mihomo/constant/metadata.go

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package constant
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import (
"encoding/json"
"fmt"
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"net"
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"net/netip"
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"strconv"
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"github.com/Dreamacro/clash/transport/socks5"
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)
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// Socks addr type
const (
TCP NetWork = iota
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UDP
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ALLNet
InvalidNet = 0xff
)
const (
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HTTP Type = iota
HTTPS
SOCKS4
SOCKS5
SHADOWSOCKS
VMESS
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REDIR
TPROXY
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TUNNEL
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TUN
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TUIC
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HYSTERIA2
INNER
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)
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type NetWork int
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func (n NetWork) String() string {
switch n {
case TCP:
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return "tcp"
case UDP:
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return "udp"
case ALLNet:
return "all"
default:
return "invalid"
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}
}
func (n NetWork) MarshalJSON() ([]byte, error) {
return json.Marshal(n.String())
}
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type Type int
func (t Type) String() string {
switch t {
case HTTP:
return "HTTP"
case HTTPS:
return "HTTPS"
case SOCKS4:
return "Socks4"
case SOCKS5:
return "Socks5"
case SHADOWSOCKS:
return "ShadowSocks"
case VMESS:
return "Vmess"
case REDIR:
return "Redir"
case TPROXY:
return "TProxy"
case TUNNEL:
return "Tunnel"
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case TUN:
return "Tun"
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case TUIC:
return "Tuic"
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case HYSTERIA2:
return "Hysteria2"
case INNER:
return "Inner"
default:
return "Unknown"
}
}
func ParseType(t string) (*Type, error) {
var res Type
switch t {
case "HTTP":
res = HTTP
case "HTTPS":
res = HTTPS
case "SOCKS4":
res = SOCKS4
case "SOCKS5":
res = SOCKS5
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case "SHADOWSOCKS":
res = SHADOWSOCKS
case "VMESS":
res = VMESS
case "REDIR":
res = REDIR
case "TPROXY":
res = TPROXY
case "TUNNEL":
res = TUNNEL
case "TUN":
res = TUN
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case "TUIC":
res = TUIC
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case "HYSTERIA2":
res = HYSTERIA2
case "INNER":
res = INNER
default:
return nil, fmt.Errorf("unknown type: %s", t)
}
return &res, nil
}
func (t Type) MarshalJSON() ([]byte, error) {
return json.Marshal(t.String())
}
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// Metadata is used to store connection address
type Metadata struct {
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NetWork NetWork `json:"network"`
Type Type `json:"type"`
SrcIP netip.Addr `json:"sourceIP"`
DstIP netip.Addr `json:"destinationIP"`
SrcPort uint16 `json:"sourcePort,string"` // `,string` is used to compatible with old version json output
DstPort uint16 `json:"destinationPort,string"` // `,string` is used to compatible with old version json output
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InIP netip.Addr `json:"inboundIP"`
InPort uint16 `json:"inboundPort,string"` // `,string` is used to compatible with old version json output
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InName string `json:"inboundName"`
InUser string `json:"inboundUser"`
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Host string `json:"host"`
DNSMode DNSMode `json:"dnsMode"`
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Uid uint32 `json:"uid"`
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Process string `json:"process"`
ProcessPath string `json:"processPath"`
SpecialProxy string `json:"specialProxy"`
SpecialRules string `json:"specialRules"`
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RemoteDst string `json:"remoteDestination"`
// Only domain rule
SniffHost string `json:"sniffHost"`
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}
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func (m *Metadata) RemoteAddress() string {
return net.JoinHostPort(m.String(), strconv.FormatUint(uint64(m.DstPort), 10))
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}
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func (m *Metadata) SourceAddress() string {
return net.JoinHostPort(m.SrcIP.String(), strconv.FormatUint(uint64(m.SrcPort), 10))
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}
func (m *Metadata) SourceDetail() string {
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if m.Type == INNER {
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return fmt.Sprintf("%s", ClashName)
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}
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switch {
case m.Process != "" && m.Uid != 0:
return fmt.Sprintf("%s(%s, uid=%d)", m.SourceAddress(), m.Process, m.Uid)
case m.Uid != 0:
return fmt.Sprintf("%s(uid=%d)", m.SourceAddress(), m.Uid)
case m.Process != "":
return fmt.Sprintf("%s(%s)", m.SourceAddress(), m.Process)
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default:
return fmt.Sprintf("%s", m.SourceAddress())
}
}
func (m *Metadata) SourceValid() bool {
return m.SrcPort != 0 && m.SrcIP.IsValid()
}
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func (m *Metadata) AddrType() int {
switch true {
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case m.Host != "" || !m.DstIP.IsValid():
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return socks5.AtypDomainName
case m.DstIP.Is4():
return socks5.AtypIPv4
default:
return socks5.AtypIPv6
}
}
func (m *Metadata) Resolved() bool {
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return m.DstIP.IsValid()
}
func (m *Metadata) RuleHost() string {
if len(m.SniffHost) == 0 {
return m.Host
} else {
return m.SniffHost
}
}
// Pure is used to solve unexpected behavior
// when dialing proxy connection in DNSMapping mode.
func (m *Metadata) Pure() *Metadata {
if (m.DNSMode == DNSMapping || m.DNSMode == DNSHosts) && m.DstIP.IsValid() {
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copyM := *m
copyM.Host = ""
return &copyM
}
return m
}
func (m *Metadata) AddrPort() netip.AddrPort {
return netip.AddrPortFrom(m.DstIP.Unmap(), m.DstPort)
}
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func (m *Metadata) UDPAddr() *net.UDPAddr {
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if m.NetWork != UDP || !m.DstIP.IsValid() {
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return nil
}
return net.UDPAddrFromAddrPort(m.AddrPort())
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}
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func (m *Metadata) String() string {
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if m.Host != "" {
return m.Host
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} else if m.DstIP.IsValid() {
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return m.DstIP.String()
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} else {
return "<nil>"
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}
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}
func (m *Metadata) Valid() bool {
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return m.Host != "" || m.DstIP.IsValid()
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}
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func (m *Metadata) SetRemoteAddr(addr net.Addr) error {
if addr == nil {
return nil
}
if rawAddr, ok := addr.(interface{ RawAddr() net.Addr }); ok {
if rawAddr := rawAddr.RawAddr(); rawAddr != nil {
if err := m.SetRemoteAddr(rawAddr); err == nil {
return nil
}
}
}
if addr, ok := addr.(interface{ AddrPort() netip.AddrPort }); ok { // *net.TCPAddr, *net.UDPAddr, M.Socksaddr
if addrPort := addr.AddrPort(); addrPort.Port() != 0 {
m.DstPort = addrPort.Port()
if addrPort.IsValid() { // sing's M.Socksaddr maybe return an invalid AddrPort if it's a DomainName
m.DstIP = addrPort.Addr().Unmap()
return nil
} else {
if addr, ok := addr.(interface{ AddrString() string }); ok { // must be sing's M.Socksaddr
m.Host = addr.AddrString() // actually is M.Socksaddr.Fqdn
return nil
}
}
}
}
return m.SetRemoteAddress(addr.String())
}
func (m *Metadata) SetRemoteAddress(rawAddress string) error {
host, port, err := net.SplitHostPort(rawAddress)
if err != nil {
return err
}
var uint16Port uint16
if port, err := strconv.ParseUint(port, 10, 16); err == nil {
uint16Port = uint16(port)
}
if ip, err := netip.ParseAddr(host); err != nil {
m.Host = host
m.DstIP = netip.Addr{}
} else {
m.Host = ""
m.DstIP = ip.Unmap()
}
m.DstPort = uint16Port
return nil
}