mirror of
https://github.com/SagerNet/sing-box.git
synced 2024-12-12 16:18:50 +00:00
260 lines
9.8 KiB
Go
260 lines
9.8 KiB
Go
package direct
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import (
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"context"
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"net"
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"net/netip"
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"time"
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"github.com/sagernet/sing-box/adapter"
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"github.com/sagernet/sing-box/adapter/outbound"
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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-box/log"
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"github.com/sagernet/sing-box/option"
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"github.com/sagernet/sing-dns"
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"github.com/sagernet/sing/common"
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"github.com/sagernet/sing/common/bufio"
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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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)
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func RegisterOutbound(registry *outbound.Registry) {
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outbound.Register[option.DirectOutboundOptions](registry, C.TypeDirect, NewOutbound)
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}
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var (
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_ N.ParallelDialer = (*Outbound)(nil)
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_ dialer.ParallelNetworkDialer = (*Outbound)(nil)
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)
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type Outbound struct {
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outbound.Adapter
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logger logger.ContextLogger
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dialer dialer.ParallelInterfaceDialer
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domainStrategy dns.DomainStrategy
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fallbackDelay time.Duration
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networkStrategy C.NetworkStrategy
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networkType []C.InterfaceType
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fallbackNetworkType []C.InterfaceType
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networkFallbackDelay time.Duration
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overrideOption int
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overrideDestination M.Socksaddr
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// loopBack *loopBackDetector
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}
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func NewOutbound(ctx context.Context, router adapter.Router, logger log.ContextLogger, tag string, options option.DirectOutboundOptions) (adapter.Outbound, error) {
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options.UDPFragmentDefault = true
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outboundDialer, err := dialer.NewDirect(ctx, options.DialerOptions)
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if err != nil {
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return nil, err
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}
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outbound := &Outbound{
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Adapter: outbound.NewAdapterWithDialerOptions(C.TypeDirect, []string{N.NetworkTCP, N.NetworkUDP}, tag, options.DialerOptions),
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logger: logger,
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domainStrategy: dns.DomainStrategy(options.DomainStrategy),
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fallbackDelay: time.Duration(options.FallbackDelay),
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networkStrategy: C.NetworkStrategy(options.NetworkStrategy),
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networkType: common.Map(options.NetworkType, option.InterfaceType.Build),
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fallbackNetworkType: common.Map(options.FallbackNetworkType, option.InterfaceType.Build),
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networkFallbackDelay: time.Duration(options.NetworkFallbackDelay),
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dialer: outboundDialer,
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// loopBack: newLoopBackDetector(router),
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}
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if options.ProxyProtocol != 0 {
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return nil, E.New("Proxy Protocol is deprecated and removed in sing-box 1.6.0")
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}
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if options.OverrideAddress != "" && options.OverridePort != 0 {
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outbound.overrideOption = 1
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outbound.overrideDestination = M.ParseSocksaddrHostPort(options.OverrideAddress, options.OverridePort)
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} else if options.OverrideAddress != "" {
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outbound.overrideOption = 2
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outbound.overrideDestination = M.ParseSocksaddrHostPort(options.OverrideAddress, options.OverridePort)
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} else if options.OverridePort != 0 {
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outbound.overrideOption = 3
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outbound.overrideDestination = M.Socksaddr{Port: options.OverridePort}
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}
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return outbound, nil
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}
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func (h *Outbound) DialContext(ctx context.Context, network string, destination M.Socksaddr) (net.Conn, error) {
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ctx, metadata := adapter.ExtendContext(ctx)
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metadata.Outbound = h.Tag()
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metadata.Destination = destination
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switch h.overrideOption {
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case 1:
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destination = h.overrideDestination
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case 2:
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newDestination := h.overrideDestination
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newDestination.Port = destination.Port
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destination = newDestination
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case 3:
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destination.Port = h.overrideDestination.Port
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}
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network = N.NetworkName(network)
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switch network {
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case N.NetworkTCP:
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h.logger.InfoContext(ctx, "outbound connection to ", destination)
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case N.NetworkUDP:
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h.logger.InfoContext(ctx, "outbound packet connection to ", destination)
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}
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/*conn, err := h.dialer.DialContext(ctx, network, destination)
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if err != nil {
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return nil, err
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}
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return h.loopBack.NewConn(conn), nil*/
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return h.dialer.DialContext(ctx, network, destination)
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}
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func (h *Outbound) ListenPacket(ctx context.Context, destination M.Socksaddr) (net.PacketConn, error) {
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ctx, metadata := adapter.ExtendContext(ctx)
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metadata.Outbound = h.Tag()
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metadata.Destination = destination
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originDestination := destination
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switch h.overrideOption {
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case 1:
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destination = h.overrideDestination
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case 2:
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newDestination := h.overrideDestination
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newDestination.Port = destination.Port
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destination = newDestination
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case 3:
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destination.Port = h.overrideDestination.Port
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}
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if h.overrideOption == 0 {
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h.logger.InfoContext(ctx, "outbound packet connection")
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} else {
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h.logger.InfoContext(ctx, "outbound packet connection to ", destination)
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}
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conn, err := h.dialer.ListenPacket(ctx, destination)
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if err != nil {
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return nil, err
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}
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// conn = h.loopBack.NewPacketConn(bufio.NewPacketConn(conn), destination)
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if originDestination != destination {
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conn = bufio.NewNATPacketConn(bufio.NewPacketConn(conn), destination, originDestination)
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}
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return conn, nil
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}
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func (h *Outbound) DialParallel(ctx context.Context, network string, destination M.Socksaddr, destinationAddresses []netip.Addr) (net.Conn, error) {
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ctx, metadata := adapter.ExtendContext(ctx)
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metadata.Outbound = h.Tag()
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metadata.Destination = destination
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switch h.overrideOption {
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case 1, 2:
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// override address
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return h.DialContext(ctx, network, destination)
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case 3:
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destination.Port = h.overrideDestination.Port
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}
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network = N.NetworkName(network)
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switch network {
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case N.NetworkTCP:
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h.logger.InfoContext(ctx, "outbound connection to ", destination)
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case N.NetworkUDP:
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h.logger.InfoContext(ctx, "outbound packet connection to ", destination)
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}
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var domainStrategy dns.DomainStrategy
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if h.domainStrategy != dns.DomainStrategyAsIS {
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domainStrategy = h.domainStrategy
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} else {
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domainStrategy = dns.DomainStrategy(metadata.InboundOptions.DomainStrategy)
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}
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switch domainStrategy {
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case dns.DomainStrategyUseIPv4:
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destinationAddresses = common.Filter(destinationAddresses, netip.Addr.Is4)
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if len(destinationAddresses) == 0 {
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return nil, E.New("no IPv4 address available for ", destination)
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}
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case dns.DomainStrategyUseIPv6:
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destinationAddresses = common.Filter(destinationAddresses, netip.Addr.Is6)
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if len(destinationAddresses) == 0 {
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return nil, E.New("no IPv6 address available for ", destination)
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}
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}
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return dialer.DialParallelNetwork(ctx, h.dialer, network, destination, destinationAddresses, domainStrategy == dns.DomainStrategyPreferIPv6, h.networkStrategy, h.networkType, h.fallbackNetworkType, h.fallbackDelay)
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}
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func (h *Outbound) DialParallelNetwork(ctx context.Context, network string, destination M.Socksaddr, destinationAddresses []netip.Addr, networkStrategy C.NetworkStrategy, networkType []C.InterfaceType, fallbackNetworkType []C.InterfaceType, fallbackDelay time.Duration) (net.Conn, error) {
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ctx, metadata := adapter.ExtendContext(ctx)
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metadata.Outbound = h.Tag()
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metadata.Destination = destination
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switch h.overrideOption {
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case 1, 2:
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// override address
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return h.DialContext(ctx, network, destination)
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case 3:
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destination.Port = h.overrideDestination.Port
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}
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network = N.NetworkName(network)
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switch network {
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case N.NetworkTCP:
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h.logger.InfoContext(ctx, "outbound connection to ", destination)
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case N.NetworkUDP:
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h.logger.InfoContext(ctx, "outbound packet connection to ", destination)
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}
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var domainStrategy dns.DomainStrategy
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if h.domainStrategy != dns.DomainStrategyAsIS {
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domainStrategy = h.domainStrategy
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} else {
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domainStrategy = dns.DomainStrategy(metadata.InboundOptions.DomainStrategy)
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}
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switch domainStrategy {
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case dns.DomainStrategyUseIPv4:
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destinationAddresses = common.Filter(destinationAddresses, netip.Addr.Is4)
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if len(destinationAddresses) == 0 {
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return nil, E.New("no IPv4 address available for ", destination)
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}
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case dns.DomainStrategyUseIPv6:
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destinationAddresses = common.Filter(destinationAddresses, netip.Addr.Is6)
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if len(destinationAddresses) == 0 {
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return nil, E.New("no IPv6 address available for ", destination)
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}
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}
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return dialer.DialParallelNetwork(ctx, h.dialer, network, destination, destinationAddresses, domainStrategy == dns.DomainStrategyPreferIPv6, networkStrategy, networkType, fallbackNetworkType, fallbackDelay)
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}
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func (h *Outbound) ListenSerialNetworkPacket(ctx context.Context, destination M.Socksaddr, destinationAddresses []netip.Addr, networkStrategy C.NetworkStrategy, networkType []C.InterfaceType, fallbackNetworkType []C.InterfaceType, fallbackDelay time.Duration) (net.PacketConn, netip.Addr, error) {
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ctx, metadata := adapter.ExtendContext(ctx)
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metadata.Outbound = h.Tag()
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metadata.Destination = destination
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switch h.overrideOption {
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case 1:
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destination = h.overrideDestination
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case 2:
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newDestination := h.overrideDestination
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newDestination.Port = destination.Port
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destination = newDestination
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case 3:
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destination.Port = h.overrideDestination.Port
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}
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if h.overrideOption == 0 {
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h.logger.InfoContext(ctx, "outbound packet connection")
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} else {
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h.logger.InfoContext(ctx, "outbound packet connection to ", destination)
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}
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conn, newDestination, err := dialer.ListenSerialNetworkPacket(ctx, h.dialer, destination, destinationAddresses, networkStrategy, networkType, fallbackNetworkType, fallbackDelay)
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if err != nil {
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return nil, netip.Addr{}, err
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}
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return conn, newDestination, nil
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}
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/*func (h *Outbound) NewConnection(ctx context.Context, conn net.Conn, metadata adapter.InboundContext) error {
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if h.loopBack.CheckConn(metadata.Source.AddrPort(), M.AddrPortFromNet(conn.LocalAddr())) {
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return E.New("reject loopback connection to ", metadata.Destination)
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}
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return NewConnection(ctx, h, conn, metadata)
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}
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func (h *Outbound) NewPacketConnection(ctx context.Context, conn N.PacketConn, metadata adapter.InboundContext) error {
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if h.loopBack.CheckPacketConn(metadata.Source.AddrPort(), M.AddrPortFromNet(conn.LocalAddr())) {
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return E.New("reject loopback packet connection to ", metadata.Destination)
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}
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return NewPacketConnection(ctx, h, conn, metadata)
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}
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*/
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