package proxy import ( "errors" "fmt" "io" "net" "github.com/hahahrfool/v2ray_simple/grpc" "github.com/hahahrfool/v2ray_simple/netLayer" "github.com/hahahrfool/v2ray_simple/quic" "github.com/hahahrfool/v2ray_simple/tlsLayer" "github.com/hahahrfool/v2ray_simple/utils" "github.com/hahahrfool/v2ray_simple/ws" ) func PrintAllServerNames() { fmt.Printf("===============================\nSupported Server protocols:\n") for v := range serverCreatorMap { fmt.Print(v) fmt.Print("\n") } } func PrintAllClientNames() { fmt.Printf("===============================\nSupported client protocols:\n") for v := range clientCreatorMap { fmt.Print(v) fmt.Print("\n") } } // Client 用于向 服务端 拨号. //服务端是一种 “泛目标”代理,所以我们客户端的 Handshake 要传入目标地址, 来告诉它 我们 想要到达的 目标地址. // 一个Client 掌握从最底层的tcp等到最上层的 代理协议间的所有数据; // 一旦一个 Client 被完整定义,则它的数据的流向就被完整确定了. // // 然而, udp的转发则不一样. 一般来说, udp只handshake一次, 建立一个通道, 然后在这个通道上 // 不断申请发送到 各个远程udp地址的连接。客户端也可以选择建立多个udp通道。 type Client interface { ProxyCommon Handshake(underlay net.Conn, target netLayer.Addr) (io.ReadWriteCloser, error) EstablishUDPChannel(underlay net.Conn, target netLayer.Addr) (netLayer.MsgConn, error) } // Server 用于监听 客户端 的连接. // 服务端是一种 “泛目标”代理,所以我们Handshake要返回 客户端请求的目标地址 // 一个 Server 掌握从最底层的tcp等到最上层的 代理协议间的所有数据; // 一旦一个 Server 被完整定义,则它的数据的流向就被完整确定了. type Server interface { ProxyCommon //ReadWriteCloser 为请求地址为tcp的情况, net.PacketConn 为 请求建立的udp通道 Handshake(underlay net.Conn) (io.ReadWriteCloser, netLayer.MsgConn, netLayer.Addr, error) } // FullName 可以完整表示 一个 代理的 VSI 层级. // 这里认为, tcp/udp/kcp/raw_socket 是FirstName,具体的协议名称是 LastName, 中间层是 MiddleName // An Example of a full name: tcp+tls+ws+vless func GetFullName(pc ProxyCommon) string { return pc.Network() + pc.MiddleName() + pc.Name() } // return GetFullName(pc) + "://" + pc.AddrStr() func GetVSI_url(pc ProxyCommon) string { return GetFullName(pc) + "://" + pc.AddrStr() } // 给一个节点 提供 VSI中 第 5-7层 的支持, server和 client通用. 个别方法只能用于某一端. // // 一个 ProxyCommon 会内嵌proxy以及上面各层的所有信息; type ProxyCommon interface { Name() string //代理协议名称, 如vless MiddleName() string //其它VSI层 所使用的协议,前后被加了加号,如 +tls+ws+ Stop() /////////////////// 网络层/传输层 /////////////////// // 地址,若tcp/udp的话则为 ip:port/host:port的形式, 若是 unix domain socket 则是文件路径 , // 在 inServer就是监听地址,在 outClient就是拨号地址 AddrStr() string SetAddrStr(string) Network() string CantRoute() bool //for inServer GetTag() string IsDial() bool //true则为 Dial 端,false 则为 Listen 端 GetListenConf() *ListenConf GetDialConf() *DialConf //如果 IsHandleInitialLayers 方法返回true, 则监听/拨号从传输层一直到高级层的过程直接由inServer/outClient自己处理, 而我们主过程直接处理它 处理完毕的剩下的 代理层。 // // quic就属于这种接管底层协议的“超级协议”, 可称之为 SuperProxy。 IsHandleInitialLayers() bool // 在IsHandleInitialLayers时可用, 用于 inServer HandleInitialLayersFunc() func() (newConnChan chan net.Conn, baseConn any) /////////////////// TLS层 /////////////////// SetUseTLS() IsUseTLS() bool GetTLS_Server() *tlsLayer.Server GetTLS_Client() *tlsLayer.Client setTLS_Server(*tlsLayer.Server) setTLS_Client(*tlsLayer.Client) /////////////////// http层 /////////////////// //默认回落地址. GetFallback() *netLayer.Addr setFallback(netLayer.Addr) CanFallback() bool //如果能fallback,则handshake失败后,可能会专门返回 FallbackErr,如监测到返回了 FallbackErr, 则main函数会进行 回落处理. Path() string /////////////////// 高级层 /////////////////// AdvancedLayer() string //如果使用了ws或者grpc,这个要返回 ws 或 grpc GetWS_Client() *ws.Client //for outClient GetWS_Server() *ws.Server //for inServer initWS_client() error //for outClient initWS_server() error //for inServer GetGRPC_Server() *grpc.Server initGRPC_server() error IsMux() bool //如果用了grpc则此方法返回true GetQuic_Client() *quic.Client //for outClient setQuic_Client(*quic.Client) setListenCommonConnFunc(func() (newConnChan chan net.Conn, baseConn any)) /////////////////// 私有方法 /////////////////// setCantRoute(bool) setTag(string) setAdvancedLayer(string) setNetwork(string) setIsDial(bool) setListenConf(*ListenConf) //for inServer setDialConf(*DialConf) //for outClient setPath(string) } // ProxyCommonStruct 实现 ProxyCommon中除了Name 之外的其他方法. // 规定,所有的proxy都要内嵌本struct // 这是verysimple的架构所要求的。 // verysimple规定,在加载完配置文件后,一个listen和一个dial所使用的全部层级都是确定了的. // 因为所有使用的层级都是确定的,就可以进行针对性优化 type ProxyCommonStruct struct { Addr string TLS bool Tag string //可用于路由, 见 netLayer.route.go network string PATH string tls_s *tlsLayer.Server tls_c *tlsLayer.Client isdial bool listenConf *ListenConf dialConf *DialConf cantRoute bool //for inServer, 若为true,则 inServer 读得的数据 不会经过分流,一定会通过用户指定的remoteclient发出 AdvancedL string ws_c *ws.Client ws_s *ws.Server grpc_s *grpc.Server FallbackAddr *netLayer.Addr quic_c *quic.Client listenCommonConnFunc func() (newConnChan chan net.Conn, baseConn any) } func (pcs *ProxyCommonStruct) setListenCommonConnFunc(f func() (newConnChan chan net.Conn, baseConn any)) { pcs.listenCommonConnFunc = f } func (pcs *ProxyCommonStruct) Network() string { return pcs.network } func (pcs *ProxyCommonStruct) Path() string { return pcs.PATH } func (pcs *ProxyCommonStruct) setPath(a string) { pcs.PATH = a } func (pcs *ProxyCommonStruct) GetFallback() *netLayer.Addr { return pcs.FallbackAddr } func (pcs *ProxyCommonStruct) setFallback(a netLayer.Addr) { pcs.FallbackAddr = &a } func (pcs *ProxyCommonStruct) MiddleName() string { str := "" if pcs.TLS { str += "+tls" } if pcs.AdvancedL != "" { str += "+" + pcs.AdvancedL } return str + "+" } func (pcs *ProxyCommonStruct) CantRoute() bool { return pcs.cantRoute } func (pcs *ProxyCommonStruct) GetTag() string { return pcs.Tag } func (pcs *ProxyCommonStruct) setTag(tag string) { pcs.Tag = tag } func (pcs *ProxyCommonStruct) setNetwork(net string) { if net == "" { pcs.network = "tcp" } else { pcs.network = net } } func (pcs *ProxyCommonStruct) setCantRoute(cr bool) { pcs.cantRoute = cr } func (pcs *ProxyCommonStruct) setAdvancedLayer(adv string) { pcs.AdvancedL = adv } func (pcs *ProxyCommonStruct) AdvancedLayer() string { return pcs.AdvancedL } //do nothing. As a placeholder. func (s *ProxyCommonStruct) Stop() { } //return false. As a placeholder. func (s *ProxyCommonStruct) CanFallback() bool { return false } //return false. As a placeholder. func (s *ProxyCommonStruct) IsHandleInitialLayers() bool { return s.AdvancedL == "quic" } func (pcs *ProxyCommonStruct) setTLS_Server(s *tlsLayer.Server) { pcs.tls_s = s } func (s *ProxyCommonStruct) setTLS_Client(c *tlsLayer.Client) { s.tls_c = c } func (s *ProxyCommonStruct) GetTLS_Server() *tlsLayer.Server { return s.tls_s } func (s *ProxyCommonStruct) GetTLS_Client() *tlsLayer.Client { return s.tls_c } func (s *ProxyCommonStruct) AddrStr() string { return s.Addr } func (s *ProxyCommonStruct) SetAddrStr(a string) { s.Addr = a } func (s *ProxyCommonStruct) IsUseTLS() bool { return s.TLS } func (s *ProxyCommonStruct) IsMux() bool { switch s.AdvancedL { case "grpc", "quic": return true } return false } //return nil. As a placeholder. func (s *ProxyCommonStruct) HandleInitialLayersFunc() func() (newConnChan chan net.Conn, baseConn any) { return s.listenCommonConnFunc } func (s *ProxyCommonStruct) SetUseTLS() { s.TLS = true } func (s *ProxyCommonStruct) setIsDial(b bool) { s.isdial = b } func (s *ProxyCommonStruct) setListenConf(lc *ListenConf) { s.listenConf = lc } func (s *ProxyCommonStruct) setDialConf(dc *DialConf) { s.dialConf = dc } //true则为 Dial 端,false 则为 Listen 端 func (s *ProxyCommonStruct) IsDial() bool { return s.isdial } func (s *ProxyCommonStruct) GetListenConf() *ListenConf { return s.listenConf } func (s *ProxyCommonStruct) GetDialConf() *DialConf { return s.dialConf } func (s *ProxyCommonStruct) GetQuic_Client() *quic.Client { return s.quic_c } func (s *ProxyCommonStruct) setQuic_Client(c *quic.Client) { s.quic_c = c } //for outClient func (s *ProxyCommonStruct) GetWS_Client() *ws.Client { return s.ws_c } func (s *ProxyCommonStruct) GetWS_Server() *ws.Server { return s.ws_s } func (s *ProxyCommonStruct) GetGRPC_Server() *grpc.Server { return s.grpc_s } //for outClient func (s *ProxyCommonStruct) initWS_client() error { if s.dialConf == nil { return errors.New("initWS_client failed when no dialConf assigned") } path := s.dialConf.Path if path == "" { // 至少Path需要为 "/" path = "/" } var useEarlyData bool if s.dialConf.Extra != nil { if thing := s.dialConf.Extra["ws_earlydata"]; thing != nil { if use, ok := thing.(bool); ok && use { useEarlyData = true } } } c, e := ws.NewClient(s.dialConf.GetAddrStr(), path) if e != nil { return utils.ErrInErr{ErrDesc: "initWS_client failed", ErrDetail: e} } c.UseEarlyData = useEarlyData s.ws_c = c return nil } func (s *ProxyCommonStruct) initWS_server() error { if s.listenConf == nil { return errors.New("initWS_server failed when no listenConf assigned") } path := s.listenConf.Path if path == "" { // 至少Path需要为 "/" path = "/" } var useEarlyData bool if s.listenConf.Extra != nil { if thing := s.listenConf.Extra["ws_earlydata"]; thing != nil { if use, ok := thing.(bool); ok && use { useEarlyData = true } } } wss := ws.NewServer(path) wss.UseEarlyData = useEarlyData s.ws_s = wss return nil } func (s *ProxyCommonStruct) initGRPC_server() error { if s.listenConf == nil { return errors.New("initGRPC_server failed when no listenConf assigned") } serviceName := s.listenConf.Path if serviceName == "" { //不能为空 return errors.New("initGRPC_server failed, path must be specified") } s.grpc_s = grpc.NewServer(serviceName) return nil }