a32ffd5608
When sniffing is enabled, the sniffer extracts the real domain from HTTP Host header or TLS SNI and checks bypass rules against it. However, most handlers were not passing WithBypass(...) to the sniffer, so the sniffer internal bypass check was always skipped. Additionally, the TLS-to-HTTP fallback paths in internal util sniffer and forwarder also omitted bypass when constructing options for the recursive HandleHTTP call after decrypting TLS. Add WithBypass to all sniffer call sites that were missing it across handlers (http, relay, socks4, socks5, ss, sshd, unix) and internal TLS fallback paths. Also fix import ordering in handler/http/connect.go. Fixes go-gost/gost#874
261 lines
6.4 KiB
Go
261 lines
6.4 KiB
Go
package unix
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import (
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"bufio"
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"context"
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"crypto/tls"
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"errors"
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"io"
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"net"
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"time"
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"github.com/go-gost/core/chain"
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"github.com/go-gost/core/handler"
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"github.com/go-gost/core/hop"
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"github.com/go-gost/core/logger"
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md "github.com/go-gost/core/metadata"
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"github.com/go-gost/core/observer/stats"
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"github.com/go-gost/core/recorder"
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ctxvalue "github.com/go-gost/x/ctx"
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xio "github.com/go-gost/x/internal/io"
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xnet "github.com/go-gost/x/internal/net"
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"github.com/go-gost/x/internal/util/sniffing"
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tls_util "github.com/go-gost/x/internal/util/tls"
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xstats "github.com/go-gost/x/observer/stats"
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stats_wrapper "github.com/go-gost/x/observer/stats/wrapper"
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xrecorder "github.com/go-gost/x/recorder"
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"github.com/go-gost/x/registry"
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)
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func init() {
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registry.HandlerRegistry().Register("unix", NewHandler)
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}
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type unixHandler struct {
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hop hop.Hop
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md metadata
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options handler.Options
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recorder recorder.RecorderObject
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certPool tls_util.CertPool
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}
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func NewHandler(opts ...handler.Option) handler.Handler {
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options := handler.Options{}
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for _, opt := range opts {
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opt(&options)
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}
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return &unixHandler{
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options: options,
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}
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}
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func (h *unixHandler) Init(md md.Metadata) (err error) {
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if err = h.parseMetadata(md); err != nil {
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return
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}
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for _, ro := range h.options.Recorders {
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if ro.Record == xrecorder.RecorderServiceHandler {
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h.recorder = ro
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break
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}
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}
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if h.md.certificate != nil && h.md.privateKey != nil {
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h.certPool = tls_util.NewMemoryCertPool()
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}
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return
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}
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// Forward implements handler.Forwarder.
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func (h *unixHandler) Forward(hop hop.Hop) {
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h.hop = hop
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}
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func (h *unixHandler) Handle(ctx context.Context, conn net.Conn, opts ...handler.HandleOption) (err error) {
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defer conn.Close()
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start := time.Now()
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ro := &xrecorder.HandlerRecorderObject{
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Service: h.options.Service,
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Network: "unix",
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RemoteAddr: conn.RemoteAddr().String(),
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LocalAddr: conn.LocalAddr().String(),
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Time: start,
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SID: string(ctxvalue.SidFromContext(ctx)),
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}
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ro.ClientIP, _, _ = net.SplitHostPort(conn.RemoteAddr().String())
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log := h.options.Logger.WithFields(map[string]any{
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"remote": conn.RemoteAddr().String(),
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"local": conn.LocalAddr().String(),
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"sid": ctxvalue.SidFromContext(ctx),
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"client": ro.ClientIP,
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"network": ro.Network,
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})
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log.Infof("%s <> %s", conn.RemoteAddr(), conn.LocalAddr())
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pStats := xstats.Stats{}
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conn = stats_wrapper.WrapConn(conn, &pStats)
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defer func() {
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if err != nil {
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ro.Err = err.Error()
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}
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ro.InputBytes = pStats.Get(stats.KindInputBytes)
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ro.OutputBytes = pStats.Get(stats.KindOutputBytes)
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ro.Duration = time.Since(start)
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if err := ro.Record(ctx, h.recorder.Recorder); err != nil {
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log.Errorf("record: %v", err)
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}
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log.WithFields(map[string]any{
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"duration": time.Since(start),
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"inputBytes": ro.InputBytes,
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"outputBytes": ro.OutputBytes,
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}).Infof("%s >< %s", conn.RemoteAddr(), conn.LocalAddr())
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}()
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if h.hop != nil {
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target := h.hop.Select(ctx)
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if target == nil {
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err = errors.New("target not available")
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log.Error(err)
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return err
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}
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log = log.WithFields(map[string]any{
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"node": target.Name,
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"dst": target.Addr,
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"host": target.Addr,
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})
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ro.Host = target.Addr
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return h.forwardUnix(ctx, conn, target, ro, log)
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}
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cc, err := h.options.Router.Dial(ctx, "tcp", "@")
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if err != nil {
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log.Error(err)
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return err
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}
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defer cc.Close()
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if h.md.sniffing {
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if h.md.sniffingTimeout > 0 {
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conn.SetReadDeadline(time.Now().Add(h.md.sniffingTimeout))
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}
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br := bufio.NewReader(conn)
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proto, _ := sniffing.Sniff(ctx, br)
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ro.Proto = proto
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if h.md.sniffingTimeout > 0 {
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conn.SetReadDeadline(time.Time{})
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}
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dial := func(ctx context.Context, network, address string) (net.Conn, error) {
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return cc, nil
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}
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dialTLS := func(ctx context.Context, network, address string, cfg *tls.Config) (net.Conn, error) {
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return cc, nil
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}
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sniffer := &sniffing.Sniffer{
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Recorder: h.recorder.Recorder,
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RecorderOptions: h.recorder.Options,
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Certificate: h.md.certificate,
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PrivateKey: h.md.privateKey,
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NegotiatedProtocol: h.md.alpn,
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CertPool: h.certPool,
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MitmBypass: h.md.mitmBypass,
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ReadTimeout: h.md.readTimeout,
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}
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conn = xnet.NewReadWriteConn(br, conn, conn)
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switch proto {
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case sniffing.ProtoHTTP:
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return sniffer.HandleHTTP(ctx, "tcp", conn,
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sniffing.WithService(h.options.Service),
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sniffing.WithDial(dial),
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sniffing.WithDialTLS(dialTLS),
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sniffing.WithBypass(h.options.Bypass),
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sniffing.WithRecorderObject(ro),
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sniffing.WithLog(log),
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)
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case sniffing.ProtoTLS:
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return sniffer.HandleTLS(ctx, "tcp", conn,
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sniffing.WithService(h.options.Service),
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sniffing.WithDial(dial),
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sniffing.WithDialTLS(dialTLS),
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sniffing.WithBypass(h.options.Bypass),
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sniffing.WithRecorderObject(ro),
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sniffing.WithLog(log),
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)
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}
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}
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t := time.Now()
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log.Infof("%s <-> %s", conn.LocalAddr(), "@")
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// xnet.Transport(conn, cc)
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xnet.Pipe(ctx, conn, cc)
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log.WithFields(map[string]any{
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"duration": time.Since(t),
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}).Infof("%s >-< %s", conn.LocalAddr(), "@")
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return nil
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}
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func (h *unixHandler) forwardUnix(ctx context.Context, conn net.Conn, target *chain.Node, ro *xrecorder.HandlerRecorderObject, log logger.Logger) (err error) {
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log.Debugf("%s >> %s", conn.LocalAddr(), target.Addr)
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var cc io.ReadWriteCloser
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if opts := h.options.Router.Options(); opts != nil && opts.Chain != nil {
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cc, err = h.options.Router.Dial(ctx, "unix", target.Addr)
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} else {
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cc, err = (&net.Dialer{}).DialContext(ctx, "unix", target.Addr)
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}
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if err != nil {
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log.Error(err)
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return err
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}
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defer cc.Close()
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var rw io.ReadWriteCloser = conn
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if h.md.sniffing {
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if h.md.sniffingTimeout > 0 {
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conn.SetReadDeadline(time.Now().Add(h.md.sniffingTimeout))
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}
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br := bufio.NewReader(conn)
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proto, _ := sniffing.Sniff(ctx, br)
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ro.Proto = proto
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if h.md.sniffingTimeout > 0 {
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conn.SetReadDeadline(time.Time{})
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}
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rw = xio.NewReadWriteCloser(br, conn, conn)
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switch proto {
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case sniffing.ProtoHTTP:
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ro2 := &xrecorder.HandlerRecorderObject{}
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*ro2 = *ro
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ro.Time = time.Time{}
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return h.handleHTTP(ctx, rw, cc, ro2, log)
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case sniffing.ProtoTLS:
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return h.handleTLS(ctx, rw, cc, ro, log)
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}
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}
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t := time.Now()
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log.Infof("%s <-> %s", conn.LocalAddr(), target.Addr)
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// xnet.Transport(rw, cc)
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xnet.Pipe(ctx, rw, cc)
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log.WithFields(map[string]any{
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"duration": time.Since(t),
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}).Infof("%s >-< %s", conn.LocalAddr(), target.Addr)
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return nil
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}
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