audio_qt_capturer.cpp 13 KB

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  1. #include "audio_qt_capturer.h"
  2. #include "qaudio.h"
  3. #include <QAudioDeviceInfo>
  4. #include <QDebug>
  5. #include <qendian.h>
  6. AudioInfo::AudioInfo(const QAudioFormat& format)
  7. : m_format(format)
  8. {
  9. switch (m_format.sampleSize()) {
  10. case 8:
  11. switch (m_format.sampleType()) {
  12. case QAudioFormat::UnSignedInt:
  13. m_maxAmplitude = 255;
  14. break;
  15. case QAudioFormat::SignedInt:
  16. m_maxAmplitude = 127;
  17. break;
  18. default:
  19. break;
  20. }
  21. break;
  22. case 16:
  23. switch (m_format.sampleType()) {
  24. case QAudioFormat::UnSignedInt:
  25. m_maxAmplitude = 65535;
  26. break;
  27. case QAudioFormat::SignedInt:
  28. m_maxAmplitude = 32767;
  29. break;
  30. default:
  31. break;
  32. }
  33. break;
  34. case 32:
  35. switch (m_format.sampleType()) {
  36. case QAudioFormat::UnSignedInt:
  37. m_maxAmplitude = 0xffffffff;
  38. break;
  39. case QAudioFormat::SignedInt:
  40. m_maxAmplitude = 0x7fffffff;
  41. break;
  42. case QAudioFormat::Float:
  43. m_maxAmplitude = 0x7fffffff; // Kind of
  44. default:
  45. break;
  46. }
  47. break;
  48. default:
  49. break;
  50. }
  51. }
  52. void AudioInfo::start()
  53. {
  54. open(QIODevice::WriteOnly);
  55. }
  56. void AudioInfo::stop()
  57. {
  58. close();
  59. }
  60. qint64 AudioInfo::readData(char* data, qint64 maxlen)
  61. {
  62. Q_UNUSED(data)
  63. Q_UNUSED(maxlen)
  64. return 0;
  65. }
  66. qint64 AudioInfo::writeData(const char* data, qint64 len)
  67. {
  68. if (m_maxAmplitude) {
  69. Q_ASSERT(m_format.sampleSize() % 8 == 0);
  70. const int channelBytes = m_format.sampleSize() / 8;
  71. const int sampleBytes = m_format.channelCount() * channelBytes;
  72. Q_ASSERT(len % sampleBytes == 0);
  73. const int numSamples = len / sampleBytes;
  74. quint32 maxValue = 0;
  75. const unsigned char* ptr = reinterpret_cast<const unsigned char*>(data);
  76. for (int i = 0; i < numSamples; ++i) {
  77. for (int j = 0; j < m_format.channelCount(); ++j) {
  78. quint32 value = 0;
  79. if (m_format.sampleSize() == 8
  80. && m_format.sampleType() == QAudioFormat::UnSignedInt) {
  81. value = *reinterpret_cast<const quint8*>(ptr);
  82. } else if (m_format.sampleSize() == 8
  83. && m_format.sampleType() == QAudioFormat::SignedInt) {
  84. value = qAbs(*reinterpret_cast<const qint8*>(ptr));
  85. } else if (m_format.sampleSize() == 16
  86. && m_format.sampleType() == QAudioFormat::UnSignedInt) {
  87. if (m_format.byteOrder() == QAudioFormat::LittleEndian)
  88. value = qFromLittleEndian<quint16>(ptr);
  89. else
  90. value = qFromBigEndian<quint16>(ptr);
  91. } else if (m_format.sampleSize() == 16
  92. && m_format.sampleType() == QAudioFormat::SignedInt) {
  93. if (m_format.byteOrder() == QAudioFormat::LittleEndian)
  94. value = qAbs(qFromLittleEndian<qint16>(ptr));
  95. else
  96. value = qAbs(qFromBigEndian<qint16>(ptr));
  97. } else if (m_format.sampleSize() == 32
  98. && m_format.sampleType() == QAudioFormat::UnSignedInt) {
  99. if (m_format.byteOrder() == QAudioFormat::LittleEndian)
  100. value = qFromLittleEndian<quint32>(ptr);
  101. else
  102. value = qFromBigEndian<quint32>(ptr);
  103. } else if (m_format.sampleSize() == 32
  104. && m_format.sampleType() == QAudioFormat::SignedInt) {
  105. if (m_format.byteOrder() == QAudioFormat::LittleEndian)
  106. value = qAbs(qFromLittleEndian<qint32>(ptr));
  107. else
  108. value = qAbs(qFromBigEndian<qint32>(ptr));
  109. } else if (m_format.sampleSize() == 32
  110. && m_format.sampleType() == QAudioFormat::Float) {
  111. value = qAbs(*reinterpret_cast<const float*>(ptr) * 0x7fffffff); // assumes 0-1.0
  112. }
  113. maxValue = qMax(value, maxValue);
  114. ptr += channelBytes;
  115. }
  116. }
  117. maxValue = qMin(maxValue, m_maxAmplitude);
  118. m_level = qreal(maxValue) / m_maxAmplitude;
  119. }
  120. emit update();
  121. return len;
  122. }
  123. QtAudioCapturer::QtAudioCapturer(QObject* parent)
  124. : QObject(parent)
  125. , m_deviceType(Microphone)
  126. , m_isRunning(false)
  127. , m_audioDevice(nullptr)
  128. {
  129. // 初始化缓冲区
  130. m_buffer.open(QIODevice::ReadWrite);
  131. // 设置处理定时器
  132. connect(&m_processTimer, &QTimer::timeout, this, &QtAudioCapturer::processAudioData);
  133. }
  134. QtAudioCapturer::~QtAudioCapturer()
  135. {
  136. Stop();
  137. }
  138. bool QtAudioCapturer::Init(Type deviceType)
  139. {
  140. m_deviceType = deviceType;
  141. setupAudioFormat();
  142. if (m_deviceType == Microphone) {
  143. return initMicrophone();
  144. } else {
  145. return initSpeaker();
  146. }
  147. }
  148. bool QtAudioCapturer::Start()
  149. {
  150. if (m_isRunning) {
  151. qDebug() << "QtAudioCapturer::Start - 已经在运行中";
  152. return true;
  153. }
  154. if (!m_audioInput && m_deviceType == Microphone) {
  155. qWarning() << "QtAudioCapturer::Start - 音频输入未初始化";
  156. return false;
  157. }
  158. qDebug() << "QtAudioCapturer::Start - 开始捕获音频,设备类型:"
  159. << (m_deviceType == Microphone ? "麦克风" : "扬声器");
  160. if (m_deviceType == Microphone && m_audioInput) {
  161. m_audioDevice = m_audioInput->start();
  162. if (!m_audioDevice) {
  163. qWarning() << "QtAudioCapturer::Start - 启动音频输入失败";
  164. return false;
  165. }
  166. qDebug() << "QtAudioCapturer::Start - QAudioInput state:" << m_audioInput->state();
  167. qDebug() << "QtAudioCapturer::Start - QAudioInput error:" << m_audioInput->error();
  168. connect(m_audioDevice, &QIODevice::readyRead, this, &QtAudioCapturer::handleReadyRead);
  169. }
  170. m_isRunning = true;
  171. return true;
  172. }
  173. void QtAudioCapturer::Stop()
  174. {
  175. if (!m_isRunning) {
  176. return;
  177. }
  178. m_processTimer.stop();
  179. if (m_audioDevice) {
  180. disconnect(m_audioDevice, &QIODevice::readyRead, this, &QtAudioCapturer::handleReadyRead);
  181. m_audioDevice = nullptr;
  182. }
  183. if (m_audioInput) {
  184. m_audioInput->stop();
  185. }
  186. m_buffer.buffer().clear();
  187. m_buffer.seek(0);
  188. m_isRunning = false;
  189. }
  190. const AudioFormat& QtAudioCapturer::GetFormat() const
  191. {
  192. return m_audioFormat;
  193. }
  194. void QtAudioCapturer::handleReadyRead()
  195. {
  196. //qDebug() << "handleReadyRead called, m_audioDevice:" << m_audioDevice;
  197. if (m_audioDevice) {
  198. QByteArray data = m_audioDevice->readAll();
  199. //qDebug() << "handleReadyRead: read data size:" << data.size();
  200. if (data.size() > 0) {
  201. QMutexLocker locker(&m_mutex);
  202. m_dataBuffer.append(data);
  203. //qDebug() << "Audio data appended, buffer size now:" << m_dataBuffer.size();
  204. }
  205. }
  206. }
  207. int QtAudioCapturer::readAudioData(char* buf, int maxLen)
  208. {
  209. QMutexLocker locker(&m_mutex);
  210. int toRead = qMin(maxLen, m_dataBuffer.size());
  211. // qDebug() << "readAudioData called, buffer size:" << m_dataBuffer.size() << ", toRead:" << toRead;
  212. if (toRead > 0) {
  213. memcpy(buf, m_dataBuffer.constData(), toRead);
  214. m_dataBuffer.remove(0, toRead);
  215. }
  216. return toRead;
  217. }
  218. void QtAudioCapturer::processAudioData()
  219. {
  220. QByteArray data = m_buffer.buffer();
  221. if (data.size() > 0) {
  222. // qDebug() << "QtAudioCapturer::processAudioData - 处理缓冲区数据,大小:" << data.size()
  223. // << "字节";
  224. // 清空缓冲区
  225. m_buffer.buffer().clear();
  226. m_buffer.seek(0);
  227. }
  228. }
  229. void QtAudioCapturer::onAudioNotify()
  230. {
  231. if (m_audioDevice && m_audioDevice->bytesAvailable() > 0) {
  232. handleReadyRead();
  233. } else {
  234. // 尝试直接从 QAudioInput 读取数据
  235. QByteArray buffer(m_audioInput->bufferSize() / 4, 0);
  236. qint64 len = buffer.size();
  237. if (len > 0) {
  238. qDebug() << "QtAudioCapturer::onAudioNotify - 直接读取到数据,大小:" << len << "字节";
  239. buffer.resize(len);
  240. // 调用回调函数
  241. // if (m_callback) {
  242. // m_callback(buffer.data(), buffer.size(), m_userInfo);
  243. // }
  244. }
  245. }
  246. }
  247. bool QtAudioCapturer::initMicrophone()
  248. {
  249. // 获取默认输入设备
  250. QAudioDeviceInfo deviceInfo = QAudioDeviceInfo::defaultInputDevice();
  251. qDebug() << "QtAudioCapturer::initMicrophone - 默认输入设备:" << deviceInfo.deviceName();
  252. // 检查设备是否有效
  253. if (deviceInfo.isNull()) {
  254. qWarning() << "QtAudioCapturer::initMicrophone - 没有可用的音频输入设备";
  255. return false;
  256. }
  257. // 列出所有可用的音频输入设备
  258. qDebug() << "QtAudioCapturer::initMicrophone - 可用的音频输入设备:";
  259. for (const auto& device : QAudioDeviceInfo::availableDevices(QAudio::AudioInput)) {
  260. qDebug() << " " << device.deviceName();
  261. }
  262. // 检查格式是否支持
  263. if (!deviceInfo.isFormatSupported(m_qtAudioFormat)) {
  264. qWarning() << "QtAudioCapturer::initMicrophone - 默认格式不支持,尝试使用最接近的格式";
  265. // 尝试几种常用格式
  266. QList<int> sampleRates = {44100, 48000, 16000, 8000};
  267. QList<int> channelCounts = {2, 1};
  268. QList<int> sampleSizes = {16, 8};
  269. bool formatFound = false;
  270. for (int rate : sampleRates) {
  271. for (int channels : channelCounts) {
  272. for (int size : sampleSizes) {
  273. QAudioFormat format;
  274. format.setSampleRate(rate);
  275. format.setChannelCount(channels);
  276. format.setSampleSize(size);
  277. format.setCodec("audio/pcm");
  278. format.setByteOrder(QAudioFormat::LittleEndian);
  279. format.setSampleType(QAudioFormat::SignedInt);
  280. if (deviceInfo.isFormatSupported(format)) {
  281. m_qtAudioFormat = format;
  282. formatFound = true;
  283. qDebug() << "QtAudioCapturer::initMicrophone - 找到支持的格式:"
  284. << "采样率=" << rate << "通道数=" << channels
  285. << "采样大小=" << size;
  286. break;
  287. }
  288. }
  289. if (formatFound)
  290. break;
  291. }
  292. if (formatFound)
  293. break;
  294. }
  295. if (!formatFound) {
  296. // 使用设备支持的最接近的格式
  297. m_qtAudioFormat = deviceInfo.nearestFormat(m_qtAudioFormat);
  298. qDebug() << "QtAudioCapturer::initMicrophone - 使用最接近的格式:"
  299. << "采样率=" << m_qtAudioFormat.sampleRate()
  300. << "通道数=" << m_qtAudioFormat.channelCount()
  301. << "采样大小=" << m_qtAudioFormat.sampleSize();
  302. }
  303. // 更新 AudioFormat
  304. m_audioFormat = AudioFormat(m_qtAudioFormat.sampleRate(),
  305. m_qtAudioFormat.channelCount(),
  306. m_qtAudioFormat.sampleSize());
  307. }
  308. // 创建音频输入
  309. m_audioInput = std::make_unique<QAudioInput>(deviceInfo, m_qtAudioFormat, this);
  310. m_audioInfo.reset(new AudioInfo(m_qtAudioFormat));
  311. m_audioInfo->start();
  312. qDebug() << "QtAudioCapturer::initMicrophone - 音频输入创建成功,格式:"
  313. << "采样率=" << m_qtAudioFormat.sampleRate()
  314. << "通道数=" << m_qtAudioFormat.channelCount()
  315. << "采样大小=" << m_qtAudioFormat.sampleSize();
  316. return true;
  317. }
  318. bool QtAudioCapturer::initSpeaker()
  319. {
  320. return false;
  321. }
  322. void QtAudioCapturer::setupAudioFormat()
  323. {
  324. // 设置Qt音频格式
  325. m_qtAudioFormat.setSampleRate(44100); // 与原代码中的 DEFAULT_SAMPLE_RATE 保持一致
  326. m_qtAudioFormat.setChannelCount(1); // 改为单声道,提高兼容性
  327. m_qtAudioFormat.setSampleSize(16); // 与原代码中的 DEFAULT_BITS_PER_SAMPLE 保持一致
  328. m_qtAudioFormat.setCodec("audio/pcm");
  329. m_qtAudioFormat.setByteOrder(QAudioFormat::LittleEndian);
  330. m_qtAudioFormat.setSampleType(QAudioFormat::SignedInt);
  331. // 设置IAudioCapturer使用的格式
  332. m_audioFormat = AudioFormat(m_qtAudioFormat.sampleRate(),
  333. m_qtAudioFormat.channelCount(),
  334. m_qtAudioFormat.sampleSize());
  335. }
  336. float QtAudioCapturer::calculateVolume(const QByteArray& data)
  337. {
  338. // 计算音频数据的音量级别
  339. if (data.isEmpty()) {
  340. return 0.0f;
  341. }
  342. // 假设数据是16位有符号整数
  343. const int16_t* samples = reinterpret_cast<const int16_t*>(data.constData());
  344. int sampleCount = data.size() / sizeof(int16_t);
  345. // 计算平均绝对值
  346. float sum = 0.0f;
  347. for (int i = 0; i < sampleCount; ++i) {
  348. sum += std::abs(samples[i]);
  349. }
  350. // 归一化到0-1范围
  351. float avgAmp = sum / (sampleCount * 32768.0f);
  352. return avgAmp;
  353. }