470 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Perl
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			470 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			Perl
		
	
	
		
			Executable File
		
	
	
	
	
#!/usr/bin/perl
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# Copyright 2003, 2004, 2005, 2006, 2008, 2009, 2010 Red Hat, Inc.
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#
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# This file is part of Cygwin.
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#
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# This software is a copyrighted work licensed under the terms of the
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# Cygwin license.  Please consult the file "CYGWIN_LICENSE" for
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# details.
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#
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use strict;
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sub cleanup(@);
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my $in = shift;
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my $tls_offsets = shift;
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my $out = shift;
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my $sigfe = shift;
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$main::first = 0;
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if (!defined($in) || !defined($out) || !defined($sigfe)) {
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    die "usage: $0 deffile.in cygtls.h deffile.def sigfe.s\n";
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}
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require $tls_offsets;
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open(IN, $in) or die "$0: couldn't open \"$in\" - $!\n";
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my @top = ();
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while (<IN>) {
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    push(@top, cleanup $_);
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    last if /^\s*exports\s*$/i;
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}
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my $libline = cleanup scalar(<IN>);
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my @in = cleanup <IN>;
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close(IN);
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my %sigfe = ();
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my @data = ();
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my @nosigfuncs = ();
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my @text = ();
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for (@in) {
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    chomp;
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    s/\sDATA$//o and do {
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	push @data, $_;
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	next;
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    };
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    if (/=/o) {
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	if (s/\s+NOSIGFE\s*$//) {
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	    # nothing
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	} elsif (s/ SIGFE(_MAYBE)?$//) {
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	    my $func = (split(' '))[2];
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	    my $maybe = lc $1 . '_';
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	    $sigfe{$func} = '_sigfe' . $maybe . $func;
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	}
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    } else {
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	my ($func, $sigfe) = m%^\s*(\S+)(?:\s+((?:NO)?SIGFE(?:_MAYBE)?))?$%o;
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	if (defined($sigfe) && $sigfe =~ /^NO/o) {
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	    $_ = $func;
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	} else {
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	    $sigfe ||= 'sigfe';
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	    $_ = '_' . lc($sigfe) . '_' . $func;
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	    $sigfe{$func} = $_;
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	    $_ = $func . ' = ' . $_;
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	}
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    }
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    s/(\S)\s+(\S)/$1 $2/go;
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    s/(\S)\s+$/$1/o;
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    s/^\s+(\S)/$1/o;
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    push @text, $_;
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}
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for (@text) {
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    my ($alias, $func) = /^(\S+) = (\S+)\s*$/o;
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    $_ = $alias . ' = ' . $sigfe{$func}
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      if defined($func) && $sigfe{$func};
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}
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open(OUT, '>', $out) or die "$0: couldn't open \"$out\" - $!\n";
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push @top, (map {$_ . " DATA\n"} @data), (map {$_ . "\n"} @text);
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print OUT @top;
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close OUT;
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open(SIGFE, '>', $sigfe) or die "$0: couldn't open sigfe file \"$sigfe\" - $!\n";
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for my $k (sort keys %sigfe) {
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    print SIGFE fefunc($k, $sigfe{$k});
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}
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close SIGFE;
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sub fefunc {
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    my $func = '_' . shift;
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    my $fe = '_' . shift;
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    my $sigfe_func = ($fe =~ /^(.*)$func/)[0];
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    my $extra;
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    my $res = <<EOF;
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	.extern	$func
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	.global	$fe
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$fe:
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	pushl	\$$func
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	jmp	$sigfe_func
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EOF
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    if (!$main::first++) {
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	$res = <<EOF . longjmp () . $res;
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	.text
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__sigfe_maybe:
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	pushl	%ebx
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	pushl	%edx
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	movl	%fs:4,%ebx				# location of bottom of stack
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	addl	\$$tls::initialized,%ebx		# where we will be looking
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	cmpl	%ebx,%esp				# stack loc > than tls
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	jge	0f					# yep.  we don't have a tls.
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	subl	\$$tls::initialized,%ebx		# where we will be looking
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	movl	$tls::initialized(%ebx),%eax
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	cmpl	\$0xc763173f,%eax			# initialized?
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	je	1f
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0:	popl	%edx
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	popl	%ebx
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	ret
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__sigfe:
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	pushl	%ebx
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	pushl	%edx
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	movl	%fs:4,%ebx				# location of bottom of stack
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1:	movl	\$1,%eax				# potential lock value
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	xchgl	%eax,$tls::stacklock(%ebx)		# see if we can grab it
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	movl	%eax,$tls::spinning(%ebx)		# flag if we are waiting for lock
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	testl	%eax,%eax				# it will be zero
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	jz	2f					#  if so
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	call	_yield					# should be a short-time thing, so
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	jmp	1b					# sleep and loop
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2:	movl	\$4,%eax				# have the lock, now increment the
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	xadd	%eax,$tls::stackptr(%ebx)		#  stack pointer and get pointer
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	leal	__sigbe,%edx				# new place to return to
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	xchgl	%edx,12(%esp)				# exchange with real return value
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	movl	%edx,(%eax)				# store real return value on alt stack
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	incl	$tls::incyg(%ebx)
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	decl	$tls::stacklock(%ebx)			# remove lock
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	popl	%edx					# restore saved value
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	popl	%ebx
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	ret
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	.global	__sigbe
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__sigbe:						# return here after cygwin syscall
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	pushl	%eax					# don't clobber
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	pushl	%ebx					# tls pointer
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1:	movl	%fs:4,%ebx				# address of bottom of tls
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	movl	\$1,%eax				# potential lock value
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	xchgl	%eax,$tls::stacklock(%ebx)		# see if we can grab it
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	movl	%eax,$tls::spinning(%ebx)		# flag if we are waiting for lock
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	testl	%eax,%eax				# it will be zero
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	jz	2f					#  if so
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	call	_yield					# sleep
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	jmp	1b					#  and loop
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2:	movl	\$-4,%eax				# now decrement aux stack
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	xadd	%eax,$tls::stackptr(%ebx)		#  and get pointer
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	movl	-4(%eax),%eax				# get return address from signal stack
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	xchgl	%eax,4(%esp)				# swap return address with saved eax
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	decl	$tls::incyg(%ebx)
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	decl	$tls::stacklock(%ebx)			# release lock
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	popl	%ebx
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	ret
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	.global	_sigdelayed
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_sigdelayed:
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	pushl	%ebp
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	movl	%esp,%ebp
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	pushf
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	pushl	%esi
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	pushl	%edi
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	pushl	%edx
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	pushl	%ecx
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	pushl	%ebx
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	pushl	%eax
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	movl	%fs:4,%ebx
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1:	movl	\$1,%eax
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	xchgl	%eax,$tls::stacklock(%ebx)
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	movl	%eax,$tls::spinning(%ebx) # flag if we are waiting for lock
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					  # If %eax is 1 then someone else has
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					  # the lock but we want to flag that
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					  # we're waiting for it.  If %eax is 0
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					  # then we're not spinning and 0 will
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					  # reflect that.
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	testl	%eax,%eax
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	jz	2f
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	call	_yield
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	jmp	1b
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2:	incl	$tls::incyg(%ebx)
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	movl	$tls::sig(%ebx),%eax
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	testl	%eax,%eax
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	jz	leave			# call_signal_handler may have beat us
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					# to it
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	pushl	$tls::saved_errno(%ebx)	# saved errno
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	call	_set_process_mask_delta
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	pushl	%eax
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	# fill out handler arguments
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	xorl	%eax,%eax		# ucontext_t (currently not set)
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	pushl	%eax
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	leal	$tls::infodata(%ebx),%eax
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	pushl	%eax			# siginfo
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	pushl	$tls::sig(%ebx)		# signal number
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	pushl	\$_sigreturn		# where to return
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	pushl	$tls::func(%ebx)	# user-supplied signal func
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	cmpl	\$0,$tls::threadkill(%ebx)#pthread_kill signal?
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	jnz	4f			# yes.  callee clears signal number
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	movl	\$0,$tls::sig(%ebx)	# zero the signal number as a
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					# flag to the signal handler thread
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					# that it is ok to set up sigsave
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4:	decl	$tls::incyg(%ebx)
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	decl	$tls::stacklock(%ebx)
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	ret				# return via signal handler
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	.global	_sigreturn
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_sigreturn:
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	movl	%fs:4,%ebx
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	incl	$tls::incyg(%ebx)
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	addl	\$12,%esp				# remove arguments
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	call	_set_process_mask\@4
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1:	movl	\$1,%eax				# potential lock value
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	xchgl	%eax,$tls::stacklock(%ebx)		# see if we can grab it
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	movl	%eax,$tls::spinning(%ebx)		# flag if we are waiting for lock
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	testl	%eax,%eax				# it will be zero
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	jz	2f					#  if so
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	call	_yield					# sleep
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	jmp	1b					#  and loop
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2:	popl	%edx					# saved errno
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	testl	%edx,%edx				# Is it < 0
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	jl	3f					# yup.  ignore it
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	movl	$tls::errno_addr(%ebx),%eax
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	movl	%edx,(%eax)
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3:	movl	\$-4,%eax				# now decrement aux stack
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	xadd	%eax,$tls::stackptr(%ebx)		#  and get pointer
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	xorl	%ebp,%ebp
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	xchgl	%ebp,-4(%eax)				# get return address from signal stack
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	xchgl	%ebp,28(%esp)				# store real return address
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leave:	decl	$tls::incyg(%ebx)
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	decl	$tls::stacklock(%ebx)			# unlock
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	popl	%eax
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	popl	%ebx
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	popl	%ecx
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	popl	%edx
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	popl	%edi
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	popl	%esi
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	popf
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	ret
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	.global __ZN7_cygtls3popEv
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__ZN7_cygtls3popEv:
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1:	pushl	%ebx
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	movl	%eax,%ebx			# this
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	movl	\$-4,%eax
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	xadd	%eax,$tls::pstackptr(%ebx)
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	movl	-4(%eax),%eax
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	popl	%ebx
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	ret
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	.global	__ZN7_cygtls4lockEv
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__ZN7_cygtls4lockEv:
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	pushl	%ebx
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	movl	%eax,%ebx
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1:	movl	\$1,%eax
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	xchgl	%eax,$tls::pstacklock(%ebx)
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	testl	%eax,%eax
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	jz	2f
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	call	_yield
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	jmp	1b
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2:	popl	%ebx
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	ret
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	.global	__ZN7_cygtls6unlockEv
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__ZN7_cygtls6unlockEv:
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	decl	$tls::pstacklock(%eax)
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	ret
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	.global	__ZN7_cygtls6lockedEv
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__ZN7_cygtls6lockedEv:
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	movl	$tls::pstacklock(%eax),%eax
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	ret
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	.extern	__ZN7_cygtls19call_signal_handlerEv
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stabilize_sig_stack:
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	movl	%fs:4,%ebx
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1:	movl	\$1,%eax
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	xchgl	%eax,$tls::stacklock(%ebx)
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	movl	%eax,$tls::spinning(%ebx)		# flag if we are waiting for lock
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	testl	%eax,%eax
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	jz	2f
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	call	_yield
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	jmp	1b
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2:	incl	$tls::incyg(%ebx)
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	cmpl	\$0,$tls::sig(%ebx)
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	jz	3f
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	decl	$tls::stacklock(%ebx)			# unlock
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	movl	\$-$tls::sizeof__cygtls,%eax		# point to beginning
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	addl	%ebx,%eax				#  of tls block
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	call	__ZN7_cygtls19call_signal_handlerEv
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	jmp	1b
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3:	decl	$tls::incyg(%ebx)
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	ret
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EOF
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    }
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    return $res;
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}
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sub longjmp {
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    return <<EOF;
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	.globl	_setjmp
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_setjmp:
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	pushl	%ebp
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	movl	%esp,%ebp
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	pushl	%edi
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	movl	8(%ebp),%edi
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	movl	%eax,0(%edi)
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	movl	%ebx,4(%edi)
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	movl	%ecx,8(%edi)
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	movl	%edx,12(%edi)
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	movl	%esi,16(%edi)
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	movl	-4(%ebp),%eax
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	movl	%eax,20(%edi)
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	movl	0(%ebp),%eax
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	movl	%eax,24(%edi)
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	movl	%esp,%eax
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	addl	\$12,%eax
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	movl	%eax,28(%edi)
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	movl	4(%ebp),%eax
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	movl	%eax,32(%edi)
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	movw	%es,%ax
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	movw	%ax,36(%edi)
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	movw	%fs,%ax
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	movw	%ax,38(%edi)
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	movw	%gs,%ax
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	movw	%ax,40(%edi)
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	movw	%ss,%ax
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	movw	%ax,42(%edi)
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	movl	%fs:0,%eax
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	movl	%eax,44(%edi)
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	pushl	%ebx
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	call	stabilize_sig_stack
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	movl	$tls::stackptr(%ebx),%eax		# save stack pointer contents
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	decl	$tls::stacklock(%ebx)
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	popl	%ebx
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	movl	%eax,48(%edi)
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	popl	%edi
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	movl	\$0,%eax
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	leave
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	ret
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	.globl	___sjfault
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___sjfault:
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	pushl	%ebp
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	movl	%esp,%ebp
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	pushl	%edi
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	movl	8(%ebp),%edi
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	movl	%eax,0(%edi)
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	movl	%ebx,4(%edi)
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	movl	%ecx,8(%edi)
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	movl	%edx,12(%edi)
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	movl	%esi,16(%edi)
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	movl	-4(%ebp),%eax
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	movl	%eax,20(%edi)
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	movl	0(%ebp),%eax
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	movl	%eax,24(%edi)
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	movl	%esp,%eax
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	addl	\$12,%eax
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	movl	%eax,28(%edi)
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	movl	4(%ebp),%eax
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	movl	%eax,32(%edi)
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	movw	%es,%ax
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	movw	%ax,36(%edi)
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	movw	%fs,%ax
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	movw	%ax,38(%edi)
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	movw	%gs,%ax
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	movw	%ax,40(%edi)
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	movw	%ss,%ax
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	movw	%ax,42(%edi)
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	movl	%fs:0,%eax
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	movl	%eax,44(%edi)
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	popl	%edi
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	movl	\$0,%eax
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	leave
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	ret
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	.global	___ljfault
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___ljfault:
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	pushl	%ebp
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	movl	%esp,%ebp
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	movl	8(%ebp),%edi
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	movl	12(%ebp),%eax
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	testl	%eax,%eax
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	jne	0f
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	incl	%eax
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0:	movl	%eax,0(%edi)
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	movl	24(%edi),%ebp
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	pushfl
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	popl	%ebx
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	movl	44(%edi),%eax
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	movl	%eax,%fs:0
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	movw	42(%edi),%ax
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	movw	%ax,%ss
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	movl	28(%edi),%esp
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	pushl	32(%edi)
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	pushl	%ebx
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	movw	36(%edi),%ax
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	movw	%ax,%es
 | 
						|
	movw	40(%edi),%ax
 | 
						|
	movw	%ax,%gs
 | 
						|
	movl	0(%edi),%eax
 | 
						|
	movl	4(%edi),%ebx
 | 
						|
	movl	8(%edi),%ecx
 | 
						|
	movl	16(%edi),%esi
 | 
						|
	movl	12(%edi),%edx
 | 
						|
	movl	20(%edi),%edi
 | 
						|
	popfl
 | 
						|
	ret
 | 
						|
 | 
						|
	.globl	_longjmp
 | 
						|
_longjmp:
 | 
						|
	pushl	%ebp
 | 
						|
	movl	%esp,%ebp
 | 
						|
	movl	8(%ebp),%edi				# address of buffer
 | 
						|
	call	stabilize_sig_stack
 | 
						|
	movl	48(%edi),%eax				# get old signal stack
 | 
						|
	movl	%eax,$tls::stackptr(%ebx)		# restore
 | 
						|
	decl	$tls::stacklock(%ebx)			# relinquish lock
 | 
						|
	xorl	%eax,%eax
 | 
						|
	movl	%eax,$tls::incyg(%ebx)			# we're definitely not in cygwin anymore
 | 
						|
 | 
						|
	movl	12(%ebp),%eax
 | 
						|
	testl	%eax,%eax
 | 
						|
	jne	3f
 | 
						|
	incl	%eax
 | 
						|
 | 
						|
3:	movl	%eax,0(%edi)
 | 
						|
	movl	24(%edi),%ebp
 | 
						|
	pushfl
 | 
						|
	popl	%ebx
 | 
						|
	movl	44(%edi),%eax
 | 
						|
	movl	%eax,%fs:0
 | 
						|
	movw	42(%edi),%ax
 | 
						|
	movw	%ax,%ss
 | 
						|
	movl	28(%edi),%esp
 | 
						|
	pushl	32(%edi)
 | 
						|
	pushl	%ebx
 | 
						|
	movw	36(%edi),%ax
 | 
						|
	movw	%ax,%es
 | 
						|
	movw	40(%edi),%ax
 | 
						|
	movw	%ax,%gs
 | 
						|
	movl	0(%edi),%eax
 | 
						|
	movl	4(%edi),%ebx
 | 
						|
	movl	8(%edi),%ecx
 | 
						|
	movl	16(%edi),%esi
 | 
						|
	movl	12(%edi),%edx
 | 
						|
	movl	20(%edi),%edi
 | 
						|
	popfl
 | 
						|
	ret
 | 
						|
EOF
 | 
						|
}
 | 
						|
 | 
						|
sub cleanup(@) {
 | 
						|
    map {s/\r//g; $_} @_;
 | 
						|
    map {s/#.*//g; $_} @_;
 | 
						|
    map {s/[ \t]+$//g; $_} @_;
 | 
						|
}
 |