relay.go 8.4 KB

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  1. // Copyright (C) 2015 The Syncthing Authors.
  2. //
  3. // This Source Code Form is subject to the terms of the Mozilla Public
  4. // License, v. 2.0. If a copy of the MPL was not distributed with this file,
  5. // You can obtain one at http://mozilla.org/MPL/2.0/.
  6. package relay
  7. import (
  8. "crypto/tls"
  9. "encoding/json"
  10. "net"
  11. "net/http"
  12. "net/url"
  13. "sort"
  14. "time"
  15. "github.com/syncthing/syncthing/lib/config"
  16. "github.com/syncthing/syncthing/lib/events"
  17. "github.com/syncthing/syncthing/lib/osutil"
  18. "github.com/syncthing/syncthing/lib/relay/client"
  19. "github.com/syncthing/syncthing/lib/relay/protocol"
  20. "github.com/syncthing/syncthing/lib/sync"
  21. "github.com/thejerf/suture"
  22. )
  23. const (
  24. eventBroadcasterCheckInterval = 10 * time.Second
  25. )
  26. type Svc struct {
  27. *suture.Supervisor
  28. cfg *config.Wrapper
  29. tlsCfg *tls.Config
  30. tokens map[string]suture.ServiceToken
  31. clients map[string]*client.ProtocolClient
  32. mut sync.RWMutex
  33. invitations chan protocol.SessionInvitation
  34. conns chan *tls.Conn
  35. }
  36. func NewSvc(cfg *config.Wrapper, tlsCfg *tls.Config) *Svc {
  37. conns := make(chan *tls.Conn)
  38. svc := &Svc{
  39. Supervisor: suture.New("Svc", suture.Spec{
  40. Log: func(log string) {
  41. if debug {
  42. l.Debugln(log)
  43. }
  44. },
  45. FailureBackoff: 5 * time.Minute,
  46. FailureDecay: float64((10 * time.Minute) / time.Second),
  47. FailureThreshold: 5,
  48. }),
  49. cfg: cfg,
  50. tlsCfg: tlsCfg,
  51. tokens: make(map[string]suture.ServiceToken),
  52. clients: make(map[string]*client.ProtocolClient),
  53. mut: sync.NewRWMutex(),
  54. invitations: make(chan protocol.SessionInvitation),
  55. conns: conns,
  56. }
  57. rcfg := cfg.Raw()
  58. svc.CommitConfiguration(rcfg, rcfg)
  59. cfg.Subscribe(svc)
  60. receiver := &invitationReceiver{
  61. tlsCfg: tlsCfg,
  62. conns: conns,
  63. invitations: svc.invitations,
  64. stop: make(chan struct{}),
  65. }
  66. eventBc := &eventBroadcaster{
  67. svc: svc,
  68. }
  69. svc.Add(receiver)
  70. svc.Add(eventBc)
  71. return svc
  72. }
  73. func (s *Svc) VerifyConfiguration(from, to config.Configuration) error {
  74. for _, addr := range to.Options.RelayServers {
  75. _, err := url.Parse(addr)
  76. if err != nil {
  77. return err
  78. }
  79. }
  80. return nil
  81. }
  82. func (s *Svc) CommitConfiguration(from, to config.Configuration) bool {
  83. existing := make(map[string]*url.URL, len(to.Options.RelayServers))
  84. for _, addr := range to.Options.RelayServers {
  85. uri, err := url.Parse(addr)
  86. if err != nil {
  87. if debug {
  88. l.Debugln("Failed to parse relay address", addr, err)
  89. }
  90. continue
  91. }
  92. existing[uri.String()] = uri
  93. }
  94. // Query dynamic addresses, and pick the closest relay from the ones they provide.
  95. for key, uri := range existing {
  96. if uri.Scheme != "dynamic+http" && uri.Scheme != "dynamic+https" {
  97. continue
  98. }
  99. delete(existing, key)
  100. // Trim off the `dynamic+` prefix
  101. uri.Scheme = uri.Scheme[8:]
  102. if debug {
  103. l.Debugln("Looking up dynamic relays from", uri)
  104. }
  105. data, err := http.Get(uri.String())
  106. if err != nil {
  107. if debug {
  108. l.Debugln("Failed to lookup dynamic relays", err)
  109. }
  110. continue
  111. }
  112. var ann dynamicAnnouncement
  113. err = json.NewDecoder(data.Body).Decode(&ann)
  114. data.Body.Close()
  115. if err != nil {
  116. if debug {
  117. l.Debugln("Failed to lookup dynamic relays", err)
  118. }
  119. continue
  120. }
  121. var dynRelayAddrs []string
  122. for _, relayAnn := range ann.Relays {
  123. ruri, err := url.Parse(relayAnn.URL)
  124. if err != nil {
  125. if debug {
  126. l.Debugln("Failed to parse dynamic relay address", relayAnn.URL, err)
  127. }
  128. continue
  129. }
  130. if debug {
  131. l.Debugln("Found", ruri, "via", uri)
  132. }
  133. dynRelayAddrs = append(dynRelayAddrs, ruri.String())
  134. }
  135. if len(dynRelayAddrs) > 0 {
  136. dynRelayAddrs = relayAddressesSortedByLatency(dynRelayAddrs)
  137. closestRelay := dynRelayAddrs[0]
  138. if debug {
  139. l.Debugln("Picking", closestRelay, "as closest dynamic relay from", uri)
  140. }
  141. ruri, _ := url.Parse(closestRelay)
  142. existing[closestRelay] = ruri
  143. } else if debug {
  144. l.Debugln("No dynamic relay found on", uri)
  145. }
  146. }
  147. s.mut.Lock()
  148. for key, uri := range existing {
  149. _, ok := s.tokens[key]
  150. if !ok {
  151. if debug {
  152. l.Debugln("Connecting to relay", uri)
  153. }
  154. c := client.NewProtocolClient(uri, s.tlsCfg.Certificates, s.invitations)
  155. s.tokens[key] = s.Add(c)
  156. s.clients[key] = c
  157. }
  158. }
  159. for key, token := range s.tokens {
  160. _, ok := existing[key]
  161. if !ok {
  162. err := s.Remove(token)
  163. delete(s.tokens, key)
  164. delete(s.clients, key)
  165. if debug {
  166. l.Debugln("Disconnecting from relay", key, err)
  167. }
  168. }
  169. }
  170. s.mut.Unlock()
  171. return true
  172. }
  173. type Status struct {
  174. URL string
  175. OK bool
  176. Latency int
  177. }
  178. // Relays return the list of relays that currently have an OK status.
  179. func (s *Svc) Relays() []string {
  180. if s == nil {
  181. // A nil client does not have a status, really. Yet we may be called
  182. // this way, for raisins...
  183. return nil
  184. }
  185. s.mut.RLock()
  186. relays := make([]string, 0, len(s.clients))
  187. for uri := range s.clients {
  188. relays = append(relays, uri)
  189. }
  190. s.mut.RUnlock()
  191. sort.Strings(relays)
  192. return relays
  193. }
  194. // RelayStatus returns the latency and OK status for a given relay.
  195. func (s *Svc) RelayStatus(uri string) (time.Duration, bool) {
  196. if s == nil {
  197. // A nil client does not have a status, really. Yet we may be called
  198. // this way, for raisins...
  199. return time.Hour, false
  200. }
  201. s.mut.RLock()
  202. client, ok := s.clients[uri]
  203. s.mut.RUnlock()
  204. if !ok || !client.StatusOK() {
  205. return time.Hour, false
  206. }
  207. return client.Latency(), true
  208. }
  209. // Accept returns a new *tls.Conn. The connection is already handshaken.
  210. func (s *Svc) Accept() *tls.Conn {
  211. return <-s.conns
  212. }
  213. type invitationReceiver struct {
  214. invitations chan protocol.SessionInvitation
  215. tlsCfg *tls.Config
  216. conns chan<- *tls.Conn
  217. stop chan struct{}
  218. }
  219. func (r *invitationReceiver) Serve() {
  220. for {
  221. select {
  222. case inv := <-r.invitations:
  223. if debug {
  224. l.Debugln("Received relay invitation", inv)
  225. }
  226. conn, err := client.JoinSession(inv)
  227. if err != nil {
  228. if debug {
  229. l.Debugf("Failed to join relay session %s: %v", inv, err)
  230. }
  231. continue
  232. }
  233. err = osutil.SetTCPOptions(conn.(*net.TCPConn))
  234. if err != nil {
  235. l.Infoln(err)
  236. }
  237. var tc *tls.Conn
  238. if inv.ServerSocket {
  239. tc = tls.Server(conn, r.tlsCfg)
  240. } else {
  241. tc = tls.Client(conn, r.tlsCfg)
  242. }
  243. err = tc.Handshake()
  244. if err != nil {
  245. l.Infof("TLS handshake (BEP/relay %s): %v", inv, err)
  246. tc.Close()
  247. continue
  248. }
  249. r.conns <- tc
  250. case <-r.stop:
  251. return
  252. }
  253. }
  254. }
  255. func (r *invitationReceiver) Stop() {
  256. close(r.stop)
  257. }
  258. // The eventBroadcaster sends a RelayStateChanged event when the relay status
  259. // changes. We need this somewhat ugly polling mechanism as there's currently
  260. // no way to get the event feed directly from the relay lib. This may be
  261. // somethign to revisit later, possibly.
  262. type eventBroadcaster struct {
  263. svc *Svc
  264. stop chan struct{}
  265. }
  266. func (e *eventBroadcaster) Serve() {
  267. timer := time.NewTicker(eventBroadcasterCheckInterval)
  268. defer timer.Stop()
  269. var prevOKRelays []string
  270. for {
  271. select {
  272. case <-timer.C:
  273. curOKRelays := e.svc.Relays()
  274. changed := len(curOKRelays) != len(prevOKRelays)
  275. if !changed {
  276. for i := range curOKRelays {
  277. if curOKRelays[i] != prevOKRelays[i] {
  278. changed = true
  279. break
  280. }
  281. }
  282. }
  283. if changed {
  284. events.Default.Log(events.RelayStateChanged, map[string][]string{
  285. "old": prevOKRelays,
  286. "new": curOKRelays,
  287. })
  288. }
  289. prevOKRelays = curOKRelays
  290. case <-e.stop:
  291. return
  292. }
  293. }
  294. }
  295. func (e *eventBroadcaster) Stop() {
  296. close(e.stop)
  297. }
  298. // This is the announcement recieved from the relay server;
  299. // {"relays": [{"url": "relay://10.20.30.40:5060"}, ...]}
  300. type dynamicAnnouncement struct {
  301. Relays []struct {
  302. URL string
  303. }
  304. }
  305. // relayAddressesSortedByLatency adds local latency to the relay, and sorts them
  306. // by sum latency, and returns the addresses.
  307. func relayAddressesSortedByLatency(input []string) []string {
  308. relays := make(relayList, len(input))
  309. for i, relay := range input {
  310. if latency, err := osutil.GetLatencyForURL(relay); err == nil {
  311. relays[i] = relayWithLatency{relay, int(latency / time.Millisecond)}
  312. } else {
  313. relays[i] = relayWithLatency{relay, int(time.Hour / time.Millisecond)}
  314. }
  315. }
  316. sort.Sort(relays)
  317. addresses := make([]string, len(relays))
  318. for i, relay := range relays {
  319. addresses[i] = relay.relay
  320. }
  321. return addresses
  322. }
  323. type relayWithLatency struct {
  324. relay string
  325. latency int
  326. }
  327. type relayList []relayWithLatency
  328. func (l relayList) Len() int {
  329. return len(l)
  330. }
  331. func (l relayList) Less(a, b int) bool {
  332. return l[a].latency < l[b].latency
  333. }
  334. func (l relayList) Swap(a, b int) {
  335. l[a], l[b] = l[b], l[a]
  336. }