Merge remote-tracking branch 'origin/master'

# Conflicts:
#	README.md
This commit is contained in:
Zhi Guan
2017-02-14 16:12:29 +08:00
parent d2254170b8
commit 43fed1108d
3503 changed files with 320546 additions and 408546 deletions

View File

@@ -1,4 +1,11 @@
#!/usr/bin/env perl
#! /usr/bin/env perl
# Copyright 2005-2016 The OpenSSL Project Authors. All Rights Reserved.
#
# Licensed under the OpenSSL license (the "License"). You may not use
# this file except in compliance with the License. You can obtain a copy
# in the file LICENSE in the source distribution or at
# https://www.openssl.org/source/license.html
# Ascetic x86_64 AT&T to MASM/NASM assembler translator by <appro>.
#
@@ -58,6 +65,9 @@
# a. If function accepts more than 4 arguments *and* >4th argument
# is declared as non 64-bit value, do clear its upper part.
use strict;
my $flavour = shift;
my $output = shift;
if ($flavour =~ /\./) { $output = $flavour; undef $flavour; }
@@ -80,7 +90,7 @@ my $nasm=0;
if ($flavour eq "mingw64") { $gas=1; $elf=0; $win64=1;
$prefix=`echo __USER_LABEL_PREFIX__ | $ENV{CC} -E -P -`;
chomp($prefix);
$prefix =~ s|\R$||; # Better chomp
}
elsif ($flavour eq "macosx") { $gas=1; $elf=0; $prefix="_"; $decor="L\$"; }
elsif ($flavour eq "masm") { $gas=0; $elf=0; $masm=$masmref; $win64=1; $decor="\$L\$"; }
@@ -102,14 +112,15 @@ my %globals;
{ package opcode; # pick up opcodes
sub re {
my $self = shift; # single instance in enough...
local *line = shift;
undef $ret;
my ($class, $line) = @_;
my $self = {};
my $ret;
if ($line =~ /^([a-z][a-z0-9]*)/i) {
if ($$line =~ /^([a-z][a-z0-9]*)/i) {
bless $self,$class;
$self->{op} = $1;
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
undef $self->{sz};
if ($self->{op} =~ /^(movz)x?([bw]).*/) { # movz is pain...
@@ -121,7 +132,7 @@ my %globals;
$self->{sz} = "";
} elsif ($self->{op} =~ /^v/) { # VEX
$self->{sz} = "";
} elsif ($self->{op} =~ /mov[dq]/ && $line =~ /%xmm/) {
} elsif ($self->{op} =~ /mov[dq]/ && $$line =~ /%xmm/) {
$self->{sz} = "";
} elsif ($self->{op} =~ /([a-z]{3,})([qlwb])$/) {
$self->{op} = $1;
@@ -131,8 +142,7 @@ my %globals;
$ret;
}
sub size {
my $self = shift;
my $sz = shift;
my ($self, $sz) = @_;
$self->{sz} = $sz if (defined($sz) && !defined($self->{sz}));
$self->{sz};
}
@@ -160,8 +170,8 @@ my %globals;
if ($self->{op} eq "ret") {
$self->{op} = "";
if ($win64 && $current_function->{abi} eq "svr4") {
$self->{op} = "mov rdi,QWORD${PTR}[8+rsp]\t;WIN64 epilogue\n\t".
"mov rsi,QWORD${PTR}[16+rsp]\n\t";
$self->{op} = "mov rdi,QWORD$PTR\[8+rsp\]\t;WIN64 epilogue\n\t".
"mov rsi,QWORD$PTR\[16+rsp\]\n\t";
}
$self->{op} .= "DB\t0F3h,0C3h\t\t;repret";
} elsif ($self->{op} =~ /^(pop|push)f/) {
@@ -173,36 +183,40 @@ my %globals;
}
}
sub mnemonic {
my $self=shift;
my $op=shift;
my ($self, $op) = @_;
$self->{op}=$op if (defined($op));
$self->{op};
}
}
{ package const; # pick up constants, which start with $
sub re {
my $self = shift; # single instance in enough...
local *line = shift;
undef $ret;
my ($class, $line) = @_;
my $self = {};
my $ret;
if ($line =~ /^\$([^,]+)/) {
if ($$line =~ /^\$([^,]+)/) {
bless $self, $class;
$self->{value} = $1;
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
}
$ret;
}
sub out {
my $self = shift;
$self->{value} =~ s/\b(0b[0-1]+)/oct($1)/eig;
if ($gas) {
# Solaris /usr/ccs/bin/as can't handle multiplications
# in $self->{value}
$self->{value} =~ s/(?<![\w\$\.])(0x?[0-9a-f]+)/oct($1)/egi;
$self->{value} =~ s/([0-9]+\s*[\*\/\%]\s*[0-9]+)/eval($1)/eg;
my $value = $self->{value};
no warnings; # oct might complain about overflow, ignore here...
$value =~ s/(?<![\w\$\.])(0x?[0-9a-f]+)/oct($1)/egi;
if ($value =~ s/([0-9]+\s*[\*\/\%]\s*[0-9]+)/eval($1)/eg) {
$self->{value} = $value;
}
sprintf "\$%s",$self->{value};
} else {
$self->{value} =~ s/(0b[0-1]+)/oct($1)/eig;
$self->{value} =~ s/0x([0-9a-f]+)/0$1h/ig if ($masm);
sprintf "%s",$self->{value};
}
@@ -210,32 +224,33 @@ my %globals;
}
{ package ea; # pick up effective addresses: expr(%reg,%reg,scale)
sub re {
my $self = shift; # single instance in enough...
local *line = shift;
undef $ret;
my ($class, $line, $opcode) = @_;
my $self = {};
my $ret;
# optional * ---vvv--- appears in indirect jmp/call
if ($line =~ /^(\*?)([^\(,]*)\(([%\w,]+)\)/) {
# optional * ----vvv--- appears in indirect jmp/call
if ($$line =~ /^(\*?)([^\(,]*)\(([%\w,]+)\)/) {
bless $self, $class;
$self->{asterisk} = $1;
$self->{label} = $2;
($self->{base},$self->{index},$self->{scale})=split(/,/,$3);
$self->{scale} = 1 if (!defined($self->{scale}));
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
if ($win64 && $self->{label} =~ s/\@GOTPCREL//) {
die if (opcode->mnemonic() ne "mov");
opcode->mnemonic("lea");
die if ($opcode->mnemonic() ne "mov");
$opcode->mnemonic("lea");
}
$self->{base} =~ s/^%//;
$self->{index} =~ s/^%// if (defined($self->{index}));
$self->{opcode} = $opcode;
}
$ret;
}
sub size {}
sub out {
my $self = shift;
my $sz = shift;
my ($self, $sz) = @_;
$self->{label} =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
$self->{label} =~ s/\.L/$decor/g;
@@ -247,11 +262,18 @@ my %globals;
$self->{base} =~ s/^[er](.?[0-9xpi])[d]?$/r\1/;
# Solaris /usr/ccs/bin/as can't handle multiplications
# in $self->{label}, new gas requires sign extension...
# in $self->{label}...
use integer;
$self->{label} =~ s/(?<![\w\$\.])(0x?[0-9a-f]+)/oct($1)/egi;
$self->{label} =~ s/\b([0-9]+\s*[\*\/\%]\s*[0-9]+)\b/eval($1)/eg;
$self->{label} =~ s/\b([0-9]+)\b/$1<<32>>32/eg;
# Some assemblers insist on signed presentation of 32-bit
# offsets, but sign extension is a tricky business in perl...
if ((1<<31)<<1) {
$self->{label} =~ s/\b([0-9]+)\b/$1<<32>>32/eg;
} else {
$self->{label} =~ s/\b([0-9]+)\b/$1>>0/eg;
}
if (!$self->{label} && $self->{index} && $self->{scale}==1 &&
$self->{base} =~ /(rbp|r13)/) {
@@ -270,7 +292,7 @@ my %globals;
sprintf "%s%s(%%%s)", $self->{asterisk},$self->{label},$self->{base};
}
} else {
%szmap = ( b=>"BYTE$PTR", w=>"WORD$PTR",
my %szmap = ( b=>"BYTE$PTR", w=>"WORD$PTR",
l=>"DWORD$PTR", d=>"DWORD$PTR",
q=>"QWORD$PTR", o=>"OWORD$PTR",
x=>"XMMWORD$PTR", y=>"YMMWORD$PTR", z=>"ZMMWORD$PTR" );
@@ -279,11 +301,12 @@ my %globals;
$self->{label} =~ s/(?<![\w\$\.])0x([0-9a-f]+)/0$1h/ig;
$self->{label} = "($self->{label})" if ($self->{label} =~ /[\*\+\-\/]/);
($self->{asterisk}) && ($sz="q") ||
(opcode->mnemonic() =~ /^v?mov([qd])$/) && ($sz=$1) ||
(opcode->mnemonic() =~ /^v?pinsr([qdwb])$/) && ($sz=$1) ||
(opcode->mnemonic() =~ /^vpbroadcast([qdwb])$/) && ($sz=$1) ||
(opcode->mnemonic() =~ /^vinsert[fi]128$/) && ($sz="x");
my $mnemonic = $self->{opcode}->mnemonic();
($self->{asterisk}) && ($sz="q") ||
($mnemonic =~ /^v?mov([qd])$/) && ($sz=$1) ||
($mnemonic =~ /^v?pinsr([qdwb])$/) && ($sz=$1) ||
($mnemonic =~ /^vpbroadcast([qdwb])$/) && ($sz=$1) ||
($mnemonic =~ /^v(?!perm)[a-z]+[fi]128$/) && ($sz="x");
if (defined($self->{index})) {
sprintf "%s[%s%s*%d%s]",$szmap{$sz},
@@ -302,24 +325,24 @@ my %globals;
}
{ package register; # pick up registers, which start with %.
sub re {
my $class = shift; # muliple instances...
my ($class, $line, $opcode) = @_;
my $self = {};
local *line = shift;
undef $ret;
my $ret;
# optional * ---vvv--- appears in indirect jmp/call
if ($line =~ /^(\*?)%(\w+)/) {
# optional * ----vvv--- appears in indirect jmp/call
if ($$line =~ /^(\*?)%(\w+)/) {
bless $self,$class;
$self->{asterisk} = $1;
$self->{value} = $2;
$opcode->size($self->size());
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
}
$ret;
}
sub size {
my $self = shift;
undef $ret;
my $ret;
if ($self->{value} =~ /^r[\d]+b$/i) { $ret="b"; }
elsif ($self->{value} =~ /^r[\d]+w$/i) { $ret="w"; }
@@ -340,14 +363,15 @@ my %globals;
}
{ package label; # pick up labels, which end with :
sub re {
my $self = shift; # single instance is enough...
local *line = shift;
undef $ret;
my ($class, $line) = @_;
my $self = {};
my $ret;
if ($line =~ /(^[\.\w]+)\:/) {
if ($$line =~ /(^[\.\w]+)\:/) {
bless $self,$class;
$self->{value} = $1;
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
$self->{value} =~ s/^\.L/$decor/;
}
@@ -377,14 +401,15 @@ my %globals;
}
$func;
} elsif ($self->{value} ne "$current_function->{name}") {
$self->{value} .= ":" if ($masm && $ret!~m/^\$/);
# Make all labels in masm global.
$self->{value} .= ":" if ($masm);
$self->{value} . ":";
} elsif ($win64 && $current_function->{abi} eq "svr4") {
my $func = "$current_function->{name}" .
($nasm ? ":" : "\tPROC $current_function->{scope}") .
"\n";
$func .= " mov QWORD${PTR}[8+rsp],rdi\t;WIN64 prologue\n";
$func .= " mov QWORD${PTR}[16+rsp],rsi\n";
$func .= " mov QWORD$PTR\[8+rsp\],rdi\t;WIN64 prologue\n";
$func .= " mov QWORD$PTR\[16+rsp\],rsi\n";
$func .= " mov rax,rsp\n";
$func .= "${decor}SEH_begin_$current_function->{name}:";
$func .= ":" if ($masm);
@@ -395,8 +420,8 @@ my %globals;
$func .= " mov rsi,rdx\n" if ($narg>1);
$func .= " mov rdx,r8\n" if ($narg>2);
$func .= " mov rcx,r9\n" if ($narg>3);
$func .= " mov r8,QWORD${PTR}[40+rsp]\n" if ($narg>4);
$func .= " mov r9,QWORD${PTR}[48+rsp]\n" if ($narg>5);
$func .= " mov r8,QWORD$PTR\[40+rsp\]\n" if ($narg>4);
$func .= " mov r9,QWORD$PTR\[48+rsp\]\n" if ($narg>5);
$func .= "\n";
} else {
"$current_function->{name}".
@@ -406,24 +431,26 @@ my %globals;
}
{ package expr; # pick up expressioins
sub re {
my $self = shift; # single instance is enough...
local *line = shift;
undef $ret;
my ($class, $line, $opcode) = @_;
my $self = {};
my $ret;
if ($line =~ /(^[^,]+)/) {
if ($$line =~ /(^[^,]+)/) {
bless $self,$class;
$self->{value} = $1;
$ret = $self;
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
$self->{value} =~ s/\@PLT// if (!$elf);
$self->{value} =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
$self->{value} =~ s/\.L/$decor/g;
$self->{opcode} = $opcode;
}
$ret;
}
sub out {
my $self = shift;
if ($nasm && opcode->mnemonic()=~m/^j(?![re]cxz)/) {
if ($nasm && $self->{opcode}->mnemonic()=~m/^j(?![re]cxz)/) {
"NEAR ".$self->{value};
} else {
$self->{value};
@@ -432,9 +459,9 @@ my %globals;
}
{ package directive; # pick up directives, which start with .
sub re {
my $self = shift; # single instance is enough...
local *line = shift;
undef $ret;
my ($class, $line) = @_;
my $self = {};
my $ret;
my $dir;
my %opcode = # lea 2f-1f(%rip),%dst; 1: nop; 2:
( "%rax"=>0x01058d48, "%rcx"=>0x010d8d48,
@@ -446,25 +473,26 @@ my %globals;
"%r12"=>0x01258d4c, "%r13"=>0x012d8d4c,
"%r14"=>0x01358d4c, "%r15"=>0x013d8d4c );
if ($line =~ /^\s*(\.\w+)/) {
if ($$line =~ /^\s*(\.\w+)/) {
bless $self,$class;
$dir = $1;
$ret = $self;
undef $self->{value};
$line = substr($line,@+[0]); $line =~ s/^\s+//;
$$line = substr($$line,@+[0]); $$line =~ s/^\s+//;
SWITCH: for ($dir) {
/\.picmeup/ && do { if ($line =~ /(%r[\w]+)/i) {
/\.picmeup/ && do { if ($$line =~ /(%r[\w]+)/i) {
$dir="\t.long";
$line=sprintf "0x%x,0x90000000",$opcode{$1};
$$line=sprintf "0x%x,0x90000000",$opcode{$1};
}
last;
};
/\.global|\.globl|\.extern/
&& do { $globals{$line} = $prefix . $line;
$line = $globals{$line} if ($prefix);
&& do { $globals{$$line} = $prefix . $$line;
$$line = $globals{$$line} if ($prefix);
last;
};
/\.type/ && do { ($sym,$type,$narg) = split(',',$line);
/\.type/ && do { my ($sym,$type,$narg) = split(',',$$line);
if ($type eq "\@function") {
undef $current_function;
$current_function->{name} = $sym;
@@ -476,25 +504,25 @@ my %globals;
$current_function->{name} = $sym;
$current_function->{scope} = defined($globals{$sym})?"PUBLIC":"PRIVATE";
}
$line =~ s/\@abi\-omnipotent/\@function/;
$line =~ s/\@function.*/\@function/;
$$line =~ s/\@abi\-omnipotent/\@function/;
$$line =~ s/\@function.*/\@function/;
last;
};
/\.asciz/ && do { if ($line =~ /^"(.*)"$/) {
/\.asciz/ && do { if ($$line =~ /^"(.*)"$/) {
$dir = ".byte";
$line = join(",",unpack("C*",$1),0);
$$line = join(",",unpack("C*",$1),0);
}
last;
};
/\.rva|\.long|\.quad/
&& do { $line =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
$line =~ s/\.L/$decor/g;
&& do { $$line =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
$$line =~ s/\.L/$decor/g;
last;
};
}
if ($gas) {
$self->{value} = $dir . "\t" . $line;
$self->{value} = $dir . "\t" . $$line;
if ($dir =~ /\.extern/) {
$self->{value} = ""; # swallow extern
@@ -503,7 +531,7 @@ my %globals;
$self->{value} = ".def\t" . ($globals{$1} or $1) . ";\t" .
(defined($globals{$1})?".scl 2;":".scl 3;") .
"\t.type 32;\t.endef"
if ($win64 && $line =~ /([^,]+),\@function/);
if ($win64 && $$line =~ /([^,]+),\@function/);
} elsif (!$elf && $dir =~ /\.size/) {
$self->{value} = "";
if (defined($current_function)) {
@@ -512,9 +540,9 @@ my %globals;
undef $current_function;
}
} elsif (!$elf && $dir =~ /\.align/) {
$self->{value} = ".p2align\t" . (log($line)/log(2));
$self->{value} = ".p2align\t" . (log($$line)/log(2));
} elsif ($dir eq ".section") {
$current_segment=$line;
$current_segment=$$line;
if (!$elf && $current_segment eq ".init") {
if ($flavour eq "macosx") { $self->{value} = ".mod_init_func"; }
elsif ($flavour eq "mingw64") { $self->{value} = ".section\t.ctors"; }
@@ -522,13 +550,13 @@ my %globals;
} elsif ($dir =~ /\.(text|data)/) {
$current_segment=".$1";
} elsif ($dir =~ /\.hidden/) {
if ($flavour eq "macosx") { $self->{value} = ".private_extern\t$prefix$line"; }
if ($flavour eq "macosx") { $self->{value} = ".private_extern\t$prefix$$line"; }
elsif ($flavour eq "mingw64") { $self->{value} = ""; }
} elsif ($dir =~ /\.comm/) {
$self->{value} = "$dir\t$prefix$line";
$self->{value} = "$dir\t$prefix$$line";
$self->{value} =~ s|,([0-9]+),([0-9]+)$|",$1,".log($2)/log(2)|e if ($flavour eq "macosx");
}
$line = "";
$$line = "";
return $self;
}
@@ -559,38 +587,38 @@ my %globals;
last;
};
/\.section/ && do { my $v=undef;
$line =~ s/([^,]*).*/$1/;
$line = ".CRT\$XCU" if ($line eq ".init");
$$line =~ s/([^,]*).*/$1/;
$$line = ".CRT\$XCU" if ($$line eq ".init");
if ($nasm) {
$v="section $line";
if ($line=~/\.([px])data/) {
$v="section $$line";
if ($$line=~/\.([px])data/) {
$v.=" rdata align=";
$v.=$1 eq "p"? 4 : 8;
} elsif ($line=~/\.CRT\$/i) {
} elsif ($$line=~/\.CRT\$/i) {
$v.=" rdata align=8";
}
} else {
$v="$current_segment\tENDS\n" if ($current_segment);
$v.="$line\tSEGMENT";
if ($line=~/\.([px])data/) {
$v.="$$line\tSEGMENT";
if ($$line=~/\.([px])data/) {
$v.=" READONLY";
$v.=" ALIGN(".($1 eq "p" ? 4 : 8).")" if ($masm>=$masmref);
} elsif ($line=~/\.CRT\$/i) {
} elsif ($$line=~/\.CRT\$/i) {
$v.=" READONLY ";
$v.=$masm>=$masmref ? "ALIGN(8)" : "DWORD";
}
}
$current_segment = $line;
$current_segment = $$line;
$self->{value} = $v;
last;
};
/\.extern/ && do { $self->{value} = "EXTERN\t".$line;
/\.extern/ && do { $self->{value} = "EXTERN\t".$$line;
$self->{value} .= ":NEAR" if ($masm);
last;
};
/\.globl|.global/
&& do { $self->{value} = $masm?"PUBLIC":"global";
$self->{value} .= "\t".$line;
$self->{value} .= "\t".$$line;
last;
};
/\.size/ && do { if (defined($current_function)) {
@@ -604,10 +632,13 @@ my %globals;
}
last;
};
/\.align/ && do { $self->{value} = "ALIGN\t".$line; last; };
/\.align/ && do { my $max = ($masm && $masm>=$masmref) ? 256 : 4096;
$self->{value} = "ALIGN\t".($$line>$max?$max:$$line);
last;
};
/\.(value|long|rva|quad)/
&& do { my $sz = substr($1,0,1);
my @arr = split(/,\s*/,$line);
my @arr = split(/,\s*/,$$line);
my $last = pop(@arr);
my $conv = sub { my $var=shift;
$var=~s/^(0b[0-1]+)/oct($1)/eig;
@@ -623,7 +654,7 @@ my %globals;
$self->{value} .= &$conv($last);
last;
};
/\.byte/ && do { my @str=split(/,\s*/,$line);
/\.byte/ && do { my @str=split(/,\s*/,$$line);
map(s/(0b[0-1]+)/oct($1)/eig,@str);
map(s/0x([0-9a-f]+)/0$1h/ig,@str) if ($masm);
while ($#str>15) {
@@ -635,7 +666,7 @@ my %globals;
.join(",",@str) if (@str);
last;
};
/\.comm/ && do { my @str=split(/,\s*/,$line);
/\.comm/ && do { my @str=split(/,\s*/,$$line);
my $v=undef;
if ($nasm) {
$v.="common $prefix@str[0] @str[1]";
@@ -649,7 +680,7 @@ my %globals;
last;
};
}
$line = "";
$$line = "";
}
$ret;
@@ -661,15 +692,21 @@ my %globals;
}
sub rex {
local *opcode=shift;
my $opcode=shift;
my ($dst,$src,$rex)=@_;
$rex|=0x04 if($dst>=8);
$rex|=0x01 if($src>=8);
push @opcode,($rex|0x40) if ($rex);
push @$opcode,($rex|0x40) if ($rex);
}
# older gas and ml64 don't handle SSE>2 instructions
# Upon initial x86_64 introduction SSE>2 extensions were not introduced
# yet. In order not to be bothered by tracing exact assembler versions,
# but at the same time to provide a bare security minimum of AES-NI, we
# hard-code some instructions. Extensions past AES-NI on the other hand
# are traced by examining assembler version in individual perlasm
# modules...
my %regrm = ( "%eax"=>0, "%ecx"=>1, "%edx"=>2, "%ebx"=>3,
"%esp"=>4, "%ebp"=>5, "%esi"=>6, "%edi"=>7 );
@@ -698,9 +735,9 @@ my $movq = sub { # elderly gas can't handle inter-register movq
my $pextrd = sub {
if (shift =~ /\$([0-9]+),\s*%xmm([0-9]+),\s*(%\w+)/) {
my @opcode=(0x66);
$imm=$1;
$src=$2;
$dst=$3;
my $imm=$1;
my $src=$2;
my $dst=$3;
if ($dst =~ /%r([0-9]+)d/) { $dst = $1; }
elsif ($dst =~ /%e/) { $dst = $regrm{$dst}; }
rex(\@opcode,$src,$dst);
@@ -716,9 +753,9 @@ my $pextrd = sub {
my $pinsrd = sub {
if (shift =~ /\$([0-9]+),\s*(%\w+),\s*%xmm([0-9]+)/) {
my @opcode=(0x66);
$imm=$1;
$src=$2;
$dst=$3;
my $imm=$1;
my $src=$2;
my $dst=$3;
if ($src =~ /%r([0-9]+)/) { $src = $1; }
elsif ($src =~ /%e/) { $src = $regrm{$src}; }
rex(\@opcode,$dst,$src);
@@ -775,7 +812,7 @@ my $rdrand = sub {
my @opcode=();
my $dst=$1;
if ($dst !~ /[0-9]+/) { $dst = $regrm{"%e$dst"}; }
rex(\@opcode,0,$1,8);
rex(\@opcode,0,$dst,8);
push @opcode,0x0f,0xc7,0xf0|($dst&7);
@opcode;
} else {
@@ -788,7 +825,7 @@ my $rdseed = sub {
my @opcode=();
my $dst=$1;
if ($dst !~ /[0-9]+/) { $dst = $regrm{"%e$dst"}; }
rex(\@opcode,0,$1,8);
rex(\@opcode,0,$dst,8);
push @opcode,0x0f,0xc7,0xf8|($dst&7);
@opcode;
} else {
@@ -797,14 +834,14 @@ my $rdseed = sub {
};
sub rxb {
local *opcode=shift;
my $opcode=shift;
my ($dst,$src1,$src2,$rxb)=@_;
$rxb|=0x7<<5;
$rxb&=~(0x04<<5) if($dst>=8);
$rxb&=~(0x01<<5) if($src1>=8);
$rxb&=~(0x02<<5) if($src2>=8);
push @opcode,$rxb;
push @$opcode,$rxb;
}
my $vprotd = sub {
@@ -835,6 +872,10 @@ my $vprotq = sub {
}
};
my $endbranch = sub {
(0xf3,0x0f,0x1e,0xfa);
};
if ($nasm) {
print <<___;
default rel
@@ -847,51 +888,47 @@ ___
OPTION DOTNAME
___
}
while($line=<>) {
while(defined(my $line=<>)) {
chomp($line);
$line =~ s|\R$||; # Better chomp
$line =~ s|[#!].*$||; # get rid of asm-style comments...
$line =~ s|/\*.*\*/||; # ... and C-style comments...
$line =~ s|^\s+||; # ... and skip white spaces in beginning
$line =~ s|\s+$||; # ... and at the end
undef $label;
undef $opcode;
undef @args;
if (my $label=label->re(\$line)) { print $label->out(); }
if ($label=label->re(\$line)) { print $label->out(); }
if (directive->re(\$line)) {
printf "%s",directive->out();
} elsif ($opcode=opcode->re(\$line)) {
if (my $directive=directive->re(\$line)) {
printf "%s",$directive->out();
} elsif (my $opcode=opcode->re(\$line)) {
my $asm = eval("\$".$opcode->mnemonic());
undef @bytes;
if ((ref($asm) eq 'CODE') && scalar(@bytes=&$asm($line))) {
if ((ref($asm) eq 'CODE') && scalar(my @bytes=&$asm($line))) {
print $gas?".byte\t":"DB\t",join(',',@bytes),"\n";
next;
}
my @args;
ARGUMENT: while (1) {
my $arg;
my $arg;
if ($arg=register->re(\$line)) { opcode->size($arg->size()); }
elsif ($arg=const->re(\$line)) { }
elsif ($arg=ea->re(\$line)) { }
elsif ($arg=expr->re(\$line)) { }
else { last ARGUMENT; }
($arg=register->re(\$line, $opcode))||
($arg=const->re(\$line)) ||
($arg=ea->re(\$line, $opcode)) ||
($arg=expr->re(\$line, $opcode)) ||
last ARGUMENT;
push @args,$arg;
push @args,$arg;
last ARGUMENT if ($line !~ /^,/);
last ARGUMENT if ($line !~ /^,/);
$line =~ s/^,\s*//;
$line =~ s/^,\s*//;
} # ARGUMENT:
if ($#args>=0) {
my $insn;
my $sz=opcode->size();
my $sz=$opcode->size();
if ($gas) {
$insn = $opcode->out($#args>=1?$args[$#args]->size():$sz);
@@ -950,7 +987,7 @@ close STDOUT;
# (#) Nth argument, volatile
#
# In Unix terms top of stack is argument transfer area for arguments
# which could not be accomodated in registers. Or in other words 7th
# which could not be accommodated in registers. Or in other words 7th
# [integer] argument resides at 8(%rsp) upon function entry point.
# 128 bytes above %rsp constitute a "red zone" which is not touched
# by signal handlers and can be used as temporal storage without
@@ -1114,7 +1151,7 @@ close STDOUT;
# .rva .LSEH_end_function
# .rva function_unwind_info
#
# Reference to functon_unwind_info from .xdata segment is the anchor.
# Reference to function_unwind_info from .xdata segment is the anchor.
# In case you wonder why references are 32-bit .rvas and not 64-bit
# .quads. References put into these two segments are required to be
# *relative* to the base address of the current binary module, a.k.a.