lavfi/ebur128: print peak metering in dBFS
Signed-off-by: Jean First <jeanfirst@gmail.com>
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@ -9334,13 +9334,14 @@ Disable any peak mode (default).
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@item sample
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Enable sample-peak mode.
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Simple peak mode looking for the higher sample value.
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Simple peak mode looking for the higher sample value. It logs a message
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for sample-peak (identified by @code{SPK}).
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@item true
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Enable true-peak mode.
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If enabled, the peak lookup is done on an over-sampled version of the input
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stream for better peak accuracy. This mode requires a build with
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@code{libswresample}.
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stream for better peak accuracy. It logs a message for true-peak.
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(identified by @code{TPK}). This mode requires a build with @code{libswresample}.
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@end table
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@end table
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@ -23,7 +23,6 @@
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* EBU R.128 implementation
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* @see http://tech.ebu.ch/loudness
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* @see https://www.youtube.com/watch?v=iuEtQqC-Sqo "EBU R128 Introduction - Florian Camerer"
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* @todo True Peak
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* @todo implement start/stop/reset through filter command injection
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* @todo support other frequencies to avoid resampling
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*/
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@ -443,6 +442,7 @@ static int config_audio_output(AVFilterLink *outlink)
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#define ENERGY(loudness) (pow(10, ((loudness) + 0.691) / 10.))
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#define LOUDNESS(energy) (-0.691 + 10 * log10(energy))
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#define DBFS(energy) (20 * log10(energy))
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static struct hist_entry *get_histogram(void)
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{
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@ -791,13 +791,13 @@ static int filter_frame(AVFilterLink *inlink, AVFrame *insamples)
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loudness_400, loudness_3000,
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ebur128->integrated_loudness, ebur128->loudness_range);
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#define PRINT_PEAKS(str, sp, ptype) do { \
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if (ebur128->peak_mode & PEAK_MODE_ ## ptype ## _PEAKS) { \
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av_log(ctx, ebur128->loglevel, " [" str ":"); \
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for (ch = 0; ch < nb_channels; ch++) \
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av_log(ctx, ebur128->loglevel, " %.5f", sp[ch]); \
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av_log(ctx, ebur128->loglevel, "]"); \
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} \
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#define PRINT_PEAKS(str, sp, ptype) do { \
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if (ebur128->peak_mode & PEAK_MODE_ ## ptype ## _PEAKS) { \
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av_log(ctx, ebur128->loglevel, " " str ":"); \
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for (ch = 0; ch < nb_channels; ch++) \
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av_log(ctx, ebur128->loglevel, " %5.1f", DBFS(sp[ch])); \
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av_log(ctx, ebur128->loglevel, " dBFS"); \
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} \
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} while (0)
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PRINT_PEAKS("SPK", ebur128->sample_peaks, SAMPLES);
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@ -867,11 +867,28 @@ static av_cold void uninit(AVFilterContext *ctx)
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" LRA: %5.1f LU\n"
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" Threshold: %5.1f LUFS\n"
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" LRA low: %5.1f LUFS\n"
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" LRA high: %5.1f LUFS\n",
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" LRA high: %5.1f LUFS",
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ebur128->integrated_loudness, ebur128->i400.rel_threshold,
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ebur128->loudness_range, ebur128->i3000.rel_threshold,
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ebur128->lra_low, ebur128->lra_high);
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#define PRINT_PEAK_SUMMARY(str, sp, ptype) do { \
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int ch; \
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double maxpeak; \
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maxpeak = 0.0; \
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if (ebur128->peak_mode & PEAK_MODE_ ## ptype ## _PEAKS) { \
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for (ch = 0; ch < ebur128->nb_channels; ch++) \
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maxpeak = FFMAX(maxpeak, sp[ch]); \
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av_log(ctx, AV_LOG_INFO, "\n\n " str " peak:\n" \
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" Peak: %5.1f dBFS", \
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DBFS(maxpeak)); \
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} \
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} while (0)
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PRINT_PEAK_SUMMARY("Sample", ebur128->sample_peaks, SAMPLES);
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PRINT_PEAK_SUMMARY("True", ebur128->true_peaks, TRUE);
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av_log(ctx, AV_LOG_INFO, "\n");
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av_freep(&ebur128->y_line_ref);
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av_freep(&ebur128->ch_weighting);
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av_freep(&ebur128->true_peaks);
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