2024-11-20 11:32:02 +08:00
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package route
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import (
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"context"
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"io"
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"net"
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"net/netip"
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"sync"
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"sync/atomic"
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"time"
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2024-11-20 11:32:02 +08:00
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"github.com/sagernet/sing-box/adapter"
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"github.com/sagernet/sing-box/common/dialer"
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C "github.com/sagernet/sing-box/constant"
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"github.com/sagernet/sing/common"
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"github.com/sagernet/sing/common/bufio"
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"github.com/sagernet/sing/common/canceler"
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E "github.com/sagernet/sing/common/exceptions"
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"github.com/sagernet/sing/common/logger"
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M "github.com/sagernet/sing/common/metadata"
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N "github.com/sagernet/sing/common/network"
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"github.com/sagernet/sing/common/x/list"
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)
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var _ adapter.ConnectionManager = (*ConnectionManager)(nil)
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type ConnectionManager struct {
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logger logger.ContextLogger
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access sync.Mutex
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connections list.List[io.Closer]
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}
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func NewConnectionManager(logger logger.ContextLogger) *ConnectionManager {
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return &ConnectionManager{
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logger: logger,
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}
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}
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func (m *ConnectionManager) Start(stage adapter.StartStage) error {
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return nil
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}
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func (m *ConnectionManager) Close() error {
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m.access.Lock()
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defer m.access.Unlock()
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for element := m.connections.Front(); element != nil; element = element.Next() {
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common.Close(element.Value)
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}
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m.connections.Init()
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return nil
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}
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func (m *ConnectionManager) NewConnection(ctx context.Context, this N.Dialer, conn net.Conn, metadata adapter.InboundContext, onClose N.CloseHandlerFunc) {
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ctx = adapter.WithContext(ctx, &metadata)
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var (
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remoteConn net.Conn
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err error
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)
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if len(metadata.DestinationAddresses) > 0 || metadata.Destination.IsIP() {
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remoteConn, err = dialer.DialSerialNetwork(ctx, this, N.NetworkTCP, metadata.Destination, metadata.DestinationAddresses, metadata.NetworkStrategy, metadata.NetworkType, metadata.FallbackNetworkType, metadata.FallbackDelay)
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} else {
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remoteConn, err = this.DialContext(ctx, N.NetworkTCP, metadata.Destination)
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}
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if err != nil {
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err = E.Cause(err, "open outbound connection")
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N.CloseOnHandshakeFailure(conn, onClose, err)
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m.logger.ErrorContext(ctx, err)
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return
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}
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err = N.ReportConnHandshakeSuccess(conn, remoteConn)
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if err != nil {
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err = E.Cause(err, "report handshake success")
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remoteConn.Close()
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N.CloseOnHandshakeFailure(conn, onClose, err)
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m.logger.ErrorContext(ctx, err)
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return
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}
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m.access.Lock()
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element := m.connections.PushBack(conn)
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m.access.Unlock()
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onClose = N.AppendClose(onClose, func(it error) {
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m.access.Lock()
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defer m.access.Unlock()
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m.connections.Remove(element)
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})
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var done atomic.Bool
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go m.connectionCopy(ctx, conn, remoteConn, false, &done, onClose)
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go m.connectionCopy(ctx, remoteConn, conn, true, &done, onClose)
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}
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func (m *ConnectionManager) NewPacketConnection(ctx context.Context, this N.Dialer, conn N.PacketConn, metadata adapter.InboundContext, onClose N.CloseHandlerFunc) {
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ctx = adapter.WithContext(ctx, &metadata)
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var (
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remotePacketConn net.PacketConn
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remoteConn net.Conn
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destinationAddress netip.Addr
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err error
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)
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if metadata.UDPConnect {
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parallelDialer, isParallelDialer := this.(dialer.ParallelInterfaceDialer)
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if len(metadata.DestinationAddresses) > 0 {
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if isParallelDialer {
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remoteConn, err = dialer.DialSerialNetwork(ctx, parallelDialer, N.NetworkUDP, metadata.Destination, metadata.DestinationAddresses, metadata.NetworkStrategy, metadata.NetworkType, metadata.FallbackNetworkType, metadata.FallbackDelay)
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} else {
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remoteConn, err = N.DialSerial(ctx, this, N.NetworkUDP, metadata.Destination, metadata.DestinationAddresses)
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}
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} else if metadata.Destination.IsIP() {
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if isParallelDialer {
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remoteConn, err = dialer.DialSerialNetwork(ctx, parallelDialer, N.NetworkUDP, metadata.Destination, metadata.DestinationAddresses, metadata.NetworkStrategy, metadata.NetworkType, metadata.FallbackNetworkType, metadata.FallbackDelay)
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} else {
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remoteConn, err = this.DialContext(ctx, N.NetworkUDP, metadata.Destination)
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}
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} else {
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remoteConn, err = this.DialContext(ctx, N.NetworkUDP, metadata.Destination)
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}
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if err != nil {
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N.CloseOnHandshakeFailure(conn, onClose, err)
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m.logger.ErrorContext(ctx, "open outbound packet connection: ", err)
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return
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}
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remotePacketConn = bufio.NewUnbindPacketConn(remoteConn)
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connRemoteAddr := M.AddrFromNet(remoteConn.RemoteAddr())
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if connRemoteAddr != metadata.Destination.Addr {
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destinationAddress = connRemoteAddr
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}
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} else {
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if len(metadata.DestinationAddresses) > 0 {
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remotePacketConn, destinationAddress, err = dialer.ListenSerialNetworkPacket(ctx, this, metadata.Destination, metadata.DestinationAddresses, metadata.NetworkStrategy, metadata.NetworkType, metadata.FallbackNetworkType, metadata.FallbackDelay)
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} else {
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remotePacketConn, err = this.ListenPacket(ctx, metadata.Destination)
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}
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if err != nil {
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N.CloseOnHandshakeFailure(conn, onClose, err)
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m.logger.ErrorContext(ctx, "listen outbound packet connection: ", err)
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return
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}
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}
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err = N.ReportPacketConnHandshakeSuccess(conn, remotePacketConn)
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if err != nil {
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conn.Close()
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remotePacketConn.Close()
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m.logger.ErrorContext(ctx, "report handshake success: ", err)
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return
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}
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if destinationAddress.IsValid() {
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var originDestination M.Socksaddr
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if metadata.RouteOriginalDestination.IsValid() {
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originDestination = metadata.RouteOriginalDestination
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} else {
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originDestination = metadata.Destination
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}
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if metadata.Destination != M.SocksaddrFrom(destinationAddress, metadata.Destination.Port) {
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if metadata.UDPDisableDomainUnmapping {
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remotePacketConn = bufio.NewUnidirectionalNATPacketConn(bufio.NewPacketConn(remotePacketConn), M.SocksaddrFrom(destinationAddress, metadata.Destination.Port), originDestination)
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} else {
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remotePacketConn = bufio.NewNATPacketConn(bufio.NewPacketConn(remotePacketConn), M.SocksaddrFrom(destinationAddress, metadata.Destination.Port), originDestination)
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}
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}
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if natConn, loaded := common.Cast[bufio.NATPacketConn](conn); loaded {
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natConn.UpdateDestination(destinationAddress)
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}
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}
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var udpTimeout time.Duration
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if metadata.UDPTimeout > 0 {
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udpTimeout = metadata.UDPTimeout
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} else {
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protocol := metadata.Protocol
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if protocol == "" {
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protocol = C.PortProtocols[metadata.Destination.Port]
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}
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if protocol != "" {
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udpTimeout = C.ProtocolTimeouts[protocol]
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}
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}
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if udpTimeout > 0 {
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ctx, conn = canceler.NewPacketConn(ctx, conn, udpTimeout)
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}
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destination := bufio.NewPacketConn(remotePacketConn)
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m.access.Lock()
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element := m.connections.PushBack(conn)
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m.access.Unlock()
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onClose = N.AppendClose(onClose, func(it error) {
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m.access.Lock()
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defer m.access.Unlock()
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m.connections.Remove(element)
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})
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var done atomic.Bool
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go m.packetConnectionCopy(ctx, conn, destination, false, &done, onClose)
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go m.packetConnectionCopy(ctx, destination, conn, true, &done, onClose)
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}
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func (m *ConnectionManager) connectionCopy(ctx context.Context, source io.Reader, destination io.Writer, direction bool, done *atomic.Bool, onClose N.CloseHandlerFunc) {
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originSource := source
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originDestination := destination
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var readCounters, writeCounters []N.CountFunc
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for {
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source, readCounters = N.UnwrapCountReader(source, readCounters)
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destination, writeCounters = N.UnwrapCountWriter(destination, writeCounters)
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if cachedSrc, isCached := source.(N.CachedReader); isCached {
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cachedBuffer := cachedSrc.ReadCached()
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if cachedBuffer != nil {
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dataLen := cachedBuffer.Len()
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_, err := destination.Write(cachedBuffer.Bytes())
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cachedBuffer.Release()
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if err != nil {
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if done.Swap(true) {
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onClose(err)
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}
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common.Close(originSource, originDestination)
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if !direction {
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m.logger.ErrorContext(ctx, "connection upload payload: ", err)
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} else {
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m.logger.ErrorContext(ctx, "connection download payload: ", err)
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}
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return
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}
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for _, counter := range readCounters {
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counter(int64(dataLen))
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}
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for _, counter := range writeCounters {
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counter(int64(dataLen))
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}
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}
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continue
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}
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break
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}
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_, err := bufio.CopyWithCounters(destination, source, originSource, readCounters, writeCounters)
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if err != nil {
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common.Close(originDestination)
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} else if duplexDst, isDuplex := destination.(N.WriteCloser); isDuplex {
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err = duplexDst.CloseWrite()
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if err != nil {
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common.Close(originSource, originDestination)
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}
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} else {
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common.Close(originDestination)
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}
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if done.Swap(true) {
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onClose(err)
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common.Close(originSource, originDestination)
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}
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if !direction {
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if err == nil {
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m.logger.DebugContext(ctx, "connection upload finished")
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} else if !E.IsClosedOrCanceled(err) {
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m.logger.ErrorContext(ctx, "connection upload closed: ", err)
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} else {
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m.logger.TraceContext(ctx, "connection upload closed")
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}
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} else {
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if err == nil {
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m.logger.DebugContext(ctx, "connection download finished")
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} else if !E.IsClosedOrCanceled(err) {
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m.logger.ErrorContext(ctx, "connection download closed: ", err)
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} else {
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m.logger.TraceContext(ctx, "connection download closed")
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}
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}
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}
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func (m *ConnectionManager) packetConnectionCopy(ctx context.Context, source N.PacketReader, destination N.PacketWriter, direction bool, done *atomic.Bool, onClose N.CloseHandlerFunc) {
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_, err := bufio.CopyPacket(destination, source)
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if !direction {
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if E.IsClosedOrCanceled(err) {
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m.logger.TraceContext(ctx, "packet upload closed")
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} else {
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m.logger.DebugContext(ctx, "packet upload closed: ", err)
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}
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} else {
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if E.IsClosedOrCanceled(err) {
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m.logger.TraceContext(ctx, "packet download closed")
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} else {
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m.logger.DebugContext(ctx, "packet download closed: ", err)
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}
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}
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if !done.Swap(true) {
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onClose(err)
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}
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common.Close(source, destination)
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}
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