mihomo/adapter/outbound/socks5.go

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package outbound
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import (
"context"
"crypto/tls"
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"errors"
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"fmt"
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tlsC "github.com/Dreamacro/clash/component/tls"
"io"
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"net"
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"strconv"
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"github.com/Dreamacro/clash/component/dialer"
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C "github.com/Dreamacro/clash/constant"
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"github.com/Dreamacro/clash/transport/socks5"
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)
type Socks5 struct {
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*Base
user string
pass string
tls bool
skipCertVerify bool
tlsConfig *tls.Config
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}
type Socks5Option struct {
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BasicOption
Name string `proxy:"name"`
Server string `proxy:"server"`
Port int `proxy:"port"`
UserName string `proxy:"username,omitempty"`
Password string `proxy:"password,omitempty"`
TLS bool `proxy:"tls,omitempty"`
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UDP bool `proxy:"udp,omitempty"`
SkipCertVerify bool `proxy:"skip-cert-verify,omitempty"`
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Fingerprint string `proxy:"fingerprint,omitempty"`
}
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// StreamConn implements C.ProxyAdapter
func (ss *Socks5) StreamConn(c net.Conn, metadata *C.Metadata) (net.Conn, error) {
if ss.tls {
cc := tls.Client(c, ss.tlsConfig)
err := cc.Handshake()
c = cc
if err != nil {
return nil, fmt.Errorf("%s connect error: %w", ss.addr, err)
}
}
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var user *socks5.User
if ss.user != "" {
user = &socks5.User{
Username: ss.user,
Password: ss.pass,
}
}
if _, err := socks5.ClientHandshake(c, serializesSocksAddr(metadata), socks5.CmdConnect, user); err != nil {
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return nil, err
}
return c, nil
}
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// DialContext implements C.ProxyAdapter
func (ss *Socks5) DialContext(ctx context.Context, metadata *C.Metadata, opts ...dialer.Option) (_ C.Conn, err error) {
c, err := dialer.DialContext(ctx, "tcp", ss.addr, ss.Base.DialOptions(opts...)...)
if err != nil {
return nil, fmt.Errorf("%s connect error: %w", ss.addr, err)
}
tcpKeepAlive(c)
defer safeConnClose(c, err)
c, err = ss.StreamConn(c, metadata)
if err != nil {
return nil, err
}
return NewConn(c, ss), nil
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}
// ListenPacketContext implements C.ProxyAdapter
func (ss *Socks5) ListenPacketContext(ctx context.Context, metadata *C.Metadata, opts ...dialer.Option) (_ C.PacketConn, err error) {
c, err := dialer.DialContext(ctx, "tcp", ss.addr, ss.Base.DialOptions(opts...)...)
if err != nil {
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err = fmt.Errorf("%s connect error: %w", ss.addr, err)
return
}
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if ss.tls {
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cc := tls.Client(c, ss.tlsConfig)
err = cc.Handshake()
c = cc
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}
defer safeConnClose(c, err)
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tcpKeepAlive(c)
var user *socks5.User
if ss.user != "" {
user = &socks5.User{
Username: ss.user,
Password: ss.pass,
}
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}
bindAddr, err := socks5.ClientHandshake(c, serializesSocksAddr(metadata), socks5.CmdUDPAssociate, user)
if err != nil {
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err = fmt.Errorf("client hanshake error: %w", err)
return
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}
pc, err := dialer.ListenPacket(ctx, "udp", "", ss.Base.DialOptions(opts...)...)
if err != nil {
return
}
go func() {
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io.Copy(io.Discard, c)
c.Close()
// A UDP association terminates when the TCP connection that the UDP
// ASSOCIATE request arrived on terminates. RFC1928
pc.Close()
}()
// Support unspecified UDP bind address.
bindUDPAddr := bindAddr.UDPAddr()
if bindUDPAddr == nil {
err = errors.New("invalid UDP bind address")
return
} else if bindUDPAddr.IP.IsUnspecified() {
serverAddr, err := resolveUDPAddr("udp", ss.Addr())
if err != nil {
return nil, err
}
bindUDPAddr.IP = serverAddr.IP
}
return newPacketConn(&socksPacketConn{PacketConn: pc, rAddr: bindUDPAddr, tcpConn: c}, ss), nil
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}
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func NewSocks5(option Socks5Option) (*Socks5, error) {
var tlsConfig *tls.Config
if option.TLS {
tlsConfig = &tls.Config{
InsecureSkipVerify: option.SkipCertVerify,
ServerName: option.Server,
}
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if len(option.Fingerprint) == 0 {
tlsConfig = tlsC.GetGlobalFingerprintTLCConfig(tlsConfig)
} else {
var err error
if tlsConfig, err = tlsC.GetSpecifiedFingerprintTLSConfig(tlsConfig, option.Fingerprint); err != nil {
return nil, err
}
}
}
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return &Socks5{
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Base: &Base{
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name: option.Name,
addr: net.JoinHostPort(option.Server, strconv.Itoa(option.Port)),
tp: C.Socks5,
udp: option.UDP,
iface: option.Interface,
rmark: option.RoutingMark,
prefer: C.NewDNSPrefer(option.IPVersion),
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},
user: option.UserName,
pass: option.Password,
tls: option.TLS,
skipCertVerify: option.SkipCertVerify,
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tlsConfig: tlsConfig,
}, nil
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}
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type socksPacketConn struct {
net.PacketConn
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rAddr net.Addr
tcpConn net.Conn
}
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func (uc *socksPacketConn) WriteTo(b []byte, addr net.Addr) (n int, err error) {
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packet, err := socks5.EncodeUDPPacket(socks5.ParseAddrToSocksAddr(addr), b)
if err != nil {
return
}
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return uc.PacketConn.WriteTo(packet, uc.rAddr)
}
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func (uc *socksPacketConn) ReadFrom(b []byte) (int, net.Addr, error) {
n, _, e := uc.PacketConn.ReadFrom(b)
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if e != nil {
return 0, nil, e
}
addr, payload, err := socks5.DecodeUDPPacket(b)
if err != nil {
return 0, nil, err
}
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udpAddr := addr.UDPAddr()
if udpAddr == nil {
return 0, nil, errors.New("parse udp addr error")
}
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// due to DecodeUDPPacket is mutable, record addr length
copy(b, payload)
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return n - len(addr) - 3, udpAddr, nil
}
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func (uc *socksPacketConn) Close() error {
uc.tcpConn.Close()
return uc.PacketConn.Close()
}