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v2ray-core/transport/internet/kcp/connection.go

377 lines
8.2 KiB

package kcp
import (
"errors"
"io"
"net"
"sync"
"time"
"github.com/v2ray/v2ray-core/common/alloc"
"github.com/v2ray/v2ray-core/common/log"
)
var (
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errTimeout = errors.New("i/o timeout")
errBrokenPipe = errors.New("broken pipe")
errClosedListener = errors.New("Listener closed.")
errClosedConnection = errors.New("Connection closed.")
)
const (
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headerSize = 2
)
type Command byte
var (
CommandData Command = 0
CommandTerminate Command = 1
)
type Option byte
var (
OptionClose Option = 1
)
type ConnState byte
var (
ConnStateActive ConnState = 0
ConnStateReadyToClose ConnState = 1
ConnStatePeerClosed ConnState = 2
ConnStateClosed ConnState = 4
)
func nowMillisec() int64 {
now := time.Now()
return now.Unix()*1000 + int64(now.Nanosecond()/1000000)
}
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// Connection is a KCP connection over UDP.
type Connection struct {
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sync.RWMutex
state ConnState
kcp *KCP // the core ARQ
kcpAccess sync.Mutex
block Authenticator
needUpdate bool
local, remote net.Addr
rd time.Time // read deadline
wd time.Time // write deadline
chReadEvent chan struct{}
writer io.WriteCloser
since int64
}
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// NewConnection create a new KCP connection between local and remote.
func NewConnection(conv uint32, writerCloser io.WriteCloser, local *net.UDPAddr, remote *net.UDPAddr, block Authenticator) *Connection {
conn := new(Connection)
conn.local = local
conn.chReadEvent = make(chan struct{}, 1)
conn.remote = remote
conn.block = block
conn.writer = writerCloser
conn.since = nowMillisec()
mtu := uint32(effectiveConfig.Mtu - block.HeaderSize() - headerSize)
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conn.kcp = NewKCP(conv, mtu, func(buf []byte, size int) {
if size >= IKCP_OVERHEAD {
ext := alloc.NewBuffer().Clear().Append(buf[:size])
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cmd := CommandData
opt := Option(0)
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if conn.state == ConnStateReadyToClose {
opt = OptionClose
}
ext.Prepend([]byte{byte(cmd), byte(opt)})
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go conn.output(ext)
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}
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if conn.state == ConnStateReadyToClose && conn.kcp.WaitSnd() == 0 {
go conn.NotifyTermination()
}
})
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conn.kcp.WndSize(effectiveConfig.Sndwnd, effectiveConfig.Rcvwnd)
conn.kcp.NoDelay(1, 20, 2, 1)
conn.kcp.current = conn.Elapsed()
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go conn.updateTask()
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return conn
}
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func (this *Connection) Elapsed() uint32 {
return uint32(nowMillisec() - this.since)
}
// Read implements the Conn Read method.
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func (this *Connection) Read(b []byte) (int, error) {
if this == nil || this.state == ConnStateReadyToClose || this.state == ConnStateClosed {
return 0, io.EOF
}
for {
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this.RLock()
if this.state == ConnStateReadyToClose || this.state == ConnStateClosed {
this.RUnlock()
return 0, io.EOF
}
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if !this.rd.IsZero() && this.rd.Before(time.Now()) {
this.RUnlock()
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return 0, errTimeout
}
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this.RUnlock()
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this.kcpAccess.Lock()
nBytes := this.kcp.Recv(b)
this.kcpAccess.Unlock()
if nBytes > 0 {
return nBytes, nil
}
select {
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case <-this.chReadEvent:
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case <-time.After(time.Second):
}
}
}
// Write implements the Conn Write method.
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func (this *Connection) Write(b []byte) (int, error) {
if this == nil ||
this.state == ConnStateReadyToClose ||
this.state == ConnStatePeerClosed ||
this.state == ConnStateClosed {
return 0, io.ErrClosedPipe
}
for {
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this.RLock()
if this.state == ConnStateReadyToClose ||
this.state == ConnStatePeerClosed ||
this.state == ConnStateClosed {
this.RUnlock()
return 0, io.ErrClosedPipe
}
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this.RUnlock()
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this.kcpAccess.Lock()
if this.kcp.WaitSnd() < int(this.kcp.snd_wnd) {
nBytes := len(b)
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this.kcp.Send(b)
this.kcp.current = this.Elapsed()
this.kcp.flush()
this.kcpAccess.Unlock()
return nBytes, nil
}
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this.kcpAccess.Unlock()
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if !this.wd.IsZero() && this.wd.Before(time.Now()) {
return 0, errTimeout
}
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// Sending windows is 1024 for the moment. This amount is not gonna sent in 1 sec.
time.Sleep(time.Second)
}
}
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func (this *Connection) Terminate() {
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if this == nil || this.state == ConnStateClosed {
return
}
this.Lock()
defer this.Unlock()
if this.state == ConnStateClosed {
return
}
this.state = ConnStateClosed
this.writer.Close()
}
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func (this *Connection) NotifyTermination() {
for i := 0; i < 16; i++ {
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this.RLock()
if this.state == ConnStateClosed {
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this.RUnlock()
break
}
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this.RUnlock()
buffer := alloc.NewSmallBuffer().Clear()
buffer.AppendBytes(byte(CommandTerminate), byte(OptionClose), byte(0), byte(0), byte(0), byte(0))
this.output(buffer)
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time.Sleep(time.Second)
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}
this.Terminate()
}
// Close closes the connection.
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func (this *Connection) Close() error {
if this == nil || this.state == ConnStateClosed || this.state == ConnStateReadyToClose {
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return errClosedConnection
}
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log.Debug("KCP|Connection: Closing connection to ", this.remote)
this.Lock()
defer this.Unlock()
if this.state == ConnStateActive {
this.state = ConnStateReadyToClose
if this.kcp.WaitSnd() == 0 {
go this.NotifyTermination()
}
}
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if this.state == ConnStatePeerClosed {
go this.Terminate()
}
return nil
}
// LocalAddr returns the local network address. The Addr returned is shared by all invocations of LocalAddr, so do not modify it.
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func (this *Connection) LocalAddr() net.Addr {
if this == nil {
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return nil
}
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return this.local
}
// RemoteAddr returns the remote network address. The Addr returned is shared by all invocations of RemoteAddr, so do not modify it.
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func (this *Connection) RemoteAddr() net.Addr {
if this == nil {
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return nil
}
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return this.remote
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}
// SetDeadline sets the deadline associated with the listener. A zero time value disables the deadline.
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func (this *Connection) SetDeadline(t time.Time) error {
if this == nil || this.state != ConnStateActive {
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return errClosedConnection
}
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this.Lock()
defer this.Unlock()
this.rd = t
this.wd = t
return nil
}
// SetReadDeadline implements the Conn SetReadDeadline method.
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func (this *Connection) SetReadDeadline(t time.Time) error {
if this == nil || this.state != ConnStateActive {
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return errClosedConnection
}
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this.Lock()
defer this.Unlock()
this.rd = t
return nil
}
// SetWriteDeadline implements the Conn SetWriteDeadline method.
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func (this *Connection) SetWriteDeadline(t time.Time) error {
if this == nil || this.state != ConnStateActive {
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return errClosedConnection
}
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this.Lock()
defer this.Unlock()
this.wd = t
return nil
}
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func (this *Connection) output(payload *alloc.Buffer) {
defer payload.Release()
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if this == nil {
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return
}
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this.RLock()
defer this.RUnlock()
if this.state == ConnStatePeerClosed || this.state == ConnStateClosed {
return
}
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this.block.Seal(payload)
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this.writer.Write(payload.Value)
}
// kcp update, input loop
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func (this *Connection) updateTask() {
for this.state != ConnStateClosed {
current := this.Elapsed()
this.kcpAccess.Lock()
this.kcp.Update(current)
interval := this.kcp.Check(this.Elapsed())
this.kcpAccess.Unlock()
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sleep := interval - current
if sleep < 10 {
sleep = 10
}
time.Sleep(time.Duration(sleep) * time.Millisecond)
}
}
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func (this *Connection) notifyReadEvent() {
select {
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case this.chReadEvent <- struct{}{}:
default:
}
}
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func (this *Connection) MarkPeerClose() {
this.Lock()
defer this.Unlock()
if this.state == ConnStateReadyToClose {
this.state = ConnStateClosed
go this.Terminate()
return
}
if this.state == ConnStateActive {
this.state = ConnStatePeerClosed
}
}
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func (this *Connection) kcpInput(data []byte) {
cmd := Command(data[0])
opt := Option(data[1])
if cmd == CommandTerminate {
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go this.Terminate()
return
}
if opt == OptionClose {
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go this.MarkPeerClose()
}
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this.kcpAccess.Lock()
this.kcp.current = this.Elapsed()
this.kcp.Input(data[2:])
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this.kcpAccess.Unlock()
this.notifyReadEvent()
}
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func (this *Connection) FetchInputFrom(conn net.Conn) {
go func() {
for {
payload := alloc.NewBuffer()
nBytes, err := conn.Read(payload.Value)
if err != nil {
return
}
payload.Slice(0, nBytes)
if this.block.Open(payload) {
this.kcpInput(payload.Value)
} else {
log.Info("KCP|Connection: Invalid response from ", conn.RemoteAddr())
}
payload.Release()
}
}()
}
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func (this *Connection) Reusable() bool {
return false
}
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func (this *Connection) SetReusable(b bool) {}