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swresample/arm: cosmetic fixes
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0265aec565
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@ -22,9 +22,9 @@
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function ff_resample_common_apply_filter_x4_float_neon, export=1
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vmov.f32 q0, #0.0 @ accumulator
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1: vld1.32 {q1}, [r1]! @ src
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vld1.32 {q2}, [r2]! @ filter
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vmla.f32 q0, q1, q2 @ accumulator += src + {0..3} * filter + {0..3}
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1: vld1.32 {q1}, [r1]! @ src[0..3]
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vld1.32 {q2}, [r2]! @ filter[0..3]
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vmla.f32 q0, q1, q2 @ accumulator += src[0..3] * filter[0..3]
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subs r3, #4 @ filter_length -= 4
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bgt 1b @ loop until filter_length
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vpadd.f32 d0, d0, d1 @ pair adding of the 4x32-bit accumulated values
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@ -35,12 +35,12 @@ endfunc
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function ff_resample_common_apply_filter_x8_float_neon, export=1
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vmov.f32 q0, #0.0 @ accumulator
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1: vld1.32 {q1}, [r1]! @ src
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vld1.32 {q2}, [r2]! @ filter
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vld1.32 {q8}, [r1]! @ src
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vld1.32 {q9}, [r2]! @ filter
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vmla.f32 q0, q1, q2 @ accumulator += src + {0..3} * filter + {0..3}
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vmla.f32 q0, q8, q9 @ accumulator += src + {4..7} * filter + {4..7}
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1: vld1.32 {q1}, [r1]! @ src[0..3]
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vld1.32 {q2}, [r2]! @ filter[0..3]
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vld1.32 {q8}, [r1]! @ src[4..7]
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vld1.32 {q9}, [r2]! @ filter[4..7]
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vmla.f32 q0, q1, q2 @ accumulator += src[0..3] * filter[0..3]
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vmla.f32 q0, q8, q9 @ accumulator += src[4..7] * filter[4..7]
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subs r3, #8 @ filter_length -= 8
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bgt 1b @ loop until filter_length
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vpadd.f32 d0, d0, d1 @ pair adding of the 4x32-bit accumulated values
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@ -51,9 +51,9 @@ endfunc
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function ff_resample_common_apply_filter_x4_s16_neon, export=1
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vmov.s32 q0, #0 @ accumulator
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1: vld1.16 {d2}, [r1]! @ src
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vld1.16 {d4}, [r2]! @ filter
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vmlal.s16 q0, d2, d4 @ accumulator += src + {0..3} * filter + {0..3}
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1: vld1.16 {d2}, [r1]! @ src[0..3]
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vld1.16 {d4}, [r2]! @ filter[0..3]
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vmlal.s16 q0, d2, d4 @ accumulator += src[0..3] * filter[0..3]
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subs r3, #4 @ filter_length -= 4
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bgt 1b @ loop until filter_length
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vpadd.s32 d0, d0, d1 @ pair adding of the 4x32-bit accumulated values
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@ -64,10 +64,10 @@ endfunc
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function ff_resample_common_apply_filter_x8_s16_neon, export=1
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vmov.s32 q0, #0 @ accumulator
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1: vld1.16 {q1}, [r1]! @ src
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vld1.16 {q2}, [r2]! @ filter
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vmlal.s16 q0, d2, d4 @ accumulator += src + {0..3} * filter + {0..3}
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vmlal.s16 q0, d3, d5 @ accumulator += src + {4..7} * filter + {4..7}
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1: vld1.16 {q1}, [r1]! @ src[0..7]
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vld1.16 {q2}, [r2]! @ filter[0..7]
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vmlal.s16 q0, d2, d4 @ accumulator += src[0..3] * filter[0..3]
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vmlal.s16 q0, d3, d5 @ accumulator += src[4..7] * filter[4..7]
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subs r3, #8 @ filter_length -= 8
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bgt 1b @ loop until filter_length
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vpadd.s32 d0, d0, d1 @ pair adding of the 4x32-bit accumulated values
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@ -42,8 +42,8 @@ static int ff_resample_common_##TYPE##_neon(ResampleContext *c, void *dest, cons
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DELEM *dst = dest; \
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const DELEM *src = source; \
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int dst_index; \
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int index= c->index; \
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int frac= c->frac; \
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int index = c->index; \
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int frac = c->frac; \
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int sample_index = 0; \
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int x4_aligned_filter_length = c->filter_length & ~3; \
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int x8_aligned_filter_length = c->filter_length & ~7; \
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@ -56,7 +56,7 @@ static int ff_resample_common_##TYPE##_neon(ResampleContext *c, void *dest, cons
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for (dst_index = 0; dst_index < n; dst_index++) { \
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FELEM *filter = ((FELEM *) c->filter_bank) + c->filter_alloc * index; \
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\
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FELEM2 val=0; \
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FELEM2 val = 0; \
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int i = 0; \
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if (x8_aligned_filter_length >= 8) { \
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ff_resample_common_apply_filter_x8_##TYPE##_neon(&val, &src[sample_index], \
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@ -86,9 +86,9 @@ static int ff_resample_common_##TYPE##_neon(ResampleContext *c, void *dest, cons
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} \
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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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if (update_ctx) { \
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c->frac = frac; \
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c->index = index; \
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} \
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\
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return sample_index; \
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