| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196 | package dokodemoimport (	"io"	"net"	"sync"	"github.com/v2ray/v2ray-core/app"	"github.com/v2ray/v2ray-core/common/alloc"	"github.com/v2ray/v2ray-core/common/log"	v2net "github.com/v2ray/v2ray-core/common/net"	"github.com/v2ray/v2ray-core/common/retry"	"github.com/v2ray/v2ray-core/proxy")type DokodemoDoor struct {	tcpMutex      sync.RWMutex	udpMutex      sync.RWMutex	config        *Config	accepting     bool	address       v2net.Address	port          v2net.Port	space         app.Space	tcpListener   *net.TCPListener	udpConn       *net.UDPConn	listeningPort v2net.Port}func NewDokodemoDoor(space app.Space, config *Config) *DokodemoDoor {	return &DokodemoDoor{		config:  config,		space:   space,		address: config.Address,		port:    config.Port,	}}func (this *DokodemoDoor) Port() v2net.Port {	return this.listeningPort}func (this *DokodemoDoor) Close() {	this.accepting = false	if this.tcpListener != nil {		this.tcpListener.Close()		this.tcpMutex.Lock()		this.tcpListener = nil		this.tcpMutex.Unlock()	}	if this.udpConn != nil {		this.udpConn.Close()		this.udpMutex.Lock()		this.udpConn = nil		this.udpMutex.Unlock()	}}func (this *DokodemoDoor) Listen(port v2net.Port) error {	if this.accepting {		if this.listeningPort == port {			return nil		} else {			return proxy.ErrorAlreadyListening		}	}	this.listeningPort = port	this.accepting = true	if this.config.Network.HasNetwork(v2net.TCPNetwork) {		err := this.ListenTCP(port)		if err != nil {			return err		}	}	if this.config.Network.HasNetwork(v2net.UDPNetwork) {		err := this.ListenUDP(port)		if err != nil {			return err		}	}	return nil}func (this *DokodemoDoor) ListenUDP(port v2net.Port) error {	udpConn, err := net.ListenUDP("udp", &net.UDPAddr{		IP:   []byte{0, 0, 0, 0},		Port: int(port),		Zone: "",	})	if err != nil {		log.Error("Dokodemo failed to listen on port ", port, ": ", err)		return err	}	this.udpMutex.Lock()	this.udpConn = udpConn	this.udpMutex.Unlock()	go this.handleUDPPackets()	return nil}func (this *DokodemoDoor) handleUDPPackets() {	for this.accepting {		buffer := alloc.NewBuffer()		this.udpMutex.RLock()		if !this.accepting {			this.udpMutex.RUnlock()			return		}		nBytes, addr, err := this.udpConn.ReadFromUDP(buffer.Value)		this.udpMutex.RUnlock()		buffer.Slice(0, nBytes)		if err != nil {			buffer.Release()			log.Error("Dokodemo failed to read from UDP: ", err)			return		}		packet := v2net.NewPacket(v2net.UDPDestination(this.address, this.port), buffer, false)		ray := this.space.PacketDispatcher().DispatchToOutbound(packet)		close(ray.InboundInput())		for payload := range ray.InboundOutput() {			this.udpMutex.RLock()			if !this.accepting {				this.udpMutex.RUnlock()				return			}			this.udpConn.WriteToUDP(payload.Value, addr)			this.udpMutex.RUnlock()		}	}}func (this *DokodemoDoor) ListenTCP(port v2net.Port) error {	tcpListener, err := net.ListenTCP("tcp", &net.TCPAddr{		IP:   []byte{0, 0, 0, 0},		Port: int(port),		Zone: "",	})	if err != nil {		log.Error("Dokodemo failed to listen on port ", port, ": ", err)		return err	}	this.tcpMutex.Lock()	this.tcpListener = tcpListener	this.tcpMutex.Unlock()	go this.AcceptTCPConnections()	return nil}func (this *DokodemoDoor) AcceptTCPConnections() {	for this.accepting {		retry.Timed(100, 100).On(func() error {			this.tcpMutex.RLock()			defer this.tcpMutex.RUnlock()			if !this.accepting {				return nil			}			connection, err := this.tcpListener.AcceptTCP()			if err != nil {				log.Error("Dokodemo failed to accept new connections: ", err)				return err			}			go this.HandleTCPConnection(connection)			return nil		})	}}func (this *DokodemoDoor) HandleTCPConnection(conn *net.TCPConn) {	defer conn.Close()	packet := v2net.NewPacket(v2net.TCPDestination(this.address, this.port), nil, true)	ray := this.space.PacketDispatcher().DispatchToOutbound(packet)	var inputFinish, outputFinish sync.Mutex	inputFinish.Lock()	outputFinish.Lock()	reader := v2net.NewTimeOutReader(this.config.Timeout, conn)	go dumpInput(reader, ray.InboundInput(), &inputFinish)	go dumpOutput(conn, ray.InboundOutput(), &outputFinish)	outputFinish.Lock()}func dumpInput(reader io.Reader, input chan<- *alloc.Buffer, finish *sync.Mutex) {	v2net.ReaderToChan(input, reader)	finish.Unlock()	close(input)}func dumpOutput(writer io.Writer, output <-chan *alloc.Buffer, finish *sync.Mutex) {	v2net.ChanToWriter(writer, output)	finish.Unlock()}
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