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| 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. |
| 4 |
| 5 class _WebSocketMessageType { |
| 6 static final int NONE = 0; |
| 7 static final int BINARY = 1; |
| 8 static final int TEXT = 2; |
| 9 static final int CLOSE = 3; |
| 10 } |
| 11 |
| 12 |
| 13 class _WebSocketOpcode { |
| 14 static final int CONTINUATION = 0; |
| 15 static final int TEXT = 1; |
| 16 static final int BINARY = 2; |
| 17 static final int RESERVED_3 = 3; |
| 18 static final int RESERVED_4 = 4; |
| 19 static final int RESERVED_5 = 5; |
| 20 static final int RESERVED_6 = 6; |
| 21 static final int RESERVED_7 = 7; |
| 22 static final int CLOSE = 8; |
| 23 static final int PING = 9; |
| 24 static final int PONG = 10; |
| 25 static final int RESERVED_B = 11; |
| 26 static final int RESERVED_C = 12; |
| 27 static final int RESERVED_D = 13; |
| 28 static final int RESERVED_E = 14; |
| 29 static final int RESERVED_F = 15; |
| 30 } |
| 31 |
| 32 /** |
| 33 * The web socket protocol processor handles the protocol byte stream |
| 34 * which is supplied through the [:update:] and [:closed:] |
| 35 * methods. As the protocol is processed the following callbacks are |
| 36 * called: |
| 37 * |
| 38 * [:onMessageStart:] |
| 39 * [:onMessageData:] |
| 40 * [:onMessageEnd:] |
| 41 * [:onClosed:] |
| 42 * [:onError:] |
| 43 * |
| 44 */ |
| 45 class _WebSocketProtocolProcessor { |
| 46 static final int START = 0; |
| 47 static final int LEN_FIRST = 1; |
| 48 static final int LEN_REST = 2; |
| 49 static final int MASK = 3; |
| 50 static final int PAYLOAD = 4; |
| 51 static final int CLOSED = 5; |
| 52 static final int FAILURE = 6; |
| 53 |
| 54 _WebSocketProtocolProcessor() { |
| 55 _reset(); |
| 56 _currentMessageType = _WebSocketMessageType.NONE; |
| 57 } |
| 58 |
| 59 /** |
| 60 * Process data received from the underlying communication channel. |
| 61 */ |
| 62 void update(List<int> buffer, int offset, int count) { |
| 63 int index = offset; |
| 64 int lastIndex = offset + count; |
| 65 try { |
| 66 if (_state == _State.CLOSED) { |
| 67 throw new WebSocketException("Data on closed connection"); |
| 68 } |
| 69 if (_state == _State.FAILURE) { |
| 70 throw new WebSocketException("Data on failed connection"); |
| 71 } |
| 72 while ((index < lastIndex) && _state != CLOSED && _state != FAILURE) { |
| 73 int byte = buffer[index]; |
| 74 switch (_state) { |
| 75 case START: |
| 76 _fin = (byte & 0x80) != 0; |
| 77 _opcode = (byte & 0xF); |
| 78 switch (_opcode) { |
| 79 case _WebSocketOpcode.CONTINUATION: |
| 80 if (_currentMessageType == _WebSocketMessageType.NONE) { |
| 81 throw new WebSocketException("Protocol error"); |
| 82 } |
| 83 break; |
| 84 |
| 85 case _WebSocketOpcode.TEXT: |
| 86 if (_currentMessageType != _WebSocketMessageType.NONE) { |
| 87 throw new WebSocketException("Protocol error"); |
| 88 } |
| 89 _currentMessageType = _WebSocketMessageType.TEXT; |
| 90 if (onMessageStart != null) { |
| 91 onMessageStart(_WebSocketMessageType.TEXT); |
| 92 } |
| 93 break; |
| 94 |
| 95 case _WebSocketOpcode.BINARY: |
| 96 if (_currentMessageType != _WebSocketMessageType.NONE) { |
| 97 throw new WebSocketException("Protocol error"); |
| 98 } |
| 99 _currentMessageType = _WebSocketMessageType.BINARY; |
| 100 if (onMessageStart != null) { |
| 101 onMessageStart(_WebSocketMessageType.BINARY); |
| 102 } |
| 103 break; |
| 104 |
| 105 case _WebSocketOpcode.CLOSE: |
| 106 if (_currentMessageType != _WebSocketMessageType.NONE) { |
| 107 throw new WebSocketException("Protocol error"); |
| 108 } |
| 109 _currentMessageType = _WebSocketMessageType.CLOSE; |
| 110 break; |
| 111 |
| 112 case _WebSocketOpcode.PING: |
| 113 // TODO(sgjesse): Handle ping. |
| 114 throw new UnsupportedOperationException("Web socket PING"); |
| 115 break; |
| 116 |
| 117 case _WebSocketOpcode.PONG: |
| 118 // TODO(sgjesse): Handle pong. |
| 119 throw new UnsupportedOperationException("Web socket PONG"); |
| 120 break; |
| 121 |
| 122 default: |
| 123 throw new WebSocketException("Protocol error"); |
| 124 break; |
| 125 } |
| 126 _state = LEN_FIRST; |
| 127 break; |
| 128 |
| 129 case LEN_FIRST: |
| 130 _masked = (byte & 0x80) != 0; |
| 131 _len = byte & 0x7F; |
| 132 if (_len < 126) { |
| 133 _lengthDone(); |
| 134 } else if (_len == 126) { |
| 135 _len = 0; |
| 136 _remainingLenBytes = 2; |
| 137 } else if (_len == 127) { |
| 138 _len = 0; |
| 139 _remainingLenBytes = 8; |
| 140 } |
| 141 break; |
| 142 |
| 143 case LEN_REST: |
| 144 _len = _len << 8 | byte; |
| 145 _remainingLenBytes--; |
| 146 if (_remainingLenBytes == 0) { |
| 147 _lengthDone(); |
| 148 } |
| 149 break; |
| 150 |
| 151 case MASK: |
| 152 _maskingKey = _maskingKey << 8 | byte; |
| 153 _remainingMaskingKeyBytes--; |
| 154 if (_remainingMaskingKeyBytes == 0) { |
| 155 _maskDone(); |
| 156 } |
| 157 break; |
| 158 |
| 159 case PAYLOAD: |
| 160 // The payload is not handled one byte at a time but in blocks. |
| 161 int payload; |
| 162 if (lastIndex - index >= _remainingPayloadBytes) { |
| 163 payload = lastIndex - index; |
| 164 } else { |
| 165 payload = _remainingPayloadBytes; |
| 166 } |
| 167 // Unmask payload if masked. |
| 168 if (_masked) { |
| 169 for (int i = 0; i < payload; i++) { |
| 170 int maskingByte = |
| 171 ((_maskingKey >> ((3 - _unmaskingIndex) * 8)) & 0xFF); |
| 172 buffer[index + i] = buffer[index + i] ^ maskingByte; |
| 173 _unmaskingIndex = (_unmaskingIndex + 1) % 4; |
| 174 } |
| 175 } |
| 176 |
| 177 switch (_currentMessageType) { |
| 178 case _WebSocketMessageType.NONE: |
| 179 throw new WebSocketException("Protocol error"); |
| 180 break; |
| 181 |
| 182 case _WebSocketMessageType.TEXT: |
| 183 case _WebSocketMessageType.BINARY: |
| 184 if (onMessageData != null) { |
| 185 onMessageData(buffer, index, payload); |
| 186 } |
| 187 _remainingPayloadBytes -= payload; |
| 188 index += payload; |
| 189 if (_fin) { |
| 190 _messageEnd(); |
| 191 } |
| 192 break; |
| 193 |
| 194 case _WebSocketMessageType.CLOSE: |
| 195 // Allocate a buffer for holding the close payload if any. |
| 196 if (_closePayload == null) { |
| 197 _closePayload = new List<int>(); |
| 198 } |
| 199 _closePayload.addAll(buffer.getRange(index, payload)); |
| 200 _remainingPayloadBytes -= payload; |
| 201 index += payload; |
| 202 if (_fin) { |
| 203 if (_remainingPayloadBytes != 0) { |
| 204 throw new WebSocketException("Protocol error"); |
| 205 } |
| 206 int status; |
| 207 String reason; |
| 208 if (_closePayload.length > 0) { |
| 209 if (_closePayload.length == 1) { |
| 210 throw new WebSocketException("Protocol error"); |
| 211 } |
| 212 status = _closePayload[0] << 8 | _closePayload[1]; |
| 213 if (_closePayload.length > 2) { |
| 214 var decoder = _StringDecoders.decoder(Encoding.UTF_8); |
| 215 decoder.write(_closePayload.getRange( |
| 216 2, _closePayload.length - 2)); |
| 217 reason = decoder.decoded; |
| 218 } |
| 219 } |
| 220 if (onClosed != null) onClosed(status, reason); |
| 221 _currentMessageType = _WebSocketMessageType.NONE; |
| 222 _state = CLOSED; |
| 223 } |
| 224 break; |
| 225 |
| 226 default: |
| 227 throw new WebSocketException("Protocol error"); |
| 228 break; |
| 229 } |
| 230 |
| 231 // Hack - as we always do index++ below. |
| 232 index--; |
| 233 break; |
| 234 |
| 235 default: |
| 236 throw new WebSocketException("Protocol error"); |
| 237 break; |
| 238 } |
| 239 |
| 240 // Move to the next byte. |
| 241 index++; |
| 242 } |
| 243 } catch (var e) { |
| 244 _reportError(e); |
| 245 } |
| 246 } |
| 247 |
| 248 /** |
| 249 * Indicate that the underlying communication channel has been closed. |
| 250 */ |
| 251 void closed() { |
| 252 if (_state == START || _state == CLOSED || _state == FAILURE) return; |
| 253 _reportError(new WebSocketException("Protocol error")); |
| 254 _state = CLOSED; |
| 255 } |
| 256 |
| 257 void _lengthDone() { |
| 258 if (_masked) { |
| 259 _state = MASK; |
| 260 _remainingMaskingKeyBytes = 4; |
| 261 } else { |
| 262 _remainingPayloadBytes = _len; |
| 263 _startPayload(); |
| 264 } |
| 265 } |
| 266 |
| 267 void _maskDone() { |
| 268 _remainingPayloadBytes = _len; |
| 269 _startPayload(); |
| 270 } |
| 271 |
| 272 void _startPayload() { |
| 273 // Check whether there is any payload. If not indicate empty message or |
| 274 if (_remainingPayloadBytes == 0) { |
| 275 if (_currentMessageType ==_WebSocketMessageType.CLOSE) { |
| 276 if (onClosed != null) onClosed(null, null); |
| 277 } else { |
| 278 _messageEnd(); |
| 279 } |
| 280 } else { |
| 281 _state = PAYLOAD; |
| 282 } |
| 283 } |
| 284 |
| 285 void _messageEnd() { |
| 286 if (_remainingPayloadBytes != 0) { |
| 287 throw new WebSocketException("Protocol error"); |
| 288 } |
| 289 if (onMessageEnd != null) onMessageEnd(); |
| 290 _currentMessageType = _WebSocketMessageType.NONE; |
| 291 _reset(); |
| 292 } |
| 293 |
| 294 void _reset() { |
| 295 _state = START; |
| 296 _fin = null; |
| 297 _opcode = null; |
| 298 _len = null; |
| 299 _masked = null; |
| 300 _maskingKey = 0; |
| 301 _remainingLenBytes = null; |
| 302 _remainingMaskingKeyBytes = null; |
| 303 _remainingPayloadBytes = null; |
| 304 _unmaskingIndex = 0; |
| 305 } |
| 306 |
| 307 void _reportError(e) { |
| 308 // Report the error through the error callback if any. Otherwise |
| 309 // throw the error. |
| 310 if (onError != null) { |
| 311 onError(e); |
| 312 _state = _State.FAILURE; |
| 313 } else { |
| 314 throw e; |
| 315 } |
| 316 } |
| 317 |
| 318 int _state; |
| 319 bool _fin; |
| 320 int _opcode; |
| 321 int _len; |
| 322 bool _masked; |
| 323 int _maskingKey; |
| 324 int _remainingLenBytes; |
| 325 int _remainingMaskingKeyBytes; |
| 326 int _remainingPayloadBytes; |
| 327 int _unmaskingIndex; |
| 328 |
| 329 int _currentMessageType; |
| 330 List<int> _closePayload; |
| 331 |
| 332 Function onMessageStart; |
| 333 Function onMessageData; |
| 334 Function onMessageEnd; |
| 335 Function onClosed; |
| 336 Function onError; |
| 337 } |
| 338 |
| 339 |
| 340 class _WebSocketConnection implements WebSocketConnection { |
| 341 _WebSocketConnection(Socket this._socket) { |
| 342 _WebSocketProtocolProcessor processor = new _WebSocketProtocolProcessor(); |
| 343 processor.onMessageStart = _onWebSocketMessageStart; |
| 344 processor.onMessageData = _onWebSocketMessageData; |
| 345 processor.onMessageEnd = _onWebSocketMessageEnd; |
| 346 processor.onClosed = _onWebSocketClosed; |
| 347 processor.onError = _onWebSocketError; |
| 348 |
| 349 _socket.onData = () { |
| 350 int available = _socket.available(); |
| 351 List<int> data = new List<int>(available); |
| 352 int read = _socket.readList(data, 0, available); |
| 353 processor.update(data, 0, read); |
| 354 }; |
| 355 _socket.onClosed = () { |
| 356 processor.closed(); |
| 357 if (_closeSent) { |
| 358 // Got socket close in response to close frame. Don't treat |
| 359 // that as an error. |
| 360 if (_closeTimer != null) _closeTimer.cancel(); |
| 361 } else { |
| 362 if (_onError != null) { |
| 363 _onError(new WebSocketException("Unexpected close")); |
| 364 } |
| 365 } |
| 366 _socket.close(); |
| 367 }; |
| 368 _socket.onError = (e) { |
| 369 if (_onError != null) _onError(e); |
| 370 _socket.close(); |
| 371 }; |
| 372 } |
| 373 |
| 374 void set onMessage(void callback(Object message)) { |
| 375 _onMessage = callback; |
| 376 } |
| 377 |
| 378 void set onClosed(void callback(int status, String reason)) { |
| 379 _onClosed = callback; |
| 380 } |
| 381 |
| 382 void set onError(void callback(e)) { |
| 383 _onError = callback; |
| 384 } |
| 385 |
| 386 send(Object message) { |
| 387 if (_closeSent) { |
| 388 throw new WebSocketException("Connection closed"); |
| 389 } |
| 390 List<int> data; |
| 391 int opcode; |
| 392 if (message != null) { |
| 393 if (message is String) { |
| 394 opcode = _WebSocketOpcode.TEXT; |
| 395 data = _StringEncoders.encoder(Encoding.UTF_8).encodeString(message); |
| 396 } else { |
| 397 if (message is !List<int>) { |
| 398 throw new IllegalArgumentException(message); |
| 399 } |
| 400 opcode = _WebSocketOpcode.BINARY; |
| 401 data = message; |
| 402 } |
| 403 } else { |
| 404 opcode = _WebSocketOpcode.TEXT; |
| 405 } |
| 406 _sendFrame(opcode, data); |
| 407 } |
| 408 |
| 409 close([int status, String reason]) { |
| 410 if (_closeSent) return; |
| 411 List<int> data; |
| 412 if (status != null) { |
| 413 data = new List<int>(); |
| 414 data.add((status >> 8) & 0xFF); |
| 415 data.add(status & 0xFF); |
| 416 if (reason != null) { |
| 417 data.addAll( |
| 418 _StringEncoders.encoder(Encoding.UTF_8).encodeString(reason)); |
| 419 } |
| 420 } |
| 421 _sendFrame(_WebSocketOpcode.CLOSE, data); |
| 422 |
| 423 if (_closeReceived) { |
| 424 // Close the socket when the close frame has been sent - if it |
| 425 // does not take too long. |
| 426 _socket.outputStream.onNoPendingWrites = () { |
| 427 if (_closeTimer != null) _closeTimer.cancel(); |
| 428 _socket.close(); |
| 429 }; |
| 430 _closeTimer = new Timer(5000, (t) { |
| 431 _socket.close(); |
| 432 }); |
| 433 } else { |
| 434 // Half close the socket and expect a close frame in response |
| 435 // before closing the socket. If a close frame does not arrive |
| 436 // within a reasonable amount of time just close the socket. |
| 437 _socket.close(true); |
| 438 _closeTimer = new Timer(5000, (t) { |
| 439 _socket.close(); |
| 440 }); |
| 441 } |
| 442 _closeSent = true; |
| 443 } |
| 444 |
| 445 _onWebSocketMessageStart(int type) { |
| 446 _currentMessageType = type; |
| 447 if (_currentMessageType == _WebSocketMessageType.TEXT) { |
| 448 _decoder = _StringDecoders.decoder(Encoding.UTF_8); |
| 449 } else { |
| 450 _outputStream = new ListOutputStream(); |
| 451 } |
| 452 } |
| 453 |
| 454 _onWebSocketMessageData(List<int> buffer, int offset, int count) { |
| 455 if (_currentMessageType == _WebSocketMessageType.TEXT) { |
| 456 _decoder.write(buffer.getRange(offset, count)); |
| 457 } else { |
| 458 _outputStream.write(buffer.getRange(offset, count)); |
| 459 } |
| 460 } |
| 461 |
| 462 _onWebSocketMessageEnd() { |
| 463 if (_onMessage != null) { |
| 464 if (_currentMessageType == _WebSocketMessageType.TEXT) { |
| 465 _onMessage(_decoder.decoded); |
| 466 } else { |
| 467 _onMessage(_outputStream.contents()); |
| 468 } |
| 469 } |
| 470 _decoder = null; |
| 471 _outputStream = null; |
| 472 } |
| 473 |
| 474 _onWebSocketClosed(int status, String reason) { |
| 475 _closeReceived = true; |
| 476 if (_onClosed != null) _onClosed(status, reason); |
| 477 if (_closeSent) { |
| 478 // Got close frame in response to close frame. Now close the socket. |
| 479 if (_closeTimer != null) _closeTimer.cancel(); |
| 480 _socket.close(); |
| 481 } else { |
| 482 close(status); |
| 483 } |
| 484 } |
| 485 |
| 486 _onWebSocketError(e) { |
| 487 if (_onError != null) _onError(e); |
| 488 _socket.close(); |
| 489 } |
| 490 |
| 491 _sendFrame(int opcode, List<int> data) { |
| 492 bool mask = false; // Masking not implemented for server. |
| 493 int dataLength = data == null ? 0 : data.length; |
| 494 // Determine the header size. |
| 495 int headerSize = (mask) ? 6 : 2; |
| 496 if (dataLength > 65535) { |
| 497 headerSize += 4; |
| 498 } else if (dataLength > 126) { |
| 499 headerSize += 2; |
| 500 } |
| 501 List<int> header = new List<int>(headerSize); |
| 502 int index = 0; |
| 503 // Set FIN and opcode. |
| 504 header[index++] = 0x80 | opcode; |
| 505 // Determine size and position of length field. |
| 506 int lengthBytes = 1; |
| 507 int firstLengthByte = 1; |
| 508 if (dataLength > 65535) { |
| 509 header[index++] = 127; |
| 510 lengthBytes = 8; |
| 511 } else if (dataLength > 126) { |
| 512 header[index++] = 126; |
| 513 lengthBytes = 2; |
| 514 } |
| 515 // Write the length in network byte order into the header. |
| 516 for (int i = 0; i < lengthBytes; i++) { |
| 517 header[index++] = dataLength >> (((lengthBytes - 1) - i) * 8) & 0xFF; |
| 518 } |
| 519 assert(index == headerSize); |
| 520 _socket.outputStream.write(header); |
| 521 if (data != null) { |
| 522 _socket.outputStream.write(data); |
| 523 } |
| 524 } |
| 525 |
| 526 Socket _socket; |
| 527 Timer _closeTimer; |
| 528 |
| 529 Function _onMessage; |
| 530 Function _onClosed; |
| 531 Function _onError; |
| 532 |
| 533 int _currentMessageType = _WebSocketMessageType.NONE; |
| 534 _StringDecoder _decoder; |
| 535 ListOutputStream _outputStream; |
| 536 bool _closeReceived = false; |
| 537 bool _closeSent = false; |
| 538 } |
| 539 |
| 540 |
| 541 class _WebSocketHandler implements WebSocketHandler { |
| 542 void onRequest(HttpRequest request, HttpResponse response) { |
| 543 // Check that this is a web socket upgrade. |
| 544 if (!_isWebSocketUpgrade(request)) { |
| 545 response.statusCode = HttpStatus.BAD_REQUEST; |
| 546 return; |
| 547 } |
| 548 |
| 549 // Send the upgrade response. |
| 550 response.statusCode = HttpStatus.SWITCHING_PROTOCOLS; |
| 551 response.headers.add(HttpHeaders.CONNECTION, "Upgrade"); |
| 552 response.headers.add(HttpHeaders.UPGRADE, "websocket"); |
| 553 String x = request.headers.value("Sec-WebSocket-Key"); |
| 554 String y = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11"; |
| 555 String z = _Base64._encode(_Sha1._hash("$x$y".charCodes())); |
| 556 response.headers.add("Sec-WebSocket-Accept", z); |
| 557 response.contentLength = 0; |
| 558 |
| 559 // Upgrade the connection and get the underlying socket. |
| 560 Socket socket = response.detachSocket(); |
| 561 WebSocketConnection conn = new _WebSocketConnection(socket); |
| 562 if (_onOpen != null) _onOpen(conn); |
| 563 } |
| 564 |
| 565 void set onOpen(callback(WebSocketConnection connection)) { |
| 566 _onOpen = callback; |
| 567 } |
| 568 |
| 569 bool _isWebSocketUpgrade(HttpRequest request) { |
| 570 if (request.headers[HttpHeaders.CONNECTION] == null) { |
| 571 return false; |
| 572 } |
| 573 bool isUpgrade = false; |
| 574 request.headers[HttpHeaders.CONNECTION].forEach((String value) { |
| 575 if (value.toLowerCase() == "upgrade") isUpgrade = true; |
| 576 }); |
| 577 if (!isUpgrade) return false; |
| 578 String upgrade = request.headers.value(HttpHeaders.UPGRADE); |
| 579 if (upgrade == null || upgrade.toLowerCase() != "websocket") { |
| 580 return false; |
| 581 } |
| 582 String version = request.headers.value("Sec-WebSocket-Version"); |
| 583 if (version == null || version != "13") { |
| 584 return false; |
| 585 } |
| 586 String key = request.headers.value("Sec-WebSocket-Key"); |
| 587 if (key == null) { |
| 588 return false; |
| 589 } |
| 590 return true; |
| 591 } |
| 592 |
| 593 Function _onOpen; |
| 594 } |
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