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interface.go 12 KB

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  1. package nebula
  2. import (
  3. "context"
  4. "encoding/binary"
  5. "errors"
  6. "fmt"
  7. "io"
  8. "net/netip"
  9. "os"
  10. "runtime"
  11. "sync/atomic"
  12. "time"
  13. "github.com/rcrowley/go-metrics"
  14. "github.com/sirupsen/logrus"
  15. "github.com/slackhq/nebula/config"
  16. "github.com/slackhq/nebula/firewall"
  17. "github.com/slackhq/nebula/header"
  18. "github.com/slackhq/nebula/overlay"
  19. "github.com/slackhq/nebula/udp"
  20. )
  21. const mtu = 9001
  22. type InterfaceConfig struct {
  23. HostMap *HostMap
  24. Outside udp.Conn
  25. Inside overlay.Device
  26. pki *PKI
  27. Cipher string
  28. Firewall *Firewall
  29. ServeDns bool
  30. HandshakeManager *HandshakeManager
  31. lightHouse *LightHouse
  32. checkInterval time.Duration
  33. pendingDeletionInterval time.Duration
  34. DropLocalBroadcast bool
  35. DropMulticast bool
  36. routines int
  37. MessageMetrics *MessageMetrics
  38. version string
  39. relayManager *relayManager
  40. punchy *Punchy
  41. tryPromoteEvery uint32
  42. reQueryEvery uint32
  43. reQueryWait time.Duration
  44. ConntrackCacheTimeout time.Duration
  45. l *logrus.Logger
  46. }
  47. type Interface struct {
  48. hostMap *HostMap
  49. outside udp.Conn
  50. inside overlay.Device
  51. pki *PKI
  52. cipher string
  53. firewall *Firewall
  54. connectionManager *connectionManager
  55. handshakeManager *HandshakeManager
  56. serveDns bool
  57. createTime time.Time
  58. lightHouse *LightHouse
  59. myBroadcastAddr netip.Addr
  60. myVpnNet netip.Prefix
  61. dropLocalBroadcast bool
  62. dropMulticast bool
  63. routines int
  64. disconnectInvalid atomic.Bool
  65. closed atomic.Bool
  66. relayManager *relayManager
  67. tryPromoteEvery atomic.Uint32
  68. reQueryEvery atomic.Uint32
  69. reQueryWait atomic.Int64
  70. sendRecvErrorConfig sendRecvErrorConfig
  71. // rebindCount is used to decide if an active tunnel should trigger a punch notification through a lighthouse
  72. rebindCount int8
  73. version string
  74. conntrackCacheTimeout time.Duration
  75. writers []udp.Conn
  76. readers []io.ReadWriteCloser
  77. metricHandshakes metrics.Histogram
  78. messageMetrics *MessageMetrics
  79. cachedPacketMetrics *cachedPacketMetrics
  80. l *logrus.Logger
  81. }
  82. type EncWriter interface {
  83. SendVia(via *HostInfo,
  84. relay *Relay,
  85. ad,
  86. nb,
  87. out []byte,
  88. nocopy bool,
  89. )
  90. SendMessageToVpnIp(t header.MessageType, st header.MessageSubType, vpnIp netip.Addr, p, nb, out []byte)
  91. SendMessageToHostInfo(t header.MessageType, st header.MessageSubType, hostinfo *HostInfo, p, nb, out []byte)
  92. Handshake(vpnIp netip.Addr)
  93. }
  94. type sendRecvErrorConfig uint8
  95. const (
  96. sendRecvErrorAlways sendRecvErrorConfig = iota
  97. sendRecvErrorNever
  98. sendRecvErrorPrivate
  99. )
  100. func (s sendRecvErrorConfig) ShouldSendRecvError(ip netip.AddrPort) bool {
  101. switch s {
  102. case sendRecvErrorPrivate:
  103. return ip.Addr().IsPrivate()
  104. case sendRecvErrorAlways:
  105. return true
  106. case sendRecvErrorNever:
  107. return false
  108. default:
  109. panic(fmt.Errorf("invalid sendRecvErrorConfig value: %d", s))
  110. }
  111. }
  112. func (s sendRecvErrorConfig) String() string {
  113. switch s {
  114. case sendRecvErrorAlways:
  115. return "always"
  116. case sendRecvErrorNever:
  117. return "never"
  118. case sendRecvErrorPrivate:
  119. return "private"
  120. default:
  121. return fmt.Sprintf("invalid(%d)", s)
  122. }
  123. }
  124. func NewInterface(ctx context.Context, c *InterfaceConfig) (*Interface, error) {
  125. if c.Outside == nil {
  126. return nil, errors.New("no outside connection")
  127. }
  128. if c.Inside == nil {
  129. return nil, errors.New("no inside interface (tun)")
  130. }
  131. if c.pki == nil {
  132. return nil, errors.New("no certificate state")
  133. }
  134. if c.Firewall == nil {
  135. return nil, errors.New("no firewall rules")
  136. }
  137. certificate := c.pki.GetCertState().Certificate
  138. myVpnAddr, ok := netip.AddrFromSlice(certificate.Details.Ips[0].IP)
  139. if !ok {
  140. return nil, fmt.Errorf("invalid ip address in certificate: %s", certificate.Details.Ips[0].IP)
  141. }
  142. myVpnMask, ok := netip.AddrFromSlice(certificate.Details.Ips[0].Mask)
  143. if !ok {
  144. return nil, fmt.Errorf("invalid ip mask in certificate: %s", certificate.Details.Ips[0].Mask)
  145. }
  146. myVpnAddr = myVpnAddr.Unmap()
  147. myVpnMask = myVpnMask.Unmap()
  148. if myVpnAddr.BitLen() != myVpnMask.BitLen() {
  149. return nil, fmt.Errorf("ip address and mask are different lengths in certificate")
  150. }
  151. ones, _ := certificate.Details.Ips[0].Mask.Size()
  152. myVpnNet := netip.PrefixFrom(myVpnAddr, ones)
  153. ifce := &Interface{
  154. pki: c.pki,
  155. hostMap: c.HostMap,
  156. outside: c.Outside,
  157. inside: c.Inside,
  158. cipher: c.Cipher,
  159. firewall: c.Firewall,
  160. serveDns: c.ServeDns,
  161. handshakeManager: c.HandshakeManager,
  162. createTime: time.Now(),
  163. lightHouse: c.lightHouse,
  164. dropLocalBroadcast: c.DropLocalBroadcast,
  165. dropMulticast: c.DropMulticast,
  166. routines: c.routines,
  167. version: c.version,
  168. writers: make([]udp.Conn, c.routines),
  169. readers: make([]io.ReadWriteCloser, c.routines),
  170. myVpnNet: myVpnNet,
  171. relayManager: c.relayManager,
  172. conntrackCacheTimeout: c.ConntrackCacheTimeout,
  173. metricHandshakes: metrics.GetOrRegisterHistogram("handshakes", nil, metrics.NewExpDecaySample(1028, 0.015)),
  174. messageMetrics: c.MessageMetrics,
  175. cachedPacketMetrics: &cachedPacketMetrics{
  176. sent: metrics.GetOrRegisterCounter("hostinfo.cached_packets.sent", nil),
  177. dropped: metrics.GetOrRegisterCounter("hostinfo.cached_packets.dropped", nil),
  178. },
  179. l: c.l,
  180. }
  181. if myVpnAddr.Is4() {
  182. addr := myVpnNet.Masked().Addr().As4()
  183. binary.BigEndian.PutUint32(addr[:], binary.BigEndian.Uint32(addr[:])|^binary.BigEndian.Uint32(certificate.Details.Ips[0].Mask))
  184. ifce.myBroadcastAddr = netip.AddrFrom4(addr)
  185. }
  186. ifce.tryPromoteEvery.Store(c.tryPromoteEvery)
  187. ifce.reQueryEvery.Store(c.reQueryEvery)
  188. ifce.reQueryWait.Store(int64(c.reQueryWait))
  189. ifce.connectionManager = newConnectionManager(ctx, c.l, ifce, c.checkInterval, c.pendingDeletionInterval, c.punchy)
  190. return ifce, nil
  191. }
  192. // activate creates the interface on the host. After the interface is created, any
  193. // other services that want to bind listeners to its IP may do so successfully. However,
  194. // the interface isn't going to process anything until run() is called.
  195. func (f *Interface) activate() {
  196. // actually turn on tun dev
  197. addr, err := f.outside.LocalAddr()
  198. if err != nil {
  199. f.l.WithError(err).Error("Failed to get udp listen address")
  200. }
  201. f.l.WithField("interface", f.inside.Name()).WithField("network", f.inside.Cidr().String()).
  202. WithField("build", f.version).WithField("udpAddr", addr).
  203. WithField("boringcrypto", boringEnabled()).
  204. Info("Nebula interface is active")
  205. metrics.GetOrRegisterGauge("routines", nil).Update(int64(f.routines))
  206. // Prepare n tun queues
  207. var reader io.ReadWriteCloser = f.inside
  208. for i := 0; i < f.routines; i++ {
  209. if i > 0 {
  210. reader, err = f.inside.NewMultiQueueReader()
  211. if err != nil {
  212. f.l.Fatal(err)
  213. }
  214. }
  215. f.readers[i] = reader
  216. }
  217. if err := f.inside.Activate(); err != nil {
  218. f.inside.Close()
  219. f.l.Fatal(err)
  220. }
  221. }
  222. func (f *Interface) run() {
  223. // Launch n queues to read packets from udp
  224. for i := 0; i < f.routines; i++ {
  225. go f.listenOut(i)
  226. }
  227. // Launch n queues to read packets from tun dev
  228. for i := 0; i < f.routines; i++ {
  229. go f.listenIn(f.readers[i], i)
  230. }
  231. }
  232. func (f *Interface) listenOut(i int) {
  233. runtime.LockOSThread()
  234. var li udp.Conn
  235. // TODO clean this up with a coherent interface for each outside connection
  236. if i > 0 {
  237. li = f.writers[i]
  238. } else {
  239. li = f.outside
  240. }
  241. lhh := f.lightHouse.NewRequestHandler()
  242. conntrackCache := firewall.NewConntrackCacheTicker(f.conntrackCacheTimeout)
  243. li.ListenOut(readOutsidePackets(f), lhHandleRequest(lhh, f), conntrackCache, i)
  244. }
  245. func (f *Interface) listenIn(reader io.ReadWriteCloser, i int) {
  246. runtime.LockOSThread()
  247. packet := make([]byte, mtu)
  248. out := make([]byte, mtu)
  249. fwPacket := &firewall.Packet{}
  250. nb := make([]byte, 12, 12)
  251. conntrackCache := firewall.NewConntrackCacheTicker(f.conntrackCacheTimeout)
  252. for {
  253. n, err := reader.Read(packet)
  254. if err != nil {
  255. if errors.Is(err, os.ErrClosed) && f.closed.Load() {
  256. return
  257. }
  258. f.l.WithError(err).Error("Error while reading outbound packet")
  259. // This only seems to happen when something fatal happens to the fd, so exit.
  260. os.Exit(2)
  261. }
  262. f.consumeInsidePacket(packet[:n], fwPacket, nb, out, i, conntrackCache.Get(f.l))
  263. }
  264. }
  265. func (f *Interface) RegisterConfigChangeCallbacks(c *config.C) {
  266. c.RegisterReloadCallback(f.reloadFirewall)
  267. c.RegisterReloadCallback(f.reloadSendRecvError)
  268. c.RegisterReloadCallback(f.reloadDisconnectInvalid)
  269. c.RegisterReloadCallback(f.reloadMisc)
  270. for _, udpConn := range f.writers {
  271. c.RegisterReloadCallback(udpConn.ReloadConfig)
  272. }
  273. }
  274. func (f *Interface) reloadDisconnectInvalid(c *config.C) {
  275. initial := c.InitialLoad()
  276. if initial || c.HasChanged("pki.disconnect_invalid") {
  277. f.disconnectInvalid.Store(c.GetBool("pki.disconnect_invalid", true))
  278. if !initial {
  279. f.l.Infof("pki.disconnect_invalid changed to %v", f.disconnectInvalid.Load())
  280. }
  281. }
  282. }
  283. func (f *Interface) reloadFirewall(c *config.C) {
  284. //TODO: need to trigger/detect if the certificate changed too
  285. if c.HasChanged("firewall") == false {
  286. f.l.Debug("No firewall config change detected")
  287. return
  288. }
  289. fw, err := NewFirewallFromConfig(f.l, f.pki.GetCertState().Certificate, c)
  290. if err != nil {
  291. f.l.WithError(err).Error("Error while creating firewall during reload")
  292. return
  293. }
  294. oldFw := f.firewall
  295. conntrack := oldFw.Conntrack
  296. conntrack.Lock()
  297. defer conntrack.Unlock()
  298. fw.rulesVersion = oldFw.rulesVersion + 1
  299. // If rulesVersion is back to zero, we have wrapped all the way around. Be
  300. // safe and just reset conntrack in this case.
  301. if fw.rulesVersion == 0 {
  302. f.l.WithField("firewallHashes", fw.GetRuleHashes()).
  303. WithField("oldFirewallHashes", oldFw.GetRuleHashes()).
  304. WithField("rulesVersion", fw.rulesVersion).
  305. Warn("firewall rulesVersion has overflowed, resetting conntrack")
  306. } else {
  307. fw.Conntrack = conntrack
  308. }
  309. f.firewall = fw
  310. oldFw.Destroy()
  311. f.l.WithField("firewallHashes", fw.GetRuleHashes()).
  312. WithField("oldFirewallHashes", oldFw.GetRuleHashes()).
  313. WithField("rulesVersion", fw.rulesVersion).
  314. Info("New firewall has been installed")
  315. }
  316. func (f *Interface) reloadSendRecvError(c *config.C) {
  317. if c.InitialLoad() || c.HasChanged("listen.send_recv_error") {
  318. stringValue := c.GetString("listen.send_recv_error", "always")
  319. switch stringValue {
  320. case "always":
  321. f.sendRecvErrorConfig = sendRecvErrorAlways
  322. case "never":
  323. f.sendRecvErrorConfig = sendRecvErrorNever
  324. case "private":
  325. f.sendRecvErrorConfig = sendRecvErrorPrivate
  326. default:
  327. if c.GetBool("listen.send_recv_error", true) {
  328. f.sendRecvErrorConfig = sendRecvErrorAlways
  329. } else {
  330. f.sendRecvErrorConfig = sendRecvErrorNever
  331. }
  332. }
  333. f.l.WithField("sendRecvError", f.sendRecvErrorConfig.String()).
  334. Info("Loaded send_recv_error config")
  335. }
  336. }
  337. func (f *Interface) reloadMisc(c *config.C) {
  338. if c.HasChanged("counters.try_promote") {
  339. n := c.GetUint32("counters.try_promote", defaultPromoteEvery)
  340. f.tryPromoteEvery.Store(n)
  341. f.l.Info("counters.try_promote has changed")
  342. }
  343. if c.HasChanged("counters.requery_every_packets") {
  344. n := c.GetUint32("counters.requery_every_packets", defaultReQueryEvery)
  345. f.reQueryEvery.Store(n)
  346. f.l.Info("counters.requery_every_packets has changed")
  347. }
  348. if c.HasChanged("timers.requery_wait_duration") {
  349. n := c.GetDuration("timers.requery_wait_duration", defaultReQueryWait)
  350. f.reQueryWait.Store(int64(n))
  351. f.l.Info("timers.requery_wait_duration has changed")
  352. }
  353. }
  354. func (f *Interface) emitStats(ctx context.Context, i time.Duration) {
  355. ticker := time.NewTicker(i)
  356. defer ticker.Stop()
  357. udpStats := udp.NewUDPStatsEmitter(f.writers)
  358. certExpirationGauge := metrics.GetOrRegisterGauge("certificate.ttl_seconds", nil)
  359. for {
  360. select {
  361. case <-ctx.Done():
  362. return
  363. case <-ticker.C:
  364. f.firewall.EmitStats()
  365. f.handshakeManager.EmitStats()
  366. udpStats()
  367. certExpirationGauge.Update(int64(f.pki.GetCertState().Certificate.Details.NotAfter.Sub(time.Now()) / time.Second))
  368. }
  369. }
  370. }
  371. func (f *Interface) Close() error {
  372. f.closed.Store(true)
  373. for _, u := range f.writers {
  374. err := u.Close()
  375. if err != nil {
  376. f.l.WithError(err).Error("Error while closing udp socket")
  377. }
  378. }
  379. // Release the tun device
  380. return f.inside.Close()
  381. }