kvstore.go 16 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 mvcc
  15. import (
  16. "encoding/binary"
  17. "errors"
  18. "math"
  19. "math/rand"
  20. "sync"
  21. "time"
  22. "github.com/coreos/etcd/lease"
  23. "github.com/coreos/etcd/mvcc/backend"
  24. "github.com/coreos/etcd/mvcc/mvccpb"
  25. "github.com/coreos/etcd/pkg/schedule"
  26. "github.com/coreos/pkg/capnslog"
  27. "golang.org/x/net/context"
  28. )
  29. var (
  30. keyBucketName = []byte("key")
  31. metaBucketName = []byte("meta")
  32. // markedRevBytesLen is the byte length of marked revision.
  33. // The first `revBytesLen` bytes represents a normal revision. The last
  34. // one byte is the mark.
  35. markedRevBytesLen = revBytesLen + 1
  36. markBytePosition = markedRevBytesLen - 1
  37. markTombstone byte = 't'
  38. consistentIndexKeyName = []byte("consistent_index")
  39. scheduledCompactKeyName = []byte("scheduledCompactRev")
  40. finishedCompactKeyName = []byte("finishedCompactRev")
  41. ErrTxnIDMismatch = errors.New("mvcc: txn id mismatch")
  42. ErrCompacted = errors.New("mvcc: required revision has been compacted")
  43. ErrFutureRev = errors.New("mvcc: required revision is a future revision")
  44. ErrCanceled = errors.New("mvcc: watcher is canceled")
  45. plog = capnslog.NewPackageLogger("github.com/coreos/etcd", "mvcc")
  46. )
  47. // ConsistentIndexGetter is an interface that wraps the Get method.
  48. // Consistent index is the offset of an entry in a consistent replicated log.
  49. type ConsistentIndexGetter interface {
  50. // ConsistentIndex returns the consistent index of current executing entry.
  51. ConsistentIndex() uint64
  52. }
  53. type store struct {
  54. mu sync.Mutex // guards the following
  55. ig ConsistentIndexGetter
  56. b backend.Backend
  57. kvindex index
  58. le lease.Lessor
  59. currentRev revision
  60. // the main revision of the last compaction
  61. compactMainRev int64
  62. tx backend.BatchTx
  63. txnID int64 // tracks the current txnID to verify txn operations
  64. // bytesBuf8 is a byte slice of length 8
  65. // to avoid a repetitive allocation in saveIndex.
  66. bytesBuf8 []byte
  67. changes []mvccpb.KeyValue
  68. fifoSched schedule.Scheduler
  69. stopc chan struct{}
  70. }
  71. // NewStore returns a new store. It is useful to create a store inside
  72. // mvcc pkg. It should only be used for testing externally.
  73. func NewStore(b backend.Backend, le lease.Lessor, ig ConsistentIndexGetter) *store {
  74. s := &store{
  75. b: b,
  76. ig: ig,
  77. kvindex: newTreeIndex(),
  78. le: le,
  79. currentRev: revision{main: 1},
  80. compactMainRev: -1,
  81. bytesBuf8: make([]byte, 8, 8),
  82. fifoSched: schedule.NewFIFOScheduler(),
  83. stopc: make(chan struct{}),
  84. }
  85. if s.le != nil {
  86. s.le.SetRangeDeleter(s)
  87. }
  88. tx := s.b.BatchTx()
  89. tx.Lock()
  90. tx.UnsafeCreateBucket(keyBucketName)
  91. tx.UnsafeCreateBucket(metaBucketName)
  92. tx.Unlock()
  93. s.b.ForceCommit()
  94. if err := s.restore(); err != nil {
  95. // TODO: return the error instead of panic here?
  96. panic("failed to recover store from backend")
  97. }
  98. return s
  99. }
  100. func (s *store) Rev() int64 {
  101. s.mu.Lock()
  102. defer s.mu.Unlock()
  103. return s.currentRev.main
  104. }
  105. func (s *store) FirstRev() int64 {
  106. s.mu.Lock()
  107. defer s.mu.Unlock()
  108. return s.compactMainRev
  109. }
  110. func (s *store) Put(key, value []byte, lease lease.LeaseID) int64 {
  111. id := s.TxnBegin()
  112. s.put(key, value, lease)
  113. s.txnEnd(id)
  114. putCounter.Inc()
  115. return int64(s.currentRev.main)
  116. }
  117. func (s *store) Range(key, end []byte, ro RangeOptions) (r *RangeResult, err error) {
  118. id := s.TxnBegin()
  119. kvs, count, rev, err := s.rangeKeys(key, end, ro.Limit, ro.Rev, ro.Count)
  120. s.txnEnd(id)
  121. rangeCounter.Inc()
  122. r = &RangeResult{
  123. KVs: kvs,
  124. Count: count,
  125. Rev: rev,
  126. }
  127. return r, err
  128. }
  129. func (s *store) DeleteRange(key, end []byte) (n, rev int64) {
  130. id := s.TxnBegin()
  131. n = s.deleteRange(key, end)
  132. s.txnEnd(id)
  133. deleteCounter.Inc()
  134. return n, int64(s.currentRev.main)
  135. }
  136. func (s *store) TxnBegin() int64 {
  137. s.mu.Lock()
  138. s.currentRev.sub = 0
  139. s.tx = s.b.BatchTx()
  140. s.tx.Lock()
  141. s.saveIndex()
  142. s.txnID = rand.Int63()
  143. return s.txnID
  144. }
  145. func (s *store) TxnEnd(txnID int64) error {
  146. err := s.txnEnd(txnID)
  147. if err != nil {
  148. return err
  149. }
  150. txnCounter.Inc()
  151. return nil
  152. }
  153. // txnEnd is used for unlocking an internal txn. It does
  154. // not increase the txnCounter.
  155. func (s *store) txnEnd(txnID int64) error {
  156. if txnID != s.txnID {
  157. return ErrTxnIDMismatch
  158. }
  159. s.tx.Unlock()
  160. if s.currentRev.sub != 0 {
  161. s.currentRev.main += 1
  162. }
  163. s.currentRev.sub = 0
  164. dbTotalSize.Set(float64(s.b.Size()))
  165. s.mu.Unlock()
  166. return nil
  167. }
  168. func (s *store) TxnRange(txnID int64, key, end []byte, ro RangeOptions) (r *RangeResult, err error) {
  169. if txnID != s.txnID {
  170. return nil, ErrTxnIDMismatch
  171. }
  172. kvs, count, rev, err := s.rangeKeys(key, end, ro.Limit, ro.Rev, ro.Count)
  173. r = &RangeResult{
  174. KVs: kvs,
  175. Count: count,
  176. Rev: rev,
  177. }
  178. return r, err
  179. }
  180. func (s *store) TxnPut(txnID int64, key, value []byte, lease lease.LeaseID) (rev int64, err error) {
  181. if txnID != s.txnID {
  182. return 0, ErrTxnIDMismatch
  183. }
  184. s.put(key, value, lease)
  185. return int64(s.currentRev.main + 1), nil
  186. }
  187. func (s *store) TxnDeleteRange(txnID int64, key, end []byte) (n, rev int64, err error) {
  188. if txnID != s.txnID {
  189. return 0, 0, ErrTxnIDMismatch
  190. }
  191. n = s.deleteRange(key, end)
  192. if n != 0 || s.currentRev.sub != 0 {
  193. rev = int64(s.currentRev.main + 1)
  194. } else {
  195. rev = int64(s.currentRev.main)
  196. }
  197. return n, rev, nil
  198. }
  199. func (s *store) compactBarrier(ctx context.Context, ch chan struct{}) {
  200. if ctx == nil || ctx.Err() != nil {
  201. s.mu.Lock()
  202. select {
  203. case <-s.stopc:
  204. default:
  205. f := func(ctx context.Context) { s.compactBarrier(ctx, ch) }
  206. s.fifoSched.Schedule(f)
  207. }
  208. s.mu.Unlock()
  209. return
  210. }
  211. close(ch)
  212. }
  213. func (s *store) Compact(rev int64) (<-chan struct{}, error) {
  214. s.mu.Lock()
  215. defer s.mu.Unlock()
  216. if rev <= s.compactMainRev {
  217. ch := make(chan struct{})
  218. f := func(ctx context.Context) { s.compactBarrier(ctx, ch) }
  219. s.fifoSched.Schedule(f)
  220. return ch, ErrCompacted
  221. }
  222. if rev > s.currentRev.main {
  223. return nil, ErrFutureRev
  224. }
  225. start := time.Now()
  226. s.compactMainRev = rev
  227. rbytes := newRevBytes()
  228. revToBytes(revision{main: rev}, rbytes)
  229. tx := s.b.BatchTx()
  230. tx.Lock()
  231. tx.UnsafePut(metaBucketName, scheduledCompactKeyName, rbytes)
  232. tx.Unlock()
  233. // ensure that desired compaction is persisted
  234. s.b.ForceCommit()
  235. keep := s.kvindex.Compact(rev)
  236. ch := make(chan struct{})
  237. var j = func(ctx context.Context) {
  238. if ctx.Err() != nil {
  239. s.compactBarrier(ctx, ch)
  240. return
  241. }
  242. if !s.scheduleCompaction(rev, keep) {
  243. s.compactBarrier(nil, ch)
  244. return
  245. }
  246. close(ch)
  247. }
  248. s.fifoSched.Schedule(j)
  249. indexCompactionPauseDurations.Observe(float64(time.Since(start) / time.Millisecond))
  250. return ch, nil
  251. }
  252. func (s *store) Hash() (uint32, int64, error) {
  253. s.b.ForceCommit()
  254. s.mu.Lock()
  255. defer s.mu.Unlock()
  256. // ignore hash consistent index field for now.
  257. // consistent index might be changed due to v2 internal sync, which
  258. // is not controllable by the user.
  259. ignores := make(map[backend.IgnoreKey]struct{})
  260. bk := backend.IgnoreKey{Bucket: string(metaBucketName), Key: string(consistentIndexKeyName)}
  261. ignores[bk] = struct{}{}
  262. h, err := s.b.Hash(ignores)
  263. rev := s.currentRev.main
  264. return h, rev, err
  265. }
  266. func (s *store) Commit() {
  267. s.mu.Lock()
  268. defer s.mu.Unlock()
  269. s.tx = s.b.BatchTx()
  270. s.tx.Lock()
  271. s.saveIndex()
  272. s.tx.Unlock()
  273. s.b.ForceCommit()
  274. }
  275. func (s *store) Restore(b backend.Backend) error {
  276. s.mu.Lock()
  277. defer s.mu.Unlock()
  278. close(s.stopc)
  279. s.fifoSched.Stop()
  280. s.b = b
  281. s.kvindex = newTreeIndex()
  282. s.currentRev = revision{main: 1}
  283. s.compactMainRev = -1
  284. s.tx = b.BatchTx()
  285. s.txnID = -1
  286. s.fifoSched = schedule.NewFIFOScheduler()
  287. s.stopc = make(chan struct{})
  288. return s.restore()
  289. }
  290. func (s *store) restore() error {
  291. min, max := newRevBytes(), newRevBytes()
  292. revToBytes(revision{main: 1}, min)
  293. revToBytes(revision{main: math.MaxInt64, sub: math.MaxInt64}, max)
  294. keyToLease := make(map[string]lease.LeaseID)
  295. // restore index
  296. tx := s.b.BatchTx()
  297. tx.Lock()
  298. _, finishedCompactBytes := tx.UnsafeRange(metaBucketName, finishedCompactKeyName, nil, 0)
  299. if len(finishedCompactBytes) != 0 {
  300. s.compactMainRev = bytesToRev(finishedCompactBytes[0]).main
  301. plog.Printf("restore compact to %d", s.compactMainRev)
  302. }
  303. // TODO: limit N to reduce max memory usage
  304. keys, vals := tx.UnsafeRange(keyBucketName, min, max, 0)
  305. for i, key := range keys {
  306. var kv mvccpb.KeyValue
  307. if err := kv.Unmarshal(vals[i]); err != nil {
  308. plog.Fatalf("cannot unmarshal event: %v", err)
  309. }
  310. rev := bytesToRev(key[:revBytesLen])
  311. // restore index
  312. switch {
  313. case isTombstone(key):
  314. s.kvindex.Tombstone(kv.Key, rev)
  315. delete(keyToLease, string(kv.Key))
  316. default:
  317. s.kvindex.Restore(kv.Key, revision{kv.CreateRevision, 0}, rev, kv.Version)
  318. if lid := lease.LeaseID(kv.Lease); lid != lease.NoLease {
  319. keyToLease[string(kv.Key)] = lid
  320. } else {
  321. delete(keyToLease, string(kv.Key))
  322. }
  323. }
  324. // update revision
  325. s.currentRev = rev
  326. }
  327. for key, lid := range keyToLease {
  328. if s.le == nil {
  329. panic("no lessor to attach lease")
  330. }
  331. err := s.le.Attach(lid, []lease.LeaseItem{{Key: key}})
  332. if err != nil {
  333. plog.Errorf("unexpected Attach error: %v", err)
  334. }
  335. }
  336. _, scheduledCompactBytes := tx.UnsafeRange(metaBucketName, scheduledCompactKeyName, nil, 0)
  337. scheduledCompact := int64(0)
  338. if len(scheduledCompactBytes) != 0 {
  339. scheduledCompact = bytesToRev(scheduledCompactBytes[0]).main
  340. if scheduledCompact <= s.compactMainRev {
  341. scheduledCompact = 0
  342. }
  343. }
  344. tx.Unlock()
  345. if scheduledCompact != 0 {
  346. s.Compact(scheduledCompact)
  347. plog.Printf("resume scheduled compaction at %d", scheduledCompact)
  348. }
  349. return nil
  350. }
  351. func (s *store) Close() error {
  352. close(s.stopc)
  353. s.fifoSched.Stop()
  354. return nil
  355. }
  356. func (a *store) Equal(b *store) bool {
  357. if a.currentRev != b.currentRev {
  358. return false
  359. }
  360. if a.compactMainRev != b.compactMainRev {
  361. return false
  362. }
  363. return a.kvindex.Equal(b.kvindex)
  364. }
  365. // range is a keyword in Go, add Keys suffix.
  366. func (s *store) rangeKeys(key, end []byte, limit, rangeRev int64, countOnly bool) (kvs []mvccpb.KeyValue, count int, curRev int64, err error) {
  367. curRev = int64(s.currentRev.main)
  368. if s.currentRev.sub > 0 {
  369. curRev += 1
  370. }
  371. if rangeRev > curRev {
  372. return nil, -1, s.currentRev.main, ErrFutureRev
  373. }
  374. var rev int64
  375. if rangeRev <= 0 {
  376. rev = curRev
  377. } else {
  378. rev = rangeRev
  379. }
  380. if rev < s.compactMainRev {
  381. return nil, -1, 0, ErrCompacted
  382. }
  383. _, revpairs := s.kvindex.Range(key, end, int64(rev))
  384. if len(revpairs) == 0 {
  385. return nil, 0, curRev, nil
  386. }
  387. if countOnly {
  388. return nil, len(revpairs), curRev, nil
  389. }
  390. for _, revpair := range revpairs {
  391. start, end := revBytesRange(revpair)
  392. _, vs := s.tx.UnsafeRange(keyBucketName, start, end, 0)
  393. if len(vs) != 1 {
  394. plog.Fatalf("range cannot find rev (%d,%d)", revpair.main, revpair.sub)
  395. }
  396. var kv mvccpb.KeyValue
  397. if err := kv.Unmarshal(vs[0]); err != nil {
  398. plog.Fatalf("cannot unmarshal event: %v", err)
  399. }
  400. kvs = append(kvs, kv)
  401. if limit > 0 && len(kvs) >= int(limit) {
  402. break
  403. }
  404. }
  405. return kvs, len(revpairs), curRev, nil
  406. }
  407. func (s *store) put(key, value []byte, leaseID lease.LeaseID) {
  408. rev := s.currentRev.main + 1
  409. c := rev
  410. oldLease := lease.NoLease
  411. // if the key exists before, use its previous created and
  412. // get its previous leaseID
  413. grev, created, ver, err := s.kvindex.Get(key, rev)
  414. if err == nil {
  415. c = created.main
  416. ibytes := newRevBytes()
  417. revToBytes(grev, ibytes)
  418. _, vs := s.tx.UnsafeRange(keyBucketName, ibytes, nil, 0)
  419. var kv mvccpb.KeyValue
  420. if err = kv.Unmarshal(vs[0]); err != nil {
  421. plog.Fatalf("cannot unmarshal value: %v", err)
  422. }
  423. oldLease = lease.LeaseID(kv.Lease)
  424. }
  425. ibytes := newRevBytes()
  426. revToBytes(revision{main: rev, sub: s.currentRev.sub}, ibytes)
  427. ver = ver + 1
  428. kv := mvccpb.KeyValue{
  429. Key: key,
  430. Value: value,
  431. CreateRevision: c,
  432. ModRevision: rev,
  433. Version: ver,
  434. Lease: int64(leaseID),
  435. }
  436. d, err := kv.Marshal()
  437. if err != nil {
  438. plog.Fatalf("cannot marshal event: %v", err)
  439. }
  440. s.tx.UnsafeSeqPut(keyBucketName, ibytes, d)
  441. s.kvindex.Put(key, revision{main: rev, sub: s.currentRev.sub})
  442. s.changes = append(s.changes, kv)
  443. s.currentRev.sub += 1
  444. if oldLease != lease.NoLease {
  445. if s.le == nil {
  446. panic("no lessor to detach lease")
  447. }
  448. err = s.le.Detach(oldLease, []lease.LeaseItem{{Key: string(key)}})
  449. if err != nil {
  450. plog.Errorf("unexpected error from lease detach: %v", err)
  451. }
  452. }
  453. if leaseID != lease.NoLease {
  454. if s.le == nil {
  455. panic("no lessor to attach lease")
  456. }
  457. err = s.le.Attach(leaseID, []lease.LeaseItem{{Key: string(key)}})
  458. if err != nil {
  459. panic("unexpected error from lease Attach")
  460. }
  461. }
  462. }
  463. func (s *store) deleteRange(key, end []byte) int64 {
  464. rrev := s.currentRev.main
  465. if s.currentRev.sub > 0 {
  466. rrev += 1
  467. }
  468. keys, revs := s.kvindex.Range(key, end, rrev)
  469. if len(keys) == 0 {
  470. return 0
  471. }
  472. for i, key := range keys {
  473. s.delete(key, revs[i])
  474. }
  475. return int64(len(keys))
  476. }
  477. func (s *store) delete(key []byte, rev revision) {
  478. mainrev := s.currentRev.main + 1
  479. ibytes := newRevBytes()
  480. revToBytes(revision{main: mainrev, sub: s.currentRev.sub}, ibytes)
  481. ibytes = appendMarkTombstone(ibytes)
  482. kv := mvccpb.KeyValue{
  483. Key: key,
  484. }
  485. d, err := kv.Marshal()
  486. if err != nil {
  487. plog.Fatalf("cannot marshal event: %v", err)
  488. }
  489. s.tx.UnsafeSeqPut(keyBucketName, ibytes, d)
  490. err = s.kvindex.Tombstone(key, revision{main: mainrev, sub: s.currentRev.sub})
  491. if err != nil {
  492. plog.Fatalf("cannot tombstone an existing key (%s): %v", string(key), err)
  493. }
  494. s.changes = append(s.changes, kv)
  495. s.currentRev.sub += 1
  496. ibytes = newRevBytes()
  497. revToBytes(rev, ibytes)
  498. _, vs := s.tx.UnsafeRange(keyBucketName, ibytes, nil, 0)
  499. kv.Reset()
  500. if err = kv.Unmarshal(vs[0]); err != nil {
  501. plog.Fatalf("cannot unmarshal value: %v", err)
  502. }
  503. if lease.LeaseID(kv.Lease) != lease.NoLease {
  504. err = s.le.Detach(lease.LeaseID(kv.Lease), []lease.LeaseItem{{Key: string(kv.Key)}})
  505. if err != nil {
  506. plog.Errorf("cannot detach %v", err)
  507. }
  508. }
  509. }
  510. func (s *store) getChanges() []mvccpb.KeyValue {
  511. changes := s.changes
  512. s.changes = make([]mvccpb.KeyValue, 0, 4)
  513. return changes
  514. }
  515. func (s *store) saveIndex() {
  516. if s.ig == nil {
  517. return
  518. }
  519. tx := s.tx
  520. bs := s.bytesBuf8
  521. binary.BigEndian.PutUint64(bs, s.ig.ConsistentIndex())
  522. // put the index into the underlying backend
  523. // tx has been locked in TxnBegin, so there is no need to lock it again
  524. tx.UnsafePut(metaBucketName, consistentIndexKeyName, bs)
  525. }
  526. func (s *store) ConsistentIndex() uint64 {
  527. // TODO: cache index in a uint64 field?
  528. tx := s.b.BatchTx()
  529. tx.Lock()
  530. defer tx.Unlock()
  531. _, vs := tx.UnsafeRange(metaBucketName, consistentIndexKeyName, nil, 0)
  532. if len(vs) == 0 {
  533. return 0
  534. }
  535. return binary.BigEndian.Uint64(vs[0])
  536. }
  537. // appendMarkTombstone appends tombstone mark to normal revision bytes.
  538. func appendMarkTombstone(b []byte) []byte {
  539. if len(b) != revBytesLen {
  540. plog.Panicf("cannot append mark to non normal revision bytes")
  541. }
  542. return append(b, markTombstone)
  543. }
  544. // isTombstone checks whether the revision bytes is a tombstone.
  545. func isTombstone(b []byte) bool {
  546. return len(b) == markedRevBytesLen && b[markBytePosition] == markTombstone
  547. }
  548. // revBytesRange returns the range of revision bytes at
  549. // the given revision.
  550. func revBytesRange(rev revision) (start, end []byte) {
  551. start = newRevBytes()
  552. revToBytes(rev, start)
  553. end = newRevBytes()
  554. endRev := revision{main: rev.main, sub: rev.sub + 1}
  555. revToBytes(endRev, end)
  556. return start, end
  557. }