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1 //
2 // Copyright 2010 The Android Open Source Project
3 //
4 // A looper implementation based on epoll().
5 //
6 #define LOG_TAG "Looper"
7 
8 //#define LOG_NDEBUG 0
9 
10 // Debugs poll and wake interactions.
11 #define DEBUG_POLL_AND_WAKE 0
12 
13 // Debugs callback registration and invocation.
14 #define DEBUG_CALLBACKS 0
15 
16 #include <utils/Looper.h>
17 
18 #include <sys/eventfd.h>
19 #include <cinttypes>
20 
21 namespace android {
22 
23 namespace {
24 
25 constexpr uint64_t WAKE_EVENT_FD_SEQ = 1;
26 
createEpollEvent(uint32_t events,uint64_t seq)27 epoll_event createEpollEvent(uint32_t events, uint64_t seq) {
28     return {.events = events, .data = {.u64 = seq}};
29 }
30 
31 }  // namespace
32 
33 // --- WeakMessageHandler ---
34 
WeakMessageHandler(const wp<MessageHandler> & handler)35 WeakMessageHandler::WeakMessageHandler(const wp<MessageHandler>& handler) :
36         mHandler(handler) {
37 }
38 
~WeakMessageHandler()39 WeakMessageHandler::~WeakMessageHandler() {
40 }
41 
handleMessage(const Message & message)42 void WeakMessageHandler::handleMessage(const Message& message) {
43     sp<MessageHandler> handler = mHandler.promote();
44     if (handler != nullptr) {
45         handler->handleMessage(message);
46     }
47 }
48 
49 
50 // --- SimpleLooperCallback ---
51 
SimpleLooperCallback(Looper_callbackFunc callback)52 SimpleLooperCallback::SimpleLooperCallback(Looper_callbackFunc callback) :
53         mCallback(callback) {
54 }
55 
~SimpleLooperCallback()56 SimpleLooperCallback::~SimpleLooperCallback() {
57 }
58 
handleEvent(int fd,int events,void * data)59 int SimpleLooperCallback::handleEvent(int fd, int events, void* data) {
60     return mCallback(fd, events, data);
61 }
62 
63 
64 // --- Looper ---
65 
66 // Maximum number of file descriptors for which to retrieve poll events each iteration.
67 static const int EPOLL_MAX_EVENTS = 16;
68 
69 static pthread_once_t gTLSOnce = PTHREAD_ONCE_INIT;
70 static pthread_key_t gTLSKey = 0;
71 
Looper(bool allowNonCallbacks)72 Looper::Looper(bool allowNonCallbacks)
73     : mAllowNonCallbacks(allowNonCallbacks),
74       mSendingMessage(false),
75       mPolling(false),
76       mEpollRebuildRequired(false),
77       mNextRequestSeq(WAKE_EVENT_FD_SEQ + 1),
78       mResponseIndex(0),
79       mNextMessageUptime(LLONG_MAX) {
80     mWakeEventFd.reset(eventfd(0, EFD_NONBLOCK | EFD_CLOEXEC));
81     LOG_ALWAYS_FATAL_IF(mWakeEventFd.get() < 0, "Could not make wake event fd: %s", strerror(errno));
82 
83     AutoMutex _l(mLock);
84     rebuildEpollLocked();
85 }
86 
~Looper()87 Looper::~Looper() {
88 }
89 
initTLSKey()90 void Looper::initTLSKey() {
91     int error = pthread_key_create(&gTLSKey, threadDestructor);
92     LOG_ALWAYS_FATAL_IF(error != 0, "Could not allocate TLS key: %s", strerror(error));
93 }
94 
threadDestructor(void * st)95 void Looper::threadDestructor(void *st) {
96     Looper* const self = static_cast<Looper*>(st);
97     if (self != nullptr) {
98         self->decStrong((void*)threadDestructor);
99     }
100 }
101 
setForThread(const sp<Looper> & looper)102 void Looper::setForThread(const sp<Looper>& looper) {
103     sp<Looper> old = getForThread(); // also has side-effect of initializing TLS
104 
105     if (looper != nullptr) {
106         looper->incStrong((void*)threadDestructor);
107     }
108 
109     pthread_setspecific(gTLSKey, looper.get());
110 
111     if (old != nullptr) {
112         old->decStrong((void*)threadDestructor);
113     }
114 }
115 
getForThread()116 sp<Looper> Looper::getForThread() {
117     int result = pthread_once(& gTLSOnce, initTLSKey);
118     LOG_ALWAYS_FATAL_IF(result != 0, "pthread_once failed");
119 
120     Looper* looper = (Looper*)pthread_getspecific(gTLSKey);
121     return sp<Looper>::fromExisting(looper);
122 }
123 
prepare(int opts)124 sp<Looper> Looper::prepare(int opts) {
125     bool allowNonCallbacks = opts & PREPARE_ALLOW_NON_CALLBACKS;
126     sp<Looper> looper = Looper::getForThread();
127     if (looper == nullptr) {
128         looper = sp<Looper>::make(allowNonCallbacks);
129         Looper::setForThread(looper);
130     }
131     if (looper->getAllowNonCallbacks() != allowNonCallbacks) {
132         ALOGW("Looper already prepared for this thread with a different value for the "
133                 "LOOPER_PREPARE_ALLOW_NON_CALLBACKS option.");
134     }
135     return looper;
136 }
137 
getAllowNonCallbacks() const138 bool Looper::getAllowNonCallbacks() const {
139     return mAllowNonCallbacks;
140 }
141 
rebuildEpollLocked()142 void Looper::rebuildEpollLocked() {
143     // Close old epoll instance if we have one.
144     if (mEpollFd >= 0) {
145 #if DEBUG_CALLBACKS
146         ALOGD("%p ~ rebuildEpollLocked - rebuilding epoll set", this);
147 #endif
148         mEpollFd.reset();
149     }
150 
151     // Allocate the new epoll instance and register the WakeEventFd.
152     mEpollFd.reset(epoll_create1(EPOLL_CLOEXEC));
153     LOG_ALWAYS_FATAL_IF(mEpollFd < 0, "Could not create epoll instance: %s", strerror(errno));
154 
155     epoll_event wakeEvent = createEpollEvent(EPOLLIN, WAKE_EVENT_FD_SEQ);
156     int result = epoll_ctl(mEpollFd.get(), EPOLL_CTL_ADD, mWakeEventFd.get(), &wakeEvent);
157     LOG_ALWAYS_FATAL_IF(result != 0, "Could not add wake event fd to epoll instance: %s",
158                         strerror(errno));
159 
160     for (const auto& [seq, request] : mRequests) {
161         epoll_event eventItem = createEpollEvent(request.getEpollEvents(), seq);
162 
163         int epollResult = epoll_ctl(mEpollFd.get(), EPOLL_CTL_ADD, request.fd, &eventItem);
164         if (epollResult < 0) {
165             ALOGE("Error adding epoll events for fd %d while rebuilding epoll set: %s",
166                   request.fd, strerror(errno));
167         }
168     }
169 }
170 
scheduleEpollRebuildLocked()171 void Looper::scheduleEpollRebuildLocked() {
172     if (!mEpollRebuildRequired) {
173 #if DEBUG_CALLBACKS
174         ALOGD("%p ~ scheduleEpollRebuildLocked - scheduling epoll set rebuild", this);
175 #endif
176         mEpollRebuildRequired = true;
177         wake();
178     }
179 }
180 
pollOnce(int timeoutMillis,int * outFd,int * outEvents,void ** outData)181 int Looper::pollOnce(int timeoutMillis, int* outFd, int* outEvents, void** outData) {
182     int result = 0;
183     for (;;) {
184         while (mResponseIndex < mResponses.size()) {
185             const Response& response = mResponses.itemAt(mResponseIndex++);
186             int ident = response.request.ident;
187             if (ident >= 0) {
188                 int fd = response.request.fd;
189                 int events = response.events;
190                 void* data = response.request.data;
191 #if DEBUG_POLL_AND_WAKE
192                 ALOGD("%p ~ pollOnce - returning signalled identifier %d: "
193                         "fd=%d, events=0x%x, data=%p",
194                         this, ident, fd, events, data);
195 #endif
196                 if (outFd != nullptr) *outFd = fd;
197                 if (outEvents != nullptr) *outEvents = events;
198                 if (outData != nullptr) *outData = data;
199                 return ident;
200             }
201         }
202 
203         if (result != 0) {
204 #if DEBUG_POLL_AND_WAKE
205             ALOGD("%p ~ pollOnce - returning result %d", this, result);
206 #endif
207             if (outFd != nullptr) *outFd = 0;
208             if (outEvents != nullptr) *outEvents = 0;
209             if (outData != nullptr) *outData = nullptr;
210             return result;
211         }
212 
213         result = pollInner(timeoutMillis);
214     }
215 }
216 
pollInner(int timeoutMillis)217 int Looper::pollInner(int timeoutMillis) {
218 #if DEBUG_POLL_AND_WAKE
219     ALOGD("%p ~ pollOnce - waiting: timeoutMillis=%d", this, timeoutMillis);
220 #endif
221 
222     // Adjust the timeout based on when the next message is due.
223     if (timeoutMillis != 0 && mNextMessageUptime != LLONG_MAX) {
224         nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
225         int messageTimeoutMillis = toMillisecondTimeoutDelay(now, mNextMessageUptime);
226         if (messageTimeoutMillis >= 0
227                 && (timeoutMillis < 0 || messageTimeoutMillis < timeoutMillis)) {
228             timeoutMillis = messageTimeoutMillis;
229         }
230 #if DEBUG_POLL_AND_WAKE
231         ALOGD("%p ~ pollOnce - next message in %" PRId64 "ns, adjusted timeout: timeoutMillis=%d",
232                 this, mNextMessageUptime - now, timeoutMillis);
233 #endif
234     }
235 
236     // Poll.
237     int result = POLL_WAKE;
238     mResponses.clear();
239     mResponseIndex = 0;
240 
241     // We are about to idle.
242     mPolling = true;
243 
244     struct epoll_event eventItems[EPOLL_MAX_EVENTS];
245     int eventCount = epoll_wait(mEpollFd.get(), eventItems, EPOLL_MAX_EVENTS, timeoutMillis);
246 
247     // No longer idling.
248     mPolling = false;
249 
250     // Acquire lock.
251     mLock.lock();
252 
253     // Rebuild epoll set if needed.
254     if (mEpollRebuildRequired) {
255         mEpollRebuildRequired = false;
256         rebuildEpollLocked();
257         goto Done;
258     }
259 
260     // Check for poll error.
261     if (eventCount < 0) {
262         if (errno == EINTR) {
263             goto Done;
264         }
265         ALOGW("Poll failed with an unexpected error: %s", strerror(errno));
266         result = POLL_ERROR;
267         goto Done;
268     }
269 
270     // Check for poll timeout.
271     if (eventCount == 0) {
272 #if DEBUG_POLL_AND_WAKE
273         ALOGD("%p ~ pollOnce - timeout", this);
274 #endif
275         result = POLL_TIMEOUT;
276         goto Done;
277     }
278 
279     // Handle all events.
280 #if DEBUG_POLL_AND_WAKE
281     ALOGD("%p ~ pollOnce - handling events from %d fds", this, eventCount);
282 #endif
283 
284     for (int i = 0; i < eventCount; i++) {
285         const SequenceNumber seq = eventItems[i].data.u64;
286         uint32_t epollEvents = eventItems[i].events;
287         if (seq == WAKE_EVENT_FD_SEQ) {
288             if (epollEvents & EPOLLIN) {
289                 awoken();
290             } else {
291                 ALOGW("Ignoring unexpected epoll events 0x%x on wake event fd.", epollEvents);
292             }
293         } else {
294             const auto& request_it = mRequests.find(seq);
295             if (request_it != mRequests.end()) {
296                 const auto& request = request_it->second;
297                 int events = 0;
298                 if (epollEvents & EPOLLIN) events |= EVENT_INPUT;
299                 if (epollEvents & EPOLLOUT) events |= EVENT_OUTPUT;
300                 if (epollEvents & EPOLLERR) events |= EVENT_ERROR;
301                 if (epollEvents & EPOLLHUP) events |= EVENT_HANGUP;
302                 mResponses.push({.seq = seq, .events = events, .request = request});
303             } else {
304                 ALOGW("Ignoring unexpected epoll events 0x%x for sequence number %" PRIu64
305                       " that is no longer registered.",
306                       epollEvents, seq);
307             }
308         }
309     }
310 Done: ;
311 
312     // Invoke pending message callbacks.
313     mNextMessageUptime = LLONG_MAX;
314     while (mMessageEnvelopes.size() != 0) {
315         nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
316         const MessageEnvelope& messageEnvelope = mMessageEnvelopes.itemAt(0);
317         if (messageEnvelope.uptime <= now) {
318             // Remove the envelope from the list.
319             // We keep a strong reference to the handler until the call to handleMessage
320             // finishes.  Then we drop it so that the handler can be deleted *before*
321             // we reacquire our lock.
322             { // obtain handler
323                 sp<MessageHandler> handler = messageEnvelope.handler;
324                 Message message = messageEnvelope.message;
325                 mMessageEnvelopes.removeAt(0);
326                 mSendingMessage = true;
327                 mLock.unlock();
328 
329 #if DEBUG_POLL_AND_WAKE || DEBUG_CALLBACKS
330                 ALOGD("%p ~ pollOnce - sending message: handler=%p, what=%d",
331                         this, handler.get(), message.what);
332 #endif
333                 handler->handleMessage(message);
334             } // release handler
335 
336             mLock.lock();
337             mSendingMessage = false;
338             result = POLL_CALLBACK;
339         } else {
340             // The last message left at the head of the queue determines the next wakeup time.
341             mNextMessageUptime = messageEnvelope.uptime;
342             break;
343         }
344     }
345 
346     // Release lock.
347     mLock.unlock();
348 
349     // Invoke all response callbacks.
350     for (size_t i = 0; i < mResponses.size(); i++) {
351         Response& response = mResponses.editItemAt(i);
352         if (response.request.ident == POLL_CALLBACK) {
353             int fd = response.request.fd;
354             int events = response.events;
355             void* data = response.request.data;
356 #if DEBUG_POLL_AND_WAKE || DEBUG_CALLBACKS
357             ALOGD("%p ~ pollOnce - invoking fd event callback %p: fd=%d, events=0x%x, data=%p",
358                     this, response.request.callback.get(), fd, events, data);
359 #endif
360             // Invoke the callback.  Note that the file descriptor may be closed by
361             // the callback (and potentially even reused) before the function returns so
362             // we need to be a little careful when removing the file descriptor afterwards.
363             int callbackResult = response.request.callback->handleEvent(fd, events, data);
364             if (callbackResult == 0) {
365                 AutoMutex _l(mLock);
366                 removeSequenceNumberLocked(response.seq);
367             }
368 
369             // Clear the callback reference in the response structure promptly because we
370             // will not clear the response vector itself until the next poll.
371             response.request.callback.clear();
372             result = POLL_CALLBACK;
373         }
374     }
375     return result;
376 }
377 
pollAll(int timeoutMillis,int * outFd,int * outEvents,void ** outData)378 int Looper::pollAll(int timeoutMillis, int* outFd, int* outEvents, void** outData) {
379     if (timeoutMillis <= 0) {
380         int result;
381         do {
382             result = pollOnce(timeoutMillis, outFd, outEvents, outData);
383         } while (result == POLL_CALLBACK);
384         return result;
385     } else {
386         nsecs_t endTime = systemTime(SYSTEM_TIME_MONOTONIC)
387                 + milliseconds_to_nanoseconds(timeoutMillis);
388 
389         for (;;) {
390             int result = pollOnce(timeoutMillis, outFd, outEvents, outData);
391             if (result != POLL_CALLBACK) {
392                 return result;
393             }
394 
395             nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
396             timeoutMillis = toMillisecondTimeoutDelay(now, endTime);
397             if (timeoutMillis == 0) {
398                 return POLL_TIMEOUT;
399             }
400         }
401     }
402 }
403 
wake()404 void Looper::wake() {
405 #if DEBUG_POLL_AND_WAKE
406     ALOGD("%p ~ wake", this);
407 #endif
408 
409     uint64_t inc = 1;
410     ssize_t nWrite = TEMP_FAILURE_RETRY(write(mWakeEventFd.get(), &inc, sizeof(uint64_t)));
411     if (nWrite != sizeof(uint64_t)) {
412         if (errno != EAGAIN) {
413             LOG_ALWAYS_FATAL("Could not write wake signal to fd %d (returned %zd): %s",
414                              mWakeEventFd.get(), nWrite, strerror(errno));
415         }
416     }
417 }
418 
awoken()419 void Looper::awoken() {
420 #if DEBUG_POLL_AND_WAKE
421     ALOGD("%p ~ awoken", this);
422 #endif
423 
424     uint64_t counter;
425     TEMP_FAILURE_RETRY(read(mWakeEventFd.get(), &counter, sizeof(uint64_t)));
426 }
427 
addFd(int fd,int ident,int events,Looper_callbackFunc callback,void * data)428 int Looper::addFd(int fd, int ident, int events, Looper_callbackFunc callback, void* data) {
429     sp<SimpleLooperCallback> looperCallback;
430     if (callback) {
431         looperCallback = sp<SimpleLooperCallback>::make(callback);
432     }
433     return addFd(fd, ident, events, looperCallback, data);
434 }
435 
addFd(int fd,int ident,int events,const sp<LooperCallback> & callback,void * data)436 int Looper::addFd(int fd, int ident, int events, const sp<LooperCallback>& callback, void* data) {
437 #if DEBUG_CALLBACKS
438     ALOGD("%p ~ addFd - fd=%d, ident=%d, events=0x%x, callback=%p, data=%p", this, fd, ident,
439             events, callback.get(), data);
440 #endif
441 
442     if (!callback.get()) {
443         if (! mAllowNonCallbacks) {
444             ALOGE("Invalid attempt to set NULL callback but not allowed for this looper.");
445             return -1;
446         }
447 
448         if (ident < 0) {
449             ALOGE("Invalid attempt to set NULL callback with ident < 0.");
450             return -1;
451         }
452     } else {
453         ident = POLL_CALLBACK;
454     }
455 
456     { // acquire lock
457         AutoMutex _l(mLock);
458         // There is a sequence number reserved for the WakeEventFd.
459         if (mNextRequestSeq == WAKE_EVENT_FD_SEQ) mNextRequestSeq++;
460         const SequenceNumber seq = mNextRequestSeq++;
461 
462         Request request;
463         request.fd = fd;
464         request.ident = ident;
465         request.events = events;
466         request.callback = callback;
467         request.data = data;
468 
469         epoll_event eventItem = createEpollEvent(request.getEpollEvents(), seq);
470         auto seq_it = mSequenceNumberByFd.find(fd);
471         if (seq_it == mSequenceNumberByFd.end()) {
472             int epollResult = epoll_ctl(mEpollFd.get(), EPOLL_CTL_ADD, fd, &eventItem);
473             if (epollResult < 0) {
474                 ALOGE("Error adding epoll events for fd %d: %s", fd, strerror(errno));
475                 return -1;
476             }
477             mRequests.emplace(seq, request);
478             mSequenceNumberByFd.emplace(fd, seq);
479         } else {
480             int epollResult = epoll_ctl(mEpollFd.get(), EPOLL_CTL_MOD, fd, &eventItem);
481             if (epollResult < 0) {
482                 if (errno == ENOENT) {
483                     // Tolerate ENOENT because it means that an older file descriptor was
484                     // closed before its callback was unregistered and meanwhile a new
485                     // file descriptor with the same number has been created and is now
486                     // being registered for the first time.  This error may occur naturally
487                     // when a callback has the side-effect of closing the file descriptor
488                     // before returning and unregistering itself.  Callback sequence number
489                     // checks further ensure that the race is benign.
490                     //
491                     // Unfortunately due to kernel limitations we need to rebuild the epoll
492                     // set from scratch because it may contain an old file handle that we are
493                     // now unable to remove since its file descriptor is no longer valid.
494                     // No such problem would have occurred if we were using the poll system
495                     // call instead, but that approach carries other disadvantages.
496 #if DEBUG_CALLBACKS
497                     ALOGD("%p ~ addFd - EPOLL_CTL_MOD failed due to file descriptor "
498                             "being recycled, falling back on EPOLL_CTL_ADD: %s",
499                             this, strerror(errno));
500 #endif
501                     epollResult = epoll_ctl(mEpollFd.get(), EPOLL_CTL_ADD, fd, &eventItem);
502                     if (epollResult < 0) {
503                         ALOGE("Error modifying or adding epoll events for fd %d: %s",
504                                 fd, strerror(errno));
505                         return -1;
506                     }
507                     scheduleEpollRebuildLocked();
508                 } else {
509                     ALOGE("Error modifying epoll events for fd %d: %s", fd, strerror(errno));
510                     return -1;
511                 }
512             }
513             const SequenceNumber oldSeq = seq_it->second;
514             mRequests.erase(oldSeq);
515             mRequests.emplace(seq, request);
516             seq_it->second = seq;
517         }
518     } // release lock
519     return 1;
520 }
521 
removeFd(int fd)522 int Looper::removeFd(int fd) {
523     AutoMutex _l(mLock);
524     const auto& it = mSequenceNumberByFd.find(fd);
525     if (it == mSequenceNumberByFd.end()) {
526         return 0;
527     }
528     return removeSequenceNumberLocked(it->second);
529 }
530 
removeSequenceNumberLocked(SequenceNumber seq)531 int Looper::removeSequenceNumberLocked(SequenceNumber seq) {
532 #if DEBUG_CALLBACKS
533     ALOGD("%p ~ removeFd - fd=%d, seq=%u", this, fd, seq);
534 #endif
535 
536     const auto& request_it = mRequests.find(seq);
537     if (request_it == mRequests.end()) {
538         return 0;
539     }
540     const int fd = request_it->second.fd;
541 
542     // Always remove the FD from the request map even if an error occurs while
543     // updating the epoll set so that we avoid accidentally leaking callbacks.
544     mRequests.erase(request_it);
545     mSequenceNumberByFd.erase(fd);
546 
547     int epollResult = epoll_ctl(mEpollFd.get(), EPOLL_CTL_DEL, fd, nullptr);
548     if (epollResult < 0) {
549         if (errno == EBADF || errno == ENOENT) {
550             // Tolerate EBADF or ENOENT because it means that the file descriptor was closed
551             // before its callback was unregistered. This error may occur naturally when a
552             // callback has the side-effect of closing the file descriptor before returning and
553             // unregistering itself.
554             //
555             // Unfortunately due to kernel limitations we need to rebuild the epoll
556             // set from scratch because it may contain an old file handle that we are
557             // now unable to remove since its file descriptor is no longer valid.
558             // No such problem would have occurred if we were using the poll system
559             // call instead, but that approach carries other disadvantages.
560 #if DEBUG_CALLBACKS
561             ALOGD("%p ~ removeFd - EPOLL_CTL_DEL failed due to file descriptor "
562                   "being closed: %s",
563                   this, strerror(errno));
564 #endif
565             scheduleEpollRebuildLocked();
566         } else {
567             // Some other error occurred.  This is really weird because it means
568             // our list of callbacks got out of sync with the epoll set somehow.
569             // We defensively rebuild the epoll set to avoid getting spurious
570             // notifications with nowhere to go.
571             ALOGE("Error removing epoll events for fd %d: %s", fd, strerror(errno));
572             scheduleEpollRebuildLocked();
573             return -1;
574         }
575     }
576     return 1;
577 }
578 
sendMessage(const sp<MessageHandler> & handler,const Message & message)579 void Looper::sendMessage(const sp<MessageHandler>& handler, const Message& message) {
580     nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
581     sendMessageAtTime(now, handler, message);
582 }
583 
sendMessageDelayed(nsecs_t uptimeDelay,const sp<MessageHandler> & handler,const Message & message)584 void Looper::sendMessageDelayed(nsecs_t uptimeDelay, const sp<MessageHandler>& handler,
585         const Message& message) {
586     nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
587     sendMessageAtTime(now + uptimeDelay, handler, message);
588 }
589 
sendMessageAtTime(nsecs_t uptime,const sp<MessageHandler> & handler,const Message & message)590 void Looper::sendMessageAtTime(nsecs_t uptime, const sp<MessageHandler>& handler,
591         const Message& message) {
592 #if DEBUG_CALLBACKS
593     ALOGD("%p ~ sendMessageAtTime - uptime=%" PRId64 ", handler=%p, what=%d",
594             this, uptime, handler.get(), message.what);
595 #endif
596 
597     size_t i = 0;
598     { // acquire lock
599         AutoMutex _l(mLock);
600 
601         size_t messageCount = mMessageEnvelopes.size();
602         while (i < messageCount && uptime >= mMessageEnvelopes.itemAt(i).uptime) {
603             i += 1;
604         }
605 
606         MessageEnvelope messageEnvelope(uptime, handler, message);
607         mMessageEnvelopes.insertAt(messageEnvelope, i, 1);
608 
609         // Optimization: If the Looper is currently sending a message, then we can skip
610         // the call to wake() because the next thing the Looper will do after processing
611         // messages is to decide when the next wakeup time should be.  In fact, it does
612         // not even matter whether this code is running on the Looper thread.
613         if (mSendingMessage) {
614             return;
615         }
616     } // release lock
617 
618     // Wake the poll loop only when we enqueue a new message at the head.
619     if (i == 0) {
620         wake();
621     }
622 }
623 
removeMessages(const sp<MessageHandler> & handler)624 void Looper::removeMessages(const sp<MessageHandler>& handler) {
625 #if DEBUG_CALLBACKS
626     ALOGD("%p ~ removeMessages - handler=%p", this, handler.get());
627 #endif
628 
629     { // acquire lock
630         AutoMutex _l(mLock);
631 
632         for (size_t i = mMessageEnvelopes.size(); i != 0; ) {
633             const MessageEnvelope& messageEnvelope = mMessageEnvelopes.itemAt(--i);
634             if (messageEnvelope.handler == handler) {
635                 mMessageEnvelopes.removeAt(i);
636             }
637         }
638     } // release lock
639 }
640 
removeMessages(const sp<MessageHandler> & handler,int what)641 void Looper::removeMessages(const sp<MessageHandler>& handler, int what) {
642 #if DEBUG_CALLBACKS
643     ALOGD("%p ~ removeMessages - handler=%p, what=%d", this, handler.get(), what);
644 #endif
645 
646     { // acquire lock
647         AutoMutex _l(mLock);
648 
649         for (size_t i = mMessageEnvelopes.size(); i != 0; ) {
650             const MessageEnvelope& messageEnvelope = mMessageEnvelopes.itemAt(--i);
651             if (messageEnvelope.handler == handler
652                     && messageEnvelope.message.what == what) {
653                 mMessageEnvelopes.removeAt(i);
654             }
655         }
656     } // release lock
657 }
658 
isPolling() const659 bool Looper::isPolling() const {
660     return mPolling;
661 }
662 
getEpollEvents() const663 uint32_t Looper::Request::getEpollEvents() const {
664     uint32_t epollEvents = 0;
665     if (events & EVENT_INPUT) epollEvents |= EPOLLIN;
666     if (events & EVENT_OUTPUT) epollEvents |= EPOLLOUT;
667     return epollEvents;
668 }
669 
~MessageHandler()670 MessageHandler::~MessageHandler() { }
671 
~LooperCallback()672 LooperCallback::~LooperCallback() { }
673 
674 } // namespace android
675