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Based on 1 normalized pattern(s): this program is free software you can redistribute it and or modify it under the terms of the gnu general public license version 2 and only version 2 as published by the free software foundation this program is distributed in the hope that it will be useful but without any warranty without even the implied warranty of merchantability or fitness for a particular purpose see the gnu general public license for more details you should have received a copy of the gnu general public license along with this program if not write to the free software foundation inc 51 franklin street fifth floor boston ma 02110 1301 usa extracted by the scancode license scanner the SPDX license identifier GPL-2.0-only has been chosen to replace the boilerplate/reference in 94 file(s). Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Allison Randal <allison@lohutok.net> Reviewed-by: Richard Fontana <rfontana@redhat.com> Reviewed-by: Alexios Zavras <alexios.zavras@intel.com> Cc: linux-spdx@vger.kernel.org Link: https://lkml.kernel.org/r/20190529141334.043630402@linutronix.de Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
303 lines
4.5 KiB
ArmAsm
303 lines
4.5 KiB
ArmAsm
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Copyright (c) 2011, The Linux Foundation. All rights reserved.
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*/
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/* HEXAGON assembly optimized memset */
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/* Replaces the standard library function memset */
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.macro HEXAGON_OPT_FUNC_BEGIN name
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.text
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.p2align 4
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.globl \name
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.type \name, @function
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\name:
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.endm
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.macro HEXAGON_OPT_FUNC_FINISH name
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.size \name, . - \name
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.endm
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/* FUNCTION: memset (v2 version) */
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#if __HEXAGON_ARCH__ < 3
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HEXAGON_OPT_FUNC_BEGIN memset
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{
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r6 = #8
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r7 = extractu(r0, #3 , #0)
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p0 = cmp.eq(r2, #0)
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p1 = cmp.gtu(r2, #7)
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}
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{
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r4 = vsplatb(r1)
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r8 = r0 /* leave r0 intact for return val */
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r9 = sub(r6, r7) /* bytes until double alignment */
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if p0 jumpr r31 /* count == 0, so return */
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}
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{
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r3 = #0
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r7 = #0
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p0 = tstbit(r9, #0)
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if p1 jump 2f /* skip byte loop */
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}
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/* less than 8 bytes to set, so just set a byte at a time and return */
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loop0(1f, r2) /* byte loop */
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.falign
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1: /* byte loop */
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{
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memb(r8++#1) = r4
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}:endloop0
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jumpr r31
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.falign
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2: /* skip byte loop */
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{
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r6 = #1
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p0 = tstbit(r9, #1)
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p1 = cmp.eq(r2, #1)
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if !p0 jump 3f /* skip initial byte store */
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}
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{
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memb(r8++#1) = r4
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r3:2 = sub(r3:2, r7:6)
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if p1 jumpr r31
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}
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.falign
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3: /* skip initial byte store */
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{
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r6 = #2
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p0 = tstbit(r9, #2)
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p1 = cmp.eq(r2, #2)
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if !p0 jump 4f /* skip initial half store */
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}
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{
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memh(r8++#2) = r4
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r3:2 = sub(r3:2, r7:6)
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if p1 jumpr r31
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}
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.falign
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4: /* skip initial half store */
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{
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r6 = #4
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p0 = cmp.gtu(r2, #7)
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p1 = cmp.eq(r2, #4)
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if !p0 jump 5f /* skip initial word store */
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}
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{
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memw(r8++#4) = r4
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r3:2 = sub(r3:2, r7:6)
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p0 = cmp.gtu(r2, #11)
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if p1 jumpr r31
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}
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.falign
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5: /* skip initial word store */
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{
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r10 = lsr(r2, #3)
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p1 = cmp.eq(r3, #1)
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if !p0 jump 7f /* skip double loop */
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}
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{
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r5 = r4
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r6 = #8
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loop0(6f, r10) /* double loop */
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}
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/* set bytes a double word at a time */
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.falign
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6: /* double loop */
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{
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memd(r8++#8) = r5:4
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r3:2 = sub(r3:2, r7:6)
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p1 = cmp.eq(r2, #8)
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}:endloop0
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.falign
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7: /* skip double loop */
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{
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p0 = tstbit(r2, #2)
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if p1 jumpr r31
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}
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{
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r6 = #4
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p0 = tstbit(r2, #1)
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p1 = cmp.eq(r2, #4)
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if !p0 jump 8f /* skip final word store */
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}
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{
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memw(r8++#4) = r4
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r3:2 = sub(r3:2, r7:6)
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if p1 jumpr r31
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}
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.falign
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8: /* skip final word store */
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{
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p1 = cmp.eq(r2, #2)
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if !p0 jump 9f /* skip final half store */
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}
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{
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memh(r8++#2) = r4
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if p1 jumpr r31
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}
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.falign
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9: /* skip final half store */
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{
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memb(r8++#1) = r4
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jumpr r31
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}
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HEXAGON_OPT_FUNC_FINISH memset
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#endif
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/* FUNCTION: memset (v3 and higher version) */
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#if __HEXAGON_ARCH__ >= 3
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HEXAGON_OPT_FUNC_BEGIN memset
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{
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r7=vsplatb(r1)
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r6 = r0
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if (r2==#0) jump:nt .L1
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}
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{
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r5:4=combine(r7,r7)
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p0 = cmp.gtu(r2,#8)
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if (p0.new) jump:nt .L3
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}
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{
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r3 = r0
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loop0(.L47,r2)
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}
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.falign
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.L47:
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{
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memb(r3++#1) = r1
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}:endloop0 /* start=.L47 */
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jumpr r31
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.L3:
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{
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p0 = tstbit(r0,#0)
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if (!p0.new) jump:nt .L8
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p1 = cmp.eq(r2, #1)
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}
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{
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r6 = add(r0, #1)
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r2 = add(r2,#-1)
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memb(r0) = r1
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if (p1) jump .L1
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}
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.L8:
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{
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p0 = tstbit(r6,#1)
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if (!p0.new) jump:nt .L10
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}
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{
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r2 = add(r2,#-2)
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memh(r6++#2) = r7
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p0 = cmp.eq(r2, #2)
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if (p0.new) jump:nt .L1
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}
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.L10:
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{
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p0 = tstbit(r6,#2)
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if (!p0.new) jump:nt .L12
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}
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{
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r2 = add(r2,#-4)
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memw(r6++#4) = r7
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p0 = cmp.eq(r2, #4)
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if (p0.new) jump:nt .L1
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}
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.L12:
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{
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p0 = cmp.gtu(r2,#127)
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if (!p0.new) jump:nt .L14
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}
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r3 = and(r6,#31)
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if (r3==#0) jump:nt .L17
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{
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memd(r6++#8) = r5:4
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r2 = add(r2,#-8)
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}
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r3 = and(r6,#31)
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if (r3==#0) jump:nt .L17
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{
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memd(r6++#8) = r5:4
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r2 = add(r2,#-8)
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}
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r3 = and(r6,#31)
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if (r3==#0) jump:nt .L17
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{
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memd(r6++#8) = r5:4
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r2 = add(r2,#-8)
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}
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.L17:
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{
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r3 = lsr(r2,#5)
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if (r1!=#0) jump:nt .L18
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}
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{
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r8 = r3
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r3 = r6
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loop0(.L46,r3)
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}
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.falign
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.L46:
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{
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dczeroa(r6)
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r6 = add(r6,#32)
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r2 = add(r2,#-32)
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}:endloop0 /* start=.L46 */
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.L14:
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{
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p0 = cmp.gtu(r2,#7)
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if (!p0.new) jump:nt .L28
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r8 = lsr(r2,#3)
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}
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loop0(.L44,r8)
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.falign
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.L44:
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{
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memd(r6++#8) = r5:4
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r2 = add(r2,#-8)
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}:endloop0 /* start=.L44 */
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.L28:
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{
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p0 = tstbit(r2,#2)
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if (!p0.new) jump:nt .L33
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}
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{
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r2 = add(r2,#-4)
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memw(r6++#4) = r7
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}
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.L33:
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{
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p0 = tstbit(r2,#1)
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if (!p0.new) jump:nt .L35
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}
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{
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r2 = add(r2,#-2)
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memh(r6++#2) = r7
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}
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.L35:
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p0 = cmp.eq(r2,#1)
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if (p0) memb(r6) = r1
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.L1:
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jumpr r31
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.L18:
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loop0(.L45,r3)
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.falign
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.L45:
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dczeroa(r6)
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{
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memd(r6++#8) = r5:4
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r2 = add(r2,#-32)
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}
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memd(r6++#8) = r5:4
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memd(r6++#8) = r5:4
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{
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memd(r6++#8) = r5:4
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}:endloop0 /* start=.L45 */
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jump .L14
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HEXAGON_OPT_FUNC_FINISH memset
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#endif
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