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1aa89a7a3a
They now generally conform to the following argument sequence: script.pl "$(PERLASM_SCHEME)" [ C preprocessor arguments ... ] \ $(PROCESSOR) <output file> However, in the spirit of being able to use these scripts manually, they also allow for no argument, or for only the flavour, or for only the output file. This is done by only using the last argument as output file if it's a file (it has an extension), and only using the first argument as flavour if it isn't a file (it doesn't have an extension). While we're at it, we make all $xlate calls the same, i.e. the $output argument is always quoted, and we always die on error when trying to start $xlate. There's a perl lesson in this, regarding operator priority... This will always succeed, even when it fails: open FOO, "something" || die "ERR: $!"; The reason is that '||' has higher priority than list operators (a function is essentially a list operator and gobbles up everything following it that isn't lower priority), and since a non-empty string is always true, so that ends up being exactly the same as: open FOO, "something"; This, however, will fail if "something" can't be opened: open FOO, "something" or die "ERR: $!"; The reason is that 'or' has lower priority that list operators, i.e. it's performed after the 'open' call. Reviewed-by: Matt Caswell <matt@openssl.org> (Merged from https://github.com/openssl/openssl/pull/9884)
280 lines
4.8 KiB
Perl
280 lines
4.8 KiB
Perl
#! /usr/bin/env perl
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# Copyright 2009-2018 The OpenSSL Project Authors. All Rights Reserved.
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#
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# Licensed under the Apache License 2.0 (the "License"). You may not use
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# this file except in compliance with the License. You can obtain a copy
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# in the file LICENSE in the source distribution or at
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# https://www.openssl.org/source/license.html
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# $output is the last argument if it looks like a file (it has an extension)
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# $flavour is the first argument if it doesn't look like a file
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$output = $#ARGV >= 0 && $ARGV[$#ARGV] =~ m|\.\w+$| ? pop : undef;
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$flavour = $#ARGV >= 0 && $ARGV[0] !~ m|\.| ? shift : undef;
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$output and open STDOUT,">$output";
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if ($flavour =~ /64/) {
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$LEVEL ="2.0W";
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$SIZE_T =8;
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$ST ="std";
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} else {
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$LEVEL ="1.1";
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$SIZE_T =4;
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$ST ="stw";
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}
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$rp="%r2";
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$sp="%r30";
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$rv="%r28";
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$code=<<___;
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.LEVEL $LEVEL
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.SPACE \$TEXT\$
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.SUBSPA \$CODE\$,QUAD=0,ALIGN=8,ACCESS=0x2C,CODE_ONLY
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.EXPORT OPENSSL_cpuid_setup,ENTRY
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.ALIGN 8
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OPENSSL_cpuid_setup
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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bv ($rp)
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.EXIT
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nop
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.PROCEND
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.EXPORT OPENSSL_rdtsc,ENTRY
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.ALIGN 8
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OPENSSL_rdtsc
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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mfctl %cr16,$rv
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bv ($rp)
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.EXIT
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nop
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.PROCEND
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.EXPORT OPENSSL_wipe_cpu,ENTRY
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.ALIGN 8
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OPENSSL_wipe_cpu
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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xor %r0,%r0,%r1
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fcpy,dbl %fr0,%fr4
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xor %r0,%r0,%r19
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fcpy,dbl %fr0,%fr5
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xor %r0,%r0,%r20
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fcpy,dbl %fr0,%fr6
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xor %r0,%r0,%r21
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fcpy,dbl %fr0,%fr7
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xor %r0,%r0,%r22
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fcpy,dbl %fr0,%fr8
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xor %r0,%r0,%r23
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fcpy,dbl %fr0,%fr9
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xor %r0,%r0,%r24
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fcpy,dbl %fr0,%fr10
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xor %r0,%r0,%r25
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fcpy,dbl %fr0,%fr11
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xor %r0,%r0,%r26
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fcpy,dbl %fr0,%fr22
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xor %r0,%r0,%r29
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fcpy,dbl %fr0,%fr23
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xor %r0,%r0,%r31
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fcpy,dbl %fr0,%fr24
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fcpy,dbl %fr0,%fr25
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fcpy,dbl %fr0,%fr26
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fcpy,dbl %fr0,%fr27
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fcpy,dbl %fr0,%fr28
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fcpy,dbl %fr0,%fr29
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fcpy,dbl %fr0,%fr30
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fcpy,dbl %fr0,%fr31
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bv ($rp)
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.EXIT
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ldo 0($sp),$rv
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.PROCEND
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___
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{
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my $inp="%r26";
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my $len="%r25";
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$code.=<<___;
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.EXPORT OPENSSL_cleanse,ENTRY,ARGW0=GR,ARGW1=GR
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.ALIGN 8
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OPENSSL_cleanse
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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cmpib,*= 0,$len,L\$done
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nop
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cmpib,*>>= 15,$len,L\$ittle
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ldi $SIZE_T-1,%r1
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L\$align
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and,*<> $inp,%r1,%r28
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b,n L\$aligned
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stb %r0,0($inp)
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ldo -1($len),$len
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b L\$align
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ldo 1($inp),$inp
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L\$aligned
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andcm $len,%r1,%r28
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L\$ot
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$ST %r0,0($inp)
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addib,*<> -$SIZE_T,%r28,L\$ot
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ldo $SIZE_T($inp),$inp
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and,*<> $len,%r1,$len
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b,n L\$done
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L\$ittle
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stb %r0,0($inp)
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addib,*<> -1,$len,L\$ittle
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ldo 1($inp),$inp
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L\$done
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bv ($rp)
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.EXIT
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nop
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.PROCEND
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___
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}
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{
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my ($in1,$in2,$len)=("%r26","%r25","%r24");
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$code.=<<___;
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.EXPORT CRYPTO_memcmp,ENTRY,ARGW0=GR,ARGW1=GR,ARGW1=GR
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.ALIGN 8
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CRYPTO_memcmp
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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cmpib,*= 0,$len,L\$no_data
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xor $rv,$rv,$rv
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L\$oop_cmp
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ldb 0($in1),%r19
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ldb 0($in2),%r20
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ldo 1($in1),$in1
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ldo 1($in2),$in2
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xor %r19,%r20,%r29
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addib,*<> -1,$len,L\$oop_cmp
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or %r29,$rv,$rv
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sub %r0,$rv,%r29
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extru %r29,0,1,$rv
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L\$no_data
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bv ($rp)
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.EXIT
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nop
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.PROCEND
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___
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}
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{
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my ($out,$cnt,$max)=("%r26","%r25","%r24");
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my ($tick,$lasttick)=("%r23","%r22");
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my ($diff,$lastdiff)=("%r21","%r20");
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$code.=<<___;
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.EXPORT OPENSSL_instrument_bus,ENTRY,ARGW0=GR,ARGW1=GR
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.ALIGN 8
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OPENSSL_instrument_bus
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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copy $cnt,$rv
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mfctl %cr16,$tick
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copy $tick,$lasttick
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ldi 0,$diff
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fdc 0($out)
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ldw 0($out),$tick
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add $diff,$tick,$tick
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stw $tick,0($out)
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L\$oop
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mfctl %cr16,$tick
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sub $tick,$lasttick,$diff
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copy $tick,$lasttick
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fdc 0($out)
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ldw 0($out),$tick
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add $diff,$tick,$tick
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stw $tick,0($out)
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addib,<> -1,$cnt,L\$oop
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addi 4,$out,$out
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bv ($rp)
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.EXIT
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sub $rv,$cnt,$rv
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.PROCEND
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.EXPORT OPENSSL_instrument_bus2,ENTRY,ARGW0=GR,ARGW1=GR
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.ALIGN 8
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OPENSSL_instrument_bus2
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.PROC
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.CALLINFO NO_CALLS
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.ENTRY
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copy $cnt,$rv
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sub %r0,$cnt,$cnt
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mfctl %cr16,$tick
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copy $tick,$lasttick
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ldi 0,$diff
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fdc 0($out)
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ldw 0($out),$tick
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add $diff,$tick,$tick
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stw $tick,0($out)
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mfctl %cr16,$tick
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sub $tick,$lasttick,$diff
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copy $tick,$lasttick
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L\$oop2
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copy $diff,$lastdiff
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fdc 0($out)
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ldw 0($out),$tick
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add $diff,$tick,$tick
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stw $tick,0($out)
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addib,= -1,$max,L\$done2
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nop
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mfctl %cr16,$tick
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sub $tick,$lasttick,$diff
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copy $tick,$lasttick
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cmpclr,<> $lastdiff,$diff,$tick
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ldi 1,$tick
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ldi 1,%r1
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xor %r1,$tick,$tick
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addb,<> $tick,$cnt,L\$oop2
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shladd,l $tick,2,$out,$out
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L\$done2
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bv ($rp)
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.EXIT
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add $rv,$cnt,$rv
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.PROCEND
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___
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}
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if (`$ENV{CC} -Wa,-v -c -o /dev/null -x assembler /dev/null 2>&1`
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=~ /GNU assembler/) {
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$gnuas = 1;
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}
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foreach(split("\n",$code)) {
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s/(\.LEVEL\s+2\.0)W/$1w/ if ($gnuas && $SIZE_T==8);
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s/\.SPACE\s+\$TEXT\$/.text/ if ($gnuas && $SIZE_T==8);
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s/\.SUBSPA.*// if ($gnuas && $SIZE_T==8);
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s/cmpib,\*/comib,/ if ($SIZE_T==4);
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s/,\*/,/ if ($SIZE_T==4);
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s/\bbv\b/bve/ if ($SIZE_T==8);
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print $_,"\n";
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}
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close STDOUT;
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