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@ -33,7 +33,8 @@ typedef struct ChannelStats { |
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double min, max; |
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double min_run, max_run; |
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double min_runs, max_runs; |
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double max_diff; |
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double min_diff, max_diff; |
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double diff1_sum; |
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uint64_t mask; |
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uint64_t min_count, max_count; |
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uint64_t nb_samples; |
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@ -104,7 +105,7 @@ static void reset_stats(AudioStatsContext *s) |
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p->min = p->min_sigma_x2 = DBL_MAX; |
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p->max = p->max_sigma_x2 = DBL_MIN; |
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p->max_diff = -1; |
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p->min_diff = p->max_diff = -1; |
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} |
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} |
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@ -162,7 +163,9 @@ static inline void update_stat(AudioStatsContext *s, ChannelStats *p, double d) |
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p->sigma_x += d; |
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p->sigma_x2 += d * d; |
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p->avg_sigma_x2 = p->avg_sigma_x2 * s->mult + (1.0 - s->mult) * d * d; |
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p->min_diff = FFMIN(p->min_diff == -1 ? DBL_MAX : p->min_diff, FFABS(d - (p->min_diff == -1 ? DBL_MAX : p->last))); |
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p->max_diff = FFMAX(p->max_diff, FFABS(d - (p->max_diff == -1 ? d : p->last))); |
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p->diff1_sum += FFABS(d - p->last); |
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p->last = d; |
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p->mask |= llrint(d * (1LLU<<63)); |
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@ -193,8 +196,9 @@ static void set_metadata(AudioStatsContext *s, AVDictionary **metadata) |
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{ |
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uint64_t mask = 0, min_count = 0, max_count = 0, nb_samples = 0; |
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double min_runs = 0, max_runs = 0, |
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min = DBL_MAX, max = DBL_MIN, max_diff = 0, |
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min = DBL_MAX, max = DBL_MIN, min_diff = DBL_MAX, max_diff = 0, |
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max_sigma_x = 0, |
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diff1_sum = 0, |
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sigma_x = 0, |
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sigma_x2 = 0, |
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min_sigma_x2 = DBL_MAX, |
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@ -209,7 +213,9 @@ static void set_metadata(AudioStatsContext *s, AVDictionary **metadata) |
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min = FFMIN(min, p->min); |
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max = FFMAX(max, p->max); |
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min_diff = FFMIN(min_diff, p->min_diff); |
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max_diff = FFMAX(max_diff, p->max_diff); |
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diff1_sum += p->diff1_sum, |
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min_sigma_x2 = FFMIN(min_sigma_x2, p->min_sigma_x2); |
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max_sigma_x2 = FFMAX(max_sigma_x2, p->max_sigma_x2); |
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sigma_x += p->sigma_x; |
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@ -226,7 +232,9 @@ static void set_metadata(AudioStatsContext *s, AVDictionary **metadata) |
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set_meta(metadata, c + 1, "DC_offset", "%f", p->sigma_x / p->nb_samples); |
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set_meta(metadata, c + 1, "Min_level", "%f", p->min); |
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set_meta(metadata, c + 1, "Max_level", "%f", p->max); |
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set_meta(metadata, c + 1, "Min_difference", "%f", p->min_diff); |
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set_meta(metadata, c + 1, "Max_difference", "%f", p->max_diff); |
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set_meta(metadata, c + 1, "Mean_difference", "%f", p->diff1_sum / (p->nb_samples - 1)); |
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set_meta(metadata, c + 1, "Peak_level", "%f", LINEAR_TO_DB(FFMAX(-p->min, p->max))); |
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set_meta(metadata, c + 1, "RMS_level", "%f", LINEAR_TO_DB(sqrt(p->sigma_x2 / p->nb_samples))); |
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set_meta(metadata, c + 1, "RMS_peak", "%f", LINEAR_TO_DB(sqrt(p->max_sigma_x2))); |
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@ -240,7 +248,9 @@ static void set_metadata(AudioStatsContext *s, AVDictionary **metadata) |
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set_meta(metadata, 0, "Overall.DC_offset", "%f", max_sigma_x / (nb_samples / s->nb_channels)); |
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set_meta(metadata, 0, "Overall.Min_level", "%f", min); |
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set_meta(metadata, 0, "Overall.Max_level", "%f", max); |
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set_meta(metadata, 0, "Overall.Min_difference", "%f", min_diff); |
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set_meta(metadata, 0, "Overall.Max_difference", "%f", max_diff); |
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set_meta(metadata, 0, "Overall.Mean_difference", "%f", diff1_sum / (nb_samples - s->nb_channels)); |
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set_meta(metadata, 0, "Overall.Peak_level", "%f", LINEAR_TO_DB(FFMAX(-min, max))); |
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set_meta(metadata, 0, "Overall.RMS_level", "%f", LINEAR_TO_DB(sqrt(sigma_x2 / nb_samples))); |
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set_meta(metadata, 0, "Overall.RMS_peak", "%f", LINEAR_TO_DB(sqrt(max_sigma_x2))); |
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@ -298,8 +308,9 @@ static void print_stats(AVFilterContext *ctx) |
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AudioStatsContext *s = ctx->priv; |
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uint64_t mask = 0, min_count = 0, max_count = 0, nb_samples = 0; |
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double min_runs = 0, max_runs = 0, |
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min = DBL_MAX, max = DBL_MIN, max_diff = 0, |
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min = DBL_MAX, max = DBL_MIN, min_diff = DBL_MAX, max_diff = 0, |
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max_sigma_x = 0, |
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diff1_sum = 0, |
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sigma_x = 0, |
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sigma_x2 = 0, |
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min_sigma_x2 = DBL_MAX, |
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@ -314,7 +325,9 @@ static void print_stats(AVFilterContext *ctx) |
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min = FFMIN(min, p->min); |
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max = FFMAX(max, p->max); |
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min_diff = FFMIN(min_diff, p->min_diff); |
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max_diff = FFMAX(max_diff, p->max_diff); |
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diff1_sum += p->diff1_sum, |
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min_sigma_x2 = FFMIN(min_sigma_x2, p->min_sigma_x2); |
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max_sigma_x2 = FFMAX(max_sigma_x2, p->max_sigma_x2); |
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sigma_x += p->sigma_x; |
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@ -332,7 +345,9 @@ static void print_stats(AVFilterContext *ctx) |
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av_log(ctx, AV_LOG_INFO, "DC offset: %f\n", p->sigma_x / p->nb_samples); |
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av_log(ctx, AV_LOG_INFO, "Min level: %f\n", p->min); |
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av_log(ctx, AV_LOG_INFO, "Max level: %f\n", p->max); |
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av_log(ctx, AV_LOG_INFO, "Min difference: %f\n", p->min_diff); |
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av_log(ctx, AV_LOG_INFO, "Max difference: %f\n", p->max_diff); |
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av_log(ctx, AV_LOG_INFO, "Mean difference: %f\n", p->diff1_sum / (p->nb_samples - 1)); |
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av_log(ctx, AV_LOG_INFO, "Peak level dB: %f\n", LINEAR_TO_DB(FFMAX(-p->min, p->max))); |
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av_log(ctx, AV_LOG_INFO, "RMS level dB: %f\n", LINEAR_TO_DB(sqrt(p->sigma_x2 / p->nb_samples))); |
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av_log(ctx, AV_LOG_INFO, "RMS peak dB: %f\n", LINEAR_TO_DB(sqrt(p->max_sigma_x2))); |
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@ -348,7 +363,9 @@ static void print_stats(AVFilterContext *ctx) |
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av_log(ctx, AV_LOG_INFO, "DC offset: %f\n", max_sigma_x / (nb_samples / s->nb_channels)); |
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av_log(ctx, AV_LOG_INFO, "Min level: %f\n", min); |
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av_log(ctx, AV_LOG_INFO, "Max level: %f\n", max); |
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av_log(ctx, AV_LOG_INFO, "Min difference: %f\n", min_diff); |
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av_log(ctx, AV_LOG_INFO, "Max difference: %f\n", max_diff); |
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av_log(ctx, AV_LOG_INFO, "Mean difference: %f\n", diff1_sum / (nb_samples - s->nb_channels)); |
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av_log(ctx, AV_LOG_INFO, "Peak level dB: %f\n", LINEAR_TO_DB(FFMAX(-min, max))); |
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av_log(ctx, AV_LOG_INFO, "RMS level dB: %f\n", LINEAR_TO_DB(sqrt(sigma_x2 / nb_samples))); |
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av_log(ctx, AV_LOG_INFO, "RMS peak dB: %f\n", LINEAR_TO_DB(sqrt(max_sigma_x2))); |
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