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yadif: x86 assembly for 9 to 14-bit samples
These smaller samples do not need to be unpacked to double words allowing the code to process more pixels every iteration (still 2 in MMX but 6 in SSE2). It also avoids emulating the missing double word instructions on older instruction sets. Like with the previous code for 16-bit samples this has been tested on an Athlon64 and a Core2Quad. Athlon64: 1809275 decicycles in C, 32718 runs, 50 skips 911675 decicycles in mmx, 32727 runs, 41 skips, 2.0x faster 495284 decicycles in sse2, 32747 runs, 21 skips, 3.7x faster Core2Quad: 921363 decicycles in C, 32756 runs, 12 skips 486537 decicycles in mmx, 32764 runs, 4 skips, 1.9x faster 293296 decicycles in sse2, 32759 runs, 9 skips, 3.1x faster 284910 decicycles in ssse3, 32759 runs, 9 skips, 3.2x faster Signed-off-by: Michael Niedermayer <michaelni@gmx.at>
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@ -5,4 +5,4 @@ OBJS-$(CONFIG_YADIF_FILTER) += x86/vf_yadif_init.o
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YASM-OBJS-$(CONFIG_HQDN3D_FILTER) += x86/vf_hqdn3d.o
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YASM-OBJS-$(CONFIG_VOLUME_FILTER) += x86/af_volume.o
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YASM-OBJS-$(CONFIG_YADIF_FILTER) += x86/vf_yadif.o x86/yadif-16.o
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YASM-OBJS-$(CONFIG_YADIF_FILTER) += x86/vf_yadif.o x86/yadif-16.o x86/yadif-10.o
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@ -49,6 +49,16 @@ void ff_yadif_filter_line_16bit_sse4(void *dst, void *prev, void *cur,
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void *next, int w, int prefs,
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int mrefs, int parity, int mode);
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void ff_yadif_filter_line_10bit_mmxext(void *dst, void *prev, void *cur,
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void *next, int w, int prefs,
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int mrefs, int parity, int mode);
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void ff_yadif_filter_line_10bit_sse2(void *dst, void *prev, void *cur,
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void *next, int w, int prefs,
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int mrefs, int parity, int mode);
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void ff_yadif_filter_line_10bit_ssse3(void *dst, void *prev, void *cur,
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void *next, int w, int prefs,
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int mrefs, int parity, int mode);
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av_cold void ff_yadif_init_x86(YADIFContext *yadif)
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{
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int cpu_flags = av_get_cpu_flags();
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@ -56,7 +66,7 @@ av_cold void ff_yadif_init_x86(YADIFContext *yadif)
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: yadif->csp->comp[0].depth_minus1 + 1;
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#if HAVE_YASM
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if (bit_depth > 8) {
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if (bit_depth >= 15) {
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#if ARCH_X86_32
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if (EXTERNAL_MMXEXT(cpu_flags))
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yadif->filter_line = ff_yadif_filter_line_16bit_mmxext;
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@ -67,6 +77,15 @@ av_cold void ff_yadif_init_x86(YADIFContext *yadif)
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yadif->filter_line = ff_yadif_filter_line_16bit_ssse3;
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if (EXTERNAL_SSE4(cpu_flags))
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yadif->filter_line = ff_yadif_filter_line_16bit_sse4;
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} else if ( bit_depth >= 9 && bit_depth <= 14) {
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#if ARCH_X86_32
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if (EXTERNAL_MMXEXT(cpu_flags))
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yadif->filter_line = ff_yadif_filter_line_10bit_mmxext;
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#endif /* ARCH_X86_32 */
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if (EXTERNAL_SSE2(cpu_flags))
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yadif->filter_line = ff_yadif_filter_line_10bit_sse2;
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if (EXTERNAL_SSSE3(cpu_flags))
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yadif->filter_line = ff_yadif_filter_line_10bit_ssse3;
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} else {
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#if ARCH_X86_32
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if (EXTERNAL_MMXEXT(cpu_flags))
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284
libavfilter/x86/yadif-10.asm
Normal file
284
libavfilter/x86/yadif-10.asm
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@ -0,0 +1,284 @@
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;*****************************************************************************
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;* x86-optimized functions for yadif filter
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;*
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;* Copyright (C) 2006 Michael Niedermayer <michaelni@gmx.at>
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;* Copyright (c) 2013 Daniel Kang <daniel.d.kang@gmail.com>
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;* Copyright (c) 2011-2013 James Darnley <james.darnley@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 modify
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;* it under the terms of the GNU General Public License as published by
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;* the Free Software Foundation; either version 2 of the License, or
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;* (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
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;* GNU General Public License for more details.
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;*
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;* You should have received a copy of the GNU General Public License along
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;* with FFmpeg; if not, write to the Free Software Foundation, Inc.,
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;* 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
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pw_1: times 8 dw 1
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SECTION .text
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%macro PABS 2
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%if cpuflag(ssse3)
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pabsw %1, %1
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%else
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pxor %2, %2
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pcmpgtw %2, %1
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pxor %1, %2
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psubw %1, %2
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%endif
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%endmacro
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%macro PMAXUW 2
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%if cpuflag(sse4)
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pmaxuw %1, %2
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%else
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psubusw %1, %2
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paddusw %1, %2
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%endif
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%endmacro
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%macro CHECK 2
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movu m2, [curq+t1+%1*2]
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movu m3, [curq+t0+%2*2]
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mova m4, m2
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mova m5, m2
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pxor m4, m3
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pavgw m5, m3
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pand m4, [pw_1]
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psubusw m5, m4
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%if mmsize == 16
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psrldq m5, 2
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%else
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psrlq m5, 16
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%endif
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mova m4, m2
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psubusw m2, m3
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psubusw m3, m4
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PMAXUW m2, m3
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mova m3, m2
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mova m4, m2
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%if mmsize == 16
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psrldq m3, 2
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psrldq m4, 4
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%else
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psrlq m3, 16
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psrlq m4, 32
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%endif
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paddw m2, m3
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paddw m2, m4
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%endmacro
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%macro CHECK1 0
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mova m3, m0
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pcmpgtw m3, m2
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pminsw m0, m2
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mova m6, m3
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pand m5, m3
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pandn m3, m1
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por m3, m5
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mova m1, m3
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%endmacro
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; %macro CHECK2 0
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; paddw m6, [pw_1]
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; psllw m6, 14
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; paddsw m2, m6
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; mova m3, m0
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; pcmpgtw m3, m2
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; pminsw m0, m2
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; pand m5, m3
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; pandn m3, m1
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; por m3, m5
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; mova m1, m3
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; %endmacro
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; This version of CHECK2 is required for 14-bit samples. The left-shift trick
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; in the old code is not large enough to correctly select pixels or scores.
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%macro CHECK2 0
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mova m3, m0
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pcmpgtw m0, m2
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pand m0, m6
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mova m6, m0
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pand m5, m6
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pand m2, m0
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pandn m6, m1
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pandn m0, m3
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por m6, m5
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por m0, m2
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mova m1, m6
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%endmacro
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%macro LOAD 2
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movu m%1, %2
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%endmacro
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%macro FILTER 3
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.loop%1:
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pxor m7, m7
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LOAD 0, [curq+t1]
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LOAD 1, [curq+t0]
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LOAD 2, [%2]
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LOAD 3, [%3]
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mova m4, m3
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paddw m3, m2
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psraw m3, 1
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mova [rsp+ 0], m0
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mova [rsp+16], m3
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mova [rsp+32], m1
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psubw m2, m4
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PABS m2, m4
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LOAD 3, [prevq+t1]
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LOAD 4, [prevq+t0]
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psubw m3, m0
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psubw m4, m1
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PABS m3, m5
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PABS m4, m5
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paddw m3, m4
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psrlw m2, 1
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psrlw m3, 1
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pmaxsw m2, m3
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LOAD 3, [nextq+t1]
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LOAD 4, [nextq+t0]
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psubw m3, m0
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psubw m4, m1
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PABS m3, m5
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PABS m4, m5
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paddw m3, m4
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psrlw m3, 1
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pmaxsw m2, m3
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mova [rsp+48], m2
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paddw m1, m0
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paddw m0, m0
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psubw m0, m1
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psrlw m1, 1
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PABS m0, m2
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movu m2, [curq+t1-1*2]
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movu m3, [curq+t0-1*2]
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mova m4, m2
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psubusw m2, m3
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psubusw m3, m4
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PMAXUW m2, m3
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%if mmsize == 16
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mova m3, m2
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psrldq m3, 4
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%else
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mova m3, m2
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psrlq m3, 32
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%endif
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paddw m0, m2
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paddw m0, m3
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psubw m0, [pw_1]
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CHECK -2, 0
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CHECK1
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CHECK -3, 1
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CHECK2
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CHECK 0, -2
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CHECK1
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CHECK 1, -3
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CHECK2
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mova m6, [rsp+48]
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cmp DWORD r8m, 2
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jge .end%1
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LOAD 2, [%2+t1*2]
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LOAD 4, [%3+t1*2]
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LOAD 3, [%2+t0*2]
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LOAD 5, [%3+t0*2]
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paddw m2, m4
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paddw m3, m5
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psrlw m2, 1
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psrlw m3, 1
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mova m4, [rsp+ 0]
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mova m5, [rsp+16]
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mova m7, [rsp+32]
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psubw m2, m4
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psubw m3, m7
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mova m0, m5
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psubw m5, m4
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psubw m0, m7
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mova m4, m2
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pminsw m2, m3
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pmaxsw m3, m4
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pmaxsw m2, m5
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pminsw m3, m5
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pmaxsw m2, m0
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pminsw m3, m0
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pxor m4, m4
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pmaxsw m6, m3
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psubw m4, m2
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pmaxsw m6, m4
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.end%1:
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mova m2, [rsp+16]
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mova m3, m2
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psubw m2, m6
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paddw m3, m6
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pmaxsw m1, m2
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pminsw m1, m3
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movu [dstq], m1
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add dstq, mmsize-4
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add prevq, mmsize-4
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add curq, mmsize-4
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add nextq, mmsize-4
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sub DWORD r4m, mmsize/2-2
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jg .loop%1
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%endmacro
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%macro YADIF 0
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%if ARCH_X86_32
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cglobal yadif_filter_line_10bit, 4, 6, 8, 80, dst, prev, cur, next, w, \
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prefs, mrefs, parity, mode
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%else
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cglobal yadif_filter_line_10bit, 4, 7, 8, 80, dst, prev, cur, next, w, \
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prefs, mrefs, parity, mode
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%endif
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cmp DWORD wm, 0
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jle .ret
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%if ARCH_X86_32
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mov r4, r5mp
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mov r5, r6mp
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DECLARE_REG_TMP 4,5
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%else
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movsxd r5, DWORD r5m
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movsxd r6, DWORD r6m
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DECLARE_REG_TMP 5,6
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%endif
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cmp DWORD paritym, 0
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je .parity0
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FILTER 1, prevq, curq
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jmp .ret
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.parity0:
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FILTER 0, curq, nextq
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.ret:
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RET
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%endmacro
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INIT_XMM ssse3
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YADIF
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INIT_XMM sse2
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YADIF
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%if ARCH_X86_32
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INIT_MMX mmxext
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YADIF
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%endif
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