conn.go 33 KB

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  1. // Copyright 2013 The Gorilla WebSocket Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. package websocket
  5. import (
  6. "bufio"
  7. "encoding/binary"
  8. "errors"
  9. "io"
  10. "math/rand"
  11. "net"
  12. "strconv"
  13. "strings"
  14. "sync"
  15. "time"
  16. "unicode/utf8"
  17. )
  18. const (
  19. // Frame header byte 0 bits from Section 5.2 of RFC 6455
  20. finalBit = 1 << 7
  21. rsv1Bit = 1 << 6
  22. rsv2Bit = 1 << 5
  23. rsv3Bit = 1 << 4
  24. // Frame header byte 1 bits from Section 5.2 of RFC 6455
  25. maskBit = 1 << 7
  26. maxFrameHeaderSize = 2 + 8 + 4 // Fixed header + length + mask
  27. maxControlFramePayloadSize = 125
  28. writeWait = time.Second
  29. defaultReadBufferSize = 4096
  30. defaultWriteBufferSize = 4096
  31. continuationFrame = 0
  32. noFrame = -1
  33. )
  34. // Close codes defined in RFC 6455, section 11.7.
  35. const (
  36. CloseNormalClosure = 1000
  37. CloseGoingAway = 1001
  38. CloseProtocolError = 1002
  39. CloseUnsupportedData = 1003
  40. CloseNoStatusReceived = 1005
  41. CloseAbnormalClosure = 1006
  42. CloseInvalidFramePayloadData = 1007
  43. ClosePolicyViolation = 1008
  44. CloseMessageTooBig = 1009
  45. CloseMandatoryExtension = 1010
  46. CloseInternalServerErr = 1011
  47. CloseServiceRestart = 1012
  48. CloseTryAgainLater = 1013
  49. CloseTLSHandshake = 1015
  50. )
  51. // The message types are defined in RFC 6455, section 11.8.
  52. const (
  53. // TextMessage denotes a text data message. The text message payload is
  54. // interpreted as UTF-8 encoded text data.
  55. TextMessage = 1
  56. // BinaryMessage denotes a binary data message.
  57. BinaryMessage = 2
  58. // CloseMessage denotes a close control message. The optional message
  59. // payload contains a numeric code and text. Use the FormatCloseMessage
  60. // function to format a close message payload.
  61. CloseMessage = 8
  62. // PingMessage denotes a ping control message. The optional message payload
  63. // is UTF-8 encoded text.
  64. PingMessage = 9
  65. // PongMessage denotes a pong control message. The optional message payload
  66. // is UTF-8 encoded text.
  67. PongMessage = 10
  68. )
  69. // ErrCloseSent is returned when the application writes a message to the
  70. // connection after sending a close message.
  71. var ErrCloseSent = errors.New("websocket: close sent")
  72. // ErrReadLimit is returned when reading a message that is larger than the
  73. // read limit set for the connection.
  74. var ErrReadLimit = errors.New("websocket: read limit exceeded")
  75. // netError satisfies the net Error interface.
  76. type netError struct {
  77. msg string
  78. temporary bool
  79. timeout bool
  80. }
  81. func (e *netError) Error() string { return e.msg }
  82. func (e *netError) Temporary() bool { return e.temporary }
  83. func (e *netError) Timeout() bool { return e.timeout }
  84. // CloseError represents a close message.
  85. type CloseError struct {
  86. // Code is defined in RFC 6455, section 11.7.
  87. Code int
  88. // Text is the optional text payload.
  89. Text string
  90. }
  91. func (e *CloseError) Error() string {
  92. s := []byte("websocket: close ")
  93. s = strconv.AppendInt(s, int64(e.Code), 10)
  94. switch e.Code {
  95. case CloseNormalClosure:
  96. s = append(s, " (normal)"...)
  97. case CloseGoingAway:
  98. s = append(s, " (going away)"...)
  99. case CloseProtocolError:
  100. s = append(s, " (protocol error)"...)
  101. case CloseUnsupportedData:
  102. s = append(s, " (unsupported data)"...)
  103. case CloseNoStatusReceived:
  104. s = append(s, " (no status)"...)
  105. case CloseAbnormalClosure:
  106. s = append(s, " (abnormal closure)"...)
  107. case CloseInvalidFramePayloadData:
  108. s = append(s, " (invalid payload data)"...)
  109. case ClosePolicyViolation:
  110. s = append(s, " (policy violation)"...)
  111. case CloseMessageTooBig:
  112. s = append(s, " (message too big)"...)
  113. case CloseMandatoryExtension:
  114. s = append(s, " (mandatory extension missing)"...)
  115. case CloseInternalServerErr:
  116. s = append(s, " (internal server error)"...)
  117. case CloseTLSHandshake:
  118. s = append(s, " (TLS handshake error)"...)
  119. }
  120. if e.Text != "" {
  121. s = append(s, ": "...)
  122. s = append(s, e.Text...)
  123. }
  124. return string(s)
  125. }
  126. // IsCloseError returns boolean indicating whether the error is a *CloseError
  127. // with one of the specified codes.
  128. func IsCloseError(err error, codes ...int) bool {
  129. if e, ok := err.(*CloseError); ok {
  130. for _, code := range codes {
  131. if e.Code == code {
  132. return true
  133. }
  134. }
  135. }
  136. return false
  137. }
  138. // IsUnexpectedCloseError returns boolean indicating whether the error is a
  139. // *CloseError with a code not in the list of expected codes.
  140. func IsUnexpectedCloseError(err error, expectedCodes ...int) bool {
  141. if e, ok := err.(*CloseError); ok {
  142. for _, code := range expectedCodes {
  143. if e.Code == code {
  144. return false
  145. }
  146. }
  147. return true
  148. }
  149. return false
  150. }
  151. var (
  152. errWriteTimeout = &netError{msg: "websocket: write timeout", timeout: true, temporary: true}
  153. errUnexpectedEOF = &CloseError{Code: CloseAbnormalClosure, Text: io.ErrUnexpectedEOF.Error()}
  154. errBadWriteOpCode = errors.New("websocket: bad write message type")
  155. errWriteClosed = errors.New("websocket: write closed")
  156. errInvalidControlFrame = errors.New("websocket: invalid control frame")
  157. )
  158. func newMaskKey() [4]byte {
  159. n := rand.Uint32()
  160. return [4]byte{byte(n), byte(n >> 8), byte(n >> 16), byte(n >> 24)}
  161. }
  162. func hideTempErr(err error) error {
  163. if e, ok := err.(net.Error); ok && e.Temporary() {
  164. err = &netError{msg: e.Error(), timeout: e.Timeout()}
  165. }
  166. return err
  167. }
  168. func isControl(frameType int) bool {
  169. return frameType == CloseMessage || frameType == PingMessage || frameType == PongMessage
  170. }
  171. func isData(frameType int) bool {
  172. return frameType == TextMessage || frameType == BinaryMessage
  173. }
  174. var validReceivedCloseCodes = map[int]bool{
  175. // see http://www.iana.org/assignments/websocket/websocket.xhtml#close-code-number
  176. CloseNormalClosure: true,
  177. CloseGoingAway: true,
  178. CloseProtocolError: true,
  179. CloseUnsupportedData: true,
  180. CloseNoStatusReceived: false,
  181. CloseAbnormalClosure: false,
  182. CloseInvalidFramePayloadData: true,
  183. ClosePolicyViolation: true,
  184. CloseMessageTooBig: true,
  185. CloseMandatoryExtension: true,
  186. CloseInternalServerErr: true,
  187. CloseServiceRestart: true,
  188. CloseTryAgainLater: true,
  189. CloseTLSHandshake: false,
  190. }
  191. func isValidReceivedCloseCode(code int) bool {
  192. return validReceivedCloseCodes[code] || (code >= 3000 && code <= 4999)
  193. }
  194. // BufferPool represents a pool of buffers. The *sync.Pool type satisfies this
  195. // interface. The type of the value stored in a pool is not specified.
  196. type BufferPool interface {
  197. // Get gets a value from the pool or returns nil if the pool is empty.
  198. Get() interface{}
  199. // Put adds a value to the pool.
  200. Put(interface{})
  201. }
  202. // writePoolData is the type added to the write buffer pool. This wrapper is
  203. // used to prevent applications from peeking at and depending on the values
  204. // added to the pool.
  205. type writePoolData struct{ buf []byte }
  206. // The Conn type represents a WebSocket connection.
  207. type Conn struct {
  208. conn net.Conn
  209. isServer bool
  210. subprotocol string
  211. // Write fields
  212. mu chan struct{} // used as mutex to protect write to conn
  213. writeBuf []byte // frame is constructed in this buffer.
  214. writePool BufferPool
  215. writeBufSize int
  216. writeDeadline time.Time
  217. writer io.WriteCloser // the current writer returned to the application
  218. isWriting bool // for best-effort concurrent write detection
  219. writeErrMu sync.Mutex
  220. writeErr error
  221. enableWriteCompression bool
  222. compressionLevel int
  223. newCompressionWriter func(io.WriteCloser, int) io.WriteCloser
  224. // Read fields
  225. reader io.ReadCloser // the current reader returned to the application
  226. readErr error
  227. br *bufio.Reader
  228. // bytes remaining in current frame.
  229. // set setReadRemaining to safely update this value and prevent overflow
  230. readRemaining int64
  231. readFinal bool // true the current message has more frames.
  232. readLength int64 // Message size.
  233. readLimit int64 // Maximum message size.
  234. readMaskPos int
  235. readMaskKey [4]byte
  236. handlePong func(string) error
  237. handlePing func(string) error
  238. handleClose func(int, string) error
  239. readErrCount int
  240. messageReader *messageReader // the current low-level reader
  241. readDecompress bool // whether last read frame had RSV1 set
  242. newDecompressionReader func(io.Reader) io.ReadCloser
  243. }
  244. func newConn(conn net.Conn, isServer bool, readBufferSize, writeBufferSize int, writeBufferPool BufferPool, br *bufio.Reader, writeBuf []byte) *Conn {
  245. if br == nil {
  246. if readBufferSize == 0 {
  247. readBufferSize = defaultReadBufferSize
  248. } else if readBufferSize < maxControlFramePayloadSize {
  249. // must be large enough for control frame
  250. readBufferSize = maxControlFramePayloadSize
  251. }
  252. br = bufio.NewReaderSize(conn, readBufferSize)
  253. }
  254. if writeBufferSize <= 0 {
  255. writeBufferSize = defaultWriteBufferSize
  256. }
  257. writeBufferSize += maxFrameHeaderSize
  258. if writeBuf == nil && writeBufferPool == nil {
  259. writeBuf = make([]byte, writeBufferSize)
  260. }
  261. mu := make(chan struct{}, 1)
  262. mu <- struct{}{}
  263. c := &Conn{
  264. isServer: isServer,
  265. br: br,
  266. conn: conn,
  267. mu: mu,
  268. readFinal: true,
  269. writeBuf: writeBuf,
  270. writePool: writeBufferPool,
  271. writeBufSize: writeBufferSize,
  272. enableWriteCompression: true,
  273. compressionLevel: defaultCompressionLevel,
  274. }
  275. c.SetCloseHandler(nil)
  276. c.SetPingHandler(nil)
  277. c.SetPongHandler(nil)
  278. return c
  279. }
  280. // setReadRemaining tracks the number of bytes remaining on the connection. If n
  281. // overflows, an ErrReadLimit is returned.
  282. func (c *Conn) setReadRemaining(n int64) error {
  283. if n < 0 {
  284. return ErrReadLimit
  285. }
  286. c.readRemaining = n
  287. return nil
  288. }
  289. // Subprotocol returns the negotiated protocol for the connection.
  290. func (c *Conn) Subprotocol() string {
  291. if c == nil {
  292. return ""
  293. }
  294. return c.subprotocol
  295. }
  296. // Close closes the underlying network connection without sending or waiting
  297. // for a close message.
  298. func (c *Conn) Close() error {
  299. if c == nil {
  300. return ErrNilConn
  301. }
  302. if c.conn == nil {
  303. return ErrNilNetConn
  304. }
  305. return c.conn.Close()
  306. }
  307. // LocalAddr returns the local network address.
  308. func (c *Conn) LocalAddr() net.Addr {
  309. if c == nil || c.conn == nil {
  310. return nil
  311. }
  312. return c.conn.LocalAddr()
  313. }
  314. // RemoteAddr returns the remote network address.
  315. func (c *Conn) RemoteAddr() net.Addr {
  316. if c == nil || c.conn == nil {
  317. return nil
  318. }
  319. return c.conn.RemoteAddr()
  320. }
  321. // Write methods
  322. func (c *Conn) writeFatal(err error) error {
  323. if c == nil {
  324. return ErrNilConn
  325. }
  326. err = hideTempErr(err)
  327. c.writeErrMu.Lock()
  328. if c.writeErr == nil {
  329. c.writeErr = err
  330. }
  331. c.writeErrMu.Unlock()
  332. return err
  333. }
  334. func (c *Conn) read(n int) ([]byte, error) {
  335. if c == nil {
  336. return nil, ErrNilConn
  337. }
  338. p, err := c.br.Peek(n)
  339. if err == io.EOF {
  340. err = errUnexpectedEOF
  341. }
  342. c.br.Discard(len(p))
  343. return p, err
  344. }
  345. func (c *Conn) write(frameType int, deadline time.Time, buf0, buf1 []byte) error {
  346. if c == nil {
  347. return ErrNilConn
  348. }
  349. <-c.mu
  350. defer func() { c.mu <- struct{}{} }()
  351. c.writeErrMu.Lock()
  352. err := c.writeErr
  353. c.writeErrMu.Unlock()
  354. if err != nil {
  355. return err
  356. }
  357. if c.conn == nil {
  358. return ErrNilNetConn
  359. }
  360. c.conn.SetWriteDeadline(deadline)
  361. if len(buf1) == 0 {
  362. _, err = c.conn.Write(buf0)
  363. } else {
  364. err = c.writeBufs(buf0, buf1)
  365. }
  366. if err != nil {
  367. return c.writeFatal(err)
  368. }
  369. if frameType == CloseMessage {
  370. c.writeFatal(ErrCloseSent)
  371. }
  372. return nil
  373. }
  374. func (c *Conn) writeBufs(bufs ...[]byte) error {
  375. b := net.Buffers(bufs)
  376. _, err := b.WriteTo(c.conn)
  377. return err
  378. }
  379. // WriteControl writes a control message with the given deadline. The allowed
  380. // message types are CloseMessage, PingMessage and PongMessage.
  381. func (c *Conn) WriteControl(messageType int, data []byte, deadline time.Time) error {
  382. if c == nil {
  383. return ErrNilConn
  384. }
  385. if !isControl(messageType) {
  386. return errBadWriteOpCode
  387. }
  388. if len(data) > maxControlFramePayloadSize {
  389. return errInvalidControlFrame
  390. }
  391. b0 := byte(messageType) | finalBit
  392. b1 := byte(len(data))
  393. if !c.isServer {
  394. b1 |= maskBit
  395. }
  396. buf := make([]byte, 0, maxFrameHeaderSize+maxControlFramePayloadSize)
  397. buf = append(buf, b0, b1)
  398. if c.isServer {
  399. buf = append(buf, data...)
  400. } else {
  401. key := newMaskKey()
  402. buf = append(buf, key[:]...)
  403. buf = append(buf, data...)
  404. maskBytes(key, 0, buf[6:])
  405. }
  406. d := 1000 * time.Hour
  407. if !deadline.IsZero() {
  408. d = deadline.Sub(time.Now())
  409. if d < 0 {
  410. return errWriteTimeout
  411. }
  412. }
  413. timer := time.NewTimer(d)
  414. select {
  415. case <-c.mu:
  416. timer.Stop()
  417. case <-timer.C:
  418. return errWriteTimeout
  419. }
  420. defer func() { c.mu <- struct{}{} }()
  421. c.writeErrMu.Lock()
  422. err := c.writeErr
  423. c.writeErrMu.Unlock()
  424. if err != nil {
  425. return err
  426. }
  427. if c.conn == nil {
  428. return ErrNilNetConn
  429. }
  430. c.conn.SetWriteDeadline(deadline)
  431. _, err = c.conn.Write(buf)
  432. if err != nil {
  433. return c.writeFatal(err)
  434. }
  435. if messageType == CloseMessage {
  436. c.writeFatal(ErrCloseSent)
  437. }
  438. return err
  439. }
  440. // beginMessage prepares a connection and message writer for a new message.
  441. func (c *Conn) beginMessage(mw *messageWriter, messageType int) error {
  442. if c == nil {
  443. return ErrNilConn
  444. }
  445. // Close previous writer if not already closed by the application. It's
  446. // probably better to return an error in this situation, but we cannot
  447. // change this without breaking existing applications.
  448. if c.writer != nil {
  449. c.writer.Close()
  450. c.writer = nil
  451. }
  452. if !isControl(messageType) && !isData(messageType) {
  453. return errBadWriteOpCode
  454. }
  455. c.writeErrMu.Lock()
  456. err := c.writeErr
  457. c.writeErrMu.Unlock()
  458. if err != nil {
  459. return err
  460. }
  461. mw.c = c
  462. mw.frameType = messageType
  463. mw.pos = maxFrameHeaderSize
  464. if c.writeBuf == nil {
  465. wpd, ok := c.writePool.Get().(writePoolData)
  466. if ok {
  467. c.writeBuf = wpd.buf
  468. } else {
  469. c.writeBuf = make([]byte, c.writeBufSize)
  470. }
  471. }
  472. return nil
  473. }
  474. // NextWriter returns a writer for the next message to send. The writer's Close
  475. // method flushes the complete message to the network.
  476. //
  477. // There can be at most one open writer on a connection. NextWriter closes the
  478. // previous writer if the application has not already done so.
  479. //
  480. // All message types (TextMessage, BinaryMessage, CloseMessage, PingMessage and
  481. // PongMessage) are supported.
  482. func (c *Conn) NextWriter(messageType int) (io.WriteCloser, error) {
  483. if c == nil {
  484. return nil, ErrNilConn
  485. }
  486. var mw messageWriter
  487. if err := c.beginMessage(&mw, messageType); err != nil {
  488. return nil, err
  489. }
  490. c.writer = &mw
  491. if c.newCompressionWriter != nil && c.enableWriteCompression && isData(messageType) {
  492. w := c.newCompressionWriter(c.writer, c.compressionLevel)
  493. mw.compress = true
  494. c.writer = w
  495. }
  496. return c.writer, nil
  497. }
  498. type messageWriter struct {
  499. c *Conn
  500. compress bool // whether next call to flushFrame should set RSV1
  501. pos int // end of data in writeBuf.
  502. frameType int // type of the current frame.
  503. err error
  504. }
  505. func (w *messageWriter) endMessage(err error) error {
  506. if w.err != nil {
  507. return err
  508. }
  509. c := w.c
  510. w.err = err
  511. c.writer = nil
  512. if c.writePool != nil {
  513. c.writePool.Put(writePoolData{buf: c.writeBuf})
  514. c.writeBuf = nil
  515. }
  516. return err
  517. }
  518. // flushFrame writes buffered data and extra as a frame to the network. The
  519. // final argument indicates that this is the last frame in the message.
  520. func (w *messageWriter) flushFrame(final bool, extra []byte) error {
  521. c := w.c
  522. if c == nil {
  523. return ErrNilConn
  524. }
  525. length := w.pos - maxFrameHeaderSize + len(extra)
  526. // Check for invalid control frames.
  527. if isControl(w.frameType) &&
  528. (!final || length > maxControlFramePayloadSize) {
  529. return w.endMessage(errInvalidControlFrame)
  530. }
  531. b0 := byte(w.frameType)
  532. if final {
  533. b0 |= finalBit
  534. }
  535. if w.compress {
  536. b0 |= rsv1Bit
  537. }
  538. w.compress = false
  539. b1 := byte(0)
  540. if !c.isServer {
  541. b1 |= maskBit
  542. }
  543. // Assume that the frame starts at beginning of c.writeBuf.
  544. framePos := 0
  545. if c.isServer {
  546. // Adjust up if mask not included in the header.
  547. framePos = 4
  548. }
  549. switch {
  550. case length >= 65536:
  551. c.writeBuf[framePos] = b0
  552. c.writeBuf[framePos+1] = b1 | 127
  553. binary.BigEndian.PutUint64(c.writeBuf[framePos+2:], uint64(length))
  554. case length > 125:
  555. framePos += 6
  556. c.writeBuf[framePos] = b0
  557. c.writeBuf[framePos+1] = b1 | 126
  558. binary.BigEndian.PutUint16(c.writeBuf[framePos+2:], uint16(length))
  559. default:
  560. framePos += 8
  561. c.writeBuf[framePos] = b0
  562. c.writeBuf[framePos+1] = b1 | byte(length)
  563. }
  564. if !c.isServer {
  565. key := newMaskKey()
  566. copy(c.writeBuf[maxFrameHeaderSize-4:], key[:])
  567. maskBytes(key, 0, c.writeBuf[maxFrameHeaderSize:w.pos])
  568. if len(extra) > 0 {
  569. return w.endMessage(c.writeFatal(errors.New("websocket: internal error, extra used in client mode")))
  570. }
  571. }
  572. // Write the buffers to the connection with best-effort detection of
  573. // concurrent writes. See the concurrency section in the package
  574. // documentation for more info.
  575. if c.isWriting {
  576. panic("concurrent write to websocket connection")
  577. }
  578. c.isWriting = true
  579. err := c.write(w.frameType, c.writeDeadline, c.writeBuf[framePos:w.pos], extra)
  580. if !c.isWriting {
  581. panic("concurrent write to websocket connection")
  582. }
  583. c.isWriting = false
  584. if err != nil {
  585. return w.endMessage(err)
  586. }
  587. if final {
  588. w.endMessage(errWriteClosed)
  589. return nil
  590. }
  591. // Setup for next frame.
  592. w.pos = maxFrameHeaderSize
  593. w.frameType = continuationFrame
  594. return nil
  595. }
  596. func (w *messageWriter) ncopy(max int) (int, error) {
  597. n := len(w.c.writeBuf) - w.pos
  598. if n <= 0 {
  599. if err := w.flushFrame(false, nil); err != nil {
  600. return 0, err
  601. }
  602. n = len(w.c.writeBuf) - w.pos
  603. }
  604. if n > max {
  605. n = max
  606. }
  607. return n, nil
  608. }
  609. func (w *messageWriter) Write(p []byte) (int, error) {
  610. if w.err != nil {
  611. return 0, w.err
  612. }
  613. if len(p) > 2*len(w.c.writeBuf) && w.c.isServer {
  614. // Don't buffer large messages.
  615. err := w.flushFrame(false, p)
  616. if err != nil {
  617. return 0, err
  618. }
  619. return len(p), nil
  620. }
  621. nn := len(p)
  622. for len(p) > 0 {
  623. n, err := w.ncopy(len(p))
  624. if err != nil {
  625. return 0, err
  626. }
  627. copy(w.c.writeBuf[w.pos:], p[:n])
  628. w.pos += n
  629. p = p[n:]
  630. }
  631. return nn, nil
  632. }
  633. func (w *messageWriter) WriteString(p string) (int, error) {
  634. if w.err != nil {
  635. return 0, w.err
  636. }
  637. nn := len(p)
  638. for len(p) > 0 {
  639. n, err := w.ncopy(len(p))
  640. if err != nil {
  641. return 0, err
  642. }
  643. copy(w.c.writeBuf[w.pos:], p[:n])
  644. w.pos += n
  645. p = p[n:]
  646. }
  647. return nn, nil
  648. }
  649. func (w *messageWriter) ReadFrom(r io.Reader) (nn int64, err error) {
  650. if w.err != nil {
  651. return 0, w.err
  652. }
  653. for {
  654. if w.pos == len(w.c.writeBuf) {
  655. err = w.flushFrame(false, nil)
  656. if err != nil {
  657. break
  658. }
  659. }
  660. var n int
  661. n, err = r.Read(w.c.writeBuf[w.pos:])
  662. w.pos += n
  663. nn += int64(n)
  664. if err != nil {
  665. if err == io.EOF {
  666. err = nil
  667. }
  668. break
  669. }
  670. }
  671. return nn, err
  672. }
  673. func (w *messageWriter) Close() error {
  674. if w.err != nil {
  675. return w.err
  676. }
  677. return w.flushFrame(true, nil)
  678. }
  679. // WritePreparedMessage writes prepared message into connection.
  680. func (c *Conn) WritePreparedMessage(pm *PreparedMessage) error {
  681. if c == nil {
  682. return ErrNilConn
  683. }
  684. frameType, frameData, err := pm.frame(prepareKey{
  685. isServer: c.isServer,
  686. compress: c.newCompressionWriter != nil && c.enableWriteCompression && isData(pm.messageType),
  687. compressionLevel: c.compressionLevel,
  688. })
  689. if err != nil {
  690. return err
  691. }
  692. if c.isWriting {
  693. panic("concurrent write to websocket connection")
  694. }
  695. c.isWriting = true
  696. err = c.write(frameType, c.writeDeadline, frameData, nil)
  697. if !c.isWriting {
  698. panic("concurrent write to websocket connection")
  699. }
  700. c.isWriting = false
  701. return err
  702. }
  703. // WriteMessage is a helper method for getting a writer using NextWriter,
  704. // writing the message and closing the writer.
  705. func (c *Conn) WriteMessage(messageType int, data []byte) error {
  706. if c == nil {
  707. return ErrNilConn
  708. }
  709. if c.isServer && (c.newCompressionWriter == nil || !c.enableWriteCompression) {
  710. // Fast path with no allocations and single frame.
  711. var mw messageWriter
  712. if err := c.beginMessage(&mw, messageType); err != nil {
  713. return err
  714. }
  715. n := copy(c.writeBuf[mw.pos:], data)
  716. mw.pos += n
  717. data = data[n:]
  718. return mw.flushFrame(true, data)
  719. }
  720. w, err := c.NextWriter(messageType)
  721. if err != nil {
  722. return err
  723. }
  724. if _, err = w.Write(data); err != nil {
  725. return err
  726. }
  727. return w.Close()
  728. }
  729. // SetWriteDeadline sets the write deadline on the underlying network
  730. // connection. After a write has timed out, the websocket state is corrupt and
  731. // all future writes will return an error. A zero value for t means writes will
  732. // not time out.
  733. func (c *Conn) SetWriteDeadline(t time.Time) error {
  734. if c == nil {
  735. return ErrNilConn
  736. }
  737. c.writeDeadline = t
  738. return nil
  739. }
  740. // Read methods
  741. func (c *Conn) advanceFrame() (int, error) {
  742. // 1. Skip remainder of previous frame.
  743. if c.readRemaining > 0 {
  744. if _, err := io.CopyN(io.Discard, c.br, c.readRemaining); err != nil {
  745. return noFrame, err
  746. }
  747. }
  748. // 2. Read and parse first two bytes of frame header.
  749. // To aid debugging, collect and report all errors in the first two bytes
  750. // of the header.
  751. var errors []string
  752. p, err := c.read(2)
  753. if err != nil {
  754. return noFrame, err
  755. }
  756. frameType := int(p[0] & 0xf)
  757. final := p[0]&finalBit != 0
  758. rsv1 := p[0]&rsv1Bit != 0
  759. rsv2 := p[0]&rsv2Bit != 0
  760. rsv3 := p[0]&rsv3Bit != 0
  761. mask := p[1]&maskBit != 0
  762. c.setReadRemaining(int64(p[1] & 0x7f))
  763. c.readDecompress = false
  764. if rsv1 {
  765. if c.newDecompressionReader != nil {
  766. c.readDecompress = true
  767. } else {
  768. errors = append(errors, "RSV1 set")
  769. }
  770. }
  771. if rsv2 {
  772. errors = append(errors, "RSV2 set")
  773. }
  774. if rsv3 {
  775. errors = append(errors, "RSV3 set")
  776. }
  777. switch frameType {
  778. case CloseMessage, PingMessage, PongMessage:
  779. if c.readRemaining > maxControlFramePayloadSize {
  780. errors = append(errors, "len > 125 for control")
  781. }
  782. if !final {
  783. errors = append(errors, "FIN not set on control")
  784. }
  785. case TextMessage, BinaryMessage:
  786. if !c.readFinal {
  787. errors = append(errors, "data before FIN")
  788. }
  789. c.readFinal = final
  790. case continuationFrame:
  791. if c.readFinal {
  792. errors = append(errors, "continuation after FIN")
  793. }
  794. c.readFinal = final
  795. default:
  796. errors = append(errors, "bad opcode "+strconv.Itoa(frameType))
  797. }
  798. if mask != c.isServer {
  799. errors = append(errors, "bad MASK")
  800. }
  801. if len(errors) > 0 {
  802. return noFrame, c.handleProtocolError(strings.Join(errors, ", "))
  803. }
  804. // 3. Read and parse frame length as per
  805. // https://tools.ietf.org/html/rfc6455#section-5.2
  806. //
  807. // The length of the "Payload data", in bytes: if 0-125, that is the payload
  808. // length.
  809. // - If 126, the following 2 bytes interpreted as a 16-bit unsigned
  810. // integer are the payload length.
  811. // - If 127, the following 8 bytes interpreted as
  812. // a 64-bit unsigned integer (the most significant bit MUST be 0) are the
  813. // payload length. Multibyte length quantities are expressed in network byte
  814. // order.
  815. switch c.readRemaining {
  816. case 126:
  817. p, err := c.read(2)
  818. if err != nil {
  819. return noFrame, err
  820. }
  821. if err := c.setReadRemaining(int64(binary.BigEndian.Uint16(p))); err != nil {
  822. return noFrame, err
  823. }
  824. case 127:
  825. p, err := c.read(8)
  826. if err != nil {
  827. return noFrame, err
  828. }
  829. if err := c.setReadRemaining(int64(binary.BigEndian.Uint64(p))); err != nil {
  830. return noFrame, err
  831. }
  832. }
  833. // 4. Handle frame masking.
  834. if mask {
  835. c.readMaskPos = 0
  836. p, err := c.read(len(c.readMaskKey))
  837. if err != nil {
  838. return noFrame, err
  839. }
  840. copy(c.readMaskKey[:], p)
  841. }
  842. // 5. For text and binary messages, enforce read limit and return.
  843. if frameType == continuationFrame || frameType == TextMessage || frameType == BinaryMessage {
  844. c.readLength += c.readRemaining
  845. // Don't allow readLength to overflow in the presence of a large readRemaining
  846. // counter.
  847. if c.readLength < 0 {
  848. return noFrame, ErrReadLimit
  849. }
  850. if c.readLimit > 0 && c.readLength > c.readLimit {
  851. c.WriteControl(CloseMessage, FormatCloseMessage(CloseMessageTooBig, ""), time.Now().Add(writeWait))
  852. return noFrame, ErrReadLimit
  853. }
  854. return frameType, nil
  855. }
  856. // 6. Read control frame payload.
  857. var payload []byte
  858. if c.readRemaining > 0 {
  859. payload, err = c.read(int(c.readRemaining))
  860. c.setReadRemaining(0)
  861. if err != nil {
  862. return noFrame, err
  863. }
  864. if c.isServer {
  865. maskBytes(c.readMaskKey, 0, payload)
  866. }
  867. }
  868. // 7. Process control frame payload.
  869. switch frameType {
  870. case PongMessage:
  871. if err := c.handlePong(string(payload)); err != nil {
  872. return noFrame, err
  873. }
  874. case PingMessage:
  875. if err := c.handlePing(string(payload)); err != nil {
  876. return noFrame, err
  877. }
  878. case CloseMessage:
  879. closeCode := CloseNoStatusReceived
  880. closeText := ""
  881. if len(payload) >= 2 {
  882. closeCode = int(binary.BigEndian.Uint16(payload))
  883. if !isValidReceivedCloseCode(closeCode) {
  884. return noFrame, c.handleProtocolError("bad close code " + strconv.Itoa(closeCode))
  885. }
  886. closeText = string(payload[2:])
  887. if !utf8.ValidString(closeText) {
  888. return noFrame, c.handleProtocolError("invalid utf8 payload in close frame")
  889. }
  890. }
  891. if err := c.handleClose(closeCode, closeText); err != nil {
  892. return noFrame, err
  893. }
  894. return noFrame, &CloseError{Code: closeCode, Text: closeText}
  895. }
  896. return frameType, nil
  897. }
  898. func (c *Conn) handleProtocolError(message string) error {
  899. if c == nil {
  900. return ErrNilConn
  901. }
  902. data := FormatCloseMessage(CloseProtocolError, message)
  903. if len(data) > maxControlFramePayloadSize {
  904. data = data[:maxControlFramePayloadSize]
  905. }
  906. c.WriteControl(CloseMessage, data, time.Now().Add(writeWait))
  907. return errors.New("websocket: " + message)
  908. }
  909. // NextReader returns the next data message received from the peer. The
  910. // returned messageType is either TextMessage or BinaryMessage.
  911. //
  912. // There can be at most one open reader on a connection. NextReader discards
  913. // the previous message if the application has not already consumed it.
  914. //
  915. // Applications must break out of the application's read loop when this method
  916. // returns a non-nil error value. Errors returned from this method are
  917. // permanent. Once this method returns a non-nil error, all subsequent calls to
  918. // this method return the same error.
  919. func (c *Conn) NextReader() (messageType int, r io.Reader, err error) {
  920. if c == nil {
  921. return 0, nil, ErrNilConn
  922. }
  923. // Close previous reader, only relevant for decompression.
  924. if c.reader != nil {
  925. c.reader.Close()
  926. c.reader = nil
  927. }
  928. c.messageReader = nil
  929. c.readLength = 0
  930. for c.readErr == nil {
  931. frameType, err := c.advanceFrame()
  932. if err != nil {
  933. c.readErr = hideTempErr(err)
  934. break
  935. }
  936. if frameType == TextMessage || frameType == BinaryMessage {
  937. c.messageReader = &messageReader{c}
  938. c.reader = c.messageReader
  939. if c.readDecompress {
  940. c.reader = c.newDecompressionReader(c.reader)
  941. }
  942. return frameType, c.reader, nil
  943. }
  944. }
  945. // Applications that do handle the error returned from this method spin in
  946. // tight loop on connection failure. To help application developers detect
  947. // this error, panic on repeated reads to the failed connection.
  948. c.readErrCount++
  949. if c.readErrCount >= 1000 {
  950. panic("repeated read on failed websocket connection")
  951. }
  952. return noFrame, nil, c.readErr
  953. }
  954. type messageReader struct{ c *Conn }
  955. func (r *messageReader) Read(b []byte) (int, error) {
  956. c := r.c
  957. if c == nil {
  958. return 0, ErrNilConn
  959. }
  960. if c.messageReader != r {
  961. return 0, io.EOF
  962. }
  963. for c.readErr == nil {
  964. if c.readRemaining > 0 {
  965. if int64(len(b)) > c.readRemaining {
  966. b = b[:c.readRemaining]
  967. }
  968. n, err := c.br.Read(b)
  969. c.readErr = hideTempErr(err)
  970. if c.isServer {
  971. c.readMaskPos = maskBytes(c.readMaskKey, c.readMaskPos, b[:n])
  972. }
  973. rem := c.readRemaining
  974. rem -= int64(n)
  975. c.setReadRemaining(rem)
  976. if c.readRemaining > 0 && c.readErr == io.EOF {
  977. c.readErr = errUnexpectedEOF
  978. }
  979. return n, c.readErr
  980. }
  981. if c.readFinal {
  982. c.messageReader = nil
  983. return 0, io.EOF
  984. }
  985. frameType, err := c.advanceFrame()
  986. switch {
  987. case err != nil:
  988. c.readErr = hideTempErr(err)
  989. case frameType == TextMessage || frameType == BinaryMessage:
  990. c.readErr = errors.New("websocket: internal error, unexpected text or binary in Reader")
  991. }
  992. }
  993. err := c.readErr
  994. if err == io.EOF && c.messageReader == r {
  995. err = errUnexpectedEOF
  996. }
  997. return 0, err
  998. }
  999. func (r *messageReader) Close() error {
  1000. return nil
  1001. }
  1002. // ReadMessage is a helper method for getting a reader using NextReader and
  1003. // reading from that reader to a buffer.
  1004. func (c *Conn) ReadMessage() (messageType int, p []byte, err error) {
  1005. if c == nil {
  1006. return 0, nil, ErrNilConn
  1007. }
  1008. var r io.Reader
  1009. messageType, r, err = c.NextReader()
  1010. if err != nil {
  1011. return messageType, nil, err
  1012. }
  1013. p, err = io.ReadAll(r)
  1014. return messageType, p, err
  1015. }
  1016. // SetReadDeadline sets the read deadline on the underlying network connection.
  1017. // After a read has timed out, the websocket connection state is corrupt and
  1018. // all future reads will return an error. A zero value for t means reads will
  1019. // not time out.
  1020. func (c *Conn) SetReadDeadline(t time.Time) error {
  1021. if c == nil {
  1022. return ErrNilConn
  1023. }
  1024. if c.conn == nil {
  1025. return ErrNilNetConn
  1026. }
  1027. return c.conn.SetReadDeadline(t)
  1028. }
  1029. // SetReadLimit sets the maximum size in bytes for a message read from the peer. If a
  1030. // message exceeds the limit, the connection sends a close message to the peer
  1031. // and returns ErrReadLimit to the application.
  1032. func (c *Conn) SetReadLimit(limit int64) {
  1033. if c == nil {
  1034. return
  1035. }
  1036. c.readLimit = limit
  1037. }
  1038. // CloseHandler returns the current close handler
  1039. func (c *Conn) CloseHandler() func(code int, text string) error {
  1040. if c == nil {
  1041. return nil
  1042. }
  1043. return c.handleClose
  1044. }
  1045. // SetCloseHandler sets the handler for close messages received from the peer.
  1046. // The code argument to h is the received close code or CloseNoStatusReceived
  1047. // if the close message is empty. The default close handler sends a close
  1048. // message back to the peer.
  1049. //
  1050. // The handler function is called from the NextReader, ReadMessage and message
  1051. // reader Read methods. The application must read the connection to process
  1052. // close messages as described in the section on Control Messages above.
  1053. //
  1054. // The connection read methods return a CloseError when a close message is
  1055. // received. Most applications should handle close messages as part of their
  1056. // normal error handling. Applications should only set a close handler when the
  1057. // application must perform some action before sending a close message back to
  1058. // the peer.
  1059. func (c *Conn) SetCloseHandler(h func(code int, text string) error) {
  1060. if c == nil {
  1061. return
  1062. }
  1063. if h == nil {
  1064. h = func(code int, text string) error {
  1065. message := FormatCloseMessage(code, "")
  1066. c.WriteControl(CloseMessage, message, time.Now().Add(writeWait))
  1067. return nil
  1068. }
  1069. }
  1070. c.handleClose = h
  1071. }
  1072. // PingHandler returns the current ping handler
  1073. func (c *Conn) PingHandler() func(appData string) error {
  1074. if c == nil {
  1075. return nil
  1076. }
  1077. return c.handlePing
  1078. }
  1079. // SetPingHandler sets the handler for ping messages received from the peer.
  1080. // The appData argument to h is the PING message application data. The default
  1081. // ping handler sends a pong to the peer.
  1082. //
  1083. // The handler function is called from the NextReader, ReadMessage and message
  1084. // reader Read methods. The application must read the connection to process
  1085. // ping messages as described in the section on Control Messages above.
  1086. func (c *Conn) SetPingHandler(h func(appData string) error) {
  1087. if c == nil {
  1088. return
  1089. }
  1090. if h == nil {
  1091. h = func(message string) error {
  1092. err := c.WriteControl(PongMessage, []byte(message), time.Now().Add(writeWait))
  1093. if err == ErrCloseSent {
  1094. return nil
  1095. } else if e, ok := err.(net.Error); ok && e.Temporary() {
  1096. return nil
  1097. }
  1098. return err
  1099. }
  1100. }
  1101. c.handlePing = h
  1102. }
  1103. // PongHandler returns the current pong handler
  1104. func (c *Conn) PongHandler() func(appData string) error {
  1105. if c == nil {
  1106. return nil
  1107. }
  1108. return c.handlePong
  1109. }
  1110. // SetPongHandler sets the handler for pong messages received from the peer.
  1111. // The appData argument to h is the PONG message application data. The default
  1112. // pong handler does nothing.
  1113. //
  1114. // The handler function is called from the NextReader, ReadMessage and message
  1115. // reader Read methods. The application must read the connection to process
  1116. // pong messages as described in the section on Control Messages above.
  1117. func (c *Conn) SetPongHandler(h func(appData string) error) {
  1118. if c == nil {
  1119. return
  1120. }
  1121. if h == nil {
  1122. h = func(string) error { return nil }
  1123. }
  1124. c.handlePong = h
  1125. }
  1126. // NetConn returns the underlying connection that is wrapped by c.
  1127. // Note that writing to or reading from this connection directly will corrupt the
  1128. // WebSocket connection.
  1129. func (c *Conn) NetConn() net.Conn {
  1130. if c == nil {
  1131. return nil
  1132. }
  1133. return c.conn
  1134. }
  1135. // UnderlyingConn returns the internal net.Conn. This can be used to further
  1136. // modifications to connection specific flags.
  1137. // Deprecated: Use the NetConn method.
  1138. func (c *Conn) UnderlyingConn() net.Conn {
  1139. if c == nil {
  1140. return nil
  1141. }
  1142. return c.conn
  1143. }
  1144. // EnableWriteCompression enables and disables write compression of
  1145. // subsequent text and binary messages. This function is a noop if
  1146. // compression was not negotiated with the peer.
  1147. func (c *Conn) EnableWriteCompression(enable bool) {
  1148. if c == nil {
  1149. return
  1150. }
  1151. c.enableWriteCompression = enable
  1152. }
  1153. // SetCompressionLevel sets the flate compression level for subsequent text and
  1154. // binary messages. This function is a noop if compression was not negotiated
  1155. // with the peer. See the github.com/klauspost/compress/flate package for a description of
  1156. // compression levels.
  1157. func (c *Conn) SetCompressionLevel(level int) error {
  1158. if c == nil {
  1159. return ErrNilConn
  1160. }
  1161. if !isValidCompressionLevel(level) {
  1162. return errors.New("websocket: invalid compression level")
  1163. }
  1164. c.compressionLevel = level
  1165. return nil
  1166. }
  1167. // FormatCloseMessage formats closeCode and text as a WebSocket close message.
  1168. // An empty message is returned for code CloseNoStatusReceived.
  1169. func FormatCloseMessage(closeCode int, text string) []byte {
  1170. if closeCode == CloseNoStatusReceived {
  1171. // Return empty message because it's illegal to send
  1172. // CloseNoStatusReceived. Return non-nil value in case application
  1173. // checks for nil.
  1174. return []byte{}
  1175. }
  1176. buf := make([]byte, 2+len(text))
  1177. binary.BigEndian.PutUint16(buf, uint16(closeCode))
  1178. copy(buf[2:], text)
  1179. return buf
  1180. }