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			439 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			439 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* Copyright (C) 1992, 1995, 1996, 2000, 2003, 2004, 2006
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   Free Software Foundation, Inc.
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   This file is part of the GNU C Library.
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   Contributed by Brendan Kehoe (brendan@zen.org).
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   The GNU C Library is free software; you can redistribute it and/or
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   modify it under the terms of the GNU Lesser General Public
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   License as published by the Free Software Foundation; either
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   version 2.1 of the License, or (at your option) any later version.
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   The GNU C Library is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   Lesser General Public License for more details.
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   You should have received a copy of the GNU Lesser General Public
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   License along with the GNU C Library; if not, write to the Free
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   Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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   02111-1307 USA.  */
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#include <sysdeps/unix/sysdep.h>
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#ifdef __ASSEMBLER__
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#ifdef __linux__
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# include <alpha/regdef.h>
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#else
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# include <regdef.h>
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#endif
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#include <tls.h>		/* Defines USE___THREAD.  */
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#ifdef IS_IN_rtld
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# include <dl-sysdep.h>         /* Defines RTLD_PRIVATE_ERRNO.  */
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#endif
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#ifdef __STDC__
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#define __LABEL(x)	x##:
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#else
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#define __LABEL(x)	x/**/:
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#endif
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#define LEAF(name, framesize)			\
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  .globl name;					\
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  .align 4;					\
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  .ent name, 0;					\
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  __LABEL(name)					\
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  .frame sp, framesize, ra
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#define ENTRY(name)				\
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  .globl name;					\
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  .align 4;					\
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  .ent name, 0;					\
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  __LABEL(name)					\
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  .frame sp, 0, ra
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/* Mark the end of function SYM.  */
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#undef END
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#define END(sym)	.end sym
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#ifdef PROF
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# define PSEUDO_PROLOGUE			\
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	.frame sp, 0, ra;			\
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	ldgp	gp,0(pv);			\
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	.set noat;				\
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	lda	AT,_mcount;			\
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	jsr	AT,(AT),_mcount;		\
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	.set at;				\
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	.prologue 1
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#elif defined PIC
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# define PSEUDO_PROLOGUE			\
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	.frame sp, 0, ra;			\
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	.prologue 0
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#else
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# define PSEUDO_PROLOGUE			\
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	.frame sp, 0, ra;			\
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	ldgp	gp,0(pv);			\
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	.prologue 1
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#endif /* PROF */
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#if RTLD_PRIVATE_ERRNO
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# define SYSCALL_ERROR_LABEL	$syscall_error
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# define SYSCALL_ERROR_HANDLER			\
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	stl	v0, rtld_errno(gp)	!gprel;	\
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	lda	v0, -1;				\
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	ret
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#elif defined(PIC)
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# define SYSCALL_ERROR_LABEL	__syscall_error
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# define SYSCALL_ERROR_HANDLER \
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	br	$31, __syscall_error !samegp
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#else
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# define SYSCALL_ERROR_LABEL	$syscall_error
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# define SYSCALL_ERROR_HANDLER \
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	jmp	$31, __syscall_error
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#endif /* RTLD_PRIVATE_ERRNO */
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/* Overridden by specific syscalls.  */
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#undef PSEUDO_PREPARE_ARGS
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#define PSEUDO_PREPARE_ARGS	/* Nothing.  */
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#define PSEUDO(name, syscall_name, args)	\
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	.globl name;				\
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	.align 4;				\
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	.ent name,0;				\
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__LABEL(name)					\
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	PSEUDO_PROLOGUE;			\
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	PSEUDO_PREPARE_ARGS			\
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	lda	v0, SYS_ify(syscall_name);	\
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	call_pal PAL_callsys;			\
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	bne	a3, SYSCALL_ERROR_LABEL
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#undef PSEUDO_END
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#if defined(PIC) && !RTLD_PRIVATE_ERRNO
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# define PSEUDO_END(sym)  END(sym)
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#else
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# define PSEUDO_END(sym)			\
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$syscall_error:					\
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	SYSCALL_ERROR_HANDLER;			\
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	END(sym)
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#endif
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#define PSEUDO_NOERRNO(name, syscall_name, args)	\
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	.globl name;					\
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	.align 4;					\
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	.ent name,0;					\
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__LABEL(name)						\
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	PSEUDO_PROLOGUE;				\
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	PSEUDO_PREPARE_ARGS				\
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	lda	v0, SYS_ify(syscall_name);		\
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	call_pal PAL_callsys;
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#undef PSEUDO_END_NOERRNO
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#define PSEUDO_END_NOERRNO(sym)  END(sym)
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#define ret_NOERRNO ret
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#define PSEUDO_ERRVAL(name, syscall_name, args)	\
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	.globl name;					\
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	.align 4;					\
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	.ent name,0;					\
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__LABEL(name)						\
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	PSEUDO_PROLOGUE;				\
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	PSEUDO_PREPARE_ARGS				\
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	lda	v0, SYS_ify(syscall_name);		\
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	call_pal PAL_callsys;
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#undef PSEUDO_END_ERRVAL
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#define PSEUDO_END_ERRVAL(sym)  END(sym)
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#define ret_ERRVAL ret
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#define r0	v0
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#define r1	a4
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#define MOVE(x,y)	mov x,y
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#else /* !ASSEMBLER */
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/* ??? Linux needs to be able to override INLINE_SYSCALL for one
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   particular special case.  Make this easy.  */
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#undef INLINE_SYSCALL
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#define INLINE_SYSCALL(name, nr, args...) \
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	INLINE_SYSCALL1(name, nr, args)
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#define INLINE_SYSCALL1(name, nr, args...)	\
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({						\
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	long _sc_ret, _sc_err;			\
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	inline_syscall##nr(__NR_##name, args);	\
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	if (__builtin_expect (_sc_err, 0))	\
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	  {					\
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	    __set_errno (_sc_ret);		\
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	    _sc_ret = -1L;			\
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	  }					\
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	_sc_ret;				\
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})
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#define INTERNAL_SYSCALL(name, err_out, nr, args...) \
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	INTERNAL_SYSCALL1(name, err_out, nr, args)
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#define INTERNAL_SYSCALL1(name, err_out, nr, args...)	\
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	INTERNAL_SYSCALL_NCS(__NR_##name, err_out, nr, args)
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#define INTERNAL_SYSCALL_NCS(name, err_out, nr, args...) \
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({							\
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	long _sc_ret, _sc_err;				\
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	inline_syscall##nr(name, args);			\
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	err_out = _sc_err;				\
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	_sc_ret;					\
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})
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#define INTERNAL_SYSCALL_DECL(err)		long int err
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#define INTERNAL_SYSCALL_ERROR_P(val, err)	err
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#define INTERNAL_SYSCALL_ERRNO(val, err)	val
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#define inline_syscall_clobbers				\
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	"$1", "$2", "$3", "$4", "$5", "$6", "$7", "$8",	\
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	"$22", "$23", "$24", "$25", "$27", "$28", "memory"
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/* If TLS is in use, we have a conflict between the PAL_rduniq primitive,
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   as modeled within GCC, and explicit use of the R0 register.  If we use
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   the register via the asm, the scheduler may place the PAL_rduniq insn
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   before we've copied the data from R0 into _sc_ret.  If this happens
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   we'll get a reload abort, since R0 is live at the same time it is
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   needed for the PAL_rduniq.
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   Solve this by using the "v" constraint instead of an asm for the syscall
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   output.  We don't do this unconditionally to allow compilation with
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   older compilers.  */
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#ifdef HAVE___THREAD
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#define inline_syscall_r0_asm
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#define inline_syscall_r0_out_constraint	"=v"
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#else
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#define inline_syscall_r0_asm			__asm__("$0")
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#define inline_syscall_r0_out_constraint	"=r"
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#endif
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/* It is moderately important optimization-wise to limit the lifetime
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   of the hard-register variables as much as possible.  Thus we copy
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   in/out as close to the asm as possible.  */
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#define inline_syscall0(name, args...)				\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_19 __asm__("$19");			\
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								\
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	_sc_0 = name;						\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2"				\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19)					\
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	   : "0"(_sc_0)						\
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	   : inline_syscall_clobbers,				\
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	     "$16", "$17", "$18", "$20", "$21");		\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall1(name,arg1)				\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_19 __asm__("$19");			\
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	register long _tmp_16 = (long) (arg1);			\
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								\
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	_sc_0 = name;						\
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	_sc_16 = _tmp_16;					\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2 %3"				\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19), "=r"(_sc_16)				\
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	   : "0"(_sc_0), "2"(_sc_16)				\
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	   : inline_syscall_clobbers,				\
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	     "$17", "$18", "$20", "$21");			\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall2(name,arg1,arg2)				\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_17 __asm__("$17");			\
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	register long _sc_19 __asm__("$19");			\
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	register long _tmp_16 = (long) (arg1);			\
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	register long _tmp_17 = (long) (arg2);			\
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								\
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	_sc_0 = name;						\
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	_sc_16 = _tmp_16;					\
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	_sc_17 = _tmp_17;					\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2 %3 %4"			\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19), "=r"(_sc_16), "=r"(_sc_17)		\
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	   : "0"(_sc_0), "2"(_sc_16), "3"(_sc_17)		\
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	   : inline_syscall_clobbers,				\
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	     "$18", "$20", "$21");				\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall3(name,arg1,arg2,arg3)			\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_17 __asm__("$17");			\
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	register long _sc_18 __asm__("$18");			\
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	register long _sc_19 __asm__("$19");			\
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	register long _tmp_16 = (long) (arg1);			\
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	register long _tmp_17 = (long) (arg2);			\
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	register long _tmp_18 = (long) (arg3);			\
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								\
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	_sc_0 = name;						\
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	_sc_16 = _tmp_16;					\
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	_sc_17 = _tmp_17;					\
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	_sc_18 = _tmp_18;					\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2 %3 %4 %5"			\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19), "=r"(_sc_16), "=r"(_sc_17),		\
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	     "=r"(_sc_18)					\
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	   : "0"(_sc_0), "2"(_sc_16), "3"(_sc_17),		\
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	     "4"(_sc_18)					\
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	   : inline_syscall_clobbers, "$20", "$21");		\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall4(name,arg1,arg2,arg3,arg4)		\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_17 __asm__("$17");			\
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	register long _sc_18 __asm__("$18");			\
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	register long _sc_19 __asm__("$19");			\
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	register long _tmp_16 = (long) (arg1);			\
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	register long _tmp_17 = (long) (arg2);			\
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	register long _tmp_18 = (long) (arg3);			\
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	register long _tmp_19 = (long) (arg4);			\
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								\
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	_sc_0 = name;						\
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	_sc_16 = _tmp_16;					\
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	_sc_17 = _tmp_17;					\
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	_sc_18 = _tmp_18;					\
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	_sc_19 = _tmp_19;					\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2 %3 %4 %5 %6"			\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19), "=r"(_sc_16), "=r"(_sc_17),		\
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	     "=r"(_sc_18)					\
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	   : "0"(_sc_0), "2"(_sc_16), "3"(_sc_17),		\
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	     "4"(_sc_18), "1"(_sc_19)				\
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	   : inline_syscall_clobbers, "$20", "$21");		\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall5(name,arg1,arg2,arg3,arg4,arg5)		\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_17 __asm__("$17");			\
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	register long _sc_18 __asm__("$18");			\
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	register long _sc_19 __asm__("$19");			\
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	register long _sc_20 __asm__("$20");			\
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	register long _tmp_16 = (long) (arg1);			\
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	register long _tmp_17 = (long) (arg2);			\
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	register long _tmp_18 = (long) (arg3);			\
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	register long _tmp_19 = (long) (arg4);			\
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	register long _tmp_20 = (long) (arg5);			\
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								\
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	_sc_0 = name;						\
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	_sc_16 = _tmp_16;					\
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	_sc_17 = _tmp_17;					\
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	_sc_18 = _tmp_18;					\
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	_sc_19 = _tmp_19;					\
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	_sc_20 = _tmp_20;					\
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	__asm__ __volatile__					\
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	  ("callsys # %0 %1 <= %2 %3 %4 %5 %6 %7"		\
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	   : inline_syscall_r0_out_constraint (_sc_0),		\
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	     "=r"(_sc_19), "=r"(_sc_16), "=r"(_sc_17),		\
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	     "=r"(_sc_18), "=r"(_sc_20)				\
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	   : "0"(_sc_0), "2"(_sc_16), "3"(_sc_17),		\
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	     "4"(_sc_18), "1"(_sc_19), "5"(_sc_20)		\
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	   : inline_syscall_clobbers, "$21");			\
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	_sc_ret = _sc_0, _sc_err = _sc_19;			\
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}
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#define inline_syscall6(name,arg1,arg2,arg3,arg4,arg5,arg6)	\
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{								\
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	register long _sc_0 inline_syscall_r0_asm;		\
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	register long _sc_16 __asm__("$16");			\
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	register long _sc_17 __asm__("$17");			\
 | 
						|
	register long _sc_18 __asm__("$18");			\
 | 
						|
	register long _sc_19 __asm__("$19");			\
 | 
						|
	register long _sc_20 __asm__("$20");			\
 | 
						|
	register long _sc_21 __asm__("$21");			\
 | 
						|
	register long _tmp_16 = (long) (arg1);			\
 | 
						|
	register long _tmp_17 = (long) (arg2);			\
 | 
						|
	register long _tmp_18 = (long) (arg3);			\
 | 
						|
	register long _tmp_19 = (long) (arg4);			\
 | 
						|
	register long _tmp_20 = (long) (arg5);			\
 | 
						|
	register long _tmp_21 = (long) (arg6);			\
 | 
						|
								\
 | 
						|
	_sc_0 = name;						\
 | 
						|
	_sc_16 = _tmp_16;					\
 | 
						|
	_sc_17 = _tmp_17;					\
 | 
						|
	_sc_18 = _tmp_18;					\
 | 
						|
	_sc_19 = _tmp_19;					\
 | 
						|
	_sc_20 = _tmp_20;					\
 | 
						|
	_sc_21 = _tmp_21;					\
 | 
						|
	__asm__ __volatile__					\
 | 
						|
	  ("callsys # %0 %1 <= %2 %3 %4 %5 %6 %7 %8"		\
 | 
						|
	   : inline_syscall_r0_out_constraint (_sc_0),		\
 | 
						|
	     "=r"(_sc_19), "=r"(_sc_16), "=r"(_sc_17),		\
 | 
						|
	     "=r"(_sc_18), "=r"(_sc_20), "=r"(_sc_21)		\
 | 
						|
	   : "0"(_sc_0), "2"(_sc_16), "3"(_sc_17), "4"(_sc_18),	\
 | 
						|
	     "1"(_sc_19), "5"(_sc_20), "6"(_sc_21)		\
 | 
						|
	   : inline_syscall_clobbers);				\
 | 
						|
	_sc_ret = _sc_0, _sc_err = _sc_19;			\
 | 
						|
}
 | 
						|
 | 
						|
/* Pointer mangling support.  Note that tls access is slow enough that
 | 
						|
   we don't deoptimize things by placing the pointer check value there.  */
 | 
						|
 | 
						|
#include <stdint.h>
 | 
						|
 | 
						|
#if defined NOT_IN_libc && defined IS_IN_rtld
 | 
						|
# ifdef __ASSEMBLER__
 | 
						|
#  define PTR_MANGLE(dst, src, tmp)				\
 | 
						|
	ldah	tmp, __pointer_chk_guard_local($29) !gprelhigh;	\
 | 
						|
	ldq	tmp, __pointer_chk_guard_local(tmp) !gprellow;	\
 | 
						|
	xor	src, tmp, dst
 | 
						|
#  define PTR_MANGLE2(dst, src, tmp)				\
 | 
						|
	xor	src, tmp, dst
 | 
						|
#  define PTR_DEMANGLE(dst, tmp)   PTR_MANGLE(dst, dst, tmp)
 | 
						|
#  define PTR_DEMANGLE2(dst, tmp)  PTR_MANGLE2(dst, dst, tmp)
 | 
						|
# else
 | 
						|
extern uintptr_t __pointer_chk_guard_local attribute_relro attribute_hidden;
 | 
						|
#  define PTR_MANGLE(var)	\
 | 
						|
  (var) = (__typeof (var)) ((uintptr_t) (var) ^ __pointer_chk_guard_local)
 | 
						|
#  define PTR_DEMANGLE(var)  PTR_MANGLE(var)
 | 
						|
# endif
 | 
						|
#elif defined PIC
 | 
						|
# ifdef __ASSEMBLER__
 | 
						|
#  define PTR_MANGLE(dst, src, tmp)		\
 | 
						|
	ldq	tmp, __pointer_chk_guard;	\
 | 
						|
	xor	src, tmp, dst
 | 
						|
#  define PTR_MANGLE2(dst, src, tmp)		\
 | 
						|
	xor	src, tmp, dst
 | 
						|
#  define PTR_DEMANGLE(dst, tmp)   PTR_MANGLE(dst, dst, tmp)
 | 
						|
#  define PTR_DEMANGLE2(dst, tmp)  PTR_MANGLE2(dst, dst, tmp)
 | 
						|
# else
 | 
						|
extern uintptr_t __pointer_chk_guard attribute_relro;
 | 
						|
#  define PTR_MANGLE(var)	\
 | 
						|
	(var) = (void *) ((uintptr_t) (var) ^ __pointer_chk_guard)
 | 
						|
#  define PTR_DEMANGLE(var)  PTR_MANGLE(var)
 | 
						|
# endif
 | 
						|
#endif
 | 
						|
 | 
						|
#endif /* ASSEMBLER */
 |