table.go 6.6 KB

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  1. // Copyright 2018 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package rawdb
  17. import (
  18. "github.com/ethereum/go-ethereum/ethdb"
  19. )
  20. // table is a wrapper around a database that prefixes each key access with a pre-
  21. // configured string.
  22. type table struct {
  23. db ethdb.Database
  24. prefix string
  25. }
  26. // NewTable returns a database object that prefixes all keys with a given string.
  27. func NewTable(db ethdb.Database, prefix string) ethdb.Database {
  28. return &table{
  29. db: db,
  30. prefix: prefix,
  31. }
  32. }
  33. // Close is a noop to implement the Database interface.
  34. func (t *table) Close() error {
  35. return nil
  36. }
  37. // Has retrieves if a prefixed version of a key is present in the database.
  38. func (t *table) Has(key []byte) (bool, error) {
  39. return t.db.Has(append([]byte(t.prefix), key...))
  40. }
  41. // Get retrieves the given prefixed key if it's present in the database.
  42. func (t *table) Get(key []byte) ([]byte, error) {
  43. return t.db.Get(append([]byte(t.prefix), key...))
  44. }
  45. // HasAncient is a noop passthrough that just forwards the request to the underlying
  46. // database.
  47. func (t *table) HasAncient(kind string, number uint64) (bool, error) {
  48. return t.db.HasAncient(kind, number)
  49. }
  50. // Ancient is a noop passthrough that just forwards the request to the underlying
  51. // database.
  52. func (t *table) Ancient(kind string, number uint64) ([]byte, error) {
  53. return t.db.Ancient(kind, number)
  54. }
  55. // Ancients is a noop passthrough that just forwards the request to the underlying
  56. // database.
  57. func (t *table) Ancients() (uint64, error) {
  58. return t.db.Ancients()
  59. }
  60. // AncientSize is a noop passthrough that just forwards the request to the underlying
  61. // database.
  62. func (t *table) AncientSize(kind string) (uint64, error) {
  63. return t.db.AncientSize(kind)
  64. }
  65. // AppendAncient is a noop passthrough that just forwards the request to the underlying
  66. // database.
  67. func (t *table) AppendAncient(number uint64, hash, header, body, receipts, td []byte) error {
  68. return t.db.AppendAncient(number, hash, header, body, receipts, td)
  69. }
  70. // TruncateAncients is a noop passthrough that just forwards the request to the underlying
  71. // database.
  72. func (t *table) TruncateAncients(items uint64) error {
  73. return t.db.TruncateAncients(items)
  74. }
  75. // Sync is a noop passthrough that just forwards the request to the underlying
  76. // database.
  77. func (t *table) Sync() error {
  78. return t.db.Sync()
  79. }
  80. // Put inserts the given value into the database at a prefixed version of the
  81. // provided key.
  82. func (t *table) Put(key []byte, value []byte) error {
  83. return t.db.Put(append([]byte(t.prefix), key...), value)
  84. }
  85. // Delete removes the given prefixed key from the database.
  86. func (t *table) Delete(key []byte) error {
  87. return t.db.Delete(append([]byte(t.prefix), key...))
  88. }
  89. // NewIterator creates a binary-alphabetical iterator over the entire keyspace
  90. // contained within the database.
  91. func (t *table) NewIterator() ethdb.Iterator {
  92. return t.NewIteratorWithPrefix(nil)
  93. }
  94. // NewIteratorWithStart creates a binary-alphabetical iterator over a subset of
  95. // database content starting at a particular initial key (or after, if it does
  96. // not exist).
  97. func (t *table) NewIteratorWithStart(start []byte) ethdb.Iterator {
  98. return t.db.NewIteratorWithStart(start)
  99. }
  100. // NewIteratorWithPrefix creates a binary-alphabetical iterator over a subset
  101. // of database content with a particular key prefix.
  102. func (t *table) NewIteratorWithPrefix(prefix []byte) ethdb.Iterator {
  103. return t.db.NewIteratorWithPrefix(append([]byte(t.prefix), prefix...))
  104. }
  105. // Stat returns a particular internal stat of the database.
  106. func (t *table) Stat(property string) (string, error) {
  107. return t.db.Stat(property)
  108. }
  109. // Compact flattens the underlying data store for the given key range. In essence,
  110. // deleted and overwritten versions are discarded, and the data is rearranged to
  111. // reduce the cost of operations needed to access them.
  112. //
  113. // A nil start is treated as a key before all keys in the data store; a nil limit
  114. // is treated as a key after all keys in the data store. If both is nil then it
  115. // will compact entire data store.
  116. func (t *table) Compact(start []byte, limit []byte) error {
  117. // If no start was specified, use the table prefix as the first value
  118. if start == nil {
  119. start = []byte(t.prefix)
  120. }
  121. // If no limit was specified, use the first element not matching the prefix
  122. // as the limit
  123. if limit == nil {
  124. limit = []byte(t.prefix)
  125. for i := len(limit) - 1; i >= 0; i-- {
  126. // Bump the current character, stopping if it doesn't overflow
  127. limit[i]++
  128. if limit[i] > 0 {
  129. break
  130. }
  131. // Character overflown, proceed to the next or nil if the last
  132. if i == 0 {
  133. limit = nil
  134. }
  135. }
  136. }
  137. // Range correctly calculated based on table prefix, delegate down
  138. return t.db.Compact(start, limit)
  139. }
  140. // NewBatch creates a write-only database that buffers changes to its host db
  141. // until a final write is called, each operation prefixing all keys with the
  142. // pre-configured string.
  143. func (t *table) NewBatch() ethdb.Batch {
  144. return &tableBatch{t.db.NewBatch(), t.prefix}
  145. }
  146. // tableBatch is a wrapper around a database batch that prefixes each key access
  147. // with a pre-configured string.
  148. type tableBatch struct {
  149. batch ethdb.Batch
  150. prefix string
  151. }
  152. // Put inserts the given value into the batch for later committing.
  153. func (b *tableBatch) Put(key, value []byte) error {
  154. return b.batch.Put(append([]byte(b.prefix), key...), value)
  155. }
  156. // Delete inserts the a key removal into the batch for later committing.
  157. func (b *tableBatch) Delete(key []byte) error {
  158. return b.batch.Delete(append([]byte(b.prefix), key...))
  159. }
  160. // ValueSize retrieves the amount of data queued up for writing.
  161. func (b *tableBatch) ValueSize() int {
  162. return b.batch.ValueSize()
  163. }
  164. // Write flushes any accumulated data to disk.
  165. func (b *tableBatch) Write() error {
  166. return b.batch.Write()
  167. }
  168. // Reset resets the batch for reuse.
  169. func (b *tableBatch) Reset() {
  170. b.batch.Reset()
  171. }
  172. // Replay replays the batch contents.
  173. func (b *tableBatch) Replay(w ethdb.KeyValueWriter) error {
  174. return b.batch.Replay(w)
  175. }