CreateWAVThread.cpp 18 KB

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  1. #include "CreateWAVThread.h"
  2. #include "GlobalInfo.h"
  3. #include "SystemConfig.h"
  4. #include "spdlog.h"
  5. #include <QFile>
  6. #include <QDir>
  7. #include <qchar.h>
  8. #include <random>
  9. CreateWAVThread::CreateWAVThread(RecordThreadInfo_t& threadInfo)
  10. : BaseRecordThread(threadInfo)
  11. {
  12. }
  13. CreateWAVThread::~CreateWAVThread()
  14. {
  15. // SPDLOG_LOGGER_ERROR(m_logger, "{} ~CreateWAVThread()", m_logBase);
  16. }
  17. /**
  18. * @brief 设置数据,传入的都是1秒钟的数据
  19. *
  20. * @param srcData
  21. * @param dataSize
  22. * @param dateTime 这段音频结束时间
  23. * @return true
  24. * @return false
  25. */
  26. bool CreateWAVThread::setData(const AudioSrcData& srcData)
  27. {
  28. /* -------------------------- 入队WAV环形队列 ---------------------------- */
  29. AudioSrcData* newData1 = new AudioSrcData(srcData);
  30. if(m_queueWavSrcData.isFull())
  31. {
  32. /* 出队一个最早的元素 */
  33. AudioSrcData* oldData = m_queueWavSrcData.front_pop();
  34. SPDLOG_LOGGER_TRACE(m_logger, "{} 环形队列已满,出队一个元素,时间: {}, 大小: {}",
  35. m_logBase, oldData->startTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(), oldData->dataSize);
  36. if(oldData != nullptr){
  37. delete oldData;
  38. oldData = nullptr;
  39. }
  40. }
  41. m_queueWavSrcData.push(newData1);
  42. // SPDLOG_LOGGER_TRACE(m_logger, "{} 新的音频数据加入队列,开始时间: {}, 结束时间: {}, 大小: {}",
  43. // m_logBase, newData1->startTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(),
  44. // newData1->endTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(), newData1->dataSize);
  45. /* -------------------------- 入队LeftRight环形队列 ---------------------------- */
  46. AudioSrcData* newData2 = new AudioSrcData(srcData);
  47. if(m_queueLeftRightSrcData.isFull())
  48. {
  49. AudioSrcData* oldData = m_queueLeftRightSrcData.front_pop();
  50. SPDLOG_LOGGER_TRACE(m_logger, "{} 左右声道环形队列已满,出队一个元素,时间: {}, 大小: {}",
  51. m_logBase, oldData->startTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(), oldData->dataSize);
  52. delete oldData;
  53. oldData = nullptr;
  54. }
  55. m_queueLeftRightSrcData.push(newData2);
  56. return true;
  57. }
  58. /* 获取最新的数据 */
  59. bool CreateWAVThread::getLatestFileName(WavFilePath& wavName)
  60. {
  61. if(m_queueWavFileName.isEmpty())
  62. {
  63. // SPDLOG_LOGGER_TRACE(m_logger, "{} WAV文件路径队列为空", m_logBase);
  64. return false;
  65. }
  66. m_queueWavFileName.mutex.lock();
  67. wavName = m_queueWavFileName.back();
  68. m_queueWavFileName.mutex.unlock();
  69. return true;
  70. }
  71. /* 获取最新的左右声道数据 */
  72. bool CreateWAVThread::getLatestLeftRightData(AudioLeftRightData& leftRightData)
  73. {
  74. if(m_queueLeftRightData.isEmpty())
  75. {
  76. // SPDLOG_LOGGER_TRACE(m_logger, "{} 左右声道数据队列为空", m_logBase);
  77. return false;
  78. }
  79. std::lock_guard<std::mutex> lock(m_queueLeftRightData.mutex);
  80. auto pData = m_queueLeftRightData.back();
  81. if(pData == nullptr)
  82. {
  83. SPDLOG_LOGGER_WARN(m_logger, "{} 获取左右声道数据失败", m_logBase);
  84. return false;
  85. }
  86. /* 判断数据是否相同 */
  87. if(pData->isSameData(leftRightData))
  88. {
  89. return false;
  90. }
  91. leftRightData = *pData;
  92. return true;
  93. }
  94. /* 生成WAV文件的线程函数 */
  95. void CreateWAVThread::task()
  96. {
  97. SPDLOG_LOGGER_INFO(m_logger, "➢ {} 开启生成WAV文件线程 ", m_logBase);
  98. /* 初始化数据 */
  99. if(!initData())
  100. {
  101. return;
  102. }
  103. SPDLOG_LOGGER_INFO(m_logger, "WAV文件队列容量: {}, 每个元素大小: {}", GInfo.queueElementCount(), m_oneSecondSize);
  104. m_isRunning = true;
  105. while(m_isRunning.load())
  106. {
  107. /* 睡眠一定时间 */
  108. std::this_thread::sleep_for(std::chrono::milliseconds(100));
  109. /*--------------------------------------------------------------
  110. * 分离左右声道
  111. *--------------------------------------------------------------*/
  112. splitLeftRightChannel();
  113. /*--------------------------------------------------------------
  114. * 生成wav小文件
  115. *--------------------------------------------------------------*/
  116. /* 如果环形队列中有数据,生成WAV文件 */
  117. if(m_queueWavSrcData.QueueSize() < m_wavFileDuration)
  118. {
  119. // SPDLOG_LOGGER_TRACE(m_logger, "{} 录音文件缓存不足,无法生成WAV文件,当前数据量: {}, 需要: {}",
  120. // m_logBase, m_queueWavSrcData.QueueSize(), m_wavFileDuration);
  121. continue;
  122. }
  123. /* 创建wav小文件 */
  124. if(!createWAVFile(m_wavFileDuration))
  125. {
  126. SPDLOG_LOGGER_WARN(m_logger, "{} 生成WAV文件失败", m_logBase);
  127. continue;
  128. }
  129. /*------------------------------------------------------------------------
  130. * 删除多余的文件,保留最新的60个文件
  131. *------------------------------------------------------------------------*/
  132. // deleteWAVFile(m_filePathNum);
  133. removeWAVFileFromList(m_listDeleteFile);
  134. }
  135. /* 清理数据 */
  136. clearData();
  137. SPDLOG_LOGGER_WARN(m_logger, "➢ {} 生成WAV文件线程结束", m_logBase);
  138. m_isRunning = false;
  139. }
  140. /* 初始化数据 */
  141. bool CreateWAVThread::initData()
  142. {
  143. /* 环形队列大小,默认是2分钟大小 */
  144. int queueSize = GInfo.queueElementCount();
  145. m_queueWavSrcData.clearQueue();
  146. m_queueWavSrcData.setQueueCapacity(queueSize);
  147. m_queueLeftRightSrcData.clearQueue();
  148. m_queueLeftRightSrcData.setQueueCapacity(queueSize);
  149. m_queueWavSrcData.setDefaultValue(nullptr);
  150. m_queueLeftRightSrcData.setDefaultValue(nullptr);
  151. /* 获取基础音频数据 */
  152. m_sampleRate = GInfo.sampleRate(); // 采样率
  153. m_numChannels = GInfo.numChannels(); // 声道数
  154. m_bitsPerSample = GInfo.bitsPerSample(); // 每个采样点的位数
  155. /* 计算出一秒数据大小 */
  156. m_oneSecondSize = m_sampleRate * m_numChannels * (m_bitsPerSample / 8);
  157. /* 获取对比项数据参数 */
  158. auto aiSetting = SysConfig.getAICompareConfig();
  159. m_wavFileDuration = aiSetting.nAiComputeDuration;
  160. /* 获取噪音检测参数,这里的噪音判断时长不知道是超过这个时长是噪音,还是传入的文件到大小
  161. 这里需要的是传入检测文件的大小 */
  162. auto noiseSetting = SysConfig.getNoiseDetectParam();
  163. m_noiseElementDuration = noiseSetting.nNoiseOneDetectDuration;
  164. QString wavPath = GInfo.wavPath();
  165. wavPath = wavPath + QString("/Record_%1-%2").arg(QString::fromStdString(m_threadInfo.cardRoadInfo.strSoundCardName))
  166. .arg(QString::fromStdString(m_threadInfo.cardRoadInfo.pcmInfo.strPCMName));
  167. m_wavDir.setPath(wavPath);
  168. if(!m_wavDir.exists())
  169. {
  170. if(!m_wavDir.mkpath(m_wavDir.path()))
  171. {
  172. SPDLOG_LOGGER_ERROR(m_logger, "{} 创建WAV目录失败: {}", m_logBase, m_wavDir.path().toStdString());
  173. return false;
  174. } else {
  175. SPDLOG_LOGGER_INFO(m_logger, "{} 创建WAV目录成功: {}", m_logBase, m_wavDir.path().toStdString());
  176. }
  177. }
  178. m_queueWavFileName.setQueueCapacity(m_filePathNum);
  179. m_queueLeftRightData.setQueueCapacity(m_numLeftRight);
  180. m_listDeleteFile.clear();
  181. return true;
  182. }
  183. /* 清理数据 */
  184. void CreateWAVThread::clearData()
  185. {
  186. /* 清理环形队列 */
  187. while(!m_queueWavSrcData.isEmpty())
  188. {
  189. AudioSrcData* data = m_queueWavSrcData.front_pop();
  190. if(data != nullptr)
  191. {
  192. delete data;
  193. data = nullptr;
  194. }
  195. }
  196. while(!m_queueLeftRightSrcData.isEmpty())
  197. {
  198. AudioSrcData* data = m_queueLeftRightSrcData.front_pop();
  199. if(data != nullptr)
  200. {
  201. delete data;
  202. data = nullptr;
  203. }
  204. }
  205. /* 删除临时文件夹中的wav小文件 */
  206. deleteWAVFile(0); // 删除所有文件
  207. m_listDeleteFile.clear();
  208. // SPDLOG_LOGGER_ERROR(m_logger, "{} 开始清空 CreateWAV m_queueLeftRightData, 当前数据大小: {}", m_logBase, m_queueLeftRightData.QueueSize());
  209. std::lock_guard<std::mutex> lock(m_queueLeftRightData.mutex);
  210. while(!m_queueLeftRightData.isEmpty())
  211. {
  212. auto data = m_queueLeftRightData.front_pop();
  213. if(data != nullptr)
  214. {
  215. delete data;
  216. data = nullptr;
  217. }else {
  218. SPDLOG_LOGGER_WARN(m_logger, "{} m_queueLeftRightData 中有空数据", m_logBase);
  219. }
  220. }
  221. // SPDLOG_LOGGER_ERROR(m_logger, "{} CreateWAV m_queueLeftRightData清空完成, 当前数据大小: {}", m_logBase, m_queueLeftRightData.QueueSize());
  222. }
  223. /**
  224. * @brief 生成wav小文件,这里AudioSrcData中的时间是真的开始时间
  225. *
  226. * @param secondCount
  227. * @return QString
  228. */
  229. bool CreateWAVThread::createWAVFile(int secondCount)
  230. {
  231. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 开始生成WAV文件,秒数: {}", m_logBase, secondCount);
  232. QString newFileName;
  233. QDateTime newFileStartTime;
  234. QDateTime newFileEndTime;
  235. /* 生成wav文件名 */
  236. AudioSrcData* audioData = m_queueWavSrcData.front();
  237. if(audioData == nullptr )
  238. {
  239. SPDLOG_LOGGER_WARN(m_logger, "{} 从环形队列中取出数据失败!", m_logBase);
  240. return false;
  241. }
  242. newFileStartTime = audioData->startTime; // 获取开始时间
  243. QString strFileName = QString("WAV_%1-%2_%3.wav")
  244. .arg(QString::fromStdString(m_threadInfo.cardRoadInfo.strSoundCardName)).arg(QString::fromStdString(m_threadInfo.cardRoadInfo.pcmInfo.strPCMName))
  245. .arg(newFileStartTime.toString("yyyyMMdd_hhmmss"));
  246. QString fileName = m_wavDir.filePath(strFileName);
  247. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 开始打开文件", m_logBase);
  248. QFile wavFile(fileName);
  249. if(!wavFile.open(QIODevice::WriteOnly | QIODevice::Truncate))
  250. {
  251. SPDLOG_LOGGER_ERROR(m_logger, "{} 打开WAV文件失败: {}", m_logBase, fileName.toStdString());
  252. return false;
  253. }
  254. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 生成WAV文件: {}", m_logBase, fileName.toStdString());
  255. /* 写入WAV文件头 */
  256. WavHeader tmpHeader;
  257. tmpHeader.setSampleRate(m_sampleRate);
  258. tmpHeader.setNumChannels(m_numChannels);
  259. tmpHeader.setBitsPerSample(m_bitsPerSample);
  260. tmpHeader.setDataSize(m_oneSecondSize * secondCount);
  261. tmpHeader.calculateDerivedFields();
  262. wavFile.write(reinterpret_cast<const char*>(&tmpHeader), sizeof(WavHeader));
  263. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 开始写入音频数据,当前队列大小: {}", m_logBase, m_queueWavSrcData.QueueSize());
  264. /* 写入音频数据 */
  265. for(int i = 0; i < secondCount; ++i)
  266. {
  267. AudioSrcData* data = m_queueWavSrcData.front_pop();
  268. if(data == nullptr)
  269. {
  270. SPDLOG_LOGGER_WARN(m_logger, "{} 从WAV源数据环形队列中取出数据失败!", m_logBase);
  271. continue;
  272. }
  273. wavFile.write(data->pData, data->dataSize);
  274. newFileEndTime = data->endTime;
  275. // SPDLOG_LOGGER_TRACE(m_logger, "{} 写入音频数据,开始时间: {}, 结束时间: {}, 大小: {}",
  276. // m_logBase, data->startTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(),
  277. // data->endTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(), data->dataSize);
  278. /* 删除数据 */
  279. delete data;
  280. data = nullptr;
  281. }
  282. wavFile.close();
  283. /* 将文件名加入到新的队列中,给对比线程使用 */
  284. WavFilePath wavFilePath;
  285. wavFilePath.fileName = fileName.toStdString();;
  286. wavFilePath.startDateTime = newFileStartTime;
  287. wavFilePath.endDateTime = newFileEndTime;
  288. m_queueWavFileName.mutex.lock();
  289. if(m_queueWavFileName.isFull())
  290. {
  291. auto wavFile = m_queueWavFileName.front_pop();
  292. m_listDeleteFile.push_back(wavFile);
  293. }
  294. m_queueWavFileName.push(wavFilePath);
  295. m_queueWavFileName.mutex.unlock();
  296. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 数据写入完成,当前队列大小: {}", m_logBase, m_queueWavSrcData.QueueSize());
  297. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 生成WAV文件成功: {}, 开始时间: {}, 结束时间: {}",
  298. // m_logBase, wavFilePath.fileName, wavFilePath.startDateTime.toString("yyyy-MM-dd hh:mm:ss").toStdString(),
  299. // wavFilePath.endDateTime.toString("yyyy-MM-dd hh:mm:ss").toStdString());
  300. return true;
  301. }
  302. /**
  303. * @brief 删除wav小文件,传入留下的个数
  304. *
  305. * @param remainCount 需要剩余的个数,如果等于0,则删除所有文件
  306. */
  307. void CreateWAVThread::deleteWAVFile(int remainCount)
  308. {
  309. /* 删除多余的文件,保留最新的remainCount个文件 */
  310. QStringList fileList = m_wavDir.entryList(QStringList("WAV_*.wav"), QDir::Files);
  311. if(fileList.size() <= remainCount)
  312. {
  313. SPDLOG_LOGGER_INFO(m_logger, "{} 删除WAV文件操作不需要执行,当前文件数量: {}, 保留数量: {}",
  314. m_logBase, fileList.size(), remainCount);
  315. return;
  316. }
  317. /* 按照时间排序,删除最早的文件 */
  318. std::sort(fileList.begin(), fileList.end(), [](const QString& a, const QString& b) {
  319. return a < b; // 按照文件名排序,假设文件名中包含时间戳
  320. });
  321. for(int i = 0; i < fileList.size() - remainCount; ++i)
  322. {
  323. QString filePath = m_wavDir.filePath(fileList[i]);
  324. if(QFile::remove(filePath))
  325. {
  326. SPDLOG_LOGGER_DEBUG(m_logger, "{} 删除WAV文件: {}", m_logBase, filePath.toStdString());
  327. } else
  328. {
  329. SPDLOG_LOGGER_WARN(m_logger, "{} 删除WAV文件失败: {}", m_logBase, filePath.toStdString());
  330. }
  331. }
  332. }
  333. /* 从删除列表中删除wav小文件 */
  334. void CreateWAVThread::removeWAVFileFromList(std::list<WavFilePath>& listDeleteFile)
  335. {
  336. if(listDeleteFile.empty())
  337. {
  338. return;
  339. }
  340. for(auto& wavFile : listDeleteFile)
  341. {
  342. if(QFile::remove(QString::fromStdString(wavFile.fileName)))
  343. {
  344. SPDLOG_LOGGER_DEBUG(m_logger, "{} 删除WAV文件: {}", m_logBase, wavFile.fileName);
  345. } else
  346. {
  347. SPDLOG_LOGGER_WARN(m_logger, "{} 删除WAV文件失败: {}", m_logBase, wavFile.fileName);
  348. }
  349. }
  350. listDeleteFile.clear();
  351. }
  352. /* 将每秒的数据拆解成两个声道,给噪音检测线程使用 */
  353. bool CreateWAVThread::splitLeftRightChannel()
  354. {
  355. if(m_queueLeftRightSrcData.QueueSize() < m_noiseElementDuration)
  356. {
  357. // SPDLOG_LOGGER_TRACE(m_logger, "{} 左右声道环形队列数据不足,当前数据量: {}, 需要: {}",
  358. // m_logBase, m_queueLeftRightSrcData.QueueSize(), m_noiseElementDuration);
  359. return false;
  360. }
  361. /* 分离左右声道 / 2,转换成short / 2 */
  362. bool isStart = true;
  363. AudioLeftRightData* pLeftRightData = new AudioLeftRightData(m_noiseElementDuration * m_sampleRate);
  364. for(int32_t i = 0; i < m_noiseElementDuration; ++i)
  365. {
  366. AudioSrcData* data = m_queueLeftRightSrcData.front_pop();
  367. if(data == nullptr)
  368. {
  369. SPDLOG_LOGGER_WARN(m_logger, "{} 从左右声道环形队列中取出数据失败!", m_logBase);
  370. continue;
  371. }
  372. if(isStart)
  373. {
  374. pLeftRightData->startTime = data->startTime; // 设置开始时间戳
  375. pLeftRightData->endTime = data->endTime; // 设置结束时间戳
  376. isStart = false; // 只设置一次
  377. }
  378. /* 先将char类型转换成short,然后转换成double */
  379. int dec = data->dataSize % 4;
  380. int oneChannelSize = (data->dataSize - dec) / 2; // 确保是4的倍数
  381. for(int j = 0; j < oneChannelSize; ++j)
  382. {
  383. int16_t sample = *reinterpret_cast<int16_t*>(data->pData + j * 2);
  384. double sampleDouble = sample / 32768.f; // 转换成double类型,范围[-1.0, 1.0]
  385. if(j % 2 == 0) // 左声道
  386. {
  387. pLeftRightData->vecLeftData.push_back(sampleDouble);
  388. } else // 右声道
  389. {
  390. pLeftRightData->vecRightData.push_back(sampleDouble);
  391. }
  392. // if(j < 30)
  393. // {
  394. // fmt::print(" |{} {}, short: {}, double: {:.2f}\n", static_cast<uint8_t>(*(data->pData + j)), static_cast<uint8_t>(*(data->pData + j * 2)), sample, sampleDouble);
  395. // }
  396. // fmt::print(" |{} {}, short: {}, double: {:.2f}", static_cast<uint8_t>(*(data->pData + j)), static_cast<uint8_t>(*(data->pData + 1001)), sample, sampleDouble);
  397. }
  398. pLeftRightData->numMSecond += 1000; // 每次处理1秒的数据,增加1000毫秒
  399. /* 更新结束时间戳 */
  400. pLeftRightData->endTime = data->endTime;
  401. delete data;
  402. data = nullptr;
  403. }
  404. /* 测试数据 */
  405. // std::vector<double> audio_signal(m_sampleRate);
  406. // std::random_device rd;
  407. // std::mt19937 gen(rd());
  408. // std::normal_distribution<> dist(0.0, 1.0);
  409. // for (auto& sample : audio_signal) {
  410. // sample = dist(gen);
  411. // }
  412. // pLeftRightData->vecLeftData = audio_signal; // 左声道数据
  413. // pLeftRightData->vecRightData = audio_signal; // 右声道数据
  414. /* 将分离完成的数据添加到环形队列中 */
  415. m_queueLeftRightData.mutex.lock();
  416. auto tmp = m_queueLeftRightData.push(pLeftRightData);
  417. m_queueLeftRightData.mutex.unlock();
  418. if(tmp != nullptr)
  419. {
  420. // SPDLOG_LOGGER_WARN(m_logger, "{} 左右声道环形队列已满,出队一个元素", m_logBase);
  421. delete tmp; // 删除出队的元素
  422. tmp = nullptr;
  423. }
  424. // int leftSize = pLeftRightData->vecLeftData.size() * sizeof(double) * 2;
  425. // SPDLOG_LOGGER_DEBUG(m_logger, "{} 队列数据数目: {}, 左声道数据大小: {}, 单个元素大小: {}",
  426. // m_logBase, m_queueLeftRightData.QueueSize(), pLeftRightData->vecLeftData.size(), leftSize);
  427. return true;
  428. }