| OLD | NEW |
| 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file | 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 | 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. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 /** | 5 /** |
| 6 * SecureSocket provides a secure (SSL or TLS) client connection to a server. | 6 * SecureSocket provides a secure (SSL or TLS) client connection to a server. |
| 7 * The certificate provided by the server is checked | 7 * The certificate provided by the server is checked |
| 8 * using the certificate database provided in setCertificateDatabase. | 8 * using the certificate database provided in setCertificateDatabase. |
| 9 */ | 9 */ |
| 10 abstract class SecureSocket implements Socket { | 10 abstract class SecureSocket implements Socket { |
| 11 /** | 11 /** |
| 12 * Constructs a new secure client socket and connect it to the given | 12 * Constructs a new secure client socket and connect it to the given |
| 13 * host on the given port. The returned socket is not yet connected | 13 * host on the given port. The returned socket is not yet connected |
| 14 * but ready for registration of callbacks. | 14 * but ready for registration of callbacks. If sendClientCertificate is |
| 15 * set to true, the socket will send a client certificate if one is |
| 16 * requested by the server. If clientCertificate is the nickname of |
| 17 * a certificate in the certificate database, that certificate will be sent. |
| 18 * If clientCertificate is null, which is the usual use case, an |
| 19 * appropriate certificate will be searched for in the database and |
| 20 * sent automatically, based on what the server says it will accept. |
| 15 */ | 21 */ |
| 16 factory SecureSocket(String host, int port) => new _SecureSocket(host, port); | 22 factory SecureSocket(String host, |
| 23 int port, |
| 24 {bool sendClientCertificate: false, |
| 25 String certificateName}) { |
| 26 return new _SecureSocket(host, |
| 27 port, |
| 28 certificateName, |
| 29 is_server: false, |
| 30 sendClientCertificate: sendClientCertificate); |
| 31 } |
| 17 | 32 |
| 18 /** | 33 /** |
| 19 * Install a handler for unverifiable certificates. The handler can inspect | 34 * Install a handler for unverifiable certificates. The handler can inspect |
| 20 * the certificate, and decide (or let the user decide) whether to accept | 35 * the certificate, and decide (or let the user decide) whether to accept |
| 21 * the connection or not. The callback should return true | 36 * the connection or not. The callback should return true |
| 22 * to continue the SecureSocket connection. | 37 * to continue the SecureSocket connection. |
| 23 */ | 38 */ |
| 24 void set onBadCertificate(bool callback(X509Certificate certificate)); | 39 void set onBadCertificate(bool callback(X509Certificate certificate)); |
| 25 | 40 |
| 41 /** |
| 42 * Get the peerCertificate for a connected secure socket. For a server |
| 43 * socket, this will return the client certificate, or null, if no |
| 44 * client certificate was received. For a client socket, this |
| 45 * will return the server's certificate. |
| 46 */ |
| 47 X509Certificate get peerCertificate; |
| 48 |
| 26 /** | 49 /** |
| 27 * Initializes the NSS library with the path to a certificate database | 50 * Initializes the NSS library with the path to a certificate database |
| 28 * containing root certificates for verifying certificate paths on | 51 * containing root certificates for verifying certificate paths on |
| 29 * client connections, and server certificates to provide on server | 52 * client connections, and server certificates to provide on server |
| 30 * connections. The password argument should be used when creating | 53 * connections. The password argument should be used when creating |
| 31 * secure server sockets, to allow the private key of the server | 54 * secure server sockets, to allow the private key of the server |
| 32 * certificate to be fetched. If useBuiltinRoots is true (the default), | 55 * certificate to be fetched. If useBuiltinRoots is true (the default), |
| 33 * then a built-in set of root certificates for trusted certificate | 56 * then a built-in set of root certificates for trusted certificate |
| 34 * authorities is merged with the certificates in the database. | 57 * authorities is merged with the certificates in the database. |
| 35 * | 58 * |
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| 82 static final int CLOSED = 203; | 105 static final int CLOSED = 203; |
| 83 | 106 |
| 84 // Buffer identifiers. | 107 // Buffer identifiers. |
| 85 // These must agree with those in the native C++ implementation. | 108 // These must agree with those in the native C++ implementation. |
| 86 static final int READ_PLAINTEXT = 0; | 109 static final int READ_PLAINTEXT = 0; |
| 87 static final int WRITE_PLAINTEXT = 1; | 110 static final int WRITE_PLAINTEXT = 1; |
| 88 static final int READ_ENCRYPTED = 2; | 111 static final int READ_ENCRYPTED = 2; |
| 89 static final int WRITE_ENCRYPTED = 3; | 112 static final int WRITE_ENCRYPTED = 3; |
| 90 static final int NUM_BUFFERS = 4; | 113 static final int NUM_BUFFERS = 4; |
| 91 | 114 |
| 92 int _count = 0; | 115 _SecureSocket(String this.host, |
| 93 // Constructs a new secure client socket. | 116 int requestedPort, |
| 94 factory _SecureSocket(String host, int port) => | 117 String this.certificateName, |
| 95 new _SecureSocket.internal(host, port, false); | 118 {bool this.is_server, |
| 96 | 119 Socket this.socket, |
| 97 // Constructs a new secure server socket, with the named server certificate. | 120 bool this.requestClientCertificate: false, |
| 98 factory _SecureSocket.server(String host, | 121 bool this.requireClientCertificate: false, |
| 99 int port, | 122 bool this.sendClientCertificate: false}) |
| 100 Socket socket, | 123 : secureFilter = new _SecureFilter() { |
| 101 String certificateName) => | 124 // Throw an ArgumentError if any field is invalid. |
| 102 new _SecureSocket.internal(host, port, true, socket, certificateName); | 125 _verifyFields(); |
| 103 | 126 if (socket == null) { |
| 104 _SecureSocket.internal(String host, | 127 socket = new Socket(host, requestedPort); |
| 105 int port, | |
| 106 bool is_server, | |
| 107 [Socket socket, | |
| 108 String certificateName]) | |
| 109 : _host = host, | |
| 110 _port = port, | |
| 111 _socket = socket, | |
| 112 _certificateName = certificateName, | |
| 113 _is_server = is_server, | |
| 114 _secureFilter = new _SecureFilter() { | |
| 115 if (_socket == null) { | |
| 116 _socket = new Socket(host, port); | |
| 117 } | 128 } |
| 118 _socket.onConnect = _secureConnectHandler; | 129 socket.onConnect = _secureConnectHandler; |
| 119 _socket.onData = _secureDataHandler; | 130 socket.onData = _secureDataHandler; |
| 120 _socket.onClosed = _secureCloseHandler; | 131 socket.onClosed = _secureCloseHandler; |
| 121 _socket.onError = _secureErrorHandler; | 132 socket.onError = _secureErrorHandler; |
| 122 _secureFilter.init(); | 133 secureFilter.init(); |
| 123 _secureFilter.registerHandshakeCompleteCallback(_secureHandshakeCompleteHand
ler); | 134 secureFilter.registerHandshakeCompleteCallback( |
| 135 _secureHandshakeCompleteHandler); |
| 124 } | 136 } |
| 125 | 137 |
| 126 int get port => _socket.port; | 138 void _verifyFields() { |
| 139 if (host is! String) throw new ArgumentError( |
| 140 "SecureSocket constructor: host is not a String"); |
| 141 assert(is_server is bool); |
| 142 assert(socket == null || socket is Socket); |
| 143 if (certificateName != null && certificateName is! String) { |
| 144 throw new ArgumentError( |
| 145 "SecureSocket constructor: certificateName is not null or a String"); |
| 146 } |
| 147 if (certificateName == null && is_server) { |
| 148 throw new ArgumentError( |
| 149 "SecureSocket constructor: certificateName is null on a server"); |
| 150 } |
| 151 if (requestClientCertificate is! bool) { |
| 152 throw new ArgumentError( |
| 153 "SecureSocket constructor: requestClientCertificate is not a bool"); |
| 154 } |
| 155 if (requireClientCertificate is! bool) { |
| 156 throw new ArgumentError( |
| 157 "SecureSocket constructor: requireClientCertificate is not a bool"); |
| 158 } |
| 159 if (sendClientCertificate is! bool) { |
| 160 throw new ArgumentError( |
| 161 "SecureSocket constructor: sendClientCertificate is not a bool"); |
| 162 } |
| 163 } |
| 127 | 164 |
| 128 String get remoteHost => _socket.remoteHost; | 165 int get port => socket.port; |
| 129 | 166 |
| 130 int get remotePort => _socket.remotePort; | 167 String get remoteHost => socket.remoteHost; |
| 168 |
| 169 int get remotePort => socket.remotePort; |
| 131 | 170 |
| 132 void set onClosed(void callback()) { | 171 void set onClosed(void callback()) { |
| 133 if (_inputStream != null && callback != null) { | 172 if (_inputStream != null && callback != null) { |
| 134 throw new StreamException( | 173 throw new StreamException( |
| 135 "Cannot set close handler when input stream is used"); | 174 "Cannot set close handler when input stream is used"); |
| 136 } | 175 } |
| 137 _onClosed = callback; | 176 _onClosed = callback; |
| 138 } | 177 } |
| 139 | 178 |
| 140 void set _onClosed(void callback()) { | 179 void set _onClosed(void callback()) { |
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| 173 if (_outputStream != null && callback != null) { | 212 if (_outputStream != null && callback != null) { |
| 174 throw new StreamException( | 213 throw new StreamException( |
| 175 "Cannot set write handler when output stream is used"); | 214 "Cannot set write handler when output stream is used"); |
| 176 } | 215 } |
| 177 _onWrite = callback; | 216 _onWrite = callback; |
| 178 } | 217 } |
| 179 | 218 |
| 180 void set _onWrite(void callback()) { | 219 void set _onWrite(void callback()) { |
| 181 _socketWriteHandler = callback; | 220 _socketWriteHandler = callback; |
| 182 // Reset the one-shot onWrite handler. | 221 // Reset the one-shot onWrite handler. |
| 183 _socket.onWrite = _secureWriteHandler; | 222 socket.onWrite = _secureWriteHandler; |
| 184 } | 223 } |
| 185 | 224 |
| 186 void set onBadCertificate(bool callback(X509Certificate certificate)) { | 225 void set onBadCertificate(bool callback(X509Certificate certificate)) { |
| 187 if (callback is! Function && callback != null) { | 226 if (callback is! Function && callback != null) { |
| 188 throw new SocketIOException( | 227 throw new SocketIOException( |
| 189 "Callback provided to onBadCertificate is not a function or null"); | 228 "Callback provided to onBadCertificate is not a function or null"); |
| 190 } | 229 } |
| 191 _secureFilter.registerBadCertificateCallback(callback); | 230 secureFilter.registerBadCertificateCallback(callback); |
| 192 } | 231 } |
| 193 | 232 |
| 194 InputStream get inputStream { | 233 InputStream get inputStream { |
| 195 if (_inputStream == null) { | 234 if (_inputStream == null) { |
| 196 if (_socketDataHandler != null || _socketCloseHandler != null) { | 235 if (_socketDataHandler != null || _socketCloseHandler != null) { |
| 197 throw new StreamException( | 236 throw new StreamException( |
| 198 "Cannot get input stream when socket handlers are used"); | 237 "Cannot get input stream when socket handlers are used"); |
| 199 } | 238 } |
| 200 _inputStream = new _SocketInputStream(this); | 239 _inputStream = new _SocketInputStream(this); |
| 201 } | 240 } |
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| 216 int available() { | 255 int available() { |
| 217 throw new UnimplementedError("SecureSocket.available not implemented yet"); | 256 throw new UnimplementedError("SecureSocket.available not implemented yet"); |
| 218 } | 257 } |
| 219 | 258 |
| 220 void close([bool halfClose = false]) { | 259 void close([bool halfClose = false]) { |
| 221 if (_status == CLOSED) return; | 260 if (_status == CLOSED) return; |
| 222 if (halfClose) { | 261 if (halfClose) { |
| 223 _closedWrite = true; | 262 _closedWrite = true; |
| 224 _writeEncryptedData(); | 263 _writeEncryptedData(); |
| 225 if (_filterWriteEmpty) { | 264 if (_filterWriteEmpty) { |
| 226 _socket.close(true); | 265 socket.close(true); |
| 227 _socketClosedWrite = true; | 266 _socketClosedWrite = true; |
| 228 if (_closedRead) { | 267 if (_closedRead) { |
| 229 close(false); | 268 close(false); |
| 230 } | 269 } |
| 231 } | 270 } |
| 232 } else { | 271 } else { |
| 233 _closedWrite = true; | 272 _closedWrite = true; |
| 234 _closedRead = true; | 273 _closedRead = true; |
| 235 _socket.close(false); | 274 socket.close(false); |
| 236 _socketClosedWrite = true; | 275 _socketClosedWrite = true; |
| 237 _socketClosedRead = true; | 276 _socketClosedRead = true; |
| 238 _secureFilter.destroy(); | 277 secureFilter.destroy(); |
| 239 _secureFilter = null; | 278 secureFilter = null; |
| 240 if (scheduledDataEvent != null) { | 279 if (scheduledDataEvent != null) { |
| 241 scheduledDataEvent.cancel(); | 280 scheduledDataEvent.cancel(); |
| 242 } | 281 } |
| 243 _status = CLOSED; | 282 _status = CLOSED; |
| 244 } | 283 } |
| 245 } | 284 } |
| 246 | 285 |
| 247 void _closeWrite() => close(true); | 286 void _closeWrite() => close(true); |
| 248 | 287 |
| 249 List<int> read([int len]) { | 288 List<int> read([int len]) { |
| 250 if (_closedRead) { | 289 if (_closedRead) { |
| 251 throw new SocketIOException("Reading from a closed socket"); | 290 throw new SocketIOException("Reading from a closed socket"); |
| 252 } | 291 } |
| 253 if (_status != CONNECTED) { | 292 if (_status != CONNECTED) { |
| 254 return new List<int>(0); | 293 return new List<int>(0); |
| 255 } | 294 } |
| 256 var buffer = _secureFilter.buffers[READ_PLAINTEXT]; | 295 var buffer = secureFilter.buffers[READ_PLAINTEXT]; |
| 257 _readEncryptedData(); | 296 _readEncryptedData(); |
| 258 int toRead = buffer.length; | 297 int toRead = buffer.length; |
| 259 if (len != null) { | 298 if (len != null) { |
| 260 if (len is! int || len < 0) { | 299 if (len is! int || len < 0) { |
| 261 throw new ArgumentError( | 300 throw new ArgumentError( |
| 262 "Invalid len parameter in SecureSocket.read (len: $len)"); | 301 "Invalid len parameter in SecureSocket.read (len: $len)"); |
| 263 } | 302 } |
| 264 if (len < toRead) { | 303 if (len < toRead) { |
| 265 toRead = len; | 304 toRead = len; |
| 266 } | 305 } |
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| 277 } | 316 } |
| 278 if (offset < 0 || bytes < 0 || offset + bytes > data.length) { | 317 if (offset < 0 || bytes < 0 || offset + bytes > data.length) { |
| 279 throw new ArgumentError( | 318 throw new ArgumentError( |
| 280 "Invalid offset or bytes in SecureSocket.readList"); | 319 "Invalid offset or bytes in SecureSocket.readList"); |
| 281 } | 320 } |
| 282 if (_status != CONNECTED && _status != CLOSED) { | 321 if (_status != CONNECTED && _status != CLOSED) { |
| 283 return 0; | 322 return 0; |
| 284 } | 323 } |
| 285 | 324 |
| 286 int bytesRead = 0; | 325 int bytesRead = 0; |
| 287 var buffer = _secureFilter.buffers[READ_PLAINTEXT]; | 326 var buffer = secureFilter.buffers[READ_PLAINTEXT]; |
| 288 // TODO(whesse): Currently this fails if the if is turned into a while loop. | 327 // TODO(whesse): Currently this fails if the if is turned into a while loop. |
| 289 // Fix it so that it can loop and read more than one buffer's worth of data. | 328 // Fix it so that it can loop and read more than one buffer's worth of data. |
| 290 if (bytes > bytesRead) { | 329 if (bytes > bytesRead) { |
| 291 _readEncryptedData(); | 330 _readEncryptedData(); |
| 292 if (buffer.length > 0) { | 331 if (buffer.length > 0) { |
| 293 int toRead = min(bytes - bytesRead, buffer.length); | 332 int toRead = min(bytes - bytesRead, buffer.length); |
| 294 data.setRange(offset, toRead, buffer.data, buffer.start); | 333 data.setRange(offset, toRead, buffer.data, buffer.start); |
| 295 buffer.advanceStart(toRead); | 334 buffer.advanceStart(toRead); |
| 296 bytesRead += toRead; | 335 bytesRead += toRead; |
| 297 offset += toRead; | 336 offset += toRead; |
| 298 } | 337 } |
| 299 } | 338 } |
| 300 | 339 |
| 301 _setHandlersAfterRead(); | 340 _setHandlersAfterRead(); |
| 302 return bytesRead; | 341 return bytesRead; |
| 303 } | 342 } |
| 304 | 343 |
| 305 // Write the data to the socket, and flush it as much as possible | 344 // Write the data to the socket, and flush it as much as possible |
| 306 // until it would block. If the write would block, _writeEncryptedData sets | 345 // until it would block. If the write would block, _writeEncryptedData sets |
| 307 // up handlers to flush the pipeline when possible. | 346 // up handlers to flush the pipeline when possible. |
| 308 int writeList(List<int> data, int offset, int bytes) { | 347 int writeList(List<int> data, int offset, int bytes) { |
| 309 if (_closedWrite) { | 348 if (_closedWrite) { |
| 310 throw new SocketIOException("Writing to a closed socket"); | 349 throw new SocketIOException("Writing to a closed socket"); |
| 311 } | 350 } |
| 312 if (_status != CONNECTED) return 0; | 351 if (_status != CONNECTED) return 0; |
| 313 var buffer = _secureFilter.buffers[WRITE_PLAINTEXT]; | 352 var buffer = secureFilter.buffers[WRITE_PLAINTEXT]; |
| 314 if (bytes > buffer.free) { | 353 if (bytes > buffer.free) { |
| 315 bytes = buffer.free; | 354 bytes = buffer.free; |
| 316 } | 355 } |
| 317 if (bytes > 0) { | 356 if (bytes > 0) { |
| 318 buffer.data.setRange(buffer.start + buffer.length, bytes, data, offset); | 357 buffer.data.setRange(buffer.start + buffer.length, bytes, data, offset); |
| 319 buffer.length += bytes; | 358 buffer.length += bytes; |
| 320 } | 359 } |
| 321 _writeEncryptedData(); // Tries to flush all pipeline stages. | 360 _writeEncryptedData(); // Tries to flush all pipeline stages. |
| 322 return bytes; | 361 return bytes; |
| 323 } | 362 } |
| 324 | 363 |
| 364 X509Certificate get peerCertificate => secureFilter.peerCertificate; |
| 365 |
| 325 void _secureConnectHandler() { | 366 void _secureConnectHandler() { |
| 326 _connectPending = true; | 367 _connectPending = true; |
| 327 _secureFilter.connect(_host, _port, _is_server, _certificateName); | 368 secureFilter.connect(host, |
| 369 port, |
| 370 is_server, |
| 371 certificateName, |
| 372 requestClientCertificate || requireClientCertificate, |
| 373 requireClientCertificate, |
| 374 sendClientCertificate); |
| 328 _status = HANDSHAKE; | 375 _status = HANDSHAKE; |
| 329 _secureHandshake(); | 376 _secureHandshake(); |
| 330 } | 377 } |
| 331 | 378 |
| 332 void _secureWriteHandler() { | 379 void _secureWriteHandler() { |
| 333 _writeEncryptedData(); | 380 _writeEncryptedData(); |
| 334 if (_filterWriteEmpty && _closedWrite && !_socketClosedWrite) { | 381 if (_filterWriteEmpty && _closedWrite && !_socketClosedWrite) { |
| 335 close(true); | 382 close(true); |
| 336 } | 383 } |
| 337 if (_status == HANDSHAKE) { | 384 if (_status == HANDSHAKE) { |
| 338 _secureHandshake(); | 385 _secureHandshake(); |
| 339 } else if (_status == CONNECTED && | 386 } else if (_status == CONNECTED && |
| 340 _socketWriteHandler != null && | 387 _socketWriteHandler != null && |
| 341 _secureFilter.buffers[WRITE_PLAINTEXT].free > 0) { | 388 secureFilter.buffers[WRITE_PLAINTEXT].free > 0) { |
| 342 // We must be able to set onWrite from the onWrite callback. | 389 // We must be able to set onWrite from the onWrite callback. |
| 343 var handler = _socketWriteHandler; | 390 var handler = _socketWriteHandler; |
| 344 // Reset the one-shot handler. | 391 // Reset the one-shot handler. |
| 345 _socketWriteHandler = null; | 392 _socketWriteHandler = null; |
| 346 handler(); | 393 handler(); |
| 347 } | 394 } |
| 348 } | 395 } |
| 349 | 396 |
| 350 void _secureDataHandler() { | 397 void _secureDataHandler() { |
| 351 if (_status == HANDSHAKE) { | 398 if (_status == HANDSHAKE) { |
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| 413 _socketCloseHandler(); | 460 _socketCloseHandler(); |
| 414 } | 461 } |
| 415 if (_socketClosedWrite) { | 462 if (_socketClosedWrite) { |
| 416 close(false); | 463 close(false); |
| 417 } | 464 } |
| 418 } | 465 } |
| 419 } | 466 } |
| 420 | 467 |
| 421 void _secureHandshake() { | 468 void _secureHandshake() { |
| 422 _readEncryptedData(); | 469 _readEncryptedData(); |
| 423 _secureFilter.handshake(); | 470 secureFilter.handshake(); |
| 424 _writeEncryptedData(); | 471 _writeEncryptedData(); |
| 425 if (_secureFilter.buffers[WRITE_ENCRYPTED].length > 0) { | 472 if (secureFilter.buffers[WRITE_ENCRYPTED].length > 0) { |
| 426 _socket.onWrite = _secureWriteHandler; | 473 socket.onWrite = _secureWriteHandler; |
| 427 } | 474 } |
| 428 } | 475 } |
| 429 | 476 |
| 430 void _secureHandshakeCompleteHandler() { | 477 void _secureHandshakeCompleteHandler() { |
| 431 _status = CONNECTED; | 478 _status = CONNECTED; |
| 432 if (_connectPending && _socketConnectHandler != null) { | 479 if (_connectPending && _socketConnectHandler != null) { |
| 433 _connectPending = false; | 480 _connectPending = false; |
| 434 _socketConnectHandler(); | 481 _socketConnectHandler(); |
| 435 } | 482 } |
| 436 if (_socketWriteHandler != null) { | 483 if (_socketWriteHandler != null) { |
| 437 _socket.onWrite = _secureWriteHandler; | 484 socket.onWrite = _secureWriteHandler; |
| 438 } | 485 } |
| 439 } | 486 } |
| 440 | 487 |
| 441 // True if the underlying socket is closed, the filter has been emptied of | 488 // True if the underlying socket is closed, the filter has been emptied of |
| 442 // all data, and the close event has been fired. | 489 // all data, and the close event has been fired. |
| 443 get _closed => _socketClosed; | 490 get _closed => _socketClosed; |
| 444 | 491 |
| 445 void _readEncryptedData() { | 492 void _readEncryptedData() { |
| 446 // Read from the socket, and push it through the filter as far as | 493 // Read from the socket, and push it through the filter as far as |
| 447 // possible. | 494 // possible. |
| 448 var encrypted = _secureFilter.buffers[READ_ENCRYPTED]; | 495 var encrypted = secureFilter.buffers[READ_ENCRYPTED]; |
| 449 var plaintext = _secureFilter.buffers[READ_PLAINTEXT]; | 496 var plaintext = secureFilter.buffers[READ_PLAINTEXT]; |
| 450 bool progress = true; | 497 bool progress = true; |
| 451 while (progress) { | 498 while (progress) { |
| 452 progress = false; | 499 progress = false; |
| 453 // Do not try to read plaintext from the filter while handshaking. | 500 // Do not try to read plaintext from the filter while handshaking. |
| 454 if ((_status == CONNECTED) && plaintext.free > 0) { | 501 if ((_status == CONNECTED) && plaintext.free > 0) { |
| 455 int bytes = _secureFilter.processBuffer(READ_PLAINTEXT); | 502 int bytes = secureFilter.processBuffer(READ_PLAINTEXT); |
| 456 if (bytes > 0) { | 503 if (bytes > 0) { |
| 457 plaintext.length += bytes; | 504 plaintext.length += bytes; |
| 458 progress = true; | 505 progress = true; |
| 459 } | 506 } |
| 460 } | 507 } |
| 461 if (encrypted.length > 0) { | 508 if (encrypted.length > 0) { |
| 462 int bytes = _secureFilter.processBuffer(READ_ENCRYPTED); | 509 int bytes = secureFilter.processBuffer(READ_ENCRYPTED); |
| 463 if (bytes > 0) { | 510 if (bytes > 0) { |
| 464 encrypted.advanceStart(bytes); | 511 encrypted.advanceStart(bytes); |
| 465 progress = true; | 512 progress = true; |
| 466 } | 513 } |
| 467 } | 514 } |
| 468 if (!_socketClosedRead) { | 515 if (!_socketClosedRead) { |
| 469 int bytes = _socket.readList(encrypted.data, | 516 int bytes = socket.readList(encrypted.data, |
| 470 encrypted.start + encrypted.length, | 517 encrypted.start + encrypted.length, |
| 471 encrypted.free); | 518 encrypted.free); |
| 472 if (bytes > 0) { | 519 if (bytes > 0) { |
| 473 encrypted.length += bytes; | 520 encrypted.length += bytes; |
| 474 progress = true; | 521 progress = true; |
| 475 } | 522 } |
| 476 } | 523 } |
| 477 } | 524 } |
| 478 // If there is any data in any stages of the filter, there should | 525 // If there is any data in any stages of the filter, there should |
| 479 // be data in the plaintext buffer after this process. | 526 // be data in the plaintext buffer after this process. |
| 480 // TODO(whesse): Verify that this is true, and there can be no | 527 // TODO(whesse): Verify that this is true, and there can be no |
| 481 // partial encrypted block stuck in the secureFilter. | 528 // partial encrypted block stuck in the secureFilter. |
| 482 _filterReadEmpty = (plaintext.length == 0); | 529 _filterReadEmpty = (plaintext.length == 0); |
| 483 } | 530 } |
| 484 | 531 |
| 485 void _writeEncryptedData() { | 532 void _writeEncryptedData() { |
| 486 if (_socketClosedWrite) return; | 533 if (_socketClosedWrite) return; |
| 487 var encrypted = _secureFilter.buffers[WRITE_ENCRYPTED]; | 534 var encrypted = secureFilter.buffers[WRITE_ENCRYPTED]; |
| 488 var plaintext = _secureFilter.buffers[WRITE_PLAINTEXT]; | 535 var plaintext = secureFilter.buffers[WRITE_PLAINTEXT]; |
| 489 while (true) { | 536 while (true) { |
| 490 if (encrypted.length > 0) { | 537 if (encrypted.length > 0) { |
| 491 // Write from the filter to the socket. | 538 // Write from the filter to the socket. |
| 492 int bytes = _socket.writeList(encrypted.data, | 539 int bytes = socket.writeList(encrypted.data, |
| 493 encrypted.start, | 540 encrypted.start, |
| 494 encrypted.length); | 541 encrypted.length); |
| 495 if (bytes == 0) { | 542 if (bytes == 0) { |
| 496 // The socket has blocked while we have data to write. | 543 // The socket has blocked while we have data to write. |
| 497 // We must be notified when it becomes unblocked. | 544 // We must be notified when it becomes unblocked. |
| 498 _socket.onWrite = _secureWriteHandler; | 545 socket.onWrite = _secureWriteHandler; |
| 499 _filterWriteEmpty = false; | 546 _filterWriteEmpty = false; |
| 500 break; | 547 break; |
| 501 } | 548 } |
| 502 encrypted.advanceStart(bytes); | 549 encrypted.advanceStart(bytes); |
| 503 } else { | 550 } else { |
| 504 var plaintext = _secureFilter.buffers[WRITE_PLAINTEXT]; | 551 var plaintext = secureFilter.buffers[WRITE_PLAINTEXT]; |
| 505 if (plaintext.length > 0) { | 552 if (plaintext.length > 0) { |
| 506 int plaintext_bytes = _secureFilter.processBuffer(WRITE_PLAINTEXT); | 553 int plaintext_bytes = secureFilter.processBuffer(WRITE_PLAINTEXT); |
| 507 plaintext.advanceStart(plaintext_bytes); | 554 plaintext.advanceStart(plaintext_bytes); |
| 508 } | 555 } |
| 509 int bytes = _secureFilter.processBuffer(WRITE_ENCRYPTED); | 556 int bytes = secureFilter.processBuffer(WRITE_ENCRYPTED); |
| 510 if (bytes <= 0) { | 557 if (bytes <= 0) { |
| 511 // We know the WRITE_ENCRYPTED buffer is empty, and the | 558 // We know the WRITE_ENCRYPTED buffer is empty, and the |
| 512 // filter wrote zero bytes to it, so the filter must be empty. | 559 // filter wrote zero bytes to it, so the filter must be empty. |
| 513 // Also, the WRITE_PLAINTEXT buffer must have been empty, or | 560 // Also, the WRITE_PLAINTEXT buffer must have been empty, or |
| 514 // it would have written to the filter. | 561 // it would have written to the filter. |
| 515 // TODO(whesse): Verify that the filter works this way. | 562 // TODO(whesse): Verify that the filter works this way. |
| 516 _filterWriteEmpty = true; | 563 _filterWriteEmpty = true; |
| 517 break; | 564 break; |
| 518 } | 565 } |
| 519 encrypted.length += bytes; | 566 encrypted.length += bytes; |
| (...skipping 30 matching lines...) Expand all Loading... |
| 550 // This can't be an else clause: the value of _filterReadEmpty changes. | 597 // This can't be an else clause: the value of _filterReadEmpty changes. |
| 551 // This must be asynchronous, because we are in a read or readList call. | 598 // This must be asynchronous, because we are in a read or readList call. |
| 552 new Timer(0, (_) => _secureCloseHandler()); | 599 new Timer(0, (_) => _secureCloseHandler()); |
| 553 } | 600 } |
| 554 } | 601 } |
| 555 } | 602 } |
| 556 | 603 |
| 557 bool get _socketClosed => _closedRead; | 604 bool get _socketClosed => _closedRead; |
| 558 | 605 |
| 559 // _SecureSocket cannot extend _Socket and use _Socket's factory constructor. | 606 // _SecureSocket cannot extend _Socket and use _Socket's factory constructor. |
| 560 Socket _socket; | 607 Socket socket; |
| 561 String _host; | 608 final String host; |
| 562 int _port; | 609 final bool is_server; |
| 563 bool _is_server; | 610 final String certificateName; |
| 564 String _certificateName; | 611 final bool requestClientCertificate; |
| 612 final bool requireClientCertificate; |
| 613 final bool sendClientCertificate; |
| 565 | 614 |
| 566 var _status = NOT_CONNECTED; | 615 var _status = NOT_CONNECTED; |
| 567 bool _socketClosedRead = false; // The network socket is closed for reading. | 616 bool _socketClosedRead = false; // The network socket is closed for reading. |
| 568 bool _socketClosedWrite = false; // The network socket is closed for writing. | 617 bool _socketClosedWrite = false; // The network socket is closed for writing. |
| 569 bool _closedRead = false; // The secure socket has fired an onClosed event. | 618 bool _closedRead = false; // The secure socket has fired an onClosed event. |
| 570 bool _closedWrite = false; // The secure socket has been closed for writing. | 619 bool _closedWrite = false; // The secure socket has been closed for writing. |
| 571 bool _filterReadEmpty = true; // There is no buffered data to read. | 620 bool _filterReadEmpty = true; // There is no buffered data to read. |
| 572 bool _filterWriteEmpty = true; // There is no buffered data to be written. | 621 bool _filterWriteEmpty = true; // There is no buffered data to be written. |
| 573 _SocketInputStream _inputStream; | 622 _SocketInputStream _inputStream; |
| 574 _SocketOutputStream _outputStream; | 623 _SocketOutputStream _outputStream; |
| 575 bool _connectPending = false; | 624 bool _connectPending = false; |
| 576 Function _socketConnectHandler; | 625 Function _socketConnectHandler; |
| 577 Function _socketWriteHandler; | 626 Function _socketWriteHandler; |
| 578 Function _socketDataHandler; | 627 Function _socketDataHandler; |
| 579 Function _socketErrorHandler; | 628 Function _socketErrorHandler; |
| 580 Function _socketCloseHandler; | 629 Function _socketCloseHandler; |
| 581 Timer scheduledDataEvent; | 630 Timer scheduledDataEvent; |
| 582 | 631 |
| 583 _SecureFilter _secureFilter; | 632 _SecureFilter secureFilter; |
| 584 } | 633 } |
| 585 | 634 |
| 586 | 635 |
| 587 class _ExternalBuffer { | 636 class _ExternalBuffer { |
| 588 static final int SIZE = 8 * 1024; | 637 static final int SIZE = 8 * 1024; |
| 589 _ExternalBuffer() : start = 0, length = 0; | 638 _ExternalBuffer() : start = 0, length = 0; |
| 590 | 639 |
| 591 // TODO(whesse): Consider making this a circular buffer. Only if it helps. | 640 // TODO(whesse): Consider making this a circular buffer. Only if it helps. |
| 592 void advanceStart(int numBytes) { | 641 void advanceStart(int numBytes) { |
| 593 start += numBytes; | 642 start += numBytes; |
| (...skipping 10 matching lines...) Expand all Loading... |
| 604 int length; | 653 int length; |
| 605 } | 654 } |
| 606 | 655 |
| 607 | 656 |
| 608 abstract class _SecureFilter { | 657 abstract class _SecureFilter { |
| 609 external factory _SecureFilter(); | 658 external factory _SecureFilter(); |
| 610 | 659 |
| 611 void connect(String hostName, | 660 void connect(String hostName, |
| 612 int port, | 661 int port, |
| 613 bool is_server, | 662 bool is_server, |
| 614 String certificateName); | 663 String certificateName, |
| 664 bool requestClientCertificate, |
| 665 bool requireClientCertificate, |
| 666 bool sendClientCertificate); |
| 615 void destroy(); | 667 void destroy(); |
| 616 void handshake(); | 668 void handshake(); |
| 617 void init(); | 669 void init(); |
| 670 X509Certificate get peerCertificate; |
| 618 int processBuffer(int bufferIndex); | 671 int processBuffer(int bufferIndex); |
| 619 void registerBadCertificateCallback(Function callback); | 672 void registerBadCertificateCallback(Function callback); |
| 620 void registerHandshakeCompleteCallback(Function handshakeCompleteHandler); | 673 void registerHandshakeCompleteCallback(Function handshakeCompleteHandler); |
| 621 | 674 |
| 622 List<_ExternalBuffer> get buffers; | 675 List<_ExternalBuffer> get buffers; |
| 623 } | 676 } |
| OLD | NEW |