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@@ -112,12 +112,11 @@ int RENAME(swri_resample)(ResampleContext *c, DELEM *dst, const DELEM *src, int |
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int frac= c->frac; |
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int dst_incr_frac= c->dst_incr % c->src_incr; |
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int dst_incr= c->dst_incr / c->src_incr; |
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int compensation_distance= c->compensation_distance; |
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av_assert1(c->filter_shift == FILTER_SHIFT); |
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av_assert1(c->felem_size == sizeof(FELEM)); |
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if(compensation_distance == 0 && c->filter_length == 1 && c->phase_shift==0){ |
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if (c->filter_length == 1 && c->phase_shift == 0) { |
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int64_t index2= (1LL<<32)*c->frac/c->src_incr + (1LL<<32)*index; |
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int64_t incr= (1LL<<32) * c->dst_incr / c->src_incr; |
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int new_size = (src_size * (int64_t)c->src_incr - frac + c->dst_incr - 1) / c->dst_incr; |
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@@ -134,8 +133,7 @@ int RENAME(swri_resample)(ResampleContext *c, DELEM *dst, const DELEM *src, int |
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av_assert2(index >= 0); |
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*consumed= index; |
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index = 0; |
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} else if (compensation_distance == 0 && |
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index >= 0 && |
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} else if (index >= 0 && |
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src_size*(int64_t)c->src_incr < (INT64_MAX >> (c->phase_shift+1))) { |
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int64_t end_index = (1LL + src_size - c->filter_length) << c->phase_shift; |
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int64_t delta_frac = (end_index - index) * c->src_incr - c->frac; |
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@@ -243,27 +241,15 @@ int RENAME(swri_resample)(ResampleContext *c, DELEM *dst, const DELEM *src, int |
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frac -= c->src_incr; |
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index++; |
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} |
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if(dst_index + 1 == compensation_distance){ |
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compensation_distance= 0; |
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dst_incr_frac= c->ideal_dst_incr % c->src_incr; |
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dst_incr= c->ideal_dst_incr / c->src_incr; |
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} |
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} |
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*consumed= FFMAX(sample_index, 0); |
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index += FFMIN(sample_index, 0) << c->phase_shift; |
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if(compensation_distance){ |
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compensation_distance -= dst_index; |
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av_assert1(compensation_distance > 0); |
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} |
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} |
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if(update_ctx){ |
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c->frac= frac; |
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c->index= index; |
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c->dst_incr= dst_incr_frac + c->src_incr*dst_incr; |
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c->compensation_distance= compensation_distance; |
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} |
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return dst_index; |
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