fixed nesting regression and audio static regression
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+11
-10
@@ -33,7 +33,7 @@ bool audio_rendering = false;
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bool recording = false;
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qint8 audio_ibuffer[audio_ibuffer_size];
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unsigned long audio_ibuffer_read = 0;
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qint64 audio_ibuffer_read = 0;
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long audio_ibuffer_frame = 0;
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double audio_ibuffer_timecode = 0;
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@@ -114,9 +114,10 @@ int current_audio_freq() {
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return audio_rendering ? sequence->audio_frequency : audio_output->format().sampleRate();
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}
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unsigned long get_buffer_offset_from_frame(double framerate, long frame) {
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qint64 get_buffer_offset_from_frame(double framerate, long frame) {
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if (frame >= audio_ibuffer_frame) {
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return static_cast<unsigned long>(((double(frame - audio_ibuffer_frame)/framerate)*current_audio_freq())*av_get_bytes_per_sample(AV_SAMPLE_FMT_S16)*av_get_channel_layout_nb_channels(AV_CH_LAYOUT_STEREO));
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int multiplier = av_get_bytes_per_sample(AV_SAMPLE_FMT_S16)*av_get_channel_layout_nb_channels(AV_CH_LAYOUT_STEREO);
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return qFloor((double(frame - audio_ibuffer_frame)/framerate)*current_audio_freq())*multiplier;
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} else {
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qWarning() << "Invalid values passed to get_buffer_offset_from_frame";
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return 0;
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@@ -164,23 +165,23 @@ void AudioSenderThread::run() {
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lock.unlock();
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}
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int AudioSenderThread::send_audio_to_output(unsigned long offset, int max) {
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int AudioSenderThread::send_audio_to_output(qint64 offset, int max) {
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// send audio to device
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unsigned long actual_write = audio_io_device->write((const char*) audio_ibuffer+offset, max);
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qint64 actual_write = audio_io_device->write(reinterpret_cast<const char*>(audio_ibuffer)+offset, max);
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unsigned long audio_ibuffer_limit = audio_ibuffer_read + actual_write;
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qint64 audio_ibuffer_limit = audio_ibuffer_read + actual_write;
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if (actual_write > 0) {
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// average values and send to audio monitor
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int channels = audio_output->format().channelCount();
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unsigned long lim = offset + actual_write;
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qint64 lim = offset + actual_write;
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QVector<double> averages;
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averages.resize(channels);
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averages.fill(0);
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int counter = 0;
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qint16 sample;
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for (unsigned long i=offset;i<lim;i+=2) {
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for (qint64 i=offset;i<lim;i+=2) {
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sample = qint16(((audio_ibuffer[i+1] & 0xFF) << 8) | (audio_ibuffer[i] & 0xFF));
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averages[counter] = qMax((double(sample)/32768.0), averages[counter]);
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counter = (counter+1)%channels;
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@@ -268,14 +269,14 @@ void write_wave_trailer(QFile& f) {
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f.seek(4);
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// 4 bytes for total file size - 8 bytes
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qint32 file_size = f.size() - 8;
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qint32 file_size = qint32(f.size()) - 8;
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int32_to_char_array(file_size, arr);
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f.write(arr, 4);
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f.seek(40);
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// 4 bytes for data chunk size (file size - header)
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file_size = f.size() - 44;
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file_size = qint32(f.size()) - 44;
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int32_to_char_array(file_size, arr);
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f.write(arr, 4);
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}
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+3
-3
@@ -27,7 +27,7 @@ public slots:
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void notifyReceiver();
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private:
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QVector<qint16> samples;
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int send_audio_to_output(unsigned long offset, int max);
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int send_audio_to_output(qint64 offset, int max);
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};
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double log_volume(double linear);
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@@ -39,7 +39,7 @@ extern QMutex audio_write_lock;
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#define audio_ibuffer_size 192000
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extern qint8 audio_ibuffer[audio_ibuffer_size];
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extern unsigned long audio_ibuffer_read;
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extern qint64 audio_ibuffer_read;
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extern long audio_ibuffer_frame;
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extern double audio_ibuffer_timecode;
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extern bool audio_scrub;
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@@ -53,7 +53,7 @@ bool is_audio_device_set();
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void init_audio();
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void stop_audio();
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unsigned long get_buffer_offset_from_frame(double framerate, long frame);
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qint64 get_buffer_offset_from_frame(double framerate, long frame);
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bool start_recording();
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void stop_recording();
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+1
-1
@@ -364,7 +364,7 @@ void cache_audio_worker(Clip* c, bool scrubbing, QVector<Clip*>& nests) {
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if (frame->nb_samples == 0) {
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break;
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} else {
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unsigned long buffer_timeline_out = get_buffer_offset_from_frame(c->sequence->frame_rate, timeline_out);
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qint64 buffer_timeline_out = get_buffer_offset_from_frame(c->sequence->frame_rate, timeline_out);
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audio_write_lock.lock();
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+1
-1
@@ -127,7 +127,7 @@ struct Clip
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// audio playback variables
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int64_t reverse_target;
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int frame_sample_index;
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unsigned long audio_buffer_write;
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qint64 audio_buffer_write;
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bool audio_reset;
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bool audio_just_reset;
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long audio_target_frame;
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@@ -365,9 +365,6 @@ GLuint compose_sequence(Viewer* viewer,
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glBegin(GL_QUADS);
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GLint current_fbo = 0;
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glGetIntegerv(GL_DRAW_FRAMEBUFFER_BINDING, ¤t_fbo);
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if (coords.grid_size <= 1) {
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float z = 0.0f;
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