session.go 13 KB

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  1. package yamux
  2. import (
  3. "bufio"
  4. "fmt"
  5. "io"
  6. "io/ioutil"
  7. "log"
  8. "math"
  9. "net"
  10. "strings"
  11. "sync"
  12. "sync/atomic"
  13. "time"
  14. )
  15. // Session is used to wrap a reliable ordered connection and to
  16. // multiplex it into multiple streams.
  17. type Session struct {
  18. // remoteGoAway indicates the remote side does
  19. // not want futher connections. Must be first for alignment.
  20. remoteGoAway int32
  21. // localGoAway indicates that we should stop
  22. // accepting futher connections. Must be first for alignment.
  23. localGoAway int32
  24. // nextStreamID is the next stream we should
  25. // send. This depends if we are a client/server.
  26. nextStreamID uint32
  27. // config holds our configuration
  28. config *Config
  29. // logger is used for our logs
  30. logger *log.Logger
  31. // conn is the underlying connection
  32. conn io.ReadWriteCloser
  33. // bufRead is a buffered reader
  34. bufRead *bufio.Reader
  35. // pings is used to track inflight pings
  36. pings map[uint32]chan struct{}
  37. pingID uint32
  38. pingLock sync.Mutex
  39. // streams maps a stream id to a stream
  40. streams map[uint32]*Stream
  41. streamLock sync.Mutex
  42. // synCh acts like a semaphore. It is sized to the AcceptBacklog which
  43. // is assumed to be symmetric between the client and server. This allows
  44. // the client to avoid exceeding the backlog and instead blocks the open.
  45. synCh chan struct{}
  46. // acceptCh is used to pass ready streams to the client
  47. acceptCh chan *Stream
  48. // sendCh is used to mark a stream as ready to send,
  49. // or to send a header out directly.
  50. sendCh chan sendReady
  51. // recvDoneCh is closed when recv() exits to avoid a race
  52. // between stream registration and stream shutdown
  53. recvDoneCh chan struct{}
  54. // shutdown is used to safely close a session
  55. shutdown bool
  56. shutdownErr error
  57. shutdownCh chan struct{}
  58. shutdownLock sync.Mutex
  59. }
  60. // sendReady is used to either mark a stream as ready
  61. // or to directly send a header
  62. type sendReady struct {
  63. Hdr []byte
  64. Body io.Reader
  65. Err chan error
  66. }
  67. // newSession is used to construct a new session
  68. func newSession(config *Config, conn io.ReadWriteCloser, client bool) *Session {
  69. s := &Session{
  70. config: config,
  71. logger: log.New(config.LogOutput, "", log.LstdFlags),
  72. conn: conn,
  73. bufRead: bufio.NewReader(conn),
  74. pings: make(map[uint32]chan struct{}),
  75. streams: make(map[uint32]*Stream),
  76. synCh: make(chan struct{}, config.AcceptBacklog),
  77. acceptCh: make(chan *Stream, config.AcceptBacklog),
  78. sendCh: make(chan sendReady, 64),
  79. recvDoneCh: make(chan struct{}),
  80. shutdownCh: make(chan struct{}),
  81. }
  82. if client {
  83. s.nextStreamID = 1
  84. } else {
  85. s.nextStreamID = 2
  86. }
  87. go s.recv()
  88. go s.send()
  89. if config.EnableKeepAlive {
  90. go s.keepalive()
  91. }
  92. return s
  93. }
  94. // IsClosed does a safe check to see if we have shutdown
  95. func (s *Session) IsClosed() bool {
  96. select {
  97. case <-s.shutdownCh:
  98. return true
  99. default:
  100. return false
  101. }
  102. }
  103. // NumStreams returns the number of currently open streams
  104. func (s *Session) NumStreams() int {
  105. s.streamLock.Lock()
  106. num := len(s.streams)
  107. s.streamLock.Unlock()
  108. return num
  109. }
  110. // Open is used to create a new stream as a net.Conn
  111. func (s *Session) Open() (net.Conn, error) {
  112. conn, err := s.OpenStream()
  113. if err != nil {
  114. return nil, err
  115. }
  116. return conn, nil
  117. }
  118. // OpenStream is used to create a new stream
  119. func (s *Session) OpenStream() (*Stream, error) {
  120. if s.IsClosed() {
  121. return nil, ErrSessionShutdown
  122. }
  123. if atomic.LoadInt32(&s.remoteGoAway) == 1 {
  124. return nil, ErrRemoteGoAway
  125. }
  126. // Block if we have too many inflight SYNs
  127. select {
  128. case s.synCh <- struct{}{}:
  129. case <-s.shutdownCh:
  130. return nil, ErrSessionShutdown
  131. }
  132. GET_ID:
  133. // Get and ID, and check for stream exhaustion
  134. id := atomic.LoadUint32(&s.nextStreamID)
  135. if id >= math.MaxUint32-1 {
  136. return nil, ErrStreamsExhausted
  137. }
  138. if !atomic.CompareAndSwapUint32(&s.nextStreamID, id, id+2) {
  139. goto GET_ID
  140. }
  141. // Register the stream
  142. stream := newStream(s, id, streamInit)
  143. s.streamLock.Lock()
  144. s.streams[id] = stream
  145. s.streamLock.Unlock()
  146. // Send the window update to create
  147. if err := stream.sendWindowUpdate(); err != nil {
  148. return nil, err
  149. }
  150. return stream, nil
  151. }
  152. // Accept is used to block until the next available stream
  153. // is ready to be accepted.
  154. func (s *Session) Accept() (net.Conn, error) {
  155. conn, err := s.AcceptStream()
  156. if err != nil {
  157. return nil, err
  158. }
  159. return conn, err
  160. }
  161. // AcceptStream is used to block until the next available stream
  162. // is ready to be accepted.
  163. func (s *Session) AcceptStream() (*Stream, error) {
  164. select {
  165. case stream := <-s.acceptCh:
  166. if err := stream.sendWindowUpdate(); err != nil {
  167. return nil, err
  168. }
  169. return stream, nil
  170. case <-s.shutdownCh:
  171. return nil, s.shutdownErr
  172. }
  173. }
  174. // Close is used to close the session and all streams.
  175. // Attempts to send a GoAway before closing the connection.
  176. func (s *Session) Close() error {
  177. s.shutdownLock.Lock()
  178. defer s.shutdownLock.Unlock()
  179. if s.shutdown {
  180. return nil
  181. }
  182. s.shutdown = true
  183. if s.shutdownErr == nil {
  184. s.shutdownErr = ErrSessionShutdown
  185. }
  186. close(s.shutdownCh)
  187. s.conn.Close()
  188. <-s.recvDoneCh
  189. s.streamLock.Lock()
  190. defer s.streamLock.Unlock()
  191. for _, stream := range s.streams {
  192. stream.forceClose()
  193. }
  194. return nil
  195. }
  196. // exitErr is used to handle an error that is causing the
  197. // session to terminate.
  198. func (s *Session) exitErr(err error) {
  199. s.shutdownLock.Lock()
  200. if s.shutdownErr == nil {
  201. s.shutdownErr = err
  202. }
  203. s.shutdownLock.Unlock()
  204. s.Close()
  205. }
  206. // GoAway can be used to prevent accepting further
  207. // connections. It does not close the underlying conn.
  208. func (s *Session) GoAway() error {
  209. return s.waitForSend(s.goAway(goAwayNormal), nil)
  210. }
  211. // goAway is used to send a goAway message
  212. func (s *Session) goAway(reason uint32) header {
  213. atomic.SwapInt32(&s.localGoAway, 1)
  214. hdr := header(make([]byte, headerSize))
  215. hdr.encode(typeGoAway, 0, 0, reason)
  216. return hdr
  217. }
  218. // Ping is used to measure the RTT response time
  219. func (s *Session) Ping() (time.Duration, error) {
  220. // Get a channel for the ping
  221. ch := make(chan struct{})
  222. // Get a new ping id, mark as pending
  223. s.pingLock.Lock()
  224. id := s.pingID
  225. s.pingID++
  226. s.pings[id] = ch
  227. s.pingLock.Unlock()
  228. // Send the ping request
  229. hdr := header(make([]byte, headerSize))
  230. hdr.encode(typePing, flagSYN, 0, id)
  231. if err := s.waitForSend(hdr, nil); err != nil {
  232. return 0, err
  233. }
  234. // Wait for a response
  235. start := time.Now()
  236. select {
  237. case <-ch:
  238. case <-s.shutdownCh:
  239. return 0, ErrSessionShutdown
  240. }
  241. // Compute the RTT
  242. return time.Now().Sub(start), nil
  243. }
  244. // keepalive is a long running goroutine that periodically does
  245. // a ping to keep the connection alive.
  246. func (s *Session) keepalive() {
  247. for {
  248. select {
  249. case <-time.After(s.config.KeepAliveInterval):
  250. s.Ping()
  251. case <-s.shutdownCh:
  252. return
  253. }
  254. }
  255. }
  256. // waitForSendErr waits to send a header, checking for a potential shutdown
  257. func (s *Session) waitForSend(hdr header, body io.Reader) error {
  258. errCh := make(chan error, 1)
  259. return s.waitForSendErr(hdr, body, errCh)
  260. }
  261. // waitForSendErr waits to send a header, checking for a potential shutdown
  262. func (s *Session) waitForSendErr(hdr header, body io.Reader, errCh chan error) error {
  263. ready := sendReady{Hdr: hdr, Body: body, Err: errCh}
  264. select {
  265. case s.sendCh <- ready:
  266. case <-s.shutdownCh:
  267. return ErrSessionShutdown
  268. }
  269. select {
  270. case err := <-errCh:
  271. return err
  272. case <-s.shutdownCh:
  273. return ErrSessionShutdown
  274. }
  275. }
  276. // sendNoWait does a send without waiting
  277. func (s *Session) sendNoWait(hdr header) error {
  278. select {
  279. case s.sendCh <- sendReady{Hdr: hdr}:
  280. return nil
  281. case <-s.shutdownCh:
  282. return ErrSessionShutdown
  283. }
  284. }
  285. // send is a long running goroutine that sends data
  286. func (s *Session) send() {
  287. for {
  288. select {
  289. case ready := <-s.sendCh:
  290. // Send a header if ready
  291. if ready.Hdr != nil {
  292. sent := 0
  293. for sent < len(ready.Hdr) {
  294. n, err := s.conn.Write(ready.Hdr[sent:])
  295. if err != nil {
  296. s.logger.Printf("[ERR] yamux: Failed to write header: %v", err)
  297. asyncSendErr(ready.Err, err)
  298. s.exitErr(err)
  299. return
  300. }
  301. sent += n
  302. }
  303. }
  304. // Send data from a body if given
  305. if ready.Body != nil {
  306. _, err := io.Copy(s.conn, ready.Body)
  307. if err != nil {
  308. s.logger.Printf("[ERR] yamux: Failed to write body: %v", err)
  309. asyncSendErr(ready.Err, err)
  310. s.exitErr(err)
  311. return
  312. }
  313. }
  314. // No error, successful send
  315. asyncSendErr(ready.Err, nil)
  316. case <-s.shutdownCh:
  317. return
  318. }
  319. }
  320. }
  321. // recv is a long running goroutine that accepts new data
  322. func (s *Session) recv() {
  323. if err := s.recvLoop(); err != nil {
  324. s.exitErr(err)
  325. }
  326. }
  327. // recvLoop continues to receive data until a fatal error is encountered
  328. func (s *Session) recvLoop() error {
  329. defer close(s.recvDoneCh)
  330. hdr := header(make([]byte, headerSize))
  331. var handler func(header) error
  332. for {
  333. // Read the header
  334. if _, err := io.ReadFull(s.bufRead, hdr); err != nil {
  335. if err != io.EOF && !strings.Contains(err.Error(), "closed") && !strings.Contains(err.Error(), "reset by peer") {
  336. s.logger.Printf("[ERR] yamux: Failed to read header: %v", err)
  337. }
  338. return err
  339. }
  340. // Verify the version
  341. if hdr.Version() != protoVersion {
  342. s.logger.Printf("[ERR] yamux: Invalid protocol version: %d", hdr.Version())
  343. return ErrInvalidVersion
  344. }
  345. // Switch on the type
  346. switch hdr.MsgType() {
  347. case typeData:
  348. handler = s.handleStreamMessage
  349. case typeWindowUpdate:
  350. handler = s.handleStreamMessage
  351. case typeGoAway:
  352. handler = s.handleGoAway
  353. case typePing:
  354. handler = s.handlePing
  355. default:
  356. return ErrInvalidMsgType
  357. }
  358. // Invoke the handler
  359. if err := handler(hdr); err != nil {
  360. return err
  361. }
  362. }
  363. }
  364. // handleStreamMessage handles either a data or window update frame
  365. func (s *Session) handleStreamMessage(hdr header) error {
  366. // Check for a new stream creation
  367. id := hdr.StreamID()
  368. flags := hdr.Flags()
  369. if flags&flagSYN == flagSYN {
  370. if err := s.incomingStream(id); err != nil {
  371. return err
  372. }
  373. }
  374. // Get the stream
  375. s.streamLock.Lock()
  376. stream := s.streams[id]
  377. s.streamLock.Unlock()
  378. // If we do not have a stream, likely we sent a RST
  379. if stream == nil {
  380. // Drain any data on the wire
  381. if hdr.MsgType() == typeData && hdr.Length() > 0 {
  382. s.logger.Printf("[WARN] yamux: Discarding data for stream: %d", id)
  383. if _, err := io.CopyN(ioutil.Discard, s.bufRead, int64(hdr.Length())); err != nil {
  384. s.logger.Printf("[ERR] yamux: Failed to discard data: %v", err)
  385. return nil
  386. }
  387. } else {
  388. s.logger.Printf("[WARN] yamux: frame for missing stream: %v", hdr)
  389. }
  390. return nil
  391. }
  392. // Check if this is a window update
  393. if hdr.MsgType() == typeWindowUpdate {
  394. if err := stream.incrSendWindow(hdr, flags); err != nil {
  395. s.sendNoWait(s.goAway(goAwayProtoErr))
  396. return err
  397. }
  398. return nil
  399. }
  400. // Read the new data
  401. if err := stream.readData(hdr, flags, s.bufRead); err != nil {
  402. s.sendNoWait(s.goAway(goAwayProtoErr))
  403. return err
  404. }
  405. return nil
  406. }
  407. // handlePing is invokde for a typePing frame
  408. func (s *Session) handlePing(hdr header) error {
  409. flags := hdr.Flags()
  410. pingID := hdr.Length()
  411. // Check if this is a query, respond back
  412. if flags&flagSYN == flagSYN {
  413. hdr := header(make([]byte, headerSize))
  414. hdr.encode(typePing, flagACK, 0, pingID)
  415. s.sendNoWait(hdr)
  416. return nil
  417. }
  418. // Handle a response
  419. s.pingLock.Lock()
  420. ch := s.pings[pingID]
  421. if ch != nil {
  422. delete(s.pings, pingID)
  423. close(ch)
  424. }
  425. s.pingLock.Unlock()
  426. return nil
  427. }
  428. // handleGoAway is invokde for a typeGoAway frame
  429. func (s *Session) handleGoAway(hdr header) error {
  430. code := hdr.Length()
  431. switch code {
  432. case goAwayNormal:
  433. atomic.SwapInt32(&s.remoteGoAway, 1)
  434. case goAwayProtoErr:
  435. s.logger.Printf("[ERR] yamux: received protocol error go away")
  436. return fmt.Errorf("yamux protocol error")
  437. case goAwayInternalErr:
  438. s.logger.Printf("[ERR] yamux: received internal error go away")
  439. return fmt.Errorf("remote yamux internal error")
  440. default:
  441. s.logger.Printf("[ERR] yamux: received unexpected go away")
  442. return fmt.Errorf("unexpected go away received")
  443. }
  444. return nil
  445. }
  446. // incomingStream is used to create a new incoming stream
  447. func (s *Session) incomingStream(id uint32) error {
  448. // Reject immediately if we are doing a go away
  449. if atomic.LoadInt32(&s.localGoAway) == 1 {
  450. hdr := header(make([]byte, headerSize))
  451. hdr.encode(typeWindowUpdate, flagRST, id, 0)
  452. return s.sendNoWait(hdr)
  453. }
  454. // Allocate a new stream
  455. stream := newStream(s, id, streamSYNReceived)
  456. s.streamLock.Lock()
  457. defer s.streamLock.Unlock()
  458. // Check if stream already exists
  459. if _, ok := s.streams[id]; ok {
  460. s.logger.Printf("[ERR] yamux: duplicate stream declared")
  461. s.sendNoWait(s.goAway(goAwayProtoErr))
  462. return ErrDuplicateStream
  463. }
  464. // Register the stream
  465. s.streams[id] = stream
  466. // Check if we've exceeded the backlog
  467. select {
  468. case s.acceptCh <- stream:
  469. return nil
  470. default:
  471. // Backlog exceeded! RST the stream
  472. s.logger.Printf("[WARN] yamux: backlog exceeded, forcing connection reset")
  473. delete(s.streams, id)
  474. stream.sendHdr.encode(typeWindowUpdate, flagRST, id, 0)
  475. return s.sendNoWait(stream.sendHdr)
  476. }
  477. }
  478. // closeStream is used to close a stream once both sides have
  479. // issued a close.
  480. func (s *Session) closeStream(id uint32) {
  481. s.streamLock.Lock()
  482. delete(s.streams, id)
  483. s.streamLock.Unlock()
  484. }
  485. // establishStream is used to mark a stream that was in the
  486. // SYN Sent state as established.
  487. func (s *Session) establishStream() {
  488. select {
  489. case <-s.synCh:
  490. default:
  491. panic("established stream without inflight syn")
  492. }
  493. }