Files

287 lines
7.2 KiB
Go

package local
import (
"bufio"
"bytes"
"context"
"errors"
"net"
"time"
"github.com/go-gost/core/chain"
"github.com/go-gost/core/handler"
"github.com/go-gost/core/hop"
md "github.com/go-gost/core/metadata"
"github.com/go-gost/core/observer/stats"
"github.com/go-gost/core/recorder"
ctxvalue "github.com/go-gost/x/ctx"
xnet "github.com/go-gost/x/internal/net"
"github.com/go-gost/x/internal/net/proxyproto"
"github.com/go-gost/x/internal/util/forwarder"
"github.com/go-gost/x/internal/util/sniffing"
tls_util "github.com/go-gost/x/internal/util/tls"
rate_limiter "github.com/go-gost/x/limiter/rate"
xstats "github.com/go-gost/x/observer/stats"
stats_wrapper "github.com/go-gost/x/observer/stats/wrapper"
xrecorder "github.com/go-gost/x/recorder"
"github.com/go-gost/x/registry"
)
func init() {
registry.HandlerRegistry().Register("tcp", NewHandler)
registry.HandlerRegistry().Register("udp", NewHandler)
registry.HandlerRegistry().Register("forward", NewHandler)
}
type forwardHandler struct {
hop hop.Hop
md metadata
options handler.Options
recorder recorder.RecorderObject
certPool tls_util.CertPool
}
func NewHandler(opts ...handler.Option) handler.Handler {
options := handler.Options{}
for _, opt := range opts {
opt(&options)
}
return &forwardHandler{
options: options,
}
}
func (h *forwardHandler) Init(md md.Metadata) (err error) {
if err = h.parseMetadata(md); err != nil {
return
}
for _, ro := range h.options.Recorders {
if ro.Record == xrecorder.RecorderServiceHandler {
h.recorder = ro
break
}
}
if h.md.certificate != nil && h.md.privateKey != nil {
h.certPool = tls_util.NewMemoryCertPool()
}
return
}
// Forward implements handler.Forwarder.
func (h *forwardHandler) Forward(hop hop.Hop) {
h.hop = hop
}
func (h *forwardHandler) Handle(ctx context.Context, conn net.Conn, opts ...handler.HandleOption) (err error) {
defer conn.Close()
start := time.Now()
ro := &xrecorder.HandlerRecorderObject{
Service: h.options.Service,
RemoteAddr: conn.RemoteAddr().String(),
LocalAddr: conn.LocalAddr().String(),
Network: "tcp",
Time: start,
SID: string(ctxvalue.SidFromContext(ctx)),
}
ro.ClientIP = conn.RemoteAddr().String()
if clientAddr := ctxvalue.ClientAddrFromContext(ctx); clientAddr != "" {
ro.ClientIP = string(clientAddr)
} else {
ctx = ctxvalue.ContextWithClientAddr(ctx, ctxvalue.ClientAddr(conn.RemoteAddr().String()))
}
if h, _, _ := net.SplitHostPort(ro.ClientIP); h != "" {
ro.ClientIP = h
}
network := "tcp"
if conn.RemoteAddr().Network() == "udp" {
network = "udp"
}
ro.Network = network
pStats := xstats.Stats{}
conn = stats_wrapper.WrapConn(conn, &pStats)
defer func() {
if err != nil {
ro.Err = err.Error()
}
ro.InputBytes = pStats.Get(stats.KindInputBytes)
ro.OutputBytes = pStats.Get(stats.KindOutputBytes)
ro.Duration = time.Since(start)
}()
if !h.checkRateLimit(conn.RemoteAddr()) {
return rate_limiter.ErrRateLimit
}
var proto string
if network == "tcp" && h.md.sniffing {
if h.md.sniffingTimeout > 0 {
conn.SetReadDeadline(time.Now().Add(h.md.sniffingTimeout))
}
br := bufio.NewReader(conn)
proto, _ = sniffing.Sniff(ctx, br)
ro.Proto = proto
if h.md.sniffingTimeout > 0 {
conn.SetReadDeadline(time.Time{})
}
dial := func(ctx context.Context, network, address string) (net.Conn, error) {
var buf bytes.Buffer
cc, err := h.options.Router.Dial(ctxvalue.ContextWithBuffer(ctx, &buf), "tcp", address)
ro.Route = buf.String()
return cc, err
}
sniffer := &forwarder.Sniffer{
Websocket: h.md.sniffingWebsocket,
WebsocketSampleRate: h.md.sniffingWebsocketSampleRate,
Recorder: h.recorder.Recorder,
RecorderOptions: h.recorder.Options,
Certificate: h.md.certificate,
PrivateKey: h.md.privateKey,
NegotiatedProtocol: h.md.alpn,
CertPool: h.certPool,
MitmBypass: h.md.mitmBypass,
ReadTimeout: h.md.readTimeout,
}
conn = xnet.NewReadWriteConn(br, conn, conn)
switch proto {
case sniffing.ProtoHTTP:
return sniffer.HandleHTTP(ctx, conn,
forwarder.WithDial(dial),
forwarder.WithHop(h.hop),
forwarder.WithBypass(h.options.Bypass),
forwarder.WithHTTPKeepalive(h.md.httpKeepalive),
forwarder.WithRecorderObject(ro),
)
case sniffing.ProtoTLS:
return sniffer.HandleTLS(ctx, conn,
forwarder.WithDial(dial),
forwarder.WithHop(h.hop),
forwarder.WithBypass(h.options.Bypass),
forwarder.WithRecorderObject(ro),
)
}
}
// Determine max retry attempts
maxRetries := h.md.maxRetries
if maxRetries <= 0 {
// Default: try all available nodes
if nl, ok := h.hop.(hop.NodeList); ok {
maxRetries = len(nl.Nodes())
}
if maxRetries <= 0 {
maxRetries = 1
}
}
var triedNodes []string
var lastErr error
var cc net.Conn
h.options.Logger.Debugf("[handler.retry] starting retry loop: maxRetries=%d", maxRetries)
for attempt := 0; attempt < maxRetries; attempt++ {
// Select a target node, excluding previously tried nodes
selectCtx := ctxvalue.ContextWithExcludeNodes(ctx, triedNodes)
var target *chain.Node
if h.hop != nil {
target = h.hop.Select(selectCtx,
hop.ProtocolSelectOption(proto),
)
}
if target == nil {
h.options.Logger.Debugf("[handler.retry] attempt=%d target=nil, triedNodes=%v", attempt, triedNodes)
if lastErr != nil {
return lastErr
}
return errors.New("node not available")
}
h.options.Logger.Debugf("[handler.retry] attempt=%d selected node=%s addr=%s", attempt, target.Name, target.Addr)
// Track this node as tried
triedNodes = append(triedNodes, target.Addr)
addr := target.Addr
if opts := target.Options(); opts != nil {
switch opts.Network {
case "unix":
network = opts.Network
default:
if _, _, err := net.SplitHostPort(addr); err != nil {
addr += ":0"
}
}
}
ro.Network = network
ro.Host = addr
var buf bytes.Buffer
cc, err = h.options.Router.Dial(ctxvalue.ContextWithBuffer(ctx, &buf), network, addr)
ro.Route = buf.String()
if err != nil {
// Mark node as failed for future selections
if marker := target.Marker(); marker != nil {
marker.Mark()
h.options.Logger.Debugf("[handler.retry] attempt=%d dial failed, marked node=%s count=%d err=%v",
attempt, target.Addr, marker.Count(), err)
}
lastErr = err
// Try next node
continue
}
// Success - reset marker and proceed
if marker := target.Marker(); marker != nil {
marker.Reset()
}
defer cc.Close()
cc = proxyproto.WrapClientConn(h.md.proxyProtocol, conn.RemoteAddr(), conn.LocalAddr(), cc)
if err := xnet.Transport(conn, cc); err != nil {
if marker := target.Marker(); marker != nil {
marker.Mark()
h.options.Logger.Debugf("[handler.transport] transport failed, marked node=%s count=%d err=%v",
target.Addr, marker.Count(), err)
}
return err
}
return nil
}
// All retries exhausted
if lastErr != nil {
return lastErr
}
return errors.New("all nodes failed")
}
func (h *forwardHandler) checkRateLimit(addr net.Addr) bool {
if h.options.RateLimiter == nil {
return true
}
host, _, _ := net.SplitHostPort(addr.String())
if limiter := h.options.RateLimiter.Limiter(host); limiter != nil {
return limiter.Allow(1)
}
return true
}