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libswscale: Adds ff_hscale8to15_4_avx2 and ff_hscale8to15_X4_avx2 for all filter sizes.
Fixes so that fate under 64 bit Windows passes. These functions replace all ff_hscale8to15_*_ssse3 when avx2 is available. Signed-off-by: James Almer <jamrial@gmail.com>
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@ -1105,4 +1105,6 @@ void ff_sws_slice_worker(void *priv, int jobnr, int threadnr,
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//number of extra lines to process
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#define MAX_LINES_AHEAD 4
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//shuffle filter and filterPos for hyScale and hcScale filters in avx2
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void ff_shuffle_filter_coefficients(SwsContext *c, int* filterPos, int filterSize, int16_t *filter, int dstW);
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#endif /* SWSCALE_SWSCALE_INTERNAL_H */
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@ -278,6 +278,41 @@ static const FormatEntry format_entries[] = {
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[AV_PIX_FMT_P416LE] = { 1, 0 },
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};
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void ff_shuffle_filter_coefficients(SwsContext *c, int *filterPos, int filterSize, int16_t *filter, int dstW){
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#if ARCH_X86_64
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int i, j, k, l;
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int cpu_flags = av_get_cpu_flags();
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if (EXTERNAL_AVX2_FAST(cpu_flags)){
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if ((c->srcBpc == 8) && (c->dstBpc <= 14)){
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if (dstW % 16 == 0){
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if (filter != NULL){
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for (i = 0; i < dstW; i += 8){
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FFSWAP(int, filterPos[i + 2], filterPos[i+4]);
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FFSWAP(int, filterPos[i + 3], filterPos[i+5]);
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}
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if (filterSize > 4){
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int16_t *tmp2 = av_malloc(dstW * filterSize * 2);
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memcpy(tmp2, filter, dstW * filterSize * 2);
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for (i = 0; i < dstW; i += 16){//pixel
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for (k = 0; k < filterSize / 4; ++k){//fcoeff
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for (j = 0; j < 16; ++j){//inner pixel
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for (l = 0; l < 4; ++l){//coeff
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int from = i * filterSize + j * filterSize + k * 4 + l;
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int to = (i) * filterSize + j * 4 + l + k * 64;
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filter[to] = tmp2[from];
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}
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}
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}
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}
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av_free(tmp2);
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}
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}
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}
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}
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}
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#endif
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}
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int sws_isSupportedInput(enum AVPixelFormat pix_fmt)
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{
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return (unsigned)pix_fmt < FF_ARRAY_ELEMS(format_entries) ?
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@ -1801,6 +1836,7 @@ av_cold int sws_init_context(SwsContext *c, SwsFilter *srcFilter,
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get_local_pos(c, 0, 0, 0),
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get_local_pos(c, 0, 0, 0))) < 0)
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goto fail;
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ff_shuffle_filter_coefficients(c, c->hLumFilterPos, c->hLumFilterSize, c->hLumFilter, dstW);
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if ((ret = initFilter(&c->hChrFilter, &c->hChrFilterPos,
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&c->hChrFilterSize, c->chrXInc,
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c->chrSrcW, c->chrDstW, filterAlign, 1 << 14,
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@ -1810,6 +1846,7 @@ av_cold int sws_init_context(SwsContext *c, SwsFilter *srcFilter,
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get_local_pos(c, c->chrSrcHSubSample, c->src_h_chr_pos, 0),
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get_local_pos(c, c->chrDstHSubSample, c->dst_h_chr_pos, 0))) < 0)
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goto fail;
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ff_shuffle_filter_coefficients(c, c->hChrFilterPos, c->hChrFilterSize, c->hChrFilter, c->chrDstW);
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}
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} // initialize horizontal stuff
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@ -11,6 +11,7 @@ OBJS-$(CONFIG_XMM_CLOBBER_TEST) += x86/w64xmmtest.o
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X86ASM-OBJS += x86/input.o \
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x86/output.o \
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x86/scale.o \
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x86/scale_avx2.o \
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x86/rgb_2_rgb.o \
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x86/yuv_2_rgb.o \
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x86/yuv2yuvX.o \
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112
libswscale/x86/scale_avx2.asm
Normal file
112
libswscale/x86/scale_avx2.asm
Normal file
@ -0,0 +1,112 @@
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;******************************************************************************
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;* x86-optimized horizontal line scaling functions
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;* Copyright 2020 Google LLC
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;* Copyright (c) 2011 Ronald S. Bultje <rsbultje@gmail.com>
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;*
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;* This file is part of FFmpeg.
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;*
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;* FFmpeg is free software; you can redistribute it and/or
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;* modify it under the terms of the GNU Lesser General Public
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;* License as published by the Free Software Foundation; either
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;* version 2.1 of the License, or (at your option) any later version.
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;*
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;* FFmpeg is distributed in the hope that it will be useful,
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;* but WITHOUT ANY WARRANTY; without even the implied warranty of
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;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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;* Lesser General Public License for more details.
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;*
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;* You should have received a copy of the GNU Lesser General Public
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;* License along with FFmpeg; if not, write to the Free Software
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;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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;******************************************************************************
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%include "libavutil/x86/x86util.asm"
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SECTION_RODATA 32
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swizzle: dd 0, 4, 1, 5, 2, 6, 3, 7
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four: times 8 dd 4
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SECTION .text
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;-----------------------------------------------------------------------------
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; horizontal line scaling
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;
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; void hscale8to15_<filterSize>_<opt>
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; (SwsContext *c, int16_t *dst,
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; int dstW, const uint8_t *src,
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; const int16_t *filter,
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; const int32_t *filterPos, int filterSize);
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;
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; Scale one horizontal line. Input is 8-bit width Filter is 14 bits. Output is
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; 15 bits (in int16_t). Each output pixel is generated from $filterSize input
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; pixels, the position of the first pixel is given in filterPos[nOutputPixel].
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;-----------------------------------------------------------------------------
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%macro SCALE_FUNC 1
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cglobal hscale8to15_%1, 7, 9, 16, pos0, dst, w, srcmem, filter, fltpos, fltsize, count, inner
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pxor m0, m0
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mova m15, [swizzle]
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mov countq, $0
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movsxd wq, wd
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%ifidn %1, X4
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mova m14, [four]
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shr fltsized, 2
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%endif
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.loop:
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movu m1, [fltposq]
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movu m2, [fltposq+32]
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%ifidn %1, X4
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pxor m9, m9
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pxor m10, m10
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pxor m11, m11
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pxor m12, m12
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mov innerq, $0
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.innerloop:
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%endif
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vpcmpeqd m13, m13
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vpgatherdd m3,[srcmemq + m1], m13
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vpcmpeqd m13, m13
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vpgatherdd m4,[srcmemq + m2], m13
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vpunpcklbw m5, m3, m0
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vpunpckhbw m6, m3, m0
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vpunpcklbw m7, m4, m0
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vpunpckhbw m8, m4, m0
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vpmaddwd m5, m5, [filterq]
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vpmaddwd m6, m6, [filterq + 32]
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vpmaddwd m7, m7, [filterq + 64]
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vpmaddwd m8, m8, [filterq + 96]
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add filterq, $80
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%ifidn %1, X4
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paddd m9, m5
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paddd m10, m6
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paddd m11, m7
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paddd m12, m8
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paddd m1, m14
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paddd m2, m14
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add innerq, $1
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cmp innerq, fltsizeq
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jl .innerloop
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vphaddd m5, m9, m10
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vphaddd m6, m11, m12
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%else
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vphaddd m5, m5, m6
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vphaddd m6, m7, m8
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%endif
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vpsrad m5, 7
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vpsrad m6, 7
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vpackssdw m5, m5, m6
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vpermd m5, m15, m5
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vmovdqu [dstq + countq * 2], m5
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add fltposq, $40
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add countq, $10
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cmp countq, wq
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jl .loop
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REP_RET
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%endmacro
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%if ARCH_X86_64
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INIT_YMM avx2
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SCALE_FUNC 4
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SCALE_FUNC X4
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%endif
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@ -276,6 +276,9 @@ SCALE_FUNCS_SSE(sse2);
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SCALE_FUNCS_SSE(ssse3);
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SCALE_FUNCS_SSE(sse4);
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SCALE_FUNC(4, 8, 15, avx2);
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SCALE_FUNC(X4, 8, 15, avx2);
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#define VSCALEX_FUNC(size, opt) \
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void ff_yuv2planeX_ ## size ## _ ## opt(const int16_t *filter, int filterSize, \
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const int16_t **src, uint8_t *dest, int dstW, \
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@ -568,6 +571,22 @@ switch(c->dstBpc){ \
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}
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#if ARCH_X86_64
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#define ASSIGN_AVX2_SCALE_FUNC(hscalefn, filtersize) \
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switch (filtersize) { \
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case 4: hscalefn = ff_hscale8to15_4_avx2; break; \
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default: hscalefn = ff_hscale8to15_X4_avx2; break; \
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break; \
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}
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if (EXTERNAL_AVX2_FAST(cpu_flags)){
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if ((c->srcBpc == 8) && (c->dstBpc <= 14)){
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if(c->chrDstW % 16 == 0)
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ASSIGN_AVX2_SCALE_FUNC(c->hcScale, c->hChrFilterSize);
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if(c->dstW % 16 == 0)
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ASSIGN_AVX2_SCALE_FUNC(c->hyScale, c->hLumFilterSize);
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}
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}
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if (EXTERNAL_AVX2_FAST(cpu_flags)) {
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switch (c->dstFormat) {
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case AV_PIX_FMT_NV12:
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@ -134,13 +134,13 @@ static void check_yuv2yuvX(void)
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}
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#undef SRC_PIXELS
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#define SRC_PIXELS 128
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#define SRC_PIXELS 512
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static void check_hscale(void)
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{
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#define MAX_FILTER_WIDTH 40
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#define FILTER_SIZES 5
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static const int filter_sizes[FILTER_SIZES] = { 4, 8, 16, 32, 40 };
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#define FILTER_SIZES 6
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static const int filter_sizes[FILTER_SIZES] = { 4, 8, 12, 16, 32, 40 };
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#define HSCALE_PAIRS 2
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static const int hscale_pairs[HSCALE_PAIRS][2] = {
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@ -159,6 +159,8 @@ static void check_hscale(void)
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// padded
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LOCAL_ALIGNED_32(int16_t, filter, [SRC_PIXELS * MAX_FILTER_WIDTH + MAX_FILTER_WIDTH]);
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LOCAL_ALIGNED_32(int32_t, filterPos, [SRC_PIXELS]);
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LOCAL_ALIGNED_32(int16_t, filterAvx2, [SRC_PIXELS * MAX_FILTER_WIDTH + MAX_FILTER_WIDTH]);
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LOCAL_ALIGNED_32(int32_t, filterPosAvx, [SRC_PIXELS]);
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// The dst parameter here is either int16_t or int32_t but we use void* to
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// just cover both cases.
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@ -166,6 +168,8 @@ static void check_hscale(void)
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const uint8_t *src, const int16_t *filter,
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const int32_t *filterPos, int filterSize);
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int cpu_flags = av_get_cpu_flags();
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ctx = sws_alloc_context();
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if (sws_init_context(ctx, NULL, NULL) < 0)
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fail();
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@ -179,9 +183,11 @@ static void check_hscale(void)
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ctx->srcBpc = hscale_pairs[hpi][0];
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ctx->dstBpc = hscale_pairs[hpi][1];
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ctx->hLumFilterSize = ctx->hChrFilterSize = width;
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ctx->dstW = ctx->chrDstW = SRC_PIXELS;
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for (i = 0; i < SRC_PIXELS; i++) {
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filterPos[i] = i;
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filterPosAvx[i] = i;
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// These filter cofficients are chosen to try break two corner
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// cases, namely:
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@ -210,16 +216,20 @@ static void check_hscale(void)
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filter[SRC_PIXELS * width + i] = rnd();
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}
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ff_sws_init_scale(ctx);
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memcpy(filterAvx2, filter, sizeof(uint16_t) * (SRC_PIXELS * MAX_FILTER_WIDTH + MAX_FILTER_WIDTH));
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if (cpu_flags & AV_CPU_FLAG_AVX2){
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ff_shuffle_filter_coefficients(ctx, filterPosAvx, width, filterAvx2, SRC_PIXELS);
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}
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if (check_func(ctx->hcScale, "hscale_%d_to_%d_width%d", ctx->srcBpc, ctx->dstBpc + 1, width)) {
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memset(dst0, 0, SRC_PIXELS * sizeof(dst0[0]));
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memset(dst1, 0, SRC_PIXELS * sizeof(dst1[0]));
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call_ref(NULL, dst0, SRC_PIXELS, src, filter, filterPos, width);
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call_new(NULL, dst1, SRC_PIXELS, src, filter, filterPos, width);
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call_new(NULL, dst1, SRC_PIXELS, src, filterAvx2, filterPosAvx, width);
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if (memcmp(dst0, dst1, SRC_PIXELS * sizeof(dst0[0])))
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fail();
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bench_new(NULL, dst0, SRC_PIXELS, src, filter, filterPos, width);
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bench_new(NULL, dst0, SRC_PIXELS, src, filter, filterPosAvx, width);
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}
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}
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}
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