mirror of https://github.com/axmolengine/axmol.git
409 lines
13 KiB
C++
409 lines
13 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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#if CC_TARGET_PLATFORM == CC_PLATFORM_ANDROID
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#include "AudioEngine-inl.h"
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#include <unistd.h>
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// for native asset manager
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#include <sys/types.h>
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#include <android/asset_manager.h>
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#include <android/asset_manager_jni.h>
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#include <unordered_map>
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#include "platform/android/jni/JniHelper.h"
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#include <android/log.h>
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#include <jni.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/android/CCFileUtils-android.h"
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#include "platform/android/jni/CocosPlayClient.h"
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using namespace cocos2d;
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using namespace cocos2d::experimental;
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void PlayOverEvent(SLPlayItf caller, void* context, SLuint32 playEvent)
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{
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if (context && playEvent == SL_PLAYEVENT_HEADATEND)
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{
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AudioPlayer* player = (AudioPlayer*)context;
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//fix issue#8965:AudioEngine can't looping audio on Android 2.3.x
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if (player->_loop)
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{
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(*(player->_fdPlayerPlay))->SetPlayState(player->_fdPlayerPlay, SL_PLAYSTATE_PLAYING);
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}
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else
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{
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player->_playOver = true;
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}
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}
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}
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AudioPlayer::AudioPlayer()
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: _fdPlayerObject(nullptr)
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, _finishCallback(nullptr)
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, _duration(0.0f)
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, _playOver(false)
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, _loop(false)
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, _assetFd(0)
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{
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}
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AudioPlayer::~AudioPlayer()
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{
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if (_fdPlayerObject)
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{
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(*_fdPlayerObject)->Destroy(_fdPlayerObject);
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_fdPlayerObject = nullptr;
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_fdPlayerPlay = nullptr;
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_fdPlayerVolume = nullptr;
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_fdPlayerSeek = nullptr;
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}
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if(_assetFd > 0)
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{
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close(_assetFd);
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_assetFd = 0;
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}
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}
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bool AudioPlayer::init(SLEngineItf engineEngine, SLObjectItf outputMixObject,const std::string& fileFullPath, float volume, bool loop)
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{
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bool ret = false;
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do
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{
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SLDataSource audioSrc;
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SLDataLocator_AndroidFD loc_fd;
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SLDataLocator_URI loc_uri;
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SLDataFormat_MIME format_mime = {SL_DATAFORMAT_MIME, NULL, SL_CONTAINERTYPE_UNSPECIFIED};
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audioSrc.pFormat = &format_mime;
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if (fileFullPath[0] != '/'){
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std::string relativePath = "";
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size_t position = fileFullPath.find("assets/");
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if (0 == position) {
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// "assets/" is at the beginning of the path and we don't want it
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relativePath += fileFullPath.substr(strlen("assets/"));
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} else {
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relativePath += fileFullPath;
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}
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auto asset = AAssetManager_open(cocos2d::FileUtilsAndroid::getAssetManager(), relativePath.c_str(), AASSET_MODE_UNKNOWN);
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// open asset as file descriptor
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off_t start, length;
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_assetFd = AAsset_openFileDescriptor(asset, &start, &length);
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if (_assetFd <= 0){
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AAsset_close(asset);
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break;
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}
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AAsset_close(asset);
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// configure audio source
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loc_fd = {SL_DATALOCATOR_ANDROIDFD, _assetFd, start, length};
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audioSrc.pLocator = &loc_fd;
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}
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else{
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loc_uri = {SL_DATALOCATOR_URI , (SLchar*)fileFullPath.c_str()};
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audioSrc.pLocator = &loc_uri;
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}
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// configure audio sink
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SLDataLocator_OutputMix loc_outmix = {SL_DATALOCATOR_OUTPUTMIX, outputMixObject};
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SLDataSink audioSnk = {&loc_outmix, NULL};
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// create audio player
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const SLInterfaceID ids[3] = {SL_IID_SEEK, SL_IID_PREFETCHSTATUS, SL_IID_VOLUME};
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const SLboolean req[3] = {SL_BOOLEAN_TRUE, SL_BOOLEAN_TRUE, SL_BOOLEAN_TRUE};
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auto result = (*engineEngine)->CreateAudioPlayer(engineEngine, &_fdPlayerObject, &audioSrc, &audioSnk, 3, ids, req);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("create audio player fail"); break; }
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// realize the player
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result = (*_fdPlayerObject)->Realize(_fdPlayerObject, SL_BOOLEAN_FALSE);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("realize the player fail"); break; }
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// get the play interface
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result = (*_fdPlayerObject)->GetInterface(_fdPlayerObject, SL_IID_PLAY, &_fdPlayerPlay);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("get the play interface fail"); break; }
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// get the seek interface
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result = (*_fdPlayerObject)->GetInterface(_fdPlayerObject, SL_IID_SEEK, &_fdPlayerSeek);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("get the seek interface fail"); break; }
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// get the volume interface
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result = (*_fdPlayerObject)->GetInterface(_fdPlayerObject, SL_IID_VOLUME, &_fdPlayerVolume);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("get the volume interface fail"); break; }
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_loop = loop;
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if (loop){
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(*_fdPlayerSeek)->SetLoop(_fdPlayerSeek, SL_BOOLEAN_TRUE, 0, SL_TIME_UNKNOWN);
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}
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int dbVolume = 2000 * log10(volume);
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if(dbVolume < SL_MILLIBEL_MIN){
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dbVolume = SL_MILLIBEL_MIN;
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}
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(*_fdPlayerVolume)->SetVolumeLevel(_fdPlayerVolume, dbVolume);
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result = (*_fdPlayerPlay)->SetPlayState(_fdPlayerPlay, SL_PLAYSTATE_PLAYING);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("SetPlayState fail"); break; }
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ret = true;
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} while (0);
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return ret;
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}
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//====================================================
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AudioEngineImpl::AudioEngineImpl()
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: currentAudioID(0)
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, _engineObject(nullptr)
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, _engineEngine(nullptr)
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, _outputMixObject(nullptr)
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, _lazyInitLoop(true)
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{
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}
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AudioEngineImpl::~AudioEngineImpl()
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{
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if (_outputMixObject)
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{
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(*_outputMixObject)->Destroy(_outputMixObject);
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}
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if (_engineObject)
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{
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(*_engineObject)->Destroy(_engineObject);
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}
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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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// create engine
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auto result = slCreateEngine(&_engineObject, 0, nullptr, 0, nullptr, nullptr);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("create opensl engine fail"); break; }
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// realize the engine
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result = (*_engineObject)->Realize(_engineObject, SL_BOOLEAN_FALSE);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("realize the engine fail"); break; }
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// get the engine interface, which is needed in order to create other objects
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result = (*_engineObject)->GetInterface(_engineObject, SL_IID_ENGINE, &_engineEngine);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("get the engine interface fail"); break; }
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// create output mix
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const SLInterfaceID outputMixIIDs[] = {};
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const SLboolean outputMixReqs[] = {};
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result = (*_engineEngine)->CreateOutputMix(_engineEngine, &_outputMixObject, 0, outputMixIIDs, outputMixReqs);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("create output mix fail"); break; }
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// realize the output mix
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result = (*_outputMixObject)->Realize(_outputMixObject, SL_BOOLEAN_FALSE);
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if(SL_RESULT_SUCCESS != result){ ERRORLOG("realize the output mix fail"); break; }
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ret = true;
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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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auto audioId = AudioEngine::INVALID_AUDIO_ID;
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do
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{
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if (_engineEngine == nullptr)
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break;
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auto& player = _audioPlayers[currentAudioID];
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auto fullPath = FileUtils::getInstance()->fullPathForFilename(filePath);
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cocosplay::updateAssets(fullPath);
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auto initPlayer = player.init(_engineEngine, _outputMixObject, fullPath, volume, loop);
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if (!initPlayer){
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_audioPlayers.erase(currentAudioID);
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log("%s,%d message:create player for %s fail", __func__, __LINE__, filePath.c_str());
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break;
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}
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cocosplay::notifyFileLoaded(fullPath);
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audioId = currentAudioID++;
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player._audioID = audioId;
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(*(player._fdPlayerPlay))->RegisterCallback(player._fdPlayerPlay, PlayOverEvent, (void*)&player);
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(*(player._fdPlayerPlay))->SetCallbackEventsMask(player._fdPlayerPlay, SL_PLAYEVENT_HEADATEND);
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AudioEngine::_audioIDInfoMap[audioId].state = AudioEngine::AudioState::PLAYING;
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if (_lazyInitLoop) {
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_lazyInitLoop = false;
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auto scheduler = Director::getInstance()->getScheduler();
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scheduler->schedule(schedule_selector(AudioEngineImpl::update), this, 0.03f, false);
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}
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} while (0);
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return audioId;
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}
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void AudioEngineImpl::update(float dt)
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{
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auto itend = _audioPlayers.end();
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for (auto iter = _audioPlayers.begin(); iter != itend; ++iter)
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{
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if(iter->second._playOver)
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{
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if (iter->second._finishCallback)
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iter->second._finishCallback(iter->second._audioID, *AudioEngine::_audioIDInfoMap[iter->second._audioID].filePath);
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AudioEngine::remove(iter->second._audioID);
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_audioPlayers.erase(iter);
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break;
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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 = 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::setVolume(int audioID,float volume)
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{
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auto& player = _audioPlayers[audioID];
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int dbVolume = 2000 * log10(volume);
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if(dbVolume < SL_MILLIBEL_MIN){
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dbVolume = SL_MILLIBEL_MIN;
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}
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auto result = (*player._fdPlayerVolume)->SetVolumeLevel(player._fdPlayerVolume, dbVolume);
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if(SL_RESULT_SUCCESS != result){
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log("%s error:%u",__func__, result);
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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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player._loop = loop;
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SLboolean loopEnabled = SL_BOOLEAN_TRUE;
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if (!loop){
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loopEnabled = SL_BOOLEAN_FALSE;
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}
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(*player._fdPlayerSeek)->SetLoop(player._fdPlayerSeek, loopEnabled, 0, SL_TIME_UNKNOWN);
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}
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void AudioEngineImpl::pause(int audioID)
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{
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auto& player = _audioPlayers[audioID];
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auto result = (*player._fdPlayerPlay)->SetPlayState(player._fdPlayerPlay, SL_PLAYSTATE_PAUSED);
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if(SL_RESULT_SUCCESS != result){
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log("%s error:%u",__func__, result);
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}
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}
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void AudioEngineImpl::resume(int audioID)
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{
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auto& player = _audioPlayers[audioID];
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auto result = (*player._fdPlayerPlay)->SetPlayState(player._fdPlayerPlay, SL_PLAYSTATE_PLAYING);
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if(SL_RESULT_SUCCESS != result){
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log("%s error:%u",__func__, result);
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}
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}
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void AudioEngineImpl::stop(int audioID)
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{
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auto& player = _audioPlayers[audioID];
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auto result = (*player._fdPlayerPlay)->SetPlayState(player._fdPlayerPlay, SL_PLAYSTATE_STOPPED);
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if(SL_RESULT_SUCCESS != result){
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log("%s error:%u",__func__, result);
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}
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_audioPlayers.erase(audioID);
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}
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void AudioEngineImpl::stopAll()
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{
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auto itEnd = _audioPlayers.end();
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for (auto it = _audioPlayers.begin(); it != itEnd; ++it)
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{
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auto result = (*it->second._fdPlayerPlay)->SetPlayState(it->second._fdPlayerPlay, SL_PLAYSTATE_STOPPED);
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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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SLmillisecond duration;
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auto& player = _audioPlayers[audioID];
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auto result = (*player._fdPlayerPlay)->GetDuration(player._fdPlayerPlay, &duration);
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if (duration == SL_TIME_UNKNOWN){
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return AudioEngine::TIME_UNKNOWN;
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}
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else{
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player._duration = duration / 1000.0;
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if (player._duration <= 0)
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{
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return AudioEngine::TIME_UNKNOWN;
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}
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return player._duration;
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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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SLmillisecond currPos;
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auto& player = _audioPlayers[audioID];
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(*player._fdPlayerPlay)->GetPosition(player._fdPlayerPlay, &currPos);
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return currPos / 1000.0f;
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}
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bool AudioEngineImpl::setCurrentTime(int audioID, float time)
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{
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auto& player = _audioPlayers[audioID];
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SLmillisecond pos = 1000 * time;
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auto result = (*player._fdPlayerSeek)->SetPosition(player._fdPlayerSeek, pos, SL_SEEKMODE_ACCURATE);
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if(SL_RESULT_SUCCESS != result){
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return false;
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}
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return true;
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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]._finishCallback = callback;
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}
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#endif
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