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asm.h revision 1.40.38.10
      1  1.40.38.10      matt /*	$NetBSD: asm.h,v 1.40.38.10 2010/01/15 06:46:58 matt Exp $	*/
      2         1.4       cgd 
      3         1.1   deraadt /*
      4         1.2     glass  * Copyright (c) 1992, 1993
      5         1.2     glass  *	The Regents of the University of California.  All rights reserved.
      6         1.1   deraadt  *
      7         1.1   deraadt  * This code is derived from software contributed to Berkeley by
      8         1.1   deraadt  * Ralph Campbell.
      9         1.1   deraadt  *
     10         1.1   deraadt  * Redistribution and use in source and binary forms, with or without
     11         1.1   deraadt  * modification, are permitted provided that the following conditions
     12         1.1   deraadt  * are met:
     13         1.1   deraadt  * 1. Redistributions of source code must retain the above copyright
     14         1.1   deraadt  *    notice, this list of conditions and the following disclaimer.
     15         1.1   deraadt  * 2. Redistributions in binary form must reproduce the above copyright
     16         1.1   deraadt  *    notice, this list of conditions and the following disclaimer in the
     17         1.1   deraadt  *    documentation and/or other materials provided with the distribution.
     18        1.35       agc  * 3. Neither the name of the University nor the names of its contributors
     19         1.1   deraadt  *    may be used to endorse or promote products derived from this software
     20         1.1   deraadt  *    without specific prior written permission.
     21         1.1   deraadt  *
     22         1.1   deraadt  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23         1.1   deraadt  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24         1.1   deraadt  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25         1.1   deraadt  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26         1.1   deraadt  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27         1.1   deraadt  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28         1.1   deraadt  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29         1.1   deraadt  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30         1.1   deraadt  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31         1.1   deraadt  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32         1.1   deraadt  * SUCH DAMAGE.
     33         1.1   deraadt  *
     34         1.4       cgd  *	@(#)machAsmDefs.h	8.1 (Berkeley) 6/10/93
     35         1.1   deraadt  */
     36         1.1   deraadt 
     37         1.1   deraadt /*
     38         1.1   deraadt  * machAsmDefs.h --
     39         1.1   deraadt  *
     40         1.1   deraadt  *	Macros used when writing assembler programs.
     41         1.1   deraadt  *
     42         1.1   deraadt  *	Copyright (C) 1989 Digital Equipment Corporation.
     43         1.1   deraadt  *	Permission to use, copy, modify, and distribute this software and
     44         1.1   deraadt  *	its documentation for any purpose and without fee is hereby granted,
     45         1.1   deraadt  *	provided that the above copyright notice appears in all copies.
     46         1.1   deraadt  *	Digital Equipment Corporation makes no representations about the
     47         1.1   deraadt  *	suitability of this software for any purpose.  It is provided "as is"
     48         1.1   deraadt  *	without express or implied warranty.
     49         1.1   deraadt  *
     50         1.1   deraadt  * from: Header: /sprite/src/kernel/mach/ds3100.md/RCS/machAsmDefs.h,
     51         1.2     glass  *	v 1.2 89/08/15 18:28:24 rab Exp  SPRITE (DECWRL)
     52         1.1   deraadt  */
     53         1.1   deraadt 
     54         1.8  jonathan #ifndef _MIPS_ASM_H
     55   1.40.38.1      matt #define	_MIPS_ASM_H
     56         1.1   deraadt 
     57        1.30    simonb #include <machine/cdefs.h>	/* for API selection */
     58        1.21      soda #include <mips/regdef.h>
     59         1.1   deraadt 
     60         1.1   deraadt /*
     61         1.1   deraadt  * Define -pg profile entry code.
     62        1.23    castor  * Must always be noreorder, must never use a macro instruction
     63        1.23    castor  * Final addiu to t9 must always equal the size of this _KERN_MCOUNT
     64         1.1   deraadt  */
     65   1.40.38.1      matt #define	_KERN_MCOUNT						\
     66        1.23    castor 	.set	push;						\
     67        1.23    castor 	.set	noreorder;					\
     68        1.23    castor 	.set	noat;						\
     69        1.27     jeffs 	subu	sp,sp,16;					\
     70        1.27     jeffs 	sw	t9,12(sp);					\
     71        1.23    castor 	move	AT,ra;						\
     72        1.23    castor 	lui	t9,%hi(_mcount); 				\
     73        1.23    castor 	addiu	t9,t9,%lo(_mcount);				\
     74        1.23    castor 	jalr	t9;						\
     75        1.27     jeffs 	nop;							\
     76        1.23    castor 	lw	t9,4(sp);					\
     77        1.23    castor 	addiu	sp,sp,8;					\
     78        1.28     jeffs 	addiu	t9,t9,40;					\
     79        1.23    castor 	.set	pop;
     80        1.13  jonathan 
     81        1.11       jtc #ifdef GPROF
     82   1.40.38.1      matt #define	MCOUNT _KERN_MCOUNT
     83         1.1   deraadt #else
     84         1.1   deraadt #define	MCOUNT
     85         1.2     glass #endif
     86         1.1   deraadt 
     87         1.7    mellon #ifdef __NO_LEADING_UNDERSCORES__
     88         1.6   mycroft # define _C_LABEL(x)	x
     89         1.6   mycroft #else
     90         1.6   mycroft # ifdef __STDC__
     91         1.6   mycroft #  define _C_LABEL(x)	_ ## x
     92         1.6   mycroft # else
     93         1.6   mycroft #  define _C_LABEL(x)	_/**/x
     94         1.6   mycroft # endif
     95         1.6   mycroft #endif
     96        1.14   thorpej 
     97        1.15    castor #ifdef USE_AENT
     98   1.40.38.1      matt #define	AENT(x)				\
     99        1.15    castor 	.aent	x, 0
    100        1.15    castor #else
    101   1.40.38.1      matt #define	AENT(x)
    102        1.24    kleink #endif
    103        1.24    kleink 
    104        1.31    simonb /*
    105        1.31    simonb  * WEAK_ALIAS: create a weak alias.
    106        1.31    simonb  */
    107        1.24    kleink #define	WEAK_ALIAS(alias,sym)						\
    108        1.24    kleink 	.weak alias;							\
    109        1.24    kleink 	alias = sym
    110        1.37  christos /*
    111        1.37  christos  * STRONG_ALIAS: create a strong alias.
    112        1.37  christos  */
    113   1.40.38.1      matt #define	STRONG_ALIAS(alias,sym)						\
    114        1.37  christos 	.globl alias;							\
    115        1.37  christos 	alias = sym
    116        1.15    castor 
    117        1.14   thorpej /*
    118        1.33    simonb  * WARN_REFERENCES: create a warning if the specified symbol is referenced.
    119        1.14   thorpej  */
    120        1.14   thorpej #ifdef __STDC__
    121        1.14   thorpej #define	WARN_REFERENCES(_sym,_msg)				\
    122        1.14   thorpej 	.section .gnu.warning. ## _sym ; .ascii _msg ; .text
    123        1.14   thorpej #else
    124        1.14   thorpej #define	WARN_REFERENCES(_sym,_msg)				\
    125        1.14   thorpej 	.section .gnu.warning./**/_sym ; .ascii _msg ; .text
    126        1.14   thorpej #endif /* __STDC__ */
    127         1.6   mycroft 
    128         1.1   deraadt /*
    129        1.15    castor  * LEAF
    130        1.15    castor  *	A leaf routine does
    131        1.15    castor  *	- call no other function,
    132        1.15    castor  *	- never use any register that callee-saved (S0-S8), and
    133        1.15    castor  *	- not use any local stack storage.
    134        1.15    castor  */
    135   1.40.38.1      matt #define	LEAF(x)				\
    136        1.15    castor 	.globl	_C_LABEL(x);		\
    137        1.15    castor 	.ent	_C_LABEL(x), 0;		\
    138        1.15    castor _C_LABEL(x): ;				\
    139        1.15    castor 	.frame sp, 0, ra;		\
    140         1.1   deraadt 	MCOUNT
    141         1.1   deraadt 
    142         1.1   deraadt /*
    143        1.15    castor  * LEAF_NOPROFILE
    144        1.15    castor  *	No profilable leaf routine.
    145         1.1   deraadt  */
    146   1.40.38.1      matt #define	LEAF_NOPROFILE(x)		\
    147        1.15    castor 	.globl	_C_LABEL(x);		\
    148        1.15    castor 	.ent	_C_LABEL(x), 0;		\
    149        1.15    castor _C_LABEL(x): ;				\
    150        1.15    castor 	.frame	sp, 0, ra
    151        1.15    castor 
    152        1.15    castor /*
    153        1.34    simonb  * STATIC_LEAF
    154        1.34    simonb  *	Declare a local leaf function.
    155        1.34    simonb  */
    156   1.40.38.1      matt #define	STATIC_LEAF(x)			\
    157        1.34    simonb 	.ent	_C_LABEL(x), 0;		\
    158        1.34    simonb _C_LABEL(x): ;				\
    159        1.34    simonb 	.frame sp, 0, ra;		\
    160        1.34    simonb 	MCOUNT
    161        1.34    simonb 
    162        1.34    simonb /*
    163        1.15    castor  * XLEAF
    164        1.15    castor  *	declare alternate entry to leaf routine
    165        1.15    castor  */
    166   1.40.38.1      matt #define	XLEAF(x)			\
    167        1.15    castor 	.globl	_C_LABEL(x);		\
    168        1.34    simonb 	AENT (_C_LABEL(x));		\
    169        1.34    simonb _C_LABEL(x):
    170        1.34    simonb 
    171        1.34    simonb /*
    172        1.34    simonb  * STATIC_XLEAF
    173        1.34    simonb  *	declare alternate entry to a static leaf routine
    174        1.34    simonb  */
    175   1.40.38.1      matt #define	STATIC_XLEAF(x)			\
    176        1.20      soda 	AENT (_C_LABEL(x));		\
    177        1.15    castor _C_LABEL(x):
    178        1.15    castor 
    179        1.15    castor /*
    180        1.15    castor  * NESTED
    181        1.15    castor  *	A function calls other functions and needs
    182        1.15    castor  *	therefore stack space to save/restore registers.
    183        1.15    castor  */
    184   1.40.38.1      matt #define	NESTED(x, fsize, retpc)		\
    185        1.15    castor 	.globl	_C_LABEL(x);		\
    186        1.15    castor 	.ent	_C_LABEL(x), 0; 	\
    187        1.15    castor _C_LABEL(x): ;				\
    188        1.15    castor 	.frame	sp, fsize, retpc;	\
    189        1.15    castor 	MCOUNT
    190         1.1   deraadt 
    191         1.1   deraadt /*
    192        1.15    castor  * NESTED_NOPROFILE(x)
    193        1.15    castor  *	No profilable nested routine.
    194         1.1   deraadt  */
    195   1.40.38.1      matt #define	NESTED_NOPROFILE(x, fsize, retpc)	\
    196        1.15    castor 	.globl	_C_LABEL(x);		\
    197        1.15    castor 	.ent	_C_LABEL(x), 0;		\
    198        1.15    castor _C_LABEL(x): ;				\
    199        1.15    castor 	.frame	sp, fsize, retpc
    200        1.15    castor 
    201        1.15    castor /*
    202        1.15    castor  * XNESTED
    203        1.15    castor  *	declare alternate entry point to nested routine.
    204        1.15    castor  */
    205   1.40.38.1      matt #define	XNESTED(x)			\
    206        1.15    castor 	.globl	_C_LABEL(x);		\
    207        1.20      soda 	AENT (_C_LABEL(x));		\
    208         1.6   mycroft _C_LABEL(x):
    209         1.1   deraadt 
    210         1.1   deraadt /*
    211        1.15    castor  * END
    212        1.15    castor  *	Mark end of a procedure.
    213         1.1   deraadt  */
    214   1.40.38.1      matt #define	END(x) \
    215   1.40.38.1      matt 	.end _C_LABEL(x);		\
    216   1.40.38.1      matt 	.size _C_LABEL(x), . - _C_LABEL(x)
    217         1.2     glass 
    218         1.2     glass /*
    219        1.15    castor  * IMPORT -- import external symbol
    220         1.2     glass  */
    221   1.40.38.1      matt #define	IMPORT(sym, size)		\
    222        1.20      soda 	.extern _C_LABEL(sym),size
    223         1.1   deraadt 
    224         1.1   deraadt /*
    225        1.15    castor  * EXPORT -- export definition of symbol
    226         1.1   deraadt  */
    227   1.40.38.1      matt #define	EXPORT(x)			\
    228        1.15    castor 	.globl	_C_LABEL(x);		\
    229        1.15    castor _C_LABEL(x):
    230         1.1   deraadt 
    231        1.15    castor /*
    232        1.17  jonathan  * VECTOR
    233        1.17  jonathan  *	exception vector entrypoint
    234        1.20      soda  *	XXX: regmask should be used to generate .mask
    235        1.17  jonathan  */
    236   1.40.38.1      matt #define	VECTOR(x, regmask)		\
    237        1.17  jonathan 	.ent	_C_LABEL(x),0;		\
    238        1.17  jonathan 	EXPORT(x);			\
    239        1.17  jonathan 
    240        1.19      soda #ifdef __STDC__
    241   1.40.38.1      matt #define	VECTOR_END(x)			\
    242  1.40.38.10      matt 	EXPORT(x ## _end);		\
    243        1.20      soda 	END(x)
    244        1.19      soda #else
    245   1.40.38.1      matt #define	VECTOR_END(x)			\
    246  1.40.38.10      matt 	EXPORT(x/**/_end);		\
    247        1.20      soda 	END(x)
    248        1.19      soda #endif
    249         1.1   deraadt 
    250         1.1   deraadt /*
    251        1.10  christos  * Macros to panic and printf from assembly language.
    252         1.1   deraadt  */
    253   1.40.38.1      matt #define	PANIC(msg)			\
    254   1.40.38.5      matt 	PTR_LA	a0, 9f;			\
    255        1.15    castor 	jal	_C_LABEL(panic);	\
    256        1.26       cgd 	nop;				\
    257         1.1   deraadt 	MSG(msg)
    258         1.1   deraadt 
    259        1.15    castor #define	PRINTF(msg)			\
    260   1.40.38.5      matt 	PTR_LA	a0, 9f;			\
    261        1.15    castor 	jal	_C_LABEL(printf);	\
    262        1.26       cgd 	nop;				\
    263         1.1   deraadt 	MSG(msg)
    264         1.1   deraadt 
    265        1.15    castor #define	MSG(msg)			\
    266        1.15    castor 	.rdata;				\
    267        1.15    castor 9:	.asciiz	msg;			\
    268         1.1   deraadt 	.text
    269         1.1   deraadt 
    270   1.40.38.1      matt #define	ASMSTR(str)			\
    271        1.15    castor 	.asciiz str;			\
    272        1.12  jonathan 	.align	3
    273        1.15    castor 
    274   1.40.38.1      matt #define	RCSID(name)	.pushsection ".ident"; .asciz name; .popsection
    275   1.40.38.1      matt 
    276        1.15    castor /*
    277        1.15    castor  * XXX retain dialects XXX
    278        1.15    castor  */
    279   1.40.38.1      matt #define	ALEAF(x)			XLEAF(x)
    280   1.40.38.1      matt #define	NLEAF(x)			LEAF_NOPROFILE(x)
    281   1.40.38.1      matt #define	NON_LEAF(x, fsize, retpc)	NESTED(x, fsize, retpc)
    282   1.40.38.1      matt #define	NNON_LEAF(x, fsize, retpc)	NESTED_NOPROFILE(x, fsize, retpc)
    283   1.40.38.1      matt 
    284   1.40.38.1      matt #if defined(__mips_o32)
    285   1.40.38.1      matt #define	SZREG	4
    286   1.40.38.1      matt #else
    287   1.40.38.1      matt #define	SZREG	8
    288   1.40.38.1      matt #endif
    289   1.40.38.1      matt 
    290   1.40.38.1      matt #if defined(__mips_o32) || defined(__mips_o64)
    291   1.40.38.1      matt #define	ALSK	7		/* stack alignment */
    292   1.40.38.1      matt #define	ALMASK	-7		/* stack alignment */
    293   1.40.38.1      matt #define	SZFPREG	4
    294   1.40.38.3      matt #define	FP_L	lwc1
    295   1.40.38.3      matt #define	FP_S	swc1
    296   1.40.38.1      matt #else
    297   1.40.38.1      matt #define	ALSK	15		/* stack alignment */
    298   1.40.38.1      matt #define	ALMASK	-15		/* stack alignment */
    299   1.40.38.1      matt #define	SZFPREG	8
    300   1.40.38.3      matt #define	FP_L	ldc1
    301   1.40.38.3      matt #define	FP_S	sdc1
    302   1.40.38.1      matt #endif
    303        1.15    castor 
    304        1.22    simonb /*
    305        1.16    castor  *  standard callframe {
    306   1.40.38.6      matt  *	register_t cf_pad[N];		o32/64 (N=0), n32 (N=1) n64 (N=1)
    307   1.40.38.1      matt  *  	register_t cf_args[4];		arg0 - arg3 (only on o32 and o64)
    308   1.40.38.1      matt  *  	register_t cf_gp;		global pointer (only on n32 and n64)
    309        1.16    castor  *  	register_t cf_sp;		frame pointer
    310        1.16    castor  *  	register_t cf_ra;		return address
    311        1.16    castor  *  };
    312        1.16    castor  */
    313   1.40.38.6      matt #if defined(__mips_o32) || defined(__mips_o64)
    314   1.40.38.6      matt #define	CALLFRAME_SIZ	(SZREG * (4 + 2))
    315   1.40.38.6      matt #define	CALLFRAME_S0	0
    316   1.40.38.1      matt #elif defined(__mips_n32) || defined(__mips_n64)
    317   1.40.38.1      matt #define	CALLFRAME_SIZ	(SZREG * 4)
    318   1.40.38.1      matt #define	CALLFRAME_S0	(CALLFRAME_SIZ - 4 * SZREG)
    319   1.40.38.6      matt #endif
    320   1.40.38.6      matt #ifndef _KERNEL
    321   1.40.38.1      matt #define	CALLFRAME_GP	(CALLFRAME_SIZ - 3 * SZREG)
    322   1.40.38.6      matt #endif
    323   1.40.38.1      matt #define	CALLFRAME_SP	(CALLFRAME_SIZ - 2 * SZREG)
    324   1.40.38.1      matt #define	CALLFRAME_RA	(CALLFRAME_SIZ - 1 * SZREG)
    325        1.16    castor 
    326        1.15    castor /*
    327        1.22    simonb  * While it would be nice to be compatible with the SGI
    328        1.15    castor  * REG_L and REG_S macros, because they do not take parameters, it
    329        1.15    castor  * is impossible to use them with the _MIPS_SIM_ABIX32 model.
    330        1.15    castor  *
    331        1.22    simonb  * These macros hide the use of mips3 instructions from the
    332        1.15    castor  * assembler to prevent the assembler from generating 64-bit style
    333        1.15    castor  * ABI calls.
    334        1.15    castor  */
    335   1.40.38.9      matt #if _MIPS_SZPTR == 32
    336   1.40.38.1      matt #define	PTR_ADD		add
    337   1.40.38.1      matt #define	PTR_ADDI	addi
    338   1.40.38.1      matt #define	PTR_ADDU	addu
    339   1.40.38.1      matt #define	PTR_ADDIU	addiu
    340   1.40.38.1      matt #define	PTR_SUB		add
    341   1.40.38.1      matt #define	PTR_SUBI	subi
    342   1.40.38.1      matt #define	PTR_SUBU	subu
    343   1.40.38.1      matt #define	PTR_SUBIU	subu
    344   1.40.38.1      matt #define	PTR_L		lw
    345   1.40.38.1      matt #define	PTR_LA		la
    346   1.40.38.1      matt #define	PTR_S		sw
    347   1.40.38.1      matt #define	PTR_SLL		sll
    348   1.40.38.1      matt #define	PTR_SLLV	sllv
    349   1.40.38.1      matt #define	PTR_SRL		srl
    350   1.40.38.1      matt #define	PTR_SRLV	srlv
    351   1.40.38.1      matt #define	PTR_SRA		sra
    352   1.40.38.1      matt #define	PTR_SRAV	srav
    353   1.40.38.1      matt #define	PTR_LL		ll
    354   1.40.38.1      matt #define	PTR_SC		sc
    355   1.40.38.1      matt #define	PTR_WORD	.word
    356   1.40.38.1      matt #define	PTR_SCALESHIFT	2
    357   1.40.38.9      matt #else /* _MIPS_SZPTR == 64 */
    358   1.40.38.1      matt #define	PTR_ADD		dadd
    359   1.40.38.1      matt #define	PTR_ADDI	daddi
    360   1.40.38.1      matt #define	PTR_ADDU	daddu
    361   1.40.38.1      matt #define	PTR_ADDIU	daddiu
    362   1.40.38.1      matt #define	PTR_SUB		dadd
    363   1.40.38.1      matt #define	PTR_SUBI	dsubi
    364   1.40.38.1      matt #define	PTR_SUBU	dsubu
    365   1.40.38.1      matt #define	PTR_SUBIU	dsubu
    366   1.40.38.1      matt #define	PTR_L		ld
    367   1.40.38.1      matt #define	PTR_LA		dla
    368   1.40.38.1      matt #define	PTR_S		sd
    369   1.40.38.1      matt #define	PTR_SLL		dsll
    370   1.40.38.1      matt #define	PTR_SLLV	dsllv
    371   1.40.38.1      matt #define	PTR_SRL		dsrl
    372   1.40.38.1      matt #define	PTR_SRLV	dsrlv
    373   1.40.38.1      matt #define	PTR_SRA		dsra
    374   1.40.38.1      matt #define	PTR_SRAV	dsrav
    375   1.40.38.1      matt #define	PTR_LL		lld
    376   1.40.38.1      matt #define	PTR_SC		scd
    377   1.40.38.1      matt #define	PTR_WORD	.dword
    378   1.40.38.1      matt #define	PTR_SCALESHIFT	3
    379   1.40.38.9      matt #endif /* _MIPS_SZPTR == 64 */
    380   1.40.38.1      matt 
    381   1.40.38.1      matt #if _MIPS_SZINT == 32
    382   1.40.38.1      matt #define	INT_ADD		add
    383   1.40.38.1      matt #define	INT_ADDI	addi
    384   1.40.38.1      matt #define	INT_ADDU	addu
    385   1.40.38.1      matt #define	INT_ADDIU	addiu
    386   1.40.38.1      matt #define	INT_SUB		add
    387   1.40.38.1      matt #define	INT_SUBI	subi
    388   1.40.38.1      matt #define	INT_SUBU	subu
    389   1.40.38.1      matt #define	INT_SUBIU	subu
    390   1.40.38.1      matt #define	INT_L		lw
    391   1.40.38.1      matt #define	INT_LA		la
    392   1.40.38.1      matt #define	INT_S		sw
    393   1.40.38.1      matt #define	INT_SLL		sll
    394   1.40.38.1      matt #define	INT_SLLV	sllv
    395   1.40.38.1      matt #define	INT_SRL		srl
    396   1.40.38.1      matt #define	INT_SRLV	srlv
    397   1.40.38.1      matt #define	INT_SRA		sra
    398   1.40.38.1      matt #define	INT_SRAV	srav
    399   1.40.38.1      matt #define	INT_LL		ll
    400   1.40.38.1      matt #define	INT_SC		sc
    401   1.40.38.5      matt #define	INT_WORD	.word
    402   1.40.38.4      matt #define	INT_SCALESHIFT	2
    403   1.40.38.1      matt #else
    404   1.40.38.1      matt #define	INT_ADD		dadd
    405   1.40.38.1      matt #define	INT_ADDI	daddi
    406   1.40.38.1      matt #define	INT_ADDU	daddu
    407   1.40.38.1      matt #define	INT_ADDIU	daddiu
    408   1.40.38.1      matt #define	INT_SUB		dadd
    409   1.40.38.1      matt #define	INT_SUBI	dsubi
    410   1.40.38.1      matt #define	INT_SUBU	dsubu
    411   1.40.38.1      matt #define	INT_SUBIU	dsubu
    412   1.40.38.1      matt #define	INT_L		ld
    413   1.40.38.1      matt #define	INT_LA		dla
    414   1.40.38.1      matt #define	INT_S		sd
    415   1.40.38.1      matt #define	INT_SLL		dsll
    416   1.40.38.1      matt #define	INT_SLLV	dsllv
    417   1.40.38.1      matt #define	INT_SRL		dsrl
    418   1.40.38.1      matt #define	INT_SRLV	dsrlv
    419   1.40.38.1      matt #define	INT_SRA		dsra
    420   1.40.38.1      matt #define	INT_SRAV	dsrav
    421   1.40.38.1      matt #define	INT_LL		lld
    422   1.40.38.1      matt #define	INT_SC		scd
    423   1.40.38.5      matt #define	INT_WORD	.dword
    424   1.40.38.4      matt #define	INT_SCALESHIFT	3
    425   1.40.38.1      matt #endif
    426   1.40.38.1      matt 
    427   1.40.38.1      matt #if _MIPS_SZLONG == 32
    428   1.40.38.1      matt #define	LONG_ADD	add
    429   1.40.38.1      matt #define	LONG_ADDI	addi
    430   1.40.38.1      matt #define	LONG_ADDU	addu
    431   1.40.38.1      matt #define	LONG_ADDIU	addiu
    432   1.40.38.1      matt #define	LONG_SUB	add
    433   1.40.38.1      matt #define	LONG_SUBI	subi
    434   1.40.38.1      matt #define	LONG_SUBU	subu
    435   1.40.38.1      matt #define	LONG_SUBIU	subu
    436   1.40.38.1      matt #define	LONG_L		lw
    437   1.40.38.1      matt #define	LONG_LA		la
    438   1.40.38.1      matt #define	LONG_S		sw
    439   1.40.38.1      matt #define	LONG_SLL	sll
    440   1.40.38.1      matt #define	LONG_SLLV	sllv
    441   1.40.38.1      matt #define	LONG_SRL	srl
    442   1.40.38.1      matt #define	LONG_SRLV	srlv
    443   1.40.38.1      matt #define	LONG_SRA	sra
    444   1.40.38.1      matt #define	LONG_SRAV	srav
    445   1.40.38.1      matt #define	LONG_LL		ll
    446   1.40.38.1      matt #define	LONG_SC		sc
    447   1.40.38.5      matt #define	LONG_WORD	.word
    448   1.40.38.4      matt #define	LONG_SCALESHIFT	2
    449   1.40.38.1      matt #else
    450   1.40.38.1      matt #define	LONG_ADD	dadd
    451   1.40.38.1      matt #define	LONG_ADDI	daddi
    452   1.40.38.1      matt #define	LONG_ADDU	daddu
    453   1.40.38.1      matt #define	LONG_ADDIU	daddiu
    454   1.40.38.1      matt #define	LONG_SUB	dadd
    455   1.40.38.1      matt #define	LONG_SUBI	dsubi
    456   1.40.38.1      matt #define	LONG_SUBU	dsubu
    457   1.40.38.1      matt #define	LONG_SUBIU	dsubu
    458   1.40.38.1      matt #define	LONG_L		ld
    459   1.40.38.1      matt #define	LONG_LA		dla
    460   1.40.38.1      matt #define	LONG_S		sd
    461   1.40.38.1      matt #define	LONG_SLL	dsll
    462   1.40.38.1      matt #define	LONG_SLLV	dsllv
    463   1.40.38.1      matt #define	LONG_SRL	dsrl
    464   1.40.38.1      matt #define	LONG_SRLV	dsrlv
    465   1.40.38.1      matt #define	LONG_SRA	dsra
    466   1.40.38.1      matt #define	LONG_SRAV	dsrav
    467   1.40.38.1      matt #define	LONG_LL		lld
    468   1.40.38.1      matt #define	LONG_SC		scd
    469   1.40.38.5      matt #define	LONG_WORD	.dword
    470   1.40.38.4      matt #define	LONG_SCALESHIFT	3
    471   1.40.38.1      matt #endif
    472   1.40.38.1      matt 
    473   1.40.38.1      matt #if SZREG == 4
    474   1.40.38.1      matt #define	REG_L		lw
    475   1.40.38.1      matt #define	REG_S		sw
    476   1.40.38.1      matt #define	REG_LI		li
    477   1.40.38.8      matt #define	REG_ADDU	addu
    478   1.40.38.1      matt #define	REG_SLL		sll
    479   1.40.38.1      matt #define	REG_SLLV	sllv
    480   1.40.38.1      matt #define	REG_SRL		srl
    481   1.40.38.1      matt #define	REG_SRLV	srlv
    482   1.40.38.1      matt #define	REG_SRA		sra
    483   1.40.38.1      matt #define	REG_SRAV	srav
    484   1.40.38.8      matt #define	REG_LL		ll
    485   1.40.38.8      matt #define	REG_SC		sc
    486   1.40.38.4      matt #define	REG_SCALESHIFT	2
    487   1.40.38.1      matt #else
    488   1.40.38.1      matt #define	REG_L		ld
    489   1.40.38.1      matt #define	REG_S		sd
    490   1.40.38.1      matt #define	REG_LI		dli
    491   1.40.38.8      matt #define	REG_ADDU	daddu
    492   1.40.38.1      matt #define	REG_SLL		dsll
    493   1.40.38.1      matt #define	REG_SLLV	dsllv
    494   1.40.38.1      matt #define	REG_SRL		dsrl
    495   1.40.38.1      matt #define	REG_SRLV	dsrlv
    496   1.40.38.1      matt #define	REG_SRA		dsra
    497   1.40.38.1      matt #define	REG_SRAV	dsrav
    498   1.40.38.8      matt #define	REG_LL		lld
    499   1.40.38.8      matt #define	REG_SC		scd
    500   1.40.38.4      matt #define	REG_SCALESHIFT	3
    501   1.40.38.1      matt #endif
    502        1.15    castor 
    503   1.40.38.1      matt #if _MIPS_ISA == _MIPS_ISA_MIPS1 || _MIPS_ISA == _MIPS_ISA_MIPS2 || \
    504   1.40.38.4      matt     _MIPS_ISA == _MIPS_ISA_MIPS32
    505   1.40.38.1      matt #define	MFC0		mfc0
    506   1.40.38.1      matt #define	MTC0		mtc0
    507   1.40.38.1      matt #endif
    508   1.40.38.1      matt #if _MIPS_ISA == _MIPS_ISA_MIPS3 || _MIPS_ISA == _MIPS_ISA_MIPS4 || \
    509   1.40.38.4      matt     _MIPS_ISA == _MIPS_ISA_MIPS64
    510   1.40.38.1      matt #define	MFC0		dmfc0
    511   1.40.38.1      matt #define	MTC0		dmtc0
    512   1.40.38.1      matt #endif
    513   1.40.38.1      matt 
    514   1.40.38.1      matt #if defined(__mips_o32) || defined(__mips_o64)
    515   1.40.38.1      matt 
    516   1.40.38.1      matt #ifdef __ABICALLS__
    517   1.40.38.1      matt #define	CPRESTORE(r)	.cprestore r
    518   1.40.38.1      matt #define	CPLOAD(r)	.cpload r
    519        1.16    castor #else
    520   1.40.38.1      matt #define	CPRESTORE(r)	/* not needed */
    521   1.40.38.1      matt #define	CPLOAD(r)	/* not needed */
    522   1.40.38.1      matt #endif
    523   1.40.38.1      matt 
    524   1.40.38.1      matt #define	SETUP_GP	\
    525   1.40.38.7      matt 			.set push;				\
    526   1.40.38.1      matt 			.set noreorder;				\
    527   1.40.38.1      matt 			.cpload	t9;				\
    528   1.40.38.7      matt 			.set pop
    529   1.40.38.1      matt #define	SETUP_GPX(r)	\
    530   1.40.38.7      matt 			.set push;				\
    531   1.40.38.1      matt 			.set noreorder;				\
    532   1.40.38.1      matt 			move	r,ra;	/* save old ra */	\
    533   1.40.38.1      matt 			bal	7f;				\
    534   1.40.38.1      matt 			nop;					\
    535   1.40.38.1      matt 		7:	.cpload	ra;				\
    536   1.40.38.1      matt 			move	ra,r;				\
    537   1.40.38.7      matt 			.set pop
    538   1.40.38.1      matt #define	SETUP_GPX_L(r,lbl)	\
    539   1.40.38.7      matt 			.set push;				\
    540   1.40.38.1      matt 			.set noreorder;				\
    541   1.40.38.1      matt 			move	r,ra;	/* save old ra */	\
    542   1.40.38.1      matt 			bal	lbl;				\
    543   1.40.38.1      matt 			nop;					\
    544   1.40.38.1      matt 		lbl:	.cpload	ra;				\
    545   1.40.38.1      matt 			move	ra,r;				\
    546   1.40.38.7      matt 			.set pop
    547   1.40.38.1      matt #define	SAVE_GP(x)	.cprestore x
    548   1.40.38.1      matt 
    549   1.40.38.1      matt #define	SETUP_GP64(a,b)		/* n32/n64 specific */
    550   1.40.38.7      matt #define	SETUP_GP64_R(a,b)	/* n32/n64 specific */
    551   1.40.38.1      matt #define	SETUP_GPX64(a,b)	/* n32/n64 specific */
    552   1.40.38.1      matt #define	SETUP_GPX64_L(a,b,c)	/* n32/n64 specific */
    553   1.40.38.1      matt #define	RESTORE_GP64		/* n32/n64 specific */
    554   1.40.38.1      matt #define	USE_ALT_CP(a)		/* n32/n64 specific */
    555   1.40.38.1      matt #endif /* __mips_o32 || __mips_o64 */
    556   1.40.38.1      matt 
    557   1.40.38.4      matt #if defined(__mips_o32) || defined(__mips_o64)
    558   1.40.38.4      matt #define	REG_PROLOGUE	.set push
    559   1.40.38.4      matt #define	REG_EPILOGUE	.set pop
    560   1.40.38.4      matt #endif
    561   1.40.38.1      matt #if defined(__mips_n32) || defined(__mips_n64)
    562        1.15    castor #define	REG_PROLOGUE	.set push ; .set mips3
    563        1.15    castor #define	REG_EPILOGUE	.set pop
    564   1.40.38.1      matt #endif
    565   1.40.38.1      matt 
    566   1.40.38.1      matt #if defined(__mips_n32) || defined(__mips_n64)
    567   1.40.38.1      matt #define	SETUP_GP		/* o32 specific */
    568   1.40.38.1      matt #define	SETUP_GPX(r)		/* o32 specific */
    569   1.40.38.1      matt #define	SETUP_GPX_L(r,lbl)	/* o32 specific */
    570   1.40.38.1      matt #define	SAVE_GP(x)		/* o32 specific */
    571   1.40.38.3      matt #define	SETUP_GP64(a,b)		.cpsetup $25, a, b
    572   1.40.38.1      matt #define	SETUP_GPX64(a,b)	\
    573   1.40.38.7      matt 				.set push;			\
    574   1.40.38.1      matt 				move	b,ra;			\
    575   1.40.38.1      matt 				.set noreorder;			\
    576   1.40.38.1      matt 				bal	7f;			\
    577   1.40.38.1      matt 				nop;				\
    578   1.40.38.7      matt 			7:	.set pop;			\
    579   1.40.38.1      matt 				.cpsetup ra, a, 7b;		\
    580   1.40.38.1      matt 				move	ra,b
    581   1.40.38.1      matt #define	SETUP_GPX64_L(a,b,c)	\
    582   1.40.38.7      matt 				.set push;			\
    583   1.40.38.1      matt 				move	b,ra;			\
    584   1.40.38.1      matt 				.set noreorder;			\
    585   1.40.38.1      matt 				bal	c;			\
    586   1.40.38.1      matt 				nop;				\
    587   1.40.38.7      matt 			c:	.set pop;			\
    588   1.40.38.1      matt 				.cpsetup ra, a, c;		\
    589   1.40.38.1      matt 				move	ra,b
    590   1.40.38.1      matt #define	RESTORE_GP64		.cpreturn
    591   1.40.38.1      matt #define	USE_ALT_CP(a)		.cplocal a
    592   1.40.38.1      matt #endif	/* __mips_n32 || __mips_n64 */
    593        1.25     jeffs 
    594        1.25     jeffs /*
    595        1.25     jeffs  * The DYNAMIC_STATUS_MASK option adds an additional masking operation
    596        1.25     jeffs  * when updating the hardware interrupt mask in the status register.
    597        1.25     jeffs  *
    598        1.25     jeffs  * This is useful for platforms that need to at run-time mask
    599        1.25     jeffs  * interrupts based on motherboard configuration or to handle
    600        1.25     jeffs  * slowly clearing interrupts.
    601        1.25     jeffs  *
    602        1.25     jeffs  * XXX this is only currently implemented for mips3.
    603        1.25     jeffs  */
    604        1.25     jeffs #ifdef MIPS_DYNAMIC_STATUS_MASK
    605   1.40.38.1      matt #define	DYNAMIC_STATUS_MASK(sr,scratch)	\
    606        1.25     jeffs 	lw	scratch, mips_dynamic_status_mask; \
    607        1.25     jeffs 	and	sr, sr, scratch
    608        1.29     jeffs 
    609   1.40.38.1      matt #define	DYNAMIC_STATUS_MASK_TOUSER(sr,scratch1)		\
    610        1.29     jeffs 	ori	sr, (MIPS_INT_MASK | MIPS_SR_INT_IE);	\
    611        1.29     jeffs 	DYNAMIC_STATUS_MASK(sr,scratch1)
    612        1.25     jeffs #else
    613   1.40.38.1      matt #define	DYNAMIC_STATUS_MASK(sr,scratch)
    614   1.40.38.1      matt #define	DYNAMIC_STATUS_MASK_TOUSER(sr,scratch1)
    615        1.25     jeffs #endif
    616         1.1   deraadt 
    617        1.38        ad /* See lock_stubs.S. */
    618        1.38        ad #define	MIPS_LOCK_RAS_SIZE	128
    619        1.38        ad 
    620   1.40.38.1      matt #define	CPUVAR(off) _C_LABEL(cpu_info_store)+__CONCAT(CPU_INFO_,off)
    621        1.39      yamt 
    622         1.8  jonathan #endif /* _MIPS_ASM_H */
    623