key_index.go 6.3 KB

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  1. package storage
  2. import (
  3. "bytes"
  4. "errors"
  5. "fmt"
  6. "log"
  7. "github.com/coreos/etcd/Godeps/_workspace/src/github.com/google/btree"
  8. )
  9. var (
  10. ErrReversionNotFound = errors.New("stroage: reversion not found")
  11. )
  12. // keyIndex stores the reversion of an key in the backend.
  13. // Each keyIndex has at least one key generation.
  14. // Each generation might have several key versions.
  15. // Tombstone on a key appends an tombstone version at the end
  16. // of the current generation and creates a new empty generation.
  17. // Each version of a key has an index pointing to the backend.
  18. //
  19. // For example: put(1.0);put(2.0);tombstone(3.0);put(4.0);tombstone(5.0) on key "foo"
  20. // generate a keyIndex:
  21. // key: "foo"
  22. // rev: 5
  23. // generations:
  24. // {empty}
  25. // {4.0, 5.0(t)}
  26. // {1.0, 2.0, 3.0(t)}
  27. //
  28. // Compact a keyIndex removes the versions with smaller or equal to
  29. // rev except the largest one. If the generations becomes empty
  30. // during compaction, it will be removed. if all the generations get
  31. // removed, the keyIndex Should be removed.
  32. // For example:
  33. // compact(2) on the previous example
  34. // generations:
  35. // {empty}
  36. // {4.0, 5.0(t)}
  37. // {2.0, 3.0(t)}
  38. //
  39. // compact(4)
  40. // generations:
  41. // {empty}
  42. // {4.0, 5.0(t)}
  43. //
  44. // compact(5):
  45. // generations:
  46. // {empty} -> key SHOULD be removed.
  47. //
  48. // compact(6):
  49. // generations:
  50. // {empty} -> key SHOULD be removed.
  51. type keyIndex struct {
  52. key []byte
  53. modified reversion // the main rev of the last modification
  54. generations []generation
  55. }
  56. // put puts a reversion to the keyIndex.
  57. func (ki *keyIndex) put(main int64, sub int64) {
  58. rev := reversion{main: main, sub: sub}
  59. if !rev.GreaterThan(ki.modified) {
  60. log.Panicf("store.keyindex: put with unexpected smaller reversion [%v / %v]", rev, ki.modified)
  61. }
  62. if len(ki.generations) == 0 {
  63. ki.generations = append(ki.generations, generation{})
  64. }
  65. g := &ki.generations[len(ki.generations)-1]
  66. if len(g.revs) == 0 {
  67. g.created = rev
  68. }
  69. g.revs = append(g.revs, rev)
  70. g.ver++
  71. ki.modified = rev
  72. }
  73. // tombstone puts a reversion, pointing to a tombstone, to the keyIndex.
  74. // It also creates a new empty generation in the keyIndex.
  75. func (ki *keyIndex) tombstone(main int64, sub int64) {
  76. if ki.isEmpty() {
  77. log.Panicf("store.keyindex: unexpected tombstone on empty keyIndex %s", string(ki.key))
  78. }
  79. ki.put(main, sub)
  80. ki.generations = append(ki.generations, generation{})
  81. }
  82. // get gets the modified, created reversion and version of the key that satisfies the given atRev.
  83. // Rev must be higher than or equal to the given atRev.
  84. func (ki *keyIndex) get(atRev int64) (modified, created reversion, ver int64, err error) {
  85. if ki.isEmpty() {
  86. log.Panicf("store.keyindex: unexpected get on empty keyIndex %s", string(ki.key))
  87. }
  88. g := ki.findGeneration(atRev)
  89. if g.isEmpty() {
  90. return reversion{}, reversion{}, 0, ErrReversionNotFound
  91. }
  92. f := func(rev reversion) bool {
  93. if rev.main <= atRev {
  94. return false
  95. }
  96. return true
  97. }
  98. n := g.walk(f)
  99. if n != -1 {
  100. return g.revs[n], g.created, g.ver - int64(len(g.revs)-n-1), nil
  101. }
  102. return reversion{}, reversion{}, 0, ErrReversionNotFound
  103. }
  104. // compact compacts a keyIndex by removing the versions with smaller or equal
  105. // reversion than the given atRev except the largest one (If the largest one is
  106. // a tombstone, it will not be kept).
  107. // If a generation becomes empty during compaction, it will be removed.
  108. func (ki *keyIndex) compact(atRev int64, available map[reversion]struct{}) {
  109. if ki.isEmpty() {
  110. log.Panic("store.keyindex: unexpected compact on empty keyIndex %s", string(ki.key))
  111. }
  112. // walk until reaching the first reversion that has an reversion smaller or equal to
  113. // the atReversion.
  114. // add it to the available map
  115. f := func(rev reversion) bool {
  116. if rev.main <= atRev {
  117. available[rev] = struct{}{}
  118. return false
  119. }
  120. return true
  121. }
  122. g := ki.findGeneration(atRev)
  123. if g == nil {
  124. return
  125. }
  126. i := 0
  127. for i <= len(ki.generations)-1 {
  128. wg := &ki.generations[i]
  129. if wg == g {
  130. break
  131. }
  132. i++
  133. }
  134. if !g.isEmpty() {
  135. n := g.walk(f)
  136. // remove the previous contents.
  137. if n != -1 {
  138. g.revs = g.revs[n:]
  139. }
  140. // remove any tombstone
  141. if len(g.revs) == 1 && i != len(ki.generations)-1 {
  142. delete(available, g.revs[0])
  143. i++
  144. }
  145. }
  146. // remove the previous generations.
  147. ki.generations = ki.generations[i:]
  148. return
  149. }
  150. func (ki *keyIndex) isEmpty() bool {
  151. return len(ki.generations) == 1 && ki.generations[0].isEmpty()
  152. }
  153. // findGeneartion finds out the generation of the keyIndex that the
  154. // given index belongs to.
  155. func (ki *keyIndex) findGeneration(rev int64) *generation {
  156. cg := len(ki.generations) - 1
  157. for cg >= 0 {
  158. if len(ki.generations[cg].revs) == 0 {
  159. cg--
  160. continue
  161. }
  162. g := ki.generations[cg]
  163. if g.revs[0].main <= rev {
  164. return &ki.generations[cg]
  165. }
  166. cg--
  167. }
  168. return nil
  169. }
  170. func (a *keyIndex) Less(b btree.Item) bool {
  171. return bytes.Compare(a.key, b.(*keyIndex).key) == -1
  172. }
  173. func (a *keyIndex) equal(b *keyIndex) bool {
  174. if !bytes.Equal(a.key, b.key) {
  175. return false
  176. }
  177. if a.modified != b.modified {
  178. return false
  179. }
  180. if len(a.generations) != len(b.generations) {
  181. return false
  182. }
  183. for i := range a.generations {
  184. ag, bg := a.generations[i], b.generations[i]
  185. if !ag.equal(bg) {
  186. return false
  187. }
  188. }
  189. return true
  190. }
  191. func (ki *keyIndex) String() string {
  192. var s string
  193. for _, g := range ki.generations {
  194. s += g.String()
  195. }
  196. return s
  197. }
  198. type generation struct {
  199. ver int64
  200. created reversion // when the generation is created (put in first reversion).
  201. revs []reversion
  202. }
  203. func (g *generation) isEmpty() bool { return g == nil || len(g.revs) == 0 }
  204. // walk walks through the reversions in the generation in ascending order.
  205. // It passes the revision to the given function.
  206. // walk returns until: 1. it finishs walking all pairs 2. the function returns false.
  207. // walk returns the position at where it stopped. If it stopped after
  208. // finishing walking, -1 will be returned.
  209. func (g *generation) walk(f func(rev reversion) bool) int {
  210. l := len(g.revs)
  211. for i := range g.revs {
  212. ok := f(g.revs[l-i-1])
  213. if !ok {
  214. return l - i - 1
  215. }
  216. }
  217. return -1
  218. }
  219. func (g *generation) String() string {
  220. return fmt.Sprintf("g: created[%d] ver[%d], revs %#v\n", g.created, g.ver, g.revs)
  221. }
  222. func (a generation) equal(b generation) bool {
  223. if a.ver != b.ver {
  224. return false
  225. }
  226. if len(a.revs) != len(b.revs) {
  227. return false
  228. }
  229. for i := range a.revs {
  230. ar, br := a.revs[i], b.revs[i]
  231. if ar != br {
  232. return false
  233. }
  234. }
  235. return true
  236. }