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package kcp
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import (
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"sync"
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"github.com/v2ray/v2ray-core/common/alloc"
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)
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type SendingWindow struct {
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start uint32
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cap uint32
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len uint32
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last uint32
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data []*DataSegment
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prev []uint32
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next []uint32
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writer SegmentWriter
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onPacketLoss func(bool)
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}
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func NewSendingWindow(size uint32, writer SegmentWriter, onPacketLoss func(bool)) *SendingWindow {
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window := &SendingWindow{
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start: 0,
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cap: size,
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len: 0,
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last: 0,
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data: make([]*DataSegment, size),
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prev: make([]uint32, size),
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next: make([]uint32, size),
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writer: writer,
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onPacketLoss: onPacketLoss,
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}
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return window
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}
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func (this *SendingWindow) Len() int {
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return int(this.len)
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}
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func (this *SendingWindow) Push(seg *DataSegment) {
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pos := (this.start + this.len) % this.cap
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this.data[pos] = seg
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if this.len > 0 {
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this.next[this.last] = pos
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this.prev[pos] = this.last
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}
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this.last = pos
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this.len++
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}
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func (this *SendingWindow) First() *DataSegment {
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return this.data[this.start]
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}
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func (this *SendingWindow) Clear(una uint32) {
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for this.Len() > 0 && this.data[this.start].Number < una {
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this.Remove(0)
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}
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}
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func (this *SendingWindow) Remove(idx uint32) {
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if this.len == 0 {
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return
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}
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pos := (this.start + idx) % this.cap
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seg := this.data[pos]
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if seg == nil {
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return
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}
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seg.Release()
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this.data[pos] = nil
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if pos == this.start && pos == this.last {
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this.len = 0
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this.start = 0
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this.last = 0
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} else if pos == this.start {
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delta := this.next[pos] - this.start
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if this.next[pos] < this.start {
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delta = this.next[pos] + this.cap - this.start
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}
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this.start = this.next[pos]
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this.len -= delta
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} else if pos == this.last {
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this.last = this.prev[pos]
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} else {
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this.next[this.prev[pos]] = this.next[pos]
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this.prev[this.next[pos]] = this.prev[pos]
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}
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}
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func (this *SendingWindow) HandleFastAck(number uint32) {
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if this.len == 0 {
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return
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}
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for i := this.start; ; i = this.next[i] {
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seg := this.data[i]
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if _itimediff(number, seg.Number) < 0 {
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break
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}
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if number != seg.Number {
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seg.ackSkipped++
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}
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if i == this.last {
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break
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}
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}
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}
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func (this *SendingWindow) Flush(current uint32, resend uint32, rto uint32) {
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if this.Len() == 0 {
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return
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}
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lost := false
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for i := this.start; ; i = this.next[i] {
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segment := this.data[i]
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needsend := false
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if segment.transmit == 0 {
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needsend = true
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segment.transmit++
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segment.timeout = current + rto
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} else if _itimediff(current, segment.timeout) >= 0 {
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needsend = true
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segment.transmit++
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segment.timeout = current + rto
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lost = true
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} else if segment.ackSkipped >= resend {
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needsend = true
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segment.transmit++
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segment.ackSkipped = 0
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segment.timeout = current + rto
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lost = true
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}
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if needsend {
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this.writer.Write(segment)
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}
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if i == this.last {
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break
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}
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}
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this.onPacketLoss(lost)
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}
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type SendingQueue struct {
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start uint32
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cap uint32
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len uint32
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list []*DataSegment
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}
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func NewSendingQueue(size uint32) *SendingQueue {
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return &SendingQueue{
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start: 0,
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cap: size,
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list: make([]*DataSegment, size),
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len: 0,
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}
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}
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func (this *SendingQueue) IsFull() bool {
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return this.len == this.cap
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}
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func (this *SendingQueue) IsEmpty() bool {
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return this.len == 0
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}
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func (this *SendingQueue) Pop() *DataSegment {
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if this.IsEmpty() {
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return nil
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}
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seg := this.list[this.start]
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this.list[this.start] = nil
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this.len--
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this.start++
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if this.start == this.cap {
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this.start = 0
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}
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return seg
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}
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func (this *SendingQueue) Push(seg *DataSegment) {
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if this.IsFull() {
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return
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}
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this.list[(this.start+this.len)%this.cap] = seg
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this.len++
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}
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func (this *SendingQueue) Clear() {
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for i := uint32(0); i < this.len; i++ {
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this.list[(i+this.start)%this.cap].Release()
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this.list[(i+this.start)%this.cap] = nil
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}
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this.start = 0
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this.len = 0
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}
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func (this *SendingQueue) Len() uint32 {
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return this.len
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}
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type SendingWorker struct {
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sync.Mutex
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kcp *KCP
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window *SendingWindow
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queue *SendingQueue
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windowSize uint32
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firstUnacknowledged uint32
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nextNumber uint32
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remoteNextNumber uint32
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controlWindow uint32
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fastResend uint32
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updated bool
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}
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func NewSendingWorker(kcp *KCP) *SendingWorker {
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worker := &SendingWorker{
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kcp: kcp,
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queue: NewSendingQueue(effectiveConfig.GetSendingQueueSize()),
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fastResend: 2,
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remoteNextNumber: 32,
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windowSize: effectiveConfig.GetSendingWindowSize(),
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controlWindow: effectiveConfig.GetSendingWindowSize(),
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}
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worker.window = NewSendingWindow(effectiveConfig.GetSendingWindowSize(), worker, worker.OnPacketLoss)
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return worker
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}
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func (this *SendingWorker) ProcessReceivingNext(nextNumber uint32) {
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this.Lock()
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defer this.Unlock()
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this.window.Clear(nextNumber)
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this.FindFirstUnacknowledged()
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}
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// @Private
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func (this *SendingWorker) FindFirstUnacknowledged() {
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prevUna := this.firstUnacknowledged
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if this.window.Len() > 0 {
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this.firstUnacknowledged = this.window.First().Number
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} else {
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this.firstUnacknowledged = this.nextNumber
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}
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if this.firstUnacknowledged != prevUna {
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this.updated = true
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}
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}
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func (this *SendingWorker) ProcessAck(number uint32) {
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if number-this.firstUnacknowledged > this.windowSize {
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return
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}
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this.Lock()
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defer this.Unlock()
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this.window.Remove(number - this.firstUnacknowledged)
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this.FindFirstUnacknowledged()
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}
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func (this *SendingWorker) ProcessAckSegment(seg *AckSegment) {
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if this.remoteNextNumber < seg.ReceivingWindow {
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this.remoteNextNumber = seg.ReceivingWindow
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}
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this.ProcessReceivingNext(seg.ReceivingNext)
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var maxack uint32
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for i := 0; i < int(seg.Count); i++ {
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timestamp := seg.TimestampList[i]
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number := seg.NumberList[i]
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if this.kcp.current-timestamp > 10000 {
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this.kcp.update_ack(int32(this.kcp.current - timestamp))
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}
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this.ProcessAck(number)
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if maxack < number {
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maxack = number
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}
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}
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this.Lock()
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this.window.HandleFastAck(maxack)
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this.Unlock()
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}
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func (this *SendingWorker) Push(b []byte) int {
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nBytes := 0
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for len(b) > 0 && !this.queue.IsFull() {
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var size int
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if len(b) > int(this.kcp.mss) {
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size = int(this.kcp.mss)
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} else {
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size = len(b)
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}
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seg := &DataSegment{
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Data: alloc.NewSmallBuffer().Clear().Append(b[:size]),
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}
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this.Lock()
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this.queue.Push(seg)
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this.Unlock()
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b = b[size:]
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nBytes += size
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}
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return nBytes
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}
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func (this *SendingWorker) Write(seg ISegment) {
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dataSeg := seg.(*DataSegment)
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dataSeg.Conv = this.kcp.conv
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dataSeg.Timestamp = this.kcp.current
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dataSeg.SendingNext = this.firstUnacknowledged
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dataSeg.Opt = 0
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if this.kcp.state == StateReadyToClose {
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dataSeg.Opt = SegmentOptionClose
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}
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this.kcp.output.Write(dataSeg)
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this.updated = false
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}
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func (this *SendingWorker) PingNecessary() bool {
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return this.updated
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}
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func (this *SendingWorker) OnPacketLoss(lost bool) {
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if !effectiveConfig.Congestion {
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return
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}
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if lost {
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this.controlWindow = 3 * this.controlWindow / 4
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} else {
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this.controlWindow += this.controlWindow / 4
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}
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if this.controlWindow < 4 {
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this.controlWindow = 4
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}
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if this.controlWindow > 2*this.windowSize {
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this.controlWindow = 2 * this.windowSize
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}
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}
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func (this *SendingWorker) Flush() {
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this.Lock()
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defer this.Unlock()
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cwnd := this.firstUnacknowledged + this.windowSize
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if cwnd > this.remoteNextNumber {
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cwnd = this.remoteNextNumber
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}
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if effectiveConfig.Congestion && cwnd > this.firstUnacknowledged+this.controlWindow {
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cwnd = this.firstUnacknowledged + this.controlWindow
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}
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for !this.queue.IsEmpty() && _itimediff(this.nextNumber, cwnd) < 0 {
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seg := this.queue.Pop()
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seg.Number = this.nextNumber
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seg.timeout = this.kcp.current
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seg.ackSkipped = 0
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seg.transmit = 0
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this.window.Push(seg)
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this.nextNumber++
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}
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this.window.Flush(this.kcp.current, this.kcp.fastresend, this.kcp.rx_rto)
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}
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func (this *SendingWorker) CloseWrite() {
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this.Lock()
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defer this.Unlock()
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this.window.Clear(0xFFFFFFFF)
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this.queue.Clear()
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}
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