netstack.go 6.1 KB

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  1. // Package amneziawgnet embeds amneziawg-go and gVisor netstack in-process
  2. // as a userspace alternative to kernel wireguard / awg-quick.
  3. package amneziawgnet
  4. import (
  5. "fmt"
  6. "net/netip"
  7. "os"
  8. "sync"
  9. "syscall"
  10. awgtun "github.com/amnezia-vpn/amneziawg-go/v3/tun"
  11. "gvisor.dev/gvisor/pkg/buffer"
  12. "gvisor.dev/gvisor/pkg/tcpip"
  13. "gvisor.dev/gvisor/pkg/tcpip/header"
  14. "gvisor.dev/gvisor/pkg/tcpip/link/channel"
  15. "gvisor.dev/gvisor/pkg/tcpip/network/ipv4"
  16. "gvisor.dev/gvisor/pkg/tcpip/network/ipv6"
  17. "gvisor.dev/gvisor/pkg/tcpip/stack"
  18. "gvisor.dev/gvisor/pkg/tcpip/transport/icmp"
  19. "gvisor.dev/gvisor/pkg/tcpip/transport/tcp"
  20. "gvisor.dev/gvisor/pkg/tcpip/transport/udp"
  21. )
  22. // tunQueueDepth is the outbound queue depth for channel endpoint and handoff.
  23. // 1024 starved simultaneous TCP slow-starts; channel.Endpoint drops silently when full.
  24. const tunQueueDepth = 8192
  25. // stackTun implements amneziawg-go tun.Device over a gVisor channel endpoint,
  26. // exposing *stack.Stack for forwarder attachment.
  27. type stackTun struct {
  28. ep *channel.Endpoint
  29. stack *stack.Stack
  30. events chan awgtun.Event
  31. notifyHandle *channel.NotificationHandle
  32. incomingPacket chan *buffer.View
  33. done chan struct{}
  34. closeMu sync.Mutex
  35. closed bool
  36. mtu int
  37. }
  38. // createNetTUNWithStack builds a gVisor-backed tun.Device for localAddresses
  39. // and returns underlying *stack.Stack to attach forwarders.
  40. func createNetTUNWithStack(localAddresses []netip.Addr, mtu int) (awgtun.Device, *stack.Stack, error) {
  41. opts := stack.Options{
  42. NetworkProtocols: []stack.NetworkProtocolFactory{ipv4.NewProtocol, ipv6.NewProtocol},
  43. TransportProtocols: []stack.TransportProtocolFactory{tcp.NewProtocol, udp.NewProtocol, icmp.NewProtocol6, icmp.NewProtocol4},
  44. // HandleLocal stays false so non-local destinations reach forwarder.
  45. HandleLocal: false,
  46. }
  47. dev := &stackTun{
  48. // tunQueueDepth buffers channel.New and incomingPacket for pipelining.
  49. ep: channel.New(tunQueueDepth, uint32(mtu), ""),
  50. stack: stack.New(opts),
  51. events: make(chan awgtun.Event, 10),
  52. incomingPacket: make(chan *buffer.View, tunQueueDepth),
  53. done: make(chan struct{}),
  54. mtu: mtu,
  55. }
  56. sackEnabledOpt := tcpip.TCPSACKEnabled(true)
  57. if err := dev.stack.SetTransportProtocolOption(tcp.ProtocolNumber, &sackEnabledOpt); err != nil {
  58. return nil, nil, fmt.Errorf("amneziawgnet: enable TCP SACK: %s", err)
  59. }
  60. dev.notifyHandle = dev.ep.AddNotify(dev)
  61. if err := dev.stack.CreateNIC(1, dev.ep); err != nil {
  62. return nil, nil, fmt.Errorf("amneziawgnet: CreateNIC: %s", err)
  63. }
  64. var hasV4, hasV6 bool
  65. for _, ip := range localAddresses {
  66. var protoNumber tcpip.NetworkProtocolNumber
  67. switch {
  68. case ip.Is4():
  69. protoNumber = ipv4.ProtocolNumber
  70. hasV4 = true
  71. case ip.Is6():
  72. protoNumber = ipv6.ProtocolNumber
  73. hasV6 = true
  74. default:
  75. continue
  76. }
  77. protoAddr := tcpip.ProtocolAddress{
  78. Protocol: protoNumber,
  79. AddressWithPrefix: tcpip.AddrFromSlice(ip.AsSlice()).WithPrefix(),
  80. }
  81. if err := dev.stack.AddProtocolAddress(1, protoAddr, stack.AddressProperties{}); err != nil {
  82. return nil, nil, fmt.Errorf("amneziawgnet: AddProtocolAddress(%v): %s", ip, err)
  83. }
  84. }
  85. if hasV4 {
  86. dev.stack.AddRoute(tcpip.Route{Destination: header.IPv4EmptySubnet, NIC: 1})
  87. }
  88. if hasV6 {
  89. dev.stack.AddRoute(tcpip.Route{Destination: header.IPv6EmptySubnet, NIC: 1})
  90. }
  91. dev.events <- awgtun.EventUp
  92. return dev, dev.stack, nil
  93. }
  94. func (t *stackTun) Name() (string, error) { return "amneziawgnet", nil }
  95. func (t *stackTun) File() *os.File { return nil }
  96. func (t *stackTun) Events() <-chan awgtun.Event { return t.events }
  97. func (t *stackTun) MTU() (int, error) { return t.mtu, nil }
  98. func (t *stackTun) BatchSize() int { return 1 }
  99. // Read drains incomingPacket into buf, supporting batched reads.
  100. func (t *stackTun) Read(buf [][]byte, sizes []int, offset int) (int, error) {
  101. var view *buffer.View
  102. select {
  103. case <-t.done:
  104. return 0, os.ErrClosed
  105. case view = <-t.incomingPacket:
  106. }
  107. n, err := view.Read(buf[0][offset:])
  108. if err != nil {
  109. return 0, err
  110. }
  111. sizes[0] = n
  112. count := 1
  113. for count < len(buf) {
  114. select {
  115. case view = <-t.incomingPacket:
  116. n, err := view.Read(buf[count][offset:])
  117. if err != nil {
  118. return count, nil
  119. }
  120. sizes[count] = n
  121. count++
  122. default:
  123. return count, nil
  124. }
  125. }
  126. return count, nil
  127. }
  128. func (t *stackTun) Write(buf [][]byte, offset int) (int, error) {
  129. for _, b := range buf {
  130. packet := b[offset:]
  131. if len(packet) == 0 {
  132. continue
  133. }
  134. pkb := stack.NewPacketBuffer(stack.PacketBufferOptions{Payload: buffer.MakeWithData(packet)})
  135. switch packet[0] >> 4 {
  136. case 4:
  137. t.ep.InjectInbound(header.IPv4ProtocolNumber, pkb)
  138. case 6:
  139. t.ep.InjectInbound(header.IPv6ProtocolNumber, pkb)
  140. default:
  141. return 0, syscall.EAFNOSUPPORT
  142. }
  143. }
  144. return len(buf), nil
  145. }
  146. // WriteNotify runs on gVisor dispatch while Close tears the endpoint down,
  147. // so it must never block on closeMu across ep.Read or stack teardown.
  148. func (t *stackTun) WriteNotify() {
  149. t.closeMu.Lock()
  150. if t.closed {
  151. t.closeMu.Unlock()
  152. return
  153. }
  154. t.closeMu.Unlock()
  155. pkt := t.ep.Read()
  156. if pkt == nil {
  157. return
  158. }
  159. view := pkt.ToView()
  160. pkt.DecRef()
  161. // Select against done so racing dispatch abandons packet on close
  162. // without blocking Close or panicking on closed channel.
  163. select {
  164. case t.incomingPacket <- view:
  165. case <-t.done:
  166. }
  167. }
  168. func (t *stackTun) Close() error {
  169. t.closeMu.Lock()
  170. if t.closed {
  171. t.closeMu.Unlock()
  172. return nil
  173. }
  174. t.closed = true
  175. close(t.done)
  176. t.closeMu.Unlock()
  177. t.stack.RemoveNIC(1)
  178. t.stack.Close()
  179. t.ep.RemoveNotify(t.notifyHandle)
  180. t.ep.Close()
  181. if t.events != nil {
  182. close(t.events)
  183. }
  184. return nil
  185. }
  186. // enablePromiscuousRouting configures NIC promiscuous and spoofing modes.
  187. func enablePromiscuousRouting(gstack *stack.Stack) {
  188. gstack.SetPromiscuousMode(1, true)
  189. gstack.SetSpoofing(1, true)
  190. }
  191. // addrFromTcpip converts a gVisor tcpip.Address to netip.Addr.
  192. func addrFromTcpip(a tcpip.Address) netip.Addr {
  193. if a.Len() == 4 {
  194. var b [4]byte
  195. copy(b[:], a.AsSlice())
  196. return netip.AddrFrom4(b)
  197. }
  198. var b [16]byte
  199. copy(b[:], a.AsSlice())
  200. return netip.AddrFrom16(b)
  201. }