package relay import ( "context" "net" "strconv" "time" "github.com/go-gost/gost/pkg/chain" "github.com/go-gost/gost/pkg/handler" md "github.com/go-gost/gost/pkg/metadata" "github.com/go-gost/gost/pkg/registry" "github.com/go-gost/relay" ) func init() { registry.RegisterHandler("relay", NewHandler) } type relayHandler struct { group *chain.NodeGroup router *chain.Router md metadata options handler.Options } func NewHandler(opts ...handler.Option) handler.Handler { options := handler.Options{} for _, opt := range opts { opt(&options) } return &relayHandler{ options: options, } } func (h *relayHandler) Init(md md.Metadata) (err error) { if err := h.parseMetadata(md); err != nil { return err } h.router = &chain.Router{ Retries: h.options.Retries, Chain: h.options.Chain, Resolver: h.options.Resolver, Hosts: h.options.Hosts, Logger: h.options.Logger, } return nil } // Forward implements handler.Forwarder. func (h *relayHandler) Forward(group *chain.NodeGroup) { h.group = group } func (h *relayHandler) Handle(ctx context.Context, conn net.Conn) { defer conn.Close() start := time.Now() log := h.options.Logger.WithFields(map[string]interface{}{ "remote": conn.RemoteAddr().String(), "local": conn.LocalAddr().String(), }) log.Infof("%s <> %s", conn.RemoteAddr(), conn.LocalAddr()) defer func() { log.WithFields(map[string]interface{}{ "duration": time.Since(start), }).Infof("%s >< %s", conn.RemoteAddr(), conn.LocalAddr()) }() if h.md.readTimeout > 0 { conn.SetReadDeadline(time.Now().Add(h.md.readTimeout)) } req := relay.Request{} if _, err := req.ReadFrom(conn); err != nil { log.Error(err) return } conn.SetReadDeadline(time.Time{}) if req.Version != relay.Version1 { log.Error("bad version") return } var user, pass string var address string for _, f := range req.Features { if f.Type() == relay.FeatureUserAuth { feature := f.(*relay.UserAuthFeature) user, pass = feature.Username, feature.Password } if f.Type() == relay.FeatureAddr { feature := f.(*relay.AddrFeature) address = net.JoinHostPort(feature.Host, strconv.Itoa(int(feature.Port))) } } if user != "" { log = log.WithFields(map[string]interface{}{"user": user}) } resp := relay.Response{ Version: relay.Version1, Status: relay.StatusOK, } if h.options.Auther != nil && !h.options.Auther.Authenticate(user, pass) { resp.Status = relay.StatusUnauthorized resp.WriteTo(conn) log.Error("unauthorized") return } network := "tcp" if (req.Flags & relay.FUDP) == relay.FUDP { network = "udp" } if h.group != nil { if address != "" { resp.Status = relay.StatusForbidden resp.WriteTo(conn) log.Error("forward mode, connect is forbidden") return } // forward mode h.handleForward(ctx, conn, network, log) return } switch req.Flags & relay.CmdMask { case 0, relay.CONNECT: h.handleConnect(ctx, conn, network, address, log) case relay.BIND: h.handleBind(ctx, conn, network, address, log) } }