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1 // Copyright 2013 The Chromium Authors. All rights reserved. | 1 // Copyright 2013 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/tcp_socket_libevent.h" | 5 #include "net/socket/tcp_socket.h" |
wtc
2013/09/13 22:22:44
This should include tcp_socket_libevent.h because
yzshen1
2013/09/13 23:52:40
This is intended, because we need IsTCPFastOpenEna
| |
6 | 6 |
7 #include <errno.h> | 7 #include <errno.h> |
8 #include <fcntl.h> | 8 #include <fcntl.h> |
9 #include <netdb.h> | 9 #include <netdb.h> |
10 #include <netinet/tcp.h> | |
10 #include <sys/socket.h> | 11 #include <sys/socket.h> |
11 | 12 |
12 #include "build/build_config.h" | 13 #include "build/build_config.h" |
13 | 14 |
14 #if defined(OS_POSIX) | 15 #if defined(OS_POSIX) |
15 #include <netinet/in.h> | 16 #include <netinet/in.h> |
wtc
2013/09/13 22:22:44
I believe this file can only be used on OS_POSIX.
yzshen1
2013/09/13 23:52:40
Done.
| |
16 #endif | 17 #endif |
17 | 18 |
19 #include "base/callback_helpers.h" | |
18 #include "base/logging.h" | 20 #include "base/logging.h" |
21 #include "base/metrics/histogram.h" | |
22 #include "base/metrics/stats_counters.h" | |
19 #include "base/posix/eintr_wrapper.h" | 23 #include "base/posix/eintr_wrapper.h" |
24 #include "net/base/address_list.h" | |
25 #include "net/base/connection_type_histograms.h" | |
26 #include "net/base/io_buffer.h" | |
20 #include "net/base/ip_endpoint.h" | 27 #include "net/base/ip_endpoint.h" |
21 #include "net/base/net_errors.h" | 28 #include "net/base/net_errors.h" |
22 #include "net/base/net_util.h" | 29 #include "net/base/net_util.h" |
23 #include "net/socket/socket_descriptor.h" | 30 #include "net/base/network_change_notifier.h" |
24 #include "net/socket/socket_net_log_params.h" | 31 #include "net/socket/socket_net_log_params.h" |
25 | 32 |
33 // If we don't have a definition for TCPI_OPT_SYN_DATA, create one. | |
34 #ifndef TCPI_OPT_SYN_DATA | |
35 #define TCPI_OPT_SYN_DATA 32 | |
36 #endif | |
37 | |
26 namespace net { | 38 namespace net { |
27 | 39 |
40 namespace { | |
41 | |
42 const int kTCPKeepAliveSeconds = 45; | |
43 | |
44 // SetTCPNoDelay turns on/off buffering in the kernel. By default, TCP sockets | |
45 // will wait up to 200ms for more data to complete a packet before transmitting. | |
46 // After calling this function, the kernel will not wait. See TCP_NODELAY in | |
47 // `man 7 tcp`. | |
48 bool SetTCPNoDelay(int fd, bool no_delay) { | |
49 int on = no_delay ? 1 : 0; | |
50 int error = setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &on, sizeof(on)); | |
51 return error == 0; | |
52 } | |
53 | |
54 // SetTCPKeepAlive sets SO_KEEPALIVE. | |
55 bool SetTCPKeepAlive(int fd, bool enable, int delay) { | |
56 int on = enable ? 1 : 0; | |
57 if (setsockopt(fd, SOL_SOCKET, SO_KEEPALIVE, &on, sizeof(on))) { | |
58 PLOG(ERROR) << "Failed to set SO_KEEPALIVE on fd: " << fd; | |
59 return false; | |
60 } | |
61 #if defined(OS_LINUX) || defined(OS_ANDROID) | |
62 // Set seconds until first TCP keep alive. | |
63 if (setsockopt(fd, SOL_TCP, TCP_KEEPIDLE, &delay, sizeof(delay))) { | |
64 PLOG(ERROR) << "Failed to set TCP_KEEPIDLE on fd: " << fd; | |
65 return false; | |
66 } | |
67 // Set seconds between TCP keep alives. | |
68 if (setsockopt(fd, SOL_TCP, TCP_KEEPINTVL, &delay, sizeof(delay))) { | |
69 PLOG(ERROR) << "Failed to set TCP_KEEPINTVL on fd: " << fd; | |
70 return false; | |
71 } | |
72 #endif | |
73 return true; | |
74 } | |
75 | |
76 int MapConnectError(int os_error) { | |
77 switch (os_error) { | |
78 case EACCES: | |
79 return ERR_NETWORK_ACCESS_DENIED; | |
80 case ETIMEDOUT: | |
81 return ERR_CONNECTION_TIMED_OUT; | |
82 default: { | |
83 int net_error = MapSystemError(os_error); | |
84 if (net_error == ERR_FAILED) | |
85 return ERR_CONNECTION_FAILED; // More specific than ERR_FAILED. | |
86 | |
87 // Give a more specific error when the user is offline. | |
88 if (net_error == ERR_ADDRESS_UNREACHABLE && | |
89 NetworkChangeNotifier::IsOffline()) { | |
90 return ERR_INTERNET_DISCONNECTED; | |
91 } | |
92 return net_error; | |
93 } | |
94 } | |
95 } | |
96 | |
97 } // namespace | |
98 | |
99 //----------------------------------------------------------------------------- | |
100 | |
101 TCPSocketLibevent::Watcher::Watcher( | |
102 const base::Closure& read_ready_callback, | |
103 const base::Closure& write_ready_callback) | |
104 : read_ready_callback_(read_ready_callback), | |
105 write_ready_callback_(write_ready_callback) { | |
106 } | |
107 | |
108 TCPSocketLibevent::Watcher::~Watcher() { | |
109 } | |
110 | |
111 void TCPSocketLibevent::Watcher::OnFileCanReadWithoutBlocking(int /* fd */) { | |
112 if (!read_ready_callback_.is_null()) | |
113 read_ready_callback_.Run(); | |
wtc
2013/09/13 22:22:44
Do we need to reset read_ready_callback_ and write
yzshen1
2013/09/13 23:52:40
|read_ready_callback_| here is a closure to forwar
| |
114 else | |
115 NOTREACHED(); | |
116 } | |
117 | |
118 void TCPSocketLibevent::Watcher::OnFileCanWriteWithoutBlocking(int /* fd */) { | |
119 if (!write_ready_callback_.is_null()) | |
120 write_ready_callback_.Run(); | |
121 else | |
122 NOTREACHED(); | |
123 } | |
124 | |
28 TCPSocketLibevent::TCPSocketLibevent(NetLog* net_log, | 125 TCPSocketLibevent::TCPSocketLibevent(NetLog* net_log, |
29 const NetLog::Source& source) | 126 const NetLog::Source& source) |
30 : socket_(kInvalidSocket), | 127 : socket_(kInvalidSocket), |
128 accept_watcher_(base::Bind(&TCPSocketLibevent::DidCompleteAccept, | |
129 base::Unretained(this)), | |
130 base::Closure()), | |
31 accept_socket_(NULL), | 131 accept_socket_(NULL), |
32 accept_address_(NULL), | 132 accept_address_(NULL), |
133 read_watcher_(base::Bind(&TCPSocketLibevent::DidCompleteRead, | |
134 base::Unretained(this)), | |
135 base::Closure()), | |
136 write_watcher_(base::Closure(), | |
137 base::Bind(&TCPSocketLibevent::DidCompleteConnectOrWrite, | |
138 base::Unretained(this))), | |
139 read_buf_len_(0), | |
140 write_buf_len_(0), | |
141 use_tcp_fastopen_(IsTCPFastOpenEnabled()), | |
142 tcp_fastopen_connected_(false), | |
143 fast_open_status_(FAST_OPEN_STATUS_UNKNOWN), | |
144 waiting_connect_(false), | |
145 connect_os_error_(0), | |
146 logging_multiple_connect_attempts_(false), | |
33 net_log_(BoundNetLog::Make(net_log, NetLog::SOURCE_SOCKET)) { | 147 net_log_(BoundNetLog::Make(net_log, NetLog::SOURCE_SOCKET)) { |
34 net_log_.BeginEvent(NetLog::TYPE_SOCKET_ALIVE, | 148 net_log_.BeginEvent(NetLog::TYPE_SOCKET_ALIVE, |
35 source.ToEventParametersCallback()); | 149 source.ToEventParametersCallback()); |
36 } | 150 } |
37 | 151 |
38 TCPSocketLibevent::~TCPSocketLibevent() { | 152 TCPSocketLibevent::~TCPSocketLibevent() { |
39 if (socket_ != kInvalidSocket) | |
40 Close(); | |
41 net_log_.EndEvent(NetLog::TYPE_SOCKET_ALIVE); | 153 net_log_.EndEvent(NetLog::TYPE_SOCKET_ALIVE); |
154 if (tcp_fastopen_connected_) { | |
155 UMA_HISTOGRAM_ENUMERATION("Net.TcpFastOpenSocketConnection", | |
156 fast_open_status_, FAST_OPEN_MAX_VALUE); | |
157 } | |
158 Close(); | |
wtc
2013/09/13 22:22:44
It may be better to call Close() before logging ev
yzshen1
2013/09/13 23:52:40
That will reset |tcp_fastopen_connected_| and caus
wtc
2013/09/18 23:26:17
I see. So the original code worked because it neve
yzshen1
2013/09/18 23:40:35
Right. It is never set to false again.
| |
42 } | 159 } |
43 | 160 |
44 int TCPSocketLibevent::Open(AddressFamily family) { | 161 int TCPSocketLibevent::Open(AddressFamily family) { |
45 DCHECK(CalledOnValidThread()); | 162 DCHECK(CalledOnValidThread()); |
46 DCHECK_EQ(socket_, kInvalidSocket); | 163 DCHECK_EQ(socket_, kInvalidSocket); |
47 | 164 |
48 socket_ = CreatePlatformSocket(ConvertAddressFamily(family), SOCK_STREAM, | 165 socket_ = CreatePlatformSocket(ConvertAddressFamily(family), SOCK_STREAM, |
49 IPPROTO_TCP); | 166 IPPROTO_TCP); |
50 if (socket_ < 0) { | 167 if (socket_ < 0) { |
51 PLOG(ERROR) << "CreatePlatformSocket() returned an error"; | 168 PLOG(ERROR) << "CreatePlatformSocket() returned an error"; |
52 return MapSystemError(errno); | 169 return MapSystemError(errno); |
53 } | 170 } |
54 | 171 |
55 if (SetNonBlocking(socket_)) { | 172 if (SetNonBlocking(socket_)) { |
56 int result = MapSystemError(errno); | 173 int result = MapSystemError(errno); |
57 Close(); | 174 Close(); |
58 return result; | 175 return result; |
59 } | 176 } |
60 | 177 |
61 return OK; | 178 return OK; |
62 } | 179 } |
63 | 180 |
64 int TCPSocketLibevent::Adopt(int socket) { | 181 int TCPSocketLibevent::AdoptConnectedSocket(int socket, |
182 const IPEndPoint& peer_address) { | |
65 DCHECK(CalledOnValidThread()); | 183 DCHECK(CalledOnValidThread()); |
66 DCHECK_EQ(socket_, kInvalidSocket); | 184 DCHECK_EQ(socket_, kInvalidSocket); |
67 | 185 |
68 socket_ = socket; | 186 socket_ = socket; |
69 | 187 |
70 if (SetNonBlocking(socket_)) { | 188 if (SetNonBlocking(socket_)) { |
71 int result = MapSystemError(errno); | 189 int result = MapSystemError(errno); |
72 Close(); | 190 Close(); |
73 return result; | 191 return result; |
74 } | 192 } |
75 | 193 |
194 peer_address_.reset(new IPEndPoint(peer_address)); | |
195 | |
76 return OK; | 196 return OK; |
77 } | 197 } |
78 | 198 |
79 int TCPSocketLibevent::Release() { | |
80 DCHECK(CalledOnValidThread()); | |
81 DCHECK(accept_callback_.is_null()); | |
82 | |
83 int result = socket_; | |
84 socket_ = kInvalidSocket; | |
85 return result; | |
86 } | |
87 | |
88 int TCPSocketLibevent::Bind(const IPEndPoint& address) { | 199 int TCPSocketLibevent::Bind(const IPEndPoint& address) { |
89 DCHECK(CalledOnValidThread()); | 200 DCHECK(CalledOnValidThread()); |
90 DCHECK_NE(socket_, kInvalidSocket); | 201 DCHECK_NE(socket_, kInvalidSocket); |
91 | 202 |
92 SockaddrStorage storage; | 203 SockaddrStorage storage; |
93 if (!address.ToSockAddr(storage.addr, &storage.addr_len)) | 204 if (!address.ToSockAddr(storage.addr, &storage.addr_len)) |
94 return ERR_ADDRESS_INVALID; | 205 return ERR_ADDRESS_INVALID; |
95 | 206 |
96 int result = bind(socket_, storage.addr, storage.addr_len); | 207 int result = bind(socket_, storage.addr, storage.addr_len); |
97 if (result < 0) { | 208 if (result < 0) { |
98 PLOG(ERROR) << "bind() returned an error"; | 209 PLOG(ERROR) << "bind() returned an error"; |
99 return MapSystemError(errno); | 210 return MapSystemError(errno); |
100 } | 211 } |
101 | 212 |
102 return OK; | 213 return OK; |
103 } | 214 } |
104 | 215 |
105 int TCPSocketLibevent::GetLocalAddress(IPEndPoint* address) const { | |
106 DCHECK(CalledOnValidThread()); | |
107 DCHECK(address); | |
108 | |
109 SockaddrStorage storage; | |
110 if (getsockname(socket_, storage.addr, &storage.addr_len) < 0) | |
111 return MapSystemError(errno); | |
112 if (!address->FromSockAddr(storage.addr, storage.addr_len)) | |
113 return ERR_FAILED; | |
114 | |
115 return OK; | |
116 } | |
117 | |
118 int TCPSocketLibevent::Listen(int backlog) { | 216 int TCPSocketLibevent::Listen(int backlog) { |
119 DCHECK(CalledOnValidThread()); | 217 DCHECK(CalledOnValidThread()); |
120 DCHECK_GT(backlog, 0); | 218 DCHECK_GT(backlog, 0); |
121 DCHECK_NE(socket_, kInvalidSocket); | 219 DCHECK_NE(socket_, kInvalidSocket); |
122 | 220 |
123 int result = listen(socket_, backlog); | 221 int result = listen(socket_, backlog); |
124 if (result < 0) { | 222 if (result < 0) { |
125 PLOG(ERROR) << "listen() returned an error"; | 223 PLOG(ERROR) << "listen() returned an error"; |
126 return MapSystemError(errno); | 224 return MapSystemError(errno); |
127 } | 225 } |
(...skipping 10 matching lines...) Expand all Loading... | |
138 DCHECK(!callback.is_null()); | 236 DCHECK(!callback.is_null()); |
139 DCHECK(accept_callback_.is_null()); | 237 DCHECK(accept_callback_.is_null()); |
140 | 238 |
141 net_log_.BeginEvent(NetLog::TYPE_TCP_ACCEPT); | 239 net_log_.BeginEvent(NetLog::TYPE_TCP_ACCEPT); |
142 | 240 |
143 int result = AcceptInternal(socket, address); | 241 int result = AcceptInternal(socket, address); |
144 | 242 |
145 if (result == ERR_IO_PENDING) { | 243 if (result == ERR_IO_PENDING) { |
146 if (!base::MessageLoopForIO::current()->WatchFileDescriptor( | 244 if (!base::MessageLoopForIO::current()->WatchFileDescriptor( |
147 socket_, true, base::MessageLoopForIO::WATCH_READ, | 245 socket_, true, base::MessageLoopForIO::WATCH_READ, |
148 &accept_socket_watcher_, this)) { | 246 &accept_socket_watcher_, &accept_watcher_)) { |
149 PLOG(ERROR) << "WatchFileDescriptor failed on read"; | 247 PLOG(ERROR) << "WatchFileDescriptor failed on read"; |
150 return MapSystemError(errno); | 248 return MapSystemError(errno); |
151 } | 249 } |
152 | 250 |
153 accept_socket_ = socket; | 251 accept_socket_ = socket; |
154 accept_address_ = address; | 252 accept_address_ = address; |
155 accept_callback_ = callback; | 253 accept_callback_ = callback; |
156 } | 254 } |
157 | 255 |
158 return result; | 256 return result; |
159 } | 257 } |
160 | 258 |
259 int TCPSocketLibevent::Connect(const IPEndPoint& address, | |
260 const CompletionCallback& callback) { | |
261 DCHECK(CalledOnValidThread()); | |
262 DCHECK_NE(socket_, kInvalidSocket); | |
263 DCHECK(!waiting_connect_); | |
264 | |
265 // |peer_address_| will be non-NULL if Connect() has been called. Unless | |
266 // Close() is called to reset the internal state, a second call to Connect() | |
267 // is not allowed. | |
268 // Please note that we enforce this even if the previous Connect() has | |
269 // completed and failed. Connecting the same |socket_| again after a | |
wtc
2013/09/13 22:22:44
Nit: "Please note that we enforce this ... and fai
yzshen1
2013/09/13 23:52:40
I thought this sentence also applies here?
Maybe
wtc
2013/09/18 23:26:17
Your comment is fine. Thanks.
(Since this won't w
| |
270 // connection attempt failed results in unspecified behavior according to | |
271 // POSIX. | |
272 DCHECK(!peer_address_); | |
273 | |
274 if (!logging_multiple_connect_attempts_) | |
275 LogConnectBegin(AddressList(address)); | |
276 | |
277 peer_address_.reset(new IPEndPoint(address)); | |
278 | |
279 int rv = DoConnect(); | |
280 if (rv == ERR_IO_PENDING) { | |
281 // Synchronous operation not supported. | |
282 DCHECK(!callback.is_null()); | |
283 write_callback_ = callback; | |
284 waiting_connect_ = true; | |
285 } else { | |
286 DoConnectComplete(rv); | |
287 } | |
288 | |
289 return rv; | |
290 } | |
291 | |
292 bool TCPSocketLibevent::IsConnected() const { | |
293 DCHECK(CalledOnValidThread()); | |
294 | |
295 if (socket_ == kInvalidSocket || waiting_connect_) | |
296 return false; | |
297 | |
298 if (use_tcp_fastopen_ && !tcp_fastopen_connected_ && peer_address_) { | |
wtc
2013/09/13 22:22:44
Do we need to check peer_address_ in this conditio
yzshen1
2013/09/13 23:52:40
Yes. The following is one example:
- |use_tcp_fas
| |
299 // With TCP FastOpen, we pretend that the socket is connected. | |
300 // This allows GetPeerAddress() to return peer_address_. | |
301 return true; | |
302 } | |
303 | |
304 // Check if connection is alive. | |
305 char c; | |
306 int rv = HANDLE_EINTR(recv(socket_, &c, 1, MSG_PEEK)); | |
307 if (rv == 0) | |
308 return false; | |
309 if (rv == -1 && errno != EAGAIN && errno != EWOULDBLOCK) | |
310 return false; | |
311 | |
312 return true; | |
313 } | |
314 | |
315 bool TCPSocketLibevent::IsConnectedAndIdle() const { | |
316 DCHECK(CalledOnValidThread()); | |
317 | |
318 if (socket_ == kInvalidSocket || waiting_connect_) | |
319 return false; | |
320 | |
321 // TODO(wtc): should we also handle the TCP FastOpen case here, | |
322 // as we do in IsConnected()? | |
323 | |
324 // Check if connection is alive and we haven't received any data | |
325 // unexpectedly. | |
326 char c; | |
327 int rv = HANDLE_EINTR(recv(socket_, &c, 1, MSG_PEEK)); | |
328 if (rv >= 0) | |
329 return false; | |
330 if (errno != EAGAIN && errno != EWOULDBLOCK) | |
331 return false; | |
332 | |
333 return true; | |
334 } | |
335 | |
336 int TCPSocketLibevent::Read(IOBuffer* buf, | |
337 int buf_len, | |
338 const CompletionCallback& callback) { | |
339 DCHECK(CalledOnValidThread()); | |
340 DCHECK_NE(kInvalidSocket, socket_); | |
341 DCHECK(!waiting_connect_); | |
342 DCHECK(read_callback_.is_null()); | |
343 // Synchronous operation not supported | |
344 DCHECK(!callback.is_null()); | |
345 DCHECK_GT(buf_len, 0); | |
346 | |
347 int nread = HANDLE_EINTR(read(socket_, buf->data(), buf_len)); | |
348 if (nread >= 0) { | |
349 base::StatsCounter read_bytes("tcp.read_bytes"); | |
350 read_bytes.Add(nread); | |
351 net_log_.AddByteTransferEvent(NetLog::TYPE_SOCKET_BYTES_RECEIVED, nread, | |
352 buf->data()); | |
353 RecordFastOpenStatus(); | |
354 return nread; | |
355 } | |
356 if (errno != EAGAIN && errno != EWOULDBLOCK) { | |
357 int net_error = MapSystemError(errno); | |
358 net_log_.AddEvent(NetLog::TYPE_SOCKET_READ_ERROR, | |
359 CreateNetLogSocketErrorCallback(net_error, errno)); | |
360 return net_error; | |
361 } | |
362 | |
363 if (!base::MessageLoopForIO::current()->WatchFileDescriptor( | |
364 socket_, true, base::MessageLoopForIO::WATCH_READ, | |
365 &read_socket_watcher_, &read_watcher_)) { | |
366 DVLOG(1) << "WatchFileDescriptor failed on read, errno " << errno; | |
367 return MapSystemError(errno); | |
368 } | |
369 | |
370 read_buf_ = buf; | |
371 read_buf_len_ = buf_len; | |
372 read_callback_ = callback; | |
373 return ERR_IO_PENDING; | |
374 } | |
375 | |
376 int TCPSocketLibevent::Write(IOBuffer* buf, | |
377 int buf_len, | |
378 const CompletionCallback& callback) { | |
379 DCHECK(CalledOnValidThread()); | |
380 DCHECK_NE(kInvalidSocket, socket_); | |
381 DCHECK(!waiting_connect_); | |
382 DCHECK(write_callback_.is_null()); | |
383 // Synchronous operation not supported | |
384 DCHECK(!callback.is_null()); | |
385 DCHECK_GT(buf_len, 0); | |
386 | |
387 int nwrite = InternalWrite(buf, buf_len); | |
388 if (nwrite >= 0) { | |
389 base::StatsCounter write_bytes("tcp.write_bytes"); | |
390 write_bytes.Add(nwrite); | |
391 net_log_.AddByteTransferEvent(NetLog::TYPE_SOCKET_BYTES_SENT, nwrite, | |
392 buf->data()); | |
393 return nwrite; | |
394 } | |
395 if (errno != EAGAIN && errno != EWOULDBLOCK) { | |
396 int net_error = MapSystemError(errno); | |
397 net_log_.AddEvent(NetLog::TYPE_SOCKET_WRITE_ERROR, | |
398 CreateNetLogSocketErrorCallback(net_error, errno)); | |
399 return net_error; | |
400 } | |
401 | |
402 if (!base::MessageLoopForIO::current()->WatchFileDescriptor( | |
403 socket_, true, base::MessageLoopForIO::WATCH_WRITE, | |
404 &write_socket_watcher_, &write_watcher_)) { | |
405 DVLOG(1) << "WatchFileDescriptor failed on write, errno " << errno; | |
406 return MapSystemError(errno); | |
407 } | |
408 | |
409 write_buf_ = buf; | |
410 write_buf_len_ = buf_len; | |
411 write_callback_ = callback; | |
412 return ERR_IO_PENDING; | |
413 } | |
414 | |
415 int TCPSocketLibevent::GetLocalAddress(IPEndPoint* address) const { | |
416 DCHECK(CalledOnValidThread()); | |
417 DCHECK(address); | |
wtc
2013/09/13 22:22:44
We probably should do
if (socket_ == kInvalidSoc
yzshen1
2013/09/13 23:52:40
IMHO, ERR_SOCKET_NOT_CONNECTED is not accurate.
Fo
wtc
2013/09/18 23:26:17
Yes, this is fine.
If socket_ is kInvalidSocket (
| |
418 | |
419 SockaddrStorage storage; | |
420 if (getsockname(socket_, storage.addr, &storage.addr_len) < 0) | |
421 return MapSystemError(errno); | |
422 if (!address->FromSockAddr(storage.addr, storage.addr_len)) | |
423 return ERR_FAILED; | |
wtc
2013/09/13 22:22:44
Please use a better error code. (You fixed this in
yzshen1
2013/09/13 23:52:40
Done. I used ERR_ADDRESS_INVALID.
| |
424 | |
425 return OK; | |
426 } | |
427 | |
428 int TCPSocketLibevent::GetPeerAddress(IPEndPoint* address) const { | |
429 DCHECK(CalledOnValidThread()); | |
430 DCHECK(address); | |
431 if (!IsConnected()) | |
432 return ERR_SOCKET_NOT_CONNECTED; | |
433 *address = *peer_address_; | |
434 return OK; | |
435 } | |
436 | |
161 int TCPSocketLibevent::SetDefaultOptionsForServer() { | 437 int TCPSocketLibevent::SetDefaultOptionsForServer() { |
438 DCHECK(CalledOnValidThread()); | |
162 return SetAddressReuse(true); | 439 return SetAddressReuse(true); |
163 } | 440 } |
164 | 441 |
442 void TCPSocketLibevent::SetDefaultOptionsForClient() { | |
443 DCHECK(CalledOnValidThread()); | |
444 | |
445 // This mirrors the behaviour on Windows. See the comment in | |
446 // tcp_socket_win.cc after searching for "NODELAY". | |
447 SetTCPNoDelay(socket_, true); // If SetTCPNoDelay fails, we don't care. | |
448 SetTCPKeepAlive(socket_, true, kTCPKeepAliveSeconds); | |
449 } | |
450 | |
165 int TCPSocketLibevent::SetAddressReuse(bool allow) { | 451 int TCPSocketLibevent::SetAddressReuse(bool allow) { |
452 DCHECK(CalledOnValidThread()); | |
453 | |
166 // SO_REUSEADDR is useful for server sockets to bind to a recently unbound | 454 // SO_REUSEADDR is useful for server sockets to bind to a recently unbound |
167 // port. When a socket is closed, the end point changes its state to TIME_WAIT | 455 // port. When a socket is closed, the end point changes its state to TIME_WAIT |
168 // and wait for 2 MSL (maximum segment lifetime) to ensure the remote peer | 456 // and wait for 2 MSL (maximum segment lifetime) to ensure the remote peer |
169 // acknowledges its closure. For server sockets, it is usually safe to | 457 // acknowledges its closure. For server sockets, it is usually safe to |
170 // bind to a TIME_WAIT end point immediately, which is a widely adopted | 458 // bind to a TIME_WAIT end point immediately, which is a widely adopted |
171 // behavior. | 459 // behavior. |
172 // | 460 // |
173 // Note that on *nix, SO_REUSEADDR does not enable the TCP socket to bind to | 461 // Note that on *nix, SO_REUSEADDR does not enable the TCP socket to bind to |
174 // an end point that is already bound by another socket. To do that one must | 462 // an end point that is already bound by another socket. To do that one must |
175 // set SO_REUSEPORT instead. This option is not provided on Linux prior | 463 // set SO_REUSEPORT instead. This option is not provided on Linux prior |
176 // to 3.9. | 464 // to 3.9. |
177 // | 465 // |
178 // SO_REUSEPORT is provided in MacOS X and iOS. | 466 // SO_REUSEPORT is provided in MacOS X and iOS. |
179 int boolean_value = allow ? 1 : 0; | 467 int boolean_value = allow ? 1 : 0; |
180 int rv = setsockopt(socket_, SOL_SOCKET, SO_REUSEADDR, &boolean_value, | 468 int rv = setsockopt(socket_, SOL_SOCKET, SO_REUSEADDR, &boolean_value, |
181 sizeof(boolean_value)); | 469 sizeof(boolean_value)); |
182 if (rv < 0) | 470 if (rv < 0) |
183 return MapSystemError(errno); | 471 return MapSystemError(errno); |
184 return OK; | 472 return OK; |
185 } | 473 } |
186 | 474 |
475 bool TCPSocketLibevent::SetReceiveBufferSize(int32 size) { | |
476 DCHECK(CalledOnValidThread()); | |
477 int rv = setsockopt(socket_, SOL_SOCKET, SO_RCVBUF, | |
478 reinterpret_cast<const char*>(&size), | |
479 sizeof(size)); | |
480 DCHECK(!rv) << "Could not set socket receive buffer size: " << errno; | |
481 return rv == 0; | |
482 } | |
483 | |
484 bool TCPSocketLibevent::SetSendBufferSize(int32 size) { | |
485 DCHECK(CalledOnValidThread()); | |
486 int rv = setsockopt(socket_, SOL_SOCKET, SO_SNDBUF, | |
487 reinterpret_cast<const char*>(&size), | |
488 sizeof(size)); | |
489 DCHECK(!rv) << "Could not set socket send buffer size: " << errno; | |
490 return rv == 0; | |
491 } | |
492 | |
493 bool TCPSocketLibevent::SetKeepAlive(bool enable, int delay) { | |
494 DCHECK(CalledOnValidThread()); | |
495 return SetTCPKeepAlive(socket_, enable, delay); | |
496 } | |
497 | |
498 bool TCPSocketLibevent::SetNoDelay(bool no_delay) { | |
499 DCHECK(CalledOnValidThread()); | |
500 return SetTCPNoDelay(socket_, no_delay); | |
501 } | |
502 | |
187 void TCPSocketLibevent::Close() { | 503 void TCPSocketLibevent::Close() { |
504 DCHECK(CalledOnValidThread()); | |
505 | |
188 if (socket_ != kInvalidSocket) { | 506 if (socket_ != kInvalidSocket) { |
189 bool ok = accept_socket_watcher_.StopWatchingFileDescriptor(); | |
190 DCHECK(ok); | |
191 if (HANDLE_EINTR(close(socket_)) < 0) | 507 if (HANDLE_EINTR(close(socket_)) < 0) |
192 PLOG(ERROR) << "close"; | 508 PLOG(ERROR) << "close"; |
193 socket_ = kInvalidSocket; | 509 socket_ = kInvalidSocket; |
194 } | 510 } |
511 | |
512 bool ok = accept_socket_watcher_.StopWatchingFileDescriptor(); | |
513 DCHECK(ok); | |
514 ok = read_socket_watcher_.StopWatchingFileDescriptor(); | |
515 DCHECK(ok); | |
516 ok = write_socket_watcher_.StopWatchingFileDescriptor(); | |
517 DCHECK(ok); | |
518 | |
519 if (!accept_callback_.is_null()) { | |
520 accept_socket_ = NULL; | |
521 accept_address_ = NULL; | |
522 accept_callback_.Reset(); | |
523 } | |
524 | |
525 if (!read_callback_.is_null()) { | |
526 read_buf_ = NULL; | |
527 read_buf_len_ = 0; | |
528 read_callback_.Reset(); | |
529 } | |
530 | |
531 if (!write_callback_.is_null()) { | |
532 write_buf_ = NULL; | |
533 write_buf_len_ = 0; | |
534 write_callback_.Reset(); | |
535 } | |
536 | |
537 tcp_fastopen_connected_ = false; | |
538 fast_open_status_ = FAST_OPEN_STATUS_UNKNOWN; | |
539 waiting_connect_ = false; | |
540 peer_address_.reset(); | |
541 connect_os_error_ = 0; | |
542 } | |
543 | |
544 bool TCPSocketLibevent::UsingTCPFastOpen() const { | |
545 return use_tcp_fastopen_; | |
546 } | |
547 | |
548 void TCPSocketLibevent::StartLoggingMultipleConnectAttempts( | |
549 const AddressList& addresses) { | |
550 if (!logging_multiple_connect_attempts_) { | |
551 logging_multiple_connect_attempts_ = true; | |
552 LogConnectBegin(addresses); | |
553 } else { | |
554 NOTREACHED(); | |
555 } | |
556 } | |
557 | |
558 void TCPSocketLibevent::EndLoggingMultipleConnectAttempts(int net_error) { | |
559 if (logging_multiple_connect_attempts_) { | |
560 LogConnectEnd(net_error); | |
561 logging_multiple_connect_attempts_ = false; | |
562 } else { | |
563 NOTREACHED(); | |
564 } | |
195 } | 565 } |
196 | 566 |
197 int TCPSocketLibevent::AcceptInternal(scoped_ptr<TCPSocketLibevent>* socket, | 567 int TCPSocketLibevent::AcceptInternal(scoped_ptr<TCPSocketLibevent>* socket, |
198 IPEndPoint* address) { | 568 IPEndPoint* address) { |
199 SockaddrStorage storage; | 569 SockaddrStorage storage; |
200 int new_socket = HANDLE_EINTR(accept(socket_, | 570 int new_socket = HANDLE_EINTR(accept(socket_, |
201 storage.addr, | 571 storage.addr, |
202 &storage.addr_len)); | 572 &storage.addr_len)); |
203 if (new_socket < 0) { | 573 if (new_socket < 0) { |
204 int net_error = MapSystemError(errno); | 574 int net_error = MapSystemError(errno); |
205 if (net_error != ERR_IO_PENDING) | 575 if (net_error != ERR_IO_PENDING) |
206 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, net_error); | 576 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, net_error); |
207 return net_error; | 577 return net_error; |
208 } | 578 } |
209 | 579 |
210 IPEndPoint ip_end_point; | 580 IPEndPoint ip_end_point; |
211 if (!ip_end_point.FromSockAddr(storage.addr, storage.addr_len)) { | 581 if (!ip_end_point.FromSockAddr(storage.addr, storage.addr_len)) { |
212 NOTREACHED(); | 582 NOTREACHED(); |
213 if (HANDLE_EINTR(close(new_socket)) < 0) | 583 if (HANDLE_EINTR(close(new_socket)) < 0) |
214 PLOG(ERROR) << "close"; | 584 PLOG(ERROR) << "close"; |
215 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, ERR_FAILED); | 585 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, ERR_FAILED); |
216 return ERR_FAILED; | 586 return ERR_FAILED; |
wtc
2013/09/13 22:22:44
Use a better error code (on lines 585 and 586).
yzshen1
2013/09/13 23:52:40
I changed to ERR_ADDRESS_INVALID. Does it sound ok
wtc
2013/09/18 23:26:17
Yes. Since this failure is unlikely (note the NOTR
| |
217 } | 587 } |
218 scoped_ptr<TCPSocketLibevent> tcp_socket(new TCPSocketLibevent( | 588 scoped_ptr<TCPSocketLibevent> tcp_socket(new TCPSocketLibevent( |
219 net_log_.net_log(), net_log_.source())); | 589 net_log_.net_log(), net_log_.source())); |
220 int adopt_result = tcp_socket->Adopt(new_socket); | 590 int adopt_result = tcp_socket->AdoptConnectedSocket(new_socket, ip_end_point); |
221 if (adopt_result != OK) { | 591 if (adopt_result != OK) { |
222 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, adopt_result); | 592 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_ACCEPT, adopt_result); |
223 return adopt_result; | 593 return adopt_result; |
224 } | 594 } |
225 *socket = tcp_socket.Pass(); | 595 *socket = tcp_socket.Pass(); |
226 *address = ip_end_point; | 596 *address = ip_end_point; |
227 net_log_.EndEvent(NetLog::TYPE_TCP_ACCEPT, | 597 net_log_.EndEvent(NetLog::TYPE_TCP_ACCEPT, |
228 CreateNetLogIPEndPointCallback(&ip_end_point)); | 598 CreateNetLogIPEndPointCallback(&ip_end_point)); |
229 return OK; | 599 return OK; |
230 } | 600 } |
231 | 601 |
232 void TCPSocketLibevent::OnFileCanReadWithoutBlocking(int fd) { | 602 int TCPSocketLibevent::DoConnect() { |
603 DCHECK_EQ(0, connect_os_error_); | |
604 | |
605 net_log_.BeginEvent(NetLog::TYPE_TCP_CONNECT_ATTEMPT, | |
606 CreateNetLogIPEndPointCallback(peer_address_.get())); | |
607 | |
608 // Connect the socket. | |
609 if (!use_tcp_fastopen_) { | |
610 SockaddrStorage storage; | |
611 if (!peer_address_->ToSockAddr(storage.addr, &storage.addr_len)) | |
612 return ERR_INVALID_ARGUMENT; | |
613 | |
614 if (!HANDLE_EINTR(connect(socket_, storage.addr, storage.addr_len))) { | |
615 // Connected without waiting! | |
616 return OK; | |
617 } | |
618 } else { | |
619 // With TCP FastOpen, we pretend that the socket is connected. | |
620 DCHECK(!tcp_fastopen_connected_); | |
621 return OK; | |
622 } | |
623 | |
624 // Check if the connect() failed synchronously. | |
625 connect_os_error_ = errno; | |
626 if (connect_os_error_ != EINPROGRESS) | |
627 return MapConnectError(connect_os_error_); | |
628 | |
629 // Otherwise the connect() is going to complete asynchronously, so watch | |
630 // for its completion. | |
631 if (!base::MessageLoopForIO::current()->WatchFileDescriptor( | |
632 socket_, true, base::MessageLoopForIO::WATCH_WRITE, | |
633 &write_socket_watcher_, &write_watcher_)) { | |
634 connect_os_error_ = errno; | |
635 DVLOG(1) << "WatchFileDescriptor failed: " << connect_os_error_; | |
636 return MapSystemError(connect_os_error_); | |
637 } | |
638 | |
639 return ERR_IO_PENDING; | |
640 } | |
641 | |
642 void TCPSocketLibevent::DoConnectComplete(int result) { | |
643 // Log the end of this attempt (and any OS error it threw). | |
644 int os_error = connect_os_error_; | |
645 connect_os_error_ = 0; | |
646 if (result != OK) { | |
647 net_log_.EndEvent(NetLog::TYPE_TCP_CONNECT_ATTEMPT, | |
648 NetLog::IntegerCallback("os_error", os_error)); | |
649 } else { | |
650 net_log_.EndEvent(NetLog::TYPE_TCP_CONNECT_ATTEMPT); | |
651 } | |
652 | |
653 if (!logging_multiple_connect_attempts_) | |
654 LogConnectEnd(result); | |
655 } | |
656 | |
657 void TCPSocketLibevent::LogConnectBegin(const AddressList& addresses) { | |
658 base::StatsCounter connects("tcp.connect"); | |
659 connects.Increment(); | |
660 | |
661 net_log_.BeginEvent(NetLog::TYPE_TCP_CONNECT, | |
662 addresses.CreateNetLogCallback()); | |
663 } | |
664 | |
665 void TCPSocketLibevent::LogConnectEnd(int net_error) { | |
666 if (net_error == OK) | |
667 UpdateConnectionTypeHistograms(CONNECTION_ANY); | |
668 | |
669 if (net_error != OK) { | |
670 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_CONNECT, net_error); | |
671 return; | |
672 } | |
673 | |
674 SockaddrStorage storage; | |
675 int rv = getsockname(socket_, storage.addr, &storage.addr_len); | |
676 if (rv != 0) { | |
677 PLOG(ERROR) << "getsockname() [rv: " << rv << "] error: "; | |
678 NOTREACHED(); | |
679 net_log_.EndEventWithNetErrorCode(NetLog::TYPE_TCP_CONNECT, rv); | |
680 return; | |
681 } | |
682 | |
683 net_log_.EndEvent(NetLog::TYPE_TCP_CONNECT, | |
684 CreateNetLogSourceAddressCallback(storage.addr, | |
685 storage.addr_len)); | |
686 } | |
687 | |
688 void TCPSocketLibevent::DidCompleteRead() { | |
689 RecordFastOpenStatus(); | |
690 if (read_callback_.is_null()) | |
wtc
2013/09/13 22:22:44
Do you know why read_callback_ can be null? (I kno
yzshen1
2013/09/13 23:52:40
I don't know any scenario in which read_callback_
wtc
2013/09/18 23:26:17
No change needed. I was just curious if you unders
| |
691 return; | |
692 | |
693 int bytes_transferred; | |
694 bytes_transferred = HANDLE_EINTR(read(socket_, read_buf_->data(), | |
695 read_buf_len_)); | |
696 | |
697 int result; | |
698 if (bytes_transferred >= 0) { | |
699 result = bytes_transferred; | |
700 base::StatsCounter read_bytes("tcp.read_bytes"); | |
701 read_bytes.Add(bytes_transferred); | |
702 net_log_.AddByteTransferEvent(NetLog::TYPE_SOCKET_BYTES_RECEIVED, result, | |
703 read_buf_->data()); | |
704 } else { | |
705 result = MapSystemError(errno); | |
706 if (result != ERR_IO_PENDING) { | |
707 net_log_.AddEvent(NetLog::TYPE_SOCKET_READ_ERROR, | |
708 CreateNetLogSocketErrorCallback(result, errno)); | |
709 } | |
710 } | |
711 | |
712 if (result != ERR_IO_PENDING) { | |
713 read_buf_ = NULL; | |
714 read_buf_len_ = 0; | |
715 bool ok = read_socket_watcher_.StopWatchingFileDescriptor(); | |
716 DCHECK(ok); | |
717 base::ResetAndReturn(&read_callback_).Run(result); | |
718 } | |
719 } | |
720 | |
721 void TCPSocketLibevent::DidCompleteWrite() { | |
722 DCHECK(!write_callback_.is_null()); | |
723 | |
724 int bytes_transferred; | |
725 bytes_transferred = HANDLE_EINTR(write(socket_, write_buf_->data(), | |
726 write_buf_len_)); | |
727 | |
728 int result; | |
729 if (bytes_transferred >= 0) { | |
730 result = bytes_transferred; | |
731 base::StatsCounter write_bytes("tcp.write_bytes"); | |
732 write_bytes.Add(bytes_transferred); | |
733 net_log_.AddByteTransferEvent(NetLog::TYPE_SOCKET_BYTES_SENT, result, | |
734 write_buf_->data()); | |
735 } else { | |
736 result = MapSystemError(errno); | |
737 if (result != ERR_IO_PENDING) { | |
738 net_log_.AddEvent(NetLog::TYPE_SOCKET_WRITE_ERROR, | |
739 CreateNetLogSocketErrorCallback(result, errno)); | |
740 } | |
741 } | |
742 | |
743 if (result != ERR_IO_PENDING) { | |
744 write_buf_ = NULL; | |
745 write_buf_len_ = 0; | |
746 write_socket_watcher_.StopWatchingFileDescriptor(); | |
747 base::ResetAndReturn(&write_callback_).Run(result); | |
748 } | |
749 } | |
750 | |
751 void TCPSocketLibevent::DidCompleteConnect() { | |
752 DCHECK(waiting_connect_); | |
753 | |
754 // Get the error that connect() completed with. | |
755 int os_error = 0; | |
756 socklen_t len = sizeof(os_error); | |
757 if (getsockopt(socket_, SOL_SOCKET, SO_ERROR, &os_error, &len) < 0) | |
758 os_error = errno; | |
759 | |
760 int result = OK; | |
761 // TODO(eroman): Is this check really necessary? | |
762 if (os_error == EINPROGRESS || os_error == EALREADY) { | |
wtc
2013/09/13 22:22:44
Let's remove this check and the TODO comment.
EIN
yzshen1
2013/09/13 23:52:40
Done.
| |
763 NOTREACHED(); // This indicates a bug in libevent or our code. | |
764 result = ERR_UNEXPECTED; | |
765 } else { | |
766 result = MapConnectError(os_error); | |
767 } | |
768 | |
769 connect_os_error_ = os_error; | |
770 if (result != ERR_IO_PENDING) { | |
771 DoConnectComplete(result); | |
772 waiting_connect_ = false; | |
773 write_socket_watcher_.StopWatchingFileDescriptor(); | |
774 base::ResetAndReturn(&write_callback_).Run(result); | |
775 } | |
776 } | |
777 | |
778 void TCPSocketLibevent::DidCompleteConnectOrWrite() { | |
779 if (waiting_connect_) { | |
780 DidCompleteConnect(); | |
781 } else if (!write_callback_.is_null()) { | |
wtc
2013/09/13 22:22:44
(I know this is_null() check comes from the origin
yzshen1
2013/09/13 23:52:40
Done.
| |
782 DidCompleteWrite(); | |
783 } | |
784 } | |
785 | |
786 void TCPSocketLibevent::DidCompleteAccept() { | |
233 DCHECK(CalledOnValidThread()); | 787 DCHECK(CalledOnValidThread()); |
234 | 788 |
235 int result = AcceptInternal(accept_socket_, accept_address_); | 789 int result = AcceptInternal(accept_socket_, accept_address_); |
236 if (result != ERR_IO_PENDING) { | 790 if (result != ERR_IO_PENDING) { |
237 accept_socket_ = NULL; | 791 accept_socket_ = NULL; |
238 accept_address_ = NULL; | 792 accept_address_ = NULL; |
239 bool ok = accept_socket_watcher_.StopWatchingFileDescriptor(); | 793 bool ok = accept_socket_watcher_.StopWatchingFileDescriptor(); |
240 DCHECK(ok); | 794 DCHECK(ok); |
241 CompletionCallback callback = accept_callback_; | 795 CompletionCallback callback = accept_callback_; |
242 accept_callback_.Reset(); | 796 accept_callback_.Reset(); |
243 callback.Run(result); | 797 callback.Run(result); |
244 } | 798 } |
245 } | 799 } |
246 | 800 |
247 void TCPSocketLibevent::OnFileCanWriteWithoutBlocking(int fd) { | 801 int TCPSocketLibevent::InternalWrite(IOBuffer* buf, int buf_len) { |
248 NOTREACHED(); | 802 int nwrite; |
803 if (use_tcp_fastopen_ && !tcp_fastopen_connected_) { | |
804 SockaddrStorage storage; | |
805 if (!peer_address_->ToSockAddr(storage.addr, &storage.addr_len)) { | |
806 errno = EINVAL; | |
807 return -1; | |
808 } | |
809 | |
810 int flags = 0x20000000; // Magic flag to enable TCP_FASTOPEN. | |
811 #if defined(OS_LINUX) | |
812 // sendto() will fail with EPIPE when the system doesn't support TCP Fast | |
813 // Open. Theoretically that shouldn't happen since the caller should check | |
814 // for system support on startup, but users may dynamically disable TCP Fast | |
815 // Open via sysctl. | |
816 flags |= MSG_NOSIGNAL; | |
817 #endif // defined(OS_LINUX) | |
818 nwrite = HANDLE_EINTR(sendto(socket_, | |
819 buf->data(), | |
820 buf_len, | |
821 flags, | |
822 storage.addr, | |
823 storage.addr_len)); | |
824 tcp_fastopen_connected_ = true; | |
825 | |
826 if (nwrite < 0) { | |
827 DCHECK_NE(EPIPE, errno); | |
828 | |
829 // If errno == EINPROGRESS, that means the kernel didn't have a cookie | |
830 // and would block. The kernel is internally doing a connect() though. | |
831 // Remap EINPROGRESS to EAGAIN so we treat this the same as our other | |
832 // asynchronous cases. Note that the user buffer has not been copied to | |
833 // kernel space. | |
834 if (errno == EINPROGRESS) { | |
835 errno = EAGAIN; | |
836 fast_open_status_ = FAST_OPEN_SLOW_CONNECT_RETURN; | |
837 } else { | |
838 fast_open_status_ = FAST_OPEN_ERROR; | |
839 } | |
840 } else { | |
841 fast_open_status_ = FAST_OPEN_FAST_CONNECT_RETURN; | |
842 } | |
843 } else { | |
844 nwrite = HANDLE_EINTR(write(socket_, buf->data(), buf_len)); | |
845 } | |
846 return nwrite; | |
847 } | |
848 | |
849 void TCPSocketLibevent::RecordFastOpenStatus() { | |
850 if (use_tcp_fastopen_ && | |
851 (fast_open_status_ == FAST_OPEN_FAST_CONNECT_RETURN || | |
852 fast_open_status_ == FAST_OPEN_SLOW_CONNECT_RETURN)) { | |
853 DCHECK_NE(FAST_OPEN_STATUS_UNKNOWN, fast_open_status_); | |
854 bool getsockopt_success(false); | |
855 bool server_acked_data(false); | |
856 #if defined(TCP_INFO) | |
857 // Probe to see the if the socket used TCP Fast Open. | |
858 tcp_info info; | |
859 socklen_t info_len = sizeof(tcp_info); | |
860 getsockopt_success = | |
861 getsockopt(socket_, IPPROTO_TCP, TCP_INFO, &info, &info_len) == 0 && | |
862 info_len == sizeof(tcp_info); | |
863 server_acked_data = getsockopt_success && | |
864 (info.tcpi_options & TCPI_OPT_SYN_DATA); | |
865 #endif | |
866 if (getsockopt_success) { | |
867 if (fast_open_status_ == FAST_OPEN_FAST_CONNECT_RETURN) { | |
868 fast_open_status_ = (server_acked_data ? FAST_OPEN_SYN_DATA_ACK : | |
869 FAST_OPEN_SYN_DATA_NACK); | |
870 } else { | |
871 fast_open_status_ = (server_acked_data ? FAST_OPEN_NO_SYN_DATA_ACK : | |
872 FAST_OPEN_NO_SYN_DATA_NACK); | |
873 } | |
874 } else { | |
875 fast_open_status_ = (fast_open_status_ == FAST_OPEN_FAST_CONNECT_RETURN ? | |
876 FAST_OPEN_SYN_DATA_FAILED : | |
877 FAST_OPEN_NO_SYN_DATA_FAILED); | |
878 } | |
879 } | |
249 } | 880 } |
250 | 881 |
251 } // namespace net | 882 } // namespace net |
OLD | NEW |