mirror of
https://github.com/MetaCubeX/mihomo.git
synced 2024-12-27 12:35:39 +08:00
389 lines
10 KiB
Go
389 lines
10 KiB
Go
package outbound
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import (
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"context"
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"crypto/tls"
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"errors"
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"fmt"
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"net"
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"net/http"
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"strconv"
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"strings"
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"github.com/Dreamacro/clash/component/dialer"
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"github.com/Dreamacro/clash/component/resolver"
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C "github.com/Dreamacro/clash/constant"
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"github.com/Dreamacro/clash/transport/gun"
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"github.com/Dreamacro/clash/transport/vmess"
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"golang.org/x/net/http2"
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)
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type Vmess struct {
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*Base
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client *vmess.Client
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option *VmessOption
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// for gun mux
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gunTLSConfig *tls.Config
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gunConfig *gun.Config
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transport *http2.Transport
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}
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type VmessOption struct {
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BasicOption
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Name string `proxy:"name"`
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Server string `proxy:"server"`
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Port int `proxy:"port"`
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UUID string `proxy:"uuid"`
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AlterID int `proxy:"alterId"`
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Cipher string `proxy:"cipher"`
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UDP bool `proxy:"udp,omitempty"`
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Network string `proxy:"network,omitempty"`
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TLS bool `proxy:"tls,omitempty"`
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SkipCertVerify bool `proxy:"skip-cert-verify,omitempty"`
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ServerName string `proxy:"servername,omitempty"`
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HTTPOpts HTTPOptions `proxy:"http-opts,omitempty"`
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HTTP2Opts HTTP2Options `proxy:"h2-opts,omitempty"`
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GrpcOpts GrpcOptions `proxy:"grpc-opts,omitempty"`
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WSOpts WSOptions `proxy:"ws-opts,omitempty"`
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// TODO: compatible with VMESS WS older version configurations
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WSHeaders map[string]string `proxy:"ws-headers,omitempty"`
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WSPath string `proxy:"ws-path,omitempty"`
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}
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type HTTPOptions struct {
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Method string `proxy:"method,omitempty"`
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Path []string `proxy:"path,omitempty"`
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Headers map[string][]string `proxy:"headers,omitempty"`
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}
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type HTTP2Options struct {
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Host []string `proxy:"host,omitempty"`
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Path string `proxy:"path,omitempty"`
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}
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type GrpcOptions struct {
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GrpcServiceName string `proxy:"grpc-service-name,omitempty"`
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}
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type WSOptions struct {
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Path string `proxy:"path,omitempty"`
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Headers map[string]string `proxy:"headers,omitempty"`
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MaxEarlyData int `proxy:"max-early-data,omitempty"`
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EarlyDataHeaderName string `proxy:"early-data-header-name,omitempty"`
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}
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// StreamConn implements C.ProxyAdapter
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func (v *Vmess) StreamConn(c net.Conn, metadata *C.Metadata) (net.Conn, error) {
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var err error
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switch v.option.Network {
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case "ws":
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if v.option.WSOpts.Path == "" {
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v.option.WSOpts.Path = v.option.WSPath
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}
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if len(v.option.WSOpts.Headers) == 0 {
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v.option.WSOpts.Headers = v.option.WSHeaders
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}
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host, port, _ := net.SplitHostPort(v.addr)
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wsOpts := &vmess.WebsocketConfig{
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Host: host,
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Port: port,
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Path: v.option.WSOpts.Path,
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MaxEarlyData: v.option.WSOpts.MaxEarlyData,
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EarlyDataHeaderName: v.option.WSOpts.EarlyDataHeaderName,
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}
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if len(v.option.WSOpts.Headers) != 0 {
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header := http.Header{}
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for key, value := range v.option.WSOpts.Headers {
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header.Add(key, value)
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}
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wsOpts.Headers = header
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}
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if v.option.TLS {
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wsOpts.TLS = true
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wsOpts.TLSConfig = &tls.Config{
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ServerName: host,
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InsecureSkipVerify: v.option.SkipCertVerify,
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NextProtos: []string{"http/1.1"},
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}
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if v.option.ServerName != "" {
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wsOpts.TLSConfig.ServerName = v.option.ServerName
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} else if host := wsOpts.Headers.Get("Host"); host != "" {
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wsOpts.TLSConfig.ServerName = host
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}
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}
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c, err = vmess.StreamWebsocketConn(c, wsOpts)
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case "http":
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// readability first, so just copy default TLS logic
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if v.option.TLS {
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host, _, _ := net.SplitHostPort(v.addr)
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tlsOpts := &vmess.TLSConfig{
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Host: host,
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SkipCertVerify: v.option.SkipCertVerify,
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}
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if v.option.ServerName != "" {
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tlsOpts.Host = v.option.ServerName
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}
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c, err = vmess.StreamTLSConn(c, tlsOpts)
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if err != nil {
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return nil, err
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}
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}
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host, _, _ := net.SplitHostPort(v.addr)
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httpOpts := &vmess.HTTPConfig{
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Host: host,
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Method: v.option.HTTPOpts.Method,
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Path: v.option.HTTPOpts.Path,
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Headers: v.option.HTTPOpts.Headers,
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}
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c = vmess.StreamHTTPConn(c, httpOpts)
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case "h2":
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host, _, _ := net.SplitHostPort(v.addr)
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tlsOpts := vmess.TLSConfig{
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Host: host,
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SkipCertVerify: v.option.SkipCertVerify,
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NextProtos: []string{"h2"},
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}
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if v.option.ServerName != "" {
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tlsOpts.Host = v.option.ServerName
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}
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c, err = vmess.StreamTLSConn(c, &tlsOpts)
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if err != nil {
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return nil, err
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}
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h2Opts := &vmess.H2Config{
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Hosts: v.option.HTTP2Opts.Host,
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Path: v.option.HTTP2Opts.Path,
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}
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c, err = vmess.StreamH2Conn(c, h2Opts)
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case "grpc":
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c, err = gun.StreamGunWithConn(c, v.gunTLSConfig, v.gunConfig)
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default:
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// handle TLS
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if v.option.TLS {
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host, _, _ := net.SplitHostPort(v.addr)
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tlsOpts := &vmess.TLSConfig{
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Host: host,
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SkipCertVerify: v.option.SkipCertVerify,
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}
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if v.option.ServerName != "" {
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tlsOpts.Host = v.option.ServerName
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}
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c, err = vmess.StreamTLSConn(c, tlsOpts)
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}
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}
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if err != nil {
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return nil, err
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}
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return v.client.StreamConn(c, parseVmessAddr(metadata))
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}
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// DialContext implements C.ProxyAdapter
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func (v *Vmess) DialContext(ctx context.Context, metadata *C.Metadata, opts ...dialer.Option) (_ C.Conn, err error) {
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// gun transport
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if v.transport != nil && len(opts) == 0 {
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c, err := gun.StreamGunWithTransport(v.transport, v.gunConfig)
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if err != nil {
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return nil, err
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}
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defer safeConnClose(c, err)
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c, err = v.client.StreamConn(c, parseVmessAddr(metadata))
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if err != nil {
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return nil, err
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}
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return NewConn(c, v), nil
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}
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c, err := dialer.DialContext(ctx, "tcp", v.addr, v.Base.DialOptions(opts...)...)
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if err != nil {
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return nil, fmt.Errorf("%s connect error: %s", v.addr, err.Error())
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}
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tcpKeepAlive(c)
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defer safeConnClose(c, err)
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c, err = v.StreamConn(c, metadata)
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return NewConn(c, v), err
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}
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// ListenPacketContext implements C.ProxyAdapter
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func (v *Vmess) ListenPacketContext(ctx context.Context, metadata *C.Metadata, opts ...dialer.Option) (_ C.PacketConn, err error) {
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// vmess use stream-oriented udp with a special address, so we needs a net.UDPAddr
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if !metadata.Resolved() {
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ip, err := resolver.ResolveIP(metadata.Host)
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if err != nil {
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return nil, errors.New("can't resolve ip")
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}
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metadata.DstIP = ip
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}
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var c net.Conn
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// gun transport
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if v.transport != nil && len(opts) == 0 {
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c, err = gun.StreamGunWithTransport(v.transport, v.gunConfig)
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if err != nil {
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return nil, err
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}
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defer safeConnClose(c, err)
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c, err = v.client.StreamConn(c, parseVmessAddr(metadata))
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} else {
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c, err = dialer.DialContext(ctx, "tcp", v.addr, v.Base.DialOptions(opts...)...)
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if err != nil {
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return nil, fmt.Errorf("%s connect error: %s", v.addr, err.Error())
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}
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tcpKeepAlive(c)
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defer safeConnClose(c, err)
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c, err = v.StreamConn(c, metadata)
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}
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if err != nil {
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return nil, fmt.Errorf("new vmess client error: %v", err)
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}
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return v.ListenPacketOnStreamConn(c, metadata)
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}
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// ListenPacketOnStreamConn implements C.ProxyAdapter
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func (v *Vmess) ListenPacketOnStreamConn(c net.Conn, metadata *C.Metadata) (_ C.PacketConn, err error) {
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return newPacketConn(&vmessPacketConn{Conn: c, rAddr: metadata.UDPAddr()}, v), nil
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}
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// SupportUOT implements C.ProxyAdapter
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func (v *Vmess) SupportUOT() bool {
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return true
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}
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func NewVmess(option VmessOption) (*Vmess, error) {
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security := strings.ToLower(option.Cipher)
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client, err := vmess.NewClient(vmess.Config{
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UUID: uuidMap(option.UUID),
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AlterID: uint16(option.AlterID),
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Security: security,
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HostName: option.Server,
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Port: strconv.Itoa(option.Port),
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IsAead: option.AlterID == 0,
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})
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if err != nil {
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return nil, err
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}
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switch option.Network {
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case "h2", "grpc":
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if !option.TLS {
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return nil, fmt.Errorf("TLS must be true with h2/grpc network")
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}
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}
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v := &Vmess{
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Base: &Base{
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name: option.Name,
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addr: net.JoinHostPort(option.Server, strconv.Itoa(option.Port)),
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tp: C.Vmess,
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udp: option.UDP,
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iface: option.Interface,
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rmark: option.RoutingMark,
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},
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client: client,
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option: &option,
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}
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switch option.Network {
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case "h2":
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if len(option.HTTP2Opts.Host) == 0 {
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option.HTTP2Opts.Host = append(option.HTTP2Opts.Host, "www.example.com")
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}
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case "grpc":
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dialFn := func(network, addr string) (net.Conn, error) {
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c, err := dialer.DialContext(context.Background(), "tcp", v.addr, v.Base.DialOptions()...)
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if err != nil {
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return nil, fmt.Errorf("%s connect error: %s", v.addr, err.Error())
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}
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tcpKeepAlive(c)
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return c, nil
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}
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gunConfig := &gun.Config{
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ServiceName: v.option.GrpcOpts.GrpcServiceName,
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Host: v.option.ServerName,
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}
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tlsConfig := &tls.Config{
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InsecureSkipVerify: v.option.SkipCertVerify,
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ServerName: v.option.ServerName,
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}
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if v.option.ServerName == "" {
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host, _, _ := net.SplitHostPort(v.addr)
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tlsConfig.ServerName = host
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gunConfig.Host = host
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}
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v.gunTLSConfig = tlsConfig
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v.gunConfig = gunConfig
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v.transport = gun.NewHTTP2Client(dialFn, tlsConfig)
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}
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return v, nil
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}
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func parseVmessAddr(metadata *C.Metadata) *vmess.DstAddr {
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var addrType byte
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var addr []byte
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switch metadata.AddrType {
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case C.AtypIPv4:
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addrType = byte(vmess.AtypIPv4)
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addr = make([]byte, net.IPv4len)
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copy(addr[:], metadata.DstIP.AsSlice())
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case C.AtypIPv6:
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addrType = byte(vmess.AtypIPv6)
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addr = make([]byte, net.IPv6len)
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copy(addr[:], metadata.DstIP.AsSlice())
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case C.AtypDomainName:
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addrType = byte(vmess.AtypDomainName)
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addr = make([]byte, len(metadata.Host)+1)
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addr[0] = byte(len(metadata.Host))
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copy(addr[1:], []byte(metadata.Host))
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}
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port, _ := strconv.ParseUint(metadata.DstPort, 10, 16)
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return &vmess.DstAddr{
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UDP: metadata.NetWork == C.UDP,
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AddrType: addrType,
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Addr: addr,
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Port: uint(port),
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}
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}
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type vmessPacketConn struct {
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net.Conn
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rAddr net.Addr
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}
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func (uc *vmessPacketConn) WriteTo(b []byte, addr net.Addr) (int, error) {
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return uc.Conn.Write(b)
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}
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func (uc *vmessPacketConn) ReadFrom(b []byte) (int, net.Addr, error) {
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n, err := uc.Conn.Read(b)
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return n, uc.rAddr, err
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}
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