm.restore(s)
  713. sm.becomeCandidate()
  714. sm.becomeLeader()
  715. sm.Step(pb.Message{From: 0, To: 0, Type: msgBeat})
  716. msgs := sm.ReadMessages()
  717. if len(msgs) != 1 {
  718. t.Errorf("len(msgs) = %d, want 1", len(msgs))
  719. }
  720. m := msgs[0]
  721. if m.Type != msgApp {
  722. t.Errorf("m.Type = %v, want %v", m.Type, msgApp)
  723. }
  724. // force set the next of node 1, so that
  725. // node 1 needs a snapshot
  726. sm.prs[1].next = sm.raftLog.offset
  727. sm.Step(pb.Message{From: 1, To: 0, Type: msgAppResp, Index: -1})
  728. msgs = sm.ReadMessages()
  729. if len(msgs) != 1 {
  730. t.Errorf("len(msgs) = %d, want 1", len(msgs))
  731. }
  732. m = msgs[0]
  733. if m.Type != msgSnap {
  734. t.Errorf("m.Type = %v, want %v", m.Type, msgSnap)
  735. }
  736. }
  737. func TestRestoreFromSnapMsg(t *testing.T) {
  738. s := pb.Snapshot{
  739. Index: defaultCompactThreshold + 1,
  740. Term: defaultCompactThreshold + 1,
  741. Nodes: []int64{0, 1},
  742. }
  743. m := pb.Message{Type: msgSnap, From: 0, Term: 1, Snapshot: s}
  744. sm := newRaft(1, []int64{0, 1}, 0, 0)
  745. sm.Step(m)
  746. if !reflect.DeepEqual(sm.raftLog.snapshot, s) {
  747. t.Errorf("snapshot = %+v, want %+v", sm.raftLog.snapshot, s)
  748. }
  749. }
  750. func TestSlowNodeRestore(t *testing.T) {
  751. nt := newNetwork(nil, nil, nil)
  752. nt.send(pb.Message{From: 0, To: 0, Type: msgHup})
  753. nt.isolate(2)
  754. for j := 0; j < defaultCompactThreshold+1; j++ {
  755. nt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{}}})
  756. }
  757. lead := nt.peers[0].(*raft)
  758. lead.nextEnts()
  759. lead.compact(nil)
  760. nt.recover()
  761. nt.send(pb.Message{From: 0, To: 0, Type: msgBeat})
  762. follower := nt.peers[2].(*raft)
  763. if !reflect.DeepEqual(follower.raftLog.snapshot, lead.raftLog.snapshot) {
  764. t.Errorf("follower.snap = %+v, want %+v", follower.raftLog.snapshot, lead.raftLog.snapshot)
  765. }
  766. committed := follower.raftLog.lastIndex()
  767. nt.send(pb.Message{From: 0, To: 0, Type: msgProp, Entries: []pb.Entry{{}}})
  768. if follower.raftLog.committed != committed+1 {
  769. t.Errorf("follower.comitted = %d, want %d", follower.raftLog.committed, committed+1)
  770. }
  771. }
  772. func ents(terms ...int64) *raft {
  773. ents := []pb.Entry{{}}
  774. for _, term := range terms {
  775. ents = append(ents, pb.Entry{Term: term})
  776. }
  777. sm := &raft{raftLog: &raftLog{ents: ents}}
  778. sm.reset(0)
  779. return sm
  780. }
  781. type network struct {
  782. peers map[int64]Interface
  783. dropm map[connem]float64
  784. ignorem map[int64]bool
  785. }
  786. // newNetwork initializes a network from peers.
  787. // A nil node will be replaced with a new *stateMachine.
  788. // A *stateMachine will get its k, id.
  789. // When using stateMachine, the address list is always [0, n).
  790. func newNetwork(peers ...Interface) *network {
  791. size := len(peers)
  792. defaultPeerAddrs := make([]int64, size)
  793. for i := 0; i < size; i++ {
  794. defaultPeerAddrs[i] = int64(i)
  795. }
  796. npeers := make(map[int64]Interface, size)
  797. for id, p := range peers {
  798. nid := int64(id)
  799. switch v := p.(type) {
  800. case nil:
  801. sm := newRaft(nid, defaultPeerAddrs, 0, 0)
  802. npeers[nid] = sm
  803. case *raft:
  804. v.id = nid
  805. v.prs = make(map[int64]*progress)
  806. for i := 0; i < size; i++ {
  807. v.prs[int64(i)] = &progress{}
  808. }
  809. v.reset(0)
  810. npeers[nid] = v
  811. default:
  812. npeers[nid] = v
  813. }
  814. }
  815. return &network{
  816. peers: npeers,
  817. dropm: make(map[connem]float64),
  818. ignorem: make(map[int64]bool),
  819. }
  820. }
  821. func (nw *network) send(msgs ...pb.Message) {
  822. for len(msgs) > 0 {
  823. m := msgs[0]
  824. p := nw.peers[m.To]
  825. p.Step(m)
  826. msgs = append(msgs[1:], nw.filter(p.ReadMessages())...)
  827. }
  828. }
  829. func (nw *network) drop(from, to int64, perc float64) {
  830. nw.dropm[connem{from, to}] = perc
  831. }
  832. func (nw *network) cut(one, other int64) {
  833. nw.drop(one, other, 1)
  834. nw.drop(other, one, 1)
  835. }
  836. func (nw *network) isolate(id int64) {
  837. for i := 0; i < len(nw.peers); i++ {
  838. nid := int64(i)
  839. if nid != id {
  840. nw.drop(id, nid, 1.0)
  841. nw.drop(nid, id, 1.0)
  842. }
  843. }
  844. }
  845. func (nw *network) ignore(t int64) {
  846. nw.ignorem[t] = true
  847. }
  848. func (nw *network) recover() {
  849. nw.dropm = make(map[connem]float64)
  850. nw.ignorem = make(map[int64]bool)
  851. }
  852. func (nw *network) filter(msgs []pb.Message) []pb.Message {
  853. mm := make([]pb.Message, 0)
  854. for _, m := range msgs {
  855. if nw.ignorem[m.Type] {
  856. continue
  857. }
  858. switch m.Type {
  859. case msgHup:
  860. // hups never go over the network, so don't drop them but panic
  861. panic("unexpected msgHup")
  862. default:
  863. perc := nw.dropm[connem{m.From, m.To}]
  864. if n := rand.Float64(); n < perc {
  865. continue
  866. }
  867. }
  868. mm = append(mm, m)
  869. }
  870. return mm
  871. }
  872. type connem struct {
  873. from, to int64
  874. }
  875. type blackHole struct{}
  876. func (blackHole) Step(pb.Message) error { return nil }
  877. func (blackHole) ReadMessages() []pb.Message { return nil }
  878. var nopStepper = &blackHole{}