mirror of https://github.com/ehang-io/nps
365 lines
7.7 KiB
Go
365 lines
7.7 KiB
Go
package mux
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import (
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"bytes"
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"errors"
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"io"
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"math"
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"net"
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"sync"
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"sync/atomic"
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"time"
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"github.com/astaxie/beego/logs"
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"github.com/cnlh/nps/lib/common"
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)
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type Mux struct {
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net.Listener
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conn net.Conn
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connMap *connMap
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newConnCh chan *conn
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id int32
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closeChan chan struct{}
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IsClose bool
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pingOk int
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latency float64
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bw *bandwidth
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pingCh chan []byte
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pingTimer *time.Timer
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connType string
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writeQueue PriorityQueue
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bufCh chan *bytes.Buffer
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sync.Mutex
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}
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func NewMux(c net.Conn, connType string) *Mux {
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m := &Mux{
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conn: c,
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connMap: NewConnMap(),
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id: 0,
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closeChan: make(chan struct{}, 3),
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newConnCh: make(chan *conn),
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bw: new(bandwidth),
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IsClose: false,
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connType: connType,
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bufCh: make(chan *bytes.Buffer),
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pingCh: make(chan []byte),
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pingTimer: time.NewTimer(15 * time.Second),
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}
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m.writeQueue.New()
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//read session by flag
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m.readSession()
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//ping
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m.ping()
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m.pingReturn()
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m.writeSession()
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return m
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}
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func (s *Mux) NewConn() (*conn, error) {
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if s.IsClose {
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return nil, errors.New("the mux has closed")
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}
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conn := NewConn(s.getId(), s)
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//it must be set before send
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s.connMap.Set(conn.connId, conn)
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s.sendInfo(common.MUX_NEW_CONN, conn.connId, nil)
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//set a timer timeout 30 second
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timer := time.NewTimer(time.Minute * 2)
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defer timer.Stop()
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select {
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case <-conn.connStatusOkCh:
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return conn, nil
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case <-conn.connStatusFailCh:
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case <-timer.C:
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}
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return nil, errors.New("create connection fail,the server refused the connection")
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}
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func (s *Mux) Accept() (net.Conn, error) {
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if s.IsClose {
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return nil, errors.New("accpet error,the mux has closed")
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}
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conn := <-s.newConnCh
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if conn == nil {
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return nil, errors.New("accpet error,the conn has closed")
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}
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return conn, nil
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}
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func (s *Mux) Addr() net.Addr {
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return s.conn.LocalAddr()
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}
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func (s *Mux) sendInfo(flag uint8, id int32, data ...interface{}) {
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if s.IsClose {
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return
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}
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var err error
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pack := common.MuxPack.Get()
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err = pack.NewPac(flag, id, data...)
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if err != nil {
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common.MuxPack.Put(pack)
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return
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}
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s.writeQueue.Push(pack)
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return
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}
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func (s *Mux) writeSession() {
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go s.packBuf()
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go s.writeBuf()
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}
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func (s *Mux) packBuf() {
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for {
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if s.IsClose {
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break
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}
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pack := s.writeQueue.Pop()
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buffer := common.BuffPool.Get()
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err := pack.Pack(buffer)
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common.MuxPack.Put(pack)
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if err != nil {
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logs.Warn("pack err", err)
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common.BuffPool.Put(buffer)
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break
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}
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//logs.Warn(buffer.String())
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select {
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case s.bufCh <- buffer:
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case <-s.closeChan:
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break
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}
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}
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}
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func (s *Mux) writeBuf() {
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for {
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if s.IsClose {
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break
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}
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select {
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case buffer := <-s.bufCh:
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l := buffer.Len()
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n, err := buffer.WriteTo(s.conn)
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common.BuffPool.Put(buffer)
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if err != nil || int(n) != l {
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logs.Warn("close from write session fail ", err, n, l)
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s.Close()
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break
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}
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case <-s.closeChan:
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break
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}
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}
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}
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func (s *Mux) ping() {
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go func() {
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now, _ := time.Now().UTC().MarshalText()
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s.sendInfo(common.MUX_PING_FLAG, common.MUX_PING, now)
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// send the ping flag and get the latency first
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ticker := time.NewTicker(time.Second * 5)
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for {
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if s.IsClose {
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ticker.Stop()
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if !s.pingTimer.Stop() {
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<-s.pingTimer.C
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}
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break
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}
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select {
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case <-ticker.C:
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}
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//Avoid going beyond the scope
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if (math.MaxInt32 - s.id) < 10000 {
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s.id = 0
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}
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now, _ := time.Now().UTC().MarshalText()
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s.sendInfo(common.MUX_PING_FLAG, common.MUX_PING, now)
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if !s.pingTimer.Stop() {
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<-s.pingTimer.C
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}
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s.pingTimer.Reset(15 * time.Second)
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if s.pingOk > 10 && s.connType == "kcp" {
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s.Close()
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break
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}
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s.pingOk++
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}
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}()
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}
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func (s *Mux) pingReturn() {
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go func() {
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var now time.Time
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var data []byte
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for {
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if s.IsClose {
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break
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}
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select {
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case data = <-s.pingCh:
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case <-s.closeChan:
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break
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case <-s.pingTimer.C:
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logs.Error("mux: ping time out")
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s.Close()
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break
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}
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_ = now.UnmarshalText(data)
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latency := time.Now().UTC().Sub(now).Seconds() / 2
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if latency < 0.5 && latency > 0 {
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s.latency = latency
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}
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//logs.Warn("latency", s.latency)
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common.WindowBuff.Put(data)
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}
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}()
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}
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func (s *Mux) readSession() {
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go func() {
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pack := common.MuxPack.Get()
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var l uint16
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var err error
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for {
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if s.IsClose {
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break
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}
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pack = common.MuxPack.Get()
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s.bw.StartRead()
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if l, err = pack.UnPack(s.conn); err != nil {
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break
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}
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s.bw.SetCopySize(l)
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s.pingOk = 0
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switch pack.Flag {
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case common.MUX_NEW_CONN: //new connection
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connection := NewConn(pack.Id, s)
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s.connMap.Set(pack.Id, connection) //it has been set before send ok
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s.newConnCh <- connection
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s.sendInfo(common.MUX_NEW_CONN_OK, connection.connId, nil)
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continue
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case common.MUX_PING_FLAG: //ping
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s.sendInfo(common.MUX_PING_RETURN, common.MUX_PING, pack.Content)
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common.WindowBuff.Put(pack.Content)
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continue
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case common.MUX_PING_RETURN:
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s.pingCh <- pack.Content
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continue
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}
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if connection, ok := s.connMap.Get(pack.Id); ok && !connection.isClose {
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switch pack.Flag {
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case common.MUX_NEW_MSG, common.MUX_NEW_MSG_PART: //new msg from remote connection
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err = s.newMsg(connection, pack)
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if err != nil {
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connection.Close()
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}
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continue
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case common.MUX_NEW_CONN_OK: //connection ok
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connection.connStatusOkCh <- struct{}{}
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continue
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case common.MUX_NEW_CONN_Fail:
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connection.connStatusFailCh <- struct{}{}
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continue
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case common.MUX_MSG_SEND_OK:
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if connection.isClose {
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continue
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}
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connection.sendWindow.SetSize(pack.Window, pack.ReadLength)
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continue
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case common.MUX_CONN_CLOSE: //close the connection
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s.connMap.Delete(pack.Id)
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connection.closeFlag = true
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connection.receiveWindow.Stop() // close signal to receive window
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continue
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}
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} else if pack.Flag == common.MUX_CONN_CLOSE {
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continue
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}
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common.MuxPack.Put(pack)
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}
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common.MuxPack.Put(pack)
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s.Close()
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}()
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}
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func (s *Mux) newMsg(connection *conn, pack *common.MuxPackager) (err error) {
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if connection.isClose {
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err = io.ErrClosedPipe
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return
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}
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//logs.Warn("read session receive new msg", pack.Length)
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//go func(connection *conn, pack *common.MuxPackager) { // do not block read session
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//insert into queue
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if pack.Flag == common.MUX_NEW_MSG_PART {
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err = connection.receiveWindow.Write(pack.Content, pack.Length, true, pack.Id)
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}
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if pack.Flag == common.MUX_NEW_MSG {
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err = connection.receiveWindow.Write(pack.Content, pack.Length, false, pack.Id)
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}
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//logs.Warn("read session write success", pack.Length)
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return
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}
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func (s *Mux) Close() error {
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logs.Warn("close mux")
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if s.IsClose {
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return errors.New("the mux has closed")
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}
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s.IsClose = true
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s.connMap.Close()
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s.closeChan <- struct{}{}
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s.closeChan <- struct{}{}
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s.closeChan <- struct{}{}
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close(s.newConnCh)
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return s.conn.Close()
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}
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//get new connId as unique flag
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func (s *Mux) getId() (id int32) {
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id = atomic.AddInt32(&s.id, 1)
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if _, ok := s.connMap.Get(id); ok {
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s.getId()
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}
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return
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}
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type bandwidth struct {
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readStart time.Time
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lastReadStart time.Time
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bufLength uint16
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readBandwidth float64
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}
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func (Self *bandwidth) StartRead() {
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if Self.readStart.IsZero() {
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Self.readStart = time.Now()
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}
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if Self.bufLength >= 16384 {
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Self.lastReadStart, Self.readStart = Self.readStart, time.Now()
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Self.calcBandWidth()
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}
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}
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func (Self *bandwidth) SetCopySize(n uint16) {
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Self.bufLength += n
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}
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func (Self *bandwidth) calcBandWidth() {
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t := Self.readStart.Sub(Self.lastReadStart)
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Self.readBandwidth = float64(Self.bufLength) / t.Seconds()
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Self.bufLength = 0
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}
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func (Self *bandwidth) Get() (bw float64) {
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// The zero value, 0 for numeric types
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if Self.readBandwidth <= 0 {
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Self.readBandwidth = 100
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}
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return Self.readBandwidth
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}
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