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			508 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			508 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* Assembler macros for PA-RISC.
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   Copyright (C) 1999-2017 Free Software Foundation, Inc.
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   This file is part of the GNU C Library.
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   Contributed by Ulrich Drepper, <drepper@cygnus.com>, August 1999.
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   Linux/PA-RISC changes by Philipp Rumpf, <prumpf@tux.org>, March 2000.
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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, see
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   <http://www.gnu.org/licenses/>.  */
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#ifndef _LINUX_HPPA_SYSDEP_H
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#define _LINUX_HPPA_SYSDEP_H 1
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#include <sysdeps/unix/sysdep.h>
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#include <sysdeps/unix/sysv/linux/sysdep.h>
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#include <sysdeps/hppa/sysdep.h>
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/* Defines RTLD_PRIVATE_ERRNO.  */
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#include <dl-sysdep.h>
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/* In order to get __set_errno() definition in INLINE_SYSCALL.  */
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#ifndef __ASSEMBLER__
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#include <errno.h>
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#endif
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#undef ASM_LINE_SEP
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#define ASM_LINE_SEP !
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#undef SYS_ify
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#define SYS_ify(syscall_name)	(__NR_##syscall_name)
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/* The vfork, fork, and clone syscalls clobber r19
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 * and r21. We list r21 as either clobbered or as an
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 * input to a 6-argument syscall. We must save and
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 * restore r19 in both PIC and non-PIC cases.
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 */
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/* WARNING: TREG must be a callee saves register so
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   that it doesn't have to be restored after a call
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   to another function */
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#define TREG 4
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#define SAVE_PIC(SREG) \
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	copy %r19, SREG
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#define LOAD_PIC(LREG) \
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	copy LREG , %r19
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/* Inline assembly defines */
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#define TREG_ASM "%r4" /* Cant clobber r3, it holds framemarker */
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#define SAVE_ASM_PIC	"       copy %%r19, %" TREG_ASM "\n"
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#define LOAD_ASM_PIC	"       copy %" TREG_ASM ", %%r19\n"
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#define CLOB_TREG	TREG_ASM ,
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#define PIC_REG_DEF	register unsigned long __r19 asm("r19");
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#define PIC_REG_USE	, "r" (__r19)
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#ifdef __ASSEMBLER__
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/* Syntactic details of assembler.  */
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#define ALIGNARG(log2) log2
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/* For Linux we can use the system call table in the header file
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	/usr/include/asm/unistd.h
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   of the kernel.  But these symbols do not follow the SYS_* syntax
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   so we have to redefine the `SYS_ify' macro here.  */
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#undef SYS_ify
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#define SYS_ify(syscall_name)	__NR_##syscall_name
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/* ELF-like local names start with `.L'.  */
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#undef L
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#define L(name)	.L##name
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/* Linux uses a negative return value to indicate syscall errors,
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   unlike most Unices, which use the condition codes' carry flag.
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   Since version 2.1 the return value of a system call might be
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   negative even if the call succeeded.  E.g., the `lseek' system call
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   might return a large offset.  Therefore we must not anymore test
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   for < 0, but test for a real error by making sure the value in %eax
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   is a real error number.  Linus said he will make sure the no syscall
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   returns a value in -1 .. -4095 as a valid result so we can safely
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   test with -4095.  */
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/* We don't want the label for the error handle to be global when we define
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   it here.  */
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/*#ifdef PIC
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# define SYSCALL_ERROR_LABEL 0f
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#else
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# define SYSCALL_ERROR_LABEL syscall_error
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#endif*/
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/* Argument manipulation from the stack for preparing to
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   make a syscall */
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#define DOARGS_0 /* nothing */
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#define DOARGS_1 /* nothing */
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#define DOARGS_2 /* nothing */
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#define DOARGS_3 /* nothing */
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#define DOARGS_4 /* nothing */
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#define DOARGS_5 ldw -52(%sp), %r22		ASM_LINE_SEP
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#define DOARGS_6 DOARGS_5 ldw -56(%sp), %r21	ASM_LINE_SEP
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#define UNDOARGS_0 /* nothing */
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#define UNDOARGS_1 /* nothing */
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#define UNDOARGS_2 /* nothing */
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#define UNDOARGS_3 /* nothing */
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#define UNDOARGS_4 /* nothing */
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#define UNDOARGS_5 /* nothing */
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#define UNDOARGS_6 /* nothing */
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/* Define an entry point visible from C.
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   There is currently a bug in gdb which prevents us from specifying
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   incomplete stabs information.  Fake some entries here which specify
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   the current source file.  */
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#undef ENTRY
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#define	ENTRY(name)							\
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	.text						ASM_LINE_SEP	\
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	.align ALIGNARG(4)				ASM_LINE_SEP	\
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	.export C_SYMBOL_NAME(name)			ASM_LINE_SEP	\
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	.type	C_SYMBOL_NAME(name),@function		ASM_LINE_SEP	\
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	cfi_startproc					ASM_LINE_SEP	\
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	C_LABEL(name)					ASM_LINE_SEP	\
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	.PROC						ASM_LINE_SEP	\
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	.CALLINFO FRAME=64,CALLS,SAVE_RP,ENTRY_GR=3	ASM_LINE_SEP	\
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	.ENTRY						ASM_LINE_SEP	\
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	/* SAVE_RP says we do */			ASM_LINE_SEP	\
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	stw %rp, -20(%sr0,%sp)				ASM_LINE_SEP	\
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	.cfi_offset 2, -20				ASM_LINE_SEP	\
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	/*FIXME: Call mcount? (carefull with stack!) */
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/* Some syscall wrappers do not call other functions, and
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   hence are classified as leaf, so add NO_CALLS for gdb */
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#define	ENTRY_LEAF(name)						\
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	.text						ASM_LINE_SEP	\
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	.align ALIGNARG(4)				ASM_LINE_SEP	\
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	.export C_SYMBOL_NAME(name)			ASM_LINE_SEP	\
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	.type	C_SYMBOL_NAME(name),@function		ASM_LINE_SEP	\
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	cfi_startproc					ASM_LINE_SEP	\
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	C_LABEL(name)					ASM_LINE_SEP	\
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	.PROC						ASM_LINE_SEP	\
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	.CALLINFO FRAME=64,NO_CALLS,SAVE_RP,ENTRY_GR=3	ASM_LINE_SEP	\
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	.ENTRY						ASM_LINE_SEP	\
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	/* SAVE_RP says we do */			ASM_LINE_SEP	\
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	stw %rp, -20(%sr0,%sp)				ASM_LINE_SEP	\
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	.cfi_offset 2, -20				ASM_LINE_SEP	\
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	/*FIXME: Call mcount? (carefull with stack!) */
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#undef	END
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#define END(name)							\
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	.EXIT						ASM_LINE_SEP	\
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	.PROCEND					ASM_LINE_SEP	\
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	cfi_endproc					ASM_LINE_SEP	\
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.size	C_SYMBOL_NAME(name), .-C_SYMBOL_NAME(name)	ASM_LINE_SEP
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/* If compiled for profiling, call `mcount' at the start
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   of each function. No, don't bother.  gcc will put the
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   call in for us.  */
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#define CALL_MCOUNT		/* Do nothing.  */
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/* syscall wrappers consist of
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	#include <sysdep.h>
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	PSEUDO(...)
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	ret
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	PSEUDO_END(...)
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   which means
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	ENTRY(name)
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	DO_CALL(...)
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	bv,n 0(2)
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*/
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#undef PSEUDO
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#define	PSEUDO(name, syscall_name, args)			\
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  ENTRY (name)					ASM_LINE_SEP	\
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  /* If necc. load args from stack */		ASM_LINE_SEP	\
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  DOARGS_##args					ASM_LINE_SEP	\
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  DO_CALL (syscall_name, args)			ASM_LINE_SEP	\
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  UNDOARGS_##args				ASM_LINE_SEP
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#define ret \
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  /* Return value set by ERRNO code */		ASM_LINE_SEP	\
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  bv,n 0(2)					ASM_LINE_SEP
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#undef	PSEUDO_END
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#define	PSEUDO_END(name)					\
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  END (name)
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/* We don't set the errno on the return from the syscall */
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#define	PSEUDO_NOERRNO(name, syscall_name, args)		\
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  ENTRY_LEAF (name)				ASM_LINE_SEP	\
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  DOARGS_##args					ASM_LINE_SEP	\
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  DO_CALL_NOERRNO (syscall_name, args)		ASM_LINE_SEP	\
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  UNDOARGS_##args				ASM_LINE_SEP
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#define ret_NOERRNO ret
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#undef	PSEUDO_END_NOERRNO
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#define	PSEUDO_END_NOERRNO(name)				\
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  END (name)
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/* This has to return the error value */
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#undef  PSEUDO_ERRVAL
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#define PSEUDO_ERRVAL(name, syscall_name, args)			\
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  ENTRY_LEAF (name)				ASM_LINE_SEP	\
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  DOARGS_##args					ASM_LINE_SEP	\
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  DO_CALL_ERRVAL (syscall_name, args)		ASM_LINE_SEP	\
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  UNDOARGS_##args				ASM_LINE_SEP
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#define ret_ERRVAL ret
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#undef	PSEUDO_END_ERRVAL
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#define PSEUDO_END_ERRVAL(name)					\
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	END(name)
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#undef JUMPTARGET
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#define JUMPTARGET(name)	name
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#define SYSCALL_PIC_SETUP	/* Nothing.  */
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/* FIXME: This comment is not true.
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 * All the syscall assembly macros rely on finding the appropriate
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   SYSCALL_ERROR_LABEL or rather HANDLER. */
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/* int * __errno_location(void) so you have to store your value
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   into the return address! */
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#define DEFAULT_SYSCALL_ERROR_HANDLER			\
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	.import __errno_location,code	ASM_LINE_SEP	\
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	/* branch to errno handler */	ASM_LINE_SEP	\
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	bl __errno_location,%rp		ASM_LINE_SEP
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/* Here are the myriad of configuration options that the above can
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   work for... what we've done is provide the framework for future
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   changes if required to each section */
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#ifdef PIC
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# if RTLD_PRIVATE_ERRNO
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#  define SYSCALL_ERROR_HANDLER DEFAULT_SYSCALL_ERROR_HANDLER
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# else /* !RTLD_PRIVATE_ERRNO */
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#  if defined _LIBC_REENTRANT
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#   define SYSCALL_ERROR_HANDLER DEFAULT_SYSCALL_ERROR_HANDLER
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#  else /* !_LIBC_REENTRANT */
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#   define SYSCALL_ERROR_HANDLER DEFAULT_SYSCALL_ERROR_HANDLER
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#  endif /* _LIBC_REENTRANT */
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# endif /* RTLD_PRIVATE_ERRNO */
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#else
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# ifndef _LIBC_REENTRANT
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#  define SYSCALL_ERROR_HANDLER DEFAULT_SYSCALL_ERROR_HANDLER
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# else
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#  define SYSCALL_ERROR_HANDLER DEFAULT_SYSCALL_ERROR_HANDLER
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# endif
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#endif
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/* Linux takes system call arguments in registers:
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	syscall number	gr20
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	arg 1		gr26
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	arg 2		gr25
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	arg 3		gr24
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	arg 4		gr23
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	arg 5		gr22
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	arg 6		gr21
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   The compiler calls us by the C convention:
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	syscall number	in the DO_CALL macro
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	arg 1		gr26
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	arg 2		gr25
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	arg 3		gr24
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	arg 4		gr23
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	arg 5		-52(sp)
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	arg 6		-56(sp)
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   gr22 and gr21 are caller-saves, so we can just load the arguments
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   there and generally be happy. */
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/* the cmpb...no_error code below inside DO_CALL
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 * is intended to mimic the if (__sys_res...)
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 * code inside INLINE_SYSCALL
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 */
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#define NO_ERROR -0x1000
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#undef	DO_CALL
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#define DO_CALL(syscall_name, args)				\
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	/* Create a frame */			ASM_LINE_SEP	\
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	stwm TREG, 64(%sp)			ASM_LINE_SEP	\
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	.cfi_def_cfa_offset -64			ASM_LINE_SEP	\
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	.cfi_offset TREG, 0			ASM_LINE_SEP	\
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	stw %sp, -4(%sp)			ASM_LINE_SEP	\
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	stw %r19, -32(%sp)			ASM_LINE_SEP	\
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	.cfi_offset 19, 32			ASM_LINE_SEP	\
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	/* Save r19 */				ASM_LINE_SEP	\
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	SAVE_PIC(TREG)				ASM_LINE_SEP	\
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	/* Do syscall, delay loads # */		ASM_LINE_SEP	\
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	ble  0x100(%sr2,%r0)			ASM_LINE_SEP	\
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	ldi SYS_ify (syscall_name), %r20	ASM_LINE_SEP	\
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	ldi NO_ERROR,%r1			ASM_LINE_SEP	\
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	cmpb,>>=,n %r1,%ret0,L(pre_end)		ASM_LINE_SEP	\
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	/* Restore r19 from TREG */		ASM_LINE_SEP	\
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	LOAD_PIC(TREG) /* delay */		ASM_LINE_SEP	\
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	SYSCALL_ERROR_HANDLER			ASM_LINE_SEP	\
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	/* Use TREG for temp storage */		ASM_LINE_SEP	\
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	copy %ret0, TREG /* delay */		ASM_LINE_SEP	\
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	/* OPTIMIZE: Don't reload r19 */	ASM_LINE_SEP	\
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	/* do a -1*syscall_ret0 */		ASM_LINE_SEP	\
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	sub %r0, TREG, TREG			ASM_LINE_SEP	\
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	/* Store into errno location */		ASM_LINE_SEP	\
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	stw TREG, 0(%sr0,%ret0)			ASM_LINE_SEP	\
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	/* return -1 as error */		ASM_LINE_SEP	\
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	ldo -1(%r0), %ret0			ASM_LINE_SEP	\
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L(pre_end):					ASM_LINE_SEP	\
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	/* Restore our frame, restoring TREG */	ASM_LINE_SEP	\
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	ldwm -64(%sp), TREG			ASM_LINE_SEP	\
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	/* Restore return pointer */		ASM_LINE_SEP	\
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	ldw -20(%sp),%rp			ASM_LINE_SEP
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/* We do nothing with the return, except hand it back to someone else */
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#undef  DO_CALL_NOERRNO
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#define DO_CALL_NOERRNO(syscall_name, args)			\
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	/* No need to store r19 */		ASM_LINE_SEP	\
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	ble  0x100(%sr2,%r0)                    ASM_LINE_SEP    \
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	ldi SYS_ify (syscall_name), %r20        ASM_LINE_SEP    \
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	/* Caller will restore r19 */		ASM_LINE_SEP
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/* Here, we return the ERRVAL in assembly, note we don't call the
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   error handler function, but we do 'negate' the return _IF_
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   it's an error. Not sure if this is the right semantic. */
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#undef	DO_CALL_ERRVAL
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#define DO_CALL_ERRVAL(syscall_name, args)			\
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	/* No need to store r19 */		ASM_LINE_SEP	\
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	ble  0x100(%sr2,%r0)			ASM_LINE_SEP	\
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	ldi SYS_ify (syscall_name), %r20	ASM_LINE_SEP	\
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	/* Caller will restore r19 */		ASM_LINE_SEP	\
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	ldi NO_ERROR,%r1			ASM_LINE_SEP	\
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	cmpb,>>=,n %r1,%ret0,0f			ASM_LINE_SEP	\
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	sub %r0, %ret0, %ret0			ASM_LINE_SEP	\
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0:						ASM_LINE_SEP
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#else
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/* GCC has to be warned that a syscall may clobber all the ABI
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   registers listed as "caller-saves", see page 8, Table 2
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   in section 2.2.6 of the PA-RISC RUN-TIME architecture
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   document. However! r28 is the result and will conflict with
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   the clobber list so it is left out. Also the input arguments
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   registers r20 -> r26 will conflict with the list so they
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   are treated specially. Although r19 is clobbered by the syscall
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   we cannot say this because it would violate ABI, thus we say
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   TREG is clobbered and use that register to save/restore r19
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   across the syscall. */
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#define CALL_CLOB_REGS	"%r1", "%r2", CLOB_TREG \
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			"%r20", "%r29", "%r31"
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#undef INLINE_SYSCALL
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#define INLINE_SYSCALL(name, nr, args...)				\
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({									\
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    long __sys_res = INTERNAL_SYSCALL (name, , nr, args);		\
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    if (__glibc_unlikely (INTERNAL_SYSCALL_ERROR_P (__sys_res, )))	\
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      {									\
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	__set_errno (INTERNAL_SYSCALL_ERRNO (__sys_res, ));		\
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	__sys_res = -1;							\
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      }									\
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    __sys_res;								\
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})
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						|
 | 
						|
/* INTERNAL_SYSCALL_DECL - Allows us to setup some function static
 | 
						|
   value to use within the context of the syscall
 | 
						|
   INTERNAL_SYSCALL_ERROR_P - Returns 0 if it wasn't an error, 1 otherwise
 | 
						|
   You are allowed to use the syscall result (val) and the DECL error
 | 
						|
   variable to determine what went wrong.
 | 
						|
   INTERLAL_SYSCALL_ERRNO - Munges the val/err pair into the error number.
 | 
						|
   In our case we just flip the sign. */
 | 
						|
 | 
						|
#undef INTERNAL_SYSCALL_DECL
 | 
						|
#define INTERNAL_SYSCALL_DECL(err)
 | 
						|
 | 
						|
#undef INTERNAL_SYSCALL_ERROR_P
 | 
						|
#define INTERNAL_SYSCALL_ERROR_P(val, err) \
 | 
						|
	((val < 0) && (val > -4095))
 | 
						|
 | 
						|
#undef INTERNAL_SYSCALL_ERRNO
 | 
						|
#define INTERNAL_SYSCALL_ERRNO(val, err) (-(val))
 | 
						|
 | 
						|
/* Similar to INLINE_SYSCALL but we don't set errno */
 | 
						|
#undef INTERNAL_SYSCALL
 | 
						|
#define INTERNAL_SYSCALL(name, err, nr, args...)			\
 | 
						|
({									\
 | 
						|
	long __sys_res;							\
 | 
						|
	{								\
 | 
						|
		LOAD_ARGS_##nr(args)					\
 | 
						|
		register unsigned long __res asm("r28");		\
 | 
						|
		PIC_REG_DEF						\
 | 
						|
		LOAD_REGS_##nr						\
 | 
						|
		/* FIXME: HACK save/load r19 around syscall */		\
 | 
						|
		asm volatile(						\
 | 
						|
			SAVE_ASM_PIC					\
 | 
						|
			"	ble  0x100(%%sr2, %%r0)\n"		\
 | 
						|
			"	ldi %1, %%r20\n"			\
 | 
						|
			LOAD_ASM_PIC					\
 | 
						|
			: "=r" (__res)					\
 | 
						|
			: "i" (SYS_ify(name)) PIC_REG_USE ASM_ARGS_##nr	\
 | 
						|
			: "memory", CALL_CLOB_REGS CLOB_ARGS_##nr	\
 | 
						|
		);							\
 | 
						|
		__sys_res = (long)__res;				\
 | 
						|
	}								\
 | 
						|
	__sys_res;							\
 | 
						|
 })
 | 
						|
 | 
						|
 | 
						|
/* The _NCS variant allows non-constant syscall numbers.  */
 | 
						|
#undef INTERNAL_SYSCALL_NCS
 | 
						|
#define INTERNAL_SYSCALL_NCS(name, err, nr, args...)			\
 | 
						|
({									\
 | 
						|
	long __sys_res;							\
 | 
						|
	{								\
 | 
						|
		LOAD_ARGS_##nr(args)					\
 | 
						|
		register unsigned long __res asm("r28");		\
 | 
						|
		PIC_REG_DEF						\
 | 
						|
		LOAD_REGS_##nr						\
 | 
						|
		/* FIXME: HACK save/load r19 around syscall */		\
 | 
						|
		asm volatile(						\
 | 
						|
			SAVE_ASM_PIC					\
 | 
						|
			"	ble  0x100(%%sr2, %%r0)\n"		\
 | 
						|
			"	copy %1, %%r20\n"			\
 | 
						|
			LOAD_ASM_PIC					\
 | 
						|
			: "=r" (__res)					\
 | 
						|
			: "r" (name) PIC_REG_USE ASM_ARGS_##nr		\
 | 
						|
			: "memory", CALL_CLOB_REGS CLOB_ARGS_##nr	\
 | 
						|
		);							\
 | 
						|
		__sys_res = (long)__res;				\
 | 
						|
	}								\
 | 
						|
	__sys_res;							\
 | 
						|
 })
 | 
						|
 | 
						|
#define LOAD_ARGS_0()
 | 
						|
#define LOAD_REGS_0
 | 
						|
#define LOAD_ARGS_1(a1)							\
 | 
						|
  register unsigned long __x26 = (unsigned long)(a1);			\
 | 
						|
  LOAD_ARGS_0()
 | 
						|
#define LOAD_REGS_1							\
 | 
						|
  register unsigned long __r26 __asm__("r26") = __x26;			\
 | 
						|
  LOAD_REGS_0
 | 
						|
#define LOAD_ARGS_2(a1,a2)						\
 | 
						|
  register unsigned long __x25 = (unsigned long)(a2);			\
 | 
						|
  LOAD_ARGS_1(a1)
 | 
						|
#define LOAD_REGS_2							\
 | 
						|
  register unsigned long __r25 __asm__("r25") = __x25;			\
 | 
						|
  LOAD_REGS_1
 | 
						|
#define LOAD_ARGS_3(a1,a2,a3)						\
 | 
						|
  register unsigned long __x24 = (unsigned long)(a3);			\
 | 
						|
  LOAD_ARGS_2(a1,a2)
 | 
						|
#define LOAD_REGS_3							\
 | 
						|
  register unsigned long __r24 __asm__("r24") = __x24;			\
 | 
						|
  LOAD_REGS_2
 | 
						|
#define LOAD_ARGS_4(a1,a2,a3,a4)					\
 | 
						|
  register unsigned long __x23 = (unsigned long)(a4);			\
 | 
						|
  LOAD_ARGS_3(a1,a2,a3)
 | 
						|
#define LOAD_REGS_4							\
 | 
						|
  register unsigned long __r23 __asm__("r23") = __x23;			\
 | 
						|
  LOAD_REGS_3
 | 
						|
#define LOAD_ARGS_5(a1,a2,a3,a4,a5)					\
 | 
						|
  register unsigned long __x22 = (unsigned long)(a5);			\
 | 
						|
  LOAD_ARGS_4(a1,a2,a3,a4)
 | 
						|
#define LOAD_REGS_5							\
 | 
						|
  register unsigned long __r22 __asm__("r22") = __x22;			\
 | 
						|
  LOAD_REGS_4
 | 
						|
#define LOAD_ARGS_6(a1,a2,a3,a4,a5,a6)					\
 | 
						|
  register unsigned long __x21 = (unsigned long)(a6);			\
 | 
						|
  LOAD_ARGS_5(a1,a2,a3,a4,a5)
 | 
						|
#define LOAD_REGS_6							\
 | 
						|
  register unsigned long __r21 __asm__("r21") = __x21;			\
 | 
						|
  LOAD_REGS_5
 | 
						|
 | 
						|
/* Even with zero args we use r20 for the syscall number */
 | 
						|
#define ASM_ARGS_0
 | 
						|
#define ASM_ARGS_1 ASM_ARGS_0, "r" (__r26)
 | 
						|
#define ASM_ARGS_2 ASM_ARGS_1, "r" (__r25)
 | 
						|
#define ASM_ARGS_3 ASM_ARGS_2, "r" (__r24)
 | 
						|
#define ASM_ARGS_4 ASM_ARGS_3, "r" (__r23)
 | 
						|
#define ASM_ARGS_5 ASM_ARGS_4, "r" (__r22)
 | 
						|
#define ASM_ARGS_6 ASM_ARGS_5, "r" (__r21)
 | 
						|
 | 
						|
/* The registers not listed as inputs but clobbered */
 | 
						|
#define CLOB_ARGS_6
 | 
						|
#define CLOB_ARGS_5 CLOB_ARGS_6, "%r21"
 | 
						|
#define CLOB_ARGS_4 CLOB_ARGS_5, "%r22"
 | 
						|
#define CLOB_ARGS_3 CLOB_ARGS_4, "%r23"
 | 
						|
#define CLOB_ARGS_2 CLOB_ARGS_3, "%r24"
 | 
						|
#define CLOB_ARGS_1 CLOB_ARGS_2, "%r25"
 | 
						|
#define CLOB_ARGS_0 CLOB_ARGS_1, "%r26"
 | 
						|
 | 
						|
#endif	/* __ASSEMBLER__ */
 | 
						|
 | 
						|
/* Pointer mangling is not yet supported for HPPA.  */
 | 
						|
#define PTR_MANGLE(var) (void) (var)
 | 
						|
#define PTR_DEMANGLE(var) (void) (var)
 | 
						|
 | 
						|
#endif /* _LINUX_HPPA_SYSDEP_H */
 |