connection.go 68 KB

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  1. package quic
  2. import (
  3. "bytes"
  4. "context"
  5. "crypto/tls"
  6. "errors"
  7. "fmt"
  8. "io"
  9. "net"
  10. "reflect"
  11. "sync"
  12. "sync/atomic"
  13. "time"
  14. "github.com/Psiphon-Labs/quic-go/internal/ackhandler"
  15. "github.com/Psiphon-Labs/quic-go/internal/flowcontrol"
  16. "github.com/Psiphon-Labs/quic-go/internal/handshake"
  17. "github.com/Psiphon-Labs/quic-go/internal/logutils"
  18. "github.com/Psiphon-Labs/quic-go/internal/protocol"
  19. "github.com/Psiphon-Labs/quic-go/internal/qerr"
  20. "github.com/Psiphon-Labs/quic-go/internal/utils"
  21. "github.com/Psiphon-Labs/quic-go/internal/wire"
  22. "github.com/Psiphon-Labs/quic-go/logging"
  23. )
  24. type unpacker interface {
  25. UnpackLongHeader(hdr *wire.Header, rcvTime time.Time, data []byte, v protocol.VersionNumber) (*unpackedPacket, error)
  26. UnpackShortHeader(rcvTime time.Time, data []byte) (protocol.PacketNumber, protocol.PacketNumberLen, protocol.KeyPhaseBit, []byte, error)
  27. }
  28. type streamGetter interface {
  29. GetOrOpenReceiveStream(protocol.StreamID) (receiveStreamI, error)
  30. GetOrOpenSendStream(protocol.StreamID) (sendStreamI, error)
  31. }
  32. type streamManager interface {
  33. GetOrOpenSendStream(protocol.StreamID) (sendStreamI, error)
  34. GetOrOpenReceiveStream(protocol.StreamID) (receiveStreamI, error)
  35. OpenStream() (Stream, error)
  36. OpenUniStream() (SendStream, error)
  37. OpenStreamSync(context.Context) (Stream, error)
  38. OpenUniStreamSync(context.Context) (SendStream, error)
  39. AcceptStream(context.Context) (Stream, error)
  40. AcceptUniStream(context.Context) (ReceiveStream, error)
  41. DeleteStream(protocol.StreamID) error
  42. UpdateLimits(*wire.TransportParameters)
  43. HandleMaxStreamsFrame(*wire.MaxStreamsFrame)
  44. CloseWithError(error)
  45. ResetFor0RTT()
  46. UseResetMaps()
  47. }
  48. type cryptoStreamHandler interface {
  49. RunHandshake()
  50. ChangeConnectionID(protocol.ConnectionID)
  51. SetLargest1RTTAcked(protocol.PacketNumber) error
  52. SetHandshakeConfirmed()
  53. GetSessionTicket() ([]byte, error)
  54. io.Closer
  55. ConnectionState() handshake.ConnectionState
  56. }
  57. type packetInfo struct {
  58. addr net.IP
  59. ifIndex uint32
  60. }
  61. type receivedPacket struct {
  62. buffer *packetBuffer
  63. remoteAddr net.Addr
  64. rcvTime time.Time
  65. data []byte
  66. ecn protocol.ECN
  67. info *packetInfo
  68. }
  69. func (p *receivedPacket) Size() protocol.ByteCount { return protocol.ByteCount(len(p.data)) }
  70. func (p *receivedPacket) Clone() *receivedPacket {
  71. return &receivedPacket{
  72. remoteAddr: p.remoteAddr,
  73. rcvTime: p.rcvTime,
  74. data: p.data,
  75. buffer: p.buffer,
  76. ecn: p.ecn,
  77. info: p.info,
  78. }
  79. }
  80. type connRunner interface {
  81. Add(protocol.ConnectionID, packetHandler) bool
  82. GetStatelessResetToken(protocol.ConnectionID) protocol.StatelessResetToken
  83. Retire(protocol.ConnectionID)
  84. Remove(protocol.ConnectionID)
  85. ReplaceWithClosed([]protocol.ConnectionID, protocol.Perspective, []byte)
  86. AddResetToken(protocol.StatelessResetToken, packetHandler)
  87. RemoveResetToken(protocol.StatelessResetToken)
  88. }
  89. type handshakeRunner struct {
  90. onReceivedParams func(*wire.TransportParameters)
  91. onError func(error)
  92. dropKeys func(protocol.EncryptionLevel)
  93. onHandshakeComplete func()
  94. }
  95. func (r *handshakeRunner) OnReceivedParams(tp *wire.TransportParameters) { r.onReceivedParams(tp) }
  96. func (r *handshakeRunner) OnError(e error) { r.onError(e) }
  97. func (r *handshakeRunner) DropKeys(el protocol.EncryptionLevel) { r.dropKeys(el) }
  98. func (r *handshakeRunner) OnHandshakeComplete() { r.onHandshakeComplete() }
  99. type closeError struct {
  100. err error
  101. remote bool
  102. immediate bool
  103. }
  104. type errCloseForRecreating struct {
  105. nextPacketNumber protocol.PacketNumber
  106. nextVersion protocol.VersionNumber
  107. }
  108. func (e *errCloseForRecreating) Error() string {
  109. return "closing connection in order to recreate it"
  110. }
  111. var connTracingID uint64 // to be accessed atomically
  112. func nextConnTracingID() uint64 { return atomic.AddUint64(&connTracingID, 1) }
  113. // A Connection is a QUIC connection
  114. type connection struct {
  115. // Destination connection ID used during the handshake.
  116. // Used to check source connection ID on incoming packets.
  117. handshakeDestConnID protocol.ConnectionID
  118. // Set for the client. Destination connection ID used on the first Initial sent.
  119. origDestConnID protocol.ConnectionID
  120. retrySrcConnID *protocol.ConnectionID // only set for the client (and if a Retry was performed)
  121. srcConnIDLen int
  122. perspective protocol.Perspective
  123. version protocol.VersionNumber
  124. config *Config
  125. conn sendConn
  126. sendQueue sender
  127. streamsMap streamManager
  128. connIDManager *connIDManager
  129. connIDGenerator *connIDGenerator
  130. rttStats *utils.RTTStats
  131. cryptoStreamManager *cryptoStreamManager
  132. sentPacketHandler ackhandler.SentPacketHandler
  133. receivedPacketHandler ackhandler.ReceivedPacketHandler
  134. retransmissionQueue *retransmissionQueue
  135. framer framer
  136. windowUpdateQueue *windowUpdateQueue
  137. connFlowController flowcontrol.ConnectionFlowController
  138. tokenStoreKey string // only set for the client
  139. tokenGenerator *handshake.TokenGenerator // only set for the server
  140. unpacker unpacker
  141. frameParser wire.FrameParser
  142. packer packer
  143. mtuDiscoverer mtuDiscoverer // initialized when the handshake completes
  144. oneRTTStream cryptoStream // only set for the server
  145. cryptoStreamHandler cryptoStreamHandler
  146. receivedPackets chan *receivedPacket
  147. sendingScheduled chan struct{}
  148. closeOnce sync.Once
  149. // closeChan is used to notify the run loop that it should terminate
  150. closeChan chan closeError
  151. ctx context.Context
  152. ctxCancel context.CancelFunc
  153. handshakeCtx context.Context
  154. handshakeCtxCancel context.CancelFunc
  155. undecryptablePackets []*receivedPacket // undecryptable packets, waiting for a change in encryption level
  156. undecryptablePacketsToProcess []*receivedPacket
  157. clientHelloWritten <-chan *wire.TransportParameters
  158. earlyConnReadyChan chan struct{}
  159. handshakeCompleteChan chan struct{} // is closed when the handshake completes
  160. sentFirstPacket bool
  161. handshakeComplete bool
  162. handshakeConfirmed bool
  163. receivedRetry bool
  164. versionNegotiated bool
  165. receivedFirstPacket bool
  166. idleTimeout time.Duration
  167. creationTime time.Time
  168. // The idle timeout is set based on the max of the time we received the last packet...
  169. lastPacketReceivedTime time.Time
  170. // ... and the time we sent a new ack-eliciting packet after receiving a packet.
  171. firstAckElicitingPacketAfterIdleSentTime time.Time
  172. // pacingDeadline is the time when the next packet should be sent
  173. pacingDeadline time.Time
  174. peerParams *wire.TransportParameters
  175. timer connectionTimer
  176. // keepAlivePingSent stores whether a keep alive PING is in flight.
  177. // It is reset as soon as we receive a packet from the peer.
  178. keepAlivePingSent bool
  179. keepAliveInterval time.Duration
  180. datagramQueue *datagramQueue
  181. connStateMutex sync.Mutex
  182. connState ConnectionState
  183. logID string
  184. tracer logging.ConnectionTracer
  185. logger utils.Logger
  186. }
  187. var (
  188. _ Connection = &connection{}
  189. _ EarlyConnection = &connection{}
  190. _ streamSender = &connection{}
  191. )
  192. var newConnection = func(
  193. conn sendConn,
  194. runner connRunner,
  195. origDestConnID protocol.ConnectionID,
  196. retrySrcConnID *protocol.ConnectionID,
  197. clientDestConnID protocol.ConnectionID,
  198. destConnID protocol.ConnectionID,
  199. srcConnID protocol.ConnectionID,
  200. statelessResetToken protocol.StatelessResetToken,
  201. conf *Config,
  202. tlsConf *tls.Config,
  203. tokenGenerator *handshake.TokenGenerator,
  204. clientAddressValidated bool,
  205. tracer logging.ConnectionTracer,
  206. tracingID uint64,
  207. logger utils.Logger,
  208. v protocol.VersionNumber,
  209. ) quicConn {
  210. s := &connection{
  211. conn: conn,
  212. config: conf,
  213. handshakeDestConnID: destConnID,
  214. srcConnIDLen: srcConnID.Len(),
  215. tokenGenerator: tokenGenerator,
  216. oneRTTStream: newCryptoStream(),
  217. perspective: protocol.PerspectiveServer,
  218. handshakeCompleteChan: make(chan struct{}),
  219. tracer: tracer,
  220. logger: logger,
  221. version: v,
  222. }
  223. if origDestConnID.Len() > 0 {
  224. s.logID = origDestConnID.String()
  225. } else {
  226. s.logID = destConnID.String()
  227. }
  228. s.connIDManager = newConnIDManager(
  229. destConnID,
  230. func(token protocol.StatelessResetToken) { runner.AddResetToken(token, s) },
  231. runner.RemoveResetToken,
  232. s.queueControlFrame,
  233. )
  234. s.connIDGenerator = newConnIDGenerator(
  235. srcConnID,
  236. &clientDestConnID,
  237. func(connID protocol.ConnectionID) { runner.Add(connID, s) },
  238. runner.GetStatelessResetToken,
  239. runner.Remove,
  240. runner.Retire,
  241. runner.ReplaceWithClosed,
  242. s.queueControlFrame,
  243. s.config.ConnectionIDGenerator,
  244. )
  245. s.preSetup()
  246. s.ctx, s.ctxCancel = context.WithCancel(context.WithValue(context.Background(), ConnectionTracingKey, tracingID))
  247. // [Psiphon]
  248. maxPacketSizeAdjustment := 0
  249. if conf.ServerMaxPacketSizeAdjustment != nil {
  250. maxPacketSizeAdjustment = conf.ServerMaxPacketSizeAdjustment(s.RemoteAddr())
  251. }
  252. s.sentPacketHandler, s.receivedPacketHandler = ackhandler.NewAckHandler(
  253. 0,
  254. getMaxPacketSize(s.conn.RemoteAddr(), maxPacketSizeAdjustment),
  255. s.rttStats,
  256. clientAddressValidated,
  257. s.perspective,
  258. s.tracer,
  259. s.logger,
  260. )
  261. initialStream := newCryptoStream()
  262. handshakeStream := newCryptoStream()
  263. params := &wire.TransportParameters{
  264. InitialMaxStreamDataBidiLocal: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  265. InitialMaxStreamDataBidiRemote: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  266. InitialMaxStreamDataUni: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  267. InitialMaxData: protocol.ByteCount(s.config.InitialConnectionReceiveWindow),
  268. MaxIdleTimeout: s.config.MaxIdleTimeout,
  269. MaxBidiStreamNum: protocol.StreamNum(s.config.MaxIncomingStreams),
  270. MaxUniStreamNum: protocol.StreamNum(s.config.MaxIncomingUniStreams),
  271. MaxAckDelay: protocol.MaxAckDelayInclGranularity,
  272. AckDelayExponent: protocol.AckDelayExponent,
  273. DisableActiveMigration: true,
  274. StatelessResetToken: &statelessResetToken,
  275. OriginalDestinationConnectionID: origDestConnID,
  276. ActiveConnectionIDLimit: protocol.MaxActiveConnectionIDs,
  277. InitialSourceConnectionID: srcConnID,
  278. RetrySourceConnectionID: retrySrcConnID,
  279. }
  280. if s.config.EnableDatagrams {
  281. params.MaxDatagramFrameSize = protocol.MaxDatagramFrameSize
  282. } else {
  283. params.MaxDatagramFrameSize = protocol.InvalidByteCount
  284. }
  285. if s.tracer != nil {
  286. s.tracer.SentTransportParameters(params)
  287. }
  288. var allow0RTT func() bool
  289. if conf.Allow0RTT != nil {
  290. allow0RTT = func() bool { return conf.Allow0RTT(conn.RemoteAddr()) }
  291. }
  292. cs := handshake.NewCryptoSetupServer(
  293. initialStream,
  294. handshakeStream,
  295. clientDestConnID,
  296. conn.LocalAddr(),
  297. conn.RemoteAddr(),
  298. params,
  299. &handshakeRunner{
  300. onReceivedParams: s.handleTransportParameters,
  301. onError: s.closeLocal,
  302. dropKeys: s.dropEncryptionLevel,
  303. onHandshakeComplete: func() {
  304. runner.Retire(clientDestConnID)
  305. close(s.handshakeCompleteChan)
  306. },
  307. },
  308. tlsConf,
  309. allow0RTT,
  310. s.rttStats,
  311. tracer,
  312. logger,
  313. s.version,
  314. )
  315. s.cryptoStreamHandler = cs
  316. s.packer = newPacketPacker(
  317. srcConnID,
  318. s.connIDManager.Get,
  319. initialStream,
  320. handshakeStream,
  321. s.sentPacketHandler,
  322. s.retransmissionQueue,
  323. s.RemoteAddr(),
  324. // [Psiphon]
  325. maxPacketSizeAdjustment,
  326. cs,
  327. s.framer,
  328. s.receivedPacketHandler,
  329. s.datagramQueue,
  330. s.perspective,
  331. )
  332. s.unpacker = newPacketUnpacker(cs, s.srcConnIDLen)
  333. s.cryptoStreamManager = newCryptoStreamManager(cs, initialStream, handshakeStream, s.oneRTTStream)
  334. return s
  335. }
  336. // declare this as a variable, such that we can it mock it in the tests
  337. var newClientConnection = func(
  338. conn sendConn,
  339. runner connRunner,
  340. destConnID protocol.ConnectionID,
  341. srcConnID protocol.ConnectionID,
  342. conf *Config,
  343. tlsConf *tls.Config,
  344. initialPacketNumber protocol.PacketNumber,
  345. enable0RTT bool,
  346. hasNegotiatedVersion bool,
  347. tracer logging.ConnectionTracer,
  348. tracingID uint64,
  349. logger utils.Logger,
  350. v protocol.VersionNumber,
  351. ) quicConn {
  352. s := &connection{
  353. conn: conn,
  354. config: conf,
  355. origDestConnID: destConnID,
  356. handshakeDestConnID: destConnID,
  357. srcConnIDLen: srcConnID.Len(),
  358. perspective: protocol.PerspectiveClient,
  359. handshakeCompleteChan: make(chan struct{}),
  360. logID: destConnID.String(),
  361. logger: logger,
  362. tracer: tracer,
  363. versionNegotiated: hasNegotiatedVersion,
  364. version: v,
  365. }
  366. s.connIDManager = newConnIDManager(
  367. destConnID,
  368. func(token protocol.StatelessResetToken) { runner.AddResetToken(token, s) },
  369. runner.RemoveResetToken,
  370. s.queueControlFrame,
  371. )
  372. s.connIDGenerator = newConnIDGenerator(
  373. srcConnID,
  374. nil,
  375. func(connID protocol.ConnectionID) { runner.Add(connID, s) },
  376. runner.GetStatelessResetToken,
  377. runner.Remove,
  378. runner.Retire,
  379. runner.ReplaceWithClosed,
  380. s.queueControlFrame,
  381. s.config.ConnectionIDGenerator,
  382. )
  383. s.preSetup()
  384. s.ctx, s.ctxCancel = context.WithCancel(context.WithValue(context.Background(), ConnectionTracingKey, tracingID))
  385. s.sentPacketHandler, s.receivedPacketHandler = ackhandler.NewAckHandler(
  386. initialPacketNumber,
  387. // [Psiphon]
  388. getMaxPacketSize(s.conn.RemoteAddr(), conf.ClientMaxPacketSizeAdjustment),
  389. s.rttStats,
  390. false, /* has no effect */
  391. s.perspective,
  392. s.tracer,
  393. s.logger,
  394. )
  395. initialStream := newCryptoStream()
  396. handshakeStream := newCryptoStream()
  397. params := &wire.TransportParameters{
  398. InitialMaxStreamDataBidiRemote: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  399. InitialMaxStreamDataBidiLocal: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  400. InitialMaxStreamDataUni: protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  401. InitialMaxData: protocol.ByteCount(s.config.InitialConnectionReceiveWindow),
  402. MaxIdleTimeout: s.config.MaxIdleTimeout,
  403. MaxBidiStreamNum: protocol.StreamNum(s.config.MaxIncomingStreams),
  404. MaxUniStreamNum: protocol.StreamNum(s.config.MaxIncomingUniStreams),
  405. MaxAckDelay: protocol.MaxAckDelayInclGranularity,
  406. AckDelayExponent: protocol.AckDelayExponent,
  407. DisableActiveMigration: true,
  408. ActiveConnectionIDLimit: protocol.MaxActiveConnectionIDs,
  409. InitialSourceConnectionID: srcConnID,
  410. }
  411. if s.config.EnableDatagrams {
  412. params.MaxDatagramFrameSize = protocol.MaxDatagramFrameSize
  413. } else {
  414. params.MaxDatagramFrameSize = protocol.InvalidByteCount
  415. }
  416. if s.tracer != nil {
  417. s.tracer.SentTransportParameters(params)
  418. }
  419. cs, clientHelloWritten := handshake.NewCryptoSetupClient(
  420. initialStream,
  421. handshakeStream,
  422. destConnID,
  423. conn.LocalAddr(),
  424. conn.RemoteAddr(),
  425. params,
  426. &handshakeRunner{
  427. onReceivedParams: s.handleTransportParameters,
  428. onError: s.closeLocal,
  429. dropKeys: s.dropEncryptionLevel,
  430. onHandshakeComplete: func() { close(s.handshakeCompleteChan) },
  431. },
  432. tlsConf,
  433. // [Psiphon]
  434. conf.ClientHelloSeed,
  435. conf.GetClientHelloRandom,
  436. enable0RTT,
  437. s.rttStats,
  438. tracer,
  439. logger,
  440. s.version,
  441. )
  442. s.clientHelloWritten = clientHelloWritten
  443. s.cryptoStreamHandler = cs
  444. s.cryptoStreamManager = newCryptoStreamManager(cs, initialStream, handshakeStream, newCryptoStream())
  445. s.unpacker = newPacketUnpacker(cs, s.srcConnIDLen)
  446. s.packer = newPacketPacker(
  447. srcConnID,
  448. s.connIDManager.Get,
  449. initialStream,
  450. handshakeStream,
  451. s.sentPacketHandler,
  452. s.retransmissionQueue,
  453. s.RemoteAddr(),
  454. // [Psiphon]
  455. conf.ClientMaxPacketSizeAdjustment,
  456. cs,
  457. s.framer,
  458. s.receivedPacketHandler,
  459. s.datagramQueue,
  460. s.perspective,
  461. )
  462. if len(tlsConf.ServerName) > 0 {
  463. s.tokenStoreKey = tlsConf.ServerName
  464. } else {
  465. s.tokenStoreKey = conn.RemoteAddr().String()
  466. }
  467. if s.config.TokenStore != nil {
  468. if token := s.config.TokenStore.Pop(s.tokenStoreKey); token != nil {
  469. s.packer.SetToken(token.data)
  470. }
  471. }
  472. return s
  473. }
  474. func (s *connection) preSetup() {
  475. s.sendQueue = newSendQueue(s.conn)
  476. s.retransmissionQueue = newRetransmissionQueue()
  477. s.frameParser = wire.NewFrameParser(s.config.EnableDatagrams)
  478. s.rttStats = &utils.RTTStats{}
  479. s.connFlowController = flowcontrol.NewConnectionFlowController(
  480. protocol.ByteCount(s.config.InitialConnectionReceiveWindow),
  481. protocol.ByteCount(s.config.MaxConnectionReceiveWindow),
  482. s.onHasConnectionWindowUpdate,
  483. func(size protocol.ByteCount) bool {
  484. if s.config.AllowConnectionWindowIncrease == nil {
  485. return true
  486. }
  487. return s.config.AllowConnectionWindowIncrease(s, uint64(size))
  488. },
  489. s.rttStats,
  490. s.logger,
  491. )
  492. s.earlyConnReadyChan = make(chan struct{})
  493. s.streamsMap = newStreamsMap(
  494. s,
  495. s.newFlowController,
  496. uint64(s.config.MaxIncomingStreams),
  497. uint64(s.config.MaxIncomingUniStreams),
  498. s.perspective,
  499. )
  500. s.framer = newFramer(s.streamsMap)
  501. s.receivedPackets = make(chan *receivedPacket, protocol.MaxConnUnprocessedPackets)
  502. s.closeChan = make(chan closeError, 1)
  503. s.sendingScheduled = make(chan struct{}, 1)
  504. s.handshakeCtx, s.handshakeCtxCancel = context.WithCancel(context.Background())
  505. now := time.Now()
  506. s.lastPacketReceivedTime = now
  507. s.creationTime = now
  508. s.windowUpdateQueue = newWindowUpdateQueue(s.streamsMap, s.connFlowController, s.framer.QueueControlFrame)
  509. s.datagramQueue = newDatagramQueue(s.scheduleSending, s.logger)
  510. s.connState.Version = s.version
  511. }
  512. // run the connection main loop
  513. func (s *connection) run() error {
  514. defer s.ctxCancel()
  515. s.timer = *newTimer()
  516. handshaking := make(chan struct{})
  517. go func() {
  518. defer close(handshaking)
  519. s.cryptoStreamHandler.RunHandshake()
  520. }()
  521. go func() {
  522. if err := s.sendQueue.Run(); err != nil {
  523. s.destroyImpl(err)
  524. }
  525. }()
  526. if s.perspective == protocol.PerspectiveClient {
  527. select {
  528. case zeroRTTParams := <-s.clientHelloWritten:
  529. s.scheduleSending()
  530. if zeroRTTParams != nil {
  531. s.restoreTransportParameters(zeroRTTParams)
  532. close(s.earlyConnReadyChan)
  533. }
  534. case closeErr := <-s.closeChan:
  535. // put the close error back into the channel, so that the run loop can receive it
  536. s.closeChan <- closeErr
  537. }
  538. }
  539. var (
  540. closeErr closeError
  541. sendQueueAvailable <-chan struct{}
  542. )
  543. runLoop:
  544. for {
  545. // Close immediately if requested
  546. select {
  547. case closeErr = <-s.closeChan:
  548. break runLoop
  549. case <-s.handshakeCompleteChan:
  550. s.handleHandshakeComplete()
  551. default:
  552. }
  553. s.maybeResetTimer()
  554. var processedUndecryptablePacket bool
  555. if len(s.undecryptablePacketsToProcess) > 0 {
  556. queue := s.undecryptablePacketsToProcess
  557. s.undecryptablePacketsToProcess = nil
  558. for _, p := range queue {
  559. if processed := s.handlePacketImpl(p); processed {
  560. processedUndecryptablePacket = true
  561. }
  562. // Don't set timers and send packets if the packet made us close the connection.
  563. select {
  564. case closeErr = <-s.closeChan:
  565. break runLoop
  566. default:
  567. }
  568. }
  569. }
  570. // If we processed any undecryptable packets, jump to the resetting of the timers directly.
  571. if !processedUndecryptablePacket {
  572. select {
  573. case closeErr = <-s.closeChan:
  574. break runLoop
  575. case <-s.timer.Chan():
  576. s.timer.SetRead()
  577. // We do all the interesting stuff after the switch statement, so
  578. // nothing to see here.
  579. case <-s.sendingScheduled:
  580. // We do all the interesting stuff after the switch statement, so
  581. // nothing to see here.
  582. case <-sendQueueAvailable:
  583. case firstPacket := <-s.receivedPackets:
  584. wasProcessed := s.handlePacketImpl(firstPacket)
  585. // Don't set timers and send packets if the packet made us close the connection.
  586. select {
  587. case closeErr = <-s.closeChan:
  588. break runLoop
  589. default:
  590. }
  591. if s.handshakeComplete {
  592. // Now process all packets in the receivedPackets channel.
  593. // Limit the number of packets to the length of the receivedPackets channel,
  594. // so we eventually get a chance to send out an ACK when receiving a lot of packets.
  595. numPackets := len(s.receivedPackets)
  596. receiveLoop:
  597. for i := 0; i < numPackets; i++ {
  598. select {
  599. case p := <-s.receivedPackets:
  600. if processed := s.handlePacketImpl(p); processed {
  601. wasProcessed = true
  602. }
  603. select {
  604. case closeErr = <-s.closeChan:
  605. break runLoop
  606. default:
  607. }
  608. default:
  609. break receiveLoop
  610. }
  611. }
  612. }
  613. // Only reset the timers if this packet was actually processed.
  614. // This avoids modifying any state when handling undecryptable packets,
  615. // which could be injected by an attacker.
  616. if !wasProcessed {
  617. continue
  618. }
  619. case <-s.handshakeCompleteChan:
  620. s.handleHandshakeComplete()
  621. }
  622. }
  623. now := time.Now()
  624. if timeout := s.sentPacketHandler.GetLossDetectionTimeout(); !timeout.IsZero() && timeout.Before(now) {
  625. // This could cause packets to be retransmitted.
  626. // Check it before trying to send packets.
  627. if err := s.sentPacketHandler.OnLossDetectionTimeout(); err != nil {
  628. s.closeLocal(err)
  629. }
  630. }
  631. if keepAliveTime := s.nextKeepAliveTime(); !keepAliveTime.IsZero() && !now.Before(keepAliveTime) {
  632. // send a PING frame since there is no activity in the connection
  633. s.logger.Debugf("Sending a keep-alive PING to keep the connection alive.")
  634. s.framer.QueueControlFrame(&wire.PingFrame{})
  635. s.keepAlivePingSent = true
  636. } else if !s.handshakeComplete && now.Sub(s.creationTime) >= s.config.handshakeTimeout() {
  637. s.destroyImpl(qerr.ErrHandshakeTimeout)
  638. continue
  639. } else {
  640. idleTimeoutStartTime := s.idleTimeoutStartTime()
  641. if (!s.handshakeComplete && now.Sub(idleTimeoutStartTime) >= s.config.HandshakeIdleTimeout) ||
  642. (s.handshakeComplete && now.Sub(idleTimeoutStartTime) >= s.idleTimeout) {
  643. s.destroyImpl(qerr.ErrIdleTimeout)
  644. continue
  645. }
  646. }
  647. if s.sendQueue.WouldBlock() {
  648. // The send queue is still busy sending out packets.
  649. // Wait until there's space to enqueue new packets.
  650. sendQueueAvailable = s.sendQueue.Available()
  651. continue
  652. }
  653. if err := s.sendPackets(); err != nil {
  654. s.closeLocal(err)
  655. }
  656. if s.sendQueue.WouldBlock() {
  657. sendQueueAvailable = s.sendQueue.Available()
  658. } else {
  659. sendQueueAvailable = nil
  660. }
  661. }
  662. s.cryptoStreamHandler.Close()
  663. <-handshaking
  664. s.handleCloseError(&closeErr)
  665. if e := (&errCloseForRecreating{}); !errors.As(closeErr.err, &e) && s.tracer != nil {
  666. s.tracer.Close()
  667. }
  668. s.logger.Infof("Connection %s closed.", s.logID)
  669. s.sendQueue.Close()
  670. s.timer.Stop()
  671. return closeErr.err
  672. }
  673. // blocks until the early connection can be used
  674. func (s *connection) earlyConnReady() <-chan struct{} {
  675. return s.earlyConnReadyChan
  676. }
  677. func (s *connection) HandshakeComplete() context.Context {
  678. return s.handshakeCtx
  679. }
  680. func (s *connection) Context() context.Context {
  681. return s.ctx
  682. }
  683. func (s *connection) supportsDatagrams() bool {
  684. return s.peerParams.MaxDatagramFrameSize > 0
  685. }
  686. func (s *connection) ConnectionState() ConnectionState {
  687. s.connStateMutex.Lock()
  688. defer s.connStateMutex.Unlock()
  689. s.connState.TLS = s.cryptoStreamHandler.ConnectionState()
  690. return s.connState
  691. }
  692. // Time when the next keep-alive packet should be sent.
  693. // It returns a zero time if no keep-alive should be sent.
  694. func (s *connection) nextKeepAliveTime() time.Time {
  695. if s.config.KeepAlivePeriod == 0 || s.keepAlivePingSent || !s.firstAckElicitingPacketAfterIdleSentTime.IsZero() {
  696. return time.Time{}
  697. }
  698. return s.lastPacketReceivedTime.Add(s.keepAliveInterval)
  699. }
  700. func (s *connection) maybeResetTimer() {
  701. var deadline time.Time
  702. if !s.handshakeComplete {
  703. deadline = utils.MinTime(
  704. s.creationTime.Add(s.config.handshakeTimeout()),
  705. s.idleTimeoutStartTime().Add(s.config.HandshakeIdleTimeout),
  706. )
  707. } else {
  708. if keepAliveTime := s.nextKeepAliveTime(); !keepAliveTime.IsZero() {
  709. deadline = keepAliveTime
  710. } else {
  711. deadline = s.idleTimeoutStartTime().Add(s.idleTimeout)
  712. }
  713. }
  714. s.timer.SetTimer(
  715. deadline,
  716. s.receivedPacketHandler.GetAlarmTimeout(),
  717. s.sentPacketHandler.GetLossDetectionTimeout(),
  718. s.pacingDeadline,
  719. )
  720. }
  721. func (s *connection) idleTimeoutStartTime() time.Time {
  722. return utils.MaxTime(s.lastPacketReceivedTime, s.firstAckElicitingPacketAfterIdleSentTime)
  723. }
  724. func (s *connection) handleHandshakeComplete() {
  725. s.handshakeComplete = true
  726. s.handshakeCompleteChan = nil // prevent this case from ever being selected again
  727. defer s.handshakeCtxCancel()
  728. // Once the handshake completes, we have derived 1-RTT keys.
  729. // There's no point in queueing undecryptable packets for later decryption any more.
  730. s.undecryptablePackets = nil
  731. s.connIDManager.SetHandshakeComplete()
  732. s.connIDGenerator.SetHandshakeComplete()
  733. if s.perspective == protocol.PerspectiveClient {
  734. s.applyTransportParameters()
  735. return
  736. }
  737. s.handleHandshakeConfirmed()
  738. ticket, err := s.cryptoStreamHandler.GetSessionTicket()
  739. if err != nil {
  740. s.closeLocal(err)
  741. }
  742. if ticket != nil {
  743. s.oneRTTStream.Write(ticket)
  744. for s.oneRTTStream.HasData() {
  745. s.queueControlFrame(s.oneRTTStream.PopCryptoFrame(protocol.MaxPostHandshakeCryptoFrameSize))
  746. }
  747. }
  748. token, err := s.tokenGenerator.NewToken(s.conn.RemoteAddr())
  749. if err != nil {
  750. s.closeLocal(err)
  751. }
  752. s.queueControlFrame(&wire.NewTokenFrame{Token: token})
  753. s.queueControlFrame(&wire.HandshakeDoneFrame{})
  754. }
  755. func (s *connection) handleHandshakeConfirmed() {
  756. s.handshakeConfirmed = true
  757. s.sentPacketHandler.SetHandshakeConfirmed()
  758. s.cryptoStreamHandler.SetHandshakeConfirmed()
  759. // [Psiphon]
  760. // Adjust the max packet size to allow for obfuscation overhead.
  761. maxPacketSizeAdjustment := 0
  762. if s.config.ServerMaxPacketSizeAdjustment != nil {
  763. maxPacketSizeAdjustment = s.config.ServerMaxPacketSizeAdjustment(s.conn.RemoteAddr())
  764. } else {
  765. maxPacketSizeAdjustment = s.config.ClientMaxPacketSizeAdjustment
  766. }
  767. if !s.config.DisablePathMTUDiscovery {
  768. maxPacketSize := s.peerParams.MaxUDPPayloadSize
  769. if maxPacketSize == 0 {
  770. maxPacketSize = protocol.MaxByteCount
  771. }
  772. maxPacketSize = utils.Min(maxPacketSize, protocol.MaxPacketBufferSize)
  773. // [Psiphon]
  774. if maxPacketSize > protocol.ByteCount(maxPacketSizeAdjustment) {
  775. maxPacketSize -= protocol.ByteCount(maxPacketSizeAdjustment)
  776. }
  777. s.mtuDiscoverer = newMTUDiscoverer(
  778. s.rttStats,
  779. // [Psiphon]
  780. getMaxPacketSize(s.conn.RemoteAddr(), maxPacketSizeAdjustment),
  781. maxPacketSize,
  782. func(size protocol.ByteCount) {
  783. s.sentPacketHandler.SetMaxDatagramSize(size)
  784. s.packer.SetMaxPacketSize(size)
  785. },
  786. )
  787. }
  788. }
  789. func (s *connection) handlePacketImpl(rp *receivedPacket) bool {
  790. s.sentPacketHandler.ReceivedBytes(rp.Size())
  791. if wire.IsVersionNegotiationPacket(rp.data) {
  792. s.handleVersionNegotiationPacket(rp)
  793. return false
  794. }
  795. var counter uint8
  796. var lastConnID protocol.ConnectionID
  797. var processed bool
  798. data := rp.data
  799. p := rp
  800. for len(data) > 0 {
  801. var destConnID protocol.ConnectionID
  802. if counter > 0 {
  803. p = p.Clone()
  804. p.data = data
  805. var err error
  806. destConnID, err = wire.ParseConnectionID(p.data, s.srcConnIDLen)
  807. if err != nil {
  808. if s.tracer != nil {
  809. s.tracer.DroppedPacket(logging.PacketTypeNotDetermined, protocol.ByteCount(len(data)), logging.PacketDropHeaderParseError)
  810. }
  811. s.logger.Debugf("error parsing packet, couldn't parse connection ID: %s", err)
  812. break
  813. }
  814. if destConnID != lastConnID {
  815. if s.tracer != nil {
  816. s.tracer.DroppedPacket(logging.PacketTypeNotDetermined, protocol.ByteCount(len(data)), logging.PacketDropUnknownConnectionID)
  817. }
  818. s.logger.Debugf("coalesced packet has different destination connection ID: %s, expected %s", destConnID, lastConnID)
  819. break
  820. }
  821. }
  822. if wire.IsLongHeaderPacket(p.data[0]) {
  823. hdr, packetData, rest, err := wire.ParsePacket(p.data)
  824. if err != nil {
  825. if s.tracer != nil {
  826. dropReason := logging.PacketDropHeaderParseError
  827. if err == wire.ErrUnsupportedVersion {
  828. dropReason = logging.PacketDropUnsupportedVersion
  829. }
  830. s.tracer.DroppedPacket(logging.PacketTypeNotDetermined, protocol.ByteCount(len(data)), dropReason)
  831. }
  832. s.logger.Debugf("error parsing packet: %s", err)
  833. break
  834. }
  835. lastConnID = hdr.DestConnectionID
  836. if hdr.Version != s.version {
  837. if s.tracer != nil {
  838. s.tracer.DroppedPacket(logging.PacketTypeFromHeader(hdr), protocol.ByteCount(len(data)), logging.PacketDropUnexpectedVersion)
  839. }
  840. s.logger.Debugf("Dropping packet with version %x. Expected %x.", hdr.Version, s.version)
  841. break
  842. }
  843. if counter > 0 {
  844. p.buffer.Split()
  845. }
  846. counter++
  847. // only log if this actually a coalesced packet
  848. if s.logger.Debug() && (counter > 1 || len(rest) > 0) {
  849. s.logger.Debugf("Parsed a coalesced packet. Part %d: %d bytes. Remaining: %d bytes.", counter, len(packetData), len(rest))
  850. }
  851. p.data = packetData
  852. if wasProcessed := s.handleLongHeaderPacket(p, hdr); wasProcessed {
  853. processed = true
  854. }
  855. data = rest
  856. } else {
  857. if counter > 0 {
  858. p.buffer.Split()
  859. }
  860. processed = s.handleShortHeaderPacket(p, destConnID)
  861. break
  862. }
  863. }
  864. p.buffer.MaybeRelease()
  865. return processed
  866. }
  867. func (s *connection) handleShortHeaderPacket(p *receivedPacket, destConnID protocol.ConnectionID) bool {
  868. var wasQueued bool
  869. defer func() {
  870. // Put back the packet buffer if the packet wasn't queued for later decryption.
  871. if !wasQueued {
  872. p.buffer.Decrement()
  873. }
  874. }()
  875. pn, pnLen, keyPhase, data, err := s.unpacker.UnpackShortHeader(p.rcvTime, p.data)
  876. if err != nil {
  877. wasQueued = s.handleUnpackError(err, p, logging.PacketType1RTT)
  878. return false
  879. }
  880. if s.logger.Debug() {
  881. s.logger.Debugf("<- Reading packet %d (%d bytes) for connection %s, 1-RTT", pn, p.Size(), destConnID)
  882. wire.LogShortHeader(s.logger, destConnID, pn, pnLen, keyPhase)
  883. }
  884. if s.receivedPacketHandler.IsPotentiallyDuplicate(pn, protocol.Encryption1RTT) {
  885. s.logger.Debugf("Dropping (potentially) duplicate packet.")
  886. if s.tracer != nil {
  887. s.tracer.DroppedPacket(logging.PacketType1RTT, p.Size(), logging.PacketDropDuplicate)
  888. }
  889. return false
  890. }
  891. var log func([]logging.Frame)
  892. if s.tracer != nil {
  893. log = func(frames []logging.Frame) {
  894. s.tracer.ReceivedShortHeaderPacket(
  895. &logging.ShortHeader{
  896. DestConnectionID: destConnID,
  897. PacketNumber: pn,
  898. PacketNumberLen: pnLen,
  899. KeyPhase: keyPhase,
  900. },
  901. p.Size(),
  902. frames,
  903. )
  904. }
  905. }
  906. if err := s.handleUnpackedShortHeaderPacket(destConnID, pn, data, p.ecn, p.rcvTime, log); err != nil {
  907. s.closeLocal(err)
  908. return false
  909. }
  910. return true
  911. }
  912. func (s *connection) handleLongHeaderPacket(p *receivedPacket, hdr *wire.Header) bool /* was the packet successfully processed */ {
  913. var wasQueued bool
  914. defer func() {
  915. // Put back the packet buffer if the packet wasn't queued for later decryption.
  916. if !wasQueued {
  917. p.buffer.Decrement()
  918. }
  919. }()
  920. if hdr.Type == protocol.PacketTypeRetry {
  921. return s.handleRetryPacket(hdr, p.data)
  922. }
  923. // The server can change the source connection ID with the first Handshake packet.
  924. // After this, all packets with a different source connection have to be ignored.
  925. if s.receivedFirstPacket && hdr.Type == protocol.PacketTypeInitial && hdr.SrcConnectionID != s.handshakeDestConnID {
  926. if s.tracer != nil {
  927. s.tracer.DroppedPacket(logging.PacketTypeInitial, p.Size(), logging.PacketDropUnknownConnectionID)
  928. }
  929. s.logger.Debugf("Dropping Initial packet (%d bytes) with unexpected source connection ID: %s (expected %s)", p.Size(), hdr.SrcConnectionID, s.handshakeDestConnID)
  930. return false
  931. }
  932. // drop 0-RTT packets, if we are a client
  933. if s.perspective == protocol.PerspectiveClient && hdr.Type == protocol.PacketType0RTT {
  934. if s.tracer != nil {
  935. s.tracer.DroppedPacket(logging.PacketType0RTT, p.Size(), logging.PacketDropKeyUnavailable)
  936. }
  937. return false
  938. }
  939. packet, err := s.unpacker.UnpackLongHeader(hdr, p.rcvTime, p.data, s.version)
  940. if err != nil {
  941. wasQueued = s.handleUnpackError(err, p, logging.PacketTypeFromHeader(hdr))
  942. return false
  943. }
  944. if s.logger.Debug() {
  945. s.logger.Debugf("<- Reading packet %d (%d bytes) for connection %s, %s", packet.hdr.PacketNumber, p.Size(), hdr.DestConnectionID, packet.encryptionLevel)
  946. packet.hdr.Log(s.logger)
  947. }
  948. if s.receivedPacketHandler.IsPotentiallyDuplicate(packet.hdr.PacketNumber, packet.encryptionLevel) {
  949. s.logger.Debugf("Dropping (potentially) duplicate packet.")
  950. if s.tracer != nil {
  951. s.tracer.DroppedPacket(logging.PacketTypeFromHeader(hdr), p.Size(), logging.PacketDropDuplicate)
  952. }
  953. return false
  954. }
  955. if err := s.handleUnpackedLongHeaderPacket(packet, p.ecn, p.rcvTime, p.Size()); err != nil {
  956. s.closeLocal(err)
  957. return false
  958. }
  959. return true
  960. }
  961. func (s *connection) handleUnpackError(err error, p *receivedPacket, pt logging.PacketType) (wasQueued bool) {
  962. switch err {
  963. case handshake.ErrKeysDropped:
  964. if s.tracer != nil {
  965. s.tracer.DroppedPacket(pt, p.Size(), logging.PacketDropKeyUnavailable)
  966. }
  967. s.logger.Debugf("Dropping %s packet (%d bytes) because we already dropped the keys.", pt, p.Size())
  968. case handshake.ErrKeysNotYetAvailable:
  969. // Sealer for this encryption level not yet available.
  970. // Try again later.
  971. s.tryQueueingUndecryptablePacket(p, pt)
  972. return true
  973. case wire.ErrInvalidReservedBits:
  974. s.closeLocal(&qerr.TransportError{
  975. ErrorCode: qerr.ProtocolViolation,
  976. ErrorMessage: err.Error(),
  977. })
  978. case handshake.ErrDecryptionFailed:
  979. // This might be a packet injected by an attacker. Drop it.
  980. if s.tracer != nil {
  981. s.tracer.DroppedPacket(pt, p.Size(), logging.PacketDropPayloadDecryptError)
  982. }
  983. s.logger.Debugf("Dropping %s packet (%d bytes) that could not be unpacked. Error: %s", pt, p.Size(), err)
  984. default:
  985. var headerErr *headerParseError
  986. if errors.As(err, &headerErr) {
  987. // This might be a packet injected by an attacker. Drop it.
  988. if s.tracer != nil {
  989. s.tracer.DroppedPacket(pt, p.Size(), logging.PacketDropHeaderParseError)
  990. }
  991. s.logger.Debugf("Dropping %s packet (%d bytes) for which we couldn't unpack the header. Error: %s", pt, p.Size(), err)
  992. } else {
  993. // This is an error returned by the AEAD (other than ErrDecryptionFailed).
  994. // For example, a PROTOCOL_VIOLATION due to key updates.
  995. s.closeLocal(err)
  996. }
  997. }
  998. return false
  999. }
  1000. func (s *connection) handleRetryPacket(hdr *wire.Header, data []byte) bool /* was this a valid Retry */ {
  1001. if s.perspective == protocol.PerspectiveServer {
  1002. if s.tracer != nil {
  1003. s.tracer.DroppedPacket(logging.PacketTypeRetry, protocol.ByteCount(len(data)), logging.PacketDropUnexpectedPacket)
  1004. }
  1005. s.logger.Debugf("Ignoring Retry.")
  1006. return false
  1007. }
  1008. if s.receivedFirstPacket {
  1009. if s.tracer != nil {
  1010. s.tracer.DroppedPacket(logging.PacketTypeRetry, protocol.ByteCount(len(data)), logging.PacketDropUnexpectedPacket)
  1011. }
  1012. s.logger.Debugf("Ignoring Retry, since we already received a packet.")
  1013. return false
  1014. }
  1015. destConnID := s.connIDManager.Get()
  1016. if hdr.SrcConnectionID == destConnID {
  1017. if s.tracer != nil {
  1018. s.tracer.DroppedPacket(logging.PacketTypeRetry, protocol.ByteCount(len(data)), logging.PacketDropUnexpectedPacket)
  1019. }
  1020. s.logger.Debugf("Ignoring Retry, since the server didn't change the Source Connection ID.")
  1021. return false
  1022. }
  1023. // If a token is already set, this means that we already received a Retry from the server.
  1024. // Ignore this Retry packet.
  1025. if s.receivedRetry {
  1026. s.logger.Debugf("Ignoring Retry, since a Retry was already received.")
  1027. return false
  1028. }
  1029. tag := handshake.GetRetryIntegrityTag(data[:len(data)-16], destConnID, hdr.Version)
  1030. if !bytes.Equal(data[len(data)-16:], tag[:]) {
  1031. if s.tracer != nil {
  1032. s.tracer.DroppedPacket(logging.PacketTypeRetry, protocol.ByteCount(len(data)), logging.PacketDropPayloadDecryptError)
  1033. }
  1034. s.logger.Debugf("Ignoring spoofed Retry. Integrity Tag doesn't match.")
  1035. return false
  1036. }
  1037. if s.logger.Debug() {
  1038. s.logger.Debugf("<- Received Retry:")
  1039. (&wire.ExtendedHeader{Header: *hdr}).Log(s.logger)
  1040. s.logger.Debugf("Switching destination connection ID to: %s", hdr.SrcConnectionID)
  1041. }
  1042. if s.tracer != nil {
  1043. s.tracer.ReceivedRetry(hdr)
  1044. }
  1045. newDestConnID := hdr.SrcConnectionID
  1046. s.receivedRetry = true
  1047. if err := s.sentPacketHandler.ResetForRetry(); err != nil {
  1048. s.closeLocal(err)
  1049. return false
  1050. }
  1051. s.handshakeDestConnID = newDestConnID
  1052. s.retrySrcConnID = &newDestConnID
  1053. s.cryptoStreamHandler.ChangeConnectionID(newDestConnID)
  1054. s.packer.SetToken(hdr.Token)
  1055. s.connIDManager.ChangeInitialConnID(newDestConnID)
  1056. s.scheduleSending()
  1057. return true
  1058. }
  1059. func (s *connection) handleVersionNegotiationPacket(p *receivedPacket) {
  1060. if s.perspective == protocol.PerspectiveServer || // servers never receive version negotiation packets
  1061. s.receivedFirstPacket || s.versionNegotiated { // ignore delayed / duplicated version negotiation packets
  1062. if s.tracer != nil {
  1063. s.tracer.DroppedPacket(logging.PacketTypeVersionNegotiation, p.Size(), logging.PacketDropUnexpectedPacket)
  1064. }
  1065. return
  1066. }
  1067. src, dest, supportedVersions, err := wire.ParseVersionNegotiationPacket(p.data)
  1068. if err != nil {
  1069. if s.tracer != nil {
  1070. s.tracer.DroppedPacket(logging.PacketTypeVersionNegotiation, p.Size(), logging.PacketDropHeaderParseError)
  1071. }
  1072. s.logger.Debugf("Error parsing Version Negotiation packet: %s", err)
  1073. return
  1074. }
  1075. for _, v := range supportedVersions {
  1076. if v == s.version {
  1077. if s.tracer != nil {
  1078. s.tracer.DroppedPacket(logging.PacketTypeVersionNegotiation, p.Size(), logging.PacketDropUnexpectedVersion)
  1079. }
  1080. // The Version Negotiation packet contains the version that we offered.
  1081. // This might be a packet sent by an attacker, or it was corrupted.
  1082. return
  1083. }
  1084. }
  1085. s.logger.Infof("Received a Version Negotiation packet. Supported Versions: %s", supportedVersions)
  1086. if s.tracer != nil {
  1087. s.tracer.ReceivedVersionNegotiationPacket(dest, src, supportedVersions)
  1088. }
  1089. newVersion, ok := protocol.ChooseSupportedVersion(s.config.Versions, supportedVersions)
  1090. if !ok {
  1091. s.destroyImpl(&VersionNegotiationError{
  1092. Ours: s.config.Versions,
  1093. Theirs: supportedVersions,
  1094. })
  1095. s.logger.Infof("No compatible QUIC version found.")
  1096. return
  1097. }
  1098. if s.tracer != nil {
  1099. s.tracer.NegotiatedVersion(newVersion, s.config.Versions, supportedVersions)
  1100. }
  1101. s.logger.Infof("Switching to QUIC version %s.", newVersion)
  1102. nextPN, _ := s.sentPacketHandler.PeekPacketNumber(protocol.EncryptionInitial)
  1103. s.destroyImpl(&errCloseForRecreating{
  1104. nextPacketNumber: nextPN,
  1105. nextVersion: newVersion,
  1106. })
  1107. }
  1108. func (s *connection) handleUnpackedLongHeaderPacket(
  1109. packet *unpackedPacket,
  1110. ecn protocol.ECN,
  1111. rcvTime time.Time,
  1112. packetSize protocol.ByteCount, // only for logging
  1113. ) error {
  1114. if !s.receivedFirstPacket {
  1115. s.receivedFirstPacket = true
  1116. if !s.versionNegotiated && s.tracer != nil {
  1117. var clientVersions, serverVersions []protocol.VersionNumber
  1118. switch s.perspective {
  1119. case protocol.PerspectiveClient:
  1120. clientVersions = s.config.Versions
  1121. case protocol.PerspectiveServer:
  1122. serverVersions = s.config.Versions
  1123. }
  1124. s.tracer.NegotiatedVersion(s.version, clientVersions, serverVersions)
  1125. }
  1126. // The server can change the source connection ID with the first Handshake packet.
  1127. if s.perspective == protocol.PerspectiveClient && packet.hdr.SrcConnectionID != s.handshakeDestConnID {
  1128. cid := packet.hdr.SrcConnectionID
  1129. s.logger.Debugf("Received first packet. Switching destination connection ID to: %s", cid)
  1130. s.handshakeDestConnID = cid
  1131. s.connIDManager.ChangeInitialConnID(cid)
  1132. }
  1133. // We create the connection as soon as we receive the first packet from the client.
  1134. // We do that before authenticating the packet.
  1135. // That means that if the source connection ID was corrupted,
  1136. // we might have created a connection with an incorrect source connection ID.
  1137. // Once we authenticate the first packet, we need to update it.
  1138. if s.perspective == protocol.PerspectiveServer {
  1139. if packet.hdr.SrcConnectionID != s.handshakeDestConnID {
  1140. s.handshakeDestConnID = packet.hdr.SrcConnectionID
  1141. s.connIDManager.ChangeInitialConnID(packet.hdr.SrcConnectionID)
  1142. }
  1143. if s.tracer != nil {
  1144. s.tracer.StartedConnection(
  1145. s.conn.LocalAddr(),
  1146. s.conn.RemoteAddr(),
  1147. packet.hdr.SrcConnectionID,
  1148. packet.hdr.DestConnectionID,
  1149. )
  1150. }
  1151. }
  1152. }
  1153. s.lastPacketReceivedTime = rcvTime
  1154. s.firstAckElicitingPacketAfterIdleSentTime = time.Time{}
  1155. s.keepAlivePingSent = false
  1156. var log func([]logging.Frame)
  1157. if s.tracer != nil {
  1158. log = func(frames []logging.Frame) {
  1159. s.tracer.ReceivedLongHeaderPacket(packet.hdr, packetSize, frames)
  1160. }
  1161. }
  1162. isAckEliciting, err := s.handleFrames(packet.data, packet.hdr.DestConnectionID, packet.encryptionLevel, log)
  1163. if err != nil {
  1164. return err
  1165. }
  1166. return s.receivedPacketHandler.ReceivedPacket(packet.hdr.PacketNumber, ecn, packet.encryptionLevel, rcvTime, isAckEliciting)
  1167. }
  1168. func (s *connection) handleUnpackedShortHeaderPacket(
  1169. destConnID protocol.ConnectionID,
  1170. pn protocol.PacketNumber,
  1171. data []byte,
  1172. ecn protocol.ECN,
  1173. rcvTime time.Time,
  1174. log func([]logging.Frame),
  1175. ) error {
  1176. s.lastPacketReceivedTime = rcvTime
  1177. s.firstAckElicitingPacketAfterIdleSentTime = time.Time{}
  1178. s.keepAlivePingSent = false
  1179. isAckEliciting, err := s.handleFrames(data, destConnID, protocol.Encryption1RTT, log)
  1180. if err != nil {
  1181. return err
  1182. }
  1183. return s.receivedPacketHandler.ReceivedPacket(pn, ecn, protocol.Encryption1RTT, rcvTime, isAckEliciting)
  1184. }
  1185. func (s *connection) handleFrames(
  1186. data []byte,
  1187. destConnID protocol.ConnectionID,
  1188. encLevel protocol.EncryptionLevel,
  1189. log func([]logging.Frame),
  1190. ) (isAckEliciting bool, _ error) {
  1191. // Only used for tracing.
  1192. // If we're not tracing, this slice will always remain empty.
  1193. var frames []wire.Frame
  1194. for len(data) > 0 {
  1195. l, frame, err := s.frameParser.ParseNext(data, encLevel, s.version)
  1196. if err != nil {
  1197. return false, err
  1198. }
  1199. data = data[l:]
  1200. if frame == nil {
  1201. break
  1202. }
  1203. if ackhandler.IsFrameAckEliciting(frame) {
  1204. isAckEliciting = true
  1205. }
  1206. // Only process frames now if we're not logging.
  1207. // If we're logging, we need to make sure that the packet_received event is logged first.
  1208. if log == nil {
  1209. if err := s.handleFrame(frame, encLevel, destConnID); err != nil {
  1210. return false, err
  1211. }
  1212. } else {
  1213. frames = append(frames, frame)
  1214. }
  1215. }
  1216. if log != nil {
  1217. fs := make([]logging.Frame, len(frames))
  1218. for i, frame := range frames {
  1219. fs[i] = logutils.ConvertFrame(frame)
  1220. }
  1221. log(fs)
  1222. for _, frame := range frames {
  1223. if err := s.handleFrame(frame, encLevel, destConnID); err != nil {
  1224. return false, err
  1225. }
  1226. }
  1227. }
  1228. return
  1229. }
  1230. func (s *connection) handleFrame(f wire.Frame, encLevel protocol.EncryptionLevel, destConnID protocol.ConnectionID) error {
  1231. var err error
  1232. wire.LogFrame(s.logger, f, false)
  1233. switch frame := f.(type) {
  1234. case *wire.CryptoFrame:
  1235. err = s.handleCryptoFrame(frame, encLevel)
  1236. case *wire.StreamFrame:
  1237. err = s.handleStreamFrame(frame)
  1238. case *wire.AckFrame:
  1239. err = s.handleAckFrame(frame, encLevel)
  1240. wire.PutAckFrame(frame)
  1241. case *wire.ConnectionCloseFrame:
  1242. s.handleConnectionCloseFrame(frame)
  1243. case *wire.ResetStreamFrame:
  1244. err = s.handleResetStreamFrame(frame)
  1245. case *wire.MaxDataFrame:
  1246. s.handleMaxDataFrame(frame)
  1247. case *wire.MaxStreamDataFrame:
  1248. err = s.handleMaxStreamDataFrame(frame)
  1249. case *wire.MaxStreamsFrame:
  1250. s.handleMaxStreamsFrame(frame)
  1251. case *wire.DataBlockedFrame:
  1252. case *wire.StreamDataBlockedFrame:
  1253. case *wire.StreamsBlockedFrame:
  1254. case *wire.StopSendingFrame:
  1255. err = s.handleStopSendingFrame(frame)
  1256. case *wire.PingFrame:
  1257. case *wire.PathChallengeFrame:
  1258. s.handlePathChallengeFrame(frame)
  1259. case *wire.PathResponseFrame:
  1260. // since we don't send PATH_CHALLENGEs, we don't expect PATH_RESPONSEs
  1261. err = errors.New("unexpected PATH_RESPONSE frame")
  1262. case *wire.NewTokenFrame:
  1263. err = s.handleNewTokenFrame(frame)
  1264. case *wire.NewConnectionIDFrame:
  1265. err = s.handleNewConnectionIDFrame(frame)
  1266. case *wire.RetireConnectionIDFrame:
  1267. err = s.handleRetireConnectionIDFrame(frame, destConnID)
  1268. case *wire.HandshakeDoneFrame:
  1269. err = s.handleHandshakeDoneFrame()
  1270. case *wire.DatagramFrame:
  1271. err = s.handleDatagramFrame(frame)
  1272. default:
  1273. err = fmt.Errorf("unexpected frame type: %s", reflect.ValueOf(&frame).Elem().Type().Name())
  1274. }
  1275. return err
  1276. }
  1277. // handlePacket is called by the server with a new packet
  1278. func (s *connection) handlePacket(p *receivedPacket) {
  1279. // Discard packets once the amount of queued packets is larger than
  1280. // the channel size, protocol.MaxConnUnprocessedPackets
  1281. select {
  1282. case s.receivedPackets <- p:
  1283. default:
  1284. if s.tracer != nil {
  1285. s.tracer.DroppedPacket(logging.PacketTypeNotDetermined, p.Size(), logging.PacketDropDOSPrevention)
  1286. }
  1287. }
  1288. }
  1289. func (s *connection) handleConnectionCloseFrame(frame *wire.ConnectionCloseFrame) {
  1290. if frame.IsApplicationError {
  1291. s.closeRemote(&qerr.ApplicationError{
  1292. Remote: true,
  1293. ErrorCode: qerr.ApplicationErrorCode(frame.ErrorCode),
  1294. ErrorMessage: frame.ReasonPhrase,
  1295. })
  1296. return
  1297. }
  1298. s.closeRemote(&qerr.TransportError{
  1299. Remote: true,
  1300. ErrorCode: qerr.TransportErrorCode(frame.ErrorCode),
  1301. FrameType: frame.FrameType,
  1302. ErrorMessage: frame.ReasonPhrase,
  1303. })
  1304. }
  1305. func (s *connection) handleCryptoFrame(frame *wire.CryptoFrame, encLevel protocol.EncryptionLevel) error {
  1306. encLevelChanged, err := s.cryptoStreamManager.HandleCryptoFrame(frame, encLevel)
  1307. if err != nil {
  1308. return err
  1309. }
  1310. if encLevelChanged {
  1311. // Queue all packets for decryption that have been undecryptable so far.
  1312. s.undecryptablePacketsToProcess = s.undecryptablePackets
  1313. s.undecryptablePackets = nil
  1314. }
  1315. return nil
  1316. }
  1317. func (s *connection) handleStreamFrame(frame *wire.StreamFrame) error {
  1318. str, err := s.streamsMap.GetOrOpenReceiveStream(frame.StreamID)
  1319. if err != nil {
  1320. return err
  1321. }
  1322. if str == nil {
  1323. // Stream is closed and already garbage collected
  1324. // ignore this StreamFrame
  1325. return nil
  1326. }
  1327. return str.handleStreamFrame(frame)
  1328. }
  1329. func (s *connection) handleMaxDataFrame(frame *wire.MaxDataFrame) {
  1330. s.connFlowController.UpdateSendWindow(frame.MaximumData)
  1331. }
  1332. func (s *connection) handleMaxStreamDataFrame(frame *wire.MaxStreamDataFrame) error {
  1333. str, err := s.streamsMap.GetOrOpenSendStream(frame.StreamID)
  1334. if err != nil {
  1335. return err
  1336. }
  1337. if str == nil {
  1338. // stream is closed and already garbage collected
  1339. return nil
  1340. }
  1341. str.updateSendWindow(frame.MaximumStreamData)
  1342. return nil
  1343. }
  1344. func (s *connection) handleMaxStreamsFrame(frame *wire.MaxStreamsFrame) {
  1345. s.streamsMap.HandleMaxStreamsFrame(frame)
  1346. }
  1347. func (s *connection) handleResetStreamFrame(frame *wire.ResetStreamFrame) error {
  1348. str, err := s.streamsMap.GetOrOpenReceiveStream(frame.StreamID)
  1349. if err != nil {
  1350. return err
  1351. }
  1352. if str == nil {
  1353. // stream is closed and already garbage collected
  1354. return nil
  1355. }
  1356. return str.handleResetStreamFrame(frame)
  1357. }
  1358. func (s *connection) handleStopSendingFrame(frame *wire.StopSendingFrame) error {
  1359. str, err := s.streamsMap.GetOrOpenSendStream(frame.StreamID)
  1360. if err != nil {
  1361. return err
  1362. }
  1363. if str == nil {
  1364. // stream is closed and already garbage collected
  1365. return nil
  1366. }
  1367. str.handleStopSendingFrame(frame)
  1368. return nil
  1369. }
  1370. func (s *connection) handlePathChallengeFrame(frame *wire.PathChallengeFrame) {
  1371. s.queueControlFrame(&wire.PathResponseFrame{Data: frame.Data})
  1372. }
  1373. func (s *connection) handleNewTokenFrame(frame *wire.NewTokenFrame) error {
  1374. if s.perspective == protocol.PerspectiveServer {
  1375. return &qerr.TransportError{
  1376. ErrorCode: qerr.ProtocolViolation,
  1377. ErrorMessage: "received NEW_TOKEN frame from the client",
  1378. }
  1379. }
  1380. if s.config.TokenStore != nil {
  1381. s.config.TokenStore.Put(s.tokenStoreKey, &ClientToken{data: frame.Token})
  1382. }
  1383. return nil
  1384. }
  1385. func (s *connection) handleNewConnectionIDFrame(f *wire.NewConnectionIDFrame) error {
  1386. return s.connIDManager.Add(f)
  1387. }
  1388. func (s *connection) handleRetireConnectionIDFrame(f *wire.RetireConnectionIDFrame, destConnID protocol.ConnectionID) error {
  1389. return s.connIDGenerator.Retire(f.SequenceNumber, destConnID)
  1390. }
  1391. func (s *connection) handleHandshakeDoneFrame() error {
  1392. if s.perspective == protocol.PerspectiveServer {
  1393. return &qerr.TransportError{
  1394. ErrorCode: qerr.ProtocolViolation,
  1395. ErrorMessage: "received a HANDSHAKE_DONE frame",
  1396. }
  1397. }
  1398. if !s.handshakeConfirmed {
  1399. s.handleHandshakeConfirmed()
  1400. }
  1401. return nil
  1402. }
  1403. func (s *connection) handleAckFrame(frame *wire.AckFrame, encLevel protocol.EncryptionLevel) error {
  1404. acked1RTTPacket, err := s.sentPacketHandler.ReceivedAck(frame, encLevel, s.lastPacketReceivedTime)
  1405. if err != nil {
  1406. return err
  1407. }
  1408. if !acked1RTTPacket {
  1409. return nil
  1410. }
  1411. if s.perspective == protocol.PerspectiveClient && !s.handshakeConfirmed {
  1412. s.handleHandshakeConfirmed()
  1413. }
  1414. return s.cryptoStreamHandler.SetLargest1RTTAcked(frame.LargestAcked())
  1415. }
  1416. func (s *connection) handleDatagramFrame(f *wire.DatagramFrame) error {
  1417. if f.Length(s.version) > protocol.MaxDatagramFrameSize {
  1418. return &qerr.TransportError{
  1419. ErrorCode: qerr.ProtocolViolation,
  1420. ErrorMessage: "DATAGRAM frame too large",
  1421. }
  1422. }
  1423. s.datagramQueue.HandleDatagramFrame(f)
  1424. return nil
  1425. }
  1426. // closeLocal closes the connection and send a CONNECTION_CLOSE containing the error
  1427. func (s *connection) closeLocal(e error) {
  1428. s.closeOnce.Do(func() {
  1429. if e == nil {
  1430. s.logger.Infof("Closing connection.")
  1431. } else {
  1432. s.logger.Errorf("Closing connection with error: %s", e)
  1433. }
  1434. s.closeChan <- closeError{err: e, immediate: false, remote: false}
  1435. })
  1436. }
  1437. // destroy closes the connection without sending the error on the wire
  1438. func (s *connection) destroy(e error) {
  1439. s.destroyImpl(e)
  1440. <-s.ctx.Done()
  1441. }
  1442. func (s *connection) destroyImpl(e error) {
  1443. s.closeOnce.Do(func() {
  1444. if nerr, ok := e.(net.Error); ok && nerr.Timeout() {
  1445. s.logger.Errorf("Destroying connection: %s", e)
  1446. } else {
  1447. s.logger.Errorf("Destroying connection with error: %s", e)
  1448. }
  1449. s.closeChan <- closeError{err: e, immediate: true, remote: false}
  1450. })
  1451. }
  1452. func (s *connection) closeRemote(e error) {
  1453. s.closeOnce.Do(func() {
  1454. s.logger.Errorf("Peer closed connection with error: %s", e)
  1455. s.closeChan <- closeError{err: e, immediate: true, remote: true}
  1456. })
  1457. }
  1458. // Close the connection. It sends a NO_ERROR application error.
  1459. // It waits until the run loop has stopped before returning
  1460. func (s *connection) shutdown() {
  1461. s.closeLocal(nil)
  1462. <-s.ctx.Done()
  1463. }
  1464. func (s *connection) CloseWithError(code ApplicationErrorCode, desc string) error {
  1465. s.closeLocal(&qerr.ApplicationError{
  1466. ErrorCode: code,
  1467. ErrorMessage: desc,
  1468. })
  1469. <-s.ctx.Done()
  1470. return nil
  1471. }
  1472. func (s *connection) handleCloseError(closeErr *closeError) {
  1473. e := closeErr.err
  1474. if e == nil {
  1475. e = &qerr.ApplicationError{}
  1476. } else {
  1477. defer func() {
  1478. closeErr.err = e
  1479. }()
  1480. }
  1481. var (
  1482. statelessResetErr *StatelessResetError
  1483. versionNegotiationErr *VersionNegotiationError
  1484. recreateErr *errCloseForRecreating
  1485. applicationErr *ApplicationError
  1486. transportErr *TransportError
  1487. )
  1488. switch {
  1489. case errors.Is(e, qerr.ErrIdleTimeout),
  1490. errors.Is(e, qerr.ErrHandshakeTimeout),
  1491. errors.As(e, &statelessResetErr),
  1492. errors.As(e, &versionNegotiationErr),
  1493. errors.As(e, &recreateErr),
  1494. errors.As(e, &applicationErr),
  1495. errors.As(e, &transportErr):
  1496. default:
  1497. e = &qerr.TransportError{
  1498. ErrorCode: qerr.InternalError,
  1499. ErrorMessage: e.Error(),
  1500. }
  1501. }
  1502. s.streamsMap.CloseWithError(e)
  1503. s.connIDManager.Close()
  1504. if s.datagramQueue != nil {
  1505. s.datagramQueue.CloseWithError(e)
  1506. }
  1507. if s.tracer != nil && !errors.As(e, &recreateErr) {
  1508. s.tracer.ClosedConnection(e)
  1509. }
  1510. // If this is a remote close we're done here
  1511. if closeErr.remote {
  1512. s.connIDGenerator.ReplaceWithClosed(s.perspective, nil)
  1513. return
  1514. }
  1515. if closeErr.immediate {
  1516. s.connIDGenerator.RemoveAll()
  1517. return
  1518. }
  1519. // Don't send out any CONNECTION_CLOSE if this is an error that occurred
  1520. // before we even sent out the first packet.
  1521. if s.perspective == protocol.PerspectiveClient && !s.sentFirstPacket {
  1522. s.connIDGenerator.RemoveAll()
  1523. return
  1524. }
  1525. connClosePacket, err := s.sendConnectionClose(e)
  1526. if err != nil {
  1527. s.logger.Debugf("Error sending CONNECTION_CLOSE: %s", err)
  1528. }
  1529. s.connIDGenerator.ReplaceWithClosed(s.perspective, connClosePacket)
  1530. }
  1531. func (s *connection) dropEncryptionLevel(encLevel protocol.EncryptionLevel) {
  1532. s.sentPacketHandler.DropPackets(encLevel)
  1533. s.receivedPacketHandler.DropPackets(encLevel)
  1534. if s.tracer != nil {
  1535. s.tracer.DroppedEncryptionLevel(encLevel)
  1536. }
  1537. if encLevel == protocol.Encryption0RTT {
  1538. s.streamsMap.ResetFor0RTT()
  1539. if err := s.connFlowController.Reset(); err != nil {
  1540. s.closeLocal(err)
  1541. }
  1542. if err := s.framer.Handle0RTTRejection(); err != nil {
  1543. s.closeLocal(err)
  1544. }
  1545. }
  1546. }
  1547. // is called for the client, when restoring transport parameters saved for 0-RTT
  1548. func (s *connection) restoreTransportParameters(params *wire.TransportParameters) {
  1549. if s.logger.Debug() {
  1550. s.logger.Debugf("Restoring Transport Parameters: %s", params)
  1551. }
  1552. s.peerParams = params
  1553. s.connIDGenerator.SetMaxActiveConnIDs(params.ActiveConnectionIDLimit)
  1554. s.connFlowController.UpdateSendWindow(params.InitialMaxData)
  1555. s.streamsMap.UpdateLimits(params)
  1556. s.connStateMutex.Lock()
  1557. s.connState.SupportsDatagrams = s.supportsDatagrams()
  1558. s.connStateMutex.Unlock()
  1559. }
  1560. func (s *connection) handleTransportParameters(params *wire.TransportParameters) {
  1561. if err := s.checkTransportParameters(params); err != nil {
  1562. s.closeLocal(&qerr.TransportError{
  1563. ErrorCode: qerr.TransportParameterError,
  1564. ErrorMessage: err.Error(),
  1565. })
  1566. }
  1567. s.peerParams = params
  1568. // On the client side we have to wait for handshake completion.
  1569. // During a 0-RTT connection, we are only allowed to use the new transport parameters for 1-RTT packets.
  1570. if s.perspective == protocol.PerspectiveServer {
  1571. s.applyTransportParameters()
  1572. // On the server side, the early connection is ready as soon as we processed
  1573. // the client's transport parameters.
  1574. close(s.earlyConnReadyChan)
  1575. }
  1576. s.connStateMutex.Lock()
  1577. s.connState.SupportsDatagrams = s.supportsDatagrams()
  1578. s.connStateMutex.Unlock()
  1579. }
  1580. func (s *connection) checkTransportParameters(params *wire.TransportParameters) error {
  1581. if s.logger.Debug() {
  1582. s.logger.Debugf("Processed Transport Parameters: %s", params)
  1583. }
  1584. if s.tracer != nil {
  1585. s.tracer.ReceivedTransportParameters(params)
  1586. }
  1587. // check the initial_source_connection_id
  1588. if params.InitialSourceConnectionID != s.handshakeDestConnID {
  1589. return fmt.Errorf("expected initial_source_connection_id to equal %s, is %s", s.handshakeDestConnID, params.InitialSourceConnectionID)
  1590. }
  1591. if s.perspective == protocol.PerspectiveServer {
  1592. return nil
  1593. }
  1594. // check the original_destination_connection_id
  1595. if params.OriginalDestinationConnectionID != s.origDestConnID {
  1596. return fmt.Errorf("expected original_destination_connection_id to equal %s, is %s", s.origDestConnID, params.OriginalDestinationConnectionID)
  1597. }
  1598. if s.retrySrcConnID != nil { // a Retry was performed
  1599. if params.RetrySourceConnectionID == nil {
  1600. return errors.New("missing retry_source_connection_id")
  1601. }
  1602. if *params.RetrySourceConnectionID != *s.retrySrcConnID {
  1603. return fmt.Errorf("expected retry_source_connection_id to equal %s, is %s", s.retrySrcConnID, *params.RetrySourceConnectionID)
  1604. }
  1605. } else if params.RetrySourceConnectionID != nil {
  1606. return errors.New("received retry_source_connection_id, although no Retry was performed")
  1607. }
  1608. return nil
  1609. }
  1610. func (s *connection) applyTransportParameters() {
  1611. params := s.peerParams
  1612. // Our local idle timeout will always be > 0.
  1613. s.idleTimeout = utils.MinNonZeroDuration(s.config.MaxIdleTimeout, params.MaxIdleTimeout)
  1614. s.keepAliveInterval = utils.Min(s.config.KeepAlivePeriod, utils.Min(s.idleTimeout/2, protocol.MaxKeepAliveInterval))
  1615. s.streamsMap.UpdateLimits(params)
  1616. s.packer.HandleTransportParameters(params)
  1617. s.frameParser.SetAckDelayExponent(params.AckDelayExponent)
  1618. s.connFlowController.UpdateSendWindow(params.InitialMaxData)
  1619. s.rttStats.SetMaxAckDelay(params.MaxAckDelay)
  1620. s.connIDGenerator.SetMaxActiveConnIDs(params.ActiveConnectionIDLimit)
  1621. if params.StatelessResetToken != nil {
  1622. s.connIDManager.SetStatelessResetToken(*params.StatelessResetToken)
  1623. }
  1624. // We don't support connection migration yet, so we don't have any use for the preferred_address.
  1625. if params.PreferredAddress != nil {
  1626. // Retire the connection ID.
  1627. s.connIDManager.AddFromPreferredAddress(params.PreferredAddress.ConnectionID, params.PreferredAddress.StatelessResetToken)
  1628. }
  1629. }
  1630. func (s *connection) sendPackets() error {
  1631. s.pacingDeadline = time.Time{}
  1632. var sentPacket bool // only used in for packets sent in send mode SendAny
  1633. for {
  1634. sendMode := s.sentPacketHandler.SendMode()
  1635. if sendMode == ackhandler.SendAny && s.handshakeComplete && !s.sentPacketHandler.HasPacingBudget() {
  1636. deadline := s.sentPacketHandler.TimeUntilSend()
  1637. if deadline.IsZero() {
  1638. deadline = deadlineSendImmediately
  1639. }
  1640. s.pacingDeadline = deadline
  1641. // Allow sending of an ACK if we're pacing limit (if we haven't sent out a packet yet).
  1642. // This makes sure that a peer that is mostly receiving data (and thus has an inaccurate cwnd estimate)
  1643. // sends enough ACKs to allow its peer to utilize the bandwidth.
  1644. if sentPacket {
  1645. return nil
  1646. }
  1647. sendMode = ackhandler.SendAck
  1648. }
  1649. switch sendMode {
  1650. case ackhandler.SendNone:
  1651. return nil
  1652. case ackhandler.SendAck:
  1653. // If we already sent packets, and the send mode switches to SendAck,
  1654. // as we've just become congestion limited.
  1655. // There's no need to try to send an ACK at this moment.
  1656. if sentPacket {
  1657. return nil
  1658. }
  1659. // We can at most send a single ACK only packet.
  1660. // There will only be a new ACK after receiving new packets.
  1661. // SendAck is only returned when we're congestion limited, so we don't need to set the pacinggs timer.
  1662. return s.maybeSendAckOnlyPacket()
  1663. case ackhandler.SendPTOInitial:
  1664. if err := s.sendProbePacket(protocol.EncryptionInitial); err != nil {
  1665. return err
  1666. }
  1667. case ackhandler.SendPTOHandshake:
  1668. if err := s.sendProbePacket(protocol.EncryptionHandshake); err != nil {
  1669. return err
  1670. }
  1671. case ackhandler.SendPTOAppData:
  1672. if err := s.sendProbePacket(protocol.Encryption1RTT); err != nil {
  1673. return err
  1674. }
  1675. case ackhandler.SendAny:
  1676. sent, err := s.sendPacket()
  1677. if err != nil || !sent {
  1678. return err
  1679. }
  1680. sentPacket = true
  1681. default:
  1682. return fmt.Errorf("BUG: invalid send mode %d", sendMode)
  1683. }
  1684. // Prioritize receiving of packets over sending out more packets.
  1685. if len(s.receivedPackets) > 0 {
  1686. s.pacingDeadline = deadlineSendImmediately
  1687. return nil
  1688. }
  1689. if s.sendQueue.WouldBlock() {
  1690. return nil
  1691. }
  1692. }
  1693. }
  1694. func (s *connection) maybeSendAckOnlyPacket() error {
  1695. if !s.handshakeConfirmed {
  1696. packet, err := s.packer.PackCoalescedPacket(true, s.version)
  1697. if err != nil {
  1698. return err
  1699. }
  1700. if packet == nil {
  1701. return nil
  1702. }
  1703. s.sendPackedCoalescedPacket(packet, time.Now())
  1704. return nil
  1705. }
  1706. now := time.Now()
  1707. p, buffer, err := s.packer.PackPacket(true, now, s.version)
  1708. if err != nil {
  1709. if err == errNothingToPack {
  1710. return nil
  1711. }
  1712. return err
  1713. }
  1714. s.logShortHeaderPacket(p.DestConnID, p.Ack, p.Frames, p.PacketNumber, p.PacketNumberLen, p.KeyPhase, buffer.Len(), false)
  1715. s.sendPackedShortHeaderPacket(buffer, p.Packet, now)
  1716. return nil
  1717. }
  1718. func (s *connection) sendProbePacket(encLevel protocol.EncryptionLevel) error {
  1719. // Queue probe packets until we actually send out a packet,
  1720. // or until there are no more packets to queue.
  1721. var packet *coalescedPacket
  1722. for {
  1723. if wasQueued := s.sentPacketHandler.QueueProbePacket(encLevel); !wasQueued {
  1724. break
  1725. }
  1726. var err error
  1727. packet, err = s.packer.MaybePackProbePacket(encLevel, s.version)
  1728. if err != nil {
  1729. return err
  1730. }
  1731. if packet != nil {
  1732. break
  1733. }
  1734. }
  1735. if packet == nil {
  1736. //nolint:exhaustive // Cannot send probe packets for 0-RTT.
  1737. switch encLevel {
  1738. case protocol.EncryptionInitial:
  1739. s.retransmissionQueue.AddInitial(&wire.PingFrame{})
  1740. case protocol.EncryptionHandshake:
  1741. s.retransmissionQueue.AddHandshake(&wire.PingFrame{})
  1742. case protocol.Encryption1RTT:
  1743. s.retransmissionQueue.AddAppData(&wire.PingFrame{})
  1744. default:
  1745. panic("unexpected encryption level")
  1746. }
  1747. var err error
  1748. packet, err = s.packer.MaybePackProbePacket(encLevel, s.version)
  1749. if err != nil {
  1750. return err
  1751. }
  1752. }
  1753. if packet == nil || (len(packet.longHdrPackets) == 0 && packet.shortHdrPacket == nil) {
  1754. return fmt.Errorf("connection BUG: couldn't pack %s probe packet", encLevel)
  1755. }
  1756. s.sendPackedCoalescedPacket(packet, time.Now())
  1757. return nil
  1758. }
  1759. func (s *connection) sendPacket() (bool, error) {
  1760. if isBlocked, offset := s.connFlowController.IsNewlyBlocked(); isBlocked {
  1761. s.framer.QueueControlFrame(&wire.DataBlockedFrame{MaximumData: offset})
  1762. }
  1763. s.windowUpdateQueue.QueueAll()
  1764. now := time.Now()
  1765. if !s.handshakeConfirmed {
  1766. packet, err := s.packer.PackCoalescedPacket(false, s.version)
  1767. if err != nil || packet == nil {
  1768. return false, err
  1769. }
  1770. s.sentFirstPacket = true
  1771. s.sendPackedCoalescedPacket(packet, now)
  1772. return true, nil
  1773. } else if !s.config.DisablePathMTUDiscovery && s.mtuDiscoverer.ShouldSendProbe(now) {
  1774. ping, size := s.mtuDiscoverer.GetPing()
  1775. p, buffer, err := s.packer.PackMTUProbePacket(ping, size, now, s.version)
  1776. if err != nil {
  1777. return false, err
  1778. }
  1779. s.logShortHeaderPacket(p.DestConnID, p.Ack, p.Frames, p.PacketNumber, p.PacketNumberLen, p.KeyPhase, buffer.Len(), false)
  1780. s.sendPackedShortHeaderPacket(buffer, p.Packet, now)
  1781. return true, nil
  1782. }
  1783. p, buffer, err := s.packer.PackPacket(false, now, s.version)
  1784. if err != nil {
  1785. if err == errNothingToPack {
  1786. return false, nil
  1787. }
  1788. return false, err
  1789. }
  1790. s.logShortHeaderPacket(p.DestConnID, p.Ack, p.Frames, p.PacketNumber, p.PacketNumberLen, p.KeyPhase, buffer.Len(), false)
  1791. s.sendPackedShortHeaderPacket(buffer, p.Packet, now)
  1792. return true, nil
  1793. }
  1794. func (s *connection) sendPackedShortHeaderPacket(buffer *packetBuffer, p *ackhandler.Packet, now time.Time) {
  1795. if s.firstAckElicitingPacketAfterIdleSentTime.IsZero() && ackhandler.HasAckElicitingFrames(p.Frames) {
  1796. s.firstAckElicitingPacketAfterIdleSentTime = now
  1797. }
  1798. s.sentPacketHandler.SentPacket(p)
  1799. s.connIDManager.SentPacket()
  1800. s.sendQueue.Send(buffer)
  1801. }
  1802. func (s *connection) sendPackedCoalescedPacket(packet *coalescedPacket, now time.Time) {
  1803. s.logCoalescedPacket(packet)
  1804. for _, p := range packet.longHdrPackets {
  1805. if s.firstAckElicitingPacketAfterIdleSentTime.IsZero() && p.IsAckEliciting() {
  1806. s.firstAckElicitingPacketAfterIdleSentTime = now
  1807. }
  1808. s.sentPacketHandler.SentPacket(p.ToAckHandlerPacket(now, s.retransmissionQueue))
  1809. }
  1810. if p := packet.shortHdrPacket; p != nil {
  1811. if s.firstAckElicitingPacketAfterIdleSentTime.IsZero() && p.IsAckEliciting() {
  1812. s.firstAckElicitingPacketAfterIdleSentTime = now
  1813. }
  1814. s.sentPacketHandler.SentPacket(p.Packet)
  1815. }
  1816. s.connIDManager.SentPacket()
  1817. s.sendQueue.Send(packet.buffer)
  1818. }
  1819. func (s *connection) sendConnectionClose(e error) ([]byte, error) {
  1820. var packet *coalescedPacket
  1821. var err error
  1822. var transportErr *qerr.TransportError
  1823. var applicationErr *qerr.ApplicationError
  1824. if errors.As(e, &transportErr) {
  1825. packet, err = s.packer.PackConnectionClose(transportErr, s.version)
  1826. } else if errors.As(e, &applicationErr) {
  1827. packet, err = s.packer.PackApplicationClose(applicationErr, s.version)
  1828. } else {
  1829. packet, err = s.packer.PackConnectionClose(&qerr.TransportError{
  1830. ErrorCode: qerr.InternalError,
  1831. ErrorMessage: fmt.Sprintf("connection BUG: unspecified error type (msg: %s)", e.Error()),
  1832. }, s.version)
  1833. }
  1834. if err != nil {
  1835. return nil, err
  1836. }
  1837. s.logCoalescedPacket(packet)
  1838. return packet.buffer.Data, s.conn.Write(packet.buffer.Data)
  1839. }
  1840. func (s *connection) logLongHeaderPacket(p *longHeaderPacket) {
  1841. // quic-go logging
  1842. if s.logger.Debug() {
  1843. p.header.Log(s.logger)
  1844. if p.ack != nil {
  1845. wire.LogFrame(s.logger, p.ack, true)
  1846. }
  1847. for _, frame := range p.frames {
  1848. wire.LogFrame(s.logger, frame.Frame, true)
  1849. }
  1850. }
  1851. // tracing
  1852. if s.tracer != nil {
  1853. frames := make([]logging.Frame, 0, len(p.frames))
  1854. for _, f := range p.frames {
  1855. frames = append(frames, logutils.ConvertFrame(f.Frame))
  1856. }
  1857. var ack *logging.AckFrame
  1858. if p.ack != nil {
  1859. ack = logutils.ConvertAckFrame(p.ack)
  1860. }
  1861. s.tracer.SentLongHeaderPacket(p.header, p.length, ack, frames)
  1862. }
  1863. }
  1864. func (s *connection) logShortHeaderPacket(
  1865. destConnID protocol.ConnectionID,
  1866. ackFrame *wire.AckFrame,
  1867. frames []*ackhandler.Frame,
  1868. pn protocol.PacketNumber,
  1869. pnLen protocol.PacketNumberLen,
  1870. kp protocol.KeyPhaseBit,
  1871. size protocol.ByteCount,
  1872. isCoalesced bool,
  1873. ) {
  1874. if s.logger.Debug() && !isCoalesced {
  1875. s.logger.Debugf("-> Sending packet %d (%d bytes) for connection %s, 1-RTT", pn, size, s.logID)
  1876. }
  1877. // quic-go logging
  1878. if s.logger.Debug() {
  1879. wire.LogShortHeader(s.logger, destConnID, pn, pnLen, kp)
  1880. if ackFrame != nil {
  1881. wire.LogFrame(s.logger, ackFrame, true)
  1882. }
  1883. for _, frame := range frames {
  1884. wire.LogFrame(s.logger, frame.Frame, true)
  1885. }
  1886. }
  1887. // tracing
  1888. if s.tracer != nil {
  1889. fs := make([]logging.Frame, 0, len(frames))
  1890. for _, f := range frames {
  1891. fs = append(fs, logutils.ConvertFrame(f.Frame))
  1892. }
  1893. var ack *logging.AckFrame
  1894. if ackFrame != nil {
  1895. ack = logutils.ConvertAckFrame(ackFrame)
  1896. }
  1897. s.tracer.SentShortHeaderPacket(
  1898. &logging.ShortHeader{
  1899. DestConnectionID: destConnID,
  1900. PacketNumber: pn,
  1901. PacketNumberLen: pnLen,
  1902. KeyPhase: kp,
  1903. },
  1904. size,
  1905. ack,
  1906. fs,
  1907. )
  1908. }
  1909. }
  1910. func (s *connection) logCoalescedPacket(packet *coalescedPacket) {
  1911. if s.logger.Debug() {
  1912. if len(packet.longHdrPackets) > 1 {
  1913. s.logger.Debugf("-> Sending coalesced packet (%d parts, %d bytes) for connection %s", len(packet.longHdrPackets), packet.buffer.Len(), s.logID)
  1914. } else {
  1915. s.logger.Debugf("-> Sending packet %d (%d bytes) for connection %s, %s", packet.longHdrPackets[0].header.PacketNumber, packet.buffer.Len(), s.logID, packet.longHdrPackets[0].EncryptionLevel())
  1916. }
  1917. }
  1918. for _, p := range packet.longHdrPackets {
  1919. s.logLongHeaderPacket(p)
  1920. }
  1921. if p := packet.shortHdrPacket; p != nil {
  1922. s.logShortHeaderPacket(p.DestConnID, p.Ack, p.Frames, p.PacketNumber, p.PacketNumberLen, p.KeyPhase, p.Length, true)
  1923. }
  1924. }
  1925. // AcceptStream returns the next stream openend by the peer
  1926. func (s *connection) AcceptStream(ctx context.Context) (Stream, error) {
  1927. return s.streamsMap.AcceptStream(ctx)
  1928. }
  1929. func (s *connection) AcceptUniStream(ctx context.Context) (ReceiveStream, error) {
  1930. return s.streamsMap.AcceptUniStream(ctx)
  1931. }
  1932. // OpenStream opens a stream
  1933. func (s *connection) OpenStream() (Stream, error) {
  1934. return s.streamsMap.OpenStream()
  1935. }
  1936. func (s *connection) OpenStreamSync(ctx context.Context) (Stream, error) {
  1937. return s.streamsMap.OpenStreamSync(ctx)
  1938. }
  1939. func (s *connection) OpenUniStream() (SendStream, error) {
  1940. return s.streamsMap.OpenUniStream()
  1941. }
  1942. func (s *connection) OpenUniStreamSync(ctx context.Context) (SendStream, error) {
  1943. return s.streamsMap.OpenUniStreamSync(ctx)
  1944. }
  1945. func (s *connection) newFlowController(id protocol.StreamID) flowcontrol.StreamFlowController {
  1946. initialSendWindow := s.peerParams.InitialMaxStreamDataUni
  1947. if id.Type() == protocol.StreamTypeBidi {
  1948. if id.InitiatedBy() == s.perspective {
  1949. initialSendWindow = s.peerParams.InitialMaxStreamDataBidiRemote
  1950. } else {
  1951. initialSendWindow = s.peerParams.InitialMaxStreamDataBidiLocal
  1952. }
  1953. }
  1954. return flowcontrol.NewStreamFlowController(
  1955. id,
  1956. s.connFlowController,
  1957. protocol.ByteCount(s.config.InitialStreamReceiveWindow),
  1958. protocol.ByteCount(s.config.MaxStreamReceiveWindow),
  1959. initialSendWindow,
  1960. s.onHasStreamWindowUpdate,
  1961. s.rttStats,
  1962. s.logger,
  1963. )
  1964. }
  1965. // scheduleSending signals that we have data for sending
  1966. func (s *connection) scheduleSending() {
  1967. select {
  1968. case s.sendingScheduled <- struct{}{}:
  1969. default:
  1970. }
  1971. }
  1972. // tryQueueingUndecryptablePacket queues a packet for which we're missing the decryption keys.
  1973. // The logging.PacketType is only used for logging purposes.
  1974. func (s *connection) tryQueueingUndecryptablePacket(p *receivedPacket, pt logging.PacketType) {
  1975. if s.handshakeComplete {
  1976. panic("shouldn't queue undecryptable packets after handshake completion")
  1977. }
  1978. if len(s.undecryptablePackets)+1 > protocol.MaxUndecryptablePackets {
  1979. if s.tracer != nil {
  1980. s.tracer.DroppedPacket(pt, p.Size(), logging.PacketDropDOSPrevention)
  1981. }
  1982. s.logger.Infof("Dropping undecryptable packet (%d bytes). Undecryptable packet queue full.", p.Size())
  1983. return
  1984. }
  1985. s.logger.Infof("Queueing packet (%d bytes) for later decryption", p.Size())
  1986. if s.tracer != nil {
  1987. s.tracer.BufferedPacket(pt, p.Size())
  1988. }
  1989. s.undecryptablePackets = append(s.undecryptablePackets, p)
  1990. }
  1991. func (s *connection) queueControlFrame(f wire.Frame) {
  1992. s.framer.QueueControlFrame(f)
  1993. s.scheduleSending()
  1994. }
  1995. func (s *connection) onHasStreamWindowUpdate(id protocol.StreamID) {
  1996. s.windowUpdateQueue.AddStream(id)
  1997. s.scheduleSending()
  1998. }
  1999. func (s *connection) onHasConnectionWindowUpdate() {
  2000. s.windowUpdateQueue.AddConnection()
  2001. s.scheduleSending()
  2002. }
  2003. func (s *connection) onHasStreamData(id protocol.StreamID) {
  2004. s.framer.AddActiveStream(id)
  2005. s.scheduleSending()
  2006. }
  2007. func (s *connection) onStreamCompleted(id protocol.StreamID) {
  2008. if err := s.streamsMap.DeleteStream(id); err != nil {
  2009. s.closeLocal(err)
  2010. }
  2011. }
  2012. func (s *connection) SendMessage(p []byte) error {
  2013. if !s.supportsDatagrams() {
  2014. return errors.New("datagram support disabled")
  2015. }
  2016. f := &wire.DatagramFrame{DataLenPresent: true}
  2017. if protocol.ByteCount(len(p)) > f.MaxDataLen(s.peerParams.MaxDatagramFrameSize, s.version) {
  2018. return errors.New("message too large")
  2019. }
  2020. f.Data = make([]byte, len(p))
  2021. copy(f.Data, p)
  2022. return s.datagramQueue.AddAndWait(f)
  2023. }
  2024. func (s *connection) ReceiveMessage() ([]byte, error) {
  2025. if !s.config.EnableDatagrams {
  2026. return nil, errors.New("datagram support disabled")
  2027. }
  2028. return s.datagramQueue.Receive()
  2029. }
  2030. func (s *connection) LocalAddr() net.Addr {
  2031. return s.conn.LocalAddr()
  2032. }
  2033. func (s *connection) RemoteAddr() net.Addr {
  2034. return s.conn.RemoteAddr()
  2035. }
  2036. func (s *connection) getPerspective() protocol.Perspective {
  2037. return s.perspective
  2038. }
  2039. func (s *connection) GetVersion() protocol.VersionNumber {
  2040. return s.version
  2041. }
  2042. func (s *connection) NextConnection() Connection {
  2043. <-s.HandshakeComplete().Done()
  2044. s.streamsMap.UseResetMaps()
  2045. return s
  2046. }