Files
sing-box-extended/transport/call/tunnel/relay_bridge.go

663 lines
16 KiB
Go

package tunnel
import (
"bytes"
"context"
"fmt"
"io"
"net"
"sync"
"sync/atomic"
"time"
"github.com/sagernet/sing-box/transport/call/common"
"github.com/sagernet/sing/common/logger"
M "github.com/sagernet/sing/common/metadata"
N "github.com/sagernet/sing/common/network"
)
type udpClient struct {
pending chan []byte
closed atomic.Bool
addr string
}
type RelayBridge struct {
tunnelMu sync.RWMutex
tunnel DataTunnel
conns sync.Map
udpClients sync.Map
nextID atomic.Uint32
logger logger.ContextLogger
mode string
readBuf int
ready chan struct{}
once sync.Once
closed atomic.Bool
dialer N.Dialer
acceptHandlerMu sync.Mutex
acceptHandler func(conn net.Conn, destination string)
udpAcceptHandlerMu sync.Mutex
udpAcceptHandler func(conn net.Conn, destination string)
onPeerConfigMu sync.Mutex
onPeerConfig func(fps, batch, trackCount int)
}
func NewRelayBridge(tunnel DataTunnel, mode string, readBuf int, dialer N.Dialer, logger logger.ContextLogger) *RelayBridge {
rb := &RelayBridge{
tunnel: tunnel,
logger: logger,
mode: mode,
readBuf: readBuf,
dialer: dialer,
ready: make(chan struct{}),
}
tunnel.SetOnData(rb.handleTunnelData)
tunnel.SetOnClose(rb.handleTunnelClose)
return rb
}
func (rb *RelayBridge) SetAcceptHandler(fn func(conn net.Conn, destination string)) {
rb.acceptHandlerMu.Lock()
rb.acceptHandler = fn
rb.acceptHandlerMu.Unlock()
}
func (rb *RelayBridge) SetUDPAcceptHandler(fn func(conn net.Conn, destination string)) {
rb.udpAcceptHandlerMu.Lock()
rb.udpAcceptHandler = fn
rb.udpAcceptHandlerMu.Unlock()
}
func (rb *RelayBridge) SetOnPeerConfig(fn func(fps, batch, trackCount int)) {
rb.onPeerConfigMu.Lock()
rb.onPeerConfig = fn
rb.onPeerConfigMu.Unlock()
}
func (rb *RelayBridge) DialContext(ctx context.Context, destination string) (net.Conn, error) {
if rb.closed.Load() {
return nil, fmt.Errorf("relay: bridge already closed")
}
if M.ParseSocksaddr(destination).IsIPv6() {
return nil, fmt.Errorf("relay: network unreachable (ipv6): %s", common.MaskAddr(destination))
}
select {
case <-rb.ready:
case <-ctx.Done():
return nil, ctx.Err()
}
id := rb.nextID.Add(1)
tc := newTunnelConn(id, rb)
rb.conns.Store(id, tc)
rb.logger.Debug(fmt.Sprintf("relay: DIAL %d -> %s", id, common.MaskAddr(destination)))
rb.send(id, MsgConnect, []byte(destination))
select {
case err := <-tc.rdy:
if err != nil {
rb.conns.Delete(id)
return nil, err
}
return tc, nil
case <-ctx.Done():
rb.conns.Delete(id)
rb.send(id, MsgClose, nil)
return nil, ctx.Err()
}
}
func (rb *RelayBridge) ListenPacket(ctx context.Context, destination string) (net.Conn, error) {
if rb.closed.Load() {
return nil, fmt.Errorf("relay: bridge already closed")
}
if M.ParseSocksaddr(destination).IsIPv6() {
return nil, fmt.Errorf("relay: network unreachable (ipv6): %s", common.MaskAddr(destination))
}
select {
case <-rb.ready:
case <-ctx.Done():
return nil, ctx.Err()
}
id := rb.nextID.Add(1)
uc := &udpClient{pending: make(chan []byte, 64), addr: destination}
rb.udpClients.Store(id, uc)
return &tunnelPacketConn{id: id, rb: rb, uc: uc, destStr: destination}, nil
}
func (rb *RelayBridge) Reset() {
rb.closeAll()
}
func (rb *RelayBridge) Close() {
if !rb.closed.CompareAndSwap(false, true) {
return
}
rb.closeAll()
}
func (rb *RelayBridge) MarkReady() {
rb.once.Do(func() { close(rb.ready) })
}
func (rb *RelayBridge) currentTunnel() DataTunnel {
rb.tunnelMu.RLock()
defer rb.tunnelMu.RUnlock()
return rb.tunnel
}
func (rb *RelayBridge) SwapTunnel(newTunnel DataTunnel) {
rb.tunnelMu.Lock()
rb.tunnel = newTunnel
rb.tunnelMu.Unlock()
newTunnel.SetOnData(rb.handleTunnelData)
newTunnel.SetOnClose(rb.handleTunnelClose)
rb.closeAll()
}
func (rb *RelayBridge) IsClosed() bool {
return rb.closed.Load()
}
func (rb *RelayBridge) handleTunnelClose() {
rb.closeAll()
}
func (rb *RelayBridge) closeAll() {
var ids []uint32
rb.conns.Range(func(key, value any) bool {
if id, ok := key.(uint32); ok {
ids = append(ids, id)
}
if c, ok := value.(net.Conn); ok {
c.Close()
}
rb.conns.Delete(key)
return true
})
udpCount := 0
rb.udpClients.Range(func(key, value any) bool {
udpCount++
if uc, ok := value.(*udpClient); ok {
uc.closed.Store(true)
close(uc.pending)
}
rb.udpClients.Delete(key)
return true
})
rb.logger.Debug(fmt.Sprintf("relay: closeAll mode=%s tcp=%d udp=%d ids=%v nextID=%d", rb.mode, len(ids), udpCount, ids, rb.nextID.Load()))
}
func (rb *RelayBridge) send(connID uint32, msgType byte, payload []byte) {
frame := EncodeFrame(connID, msgType, payload)
rb.currentTunnel().SendData(frame)
}
func (rb *RelayBridge) handleTunnelData(data []byte) {
DecodeFrames(data, func(connID uint32, msgType byte, payload []byte) {
if connID == ControlConnID && msgType == MsgConfig {
fps, batch, trackCount, ok := DecodeVP8Config(payload)
if !ok {
return
}
if rb.mode == "creator" {
rb.logger.Debug(fmt.Sprintf("relay: peer requested vp8 pacing fps=%d batch=%d trackCount=%d", fps, batch, trackCount))
rb.currentTunnel().Reconfigure(fps, batch)
rb.send(ControlConnID, MsgConfigAck, nil)
rb.onPeerConfigMu.Lock()
cb := rb.onPeerConfig
rb.onPeerConfigMu.Unlock()
if cb != nil {
cb(fps, batch, trackCount)
}
}
return
}
if connID == ControlConnID && msgType == MsgConfigAck {
return
}
switch rb.mode {
case "joiner":
rb.handleJoinerMessage(connID, msgType, payload)
case "creator":
rb.handleCreatorMessage(connID, msgType, payload)
}
})
}
func (rb *RelayBridge) handleJoinerMessage(connID uint32, msgType byte, payload []byte) {
if msgType == MsgUDPReply {
uval, ok := rb.udpClients.Load(connID)
if !ok {
return
}
uc := uval.(*udpClient)
if uc.closed.Load() {
return
}
cp := make([]byte, len(payload))
copy(cp, payload)
select {
case uc.pending <- cp:
default:
}
return
}
val, ok := rb.conns.Load(connID)
if !ok {
if msgType != MsgClose {
rb.logger.Debug(fmt.Sprintf("relay[joiner]: drop msgType=%d for unknown conn %d (payload=%dB)", msgType, connID, len(payload)))
}
return
}
tc := val.(*tunnelConn)
switch msgType {
case MsgConnectOK:
select {
case tc.rdy <- nil:
default:
}
case MsgConnectErr:
select {
case tc.rdy <- fmt.Errorf("%s", payload):
default:
}
case MsgData:
tc.deliver(payload)
case MsgClose:
tc.remoteClosed()
rb.conns.Delete(connID)
}
}
func (rb *RelayBridge) handleCreatorMessage(connID uint32, msgType byte, payload []byte) {
switch msgType {
case MsgConnect:
rb.acceptHandlerMu.Lock()
handler := rb.acceptHandler
rb.acceptHandlerMu.Unlock()
if handler != nil {
destination := string(payload)
tc := newTunnelConn(connID, rb)
rb.conns.Store(connID, tc)
rb.send(connID, MsgConnectOK, nil)
go handler(tc, destination)
return
}
go rb.connectTCP(connID, string(payload))
case MsgUDP:
payloadCopy := make([]byte, len(payload))
copy(payloadCopy, payload)
go rb.handleUDP(connID, payloadCopy)
case MsgData:
val, ok := rb.conns.Load(connID)
if !ok {
rb.logger.Debug(fmt.Sprintf("relay[creator]: drop MsgData for unknown conn %d (payload=%dB)", connID, len(payload)))
rb.send(connID, MsgClose, nil)
return
}
switch c := val.(type) {
case *tunnelConn:
c.deliver(payload)
case net.Conn:
if _, err := c.Write(payload); err != nil {
rb.logger.Debug(fmt.Sprintf("relay[creator]: write to target %d failed: %s", connID, common.MaskError(err)))
}
}
case MsgClose:
found := false
if val, ok := rb.conns.LoadAndDelete(connID); ok {
found = true
switch c := val.(type) {
case *tunnelConn:
c.remoteClosed()
case net.Conn:
c.Close()
}
}
if uval, ok := rb.udpClients.LoadAndDelete(connID); ok {
found = true
switch uc := uval.(type) {
case *creatorUDPConn:
uc.remoteClosed()
case net.Conn:
uc.Close()
}
}
if !found {
rb.logger.Debug(fmt.Sprintf("relay[creator]: drop MsgClose for unknown conn %d", connID))
}
}
}
func (rb *RelayBridge) handleUDP(connID uint32, payload []byte) {
if len(payload) < 2 {
return
}
addrLen := int(payload[0])
if addrLen == 0 || len(payload) < 1+addrLen {
return
}
if bytes.IndexByte(payload[1:1+addrLen], 0) != -1 {
return
}
addr := string(payload[1 : 1+addrLen])
data := payload[1+addrLen:]
rb.udpAcceptHandlerMu.Lock()
handler := rb.udpAcceptHandler
rb.udpAcceptHandlerMu.Unlock()
if handler != nil {
var cuc *creatorUDPConn
if val, ok := rb.udpClients.Load(connID); ok {
existing, ok := val.(*creatorUDPConn)
if !ok {
return
}
cuc = existing
} else {
created := newCreatorUDPConn(connID, rb, addr)
if actual, loaded := rb.udpClients.LoadOrStore(connID, created); loaded {
existing, ok := actual.(*creatorUDPConn)
if !ok {
return
}
cuc = existing
} else {
cuc = created
go handler(cuc, addr)
}
}
cuc.deliver(data)
return
}
var egress net.Conn
if val, ok := rb.udpClients.Load(connID); ok {
existing, ok := val.(net.Conn)
if !ok {
return
}
egress = existing
} else {
ctx, cancel := context.WithTimeout(context.Background(), 10*time.Second)
created, err := rb.dialer.DialContext(ctx, N.NetworkUDP, M.ParseSocksaddr(addr))
cancel()
if err != nil {
rb.logger.Warn(fmt.Sprintf("relay[creator]: UDP %d open %s failed: %v", connID, common.MaskAddr(addr), err))
return
}
if actual, loaded := rb.udpClients.LoadOrStore(connID, created); loaded {
created.Close()
existing, ok := actual.(net.Conn)
if !ok {
return
}
egress = existing
} else {
egress = created
go func(conn net.Conn, id uint32, target string) {
defer conn.Close()
defer rb.udpClients.Delete(id)
defer rb.send(id, MsgClose, nil)
buf := make([]byte, common.UDPBufSize)
for {
conn.SetReadDeadline(time.Now().Add(60 * time.Second))
n, err := conn.Read(buf)
if err != nil {
return
}
rb.send(id, MsgUDPReply, buf[:n])
}
}(egress, connID, addr)
}
}
egress.SetWriteDeadline(time.Now().Add(5 * time.Second))
if _, err := egress.Write(data); err != nil {
rb.logger.Debug(fmt.Sprintf("relay[creator]: UDP %d write %s failed: %v", connID, common.MaskAddr(addr), err))
}
}
func (rb *RelayBridge) connectTCP(connID uint32, addr string) {
rb.logger.Debug(fmt.Sprintf("relay: CONNECT %d -> %s", connID, common.MaskAddr(addr)))
ctx, cancel := context.WithTimeout(context.Background(), 10*time.Second)
conn, err := rb.dialer.DialContext(ctx, N.NetworkTCP, M.ParseSocksaddr(addr))
cancel()
if err != nil {
rb.logger.Warn(fmt.Sprintf("relay: CONNECT %d failed: %s", connID, common.MaskError(err)))
rb.send(connID, MsgConnectErr, []byte(common.MaskError(err)))
return
}
rb.conns.Store(connID, conn)
rb.send(connID, MsgConnectOK, nil)
rb.logger.Debug(fmt.Sprintf("relay: CONNECTED %d -> %s", connID, common.MaskAddr(addr)))
buf := make([]byte, rb.readBuf)
var totalRead int64
var reads int
for {
n, err := conn.Read(buf)
if n > 0 {
rb.send(connID, MsgData, buf[:n])
totalRead += int64(n)
reads++
}
if err != nil {
if err != io.EOF {
rb.logger.Warn(fmt.Sprintf("relay: conn %d read error: %s (read %d times, %dB)", connID, common.MaskError(err), reads, totalRead))
}
break
}
}
rb.send(connID, MsgClose, nil)
rb.conns.Delete(connID)
}
type tunnelAddr struct{}
func (tunnelAddr) Network() string { return "call" }
func (tunnelAddr) String() string { return "call" }
type tunnelConn struct {
id uint32
rb *RelayBridge
rdy chan error
readBuf bytes.Buffer
readMu sync.Mutex
readCond chan struct{}
closed atomic.Bool
closeCh chan struct{}
}
func newTunnelConn(id uint32, rb *RelayBridge) *tunnelConn {
return &tunnelConn{
id: id,
rb: rb,
rdy: make(chan error, 1),
readCond: make(chan struct{}, 1),
closeCh: make(chan struct{}),
}
}
func (tc *tunnelConn) Read(b []byte) (int, error) {
for {
tc.readMu.Lock()
if tc.readBuf.Len() > 0 {
n, _ := tc.readBuf.Read(b)
tc.readMu.Unlock()
return n, nil
}
tc.readMu.Unlock()
select {
case <-tc.closeCh:
tc.readMu.Lock()
if tc.readBuf.Len() > 0 {
n, _ := tc.readBuf.Read(b)
tc.readMu.Unlock()
return n, nil
}
tc.readMu.Unlock()
return 0, io.EOF
case <-tc.readCond:
}
}
}
func (tc *tunnelConn) Write(b []byte) (int, error) {
if tc.closed.Load() {
return 0, io.ErrClosedPipe
}
tc.rb.send(tc.id, MsgData, b)
return len(b), nil
}
func (tc *tunnelConn) Close() error {
if tc.closed.CompareAndSwap(false, true) {
close(tc.closeCh)
tc.rb.send(tc.id, MsgClose, nil)
tc.rb.conns.Delete(tc.id)
}
return nil
}
func (tc *tunnelConn) LocalAddr() net.Addr { return tunnelAddr{} }
func (tc *tunnelConn) RemoteAddr() net.Addr { return tunnelAddr{} }
func (tc *tunnelConn) SetDeadline(t time.Time) error { return nil }
func (tc *tunnelConn) SetReadDeadline(t time.Time) error { return nil }
func (tc *tunnelConn) SetWriteDeadline(t time.Time) error { return nil }
func (tc *tunnelConn) deliver(payload []byte) {
tc.readMu.Lock()
tc.readBuf.Write(payload)
tc.readMu.Unlock()
select {
case tc.readCond <- struct{}{}:
default:
}
}
func (tc *tunnelConn) remoteClosed() {
if tc.closed.CompareAndSwap(false, true) {
close(tc.closeCh)
}
}
type tunnelPacketConn struct {
id uint32
rb *RelayBridge
uc *udpClient
destStr string
}
func (pc *tunnelPacketConn) Read(b []byte) (int, error) {
data, ok := <-pc.uc.pending
if !ok {
return 0, io.EOF
}
n := copy(b, data)
return n, nil
}
func (pc *tunnelPacketConn) Write(b []byte) (int, error) {
if pc.uc.closed.Load() {
return 0, io.ErrClosedPipe
}
payload := make([]byte, 1+len(pc.destStr)+len(b))
payload[0] = byte(len(pc.destStr))
copy(payload[1:], pc.destStr)
copy(payload[1+len(pc.destStr):], b)
pc.rb.send(pc.id, MsgUDP, payload)
return len(b), nil
}
func (pc *tunnelPacketConn) Close() error {
if pc.uc.closed.CompareAndSwap(false, true) {
close(pc.uc.pending)
pc.rb.udpClients.Delete(pc.id)
pc.rb.send(pc.id, MsgClose, nil)
}
return nil
}
func (pc *tunnelPacketConn) LocalAddr() net.Addr { return tunnelAddr{} }
func (pc *tunnelPacketConn) RemoteAddr() net.Addr { return tunnelAddr{} }
func (pc *tunnelPacketConn) SetDeadline(t time.Time) error { return nil }
func (pc *tunnelPacketConn) SetReadDeadline(t time.Time) error { return nil }
func (pc *tunnelPacketConn) SetWriteDeadline(t time.Time) error { return nil }
type creatorUDPConn struct {
id uint32
rb *RelayBridge
addr string
readBuf bytes.Buffer
readMu sync.Mutex
readCond chan struct{}
closed atomic.Bool
closeCh chan struct{}
}
func newCreatorUDPConn(id uint32, rb *RelayBridge, addr string) *creatorUDPConn {
return &creatorUDPConn{
id: id,
rb: rb,
addr: addr,
readCond: make(chan struct{}, 1),
closeCh: make(chan struct{}),
}
}
func (uc *creatorUDPConn) Read(b []byte) (int, error) {
for {
uc.readMu.Lock()
if uc.readBuf.Len() > 0 {
n, _ := uc.readBuf.Read(b)
uc.readMu.Unlock()
return n, nil
}
uc.readMu.Unlock()
select {
case <-uc.closeCh:
return 0, io.EOF
case <-uc.readCond:
}
}
}
func (uc *creatorUDPConn) Write(b []byte) (int, error) {
if uc.closed.Load() {
return 0, io.ErrClosedPipe
}
uc.rb.send(uc.id, MsgUDPReply, b)
return len(b), nil
}
func (uc *creatorUDPConn) Close() error {
if uc.closed.CompareAndSwap(false, true) {
close(uc.closeCh)
uc.rb.send(uc.id, MsgClose, nil)
uc.rb.udpClients.Delete(uc.id)
}
return nil
}
func (uc *creatorUDPConn) LocalAddr() net.Addr { return tunnelAddr{} }
func (uc *creatorUDPConn) RemoteAddr() net.Addr { return tunnelAddr{} }
func (uc *creatorUDPConn) SetDeadline(t time.Time) error { return nil }
func (uc *creatorUDPConn) SetReadDeadline(t time.Time) error { return nil }
func (uc *creatorUDPConn) SetWriteDeadline(t time.Time) error { return nil }
func (uc *creatorUDPConn) deliver(payload []byte) {
uc.readMu.Lock()
uc.readBuf.Write(payload)
uc.readMu.Unlock()
select {
case uc.readCond <- struct{}{}:
default:
}
}
func (uc *creatorUDPConn) remoteClosed() {
if uc.closed.CompareAndSwap(false, true) {
close(uc.closeCh)
}
}