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@ -58,6 +58,8 @@ typedef struct AudioCrossoverContext { |
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int order; |
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int filter_count; |
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int first_order; |
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int ap_filter_count; |
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int nb_splits; |
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float *splits; |
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@ -205,6 +207,18 @@ static void set_ap(BiquadContext *b, double fc, double q, double sr) |
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b->a2 = -a2 / a0; |
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} |
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static void set_ap1(BiquadContext *b, double fc, double sr) |
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{ |
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double omega = M_PI * fc / sr; |
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double K = tan(omega); |
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b->a1 = -(1. - K) / (1. + K); |
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b->a2 = 0.; |
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b->b0 = -b->a1; |
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b->b1 = 1.; |
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b->b2 = 0.; |
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} |
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static void calc_q_factors(int order, double *q) |
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{ |
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double n = order / 2.; |
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@ -218,7 +232,6 @@ static int config_input(AVFilterLink *inlink) |
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AVFilterContext *ctx = inlink->dst; |
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AudioCrossoverContext *s = ctx->priv; |
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int sample_rate = inlink->sample_rate; |
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int first_order; |
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double q[16]; |
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s->xover = av_calloc(inlink->channels, sizeof(*s->xover)); |
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@ -227,21 +240,29 @@ static int config_input(AVFilterLink *inlink) |
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s->order = (s->order_opt + 1) * 2; |
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s->filter_count = s->order / 2; |
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first_order = s->filter_count & 1; |
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s->first_order = s->filter_count & 1; |
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s->ap_filter_count = s->filter_count / 2 + s->first_order; |
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calc_q_factors(s->order, q); |
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for (int ch = 0; ch < inlink->channels; ch++) { |
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for (int band = 0; band <= s->nb_splits; band++) { |
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if (first_order) { |
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if (s->first_order) { |
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set_lp(&s->xover[ch].lp[band][0], s->splits[band], 0.5, sample_rate); |
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set_hp(&s->xover[ch].hp[band][0], s->splits[band], 0.5, sample_rate); |
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} |
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for (int n = first_order; n < s->filter_count; n++) { |
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const int idx = s->filter_count / 2 - ((n + first_order) / 2 - first_order) - 1; |
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for (int n = s->first_order; n < s->filter_count; n++) { |
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const int idx = s->filter_count / 2 - ((n + s->first_order) / 2 - s->first_order) - 1; |
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set_lp(&s->xover[ch].lp[band][n], s->splits[band], q[idx], sample_rate); |
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set_hp(&s->xover[ch].hp[band][n], s->splits[band], q[idx], sample_rate); |
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} |
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for (int x = 0; x <= s->nb_splits && s->first_order; x++) |
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set_ap1(&s->xover[ch].ap[x][band][0], s->splits[band], sample_rate); |
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for (int n = s->first_order; n < s->ap_filter_count; n++) { |
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const int idx = (s->filter_count / 2 - ((n * 2 + s->first_order) / 2 - s->first_order) - 1); |
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for (int x = 0; x <= s->nb_splits; x++) |
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set_ap(&s->xover[ch].ap[x][band][n], s->splits[band], q[idx], sample_rate); |
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@ -340,17 +361,25 @@ static int filter_channels(AVFilterContext *ctx, void *arg, int jobnr, int nb_jo |
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} |
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for (int aband = band + 1; aband < ctx->nb_outputs; aband++) { |
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for (int f = 0; f < s->filter_count / 2; f++) { |
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if (s->first_order) { |
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const double *src = (const double *)frames[band]->extended_data[ch]; |
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double *dst = (double *)frames[band]->extended_data[ch]; |
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BiquadContext *ap = &xover->ap[band][aband][0]; |
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biquad_process(ap, dst, src, nb_samples); |
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} |
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for (int f = s->first_order; f < s->ap_filter_count; f++) { |
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const double *src = (const double *)frames[band]->extended_data[ch]; |
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double *dst = (double *)frames[band]->extended_data[ch]; |
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BiquadContext *ap = &xover->ap[band][aband][f * 2 + (s->filter_count & 1)]; |
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BiquadContext *ap = &xover->ap[band][aband][f]; |
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biquad_process(ap, dst, src, nb_samples); |
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} |
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} |
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} |
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for (int band = 0; band < ctx->nb_outputs && (s->filter_count & 1); band++) { |
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for (int band = 0; band < ctx->nb_outputs && s->first_order; band++) { |
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if (band & 1) { |
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double *dst = (double *)frames[band]->extended_data[ch]; |
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