service.go 27 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 https://mozilla.org/MPL/2.0/.
  6. package connections
  7. import (
  8. "context"
  9. "crypto/tls"
  10. "fmt"
  11. "net"
  12. "net/url"
  13. "sort"
  14. "strings"
  15. stdsync "sync"
  16. "time"
  17. "github.com/syncthing/syncthing/lib/config"
  18. "github.com/syncthing/syncthing/lib/discover"
  19. "github.com/syncthing/syncthing/lib/events"
  20. "github.com/syncthing/syncthing/lib/nat"
  21. "github.com/syncthing/syncthing/lib/osutil"
  22. "github.com/syncthing/syncthing/lib/protocol"
  23. "github.com/syncthing/syncthing/lib/sync"
  24. "github.com/syncthing/syncthing/lib/util"
  25. // Registers NAT service providers
  26. _ "github.com/syncthing/syncthing/lib/pmp"
  27. _ "github.com/syncthing/syncthing/lib/upnp"
  28. "github.com/pkg/errors"
  29. "github.com/thejerf/suture"
  30. "golang.org/x/time/rate"
  31. )
  32. var (
  33. dialers = make(map[string]dialerFactory)
  34. listeners = make(map[string]listenerFactory)
  35. )
  36. var (
  37. errDisabled = errors.New("disabled by configuration")
  38. errDeprecated = errors.New("deprecated protocol")
  39. )
  40. const (
  41. perDeviceWarningIntv = 15 * time.Minute
  42. tlsHandshakeTimeout = 10 * time.Second
  43. minConnectionReplaceAge = 10 * time.Second
  44. )
  45. // From go/src/crypto/tls/cipher_suites.go
  46. var tlsCipherSuiteNames = map[uint16]string{
  47. // TLS 1.2
  48. 0x0005: "TLS_RSA_WITH_RC4_128_SHA",
  49. 0x000a: "TLS_RSA_WITH_3DES_EDE_CBC_SHA",
  50. 0x002f: "TLS_RSA_WITH_AES_128_CBC_SHA",
  51. 0x0035: "TLS_RSA_WITH_AES_256_CBC_SHA",
  52. 0x003c: "TLS_RSA_WITH_AES_128_CBC_SHA256",
  53. 0x009c: "TLS_RSA_WITH_AES_128_GCM_SHA256",
  54. 0x009d: "TLS_RSA_WITH_AES_256_GCM_SHA384",
  55. 0xc007: "TLS_ECDHE_ECDSA_WITH_RC4_128_SHA",
  56. 0xc009: "TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA",
  57. 0xc00a: "TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA",
  58. 0xc011: "TLS_ECDHE_RSA_WITH_RC4_128_SHA",
  59. 0xc012: "TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA",
  60. 0xc013: "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA",
  61. 0xc014: "TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA",
  62. 0xc023: "TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA256",
  63. 0xc027: "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256",
  64. 0xc02f: "TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256",
  65. 0xc02b: "TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256",
  66. 0xc030: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384",
  67. 0xc02c: "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384",
  68. 0xcca8: "TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305",
  69. 0xcca9: "TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305",
  70. // TLS 1.3
  71. 0x1301: "TLS_AES_128_GCM_SHA256",
  72. 0x1302: "TLS_AES_256_GCM_SHA384",
  73. 0x1303: "TLS_CHACHA20_POLY1305_SHA256",
  74. }
  75. var tlsVersionNames = map[uint16]string{
  76. tls.VersionTLS12: "TLS1.2",
  77. tls.VersionTLS13: "TLS1.3",
  78. }
  79. // Service listens and dials all configured unconnected devices, via supported
  80. // dialers. Successful connections are handed to the model.
  81. type Service interface {
  82. suture.Service
  83. discover.AddressLister
  84. ListenerStatus() map[string]ListenerStatusEntry
  85. ConnectionStatus() map[string]ConnectionStatusEntry
  86. NATType() string
  87. }
  88. type ListenerStatusEntry struct {
  89. Error *string `json:"error"`
  90. LANAddresses []string `json:"lanAddresses"`
  91. WANAddresses []string `json:"wanAddresses"`
  92. }
  93. type ConnectionStatusEntry struct {
  94. When time.Time `json:"when"`
  95. Error *string `json:"error"`
  96. }
  97. type service struct {
  98. *suture.Supervisor
  99. connectionStatusHandler
  100. cfg config.Wrapper
  101. myID protocol.DeviceID
  102. model Model
  103. tlsCfg *tls.Config
  104. discoverer discover.Finder
  105. conns chan internalConn
  106. bepProtocolName string
  107. tlsDefaultCommonName string
  108. limiter *limiter
  109. natService *nat.Service
  110. evLogger events.Logger
  111. listenersMut sync.RWMutex
  112. listeners map[string]genericListener
  113. listenerTokens map[string]suture.ServiceToken
  114. listenerSupervisor *suture.Supervisor
  115. }
  116. func NewService(cfg config.Wrapper, myID protocol.DeviceID, mdl Model, tlsCfg *tls.Config, discoverer discover.Finder, bepProtocolName string, tlsDefaultCommonName string, evLogger events.Logger) Service {
  117. service := &service{
  118. Supervisor: suture.New("connections.Service", suture.Spec{
  119. Log: func(line string) {
  120. l.Infoln(line)
  121. },
  122. PassThroughPanics: true,
  123. }),
  124. connectionStatusHandler: newConnectionStatusHandler(),
  125. cfg: cfg,
  126. myID: myID,
  127. model: mdl,
  128. tlsCfg: tlsCfg,
  129. discoverer: discoverer,
  130. conns: make(chan internalConn),
  131. bepProtocolName: bepProtocolName,
  132. tlsDefaultCommonName: tlsDefaultCommonName,
  133. limiter: newLimiter(myID, cfg),
  134. natService: nat.NewService(myID, cfg),
  135. evLogger: evLogger,
  136. listenersMut: sync.NewRWMutex(),
  137. listeners: make(map[string]genericListener),
  138. listenerTokens: make(map[string]suture.ServiceToken),
  139. // A listener can fail twice, rapidly. Any more than that and it
  140. // will be put on suspension for ten minutes. Restarts and changes
  141. // due to config are done by removing and adding services, so are
  142. // not subject to these limitations.
  143. listenerSupervisor: suture.New("c.S.listenerSupervisor", suture.Spec{
  144. Log: func(line string) {
  145. l.Infoln(line)
  146. },
  147. FailureThreshold: 2,
  148. FailureBackoff: 600 * time.Second,
  149. PassThroughPanics: true,
  150. }),
  151. }
  152. cfg.Subscribe(service)
  153. raw := cfg.RawCopy()
  154. // Actually starts the listeners and NAT service
  155. // Need to start this before service.connect so that any dials that
  156. // try punch through already have a listener to cling on.
  157. service.CommitConfiguration(raw, raw)
  158. // There are several moving parts here; one routine per listening address
  159. // (handled in configuration changing) to handle incoming connections,
  160. // one routine to periodically attempt outgoing connections, one routine to
  161. // the common handling regardless of whether the connection was
  162. // incoming or outgoing.
  163. service.Add(util.AsService(service.connect, fmt.Sprintf("%s/connect", service)))
  164. service.Add(util.AsService(service.handle, fmt.Sprintf("%s/handle", service)))
  165. service.Add(service.listenerSupervisor)
  166. service.Add(service.natService)
  167. return service
  168. }
  169. func (s *service) Stop() {
  170. s.cfg.Unsubscribe(s.limiter)
  171. s.cfg.Unsubscribe(s)
  172. s.Supervisor.Stop()
  173. }
  174. func (s *service) handle(ctx context.Context) {
  175. var c internalConn
  176. for {
  177. select {
  178. case <-ctx.Done():
  179. return
  180. case c = <-s.conns:
  181. }
  182. cs := c.ConnectionState()
  183. // We should have negotiated the next level protocol "bep/1.0" as part
  184. // of the TLS handshake. Unfortunately this can't be a hard error,
  185. // because there are implementations out there that don't support
  186. // protocol negotiation (iOS for one...).
  187. if !cs.NegotiatedProtocolIsMutual || cs.NegotiatedProtocol != s.bepProtocolName {
  188. l.Infof("Peer at %s did not negotiate bep/1.0", c)
  189. }
  190. // We should have received exactly one certificate from the other
  191. // side. If we didn't, they don't have a device ID and we drop the
  192. // connection.
  193. certs := cs.PeerCertificates
  194. if cl := len(certs); cl != 1 {
  195. l.Infof("Got peer certificate list of length %d != 1 from peer at %s; protocol error", cl, c)
  196. c.Close()
  197. continue
  198. }
  199. remoteCert := certs[0]
  200. remoteID := protocol.NewDeviceID(remoteCert.Raw)
  201. // The device ID should not be that of ourselves. It can happen
  202. // though, especially in the presence of NAT hairpinning, multiple
  203. // clients between the same NAT gateway, and global discovery.
  204. if remoteID == s.myID {
  205. l.Infof("Connected to myself (%s) at %s - should not happen", remoteID, c)
  206. c.Close()
  207. continue
  208. }
  209. _ = c.SetDeadline(time.Now().Add(20 * time.Second))
  210. hello, err := protocol.ExchangeHello(c, s.model.GetHello(remoteID))
  211. if err != nil {
  212. if protocol.IsVersionMismatch(err) {
  213. // The error will be a relatively user friendly description
  214. // of what's wrong with the version compatibility. By
  215. // default identify the other side by device ID and IP.
  216. remote := fmt.Sprintf("%v (%v)", remoteID, c.RemoteAddr())
  217. if hello.DeviceName != "" {
  218. // If the name was set in the hello return, use that to
  219. // give the user more info about which device is the
  220. // affected one. It probably says more than the remote
  221. // IP.
  222. remote = fmt.Sprintf("%q (%s %s, %v)", hello.DeviceName, hello.ClientName, hello.ClientVersion, remoteID)
  223. }
  224. msg := fmt.Sprintf("Connecting to %s: %s", remote, err)
  225. warningFor(remoteID, msg)
  226. } else {
  227. // It's something else - connection reset or whatever
  228. l.Infof("Failed to exchange Hello messages with %s at %s: %s", remoteID, c, err)
  229. }
  230. c.Close()
  231. continue
  232. }
  233. _ = c.SetDeadline(time.Time{})
  234. // The Model will return an error for devices that we don't want to
  235. // have a connection with for whatever reason, for example unknown devices.
  236. if err := s.model.OnHello(remoteID, c.RemoteAddr(), hello); err != nil {
  237. l.Infof("Connection from %s at %s (%s) rejected: %v", remoteID, c.RemoteAddr(), c.Type(), err)
  238. c.Close()
  239. continue
  240. }
  241. // If we have a relay connection, and the new incoming connection is
  242. // not a relay connection, we should drop that, and prefer this one.
  243. ct, connected := s.model.Connection(remoteID)
  244. // Lower priority is better, just like nice etc.
  245. if connected && (ct.Priority() > c.priority || time.Since(ct.Statistics().StartedAt) > minConnectionReplaceAge) {
  246. l.Debugf("Switching connections %s (existing: %s new: %s)", remoteID, ct, c)
  247. } else if connected {
  248. // We should not already be connected to the other party. TODO: This
  249. // could use some better handling. If the old connection is dead but
  250. // hasn't timed out yet we may want to drop *that* connection and keep
  251. // this one. But in case we are two devices connecting to each other
  252. // in parallel we don't want to do that or we end up with no
  253. // connections still established...
  254. l.Infof("Connected to already connected device %s (existing: %s new: %s)", remoteID, ct, c)
  255. c.Close()
  256. continue
  257. }
  258. deviceCfg, ok := s.cfg.Device(remoteID)
  259. if !ok {
  260. l.Infof("Device %s removed from config during connection attempt at %s", remoteID, c)
  261. c.Close()
  262. continue
  263. }
  264. // Verify the name on the certificate. By default we set it to
  265. // "syncthing" when generating, but the user may have replaced
  266. // the certificate and used another name.
  267. certName := deviceCfg.CertName
  268. if certName == "" {
  269. certName = s.tlsDefaultCommonName
  270. }
  271. if remoteCert.Subject.CommonName == certName {
  272. // All good. We do this check because our old style certificates
  273. // have "syncthing" in the CommonName field and no SANs, which
  274. // is not accepted by VerifyHostname() any more as of Go 1.15.
  275. } else if err := remoteCert.VerifyHostname(certName); err != nil {
  276. // Incorrect certificate name is something the user most
  277. // likely wants to know about, since it's an advanced
  278. // config. Warn instead of Info.
  279. l.Warnf("Bad certificate from %s at %s: %v", remoteID, c, err)
  280. c.Close()
  281. continue
  282. }
  283. // Wrap the connection in rate limiters. The limiter itself will
  284. // keep up with config changes to the rate and whether or not LAN
  285. // connections are limited.
  286. isLAN := s.isLAN(c.RemoteAddr())
  287. rd, wr := s.limiter.getLimiters(remoteID, c, isLAN)
  288. protoConn := protocol.NewConnection(remoteID, rd, wr, s.model, c.String(), deviceCfg.Compression)
  289. modelConn := completeConn{c, protoConn}
  290. l.Infof("Established secure connection to %s at %s", remoteID, c)
  291. s.model.AddConnection(modelConn, hello)
  292. continue
  293. }
  294. }
  295. func (s *service) connect(ctx context.Context) {
  296. nextDial := make(map[string]time.Time)
  297. // Used as delay for the first few connection attempts, increases
  298. // exponentially
  299. initialRampup := time.Second
  300. // Calculated from actual dialers reconnectInterval
  301. var sleep time.Duration
  302. for {
  303. cfg := s.cfg.RawCopy()
  304. bestDialerPrio := 1<<31 - 1 // worse prio won't build on 32 bit
  305. for _, df := range dialers {
  306. if df.Valid(cfg) != nil {
  307. continue
  308. }
  309. if prio := df.Priority(); prio < bestDialerPrio {
  310. bestDialerPrio = prio
  311. }
  312. }
  313. l.Debugln("Reconnect loop")
  314. now := time.Now()
  315. var seen []string
  316. for _, deviceCfg := range cfg.Devices {
  317. select {
  318. case <-ctx.Done():
  319. return
  320. default:
  321. }
  322. deviceID := deviceCfg.DeviceID
  323. if deviceID == s.myID {
  324. continue
  325. }
  326. if deviceCfg.Paused {
  327. continue
  328. }
  329. ct, connected := s.model.Connection(deviceID)
  330. if connected && ct.Priority() == bestDialerPrio {
  331. // Things are already as good as they can get.
  332. continue
  333. }
  334. var addrs []string
  335. for _, addr := range deviceCfg.Addresses {
  336. if addr == "dynamic" {
  337. if s.discoverer != nil {
  338. if t, err := s.discoverer.Lookup(ctx, deviceID); err == nil {
  339. addrs = append(addrs, t...)
  340. }
  341. }
  342. } else {
  343. addrs = append(addrs, addr)
  344. }
  345. }
  346. addrs = util.UniqueTrimmedStrings(addrs)
  347. l.Debugln("Reconnect loop for", deviceID, addrs)
  348. dialTargets := make([]dialTarget, 0)
  349. for _, addr := range addrs {
  350. // Use a special key that is more than just the address, as you might have two devices connected to the same relay
  351. nextDialKey := deviceID.String() + "/" + addr
  352. seen = append(seen, nextDialKey)
  353. nextDialAt, ok := nextDial[nextDialKey]
  354. if ok && initialRampup >= sleep && nextDialAt.After(now) {
  355. l.Debugf("Not dialing %s via %v as sleep is %v, next dial is at %s and current time is %s", deviceID, addr, sleep, nextDialAt, now)
  356. continue
  357. }
  358. // If we fail at any step before actually getting the dialer
  359. // retry in a minute
  360. nextDial[nextDialKey] = now.Add(time.Minute)
  361. uri, err := url.Parse(addr)
  362. if err != nil {
  363. s.setConnectionStatus(addr, err)
  364. l.Infof("Parsing dialer address %s: %v", addr, err)
  365. continue
  366. }
  367. if len(deviceCfg.AllowedNetworks) > 0 {
  368. if !IsAllowedNetwork(uri.Host, deviceCfg.AllowedNetworks) {
  369. s.setConnectionStatus(addr, errors.New("network disallowed"))
  370. l.Debugln("Network for", uri, "is disallowed")
  371. continue
  372. }
  373. }
  374. dialerFactory, err := getDialerFactory(cfg, uri)
  375. if err != nil {
  376. s.setConnectionStatus(addr, err)
  377. }
  378. switch err {
  379. case nil:
  380. // all good
  381. case errDisabled:
  382. l.Debugln("Dialer for", uri, "is disabled")
  383. continue
  384. case errDeprecated:
  385. l.Debugln("Dialer for", uri, "is deprecated")
  386. continue
  387. default:
  388. l.Infof("Dialer for %v: %v", uri, err)
  389. continue
  390. }
  391. priority := dialerFactory.Priority()
  392. if connected && priority >= ct.Priority() {
  393. l.Debugf("Not dialing using %s as priority is less than current connection (%d >= %d)", dialerFactory, dialerFactory.Priority(), ct.Priority())
  394. continue
  395. }
  396. dialer := dialerFactory.New(s.cfg.Options(), s.tlsCfg)
  397. nextDial[nextDialKey] = now.Add(dialer.RedialFrequency())
  398. // For LAN addresses, increase the priority so that we
  399. // try these first.
  400. switch {
  401. case dialerFactory.AlwaysWAN():
  402. // Do nothing.
  403. case s.isLANHost(uri.Host):
  404. priority -= 1
  405. }
  406. dialTargets = append(dialTargets, dialTarget{
  407. addr: addr,
  408. dialer: dialer,
  409. priority: priority,
  410. deviceID: deviceID,
  411. uri: uri,
  412. })
  413. }
  414. conn, ok := s.dialParallel(ctx, deviceCfg.DeviceID, dialTargets)
  415. if ok {
  416. s.conns <- conn
  417. }
  418. }
  419. nextDial, sleep = filterAndFindSleepDuration(nextDial, seen, now)
  420. if initialRampup < sleep {
  421. l.Debugln("initial rampup; sleep", initialRampup, "and update to", initialRampup*2)
  422. sleep = initialRampup
  423. initialRampup *= 2
  424. } else {
  425. l.Debugln("sleep until next dial", sleep)
  426. }
  427. select {
  428. case <-time.After(sleep):
  429. case <-ctx.Done():
  430. return
  431. }
  432. }
  433. }
  434. func (s *service) isLANHost(host string) bool {
  435. // Probably we are called with an ip:port combo which we can resolve as
  436. // a TCP address.
  437. if addr, err := net.ResolveTCPAddr("tcp", host); err == nil {
  438. return s.isLAN(addr)
  439. }
  440. // ... but this function looks general enough that someone might try
  441. // with just an IP as well in the future so lets allow that.
  442. if addr, err := net.ResolveIPAddr("ip", host); err == nil {
  443. return s.isLAN(addr)
  444. }
  445. return false
  446. }
  447. func (s *service) isLAN(addr net.Addr) bool {
  448. var ip net.IP
  449. switch addr := addr.(type) {
  450. case *net.IPAddr:
  451. ip = addr.IP
  452. case *net.TCPAddr:
  453. ip = addr.IP
  454. case *net.UDPAddr:
  455. ip = addr.IP
  456. default:
  457. // From the standard library, just Unix sockets.
  458. // If you invent your own, handle it.
  459. return false
  460. }
  461. if ip.IsLoopback() {
  462. return true
  463. }
  464. for _, lan := range s.cfg.Options().AlwaysLocalNets {
  465. _, ipnet, err := net.ParseCIDR(lan)
  466. if err != nil {
  467. l.Debugln("Network", lan, "is malformed:", err)
  468. continue
  469. }
  470. if ipnet.Contains(ip) {
  471. return true
  472. }
  473. }
  474. lans, _ := osutil.GetLans()
  475. for _, lan := range lans {
  476. if lan.Contains(ip) {
  477. return true
  478. }
  479. }
  480. return false
  481. }
  482. func (s *service) createListener(factory listenerFactory, uri *url.URL) bool {
  483. // must be called with listenerMut held
  484. l.Debugln("Starting listener", uri)
  485. listener := factory.New(uri, s.cfg, s.tlsCfg, s.conns, s.natService)
  486. listener.OnAddressesChanged(s.logListenAddressesChangedEvent)
  487. s.listeners[uri.String()] = listener
  488. s.listenerTokens[uri.String()] = s.listenerSupervisor.Add(listener)
  489. return true
  490. }
  491. func (s *service) logListenAddressesChangedEvent(l ListenerAddresses) {
  492. s.evLogger.Log(events.ListenAddressesChanged, map[string]interface{}{
  493. "address": l.URI,
  494. "lan": l.LANAddresses,
  495. "wan": l.WANAddresses,
  496. })
  497. }
  498. func (s *service) VerifyConfiguration(from, to config.Configuration) error {
  499. return nil
  500. }
  501. func (s *service) CommitConfiguration(from, to config.Configuration) bool {
  502. newDevices := make(map[protocol.DeviceID]bool, len(to.Devices))
  503. for _, dev := range to.Devices {
  504. newDevices[dev.DeviceID] = true
  505. }
  506. for _, dev := range from.Devices {
  507. if !newDevices[dev.DeviceID] {
  508. warningLimitersMut.Lock()
  509. delete(warningLimiters, dev.DeviceID)
  510. warningLimitersMut.Unlock()
  511. }
  512. }
  513. s.listenersMut.Lock()
  514. seen := make(map[string]struct{})
  515. for _, addr := range to.Options.ListenAddresses() {
  516. if addr == "" {
  517. // We can get an empty address if there is an empty listener
  518. // element in the config, indicating no listeners should be
  519. // used. This is not an error.
  520. continue
  521. }
  522. uri, err := url.Parse(addr)
  523. if err != nil {
  524. l.Warnf("Skipping malformed listener URL %q: %v", addr, err)
  525. continue
  526. }
  527. // Make sure we always have the canonical representation of the URL.
  528. // This is for consistency as we use it as a map key, but also to
  529. // avoid misunderstandings. We do not just use the canonicalized
  530. // version, because an URL that looks very similar to a human might
  531. // mean something entirely different to the computer (e.g.,
  532. // tcp:/127.0.0.1:22000 in fact being equivalent to tcp://:22000).
  533. if canonical := uri.String(); canonical != addr {
  534. l.Warnf("Skipping malformed listener URL %q (not canonical)", addr)
  535. continue
  536. }
  537. if _, ok := s.listeners[addr]; ok {
  538. seen[addr] = struct{}{}
  539. continue
  540. }
  541. factory, err := getListenerFactory(to, uri)
  542. switch err {
  543. case nil:
  544. // all good
  545. case errDisabled:
  546. l.Debugln("Listener for", uri, "is disabled")
  547. continue
  548. case errDeprecated:
  549. l.Debugln("Listener for", uri, "is deprecated")
  550. continue
  551. default:
  552. l.Infof("Listener for %v: %v", uri, err)
  553. continue
  554. }
  555. s.createListener(factory, uri)
  556. seen[addr] = struct{}{}
  557. }
  558. for addr, listener := range s.listeners {
  559. if _, ok := seen[addr]; !ok || listener.Factory().Valid(to) != nil {
  560. l.Debugln("Stopping listener", addr)
  561. s.listenerSupervisor.Remove(s.listenerTokens[addr])
  562. delete(s.listenerTokens, addr)
  563. delete(s.listeners, addr)
  564. }
  565. }
  566. s.listenersMut.Unlock()
  567. return true
  568. }
  569. func (s *service) AllAddresses() []string {
  570. s.listenersMut.RLock()
  571. var addrs []string
  572. for _, listener := range s.listeners {
  573. for _, lanAddr := range listener.LANAddresses() {
  574. addrs = append(addrs, lanAddr.String())
  575. }
  576. for _, wanAddr := range listener.WANAddresses() {
  577. addrs = append(addrs, wanAddr.String())
  578. }
  579. }
  580. s.listenersMut.RUnlock()
  581. return util.UniqueTrimmedStrings(addrs)
  582. }
  583. func (s *service) ExternalAddresses() []string {
  584. s.listenersMut.RLock()
  585. var addrs []string
  586. for _, listener := range s.listeners {
  587. for _, wanAddr := range listener.WANAddresses() {
  588. addrs = append(addrs, wanAddr.String())
  589. }
  590. }
  591. s.listenersMut.RUnlock()
  592. return util.UniqueTrimmedStrings(addrs)
  593. }
  594. func (s *service) ListenerStatus() map[string]ListenerStatusEntry {
  595. result := make(map[string]ListenerStatusEntry)
  596. s.listenersMut.RLock()
  597. for addr, listener := range s.listeners {
  598. var status ListenerStatusEntry
  599. if err := listener.Error(); err != nil {
  600. errStr := err.Error()
  601. status.Error = &errStr
  602. }
  603. status.LANAddresses = urlsToStrings(listener.LANAddresses())
  604. status.WANAddresses = urlsToStrings(listener.WANAddresses())
  605. result[addr] = status
  606. }
  607. s.listenersMut.RUnlock()
  608. return result
  609. }
  610. type connectionStatusHandler struct {
  611. connectionStatusMut sync.RWMutex
  612. connectionStatus map[string]ConnectionStatusEntry // address -> latest error/status
  613. }
  614. func newConnectionStatusHandler() connectionStatusHandler {
  615. return connectionStatusHandler{
  616. connectionStatusMut: sync.NewRWMutex(),
  617. connectionStatus: make(map[string]ConnectionStatusEntry),
  618. }
  619. }
  620. func (s *connectionStatusHandler) ConnectionStatus() map[string]ConnectionStatusEntry {
  621. result := make(map[string]ConnectionStatusEntry)
  622. s.connectionStatusMut.RLock()
  623. for k, v := range s.connectionStatus {
  624. result[k] = v
  625. }
  626. s.connectionStatusMut.RUnlock()
  627. return result
  628. }
  629. func (s *connectionStatusHandler) setConnectionStatus(address string, err error) {
  630. if errors.Cause(err) == context.Canceled {
  631. return
  632. }
  633. status := ConnectionStatusEntry{When: time.Now().UTC().Truncate(time.Second)}
  634. if err != nil {
  635. errStr := err.Error()
  636. status.Error = &errStr
  637. }
  638. s.connectionStatusMut.Lock()
  639. s.connectionStatus[address] = status
  640. s.connectionStatusMut.Unlock()
  641. }
  642. func (s *service) NATType() string {
  643. s.listenersMut.RLock()
  644. defer s.listenersMut.RUnlock()
  645. for _, listener := range s.listeners {
  646. natType := listener.NATType()
  647. if natType != "unknown" {
  648. return natType
  649. }
  650. }
  651. return "unknown"
  652. }
  653. func getDialerFactory(cfg config.Configuration, uri *url.URL) (dialerFactory, error) {
  654. dialerFactory, ok := dialers[uri.Scheme]
  655. if !ok {
  656. return nil, fmt.Errorf("unknown address scheme %q", uri.Scheme)
  657. }
  658. if err := dialerFactory.Valid(cfg); err != nil {
  659. return nil, err
  660. }
  661. return dialerFactory, nil
  662. }
  663. func getListenerFactory(cfg config.Configuration, uri *url.URL) (listenerFactory, error) {
  664. listenerFactory, ok := listeners[uri.Scheme]
  665. if !ok {
  666. return nil, fmt.Errorf("unknown address scheme %q", uri.Scheme)
  667. }
  668. if err := listenerFactory.Valid(cfg); err != nil {
  669. return nil, err
  670. }
  671. return listenerFactory, nil
  672. }
  673. func filterAndFindSleepDuration(nextDial map[string]time.Time, seen []string, now time.Time) (map[string]time.Time, time.Duration) {
  674. newNextDial := make(map[string]time.Time)
  675. for _, addr := range seen {
  676. nextDialAt, ok := nextDial[addr]
  677. if ok {
  678. newNextDial[addr] = nextDialAt
  679. }
  680. }
  681. min := time.Minute
  682. for _, next := range newNextDial {
  683. cur := next.Sub(now)
  684. if cur < min {
  685. min = cur
  686. }
  687. }
  688. return newNextDial, min
  689. }
  690. func urlsToStrings(urls []*url.URL) []string {
  691. strings := make([]string, len(urls))
  692. for i, url := range urls {
  693. strings[i] = url.String()
  694. }
  695. return strings
  696. }
  697. var warningLimiters = make(map[protocol.DeviceID]*rate.Limiter)
  698. var warningLimitersMut = sync.NewMutex()
  699. func warningFor(dev protocol.DeviceID, msg string) {
  700. warningLimitersMut.Lock()
  701. defer warningLimitersMut.Unlock()
  702. lim, ok := warningLimiters[dev]
  703. if !ok {
  704. lim = rate.NewLimiter(rate.Every(perDeviceWarningIntv), 1)
  705. warningLimiters[dev] = lim
  706. }
  707. if lim.Allow() {
  708. l.Warnln(msg)
  709. }
  710. }
  711. func tlsTimedHandshake(tc *tls.Conn) error {
  712. tc.SetDeadline(time.Now().Add(tlsHandshakeTimeout))
  713. defer tc.SetDeadline(time.Time{})
  714. return tc.Handshake()
  715. }
  716. // IsAllowedNetwork returns true if the given host (IP or resolvable
  717. // hostname) is in the set of allowed networks (CIDR format only).
  718. func IsAllowedNetwork(host string, allowed []string) bool {
  719. if hostNoPort, _, err := net.SplitHostPort(host); err == nil {
  720. host = hostNoPort
  721. }
  722. addr, err := net.ResolveIPAddr("ip", host)
  723. if err != nil {
  724. return false
  725. }
  726. for _, n := range allowed {
  727. result := true
  728. if strings.HasPrefix(n, "!") {
  729. result = false
  730. n = n[1:]
  731. }
  732. _, cidr, err := net.ParseCIDR(n)
  733. if err != nil {
  734. continue
  735. }
  736. if cidr.Contains(addr.IP) {
  737. return result
  738. }
  739. }
  740. return false
  741. }
  742. func (s *service) dialParallel(ctx context.Context, deviceID protocol.DeviceID, dialTargets []dialTarget) (internalConn, bool) {
  743. // Group targets into buckets by priority
  744. dialTargetBuckets := make(map[int][]dialTarget, len(dialTargets))
  745. for _, tgt := range dialTargets {
  746. dialTargetBuckets[tgt.priority] = append(dialTargetBuckets[tgt.priority], tgt)
  747. }
  748. // Get all available priorities
  749. priorities := make([]int, 0, len(dialTargetBuckets))
  750. for prio := range dialTargetBuckets {
  751. priorities = append(priorities, prio)
  752. }
  753. // Sort the priorities so that we dial lowest first (which means highest...)
  754. sort.Ints(priorities)
  755. for _, prio := range priorities {
  756. tgts := dialTargetBuckets[prio]
  757. res := make(chan internalConn, len(tgts))
  758. wg := stdsync.WaitGroup{}
  759. for _, tgt := range tgts {
  760. wg.Add(1)
  761. go func(tgt dialTarget) {
  762. conn, err := tgt.Dial(ctx)
  763. if err == nil {
  764. // Closes the connection on error
  765. err = s.validateIdentity(conn, deviceID)
  766. }
  767. s.setConnectionStatus(tgt.addr, err)
  768. if err != nil {
  769. l.Debugln("dialing", deviceID, tgt.uri, "error:", err)
  770. } else {
  771. l.Debugln("dialing", deviceID, tgt.uri, "success:", conn)
  772. res <- conn
  773. }
  774. wg.Done()
  775. }(tgt)
  776. }
  777. // Spawn a routine which will unblock main routine in case we fail
  778. // to connect to anyone.
  779. go func() {
  780. wg.Wait()
  781. close(res)
  782. }()
  783. // Wait for the first connection, or for channel closure.
  784. if conn, ok := <-res; ok {
  785. // Got a connection, means more might come back, hence spawn a
  786. // routine that will do the discarding.
  787. l.Debugln("connected to", deviceID, prio, "using", conn, conn.priority)
  788. go func(deviceID protocol.DeviceID, prio int) {
  789. wg.Wait()
  790. l.Debugln("discarding", len(res), "connections while connecting to", deviceID, prio)
  791. for conn := range res {
  792. conn.Close()
  793. }
  794. }(deviceID, prio)
  795. return conn, ok
  796. }
  797. // Failed to connect, report that fact.
  798. l.Debugln("failed to connect to", deviceID, prio)
  799. }
  800. return internalConn{}, false
  801. }
  802. func (s *service) validateIdentity(c internalConn, expectedID protocol.DeviceID) error {
  803. cs := c.ConnectionState()
  804. // We should have received exactly one certificate from the other
  805. // side. If we didn't, they don't have a device ID and we drop the
  806. // connection.
  807. certs := cs.PeerCertificates
  808. if cl := len(certs); cl != 1 {
  809. l.Infof("Got peer certificate list of length %d != 1 from peer at %s; protocol error", cl, c)
  810. c.Close()
  811. return fmt.Errorf("expected 1 certificate, got %d", cl)
  812. }
  813. remoteCert := certs[0]
  814. remoteID := protocol.NewDeviceID(remoteCert.Raw)
  815. // The device ID should not be that of ourselves. It can happen
  816. // though, especially in the presence of NAT hairpinning, multiple
  817. // clients between the same NAT gateway, and global discovery.
  818. if remoteID == s.myID {
  819. l.Infof("Connected to myself (%s) at %s - should not happen", remoteID, c)
  820. c.Close()
  821. return errors.New("connected to self")
  822. }
  823. // We should see the expected device ID
  824. if !remoteID.Equals(expectedID) {
  825. c.Close()
  826. return fmt.Errorf("unexpected device id, expected %s got %s", expectedID, remoteID)
  827. }
  828. return nil
  829. }