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| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | 1 // Copyright 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 "base/message_pump_libevent.h" | 5 #include "base/message_pump_io_ios.h" |
| 6 | |
| 7 #include <errno.h> | |
| 8 #include <fcntl.h> | |
| 9 #include <unistd.h> | |
| 10 | |
| 11 #include "base/auto_reset.h" | |
| 12 #include "base/compiler_specific.h" | |
| 13 #include "base/logging.h" | |
| 14 #if defined(OS_MACOSX) | |
| 15 #include "base/mac/scoped_nsautorelease_pool.h" | |
| 16 #endif | |
| 17 #include "base/memory/scoped_ptr.h" | |
| 18 #include "base/observer_list.h" | |
| 19 #include "base/posix/eintr_wrapper.h" | |
| 20 #include "base/time.h" | |
| 21 #if defined(USE_SYSTEM_LIBEVENT) | |
| 22 #include <event.h> | |
| 23 #else | |
| 24 #include "third_party/libevent/event.h" | |
| 25 #endif | |
| 26 | |
| 27 #if defined(OS_MACOSX) | |
| 28 #include "base/mac/scoped_nsautorelease_pool.h" | |
| 29 #endif | |
| 30 | |
| 31 // Lifecycle of struct event | |
| 32 // Libevent uses two main data structures: | |
| 33 // struct event_base (of which there is one per message pump), and | |
| 34 // struct event (of which there is roughly one per socket). | |
| 35 // The socket's struct event is created in | |
| 36 // MessagePumpLibevent::WatchFileDescriptor(), | |
| 37 // is owned by the FileDescriptorWatcher, and is destroyed in | |
| 38 // StopWatchingFileDescriptor(). | |
| 39 // It is moved into and out of lists in struct event_base by | |
| 40 // the libevent functions event_add() and event_del(). | |
| 41 // | |
| 42 // TODO(dkegel): | |
| 43 // At the moment bad things happen if a FileDescriptorWatcher | |
| 44 // is active after its MessagePumpLibevent has been destroyed. | |
| 45 // See MessageLoopTest.FileDescriptorWatcherOutlivesMessageLoop | |
| 46 // Not clear yet whether that situation occurs in practice, | |
| 47 // but if it does, we need to fix it. | |
| 48 | 6 |
| 49 namespace base { | 7 namespace base { |
| 50 | 8 |
| 51 // Return 0 on success | 9 MessagePumpIOSForIO::FileDescriptorWatcher::FileDescriptorWatcher() |
| 52 // Too small a function to bother putting in a library? | 10 : is_persistent_(false), |
| 53 static int SetNonBlocking(int fd) { | 11 fdref_(NULL), |
| 54 int flags = fcntl(fd, F_GETFL, 0); | 12 callback_types_(0), |
| 55 if (flags == -1) | 13 fd_source_(NULL), |
| 56 flags = 0; | |
| 57 return fcntl(fd, F_SETFL, flags | O_NONBLOCK); | |
| 58 } | |
| 59 | |
| 60 MessagePumpLibevent::FileDescriptorWatcher::FileDescriptorWatcher() | |
| 61 : event_(NULL), | |
| 62 pump_(NULL), | 14 pump_(NULL), |
| 63 watcher_(NULL), | 15 watcher_(NULL) { |
| 64 ALLOW_THIS_IN_INITIALIZER_LIST(weak_factory_(this)) { | 16 } |
| 65 } | 17 |
| 66 | 18 MessagePumpIOSForIO::FileDescriptorWatcher::~FileDescriptorWatcher() { |
| 67 MessagePumpLibevent::FileDescriptorWatcher::~FileDescriptorWatcher() { | 19 StopWatchingFileDescriptor(); |
| 68 if (event_) { | 20 } |
| 69 StopWatchingFileDescriptor(); | 21 |
| 70 } | 22 bool MessagePumpIOSForIO::FileDescriptorWatcher::StopWatchingFileDescriptor() { |
| 71 } | 23 if (fdref_ == NULL) |
| 72 | |
| 73 bool MessagePumpLibevent::FileDescriptorWatcher::StopWatchingFileDescriptor() { | |
| 74 event* e = ReleaseEvent(); | |
| 75 if (e == NULL) | |
| 76 return true; | 24 return true; |
| 77 | 25 |
| 78 // event_del() is a no-op if the event isn't active. | 26 CFFileDescriptorDisableCallBacks(fdref_, callback_types_); |
| 79 int rv = event_del(e); | 27 pump_->RemoveRunLoopSource(fd_source_); |
| 80 delete e; | 28 fd_source_.reset(); |
| 29 fdref_.reset(); |
| 30 callback_types_ = 0; |
| 81 pump_ = NULL; | 31 pump_ = NULL; |
| 82 watcher_ = NULL; | 32 watcher_ = NULL; |
| 83 return (rv == 0); | 33 return true; |
| 84 } | 34 } |
| 85 | 35 |
| 86 void MessagePumpLibevent::FileDescriptorWatcher::Init(event *e) { | 36 void MessagePumpIOSForIO::FileDescriptorWatcher::Init( |
| 87 DCHECK(e); | 37 CFFileDescriptorRef fdref, |
| 88 DCHECK(!event_); | 38 CFOptionFlags callback_types, |
| 89 | 39 CFRunLoopSourceRef fd_source, |
| 90 event_ = e; | 40 bool is_persistent) { |
| 91 } | 41 DCHECK(fdref); |
| 92 | 42 DCHECK(!fdref_); |
| 93 event *MessagePumpLibevent::FileDescriptorWatcher::ReleaseEvent() { | 43 |
| 94 struct event *e = event_; | 44 is_persistent_ = is_persistent; |
| 95 event_ = NULL; | 45 fdref_.reset(fdref); |
| 96 return e; | 46 callback_types_ = callback_types; |
| 97 } | 47 fd_source_.reset(fd_source); |
| 98 | 48 } |
| 99 void MessagePumpLibevent::FileDescriptorWatcher::OnFileCanReadWithoutBlocking( | 49 |
| 100 int fd, MessagePumpLibevent* pump) { | 50 void MessagePumpIOSForIO::FileDescriptorWatcher::OnFileCanReadWithoutBlocking( |
| 101 // Since OnFileCanWriteWithoutBlocking() gets called first, it can stop | 51 int fd, |
| 102 // watching the file descriptor. | 52 MessagePumpIOSForIO* pump) { |
| 103 if (!watcher_) | 53 DCHECK(callback_types_ & kCFFileDescriptorReadCallBack); |
| 104 return; | |
| 105 pump->WillProcessIOEvent(); | 54 pump->WillProcessIOEvent(); |
| 106 watcher_->OnFileCanReadWithoutBlocking(fd); | 55 watcher_->OnFileCanReadWithoutBlocking(fd); |
| 107 pump->DidProcessIOEvent(); | 56 pump->DidProcessIOEvent(); |
| 108 } | 57 } |
| 109 | 58 |
| 110 void MessagePumpLibevent::FileDescriptorWatcher::OnFileCanWriteWithoutBlocking( | 59 void MessagePumpIOSForIO::FileDescriptorWatcher::OnFileCanWriteWithoutBlocking( |
| 111 int fd, MessagePumpLibevent* pump) { | 60 int fd, |
| 112 DCHECK(watcher_); | 61 MessagePumpIOSForIO* pump) { |
| 62 DCHECK(callback_types_ & kCFFileDescriptorWriteCallBack); |
| 113 pump->WillProcessIOEvent(); | 63 pump->WillProcessIOEvent(); |
| 114 watcher_->OnFileCanWriteWithoutBlocking(fd); | 64 watcher_->OnFileCanWriteWithoutBlocking(fd); |
| 115 pump->DidProcessIOEvent(); | 65 pump->DidProcessIOEvent(); |
| 116 } | 66 } |
| 117 | 67 |
| 118 MessagePumpLibevent::MessagePumpLibevent() | 68 MessagePumpIOSForIO::MessagePumpIOSForIO() { |
| 119 : keep_running_(true), | 69 } |
| 120 in_run_(false), | 70 |
| 121 processed_io_events_(false), | 71 MessagePumpIOSForIO::~MessagePumpIOSForIO() { |
| 122 event_base_(event_base_new()), | 72 } |
| 123 wakeup_pipe_in_(-1), | 73 |
| 124 wakeup_pipe_out_(-1) { | 74 bool MessagePumpIOSForIO::WatchFileDescriptor( |
| 125 if (!Init()) | 75 int fd, |
| 126 NOTREACHED(); | 76 bool persistent, |
| 127 } | 77 int mode, |
| 128 | 78 FileDescriptorWatcher *controller, |
| 129 MessagePumpLibevent::~MessagePumpLibevent() { | 79 Watcher *delegate) { |
| 130 DCHECK(wakeup_event_); | |
| 131 DCHECK(event_base_); | |
| 132 event_del(wakeup_event_); | |
| 133 delete wakeup_event_; | |
| 134 if (wakeup_pipe_in_ >= 0) { | |
| 135 if (HANDLE_EINTR(close(wakeup_pipe_in_)) < 0) | |
| 136 DPLOG(ERROR) << "close"; | |
| 137 } | |
| 138 if (wakeup_pipe_out_ >= 0) { | |
| 139 if (HANDLE_EINTR(close(wakeup_pipe_out_)) < 0) | |
| 140 DPLOG(ERROR) << "close"; | |
| 141 } | |
| 142 event_base_free(event_base_); | |
| 143 } | |
| 144 | |
| 145 bool MessagePumpLibevent::WatchFileDescriptor(int fd, | |
| 146 bool persistent, | |
| 147 Mode mode, | |
| 148 FileDescriptorWatcher *controller, | |
| 149 Watcher *delegate) { | |
| 150 DCHECK_GE(fd, 0); | 80 DCHECK_GE(fd, 0); |
| 151 DCHECK(controller); | 81 DCHECK(controller); |
| 152 DCHECK(delegate); | 82 DCHECK(delegate); |
| 153 DCHECK(mode == WATCH_READ || mode == WATCH_WRITE || mode == WATCH_READ_WRITE); | 83 DCHECK(mode == WATCH_READ || mode == WATCH_WRITE || mode == WATCH_READ_WRITE); |
| 84 |
| 154 // WatchFileDescriptor should be called on the pump thread. It is not | 85 // WatchFileDescriptor should be called on the pump thread. It is not |
| 155 // threadsafe, and your watcher may never be registered. | 86 // threadsafe, and your watcher may never be registered. |
| 156 DCHECK(watch_file_descriptor_caller_checker_.CalledOnValidThread()); | 87 DCHECK(watch_file_descriptor_caller_checker_.CalledOnValidThread()); |
| 157 | 88 |
| 158 int event_mask = persistent ? EV_PERSIST : 0; | 89 CFFileDescriptorContext source_context = {0}; |
| 159 if ((mode & WATCH_READ) != 0) { | 90 source_context.info = controller; |
| 160 event_mask |= EV_READ; | 91 |
| 161 } | 92 CFOptionFlags callback_types = 0; |
| 162 if ((mode & WATCH_WRITE) != 0) { | 93 if (mode & WATCH_READ) { |
| 163 event_mask |= EV_WRITE; | 94 callback_types |= kCFFileDescriptorReadCallBack; |
| 164 } | 95 } |
| 165 | 96 if (mode & WATCH_WRITE) { |
| 166 scoped_ptr<event> evt(controller->ReleaseEvent()); | 97 callback_types |= kCFFileDescriptorWriteCallBack; |
| 167 if (evt.get() == NULL) { | 98 } |
| 168 // Ownership is transferred to the controller. | 99 |
| 169 evt.reset(new event); | 100 CFFileDescriptorRef fdref = controller->fdref_; |
| 101 if (fdref == NULL) { |
| 102 base::mac::ScopedCFTypeRef<CFFileDescriptorRef> scoped_fdref( |
| 103 CFFileDescriptorCreate(kCFAllocatorDefault, fd, false, HandleFdIOEvent, |
| 104 &source_context)); |
| 105 if (scoped_fdref == NULL) { |
| 106 NOTREACHED() << "CFFileDescriptorCreate failed"; |
| 107 return false; |
| 108 } |
| 109 |
| 110 CFFileDescriptorEnableCallBacks(scoped_fdref, callback_types); |
| 111 |
| 112 // TODO(wtc): what should the 'order' argument be? |
| 113 base::mac::ScopedCFTypeRef<CFRunLoopSourceRef> scoped_fd_source( |
| 114 CFFileDescriptorCreateRunLoopSource(kCFAllocatorDefault, |
| 115 scoped_fdref, |
| 116 0)); |
| 117 if (scoped_fd_source == NULL) { |
| 118 NOTREACHED() << "CFFileDescriptorCreateRunLoopSource failed"; |
| 119 return false; |
| 120 } |
| 121 CFRunLoopAddSource(run_loop(), scoped_fd_source, kCFRunLoopCommonModes); |
| 122 |
| 123 // Transfer ownership of scoped_fdref and fd_source to controller. |
| 124 controller->Init(scoped_fdref.release(), callback_types, |
| 125 scoped_fd_source.release(), persistent); |
| 170 } else { | 126 } else { |
| 171 // Make sure we don't pick up any funky internal libevent masks. | |
| 172 int old_interest_mask = evt.get()->ev_events & | |
| 173 (EV_READ | EV_WRITE | EV_PERSIST); | |
| 174 | |
| 175 // Combine old/new event masks. | |
| 176 event_mask |= old_interest_mask; | |
| 177 | |
| 178 // Must disarm the event before we can reuse it. | |
| 179 event_del(evt.get()); | |
| 180 | |
| 181 // It's illegal to use this function to listen on 2 separate fds with the | 127 // It's illegal to use this function to listen on 2 separate fds with the |
| 182 // same |controller|. | 128 // same |controller|. |
| 183 if (EVENT_FD(evt.get()) != fd) { | 129 if (CFFileDescriptorGetNativeDescriptor(fdref) != fd) { |
| 184 NOTREACHED() << "FDs don't match" << EVENT_FD(evt.get()) << "!=" << fd; | 130 NOTREACHED() << "FDs don't match: " |
| 185 return false; | 131 << CFFileDescriptorGetNativeDescriptor(fdref) |
| 186 } | 132 << " != " << fd; |
| 187 } | 133 return false; |
| 188 | 134 } |
| 189 // Set current interest mask and message pump for this event. | 135 if (persistent != controller->is_persistent_) { |
| 190 event_set(evt.get(), fd, event_mask, OnLibeventNotification, controller); | 136 NOTREACHED() << "persistent doesn't match"; |
| 191 | 137 return false; |
| 192 // Tell libevent which message pump this socket will belong to when we add it. | 138 } |
| 193 if (event_base_set(event_base_, evt.get()) != 0) { | 139 |
| 194 return false; | 140 // Combine old/new event masks. |
| 195 } | 141 CFFileDescriptorDisableCallBacks(fdref, controller->callback_types_); |
| 196 | 142 controller->callback_types_ |= callback_types; |
| 197 // Add this socket to the list of monitored sockets. | 143 CFFileDescriptorEnableCallBacks(fdref, controller->callback_types_); |
| 198 if (event_add(evt.get(), NULL) != 0) { | 144 } |
| 199 return false; | |
| 200 } | |
| 201 | |
| 202 // Transfer ownership of evt to controller. | |
| 203 controller->Init(evt.release()); | |
| 204 | 145 |
| 205 controller->set_watcher(delegate); | 146 controller->set_watcher(delegate); |
| 206 controller->set_pump(this); | 147 controller->set_pump(this); |
| 207 | 148 |
| 208 return true; | 149 return true; |
| 209 } | 150 } |
| 210 | 151 |
| 211 void MessagePumpLibevent::AddIOObserver(IOObserver *obs) { | 152 void MessagePumpIOSForIO::RemoveRunLoopSource(CFRunLoopSourceRef source) { |
| 153 CFRunLoopRemoveSource(run_loop(), source, kCFRunLoopCommonModes); |
| 154 } |
| 155 |
| 156 void MessagePumpIOSForIO::AddIOObserver(IOObserver *obs) { |
| 212 io_observers_.AddObserver(obs); | 157 io_observers_.AddObserver(obs); |
| 213 } | 158 } |
| 214 | 159 |
| 215 void MessagePumpLibevent::RemoveIOObserver(IOObserver *obs) { | 160 void MessagePumpIOSForIO::RemoveIOObserver(IOObserver *obs) { |
| 216 io_observers_.RemoveObserver(obs); | 161 io_observers_.RemoveObserver(obs); |
| 217 } | 162 } |
| 218 | 163 |
| 219 // Tell libevent to break out of inner loop. | 164 void MessagePumpIOSForIO::WillProcessIOEvent() { |
| 220 static void timer_callback(int fd, short events, void *context) | |
| 221 { | |
| 222 event_base_loopbreak((struct event_base *)context); | |
| 223 } | |
| 224 | |
| 225 // Reentrant! | |
| 226 void MessagePumpLibevent::Run(Delegate* delegate) { | |
| 227 DCHECK(keep_running_) << "Quit must have been called outside of Run!"; | |
| 228 base::AutoReset<bool> auto_reset_in_run(&in_run_, true); | |
| 229 | |
| 230 // event_base_loopexit() + EVLOOP_ONCE is leaky, see http://crbug.com/25641. | |
| 231 // Instead, make our own timer and reuse it on each call to event_base_loop(). | |
| 232 scoped_ptr<event> timer_event(new event); | |
| 233 | |
| 234 for (;;) { | |
| 235 #if defined(OS_MACOSX) | |
| 236 mac::ScopedNSAutoreleasePool autorelease_pool; | |
| 237 #endif | |
| 238 | |
| 239 bool did_work = delegate->DoWork(); | |
| 240 if (!keep_running_) | |
| 241 break; | |
| 242 | |
| 243 event_base_loop(event_base_, EVLOOP_NONBLOCK); | |
| 244 did_work |= processed_io_events_; | |
| 245 processed_io_events_ = false; | |
| 246 if (!keep_running_) | |
| 247 break; | |
| 248 | |
| 249 did_work |= delegate->DoDelayedWork(&delayed_work_time_); | |
| 250 if (!keep_running_) | |
| 251 break; | |
| 252 | |
| 253 if (did_work) | |
| 254 continue; | |
| 255 | |
| 256 did_work = delegate->DoIdleWork(); | |
| 257 if (!keep_running_) | |
| 258 break; | |
| 259 | |
| 260 if (did_work) | |
| 261 continue; | |
| 262 | |
| 263 // EVLOOP_ONCE tells libevent to only block once, | |
| 264 // but to service all pending events when it wakes up. | |
| 265 if (delayed_work_time_.is_null()) { | |
| 266 event_base_loop(event_base_, EVLOOP_ONCE); | |
| 267 } else { | |
| 268 TimeDelta delay = delayed_work_time_ - TimeTicks::Now(); | |
| 269 if (delay > TimeDelta()) { | |
| 270 struct timeval poll_tv; | |
| 271 poll_tv.tv_sec = delay.InSeconds(); | |
| 272 poll_tv.tv_usec = delay.InMicroseconds() % Time::kMicrosecondsPerSecond; | |
| 273 event_set(timer_event.get(), -1, 0, timer_callback, event_base_); | |
| 274 event_base_set(event_base_, timer_event.get()); | |
| 275 event_add(timer_event.get(), &poll_tv); | |
| 276 event_base_loop(event_base_, EVLOOP_ONCE); | |
| 277 event_del(timer_event.get()); | |
| 278 } else { | |
| 279 // It looks like delayed_work_time_ indicates a time in the past, so we | |
| 280 // need to call DoDelayedWork now. | |
| 281 delayed_work_time_ = TimeTicks(); | |
| 282 } | |
| 283 } | |
| 284 } | |
| 285 | |
| 286 keep_running_ = true; | |
| 287 } | |
| 288 | |
| 289 void MessagePumpLibevent::Quit() { | |
| 290 DCHECK(in_run_); | |
| 291 // Tell both libevent and Run that they should break out of their loops. | |
| 292 keep_running_ = false; | |
| 293 ScheduleWork(); | |
| 294 } | |
| 295 | |
| 296 void MessagePumpLibevent::ScheduleWork() { | |
| 297 // Tell libevent (in a threadsafe way) that it should break out of its loop. | |
| 298 char buf = 0; | |
| 299 int nwrite = HANDLE_EINTR(write(wakeup_pipe_in_, &buf, 1)); | |
| 300 DCHECK(nwrite == 1 || errno == EAGAIN) | |
| 301 << "[nwrite:" << nwrite << "] [errno:" << errno << "]"; | |
| 302 } | |
| 303 | |
| 304 void MessagePumpLibevent::ScheduleDelayedWork( | |
| 305 const TimeTicks& delayed_work_time) { | |
| 306 // We know that we can't be blocked on Wait right now since this method can | |
| 307 // only be called on the same thread as Run, so we only need to update our | |
| 308 // record of how long to sleep when we do sleep. | |
| 309 delayed_work_time_ = delayed_work_time; | |
| 310 } | |
| 311 | |
| 312 void MessagePumpLibevent::WillProcessIOEvent() { | |
| 313 FOR_EACH_OBSERVER(IOObserver, io_observers_, WillProcessIOEvent()); | 165 FOR_EACH_OBSERVER(IOObserver, io_observers_, WillProcessIOEvent()); |
| 314 } | 166 } |
| 315 | 167 |
| 316 void MessagePumpLibevent::DidProcessIOEvent() { | 168 void MessagePumpIOSForIO::DidProcessIOEvent() { |
| 317 FOR_EACH_OBSERVER(IOObserver, io_observers_, DidProcessIOEvent()); | 169 FOR_EACH_OBSERVER(IOObserver, io_observers_, DidProcessIOEvent()); |
| 318 } | 170 } |
| 319 | 171 |
| 320 bool MessagePumpLibevent::Init() { | |
| 321 int fds[2]; | |
| 322 if (pipe(fds)) { | |
| 323 DLOG(ERROR) << "pipe() failed, errno: " << errno; | |
| 324 return false; | |
| 325 } | |
| 326 if (SetNonBlocking(fds[0])) { | |
| 327 DLOG(ERROR) << "SetNonBlocking for pipe fd[0] failed, errno: " << errno; | |
| 328 return false; | |
| 329 } | |
| 330 if (SetNonBlocking(fds[1])) { | |
| 331 DLOG(ERROR) << "SetNonBlocking for pipe fd[1] failed, errno: " << errno; | |
| 332 return false; | |
| 333 } | |
| 334 wakeup_pipe_out_ = fds[0]; | |
| 335 wakeup_pipe_in_ = fds[1]; | |
| 336 | |
| 337 wakeup_event_ = new event; | |
| 338 event_set(wakeup_event_, wakeup_pipe_out_, EV_READ | EV_PERSIST, | |
| 339 OnWakeup, this); | |
| 340 event_base_set(event_base_, wakeup_event_); | |
| 341 | |
| 342 if (event_add(wakeup_event_, 0)) | |
| 343 return false; | |
| 344 return true; | |
| 345 } | |
| 346 | |
| 347 // static | 172 // static |
| 348 void MessagePumpLibevent::OnLibeventNotification(int fd, short flags, | 173 void MessagePumpIOSForIO::HandleFdIOEvent(CFFileDescriptorRef fdref, |
| 349 void* context) { | 174 CFOptionFlags callback_types, |
| 350 base::WeakPtr<FileDescriptorWatcher> controller = | 175 void* context) { |
| 351 static_cast<FileDescriptorWatcher*>(context)->weak_factory_.GetWeakPtr(); | 176 FileDescriptorWatcher* controller = |
| 352 DCHECK(controller.get()); | 177 static_cast<FileDescriptorWatcher*>(context); |
| 353 | 178 DCHECK_EQ(fdref, controller->fdref_); |
| 354 MessagePumpLibevent* pump = controller->pump(); | 179 |
| 355 pump->processed_io_events_ = true; | 180 // Ensure that |fdref| will remain live for the duration of this function |
| 356 | 181 // call even if |controller| is deleted or |StopWatchingFileDescriptor()| is |
| 357 if (flags & EV_WRITE) { | 182 // called, either of which will cause |fdref| to be released. |
| 183 mac::ScopedCFTypeRef<CFFileDescriptorRef> scoped_fdref( |
| 184 fdref, base::scoped_policy::RETAIN); |
| 185 |
| 186 int fd = CFFileDescriptorGetNativeDescriptor(fdref); |
| 187 MessagePumpIOSForIO* pump = controller->pump(); |
| 188 if (callback_types & kCFFileDescriptorWriteCallBack) |
| 358 controller->OnFileCanWriteWithoutBlocking(fd, pump); | 189 controller->OnFileCanWriteWithoutBlocking(fd, pump); |
| 359 } | 190 |
| 360 // Check |controller| in case it's been deleted in | 191 // Perform the read callback only if the file descriptor has not been |
| 361 // controller->OnFileCanWriteWithoutBlocking(). | 192 // invalidated in the write callback. As |FileDescriptorWatcher| invalidates |
| 362 if (controller.get() && flags & EV_READ) { | 193 // its file descriptor on destruction, the file descriptor being valid also |
| 194 // guarantees that |controller| has not been deleted. |
| 195 if (callback_types & kCFFileDescriptorReadCallBack && |
| 196 CFFileDescriptorIsValid(fdref)) { |
| 197 DCHECK_EQ(fdref, controller->fdref_); |
| 363 controller->OnFileCanReadWithoutBlocking(fd, pump); | 198 controller->OnFileCanReadWithoutBlocking(fd, pump); |
| 364 } | 199 } |
| 365 } | 200 |
| 366 | 201 // Re-enable callbacks after the read/write if the file descriptor is still |
| 367 // Called if a byte is received on the wakeup pipe. | 202 // valid and the controller is persistent. |
| 368 // static | 203 if (CFFileDescriptorIsValid(fdref) && controller->is_persistent_) { |
| 369 void MessagePumpLibevent::OnWakeup(int socket, short flags, void* context) { | 204 DCHECK_EQ(fdref, controller->fdref_); |
| 370 base::MessagePumpLibevent* that = | 205 CFFileDescriptorEnableCallBacks(fdref, callback_types); |
| 371 static_cast<base::MessagePumpLibevent*>(context); | 206 } |
| 372 DCHECK(that->wakeup_pipe_out_ == socket); | |
| 373 | |
| 374 // Remove and discard the wakeup byte. | |
| 375 char buf; | |
| 376 int nread = HANDLE_EINTR(read(socket, &buf, 1)); | |
| 377 DCHECK_EQ(nread, 1); | |
| 378 that->processed_io_events_ = true; | |
| 379 // Tell libevent to break out of inner loop. | |
| 380 event_base_loopbreak(that->event_base_); | |
| 381 } | 207 } |
| 382 | 208 |
| 383 } // namespace base | 209 } // namespace base |
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