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Side by Side Diff: net/socket/socks5_client_socket.cc

Issue 10546162: NetLogEventParameter to Callback refactoring 9. (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src/
Patch Set: Update comment Created 8 years, 6 months ago
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1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "net/socket/socks5_client_socket.h" 5 #include "net/socket/socks5_client_socket.h"
6 6
7 #include "base/basictypes.h" 7 #include "base/basictypes.h"
8 #include "base/compiler_specific.h" 8 #include "base/compiler_specific.h"
9 #include "base/debug/trace_event.h" 9 #include "base/debug/trace_event.h"
10 #include "base/format_macros.h" 10 #include "base/format_macros.h"
(...skipping 56 matching lines...) Expand 10 before | Expand all | Expand 10 after
67 int SOCKS5ClientSocket::Connect(const CompletionCallback& callback) { 67 int SOCKS5ClientSocket::Connect(const CompletionCallback& callback) {
68 DCHECK(transport_.get()); 68 DCHECK(transport_.get());
69 DCHECK(transport_->socket()); 69 DCHECK(transport_->socket());
70 DCHECK_EQ(STATE_NONE, next_state_); 70 DCHECK_EQ(STATE_NONE, next_state_);
71 DCHECK(user_callback_.is_null()); 71 DCHECK(user_callback_.is_null());
72 72
73 // If already connected, then just return OK. 73 // If already connected, then just return OK.
74 if (completed_handshake_) 74 if (completed_handshake_)
75 return OK; 75 return OK;
76 76
77 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_CONNECT, NULL); 77 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_CONNECT);
78 78
79 next_state_ = STATE_GREET_WRITE; 79 next_state_ = STATE_GREET_WRITE;
80 buffer_.clear(); 80 buffer_.clear();
81 81
82 int rv = DoLoop(OK); 82 int rv = DoLoop(OK);
83 if (rv == ERR_IO_PENDING) { 83 if (rv == ERR_IO_PENDING) {
84 user_callback_ = callback; 84 user_callback_ = callback;
85 } else { 85 } else {
86 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_CONNECT, rv); 86 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_CONNECT, rv);
87 } 87 }
(...skipping 116 matching lines...) Expand 10 before | Expand all | Expand 10 after
204 // clear user_callback_ up front. 204 // clear user_callback_ up front.
205 CompletionCallback c = user_callback_; 205 CompletionCallback c = user_callback_;
206 user_callback_.Reset(); 206 user_callback_.Reset();
207 c.Run(result); 207 c.Run(result);
208 } 208 }
209 209
210 void SOCKS5ClientSocket::OnIOComplete(int result) { 210 void SOCKS5ClientSocket::OnIOComplete(int result) {
211 DCHECK_NE(STATE_NONE, next_state_); 211 DCHECK_NE(STATE_NONE, next_state_);
212 int rv = DoLoop(result); 212 int rv = DoLoop(result);
213 if (rv != ERR_IO_PENDING) { 213 if (rv != ERR_IO_PENDING) {
214 net_log_.EndEvent(NetLog::TYPE_SOCKS5_CONNECT, NULL); 214 net_log_.EndEvent(NetLog::TYPE_SOCKS5_CONNECT);
215 DoCallback(rv); 215 DoCallback(rv);
216 } 216 }
217 } 217 }
218 218
219 int SOCKS5ClientSocket::DoLoop(int last_io_result) { 219 int SOCKS5ClientSocket::DoLoop(int last_io_result) {
220 DCHECK_NE(next_state_, STATE_NONE); 220 DCHECK_NE(next_state_, STATE_NONE);
221 int rv = last_io_result; 221 int rv = last_io_result;
222 do { 222 do {
223 State state = next_state_; 223 State state = next_state_;
224 next_state_ = STATE_NONE; 224 next_state_ = STATE_NONE;
225 switch (state) { 225 switch (state) {
226 case STATE_GREET_WRITE: 226 case STATE_GREET_WRITE:
227 DCHECK_EQ(OK, rv); 227 DCHECK_EQ(OK, rv);
228 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_GREET_WRITE, NULL); 228 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_GREET_WRITE);
229 rv = DoGreetWrite(); 229 rv = DoGreetWrite();
230 break; 230 break;
231 case STATE_GREET_WRITE_COMPLETE: 231 case STATE_GREET_WRITE_COMPLETE:
232 rv = DoGreetWriteComplete(rv); 232 rv = DoGreetWriteComplete(rv);
233 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_GREET_WRITE, rv); 233 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_GREET_WRITE, rv);
234 break; 234 break;
235 case STATE_GREET_READ: 235 case STATE_GREET_READ:
236 DCHECK_EQ(OK, rv); 236 DCHECK_EQ(OK, rv);
237 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_GREET_READ, NULL); 237 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_GREET_READ);
238 rv = DoGreetRead(); 238 rv = DoGreetRead();
239 break; 239 break;
240 case STATE_GREET_READ_COMPLETE: 240 case STATE_GREET_READ_COMPLETE:
241 rv = DoGreetReadComplete(rv); 241 rv = DoGreetReadComplete(rv);
242 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_GREET_READ, rv); 242 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_SOCKS5_GREET_READ, rv);
243 break; 243 break;
244 case STATE_HANDSHAKE_WRITE: 244 case STATE_HANDSHAKE_WRITE:
245 DCHECK_EQ(OK, rv); 245 DCHECK_EQ(OK, rv);
246 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_HANDSHAKE_WRITE, NULL); 246 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_HANDSHAKE_WRITE);
247 rv = DoHandshakeWrite(); 247 rv = DoHandshakeWrite();
248 break; 248 break;
249 case STATE_HANDSHAKE_WRITE_COMPLETE: 249 case STATE_HANDSHAKE_WRITE_COMPLETE:
250 rv = DoHandshakeWriteComplete(rv); 250 rv = DoHandshakeWriteComplete(rv);
251 net_log_.EndEventWithNetErrorCode( 251 net_log_.EndEventWithNetErrorCode(
252 NetLog::TYPE_SOCKS5_HANDSHAKE_WRITE, rv); 252 NetLog::TYPE_SOCKS5_HANDSHAKE_WRITE, rv);
253 break; 253 break;
254 case STATE_HANDSHAKE_READ: 254 case STATE_HANDSHAKE_READ:
255 DCHECK_EQ(OK, rv); 255 DCHECK_EQ(OK, rv);
256 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_HANDSHAKE_READ, NULL); 256 net_log_.BeginEvent(NetLog::TYPE_SOCKS5_HANDSHAKE_READ);
257 rv = DoHandshakeRead(); 257 rv = DoHandshakeRead();
258 break; 258 break;
259 case STATE_HANDSHAKE_READ_COMPLETE: 259 case STATE_HANDSHAKE_READ_COMPLETE:
260 rv = DoHandshakeReadComplete(rv); 260 rv = DoHandshakeReadComplete(rv);
261 net_log_.EndEventWithNetErrorCode( 261 net_log_.EndEventWithNetErrorCode(
262 NetLog::TYPE_SOCKS5_HANDSHAKE_READ, rv); 262 NetLog::TYPE_SOCKS5_HANDSHAKE_READ, rv);
263 break; 263 break;
264 default: 264 default:
265 NOTREACHED() << "bad state"; 265 NOTREACHED() << "bad state";
266 rv = ERR_UNEXPECTED; 266 rv = ERR_UNEXPECTED;
267 break; 267 break;
268 } 268 }
269 } while (rv != ERR_IO_PENDING && next_state_ != STATE_NONE); 269 } while (rv != ERR_IO_PENDING && next_state_ != STATE_NONE);
270 return rv; 270 return rv;
271 } 271 }
272 272
273 const char kSOCKS5GreetWriteData[] = { 0x05, 0x01, 0x00 }; // no authentication 273 const char kSOCKS5GreetWriteData[] = { 0x05, 0x01, 0x00 }; // no authentication
274 const char kSOCKS5GreetReadData[] = { 0x05, 0x00 }; 274 const char kSOCKS5GreetReadData[] = { 0x05, 0x00 };
275 275
276 int SOCKS5ClientSocket::DoGreetWrite() { 276 int SOCKS5ClientSocket::DoGreetWrite() {
277 // Since we only have 1 byte to send the hostname length in, if the 277 // Since we only have 1 byte to send the hostname length in, if the
278 // URL has a hostname longer than 255 characters we can't send it. 278 // URL has a hostname longer than 255 characters we can't send it.
279 if (0xFF < host_request_info_.hostname().size()) { 279 if (0xFF < host_request_info_.hostname().size()) {
280 net_log_.AddEvent(NetLog::TYPE_SOCKS_HOSTNAME_TOO_BIG, NULL); 280 net_log_.AddEvent(NetLog::TYPE_SOCKS_HOSTNAME_TOO_BIG);
281 return ERR_SOCKS_CONNECTION_FAILED; 281 return ERR_SOCKS_CONNECTION_FAILED;
282 } 282 }
283 283
284 if (buffer_.empty()) { 284 if (buffer_.empty()) {
285 buffer_ = std::string(kSOCKS5GreetWriteData, 285 buffer_ = std::string(kSOCKS5GreetWriteData,
286 arraysize(kSOCKS5GreetWriteData)); 286 arraysize(kSOCKS5GreetWriteData));
287 bytes_sent_ = 0; 287 bytes_sent_ = 0;
288 } 288 }
289 289
290 next_state_ = STATE_GREET_WRITE_COMPLETE; 290 next_state_ = STATE_GREET_WRITE_COMPLETE;
(...skipping 26 matching lines...) Expand all
317 handshake_buf_ = new IOBuffer(handshake_buf_len); 317 handshake_buf_ = new IOBuffer(handshake_buf_len);
318 return transport_->socket()->Read(handshake_buf_, handshake_buf_len, 318 return transport_->socket()->Read(handshake_buf_, handshake_buf_len,
319 io_callback_); 319 io_callback_);
320 } 320 }
321 321
322 int SOCKS5ClientSocket::DoGreetReadComplete(int result) { 322 int SOCKS5ClientSocket::DoGreetReadComplete(int result) {
323 if (result < 0) 323 if (result < 0)
324 return result; 324 return result;
325 325
326 if (result == 0) { 326 if (result == 0) {
327 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTEDLY_CLOSED_DURING_GREETING, 327 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTEDLY_CLOSED_DURING_GREETING);
328 NULL);
329 return ERR_SOCKS_CONNECTION_FAILED; 328 return ERR_SOCKS_CONNECTION_FAILED;
330 } 329 }
331 330
332 bytes_received_ += result; 331 bytes_received_ += result;
333 buffer_.append(handshake_buf_->data(), result); 332 buffer_.append(handshake_buf_->data(), result);
334 if (bytes_received_ < kGreetReadHeaderSize) { 333 if (bytes_received_ < kGreetReadHeaderSize) {
335 next_state_ = STATE_GREET_READ; 334 next_state_ = STATE_GREET_READ;
336 return OK; 335 return OK;
337 } 336 }
338 337
339 // Got the greet data. 338 // Got the greet data.
340 if (buffer_[0] != kSOCKS5Version) { 339 if (buffer_[0] != kSOCKS5Version) {
341 net_log_.AddEvent( 340 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTED_VERSION,
342 NetLog::TYPE_SOCKS_UNEXPECTED_VERSION, 341 NetLog::IntegerCallback("version", buffer_[0]));
343 make_scoped_refptr(new NetLogIntegerParameter("version", buffer_[0])));
344 return ERR_SOCKS_CONNECTION_FAILED; 342 return ERR_SOCKS_CONNECTION_FAILED;
345 } 343 }
346 if (buffer_[1] != 0x00) { 344 if (buffer_[1] != 0x00) {
347 net_log_.AddEvent( 345 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTED_AUTH,
348 NetLog::TYPE_SOCKS_UNEXPECTED_AUTH, 346 NetLog::IntegerCallback("method", buffer_[1]));
349 make_scoped_refptr(new NetLogIntegerParameter("method", buffer_[1])));
350 return ERR_SOCKS_CONNECTION_FAILED; 347 return ERR_SOCKS_CONNECTION_FAILED;
351 } 348 }
352 349
353 buffer_.clear(); 350 buffer_.clear();
354 next_state_ = STATE_HANDSHAKE_WRITE; 351 next_state_ = STATE_HANDSHAKE_WRITE;
355 return OK; 352 return OK;
356 } 353 }
357 354
358 int SOCKS5ClientSocket::BuildHandshakeWriteBuffer(std::string* handshake) 355 int SOCKS5ClientSocket::BuildHandshakeWriteBuffer(std::string* handshake)
359 const { 356 const {
(...skipping 70 matching lines...) Expand 10 before | Expand all | Expand 10 after
430 return transport_->socket()->Read(handshake_buf_, handshake_buf_len, 427 return transport_->socket()->Read(handshake_buf_, handshake_buf_len,
431 io_callback_); 428 io_callback_);
432 } 429 }
433 430
434 int SOCKS5ClientSocket::DoHandshakeReadComplete(int result) { 431 int SOCKS5ClientSocket::DoHandshakeReadComplete(int result) {
435 if (result < 0) 432 if (result < 0)
436 return result; 433 return result;
437 434
438 // The underlying socket closed unexpectedly. 435 // The underlying socket closed unexpectedly.
439 if (result == 0) { 436 if (result == 0) {
440 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTEDLY_CLOSED_DURING_HANDSHAKE, 437 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTEDLY_CLOSED_DURING_HANDSHAKE);
441 NULL);
442 return ERR_SOCKS_CONNECTION_FAILED; 438 return ERR_SOCKS_CONNECTION_FAILED;
443 } 439 }
444 440
445 buffer_.append(handshake_buf_->data(), result); 441 buffer_.append(handshake_buf_->data(), result);
446 bytes_received_ += result; 442 bytes_received_ += result;
447 443
448 // When the first few bytes are read, check how many more are required 444 // When the first few bytes are read, check how many more are required
449 // and accordingly increase them 445 // and accordingly increase them
450 if (bytes_received_ == kReadHeaderSize) { 446 if (bytes_received_ == kReadHeaderSize) {
451 if (buffer_[0] != kSOCKS5Version || buffer_[2] != kNullByte) { 447 if (buffer_[0] != kSOCKS5Version || buffer_[2] != kNullByte) {
452 net_log_.AddEvent( 448 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNEXPECTED_VERSION,
453 NetLog::TYPE_SOCKS_UNEXPECTED_VERSION, 449 NetLog::IntegerCallback("version", buffer_[0]));
454 make_scoped_refptr(
455 new NetLogIntegerParameter("version", buffer_[0])));
456 return ERR_SOCKS_CONNECTION_FAILED; 450 return ERR_SOCKS_CONNECTION_FAILED;
457 } 451 }
458 if (buffer_[1] != 0x00) { 452 if (buffer_[1] != 0x00) {
459 net_log_.AddEvent( 453 net_log_.AddEvent(NetLog::TYPE_SOCKS_SERVER_ERROR,
460 NetLog::TYPE_SOCKS_SERVER_ERROR, 454 NetLog::IntegerCallback("error_code", buffer_[1]));
461 make_scoped_refptr(
462 new NetLogIntegerParameter("error_code", buffer_[1])));
463 return ERR_SOCKS_CONNECTION_FAILED; 455 return ERR_SOCKS_CONNECTION_FAILED;
464 } 456 }
465 457
466 // We check the type of IP/Domain the server returns and accordingly 458 // We check the type of IP/Domain the server returns and accordingly
467 // increase the size of the response. For domains, we need to read the 459 // increase the size of the response. For domains, we need to read the
468 // size of the domain, so the initial request size is upto the domain 460 // size of the domain, so the initial request size is upto the domain
469 // size. Since for IPv4/IPv6 the size is fixed and hence no 'size' is 461 // size. Since for IPv4/IPv6 the size is fixed and hence no 'size' is
470 // read, we substract 1 byte from the additional request size. 462 // read, we substract 1 byte from the additional request size.
471 SocksEndPointAddressType address_type = 463 SocksEndPointAddressType address_type =
472 static_cast<SocksEndPointAddressType>(buffer_[3]); 464 static_cast<SocksEndPointAddressType>(buffer_[3]);
473 if (address_type == kEndPointDomain) 465 if (address_type == kEndPointDomain)
474 read_header_size += static_cast<uint8>(buffer_[4]); 466 read_header_size += static_cast<uint8>(buffer_[4]);
475 else if (address_type == kEndPointResolvedIPv4) 467 else if (address_type == kEndPointResolvedIPv4)
476 read_header_size += sizeof(struct in_addr) - 1; 468 read_header_size += sizeof(struct in_addr) - 1;
477 else if (address_type == kEndPointResolvedIPv6) 469 else if (address_type == kEndPointResolvedIPv6)
478 read_header_size += sizeof(struct in6_addr) - 1; 470 read_header_size += sizeof(struct in6_addr) - 1;
479 else { 471 else {
480 net_log_.AddEvent( 472 net_log_.AddEvent(NetLog::TYPE_SOCKS_UNKNOWN_ADDRESS_TYPE,
481 NetLog::TYPE_SOCKS_UNKNOWN_ADDRESS_TYPE, 473 NetLog::IntegerCallback("address_type", buffer_[3]));
482 make_scoped_refptr(
483 new NetLogIntegerParameter("address_type", buffer_[3])));
484 return ERR_SOCKS_CONNECTION_FAILED; 474 return ERR_SOCKS_CONNECTION_FAILED;
485 } 475 }
486 476
487 read_header_size += 2; // for the port. 477 read_header_size += 2; // for the port.
488 next_state_ = STATE_HANDSHAKE_READ; 478 next_state_ = STATE_HANDSHAKE_READ;
489 return OK; 479 return OK;
490 } 480 }
491 481
492 // When the final bytes are read, setup handshake. We ignore the rest 482 // When the final bytes are read, setup handshake. We ignore the rest
493 // of the response since they represent the SOCKSv5 endpoint and have 483 // of the response since they represent the SOCKSv5 endpoint and have
(...skipping 11 matching lines...) Expand all
505 495
506 int SOCKS5ClientSocket::GetPeerAddress(IPEndPoint* address) const { 496 int SOCKS5ClientSocket::GetPeerAddress(IPEndPoint* address) const {
507 return transport_->socket()->GetPeerAddress(address); 497 return transport_->socket()->GetPeerAddress(address);
508 } 498 }
509 499
510 int SOCKS5ClientSocket::GetLocalAddress(IPEndPoint* address) const { 500 int SOCKS5ClientSocket::GetLocalAddress(IPEndPoint* address) const {
511 return transport_->socket()->GetLocalAddress(address); 501 return transport_->socket()->GetLocalAddress(address);
512 } 502 }
513 503
514 } // namespace net 504 } // namespace net
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