| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364 | package mux//go:generate go run $GOPATH/src/v2ray.com/core/tools/generrorgen/main.go -pkg mux -path App,Proxyman,Muximport (	"context"	"sync"	"time"	"v2ray.com/core/app"	"v2ray.com/core/app/dispatcher"	"v2ray.com/core/app/log"	"v2ray.com/core/app/proxyman"	"v2ray.com/core/common/buf"	"v2ray.com/core/common/net"	"v2ray.com/core/common/signal"	"v2ray.com/core/proxy"	"v2ray.com/core/transport/ray")const (	maxTotal = 128)type ClientManager struct {	access  sync.Mutex	clients []*Client	proxy   proxy.Outbound	dialer  proxy.Dialer	config  *proxyman.MultiplexingConfig}func NewClientManager(p proxy.Outbound, d proxy.Dialer, c *proxyman.MultiplexingConfig) *ClientManager {	return &ClientManager{		proxy:  p,		dialer: d,		config: c,	}}func (m *ClientManager) Dispatch(ctx context.Context, outboundRay ray.OutboundRay) error {	m.access.Lock()	defer m.access.Unlock()	for _, client := range m.clients {		if client.Dispatch(ctx, outboundRay) {			return nil		}	}	client, err := NewClient(m.proxy, m.dialer, m)	if err != nil {		return newError("failed to create client").Base(err)	}	m.clients = append(m.clients, client)	client.Dispatch(ctx, outboundRay)	return nil}func (m *ClientManager) onClientFinish() {	m.access.Lock()	defer m.access.Unlock()	if len(m.clients) < 10 {		return	}	activeClients := make([]*Client, 0, len(m.clients))	for _, client := range m.clients {		if !client.Closed() {			activeClients = append(activeClients, client)		}	}	m.clients = activeClients}type Client struct {	sessionManager *SessionManager	inboundRay     ray.InboundRay	ctx            context.Context	cancel         context.CancelFunc	manager        *ClientManager	session2Remove chan uint16	concurrency    uint32}var muxCoolDestination = net.TCPDestination(net.DomainAddress("v1.mux.cool"), net.Port(9527))func NewClient(p proxy.Outbound, dialer proxy.Dialer, m *ClientManager) (*Client, error) {	ctx, cancel := context.WithCancel(context.Background())	ctx = proxy.ContextWithTarget(ctx, muxCoolDestination)	pipe := ray.NewRay(ctx)	go p.Process(ctx, pipe, dialer)	c := &Client{		sessionManager: NewSessionManager(),		inboundRay:     pipe,		ctx:            ctx,		cancel:         cancel,		manager:        m,		session2Remove: make(chan uint16, 16),		concurrency:    m.config.Concurrency,	}	go c.fetchOutput()	go c.monitor()	return c, nil}func (m *Client) Closed() bool {	select {	case <-m.ctx.Done():		return true	default:		return false	}}func (m *Client) monitor() {	defer m.manager.onClientFinish()	for {		select {		case <-m.ctx.Done():			m.sessionManager.Close()			m.inboundRay.InboundInput().Close()			m.inboundRay.InboundOutput().CloseError()			return		case <-time.After(time.Second * 6):			size := m.sessionManager.Size()			if size == 0 {				m.cancel()			}		}	}}func fetchInput(ctx context.Context, s *Session, output buf.Writer) {	dest, _ := proxy.TargetFromContext(ctx)	writer := &Writer{		dest:   dest,		id:     s.ID,		writer: output,	}	defer writer.Close()	defer s.CloseUplink()	log.Trace(newError("dispatching request to ", dest))	data, _ := s.input.ReadTimeout(time.Millisecond * 500)	if data != nil {		if err := writer.Write(data); err != nil {			log.Trace(newError("failed to write first payload").Base(err))			return		}	}	if err := buf.PipeUntilEOF(signal.BackgroundTimer(), s.input, writer); err != nil {		log.Trace(newError("failed to fetch all input").Base(err))	}}func (m *Client) Dispatch(ctx context.Context, outboundRay ray.OutboundRay) bool {	numSession := m.sessionManager.Size()	if numSession >= int(m.concurrency) || numSession >= maxTotal {		return false	}	select {	case <-m.ctx.Done():		return false	default:	}	s := &Session{		input:  outboundRay.OutboundInput(),		output: outboundRay.OutboundOutput(),		parent: m.sessionManager,	}	m.sessionManager.Allocate(s)	go fetchInput(ctx, s, m.inboundRay.InboundInput())	return true}func drain(reader *Reader) error {	for {		data, more, err := reader.Read()		if err != nil {			return err		}		data.Release()		if !more {			return nil		}	}}func pipe(reader *Reader, writer buf.Writer) error {	for {		data, more, err := reader.Read()		if err != nil {			return err		}		if err := writer.Write(data); err != nil {			return err		}		if !more {			return nil		}	}}func (m *Client) fetchOutput() {	defer m.cancel()	reader := NewReader(m.inboundRay.InboundOutput())	for {		meta, err := reader.ReadMetadata()		if err != nil {			log.Trace(newError("failed to read metadata").Base(err))			break		}		if meta.SessionStatus == SessionStatusKeepAlive {			if meta.Option.Has(OptionData) {				if err := drain(reader); err != nil {					log.Trace(newError("failed to read data").Base(err))					break				}			}			continue		}		s, found := m.sessionManager.Get(meta.SessionID)		if found && meta.SessionStatus == SessionStatusEnd {			s.CloseDownlink()			s.output.Close()		}		if !meta.Option.Has(OptionData) {			continue		}		if found {			err = pipe(reader, s.output)		} else {			err = drain(reader)		}		if err != nil {			log.Trace(newError("failed to read data").Base(err))			break		}	}}type Server struct {	dispatcher dispatcher.Interface}func NewServer(ctx context.Context) *Server {	s := &Server{}	space := app.SpaceFromContext(ctx)	space.OnInitialize(func() error {		d := dispatcher.FromSpace(space)		if d == nil {			return newError("no dispatcher in space")		}		s.dispatcher = d		return nil	})	return s}func (s *Server) Dispatch(ctx context.Context, dest net.Destination) (ray.InboundRay, error) {	if dest != muxCoolDestination {		return s.dispatcher.Dispatch(ctx, dest)	}	ray := ray.NewRay(ctx)	worker := &ServerWorker{		dispatcher:     s.dispatcher,		outboundRay:    ray,		sessionManager: NewSessionManager(),	}	go worker.run(ctx)	return ray, nil}type ServerWorker struct {	dispatcher     dispatcher.Interface	outboundRay    ray.OutboundRay	sessionManager *SessionManager}func handle(ctx context.Context, s *Session, output buf.Writer) {	writer := NewResponseWriter(s.ID, output)	if err := buf.PipeUntilEOF(signal.BackgroundTimer(), s.input, writer); err != nil {		log.Trace(newError("session ", s.ID, " ends: ").Base(err))	}	writer.Close()	s.CloseDownlink()}func (w *ServerWorker) run(ctx context.Context) {	input := w.outboundRay.OutboundInput()	reader := NewReader(input)	for {		select {		case <-ctx.Done():			return		default:		}		meta, err := reader.ReadMetadata()		if err != nil {			log.Trace(newError("failed to read metadata").Base(err))			return		}		if meta.SessionStatus == SessionStatusKeepAlive {			if meta.Option.Has(OptionData) {				if err := drain(reader); err != nil {					log.Trace(newError("failed to read data").Base(err))					break				}			}			continue		}		s, found := w.sessionManager.Get(meta.SessionID)		if found && meta.SessionStatus == SessionStatusEnd {			s.CloseUplink()			s.output.Close()		}		if meta.SessionStatus == SessionStatusNew {			log.Trace(newError("received request for ", meta.Target))			inboundRay, err := w.dispatcher.Dispatch(ctx, meta.Target)			if err != nil {				log.Trace(newError("failed to dispatch request.").Base(err))				continue			}			s = &Session{				input:  inboundRay.InboundOutput(),				output: inboundRay.InboundInput(),				parent: w.sessionManager,				ID:     meta.SessionID,			}			w.sessionManager.Add(s)			go handle(ctx, s, w.outboundRay.OutboundOutput())		}		if !meta.Option.Has(OptionData) {			continue		}		if s != nil {			err = pipe(reader, s.output)		} else {			err = drain(reader)		}		if err != nil {			log.Trace(newError("failed to read data").Base(err))			break		}	}}
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