node_test.go 18 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. "reflect"
  18. "testing"
  19. "time"
  20. "github.com/coreos/etcd/pkg/testutil"
  21. "github.com/coreos/etcd/raft/raftpb"
  22. "golang.org/x/net/context"
  23. )
  24. // TestNodeStep ensures that node.Step sends msgProp to propc chan
  25. // and other kinds of messages to recvc chan.
  26. func TestNodeStep(t *testing.T) {
  27. for i, msgn := range raftpb.MessageType_name {
  28. n := &node{
  29. propc: make(chan raftpb.Message, 1),
  30. recvc: make(chan raftpb.Message, 1),
  31. }
  32. msgt := raftpb.MessageType(i)
  33. n.Step(context.TODO(), raftpb.Message{Type: msgt})
  34. // Proposal goes to proc chan. Others go to recvc chan.
  35. if msgt == raftpb.MsgProp {
  36. select {
  37. case <-n.propc:
  38. default:
  39. t.Errorf("%d: cannot receive %s on propc chan", msgt, msgn)
  40. }
  41. } else {
  42. if IsLocalMsg(msgt) {
  43. select {
  44. case <-n.recvc:
  45. t.Errorf("%d: step should ignore %s", msgt, msgn)
  46. default:
  47. }
  48. } else {
  49. select {
  50. case <-n.recvc:
  51. default:
  52. t.Errorf("%d: cannot receive %s on recvc chan", msgt, msgn)
  53. }
  54. }
  55. }
  56. }
  57. }
  58. // Cancel and Stop should unblock Step()
  59. func TestNodeStepUnblock(t *testing.T) {
  60. // a node without buffer to block step
  61. n := &node{
  62. propc: make(chan raftpb.Message),
  63. done: make(chan struct{}),
  64. }
  65. ctx, cancel := context.WithCancel(context.Background())
  66. stopFunc := func() { close(n.done) }
  67. tests := []struct {
  68. unblock func()
  69. werr error
  70. }{
  71. {stopFunc, ErrStopped},
  72. {cancel, context.Canceled},
  73. }
  74. for i, tt := range tests {
  75. errc := make(chan error, 1)
  76. go func() {
  77. err := n.Step(ctx, raftpb.Message{Type: raftpb.MsgProp})
  78. errc <- err
  79. }()
  80. tt.unblock()
  81. select {
  82. case err := <-errc:
  83. if err != tt.werr {
  84. t.Errorf("#%d: err = %v, want %v", i, err, tt.werr)
  85. }
  86. //clean up side-effect
  87. if ctx.Err() != nil {
  88. ctx = context.TODO()
  89. }
  90. select {
  91. case <-n.done:
  92. n.done = make(chan struct{})
  93. default:
  94. }
  95. case <-time.After(1 * time.Second):
  96. t.Fatalf("#%d: failed to unblock step", i)
  97. }
  98. }
  99. }
  100. // TestNodePropose ensures that node.Propose sends the given proposal to the underlying raft.
  101. func TestNodePropose(t *testing.T) {
  102. msgs := []raftpb.Message{}
  103. appendStep := func(r *raft, m raftpb.Message) {
  104. msgs = append(msgs, m)
  105. }
  106. n := newNode()
  107. s := NewMemoryStorage()
  108. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  109. go n.run(r)
  110. n.Campaign(context.TODO())
  111. for {
  112. rd := <-n.Ready()
  113. s.Append(rd.Entries)
  114. // change the step function to appendStep until this raft becomes leader
  115. if rd.SoftState.Lead == r.id {
  116. r.step = appendStep
  117. n.Advance()
  118. break
  119. }
  120. n.Advance()
  121. }
  122. n.Propose(context.TODO(), []byte("somedata"))
  123. n.Stop()
  124. if len(msgs) != 1 {
  125. t.Fatalf("len(msgs) = %d, want %d", len(msgs), 1)
  126. }
  127. if msgs[0].Type != raftpb.MsgProp {
  128. t.Errorf("msg type = %d, want %d", msgs[0].Type, raftpb.MsgProp)
  129. }
  130. if !bytes.Equal(msgs[0].Entries[0].Data, []byte("somedata")) {
  131. t.Errorf("data = %v, want %v", msgs[0].Entries[0].Data, []byte("somedata"))
  132. }
  133. }
  134. // TestNodeReadIndex ensures that node.ReadIndex sends the MsgReadIndex message to the underlying raft.
  135. // It also ensures that ReadState can be read out through ready chan.
  136. func TestNodeReadIndex(t *testing.T) {
  137. msgs := []raftpb.Message{}
  138. appendStep := func(r *raft, m raftpb.Message) {
  139. msgs = append(msgs, m)
  140. }
  141. wrs := []ReadState{{Index: uint64(1), RequestCtx: []byte("somedata")}}
  142. n := newNode()
  143. s := NewMemoryStorage()
  144. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  145. r.readStates = wrs
  146. go n.run(r)
  147. n.Campaign(context.TODO())
  148. for {
  149. rd := <-n.Ready()
  150. if !reflect.DeepEqual(rd.ReadStates, wrs) {
  151. t.Errorf("ReadStates = %v, want %v", rd.ReadStates, wrs)
  152. }
  153. s.Append(rd.Entries)
  154. if rd.SoftState.Lead == r.id {
  155. n.Advance()
  156. break
  157. }
  158. n.Advance()
  159. }
  160. r.step = appendStep
  161. wrequestCtx := []byte("somedata2")
  162. n.ReadIndex(context.TODO(), wrequestCtx)
  163. n.Stop()
  164. if len(msgs) != 1 {
  165. t.Fatalf("len(msgs) = %d, want %d", len(msgs), 1)
  166. }
  167. if msgs[0].Type != raftpb.MsgReadIndex {
  168. t.Errorf("msg type = %d, want %d", msgs[0].Type, raftpb.MsgReadIndex)
  169. }
  170. if !bytes.Equal(msgs[0].Entries[0].Data, wrequestCtx) {
  171. t.Errorf("data = %v, want %v", msgs[0].Entries[0].Data, wrequestCtx)
  172. }
  173. }
  174. // TestNodeReadIndexToOldLeader ensures that raftpb.MsgReadIndex to old leader
  175. // gets forwarded to the new leader and 'send' method does not attach its term.
  176. func TestNodeReadIndexToOldLeader(t *testing.T) {
  177. r1 := newTestRaft(1, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  178. r2 := newTestRaft(2, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  179. r3 := newTestRaft(3, []uint64{1, 2, 3}, 10, 1, NewMemoryStorage())
  180. nt := newNetwork(r1, r2, r3)
  181. // elect r1 as leader
  182. nt.send(raftpb.Message{From: 1, To: 1, Type: raftpb.MsgHup})
  183. var testEntries = []raftpb.Entry{{Data: []byte("testdata")}}
  184. // send readindex request to r2(follower)
  185. r2.Step(raftpb.Message{From: 2, To: 2, Type: raftpb.MsgReadIndex, Entries: testEntries})
  186. // verify r2(follower) forwards this message to r1(leader) with term not set
  187. if len(r2.msgs) != 1 {
  188. t.Fatalf("len(r2.msgs) expected 1, got %d", len(r2.msgs))
  189. }
  190. readIndxMsg1 := raftpb.Message{From: 2, To: 1, Type: raftpb.MsgReadIndex, Entries: testEntries}
  191. if !reflect.DeepEqual(r2.msgs[0], readIndxMsg1) {
  192. t.Fatalf("r2.msgs[0] expected %+v, got %+v", readIndxMsg1, r2.msgs[0])
  193. }
  194. // send readindex request to r3(follower)
  195. r3.Step(raftpb.Message{From: 3, To: 3, Type: raftpb.MsgReadIndex, Entries: testEntries})
  196. // verify r3(follower) forwards this message to r1(leader) with term not set as well.
  197. if len(r3.msgs) != 1 {
  198. t.Fatalf("len(r3.msgs) expected 1, got %d", len(r3.msgs))
  199. }
  200. readIndxMsg2 := raftpb.Message{From: 3, To: 1, Type: raftpb.MsgReadIndex, Entries: testEntries}
  201. if !reflect.DeepEqual(r3.msgs[0], readIndxMsg2) {
  202. t.Fatalf("r3.msgs[0] expected %+v, got %+v", readIndxMsg2, r3.msgs[0])
  203. }
  204. // now elect r3 as leader
  205. nt.send(raftpb.Message{From: 3, To: 3, Type: raftpb.MsgHup})
  206. // let r1 steps the two messages previously we got from r2, r3
  207. r1.Step(readIndxMsg1)
  208. r1.Step(readIndxMsg2)
  209. // verify r1(follower) forwards these messages again to r3(new leader)
  210. if len(r1.msgs) != 2 {
  211. t.Fatalf("len(r1.msgs) expected 1, got %d", len(r1.msgs))
  212. }
  213. readIndxMsg3 := raftpb.Message{From: 1, To: 3, Type: raftpb.MsgReadIndex, Entries: testEntries}
  214. if !reflect.DeepEqual(r1.msgs[0], readIndxMsg3) {
  215. t.Fatalf("r1.msgs[0] expected %+v, got %+v", readIndxMsg3, r1.msgs[0])
  216. }
  217. if !reflect.DeepEqual(r1.msgs[1], readIndxMsg3) {
  218. t.Fatalf("r1.msgs[1] expected %+v, got %+v", readIndxMsg3, r1.msgs[1])
  219. }
  220. }
  221. // TestNodeProposeConfig ensures that node.ProposeConfChange sends the given configuration proposal
  222. // to the underlying raft.
  223. func TestNodeProposeConfig(t *testing.T) {
  224. msgs := []raftpb.Message{}
  225. appendStep := func(r *raft, m raftpb.Message) {
  226. msgs = append(msgs, m)
  227. }
  228. n := newNode()
  229. s := NewMemoryStorage()
  230. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  231. go n.run(r)
  232. n.Campaign(context.TODO())
  233. for {
  234. rd := <-n.Ready()
  235. s.Append(rd.Entries)
  236. // change the step function to appendStep until this raft becomes leader
  237. if rd.SoftState.Lead == r.id {
  238. r.step = appendStep
  239. n.Advance()
  240. break
  241. }
  242. n.Advance()
  243. }
  244. cc := raftpb.ConfChange{Type: raftpb.ConfChangeAddNode, NodeID: 1}
  245. ccdata, err := cc.Marshal()
  246. if err != nil {
  247. t.Fatal(err)
  248. }
  249. n.ProposeConfChange(context.TODO(), cc)
  250. n.Stop()
  251. if len(msgs) != 1 {
  252. t.Fatalf("len(msgs) = %d, want %d", len(msgs), 1)
  253. }
  254. if msgs[0].Type != raftpb.MsgProp {
  255. t.Errorf("msg type = %d, want %d", msgs[0].Type, raftpb.MsgProp)
  256. }
  257. if !bytes.Equal(msgs[0].Entries[0].Data, ccdata) {
  258. t.Errorf("data = %v, want %v", msgs[0].Entries[0].Data, ccdata)
  259. }
  260. }
  261. // TestNodeProposeAddDuplicateNode ensures that two proposes to add the same node should
  262. // not affect the later propose to add new node.
  263. func TestNodeProposeAddDuplicateNode(t *testing.T) {
  264. n := newNode()
  265. s := NewMemoryStorage()
  266. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  267. go n.run(r)
  268. n.Campaign(context.TODO())
  269. rdyEntries := make([]raftpb.Entry, 0)
  270. ticker := time.NewTicker(time.Millisecond * 100)
  271. done := make(chan struct{})
  272. stop := make(chan struct{})
  273. applyConfChan := make(chan struct{})
  274. go func() {
  275. defer close(done)
  276. for {
  277. select {
  278. case <-stop:
  279. return
  280. case <-ticker.C:
  281. n.Tick()
  282. case rd := <-n.Ready():
  283. s.Append(rd.Entries)
  284. for _, e := range rd.Entries {
  285. rdyEntries = append(rdyEntries, e)
  286. switch e.Type {
  287. case raftpb.EntryNormal:
  288. case raftpb.EntryConfChange:
  289. var cc raftpb.ConfChange
  290. cc.Unmarshal(e.Data)
  291. n.ApplyConfChange(cc)
  292. applyConfChan <- struct{}{}
  293. }
  294. }
  295. n.Advance()
  296. }
  297. }
  298. }()
  299. cc1 := raftpb.ConfChange{Type: raftpb.ConfChangeAddNode, NodeID: 1}
  300. ccdata1, _ := cc1.Marshal()
  301. n.ProposeConfChange(context.TODO(), cc1)
  302. <-applyConfChan
  303. // try add the same node again
  304. n.ProposeConfChange(context.TODO(), cc1)
  305. <-applyConfChan
  306. // the new node join should be ok
  307. cc2 := raftpb.ConfChange{Type: raftpb.ConfChangeAddNode, NodeID: 2}
  308. ccdata2, _ := cc2.Marshal()
  309. n.ProposeConfChange(context.TODO(), cc2)
  310. <-applyConfChan
  311. close(stop)
  312. <-done
  313. if len(rdyEntries) != 4 {
  314. t.Errorf("len(entry) = %d, want %d, %v\n", len(rdyEntries), 4, rdyEntries)
  315. }
  316. if !bytes.Equal(rdyEntries[1].Data, ccdata1) {
  317. t.Errorf("data = %v, want %v", rdyEntries[1].Data, ccdata1)
  318. }
  319. if !bytes.Equal(rdyEntries[3].Data, ccdata2) {
  320. t.Errorf("data = %v, want %v", rdyEntries[3].Data, ccdata2)
  321. }
  322. n.Stop()
  323. }
  324. // TestBlockProposal ensures that node will block proposal when it does not
  325. // know who is the current leader; node will accept proposal when it knows
  326. // who is the current leader.
  327. func TestBlockProposal(t *testing.T) {
  328. n := newNode()
  329. r := newTestRaft(1, []uint64{1}, 10, 1, NewMemoryStorage())
  330. go n.run(r)
  331. defer n.Stop()
  332. errc := make(chan error, 1)
  333. go func() {
  334. errc <- n.Propose(context.TODO(), []byte("somedata"))
  335. }()
  336. testutil.WaitSchedule()
  337. select {
  338. case err := <-errc:
  339. t.Errorf("err = %v, want blocking", err)
  340. default:
  341. }
  342. n.Campaign(context.TODO())
  343. select {
  344. case err := <-errc:
  345. if err != nil {
  346. t.Errorf("err = %v, want %v", err, nil)
  347. }
  348. case <-time.After(10 * time.Second):
  349. t.Errorf("blocking proposal, want unblocking")
  350. }
  351. }
  352. // TestNodeTick ensures that node.Tick() will increase the
  353. // elapsed of the underlying raft state machine.
  354. func TestNodeTick(t *testing.T) {
  355. n := newNode()
  356. s := NewMemoryStorage()
  357. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  358. go n.run(r)
  359. elapsed := r.electionElapsed
  360. n.Tick()
  361. for len(n.tickc) != 0 {
  362. time.Sleep(100 * time.Millisecond)
  363. }
  364. n.Stop()
  365. if r.electionElapsed != elapsed+1 {
  366. t.Errorf("elapsed = %d, want %d", r.electionElapsed, elapsed+1)
  367. }
  368. }
  369. // TestNodeStop ensures that node.Stop() blocks until the node has stopped
  370. // processing, and that it is idempotent
  371. func TestNodeStop(t *testing.T) {
  372. n := newNode()
  373. s := NewMemoryStorage()
  374. r := newTestRaft(1, []uint64{1}, 10, 1, s)
  375. donec := make(chan struct{})
  376. go func() {
  377. n.run(r)
  378. close(donec)
  379. }()
  380. status := n.Status()
  381. n.Stop()
  382. select {
  383. case <-donec:
  384. case <-time.After(time.Second):
  385. t.Fatalf("timed out waiting for node to stop!")
  386. }
  387. emptyStatus := Status{}
  388. if reflect.DeepEqual(status, emptyStatus) {
  389. t.Errorf("status = %v, want not empty", status)
  390. }
  391. // Further status should return be empty, the node is stopped.
  392. status = n.Status()
  393. if !reflect.DeepEqual(status, emptyStatus) {
  394. t.Errorf("status = %v, want empty", status)
  395. }
  396. // Subsequent Stops should have no effect.
  397. n.Stop()
  398. }
  399. func TestReadyContainUpdates(t *testing.T) {
  400. tests := []struct {
  401. rd Ready
  402. wcontain bool
  403. }{
  404. {Ready{}, false},
  405. {Ready{SoftState: &SoftState{Lead: 1}}, true},
  406. {Ready{HardState: raftpb.HardState{Vote: 1}}, true},
  407. {Ready{Entries: make([]raftpb.Entry, 1)}, true},
  408. {Ready{CommittedEntries: make([]raftpb.Entry, 1)}, true},
  409. {Ready{Messages: make([]raftpb.Message, 1)}, true},
  410. {Ready{Snapshot: raftpb.Snapshot{Metadata: raftpb.SnapshotMetadata{Index: 1}}}, true},
  411. }
  412. for i, tt := range tests {
  413. if g := tt.rd.containsUpdates(); g != tt.wcontain {
  414. t.Errorf("#%d: containUpdates = %v, want %v", i, g, tt.wcontain)
  415. }
  416. }
  417. }
  418. // TestNodeStart ensures that a node can be started correctly. The node should
  419. // start with correct configuration change entries, and can accept and commit
  420. // proposals.
  421. func TestNodeStart(t *testing.T) {
  422. ctx, cancel := context.WithCancel(context.Background())
  423. defer cancel()
  424. cc := raftpb.ConfChange{Type: raftpb.ConfChangeAddNode, NodeID: 1}
  425. ccdata, err := cc.Marshal()
  426. if err != nil {
  427. t.Fatalf("unexpected marshal error: %v", err)
  428. }
  429. wants := []Ready{
  430. {
  431. HardState: raftpb.HardState{Term: 1, Commit: 1, Vote: 0},
  432. Entries: []raftpb.Entry{
  433. {Type: raftpb.EntryConfChange, Term: 1, Index: 1, Data: ccdata},
  434. },
  435. CommittedEntries: []raftpb.Entry{
  436. {Type: raftpb.EntryConfChange, Term: 1, Index: 1, Data: ccdata},
  437. },
  438. MustSync: true,
  439. },
  440. {
  441. HardState: raftpb.HardState{Term: 2, Commit: 3, Vote: 1},
  442. Entries: []raftpb.Entry{{Term: 2, Index: 3, Data: []byte("foo")}},
  443. CommittedEntries: []raftpb.Entry{{Term: 2, Index: 3, Data: []byte("foo")}},
  444. MustSync: true,
  445. },
  446. }
  447. storage := NewMemoryStorage()
  448. c := &Config{
  449. ID: 1,
  450. ElectionTick: 10,
  451. HeartbeatTick: 1,
  452. Storage: storage,
  453. MaxSizePerMsg: noLimit,
  454. MaxInflightMsgs: 256,
  455. }
  456. n := StartNode(c, []Peer{{ID: 1}})
  457. defer n.Stop()
  458. g := <-n.Ready()
  459. if !reflect.DeepEqual(g, wants[0]) {
  460. t.Fatalf("#%d: g = %+v,\n w %+v", 1, g, wants[0])
  461. } else {
  462. storage.Append(g.Entries)
  463. n.Advance()
  464. }
  465. n.Campaign(ctx)
  466. rd := <-n.Ready()
  467. storage.Append(rd.Entries)
  468. n.Advance()
  469. n.Propose(ctx, []byte("foo"))
  470. if g2 := <-n.Ready(); !reflect.DeepEqual(g2, wants[1]) {
  471. t.Errorf("#%d: g = %+v,\n w %+v", 2, g2, wants[1])
  472. } else {
  473. storage.Append(g2.Entries)
  474. n.Advance()
  475. }
  476. select {
  477. case rd := <-n.Ready():
  478. t.Errorf("unexpected Ready: %+v", rd)
  479. case <-time.After(time.Millisecond):
  480. }
  481. }
  482. func TestNodeRestart(t *testing.T) {
  483. entries := []raftpb.Entry{
  484. {Term: 1, Index: 1},
  485. {Term: 1, Index: 2, Data: []byte("foo")},
  486. }
  487. st := raftpb.HardState{Term: 1, Commit: 1}
  488. want := Ready{
  489. HardState: st,
  490. // commit up to index commit index in st
  491. CommittedEntries: entries[:st.Commit],
  492. MustSync: true,
  493. }
  494. storage := NewMemoryStorage()
  495. storage.SetHardState(st)
  496. storage.Append(entries)
  497. c := &Config{
  498. ID: 1,
  499. ElectionTick: 10,
  500. HeartbeatTick: 1,
  501. Storage: storage,
  502. MaxSizePerMsg: noLimit,
  503. MaxInflightMsgs: 256,
  504. }
  505. n := RestartNode(c)
  506. defer n.Stop()
  507. if g := <-n.Ready(); !reflect.DeepEqual(g, want) {
  508. t.Errorf("g = %+v,\n w %+v", g, want)
  509. }
  510. n.Advance()
  511. select {
  512. case rd := <-n.Ready():
  513. t.Errorf("unexpected Ready: %+v", rd)
  514. case <-time.After(time.Millisecond):
  515. }
  516. }
  517. func TestNodeRestartFromSnapshot(t *testing.T) {
  518. snap := raftpb.Snapshot{
  519. Metadata: raftpb.SnapshotMetadata{
  520. ConfState: raftpb.ConfState{Nodes: []uint64{1, 2}},
  521. Index: 2,
  522. Term: 1,
  523. },
  524. }
  525. entries := []raftpb.Entry{
  526. {Term: 1, Index: 3, Data: []byte("foo")},
  527. }
  528. st := raftpb.HardState{Term: 1, Commit: 3}
  529. want := Ready{
  530. HardState: st,
  531. // commit up to index commit index in st
  532. CommittedEntries: entries,
  533. MustSync: true,
  534. }
  535. s := NewMemoryStorage()
  536. s.SetHardState(st)
  537. s.ApplySnapshot(snap)
  538. s.Append(entries)
  539. c := &Config{
  540. ID: 1,
  541. ElectionTick: 10,
  542. HeartbeatTick: 1,
  543. Storage: s,
  544. MaxSizePerMsg: noLimit,
  545. MaxInflightMsgs: 256,
  546. }
  547. n := RestartNode(c)
  548. defer n.Stop()
  549. if g := <-n.Ready(); !reflect.DeepEqual(g, want) {
  550. t.Errorf("g = %+v,\n w %+v", g, want)
  551. } else {
  552. n.Advance()
  553. }
  554. select {
  555. case rd := <-n.Ready():
  556. t.Errorf("unexpected Ready: %+v", rd)
  557. case <-time.After(time.Millisecond):
  558. }
  559. }
  560. func TestNodeAdvance(t *testing.T) {
  561. ctx, cancel := context.WithCancel(context.Background())
  562. defer cancel()
  563. storage := NewMemoryStorage()
  564. c := &Config{
  565. ID: 1,
  566. ElectionTick: 10,
  567. HeartbeatTick: 1,
  568. Storage: storage,
  569. MaxSizePerMsg: noLimit,
  570. MaxInflightMsgs: 256,
  571. }
  572. n := StartNode(c, []Peer{{ID: 1}})
  573. defer n.Stop()
  574. rd := <-n.Ready()
  575. storage.Append(rd.Entries)
  576. n.Advance()
  577. n.Campaign(ctx)
  578. <-n.Ready()
  579. n.Propose(ctx, []byte("foo"))
  580. select {
  581. case rd = <-n.Ready():
  582. t.Fatalf("unexpected Ready before Advance: %+v", rd)
  583. case <-time.After(time.Millisecond):
  584. }
  585. storage.Append(rd.Entries)
  586. n.Advance()
  587. select {
  588. case <-n.Ready():
  589. case <-time.After(100 * time.Millisecond):
  590. t.Errorf("expect Ready after Advance, but there is no Ready available")
  591. }
  592. }
  593. func TestSoftStateEqual(t *testing.T) {
  594. tests := []struct {
  595. st *SoftState
  596. we bool
  597. }{
  598. {&SoftState{}, true},
  599. {&SoftState{Lead: 1}, false},
  600. {&SoftState{RaftState: StateLeader}, false},
  601. }
  602. for i, tt := range tests {
  603. if g := tt.st.equal(&SoftState{}); g != tt.we {
  604. t.Errorf("#%d, equal = %v, want %v", i, g, tt.we)
  605. }
  606. }
  607. }
  608. func TestIsHardStateEqual(t *testing.T) {
  609. tests := []struct {
  610. st raftpb.HardState
  611. we bool
  612. }{
  613. {emptyState, true},
  614. {raftpb.HardState{Vote: 1}, false},
  615. {raftpb.HardState{Commit: 1}, false},
  616. {raftpb.HardState{Term: 1}, false},
  617. }
  618. for i, tt := range tests {
  619. if isHardStateEqual(tt.st, emptyState) != tt.we {
  620. t.Errorf("#%d, equal = %v, want %v", i, isHardStateEqual(tt.st, emptyState), tt.we)
  621. }
  622. }
  623. }