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package tunnel
import (
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"context"
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"fmt"
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P "github.com/Dreamacro/clash/component/process"
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"net"
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"net/netip"
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"path/filepath"
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"runtime"
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"strconv"
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"strings"
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"sync"
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"time"
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"github.com/Dreamacro/clash/adapter/inbound"
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"github.com/Dreamacro/clash/component/nat"
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"github.com/Dreamacro/clash/component/resolver"
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"github.com/Dreamacro/clash/component/sniffer"
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C "github.com/Dreamacro/clash/constant"
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"github.com/Dreamacro/clash/constant/provider"
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icontext "github.com/Dreamacro/clash/context"
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"github.com/Dreamacro/clash/log"
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"github.com/Dreamacro/clash/tunnel/statistic"
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)
var (
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tcpQueue = make ( chan C . ConnContext , 200 )
udpQueue = make ( chan * inbound . PacketAdapter , 200 )
natTable = nat . New ( )
rules [ ] C . Rule
proxies = make ( map [ string ] C . Proxy )
providers map [ string ] provider . ProxyProvider
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ruleProviders map [ string ] provider . RuleProvider
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configMux sync . RWMutex
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// Outbound Rule
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mode = Rule
// default timeout for UDP session
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udpTimeout = 60 * time . Second
procesCache string
failTotal int
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)
func init ( ) {
go process ( )
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}
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// TCPIn return fan-in queue
func TCPIn ( ) chan <- C . ConnContext {
return tcpQueue
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}
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// UDPIn return fan-in udp queue
func UDPIn ( ) chan <- * inbound . PacketAdapter {
return udpQueue
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}
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// Rules return all rules
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func Rules ( ) [ ] C . Rule {
return rules
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}
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// UpdateRules handle update rules
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func UpdateRules ( newRules [ ] C . Rule , rp map [ string ] provider . RuleProvider ) {
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configMux . Lock ( )
rules = newRules
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ruleProviders = rp
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configMux . Unlock ( )
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}
// Proxies return all proxies
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func Proxies ( ) map [ string ] C . Proxy {
return proxies
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}
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// Providers return all compatible providers
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func Providers ( ) map [ string ] provider . ProxyProvider {
return providers
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}
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// RuleProviders return all loaded rule providers
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func RuleProviders ( ) map [ string ] provider . RuleProvider {
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return ruleProviders
}
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// UpdateProxies handle update proxies
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func UpdateProxies ( newProxies map [ string ] C . Proxy , newProviders map [ string ] provider . ProxyProvider ) {
configMux . Lock ( )
proxies = newProxies
providers = newProviders
configMux . Unlock ( )
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}
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func UpdateSniffer ( dispatcher * sniffer . SnifferDispatcher ) {
configMux . Lock ( )
sniffer . Dispatcher = * dispatcher
configMux . Unlock ( )
}
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// Mode return current mode
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func Mode ( ) TunnelMode {
return mode
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}
// SetMode change the mode of tunnel
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func SetMode ( m TunnelMode ) {
mode = m
}
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// processUDP starts a loop to handle udp packet
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func processUDP ( ) {
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queue := udpQueue
for conn := range queue {
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handleUDPConn ( conn )
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}
}
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func process ( ) {
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numUDPWorkers := 4
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if num := runtime . GOMAXPROCS ( 0 ) ; num > numUDPWorkers {
numUDPWorkers = num
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}
for i := 0 ; i < numUDPWorkers ; i ++ {
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go processUDP ( )
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}
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queue := tcpQueue
for conn := range queue {
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go handleTCPConn ( conn )
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}
}
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func needLookupIP ( metadata * C . Metadata ) bool {
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return resolver . MappingEnabled ( ) && metadata . Host == "" && metadata . DstIP . IsValid ( )
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}
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func preHandleMetadata ( metadata * C . Metadata ) error {
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// handle IP string on host
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if ip , err := netip . ParseAddr ( metadata . Host ) ; err == nil {
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metadata . DstIP = ip
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metadata . Host = ""
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if ip . Is4 ( ) {
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metadata . AddrType = C . AtypIPv4
} else {
metadata . AddrType = C . AtypIPv6
}
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}
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// preprocess enhanced-mode metadata
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if needLookupIP ( metadata ) {
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host , exist := resolver . FindHostByIP ( metadata . DstIP )
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if exist {
metadata . Host = host
metadata . AddrType = C . AtypDomainName
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metadata . DNSMode = C . DNSMapping
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if resolver . FakeIPEnabled ( ) {
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metadata . DstIP = netip . Addr { }
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metadata . DNSMode = C . DNSFakeIP
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} else if node := resolver . DefaultHosts . Search ( host ) ; node != nil {
// redir-host should lookup the hosts
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metadata . DstIP = node . Data
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}
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} else if resolver . IsFakeIP ( metadata . DstIP ) {
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return fmt . Errorf ( "fake DNS record %s missing" , metadata . DstIP )
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}
}
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// pre resolve process name
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srcPort , err := strconv . Atoi ( metadata . SrcPort )
if err == nil && P . ShouldFindProcess ( metadata ) {
path , err := P . FindProcessName ( metadata . NetWork . String ( ) , metadata . SrcIP , srcPort )
if err != nil {
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if failTotal < 20 {
log . Debugln ( "[Process] find process %s: %v" , metadata . String ( ) , err )
failTotal ++
}
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} else {
metadata . Process = filepath . Base ( path )
metadata . ProcessPath = path
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if procesCache != metadata . Process {
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log . Debugln ( "[Process] %s from process %s" , metadata . String ( ) , path )
}
procesCache = metadata . Process
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}
}
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return nil
}
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func resolveMetadata ( _ C . PlainContext , metadata * C . Metadata ) ( proxy C . Proxy , rule C . Rule , err error ) {
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switch mode {
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case Direct :
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proxy = proxies [ "DIRECT" ]
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case Global :
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proxy = proxies [ "GLOBAL" ]
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// Rule
default :
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proxy , rule , err = match ( metadata )
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}
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return
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}
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func handleUDPConn ( packet * inbound . PacketAdapter ) {
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metadata := packet . Metadata ( )
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if ! metadata . Valid ( ) {
log . Warnln ( "[Metadata] not valid: %#v" , metadata )
return
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}
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// make a fAddr if request ip is fakeip
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var fAddr net . Addr
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if resolver . IsExistFakeIP ( metadata . DstIP ) {
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fAddr = metadata . UDPAddr ( )
}
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if err := preHandleMetadata ( metadata ) ; err != nil {
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log . Debugln ( "[Metadata PreHandle] error: %s" , err )
return
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}
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key := packet . LocalAddr ( ) . String ( )
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handle := func ( ) bool {
pc := natTable . Get ( key )
if pc != nil {
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_ = handleUDPToRemote ( packet , pc , metadata )
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return true
}
return false
}
if handle ( ) {
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return
}
lockKey := key + "-lock"
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cond , loaded := natTable . GetOrCreateLock ( lockKey )
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go func ( ) {
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if loaded {
cond . L . Lock ( )
cond . Wait ( )
handle ( )
cond . L . Unlock ( )
return
}
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defer func ( ) {
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natTable . Delete ( lockKey )
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cond . Broadcast ( )
} ( )
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pCtx := icontext . NewPacketConnContext ( metadata )
proxy , rule , err := resolveMetadata ( pCtx , metadata )
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if err != nil {
log . Warnln ( "[UDP] Parse metadata failed: %s" , err . Error ( ) )
return
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}
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ctx , cancel := context . WithTimeout ( context . Background ( ) , C . DefaultUDPTimeout )
defer cancel ( )
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rawPc , err := proxy . ListenPacketContext ( ctx , metadata )
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if err != nil {
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if rule == nil {
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log . Warnln ( "[UDP] dial %s to %s error: %s" , proxy . Name ( ) , metadata . RemoteAddress ( ) , err . Error ( ) )
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} else {
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log . Warnln ( "[UDP] dial %s (match %s/%s) to %s error: %s" , proxy . Name ( ) , rule . RuleType ( ) . String ( ) , rule . Payload ( ) , metadata . RemoteAddress ( ) , err . Error ( ) )
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}
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return
}
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pCtx . InjectPacketConn ( rawPc )
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actualProxy := proxy . Unwrap ( metadata )
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if actualProxy != nil {
if dst , _ , err := net . SplitHostPort ( actualProxy . Addr ( ) ) ; err == nil {
metadata . RemoteDst = dst
} else {
if addrError , ok := err . ( * net . AddrError ) ; ok && strings . Contains ( addrError . Err , "missing port" ) {
metadata . RemoteDst = actualProxy . Addr ( )
}
}
}
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pc := statistic . NewUDPTracker ( rawPc , statistic . DefaultManager , metadata , rule )
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switch true {
case rule != nil :
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if rule . Payload ( ) != "" {
log . Infoln ( "[UDP] %s --> %s match %s using %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , fmt . Sprintf ( "%s(%s)" , rule . RuleType ( ) . String ( ) , rule . Payload ( ) ) , rawPc . Chains ( ) . String ( ) )
} else {
log . Infoln ( "[UDP] %s --> %s match %s using %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , rule . Payload ( ) , rawPc . Chains ( ) . String ( ) )
}
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case mode == Script :
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log . Infoln ( "[UDP] %s --> %s using SCRIPT %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , rawPc . Chains ( ) . String ( ) )
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case mode == Global :
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log . Infoln ( "[UDP] %s --> %s using GLOBAL" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) )
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case mode == Direct :
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log . Infoln ( "[UDP] %s --> %s using DIRECT" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) )
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default :
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log . Infoln ( "[UDP] %s --> %s doesn't match any rule using DIRECT" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) )
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}
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go handleUDPToLocal ( packet . UDPPacket , pc , key , fAddr )
natTable . Set ( key , pc )
handle ( )
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} ( )
}
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func handleTCPConn ( connCtx C . ConnContext ) {
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defer func ( conn net . Conn ) {
_ = conn . Close ( )
} ( connCtx . Conn ( ) )
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metadata := connCtx . Metadata ( )
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if ! metadata . Valid ( ) {
log . Warnln ( "[Metadata] not valid: %#v" , metadata )
return
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}
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if err := preHandleMetadata ( metadata ) ; err != nil {
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log . Debugln ( "[Metadata PreHandle] error: %s" , err )
return
}
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if sniffer . Dispatcher . Enable ( ) {
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sniffer . Dispatcher . TCPSniff ( connCtx . Conn ( ) , metadata )
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}
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proxy , rule , err := resolveMetadata ( connCtx , metadata )
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if err != nil {
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log . Warnln ( "[Metadata] parse failed: %s" , err . Error ( ) )
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return
}
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ctx , cancel := context . WithTimeout ( context . Background ( ) , C . DefaultTCPTimeout )
defer cancel ( )
remoteConn , err := proxy . DialContext ( ctx , metadata )
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if err != nil {
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if rule == nil {
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log . Warnln ( "[TCP] dial %s to %s error: %s" , proxy . Name ( ) , metadata . RemoteAddress ( ) , err . Error ( ) )
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} else {
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log . Warnln ( "[TCP] dial %s (match %s(%s)) to %s error: %s" , proxy . Name ( ) , rule . RuleType ( ) . String ( ) , rule . Payload ( ) , metadata . RemoteAddress ( ) , err . Error ( ) )
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}
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return
}
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if tcpAddr , ok := remoteConn . RemoteAddr ( ) . ( * net . TCPAddr ) ; ok {
metadata . RemoteDst = tcpAddr . IP . String ( )
}
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remoteConn = statistic . NewTCPTracker ( remoteConn , statistic . DefaultManager , metadata , rule )
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defer func ( remoteConn C . Conn ) {
_ = remoteConn . Close ( )
} ( remoteConn )
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switch true {
case rule != nil :
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if rule . Payload ( ) != "" {
log . Infoln ( "[TCP] %s --> %s match %s using %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , fmt . Sprintf ( "%s(%s)" , rule . RuleType ( ) . String ( ) , rule . Payload ( ) ) , remoteConn . Chains ( ) . String ( ) )
} else {
log . Infoln ( "[TCP] %s --> %s match %s using %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , rule . RuleType ( ) . String ( ) , remoteConn . Chains ( ) . String ( ) )
}
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case mode == Script :
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log . Infoln ( "[TCP] %s --> %s using SCRIPT %s" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) , remoteConn . Chains ( ) . String ( ) )
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case mode == Global :
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log . Infoln ( "[TCP] %s --> %s using GLOBAL" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) )
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case mode == Direct :
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log . Infoln ( "[TCP] %s --> %s using DIRECT" , metadata . SourceDetail ( ) , metadata . RemoteAddress ( ) )
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default :
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log . Infoln ( "[TCP] %s --> %s doesn't match any rule using DIRECT" , metadata . SourceAddress ( ) , metadata . RemoteAddress ( ) )
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}
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handleSocket ( connCtx , remoteConn )
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}
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func shouldResolveIP ( rule C . Rule , metadata * C . Metadata ) bool {
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return rule . ShouldResolveIP ( ) && metadata . Host != "" && ! metadata . DstIP . IsValid ( )
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}
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func match ( metadata * C . Metadata ) ( C . Proxy , C . Rule , error ) {
configMux . RLock ( )
defer configMux . RUnlock ( )
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var resolved bool
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if node := resolver . DefaultHosts . Search ( metadata . Host ) ; node != nil {
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metadata . DstIP = node . Data
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resolved = true
}
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for _ , rule := range rules {
if ! resolved && shouldResolveIP ( rule , metadata ) {
ip , err := resolver . ResolveIP ( metadata . Host )
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if err != nil {
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log . Debugln ( "[DNS] resolve %s error: %s" , metadata . Host , err . Error ( ) )
} else {
log . Debugln ( "[DNS] %s --> %s" , metadata . Host , ip . String ( ) )
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metadata . DstIP = ip
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}
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resolved = true
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}
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if rule . Match ( metadata ) {
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adapter , ok := proxies [ rule . Adapter ( ) ]
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if ! ok {
continue
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}
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if adapter . Type ( ) == C . Pass || ( adapter . Unwrap ( metadata ) != nil && adapter . Unwrap ( metadata ) . Type ( ) == C . Pass ) {
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log . Debugln ( "%s match Pass rule" , adapter . Name ( ) )
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continue
}
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if metadata . NetWork == C . UDP && ! adapter . SupportUDP ( ) {
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log . Debugln ( "%s UDP is not supported" , adapter . Name ( ) )
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continue
}
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extra := rule . RuleExtra ( )
if extra != nil {
if extra . NotMatchNetwork ( metadata . NetWork ) {
continue
}
if extra . NotMatchSourceIP ( metadata . SrcIP ) {
continue
}
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if extra . NotMatchProcessName ( metadata . Process ) {
continue
}
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}
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return adapter , rule , nil
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}
}
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return proxies [ "REJECT" ] , nil , nil
}