mihomo/tunnel/tunnel.go

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package tunnel
import (
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"fmt"
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"net"
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"sync"
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"time"
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InboundAdapter "github.com/Dreamacro/clash/adapters/inbound"
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C "github.com/Dreamacro/clash/constant"
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"github.com/Dreamacro/clash/dns"
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"github.com/Dreamacro/clash/log"
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channels "gopkg.in/eapache/channels.v1"
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)
var (
tunnel *Tunnel
once sync.Once
)
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// Tunnel handle relay inbound proxy and outbound proxy
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type Tunnel struct {
queue *channels.InfiniteChannel
rules []C.Rule
proxies map[string]C.Proxy
configMux *sync.RWMutex
traffic *C.Traffic
resolver *dns.Resolver
// experimental features
ignoreResolveFail bool
// Outbound Rule
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mode Mode
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}
// Add request to queue
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func (t *Tunnel) Add(req C.ServerAdapter) {
t.queue.In() <- req
}
// Traffic return traffic of all connections
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func (t *Tunnel) Traffic() *C.Traffic {
return t.traffic
}
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// Rules return all rules
func (t *Tunnel) Rules() []C.Rule {
return t.rules
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}
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// UpdateRules handle update rules
func (t *Tunnel) UpdateRules(rules []C.Rule) {
t.configMux.Lock()
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t.rules = rules
t.configMux.Unlock()
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}
// Proxies return all proxies
func (t *Tunnel) Proxies() map[string]C.Proxy {
return t.proxies
}
// UpdateProxies handle update proxies
func (t *Tunnel) UpdateProxies(proxies map[string]C.Proxy) {
t.configMux.Lock()
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t.proxies = proxies
t.configMux.Unlock()
}
// UpdateExperimental handle update experimental config
func (t *Tunnel) UpdateExperimental(ignoreResolveFail bool) {
t.configMux.Lock()
t.ignoreResolveFail = ignoreResolveFail
t.configMux.Unlock()
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}
// Mode return current mode
func (t *Tunnel) Mode() Mode {
return t.mode
}
// SetMode change the mode of tunnel
func (t *Tunnel) SetMode(mode Mode) {
t.mode = mode
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}
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// SetResolver change the resolver of tunnel
func (t *Tunnel) SetResolver(resolver *dns.Resolver) {
t.resolver = resolver
}
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func (t *Tunnel) hasResolver() bool {
return t.resolver != nil
}
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func (t *Tunnel) process() {
queue := t.queue.Out()
for {
elm := <-queue
conn := elm.(C.ServerAdapter)
go t.handleConn(conn)
}
}
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func (t *Tunnel) resolveIP(host string) (net.IP, error) {
if t.resolver == nil {
ipAddr, err := net.ResolveIPAddr("ip", host)
if err != nil {
return nil, err
}
return ipAddr.IP, nil
}
return t.resolver.ResolveIP(host)
}
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func (t *Tunnel) needLookupIP(metadata *C.Metadata) bool {
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return t.hasResolver() && (t.resolver.IsMapping() || t.resolver.IsFakeIP()) && metadata.Host == "" && metadata.IP != nil
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}
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func (t *Tunnel) handleConn(localConn C.ServerAdapter) {
defer localConn.Close()
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metadata := localConn.Metadata()
if !metadata.Valid() {
log.Warnln("[Metadata] not valid: %#v", metadata)
return
}
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// preprocess enhanced-mode metadata
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if t.needLookupIP(metadata) {
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host, exist := t.resolver.IPToHost(*metadata.IP)
if exist {
metadata.Host = host
metadata.AddrType = C.AtypDomainName
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if t.resolver.IsFakeIP() {
metadata.IP = nil
}
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}
}
var proxy C.Proxy
switch t.mode {
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case Direct:
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proxy = t.proxies["DIRECT"]
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case Global:
proxy = t.proxies["GLOBAL"]
// Rule
default:
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var err error
proxy, err = t.match(metadata)
if err != nil {
return
}
}
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if metadata.NetWork == C.UDP {
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pc, addr, err := proxy.DialUDP(metadata)
defer pc.Close()
if err != nil {
log.Warnln("Proxy[%s] connect [%s --> %s] error: %s", proxy.Name(), metadata.SourceIP.String(), metadata.String(), err.Error())
}
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t.handleUDPOverTCP(localConn, pc, addr)
return
}
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remoConn, err := proxy.Dial(metadata)
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if err != nil {
log.Warnln("Proxy[%s] connect [%s --> %s] error: %s", proxy.Name(), metadata.SourceIP.String(), metadata.String(), err.Error())
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return
}
defer remoConn.Close()
switch adapter := localConn.(type) {
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case *InboundAdapter.HTTPAdapter:
t.handleHTTP(adapter, remoConn)
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case *InboundAdapter.SocketAdapter:
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t.handleSocket(adapter, remoConn)
}
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}
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func (t *Tunnel) shouldResolveIP(rule C.Rule, metadata *C.Metadata) bool {
return (rule.RuleType() == C.GEOIP || rule.RuleType() == C.IPCIDR) && metadata.Host != "" && metadata.IP == nil
}
func (t *Tunnel) match(metadata *C.Metadata) (C.Proxy, error) {
t.configMux.RLock()
defer t.configMux.RUnlock()
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var resolved bool
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for _, rule := range t.rules {
if !resolved && t.shouldResolveIP(rule, metadata) {
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ip, err := t.resolveIP(metadata.Host)
if err != nil {
if !t.ignoreResolveFail {
return nil, fmt.Errorf("[DNS] resolve %s error: %s", metadata.Host, err.Error())
}
log.Debugln("[DNS] resolve %s error: %s", metadata.Host, err.Error())
} else {
log.Debugln("[DNS] %s --> %s", metadata.Host, ip.String())
metadata.IP = &ip
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}
resolved = true
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}
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if rule.IsMatch(metadata) {
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adapter, ok := t.proxies[rule.Adapter()]
if !ok {
continue
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}
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if metadata.NetWork == C.UDP && !adapter.SupportUDP() {
continue
}
log.Infoln("%s --> %v match %s using %s", metadata.SourceIP.String(), metadata.String(), rule.RuleType().String(), rule.Adapter())
return adapter, nil
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}
}
log.Infoln("%s --> %v doesn't match any rule using DIRECT", metadata.SourceIP.String(), metadata.String())
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return t.proxies["DIRECT"], nil
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}
func newTunnel() *Tunnel {
return &Tunnel{
queue: channels.NewInfiniteChannel(),
proxies: make(map[string]C.Proxy),
configMux: &sync.RWMutex{},
traffic: C.NewTraffic(time.Second),
mode: Rule,
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}
}
// Instance return singleton instance of Tunnel
func Instance() *Tunnel {
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once.Do(func() {
tunnel = newTunnel()
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go tunnel.process()
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})
return tunnel
}