asm.h revision 1.41 1 1.41 matt /* $NetBSD: asm.h,v 1.41 2009/12/14 00:46:04 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 1.41 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 1.41 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 1.41 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 1.41 matt #define AENT(x) \
99 1.15 castor .aent x, 0
100 1.15 castor #else
101 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 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 1.41 matt #define END(x) \
215 1.41 matt .end _C_LABEL(x); \
216 1.41 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 1.41 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 1.41 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 1.41 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 1.41 matt #define VECTOR_END(x) \
242 1.20 soda EXPORT(x ## End); \
243 1.20 soda END(x)
244 1.19 soda #else
245 1.41 matt #define VECTOR_END(x) \
246 1.20 soda 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 1.41 matt #define PANIC(msg) \
254 1.41 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 1.41 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 1.41 matt #define ASMSTR(str) \
271 1.15 castor .asciiz str; \
272 1.12 jonathan .align 3
273 1.15 castor
274 1.41 matt #define RCSID(name) .pushsection ".ident"; .asciz name; .popsection
275 1.41 matt
276 1.15 castor /*
277 1.15 castor * XXX retain dialects XXX
278 1.15 castor */
279 1.41 matt #define ALEAF(x) XLEAF(x)
280 1.41 matt #define NLEAF(x) LEAF_NOPROFILE(x)
281 1.41 matt #define NON_LEAF(x, fsize, retpc) NESTED(x, fsize, retpc)
282 1.41 matt #define NNON_LEAF(x, fsize, retpc) NESTED_NOPROFILE(x, fsize, retpc)
283 1.41 matt
284 1.41 matt #if defined(__mips_o32)
285 1.41 matt #define SZREG 4
286 1.41 matt #else
287 1.41 matt #define SZREG 8
288 1.41 matt #endif
289 1.41 matt
290 1.41 matt #if defined(__mips_o32) || defined(__mips_o64)
291 1.41 matt #define ALSK 7 /* stack alignment */
292 1.41 matt #define ALMASK -7 /* stack alignment */
293 1.41 matt #define SZFPREG 4
294 1.41 matt #define FP_L lwc1
295 1.41 matt #define FP_S swc1
296 1.41 matt #else
297 1.41 matt #define ALSK 15 /* stack alignment */
298 1.41 matt #define ALMASK -15 /* stack alignment */
299 1.41 matt #define SZFPREG 8
300 1.41 matt #define FP_L ldc1
301 1.41 matt #define FP_S sdc1
302 1.41 matt #endif
303 1.15 castor
304 1.22 simonb /*
305 1.16 castor * standard callframe {
306 1.41 matt * register_t cf_pad[N]; o32/64 (N=0), n32 (N=1) n64 (N=1)
307 1.41 matt * register_t cf_args[4]; arg0 - arg3 (only on o32 and o64)
308 1.41 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 1.41 matt #if defined(__mips_o32) || defined(__mips_o64)
314 1.41 matt #define CALLFRAME_SIZ (SZREG * (4 + 2))
315 1.41 matt #define CALLFRAME_S0 0
316 1.41 matt #elif defined(__mips_n32) || defined(__mips_n64)
317 1.41 matt #define CALLFRAME_SIZ (SZREG * 4)
318 1.41 matt #define CALLFRAME_S0 (CALLFRAME_SIZ - 4 * SZREG)
319 1.41 matt #endif
320 1.41 matt #ifndef _KERNEL
321 1.41 matt #define CALLFRAME_GP (CALLFRAME_SIZ - 3 * SZREG)
322 1.41 matt #endif
323 1.41 matt #define CALLFRAME_SP (CALLFRAME_SIZ - 2 * SZREG)
324 1.41 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 1.41 matt #if _MIPS_SZPTR == 32
336 1.41 matt #define PTR_ADD add
337 1.41 matt #define PTR_ADDI addi
338 1.41 matt #define PTR_ADDU addu
339 1.41 matt #define PTR_ADDIU addiu
340 1.41 matt #define PTR_SUB add
341 1.41 matt #define PTR_SUBI subi
342 1.41 matt #define PTR_SUBU subu
343 1.41 matt #define PTR_SUBIU subu
344 1.41 matt #define PTR_L lw
345 1.41 matt #define PTR_LA la
346 1.41 matt #define PTR_S sw
347 1.41 matt #define PTR_SLL sll
348 1.41 matt #define PTR_SLLV sllv
349 1.41 matt #define PTR_SRL srl
350 1.41 matt #define PTR_SRLV srlv
351 1.41 matt #define PTR_SRA sra
352 1.41 matt #define PTR_SRAV srav
353 1.41 matt #define PTR_LL ll
354 1.41 matt #define PTR_SC sc
355 1.41 matt #define PTR_WORD .word
356 1.41 matt #define PTR_SCALESHIFT 2
357 1.41 matt #else /* _MIPS_SZPTR == 64 */
358 1.41 matt #define PTR_ADD dadd
359 1.41 matt #define PTR_ADDI daddi
360 1.41 matt #define PTR_ADDU daddu
361 1.41 matt #define PTR_ADDIU daddiu
362 1.41 matt #define PTR_SUB dadd
363 1.41 matt #define PTR_SUBI dsubi
364 1.41 matt #define PTR_SUBU dsubu
365 1.41 matt #define PTR_SUBIU dsubu
366 1.41 matt #define PTR_L ld
367 1.41 matt #define PTR_LA dla
368 1.41 matt #define PTR_S sd
369 1.41 matt #define PTR_SLL dsll
370 1.41 matt #define PTR_SLLV dsllv
371 1.41 matt #define PTR_SRL dsrl
372 1.41 matt #define PTR_SRLV dsrlv
373 1.41 matt #define PTR_SRA dsra
374 1.41 matt #define PTR_SRAV dsrav
375 1.41 matt #define PTR_LL lld
376 1.41 matt #define PTR_SC scd
377 1.41 matt #define PTR_WORD .dword
378 1.41 matt #define PTR_SCALESHIFT 3
379 1.41 matt #endif /* _MIPS_SZPTR == 64 */
380 1.41 matt
381 1.41 matt #if _MIPS_SZINT == 32
382 1.41 matt #define INT_ADD add
383 1.41 matt #define INT_ADDI addi
384 1.41 matt #define INT_ADDU addu
385 1.41 matt #define INT_ADDIU addiu
386 1.41 matt #define INT_SUB add
387 1.41 matt #define INT_SUBI subi
388 1.41 matt #define INT_SUBU subu
389 1.41 matt #define INT_SUBIU subu
390 1.41 matt #define INT_L lw
391 1.41 matt #define INT_LA la
392 1.41 matt #define INT_S sw
393 1.41 matt #define INT_SLL sll
394 1.41 matt #define INT_SLLV sllv
395 1.41 matt #define INT_SRL srl
396 1.41 matt #define INT_SRLV srlv
397 1.41 matt #define INT_SRA sra
398 1.41 matt #define INT_SRAV srav
399 1.41 matt #define INT_LL ll
400 1.41 matt #define INT_SC sc
401 1.41 matt #define INT_WORD .word
402 1.41 matt #define INT_SCALESHIFT 2
403 1.41 matt #else
404 1.41 matt #define INT_ADD dadd
405 1.41 matt #define INT_ADDI daddi
406 1.41 matt #define INT_ADDU daddu
407 1.41 matt #define INT_ADDIU daddiu
408 1.41 matt #define INT_SUB dadd
409 1.41 matt #define INT_SUBI dsubi
410 1.41 matt #define INT_SUBU dsubu
411 1.41 matt #define INT_SUBIU dsubu
412 1.41 matt #define INT_L ld
413 1.41 matt #define INT_LA dla
414 1.41 matt #define INT_S sd
415 1.41 matt #define INT_SLL dsll
416 1.41 matt #define INT_SLLV dsllv
417 1.41 matt #define INT_SRL dsrl
418 1.41 matt #define INT_SRLV dsrlv
419 1.41 matt #define INT_SRA dsra
420 1.41 matt #define INT_SRAV dsrav
421 1.41 matt #define INT_LL lld
422 1.41 matt #define INT_SC scd
423 1.41 matt #define INT_WORD .dword
424 1.41 matt #define INT_SCALESHIFT 3
425 1.41 matt #endif
426 1.15 castor
427 1.41 matt #if _MIPS_SZLONG == 32
428 1.41 matt #define LONG_ADD add
429 1.41 matt #define LONG_ADDI addi
430 1.41 matt #define LONG_ADDU addu
431 1.41 matt #define LONG_ADDIU addiu
432 1.41 matt #define LONG_SUB add
433 1.41 matt #define LONG_SUBI subi
434 1.41 matt #define LONG_SUBU subu
435 1.41 matt #define LONG_SUBIU subu
436 1.41 matt #define LONG_L lw
437 1.41 matt #define LONG_LA la
438 1.41 matt #define LONG_S sw
439 1.41 matt #define LONG_SLL sll
440 1.41 matt #define LONG_SLLV sllv
441 1.41 matt #define LONG_SRL srl
442 1.41 matt #define LONG_SRLV srlv
443 1.41 matt #define LONG_SRA sra
444 1.41 matt #define LONG_SRAV srav
445 1.41 matt #define LONG_LL ll
446 1.41 matt #define LONG_SC sc
447 1.41 matt #define LONG_WORD .word
448 1.41 matt #define LONG_SCALESHIFT 2
449 1.41 matt #else
450 1.41 matt #define LONG_ADD dadd
451 1.41 matt #define LONG_ADDI daddi
452 1.41 matt #define LONG_ADDU daddu
453 1.41 matt #define LONG_ADDIU daddiu
454 1.41 matt #define LONG_SUB dadd
455 1.41 matt #define LONG_SUBI dsubi
456 1.41 matt #define LONG_SUBU dsubu
457 1.41 matt #define LONG_SUBIU dsubu
458 1.41 matt #define LONG_L ld
459 1.41 matt #define LONG_LA dla
460 1.41 matt #define LONG_S sd
461 1.41 matt #define LONG_SLL dsll
462 1.41 matt #define LONG_SLLV dsllv
463 1.41 matt #define LONG_SRL dsrl
464 1.41 matt #define LONG_SRLV dsrlv
465 1.41 matt #define LONG_SRA dsra
466 1.41 matt #define LONG_SRAV dsrav
467 1.41 matt #define LONG_LL lld
468 1.41 matt #define LONG_SC scd
469 1.41 matt #define LONG_WORD .dword
470 1.41 matt #define LONG_SCALESHIFT 3
471 1.41 matt #endif
472 1.41 matt
473 1.41 matt #if SZREG == 4
474 1.41 matt #define REG_L lw
475 1.41 matt #define REG_S sw
476 1.41 matt #define REG_LI li
477 1.41 matt #define REG_ADDU addu
478 1.41 matt #define REG_SLL sll
479 1.41 matt #define REG_SLLV sllv
480 1.41 matt #define REG_SRL srl
481 1.41 matt #define REG_SRLV srlv
482 1.41 matt #define REG_SRA sra
483 1.41 matt #define REG_SRAV srav
484 1.41 matt #define REG_LL ll
485 1.41 matt #define REG_SC sc
486 1.41 matt #define REG_SCALESHIFT 2
487 1.41 matt #else
488 1.41 matt #define REG_L ld
489 1.41 matt #define REG_S sd
490 1.41 matt #define REG_LI dli
491 1.41 matt #define REG_ADDU daddu
492 1.41 matt #define REG_SLL dsll
493 1.41 matt #define REG_SLLV dsllv
494 1.41 matt #define REG_SRL dsrl
495 1.41 matt #define REG_SRLV dsrlv
496 1.41 matt #define REG_SRA dsra
497 1.41 matt #define REG_SRAV dsrav
498 1.41 matt #define REG_LL lld
499 1.41 matt #define REG_SC scd
500 1.41 matt #define REG_SCALESHIFT 3
501 1.41 matt #endif
502 1.41 matt
503 1.41 matt #if _MIPS_ISA == _MIPS_ISA_MIPS1 || _MIPS_ISA == _MIPS_ISA_MIPS2 || \
504 1.41 matt _MIPS_ISA == _MIPS_ISA_MIPS32
505 1.41 matt #define MFC0 mfc0
506 1.41 matt #define MTC0 mtc0
507 1.41 matt #endif
508 1.41 matt #if _MIPS_ISA == _MIPS_ISA_MIPS3 || _MIPS_ISA == _MIPS_ISA_MIPS4 || \
509 1.41 matt _MIPS_ISA == _MIPS_ISA_MIPS64
510 1.41 matt #define MFC0 dmfc0
511 1.41 matt #define MTC0 dmtc0
512 1.41 matt #endif
513 1.41 matt
514 1.41 matt #if defined(__mips_o32) || defined(__mips_o64)
515 1.41 matt
516 1.41 matt #ifdef __ABICALLS__
517 1.41 matt #define CPRESTORE(r) .cprestore r
518 1.41 matt #define CPLOAD(r) .cpload r
519 1.41 matt #else
520 1.41 matt #define CPRESTORE(r) /* not needed */
521 1.41 matt #define CPLOAD(r) /* not needed */
522 1.41 matt #endif
523 1.41 matt
524 1.41 matt #define SETUP_GP \
525 1.41 matt .set push; \
526 1.41 matt .set noreorder; \
527 1.41 matt .cpload t9; \
528 1.41 matt .set pop
529 1.41 matt #define SETUP_GPX(r) \
530 1.41 matt .set push; \
531 1.41 matt .set noreorder; \
532 1.41 matt move r,ra; /* save old ra */ \
533 1.41 matt bal 7f; \
534 1.41 matt nop; \
535 1.41 matt 7: .cpload ra; \
536 1.41 matt move ra,r; \
537 1.41 matt .set pop
538 1.41 matt #define SETUP_GPX_L(r,lbl) \
539 1.41 matt .set push; \
540 1.41 matt .set noreorder; \
541 1.41 matt move r,ra; /* save old ra */ \
542 1.41 matt bal lbl; \
543 1.41 matt nop; \
544 1.41 matt lbl: .cpload ra; \
545 1.41 matt move ra,r; \
546 1.41 matt .set pop
547 1.41 matt #define SAVE_GP(x) .cprestore x
548 1.41 matt
549 1.41 matt #define SETUP_GP64(a,b) /* n32/n64 specific */
550 1.41 matt #define SETUP_GP64_R(a,b) /* n32/n64 specific */
551 1.41 matt #define SETUP_GPX64(a,b) /* n32/n64 specific */
552 1.41 matt #define SETUP_GPX64_L(a,b,c) /* n32/n64 specific */
553 1.41 matt #define RESTORE_GP64 /* n32/n64 specific */
554 1.41 matt #define USE_ALT_CP(a) /* n32/n64 specific */
555 1.41 matt #endif /* __mips_o32 || __mips_o64 */
556 1.41 matt
557 1.41 matt #if defined(__mips_o32) || defined(__mips_o64)
558 1.22 simonb #define REG_PROLOGUE .set push
559 1.16 castor #define REG_EPILOGUE .set pop
560 1.41 matt #endif
561 1.41 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 1.41 matt #endif
565 1.41 matt
566 1.41 matt #if defined(__mips_n32) || defined(__mips_n64)
567 1.41 matt #define SETUP_GP /* o32 specific */
568 1.41 matt #define SETUP_GPX(r) /* o32 specific */
569 1.41 matt #define SETUP_GPX_L(r,lbl) /* o32 specific */
570 1.41 matt #define SAVE_GP(x) /* o32 specific */
571 1.41 matt #define SETUP_GP64(a,b) .cpsetup $25, a, b
572 1.41 matt #define SETUP_GPX64(a,b) \
573 1.41 matt .set push; \
574 1.41 matt move b,ra; \
575 1.41 matt .set noreorder; \
576 1.41 matt bal 7f; \
577 1.41 matt nop; \
578 1.41 matt 7: .set pop; \
579 1.41 matt .cpsetup ra, a, 7b; \
580 1.41 matt move ra,b
581 1.41 matt #define SETUP_GPX64_L(a,b,c) \
582 1.41 matt .set push; \
583 1.41 matt move b,ra; \
584 1.41 matt .set noreorder; \
585 1.41 matt bal c; \
586 1.41 matt nop; \
587 1.41 matt c: .set pop; \
588 1.41 matt .cpsetup ra, a, c; \
589 1.41 matt move ra,b
590 1.41 matt #define RESTORE_GP64 .cpreturn
591 1.41 matt #define USE_ALT_CP(a) .cplocal a
592 1.41 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 1.41 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 1.41 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 1.41 matt #define DYNAMIC_STATUS_MASK(sr,scratch)
614 1.41 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 1.41 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 */
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