udp_rio_windows.go 8.4 KB

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  1. //go:build !e2e_testing
  2. // +build !e2e_testing
  3. // Inspired by https://git.zx2c4.com/wireguard-go/tree/conn/bind_windows.go
  4. package udp
  5. import (
  6. "errors"
  7. "fmt"
  8. "io"
  9. "net"
  10. "net/netip"
  11. "sync"
  12. "sync/atomic"
  13. "syscall"
  14. "unsafe"
  15. "github.com/sirupsen/logrus"
  16. "github.com/slackhq/nebula/config"
  17. "golang.org/x/sys/windows"
  18. "golang.zx2c4.com/wireguard/conn/winrio"
  19. )
  20. // Assert we meet the standard conn interface
  21. var _ Conn = &RIOConn{}
  22. //go:linkname procyield runtime.procyield
  23. func procyield(cycles uint32)
  24. const (
  25. packetsPerRing = 1024
  26. bytesPerPacket = 2048 - 32
  27. receiveSpins = 15
  28. )
  29. type ringPacket struct {
  30. addr windows.RawSockaddrInet6
  31. data [bytesPerPacket]byte
  32. }
  33. type ringBuffer struct {
  34. packets uintptr
  35. head, tail uint32
  36. id winrio.BufferId
  37. iocp windows.Handle
  38. isFull bool
  39. cq winrio.Cq
  40. mu sync.Mutex
  41. overlapped windows.Overlapped
  42. }
  43. type RIOConn struct {
  44. isOpen atomic.Bool
  45. l *logrus.Logger
  46. sock windows.Handle
  47. rx, tx ringBuffer
  48. rq winrio.Rq
  49. results [packetsPerRing]winrio.Result
  50. }
  51. func NewRIOListener(l *logrus.Logger, addr netip.Addr, port int) (*RIOConn, error) {
  52. if !winrio.Initialize() {
  53. return nil, errors.New("could not initialize winrio")
  54. }
  55. u := &RIOConn{l: l}
  56. err := u.bind(&windows.SockaddrInet6{Addr: addr.As16(), Port: port})
  57. if err != nil {
  58. return nil, fmt.Errorf("bind: %w", err)
  59. }
  60. for i := 0; i < packetsPerRing; i++ {
  61. err = u.insertReceiveRequest()
  62. if err != nil {
  63. return nil, fmt.Errorf("init rx ring: %w", err)
  64. }
  65. }
  66. u.isOpen.Store(true)
  67. return u, nil
  68. }
  69. func (u *RIOConn) bind(sa windows.Sockaddr) error {
  70. var err error
  71. u.sock, err = winrio.Socket(windows.AF_INET6, windows.SOCK_DGRAM, windows.IPPROTO_UDP)
  72. if err != nil {
  73. return err
  74. }
  75. // Enable v4 for this socket
  76. syscall.SetsockoptInt(syscall.Handle(u.sock), syscall.IPPROTO_IPV6, syscall.IPV6_V6ONLY, 0)
  77. err = u.rx.Open()
  78. if err != nil {
  79. return err
  80. }
  81. err = u.tx.Open()
  82. if err != nil {
  83. return err
  84. }
  85. u.rq, err = winrio.CreateRequestQueue(u.sock, packetsPerRing, 1, packetsPerRing, 1, u.rx.cq, u.tx.cq, 0)
  86. if err != nil {
  87. return err
  88. }
  89. err = windows.Bind(u.sock, sa)
  90. if err != nil {
  91. return err
  92. }
  93. return nil
  94. }
  95. func (u *RIOConn) ListenOut(r EncReader) error {
  96. buffer := make([]byte, MTU)
  97. for {
  98. // Just read one packet at a time
  99. n, rua, err := u.receive(buffer)
  100. if err != nil {
  101. return err
  102. }
  103. r(netip.AddrPortFrom(netip.AddrFrom16(rua.Addr).Unmap(), (rua.Port>>8)|((rua.Port&0xff)<<8)), buffer[:n])
  104. }
  105. }
  106. func (u *RIOConn) insertReceiveRequest() error {
  107. packet := u.rx.Push()
  108. dataBuffer := &winrio.Buffer{
  109. Id: u.rx.id,
  110. Offset: uint32(uintptr(unsafe.Pointer(&packet.data[0])) - u.rx.packets),
  111. Length: uint32(len(packet.data)),
  112. }
  113. addressBuffer := &winrio.Buffer{
  114. Id: u.rx.id,
  115. Offset: uint32(uintptr(unsafe.Pointer(&packet.addr)) - u.rx.packets),
  116. Length: uint32(unsafe.Sizeof(packet.addr)),
  117. }
  118. return winrio.ReceiveEx(u.rq, dataBuffer, 1, nil, addressBuffer, nil, nil, 0, uintptr(unsafe.Pointer(packet)))
  119. }
  120. func (u *RIOConn) receive(buf []byte) (int, windows.RawSockaddrInet6, error) {
  121. if !u.isOpen.Load() {
  122. return 0, windows.RawSockaddrInet6{}, net.ErrClosed
  123. }
  124. u.rx.mu.Lock()
  125. defer u.rx.mu.Unlock()
  126. var err error
  127. var count uint32
  128. var results [1]winrio.Result
  129. retry:
  130. count = 0
  131. for tries := 0; count == 0 && tries < receiveSpins; tries++ {
  132. if tries > 0 {
  133. if !u.isOpen.Load() {
  134. return 0, windows.RawSockaddrInet6{}, net.ErrClosed
  135. }
  136. procyield(1)
  137. }
  138. count = winrio.DequeueCompletion(u.rx.cq, results[:])
  139. }
  140. if count == 0 {
  141. err = winrio.Notify(u.rx.cq)
  142. if err != nil {
  143. return 0, windows.RawSockaddrInet6{}, err
  144. }
  145. var bytes uint32
  146. var key uintptr
  147. var overlapped *windows.Overlapped
  148. err = windows.GetQueuedCompletionStatus(u.rx.iocp, &bytes, &key, &overlapped, windows.INFINITE)
  149. if err != nil {
  150. return 0, windows.RawSockaddrInet6{}, err
  151. }
  152. if !u.isOpen.Load() {
  153. return 0, windows.RawSockaddrInet6{}, net.ErrClosed
  154. }
  155. count = winrio.DequeueCompletion(u.rx.cq, results[:])
  156. if count == 0 {
  157. return 0, windows.RawSockaddrInet6{}, io.ErrNoProgress
  158. }
  159. }
  160. u.rx.Return(1)
  161. err = u.insertReceiveRequest()
  162. if err != nil {
  163. return 0, windows.RawSockaddrInet6{}, err
  164. }
  165. // We limit the MTU well below the 65k max for practicality, but this means a remote host can still send us
  166. // huge packets. Just try again when this happens. The infinite loop this could cause is still limited to
  167. // attacker bandwidth, just like the rest of the receive path.
  168. if windows.Errno(results[0].Status) == windows.WSAEMSGSIZE {
  169. goto retry
  170. }
  171. if results[0].Status != 0 {
  172. return 0, windows.RawSockaddrInet6{}, windows.Errno(results[0].Status)
  173. }
  174. packet := (*ringPacket)(unsafe.Pointer(uintptr(results[0].RequestContext)))
  175. ep := packet.addr
  176. n := copy(buf, packet.data[:results[0].BytesTransferred])
  177. return n, ep, nil
  178. }
  179. func (u *RIOConn) WriteTo(buf []byte, ip netip.AddrPort) error {
  180. if !u.isOpen.Load() {
  181. return net.ErrClosed
  182. }
  183. if len(buf) > bytesPerPacket {
  184. return io.ErrShortBuffer
  185. }
  186. u.tx.mu.Lock()
  187. defer u.tx.mu.Unlock()
  188. count := winrio.DequeueCompletion(u.tx.cq, u.results[:])
  189. if count == 0 && u.tx.isFull {
  190. err := winrio.Notify(u.tx.cq)
  191. if err != nil {
  192. return err
  193. }
  194. var bytes uint32
  195. var key uintptr
  196. var overlapped *windows.Overlapped
  197. err = windows.GetQueuedCompletionStatus(u.tx.iocp, &bytes, &key, &overlapped, windows.INFINITE)
  198. if err != nil {
  199. return err
  200. }
  201. if !u.isOpen.Load() {
  202. return net.ErrClosed
  203. }
  204. count = winrio.DequeueCompletion(u.tx.cq, u.results[:])
  205. if count == 0 {
  206. return io.ErrNoProgress
  207. }
  208. }
  209. if count > 0 {
  210. u.tx.Return(count)
  211. }
  212. packet := u.tx.Push()
  213. packet.addr.Family = windows.AF_INET6
  214. packet.addr.Addr = ip.Addr().As16()
  215. port := ip.Port()
  216. packet.addr.Port = (port >> 8) | ((port & 0xff) << 8)
  217. copy(packet.data[:], buf)
  218. dataBuffer := &winrio.Buffer{
  219. Id: u.tx.id,
  220. Offset: uint32(uintptr(unsafe.Pointer(&packet.data[0])) - u.tx.packets),
  221. Length: uint32(len(buf)),
  222. }
  223. addressBuffer := &winrio.Buffer{
  224. Id: u.tx.id,
  225. Offset: uint32(uintptr(unsafe.Pointer(&packet.addr)) - u.tx.packets),
  226. Length: uint32(unsafe.Sizeof(packet.addr)),
  227. }
  228. return winrio.SendEx(u.rq, dataBuffer, 1, nil, addressBuffer, nil, nil, 0, 0)
  229. }
  230. func (u *RIOConn) LocalAddr() (netip.AddrPort, error) {
  231. sa, err := windows.Getsockname(u.sock)
  232. if err != nil {
  233. return netip.AddrPort{}, err
  234. }
  235. v6 := sa.(*windows.SockaddrInet6)
  236. return netip.AddrPortFrom(netip.AddrFrom16(v6.Addr).Unmap(), uint16(v6.Port)), nil
  237. }
  238. func (u *RIOConn) Rebind() error {
  239. return nil
  240. }
  241. func (u *RIOConn) ReloadConfig(*config.C) {}
  242. func (u *RIOConn) Close() error {
  243. if !u.isOpen.CompareAndSwap(true, false) {
  244. return nil
  245. }
  246. windows.PostQueuedCompletionStatus(u.rx.iocp, 0, 0, nil)
  247. windows.PostQueuedCompletionStatus(u.tx.iocp, 0, 0, nil)
  248. u.rx.CloseAndZero()
  249. u.tx.CloseAndZero()
  250. if u.sock != 0 {
  251. windows.CloseHandle(u.sock)
  252. }
  253. return nil
  254. }
  255. func (ring *ringBuffer) Push() *ringPacket {
  256. for ring.isFull {
  257. panic("ring is full")
  258. }
  259. ret := (*ringPacket)(unsafe.Pointer(ring.packets + (uintptr(ring.tail%packetsPerRing) * unsafe.Sizeof(ringPacket{}))))
  260. ring.tail += 1
  261. if ring.tail%packetsPerRing == ring.head%packetsPerRing {
  262. ring.isFull = true
  263. }
  264. return ret
  265. }
  266. func (ring *ringBuffer) Return(count uint32) {
  267. if ring.head%packetsPerRing == ring.tail%packetsPerRing && !ring.isFull {
  268. return
  269. }
  270. ring.head += count
  271. ring.isFull = false
  272. }
  273. func (ring *ringBuffer) CloseAndZero() {
  274. if ring.cq != 0 {
  275. winrio.CloseCompletionQueue(ring.cq)
  276. ring.cq = 0
  277. }
  278. if ring.iocp != 0 {
  279. windows.CloseHandle(ring.iocp)
  280. ring.iocp = 0
  281. }
  282. if ring.id != 0 {
  283. winrio.DeregisterBuffer(ring.id)
  284. ring.id = 0
  285. }
  286. if ring.packets != 0 {
  287. windows.VirtualFree(ring.packets, 0, windows.MEM_RELEASE)
  288. ring.packets = 0
  289. }
  290. ring.head = 0
  291. ring.tail = 0
  292. ring.isFull = false
  293. }
  294. func (ring *ringBuffer) Open() error {
  295. var err error
  296. packetsLen := unsafe.Sizeof(ringPacket{}) * packetsPerRing
  297. ring.packets, err = windows.VirtualAlloc(0, packetsLen, windows.MEM_COMMIT|windows.MEM_RESERVE, windows.PAGE_READWRITE)
  298. if err != nil {
  299. return err
  300. }
  301. ring.id, err = winrio.RegisterPointer(unsafe.Pointer(ring.packets), uint32(packetsLen))
  302. if err != nil {
  303. return err
  304. }
  305. ring.iocp, err = windows.CreateIoCompletionPort(windows.InvalidHandle, 0, 0, 0)
  306. if err != nil {
  307. return err
  308. }
  309. ring.cq, err = winrio.CreateIOCPCompletionQueue(packetsPerRing, ring.iocp, 0, &ring.overlapped)
  310. if err != nil {
  311. return err
  312. }
  313. return nil
  314. }