proxy.go 36 KB

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  1. /*
  2. * Copyright (c) 2023, Psiphon Inc.
  3. * All rights reserved.
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. *
  18. */
  19. package inproxy
  20. import (
  21. "context"
  22. "io"
  23. "sync"
  24. "sync/atomic"
  25. "time"
  26. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common"
  27. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common/errors"
  28. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common/prng"
  29. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common/protocol"
  30. )
  31. const (
  32. proxyAnnounceDelay = 1 * time.Second
  33. proxyAnnounceDelayJitter = 0.5
  34. proxyAnnounceMaxBackoffDelay = 1 * time.Minute
  35. proxyAnnounceLogSampleSize = 2
  36. proxyAnnounceLogSamplePeriod = 30 * time.Minute
  37. proxyWebRTCAnswerTimeout = 20 * time.Second
  38. proxyDestinationDialTimeout = 20 * time.Second
  39. proxyRelayInactivityTimeout = 5 * time.Minute
  40. )
  41. // Proxy is the in-proxy proxying component, which relays traffic from a
  42. // client to a Psiphon server.
  43. type Proxy struct {
  44. // Note: 64-bit ints used with atomic operations are placed
  45. // at the start of struct to ensure 64-bit alignment.
  46. // (https://golang.org/pkg/sync/atomic/#pkg-note-BUG)
  47. bytesUp int64
  48. bytesDown int64
  49. peakBytesUp int64
  50. peakBytesDown int64
  51. connectingClients int32
  52. connectedClients int32
  53. config *ProxyConfig
  54. activityUpdateWrapper *activityUpdateWrapper
  55. lastConnectingClients int32
  56. lastConnectedClients int32
  57. networkDiscoveryMutex sync.Mutex
  58. networkDiscoveryRunOnce bool
  59. networkDiscoveryNetworkID string
  60. nextAnnounceMutex sync.Mutex
  61. nextAnnounceBrokerClient *BrokerClient
  62. nextAnnounceNotBefore time.Time
  63. }
  64. // TODO: add PublicNetworkAddress/ListenNetworkAddress to facilitate manually
  65. // configured, permanent port mappings.
  66. // ProxyConfig specifies the configuration for a Proxy run.
  67. type ProxyConfig struct {
  68. // Logger is used to log events.
  69. Logger common.Logger
  70. // EnableWebRTCDebugLogging indicates whether to emit WebRTC debug logs.
  71. EnableWebRTCDebugLogging bool
  72. // WaitForNetworkConnectivity is a callback that should block until there
  73. // is network connectivity or shutdown. The return value is true when
  74. // there is network connectivity, and false for shutdown.
  75. WaitForNetworkConnectivity func() bool
  76. // GetBrokerClient provides a BrokerClient which the proxy will use for
  77. // making broker requests. If GetBrokerClient returns a shared
  78. // BrokerClient instance, the BrokerClient must support multiple,
  79. // concurrent round trips, as the proxy will use it to concurrently
  80. // announce many proxy instances. The BrokerClient should be implemented
  81. // using multiplexing over a shared network connection -- for example,
  82. // HTTP/2 -- and a shared broker session for optimal performance.
  83. GetBrokerClient func() (*BrokerClient, error)
  84. // GetBaseAPIParameters returns Psiphon API parameters to be sent to and
  85. // logged by the broker. Expected parameters include client/proxy
  86. // application and build version information. GetBaseAPIParameters also
  87. // returns the network ID, corresponding to the parameters, to be used in
  88. // tactics logic; the network ID is not sent to the broker.
  89. GetBaseAPIParameters func(includeTacticsParameters bool) (
  90. common.APIParameters, string, error)
  91. // MakeWebRTCDialCoordinator provides a WebRTCDialCoordinator which
  92. // specifies WebRTC-related dial parameters, including selected STUN
  93. // server addresses; network topology information for the current netork;
  94. // NAT logic settings; and other settings.
  95. //
  96. // MakeWebRTCDialCoordinator is invoked for each proxy/client connection,
  97. // and the provider can select new parameters per connection as reqired.
  98. MakeWebRTCDialCoordinator func() (WebRTCDialCoordinator, error)
  99. // HandleTacticsPayload is a callback that receives any tactics payload,
  100. // provided by the broker in proxy announcement request responses.
  101. // HandleTacticsPayload must return true when the tacticsPayload includes
  102. // new tactics, indicating that the proxy should reinitialize components
  103. // controlled by tactics parameters.
  104. HandleTacticsPayload func(networkID string, tacticsPayload []byte) bool
  105. // MustUpgrade is a callback that is invoked when a MustUpgrade flag is
  106. // received from the broker. When MustUpgrade is received, the proxy
  107. // should be stopped and the user should be prompted to upgrade before
  108. // restarting the proxy.
  109. MustUpgrade func()
  110. // MaxClients is the maximum number of clients that are allowed to connect
  111. // to the proxy. Must be > 0.
  112. MaxClients int
  113. // LimitUpstreamBytesPerSecond limits the upstream data transfer rate for
  114. // a single client. When 0, there is no limit.
  115. LimitUpstreamBytesPerSecond int
  116. // LimitDownstreamBytesPerSecond limits the downstream data transfer rate
  117. // for a single client. When 0, there is no limit.
  118. LimitDownstreamBytesPerSecond int
  119. // ActivityUpdater specifies an ActivityUpdater for activity associated
  120. // with this proxy.
  121. ActivityUpdater ActivityUpdater
  122. }
  123. // ActivityUpdater is a callback that is invoked when clients connect and
  124. // disconnect and periodically with data transfer updates (unless idle). This
  125. // callback may be used to update an activity UI. This callback should post
  126. // this data to another thread or handler and return immediately and not
  127. // block on UI updates.
  128. type ActivityUpdater func(
  129. connectingClients int32,
  130. connectedClients int32,
  131. bytesUp int64,
  132. bytesDown int64,
  133. bytesDuration time.Duration)
  134. // NewProxy initializes a new Proxy with the specified configuration.
  135. func NewProxy(config *ProxyConfig) (*Proxy, error) {
  136. if config.MaxClients <= 0 {
  137. return nil, errors.TraceNew("invalid MaxClients")
  138. }
  139. p := &Proxy{
  140. config: config,
  141. }
  142. p.activityUpdateWrapper = &activityUpdateWrapper{p: p}
  143. return p, nil
  144. }
  145. // activityUpdateWrapper implements the psiphon/common.ActivityUpdater
  146. // interface and is used to receive bytes transferred updates from the
  147. // ActivityConns wrapping proxied traffic. A wrapper is used so that
  148. // UpdateProgress is not exported from Proxy.
  149. type activityUpdateWrapper struct {
  150. p *Proxy
  151. }
  152. func (w *activityUpdateWrapper) UpdateProgress(bytesRead, bytesWritten int64, _ int64) {
  153. atomic.AddInt64(&w.p.bytesUp, bytesWritten)
  154. atomic.AddInt64(&w.p.bytesDown, bytesRead)
  155. }
  156. // Run runs the proxy. The proxy sends requests to the Broker announcing its
  157. // availability; the Broker matches the proxy with clients, and facilitates
  158. // an exchange of WebRTC connection information; the proxy and each client
  159. // attempt to establish a connection; and the client's traffic is relayed to
  160. // Psiphon server.
  161. //
  162. // Run ends when ctx is Done. A proxy run may continue across underlying
  163. // network changes assuming that the ProxyConfig GetBrokerClient and
  164. // MakeWebRTCDialCoordinator callbacks react to network changes and provide
  165. // instances that are reflect network changes.
  166. func (p *Proxy) Run(ctx context.Context) {
  167. // Run MaxClient proxying workers. Each worker handles one client at a time.
  168. proxyWaitGroup := new(sync.WaitGroup)
  169. // Launch the first proxy worker, passing a signal to be triggered once
  170. // the very first announcement round trip is complete. The first round
  171. // trip is awaited so that:
  172. //
  173. // - The first announce response will arrive with any new tactics,
  174. // which may be applied before launching additions workers.
  175. //
  176. // - The first worker gets no announcement delay and is also guaranteed to
  177. // be the shared session establisher. Since the announcement delays are
  178. // applied _after_ waitToShareSession, it would otherwise be possible,
  179. // with a race of MaxClient initial, concurrent announces, for the
  180. // session establisher to be a different worker than the no-delay worker.
  181. //
  182. // The first worker is the only proxy worker which sets
  183. // ProxyAnnounceRequest.CheckTactics.
  184. signalFirstAnnounceCtx, signalFirstAnnounceDone :=
  185. context.WithCancel(context.Background())
  186. proxyWaitGroup.Add(1)
  187. go func() {
  188. defer proxyWaitGroup.Done()
  189. p.proxyClients(ctx, signalFirstAnnounceDone)
  190. }()
  191. select {
  192. case <-signalFirstAnnounceCtx.Done():
  193. case <-ctx.Done():
  194. return
  195. }
  196. // Launch the remaining workers.
  197. for i := 0; i < p.config.MaxClients-1; i++ {
  198. proxyWaitGroup.Add(1)
  199. go func() {
  200. defer proxyWaitGroup.Done()
  201. p.proxyClients(ctx, nil)
  202. }()
  203. }
  204. // Capture activity updates every second, which is the required frequency
  205. // for PeakUp/DownstreamBytesPerSecond. This is also a reasonable
  206. // frequency for invoking the ActivityUpdater and updating UI widgets.
  207. p.lastConnectingClients = 0
  208. p.lastConnectedClients = 0
  209. activityUpdatePeriod := 1 * time.Second
  210. ticker := time.NewTicker(activityUpdatePeriod)
  211. defer ticker.Stop()
  212. loop:
  213. for {
  214. select {
  215. case <-ticker.C:
  216. p.activityUpdate(activityUpdatePeriod)
  217. case <-ctx.Done():
  218. break loop
  219. }
  220. }
  221. proxyWaitGroup.Wait()
  222. }
  223. // getAnnounceDelayParameters is a helper that fetches the proxy announcement
  224. // delay parameters from the current broker client.
  225. //
  226. // getAnnounceDelayParameters is used to configure a delay when
  227. // proxyOneClient fails. As having no broker clients is a possible
  228. // proxyOneClient failure case, GetBrokerClient errors are ignored here and
  229. // defaults used in that case.
  230. func (p *Proxy) getAnnounceDelayParameters() (time.Duration, float64) {
  231. brokerClient, err := p.config.GetBrokerClient()
  232. if err != nil {
  233. return proxyAnnounceDelay, proxyAnnounceDelayJitter
  234. }
  235. brokerCoordinator := brokerClient.GetBrokerDialCoordinator()
  236. return common.ValueOrDefault(brokerCoordinator.AnnounceDelay(), proxyAnnounceDelay),
  237. common.ValueOrDefault(brokerCoordinator.AnnounceDelayJitter(), proxyAnnounceDelayJitter)
  238. }
  239. func (p *Proxy) activityUpdate(period time.Duration) {
  240. connectingClients := atomic.LoadInt32(&p.connectingClients)
  241. connectedClients := atomic.LoadInt32(&p.connectedClients)
  242. bytesUp := atomic.SwapInt64(&p.bytesUp, 0)
  243. bytesDown := atomic.SwapInt64(&p.bytesDown, 0)
  244. greaterThanSwapInt64(&p.peakBytesUp, bytesUp)
  245. greaterThanSwapInt64(&p.peakBytesDown, bytesDown)
  246. clientsChanged := connectingClients != p.lastConnectingClients ||
  247. connectedClients != p.lastConnectedClients
  248. p.lastConnectingClients = connectingClients
  249. p.lastConnectedClients = connectedClients
  250. if !clientsChanged &&
  251. bytesUp == 0 &&
  252. bytesDown == 0 {
  253. // Skip the activity callback on idle bytes or no change in client counts.
  254. return
  255. }
  256. p.config.ActivityUpdater(
  257. connectingClients,
  258. connectedClients,
  259. bytesUp,
  260. bytesDown,
  261. period)
  262. }
  263. func greaterThanSwapInt64(addr *int64, new int64) bool {
  264. // Limitation: if there are two concurrent calls, the greater value could
  265. // get overwritten.
  266. old := atomic.LoadInt64(addr)
  267. if new > old {
  268. return atomic.CompareAndSwapInt64(addr, old, new)
  269. }
  270. return false
  271. }
  272. func (p *Proxy) proxyClients(
  273. ctx context.Context, signalAnnounceDone func()) {
  274. // Proxy one client, repeating until ctx is done.
  275. //
  276. // This worker starts with posting a long-polling announcement request.
  277. // The broker response with a matched client, and the proxy and client
  278. // attempt to establish a WebRTC connection for relaying traffic.
  279. //
  280. // Limitation: this design may not maximize the utility of the proxy,
  281. // since some proxy/client connections will fail at the WebRTC stage due
  282. // to NAT traversal failure, and at most MaxClient concurrent
  283. // establishments are attempted. Another scenario comes from the Psiphon
  284. // client horse race, which may start in-proxy dials but then abort them
  285. // when some other tunnel protocol succeeds.
  286. //
  287. // As a future enhancement, consider using M announcement goroutines and N
  288. // WebRTC dial goroutines. When an announcement gets a response,
  289. // immediately announce again unless there are already MaxClient active
  290. // connections established. This approach may require the proxy to
  291. // backpedal and reject connections when establishment is too successful.
  292. //
  293. // Another enhancement could be a signal from the client, to the broker,
  294. // relayed to the proxy, when a dial is aborted.
  295. failureDelayFactor := time.Duration(1)
  296. // To reduce diagnostic log noise, only log an initial sample of
  297. // announcement request timings (delays/elapsed time) and a periodic
  298. // sample of repeating errors such as "no match".
  299. logAnnounceCount := proxyAnnounceLogSampleSize
  300. logErrorsCount := proxyAnnounceLogSampleSize
  301. lastErrMsg := ""
  302. startLogSampleTime := time.Now()
  303. logAnnounce := func() bool {
  304. if logAnnounceCount > 0 {
  305. logAnnounceCount -= 1
  306. return true
  307. }
  308. return false
  309. }
  310. for ctx.Err() == nil {
  311. if !p.config.WaitForNetworkConnectivity() {
  312. break
  313. }
  314. if time.Since(startLogSampleTime) >= proxyAnnounceLogSamplePeriod {
  315. logAnnounceCount = proxyAnnounceLogSampleSize
  316. logErrorsCount = proxyAnnounceLogSampleSize
  317. lastErrMsg = ""
  318. startLogSampleTime = time.Now()
  319. }
  320. backOff, err := p.proxyOneClient(
  321. ctx, logAnnounce, signalAnnounceDone)
  322. if err != nil && ctx.Err() == nil {
  323. // Apply a simple exponential backoff based on whether
  324. // proxyOneClient either relayed client traffic or got no match,
  325. // or encountered a failure.
  326. //
  327. // The proxyOneClient failure could range from local
  328. // configuration (no broker clients) to network issues(failure to
  329. // completely establish WebRTC connection) and this backoff
  330. // prevents both excess local logging and churning in the former
  331. // case and excessive bad service to clients or unintentionally
  332. // overloading the broker in the latter case.
  333. //
  334. // TODO: specific tactics parameters to control this logic.
  335. delay, jitter := p.getAnnounceDelayParameters()
  336. if !backOff {
  337. failureDelayFactor = 1
  338. }
  339. delay = delay * failureDelayFactor
  340. if delay > proxyAnnounceMaxBackoffDelay {
  341. delay = proxyAnnounceMaxBackoffDelay
  342. }
  343. if failureDelayFactor < 1<<20 {
  344. failureDelayFactor *= 2
  345. }
  346. // Sample error log.
  347. //
  348. // Limitation: the lastErrMsg string comparison isn't compatible
  349. // with errors with minor variations, such as "unexpected
  350. // response status code %d after %v" from
  351. // InproxyBrokerRoundTripper.RoundTrip, with a time duration in
  352. // the second parameter.
  353. errMsg := err.Error()
  354. if lastErrMsg != errMsg {
  355. logErrorsCount = proxyAnnounceLogSampleSize
  356. lastErrMsg = errMsg
  357. }
  358. if logErrorsCount > 0 {
  359. p.config.Logger.WithTraceFields(
  360. common.LogFields{
  361. "error": errMsg,
  362. "delay": delay,
  363. "jitter": jitter,
  364. }).Error("proxy client failed")
  365. logErrorsCount -= 1
  366. }
  367. common.SleepWithJitter(ctx, delay, jitter)
  368. }
  369. }
  370. }
  371. // resetNetworkDiscovery resets the network discovery state, which will force
  372. // another network discovery when doNetworkDiscovery is invoked.
  373. // resetNetworkDiscovery is called when new tactics have been received from
  374. // the broker, as new tactics may change parameters that control network
  375. // discovery.
  376. func (p *Proxy) resetNetworkDiscovery() {
  377. p.networkDiscoveryMutex.Lock()
  378. defer p.networkDiscoveryMutex.Unlock()
  379. p.networkDiscoveryRunOnce = false
  380. p.networkDiscoveryNetworkID = ""
  381. }
  382. func (p *Proxy) doNetworkDiscovery(
  383. ctx context.Context,
  384. webRTCCoordinator WebRTCDialCoordinator) {
  385. // Allow only one concurrent network discovery. In practise, this may
  386. // block all other proxyOneClient goroutines while one single goroutine
  387. // runs doNetworkDiscovery. Subsequently, all other goroutines will find
  388. // networkDiscoveryRunOnce is true and use the cached results.
  389. p.networkDiscoveryMutex.Lock()
  390. defer p.networkDiscoveryMutex.Unlock()
  391. networkID := webRTCCoordinator.NetworkID()
  392. if p.networkDiscoveryRunOnce &&
  393. p.networkDiscoveryNetworkID == networkID {
  394. // Already ran discovery for this network.
  395. //
  396. // TODO: periodically re-probe for port mapping services?
  397. return
  398. }
  399. // Reset and configure port mapper component, as required. See
  400. // initPortMapper comment.
  401. initPortMapper(webRTCCoordinator)
  402. // Gather local network NAT/port mapping metrics and configuration before
  403. // sending any announce requests. NAT topology metrics are used by the
  404. // Broker to optimize client and in-proxy matching. Unlike the client, we
  405. // always perform this synchronous step here, since waiting doesn't
  406. // necessarily block a client tunnel dial.
  407. waitGroup := new(sync.WaitGroup)
  408. waitGroup.Add(1)
  409. go func() {
  410. defer waitGroup.Done()
  411. // NATDiscover may use cached NAT type/port mapping values from
  412. // DialParameters, based on the network ID. If discovery is not
  413. // successful, the proxy still proceeds to announce.
  414. NATDiscover(
  415. ctx,
  416. &NATDiscoverConfig{
  417. Logger: p.config.Logger,
  418. WebRTCDialCoordinator: webRTCCoordinator,
  419. })
  420. }()
  421. waitGroup.Wait()
  422. p.networkDiscoveryRunOnce = true
  423. p.networkDiscoveryNetworkID = networkID
  424. }
  425. func (p *Proxy) proxyOneClient(
  426. ctx context.Context,
  427. logAnnounce func() bool,
  428. signalAnnounceDone func()) (bool, error) {
  429. // Do not trigger back-off unless the proxy successfully announces and
  430. // only then performs poorly.
  431. //
  432. // A no-match response should not trigger back-off, nor should broker
  433. // request transport errors which may include non-200 responses due to
  434. // CDN timeout mismatches or TLS errors due to CDN TLS fingerprint
  435. // incompatibility.
  436. backOff := false
  437. // Get a new WebRTCDialCoordinator, which should be configured with the
  438. // latest network tactics.
  439. webRTCCoordinator, err := p.config.MakeWebRTCDialCoordinator()
  440. if err != nil {
  441. return backOff, errors.Trace(err)
  442. }
  443. // Perform network discovery, to determine NAT type and other network
  444. // topology information that is reported to the broker in the proxy
  445. // announcement and used to optimize proxy/client matching. Unlike
  446. // clients, which can't easily delay dials in the tunnel establishment
  447. // horse race, proxies will always perform network discovery.
  448. // doNetworkDiscovery allows only one concurrent discovery and caches
  449. // results for the current network (as determined by
  450. // WebRTCCoordinator.GetNetworkID), so when multiple proxyOneClient
  451. // goroutines call doNetworkDiscovery, at most one discovery is performed
  452. // per network.
  453. p.doNetworkDiscovery(ctx, webRTCCoordinator)
  454. // Send the announce request
  455. // At this point, no NAT traversal operations have been performed by the
  456. // proxy, since its announcement may sit idle for the long-polling period
  457. // and NAT hole punches or port mappings could expire before the
  458. // long-polling period.
  459. //
  460. // As a future enhancement, the proxy could begin gathering WebRTC ICE
  461. // candidates while awaiting a client match, reducing the turn around
  462. // time after a match. This would make sense if there's high demand for
  463. // proxies, and so hole punches unlikely to expire while awaiting a client match.
  464. //
  465. // Another possibility may be to prepare and send a full offer SDP in the
  466. // announcment; and have the broker modify either the proxy or client
  467. // offer SDP to produce an answer SDP. In this case, the entire
  468. // ProxyAnswerRequest could be skipped as the WebRTC dial can begin after
  469. // the ProxyAnnounceRequest response (and ClientOfferRequest response).
  470. //
  471. // Furthermore, if a port mapping can be established, instead of using
  472. // WebRTC the proxy could run a Psiphon tunnel protocol listener at the
  473. // mapped port and send the dial information -- including some secret to
  474. // authenticate the client -- in its announcement. The client would then
  475. // receive this direct dial information from the broker and connect. The
  476. // proxy should be able to send keep alives to extend the port mapping
  477. // lifetime.
  478. brokerClient, err := p.config.GetBrokerClient()
  479. if err != nil {
  480. return backOff, errors.Trace(err)
  481. }
  482. brokerCoordinator := brokerClient.GetBrokerDialCoordinator()
  483. // Only the first worker, which has signalAnnounceDone configured, checks
  484. // for tactics.
  485. checkTactics := signalAnnounceDone != nil
  486. // Get the base Psiphon API parameters and additional proxy metrics,
  487. // including performance information, which is sent to the broker in the
  488. // proxy announcment.
  489. //
  490. // tacticsNetworkID is the exact network ID that corresponds to the
  491. // tactics tag sent in the base parameters; this is passed to
  492. // HandleTacticsPayload in order to double check that any tactics
  493. // returned in the proxy announcment response are associated and stored
  494. // with the original network ID.
  495. metrics, tacticsNetworkID, err := p.getMetrics(
  496. checkTactics, brokerCoordinator, webRTCCoordinator)
  497. if err != nil {
  498. return backOff, errors.Trace(err)
  499. }
  500. // Set a delay before announcing, to stagger the announce request times.
  501. // The delay helps to avoid triggering rate limits or similar errors from
  502. // any intermediate CDN between the proxy and the broker; and provides a
  503. // nudge towards better load balancing across multiple large MaxClients
  504. // proxies, as the broker primarily matches enqueued announces in FIFO
  505. // order, since older announces expire earlier.
  506. //
  507. // The delay is intended to be applied after doNetworkDiscovery, which has
  508. // no reason to be delayed; and also after any waitToShareSession delay,
  509. // as delaying before waitToShareSession can result in the announce
  510. // request times collapsing back together. Delaying after
  511. // waitToShareSession is handled by brokerClient.ProxyAnnounce, which
  512. // will also extend the base request timeout, as required, to account for
  513. // any deliberate delay.
  514. requestDelay := time.Duration(0)
  515. announceDelay, announceDelayJitter := p.getAnnounceDelayParameters()
  516. p.nextAnnounceMutex.Lock()
  517. nextDelay := prng.JitterDuration(announceDelay, announceDelayJitter)
  518. if p.nextAnnounceBrokerClient != brokerClient {
  519. // Reset the delay when the broker client changes.
  520. p.nextAnnounceNotBefore = time.Time{}
  521. p.nextAnnounceBrokerClient = brokerClient
  522. }
  523. if p.nextAnnounceNotBefore.IsZero() {
  524. p.nextAnnounceNotBefore = time.Now().Add(nextDelay)
  525. // No delay for the very first announce request, so leave
  526. // announceRequestDelay set to 0.
  527. } else {
  528. requestDelay = time.Until(p.nextAnnounceNotBefore)
  529. if requestDelay < 0 {
  530. // This announce did not arrive until after the next delay already
  531. // passed, so proceed with no delay.
  532. p.nextAnnounceNotBefore = time.Now().Add(nextDelay)
  533. requestDelay = 0
  534. } else {
  535. p.nextAnnounceNotBefore = p.nextAnnounceNotBefore.Add(nextDelay)
  536. }
  537. }
  538. p.nextAnnounceMutex.Unlock()
  539. // A proxy ID is implicitly sent with requests; it's the proxy's session
  540. // public key.
  541. //
  542. // ProxyAnnounce applies an additional request timeout to facilitate
  543. // long-polling.
  544. announceStartTime := time.Now()
  545. personalCompartmentIDs := brokerCoordinator.PersonalCompartmentIDs()
  546. announceResponse, err := brokerClient.ProxyAnnounce(
  547. ctx,
  548. requestDelay,
  549. &ProxyAnnounceRequest{
  550. PersonalCompartmentIDs: personalCompartmentIDs,
  551. Metrics: metrics,
  552. CheckTactics: checkTactics,
  553. })
  554. if logAnnounce() {
  555. p.config.Logger.WithTraceFields(common.LogFields{
  556. "delay": requestDelay.String(),
  557. "elapsedTime": time.Since(announceStartTime).String(),
  558. }).Info("announcement request")
  559. }
  560. if err != nil {
  561. return backOff, errors.Trace(err)
  562. }
  563. if len(announceResponse.TacticsPayload) > 0 {
  564. // The TacticsPayload may include new tactics, or may simply signal,
  565. // to the Psiphon client, that its tactics tag remains up-to-date and
  566. // to extend cached tactics TTL. HandleTacticsPayload returns true
  567. // when tactics haved changed; in this case we clear cached network
  568. // discovery but proceed with handling the proxy announcement
  569. // response as there may still be a match.
  570. if p.config.HandleTacticsPayload(
  571. tacticsNetworkID, announceResponse.TacticsPayload) {
  572. p.resetNetworkDiscovery()
  573. }
  574. }
  575. // Signal that the announce round trip is complete. At this point, the
  576. // broker Noise session should be established and any fresh tactics
  577. // applied.
  578. if signalAnnounceDone != nil {
  579. signalAnnounceDone()
  580. }
  581. // MustUpgrade has precedence over other cases, to ensure the callback is
  582. // invoked. Trigger back-off back off when rate/entry limited or must
  583. // upgrade; no back-off for no-match.
  584. if announceResponse.MustUpgrade {
  585. if p.config.MustUpgrade != nil {
  586. p.config.MustUpgrade()
  587. }
  588. backOff = true
  589. return backOff, errors.TraceNew("must upgrade")
  590. } else if announceResponse.Limited {
  591. backOff = true
  592. return backOff, errors.TraceNew("limited")
  593. } else if announceResponse.NoMatch {
  594. return backOff, errors.TraceNew("no match")
  595. }
  596. if announceResponse.ClientProxyProtocolVersion != ProxyProtocolVersion1 {
  597. // This case is currently unexpected, as all clients and proxies use
  598. // ProxyProtocolVersion1.
  599. backOff = true
  600. return backOff, errors.Tracef(
  601. "Unsupported proxy protocol version: %d",
  602. announceResponse.ClientProxyProtocolVersion)
  603. }
  604. // Trigger back-off if the following WebRTC operations fail to establish a
  605. // connections.
  606. //
  607. // Limitation: the proxy answer request to the broker may fail due to the
  608. // non-back-off reasons documented above for the proxy announcment request;
  609. // however, these should be unlikely assuming that the broker client is
  610. // using a persistent transport connection.
  611. backOff = true
  612. // For activity updates, indicate that a client connection is now underway.
  613. atomic.AddInt32(&p.connectingClients, 1)
  614. connected := false
  615. defer func() {
  616. if !connected {
  617. atomic.AddInt32(&p.connectingClients, -1)
  618. }
  619. }()
  620. // Initialize WebRTC using the client's offer SDP
  621. webRTCAnswerCtx, webRTCAnswerCancelFunc := context.WithTimeout(
  622. ctx, common.ValueOrDefault(webRTCCoordinator.WebRTCAnswerTimeout(), proxyWebRTCAnswerTimeout))
  623. defer webRTCAnswerCancelFunc()
  624. // In personal pairing mode, RFC 1918/4193 private IP addresses are
  625. // included in SDPs.
  626. hasPersonalCompartmentIDs := len(personalCompartmentIDs) > 0
  627. webRTCConn, SDP, sdpMetrics, webRTCErr := newWebRTCConnForAnswer(
  628. webRTCAnswerCtx,
  629. &webRTCConfig{
  630. Logger: p.config.Logger,
  631. EnableDebugLogging: p.config.EnableWebRTCDebugLogging,
  632. WebRTCDialCoordinator: webRTCCoordinator,
  633. ClientRootObfuscationSecret: announceResponse.ClientRootObfuscationSecret,
  634. DoDTLSRandomization: announceResponse.DoDTLSRandomization,
  635. TrafficShapingParameters: announceResponse.TrafficShapingParameters,
  636. },
  637. announceResponse.ClientOfferSDP,
  638. hasPersonalCompartmentIDs)
  639. var webRTCRequestErr string
  640. if webRTCErr != nil {
  641. webRTCErr = errors.Trace(webRTCErr)
  642. webRTCRequestErr = webRTCErr.Error()
  643. SDP = WebRTCSessionDescription{}
  644. sdpMetrics = &webRTCSDPMetrics{}
  645. // Continue to report the error to the broker. The broker will respond
  646. // with failure to the client's offer request.
  647. } else {
  648. defer webRTCConn.Close()
  649. }
  650. // Send answer request with SDP or error.
  651. _, err = brokerClient.ProxyAnswer(
  652. ctx,
  653. &ProxyAnswerRequest{
  654. ConnectionID: announceResponse.ConnectionID,
  655. SelectedProxyProtocolVersion: announceResponse.ClientProxyProtocolVersion,
  656. ProxyAnswerSDP: SDP,
  657. ICECandidateTypes: sdpMetrics.iceCandidateTypes,
  658. AnswerError: webRTCRequestErr,
  659. })
  660. if err != nil {
  661. if webRTCErr != nil {
  662. // Prioritize returning any WebRTC error for logging.
  663. return backOff, webRTCErr
  664. }
  665. return backOff, errors.Trace(err)
  666. }
  667. // Now that an answer is sent, stop if WebRTC initialization failed.
  668. if webRTCErr != nil {
  669. return backOff, webRTCErr
  670. }
  671. // Await the WebRTC connection.
  672. // We could concurrently dial the destination, to have that network
  673. // connection available immediately once the WebRTC channel is
  674. // established. This would work only for TCP, not UDP, network protocols
  675. // and could only include the TCP connection, as client traffic is
  676. // required for all higher layers such as TLS, SSH, etc. This could also
  677. // create wasted load on destination Psiphon servers, particularly when
  678. // WebRTC connections fail.
  679. awaitDataChannelCtx, awaitDataChannelCancelFunc := context.WithTimeout(
  680. ctx,
  681. common.ValueOrDefault(
  682. webRTCCoordinator.WebRTCAwaitDataChannelTimeout(), dataChannelAwaitTimeout))
  683. defer awaitDataChannelCancelFunc()
  684. err = webRTCConn.AwaitInitialDataChannel(awaitDataChannelCtx)
  685. if err != nil {
  686. return backOff, errors.Trace(err)
  687. }
  688. p.config.Logger.WithTraceFields(common.LogFields{
  689. "connectionID": announceResponse.ConnectionID,
  690. }).Info("WebRTC data channel established")
  691. // Dial the destination, a Psiphon server. The broker validates that the
  692. // dial destination is a Psiphon server.
  693. destinationDialContext, destinationDialCancelFunc := context.WithTimeout(
  694. ctx,
  695. common.ValueOrDefault(
  696. webRTCCoordinator.ProxyDestinationDialTimeout(), proxyDestinationDialTimeout))
  697. defer destinationDialCancelFunc()
  698. // Use the custom resolver when resolving destination hostnames, such as
  699. // those used in domain fronted protocols.
  700. //
  701. // - Resolving at the in-proxy should yield a more optimal CDN edge, vs.
  702. // resolving at the client.
  703. //
  704. // - Sending unresolved hostnames to in-proxies can expose some domain
  705. // fronting configuration. This can be mitigated by enabling domain
  706. // fronting on this 2nd hop only when the in-proxy is located in a
  707. // region that may be censored or blocked; this is to be enforced by
  708. // the broker.
  709. //
  710. // - Any DNSResolverPreresolved tactics applied will be relative to the
  711. // in-proxy location.
  712. destinationAddress, err := webRTCCoordinator.ResolveAddress(
  713. ctx, "ip", announceResponse.DestinationAddress)
  714. if err != nil {
  715. return backOff, errors.Trace(err)
  716. }
  717. destinationConn, err := webRTCCoordinator.ProxyUpstreamDial(
  718. destinationDialContext,
  719. announceResponse.NetworkProtocol.String(),
  720. destinationAddress)
  721. if err != nil {
  722. return backOff, errors.Trace(err)
  723. }
  724. defer destinationConn.Close()
  725. // For activity updates, indicate that a client connection is established.
  726. connected = true
  727. atomic.AddInt32(&p.connectingClients, -1)
  728. atomic.AddInt32(&p.connectedClients, 1)
  729. defer func() {
  730. atomic.AddInt32(&p.connectedClients, -1)
  731. }()
  732. // Throttle the relay connection.
  733. //
  734. // Here, each client gets LimitUp/DownstreamBytesPerSecond. Proxy
  735. // operators may to want to limit their bandwidth usage with a single
  736. // up/down value, an overall limit. The ProxyConfig can simply be
  737. // generated by dividing the limit by MaxClients. This approach favors
  738. // performance stability: each client gets the same throttling limits
  739. // regardless of how many other clients are connected.
  740. destinationConn = common.NewThrottledConn(
  741. destinationConn,
  742. announceResponse.NetworkProtocol.IsStream(),
  743. common.RateLimits{
  744. ReadBytesPerSecond: int64(p.config.LimitUpstreamBytesPerSecond),
  745. WriteBytesPerSecond: int64(p.config.LimitDownstreamBytesPerSecond),
  746. })
  747. // Hook up bytes transferred counting for activity updates.
  748. // The ActivityMonitoredConn inactivity timeout is configured. For
  749. // upstream TCP connections, the destinationConn will close when the TCP
  750. // connection to the Psiphon server closes. But for upstream UDP flows,
  751. // the relay does not know when the upstream "connection" has closed.
  752. // Well-behaved clients will close the WebRTC half of the relay when
  753. // those clients know the UDP-based tunnel protocol connection is closed;
  754. // the inactivity timeout handles the remaining cases.
  755. inactivityTimeout :=
  756. common.ValueOrDefault(
  757. webRTCCoordinator.ProxyRelayInactivityTimeout(),
  758. proxyRelayInactivityTimeout)
  759. destinationConn, err = common.NewActivityMonitoredConn(
  760. destinationConn, inactivityTimeout, false, nil, p.activityUpdateWrapper)
  761. if err != nil {
  762. return backOff, errors.Trace(err)
  763. }
  764. // Relay the client traffic to the destination. The client traffic is a
  765. // standard Psiphon tunnel protocol destinated to a Psiphon server. Any
  766. // blocking/censorship at the 2nd hop will be mitigated by the use of
  767. // Psiphon circumvention protocols and techniques.
  768. // Limitation: clients may apply fragmentation to traffic relayed over the
  769. // data channel, and there's no guarantee that the fragmentation write
  770. // sizes or delays will carry over to the egress side.
  771. // The proxy operator's ISP may be able to observe that the operator's
  772. // host has nearly matching ingress and egress traffic. The traffic
  773. // content won't be the same: the ingress traffic is wrapped in a WebRTC
  774. // data channel, and the egress traffic is a Psiphon tunnel protocol.
  775. // With padding and decoy packets, the ingress and egress traffic shape
  776. // will differ beyond the basic WebRTC overheader. Even with this
  777. // measure, over time the number of bytes in and out of the proxy may
  778. // still indicate proxying.
  779. waitGroup := new(sync.WaitGroup)
  780. relayErrors := make(chan error, 2)
  781. var relayedUp, relayedDown int32
  782. waitGroup.Add(1)
  783. go func() {
  784. defer waitGroup.Done()
  785. // WebRTC data channels are based on SCTP, which is actually
  786. // message-based, not a stream. The (default) max message size for
  787. // pion/sctp is 65536:
  788. // https://github.com/pion/sctp/blob/44ed465396c880e379aae9c1bf81809a9e06b580/association.go#L52.
  789. //
  790. // As io.Copy uses a buffer size of 32K, each relayed message will be
  791. // less than the maximum. Calls to ClientConn.Write are also expected
  792. // to use io.Copy, keeping messages at most 32K in size.
  793. // io.Copy doesn't return an error on EOF, but we still want to signal
  794. // that relaying is done, so in this case a nil error is sent to the
  795. // channel.
  796. //
  797. // Limitation: if one io.Copy goproutine sends nil and the other
  798. // io.Copy goroutine sends a non-nil error concurrently, the non-nil
  799. // error isn't prioritized.
  800. n, err := io.Copy(webRTCConn, destinationConn)
  801. if n > 0 {
  802. atomic.StoreInt32(&relayedDown, 1)
  803. }
  804. relayErrors <- errors.Trace(err)
  805. }()
  806. waitGroup.Add(1)
  807. go func() {
  808. defer waitGroup.Done()
  809. n, err := io.Copy(destinationConn, webRTCConn)
  810. if n > 0 {
  811. atomic.StoreInt32(&relayedUp, 1)
  812. }
  813. relayErrors <- errors.Trace(err)
  814. }()
  815. select {
  816. case err = <-relayErrors:
  817. case <-ctx.Done():
  818. }
  819. // Interrupt the relay goroutines by closing the connections.
  820. webRTCConn.Close()
  821. destinationConn.Close()
  822. waitGroup.Wait()
  823. p.config.Logger.WithTraceFields(common.LogFields{
  824. "connectionID": announceResponse.ConnectionID,
  825. }).Info("connection closed")
  826. // Don't apply a back-off delay to the next announcement since this
  827. // iteration successfully relayed bytes.
  828. if atomic.LoadInt32(&relayedUp) == 1 || atomic.LoadInt32(&relayedDown) == 1 {
  829. backOff = false
  830. }
  831. return backOff, err
  832. }
  833. func (p *Proxy) getMetrics(
  834. includeTacticsParameters bool,
  835. brokerCoordinator BrokerDialCoordinator,
  836. webRTCCoordinator WebRTCDialCoordinator) (*ProxyMetrics, string, error) {
  837. // tacticsNetworkID records the exact network ID that corresponds to the
  838. // tactics tag sent in the base parameters, and is used when applying any
  839. // new tactics returned by the broker.
  840. baseParams, tacticsNetworkID, err := p.config.GetBaseAPIParameters(
  841. includeTacticsParameters)
  842. if err != nil {
  843. return nil, "", errors.Trace(err)
  844. }
  845. apiParams := common.APIParameters{}
  846. apiParams.Add(baseParams)
  847. apiParams.Add(common.APIParameters(brokerCoordinator.MetricsForBrokerRequests()))
  848. packedParams, err := protocol.EncodePackedAPIParameters(apiParams)
  849. if err != nil {
  850. return nil, "", errors.Trace(err)
  851. }
  852. return &ProxyMetrics{
  853. BaseAPIParameters: packedParams,
  854. ProxyProtocolVersion: proxyProtocolVersion,
  855. NATType: webRTCCoordinator.NATType(),
  856. PortMappingTypes: webRTCCoordinator.PortMappingTypes(),
  857. MaxClients: int32(p.config.MaxClients),
  858. ConnectingClients: atomic.LoadInt32(&p.connectingClients),
  859. ConnectedClients: atomic.LoadInt32(&p.connectedClients),
  860. LimitUpstreamBytesPerSecond: int64(p.config.LimitUpstreamBytesPerSecond),
  861. LimitDownstreamBytesPerSecond: int64(p.config.LimitDownstreamBytesPerSecond),
  862. PeakUpstreamBytesPerSecond: atomic.LoadInt64(&p.peakBytesUp),
  863. PeakDownstreamBytesPerSecond: atomic.LoadInt64(&p.peakBytesDown),
  864. }, tacticsNetworkID, nil
  865. }