file.go 4.2 KB

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  1. package hercules
  2. import "fmt"
  3. type File struct {
  4. tree *RBTree
  5. status map[int]int64
  6. }
  7. const TreeEnd int = -1
  8. // An ugly side of Go.
  9. // template <typename T> please!
  10. func min(a int, b int) int {
  11. if a < b {
  12. return a
  13. }
  14. return b
  15. }
  16. func min64(a int64, b int64) int64 {
  17. if a < b {
  18. return a
  19. }
  20. return b
  21. }
  22. func max(a int, b int) int {
  23. if a < b {
  24. return b
  25. }
  26. return a
  27. }
  28. func max64(a int64, b int64) int64 {
  29. if a < b {
  30. return b
  31. }
  32. return a
  33. }
  34. func abs64(v int64) int64 {
  35. if v <= 0 {
  36. return -v
  37. }
  38. return v
  39. }
  40. func NewFile(time int, length int, status map[int]int64) *File {
  41. file := new(File)
  42. file.status = status
  43. file.tree = new(RBTree)
  44. if length > 0 {
  45. status[time] += int64(length)
  46. file.tree.Insert(Item{key: 0, value: time})
  47. }
  48. file.tree.Insert(Item{key: length, value: TreeEnd})
  49. return file
  50. }
  51. func (file *File) Len() int {
  52. return file.tree.Max().Item().key
  53. }
  54. func (file *File) Update(time int, pos int, ins_length int, del_length int) {
  55. if time < 0 {
  56. panic("time may not be negative")
  57. }
  58. if pos < 0 {
  59. panic("attempt to insert/delete at a negative position")
  60. }
  61. if ins_length < 0 || del_length < 0 {
  62. panic("ins_length and del_length must be nonnegative")
  63. }
  64. if ins_length|del_length == 0 {
  65. return
  66. }
  67. tree := file.tree
  68. if pos > tree.Max().Item().key {
  69. panic(fmt.Sprintf("attempt to insert after the end of the file: %d < %d",
  70. tree.Max().Item().key, pos))
  71. }
  72. if tree.Len() < 2 && tree.Min().Item().key != 0 {
  73. panic("invalid tree state")
  74. }
  75. status := file.status
  76. iter := tree.FindLE(pos)
  77. origin := *iter.Item()
  78. status[time] += int64(ins_length)
  79. if del_length == 0 {
  80. // simple case with insertions only
  81. if origin.key < pos || (origin.value == time && pos == 0) {
  82. iter = iter.Next()
  83. }
  84. for ; !iter.Limit(); iter = iter.Next() {
  85. iter.Item().key += ins_length
  86. }
  87. if origin.value != time {
  88. tree.Insert(Item{key: pos, value: time})
  89. if origin.key < pos {
  90. tree.Insert(Item{key: pos + ins_length, value: origin.value})
  91. }
  92. }
  93. return
  94. }
  95. // delete nodes
  96. for true {
  97. node := iter.Item()
  98. next_iter := iter.Next()
  99. if next_iter.Limit() {
  100. if pos+del_length > node.key {
  101. panic("attempt to delete after the end of the file")
  102. }
  103. break
  104. }
  105. delta := min(next_iter.Item().key, pos+del_length) - max(node.key, pos)
  106. if delta <= 0 {
  107. break
  108. }
  109. status[node.value] -= int64(delta)
  110. if node.key >= pos {
  111. origin = *node
  112. tree.DeleteWithIterator(iter)
  113. }
  114. iter = next_iter
  115. }
  116. // prepare for the keys update
  117. var previous *Item
  118. if ins_length > 0 && (origin.value != time || origin.key == pos) {
  119. // insert our new interval
  120. if iter.Item().value == time {
  121. prev := iter.Prev()
  122. if prev.Item().value != time {
  123. iter.Item().key = pos
  124. } else {
  125. tree.DeleteWithIterator(iter)
  126. iter = prev
  127. }
  128. origin.value = time // cancels the insertion after applying the delta
  129. } else {
  130. _, iter = tree.Insert(Item{key: pos, value: time})
  131. }
  132. } else {
  133. // rollback 1 position back, see "for true" deletion cycle ^
  134. iter = iter.Prev()
  135. previous = iter.Item()
  136. }
  137. // update the keys of all subsequent nodes
  138. delta := ins_length - del_length
  139. if delta != 0 {
  140. for iter = iter.Next(); !iter.Limit(); iter = iter.Next() {
  141. // we do not need to re-balance the tree
  142. iter.Item().key += delta
  143. }
  144. // have to adjust origin in case ins_length == 0
  145. if origin.key > pos {
  146. origin.key += delta
  147. }
  148. }
  149. if ins_length > 0 {
  150. if origin.value != time {
  151. tree.Insert(Item{pos + ins_length, origin.value})
  152. }
  153. } else if (pos > origin.key && previous.value != origin.value) || pos == origin.key {
  154. // continue the original interval
  155. tree.Insert(Item{pos, origin.value})
  156. }
  157. }
  158. func (file *File) Dump() string {
  159. buffer := ""
  160. for iter := file.tree.Min(); !iter.Limit(); iter = iter.Next() {
  161. node := iter.Item()
  162. buffer += fmt.Sprintf("%d %d\n", node.key, node.value)
  163. }
  164. return buffer
  165. }
  166. func (file *File) Validate() {
  167. if file.tree.Min().Item().key != 0 {
  168. panic("the tree must start with key 0")
  169. }
  170. if file.tree.Max().Item().value != -1 {
  171. panic(fmt.Sprintf("the last value in the tree must be %d", TreeEnd))
  172. }
  173. prev_key := -1
  174. for iter := file.tree.Min(); !iter.Limit(); iter = iter.Next() {
  175. node := iter.Item()
  176. if node.key == prev_key {
  177. panic(fmt.Sprintf("duplicate tree key: %d", node.key))
  178. }
  179. prev_key = node.key
  180. }
  181. }