session.go 33 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. "time"
  13. "github.com/lucas-clemente/quic-go/internal/ackhandler"
  14. "github.com/lucas-clemente/quic-go/internal/congestion"
  15. "github.com/lucas-clemente/quic-go/internal/flowcontrol"
  16. "github.com/lucas-clemente/quic-go/internal/handshake"
  17. "github.com/lucas-clemente/quic-go/internal/protocol"
  18. "github.com/lucas-clemente/quic-go/internal/qerr"
  19. "github.com/lucas-clemente/quic-go/internal/utils"
  20. "github.com/lucas-clemente/quic-go/internal/wire"
  21. )
  22. type unpacker interface {
  23. Unpack(hdr *wire.Header, data []byte) (*unpackedPacket, error)
  24. }
  25. type streamGetter interface {
  26. GetOrOpenReceiveStream(protocol.StreamID) (receiveStreamI, error)
  27. GetOrOpenSendStream(protocol.StreamID) (sendStreamI, error)
  28. }
  29. type streamManager interface {
  30. GetOrOpenSendStream(protocol.StreamID) (sendStreamI, error)
  31. GetOrOpenReceiveStream(protocol.StreamID) (receiveStreamI, error)
  32. OpenStream() (Stream, error)
  33. OpenUniStream() (SendStream, error)
  34. OpenStreamSync() (Stream, error)
  35. OpenUniStreamSync() (SendStream, error)
  36. AcceptStream() (Stream, error)
  37. AcceptUniStream() (ReceiveStream, error)
  38. DeleteStream(protocol.StreamID) error
  39. UpdateLimits(*handshake.TransportParameters)
  40. HandleMaxStreamsFrame(*wire.MaxStreamsFrame) error
  41. CloseWithError(error)
  42. }
  43. type cryptoStreamHandler interface {
  44. RunHandshake() error
  45. io.Closer
  46. ConnectionState() handshake.ConnectionState
  47. }
  48. type receivedPacket struct {
  49. remoteAddr net.Addr
  50. hdr *wire.Header
  51. rcvTime time.Time
  52. data []byte
  53. buffer *packetBuffer
  54. }
  55. type closeError struct {
  56. err error
  57. remote bool
  58. sendClose bool
  59. }
  60. var errCloseForRecreating = errors.New("closing session in order to recreate it")
  61. // A Session is a QUIC session
  62. type session struct {
  63. sessionRunner sessionRunner
  64. destConnID protocol.ConnectionID
  65. srcConnID protocol.ConnectionID
  66. perspective protocol.Perspective
  67. version protocol.VersionNumber
  68. config *Config
  69. conn connection
  70. streamsMap streamManager
  71. rttStats *congestion.RTTStats
  72. cryptoStreamManager *cryptoStreamManager
  73. sentPacketHandler ackhandler.SentPacketHandler
  74. receivedPacketHandler ackhandler.ReceivedPacketHandler
  75. framer framer
  76. windowUpdateQueue *windowUpdateQueue
  77. connFlowController flowcontrol.ConnectionFlowController
  78. unpacker unpacker
  79. packer packer
  80. cryptoStreamHandler cryptoStreamHandler
  81. receivedPackets chan *receivedPacket
  82. sendingScheduled chan struct{}
  83. closeOnce sync.Once
  84. closed utils.AtomicBool
  85. // closeChan is used to notify the run loop that it should terminate
  86. closeChan chan closeError
  87. connectionClosePacket *packedPacket
  88. packetsReceivedAfterClose int
  89. ctx context.Context
  90. ctxCancel context.CancelFunc
  91. undecryptablePackets []*receivedPacket
  92. clientHelloWritten <-chan struct{}
  93. handshakeCompleteChan chan struct{} // is closed when the handshake completes
  94. handshakeComplete bool
  95. receivedFirstPacket bool
  96. receivedFirstForwardSecurePacket bool
  97. sessionCreationTime time.Time
  98. lastNetworkActivityTime time.Time
  99. // pacingDeadline is the time when the next packet should be sent
  100. pacingDeadline time.Time
  101. peerParams *handshake.TransportParameters
  102. timer *utils.Timer
  103. // keepAlivePingSent stores whether a Ping frame was sent to the peer or not
  104. // it is reset as soon as we receive a packet from the peer
  105. keepAlivePingSent bool
  106. logger utils.Logger
  107. }
  108. var _ Session = &session{}
  109. var _ streamSender = &session{}
  110. var newSession = func(
  111. conn connection,
  112. runner sessionRunner,
  113. clientDestConnID protocol.ConnectionID,
  114. destConnID protocol.ConnectionID,
  115. srcConnID protocol.ConnectionID,
  116. conf *Config,
  117. tlsConf *tls.Config,
  118. params *handshake.TransportParameters,
  119. logger utils.Logger,
  120. v protocol.VersionNumber,
  121. ) (quicSession, error) {
  122. s := &session{
  123. conn: conn,
  124. sessionRunner: runner,
  125. config: conf,
  126. srcConnID: srcConnID,
  127. destConnID: destConnID,
  128. perspective: protocol.PerspectiveServer,
  129. handshakeCompleteChan: make(chan struct{}),
  130. logger: logger,
  131. version: v,
  132. }
  133. s.preSetup()
  134. s.sentPacketHandler = ackhandler.NewSentPacketHandler(0, s.rttStats, s.logger)
  135. initialStream := newCryptoStream()
  136. handshakeStream := newCryptoStream()
  137. s.streamsMap = newStreamsMap(
  138. s,
  139. s.newFlowController,
  140. uint64(s.config.MaxIncomingStreams),
  141. uint64(s.config.MaxIncomingUniStreams),
  142. s.perspective,
  143. s.version,
  144. )
  145. s.framer = newFramer(s.streamsMap, s.version)
  146. cs, err := handshake.NewCryptoSetupServer(
  147. initialStream,
  148. handshakeStream,
  149. clientDestConnID,
  150. params,
  151. s.processTransportParameters,
  152. tlsConf,
  153. conf.Versions,
  154. v,
  155. logger,
  156. protocol.PerspectiveServer,
  157. )
  158. if err != nil {
  159. return nil, err
  160. }
  161. s.cryptoStreamHandler = cs
  162. s.packer = newPacketPacker(
  163. s.destConnID,
  164. s.srcConnID,
  165. initialStream,
  166. handshakeStream,
  167. s.sentPacketHandler,
  168. s.RemoteAddr(),
  169. nil, // no token
  170. cs,
  171. s.framer,
  172. s.receivedPacketHandler,
  173. s.perspective,
  174. s.version,
  175. )
  176. s.cryptoStreamManager = newCryptoStreamManager(cs, initialStream, handshakeStream)
  177. if err := s.postSetup(); err != nil {
  178. return nil, err
  179. }
  180. s.unpacker = newPacketUnpacker(cs, s.version)
  181. return s, nil
  182. }
  183. // declare this as a variable, such that we can it mock it in the tests
  184. var newClientSession = func(
  185. conn connection,
  186. runner sessionRunner,
  187. token []byte,
  188. origDestConnID protocol.ConnectionID,
  189. destConnID protocol.ConnectionID,
  190. srcConnID protocol.ConnectionID,
  191. conf *Config,
  192. tlsConf *tls.Config,
  193. initialPacketNumber protocol.PacketNumber,
  194. params *handshake.TransportParameters,
  195. initialVersion protocol.VersionNumber,
  196. logger utils.Logger,
  197. v protocol.VersionNumber,
  198. ) (quicSession, error) {
  199. s := &session{
  200. conn: conn,
  201. sessionRunner: runner,
  202. config: conf,
  203. srcConnID: srcConnID,
  204. destConnID: destConnID,
  205. perspective: protocol.PerspectiveClient,
  206. handshakeCompleteChan: make(chan struct{}),
  207. logger: logger,
  208. version: v,
  209. }
  210. s.preSetup()
  211. s.sentPacketHandler = ackhandler.NewSentPacketHandler(initialPacketNumber, s.rttStats, s.logger)
  212. initialStream := newCryptoStream()
  213. handshakeStream := newCryptoStream()
  214. cs, clientHelloWritten, err := handshake.NewCryptoSetupClient(
  215. initialStream,
  216. handshakeStream,
  217. origDestConnID,
  218. s.destConnID,
  219. params,
  220. s.processTransportParameters,
  221. tlsConf,
  222. initialVersion,
  223. conf.Versions,
  224. v,
  225. logger,
  226. protocol.PerspectiveClient,
  227. )
  228. if err != nil {
  229. return nil, err
  230. }
  231. s.clientHelloWritten = clientHelloWritten
  232. s.cryptoStreamHandler = cs
  233. s.cryptoStreamManager = newCryptoStreamManager(cs, initialStream, handshakeStream)
  234. s.unpacker = newPacketUnpacker(cs, s.version)
  235. s.streamsMap = newStreamsMap(
  236. s,
  237. s.newFlowController,
  238. uint64(s.config.MaxIncomingStreams),
  239. uint64(s.config.MaxIncomingUniStreams),
  240. s.perspective,
  241. s.version,
  242. )
  243. s.framer = newFramer(s.streamsMap, s.version)
  244. s.packer = newPacketPacker(
  245. s.destConnID,
  246. s.srcConnID,
  247. initialStream,
  248. handshakeStream,
  249. s.sentPacketHandler,
  250. s.RemoteAddr(),
  251. token,
  252. cs,
  253. s.framer,
  254. s.receivedPacketHandler,
  255. s.perspective,
  256. s.version,
  257. )
  258. return s, s.postSetup()
  259. }
  260. func (s *session) preSetup() {
  261. s.rttStats = &congestion.RTTStats{}
  262. s.receivedPacketHandler = ackhandler.NewReceivedPacketHandler(s.rttStats, s.logger, s.version)
  263. s.connFlowController = flowcontrol.NewConnectionFlowController(
  264. protocol.InitialMaxData,
  265. protocol.ByteCount(s.config.MaxReceiveConnectionFlowControlWindow),
  266. s.onHasConnectionWindowUpdate,
  267. s.rttStats,
  268. s.logger,
  269. )
  270. }
  271. func (s *session) postSetup() error {
  272. s.receivedPackets = make(chan *receivedPacket, protocol.MaxSessionUnprocessedPackets)
  273. s.closeChan = make(chan closeError, 1)
  274. s.sendingScheduled = make(chan struct{}, 1)
  275. s.undecryptablePackets = make([]*receivedPacket, 0, protocol.MaxUndecryptablePackets)
  276. s.ctx, s.ctxCancel = context.WithCancel(context.Background())
  277. s.timer = utils.NewTimer()
  278. now := time.Now()
  279. s.lastNetworkActivityTime = now
  280. s.sessionCreationTime = now
  281. s.windowUpdateQueue = newWindowUpdateQueue(s.streamsMap, s.connFlowController, s.framer.QueueControlFrame)
  282. return nil
  283. }
  284. // run the session main loop
  285. func (s *session) run() error {
  286. defer s.ctxCancel()
  287. go func() {
  288. if err := s.cryptoStreamHandler.RunHandshake(); err != nil {
  289. s.closeLocal(err)
  290. return
  291. }
  292. close(s.handshakeCompleteChan)
  293. }()
  294. if s.perspective == protocol.PerspectiveClient {
  295. select {
  296. case <-s.clientHelloWritten:
  297. s.scheduleSending()
  298. case closeErr := <-s.closeChan:
  299. // put the close error back into the channel, so that the run loop can receive it
  300. s.closeChan <- closeErr
  301. }
  302. }
  303. var closeErr closeError
  304. runLoop:
  305. for {
  306. // Close immediately if requested
  307. select {
  308. case closeErr = <-s.closeChan:
  309. break runLoop
  310. case <-s.handshakeCompleteChan:
  311. s.handleHandshakeComplete()
  312. default:
  313. }
  314. s.maybeResetTimer()
  315. select {
  316. case closeErr = <-s.closeChan:
  317. break runLoop
  318. case <-s.timer.Chan():
  319. s.timer.SetRead()
  320. // We do all the interesting stuff after the switch statement, so
  321. // nothing to see here.
  322. case <-s.sendingScheduled:
  323. // We do all the interesting stuff after the switch statement, so
  324. // nothing to see here.
  325. case p := <-s.receivedPackets:
  326. // Only reset the timers if this packet was actually processed.
  327. // This avoids modifying any state when handling undecryptable packets,
  328. // which could be injected by an attacker.
  329. if wasProcessed := s.handlePacketImpl(p); !wasProcessed {
  330. continue
  331. }
  332. case <-s.handshakeCompleteChan:
  333. s.handleHandshakeComplete()
  334. }
  335. now := time.Now()
  336. if timeout := s.sentPacketHandler.GetAlarmTimeout(); !timeout.IsZero() && timeout.Before(now) {
  337. // This could cause packets to be retransmitted.
  338. // Check it before trying to send packets.
  339. if err := s.sentPacketHandler.OnAlarm(); err != nil {
  340. s.closeLocal(err)
  341. }
  342. }
  343. var pacingDeadline time.Time
  344. if s.pacingDeadline.IsZero() { // the timer didn't have a pacing deadline set
  345. pacingDeadline = s.sentPacketHandler.TimeUntilSend()
  346. }
  347. if s.config.KeepAlive && !s.keepAlivePingSent && s.handshakeComplete && time.Since(s.lastNetworkActivityTime) >= s.peerParams.IdleTimeout/2 {
  348. // send a PING frame since there is no activity in the session
  349. s.logger.Debugf("Sending a keep-alive ping to keep the connection alive.")
  350. s.framer.QueueControlFrame(&wire.PingFrame{})
  351. s.keepAlivePingSent = true
  352. } else if !pacingDeadline.IsZero() && now.Before(pacingDeadline) {
  353. // If we get to this point before the pacing deadline, we should wait until that deadline.
  354. // This can happen when scheduleSending is called, or a packet is received.
  355. // Set the timer and restart the run loop.
  356. s.pacingDeadline = pacingDeadline
  357. continue
  358. }
  359. if !s.handshakeComplete && now.Sub(s.sessionCreationTime) >= s.config.HandshakeTimeout {
  360. s.closeLocal(qerr.Error(qerr.HandshakeTimeout, "Crypto handshake did not complete in time."))
  361. continue
  362. }
  363. if s.handshakeComplete && now.Sub(s.lastNetworkActivityTime) >= s.config.IdleTimeout {
  364. s.closeLocal(qerr.Error(qerr.NetworkIdleTimeout, "No recent network activity."))
  365. continue
  366. }
  367. if err := s.sendPackets(); err != nil {
  368. s.closeLocal(err)
  369. }
  370. }
  371. if err := s.handleCloseError(closeErr); err != nil {
  372. s.logger.Infof("Handling close error failed: %s", err)
  373. }
  374. s.closed.Set(true)
  375. s.logger.Infof("Connection %s closed.", s.srcConnID)
  376. s.cryptoStreamHandler.Close()
  377. return closeErr.err
  378. }
  379. func (s *session) Context() context.Context {
  380. return s.ctx
  381. }
  382. func (s *session) ConnectionState() ConnectionState {
  383. return s.cryptoStreamHandler.ConnectionState()
  384. }
  385. func (s *session) maybeResetTimer() {
  386. var deadline time.Time
  387. if s.config.KeepAlive && s.handshakeComplete && !s.keepAlivePingSent {
  388. deadline = s.lastNetworkActivityTime.Add(s.peerParams.IdleTimeout / 2)
  389. } else {
  390. deadline = s.lastNetworkActivityTime.Add(s.config.IdleTimeout)
  391. }
  392. if ackAlarm := s.receivedPacketHandler.GetAlarmTimeout(); !ackAlarm.IsZero() {
  393. deadline = utils.MinTime(deadline, ackAlarm)
  394. }
  395. if lossTime := s.sentPacketHandler.GetAlarmTimeout(); !lossTime.IsZero() {
  396. deadline = utils.MinTime(deadline, lossTime)
  397. }
  398. if !s.handshakeComplete {
  399. handshakeDeadline := s.sessionCreationTime.Add(s.config.HandshakeTimeout)
  400. deadline = utils.MinTime(deadline, handshakeDeadline)
  401. }
  402. if !s.pacingDeadline.IsZero() {
  403. deadline = utils.MinTime(deadline, s.pacingDeadline)
  404. }
  405. s.timer.Reset(deadline)
  406. }
  407. func (s *session) handleHandshakeComplete() {
  408. s.handshakeComplete = true
  409. s.handshakeCompleteChan = nil // prevent this case from ever being selected again
  410. s.sessionRunner.onHandshakeComplete(s)
  411. // The client completes the handshake first (after sending the CFIN).
  412. // We need to make sure they learn about the peer completing the handshake,
  413. // in order to stop retransmitting handshake packets.
  414. // They will stop retransmitting handshake packets when receiving the first forward-secure packet.
  415. // We need to make sure that a retransmittable forward-secure packet is sent,
  416. // independent from the application protocol.
  417. if s.perspective == protocol.PerspectiveServer {
  418. s.queueControlFrame(&wire.PingFrame{})
  419. s.sentPacketHandler.SetHandshakeComplete()
  420. }
  421. }
  422. func (s *session) handlePacketImpl(p *receivedPacket) bool /* was the packet successfully processed */ {
  423. var wasQueued bool
  424. defer func() {
  425. // Put back the packet buffer if the packet wasn't queued for later decryption.
  426. if !wasQueued {
  427. p.buffer.Release()
  428. }
  429. }()
  430. // The server can change the source connection ID with the first Handshake packet.
  431. // After this, all packets with a different source connection have to be ignored.
  432. if s.receivedFirstPacket && p.hdr.IsLongHeader && !p.hdr.SrcConnectionID.Equal(s.destConnID) {
  433. s.logger.Debugf("Dropping packet with unexpected source connection ID: %s (expected %s)", p.hdr.SrcConnectionID, s.destConnID)
  434. return false
  435. }
  436. // drop 0-RTT packets
  437. if p.hdr.Type == protocol.PacketType0RTT {
  438. return false
  439. }
  440. packet, err := s.unpacker.Unpack(p.hdr, p.data)
  441. if err != nil {
  442. if err == handshake.ErrOpenerNotYetAvailable {
  443. // Sealer for this encryption level not yet available.
  444. // Try again later.
  445. wasQueued = true
  446. s.tryQueueingUndecryptablePacket(p)
  447. return false
  448. }
  449. // This might be a packet injected by an attacker.
  450. // Drop it.
  451. s.logger.Debugf("Dropping packet that could not be unpacked. Unpack error: %s", err)
  452. return false
  453. }
  454. if s.logger.Debug() {
  455. s.logger.Debugf("<- Reading packet %#x (%d bytes) for connection %s, %s", packet.packetNumber, len(p.data), p.hdr.DestConnectionID, packet.encryptionLevel)
  456. packet.hdr.Log(s.logger)
  457. }
  458. if err := s.handleUnpackedPacket(packet, p.rcvTime); err != nil {
  459. s.closeLocal(err)
  460. return false
  461. }
  462. return true
  463. }
  464. func (s *session) handleUnpackedPacket(packet *unpackedPacket, rcvTime time.Time) error {
  465. if len(packet.data) == 0 {
  466. return qerr.MissingPayload
  467. }
  468. // The server can change the source connection ID with the first Handshake packet.
  469. if s.perspective == protocol.PerspectiveClient && !s.receivedFirstPacket && packet.hdr.IsLongHeader && !packet.hdr.SrcConnectionID.Equal(s.destConnID) {
  470. s.logger.Debugf("Received first packet. Switching destination connection ID to: %s", packet.hdr.SrcConnectionID)
  471. s.destConnID = packet.hdr.SrcConnectionID
  472. s.packer.ChangeDestConnectionID(s.destConnID)
  473. }
  474. s.receivedFirstPacket = true
  475. s.lastNetworkActivityTime = rcvTime
  476. s.keepAlivePingSent = false
  477. // The client completes the handshake first (after sending the CFIN).
  478. // We know that the server completed the handshake as soon as we receive a forward-secure packet.
  479. if s.perspective == protocol.PerspectiveClient {
  480. if !s.receivedFirstForwardSecurePacket && packet.encryptionLevel == protocol.Encryption1RTT {
  481. s.receivedFirstForwardSecurePacket = true
  482. s.sentPacketHandler.SetHandshakeComplete()
  483. }
  484. }
  485. r := bytes.NewReader(packet.data)
  486. var isRetransmittable bool
  487. for {
  488. frame, err := wire.ParseNextFrame(r, s.version)
  489. if err != nil {
  490. return err
  491. }
  492. if frame == nil {
  493. break
  494. }
  495. if ackhandler.IsFrameRetransmittable(frame) {
  496. isRetransmittable = true
  497. }
  498. if err := s.handleFrame(frame, packet.packetNumber, packet.encryptionLevel); err != nil {
  499. return err
  500. }
  501. }
  502. if err := s.receivedPacketHandler.ReceivedPacket(packet.packetNumber, rcvTime, isRetransmittable); err != nil {
  503. return err
  504. }
  505. return nil
  506. }
  507. func (s *session) handleFrame(f wire.Frame, pn protocol.PacketNumber, encLevel protocol.EncryptionLevel) error {
  508. var err error
  509. wire.LogFrame(s.logger, f, false)
  510. switch frame := f.(type) {
  511. case *wire.CryptoFrame:
  512. err = s.handleCryptoFrame(frame, encLevel)
  513. case *wire.StreamFrame:
  514. err = s.handleStreamFrame(frame, encLevel)
  515. case *wire.AckFrame:
  516. err = s.handleAckFrame(frame, pn, encLevel)
  517. case *wire.ConnectionCloseFrame:
  518. s.closeRemote(qerr.Error(frame.ErrorCode, frame.ReasonPhrase))
  519. case *wire.ResetStreamFrame:
  520. err = s.handleResetStreamFrame(frame)
  521. case *wire.MaxDataFrame:
  522. s.handleMaxDataFrame(frame)
  523. case *wire.MaxStreamDataFrame:
  524. err = s.handleMaxStreamDataFrame(frame)
  525. case *wire.MaxStreamsFrame:
  526. err = s.handleMaxStreamsFrame(frame)
  527. case *wire.DataBlockedFrame:
  528. case *wire.StreamDataBlockedFrame:
  529. case *wire.StreamsBlockedFrame:
  530. case *wire.StopSendingFrame:
  531. err = s.handleStopSendingFrame(frame)
  532. case *wire.PingFrame:
  533. case *wire.PathChallengeFrame:
  534. s.handlePathChallengeFrame(frame)
  535. case *wire.PathResponseFrame:
  536. // since we don't send PATH_CHALLENGEs, we don't expect PATH_RESPONSEs
  537. err = errors.New("unexpected PATH_RESPONSE frame")
  538. case *wire.NewTokenFrame:
  539. case *wire.NewConnectionIDFrame:
  540. case *wire.RetireConnectionIDFrame:
  541. // since we don't send new connection IDs, we don't expect retirements
  542. err = errors.New("unexpected RETIRE_CONNECTION_ID frame")
  543. default:
  544. err = fmt.Errorf("unexpected frame type: %s", reflect.ValueOf(&frame).Elem().Type().Name())
  545. }
  546. return err
  547. }
  548. // handlePacket is called by the server with a new packet
  549. func (s *session) handlePacket(p *receivedPacket) {
  550. if s.closed.Get() {
  551. s.handlePacketAfterClosed(p)
  552. }
  553. // Discard packets once the amount of queued packets is larger than
  554. // the channel size, protocol.MaxSessionUnprocessedPackets
  555. select {
  556. case s.receivedPackets <- p:
  557. default:
  558. }
  559. }
  560. func (s *session) handlePacketAfterClosed(p *receivedPacket) {
  561. s.packetsReceivedAfterClose++
  562. if s.connectionClosePacket == nil {
  563. return
  564. }
  565. // exponential backoff
  566. // only send a CONNECTION_CLOSE for the 1st, 2nd, 4th, 8th, 16th, ... packet arriving
  567. for n := s.packetsReceivedAfterClose; n > 1; n = n / 2 {
  568. if n%2 != 0 {
  569. return
  570. }
  571. }
  572. s.logger.Debugf("Received %d packets after sending CONNECTION_CLOSE. Retransmitting.", s.packetsReceivedAfterClose)
  573. if err := s.conn.Write(s.connectionClosePacket.raw); err != nil {
  574. s.logger.Debugf("Error retransmitting CONNECTION_CLOSE: %s", err)
  575. }
  576. }
  577. func (s *session) handleCryptoFrame(frame *wire.CryptoFrame, encLevel protocol.EncryptionLevel) error {
  578. encLevelChanged, err := s.cryptoStreamManager.HandleCryptoFrame(frame, encLevel)
  579. if err != nil {
  580. return err
  581. }
  582. if encLevelChanged {
  583. s.tryDecryptingQueuedPackets()
  584. }
  585. return nil
  586. }
  587. func (s *session) handleStreamFrame(frame *wire.StreamFrame, encLevel protocol.EncryptionLevel) error {
  588. if encLevel < protocol.Encryption1RTT {
  589. return qerr.Error(qerr.UnencryptedStreamData, fmt.Sprintf("received unencrypted stream data on stream %d", frame.StreamID))
  590. }
  591. str, err := s.streamsMap.GetOrOpenReceiveStream(frame.StreamID)
  592. if err != nil {
  593. return err
  594. }
  595. if str == nil {
  596. // Stream is closed and already garbage collected
  597. // ignore this StreamFrame
  598. return nil
  599. }
  600. return str.handleStreamFrame(frame)
  601. }
  602. func (s *session) handleMaxDataFrame(frame *wire.MaxDataFrame) {
  603. s.connFlowController.UpdateSendWindow(frame.ByteOffset)
  604. }
  605. func (s *session) handleMaxStreamDataFrame(frame *wire.MaxStreamDataFrame) error {
  606. str, err := s.streamsMap.GetOrOpenSendStream(frame.StreamID)
  607. if err != nil {
  608. return err
  609. }
  610. if str == nil {
  611. // stream is closed and already garbage collected
  612. return nil
  613. }
  614. str.handleMaxStreamDataFrame(frame)
  615. return nil
  616. }
  617. func (s *session) handleMaxStreamsFrame(frame *wire.MaxStreamsFrame) error {
  618. return s.streamsMap.HandleMaxStreamsFrame(frame)
  619. }
  620. func (s *session) handleResetStreamFrame(frame *wire.ResetStreamFrame) error {
  621. str, err := s.streamsMap.GetOrOpenReceiveStream(frame.StreamID)
  622. if err != nil {
  623. return err
  624. }
  625. if str == nil {
  626. // stream is closed and already garbage collected
  627. return nil
  628. }
  629. return str.handleResetStreamFrame(frame)
  630. }
  631. func (s *session) handleStopSendingFrame(frame *wire.StopSendingFrame) error {
  632. str, err := s.streamsMap.GetOrOpenSendStream(frame.StreamID)
  633. if err != nil {
  634. return err
  635. }
  636. if str == nil {
  637. // stream is closed and already garbage collected
  638. return nil
  639. }
  640. str.handleStopSendingFrame(frame)
  641. return nil
  642. }
  643. func (s *session) handlePathChallengeFrame(frame *wire.PathChallengeFrame) {
  644. s.queueControlFrame(&wire.PathResponseFrame{Data: frame.Data})
  645. }
  646. func (s *session) handleAckFrame(frame *wire.AckFrame, pn protocol.PacketNumber, encLevel protocol.EncryptionLevel) error {
  647. if err := s.sentPacketHandler.ReceivedAck(frame, pn, encLevel, s.lastNetworkActivityTime); err != nil {
  648. return err
  649. }
  650. s.receivedPacketHandler.IgnoreBelow(s.sentPacketHandler.GetLowestPacketNotConfirmedAcked())
  651. return nil
  652. }
  653. // closeLocal closes the session and send a CONNECTION_CLOSE containing the error
  654. func (s *session) closeLocal(e error) {
  655. s.closeOnce.Do(func() {
  656. s.sessionRunner.retireConnectionID(s.srcConnID)
  657. s.closeChan <- closeError{err: e, sendClose: true, remote: false}
  658. })
  659. }
  660. // destroy closes the session without sending the error on the wire
  661. func (s *session) destroy(e error) {
  662. s.closeOnce.Do(func() {
  663. s.sessionRunner.removeConnectionID(s.srcConnID)
  664. s.closeChan <- closeError{err: e, sendClose: false, remote: false}
  665. })
  666. }
  667. // closeForRecreating closes the session in order to recreate it immediately afterwards
  668. // It returns the first packet number that should be used in the new session.
  669. func (s *session) closeForRecreating() protocol.PacketNumber {
  670. s.destroy(errCloseForRecreating)
  671. nextPN, _ := s.sentPacketHandler.PeekPacketNumber()
  672. return nextPN
  673. }
  674. func (s *session) closeRemote(e error) {
  675. s.closeOnce.Do(func() {
  676. s.sessionRunner.removeConnectionID(s.srcConnID)
  677. s.closeChan <- closeError{err: e, remote: true}
  678. })
  679. }
  680. // Close the connection. It sends a qerr.PeerGoingAway.
  681. // It waits until the run loop has stopped before returning
  682. func (s *session) Close() error {
  683. s.closeLocal(nil)
  684. <-s.ctx.Done()
  685. return nil
  686. }
  687. func (s *session) CloseWithError(code protocol.ApplicationErrorCode, e error) error {
  688. s.closeLocal(qerr.Error(qerr.ErrorCode(code), e.Error()))
  689. <-s.ctx.Done()
  690. return nil
  691. }
  692. func (s *session) handleCloseError(closeErr closeError) error {
  693. if closeErr.err == nil {
  694. closeErr.err = qerr.PeerGoingAway
  695. }
  696. var quicErr *qerr.QuicError
  697. var ok bool
  698. if quicErr, ok = closeErr.err.(*qerr.QuicError); !ok {
  699. quicErr = qerr.ToQuicError(closeErr.err)
  700. }
  701. // Don't log 'normal' reasons
  702. if quicErr.ErrorCode == qerr.PeerGoingAway || quicErr.ErrorCode == qerr.NetworkIdleTimeout {
  703. s.logger.Infof("Closing connection %s.", s.srcConnID)
  704. } else {
  705. s.logger.Errorf("Closing session with error: %s", closeErr.err.Error())
  706. }
  707. s.streamsMap.CloseWithError(quicErr)
  708. if !closeErr.sendClose {
  709. return nil
  710. }
  711. // If this is a remote close we're done here
  712. if closeErr.remote {
  713. return nil
  714. }
  715. // otherwise send a CONNECTION_CLOSE
  716. return s.sendConnectionClose(quicErr)
  717. }
  718. func (s *session) processTransportParameters(params *handshake.TransportParameters) {
  719. s.peerParams = params
  720. s.streamsMap.UpdateLimits(params)
  721. s.packer.HandleTransportParameters(params)
  722. s.connFlowController.UpdateSendWindow(params.InitialMaxData)
  723. // the crypto stream is the only open stream at this moment
  724. // so we don't need to update stream flow control windows
  725. }
  726. func (s *session) sendPackets() error {
  727. s.pacingDeadline = time.Time{}
  728. sendMode := s.sentPacketHandler.SendMode()
  729. if sendMode == ackhandler.SendNone { // shortcut: return immediately if there's nothing to send
  730. return nil
  731. }
  732. numPackets := s.sentPacketHandler.ShouldSendNumPackets()
  733. var numPacketsSent int
  734. sendLoop:
  735. for {
  736. switch sendMode {
  737. case ackhandler.SendNone:
  738. break sendLoop
  739. case ackhandler.SendAck:
  740. // If we already sent packets, and the send mode switches to SendAck,
  741. // we've just become congestion limited.
  742. // There's no need to try to send an ACK at this moment.
  743. if numPacketsSent > 0 {
  744. return nil
  745. }
  746. // We can at most send a single ACK only packet.
  747. // There will only be a new ACK after receiving new packets.
  748. // SendAck is only returned when we're congestion limited, so we don't need to set the pacingt timer.
  749. return s.maybeSendAckOnlyPacket()
  750. case ackhandler.SendPTO:
  751. if err := s.sendProbePacket(); err != nil {
  752. return err
  753. }
  754. numPacketsSent++
  755. case ackhandler.SendRetransmission:
  756. sentPacket, err := s.maybeSendRetransmission()
  757. if err != nil {
  758. return err
  759. }
  760. if sentPacket {
  761. numPacketsSent++
  762. // This can happen if a retransmission queued, but it wasn't necessary to send it.
  763. // e.g. when an Initial is queued, but we already received a packet from the server.
  764. }
  765. case ackhandler.SendAny:
  766. sentPacket, err := s.sendPacket()
  767. if err != nil {
  768. return err
  769. }
  770. if !sentPacket {
  771. break sendLoop
  772. }
  773. numPacketsSent++
  774. default:
  775. return fmt.Errorf("BUG: invalid send mode %d", sendMode)
  776. }
  777. if numPacketsSent >= numPackets {
  778. break
  779. }
  780. sendMode = s.sentPacketHandler.SendMode()
  781. }
  782. // Only start the pacing timer if we sent as many packets as we were allowed.
  783. // There will probably be more to send when calling sendPacket again.
  784. if numPacketsSent == numPackets {
  785. s.pacingDeadline = s.sentPacketHandler.TimeUntilSend()
  786. }
  787. return nil
  788. }
  789. func (s *session) maybeSendAckOnlyPacket() error {
  790. packet, err := s.packer.MaybePackAckPacket()
  791. if err != nil {
  792. return err
  793. }
  794. if packet == nil {
  795. return nil
  796. }
  797. s.sentPacketHandler.SentPacket(packet.ToAckHandlerPacket())
  798. return s.sendPackedPacket(packet)
  799. }
  800. // maybeSendRetransmission sends retransmissions for at most one packet.
  801. // It takes care that Initials aren't retransmitted, if a packet from the server was already received.
  802. func (s *session) maybeSendRetransmission() (bool, error) {
  803. var retransmitPacket *ackhandler.Packet
  804. for {
  805. retransmitPacket = s.sentPacketHandler.DequeuePacketForRetransmission()
  806. if retransmitPacket == nil {
  807. return false, nil
  808. }
  809. // Don't retransmit Initial packets if we already received a response.
  810. // An Initial might have been retransmitted multiple times before we receive a response.
  811. // As soon as we receive one response, we don't need to send any more Initials.
  812. if s.perspective == protocol.PerspectiveClient && s.receivedFirstPacket && retransmitPacket.PacketType == protocol.PacketTypeInitial {
  813. s.logger.Debugf("Skipping retransmission of packet %d. Already received a response to an Initial.", retransmitPacket.PacketNumber)
  814. continue
  815. }
  816. break
  817. }
  818. s.logger.Debugf("Dequeueing retransmission for packet 0x%x", retransmitPacket.PacketNumber)
  819. packets, err := s.packer.PackRetransmission(retransmitPacket)
  820. if err != nil {
  821. return false, err
  822. }
  823. ackhandlerPackets := make([]*ackhandler.Packet, len(packets))
  824. for i, packet := range packets {
  825. ackhandlerPackets[i] = packet.ToAckHandlerPacket()
  826. }
  827. s.sentPacketHandler.SentPacketsAsRetransmission(ackhandlerPackets, retransmitPacket.PacketNumber)
  828. for _, packet := range packets {
  829. if err := s.sendPackedPacket(packet); err != nil {
  830. return false, err
  831. }
  832. }
  833. return true, nil
  834. }
  835. func (s *session) sendProbePacket() error {
  836. p, err := s.sentPacketHandler.DequeueProbePacket()
  837. if err != nil {
  838. return err
  839. }
  840. s.logger.Debugf("Sending a retransmission for %#x as a probe packet.", p.PacketNumber)
  841. packets, err := s.packer.PackRetransmission(p)
  842. if err != nil {
  843. return err
  844. }
  845. ackhandlerPackets := make([]*ackhandler.Packet, len(packets))
  846. for i, packet := range packets {
  847. ackhandlerPackets[i] = packet.ToAckHandlerPacket()
  848. }
  849. s.sentPacketHandler.SentPacketsAsRetransmission(ackhandlerPackets, p.PacketNumber)
  850. for _, packet := range packets {
  851. if err := s.sendPackedPacket(packet); err != nil {
  852. return err
  853. }
  854. }
  855. return nil
  856. }
  857. func (s *session) sendPacket() (bool, error) {
  858. if isBlocked, offset := s.connFlowController.IsNewlyBlocked(); isBlocked {
  859. s.framer.QueueControlFrame(&wire.DataBlockedFrame{DataLimit: offset})
  860. }
  861. s.windowUpdateQueue.QueueAll()
  862. packet, err := s.packer.PackPacket()
  863. if err != nil || packet == nil {
  864. return false, err
  865. }
  866. s.sentPacketHandler.SentPacket(packet.ToAckHandlerPacket())
  867. if err := s.sendPackedPacket(packet); err != nil {
  868. return false, err
  869. }
  870. return true, nil
  871. }
  872. func (s *session) sendPackedPacket(packet *packedPacket) error {
  873. defer packet.buffer.Release()
  874. s.logPacket(packet)
  875. return s.conn.Write(packet.raw)
  876. }
  877. func (s *session) sendConnectionClose(quicErr *qerr.QuicError) error {
  878. packet, err := s.packer.PackConnectionClose(&wire.ConnectionCloseFrame{
  879. ErrorCode: quicErr.ErrorCode,
  880. ReasonPhrase: quicErr.ErrorMessage,
  881. })
  882. if err != nil {
  883. return err
  884. }
  885. s.connectionClosePacket = packet
  886. s.logPacket(packet)
  887. return s.conn.Write(packet.raw)
  888. }
  889. func (s *session) logPacket(packet *packedPacket) {
  890. if !s.logger.Debug() {
  891. // We don't need to allocate the slices for calling the format functions
  892. return
  893. }
  894. s.logger.Debugf("-> Sending packet 0x%x (%d bytes) for connection %s, %s", packet.header.PacketNumber, len(packet.raw), s.srcConnID, packet.EncryptionLevel())
  895. packet.header.Log(s.logger)
  896. for _, frame := range packet.frames {
  897. wire.LogFrame(s.logger, frame, true)
  898. }
  899. }
  900. // GetOrOpenStream either returns an existing stream, a newly opened stream, or nil if a stream with the provided ID is already closed.
  901. // It is *only* needed for gQUIC's H2.
  902. // It will be removed as soon as gQUIC moves towards the IETF H2/QUIC stream mapping.
  903. func (s *session) GetOrOpenStream(id protocol.StreamID) (Stream, error) {
  904. str, err := s.streamsMap.GetOrOpenSendStream(id)
  905. if str != nil {
  906. if bstr, ok := str.(Stream); ok {
  907. return bstr, err
  908. }
  909. return nil, fmt.Errorf("Stream %d is not a bidirectional stream", id)
  910. }
  911. // make sure to return an actual nil value here, not an Stream with value nil
  912. return nil, err
  913. }
  914. // AcceptStream returns the next stream openend by the peer
  915. func (s *session) AcceptStream() (Stream, error) {
  916. return s.streamsMap.AcceptStream()
  917. }
  918. func (s *session) AcceptUniStream() (ReceiveStream, error) {
  919. return s.streamsMap.AcceptUniStream()
  920. }
  921. // OpenStream opens a stream
  922. func (s *session) OpenStream() (Stream, error) {
  923. return s.streamsMap.OpenStream()
  924. }
  925. func (s *session) OpenStreamSync() (Stream, error) {
  926. return s.streamsMap.OpenStreamSync()
  927. }
  928. func (s *session) OpenUniStream() (SendStream, error) {
  929. return s.streamsMap.OpenUniStream()
  930. }
  931. func (s *session) OpenUniStreamSync() (SendStream, error) {
  932. return s.streamsMap.OpenUniStreamSync()
  933. }
  934. func (s *session) newStream(id protocol.StreamID) streamI {
  935. flowController := s.newFlowController(id)
  936. return newStream(id, s, flowController, s.version)
  937. }
  938. func (s *session) newFlowController(id protocol.StreamID) flowcontrol.StreamFlowController {
  939. var initialSendWindow protocol.ByteCount
  940. if s.peerParams != nil {
  941. if id.Type() == protocol.StreamTypeUni {
  942. initialSendWindow = s.peerParams.InitialMaxStreamDataUni
  943. } else {
  944. if id.InitiatedBy() == s.perspective {
  945. initialSendWindow = s.peerParams.InitialMaxStreamDataBidiLocal
  946. } else {
  947. initialSendWindow = s.peerParams.InitialMaxStreamDataBidiRemote
  948. }
  949. }
  950. }
  951. return flowcontrol.NewStreamFlowController(
  952. id,
  953. s.connFlowController,
  954. protocol.InitialMaxStreamData,
  955. protocol.ByteCount(s.config.MaxReceiveStreamFlowControlWindow),
  956. initialSendWindow,
  957. s.onHasStreamWindowUpdate,
  958. s.rttStats,
  959. s.logger,
  960. )
  961. }
  962. // scheduleSending signals that we have data for sending
  963. func (s *session) scheduleSending() {
  964. select {
  965. case s.sendingScheduled <- struct{}{}:
  966. default:
  967. }
  968. }
  969. func (s *session) tryQueueingUndecryptablePacket(p *receivedPacket) {
  970. if s.handshakeComplete {
  971. s.logger.Debugf("Received undecryptable packet from %s after the handshake (%d bytes)", p.remoteAddr.String(), len(p.data))
  972. return
  973. }
  974. if len(s.undecryptablePackets)+1 > protocol.MaxUndecryptablePackets {
  975. s.logger.Infof("Dropping undecrytable packet (%d bytes). Undecryptable packet queue full.", len(p.data))
  976. return
  977. }
  978. s.logger.Infof("Queueing packet (%d bytes) for later decryption", len(p.data))
  979. s.undecryptablePackets = append(s.undecryptablePackets, p)
  980. }
  981. func (s *session) tryDecryptingQueuedPackets() {
  982. for _, p := range s.undecryptablePackets {
  983. s.handlePacket(p)
  984. }
  985. s.undecryptablePackets = s.undecryptablePackets[:0]
  986. }
  987. func (s *session) queueControlFrame(f wire.Frame) {
  988. s.framer.QueueControlFrame(f)
  989. s.scheduleSending()
  990. }
  991. func (s *session) onHasStreamWindowUpdate(id protocol.StreamID) {
  992. s.windowUpdateQueue.AddStream(id)
  993. s.scheduleSending()
  994. }
  995. func (s *session) onHasConnectionWindowUpdate() {
  996. s.windowUpdateQueue.AddConnection()
  997. s.scheduleSending()
  998. }
  999. func (s *session) onHasStreamData(id protocol.StreamID) {
  1000. s.framer.AddActiveStream(id)
  1001. s.scheduleSending()
  1002. }
  1003. func (s *session) onStreamCompleted(id protocol.StreamID) {
  1004. if err := s.streamsMap.DeleteStream(id); err != nil {
  1005. s.closeLocal(err)
  1006. }
  1007. }
  1008. func (s *session) LocalAddr() net.Addr {
  1009. return s.conn.LocalAddr()
  1010. }
  1011. func (s *session) RemoteAddr() net.Addr {
  1012. return s.conn.RemoteAddr()
  1013. }
  1014. func (s *session) GetVersion() protocol.VersionNumber {
  1015. return s.version
  1016. }