mirror of
https://github.com/xenia-project/FFmpeg.git
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f0b7882ceb
The .text section is already 16-byte aligned by default on all supported platforms so `SECTION_TEXT` isn't any different from `SECTION .text`.
197 lines
7.0 KiB
NASM
197 lines
7.0 KiB
NASM
;******************************************************************************
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;* SIMD-optimized MLP DSP functions
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;* Copyright (c) 2014 James Almer <jamrial@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 .text
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%if ARCH_X86_64
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%macro SHLX 2
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%if cpuflag(bmi2)
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shlx %1, %1, %2q
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%else
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shl %1, %2b
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%endif
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%endmacro
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%macro REMATRIX 0
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movdqa m0, [samplesq]
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movdqa m1, [coeffsq ]
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pshufd m2, m0, q2301
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pshufd m3, m1, q2301
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pmuldq m0, m1
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pmuldq m3, m2
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paddq m0, m3
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%if notcpuflag(avx2)
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movdqa m1, [samplesq + 16]
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movdqa m2, [coeffsq + 16]
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pshufd m3, m1, q2301
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pshufd m4, m2, q2301
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pmuldq m1, m2
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pmuldq m4, m3
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paddq m0, m1
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paddq m0, m4
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%else
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vextracti128 xm1, m0, 1
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paddq xm0, xm1
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%endif
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%endmacro
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%macro LOOP_END 0
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pshufd xm1, xm0, q0032
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paddq xm0, xm1
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movq accumq, xm0
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movzx blsbsd, byte [blsbs_ptrq] ; load *bypassed_lsbs
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sar accumq, 14 ; accum >>= 14
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and accumd, maskd ; accum &= mask
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add accumd, blsbsd ; accum += *bypassed_lsbs
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mov [samplesq + dest_chq], accumd ; samples[dest_ch] = accum
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add blsbs_ptrq, 8 ; bypassed_lsbs += MAX_CHANNELS;
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add samplesq, 32 ; samples += MAX_CHANNELS;
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cmp blsbs_ptrq, cntq
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%endmacro
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%macro LOOP_SHIFT_END 0
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pshufd xm1, xm0, q0032
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paddq xm0, xm1
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movq accumq, xm0
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and indexd, auspd ; index &= access_unit_size_pow2;
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movsx noiseq, byte [noise_bufferq + indexq] ; load noise_buffer[index]
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add indexd, index2d ; index += index2
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SHLX noiseq, mns ; noise_buffer[index] <<= matrix_noise_shift
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add accumq, noiseq ; accum += noise_buffer[index]
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movzx noised, byte [blsbs_ptrq] ; load *bypassed_lsbs (reuse tmp noise register)
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sar accumq, 14 ; accum >>= 14
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and accumd, maskd ; accum &= mask
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add accumd, noised ; accum += *bypassed_lsbs
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mov [samplesq + dest_chq], accumd ; samples[dest_ch] = accum
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add blsbs_ptrq, 8 ; bypassed_lsbs += MAX_CHANNELS;
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add samplesq, 32 ; samples += MAX_CHANNELS;
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cmp blsbs_ptrq, cntq
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%endmacro
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;void ff_mlp_rematrix_channel(int32_t *samples, const int32_t *coeffs,
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; const uint8_t *bypassed_lsbs, const int8_t *noise_buffer,
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; int index, unsigned int dest_ch, uint16_t blockpos,
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; unsigned int maxchan, int matrix_noise_shift,
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; int access_unit_size_pow2, int32_t mask)
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%macro MLP_REMATRIX_CHANNEL 0
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cglobal mlp_rematrix_channel, 0, 13, 5, samples, coeffs, blsbs_ptr, blsbs, \
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index, dest_ch, blockpos, maxchan, mns, \
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accum, mask, cnt
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mov mnsd, mnsm ; load matrix_noise_shift
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movzx blockposq, word blockposm ; load and zero extend blockpos (16bit)
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mov maxchand, maxchanm ; load maxchan
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mov maskd, maskm ; load mask
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%if WIN64
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mov dest_chd, dest_chm ; load dest_chd (not needed on UNIX64)
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%endif
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shl dest_chd, 2
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lea cntq, [blsbs_ptrq + blockposq*8]
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test mnsd, mnsd ; is matrix_noise_shift != 0?
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jne .shift ; jump if true
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cmp maxchand, 4 ; is maxchan < 4?
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jl .loop4 ; jump if true
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align 16
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.loop8:
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; Process 5 or more channels
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REMATRIX
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LOOP_END
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jne .loop8
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RET
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align 16
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.loop4:
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; Process up to 4 channels
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movdqa xm0, [samplesq]
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movdqa xm1, [coeffsq ]
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pshufd xm2, xm0, q2301
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pshufd xm3, xm1, q2301
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pmuldq xm0, xm1
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pmuldq xm3, xm2
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paddq xm0, xm3
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LOOP_END
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jne .loop4
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RET
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.shift:
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%if WIN64
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mov indexd, indexm ; load index (not needed on UNIX64)
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%endif
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mov r9d, r9m ; load access_unit_size_pow2
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%if cpuflag(bmi2)
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; bmi2 has shift functions that accept any gpr, not just cl, so keep things in place.
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DEFINE_ARGS samples, coeffs, blsbs_ptr, noise_buffer, \
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index, dest_ch, accum, index2, mns, \
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ausp, mask, cnt, noise
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add mnsd, 7 ; matrix_noise_shift += 7
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%else ; sse4
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mov r6, rcx ; move rcx elsewhere so we can use cl for matrix_noise_shift
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%if WIN64
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; r0 = rcx
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DEFINE_ARGS mns, coeffs, blsbs_ptr, noise_buffer, index, dest_ch, samples, \
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index2, accum, ausp, mask, cnt, noise
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%else ; UNIX64
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; r3 = rcx
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DEFINE_ARGS samples, coeffs, blsbs_ptr, mns, index, dest_ch, noise_buffer, \
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index2, accum, ausp, mask, cnt, noise
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%endif
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lea mnsd, [r8 + 7] ; rcx = matrix_noise_shift + 7
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%endif ; cpuflag
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sub auspd, 1 ; access_unit_size_pow2 -= 1
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cmp r7d, 4 ; is maxchan < 4?
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lea index2q, [indexq*2 + 1] ; index2 = 2 * index + 1;
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jl .loop4_shift ; jump if maxchan < 4
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align 16
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.loop8_shift:
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; Process 5 or more channels
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REMATRIX
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LOOP_SHIFT_END
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jne .loop8_shift
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RET
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align 16
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.loop4_shift:
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; Process up to 4 channels
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movdqa xm0, [samplesq]
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movdqa xm1, [coeffsq ]
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pshufd xm2, xm0, q2301
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pshufd xm3, xm1, q2301
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pmuldq xm0, xm1
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pmuldq xm3, xm2
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paddq xm0, xm3
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LOOP_SHIFT_END
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jne .loop4_shift
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RET
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%endmacro
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INIT_XMM sse4
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MLP_REMATRIX_CHANNEL
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%if HAVE_AVX2_EXTERNAL
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INIT_YMM avx2, bmi2
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MLP_REMATRIX_CHANNEL
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%endif
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%endif ; ARCH_X86_64
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