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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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86effd0dc6
This uses a new set of annoations viz. ENTRY_CFI/END_CFI to enabel cfi ops generation. Note that we didn't change the normal ENTRY/EXIT as we don't actually want unwind info in the trap/exception/interrutp handlers which use these, as unwinder then gets confused (it keeps recursing vs. stopping). Semantically these are leaf routines and unwinding should stop when it hits those routines. Before ------ 28.52% 1.19% 9929 hackbench libuClibc-1.0.17.so [.] __write_nocancel | ---__write_nocancel |--8.95%--EV_Trap | --8.25%--sys_write | |--3.93%--sock_write_iter ... |--2.62%--memset <==== [LEAF entry as no unwind info] ^^^^^^ After ----- 29.46% 1.24% 13622 hackbench libuClibc-1.0.17.so [.] __write_nocancel | ---__write_nocancel |--9.31%--EV_Trap | --8.62%--sys_write | |--4.17%--sock_write_iter ... |--6.19%--sys_write | --6.19%--sock_write_iter | unix_stream_sendmsg | |--1.62%--sock_alloc_send_pskb | |--0.89%--sock_def_readable | |--0.88%--_raw_spin_unlock_irqrestore | |--0.69%--memset | | ^^^^^^ <==== [now in proper callframe] | | | --0.52%--skb_copy_datagram_from_iter Signed-off-by: Vineet Gupta <vgupta@synopsys.com>
134 lines
2.7 KiB
ArmAsm
134 lines
2.7 KiB
ArmAsm
/*
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* Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. (www.synopsys.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 version 2 as
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* published by the Free Software Foundation.
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*/
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/* ARC700 has a relatively long pipeline and branch prediction, so we want
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to avoid branches that are hard to predict. On the other hand, the
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presence of the norm instruction makes it easier to operate on whole
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words branch-free. */
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#include <linux/linkage.h>
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ENTRY_CFI(strchr)
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extb_s r1,r1
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asl r5,r1,8
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bmsk r2,r0,1
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or r5,r5,r1
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mov_s r3,0x01010101
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breq.d r2,r0,.Laligned
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asl r4,r5,16
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sub_s r0,r0,r2
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asl r7,r2,3
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ld_s r2,[r0]
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#ifdef __LITTLE_ENDIAN__
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asl r7,r3,r7
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#else
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lsr r7,r3,r7
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#endif
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or r5,r5,r4
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ror r4,r3
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sub r12,r2,r7
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bic_s r12,r12,r2
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and r12,r12,r4
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brne.d r12,0,.Lfound0_ua
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xor r6,r2,r5
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ld.a r2,[r0,4]
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sub r12,r6,r7
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bic r12,r12,r6
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#ifdef __LITTLE_ENDIAN__
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and r7,r12,r4
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breq r7,0,.Loop ; For speed, we want this branch to be unaligned.
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b .Lfound_char ; Likewise this one.
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#else
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and r12,r12,r4
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breq r12,0,.Loop ; For speed, we want this branch to be unaligned.
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lsr_s r12,r12,7
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bic r2,r7,r6
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b.d .Lfound_char_b
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and_s r2,r2,r12
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#endif
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; /* We require this code address to be unaligned for speed... */
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.Laligned:
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ld_s r2,[r0]
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or r5,r5,r4
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ror r4,r3
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; /* ... so that this code address is aligned, for itself and ... */
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.Loop:
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sub r12,r2,r3
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bic_s r12,r12,r2
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and r12,r12,r4
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brne.d r12,0,.Lfound0
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xor r6,r2,r5
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ld.a r2,[r0,4]
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sub r12,r6,r3
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bic r12,r12,r6
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and r7,r12,r4
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breq r7,0,.Loop /* ... so that this branch is unaligned. */
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; Found searched-for character. r0 has already advanced to next word.
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#ifdef __LITTLE_ENDIAN__
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/* We only need the information about the first matching byte
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(i.e. the least significant matching byte) to be exact,
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hence there is no problem with carry effects. */
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.Lfound_char:
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sub r3,r7,1
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bic r3,r3,r7
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norm r2,r3
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sub_s r0,r0,1
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asr_s r2,r2,3
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j.d [blink]
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sub_s r0,r0,r2
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.balign 4
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.Lfound0_ua:
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mov r3,r7
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.Lfound0:
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sub r3,r6,r3
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bic r3,r3,r6
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and r2,r3,r4
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or_s r12,r12,r2
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sub_s r3,r12,1
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bic_s r3,r3,r12
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norm r3,r3
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add_s r0,r0,3
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asr_s r12,r3,3
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asl.f 0,r2,r3
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sub_s r0,r0,r12
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j_s.d [blink]
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mov.pl r0,0
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#else /* BIG ENDIAN */
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.Lfound_char:
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lsr r7,r7,7
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bic r2,r7,r6
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.Lfound_char_b:
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norm r2,r2
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sub_s r0,r0,4
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asr_s r2,r2,3
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j.d [blink]
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add_s r0,r0,r2
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.Lfound0_ua:
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mov_s r3,r7
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.Lfound0:
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asl_s r2,r2,7
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or r7,r6,r4
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bic_s r12,r12,r2
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sub r2,r7,r3
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or r2,r2,r6
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bic r12,r2,r12
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bic.f r3,r4,r12
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norm r3,r3
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add.pl r3,r3,1
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asr_s r12,r3,3
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asl.f 0,r2,r3
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add_s r0,r0,r12
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j_s.d [blink]
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mov.mi r0,0
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#endif /* ENDIAN */
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END_CFI(strchr)
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