forked from Minki/linux
e007c53397
Here we have another kind of deviation from the default case - a difference between exporting functions and non-functions. EXPORT_DATA_SYMBOL... is really different from EXPORT_SYMBOL... on ia64, and we need to use the right one when moving exports from *.c where C compiler has the required information to *.S, where we need to supply it manually. parisc64 will be another one like that. Tested-by: Tony Luck <tony.luck@intel.com> Signed-off-by: Al Viro <viro@zeniv.linux.org.uk>
190 lines
3.5 KiB
ArmAsm
190 lines
3.5 KiB
ArmAsm
/*
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* arch/ia64/lib/xor.S
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*
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* Optimized RAID-5 checksumming functions for IA-64.
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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, or (at your option)
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* any later version.
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*
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* You should have received a copy of the GNU General Public License
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* (for example /usr/src/linux/COPYING); if not, write to the Free
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* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <asm/asmmacro.h>
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#include <asm/export.h>
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GLOBAL_ENTRY(xor_ia64_2)
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.prologue
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.fframe 0
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.save ar.pfs, r31
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alloc r31 = ar.pfs, 3, 0, 13, 16
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.save ar.lc, r30
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mov r30 = ar.lc
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.save pr, r29
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mov r29 = pr
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;;
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.body
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mov r8 = in1
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mov ar.ec = 6 + 2
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shr in0 = in0, 3
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;;
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adds in0 = -1, in0
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mov r16 = in1
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mov r17 = in2
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;;
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mov ar.lc = in0
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mov pr.rot = 1 << 16
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;;
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.rotr s1[6+1], s2[6+1], d[2]
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.rotp p[6+2]
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0:
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(p[0]) ld8.nta s1[0] = [r16], 8
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(p[0]) ld8.nta s2[0] = [r17], 8
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(p[6]) xor d[0] = s1[6], s2[6]
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(p[6+1])st8.nta [r8] = d[1], 8
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nop.f 0
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br.ctop.dptk.few 0b
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;;
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mov ar.lc = r30
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mov pr = r29, -1
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br.ret.sptk.few rp
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END(xor_ia64_2)
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EXPORT_SYMBOL(xor_ia64_2)
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GLOBAL_ENTRY(xor_ia64_3)
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.prologue
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.fframe 0
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.save ar.pfs, r31
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alloc r31 = ar.pfs, 4, 0, 20, 24
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.save ar.lc, r30
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mov r30 = ar.lc
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.save pr, r29
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mov r29 = pr
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;;
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.body
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mov r8 = in1
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mov ar.ec = 6 + 2
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shr in0 = in0, 3
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;;
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adds in0 = -1, in0
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mov r16 = in1
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mov r17 = in2
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;;
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mov r18 = in3
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mov ar.lc = in0
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mov pr.rot = 1 << 16
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;;
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.rotr s1[6+1], s2[6+1], s3[6+1], d[2]
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.rotp p[6+2]
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0:
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(p[0]) ld8.nta s1[0] = [r16], 8
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(p[0]) ld8.nta s2[0] = [r17], 8
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(p[6]) xor d[0] = s1[6], s2[6]
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;;
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(p[0]) ld8.nta s3[0] = [r18], 8
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(p[6+1])st8.nta [r8] = d[1], 8
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(p[6]) xor d[0] = d[0], s3[6]
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br.ctop.dptk.few 0b
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;;
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mov ar.lc = r30
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mov pr = r29, -1
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br.ret.sptk.few rp
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END(xor_ia64_3)
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EXPORT_SYMBOL(xor_ia64_3)
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GLOBAL_ENTRY(xor_ia64_4)
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.prologue
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.fframe 0
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.save ar.pfs, r31
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alloc r31 = ar.pfs, 5, 0, 27, 32
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.save ar.lc, r30
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mov r30 = ar.lc
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.save pr, r29
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mov r29 = pr
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;;
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.body
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mov r8 = in1
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mov ar.ec = 6 + 2
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shr in0 = in0, 3
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;;
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adds in0 = -1, in0
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mov r16 = in1
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mov r17 = in2
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;;
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mov r18 = in3
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mov ar.lc = in0
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mov pr.rot = 1 << 16
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mov r19 = in4
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;;
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.rotr s1[6+1], s2[6+1], s3[6+1], s4[6+1], d[2]
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.rotp p[6+2]
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0:
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(p[0]) ld8.nta s1[0] = [r16], 8
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(p[0]) ld8.nta s2[0] = [r17], 8
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(p[6]) xor d[0] = s1[6], s2[6]
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(p[0]) ld8.nta s3[0] = [r18], 8
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(p[0]) ld8.nta s4[0] = [r19], 8
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(p[6]) xor r20 = s3[6], s4[6]
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;;
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(p[6+1])st8.nta [r8] = d[1], 8
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(p[6]) xor d[0] = d[0], r20
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br.ctop.dptk.few 0b
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;;
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mov ar.lc = r30
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mov pr = r29, -1
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br.ret.sptk.few rp
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END(xor_ia64_4)
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EXPORT_SYMBOL(xor_ia64_4)
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GLOBAL_ENTRY(xor_ia64_5)
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.prologue
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.fframe 0
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.save ar.pfs, r31
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alloc r31 = ar.pfs, 6, 0, 34, 40
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.save ar.lc, r30
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mov r30 = ar.lc
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.save pr, r29
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mov r29 = pr
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;;
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.body
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mov r8 = in1
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mov ar.ec = 6 + 2
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shr in0 = in0, 3
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;;
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adds in0 = -1, in0
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mov r16 = in1
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mov r17 = in2
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;;
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mov r18 = in3
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mov ar.lc = in0
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mov pr.rot = 1 << 16
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mov r19 = in4
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mov r20 = in5
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;;
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.rotr s1[6+1], s2[6+1], s3[6+1], s4[6+1], s5[6+1], d[2]
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.rotp p[6+2]
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0:
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(p[0]) ld8.nta s1[0] = [r16], 8
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(p[0]) ld8.nta s2[0] = [r17], 8
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(p[6]) xor d[0] = s1[6], s2[6]
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(p[0]) ld8.nta s3[0] = [r18], 8
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(p[0]) ld8.nta s4[0] = [r19], 8
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(p[6]) xor r21 = s3[6], s4[6]
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;;
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(p[0]) ld8.nta s5[0] = [r20], 8
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(p[6+1])st8.nta [r8] = d[1], 8
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(p[6]) xor d[0] = d[0], r21
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;;
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(p[6]) xor d[0] = d[0], s5[6]
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nop.f 0
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br.ctop.dptk.few 0b
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;;
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mov ar.lc = r30
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mov pr = r29, -1
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br.ret.sptk.few rp
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END(xor_ia64_5)
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EXPORT_SYMBOL(xor_ia64_5)
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