mirror of
https://github.com/oxen-io/session-android.git
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295 lines
6.5 KiB
C++
295 lines
6.5 KiB
C++
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/*
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* Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "webrtc/system_wrappers/source/event_posix.h"
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#include <errno.h>
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#include <pthread.h>
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#include <signal.h>
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#include <stdio.h>
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#include <string.h>
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#include <sys/time.h>
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#include <unistd.h>
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namespace webrtc {
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const long int E6 = 1000000;
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const long int E9 = 1000 * E6;
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EventWrapper* EventPosix::Create() {
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EventPosix* ptr = new EventPosix;
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if (!ptr) {
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return NULL;
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}
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const int error = ptr->Construct();
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if (error) {
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delete ptr;
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return NULL;
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}
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return ptr;
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}
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EventPosix::EventPosix()
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: timer_thread_(0),
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timer_event_(0),
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periodic_(false),
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time_(0),
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count_(0),
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state_(kDown) {
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}
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int EventPosix::Construct() {
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// Set start time to zero
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memset(&created_at_, 0, sizeof(created_at_));
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pthread_mutexattr_t attr;
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pthread_mutexattr_init(&attr);
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pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_RECURSIVE);
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int result = pthread_mutex_init(&mutex_, &attr);
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if (result != 0) {
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return -1;
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}
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#ifdef WEBRTC_CLOCK_TYPE_REALTIME
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result = pthread_cond_init(&cond_, 0);
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if (result != 0) {
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return -1;
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}
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#else
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pthread_condattr_t cond_attr;
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result = pthread_condattr_init(&cond_attr);
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if (result != 0) {
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return -1;
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}
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result = pthread_condattr_setclock(&cond_attr, CLOCK_MONOTONIC);
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if (result != 0) {
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return -1;
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}
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result = pthread_cond_init(&cond_, &cond_attr);
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if (result != 0) {
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return -1;
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}
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result = pthread_condattr_destroy(&cond_attr);
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if (result != 0) {
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return -1;
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}
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#endif
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return 0;
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}
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EventPosix::~EventPosix() {
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StopTimer();
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pthread_cond_destroy(&cond_);
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pthread_mutex_destroy(&mutex_);
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}
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bool EventPosix::Reset() {
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if (0 != pthread_mutex_lock(&mutex_)) {
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return false;
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}
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state_ = kDown;
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pthread_mutex_unlock(&mutex_);
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return true;
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}
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bool EventPosix::Set() {
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if (0 != pthread_mutex_lock(&mutex_)) {
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return false;
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}
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state_ = kUp;
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// Release all waiting threads
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pthread_cond_broadcast(&cond_);
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pthread_mutex_unlock(&mutex_);
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return true;
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}
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EventTypeWrapper EventPosix::Wait(unsigned long timeout) {
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int ret_val = 0;
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if (0 != pthread_mutex_lock(&mutex_)) {
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return kEventError;
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}
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if (kDown == state_) {
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if (WEBRTC_EVENT_INFINITE != timeout) {
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timespec end_at;
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#ifndef WEBRTC_MAC
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#ifdef WEBRTC_CLOCK_TYPE_REALTIME
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clock_gettime(CLOCK_REALTIME, &end_at);
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#else
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clock_gettime(CLOCK_MONOTONIC, &end_at);
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#endif
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#else
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timeval value;
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struct timezone time_zone;
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time_zone.tz_minuteswest = 0;
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time_zone.tz_dsttime = 0;
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gettimeofday(&value, &time_zone);
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TIMEVAL_TO_TIMESPEC(&value, &end_at);
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#endif
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end_at.tv_sec += timeout / 1000;
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end_at.tv_nsec += (timeout - (timeout / 1000) * 1000) * E6;
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if (end_at.tv_nsec >= E9) {
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end_at.tv_sec++;
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end_at.tv_nsec -= E9;
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}
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ret_val = pthread_cond_timedwait(&cond_, &mutex_, &end_at);
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} else {
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ret_val = pthread_cond_wait(&cond_, &mutex_);
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}
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}
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state_ = kDown;
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pthread_mutex_unlock(&mutex_);
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switch (ret_val) {
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case 0:
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return kEventSignaled;
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case ETIMEDOUT:
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return kEventTimeout;
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default:
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return kEventError;
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}
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}
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EventTypeWrapper EventPosix::Wait(timespec& wake_at) {
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int ret_val = 0;
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if (0 != pthread_mutex_lock(&mutex_)) {
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return kEventError;
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}
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if (kUp != state_) {
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ret_val = pthread_cond_timedwait(&cond_, &mutex_, &wake_at);
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}
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state_ = kDown;
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pthread_mutex_unlock(&mutex_);
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switch (ret_val) {
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case 0:
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return kEventSignaled;
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case ETIMEDOUT:
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return kEventTimeout;
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default:
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return kEventError;
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}
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}
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bool EventPosix::StartTimer(bool periodic, unsigned long time) {
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pthread_mutex_lock(&mutex_);
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if (timer_thread_) {
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if (periodic_) {
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// Timer already started.
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pthread_mutex_unlock(&mutex_);
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return false;
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} else {
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// New one shot timer
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time_ = time;
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created_at_.tv_sec = 0;
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timer_event_->Set();
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pthread_mutex_unlock(&mutex_);
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return true;
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}
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}
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// Start the timer thread
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timer_event_ = static_cast<EventPosix*>(EventWrapper::Create());
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const char* thread_name = "WebRtc_event_timer_thread";
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timer_thread_ = ThreadWrapper::CreateThread(Run, this, kRealtimePriority,
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thread_name);
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periodic_ = periodic;
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time_ = time;
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unsigned int id = 0;
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bool started = timer_thread_->Start(id);
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pthread_mutex_unlock(&mutex_);
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return started;
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}
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bool EventPosix::Run(ThreadObj obj) {
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return static_cast<EventPosix*>(obj)->Process();
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}
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bool EventPosix::Process() {
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pthread_mutex_lock(&mutex_);
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if (created_at_.tv_sec == 0) {
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#ifndef WEBRTC_MAC
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#ifdef WEBRTC_CLOCK_TYPE_REALTIME
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clock_gettime(CLOCK_REALTIME, &created_at_);
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#else
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clock_gettime(CLOCK_MONOTONIC, &created_at_);
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#endif
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#else
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timeval value;
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struct timezone time_zone;
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time_zone.tz_minuteswest = 0;
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time_zone.tz_dsttime = 0;
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gettimeofday(&value, &time_zone);
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TIMEVAL_TO_TIMESPEC(&value, &created_at_);
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#endif
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count_ = 0;
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}
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timespec end_at;
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unsigned long long time = time_ * ++count_;
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end_at.tv_sec = created_at_.tv_sec + time / 1000;
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end_at.tv_nsec = created_at_.tv_nsec + (time - (time / 1000) * 1000) * E6;
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if (end_at.tv_nsec >= E9) {
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end_at.tv_sec++;
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end_at.tv_nsec -= E9;
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}
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pthread_mutex_unlock(&mutex_);
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switch (timer_event_->Wait(end_at)) {
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case kEventSignaled:
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return true;
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case kEventError:
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return false;
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case kEventTimeout:
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break;
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}
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pthread_mutex_lock(&mutex_);
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if (periodic_ || count_ == 1)
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Set();
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pthread_mutex_unlock(&mutex_);
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return true;
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}
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bool EventPosix::StopTimer() {
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if (timer_thread_) {
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timer_thread_->SetNotAlive();
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}
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if (timer_event_) {
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timer_event_->Set();
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}
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if (timer_thread_) {
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if (!timer_thread_->Stop()) {
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return false;
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}
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delete timer_thread_;
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timer_thread_ = 0;
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}
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if (timer_event_) {
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delete timer_event_;
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timer_event_ = 0;
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}
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// Set time to zero to force new reference time for the timer.
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memset(&created_at_, 0, sizeof(created_at_));
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count_ = 0;
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return true;
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}
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} // namespace webrtc
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