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avfilter/afir_template: avoid multiplications if memcpy is enough
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@ -294,6 +294,7 @@ static int fn(fir_quantum)(AVFilterContext *ctx, AVFrame *out, int ch, int ioffs
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const int nb_samples = FFMIN(min_part_size, out->nb_samples - offset);
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const int nb_segments = s->nb_segments[selir];
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const float dry_gain = s->dry_gain;
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const float wet_gain = s->wet_gain;
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for (int segment = 0; segment < nb_segments; segment++) {
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AudioFIRSegment *seg = &s->seg[selir][segment];
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@ -310,7 +311,9 @@ static int fn(fir_quantum)(AVFilterContext *ctx, AVFrame *out, int ch, int ioffs
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int j;
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seg->part_index[ch] = seg->part_index[ch] % nb_partitions;
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if (min_part_size >= 8) {
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if (dry_gain == 1.f) {
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memcpy(src + input_offset, in, nb_samples * sizeof(*src));
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} else if (min_part_size >= 8) {
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#if DEPTH == 32
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s->fdsp->vector_fmul_scalar(src + input_offset, in, dry_gain, FFALIGN(nb_samples, 4));
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#else
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@ -374,19 +377,19 @@ static int fn(fir_quantum)(AVFilterContext *ctx, AVFrame *out, int ch, int ioffs
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seg->part_index[ch] = (seg->part_index[ch] + 1) % nb_partitions;
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}
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if (s->wet_gain == 1.f)
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if (wet_gain == 1.f)
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return 0;
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if (min_part_size >= 8) {
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#if DEPTH == 32
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s->fdsp->vector_fmul_scalar(ptr, ptr, s->wet_gain, FFALIGN(nb_samples, 4));
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s->fdsp->vector_fmul_scalar(ptr, ptr, wet_gain, FFALIGN(nb_samples, 4));
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#else
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s->fdsp->vector_dmul_scalar(ptr, ptr, s->wet_gain, FFALIGN(nb_samples, 8));
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s->fdsp->vector_dmul_scalar(ptr, ptr, wet_gain, FFALIGN(nb_samples, 8));
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#endif
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emms_c();
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} else {
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for (int n = 0; n < nb_samples; n++)
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ptr[n] *= s->wet_gain;
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ptr[n] *= wet_gain;
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}
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return 0;
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