leveldb_dbinstance.go 23 KB

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  1. // Copyright (C) 2014 The Syncthing Authors.
  2. //
  3. // This Source Code Form is subject to the terms of the Mozilla Public
  4. // License, v. 2.0. If a copy of the MPL was not distributed with this file,
  5. // You can obtain one at https://mozilla.org/MPL/2.0/.
  6. package db
  7. import (
  8. "bytes"
  9. "encoding/binary"
  10. "os"
  11. "sort"
  12. "strings"
  13. "sync/atomic"
  14. "github.com/syncthing/syncthing/lib/protocol"
  15. "github.com/syncthing/syncthing/lib/sync"
  16. "github.com/syndtr/goleveldb/leveldb"
  17. "github.com/syndtr/goleveldb/leveldb/errors"
  18. "github.com/syndtr/goleveldb/leveldb/iterator"
  19. "github.com/syndtr/goleveldb/leveldb/opt"
  20. "github.com/syndtr/goleveldb/leveldb/storage"
  21. "github.com/syndtr/goleveldb/leveldb/util"
  22. )
  23. type deletionHandler func(t readWriteTransaction, folder, device, name []byte, dbi iterator.Iterator)
  24. type Instance struct {
  25. committed int64 // this must be the first attribute in the struct to ensure 64 bit alignment on 32 bit plaforms
  26. *leveldb.DB
  27. location string
  28. folderIdx *smallIndex
  29. deviceIdx *smallIndex
  30. }
  31. const (
  32. keyPrefixLen = 1
  33. keyFolderLen = 4 // indexed
  34. keyDeviceLen = 4 // indexed
  35. keyHashLen = 32
  36. )
  37. func Open(file string) (*Instance, error) {
  38. opts := &opt.Options{
  39. OpenFilesCacheCapacity: 100,
  40. WriteBuffer: 4 << 20,
  41. }
  42. db, err := leveldb.OpenFile(file, opts)
  43. if leveldbIsCorrupted(err) {
  44. db, err = leveldb.RecoverFile(file, opts)
  45. }
  46. if leveldbIsCorrupted(err) {
  47. // The database is corrupted, and we've tried to recover it but it
  48. // didn't work. At this point there isn't much to do beyond dropping
  49. // the database and reindexing...
  50. l.Infoln("Database corruption detected, unable to recover. Reinitializing...")
  51. if err := os.RemoveAll(file); err != nil {
  52. return nil, err
  53. }
  54. db, err = leveldb.OpenFile(file, opts)
  55. }
  56. if err != nil {
  57. return nil, err
  58. }
  59. return newDBInstance(db, file), nil
  60. }
  61. func OpenMemory() *Instance {
  62. db, _ := leveldb.Open(storage.NewMemStorage(), nil)
  63. return newDBInstance(db, "<memory>")
  64. }
  65. func newDBInstance(db *leveldb.DB, location string) *Instance {
  66. i := &Instance{
  67. DB: db,
  68. location: location,
  69. }
  70. i.folderIdx = newSmallIndex(i, []byte{KeyTypeFolderIdx})
  71. i.deviceIdx = newSmallIndex(i, []byte{KeyTypeDeviceIdx})
  72. return i
  73. }
  74. // Committed returns the number of items committed to the database since startup
  75. func (db *Instance) Committed() int64 {
  76. return atomic.LoadInt64(&db.committed)
  77. }
  78. // Location returns the filesystem path where the database is stored
  79. func (db *Instance) Location() string {
  80. return db.location
  81. }
  82. func (db *Instance) genericReplace(folder, device []byte, fs []protocol.FileInfo, localSize, globalSize *sizeTracker, deleteFn deletionHandler) {
  83. sort.Sort(fileList(fs)) // sort list on name, same as in the database
  84. t := db.newReadWriteTransaction()
  85. defer t.close()
  86. dbi := t.NewIterator(util.BytesPrefix(db.deviceKey(folder, device, nil)[:keyPrefixLen+keyFolderLen+keyDeviceLen]), nil)
  87. defer dbi.Release()
  88. moreDb := dbi.Next()
  89. fsi := 0
  90. isLocalDevice := bytes.Equal(device, protocol.LocalDeviceID[:])
  91. for {
  92. var newName, oldName []byte
  93. moreFs := fsi < len(fs)
  94. if !moreDb && !moreFs {
  95. break
  96. }
  97. if moreFs {
  98. newName = []byte(fs[fsi].Name)
  99. }
  100. if moreDb {
  101. oldName = db.deviceKeyName(dbi.Key())
  102. }
  103. cmp := bytes.Compare(newName, oldName)
  104. l.Debugf("generic replace; folder=%q device=%v moreFs=%v moreDb=%v cmp=%d newName=%q oldName=%q", folder, protocol.DeviceIDFromBytes(device), moreFs, moreDb, cmp, newName, oldName)
  105. switch {
  106. case moreFs && (!moreDb || cmp == -1):
  107. l.Debugln("generic replace; missing - insert")
  108. // Database is missing this file. Insert it.
  109. t.insertFile(folder, device, fs[fsi])
  110. if isLocalDevice {
  111. localSize.addFile(fs[fsi])
  112. }
  113. if fs[fsi].IsInvalid() {
  114. t.removeFromGlobal(folder, device, newName, globalSize)
  115. } else {
  116. t.updateGlobal(folder, device, fs[fsi], globalSize)
  117. }
  118. fsi++
  119. case moreFs && moreDb && cmp == 0:
  120. // File exists on both sides - compare versions. We might get an
  121. // update with the same version if a device has marked a file as
  122. // invalid, so handle that too.
  123. l.Debugln("generic replace; exists - compare")
  124. var ef FileInfoTruncated
  125. ef.Unmarshal(dbi.Value())
  126. if !fs[fsi].Version.Equal(ef.Version) || fs[fsi].Invalid != ef.Invalid {
  127. l.Debugln("generic replace; differs - insert")
  128. t.insertFile(folder, device, fs[fsi])
  129. if isLocalDevice {
  130. localSize.removeFile(ef)
  131. localSize.addFile(fs[fsi])
  132. }
  133. if fs[fsi].IsInvalid() {
  134. t.removeFromGlobal(folder, device, newName, globalSize)
  135. } else {
  136. t.updateGlobal(folder, device, fs[fsi], globalSize)
  137. }
  138. } else {
  139. l.Debugln("generic replace; equal - ignore")
  140. }
  141. fsi++
  142. moreDb = dbi.Next()
  143. case moreDb && (!moreFs || cmp == 1):
  144. l.Debugln("generic replace; exists - remove")
  145. deleteFn(t, folder, device, oldName, dbi)
  146. moreDb = dbi.Next()
  147. }
  148. // Write out and reuse the batch every few records, to avoid the batch
  149. // growing too large and thus allocating unnecessarily much memory.
  150. t.checkFlush()
  151. }
  152. }
  153. func (db *Instance) replace(folder, device []byte, fs []protocol.FileInfo, localSize, globalSize *sizeTracker) {
  154. db.genericReplace(folder, device, fs, localSize, globalSize, func(t readWriteTransaction, folder, device, name []byte, dbi iterator.Iterator) {
  155. // Database has a file that we are missing. Remove it.
  156. l.Debugf("delete; folder=%q device=%v name=%q", folder, protocol.DeviceIDFromBytes(device), name)
  157. t.removeFromGlobal(folder, device, name, globalSize)
  158. t.Delete(dbi.Key())
  159. })
  160. }
  161. func (db *Instance) updateFiles(folder, device []byte, fs []protocol.FileInfo, localSize, globalSize *sizeTracker) {
  162. t := db.newReadWriteTransaction()
  163. defer t.close()
  164. var fk []byte
  165. isLocalDevice := bytes.Equal(device, protocol.LocalDeviceID[:])
  166. for _, f := range fs {
  167. name := []byte(f.Name)
  168. fk = db.deviceKeyInto(fk[:cap(fk)], folder, device, name)
  169. // Get and unmarshal the file entry. If it doesn't exist or can't be
  170. // unmarshalled we'll add it as a new entry.
  171. bs, err := t.Get(fk, nil)
  172. var ef FileInfoTruncated
  173. if err == nil {
  174. err = ef.Unmarshal(bs)
  175. }
  176. // The Invalid flag might change without the version being bumped.
  177. if err == nil && ef.Version.Equal(f.Version) && ef.Invalid == f.Invalid {
  178. continue
  179. }
  180. if isLocalDevice {
  181. if err == nil {
  182. localSize.removeFile(ef)
  183. }
  184. localSize.addFile(f)
  185. }
  186. t.insertFile(folder, device, f)
  187. if f.IsInvalid() {
  188. t.removeFromGlobal(folder, device, name, globalSize)
  189. } else {
  190. t.updateGlobal(folder, device, f, globalSize)
  191. }
  192. // Write out and reuse the batch every few records, to avoid the batch
  193. // growing too large and thus allocating unnecessarily much memory.
  194. t.checkFlush()
  195. }
  196. }
  197. func (db *Instance) withHave(folder, device, prefix []byte, truncate bool, fn Iterator) {
  198. t := db.newReadOnlyTransaction()
  199. defer t.close()
  200. dbi := t.NewIterator(util.BytesPrefix(db.deviceKey(folder, device, prefix)[:keyPrefixLen+keyFolderLen+keyDeviceLen+len(prefix)]), nil)
  201. defer dbi.Release()
  202. slashedPrefix := prefix
  203. if !bytes.HasSuffix(prefix, []byte{'/'}) {
  204. slashedPrefix = append(slashedPrefix, '/')
  205. }
  206. for dbi.Next() {
  207. name := db.deviceKeyName(dbi.Key())
  208. if len(prefix) > 0 && !bytes.Equal(name, prefix) && !bytes.HasPrefix(name, slashedPrefix) {
  209. return
  210. }
  211. // The iterator function may keep a reference to the unmarshalled
  212. // struct, which in turn references the buffer it was unmarshalled
  213. // from. dbi.Value() just returns an internal slice that it reuses, so
  214. // we need to copy it.
  215. f, err := unmarshalTrunc(append([]byte{}, dbi.Value()...), truncate)
  216. if err != nil {
  217. l.Debugln("unmarshal error:", err)
  218. continue
  219. }
  220. if cont := fn(f); !cont {
  221. return
  222. }
  223. }
  224. }
  225. func (db *Instance) withAllFolderTruncated(folder []byte, fn func(device []byte, f FileInfoTruncated) bool) {
  226. t := db.newReadWriteTransaction()
  227. defer t.close()
  228. dbi := t.NewIterator(util.BytesPrefix(db.deviceKey(folder, nil, nil)[:keyPrefixLen+keyFolderLen]), nil)
  229. defer dbi.Release()
  230. for dbi.Next() {
  231. device := db.deviceKeyDevice(dbi.Key())
  232. var f FileInfoTruncated
  233. // The iterator function may keep a reference to the unmarshalled
  234. // struct, which in turn references the buffer it was unmarshalled
  235. // from. dbi.Value() just returns an internal slice that it reuses, so
  236. // we need to copy it.
  237. err := f.Unmarshal(append([]byte{}, dbi.Value()...))
  238. if err != nil {
  239. l.Debugln("unmarshal error:", err)
  240. continue
  241. }
  242. switch f.Name {
  243. case "", ".", "..", "/": // A few obviously invalid filenames
  244. l.Infof("Dropping invalid filename %q from database", f.Name)
  245. t.removeFromGlobal(folder, device, nil, nil)
  246. t.Delete(dbi.Key())
  247. t.checkFlush()
  248. continue
  249. }
  250. if cont := fn(device, f); !cont {
  251. return
  252. }
  253. }
  254. }
  255. func (db *Instance) getFile(folder, device, file []byte) (protocol.FileInfo, bool) {
  256. return getFile(db, db.deviceKey(folder, device, file))
  257. }
  258. func (db *Instance) getGlobal(folder, file []byte, truncate bool) (FileIntf, bool) {
  259. k := db.globalKey(folder, file)
  260. t := db.newReadOnlyTransaction()
  261. defer t.close()
  262. bs, err := t.Get(k, nil)
  263. if err != nil {
  264. return nil, false
  265. }
  266. var vl VersionList
  267. err = vl.Unmarshal(bs)
  268. if err == leveldb.ErrNotFound {
  269. return nil, false
  270. }
  271. if err != nil {
  272. l.Debugln("unmarshal error:", k, err)
  273. return nil, false
  274. }
  275. if len(vl.Versions) == 0 {
  276. l.Debugln("no versions:", k)
  277. return nil, false
  278. }
  279. k = db.deviceKey(folder, vl.Versions[0].Device, file)
  280. bs, err = t.Get(k, nil)
  281. if err != nil {
  282. l.Debugln("surprise error:", k, err)
  283. return nil, false
  284. }
  285. fi, err := unmarshalTrunc(bs, truncate)
  286. if err != nil {
  287. l.Debugln("unmarshal error:", k, err)
  288. return nil, false
  289. }
  290. return fi, true
  291. }
  292. func (db *Instance) withGlobal(folder, prefix []byte, truncate bool, fn Iterator) {
  293. t := db.newReadOnlyTransaction()
  294. defer t.close()
  295. dbi := t.NewIterator(util.BytesPrefix(db.globalKey(folder, prefix)), nil)
  296. defer dbi.Release()
  297. slashedPrefix := prefix
  298. if !bytes.HasSuffix(prefix, []byte{'/'}) {
  299. slashedPrefix = append(slashedPrefix, '/')
  300. }
  301. var fk []byte
  302. for dbi.Next() {
  303. var vl VersionList
  304. err := vl.Unmarshal(dbi.Value())
  305. if err != nil {
  306. l.Debugln("unmarshal error:", err)
  307. continue
  308. }
  309. if len(vl.Versions) == 0 {
  310. l.Debugln("no versions:", dbi.Key())
  311. continue
  312. }
  313. name := db.globalKeyName(dbi.Key())
  314. if len(prefix) > 0 && !bytes.Equal(name, prefix) && !bytes.HasPrefix(name, slashedPrefix) {
  315. return
  316. }
  317. fk = db.deviceKeyInto(fk[:cap(fk)], folder, vl.Versions[0].Device, name)
  318. bs, err := t.Get(fk, nil)
  319. if err != nil {
  320. l.Debugln("surprise error:", err)
  321. continue
  322. }
  323. f, err := unmarshalTrunc(bs, truncate)
  324. if err != nil {
  325. l.Debugln("unmarshal error:", err)
  326. continue
  327. }
  328. if cont := fn(f); !cont {
  329. return
  330. }
  331. }
  332. }
  333. func (db *Instance) availability(folder, file []byte) []protocol.DeviceID {
  334. k := db.globalKey(folder, file)
  335. bs, err := db.Get(k, nil)
  336. if err == leveldb.ErrNotFound {
  337. return nil
  338. }
  339. if err != nil {
  340. l.Debugln("surprise error:", err)
  341. return nil
  342. }
  343. var vl VersionList
  344. err = vl.Unmarshal(bs)
  345. if err != nil {
  346. l.Debugln("unmarshal error:", err)
  347. return nil
  348. }
  349. var devices []protocol.DeviceID
  350. for _, v := range vl.Versions {
  351. if !v.Version.Equal(vl.Versions[0].Version) {
  352. break
  353. }
  354. n := protocol.DeviceIDFromBytes(v.Device)
  355. devices = append(devices, n)
  356. }
  357. return devices
  358. }
  359. func (db *Instance) withNeed(folder, device []byte, truncate bool, fn Iterator) {
  360. t := db.newReadOnlyTransaction()
  361. defer t.close()
  362. dbi := t.NewIterator(util.BytesPrefix(db.globalKey(folder, nil)[:keyPrefixLen+keyFolderLen]), nil)
  363. defer dbi.Release()
  364. var fk []byte
  365. for dbi.Next() {
  366. var vl VersionList
  367. err := vl.Unmarshal(dbi.Value())
  368. if err != nil {
  369. l.Debugln("unmarshal error:", err)
  370. continue
  371. }
  372. if len(vl.Versions) == 0 {
  373. l.Debugln("no versions:", dbi.Key())
  374. continue
  375. }
  376. have := false // If we have the file, any version
  377. need := false // If we have a lower version of the file
  378. var haveVersion protocol.Vector
  379. for _, v := range vl.Versions {
  380. if bytes.Equal(v.Device, device) {
  381. have = true
  382. haveVersion = v.Version
  383. // XXX: This marks Concurrent (i.e. conflicting) changes as
  384. // needs. Maybe we should do that, but it needs special
  385. // handling in the puller.
  386. need = !v.Version.GreaterEqual(vl.Versions[0].Version)
  387. break
  388. }
  389. }
  390. if have && !need {
  391. continue
  392. }
  393. name := db.globalKeyName(dbi.Key())
  394. needVersion := vl.Versions[0].Version
  395. for i := range vl.Versions {
  396. if !vl.Versions[i].Version.Equal(needVersion) {
  397. // We haven't found a valid copy of the file with the needed version.
  398. break
  399. }
  400. fk = db.deviceKeyInto(fk[:cap(fk)], folder, vl.Versions[i].Device, name)
  401. bs, err := t.Get(fk, nil)
  402. if err != nil {
  403. l.Debugln("surprise error:", err)
  404. continue
  405. }
  406. gf, err := unmarshalTrunc(bs, truncate)
  407. if err != nil {
  408. l.Debugln("unmarshal error:", err)
  409. continue
  410. }
  411. if gf.IsInvalid() {
  412. // The file is marked invalid for whatever reason, don't use it.
  413. continue
  414. }
  415. if gf.IsDeleted() && !have {
  416. // We don't need deleted files that we don't have
  417. break
  418. }
  419. l.Debugf("need folder=%q device=%v name=%q need=%v have=%v haveV=%d globalV=%d", folder, protocol.DeviceIDFromBytes(device), name, need, have, haveVersion, vl.Versions[0].Version)
  420. if cont := fn(gf); !cont {
  421. return
  422. }
  423. // This file is handled, no need to look further in the version list
  424. break
  425. }
  426. }
  427. }
  428. func (db *Instance) ListFolders() []string {
  429. t := db.newReadOnlyTransaction()
  430. defer t.close()
  431. dbi := t.NewIterator(util.BytesPrefix([]byte{KeyTypeGlobal}), nil)
  432. defer dbi.Release()
  433. folderExists := make(map[string]bool)
  434. for dbi.Next() {
  435. folder, ok := db.globalKeyFolder(dbi.Key())
  436. if ok && !folderExists[string(folder)] {
  437. folderExists[string(folder)] = true
  438. }
  439. }
  440. folders := make([]string, 0, len(folderExists))
  441. for k := range folderExists {
  442. folders = append(folders, k)
  443. }
  444. sort.Strings(folders)
  445. return folders
  446. }
  447. func (db *Instance) dropFolder(folder []byte) {
  448. t := db.newReadOnlyTransaction()
  449. defer t.close()
  450. // Remove all items related to the given folder from the device->file bucket
  451. dbi := t.NewIterator(util.BytesPrefix([]byte{KeyTypeDevice}), nil)
  452. for dbi.Next() {
  453. itemFolder := db.deviceKeyFolder(dbi.Key())
  454. if bytes.Equal(folder, itemFolder) {
  455. db.Delete(dbi.Key(), nil)
  456. }
  457. }
  458. dbi.Release()
  459. // Remove all items related to the given folder from the global bucket
  460. dbi = t.NewIterator(util.BytesPrefix([]byte{KeyTypeGlobal}), nil)
  461. for dbi.Next() {
  462. itemFolder, ok := db.globalKeyFolder(dbi.Key())
  463. if ok && bytes.Equal(folder, itemFolder) {
  464. db.Delete(dbi.Key(), nil)
  465. }
  466. }
  467. dbi.Release()
  468. }
  469. func (db *Instance) checkGlobals(folder []byte, globalSize *sizeTracker) {
  470. t := db.newReadWriteTransaction()
  471. defer t.close()
  472. dbi := t.NewIterator(util.BytesPrefix(db.globalKey(folder, nil)[:keyPrefixLen+keyFolderLen]), nil)
  473. defer dbi.Release()
  474. var fk []byte
  475. for dbi.Next() {
  476. gk := dbi.Key()
  477. var vl VersionList
  478. err := vl.Unmarshal(dbi.Value())
  479. if err != nil {
  480. l.Debugln("unmarshal error:", err)
  481. continue
  482. }
  483. // Check the global version list for consistency. An issue in previous
  484. // versions of goleveldb could result in reordered writes so that
  485. // there are global entries pointing to no longer existing files. Here
  486. // we find those and clear them out.
  487. name := db.globalKeyName(gk)
  488. var newVL VersionList
  489. for i, version := range vl.Versions {
  490. fk = db.deviceKeyInto(fk[:cap(fk)], folder, version.Device, name)
  491. _, err := t.Get(fk, nil)
  492. if err == leveldb.ErrNotFound {
  493. continue
  494. }
  495. if err != nil {
  496. l.Debugln("surprise error:", err)
  497. return
  498. }
  499. newVL.Versions = append(newVL.Versions, version)
  500. if i == 0 {
  501. if fi, ok := t.getFile(folder, version.Device, name); ok {
  502. globalSize.addFile(fi)
  503. }
  504. }
  505. }
  506. if len(newVL.Versions) != len(vl.Versions) {
  507. t.Put(dbi.Key(), mustMarshal(&newVL))
  508. t.checkFlush()
  509. }
  510. }
  511. l.Debugf("db check completed for %q", folder)
  512. }
  513. // ConvertSymlinkTypes should be run once only on an old database. It
  514. // changes SYMLINK_FILE and SYMLINK_DIRECTORY types to the current SYMLINK
  515. // type (previously SYMLINK_UNKNOWN). It does this for all devices, both
  516. // local and remote, and does not reset delta indexes. It shouldn't really
  517. // matter what the symlink type is, but this cleans it up for a possible
  518. // future when SYMLINK_FILE and SYMLINK_DIRECTORY are no longer understood.
  519. func (db *Instance) ConvertSymlinkTypes() {
  520. t := db.newReadWriteTransaction()
  521. defer t.close()
  522. dbi := t.NewIterator(util.BytesPrefix([]byte{KeyTypeDevice}), nil)
  523. defer dbi.Release()
  524. conv := 0
  525. for dbi.Next() {
  526. var f protocol.FileInfo
  527. if err := f.Unmarshal(dbi.Value()); err != nil {
  528. // probably can't happen
  529. continue
  530. }
  531. if f.Type == protocol.FileInfoTypeDeprecatedSymlinkDirectory || f.Type == protocol.FileInfoTypeDeprecatedSymlinkFile {
  532. f.Type = protocol.FileInfoTypeSymlink
  533. bs, err := f.Marshal()
  534. if err != nil {
  535. panic("can't happen: " + err.Error())
  536. }
  537. t.Put(dbi.Key(), bs)
  538. t.checkFlush()
  539. conv++
  540. }
  541. }
  542. l.Infof("Updated symlink type for %d index entries", conv)
  543. }
  544. // deviceKey returns a byte slice encoding the following information:
  545. // keyTypeDevice (1 byte)
  546. // folder (4 bytes)
  547. // device (4 bytes)
  548. // name (variable size)
  549. func (db *Instance) deviceKey(folder, device, file []byte) []byte {
  550. return db.deviceKeyInto(nil, folder, device, file)
  551. }
  552. func (db *Instance) deviceKeyInto(k []byte, folder, device, file []byte) []byte {
  553. reqLen := keyPrefixLen + keyFolderLen + keyDeviceLen + len(file)
  554. if len(k) < reqLen {
  555. k = make([]byte, reqLen)
  556. }
  557. k[0] = KeyTypeDevice
  558. binary.BigEndian.PutUint32(k[keyPrefixLen:], db.folderIdx.ID(folder))
  559. binary.BigEndian.PutUint32(k[keyPrefixLen+keyFolderLen:], db.deviceIdx.ID(device))
  560. copy(k[keyPrefixLen+keyFolderLen+keyDeviceLen:], file)
  561. return k[:reqLen]
  562. }
  563. // deviceKeyName returns the device ID from the key
  564. func (db *Instance) deviceKeyName(key []byte) []byte {
  565. return key[keyPrefixLen+keyFolderLen+keyDeviceLen:]
  566. }
  567. // deviceKeyFolder returns the folder name from the key
  568. func (db *Instance) deviceKeyFolder(key []byte) []byte {
  569. folder, ok := db.folderIdx.Val(binary.BigEndian.Uint32(key[keyPrefixLen:]))
  570. if !ok {
  571. panic("bug: lookup of nonexistent folder ID")
  572. }
  573. return folder
  574. }
  575. // deviceKeyDevice returns the device ID from the key
  576. func (db *Instance) deviceKeyDevice(key []byte) []byte {
  577. device, ok := db.deviceIdx.Val(binary.BigEndian.Uint32(key[keyPrefixLen+keyFolderLen:]))
  578. if !ok {
  579. panic("bug: lookup of nonexistent device ID")
  580. }
  581. return device
  582. }
  583. // globalKey returns a byte slice encoding the following information:
  584. // keyTypeGlobal (1 byte)
  585. // folder (4 bytes)
  586. // name (variable size)
  587. func (db *Instance) globalKey(folder, file []byte) []byte {
  588. k := make([]byte, keyPrefixLen+keyFolderLen+len(file))
  589. k[0] = KeyTypeGlobal
  590. binary.BigEndian.PutUint32(k[keyPrefixLen:], db.folderIdx.ID(folder))
  591. copy(k[keyPrefixLen+keyFolderLen:], file)
  592. return k
  593. }
  594. // globalKeyName returns the filename from the key
  595. func (db *Instance) globalKeyName(key []byte) []byte {
  596. return key[keyPrefixLen+keyFolderLen:]
  597. }
  598. // globalKeyFolder returns the folder name from the key
  599. func (db *Instance) globalKeyFolder(key []byte) ([]byte, bool) {
  600. return db.folderIdx.Val(binary.BigEndian.Uint32(key[keyPrefixLen:]))
  601. }
  602. func (db *Instance) getIndexID(device, folder []byte) protocol.IndexID {
  603. key := db.indexIDKey(device, folder)
  604. cur, err := db.Get(key, nil)
  605. if err != nil {
  606. return 0
  607. }
  608. var id protocol.IndexID
  609. if err := id.Unmarshal(cur); err != nil {
  610. return 0
  611. }
  612. return id
  613. }
  614. func (db *Instance) setIndexID(device, folder []byte, id protocol.IndexID) {
  615. key := db.indexIDKey(device, folder)
  616. bs, _ := id.Marshal() // marshalling can't fail
  617. if err := db.Put(key, bs, nil); err != nil {
  618. panic("storing index ID: " + err.Error())
  619. }
  620. }
  621. func (db *Instance) indexIDKey(device, folder []byte) []byte {
  622. k := make([]byte, keyPrefixLen+keyDeviceLen+keyFolderLen)
  623. k[0] = KeyTypeIndexID
  624. binary.BigEndian.PutUint32(k[keyPrefixLen:], db.deviceIdx.ID(device))
  625. binary.BigEndian.PutUint32(k[keyPrefixLen+keyDeviceLen:], db.folderIdx.ID(folder))
  626. return k
  627. }
  628. func (db *Instance) mtimesKey(folder []byte) []byte {
  629. prefix := make([]byte, 5) // key type + 4 bytes folder idx number
  630. prefix[0] = KeyTypeVirtualMtime
  631. binary.BigEndian.PutUint32(prefix[1:], db.folderIdx.ID(folder))
  632. return prefix
  633. }
  634. // DropDeltaIndexIDs removes all index IDs from the database. This will
  635. // cause a full index transmission on the next connection.
  636. func (db *Instance) DropDeltaIndexIDs() {
  637. db.dropPrefix([]byte{KeyTypeIndexID})
  638. }
  639. func (db *Instance) dropMtimes(folder []byte) {
  640. db.dropPrefix(db.mtimesKey(folder))
  641. }
  642. func (db *Instance) dropPrefix(prefix []byte) {
  643. t := db.newReadWriteTransaction()
  644. defer t.close()
  645. dbi := t.NewIterator(util.BytesPrefix(prefix), nil)
  646. defer dbi.Release()
  647. for dbi.Next() {
  648. t.Delete(dbi.Key())
  649. }
  650. }
  651. func unmarshalTrunc(bs []byte, truncate bool) (FileIntf, error) {
  652. if truncate {
  653. var tf FileInfoTruncated
  654. err := tf.Unmarshal(bs)
  655. return tf, err
  656. }
  657. var tf protocol.FileInfo
  658. err := tf.Unmarshal(bs)
  659. return tf, err
  660. }
  661. // A "better" version of leveldb's errors.IsCorrupted.
  662. func leveldbIsCorrupted(err error) bool {
  663. switch {
  664. case err == nil:
  665. return false
  666. case errors.IsCorrupted(err):
  667. return true
  668. case strings.Contains(err.Error(), "corrupted"):
  669. return true
  670. }
  671. return false
  672. }
  673. // A smallIndex is an in memory bidirectional []byte to uint32 map. It gives
  674. // fast lookups in both directions and persists to the database. Don't use for
  675. // storing more items than fit comfortably in RAM.
  676. type smallIndex struct {
  677. db *Instance
  678. prefix []byte
  679. id2val map[uint32]string
  680. val2id map[string]uint32
  681. nextID uint32
  682. mut sync.Mutex
  683. }
  684. func newSmallIndex(db *Instance, prefix []byte) *smallIndex {
  685. idx := &smallIndex{
  686. db: db,
  687. prefix: prefix,
  688. id2val: make(map[uint32]string),
  689. val2id: make(map[string]uint32),
  690. mut: sync.NewMutex(),
  691. }
  692. idx.load()
  693. return idx
  694. }
  695. // load iterates over the prefix space in the database and populates the in
  696. // memory maps.
  697. func (i *smallIndex) load() {
  698. tr := i.db.newReadOnlyTransaction()
  699. it := tr.NewIterator(util.BytesPrefix(i.prefix), nil)
  700. for it.Next() {
  701. val := string(it.Value())
  702. id := binary.BigEndian.Uint32(it.Key()[len(i.prefix):])
  703. i.id2val[id] = val
  704. i.val2id[val] = id
  705. if id >= i.nextID {
  706. i.nextID = id + 1
  707. }
  708. }
  709. it.Release()
  710. tr.close()
  711. }
  712. // ID returns the index number for the given byte slice, allocating a new one
  713. // and persisting this to the database if necessary.
  714. func (i *smallIndex) ID(val []byte) uint32 {
  715. i.mut.Lock()
  716. // intentionally avoiding defer here as we want this call to be as fast as
  717. // possible in the general case (folder ID already exists). The map lookup
  718. // with the conversion of []byte to string is compiler optimized to not
  719. // copy the []byte, which is why we don't assign it to a temp variable
  720. // here.
  721. if id, ok := i.val2id[string(val)]; ok {
  722. i.mut.Unlock()
  723. return id
  724. }
  725. id := i.nextID
  726. i.nextID++
  727. valStr := string(val)
  728. i.val2id[valStr] = id
  729. i.id2val[id] = valStr
  730. key := make([]byte, len(i.prefix)+8) // prefix plus uint32 id
  731. copy(key, i.prefix)
  732. binary.BigEndian.PutUint32(key[len(i.prefix):], id)
  733. i.db.Put(key, val, nil)
  734. i.mut.Unlock()
  735. return id
  736. }
  737. // Val returns the value for the given index number, or (nil, false) if there
  738. // is no such index number.
  739. func (i *smallIndex) Val(id uint32) ([]byte, bool) {
  740. i.mut.Lock()
  741. val, ok := i.id2val[id]
  742. i.mut.Unlock()
  743. if !ok {
  744. return nil, false
  745. }
  746. return []byte(val), true
  747. }