kvstore.go 12 KB

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  1. // Copyright 2015 CoreOS, Inc.
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. package storage
  15. import (
  16. "errors"
  17. "log"
  18. "math"
  19. "math/rand"
  20. "sync"
  21. "time"
  22. "github.com/coreos/etcd/storage/backend"
  23. "github.com/coreos/etcd/storage/storagepb"
  24. )
  25. var (
  26. batchLimit = 10000
  27. batchInterval = 100 * time.Millisecond
  28. keyBucketName = []byte("key")
  29. metaBucketName = []byte("meta")
  30. scheduledCompactKeyName = []byte("scheduledCompactRev")
  31. finishedCompactKeyName = []byte("finishedCompactRev")
  32. ErrTxnIDMismatch = errors.New("storage: txn id mismatch")
  33. ErrCompacted = errors.New("storage: required revision has been compacted")
  34. ErrFutureRev = errors.New("storage: required revision is a future revision")
  35. ErrCanceled = errors.New("storage: watcher is canceled")
  36. )
  37. type store struct {
  38. mu sync.RWMutex
  39. b backend.Backend
  40. kvindex index
  41. currentRev revision
  42. // the main revision of the last compaction
  43. compactMainRev int64
  44. tx backend.BatchTx
  45. tmu sync.Mutex // protect the txnID field
  46. txnID int64 // tracks the current txnID to verify txn operations
  47. wg sync.WaitGroup
  48. stopc chan struct{}
  49. }
  50. func New(path string) KV {
  51. return newStore(path)
  52. }
  53. func newStore(path string) *store {
  54. s := &store{
  55. b: backend.New(path, batchInterval, batchLimit),
  56. kvindex: newTreeIndex(),
  57. currentRev: revision{},
  58. compactMainRev: -1,
  59. stopc: make(chan struct{}),
  60. }
  61. tx := s.b.BatchTx()
  62. tx.Lock()
  63. tx.UnsafeCreateBucket(keyBucketName)
  64. tx.UnsafeCreateBucket(metaBucketName)
  65. tx.Unlock()
  66. s.b.ForceCommit()
  67. return s
  68. }
  69. func (s *store) Rev() int64 {
  70. s.mu.RLock()
  71. defer s.mu.RUnlock()
  72. return s.currentRev.main
  73. }
  74. func (s *store) Put(key, value []byte) int64 {
  75. id := s.TxnBegin()
  76. s.put(key, value)
  77. s.txnEnd(id)
  78. putCounter.Inc()
  79. return int64(s.currentRev.main)
  80. }
  81. func (s *store) Range(key, end []byte, limit, rangeRev int64) (kvs []storagepb.KeyValue, rev int64, err error) {
  82. id := s.TxnBegin()
  83. kvs, rev, err = s.rangeKeys(key, end, limit, rangeRev)
  84. s.txnEnd(id)
  85. rangeCounter.Inc()
  86. return kvs, rev, err
  87. }
  88. func (s *store) DeleteRange(key, end []byte) (n, rev int64) {
  89. id := s.TxnBegin()
  90. n = s.deleteRange(key, end)
  91. s.txnEnd(id)
  92. deleteCounter.Inc()
  93. return n, int64(s.currentRev.main)
  94. }
  95. func (s *store) TxnBegin() int64 {
  96. s.mu.Lock()
  97. s.currentRev.sub = 0
  98. s.tx = s.b.BatchTx()
  99. s.tx.Lock()
  100. s.tmu.Lock()
  101. defer s.tmu.Unlock()
  102. s.txnID = rand.Int63()
  103. return s.txnID
  104. }
  105. func (s *store) TxnEnd(txnID int64) error {
  106. err := s.txnEnd(txnID)
  107. if err != nil {
  108. return err
  109. }
  110. txnCounter.Inc()
  111. return nil
  112. }
  113. // txnEnd is used for unlocking an internal txn. It does
  114. // not increase the txnCounter.
  115. func (s *store) txnEnd(txnID int64) error {
  116. s.tmu.Lock()
  117. defer s.tmu.Unlock()
  118. if txnID != s.txnID {
  119. return ErrTxnIDMismatch
  120. }
  121. s.tx.Unlock()
  122. if s.currentRev.sub != 0 {
  123. s.currentRev.main += 1
  124. }
  125. s.currentRev.sub = 0
  126. dbTotalSize.Set(float64(s.b.Size()))
  127. s.mu.Unlock()
  128. return nil
  129. }
  130. func (s *store) TxnRange(txnID int64, key, end []byte, limit, rangeRev int64) (kvs []storagepb.KeyValue, rev int64, err error) {
  131. s.tmu.Lock()
  132. defer s.tmu.Unlock()
  133. if txnID != s.txnID {
  134. return nil, 0, ErrTxnIDMismatch
  135. }
  136. return s.rangeKeys(key, end, limit, rangeRev)
  137. }
  138. func (s *store) TxnPut(txnID int64, key, value []byte) (rev int64, err error) {
  139. s.tmu.Lock()
  140. defer s.tmu.Unlock()
  141. if txnID != s.txnID {
  142. return 0, ErrTxnIDMismatch
  143. }
  144. s.put(key, value)
  145. return int64(s.currentRev.main + 1), nil
  146. }
  147. func (s *store) TxnDeleteRange(txnID int64, key, end []byte) (n, rev int64, err error) {
  148. s.tmu.Lock()
  149. defer s.tmu.Unlock()
  150. if txnID != s.txnID {
  151. return 0, 0, ErrTxnIDMismatch
  152. }
  153. n = s.deleteRange(key, end)
  154. if n != 0 || s.currentRev.sub != 0 {
  155. rev = int64(s.currentRev.main + 1)
  156. } else {
  157. rev = int64(s.currentRev.main)
  158. }
  159. return n, rev, nil
  160. }
  161. // RangeEvents gets the events from key to end starting from startRev.
  162. // If `end` is nil, the request only observes the events on key.
  163. // If `end` is not nil, it observes the events on key range [key, range_end).
  164. // Limit limits the number of events returned.
  165. // If startRev <=0, rangeEvents returns events from the beginning of uncompacted history.
  166. //
  167. // If the required start rev is compacted, ErrCompacted will be returned.
  168. // If the required start rev has not happened, ErrFutureRev will be returned.
  169. //
  170. // RangeEvents returns events that satisfy the requirement (0 <= n <= limit).
  171. // If events in the revision range have not all happened, it returns immeidately
  172. // what is available.
  173. // It also returns nextRev which indicates the start revision used for the following
  174. // RangeEvents call. The nextRev could be smaller than the given endRev if the store
  175. // has not progressed so far or it hits the event limit.
  176. //
  177. // TODO: return byte slices instead of events to avoid meaningless encode and decode.
  178. func (s *store) RangeEvents(key, end []byte, limit, startRev int64) (evs []storagepb.Event, nextRev int64, err error) {
  179. s.mu.Lock()
  180. defer s.mu.Unlock()
  181. if startRev > 0 && startRev <= s.compactMainRev {
  182. return nil, 0, ErrCompacted
  183. }
  184. if startRev > s.currentRev.main {
  185. return nil, 0, ErrFutureRev
  186. }
  187. revs := s.kvindex.RangeEvents(key, end, startRev)
  188. if len(revs) == 0 {
  189. return nil, s.currentRev.main + 1, nil
  190. }
  191. tx := s.b.BatchTx()
  192. tx.Lock()
  193. defer tx.Unlock()
  194. // fetch events from the backend using revisions
  195. for _, rev := range revs {
  196. revbytes := newRevBytes()
  197. revToBytes(rev, revbytes)
  198. _, vs := tx.UnsafeRange(keyBucketName, revbytes, nil, 0)
  199. if len(vs) != 1 {
  200. log.Fatalf("storage: range cannot find rev (%d,%d)", rev.main, rev.sub)
  201. }
  202. e := storagepb.Event{}
  203. if err := e.Unmarshal(vs[0]); err != nil {
  204. log.Fatalf("storage: cannot unmarshal event: %v", err)
  205. }
  206. evs = append(evs, e)
  207. if limit > 0 && len(evs) >= int(limit) {
  208. return evs, rev.main + 1, nil
  209. }
  210. }
  211. return evs, s.currentRev.main + 1, nil
  212. }
  213. func (s *store) Compact(rev int64) error {
  214. s.mu.Lock()
  215. defer s.mu.Unlock()
  216. if rev <= s.compactMainRev {
  217. return ErrCompacted
  218. }
  219. if rev > s.currentRev.main {
  220. return ErrFutureRev
  221. }
  222. start := time.Now()
  223. s.compactMainRev = rev
  224. rbytes := newRevBytes()
  225. revToBytes(revision{main: rev}, rbytes)
  226. tx := s.b.BatchTx()
  227. tx.Lock()
  228. tx.UnsafePut(metaBucketName, scheduledCompactKeyName, rbytes)
  229. tx.Unlock()
  230. // ensure that desired compaction is persisted
  231. s.b.ForceCommit()
  232. keep := s.kvindex.Compact(rev)
  233. s.wg.Add(1)
  234. go s.scheduleCompaction(rev, keep)
  235. indexCompactionPauseDurations.Observe(float64(time.Now().Sub(start) / time.Millisecond))
  236. return nil
  237. }
  238. func (s *store) Hash() (uint32, error) {
  239. s.b.ForceCommit()
  240. return s.b.Hash()
  241. }
  242. func (s *store) Snapshot() Snapshot {
  243. s.b.ForceCommit()
  244. return s.b.Snapshot()
  245. }
  246. func (s *store) Restore() error {
  247. s.mu.Lock()
  248. defer s.mu.Unlock()
  249. min, max := newRevBytes(), newRevBytes()
  250. revToBytes(revision{}, min)
  251. revToBytes(revision{main: math.MaxInt64, sub: math.MaxInt64}, max)
  252. // restore index
  253. tx := s.b.BatchTx()
  254. tx.Lock()
  255. _, finishedCompactBytes := tx.UnsafeRange(metaBucketName, finishedCompactKeyName, nil, 0)
  256. if len(finishedCompactBytes) != 0 {
  257. s.compactMainRev = bytesToRev(finishedCompactBytes[0]).main
  258. log.Printf("storage: restore compact to %d", s.compactMainRev)
  259. }
  260. // TODO: limit N to reduce max memory usage
  261. keys, vals := tx.UnsafeRange(keyBucketName, min, max, 0)
  262. for i, key := range keys {
  263. e := &storagepb.Event{}
  264. if err := e.Unmarshal(vals[i]); err != nil {
  265. log.Fatalf("storage: cannot unmarshal event: %v", err)
  266. }
  267. rev := bytesToRev(key)
  268. // restore index
  269. switch e.Type {
  270. case storagepb.PUT:
  271. s.kvindex.Restore(e.Kv.Key, revision{e.Kv.CreateRevision, 0}, rev, e.Kv.Version)
  272. case storagepb.DELETE:
  273. s.kvindex.Tombstone(e.Kv.Key, rev)
  274. default:
  275. log.Panicf("storage: unexpected event type %s", e.Type)
  276. }
  277. // update revision
  278. s.currentRev = rev
  279. }
  280. _, scheduledCompactBytes := tx.UnsafeRange(metaBucketName, scheduledCompactKeyName, nil, 0)
  281. if len(scheduledCompactBytes) != 0 {
  282. scheduledCompact := bytesToRev(scheduledCompactBytes[0]).main
  283. if scheduledCompact > s.compactMainRev {
  284. log.Printf("storage: resume scheduled compaction at %d", scheduledCompact)
  285. go s.Compact(scheduledCompact)
  286. }
  287. }
  288. tx.Unlock()
  289. return nil
  290. }
  291. func (s *store) Close() error {
  292. close(s.stopc)
  293. s.wg.Wait()
  294. return s.b.Close()
  295. }
  296. func (a *store) Equal(b *store) bool {
  297. if a.currentRev != b.currentRev {
  298. return false
  299. }
  300. if a.compactMainRev != b.compactMainRev {
  301. return false
  302. }
  303. return a.kvindex.Equal(b.kvindex)
  304. }
  305. // range is a keyword in Go, add Keys suffix.
  306. func (s *store) rangeKeys(key, end []byte, limit, rangeRev int64) (kvs []storagepb.KeyValue, rev int64, err error) {
  307. curRev := int64(s.currentRev.main)
  308. if s.currentRev.sub > 0 {
  309. curRev += 1
  310. }
  311. if rangeRev > curRev {
  312. return nil, s.currentRev.main, ErrFutureRev
  313. }
  314. if rangeRev <= 0 {
  315. rev = curRev
  316. } else {
  317. rev = rangeRev
  318. }
  319. if rev <= s.compactMainRev {
  320. return nil, 0, ErrCompacted
  321. }
  322. _, revpairs := s.kvindex.Range(key, end, int64(rev))
  323. if len(revpairs) == 0 {
  324. return nil, rev, nil
  325. }
  326. for _, revpair := range revpairs {
  327. revbytes := newRevBytes()
  328. revToBytes(revpair, revbytes)
  329. _, vs := s.tx.UnsafeRange(keyBucketName, revbytes, nil, 0)
  330. if len(vs) != 1 {
  331. log.Fatalf("storage: range cannot find rev (%d,%d)", revpair.main, revpair.sub)
  332. }
  333. e := &storagepb.Event{}
  334. if err := e.Unmarshal(vs[0]); err != nil {
  335. log.Fatalf("storage: cannot unmarshal event: %v", err)
  336. }
  337. kvs = append(kvs, *e.Kv)
  338. if limit > 0 && len(kvs) >= int(limit) {
  339. break
  340. }
  341. }
  342. return kvs, rev, nil
  343. }
  344. func (s *store) put(key, value []byte) {
  345. rev := s.currentRev.main + 1
  346. c := rev
  347. // if the key exists before, use its previous created
  348. _, created, ver, err := s.kvindex.Get(key, rev)
  349. if err == nil {
  350. c = created.main
  351. }
  352. ibytes := newRevBytes()
  353. revToBytes(revision{main: rev, sub: s.currentRev.sub}, ibytes)
  354. ver = ver + 1
  355. event := storagepb.Event{
  356. Type: storagepb.PUT,
  357. Kv: &storagepb.KeyValue{
  358. Key: key,
  359. Value: value,
  360. CreateRevision: c,
  361. ModRevision: rev,
  362. Version: ver,
  363. },
  364. }
  365. d, err := event.Marshal()
  366. if err != nil {
  367. log.Fatalf("storage: cannot marshal event: %v", err)
  368. }
  369. s.tx.UnsafePut(keyBucketName, ibytes, d)
  370. s.kvindex.Put(key, revision{main: rev, sub: s.currentRev.sub})
  371. s.currentRev.sub += 1
  372. }
  373. func (s *store) deleteRange(key, end []byte) int64 {
  374. rrev := s.currentRev.main
  375. if s.currentRev.sub > 0 {
  376. rrev += 1
  377. }
  378. keys, _ := s.kvindex.Range(key, end, rrev)
  379. if len(keys) == 0 {
  380. return 0
  381. }
  382. for _, key := range keys {
  383. s.delete(key)
  384. }
  385. return int64(len(keys))
  386. }
  387. func (s *store) delete(key []byte) {
  388. mainrev := s.currentRev.main + 1
  389. ibytes := newRevBytes()
  390. revToBytes(revision{main: mainrev, sub: s.currentRev.sub}, ibytes)
  391. event := storagepb.Event{
  392. Type: storagepb.DELETE,
  393. Kv: &storagepb.KeyValue{
  394. Key: key,
  395. },
  396. }
  397. d, err := event.Marshal()
  398. if err != nil {
  399. log.Fatalf("storage: cannot marshal event: %v", err)
  400. }
  401. s.tx.UnsafePut(keyBucketName, ibytes, d)
  402. err = s.kvindex.Tombstone(key, revision{main: mainrev, sub: s.currentRev.sub})
  403. if err != nil {
  404. log.Fatalf("storage: cannot tombstone an existing key (%s): %v", string(key), err)
  405. }
  406. s.currentRev.sub += 1
  407. }