receiving.go 4.8 KB

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  1. package kcp
  2. import (
  3. "sync"
  4. "v2ray.com/core/common/alloc"
  5. )
  6. type ReceivingWindow struct {
  7. start uint32
  8. size uint32
  9. list []*DataSegment
  10. }
  11. func NewReceivingWindow(size uint32) *ReceivingWindow {
  12. return &ReceivingWindow{
  13. start: 0,
  14. size: size,
  15. list: make([]*DataSegment, size),
  16. }
  17. }
  18. func (v *ReceivingWindow) Size() uint32 {
  19. return v.size
  20. }
  21. func (v *ReceivingWindow) Position(idx uint32) uint32 {
  22. return (idx + v.start) % v.size
  23. }
  24. func (v *ReceivingWindow) Set(idx uint32, value *DataSegment) bool {
  25. pos := v.Position(idx)
  26. if v.list[pos] != nil {
  27. return false
  28. }
  29. v.list[pos] = value
  30. return true
  31. }
  32. func (v *ReceivingWindow) Remove(idx uint32) *DataSegment {
  33. pos := v.Position(idx)
  34. e := v.list[pos]
  35. v.list[pos] = nil
  36. return e
  37. }
  38. func (v *ReceivingWindow) RemoveFirst() *DataSegment {
  39. return v.Remove(0)
  40. }
  41. func (v *ReceivingWindow) Advance() {
  42. v.start++
  43. if v.start == v.size {
  44. v.start = 0
  45. }
  46. }
  47. type AckList struct {
  48. writer SegmentWriter
  49. timestamps []uint32
  50. numbers []uint32
  51. nextFlush []uint32
  52. flushCandidates []uint32
  53. }
  54. func NewAckList(writer SegmentWriter) *AckList {
  55. return &AckList{
  56. writer: writer,
  57. timestamps: make([]uint32, 0, 32),
  58. numbers: make([]uint32, 0, 32),
  59. nextFlush: make([]uint32, 0, 32),
  60. flushCandidates: make([]uint32, 0, 128),
  61. }
  62. }
  63. func (v *AckList) Add(number uint32, timestamp uint32) {
  64. v.timestamps = append(v.timestamps, timestamp)
  65. v.numbers = append(v.numbers, number)
  66. v.nextFlush = append(v.nextFlush, 0)
  67. }
  68. func (v *AckList) Clear(una uint32) {
  69. count := 0
  70. for i := 0; i < len(v.numbers); i++ {
  71. if v.numbers[i] < una {
  72. continue
  73. }
  74. if i != count {
  75. v.numbers[count] = v.numbers[i]
  76. v.timestamps[count] = v.timestamps[i]
  77. v.nextFlush[count] = v.nextFlush[i]
  78. }
  79. count++
  80. }
  81. if count < len(v.numbers) {
  82. v.numbers = v.numbers[:count]
  83. v.timestamps = v.timestamps[:count]
  84. v.nextFlush = v.nextFlush[:count]
  85. }
  86. }
  87. func (v *AckList) Flush(current uint32, rto uint32) {
  88. v.flushCandidates = v.flushCandidates[:0]
  89. seg := NewAckSegment()
  90. for i := 0; i < len(v.numbers); i++ {
  91. if v.nextFlush[i] > current {
  92. if len(v.flushCandidates) < cap(v.flushCandidates) {
  93. v.flushCandidates = append(v.flushCandidates, v.numbers[i])
  94. }
  95. continue
  96. }
  97. seg.PutNumber(v.numbers[i])
  98. seg.PutTimestamp(v.timestamps[i])
  99. timeout := rto / 2
  100. if timeout < 20 {
  101. timeout = 20
  102. }
  103. v.nextFlush[i] = current + timeout
  104. if seg.IsFull() {
  105. v.writer.Write(seg)
  106. seg.Release()
  107. seg = NewAckSegment()
  108. }
  109. }
  110. if seg.Count > 0 {
  111. for _, number := range v.flushCandidates {
  112. if seg.IsFull() {
  113. break
  114. }
  115. seg.PutNumber(number)
  116. }
  117. v.writer.Write(seg)
  118. seg.Release()
  119. }
  120. }
  121. type ReceivingWorker struct {
  122. sync.RWMutex
  123. conn *Connection
  124. leftOver *alloc.Buffer
  125. window *ReceivingWindow
  126. acklist *AckList
  127. nextNumber uint32
  128. windowSize uint32
  129. }
  130. func NewReceivingWorker(kcp *Connection) *ReceivingWorker {
  131. worker := &ReceivingWorker{
  132. conn: kcp,
  133. window: NewReceivingWindow(kcp.Config.GetReceivingBufferSize()),
  134. windowSize: kcp.Config.GetReceivingInFlightSize(),
  135. }
  136. worker.acklist = NewAckList(worker)
  137. return worker
  138. }
  139. func (v *ReceivingWorker) Release() {
  140. v.leftOver.Release()
  141. }
  142. func (v *ReceivingWorker) ProcessSendingNext(number uint32) {
  143. v.Lock()
  144. defer v.Unlock()
  145. v.acklist.Clear(number)
  146. }
  147. func (v *ReceivingWorker) ProcessSegment(seg *DataSegment) {
  148. v.Lock()
  149. defer v.Unlock()
  150. number := seg.Number
  151. idx := number - v.nextNumber
  152. if idx >= v.windowSize {
  153. return
  154. }
  155. v.acklist.Clear(seg.SendingNext)
  156. v.acklist.Add(number, seg.Timestamp)
  157. if !v.window.Set(idx, seg) {
  158. seg.Release()
  159. }
  160. }
  161. func (v *ReceivingWorker) Read(b []byte) int {
  162. v.Lock()
  163. defer v.Unlock()
  164. total := 0
  165. if v.leftOver != nil {
  166. nBytes := copy(b, v.leftOver.Value)
  167. if nBytes < v.leftOver.Len() {
  168. v.leftOver.SliceFrom(nBytes)
  169. return nBytes
  170. }
  171. v.leftOver.Release()
  172. v.leftOver = nil
  173. total += nBytes
  174. }
  175. for total < len(b) {
  176. seg := v.window.RemoveFirst()
  177. if seg == nil {
  178. break
  179. }
  180. v.window.Advance()
  181. v.nextNumber++
  182. nBytes := copy(b[total:], seg.Data.Value)
  183. total += nBytes
  184. if nBytes < seg.Data.Len() {
  185. seg.Data.SliceFrom(nBytes)
  186. v.leftOver = seg.Data
  187. seg.Data = nil
  188. seg.Release()
  189. break
  190. }
  191. seg.Release()
  192. }
  193. return total
  194. }
  195. func (v *ReceivingWorker) Flush(current uint32) {
  196. v.Lock()
  197. defer v.Unlock()
  198. v.acklist.Flush(current, v.conn.roundTrip.Timeout())
  199. }
  200. func (v *ReceivingWorker) Write(seg Segment) {
  201. ackSeg := seg.(*AckSegment)
  202. ackSeg.Conv = v.conn.conv
  203. ackSeg.ReceivingNext = v.nextNumber
  204. ackSeg.ReceivingWindow = v.nextNumber + v.windowSize
  205. if v.conn.state == StateReadyToClose {
  206. ackSeg.Option = SegmentOptionClose
  207. }
  208. v.conn.output.Write(ackSeg)
  209. }
  210. func (v *ReceivingWorker) CloseRead() {
  211. }
  212. func (v *ReceivingWorker) UpdateNecessary() bool {
  213. return len(v.acklist.numbers) > 0
  214. }