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soft mmu support - moved unrelated code to help2-i386.c - synthetize string instructions
[qemu.git] / op-i386.c
CommitLineData
7d13299d
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1/*
2 * i386 micro operations
3 *
4 * Copyright (c) 2003 Fabrice Bellard
5 *
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6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
7d13299d 10 *
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11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
7d13299d 15 *
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16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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19 */
20#include "exec-i386.h"
7bfdb6d1 21
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22/* n must be a constant to be efficient */
23static inline int lshift(int x, int n)
7bfdb6d1 24{
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25 if (n >= 0)
26 return x << n;
27 else
28 return x >> (-n);
7bfdb6d1 29}
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30
31/* we define the various pieces of code used by the JIT */
32
33#define REG EAX
34#define REGNAME _EAX
35#include "opreg_template.h"
36#undef REG
37#undef REGNAME
38
39#define REG ECX
40#define REGNAME _ECX
41#include "opreg_template.h"
42#undef REG
43#undef REGNAME
44
45#define REG EDX
46#define REGNAME _EDX
47#include "opreg_template.h"
48#undef REG
49#undef REGNAME
50
51#define REG EBX
52#define REGNAME _EBX
53#include "opreg_template.h"
54#undef REG
55#undef REGNAME
56
57#define REG ESP
58#define REGNAME _ESP
59#include "opreg_template.h"
60#undef REG
61#undef REGNAME
62
63#define REG EBP
64#define REGNAME _EBP
65#include "opreg_template.h"
66#undef REG
67#undef REGNAME
68
69#define REG ESI
70#define REGNAME _ESI
71#include "opreg_template.h"
72#undef REG
73#undef REGNAME
74
75#define REG EDI
76#define REGNAME _EDI
77#include "opreg_template.h"
78#undef REG
79#undef REGNAME
80
dc99065b 81/* operations with flags */
7bfdb6d1 82
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83/* update flags with T0 and T1 (add/sub case) */
84void OPPROTO op_update2_cc(void)
7bfdb6d1 85{
5797fa5d 86 CC_SRC = T1;
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87 CC_DST = T0;
88}
89
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90/* update flags with T0 (logic operation case) */
91void OPPROTO op_update1_cc(void)
7bfdb6d1 92{
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93 CC_DST = T0;
94}
95
5797fa5d 96void OPPROTO op_update_neg_cc(void)
7bfdb6d1 97{
5797fa5d 98 CC_SRC = -T0;
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99 CC_DST = T0;
100}
101
102void OPPROTO op_cmpl_T0_T1_cc(void)
103{
5797fa5d 104 CC_SRC = T1;
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105 CC_DST = T0 - T1;
106}
107
5797fa5d 108void OPPROTO op_update_inc_cc(void)
7bfdb6d1 109{
4b74fe1f 110 CC_SRC = cc_table[CC_OP].compute_c();
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111 CC_DST = T0;
112}
113
114void OPPROTO op_testl_T0_T1_cc(void)
115{
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116 CC_DST = T0 & T1;
117}
118
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119/* operations without flags */
120
121void OPPROTO op_addl_T0_T1(void)
122{
123 T0 += T1;
124}
125
126void OPPROTO op_orl_T0_T1(void)
127{
128 T0 |= T1;
129}
130
131void OPPROTO op_andl_T0_T1(void)
132{
133 T0 &= T1;
134}
135
136void OPPROTO op_subl_T0_T1(void)
137{
138 T0 -= T1;
139}
140
141void OPPROTO op_xorl_T0_T1(void)
142{
143 T0 ^= T1;
144}
145
146void OPPROTO op_negl_T0(void)
147{
148 T0 = -T0;
149}
150
151void OPPROTO op_incl_T0(void)
152{
153 T0++;
154}
155
156void OPPROTO op_decl_T0(void)
157{
158 T0--;
159}
160
161void OPPROTO op_notl_T0(void)
162{
163 T0 = ~T0;
164}
165
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166void OPPROTO op_bswapl_T0(void)
167{
168 T0 = bswap32(T0);
169}
170
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171/* multiply/divide */
172void OPPROTO op_mulb_AL_T0(void)
173{
174 unsigned int res;
175 res = (uint8_t)EAX * (uint8_t)T0;
176 EAX = (EAX & 0xffff0000) | res;
177 CC_SRC = (res & 0xff00);
178}
179
180void OPPROTO op_imulb_AL_T0(void)
181{
182 int res;
183 res = (int8_t)EAX * (int8_t)T0;
184 EAX = (EAX & 0xffff0000) | (res & 0xffff);
185 CC_SRC = (res != (int8_t)res);
186}
187
188void OPPROTO op_mulw_AX_T0(void)
189{
190 unsigned int res;
191 res = (uint16_t)EAX * (uint16_t)T0;
192 EAX = (EAX & 0xffff0000) | (res & 0xffff);
193 EDX = (EDX & 0xffff0000) | ((res >> 16) & 0xffff);
194 CC_SRC = res >> 16;
195}
196
197void OPPROTO op_imulw_AX_T0(void)
198{
199 int res;
200 res = (int16_t)EAX * (int16_t)T0;
201 EAX = (EAX & 0xffff0000) | (res & 0xffff);
202 EDX = (EDX & 0xffff0000) | ((res >> 16) & 0xffff);
203 CC_SRC = (res != (int16_t)res);
204}
205
206void OPPROTO op_mull_EAX_T0(void)
207{
208 uint64_t res;
209 res = (uint64_t)((uint32_t)EAX) * (uint64_t)((uint32_t)T0);
210 EAX = res;
211 EDX = res >> 32;
212 CC_SRC = res >> 32;
213}
214
215void OPPROTO op_imull_EAX_T0(void)
216{
217 int64_t res;
218 res = (int64_t)((int32_t)EAX) * (int64_t)((int32_t)T0);
219 EAX = res;
220 EDX = res >> 32;
221 CC_SRC = (res != (int32_t)res);
222}
223
224void OPPROTO op_imulw_T0_T1(void)
225{
226 int res;
227 res = (int16_t)T0 * (int16_t)T1;
228 T0 = res;
229 CC_SRC = (res != (int16_t)res);
230}
231
232void OPPROTO op_imull_T0_T1(void)
233{
234 int64_t res;
4b74fe1f 235 res = (int64_t)((int32_t)T0) * (int64_t)((int32_t)T1);
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236 T0 = res;
237 CC_SRC = (res != (int32_t)res);
238}
239
240/* division, flags are undefined */
9de5e440 241/* XXX: add exceptions for overflow */
87f4827e 242
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243void OPPROTO op_divb_AL_T0(void)
244{
245 unsigned int num, den, q, r;
246
247 num = (EAX & 0xffff);
248 den = (T0 & 0xff);
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249 if (den == 0) {
250 EIP = PARAM1;
9de5e440 251 raise_exception(EXCP00_DIVZ);
f4beb510 252 }
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253 q = (num / den) & 0xff;
254 r = (num % den) & 0xff;
255 EAX = (EAX & 0xffff0000) | (r << 8) | q;
256}
257
258void OPPROTO op_idivb_AL_T0(void)
259{
260 int num, den, q, r;
261
262 num = (int16_t)EAX;
263 den = (int8_t)T0;
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264 if (den == 0) {
265 EIP = PARAM1;
9de5e440 266 raise_exception(EXCP00_DIVZ);
f4beb510 267 }
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268 q = (num / den) & 0xff;
269 r = (num % den) & 0xff;
270 EAX = (EAX & 0xffff0000) | (r << 8) | q;
271}
272
273void OPPROTO op_divw_AX_T0(void)
274{
275 unsigned int num, den, q, r;
276
277 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
278 den = (T0 & 0xffff);
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279 if (den == 0) {
280 EIP = PARAM1;
9de5e440 281 raise_exception(EXCP00_DIVZ);
f4beb510 282 }
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283 q = (num / den) & 0xffff;
284 r = (num % den) & 0xffff;
285 EAX = (EAX & 0xffff0000) | q;
286 EDX = (EDX & 0xffff0000) | r;
287}
288
289void OPPROTO op_idivw_AX_T0(void)
290{
291 int num, den, q, r;
292
293 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
294 den = (int16_t)T0;
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295 if (den == 0) {
296 EIP = PARAM1;
9de5e440 297 raise_exception(EXCP00_DIVZ);
f4beb510 298 }
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299 q = (num / den) & 0xffff;
300 r = (num % den) & 0xffff;
301 EAX = (EAX & 0xffff0000) | q;
302 EDX = (EDX & 0xffff0000) | r;
303}
304
305void OPPROTO op_divl_EAX_T0(void)
306{
87f4827e 307 helper_divl_EAX_T0(PARAM1);
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308}
309
310void OPPROTO op_idivl_EAX_T0(void)
311{
87f4827e 312 helper_idivl_EAX_T0(PARAM1);
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313}
314
dab2ed99 315/* constant load & misc op */
7bfdb6d1 316
ba1c6e37 317void OPPROTO op_movl_T0_im(void)
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318{
319 T0 = PARAM1;
320}
321
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322void OPPROTO op_addl_T0_im(void)
323{
324 T0 += PARAM1;
325}
326
327void OPPROTO op_andl_T0_ffff(void)
328{
329 T0 = T0 & 0xffff;
330}
331
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332void OPPROTO op_andl_T0_im(void)
333{
334 T0 = T0 & PARAM1;
335}
336
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337void OPPROTO op_movl_T0_T1(void)
338{
339 T0 = T1;
340}
341
ba1c6e37 342void OPPROTO op_movl_T1_im(void)
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343{
344 T1 = PARAM1;
345}
346
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347void OPPROTO op_addl_T1_im(void)
348{
349 T1 += PARAM1;
350}
351
352void OPPROTO op_movl_T1_A0(void)
353{
354 T1 = A0;
355}
356
ba1c6e37 357void OPPROTO op_movl_A0_im(void)
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358{
359 A0 = PARAM1;
360}
361
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362void OPPROTO op_addl_A0_im(void)
363{
364 A0 += PARAM1;
365}
366
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367void OPPROTO op_addl_A0_AL(void)
368{
369 A0 += (EAX & 0xff);
370}
371
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372void OPPROTO op_andl_A0_ffff(void)
373{
374 A0 = A0 & 0xffff;
375}
376
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377/* memory access */
378
379void OPPROTO op_ldub_T0_A0(void)
380{
381 T0 = ldub((uint8_t *)A0);
382}
383
384void OPPROTO op_ldsb_T0_A0(void)
385{
386 T0 = ldsb((int8_t *)A0);
387}
388
389void OPPROTO op_lduw_T0_A0(void)
390{
391 T0 = lduw((uint8_t *)A0);
392}
393
394void OPPROTO op_ldsw_T0_A0(void)
395{
396 T0 = ldsw((int8_t *)A0);
397}
398
399void OPPROTO op_ldl_T0_A0(void)
400{
401 T0 = ldl((uint8_t *)A0);
402}
403
404void OPPROTO op_ldub_T1_A0(void)
405{
406 T1 = ldub((uint8_t *)A0);
407}
408
409void OPPROTO op_ldsb_T1_A0(void)
410{
411 T1 = ldsb((int8_t *)A0);
412}
413
414void OPPROTO op_lduw_T1_A0(void)
415{
416 T1 = lduw((uint8_t *)A0);
417}
418
419void OPPROTO op_ldsw_T1_A0(void)
420{
421 T1 = ldsw((int8_t *)A0);
422}
423
424void OPPROTO op_ldl_T1_A0(void)
425{
426 T1 = ldl((uint8_t *)A0);
427}
428
429void OPPROTO op_stb_T0_A0(void)
430{
431 stb((uint8_t *)A0, T0);
432}
433
434void OPPROTO op_stw_T0_A0(void)
435{
436 stw((uint8_t *)A0, T0);
437}
438
439void OPPROTO op_stl_T0_A0(void)
440{
441 stl((uint8_t *)A0, T0);
442}
443
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444/* used for bit operations */
445
446void OPPROTO op_add_bitw_A0_T1(void)
447{
448 A0 += ((int32_t)T1 >> 4) << 1;
449}
450
451void OPPROTO op_add_bitl_A0_T1(void)
452{
453 A0 += ((int32_t)T1 >> 5) << 2;
454}
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455
456/* indirect jump */
0ecfa993 457
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458void OPPROTO op_jmp_T0(void)
459{
dab2ed99 460 EIP = T0;
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461}
462
463void OPPROTO op_jmp_im(void)
464{
dab2ed99 465 EIP = PARAM1;
7bfdb6d1
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466}
467
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468void OPPROTO op_hlt(void)
469{
470 env->exception_index = EXCP_HLT;
471 cpu_loop_exit();
472}
473
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474void OPPROTO op_debug(void)
475{
476 env->exception_index = EXCP_DEBUG;
477 cpu_loop_exit();
478}
479
f4beb510 480void OPPROTO op_raise_interrupt(void)
0ecfa993 481{
504e56eb 482 int intno;
f4beb510 483 unsigned int next_eip;
504e56eb 484 intno = PARAM1;
f4beb510
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485 next_eip = PARAM2;
486 raise_interrupt(intno, 1, 0, next_eip);
0ecfa993
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487}
488
564c8f99 489void OPPROTO op_raise_exception(void)
0ecfa993 490{
564c8f99
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491 int exception_index;
492 exception_index = PARAM1;
493 raise_exception(exception_index);
0ecfa993
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494}
495
496void OPPROTO op_into(void)
497{
498 int eflags;
499 eflags = cc_table[CC_OP].compute_all();
500 if (eflags & CC_O) {
f4beb510 501 raise_interrupt(EXCP04_INTO, 1, 0, PARAM1);
a4a0ffdb 502 }
504e56eb 503 FORCE_RET();
a4a0ffdb
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504}
505
504e56eb
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506void OPPROTO op_cli(void)
507{
508 env->eflags &= ~IF_MASK;
509}
510
f631ef9b
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511void OPPROTO op_sti(void)
512{
504e56eb 513 env->eflags |= IF_MASK;
f631ef9b
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514}
515
3acace13 516#if 0
f631ef9b 517/* vm86plus instructions */
f631ef9b
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518void OPPROTO op_cli_vm(void)
519{
520 env->eflags &= ~VIF_MASK;
521}
522
523void OPPROTO op_sti_vm(void)
524{
525 env->eflags |= VIF_MASK;
526 if (env->eflags & VIP_MASK) {
527 EIP = PARAM1;
528 raise_exception(EXCP0D_GPF);
529 }
530 FORCE_RET();
531}
3acace13 532#endif
f631ef9b 533
a4a0ffdb
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534void OPPROTO op_boundw(void)
535{
536 int low, high, v;
537 low = ldsw((uint8_t *)A0);
538 high = ldsw((uint8_t *)A0 + 2);
539 v = (int16_t)T0;
f4beb510
FB
540 if (v < low || v > high) {
541 EIP = PARAM1;
a4a0ffdb 542 raise_exception(EXCP05_BOUND);
f4beb510 543 }
a4a0ffdb
FB
544 FORCE_RET();
545}
546
547void OPPROTO op_boundl(void)
548{
549 int low, high, v;
550 low = ldl((uint8_t *)A0);
551 high = ldl((uint8_t *)A0 + 4);
552 v = T0;
f4beb510
FB
553 if (v < low || v > high) {
554 EIP = PARAM1;
a4a0ffdb 555 raise_exception(EXCP05_BOUND);
f4beb510 556 }
a4a0ffdb
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557 FORCE_RET();
558}
559
560void OPPROTO op_cmpxchg8b(void)
561{
87f4827e 562 helper_cmpxchg8b();
0ecfa993
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563}
564
d4e8164f
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565void OPPROTO op_jmp_tb_next(void)
566{
567 JUMP_TB(PARAM1, 0, PARAM2);
568}
569
570void OPPROTO op_movl_T0_0(void)
571{
572 T0 = 0;
573}
574
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575void OPPROTO op_exit_tb(void)
576{
577 EXIT_TB();
578}
579
d4e8164f 580/* multiple size ops */
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581
582#define ldul ldl
583
7bfdb6d1 584#define SHIFT 0
367e86e8 585#include "ops_template.h"
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586#undef SHIFT
587
7bfdb6d1 588#define SHIFT 1
367e86e8 589#include "ops_template.h"
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590#undef SHIFT
591
7bfdb6d1 592#define SHIFT 2
367e86e8 593#include "ops_template.h"
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594#undef SHIFT
595
596/* sign extend */
597
598void OPPROTO op_movsbl_T0_T0(void)
599{
600 T0 = (int8_t)T0;
601}
602
603void OPPROTO op_movzbl_T0_T0(void)
604{
605 T0 = (uint8_t)T0;
606}
607
608void OPPROTO op_movswl_T0_T0(void)
609{
610 T0 = (int16_t)T0;
611}
612
613void OPPROTO op_movzwl_T0_T0(void)
614{
615 T0 = (uint16_t)T0;
616}
617
618void OPPROTO op_movswl_EAX_AX(void)
619{
620 EAX = (int16_t)EAX;
621}
622
623void OPPROTO op_movsbw_AX_AL(void)
624{
625 EAX = (EAX & 0xffff0000) | ((int8_t)EAX & 0xffff);
626}
627
628void OPPROTO op_movslq_EDX_EAX(void)
629{
630 EDX = (int32_t)EAX >> 31;
631}
632
633void OPPROTO op_movswl_DX_AX(void)
634{
635 EDX = (EDX & 0xffff0000) | (((int16_t)EAX >> 15) & 0xffff);
636}
637
638/* push/pop */
7bfdb6d1
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639
640void op_pushl_T0(void)
641{
642 uint32_t offset;
643 offset = ESP - 4;
644 stl((void *)offset, T0);
645 /* modify ESP after to handle exceptions correctly */
646 ESP = offset;
647}
648
dab2ed99
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649void op_pushw_T0(void)
650{
651 uint32_t offset;
652 offset = ESP - 2;
653 stw((void *)offset, T0);
654 /* modify ESP after to handle exceptions correctly */
655 ESP = offset;
656}
657
658void op_pushl_ss32_T0(void)
7bfdb6d1
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659{
660 uint32_t offset;
661 offset = ESP - 4;
d8bc1fd0 662 stl(env->segs[R_SS].base + offset, T0);
dab2ed99
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663 /* modify ESP after to handle exceptions correctly */
664 ESP = offset;
665}
666
667void op_pushw_ss32_T0(void)
668{
669 uint32_t offset;
670 offset = ESP - 2;
d8bc1fd0 671 stw(env->segs[R_SS].base + offset, T0);
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672 /* modify ESP after to handle exceptions correctly */
673 ESP = offset;
674}
675
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676void op_pushl_ss16_T0(void)
677{
678 uint32_t offset;
679 offset = (ESP - 4) & 0xffff;
d8bc1fd0 680 stl(env->segs[R_SS].base + offset, T0);
dab2ed99
FB
681 /* modify ESP after to handle exceptions correctly */
682 ESP = (ESP & ~0xffff) | offset;
683}
684
685void op_pushw_ss16_T0(void)
686{
687 uint32_t offset;
688 offset = (ESP - 2) & 0xffff;
d8bc1fd0 689 stw(env->segs[R_SS].base + offset, T0);
dab2ed99
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690 /* modify ESP after to handle exceptions correctly */
691 ESP = (ESP & ~0xffff) | offset;
692}
693
694/* NOTE: ESP update is done after */
7bfdb6d1
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695void op_popl_T0(void)
696{
697 T0 = ldl((void *)ESP);
dab2ed99
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698}
699
700void op_popw_T0(void)
701{
702 T0 = lduw((void *)ESP);
703}
704
705void op_popl_ss32_T0(void)
706{
d8bc1fd0 707 T0 = ldl(env->segs[R_SS].base + ESP);
dab2ed99
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708}
709
710void op_popw_ss32_T0(void)
711{
d8bc1fd0 712 T0 = lduw(env->segs[R_SS].base + ESP);
dab2ed99
FB
713}
714
715void op_popl_ss16_T0(void)
716{
d8bc1fd0 717 T0 = ldl(env->segs[R_SS].base + (ESP & 0xffff));
dab2ed99
FB
718}
719
720void op_popw_ss16_T0(void)
721{
d8bc1fd0 722 T0 = lduw(env->segs[R_SS].base + (ESP & 0xffff));
dab2ed99
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723}
724
725void op_addl_ESP_4(void)
726{
7bfdb6d1
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727 ESP += 4;
728}
729
dab2ed99
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730void op_addl_ESP_2(void)
731{
732 ESP += 2;
733}
734
735void op_addw_ESP_4(void)
736{
737 ESP = (ESP & ~0xffff) | ((ESP + 4) & 0xffff);
738}
739
740void op_addw_ESP_2(void)
741{
742 ESP = (ESP & ~0xffff) | ((ESP + 2) & 0xffff);
743}
744
7bfdb6d1
FB
745void op_addl_ESP_im(void)
746{
747 ESP += PARAM1;
748}
367e86e8 749
dab2ed99
FB
750void op_addw_ESP_im(void)
751{
752 ESP = (ESP & ~0xffff) | ((ESP + PARAM1) & 0xffff);
27362c82
FB
753}
754
a4a0ffdb 755void OPPROTO op_rdtsc(void)
27362c82 756{
87f4827e 757 helper_rdtsc();
27362c82
FB
758}
759
a4a0ffdb
FB
760void OPPROTO op_cpuid(void)
761{
762 helper_cpuid();
763}
764
3c1cf9fa
FB
765void OPPROTO op_rdmsr(void)
766{
767 helper_rdmsr();
768}
769
770void OPPROTO op_wrmsr(void)
771{
772 helper_wrmsr();
773}
774
27362c82
FB
775/* bcd */
776
777/* XXX: exception */
778void OPPROTO op_aam(void)
779{
780 int base = PARAM1;
781 int al, ah;
782 al = EAX & 0xff;
783 ah = al / base;
784 al = al % base;
785 EAX = (EAX & ~0xffff) | al | (ah << 8);
786 CC_DST = al;
787}
788
789void OPPROTO op_aad(void)
790{
791 int base = PARAM1;
792 int al, ah;
793 al = EAX & 0xff;
794 ah = (EAX >> 8) & 0xff;
795 al = ((ah * base) + al) & 0xff;
796 EAX = (EAX & ~0xffff) | al;
797 CC_DST = al;
798}
799
800void OPPROTO op_aaa(void)
801{
802 int icarry;
803 int al, ah, af;
804 int eflags;
805
806 eflags = cc_table[CC_OP].compute_all();
807 af = eflags & CC_A;
808 al = EAX & 0xff;
809 ah = (EAX >> 8) & 0xff;
810
811 icarry = (al > 0xf9);
812 if (((al & 0x0f) > 9 ) || af) {
813 al = (al + 6) & 0x0f;
814 ah = (ah + 1 + icarry) & 0xff;
815 eflags |= CC_C | CC_A;
816 } else {
817 eflags &= ~(CC_C | CC_A);
818 al &= 0x0f;
819 }
820 EAX = (EAX & ~0xffff) | al | (ah << 8);
821 CC_SRC = eflags;
822}
823
824void OPPROTO op_aas(void)
825{
826 int icarry;
827 int al, ah, af;
828 int eflags;
829
830 eflags = cc_table[CC_OP].compute_all();
831 af = eflags & CC_A;
832 al = EAX & 0xff;
833 ah = (EAX >> 8) & 0xff;
834
835 icarry = (al < 6);
836 if (((al & 0x0f) > 9 ) || af) {
837 al = (al - 6) & 0x0f;
838 ah = (ah - 1 - icarry) & 0xff;
839 eflags |= CC_C | CC_A;
840 } else {
841 eflags &= ~(CC_C | CC_A);
842 al &= 0x0f;
843 }
844 EAX = (EAX & ~0xffff) | al | (ah << 8);
845 CC_SRC = eflags;
846}
847
848void OPPROTO op_daa(void)
849{
850 int al, af, cf;
851 int eflags;
852
853 eflags = cc_table[CC_OP].compute_all();
854 cf = eflags & CC_C;
855 af = eflags & CC_A;
856 al = EAX & 0xff;
857
858 eflags = 0;
859 if (((al & 0x0f) > 9 ) || af) {
860 al = (al + 6) & 0xff;
861 eflags |= CC_A;
862 }
863 if ((al > 0x9f) || cf) {
864 al = (al + 0x60) & 0xff;
865 eflags |= CC_C;
866 }
867 EAX = (EAX & ~0xff) | al;
868 /* well, speed is not an issue here, so we compute the flags by hand */
869 eflags |= (al == 0) << 6; /* zf */
870 eflags |= parity_table[al]; /* pf */
871 eflags |= (al & 0x80); /* sf */
872 CC_SRC = eflags;
873}
874
875void OPPROTO op_das(void)
876{
877 int al, al1, af, cf;
878 int eflags;
879
880 eflags = cc_table[CC_OP].compute_all();
881 cf = eflags & CC_C;
882 af = eflags & CC_A;
883 al = EAX & 0xff;
884
885 eflags = 0;
886 al1 = al;
887 if (((al & 0x0f) > 9 ) || af) {
888 eflags |= CC_A;
889 if (al < 6 || cf)
890 eflags |= CC_C;
891 al = (al - 6) & 0xff;
892 }
893 if ((al1 > 0x99) || cf) {
894 al = (al - 0x60) & 0xff;
895 eflags |= CC_C;
896 }
897 EAX = (EAX & ~0xff) | al;
898 /* well, speed is not an issue here, so we compute the flags by hand */
899 eflags |= (al == 0) << 6; /* zf */
900 eflags |= parity_table[al]; /* pf */
901 eflags |= (al & 0x80); /* sf */
902 CC_SRC = eflags;
903}
904
6dbad63e
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905/* segment handling */
906
6dbad63e
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907void OPPROTO op_movl_seg_T0(void)
908{
f4beb510
FB
909 load_seg(PARAM1, T0 & 0xffff, PARAM2);
910}
911
912/* faster VM86 version */
913void OPPROTO op_movl_seg_T0_vm(void)
914{
915 int selector;
d8bc1fd0 916 SegmentCache *sc;
f4beb510
FB
917
918 selector = T0 & 0xffff;
919 /* env->segs[] access */
d8bc1fd0
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920 sc = (SegmentCache *)((char *)env + PARAM1);
921 sc->selector = selector;
922 sc->base = (void *)(selector << 4);
6dbad63e
FB
923}
924
925void OPPROTO op_movl_T0_seg(void)
926{
d8bc1fd0 927 T0 = env->segs[PARAM1].selector;
6dbad63e
FB
928}
929
a4a0ffdb
FB
930void OPPROTO op_movl_A0_seg(void)
931{
932 A0 = *(unsigned long *)((char *)env + PARAM1);
933}
934
6dbad63e
FB
935void OPPROTO op_addl_A0_seg(void)
936{
937 A0 += *(unsigned long *)((char *)env + PARAM1);
938}
939
2792c4f2
FB
940void OPPROTO op_lsl(void)
941{
942 helper_lsl();
943}
944
2792c4f2
FB
945void OPPROTO op_lar(void)
946{
947 helper_lar();
948}
949
d8bc1fd0 950/* T0: segment, T1:eip */
2c1794c4 951void OPPROTO op_ljmp_protected_T0_T1(void)
d8bc1fd0 952{
2c1794c4
FB
953 helper_ljmp_protected_T0_T1();
954}
955
956void OPPROTO op_lcall_real_T0_T1(void)
957{
958 helper_lcall_real_T0_T1(PARAM1, PARAM2);
959}
960
961void OPPROTO op_lcall_protected_T0_T1(void)
962{
963 helper_lcall_protected_T0_T1(PARAM1, PARAM2);
d8bc1fd0
FB
964}
965
8f186479
FB
966void OPPROTO op_iret_real(void)
967{
968 helper_iret_real(PARAM1);
969}
970
90a9fdae
FB
971void OPPROTO op_iret_protected(void)
972{
973 helper_iret_protected(PARAM1);
974}
975
2c1794c4
FB
976void OPPROTO op_lret_protected(void)
977{
978 helper_lret_protected(PARAM1, PARAM2);
979}
980
d8bc1fd0
FB
981void OPPROTO op_lldt_T0(void)
982{
983 helper_lldt_T0();
984}
985
986void OPPROTO op_ltr_T0(void)
987{
988 helper_ltr_T0();
989}
990
991/* CR registers access */
992void OPPROTO op_movl_crN_T0(void)
993{
994 helper_movl_crN_T0(PARAM1);
995}
996
997/* DR registers access */
998void OPPROTO op_movl_drN_T0(void)
999{
1000 helper_movl_drN_T0(PARAM1);
1001}
1002
1003void OPPROTO op_lmsw_T0(void)
1004{
1005 /* only 4 lower bits of CR0 are modified */
1006 T0 = (env->cr[0] & ~0xf) | (T0 & 0xf);
1007 helper_movl_crN_T0(0);
1008}
1009
90a9fdae
FB
1010void OPPROTO op_invlpg_A0(void)
1011{
1012 helper_invlpg(A0);
1013}
1014
d8bc1fd0
FB
1015void OPPROTO op_movl_T0_env(void)
1016{
1017 T0 = *(uint32_t *)((char *)env + PARAM1);
1018}
1019
1020void OPPROTO op_movl_env_T0(void)
1021{
1022 *(uint32_t *)((char *)env + PARAM1) = T0;
1023}
1024
1025void OPPROTO op_movl_env_T1(void)
1026{
1027 *(uint32_t *)((char *)env + PARAM1) = T1;
1028}
1029
1030void OPPROTO op_clts(void)
1031{
1032 env->cr[0] &= ~CR0_TS_MASK;
1033}
1034
367e86e8
FB
1035/* flags handling */
1036
d4e8164f
FB
1037/* slow jumps cases : in order to avoid calling a function with a
1038 pointer (which can generate a stack frame on PowerPC), we use
1039 op_setcc to set T0 and then call op_jcc. */
1040void OPPROTO op_jcc(void)
367e86e8 1041{
d4e8164f
FB
1042 if (T0)
1043 JUMP_TB(PARAM1, 0, PARAM2);
367e86e8 1044 else
d4e8164f 1045 JUMP_TB(PARAM1, 1, PARAM3);
0ecfa993 1046 FORCE_RET();
367e86e8
FB
1047}
1048
1049/* slow set cases (compute x86 flags) */
1050void OPPROTO op_seto_T0_cc(void)
1051{
1052 int eflags;
1053 eflags = cc_table[CC_OP].compute_all();
1054 T0 = (eflags >> 11) & 1;
1055}
1056
1057void OPPROTO op_setb_T0_cc(void)
1058{
1059 T0 = cc_table[CC_OP].compute_c();
1060}
1061
1062void OPPROTO op_setz_T0_cc(void)
1063{
1064 int eflags;
1065 eflags = cc_table[CC_OP].compute_all();
1066 T0 = (eflags >> 6) & 1;
1067}
1068
1069void OPPROTO op_setbe_T0_cc(void)
1070{
1071 int eflags;
1072 eflags = cc_table[CC_OP].compute_all();
1073 T0 = (eflags & (CC_Z | CC_C)) != 0;
1074}
1075
1076void OPPROTO op_sets_T0_cc(void)
1077{
1078 int eflags;
1079 eflags = cc_table[CC_OP].compute_all();
1080 T0 = (eflags >> 7) & 1;
1081}
1082
1083void OPPROTO op_setp_T0_cc(void)
1084{
1085 int eflags;
1086 eflags = cc_table[CC_OP].compute_all();
1087 T0 = (eflags >> 2) & 1;
1088}
1089
1090void OPPROTO op_setl_T0_cc(void)
1091{
1092 int eflags;
1093 eflags = cc_table[CC_OP].compute_all();
1094 T0 = ((eflags ^ (eflags >> 4)) >> 7) & 1;
1095}
1096
1097void OPPROTO op_setle_T0_cc(void)
1098{
1099 int eflags;
1100 eflags = cc_table[CC_OP].compute_all();
1101 T0 = (((eflags ^ (eflags >> 4)) & 0x80) || (eflags & CC_Z)) != 0;
1102}
1103
1104void OPPROTO op_xor_T0_1(void)
1105{
1106 T0 ^= 1;
1107}
1108
1109void OPPROTO op_set_cc_op(void)
1110{
1111 CC_OP = PARAM1;
1112}
1113
90a9fdae 1114#define FL_UPDATE_MASK16 (FL_UPDATE_MASK32 & 0xffff)
a4a0ffdb 1115
367e86e8
FB
1116void OPPROTO op_movl_eflags_T0(void)
1117{
a4a0ffdb
FB
1118 int eflags;
1119 eflags = T0;
1120 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1121 DF = 1 - (2 * ((eflags >> 10) & 1));
1122 /* we also update some system flags as in user mode */
90a9fdae
FB
1123 env->eflags = (env->eflags & ~FL_UPDATE_MASK32) |
1124 (eflags & FL_UPDATE_MASK32);
f631ef9b
FB
1125}
1126
1127void OPPROTO op_movw_eflags_T0(void)
1128{
1129 int eflags;
1130 eflags = T0;
1131 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1132 DF = 1 - (2 * ((eflags >> 10) & 1));
1133 /* we also update some system flags as in user mode */
90a9fdae
FB
1134 env->eflags = (env->eflags & ~FL_UPDATE_MASK16) |
1135 (eflags & FL_UPDATE_MASK16);
1136}
1137
1138void OPPROTO op_movl_eflags_T0_cpl0(void)
1139{
1140 load_eflags(T0, FL_UPDATE_CPL0_MASK);
1141}
1142
1143void OPPROTO op_movw_eflags_T0_cpl0(void)
1144{
1145 load_eflags(T0, FL_UPDATE_CPL0_MASK & 0xffff);
f631ef9b
FB
1146}
1147
3acace13
FB
1148#if 0
1149/* vm86plus version */
f631ef9b
FB
1150void OPPROTO op_movw_eflags_T0_vm(void)
1151{
1152 int eflags;
1153 eflags = T0;
1154 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1155 DF = 1 - (2 * ((eflags >> 10) & 1));
1156 /* we also update some system flags as in user mode */
1157 env->eflags = (env->eflags & ~(FL_UPDATE_MASK16 | VIF_MASK)) |
1158 (eflags & FL_UPDATE_MASK16);
1159 if (eflags & IF_MASK) {
1160 env->eflags |= VIF_MASK;
1161 if (env->eflags & VIP_MASK) {
1162 EIP = PARAM1;
1163 raise_exception(EXCP0D_GPF);
1164 }
1165 }
1166 FORCE_RET();
1167}
1168
1169void OPPROTO op_movl_eflags_T0_vm(void)
1170{
1171 int eflags;
1172 eflags = T0;
1173 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1174 DF = 1 - (2 * ((eflags >> 10) & 1));
1175 /* we also update some system flags as in user mode */
1176 env->eflags = (env->eflags & ~(FL_UPDATE_MASK32 | VIF_MASK)) |
1177 (eflags & FL_UPDATE_MASK32);
1178 if (eflags & IF_MASK) {
1179 env->eflags |= VIF_MASK;
1180 if (env->eflags & VIP_MASK) {
1181 EIP = PARAM1;
1182 raise_exception(EXCP0D_GPF);
1183 }
1184 }
1185 FORCE_RET();
367e86e8 1186}
3acace13 1187#endif
367e86e8
FB
1188
1189/* XXX: compute only O flag */
1190void OPPROTO op_movb_eflags_T0(void)
1191{
1192 int of;
1193 of = cc_table[CC_OP].compute_all() & CC_O;
a4a0ffdb 1194 CC_SRC = (T0 & (CC_S | CC_Z | CC_A | CC_P | CC_C)) | of;
367e86e8
FB
1195}
1196
1197void OPPROTO op_movl_T0_eflags(void)
1198{
a4a0ffdb
FB
1199 int eflags;
1200 eflags = cc_table[CC_OP].compute_all();
1201 eflags |= (DF & DF_MASK);
1202 eflags |= env->eflags & ~(VM_MASK | RF_MASK);
1203 T0 = eflags;
367e86e8
FB
1204}
1205
3acace13
FB
1206/* vm86plus version */
1207#if 0
f631ef9b
FB
1208void OPPROTO op_movl_T0_eflags_vm(void)
1209{
1210 int eflags;
1211 eflags = cc_table[CC_OP].compute_all();
1212 eflags |= (DF & DF_MASK);
1213 eflags |= env->eflags & ~(VM_MASK | RF_MASK | IF_MASK);
1214 if (env->eflags & VIF_MASK)
1215 eflags |= IF_MASK;
1216 T0 = eflags;
1217}
3acace13 1218#endif
f631ef9b 1219
367e86e8
FB
1220void OPPROTO op_cld(void)
1221{
1222 DF = 1;
1223}
1224
1225void OPPROTO op_std(void)
1226{
1227 DF = -1;
1228}
1229
1230void OPPROTO op_clc(void)
1231{
1232 int eflags;
1233 eflags = cc_table[CC_OP].compute_all();
1234 eflags &= ~CC_C;
1235 CC_SRC = eflags;
1236}
1237
1238void OPPROTO op_stc(void)
1239{
1240 int eflags;
1241 eflags = cc_table[CC_OP].compute_all();
1242 eflags |= CC_C;
1243 CC_SRC = eflags;
1244}
1245
1246void OPPROTO op_cmc(void)
1247{
1248 int eflags;
1249 eflags = cc_table[CC_OP].compute_all();
1250 eflags ^= CC_C;
1251 CC_SRC = eflags;
1252}
1253
27362c82
FB
1254void OPPROTO op_salc(void)
1255{
1256 int cf;
1257 cf = cc_table[CC_OP].compute_c();
1258 EAX = (EAX & ~0xff) | ((-cf) & 0xff);
1259}
1260
367e86e8
FB
1261static int compute_all_eflags(void)
1262{
1263 return CC_SRC;
1264}
1265
1266static int compute_c_eflags(void)
1267{
1268 return CC_SRC & CC_C;
1269}
1270
1271static int compute_c_mul(void)
1272{
1273 int cf;
1274 cf = (CC_SRC != 0);
1275 return cf;
1276}
1277
1278static int compute_all_mul(void)
1279{
1280 int cf, pf, af, zf, sf, of;
1281 cf = (CC_SRC != 0);
1282 pf = 0; /* undefined */
1283 af = 0; /* undefined */
1284 zf = 0; /* undefined */
1285 sf = 0; /* undefined */
1286 of = cf << 11;
1287 return cf | pf | af | zf | sf | of;
1288}
1289
1290CCTable cc_table[CC_OP_NB] = {
1291 [CC_OP_DYNAMIC] = { /* should never happen */ },
1292
1293 [CC_OP_EFLAGS] = { compute_all_eflags, compute_c_eflags },
1294
1295 [CC_OP_MUL] = { compute_all_mul, compute_c_mul },
1296
1297 [CC_OP_ADDB] = { compute_all_addb, compute_c_addb },
1298 [CC_OP_ADDW] = { compute_all_addw, compute_c_addw },
1299 [CC_OP_ADDL] = { compute_all_addl, compute_c_addl },
1300
4b74fe1f
FB
1301 [CC_OP_ADCB] = { compute_all_adcb, compute_c_adcb },
1302 [CC_OP_ADCW] = { compute_all_adcw, compute_c_adcw },
1303 [CC_OP_ADCL] = { compute_all_adcl, compute_c_adcl },
1304
367e86e8
FB
1305 [CC_OP_SUBB] = { compute_all_subb, compute_c_subb },
1306 [CC_OP_SUBW] = { compute_all_subw, compute_c_subw },
1307 [CC_OP_SUBL] = { compute_all_subl, compute_c_subl },
1308
4b74fe1f
FB
1309 [CC_OP_SBBB] = { compute_all_sbbb, compute_c_sbbb },
1310 [CC_OP_SBBW] = { compute_all_sbbw, compute_c_sbbw },
1311 [CC_OP_SBBL] = { compute_all_sbbl, compute_c_sbbl },
1312
367e86e8
FB
1313 [CC_OP_LOGICB] = { compute_all_logicb, compute_c_logicb },
1314 [CC_OP_LOGICW] = { compute_all_logicw, compute_c_logicw },
1315 [CC_OP_LOGICL] = { compute_all_logicl, compute_c_logicl },
1316
4b74fe1f
FB
1317 [CC_OP_INCB] = { compute_all_incb, compute_c_incl },
1318 [CC_OP_INCW] = { compute_all_incw, compute_c_incl },
367e86e8
FB
1319 [CC_OP_INCL] = { compute_all_incl, compute_c_incl },
1320
4b74fe1f
FB
1321 [CC_OP_DECB] = { compute_all_decb, compute_c_incl },
1322 [CC_OP_DECW] = { compute_all_decw, compute_c_incl },
367e86e8
FB
1323 [CC_OP_DECL] = { compute_all_decl, compute_c_incl },
1324
2792c4f2
FB
1325 [CC_OP_SHLB] = { compute_all_shlb, compute_c_shlb },
1326 [CC_OP_SHLW] = { compute_all_shlw, compute_c_shlw },
367e86e8 1327 [CC_OP_SHLL] = { compute_all_shll, compute_c_shll },
4b74fe1f 1328
2792c4f2
FB
1329 [CC_OP_SARB] = { compute_all_sarb, compute_c_sarl },
1330 [CC_OP_SARW] = { compute_all_sarw, compute_c_sarl },
1331 [CC_OP_SARL] = { compute_all_sarl, compute_c_sarl },
367e86e8 1332};
927f621e 1333
f631ef9b
FB
1334/* floating point support. Some of the code for complicated x87
1335 functions comes from the LGPL'ed x86 emulator found in the Willows
1336 TWIN windows emulator. */
927f621e 1337
51fe6890
FB
1338#if defined(__powerpc__)
1339extern CPU86_LDouble copysign(CPU86_LDouble, CPU86_LDouble);
1340
1341/* correct (but slow) PowerPC rint() (glibc version is incorrect) */
1342double qemu_rint(double x)
1343{
1344 double y = 4503599627370496.0;
1345 if (fabs(x) >= y)
1346 return x;
1347 if (x < 0)
1348 y = -y;
1349 y = (x + y) - y;
1350 if (y == 0.0)
1351 y = copysign(y, x);
1352 return y;
1353}
1354
1355#define rint qemu_rint
1356#endif
1357
927f621e
FB
1358/* fp load FT0 */
1359
1360void OPPROTO op_flds_FT0_A0(void)
1361{
d014c98c
FB
1362#ifdef USE_FP_CONVERT
1363 FP_CONVERT.i32 = ldl((void *)A0);
1364 FT0 = FP_CONVERT.f;
1365#else
927f621e 1366 FT0 = ldfl((void *)A0);
d014c98c 1367#endif
927f621e
FB
1368}
1369
1370void OPPROTO op_fldl_FT0_A0(void)
1371{
d014c98c
FB
1372#ifdef USE_FP_CONVERT
1373 FP_CONVERT.i64 = ldq((void *)A0);
1374 FT0 = FP_CONVERT.d;
1375#else
927f621e 1376 FT0 = ldfq((void *)A0);
d014c98c 1377#endif
927f621e
FB
1378}
1379
04369ff2
FB
1380/* helpers are needed to avoid static constant reference. XXX: find a better way */
1381#ifdef USE_INT_TO_FLOAT_HELPERS
1382
1383void helper_fild_FT0_A0(void)
1384{
1385 FT0 = (CPU86_LDouble)ldsw((void *)A0);
1386}
1387
1388void helper_fildl_FT0_A0(void)
1389{
1390 FT0 = (CPU86_LDouble)((int32_t)ldl((void *)A0));
1391}
1392
1393void helper_fildll_FT0_A0(void)
1394{
1395 FT0 = (CPU86_LDouble)((int64_t)ldq((void *)A0));
1396}
1397
1398void OPPROTO op_fild_FT0_A0(void)
1399{
1400 helper_fild_FT0_A0();
1401}
1402
1403void OPPROTO op_fildl_FT0_A0(void)
1404{
1405 helper_fildl_FT0_A0();
1406}
1407
1408void OPPROTO op_fildll_FT0_A0(void)
1409{
1410 helper_fildll_FT0_A0();
1411}
1412
1413#else
1414
927f621e
FB
1415void OPPROTO op_fild_FT0_A0(void)
1416{
d014c98c
FB
1417#ifdef USE_FP_CONVERT
1418 FP_CONVERT.i32 = ldsw((void *)A0);
1419 FT0 = (CPU86_LDouble)FP_CONVERT.i32;
1420#else
927f621e 1421 FT0 = (CPU86_LDouble)ldsw((void *)A0);
d014c98c 1422#endif
927f621e
FB
1423}
1424
1425void OPPROTO op_fildl_FT0_A0(void)
1426{
d014c98c
FB
1427#ifdef USE_FP_CONVERT
1428 FP_CONVERT.i32 = (int32_t) ldl((void *)A0);
1429 FT0 = (CPU86_LDouble)FP_CONVERT.i32;
1430#else
927f621e 1431 FT0 = (CPU86_LDouble)((int32_t)ldl((void *)A0));
d014c98c 1432#endif
927f621e
FB
1433}
1434
1435void OPPROTO op_fildll_FT0_A0(void)
1436{
d014c98c
FB
1437#ifdef USE_FP_CONVERT
1438 FP_CONVERT.i64 = (int64_t) ldq((void *)A0);
1439 FT0 = (CPU86_LDouble)FP_CONVERT.i64;
1440#else
927f621e 1441 FT0 = (CPU86_LDouble)((int64_t)ldq((void *)A0));
d014c98c 1442#endif
927f621e 1443}
04369ff2 1444#endif
927f621e
FB
1445
1446/* fp load ST0 */
1447
1448void OPPROTO op_flds_ST0_A0(void)
1449{
c39d5b78
FB
1450 int new_fpstt;
1451 new_fpstt = (env->fpstt - 1) & 7;
d014c98c
FB
1452#ifdef USE_FP_CONVERT
1453 FP_CONVERT.i32 = ldl((void *)A0);
c39d5b78 1454 env->fpregs[new_fpstt] = FP_CONVERT.f;
d014c98c 1455#else
c39d5b78 1456 env->fpregs[new_fpstt] = ldfl((void *)A0);
d014c98c 1457#endif
c39d5b78
FB
1458 env->fpstt = new_fpstt;
1459 env->fptags[new_fpstt] = 0; /* validate stack entry */
927f621e
FB
1460}
1461
1462void OPPROTO op_fldl_ST0_A0(void)
1463{
c39d5b78
FB
1464 int new_fpstt;
1465 new_fpstt = (env->fpstt - 1) & 7;
d014c98c
FB
1466#ifdef USE_FP_CONVERT
1467 FP_CONVERT.i64 = ldq((void *)A0);
c39d5b78 1468 env->fpregs[new_fpstt] = FP_CONVERT.d;
d014c98c 1469#else
c39d5b78 1470 env->fpregs[new_fpstt] = ldfq((void *)A0);
d014c98c 1471#endif
c39d5b78
FB
1472 env->fpstt = new_fpstt;
1473 env->fptags[new_fpstt] = 0; /* validate stack entry */
927f621e
FB
1474}
1475
77f8dd5a
FB
1476#ifdef USE_X86LDOUBLE
1477void OPPROTO op_fldt_ST0_A0(void)
1478{
c39d5b78
FB
1479 int new_fpstt;
1480 new_fpstt = (env->fpstt - 1) & 7;
1481 env->fpregs[new_fpstt] = *(long double *)A0;
1482 env->fpstt = new_fpstt;
1483 env->fptags[new_fpstt] = 0; /* validate stack entry */
77f8dd5a
FB
1484}
1485#else
77f8dd5a
FB
1486void OPPROTO op_fldt_ST0_A0(void)
1487{
1488 helper_fldt_ST0_A0();
1489}
1490#endif
1491
04369ff2
FB
1492/* helpers are needed to avoid static constant reference. XXX: find a better way */
1493#ifdef USE_INT_TO_FLOAT_HELPERS
1494
1495void helper_fild_ST0_A0(void)
1496{
c39d5b78
FB
1497 int new_fpstt;
1498 new_fpstt = (env->fpstt - 1) & 7;
1499 env->fpregs[new_fpstt] = (CPU86_LDouble)ldsw((void *)A0);
1500 env->fpstt = new_fpstt;
1501 env->fptags[new_fpstt] = 0; /* validate stack entry */
04369ff2
FB
1502}
1503
1504void helper_fildl_ST0_A0(void)
1505{
c39d5b78
FB
1506 int new_fpstt;
1507 new_fpstt = (env->fpstt - 1) & 7;
1508 env->fpregs[new_fpstt] = (CPU86_LDouble)((int32_t)ldl((void *)A0));
1509 env->fpstt = new_fpstt;
1510 env->fptags[new_fpstt] = 0; /* validate stack entry */
04369ff2
FB
1511}
1512
1513void helper_fildll_ST0_A0(void)
1514{
c39d5b78
FB
1515 int new_fpstt;
1516 new_fpstt = (env->fpstt - 1) & 7;
1517 env->fpregs[new_fpstt] = (CPU86_LDouble)((int64_t)ldq((void *)A0));
1518 env->fpstt = new_fpstt;
1519 env->fptags[new_fpstt] = 0; /* validate stack entry */
04369ff2
FB
1520}
1521
1522void OPPROTO op_fild_ST0_A0(void)
1523{
1524 helper_fild_ST0_A0();
1525}
1526
1527void OPPROTO op_fildl_ST0_A0(void)
1528{
1529 helper_fildl_ST0_A0();
1530}
1531
1532void OPPROTO op_fildll_ST0_A0(void)
1533{
1534 helper_fildll_ST0_A0();
1535}
1536
1537#else
1538
927f621e
FB
1539void OPPROTO op_fild_ST0_A0(void)
1540{
c39d5b78
FB
1541 int new_fpstt;
1542 new_fpstt = (env->fpstt - 1) & 7;
d014c98c
FB
1543#ifdef USE_FP_CONVERT
1544 FP_CONVERT.i32 = ldsw((void *)A0);
c39d5b78 1545 env->fpregs[new_fpstt] = (CPU86_LDouble)FP_CONVERT.i32;
d014c98c 1546#else
c39d5b78 1547 env->fpregs[new_fpstt] = (CPU86_LDouble)ldsw((void *)A0);
d014c98c 1548#endif
c39d5b78
FB
1549 env->fpstt = new_fpstt;
1550 env->fptags[new_fpstt] = 0; /* validate stack entry */
927f621e
FB
1551}
1552
1553void OPPROTO op_fildl_ST0_A0(void)
1554{
c39d5b78
FB
1555 int new_fpstt;
1556 new_fpstt = (env->fpstt - 1) & 7;
d014c98c
FB
1557#ifdef USE_FP_CONVERT
1558 FP_CONVERT.i32 = (int32_t) ldl((void *)A0);
c39d5b78 1559 env->fpregs[new_fpstt] = (CPU86_LDouble)FP_CONVERT.i32;
d014c98c 1560#else
c39d5b78 1561 env->fpregs[new_fpstt] = (CPU86_LDouble)((int32_t)ldl((void *)A0));
d014c98c 1562#endif
c39d5b78
FB
1563 env->fpstt = new_fpstt;
1564 env->fptags[new_fpstt] = 0; /* validate stack entry */
927f621e
FB
1565}
1566
1567void OPPROTO op_fildll_ST0_A0(void)
1568{
c39d5b78
FB
1569 int new_fpstt;
1570 new_fpstt = (env->fpstt - 1) & 7;
d014c98c
FB
1571#ifdef USE_FP_CONVERT
1572 FP_CONVERT.i64 = (int64_t) ldq((void *)A0);
c39d5b78 1573 env->fpregs[new_fpstt] = (CPU86_LDouble)FP_CONVERT.i64;
d014c98c 1574#else
c39d5b78 1575 env->fpregs[new_fpstt] = (CPU86_LDouble)((int64_t)ldq((void *)A0));
d014c98c 1576#endif
c39d5b78
FB
1577 env->fpstt = new_fpstt;
1578 env->fptags[new_fpstt] = 0; /* validate stack entry */
927f621e
FB
1579}
1580
04369ff2
FB
1581#endif
1582
927f621e
FB
1583/* fp store */
1584
1585void OPPROTO op_fsts_ST0_A0(void)
1586{
d014c98c 1587#ifdef USE_FP_CONVERT
87f4827e 1588 FP_CONVERT.f = (float)ST0;
d014c98c
FB
1589 stfl((void *)A0, FP_CONVERT.f);
1590#else
927f621e 1591 stfl((void *)A0, (float)ST0);
d014c98c 1592#endif
927f621e
FB
1593}
1594
1595void OPPROTO op_fstl_ST0_A0(void)
1596{
77f8dd5a 1597 stfq((void *)A0, (double)ST0);
927f621e
FB
1598}
1599
77f8dd5a
FB
1600#ifdef USE_X86LDOUBLE
1601void OPPROTO op_fstt_ST0_A0(void)
1602{
1603 *(long double *)A0 = ST0;
1604}
1605#else
77f8dd5a
FB
1606void OPPROTO op_fstt_ST0_A0(void)
1607{
1608 helper_fstt_ST0_A0();
1609}
1610#endif
1611
927f621e
FB
1612void OPPROTO op_fist_ST0_A0(void)
1613{
d014c98c
FB
1614#if defined(__sparc__) && !defined(__sparc_v9__)
1615 register CPU86_LDouble d asm("o0");
1616#else
1617 CPU86_LDouble d;
1618#endif
927f621e 1619 int val;
d014c98c
FB
1620
1621 d = ST0;
1622 val = lrint(d);
1e5ffbed
FB
1623 if (val != (int16_t)val)
1624 val = -32768;
927f621e
FB
1625 stw((void *)A0, val);
1626}
1627
1628void OPPROTO op_fistl_ST0_A0(void)
1629{
d014c98c
FB
1630#if defined(__sparc__) && !defined(__sparc_v9__)
1631 register CPU86_LDouble d asm("o0");
1632#else
1633 CPU86_LDouble d;
1634#endif
927f621e 1635 int val;
d014c98c
FB
1636
1637 d = ST0;
1638 val = lrint(d);
927f621e
FB
1639 stl((void *)A0, val);
1640}
1641
1642void OPPROTO op_fistll_ST0_A0(void)
1643{
d014c98c
FB
1644#if defined(__sparc__) && !defined(__sparc_v9__)
1645 register CPU86_LDouble d asm("o0");
1646#else
1647 CPU86_LDouble d;
1648#endif
927f621e 1649 int64_t val;
d014c98c
FB
1650
1651 d = ST0;
1652 val = llrint(d);
927f621e
FB
1653 stq((void *)A0, val);
1654}
1655
77f8dd5a
FB
1656void OPPROTO op_fbld_ST0_A0(void)
1657{
1658 helper_fbld_ST0_A0();
1659}
1660
77f8dd5a
FB
1661void OPPROTO op_fbst_ST0_A0(void)
1662{
1663 helper_fbst_ST0_A0();
1664}
1665
927f621e
FB
1666/* FPU move */
1667
927f621e
FB
1668void OPPROTO op_fpush(void)
1669{
1670 fpush();
1671}
1672
1673void OPPROTO op_fpop(void)
1674{
1675 fpop();
1676}
1677
1678void OPPROTO op_fdecstp(void)
1679{
1680 env->fpstt = (env->fpstt - 1) & 7;
1681 env->fpus &= (~0x4700);
1682}
1683
1684void OPPROTO op_fincstp(void)
1685{
1686 env->fpstt = (env->fpstt + 1) & 7;
1687 env->fpus &= (~0x4700);
1688}
1689
1690void OPPROTO op_fmov_ST0_FT0(void)
1691{
1692 ST0 = FT0;
1693}
1694
1695void OPPROTO op_fmov_FT0_STN(void)
1696{
1697 FT0 = ST(PARAM1);
1698}
1699
1700void OPPROTO op_fmov_ST0_STN(void)
1701{
1702 ST0 = ST(PARAM1);
1703}
1704
1705void OPPROTO op_fmov_STN_ST0(void)
1706{
1707 ST(PARAM1) = ST0;
1708}
1709
1710void OPPROTO op_fxchg_ST0_STN(void)
1711{
1712 CPU86_LDouble tmp;
1713 tmp = ST(PARAM1);
1714 ST(PARAM1) = ST0;
1715 ST0 = tmp;
1716}
1717
1718/* FPU operations */
1719
1720/* XXX: handle nans */
1721void OPPROTO op_fcom_ST0_FT0(void)
1722{
1723 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1724 if (ST0 < FT0)
1725 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1726 else if (ST0 == FT0)
1727 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1728 FORCE_RET();
1729}
1730
77f8dd5a
FB
1731/* XXX: handle nans */
1732void OPPROTO op_fucom_ST0_FT0(void)
1733{
1734 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1735 if (ST0 < FT0)
1736 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1737 else if (ST0 == FT0)
1738 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1739 FORCE_RET();
1740}
1741
d0a1ffc9
FB
1742/* XXX: handle nans */
1743void OPPROTO op_fcomi_ST0_FT0(void)
1744{
1745 int eflags;
1746 eflags = cc_table[CC_OP].compute_all();
1747 eflags &= ~(CC_Z | CC_P | CC_C);
1748 if (ST0 < FT0)
1749 eflags |= CC_C;
1750 else if (ST0 == FT0)
1751 eflags |= CC_Z;
1752 CC_SRC = eflags;
1753 FORCE_RET();
1754}
1755
1756/* XXX: handle nans */
1757void OPPROTO op_fucomi_ST0_FT0(void)
1758{
1759 int eflags;
1760 eflags = cc_table[CC_OP].compute_all();
1761 eflags &= ~(CC_Z | CC_P | CC_C);
1762 if (ST0 < FT0)
1763 eflags |= CC_C;
1764 else if (ST0 == FT0)
1765 eflags |= CC_Z;
1766 CC_SRC = eflags;
1767 FORCE_RET();
1768}
1769
927f621e
FB
1770void OPPROTO op_fadd_ST0_FT0(void)
1771{
1772 ST0 += FT0;
1773}
1774
1775void OPPROTO op_fmul_ST0_FT0(void)
1776{
1777 ST0 *= FT0;
1778}
1779
1780void OPPROTO op_fsub_ST0_FT0(void)
1781{
1782 ST0 -= FT0;
1783}
1784
1785void OPPROTO op_fsubr_ST0_FT0(void)
1786{
1787 ST0 = FT0 - ST0;
1788}
1789
1790void OPPROTO op_fdiv_ST0_FT0(void)
1791{
1792 ST0 /= FT0;
1793}
1794
1795void OPPROTO op_fdivr_ST0_FT0(void)
1796{
1797 ST0 = FT0 / ST0;
1798}
1799
1800/* fp operations between STN and ST0 */
1801
1802void OPPROTO op_fadd_STN_ST0(void)
1803{
1804 ST(PARAM1) += ST0;
1805}
1806
1807void OPPROTO op_fmul_STN_ST0(void)
1808{
1809 ST(PARAM1) *= ST0;
1810}
1811
1812void OPPROTO op_fsub_STN_ST0(void)
1813{
1814 ST(PARAM1) -= ST0;
1815}
1816
1817void OPPROTO op_fsubr_STN_ST0(void)
1818{
1819 CPU86_LDouble *p;
1820 p = &ST(PARAM1);
1821 *p = ST0 - *p;
1822}
1823
1824void OPPROTO op_fdiv_STN_ST0(void)
1825{
1826 ST(PARAM1) /= ST0;
1827}
1828
1829void OPPROTO op_fdivr_STN_ST0(void)
1830{
1831 CPU86_LDouble *p;
1832 p = &ST(PARAM1);
1833 *p = ST0 / *p;
1834}
1835
1836/* misc FPU operations */
1837void OPPROTO op_fchs_ST0(void)
1838{
1839 ST0 = -ST0;
1840}
1841
1842void OPPROTO op_fabs_ST0(void)
1843{
1844 ST0 = fabs(ST0);
1845}
1846
77f8dd5a
FB
1847void OPPROTO op_fxam_ST0(void)
1848{
1849 helper_fxam_ST0();
927f621e
FB
1850}
1851
1852void OPPROTO op_fld1_ST0(void)
1853{
87f4827e 1854 ST0 = f15rk[1];
927f621e
FB
1855}
1856
77f8dd5a 1857void OPPROTO op_fldl2t_ST0(void)
927f621e 1858{
87f4827e 1859 ST0 = f15rk[6];
927f621e
FB
1860}
1861
77f8dd5a 1862void OPPROTO op_fldl2e_ST0(void)
927f621e 1863{
87f4827e 1864 ST0 = f15rk[5];
927f621e
FB
1865}
1866
1867void OPPROTO op_fldpi_ST0(void)
1868{
87f4827e 1869 ST0 = f15rk[2];
927f621e
FB
1870}
1871
1872void OPPROTO op_fldlg2_ST0(void)
1873{
87f4827e 1874 ST0 = f15rk[3];
927f621e
FB
1875}
1876
1877void OPPROTO op_fldln2_ST0(void)
1878{
87f4827e 1879 ST0 = f15rk[4];
927f621e
FB
1880}
1881
1882void OPPROTO op_fldz_ST0(void)
1883{
87f4827e 1884 ST0 = f15rk[0];
927f621e
FB
1885}
1886
1887void OPPROTO op_fldz_FT0(void)
1888{
87f4827e 1889 ST0 = f15rk[0];
927f621e
FB
1890}
1891
927f621e
FB
1892/* associated heplers to reduce generated code length and to simplify
1893 relocation (FP constants are usually stored in .rodata section) */
1894
1895void OPPROTO op_f2xm1(void)
1896{
1897 helper_f2xm1();
1898}
1899
1900void OPPROTO op_fyl2x(void)
1901{
1902 helper_fyl2x();
1903}
1904
1905void OPPROTO op_fptan(void)
1906{
1907 helper_fptan();
1908}
1909
1910void OPPROTO op_fpatan(void)
1911{
1912 helper_fpatan();
1913}
1914
1915void OPPROTO op_fxtract(void)
1916{
1917 helper_fxtract();
1918}
1919
1920void OPPROTO op_fprem1(void)
1921{
1922 helper_fprem1();
1923}
1924
1925
1926void OPPROTO op_fprem(void)
1927{
1928 helper_fprem();
1929}
1930
1931void OPPROTO op_fyl2xp1(void)
1932{
1933 helper_fyl2xp1();
1934}
1935
1936void OPPROTO op_fsqrt(void)
1937{
1938 helper_fsqrt();
1939}
1940
1941void OPPROTO op_fsincos(void)
1942{
1943 helper_fsincos();
1944}
1945
1946void OPPROTO op_frndint(void)
1947{
1948 helper_frndint();
1949}
1950
1951void OPPROTO op_fscale(void)
1952{
1953 helper_fscale();
1954}
1955
1956void OPPROTO op_fsin(void)
1957{
1958 helper_fsin();
1959}
1960
1961void OPPROTO op_fcos(void)
1962{
1963 helper_fcos();
1964}
1965
4b74fe1f
FB
1966void OPPROTO op_fnstsw_A0(void)
1967{
1968 int fpus;
1969 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
1970 stw((void *)A0, fpus);
1971}
1972
77f8dd5a
FB
1973void OPPROTO op_fnstsw_EAX(void)
1974{
1975 int fpus;
1976 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
1977 EAX = (EAX & 0xffff0000) | fpus;
1978}
1979
4b74fe1f
FB
1980void OPPROTO op_fnstcw_A0(void)
1981{
1982 stw((void *)A0, env->fpuc);
1983}
1984
1985void OPPROTO op_fldcw_A0(void)
1986{
1987 int rnd_type;
1988 env->fpuc = lduw((void *)A0);
1989 /* set rounding mode */
1990 switch(env->fpuc & RC_MASK) {
1991 default:
1992 case RC_NEAR:
1993 rnd_type = FE_TONEAREST;
1994 break;
1995 case RC_DOWN:
1996 rnd_type = FE_DOWNWARD;
1997 break;
1998 case RC_UP:
1999 rnd_type = FE_UPWARD;
2000 break;
2001 case RC_CHOP:
2002 rnd_type = FE_TOWARDZERO;
2003 break;
2004 }
2005 fesetround(rnd_type);
2006}
2007
1a9353d2
FB
2008void OPPROTO op_fclex(void)
2009{
2010 env->fpus &= 0x7f00;
2011}
2012
2013void OPPROTO op_fninit(void)
2014{
2015 env->fpus = 0;
2016 env->fpstt = 0;
2017 env->fpuc = 0x37f;
2018 env->fptags[0] = 1;
2019 env->fptags[1] = 1;
2020 env->fptags[2] = 1;
2021 env->fptags[3] = 1;
2022 env->fptags[4] = 1;
2023 env->fptags[5] = 1;
2024 env->fptags[6] = 1;
2025 env->fptags[7] = 1;
2026}
1b6b029e 2027
d0a1ffc9
FB
2028void OPPROTO op_fnstenv_A0(void)
2029{
2030 helper_fstenv((uint8_t *)A0, PARAM1);
2031}
2032
2033void OPPROTO op_fldenv_A0(void)
2034{
2035 helper_fldenv((uint8_t *)A0, PARAM1);
2036}
2037
2038void OPPROTO op_fnsave_A0(void)
2039{
2040 helper_fsave((uint8_t *)A0, PARAM1);
2041}
2042
2043void OPPROTO op_frstor_A0(void)
2044{
2045 helper_frstor((uint8_t *)A0, PARAM1);
2046}
2047
1b6b029e
FB
2048/* threading support */
2049void OPPROTO op_lock(void)
2050{
2051 cpu_lock();
2052}
2053
2054void OPPROTO op_unlock(void)
2055{
2056 cpu_unlock();
2057}
3ec9c4fc 2058
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