parent
e7ca35a276
commit
71deaa48af
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@ -47,17 +47,17 @@ public:
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void start(Fn<void(Update)> updated, Fn<void()> error);
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void stop(Fn<void(Result&&)> callback = nullptr);
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void timeout();
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private:
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void processFrame(int32 offset, int32 framesize);
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void process();
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[[nodiscard]] bool processFrame(int32 offset, int32 framesize);
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void fail();
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void writeFrame(AVFrame *frame);
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[[nodiscard]] bool writeFrame(AVFrame *frame);
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// Writes the packets till EAGAIN is got from av_receive_packet()
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// Returns number of packets written or -1 on error
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int writePackets();
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[[nodiscard]] int writePackets();
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Fn<void(Update)> _updated;
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Fn<void()> _error;
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@ -150,6 +150,7 @@ struct Instance::Inner::Private {
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AVCodec *codec = nullptr;
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AVCodecContext *codecContext = nullptr;
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bool opened = false;
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bool processing = false;
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int srcSamples = 0;
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int dstSamples = 0;
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@ -217,7 +218,7 @@ struct Instance::Inner::Private {
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Instance::Inner::Inner(QThread *thread)
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: d(std::make_unique<Private>())
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, _timer(thread, [=] { timeout(); }) {
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, _timer(thread, [=] { process(); }) {
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moveToThread(thread);
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}
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@ -226,10 +227,10 @@ Instance::Inner::~Inner() {
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}
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void Instance::Inner::fail() {
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Expects(_error != nullptr);
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stop();
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_error();
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if (const auto error = base::take(_error)) {
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InvokeQueued(this, error);
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}
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}
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void Instance::Inner::start(Fn<void(Update)> updated, Fn<void()> error) {
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@ -384,13 +385,21 @@ void Instance::Inner::stop(Fn<void(Result&&)> callback) {
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}
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_timer.cancel();
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if (d->device) {
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const auto needResult = (callback != nullptr);
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const auto hadDevice = (d->device != nullptr);
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if (hadDevice) {
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alcCaptureStop(d->device);
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timeout(); // get last data
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if (d->processing) {
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Assert(!needResult); // stop in the middle of processing - error.
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} else {
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process(); // get last data
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}
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alcCaptureCloseDevice(d->device);
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d->device = nullptr;
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}
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// Write what is left
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if (!_captured.isEmpty()) {
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if (needResult && !_captured.isEmpty()) {
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auto fadeSamples = kCaptureFadeInDuration * kCaptureFrequency / 1000;
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auto capturedSamples = static_cast<int>(_captured.size() / sizeof(short));
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if ((_captured.size() % sizeof(short)) || (d->fullSamples + capturedSamples < kCaptureFrequency) || (capturedSamples < fadeSamples)) {
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@ -414,11 +423,13 @@ void Instance::Inner::stop(Fn<void(Result&&)> callback) {
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int32 framesize = d->srcSamples * d->codecContext->channels * sizeof(short), encoded = 0;
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while (_captured.size() >= encoded + framesize) {
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processFrame(encoded, framesize);
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if (!processFrame(encoded, framesize)) {
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break;
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}
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encoded += framesize;
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}
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writeFrame(nullptr); // drain the codec
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if (encoded != _captured.size()) {
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// Drain the codec.
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if (!writeFrame(nullptr) || encoded != _captured.size()) {
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d->fullSamples = 0;
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d->dataPos = 0;
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d->data.clear();
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@ -436,14 +447,14 @@ void Instance::Inner::stop(Fn<void(Result&&)> callback) {
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_captured = QByteArray();
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// Finish stream
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if (d->device) {
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if (needResult && hadDevice) {
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av_write_trailer(d->fmtContext);
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}
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QByteArray result = d->fullSamples ? d->data : QByteArray();
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VoiceWaveform waveform;
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qint32 samples = d->fullSamples;
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if (samples && !d->waveform.isEmpty()) {
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if (needResult && samples && !d->waveform.isEmpty()) {
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int64 count = d->waveform.size(), sum = 0;
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if (count >= Player::kWaveformSamplesCount) {
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QVector<uint16> peaks;
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@ -472,11 +483,7 @@ void Instance::Inner::stop(Fn<void(Result&&)> callback) {
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}
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}
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}
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if (d->device) {
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alcCaptureStop(d->device);
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alcCaptureCloseDevice(d->device);
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d->device = nullptr;
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if (hadDevice) {
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if (d->codecContext) {
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avcodec_free_context(&d->codecContext);
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d->codecContext = nullptr;
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@ -528,12 +535,17 @@ void Instance::Inner::stop(Fn<void(Result&&)> callback) {
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d->waveform.clear();
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}
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if (callback) {
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if (needResult) {
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callback({ result, waveform, samples });
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}
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}
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void Instance::Inner::timeout() {
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void Instance::Inner::process() {
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Expects(!d->processing);
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d->processing = true;
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const auto guard = gsl::finally([&] { d->processing = false; });
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if (!d->device) {
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_timer.cancel();
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return;
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@ -582,7 +594,9 @@ void Instance::Inner::timeout() {
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// Write frames
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int32 framesize = d->srcSamples * d->codecContext->channels * sizeof(short), encoded = 0;
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while (uint32(_captured.size()) >= encoded + framesize + fadeSamples * sizeof(short)) {
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processFrame(encoded, framesize);
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if (!processFrame(encoded, framesize)) {
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return;
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}
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encoded += framesize;
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}
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@ -597,13 +611,13 @@ void Instance::Inner::timeout() {
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}
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}
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void Instance::Inner::processFrame(int32 offset, int32 framesize) {
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bool Instance::Inner::processFrame(int32 offset, int32 framesize) {
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// Prepare audio frame
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if (framesize % sizeof(short)) { // in the middle of a sample
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LOG(("Audio Error: Bad framesize in writeFrame() for capture, framesize %1, %2").arg(framesize));
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fail();
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return;
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return false;
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}
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auto samplesCnt = static_cast<int>(framesize / sizeof(short));
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@ -650,7 +664,7 @@ void Instance::Inner::processFrame(int32 offset, int32 framesize) {
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if ((res = av_samples_alloc(d->dstSamplesData, 0, d->codecContext->channels, d->dstSamples, d->codecContext->sample_fmt, 1)) < 0) {
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LOG(("Audio Error: Unable to av_samples_alloc for capture, error %1, %2").arg(res).arg(av_make_error_string(err, sizeof(err), res)));
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fail();
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return;
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return false;
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}
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d->dstSamplesSize = av_samples_get_buffer_size(0, d->codecContext->channels, d->maxDstSamples, d->codecContext->sample_fmt, 0);
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}
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@ -658,7 +672,7 @@ void Instance::Inner::processFrame(int32 offset, int32 framesize) {
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if ((res = swr_convert(d->swrContext, d->dstSamplesData, d->dstSamples, (const uint8_t **)srcSamplesData, d->srcSamples)) < 0) {
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LOG(("Audio Error: Unable to swr_convert for capture, error %1, %2").arg(res).arg(av_make_error_string(err, sizeof(err), res)));
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fail();
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return;
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return false;
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}
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// Write audio frame
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@ -670,45 +684,50 @@ void Instance::Inner::processFrame(int32 offset, int32 framesize) {
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avcodec_fill_audio_frame(frame, d->codecContext->channels, d->codecContext->sample_fmt, d->dstSamplesData[0], d->dstSamplesSize, 0);
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writeFrame(frame);
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if (!writeFrame(frame)) {
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return false;
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}
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d->fullSamples += samplesCnt;
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av_frame_free(&frame);
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return true;
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}
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void Instance::Inner::writeFrame(AVFrame *frame) {
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bool Instance::Inner::writeFrame(AVFrame *frame) {
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int res = 0;
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char err[AV_ERROR_MAX_STRING_SIZE] = { 0 };
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res = avcodec_send_frame(d->codecContext, frame);
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if (res == AVERROR(EAGAIN)) {
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int packetsWritten = writePackets();
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const auto packetsWritten = writePackets();
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if (packetsWritten < 0) {
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if (frame && packetsWritten == AVERROR_EOF) {
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LOG(("Audio Error: EOF in packets received when EAGAIN was got in avcodec_send_frame()"));
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fail();
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}
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return;
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return false;
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} else if (!packetsWritten) {
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LOG(("Audio Error: No packets received when EAGAIN was got in avcodec_send_frame()"));
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fail();
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return;
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return false;
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}
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res = avcodec_send_frame(d->codecContext, frame);
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}
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if (res < 0) {
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LOG(("Audio Error: Unable to avcodec_send_frame for capture, error %1, %2").arg(res).arg(av_make_error_string(err, sizeof(err), res)));
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fail();
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return;
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return false;
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}
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if (!frame) { // drain
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if ((res = writePackets()) != AVERROR_EOF) {
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LOG(("Audio Error: not EOF in packets received when draining the codec, result %1").arg(res));
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fail();
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return false;
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}
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}
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return true;
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}
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int Instance::Inner::writePackets() {
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