x86_64-xlate.pl 34.2 KB
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#!/usr/bin/env perl

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# Ascetic x86_64 AT&T to MASM/NASM assembler translator by <appro>.
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#
# Why AT&T to MASM and not vice versa? Several reasons. Because AT&T
# format is way easier to parse. Because it's simpler to "gear" from
# Unix ABI to Windows one [see cross-reference "card" at the end of
# file]. Because Linux targets were available first...
#
# In addition the script also "distills" code suitable for GNU
# assembler, so that it can be compiled with more rigid assemblers,
# such as Solaris /usr/ccs/bin/as.
#
# This translator is not designed to convert *arbitrary* assembler
# code from AT&T format to MASM one. It's designed to convert just
# enough to provide for dual-ABI OpenSSL modules development...
# There *are* limitations and you might have to modify your assembler
# code or this script to achieve the desired result...
#
# Currently recognized limitations:
#
# - can't use multiple ops per line;
#
# Dual-ABI styling rules.
#
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# 1. Adhere to Unix register and stack layout [see cross-reference
#    ABI "card" at the end for explanation].
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# 2. Forget about "red zone," stick to more traditional blended
#    stack frame allocation. If volatile storage is actually required
#    that is. If not, just leave the stack as is.
# 3. Functions tagged with ".type name,@function" get crafted with
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#    unified Win64 prologue and epilogue automatically. If you want
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#    to take care of ABI differences yourself, tag functions as
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#    ".type name,@abi-omnipotent" instead.
# 4. To optimize the Win64 prologue you can specify number of input
#    arguments as ".type name,@function,N." Keep in mind that if N is
#    larger than 6, then you *have to* write "abi-omnipotent" code,
#    because >6 cases can't be addressed with unified prologue.
# 5. Name local labels as .L*, do *not* use dynamic labels such as 1:
#    (sorry about latter).
# 6. Don't use [or hand-code with .byte] "rep ret." "ret" mnemonic is
#    required to identify the spots, where to inject Win64 epilogue!
#    But on the pros, it's then prefixed with rep automatically:-)
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# 7. Stick to explicit ip-relative addressing. If you have to use
#    GOTPCREL addressing, stick to mov symbol@GOTPCREL(%rip),%r??.
#    Both are recognized and translated to proper Win64 addressing
#    modes. To support legacy code a synthetic directive, .picmeup,
#    is implemented. It puts address of the *next* instruction into
#    target register, e.g.:
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#
#		.picmeup	%rax
#		lea		.Label-.(%rax),%rax
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#
# 8. In order to provide for structured exception handling unified
#    Win64 prologue copies %rsp value to %rax. For further details
#    see SEH paragraph at the end.
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# 9. .init segment is allowed to contain calls to functions only.
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# a. If function accepts more than 4 arguments *and* >4th argument
#    is declared as non 64-bit value, do clear its upper part.
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my $flavour = shift;
my $output  = shift;
if ($flavour =~ /\./) { $output = $flavour; undef $flavour; }
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open STDOUT,">$output" || die "can't open $output: $!"
	if (defined($output));
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my $gas=1;	$gas=0 if ($output =~ /\.asm$/);
my $elf=1;	$elf=0 if (!$gas);
my $win64=0;
my $prefix="";
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my $decor=".L";
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my $masmref=8 + 50727*2**-32;	# 8.00.50727 shipped with VS2005
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my $masm=0;
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my $PTR=" PTR";

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my $nasmref=2.03;
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my $nasm=0;

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if    ($flavour eq "mingw64")	{ $gas=1; $elf=0; $win64=1;
				  $prefix=`echo __USER_LABEL_PREFIX__ | $ENV{CC} -E -P -`;
				  chomp($prefix);
				}
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elsif ($flavour eq "macosx")	{ $gas=1; $elf=0; $prefix="_"; $decor="L\$"; }
elsif ($flavour eq "masm")	{ $gas=0; $elf=0; $masm=$masmref; $win64=1; $decor="\$L\$"; }
elsif ($flavour eq "nasm")	{ $gas=0; $elf=0; $nasm=$nasmref; $win64=1; $decor="\$L\$"; $PTR=""; }
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elsif (!$gas)
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{   if ($ENV{ASM} =~ m/nasm/ && `nasm -v` =~ m/version ([0-9]+)\.([0-9]+)/i)
    {	$nasm = $1 + $2*0.01; $PTR="";  }
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    elsif (`ml64 2>&1` =~ m/Version ([0-9]+)\.([0-9]+)(\.([0-9]+))?/)
    {	$masm = $1 + $2*2**-16 + $4*2**-32;   }
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    die "no assembler found on %PATH" if (!($nasm || $masm));
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    $win64=1;
    $elf=0;
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    $decor="\$L\$";
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}
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my $current_segment;
my $current_function;
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my %globals;
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{ package opcode;	# pick up opcodes
    sub re {
	my	$self = shift;	# single instance in enough...
	local	*line = shift;
	undef	$ret;

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	if ($line =~ /^([a-z][a-z0-9]*)/i) {
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	    $self->{op} = $1;
	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;

	    undef $self->{sz};
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	    if ($self->{op} =~ /^(movz)x?([bw]).*/) {	# movz is pain...
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		$self->{op} = $1;
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		$self->{sz} = $2;
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	    } elsif ($self->{op} =~ /call|jmp/) {
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		$self->{sz} = "";
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	    } elsif ($self->{op} =~ /^p/ && $' !~ /^(ush|op|insrw)/) { # SSEn
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		$self->{sz} = "";
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	    } elsif ($self->{op} =~ /^v/) { # VEX
		$self->{sz} = "";
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	    } elsif ($self->{op} =~ /movq/ && $line =~ /%xmm/) {
		$self->{sz} = "";
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	    } elsif ($self->{op} =~ /([a-z]{3,})([qlwb])$/) {
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		$self->{op} = $1;
		$self->{sz} = $2;
	    }
	}
	$ret;
    }
    sub size {
	my $self = shift;
	my $sz   = shift;
	$self->{sz} = $sz if (defined($sz) && !defined($self->{sz}));
	$self->{sz};
    }
    sub out {
	my $self = shift;
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	if ($gas) {
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	    if ($self->{op} eq "movz") {	# movz is pain...
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		sprintf "%s%s%s",$self->{op},$self->{sz},shift;
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	    } elsif ($self->{op} =~ /^set/) { 
		"$self->{op}";
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	    } elsif ($self->{op} eq "ret") {
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		my $epilogue = "";
		if ($win64 && $current_function->{abi} eq "svr4") {
		    $epilogue = "movq	8(%rsp),%rdi\n\t" .
				"movq	16(%rsp),%rsi\n\t";
		}
	    	$epilogue . ".byte	0xf3,0xc3";
	    } elsif ($self->{op} eq "call" && !$elf && $current_segment eq ".init") {
		".p2align\t3\n\t.quad";
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	    } else {
		"$self->{op}$self->{sz}";
	    }
	} else {
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	    $self->{op} =~ s/^movz/movzx/;
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	    if ($self->{op} eq "ret") {
		$self->{op} = "";
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		if ($win64 && $current_function->{abi} eq "svr4") {
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		    $self->{op} = "mov	rdi,QWORD${PTR}[8+rsp]\t;WIN64 epilogue\n\t".
				  "mov	rsi,QWORD${PTR}[16+rsp]\n\t";
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	    	}
		$self->{op} .= "DB\t0F3h,0C3h\t\t;repret";
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	    } elsif ($self->{op} =~ /^(pop|push)f/) {
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		$self->{op} .= $self->{sz};
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	    } elsif ($self->{op} eq "call" && $current_segment eq ".CRT\$XCU") {
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		$self->{op} = "\tDQ";
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	    } 
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	    $self->{op};
	}
    }
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    sub mnemonic {
	my $self=shift;
	my $op=shift;
	$self->{op}=$op if (defined($op));
	$self->{op};
    }
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}
{ package const;	# pick up constants, which start with $
    sub re {
	my	$self = shift;	# single instance in enough...
	local	*line = shift;
	undef	$ret;

	if ($line =~ /^\$([^,]+)/) {
	    $self->{value} = $1;
	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;
	}
	$ret;
    }
    sub out {
    	my $self = shift;
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	if ($gas) {
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	    # Solaris /usr/ccs/bin/as can't handle multiplications
	    # in $self->{value}
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	    $self->{value} =~ s/(?<![\w\$\.])(0x?[0-9a-f]+)/oct($1)/egi;
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	    $self->{value} =~ s/([0-9]+\s*[\*\/\%]\s*[0-9]+)/eval($1)/eg;
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	    sprintf "\$%s",$self->{value};
	} else {
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	    $self->{value} =~ s/(0b[0-1]+)/oct($1)/eig;
	    $self->{value} =~ s/0x([0-9a-f]+)/0$1h/ig if ($masm);
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	    sprintf "%s",$self->{value};
	}
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    }
}
{ package ea;		# pick up effective addresses: expr(%reg,%reg,scale)
    sub re {
	my	$self = shift;	# single instance in enough...
	local	*line = shift;
	undef	$ret;

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	# optional * ---vvv--- appears in indirect jmp/call
	if ($line =~ /^(\*?)([^\(,]*)\(([%\w,]+)\)/) {
	    $self->{asterisk} = $1;
	    $self->{label} = $2;
	    ($self->{base},$self->{index},$self->{scale})=split(/,/,$3);
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	    $self->{scale} = 1 if (!defined($self->{scale}));
	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;

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	    if ($win64 && $self->{label} =~ s/\@GOTPCREL//) {
		die if (opcode->mnemonic() ne "mov");
		opcode->mnemonic("lea");
	    }
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	    $self->{base}  =~ s/^%//;
	    $self->{index} =~ s/^%// if (defined($self->{index}));
	}
	$ret;
    }
    sub size {}
    sub out {
    	my $self = shift;
	my $sz = shift;

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	$self->{label} =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
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	$self->{label} =~ s/\.L/$decor/g;
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	# Silently convert all EAs to 64-bit. This is required for
	# elder GNU assembler and results in more compact code,
	# *but* most importantly AES module depends on this feature!
	$self->{index} =~ s/^[er](.?[0-9xpi])[d]?$/r\1/;
	$self->{base}  =~ s/^[er](.?[0-9xpi])[d]?$/r\1/;

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	# Solaris /usr/ccs/bin/as can't handle multiplications
	# in $self->{label}, new gas requires sign extension...
	use integer;
	$self->{label} =~ s/(?<![\w\$\.])(0x?[0-9a-f]+)/oct($1)/egi;
	$self->{label} =~ s/([0-9]+\s*[\*\/\%]\s*[0-9]+)/eval($1)/eg;
	$self->{label} =~ s/([0-9]+)/$1<<32>>32/eg;

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	if (!$self->{label} && $self->{index} && $self->{scale}==1 &&
	    $self->{base} =~ /(rbp|r13)/) {
		$self->{base} = $self->{index}; $self->{index} = $1;
	}

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	if ($gas) {
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	    $self->{label} =~ s/^___imp_/__imp__/   if ($flavour eq "mingw64");
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	    if (defined($self->{index})) {
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		sprintf "%s%s(%s,%%%s,%d)",$self->{asterisk},
					$self->{label},
					$self->{base}?"%$self->{base}":"",
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					$self->{index},$self->{scale};
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	    } else {
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		sprintf "%s%s(%%%s)",	$self->{asterisk},$self->{label},$self->{base};
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	    }
	} else {
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	    %szmap = (	b=>"BYTE$PTR", w=>"WORD$PTR", l=>"DWORD$PTR",
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	    		q=>"QWORD$PTR",o=>"OWORD$PTR",x=>"XMMWORD$PTR" );
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	    $self->{label} =~ s/\./\$/g;
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	    $self->{label} =~ s/(?<![\w\$\.])0x([0-9a-f]+)/0$1h/ig;
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	    $self->{label} = "($self->{label})" if ($self->{label} =~ /[\*\+\-\/]/);
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	    $sz="q" if ($self->{asterisk} || opcode->mnemonic() eq "movq");
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	    $sz="l" if (opcode->mnemonic() eq "movd");
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	    if (defined($self->{index})) {
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		sprintf "%s[%s%s*%d%s]",$szmap{$sz},
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					$self->{label}?"$self->{label}+":"",
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					$self->{index},$self->{scale},
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					$self->{base}?"+$self->{base}":"";
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	    } elsif ($self->{base} eq "rip") {
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		sprintf "%s[%s]",$szmap{$sz},$self->{label};
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	    } else {
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		sprintf "%s[%s%s]",$szmap{$sz},
					$self->{label}?"$self->{label}+":"",
					$self->{base};
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	    }
	}
    }
}
{ package register;	# pick up registers, which start with %.
    sub re {
	my	$class = shift;	# muliple instances...
	my	$self = {};
	local	*line = shift;
	undef	$ret;

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	# optional * ---vvv--- appears in indirect jmp/call
	if ($line =~ /^(\*?)%(\w+)/) {
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	    bless $self,$class;
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	    $self->{asterisk} = $1;
	    $self->{value} = $2;
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	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;
	}
	$ret;
    }
    sub size {
	my	$self = shift;
	undef	$ret;

	if    ($self->{value} =~ /^r[\d]+b$/i)	{ $ret="b"; }
	elsif ($self->{value} =~ /^r[\d]+w$/i)	{ $ret="w"; }
	elsif ($self->{value} =~ /^r[\d]+d$/i)	{ $ret="l"; }
	elsif ($self->{value} =~ /^r[\w]+$/i)	{ $ret="q"; }
	elsif ($self->{value} =~ /^[a-d][hl]$/i){ $ret="b"; }
	elsif ($self->{value} =~ /^[\w]{2}l$/i)	{ $ret="b"; }
	elsif ($self->{value} =~ /^[\w]{2}$/i)	{ $ret="w"; }
	elsif ($self->{value} =~ /^e[a-z]{2}$/i){ $ret="l"; }

	$ret;
    }
    sub out {
    	my $self = shift;
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	if ($gas)	{ sprintf "%s%%%s",$self->{asterisk},$self->{value}; }
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	else		{ $self->{value}; }
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    }
}
{ package label;	# pick up labels, which end with :
    sub re {
	my	$self = shift;	# single instance is enough...
	local	*line = shift;
	undef	$ret;

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	if ($line =~ /(^[\.\w]+)\:/) {
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	    $self->{value} = $1;
	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;

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	    $self->{value} =~ s/^\.L/$decor/;
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	}
	$ret;
    }
    sub out {
	my $self = shift;

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	if ($gas) {
	    my $func = ($globals{$self->{value}} or $self->{value}) . ":";
	    if ($win64	&&
			$current_function->{name} eq $self->{value} &&
			$current_function->{abi} eq "svr4") {
		$func .= "\n";
		$func .= "	movq	%rdi,8(%rsp)\n";
		$func .= "	movq	%rsi,16(%rsp)\n";
		$func .= "	movq	%rsp,%rax\n";
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		$func .= "${decor}SEH_begin_$current_function->{name}:\n";
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		my $narg = $current_function->{narg};
		$narg=6 if (!defined($narg));
		$func .= "	movq	%rcx,%rdi\n" if ($narg>0);
		$func .= "	movq	%rdx,%rsi\n" if ($narg>1);
		$func .= "	movq	%r8,%rdx\n"  if ($narg>2);
		$func .= "	movq	%r9,%rcx\n"  if ($narg>3);
		$func .= "	movq	40(%rsp),%r8\n" if ($narg>4);
		$func .= "	movq	48(%rsp),%r9\n" if ($narg>5);
	    }
	    $func;
	} elsif ($self->{value} ne "$current_function->{name}") {
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	    $self->{value} .= ":" if ($masm && $ret!~m/^\$/);
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	    $self->{value} . ":";
	} elsif ($win64 && $current_function->{abi} eq "svr4") {
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	    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";
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	    $func .= "	mov	rax,rsp\n";
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	    $func .= "${decor}SEH_begin_$current_function->{name}:";
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	    $func .= ":" if ($masm);
	    $func .= "\n";
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	    my $narg = $current_function->{narg};
	    $narg=6 if (!defined($narg));
	    $func .= "	mov	rdi,rcx\n" if ($narg>0);
	    $func .= "	mov	rsi,rdx\n" if ($narg>1);
	    $func .= "	mov	rdx,r8\n"  if ($narg>2);
	    $func .= "	mov	rcx,r9\n"  if ($narg>3);
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	    $func .= "	mov	r8,QWORD${PTR}[40+rsp]\n" if ($narg>4);
	    $func .= "	mov	r9,QWORD${PTR}[48+rsp]\n" if ($narg>5);
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	    $func .= "\n";
	} else {
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	   "$current_function->{name}".
			($nasm ? ":" : "\tPROC $current_function->{scope}");
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	}
    }
}
{ package expr;		# pick up expressioins
    sub re {
	my	$self = shift;	# single instance is enough...
	local	*line = shift;
	undef	$ret;

	if ($line =~ /(^[^,]+)/) {
	    $self->{value} = $1;
	    $ret = $self;
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;

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	    $self->{value} =~ s/\@PLT// if (!$elf);
	    $self->{value} =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
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	    $self->{value} =~ s/\.L/$decor/g;
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	}
	$ret;
    }
    sub out {
	my $self = shift;
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	if ($nasm && opcode->mnemonic()=~m/^j/) {
	    "NEAR ".$self->{value};
	} else {
	    $self->{value};
	}
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    }
}
{ package directive;	# pick up directives, which start with .
    sub re {
	my	$self = shift;	# single instance is enough...
	local	*line = shift;
	undef	$ret;
	my	$dir;
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	my	%opcode =	# lea 2f-1f(%rip),%dst; 1: nop; 2:
		(	"%rax"=>0x01058d48,	"%rcx"=>0x010d8d48,
			"%rdx"=>0x01158d48,	"%rbx"=>0x011d8d48,
			"%rsp"=>0x01258d48,	"%rbp"=>0x012d8d48,
			"%rsi"=>0x01358d48,	"%rdi"=>0x013d8d48,
			"%r8" =>0x01058d4c,	"%r9" =>0x010d8d4c,
			"%r10"=>0x01158d4c,	"%r11"=>0x011d8d4c,
			"%r12"=>0x01258d4c,	"%r13"=>0x012d8d4c,
			"%r14"=>0x01358d4c,	"%r15"=>0x013d8d4c	);
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	if ($line =~ /^\s*(\.\w+)/) {
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	    $dir = $1;
	    $ret = $self;
	    undef $self->{value};
	    $line = substr($line,@+[0]); $line =~ s/^\s+//;

	    SWITCH: for ($dir) {
		/\.picmeup/ && do { if ($line =~ /(%r[\w]+)/i) {
			    		$dir="\t.long";
					$line=sprintf "0x%x,0x90000000",$opcode{$1};
				    }
				    last;
				  };
		/\.global|\.globl|\.extern/
			    && do { $globals{$line} = $prefix . $line;
				    $line = $globals{$line} if ($prefix);
				    last;
				  };
		/\.type/    && do { ($sym,$type,$narg) = split(',',$line);
				    if ($type eq "\@function") {
					undef $current_function;
					$current_function->{name} = $sym;
					$current_function->{abi}  = "svr4";
					$current_function->{narg} = $narg;
					$current_function->{scope} = defined($globals{$sym})?"PUBLIC":"PRIVATE";
				    } elsif ($type eq "\@abi-omnipotent") {
					undef $current_function;
					$current_function->{name} = $sym;
					$current_function->{scope} = defined($globals{$sym})?"PUBLIC":"PRIVATE";
				    }
				    $line =~ s/\@abi\-omnipotent/\@function/;
				    $line =~ s/\@function.*/\@function/;
				    last;
				  };
		/\.asciz/   && do { if ($line =~ /^"(.*)"$/) {
					$dir  = ".byte";
					$line = join(",",unpack("C*",$1),0);
				    }
				    last;
				  };
483 484 485 486 487
		/\.rva|\.long|\.quad/
			    && do { $line =~ s/([_a-z][_a-z0-9]*)/$globals{$1} or $1/gei;
				    $line =~ s/\.L/$decor/g;
				    last;
				  };
488 489 490 491 492 493
	    }

	    if ($gas) {
		$self->{value} = $dir . "\t" . $line;

		if ($dir =~ /\.extern/) {
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		    $self->{value} = ""; # swallow extern
495 496 497 498 499 500 501 502 503
		} elsif (!$elf && $dir =~ /\.type/) {
		    $self->{value} = "";
		    $self->{value} = ".def\t" . ($globals{$1} or $1) . ";\t" .
				(defined($globals{$1})?".scl 2;":".scl 3;") .
				"\t.type 32;\t.endef"
				if ($win64 && $line =~ /([^,]+),\@function/);
		} elsif (!$elf && $dir =~ /\.size/) {
		    $self->{value} = "";
		    if (defined($current_function)) {
504
			$self->{value} .= "${decor}SEH_end_$current_function->{name}:"
505 506 507 508 509 510 511 512 513 514 515 516 517
				if ($win64 && $current_function->{abi} eq "svr4");
			undef $current_function;
		    }
		} elsif (!$elf && $dir =~ /\.align/) {
		    $self->{value} = ".p2align\t" . (log($line)/log(2));
		} elsif ($dir eq ".section") {
		    $current_segment=$line;
		    if (!$elf && $current_segment eq ".init") {
			if	($flavour eq "macosx")	{ $self->{value} = ".mod_init_func"; }
			elsif	($flavour eq "mingw64")	{ $self->{value} = ".section\t.ctors"; }
		    }
		} elsif ($dir =~ /\.(text|data)/) {
		    $current_segment=".$1";
518 519 520 521 522
		} elsif ($dir =~ /\.hidden/) {
		    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";
523
		    $self->{value} =~ s|,([0-9]+),([0-9]+)$|",$1,".log($2)/log(2)|e if ($flavour eq "macosx");
524
		}
525 526 527 528
		$line = "";
		return $self;
	    }

529
	    # non-gas case or nasm/masm
530
	    SWITCH: for ($dir) {
531
		/\.text/    && do { my $v=undef;
532
				    if ($nasm) {
533
					$v="section	.text code align=64\n";
534 535
				    } else {
					$v="$current_segment\tENDS\n" if ($current_segment);
536
					$current_segment = ".text\$";
537 538 539 540
					$v.="$current_segment\tSEGMENT ";
					$v.=$masm>=$masmref ? "ALIGN(64)" : "PAGE";
					$v.=" 'CODE'";
				    }
541 542 543
				    $self->{value} = $v;
				    last;
				  };
544 545 546 547 548 549 550 551 552 553 554 555
		/\.data/    && do { my $v=undef;
				    if ($nasm) {
					$v="section	.data data align=8\n";
				    } else {
					$v="$current_segment\tENDS\n" if ($current_segment);
					$current_segment = "_DATA";
					$v.="$current_segment\tSEGMENT";
				    }
				    $self->{value} = $v;
				    last;
				  };
		/\.section/ && do { my $v=undef;
556 557
				    $line =~ s/([^,]*).*/$1/;
				    $line = ".CRT\$XCU" if ($line eq ".init");
558 559 560 561 562
				    if ($nasm) {
					$v="section	$line";
					if ($line=~/\.([px])data/) {
					    $v.=" rdata align=";
					    $v.=$1 eq "p"? 4 : 8;
563 564
					} elsif ($line=~/\.CRT\$/i) {
					    $v.=" rdata align=8";
565 566 567 568 569 570 571
					}
				    } else {
					$v="$current_segment\tENDS\n" if ($current_segment);
					$v.="$line\tSEGMENT";
					if ($line=~/\.([px])data/) {
					    $v.=" READONLY";
					    $v.=" ALIGN(".($1 eq "p" ? 4 : 8).")" if ($masm>=$masmref);
572
					} elsif ($line=~/\.CRT\$/i) {
573 574
					    $v.=" READONLY ";
					    $v.=$masm>=$masmref ? "ALIGN(8)" : "DWORD";
575 576 577 578 579 580
					}
				    }
				    $current_segment = $line;
				    $self->{value} = $v;
				    last;
				  };
581
		/\.extern/  && do { $self->{value}  = "EXTERN\t".$line;
582 583 584
				    $self->{value} .= ":NEAR" if ($masm);
				    last;
				  };
585 586 587
		/\.globl|.global/
			    && do { $self->{value}  = $masm?"PUBLIC":"global";
				    $self->{value} .= "\t".$line;
588 589
				    last;
				  };
590
		/\.size/    && do { if (defined($current_function)) {
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					undef $self->{value};
					if ($current_function->{abi} eq "svr4") {
593
					    $self->{value}="${decor}SEH_end_$current_function->{name}:";
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594 595
					    $self->{value}.=":\n" if($masm);
					}
596
					$self->{value}.="$current_function->{name}\tENDP" if($masm && $current_function->{name});
597 598 599 600 601
					undef $current_function;
				    }
				    last;
				  };
		/\.align/   && do { $self->{value} = "ALIGN\t".$line; last; };
602
		/\.(value|long|rva|quad)/
603
			    && do { my $sz  = substr($1,0,1);
604
				    my @arr = split(/,\s*/,$line);
605
				    my $last = pop(@arr);
606
				    my $conv = sub  {	my $var=shift;
607
							$var=~s/^(0b[0-1]+)/oct($1)/eig;
608
							$var=~s/^0x([0-9a-f]+)/0$1h/ig if ($masm);
609
							if ($sz eq "D" && ($current_segment=~/.[px]data/ || $dir eq ".rva"))
610
							{ $var=~s/([_a-z\$\@][_a-z0-9\$\@]*)/$nasm?"$1 wrt ..imagebase":"imagerel $1"/egi; }
611
							$var;
612
						    };  
613

614
				    $sz =~ tr/bvlrq/BWDDQ/;
615
				    $self->{value} = "\tD$sz\t";
616 617
				    for (@arr) { $self->{value} .= &$conv($_).","; }
				    $self->{value} .= &$conv($last);
618 619
				    last;
				  };
620
		/\.byte/    && do { my @str=split(/,\s*/,$line);
621
				    map(s/(0b[0-1]+)/oct($1)/eig,@str);
622
				    map(s/0x([0-9a-f]+)/0$1h/ig,@str) if ($masm);	
623
				    while ($#str>15) {
624
					$self->{value}.="DB\t"
625 626
						.join(",",@str[0..15])."\n";
					foreach (0..15) { shift @str; }
627
				    }
628 629
				    $self->{value}.="DB\t"
						.join(",",@str) if (@str);
630 631
				    last;
				  };
632 633 634
		/\.comm/    && do { my @str=split(/,\s*/,$line);
				    my $v=undef;
				    if ($nasm) {
635
					$v.="common	$prefix@str[0] @str[1]";
636 637
				    } else {
					$v="$current_segment\tENDS\n" if ($current_segment);
638
					$current_segment = "_DATA";
639 640 641 642 643 644
					$v.="$current_segment\tSEGMENT\n";
					$v.="COMM	@str[0]:DWORD:".@str[1]/4;
				    }
				    $self->{value} = $v;
				    last;
				  };
645 646 647 648 649 650 651 652 653 654 655 656
	    }
	    $line = "";
	}

	$ret;
    }
    sub out {
	my $self = shift;
	$self->{value};
    }
}

657 658
sub rex {
 local *opcode=shift;
659 660 661 662 663
 my ($dst,$src,$rex)=@_;

   $rex|=0x04 if($dst>=8);
   $rex|=0x01 if($src>=8);
   push @opcode,($rex|0x40) if ($rex);
664 665
}

666
# older gas and ml64 don't handle SSE>2 instructions
667 668 669
my %regrm = (	"%eax"=>0, "%ecx"=>1, "%edx"=>2, "%ebx"=>3,
		"%esp"=>4, "%ebp"=>5, "%esi"=>6, "%edi"=>7	);

670 671 672
my $movq = sub {	# elderly gas can't handle inter-register movq
  my $arg = shift;
  my @opcode=(0x66);
673
    if ($arg =~ /%xmm([0-9]+),\s*%r(\w+)/) {
674 675 676 677 678 679
	my ($src,$dst)=($1,$2);
	if ($dst !~ /[0-9]+/)	{ $dst = $regrm{"%e$dst"}; }
	rex(\@opcode,$src,$dst,0x8);
	push @opcode,0x0f,0x7e;
	push @opcode,0xc0|(($src&7)<<3)|($dst&7);	# ModR/M
	@opcode;
680
    } elsif ($arg =~ /%r(\w+),\s*%xmm([0-9]+)/) {
681 682 683 684 685 686 687 688 689 690 691
	my ($src,$dst)=($2,$1);
	if ($dst !~ /[0-9]+/)	{ $dst = $regrm{"%e$dst"}; }
	rex(\@opcode,$src,$dst,0x8);
	push @opcode,0x0f,0x6e;
	push @opcode,0xc0|(($src&7)<<3)|($dst&7);	# ModR/M
	@opcode;
    } else {
	();
    }
};

692
my $pextrd = sub {
693
    if (shift =~ /\$([0-9]+),\s*%xmm([0-9]+),\s*(%\w+)/) {
694 695 696
      my @opcode=(0x66);
	$imm=$1;
	$src=$2;
697
	$dst=$3;
698 699 700 701 702 703
	if ($dst =~ /%r([0-9]+)d/)	{ $dst = $1; }
	elsif ($dst =~ /%e/)		{ $dst = $regrm{$dst}; }
	rex(\@opcode,$src,$dst);
	push @opcode,0x0f,0x3a,0x16;
	push @opcode,0xc0|(($src&7)<<3)|($dst&7);	# ModR/M
	push @opcode,$imm;
704
	@opcode;
705
    } else {
706
	();
707
    }
708
};
709 710

my $pinsrd = sub {
711
    if (shift =~ /\$([0-9]+),\s*(%\w+),\s*%xmm([0-9]+)/) {
712 713
      my @opcode=(0x66);
	$imm=$1;
714 715
	$src=$2;
	$dst=$3;
716
	if ($src =~ /%r([0-9]+)/)	{ $src = $1; }
717 718 719 720 721
	elsif ($src =~ /%e/)		{ $src = $regrm{$src}; }
	rex(\@opcode,$dst,$src);
	push @opcode,0x0f,0x3a,0x22;
	push @opcode,0xc0|(($dst&7)<<3)|($src&7);	# ModR/M
	push @opcode,$imm;
722
	@opcode;
723
    } else {
724
	();
725
    }
726
};
727 728

my $pshufb = sub {
729
    if (shift =~ /%xmm([0-9]+),\s*%xmm([0-9]+)/) {
730
      my @opcode=(0x66);
731
	rex(\@opcode,$2,$1);
732
	push @opcode,0x0f,0x38,0x00;
733 734
	push @opcode,0xc0|($1&7)|(($2&7)<<3);		# ModR/M
	@opcode;
735
    } else {
736
	();
737
    }
738
};
739

740
my $palignr = sub {
741
    if (shift =~ /\$([0-9]+),\s*%xmm([0-9]+),\s*%xmm([0-9]+)/) {
742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766
      my @opcode=(0x66);
	rex(\@opcode,$3,$2);
	push @opcode,0x0f,0x3a,0x0f;
	push @opcode,0xc0|($2&7)|(($3&7)<<3);		# ModR/M
	push @opcode,$1;
	@opcode;
    } else {
	();
    }
};

my $pclmulqdq = sub {
    if (shift =~ /\$([x0-9a-f]+),\s*%xmm([0-9]+),\s*%xmm([0-9]+)/) {
      my @opcode=(0x66);
	rex(\@opcode,$3,$2);
	push @opcode,0x0f,0x3a,0x44;
	push @opcode,0xc0|($2&7)|(($3&7)<<3);		# ModR/M
	my $c=$1;
	push @opcode,$c=~/^0/?oct($c):$c;
	@opcode;
    } else {
	();
    }
};

767 768 769 770 771 772 773 774 775 776 777 778 779
my $rdrand = sub {
    if (shift =~ /%[er](\w+)/) {
      my @opcode=();
      my $dst=$1;
	if ($dst !~ /[0-9]+/) { $dst = $regrm{"%e$dst"}; }
	rex(\@opcode,0,$1,8);
	push @opcode,0x0f,0xc7,0xf0|($dst&7);
	@opcode;
    } else {
	();
    }
};

780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818
sub rxb {
 local *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;
}

my $vprotd = sub {
    if (shift =~ /\$([x0-9a-f]+),\s*%xmm([0-9]+),\s*%xmm([0-9]+)/) {
      my @opcode=(0x8f);
	rxb(\@opcode,$3,$2,-1,0x08);
	push @opcode,0x78,0xc2;
	push @opcode,0xc0|($2&7)|(($3&7)<<3);		# ModR/M
	my $c=$1;
	push @opcode,$c=~/^0/?oct($c):$c;
	@opcode;
    } else {
	();
    }
};

my $vprotq = sub {
    if (shift =~ /\$([x0-9a-f]+),\s*%xmm([0-9]+),\s*%xmm([0-9]+)/) {
      my @opcode=(0x8f);
	rxb(\@opcode,$3,$2,-1,0x08);
	push @opcode,0x78,0xc3;
	push @opcode,0xc0|($2&7)|(($3&7)<<3);		# ModR/M
	my $c=$1;
	push @opcode,$c=~/^0/?oct($c):$c;
	@opcode;
    } else {
	();
    }
};

819 820 821
if ($nasm) {
    print <<___;
default	rel
822
%define XMMWORD
823 824 825 826 827 828
___
} elsif ($masm) {
    print <<___;
OPTION	DOTNAME
___
}
829 830 831 832
while($line=<>) {

    chomp($line);

833 834 835
    $line =~ s|[#!].*$||;	# get rid of asm-style comments...
    $line =~ s|/\*.*\*/||;	# ... and C-style comments...
    $line =~ s|^\s+||;		# ... and skip white spaces in beginning
836 837 838

    undef $label;
    undef $opcode;
839
    undef @args;
840 841 842 843 844

    if ($label=label->re(\$line))	{ print $label->out(); }

    if (directive->re(\$line)) {
	printf "%s",directive->out();
845 846 847 848 849 850 851 852 853 854
    } elsif ($opcode=opcode->re(\$line)) {
	my $asm = eval("\$".$opcode->mnemonic());
	undef @bytes;
	
	if ((ref($asm) eq 'CODE') && scalar(@bytes=&$asm($line))) {
	    print $gas?".byte\t":"DB\t",join(',',@bytes),"\n";
	    next;
	}

	ARGUMENT: while (1) {
855
	my $arg;
856

857 858 859 860 861
	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; }
862

863
	push @args,$arg;
864

865
	last ARGUMENT if ($line !~ /^,/);
866

867
	$line =~ s/^,\s*//;
868 869
	} # ARGUMENT:

870 871
	if ($#args>=0) {
	    my $insn;
872 873
	    my $sz=opcode->size();

874
	    if ($gas) {
875
		$insn = $opcode->out($#args>=1?$args[$#args]->size():$sz);
876
		@args = map($_->out($sz),@args);
877
		printf "\t%s\t%s",$insn,join(",",@args);
878
	    } else {
879
		$insn = $opcode->out();
880 881
		foreach (@args) {
		    my $arg = $_->out();
882 883 884
		    # $insn.=$sz compensates for movq, pinsrw, ...
		    if ($arg =~ /^xmm[0-9]+$/) { $insn.=$sz; $sz="x" if(!$sz); last; }
		    if ($arg =~ /^mm[0-9]+$/)  { $insn.=$sz; $sz="q" if(!$sz); last; }
885
		}
886
		@args = reverse(@args);
887
		undef $sz if ($nasm && $opcode->mnemonic() eq "lea");
888
		printf "\t%s\t%s",$insn,join(",",map($_->out($sz),@args));
889 890 891 892 893 894 895 896 897
	    }
	} else {
	    printf "\t%s",$opcode->out();
	}
    }

    print $line,"\n";
}

898 899
print "\n$current_segment\tENDS\n"	if ($current_segment && $masm);
print "END\n"				if ($masm);
900 901 902

close STDOUT;

903
#################################################
904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939
# Cross-reference x86_64 ABI "card"
#
# 		Unix		Win64
# %rax		*		*
# %rbx		-		-
# %rcx		#4		#1
# %rdx		#3		#2
# %rsi		#2		-
# %rdi		#1		-
# %rbp		-		-
# %rsp		-		-
# %r8		#5		#3
# %r9		#6		#4
# %r10		*		*
# %r11		*		*
# %r12		-		-
# %r13		-		-
# %r14		-		-
# %r15		-		-
# 
# (*)	volatile register
# (-)	preserved by callee
# (#)	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
# [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
# allocating a frame.
#
# In Win64 terms N*8 bytes on top of stack is argument transfer area,
# which belongs to/can be overwritten by callee. N is the number of
# arguments passed to callee, *but* not less than 4! This means that
# upon function entry point 5th argument resides at 40(%rsp), as well
# as that 32 bytes from 8(%rsp) can always be used as temporal
940 941
# storage [without allocating a frame]. One can actually argue that
# one can assume a "red zone" above stack pointer under Win64 as well.
A
Andy Polyakov 已提交
942 943
# Point is that at apparently no occasion Windows kernel would alter
# the area above user stack pointer in true asynchronous manner...
944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966
#
# All the above means that if assembler programmer adheres to Unix
# register and stack layout, but disregards the "red zone" existense,
# it's possible to use following prologue and epilogue to "gear" from
# Unix to Win64 ABI in leaf functions with not more than 6 arguments.
#
# omnipotent_function:
# ifdef WIN64
#	movq	%rdi,8(%rsp)
#	movq	%rsi,16(%rsp)
#	movq	%rcx,%rdi	; if 1st argument is actually present
#	movq	%rdx,%rsi	; if 2nd argument is actually ...
#	movq	%r8,%rdx	; if 3rd argument is ...
#	movq	%r9,%rcx	; if 4th argument ...
#	movq	40(%rsp),%r8	; if 5th ...
#	movq	48(%rsp),%r9	; if 6th ...
# endif
#	...
# ifdef WIN64
#	movq	8(%rsp),%rdi
#	movq	16(%rsp),%rsi
# endif
#	ret
967
#
968 969 970
#################################################
# Win64 SEH, Structured Exception Handling.
#
971 972 973 974 975 976 977 978 979 980 981 982 983 984
# Unlike on Unix systems(*) lack of Win64 stack unwinding information
# has undesired side-effect at run-time: if an exception is raised in
# assembler subroutine such as those in question (basically we're
# referring to segmentation violations caused by malformed input
# parameters), the application is briskly terminated without invoking
# any exception handlers, most notably without generating memory dump
# or any user notification whatsoever. This poses a problem. It's
# possible to address it by registering custom language-specific
# handler that would restore processor context to the state at
# subroutine entry point and return "exception is not handled, keep
# unwinding" code. Writing such handler can be a challenge... But it's
# doable, though requires certain coding convention. Consider following
# snippet:
#
985
# .type	function,@function
986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004
# function:
#	movq	%rsp,%rax	# copy rsp to volatile register
#	pushq	%r15		# save non-volatile registers
#	pushq	%rbx
#	pushq	%rbp
#	movq	%rsp,%r11
#	subq	%rdi,%r11	# prepare [variable] stack frame
#	andq	$-64,%r11
#	movq	%rax,0(%r11)	# check for exceptions
#	movq	%r11,%rsp	# allocate [variable] stack frame
#	movq	%rax,0(%rsp)	# save original rsp value
# magic_point:
#	...
#	movq	0(%rsp),%rcx	# pull original rsp value
#	movq	-24(%rcx),%rbp	# restore non-volatile registers
#	movq	-16(%rcx),%rbx
#	movq	-8(%rcx),%r15
#	movq	%rcx,%rsp	# restore original rsp
#	ret
1005
# .size function,.-function
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#
# The key is that up to magic_point copy of original rsp value remains
# in chosen volatile register and no non-volatile register, except for
# rsp, is modified. While past magic_point rsp remains constant till
# the very end of the function. In this case custom language-specific
# exception handler would look like this:
#
# EXCEPTION_DISPOSITION handler (EXCEPTION_RECORD *rec,ULONG64 frame,
#		CONTEXT *context,DISPATCHER_CONTEXT *disp)
1015 1016
# {	ULONG64 *rsp = (ULONG64 *)context->Rax;
#	if (context->Rip >= magic_point)
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#	{   rsp = ((ULONG64 **)context->Rsp)[0];
#	    context->Rbp = rsp[-3];
#	    context->Rbx = rsp[-2];
#	    context->R15 = rsp[-1];
#	}
#	context->Rsp = (ULONG64)rsp;
#	context->Rdi = rsp[1];
#	context->Rsi = rsp[2];
#
#	memcpy (disp->ContextRecord,context,sizeof(CONTEXT));
#	RtlVirtualUnwind(UNW_FLAG_NHANDLER,disp->ImageBase,
#		dips->ControlPc,disp->FunctionEntry,disp->ContextRecord,
#		&disp->HandlerData,&disp->EstablisherFrame,NULL);
#	return ExceptionContinueSearch;
# }
#
# It's appropriate to implement this handler in assembler, directly in
# function's module. In order to do that one has to know members'
# offsets in CONTEXT and DISPATCHER_CONTEXT structures and some constant
# values. Here they are:
#
#	CONTEXT.Rax				120
#	CONTEXT.Rcx				128
#	CONTEXT.Rdx				136
#	CONTEXT.Rbx				144
#	CONTEXT.Rsp				152
#	CONTEXT.Rbp				160
#	CONTEXT.Rsi				168
#	CONTEXT.Rdi				176
#	CONTEXT.R8				184
#	CONTEXT.R9				192
#	CONTEXT.R10				200
#	CONTEXT.R11				208
#	CONTEXT.R12				216
#	CONTEXT.R13				224
#	CONTEXT.R14				232
#	CONTEXT.R15				240
#	CONTEXT.Rip				248
1055
#	CONTEXT.Xmm6				512
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067
#	sizeof(CONTEXT)				1232
#	DISPATCHER_CONTEXT.ControlPc		0
#	DISPATCHER_CONTEXT.ImageBase		8
#	DISPATCHER_CONTEXT.FunctionEntry	16
#	DISPATCHER_CONTEXT.EstablisherFrame	24
#	DISPATCHER_CONTEXT.TargetIp		32
#	DISPATCHER_CONTEXT.ContextRecord	40
#	DISPATCHER_CONTEXT.LanguageHandler	48
#	DISPATCHER_CONTEXT.HandlerData		56
#	UNW_FLAG_NHANDLER			0
#	ExceptionContinueSearch			1
#
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# In order to tie the handler to the function one has to compose
# couple of structures: one for .xdata segment and one for .pdata.
#
1071
# UNWIND_INFO structure for .xdata segment would be
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#
# function_unwind_info:
#	.byte	9,0,0,0
1075
#	.rva	handler
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#
# This structure designates exception handler for a function with
# zero-length prologue, no stack frame or frame register.
#
# To facilitate composing of .pdata structures, auto-generated "gear"
# prologue copies rsp value to rax and denotes next instruction with
1082
# .LSEH_begin_{function_name} label. This essentially defines the SEH
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# styling rule mentioned in the beginning. Position of this label is
# chosen in such manner that possible exceptions raised in the "gear"
# prologue would be accounted to caller and unwound from latter's frame.
1086
# End of function is marked with respective .LSEH_end_{function_name}
1087 1088
# label. To summarize, .pdata segment would contain
#
1089 1090 1091
#	.rva	.LSEH_begin_function
#	.rva	.LSEH_end_function
#	.rva	function_unwind_info
1092 1093
#
# Reference to functon_unwind_info from .xdata segment is the anchor.
1094
# In case you wonder why references are 32-bit .rvas and not 64-bit
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# .quads. References put into these two segments are required to be
# *relative* to the base address of the current binary module, a.k.a.
# image base. No Win64 module, be it .exe or .dll, can be larger than
# 2GB and thus such relative references can be and are accommodated in
# 32 bits.
#
# Having reviewed the example function code, one can argue that "movq
# %rsp,%rax" above is redundant. It is not! Keep in mind that on Unix
# rax would contain an undefined value. If this "offends" you, use
# another register and refrain from modifying rax till magic_point is
# reached, i.e. as if it was a non-volatile register. If more registers
# are required prior [variable] frame setup is completed, note that
# nobody says that you can have only one "magic point." You can
# "liberate" non-volatile registers by denoting last stack off-load
# instruction and reflecting it in finer grade unwind logic in handler.
# After all, isn't it why it's called *language-specific* handler...
#
# Attentive reader can notice that exceptions would be mishandled in
# auto-generated "gear" epilogue. Well, exception effectively can't
# occur there, because if memory area used by it was subject to
# segmentation violation, then it would be raised upon call to the
# function (and as already mentioned be accounted to caller, which is
# not a problem). If you're still not comfortable, then define tail
# "magic point" just prior ret instruction and have handler treat it...
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#
# (*)	Note that we're talking about run-time, not debug-time. Lack of
#	unwind information makes debugging hard on both Windows and
#	Unix. "Unlike" referes to the fact that on Unix signal handler
#	will always be invoked, core dumped and appropriate exit code
#	returned to parent (for user notification).