621 lines
21 KiB
C
621 lines
21 KiB
C
/*****************************************************************************
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* predict-c.c: intra prediction
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*****************************************************************************
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* Copyright (C) 2003-2025 x264 project
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*
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* Authors: Laurent Aimar <fenrir@via.ecp.fr>
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* Loren Merritt <lorenm@u.washington.edu>
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* Fiona Glaser <fiona@x264.com>
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*
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* This program 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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* This program 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
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02111, USA.
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*
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* This program is also available under a commercial proprietary license.
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* For more information, contact us at licensing@x264.com.
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*****************************************************************************/
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#include "common/common.h"
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#include "predict.h"
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#include "pixel.h"
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#define PREDICT_P_SUM(j,i)\
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H += i * ( src[j+i - FDEC_STRIDE ] - src[j-i - FDEC_STRIDE ] );\
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V += i * ( src[(j+i)*FDEC_STRIDE -1] - src[(j-i)*FDEC_STRIDE -1] );
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#if HAVE_X86_INLINE_ASM
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#if HIGH_BIT_DEPTH
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ALIGNED_16( static const int16_t pw_12345678[8] ) = {1,2,3,4,5,6,7,8};
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ALIGNED_16( static const int16_t pw_m87654321[8] ) = {-8,-7,-6,-5,-4,-3,-2,-1};
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ALIGNED_16( static const int16_t pw_m32101234[8] ) = {-3,-2,-1,0,1,2,3,4};
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#else // !HIGH_BIT_DEPTH
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ALIGNED_8( static const int8_t pb_12345678[8] ) = {1,2,3,4,5,6,7,8};
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ALIGNED_8( static const int8_t pb_m87654321[8] ) = {-8,-7,-6,-5,-4,-3,-2,-1};
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ALIGNED_8( static const int8_t pb_m32101234[8] ) = {-3,-2,-1,0,1,2,3,4};
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#endif // HIGH_BIT_DEPTH
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#endif // HAVE_X86_INLINE_ASM
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#define PREDICT_16x16_P_CORE\
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int H = 0;\
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int V = 0;\
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PREDICT_P_SUM(7,1)\
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PREDICT_P_SUM(7,2)\
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PREDICT_P_SUM(7,3)\
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PREDICT_P_SUM(7,4)\
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PREDICT_P_SUM(7,5)\
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PREDICT_P_SUM(7,6)\
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PREDICT_P_SUM(7,7)\
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PREDICT_P_SUM(7,8)
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#define PREDICT_16x16_P_END(name)\
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int a = 16 * ( src[15*FDEC_STRIDE -1] + src[15 - FDEC_STRIDE] );\
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int b = ( 5 * H + 32 ) >> 6;\
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int c = ( 5 * V + 32 ) >> 6;\
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int i00 = a - b * 7 - c * 7 + 16;\
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/* b*15 + c*15 can overflow: it's easier to just branch away in this rare case\
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* than to try to consider it in the asm. */\
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if( BIT_DEPTH > 8 && (i00 > 0x7fff || abs(b) > 1092 || abs(c) > 1092) )\
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x264_predict_16x16_p_c( src );\
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else\
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x264_predict_16x16_p_core_##name( src, i00, b, c );
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#define PREDICT_16x16_P(name, name2)\
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static void predict_16x16_p_##name( pixel *src )\
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{\
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PREDICT_16x16_P_CORE\
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PREDICT_16x16_P_END(name2)\
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}
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#if HAVE_X86_INLINE_ASM
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#if HIGH_BIT_DEPTH
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#define PREDICT_16x16_P_ASM\
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asm (\
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"movdqu %1, %%xmm1 \n"\
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"movdqa %2, %%xmm0 \n"\
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"pmaddwd %3, %%xmm0 \n"\
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"pmaddwd %4, %%xmm1 \n"\
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"paddd %%xmm1, %%xmm0 \n"\
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"movhlps %%xmm0, %%xmm1 \n"\
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"paddd %%xmm1, %%xmm0 \n"\
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"pshuflw $14, %%xmm0, %%xmm1 \n"\
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"paddd %%xmm1, %%xmm0 \n"\
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"movd %%xmm0, %0 \n"\
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:"=r"(H)\
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:"m"(MEM_FIX(&src[-FDEC_STRIDE-1], const pixel, 8)),\
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"m"(MEM_FIX(&src[-FDEC_STRIDE+8], const pixel, 8)),\
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"m"(MEM_FIX(pw_12345678, const int16_t, 8)),\
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"m"(MEM_FIX(pw_m87654321, const int16_t, 8))\
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:"xmm0", "xmm1"\
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);
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#else // !HIGH_BIT_DEPTH
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#define PREDICT_16x16_P_ASM\
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asm (\
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"movq %1, %%mm1 \n"\
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"movq %2, %%mm0 \n"\
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"palignr $7, %3, %%mm1 \n"\
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"pmaddubsw %4, %%mm0 \n"\
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"pmaddubsw %5, %%mm1 \n"\
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"paddw %%mm1, %%mm0 \n"\
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"pshufw $14, %%mm0, %%mm1 \n"\
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"paddw %%mm1, %%mm0 \n"\
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"pshufw $1, %%mm0, %%mm1 \n"\
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"paddw %%mm1, %%mm0 \n"\
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"movd %%mm0, %0 \n"\
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"movswl %w0, %0 \n"\
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:"=r"(H)\
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:"m"(MEM_FIX(&src[-FDEC_STRIDE], const pixel, 8)),\
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"m"(MEM_FIX(&src[-FDEC_STRIDE+8], const pixel, 8)),\
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"m"(MEM_FIX(&src[-FDEC_STRIDE-8], const pixel, 8)),\
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"m"(MEM_FIX(pb_12345678, const int8_t, 8)),\
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"m"(MEM_FIX(pb_m87654321, const int8_t, 8))\
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:"mm0", "mm1"\
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);
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#endif // HIGH_BIT_DEPTH
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#define PREDICT_16x16_P_CORE_INLINE\
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int H, V;\
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PREDICT_16x16_P_ASM\
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V = 8 * ( src[15*FDEC_STRIDE-1] - src[-1*FDEC_STRIDE-1] )\
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+ 7 * ( src[14*FDEC_STRIDE-1] - src[ 0*FDEC_STRIDE-1] )\
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+ 6 * ( src[13*FDEC_STRIDE-1] - src[ 1*FDEC_STRIDE-1] )\
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+ 5 * ( src[12*FDEC_STRIDE-1] - src[ 2*FDEC_STRIDE-1] )\
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+ 4 * ( src[11*FDEC_STRIDE-1] - src[ 3*FDEC_STRIDE-1] )\
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+ 3 * ( src[10*FDEC_STRIDE-1] - src[ 4*FDEC_STRIDE-1] )\
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+ 2 * ( src[ 9*FDEC_STRIDE-1] - src[ 5*FDEC_STRIDE-1] )\
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+ 1 * ( src[ 8*FDEC_STRIDE-1] - src[ 6*FDEC_STRIDE-1] );
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#define PREDICT_16x16_P_INLINE(name, name2)\
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static void predict_16x16_p_##name( pixel *src )\
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{\
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PREDICT_16x16_P_CORE_INLINE\
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PREDICT_16x16_P_END(name2)\
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}
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#else // !HAVE_X86_INLINE_ASM
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#define PREDICT_16x16_P_INLINE(name, name2) PREDICT_16x16_P(name, name2)
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#endif // HAVE_X86_INLINE_ASM
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#if HIGH_BIT_DEPTH
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PREDICT_16x16_P_INLINE( sse2, sse2 )
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#else // !HIGH_BIT_DEPTH
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#if !ARCH_X86_64
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PREDICT_16x16_P( mmx2, mmx2 )
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#endif // !ARCH_X86_64
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PREDICT_16x16_P( sse2, sse2 )
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#if HAVE_X86_INLINE_ASM
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PREDICT_16x16_P_INLINE( ssse3, sse2 )
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#endif // HAVE_X86_INLINE_ASM
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PREDICT_16x16_P_INLINE( avx, avx )
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#endif // HIGH_BIT_DEPTH
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PREDICT_16x16_P_INLINE( avx2, avx2 )
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#define PREDICT_8x16C_P_CORE\
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int H = 0, V = 0;\
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for( int i = 0; i < 4; i++ )\
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H += ( i + 1 ) * ( src[4 + i - FDEC_STRIDE] - src[2 - i - FDEC_STRIDE] );\
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for( int i = 0; i < 8; i++ )\
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V += ( i + 1 ) * ( src[-1 + (i+8)*FDEC_STRIDE] - src[-1 + (6-i)*FDEC_STRIDE] );
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#if HIGH_BIT_DEPTH
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#define PREDICT_8x16C_P_END(name)\
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int a = 16 * ( src[-1 + 15*FDEC_STRIDE] + src[7 - FDEC_STRIDE] );\
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int b = ( 17 * H + 16 ) >> 5;\
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int c = ( 5 * V + 32 ) >> 6;\
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x264_predict_8x16c_p_core_##name( src, a, b, c );
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#else // !HIGH_BIT_DEPTH
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#define PREDICT_8x16C_P_END(name)\
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int a = 16 * ( src[-1 + 15*FDEC_STRIDE] + src[7 - FDEC_STRIDE] );\
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int b = ( 17 * H + 16 ) >> 5;\
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int c = ( 5 * V + 32 ) >> 6;\
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int i00 = a -3*b -7*c + 16;\
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x264_predict_8x16c_p_core_##name( src, i00, b, c );
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#endif // HIGH_BIT_DEPTH
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#define PREDICT_8x16C_P(name)\
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static void predict_8x16c_p_##name( pixel *src )\
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{\
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PREDICT_8x16C_P_CORE\
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PREDICT_8x16C_P_END(name)\
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}
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#if !ARCH_X86_64 && !HIGH_BIT_DEPTH
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PREDICT_8x16C_P( mmx2 )
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#endif // !ARCH_X86_64 && !HIGH_BIT_DEPTH
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PREDICT_8x16C_P( sse2 )
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PREDICT_8x16C_P( avx )
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PREDICT_8x16C_P( avx2 )
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#define PREDICT_8x8C_P_CORE\
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int H = 0;\
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int V = 0;\
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PREDICT_P_SUM(3,1)\
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PREDICT_P_SUM(3,2)\
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PREDICT_P_SUM(3,3)\
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PREDICT_P_SUM(3,4)
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#if HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P_END(name)\
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int a = 16 * ( src[7*FDEC_STRIDE -1] + src[7 - FDEC_STRIDE] );\
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int b = ( 17 * H + 16 ) >> 5;\
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int c = ( 17 * V + 16 ) >> 5;\
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x264_predict_8x8c_p_core_##name( src, a, b, c );
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#else // !HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P_END(name)\
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int a = 16 * ( src[7*FDEC_STRIDE -1] + src[7 - FDEC_STRIDE] );\
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int b = ( 17 * H + 16 ) >> 5;\
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int c = ( 17 * V + 16 ) >> 5;\
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int i00 = a -3*b -3*c + 16;\
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x264_predict_8x8c_p_core_##name( src, i00, b, c );
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#endif // HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P(name, name2)\
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static void predict_8x8c_p_##name( pixel *src )\
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{\
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PREDICT_8x8C_P_CORE\
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PREDICT_8x8C_P_END(name2)\
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}
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#if HAVE_X86_INLINE_ASM
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#if HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P_ASM\
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asm (\
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"movdqa %1, %%xmm0 \n"\
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"pmaddwd %2, %%xmm0 \n"\
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"movhlps %%xmm0, %%xmm1 \n"\
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"paddd %%xmm1, %%xmm0 \n"\
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"pshuflw $14, %%xmm0, %%xmm1 \n"\
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"paddd %%xmm1, %%xmm0 \n"\
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"movd %%xmm0, %0 \n"\
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:"=r"(H)\
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:"m"(MEM_FIX(&src[-FDEC_STRIDE], const pixel, 8)),\
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"m"(MEM_FIX(pw_m32101234, const int16_t, 8))\
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:"xmm0", "xmm1"\
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);
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#else // !HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P_ASM\
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asm (\
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"movq %1, %%mm0 \n"\
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"pmaddubsw %2, %%mm0 \n"\
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"pshufw $14, %%mm0, %%mm1 \n"\
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"paddw %%mm1, %%mm0 \n"\
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"pshufw $1, %%mm0, %%mm1 \n"\
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"paddw %%mm1, %%mm0 \n"\
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"movd %%mm0, %0 \n"\
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"movswl %w0, %0 \n"\
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:"=r"(H)\
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:"m"(MEM_FIX(&src[-FDEC_STRIDE], const pixel, 8)),\
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"m"(MEM_FIX(pb_m32101234, const int8_t, 8))\
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:"mm0", "mm1"\
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);
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#endif // HIGH_BIT_DEPTH
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#define PREDICT_8x8C_P_CORE_INLINE\
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int H, V;\
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PREDICT_8x8C_P_ASM\
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V = 1 * ( src[4*FDEC_STRIDE -1] - src[ 2*FDEC_STRIDE -1] )\
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+ 2 * ( src[5*FDEC_STRIDE -1] - src[ 1*FDEC_STRIDE -1] )\
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+ 3 * ( src[6*FDEC_STRIDE -1] - src[ 0*FDEC_STRIDE -1] )\
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+ 4 * ( src[7*FDEC_STRIDE -1] - src[-1*FDEC_STRIDE -1] );\
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H += -4 * src[-1*FDEC_STRIDE -1];
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#define PREDICT_8x8C_P_INLINE(name, name2)\
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static void predict_8x8c_p_##name( pixel *src )\
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{\
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PREDICT_8x8C_P_CORE_INLINE\
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PREDICT_8x8C_P_END(name2)\
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}
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#else // !HAVE_X86_INLINE_ASM
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#define PREDICT_8x8C_P_INLINE(name, name2) PREDICT_8x8C_P(name, name2)
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#endif // HAVE_X86_INLINE_ASM
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#if HIGH_BIT_DEPTH
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PREDICT_8x8C_P_INLINE( sse2, sse2 )
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#else //!HIGH_BIT_DEPTH
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#if !ARCH_X86_64
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PREDICT_8x8C_P( mmx2, mmx2 )
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#endif // !ARCH_X86_64
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PREDICT_8x8C_P( sse2, sse2 )
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#if HAVE_X86_INLINE_ASM
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PREDICT_8x8C_P_INLINE( ssse3, sse2 )
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#endif // HAVE_X86_INLINE_ASM
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#endif // HIGH_BIT_DEPTH
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PREDICT_8x8C_P_INLINE( avx, avx )
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PREDICT_8x8C_P_INLINE( avx2, avx2 )
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#if ARCH_X86_64 && !HIGH_BIT_DEPTH
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static void predict_8x8c_dc_left( uint8_t *src )
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{
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int y;
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uint32_t s0 = 0, s1 = 0;
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uint64_t dc0, dc1;
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for( y = 0; y < 4; y++ )
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{
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s0 += src[y * FDEC_STRIDE - 1];
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s1 += src[(y+4) * FDEC_STRIDE - 1];
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}
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dc0 = (( s0 + 2 ) >> 2) * 0x0101010101010101ULL;
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dc1 = (( s1 + 2 ) >> 2) * 0x0101010101010101ULL;
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for( y = 0; y < 4; y++ )
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{
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M64( src ) = dc0;
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src += FDEC_STRIDE;
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}
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for( y = 0; y < 4; y++ )
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{
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M64( src ) = dc1;
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src += FDEC_STRIDE;
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}
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}
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#endif // ARCH_X86_64 && !HIGH_BIT_DEPTH
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/****************************************************************************
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* Exported functions:
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****************************************************************************/
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void x264_predict_16x16_init_mmx( uint32_t cpu, x264_predict_t pf[7] )
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{
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if( !(cpu&X264_CPU_MMX2) )
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return;
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pf[I_PRED_16x16_V] = x264_predict_16x16_v_mmx2;
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pf[I_PRED_16x16_H] = x264_predict_16x16_h_mmx2;
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#if HIGH_BIT_DEPTH
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if( !(cpu&X264_CPU_SSE) )
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return;
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pf[I_PRED_16x16_V] = x264_predict_16x16_v_sse;
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if( !(cpu&X264_CPU_SSE2) )
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return;
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pf[I_PRED_16x16_DC] = x264_predict_16x16_dc_sse2;
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pf[I_PRED_16x16_DC_TOP] = x264_predict_16x16_dc_top_sse2;
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pf[I_PRED_16x16_DC_LEFT] = x264_predict_16x16_dc_left_sse2;
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pf[I_PRED_16x16_H] = x264_predict_16x16_h_sse2;
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pf[I_PRED_16x16_P] = predict_16x16_p_sse2;
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if( !(cpu&X264_CPU_AVX) )
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return;
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pf[I_PRED_16x16_V] = x264_predict_16x16_v_avx;
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if( !(cpu&X264_CPU_AVX2) )
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return;
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pf[I_PRED_16x16_H] = x264_predict_16x16_h_avx2;
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#else
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#if !ARCH_X86_64
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pf[I_PRED_16x16_P] = predict_16x16_p_mmx2;
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#endif
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if( !(cpu&X264_CPU_SSE) )
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return;
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pf[I_PRED_16x16_V] = x264_predict_16x16_v_sse;
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if( !(cpu&X264_CPU_SSE2) )
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return;
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pf[I_PRED_16x16_DC] = x264_predict_16x16_dc_sse2;
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if( cpu&X264_CPU_SSE2_IS_SLOW )
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return;
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pf[I_PRED_16x16_DC_TOP] = x264_predict_16x16_dc_top_sse2;
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pf[I_PRED_16x16_DC_LEFT] = x264_predict_16x16_dc_left_sse2;
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pf[I_PRED_16x16_P] = predict_16x16_p_sse2;
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if( !(cpu&X264_CPU_SSSE3) )
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return;
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if( !(cpu&X264_CPU_SLOW_PSHUFB) )
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pf[I_PRED_16x16_H] = x264_predict_16x16_h_ssse3;
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#if HAVE_X86_INLINE_ASM
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pf[I_PRED_16x16_P] = predict_16x16_p_ssse3;
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#endif
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if( !(cpu&X264_CPU_AVX) )
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return;
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pf[I_PRED_16x16_P] = predict_16x16_p_avx;
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#endif // HIGH_BIT_DEPTH
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if( cpu&X264_CPU_AVX2 )
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{
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pf[I_PRED_16x16_P] = predict_16x16_p_avx2;
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pf[I_PRED_16x16_DC] = x264_predict_16x16_dc_avx2;
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pf[I_PRED_16x16_DC_TOP] = x264_predict_16x16_dc_top_avx2;
|
|
pf[I_PRED_16x16_DC_LEFT] = x264_predict_16x16_dc_left_avx2;
|
|
}
|
|
}
|
|
|
|
void x264_predict_8x8c_init_mmx( uint32_t cpu, x264_predict_t pf[7] )
|
|
{
|
|
if( !(cpu&X264_CPU_MMX) )
|
|
return;
|
|
#if HIGH_BIT_DEPTH
|
|
pf[I_PRED_CHROMA_V] = x264_predict_8x8c_v_mmx;
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x8c_dc_mmx2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x8c_h_mmx2;
|
|
if( !(cpu&X264_CPU_SSE) )
|
|
return;
|
|
pf[I_PRED_CHROMA_V] = x264_predict_8x8c_v_sse;
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x8c_dc_sse2;
|
|
pf[I_PRED_CHROMA_DC_TOP] = x264_predict_8x8c_dc_top_sse2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x8c_h_sse2;
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_sse2;
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_avx;
|
|
if( !(cpu&X264_CPU_AVX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x8c_h_avx2;
|
|
#else
|
|
#if ARCH_X86_64
|
|
pf[I_PRED_CHROMA_DC_LEFT] = predict_8x8c_dc_left;
|
|
#endif
|
|
pf[I_PRED_CHROMA_V] = x264_predict_8x8c_v_mmx;
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC_TOP] = x264_predict_8x8c_dc_top_mmx2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x8c_h_mmx2;
|
|
#if !ARCH_X86_64
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_mmx2;
|
|
#endif
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x8c_dc_mmx2;
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_sse2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x8c_h_ssse3;
|
|
#if HAVE_X86_INLINE_ASM
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_ssse3;
|
|
#endif
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_avx;
|
|
#endif // HIGH_BIT_DEPTH
|
|
|
|
if( cpu&X264_CPU_AVX2 )
|
|
{
|
|
pf[I_PRED_CHROMA_P] = predict_8x8c_p_avx2;
|
|
}
|
|
}
|
|
|
|
void x264_predict_8x16c_init_mmx( uint32_t cpu, x264_predict_t pf[7] )
|
|
{
|
|
if( !(cpu&X264_CPU_MMX) )
|
|
return;
|
|
#if HIGH_BIT_DEPTH
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x16c_dc_mmx2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x16c_h_mmx2;
|
|
if( !(cpu&X264_CPU_SSE) )
|
|
return;
|
|
pf[I_PRED_CHROMA_V] = x264_predict_8x16c_v_sse;
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC_TOP] = x264_predict_8x16c_dc_top_sse2;
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x16c_dc_sse2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x16c_h_sse2;
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_sse2;
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_avx;
|
|
if( !(cpu&X264_CPU_AVX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x16c_h_avx2;
|
|
#else
|
|
pf[I_PRED_CHROMA_V] = x264_predict_8x16c_v_mmx;
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_DC_TOP] = x264_predict_8x16c_dc_top_mmx2;
|
|
pf[I_PRED_CHROMA_DC] = x264_predict_8x16c_dc_mmx2;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x16c_h_mmx2;
|
|
#if !ARCH_X86_64
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_mmx2;
|
|
#endif
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_sse2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
pf[I_PRED_CHROMA_H] = x264_predict_8x16c_h_ssse3;
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_avx;
|
|
#endif // HIGH_BIT_DEPTH
|
|
|
|
if( cpu&X264_CPU_AVX2 )
|
|
{
|
|
pf[I_PRED_CHROMA_P] = predict_8x16c_p_avx2;
|
|
}
|
|
}
|
|
|
|
void x264_predict_8x8_init_mmx( uint32_t cpu, x264_predict8x8_t pf[12], x264_predict_8x8_filter_t *predict_8x8_filter )
|
|
{
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
#if HIGH_BIT_DEPTH
|
|
if( !(cpu&X264_CPU_SSE) )
|
|
return;
|
|
pf[I_PRED_8x8_V] = x264_predict_8x8_v_sse;
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_8x8_H] = x264_predict_8x8_h_sse2;
|
|
pf[I_PRED_8x8_DC] = x264_predict_8x8_dc_sse2;
|
|
pf[I_PRED_8x8_DC_TOP] = x264_predict_8x8_dc_top_sse2;
|
|
pf[I_PRED_8x8_DC_LEFT]= x264_predict_8x8_dc_left_sse2;
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_sse2;
|
|
pf[I_PRED_8x8_DDR] = x264_predict_8x8_ddr_sse2;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_sse2;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_sse2;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_sse2;
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_sse2;
|
|
*predict_8x8_filter = x264_predict_8x8_filter_sse2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_ssse3;
|
|
pf[I_PRED_8x8_DDR] = x264_predict_8x8_ddr_ssse3;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_ssse3;
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_ssse3;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_ssse3;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_ssse3;
|
|
*predict_8x8_filter = x264_predict_8x8_filter_ssse3;
|
|
if( cpu&X264_CPU_CACHELINE_64 )
|
|
{
|
|
pf[I_PRED_8x8_DDL]= x264_predict_8x8_ddl_cache64_ssse3;
|
|
pf[I_PRED_8x8_DDR]= x264_predict_8x8_ddr_cache64_ssse3;
|
|
}
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_avx;
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_avx;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_avx;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_avx;
|
|
*predict_8x8_filter = x264_predict_8x8_filter_avx;
|
|
#else
|
|
pf[I_PRED_8x8_V] = x264_predict_8x8_v_mmx2;
|
|
pf[I_PRED_8x8_H] = x264_predict_8x8_h_mmx2;
|
|
pf[I_PRED_8x8_DC] = x264_predict_8x8_dc_mmx2;
|
|
pf[I_PRED_8x8_DC_TOP] = x264_predict_8x8_dc_top_mmx2;
|
|
pf[I_PRED_8x8_DC_LEFT]= x264_predict_8x8_dc_left_mmx2;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_mmx2;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_mmx2;
|
|
*predict_8x8_filter = x264_predict_8x8_filter_mmx2;
|
|
#if ARCH_X86
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_mmx2;
|
|
pf[I_PRED_8x8_DDR] = x264_predict_8x8_ddr_mmx2;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_mmx2;
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_mmx2;
|
|
#endif
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_sse2;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_sse2;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_sse2;
|
|
pf[I_PRED_8x8_DDR] = x264_predict_8x8_ddr_sse2;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_sse2;
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_sse2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
if( !(cpu&X264_CPU_SLOW_PALIGNR) )
|
|
{
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_ssse3;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_ssse3;
|
|
}
|
|
pf[I_PRED_8x8_HU] = x264_predict_8x8_hu_ssse3;
|
|
*predict_8x8_filter = x264_predict_8x8_filter_ssse3;
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_8x8_DDL] = x264_predict_8x8_ddl_avx;
|
|
pf[I_PRED_8x8_DDR] = x264_predict_8x8_ddr_avx;
|
|
pf[I_PRED_8x8_VL] = x264_predict_8x8_vl_avx;
|
|
pf[I_PRED_8x8_VR] = x264_predict_8x8_vr_avx;
|
|
pf[I_PRED_8x8_HD] = x264_predict_8x8_hd_avx;
|
|
#endif // HIGH_BIT_DEPTH
|
|
}
|
|
|
|
void x264_predict_4x4_init_mmx( uint32_t cpu, x264_predict_t pf[12] )
|
|
{
|
|
if( !(cpu&X264_CPU_MMX2) )
|
|
return;
|
|
pf[I_PRED_4x4_DC] = x264_predict_4x4_dc_mmx2;
|
|
pf[I_PRED_4x4_DDL] = x264_predict_4x4_ddl_mmx2;
|
|
pf[I_PRED_4x4_DDR] = x264_predict_4x4_ddr_mmx2;
|
|
pf[I_PRED_4x4_VL] = x264_predict_4x4_vl_mmx2;
|
|
pf[I_PRED_4x4_HD] = x264_predict_4x4_hd_mmx2;
|
|
pf[I_PRED_4x4_HU] = x264_predict_4x4_hu_mmx2;
|
|
#if HIGH_BIT_DEPTH
|
|
if( !(cpu&X264_CPU_SSE2) )
|
|
return;
|
|
pf[I_PRED_4x4_DDL] = x264_predict_4x4_ddl_sse2;
|
|
pf[I_PRED_4x4_DDR] = x264_predict_4x4_ddr_sse2;
|
|
pf[I_PRED_4x4_HD] = x264_predict_4x4_hd_sse2;
|
|
pf[I_PRED_4x4_VL] = x264_predict_4x4_vl_sse2;
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_sse2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
pf[I_PRED_4x4_DDR] = x264_predict_4x4_ddr_ssse3;
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_ssse3;
|
|
pf[I_PRED_4x4_HD] = x264_predict_4x4_hd_ssse3;
|
|
if( !(cpu&X264_CPU_AVX) )
|
|
return;
|
|
pf[I_PRED_4x4_DDL] = x264_predict_4x4_ddl_avx;
|
|
pf[I_PRED_4x4_DDR] = x264_predict_4x4_ddr_avx;
|
|
pf[I_PRED_4x4_HD] = x264_predict_4x4_hd_avx;
|
|
pf[I_PRED_4x4_VL] = x264_predict_4x4_vl_avx;
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_avx;
|
|
if( !(cpu&X264_CPU_AVX2) )
|
|
return;
|
|
pf[I_PRED_4x4_H] = x264_predict_4x4_h_avx2;
|
|
#else
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_mmx2;
|
|
if( !(cpu&X264_CPU_SSSE3) )
|
|
return;
|
|
pf[I_PRED_4x4_DDR] = x264_predict_4x4_ddr_ssse3;
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_ssse3;
|
|
pf[I_PRED_4x4_HD] = x264_predict_4x4_hd_ssse3;
|
|
if( cpu&X264_CPU_CACHELINE_64 )
|
|
pf[I_PRED_4x4_VR] = x264_predict_4x4_vr_cache64_ssse3;
|
|
#endif // HIGH_BIT_DEPTH
|
|
}
|