mirror of https://github.com/axmolengine/axmol.git
531 lines
15 KiB
C++
531 lines
15 KiB
C++
/****************************************************************************
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Copyright (c) 2014 Chukong Technologies Inc.
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http://www.cocos2d-x.org
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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****************************************************************************/
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#include "platform/CCPlatformConfig.h"
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#if CC_TARGET_PLATFORM == CC_PLATFORM_WIN32
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#include "AudioEngine-win32.h"
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#include <condition_variable>
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#include "AL/alc.h"
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#include "AL/alext.h"
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#include "audio/include/AudioEngine.h"
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#include "base/CCDirector.h"
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#include "base/CCScheduler.h"
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#include "platform/CCFileUtils.h"
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#include "mpg123.h"
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using namespace cocos2d;
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using namespace cocos2d::experimental;
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static ALCdevice *s_ALDevice = nullptr;
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static ALCcontext *s_ALContext = nullptr;
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static bool MPG123_LAZYINIT = true;
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namespace cocos2d {
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namespace experimental {
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class AudioEngineThreadPool
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{
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public:
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AudioEngineThreadPool()
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: _running(true)
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, _numThread(6)
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{
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_threads.reserve(_numThread);
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_tasks.reserve(_numThread);
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for (int index = 0; index < _numThread; ++index) {
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_tasks.push_back(nullptr);
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_threads.push_back( std::thread( std::bind(&AudioEngineThreadPool::threadFunc,this,index) ) );
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}
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}
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void addTask(const std::function<void()> &task){
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_taskMutex.lock();
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int targetIndex = -1;
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for (int index = 0; index < _numThread; ++index) {
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if (_tasks[index] == nullptr) {
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targetIndex = index;
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_tasks[index] = task;
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break;
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}
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}
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if (targetIndex == -1) {
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_tasks.push_back(task);
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_threads.push_back( std::thread( std::bind(&AudioEngineThreadPool::threadFunc,this,_numThread) ) );
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_numThread++;
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}
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_taskMutex.unlock();
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_sleepCondition.notify_all();
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}
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void destroy()
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{
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_running = false;
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_sleepCondition.notify_all();
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for (int index = 0; index < _numThread; ++index) {
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_threads[index].join();
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}
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}
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private:
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bool _running;
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std::vector<std::thread> _threads;
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std::vector< std::function<void ()> > _tasks;
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void threadFunc(int index)
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{
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while (_running) {
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std::function<void ()> task = nullptr;
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_taskMutex.lock();
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task = _tasks[index];
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_taskMutex.unlock();
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if (nullptr == task)
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{
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std::unique_lock<std::mutex> lk(_sleepMutex);
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_sleepCondition.wait(lk);
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continue;
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}
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task();
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_taskMutex.lock();
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_tasks[index] = nullptr;
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_taskMutex.unlock();
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}
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}
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int _numThread;
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std::mutex _taskMutex;
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std::mutex _sleepMutex;
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std::condition_variable _sleepCondition;
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};
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}
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}
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AudioEngineImpl::AudioEngineImpl()
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: _lazyInitLoop(true)
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, _currentAudioID(0)
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, _threadPool(nullptr)
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{
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}
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AudioEngineImpl::~AudioEngineImpl()
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{
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if (s_ALContext) {
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alDeleteSources(MAX_AUDIOINSTANCES, _alSources);
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_audioCaches.clear();
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alcMakeContextCurrent(nullptr);
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alcDestroyContext(s_ALContext);
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s_ALContext = nullptr;
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}
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if (s_ALDevice) {
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alcCloseDevice(s_ALDevice);
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s_ALDevice = nullptr;
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}
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if (_threadPool) {
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_threadPool->destroy();
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delete _threadPool;
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}
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mpg123_exit();
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MPG123_LAZYINIT = true;
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}
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bool AudioEngineImpl::init()
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{
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bool ret = false;
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do{
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s_ALDevice = alcOpenDevice(NULL);
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if (s_ALDevice) {
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auto alError = alGetError();
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s_ALContext = alcCreateContext(s_ALDevice, NULL);
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alcMakeContextCurrent(s_ALContext);
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alGenSources(MAX_AUDIOINSTANCES, _alSources);
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alError = alGetError();
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if(alError != AL_NO_ERROR){
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log("%s:generating sources fail! error = %x\n", __FUNCTION__, alError);
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break;
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}
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for (int i = 0; i < MAX_AUDIOINSTANCES; ++i) {
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_alSourceUsed[_alSources[i]] = false;
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}
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_threadPool = new (std::nothrow) AudioEngineThreadPool();
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ret = true;
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}
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}while (false);
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return ret;
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}
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int AudioEngineImpl::play2d(const std::string &filePath ,bool loop ,float volume)
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{
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bool availableSourceExist = false;
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ALuint alSource;
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for (int i = 0; i < MAX_AUDIOINSTANCES; ++i) {
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alSource = _alSources[i];
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if ( !_alSourceUsed[alSource]) {
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availableSourceExist = true;
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break;
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}
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}
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if(!availableSourceExist){
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return AudioEngine::INVAILD_AUDIO_ID;
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}
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AudioCache* audioCache = nullptr;
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auto it = _audioCaches.find(filePath);
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if (it == _audioCaches.end()) {
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audioCache = &_audioCaches[filePath];
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auto ext = filePath.substr(filePath.rfind('.'));
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transform(ext.begin(), ext.end(), ext.begin(), tolower);
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bool eraseCache = true;
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if (ext.compare(".ogg") == 0){
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audioCache->_fileFormat = AudioCache::FileFormat::OGG;
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eraseCache = false;
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}
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else if (ext.compare(".mp3") == 0){
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audioCache->_fileFormat = AudioCache::FileFormat::MP3;
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if (MPG123_LAZYINIT){
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auto error = mpg123_init();
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if(error == MPG123_OK){
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MPG123_LAZYINIT = false;
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eraseCache = false;
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}
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else{
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log("Basic setup goes wrong: %s", mpg123_plain_strerror(error));
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}
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}
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else{
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eraseCache = false;
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}
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}
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else{
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log("unsupported media type:%s\n",ext.c_str());
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}
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if (eraseCache){
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_audioCaches.erase(filePath);
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return AudioEngine::INVAILD_AUDIO_ID;
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}
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audioCache->_fileFullPath = FileUtils::getInstance()->fullPathForFilename(filePath);
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_threadPool->addTask(std::bind(&AudioCache::readDataTask, audioCache));
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}
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else {
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audioCache = &it->second;
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}
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auto player = &_audioPlayers[_currentAudioID];
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player->_alSource = alSource;
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player->_loop = loop;
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player->_volume = volume;
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audioCache->addCallbacks(std::bind(&AudioEngineImpl::_play2d,this,audioCache,_currentAudioID));
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_alSourceUsed[alSource] = true;
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if (_lazyInitLoop) {
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_lazyInitLoop = false;
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auto scheduler = cocos2d::Director::getInstance()->getScheduler();
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scheduler->schedule(schedule_selector(AudioEngineImpl::update), this, 0.05f, false);
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}
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return _currentAudioID++;
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}
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void AudioEngineImpl::_play2d(AudioCache *cache, int audioID)
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{
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if(cache->_alBufferReady){
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auto playerIt = _audioPlayers.find(audioID);
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if (playerIt != _audioPlayers.end()) {
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if (playerIt->second.play2d(cache)) {
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AudioEngine::_audioIDInfoMap[audioID].state = AudioEngine::AudioState::PLAYING;
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}
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else{
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_threadMutex.lock();
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_toRemoveAudioIDs.push_back(audioID);
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_threadMutex.unlock();
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}
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}
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}
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else {
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_threadMutex.lock();
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_toRemoveCaches.push_back(cache);
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_toRemoveAudioIDs.push_back(audioID);
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_threadMutex.unlock();
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}
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}
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void AudioEngineImpl::setVolume(int audioID,float volume)
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{
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auto& player = _audioPlayers[audioID];
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player._volume = volume;
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if (player._ready) {
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alSourcef(_audioPlayers[audioID]._alSource, AL_GAIN, volume);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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}
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}
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void AudioEngineImpl::setLoop(int audioID, bool loop)
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{
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auto& player = _audioPlayers[audioID];
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if (player._ready) {
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if (player._streamingSource) {
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player.setLoop(loop);
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} else {
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if (loop) {
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alSourcei(player._alSource, AL_LOOPING, AL_TRUE);
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} else {
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alSourcei(player._alSource, AL_LOOPING, AL_FALSE);
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}
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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}
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}
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else {
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player._loop = loop;
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}
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}
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bool AudioEngineImpl::pause(int audioID)
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{
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bool ret = true;
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alSourcePause(_audioPlayers[audioID]._alSource);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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ret = false;
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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return ret;
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}
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bool AudioEngineImpl::resume(int audioID)
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{
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bool ret = true;
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alSourcePlay(_audioPlayers[audioID]._alSource);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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ret = false;
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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return ret;
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}
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bool AudioEngineImpl::stop(int audioID)
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{
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bool ret = true;
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auto& player = _audioPlayers[audioID];
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if (player._ready) {
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alSourceStop(player._alSource);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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ret = false;
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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}
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alSourcei(player._alSource, AL_BUFFER, NULL);
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_alSourceUsed[player._alSource] = false;
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_audioPlayers.erase(audioID);
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return ret;
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}
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void AudioEngineImpl::stopAll()
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{
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for(int index = 0; index < MAX_AUDIOINSTANCES; ++index)
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{
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alSourceStop(_alSources[index]);
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alSourcei(_alSources[index], AL_BUFFER, NULL);
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_alSourceUsed[_alSources[index]] = false;
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}
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_audioPlayers.clear();
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}
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float AudioEngineImpl::getDuration(int audioID)
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{
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auto& player = _audioPlayers[audioID];
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if(player._ready){
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return player._audioCache->_duration;
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} else {
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return AudioEngine::TIME_UNKNOWN;
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}
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}
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float AudioEngineImpl::getCurrentTime(int audioID)
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{
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float ret = 0.0f;
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auto& player = _audioPlayers[audioID];
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if(player._ready){
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if (player._streamingSource) {
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ret = player.getTime();
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} else {
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alGetSourcef(player._alSource, AL_SEC_OFFSET, &ret);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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log("%s, audio id:%d,error code:%x", __FUNCTION__,audioID,error);
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}
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}
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}
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return ret;
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}
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bool AudioEngineImpl::setCurrentTime(int audioID, float time)
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{
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bool ret = false;
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auto& player = _audioPlayers[audioID];
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do {
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if (!player._ready) {
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break;
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}
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if (player._streamingSource) {
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ret = player.setTime(time);
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break;
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}
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else {
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alSourcef(player._alSource, AL_SEC_OFFSET, time);
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auto error = alGetError();
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if (error != AL_NO_ERROR) {
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log("%s: audio id = %d, error = %x\n", __FUNCTION__,audioID,error);
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}
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ret = true;
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}
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} while (0);
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return ret;
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}
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void AudioEngineImpl::setFinishCallback(int audioID, const std::function<void (int, const std::string &)> &callback)
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{
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_audioPlayers[audioID]._finishCallbak = callback;
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}
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void AudioEngineImpl::update(float dt)
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{
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ALint sourceState;
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int audioID;
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if (_threadMutex.try_lock()) {
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size_t removeAudioCount = _toRemoveAudioIDs.size();
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for (size_t index = 0; index < removeAudioCount; ++index) {
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audioID = _toRemoveAudioIDs[index];
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auto playerIt = _audioPlayers.find(audioID);
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if (playerIt != _audioPlayers.end()) {
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_alSourceUsed[playerIt->second._alSource] = false;
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if(playerIt->second._finishCallbak) {
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auto& audioInfo = AudioEngine::_audioIDInfoMap[audioID];
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playerIt->second._finishCallbak(audioID, *audioInfo.filePath);
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}
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_audioPlayers.erase(audioID);
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AudioEngine::remove(audioID);
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}
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}
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size_t removeCacheCount = _toRemoveCaches.size();
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for (size_t index = 0; index < removeCacheCount; ++index) {
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auto itEnd = _audioCaches.end();
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for (auto it = _audioCaches.begin(); it != itEnd; ++it) {
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if (&it->second == _toRemoveCaches[index]) {
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_audioCaches.erase(it);
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break;
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}
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}
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}
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_threadMutex.unlock();
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}
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for (auto it = _audioPlayers.begin(); it != _audioPlayers.end(); ) {
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audioID = it->first;
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auto& player = it->second;
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alGetSourcei(player._alSource, AL_SOURCE_STATE, &sourceState);
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if (player._ready && sourceState == AL_STOPPED) {
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_alSourceUsed[player._alSource] = false;
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if (player._finishCallbak) {
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auto& audioInfo = AudioEngine::_audioIDInfoMap[audioID];
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player._finishCallbak(audioID, *audioInfo.filePath);
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}
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AudioEngine::remove(audioID);
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it = _audioPlayers.erase(it);
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}
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else{
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++it;
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}
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}
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if(_audioPlayers.empty()){
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_lazyInitLoop = true;
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auto scheduler = cocos2d::Director::getInstance()->getScheduler();
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scheduler->unschedule(schedule_selector(AudioEngineImpl::update), this);
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}
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}
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void AudioEngineImpl::uncache(const std::string &filePath)
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{
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_audioCaches.erase(filePath);
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}
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void AudioEngineImpl::uncacheAll()
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{
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_audioCaches.clear();
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}
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#endif
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