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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
0ecfa993 22/* NOTE: data are not static to force relocation generation by GCC */
367e86e8 23
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24uint8_t parity_table[256] = {
25 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
26 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
27 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
28 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
29 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
30 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
31 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
32 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
33 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
34 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
35 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
36 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
37 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
38 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
39 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
40 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
41 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
42 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
43 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
44 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
45 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
46 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
47 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
48 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
49 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
50 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
51 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
52 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
53 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
54 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
55 CC_P, 0, 0, CC_P, 0, CC_P, CC_P, 0,
56 0, CC_P, CC_P, 0, CC_P, 0, 0, CC_P,
57};
58
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59/* modulo 17 table */
60const uint8_t rclw_table[32] = {
61 0, 1, 2, 3, 4, 5, 6, 7,
62 8, 9,10,11,12,13,14,15,
63 16, 0, 1, 2, 3, 4, 5, 6,
64 7, 8, 9,10,11,12,13,14,
65};
7bfdb6d1 66
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67/* modulo 9 table */
68const uint8_t rclb_table[32] = {
69 0, 1, 2, 3, 4, 5, 6, 7,
70 8, 0, 1, 2, 3, 4, 5, 6,
71 7, 8, 0, 1, 2, 3, 4, 5,
72 6, 7, 8, 0, 1, 2, 3, 4,
73};
7bfdb6d1 74
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75#ifdef USE_X86LDOUBLE
76/* an array of Intel 80-bit FP constants, to be loaded via integer ops */
77typedef unsigned short f15ld[5];
78const f15ld f15rk[] =
79{
80/*0*/ {0x0000,0x0000,0x0000,0x0000,0x0000},
81/*1*/ {0x0000,0x0000,0x0000,0x8000,0x3fff},
82/*pi*/ {0xc235,0x2168,0xdaa2,0xc90f,0x4000},
83/*lg2*/ {0xf799,0xfbcf,0x9a84,0x9a20,0x3ffd},
84/*ln2*/ {0x79ac,0xd1cf,0x17f7,0xb172,0x3ffe},
85/*l2e*/ {0xf0bc,0x5c17,0x3b29,0xb8aa,0x3fff},
86/*l2t*/ {0x8afe,0xcd1b,0x784b,0xd49a,0x4000}
87};
88#else
89/* the same, 64-bit version */
90typedef unsigned short f15ld[4];
91const f15ld f15rk[] =
92{
93#ifndef WORDS_BIGENDIAN
94/*0*/ {0x0000,0x0000,0x0000,0x0000},
95/*1*/ {0x0000,0x0000,0x0000,0x3ff0},
96/*pi*/ {0x2d18,0x5444,0x21fb,0x4009},
97/*lg2*/ {0x79ff,0x509f,0x4413,0x3fd3},
98/*ln2*/ {0x39ef,0xfefa,0x2e42,0x3fe6},
99/*l2e*/ {0x82fe,0x652b,0x1547,0x3ff7},
100/*l2t*/ {0xa371,0x0979,0x934f,0x400a}
101#else
102/*0*/ {0x0000,0x0000,0x0000,0x0000},
103/*1*/ {0x3ff0,0x0000,0x0000,0x0000},
104/*pi*/ {0x4009,0x21fb,0x5444,0x2d18},
105/*lg2*/ {0x3fd3,0x4413,0x509f,0x79ff},
106/*ln2*/ {0x3fe6,0x2e42,0xfefa,0x39ef},
107/*l2e*/ {0x3ff7,0x1547,0x652b,0x82fe},
108/*l2t*/ {0x400a,0x934f,0x0979,0xa371}
109#endif
110};
111#endif
112
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113/* n must be a constant to be efficient */
114static inline int lshift(int x, int n)
7bfdb6d1 115{
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116 if (n >= 0)
117 return x << n;
118 else
119 return x >> (-n);
7bfdb6d1 120}
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121
122/* we define the various pieces of code used by the JIT */
123
124#define REG EAX
125#define REGNAME _EAX
126#include "opreg_template.h"
127#undef REG
128#undef REGNAME
129
130#define REG ECX
131#define REGNAME _ECX
132#include "opreg_template.h"
133#undef REG
134#undef REGNAME
135
136#define REG EDX
137#define REGNAME _EDX
138#include "opreg_template.h"
139#undef REG
140#undef REGNAME
141
142#define REG EBX
143#define REGNAME _EBX
144#include "opreg_template.h"
145#undef REG
146#undef REGNAME
147
148#define REG ESP
149#define REGNAME _ESP
150#include "opreg_template.h"
151#undef REG
152#undef REGNAME
153
154#define REG EBP
155#define REGNAME _EBP
156#include "opreg_template.h"
157#undef REG
158#undef REGNAME
159
160#define REG ESI
161#define REGNAME _ESI
162#include "opreg_template.h"
163#undef REG
164#undef REGNAME
165
166#define REG EDI
167#define REGNAME _EDI
168#include "opreg_template.h"
169#undef REG
170#undef REGNAME
171
dc99065b 172/* operations with flags */
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173
174void OPPROTO op_addl_T0_T1_cc(void)
175{
176 CC_SRC = T0;
177 T0 += T1;
178 CC_DST = T0;
179}
180
181void OPPROTO op_orl_T0_T1_cc(void)
182{
183 T0 |= T1;
184 CC_DST = T0;
185}
186
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187void OPPROTO op_andl_T0_T1_cc(void)
188{
189 T0 &= T1;
190 CC_DST = T0;
191}
192
193void OPPROTO op_subl_T0_T1_cc(void)
194{
195 CC_SRC = T0;
196 T0 -= T1;
197 CC_DST = T0;
198}
199
200void OPPROTO op_xorl_T0_T1_cc(void)
201{
202 T0 ^= T1;
203 CC_DST = T0;
204}
205
206void OPPROTO op_cmpl_T0_T1_cc(void)
207{
208 CC_SRC = T0;
209 CC_DST = T0 - T1;
210}
211
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212void OPPROTO op_negl_T0_cc(void)
213{
214 CC_SRC = 0;
215 T0 = -T0;
216 CC_DST = T0;
217}
218
219void OPPROTO op_incl_T0_cc(void)
220{
4b74fe1f 221 CC_SRC = cc_table[CC_OP].compute_c();
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222 T0++;
223 CC_DST = T0;
224}
225
226void OPPROTO op_decl_T0_cc(void)
227{
4b74fe1f 228 CC_SRC = cc_table[CC_OP].compute_c();
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229 T0--;
230 CC_DST = T0;
231}
232
233void OPPROTO op_testl_T0_T1_cc(void)
234{
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235 CC_DST = T0 & T1;
236}
237
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238/* operations without flags */
239
240void OPPROTO op_addl_T0_T1(void)
241{
242 T0 += T1;
243}
244
245void OPPROTO op_orl_T0_T1(void)
246{
247 T0 |= T1;
248}
249
250void OPPROTO op_andl_T0_T1(void)
251{
252 T0 &= T1;
253}
254
255void OPPROTO op_subl_T0_T1(void)
256{
257 T0 -= T1;
258}
259
260void OPPROTO op_xorl_T0_T1(void)
261{
262 T0 ^= T1;
263}
264
265void OPPROTO op_negl_T0(void)
266{
267 T0 = -T0;
268}
269
270void OPPROTO op_incl_T0(void)
271{
272 T0++;
273}
274
275void OPPROTO op_decl_T0(void)
276{
277 T0--;
278}
279
280void OPPROTO op_notl_T0(void)
281{
282 T0 = ~T0;
283}
284
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285void OPPROTO op_bswapl_T0(void)
286{
287 T0 = bswap32(T0);
288}
289
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290/* multiply/divide */
291void OPPROTO op_mulb_AL_T0(void)
292{
293 unsigned int res;
294 res = (uint8_t)EAX * (uint8_t)T0;
295 EAX = (EAX & 0xffff0000) | res;
296 CC_SRC = (res & 0xff00);
297}
298
299void OPPROTO op_imulb_AL_T0(void)
300{
301 int res;
302 res = (int8_t)EAX * (int8_t)T0;
303 EAX = (EAX & 0xffff0000) | (res & 0xffff);
304 CC_SRC = (res != (int8_t)res);
305}
306
307void OPPROTO op_mulw_AX_T0(void)
308{
309 unsigned int res;
310 res = (uint16_t)EAX * (uint16_t)T0;
311 EAX = (EAX & 0xffff0000) | (res & 0xffff);
312 EDX = (EDX & 0xffff0000) | ((res >> 16) & 0xffff);
313 CC_SRC = res >> 16;
314}
315
316void OPPROTO op_imulw_AX_T0(void)
317{
318 int res;
319 res = (int16_t)EAX * (int16_t)T0;
320 EAX = (EAX & 0xffff0000) | (res & 0xffff);
321 EDX = (EDX & 0xffff0000) | ((res >> 16) & 0xffff);
322 CC_SRC = (res != (int16_t)res);
323}
324
325void OPPROTO op_mull_EAX_T0(void)
326{
327 uint64_t res;
328 res = (uint64_t)((uint32_t)EAX) * (uint64_t)((uint32_t)T0);
329 EAX = res;
330 EDX = res >> 32;
331 CC_SRC = res >> 32;
332}
333
334void OPPROTO op_imull_EAX_T0(void)
335{
336 int64_t res;
337 res = (int64_t)((int32_t)EAX) * (int64_t)((int32_t)T0);
338 EAX = res;
339 EDX = res >> 32;
340 CC_SRC = (res != (int32_t)res);
341}
342
343void OPPROTO op_imulw_T0_T1(void)
344{
345 int res;
346 res = (int16_t)T0 * (int16_t)T1;
347 T0 = res;
348 CC_SRC = (res != (int16_t)res);
349}
350
351void OPPROTO op_imull_T0_T1(void)
352{
353 int64_t res;
4b74fe1f 354 res = (int64_t)((int32_t)T0) * (int64_t)((int32_t)T1);
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355 T0 = res;
356 CC_SRC = (res != (int32_t)res);
357}
358
359/* division, flags are undefined */
9de5e440 360/* XXX: add exceptions for overflow */
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361void OPPROTO op_divb_AL_T0(void)
362{
363 unsigned int num, den, q, r;
364
365 num = (EAX & 0xffff);
366 den = (T0 & 0xff);
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367 if (den == 0)
368 raise_exception(EXCP00_DIVZ);
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369 q = (num / den) & 0xff;
370 r = (num % den) & 0xff;
371 EAX = (EAX & 0xffff0000) | (r << 8) | q;
372}
373
374void OPPROTO op_idivb_AL_T0(void)
375{
376 int num, den, q, r;
377
378 num = (int16_t)EAX;
379 den = (int8_t)T0;
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380 if (den == 0)
381 raise_exception(EXCP00_DIVZ);
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382 q = (num / den) & 0xff;
383 r = (num % den) & 0xff;
384 EAX = (EAX & 0xffff0000) | (r << 8) | q;
385}
386
387void OPPROTO op_divw_AX_T0(void)
388{
389 unsigned int num, den, q, r;
390
391 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
392 den = (T0 & 0xffff);
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393 if (den == 0)
394 raise_exception(EXCP00_DIVZ);
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395 q = (num / den) & 0xffff;
396 r = (num % den) & 0xffff;
397 EAX = (EAX & 0xffff0000) | q;
398 EDX = (EDX & 0xffff0000) | r;
399}
400
401void OPPROTO op_idivw_AX_T0(void)
402{
403 int num, den, q, r;
404
405 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
406 den = (int16_t)T0;
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407 if (den == 0)
408 raise_exception(EXCP00_DIVZ);
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409 q = (num / den) & 0xffff;
410 r = (num % den) & 0xffff;
411 EAX = (EAX & 0xffff0000) | q;
412 EDX = (EDX & 0xffff0000) | r;
413}
414
415void OPPROTO op_divl_EAX_T0(void)
416{
417 unsigned int den, q, r;
418 uint64_t num;
419
420 num = EAX | ((uint64_t)EDX << 32);
421 den = T0;
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422 if (den == 0)
423 raise_exception(EXCP00_DIVZ);
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424 q = (num / den);
425 r = (num % den);
426 EAX = q;
427 EDX = r;
428}
429
430void OPPROTO op_idivl_EAX_T0(void)
431{
432 int den, q, r;
4b74fe1f 433 int64_t num;
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434
435 num = EAX | ((uint64_t)EDX << 32);
4b74fe1f 436 den = T0;
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437 if (den == 0)
438 raise_exception(EXCP00_DIVZ);
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439 q = (num / den);
440 r = (num % den);
441 EAX = q;
442 EDX = r;
443}
444
dab2ed99 445/* constant load & misc op */
7bfdb6d1 446
ba1c6e37 447void OPPROTO op_movl_T0_im(void)
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448{
449 T0 = PARAM1;
450}
451
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452void OPPROTO op_addl_T0_im(void)
453{
454 T0 += PARAM1;
455}
456
457void OPPROTO op_andl_T0_ffff(void)
458{
459 T0 = T0 & 0xffff;
460}
461
462void OPPROTO op_movl_T0_T1(void)
463{
464 T0 = T1;
465}
466
ba1c6e37 467void OPPROTO op_movl_T1_im(void)
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468{
469 T1 = PARAM1;
470}
471
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472void OPPROTO op_addl_T1_im(void)
473{
474 T1 += PARAM1;
475}
476
477void OPPROTO op_movl_T1_A0(void)
478{
479 T1 = A0;
480}
481
ba1c6e37 482void OPPROTO op_movl_A0_im(void)
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483{
484 A0 = PARAM1;
485}
486
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487void OPPROTO op_addl_A0_im(void)
488{
489 A0 += PARAM1;
490}
491
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492void OPPROTO op_addl_A0_AL(void)
493{
494 A0 += (EAX & 0xff);
495}
496
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497void OPPROTO op_andl_A0_ffff(void)
498{
499 A0 = A0 & 0xffff;
500}
501
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502/* memory access */
503
504void OPPROTO op_ldub_T0_A0(void)
505{
506 T0 = ldub((uint8_t *)A0);
507}
508
509void OPPROTO op_ldsb_T0_A0(void)
510{
511 T0 = ldsb((int8_t *)A0);
512}
513
514void OPPROTO op_lduw_T0_A0(void)
515{
516 T0 = lduw((uint8_t *)A0);
517}
518
519void OPPROTO op_ldsw_T0_A0(void)
520{
521 T0 = ldsw((int8_t *)A0);
522}
523
524void OPPROTO op_ldl_T0_A0(void)
525{
526 T0 = ldl((uint8_t *)A0);
527}
528
529void OPPROTO op_ldub_T1_A0(void)
530{
531 T1 = ldub((uint8_t *)A0);
532}
533
534void OPPROTO op_ldsb_T1_A0(void)
535{
536 T1 = ldsb((int8_t *)A0);
537}
538
539void OPPROTO op_lduw_T1_A0(void)
540{
541 T1 = lduw((uint8_t *)A0);
542}
543
544void OPPROTO op_ldsw_T1_A0(void)
545{
546 T1 = ldsw((int8_t *)A0);
547}
548
549void OPPROTO op_ldl_T1_A0(void)
550{
551 T1 = ldl((uint8_t *)A0);
552}
553
554void OPPROTO op_stb_T0_A0(void)
555{
556 stb((uint8_t *)A0, T0);
557}
558
559void OPPROTO op_stw_T0_A0(void)
560{
561 stw((uint8_t *)A0, T0);
562}
563
564void OPPROTO op_stl_T0_A0(void)
565{
566 stl((uint8_t *)A0, T0);
567}
568
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569/* used for bit operations */
570
571void OPPROTO op_add_bitw_A0_T1(void)
572{
573 A0 += ((int32_t)T1 >> 4) << 1;
574}
575
576void OPPROTO op_add_bitl_A0_T1(void)
577{
578 A0 += ((int32_t)T1 >> 5) << 2;
579}
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580
581/* indirect jump */
0ecfa993 582
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583void OPPROTO op_jmp_T0(void)
584{
dab2ed99 585 EIP = T0;
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586}
587
588void OPPROTO op_jmp_im(void)
589{
dab2ed99 590 EIP = PARAM1;
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591}
592
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593void OPPROTO op_int_im(void)
594{
dab2ed99 595 EIP = PARAM1;
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596 raise_exception(EXCP0D_GPF);
597}
598
599void OPPROTO op_int3(void)
600{
dab2ed99 601 EIP = PARAM1;
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602 raise_exception(EXCP03_INT3);
603}
604
605void OPPROTO op_into(void)
606{
607 int eflags;
608 eflags = cc_table[CC_OP].compute_all();
609 if (eflags & CC_O) {
dab2ed99 610 EIP = PARAM1;
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611 raise_exception(EXCP04_INTO);
612 } else {
dab2ed99 613 EIP = PARAM2;
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614 }
615}
616
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617/* string ops */
618
619#define ldul ldl
620
7bfdb6d1 621#define SHIFT 0
367e86e8 622#include "ops_template.h"
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623#undef SHIFT
624
7bfdb6d1 625#define SHIFT 1
367e86e8 626#include "ops_template.h"
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627#undef SHIFT
628
7bfdb6d1 629#define SHIFT 2
367e86e8 630#include "ops_template.h"
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631#undef SHIFT
632
633/* sign extend */
634
635void OPPROTO op_movsbl_T0_T0(void)
636{
637 T0 = (int8_t)T0;
638}
639
640void OPPROTO op_movzbl_T0_T0(void)
641{
642 T0 = (uint8_t)T0;
643}
644
645void OPPROTO op_movswl_T0_T0(void)
646{
647 T0 = (int16_t)T0;
648}
649
650void OPPROTO op_movzwl_T0_T0(void)
651{
652 T0 = (uint16_t)T0;
653}
654
655void OPPROTO op_movswl_EAX_AX(void)
656{
657 EAX = (int16_t)EAX;
658}
659
660void OPPROTO op_movsbw_AX_AL(void)
661{
662 EAX = (EAX & 0xffff0000) | ((int8_t)EAX & 0xffff);
663}
664
665void OPPROTO op_movslq_EDX_EAX(void)
666{
667 EDX = (int32_t)EAX >> 31;
668}
669
670void OPPROTO op_movswl_DX_AX(void)
671{
672 EDX = (EDX & 0xffff0000) | (((int16_t)EAX >> 15) & 0xffff);
673}
674
675/* push/pop */
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676
677void op_pushl_T0(void)
678{
679 uint32_t offset;
680 offset = ESP - 4;
681 stl((void *)offset, T0);
682 /* modify ESP after to handle exceptions correctly */
683 ESP = offset;
684}
685
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686void op_pushw_T0(void)
687{
688 uint32_t offset;
689 offset = ESP - 2;
690 stw((void *)offset, T0);
691 /* modify ESP after to handle exceptions correctly */
692 ESP = offset;
693}
694
695void op_pushl_ss32_T0(void)
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696{
697 uint32_t offset;
698 offset = ESP - 4;
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699 stl(env->seg_cache[R_SS].base + offset, T0);
700 /* modify ESP after to handle exceptions correctly */
701 ESP = offset;
702}
703
704void op_pushw_ss32_T0(void)
705{
706 uint32_t offset;
707 offset = ESP - 2;
708 stw(env->seg_cache[R_SS].base + offset, T0);
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709 /* modify ESP after to handle exceptions correctly */
710 ESP = offset;
711}
712
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713void op_pushl_ss16_T0(void)
714{
715 uint32_t offset;
716 offset = (ESP - 4) & 0xffff;
717 stl(env->seg_cache[R_SS].base + offset, T0);
718 /* modify ESP after to handle exceptions correctly */
719 ESP = (ESP & ~0xffff) | offset;
720}
721
722void op_pushw_ss16_T0(void)
723{
724 uint32_t offset;
725 offset = (ESP - 2) & 0xffff;
726 stw(env->seg_cache[R_SS].base + offset, T0);
727 /* modify ESP after to handle exceptions correctly */
728 ESP = (ESP & ~0xffff) | offset;
729}
730
731/* NOTE: ESP update is done after */
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732void op_popl_T0(void)
733{
734 T0 = ldl((void *)ESP);
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735}
736
737void op_popw_T0(void)
738{
739 T0 = lduw((void *)ESP);
740}
741
742void op_popl_ss32_T0(void)
743{
744 T0 = ldl(env->seg_cache[R_SS].base + ESP);
745}
746
747void op_popw_ss32_T0(void)
748{
749 T0 = lduw(env->seg_cache[R_SS].base + ESP);
750}
751
752void op_popl_ss16_T0(void)
753{
754 T0 = ldl(env->seg_cache[R_SS].base + (ESP & 0xffff));
755}
756
757void op_popw_ss16_T0(void)
758{
759 T0 = lduw(env->seg_cache[R_SS].base + (ESP & 0xffff));
760}
761
762void op_addl_ESP_4(void)
763{
7bfdb6d1
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764 ESP += 4;
765}
766
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767void op_addl_ESP_2(void)
768{
769 ESP += 2;
770}
771
772void op_addw_ESP_4(void)
773{
774 ESP = (ESP & ~0xffff) | ((ESP + 4) & 0xffff);
775}
776
777void op_addw_ESP_2(void)
778{
779 ESP = (ESP & ~0xffff) | ((ESP + 2) & 0xffff);
780}
781
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782void op_addl_ESP_im(void)
783{
784 ESP += PARAM1;
785}
367e86e8 786
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787void op_addw_ESP_im(void)
788{
789 ESP = (ESP & ~0xffff) | ((ESP + PARAM1) & 0xffff);
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790}
791
792/* rdtsc */
793#ifndef __i386__
794uint64_t emu_time;
795#endif
796void op_rdtsc(void)
797{
798 uint64_t val;
799#ifdef __i386__
800 asm("rdtsc" : "=A" (val));
801#else
802 /* better than nothing: the time increases */
803 val = emu_time++;
804#endif
805 EAX = val;
806 EDX = val >> 32;
807}
808
809/* bcd */
810
811/* XXX: exception */
812void OPPROTO op_aam(void)
813{
814 int base = PARAM1;
815 int al, ah;
816 al = EAX & 0xff;
817 ah = al / base;
818 al = al % base;
819 EAX = (EAX & ~0xffff) | al | (ah << 8);
820 CC_DST = al;
821}
822
823void OPPROTO op_aad(void)
824{
825 int base = PARAM1;
826 int al, ah;
827 al = EAX & 0xff;
828 ah = (EAX >> 8) & 0xff;
829 al = ((ah * base) + al) & 0xff;
830 EAX = (EAX & ~0xffff) | al;
831 CC_DST = al;
832}
833
834void OPPROTO op_aaa(void)
835{
836 int icarry;
837 int al, ah, af;
838 int eflags;
839
840 eflags = cc_table[CC_OP].compute_all();
841 af = eflags & CC_A;
842 al = EAX & 0xff;
843 ah = (EAX >> 8) & 0xff;
844
845 icarry = (al > 0xf9);
846 if (((al & 0x0f) > 9 ) || af) {
847 al = (al + 6) & 0x0f;
848 ah = (ah + 1 + icarry) & 0xff;
849 eflags |= CC_C | CC_A;
850 } else {
851 eflags &= ~(CC_C | CC_A);
852 al &= 0x0f;
853 }
854 EAX = (EAX & ~0xffff) | al | (ah << 8);
855 CC_SRC = eflags;
856}
857
858void OPPROTO op_aas(void)
859{
860 int icarry;
861 int al, ah, af;
862 int eflags;
863
864 eflags = cc_table[CC_OP].compute_all();
865 af = eflags & CC_A;
866 al = EAX & 0xff;
867 ah = (EAX >> 8) & 0xff;
868
869 icarry = (al < 6);
870 if (((al & 0x0f) > 9 ) || af) {
871 al = (al - 6) & 0x0f;
872 ah = (ah - 1 - icarry) & 0xff;
873 eflags |= CC_C | CC_A;
874 } else {
875 eflags &= ~(CC_C | CC_A);
876 al &= 0x0f;
877 }
878 EAX = (EAX & ~0xffff) | al | (ah << 8);
879 CC_SRC = eflags;
880}
881
882void OPPROTO op_daa(void)
883{
884 int al, af, cf;
885 int eflags;
886
887 eflags = cc_table[CC_OP].compute_all();
888 cf = eflags & CC_C;
889 af = eflags & CC_A;
890 al = EAX & 0xff;
891
892 eflags = 0;
893 if (((al & 0x0f) > 9 ) || af) {
894 al = (al + 6) & 0xff;
895 eflags |= CC_A;
896 }
897 if ((al > 0x9f) || cf) {
898 al = (al + 0x60) & 0xff;
899 eflags |= CC_C;
900 }
901 EAX = (EAX & ~0xff) | al;
902 /* well, speed is not an issue here, so we compute the flags by hand */
903 eflags |= (al == 0) << 6; /* zf */
904 eflags |= parity_table[al]; /* pf */
905 eflags |= (al & 0x80); /* sf */
906 CC_SRC = eflags;
907}
908
909void OPPROTO op_das(void)
910{
911 int al, al1, af, cf;
912 int eflags;
913
914 eflags = cc_table[CC_OP].compute_all();
915 cf = eflags & CC_C;
916 af = eflags & CC_A;
917 al = EAX & 0xff;
918
919 eflags = 0;
920 al1 = al;
921 if (((al & 0x0f) > 9 ) || af) {
922 eflags |= CC_A;
923 if (al < 6 || cf)
924 eflags |= CC_C;
925 al = (al - 6) & 0xff;
926 }
927 if ((al1 > 0x99) || cf) {
928 al = (al - 0x60) & 0xff;
929 eflags |= CC_C;
930 }
931 EAX = (EAX & ~0xff) | al;
932 /* well, speed is not an issue here, so we compute the flags by hand */
933 eflags |= (al == 0) << 6; /* zf */
934 eflags |= parity_table[al]; /* pf */
935 eflags |= (al & 0x80); /* sf */
936 CC_SRC = eflags;
937}
938
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939/* segment handling */
940
941void load_seg(int seg_reg, int selector)
942{
943 SegmentCache *sc;
944 SegmentDescriptorTable *dt;
945 int index;
946 uint32_t e1, e2;
947 uint8_t *ptr;
948
949 env->segs[seg_reg] = selector;
950 sc = &env->seg_cache[seg_reg];
951 if (env->vm86) {
952 sc->base = (void *)(selector << 4);
953 sc->limit = 0xffff;
954 sc->seg_32bit = 0;
955 } else {
956 if (selector & 0x4)
957 dt = &env->ldt;
958 else
959 dt = &env->gdt;
960 index = selector & ~7;
961 if ((index + 7) > dt->limit)
962 raise_exception(EXCP0D_GPF);
963 ptr = dt->base + index;
964 e1 = ldl(ptr);
965 e2 = ldl(ptr + 4);
966 sc->base = (void *)((e1 >> 16) | ((e2 & 0xff) << 16) | (e2 & 0xff000000));
967 sc->limit = (e1 & 0xffff) | (e2 & 0x000f0000);
968 if (e2 & (1 << 23))
969 sc->limit = (sc->limit << 12) | 0xfff;
970 sc->seg_32bit = (e2 >> 22) & 1;
971#if 0
972 fprintf(logfile, "load_seg: sel=0x%04x base=0x%08lx limit=0x%08lx seg_32bit=%d\n",
973 selector, (unsigned long)sc->base, sc->limit, sc->seg_32bit);
974#endif
975 }
976}
977
978void OPPROTO op_movl_seg_T0(void)
979{
980 load_seg(PARAM1, T0 & 0xffff);
981}
982
983void OPPROTO op_movl_T0_seg(void)
984{
985 T0 = env->segs[PARAM1];
986}
987
988void OPPROTO op_addl_A0_seg(void)
989{
990 A0 += *(unsigned long *)((char *)env + PARAM1);
991}
992
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993/* flags handling */
994
995/* slow jumps cases (compute x86 flags) */
996void OPPROTO op_jo_cc(void)
997{
998 int eflags;
999 eflags = cc_table[CC_OP].compute_all();
1000 if (eflags & CC_O)
dab2ed99 1001 EIP = PARAM1;
367e86e8 1002 else
dab2ed99 1003 EIP = PARAM2;
0ecfa993 1004 FORCE_RET();
367e86e8
FB
1005}
1006
1007void OPPROTO op_jb_cc(void)
1008{
1009 if (cc_table[CC_OP].compute_c())
dab2ed99 1010 EIP = PARAM1;
367e86e8 1011 else
dab2ed99 1012 EIP = PARAM2;
0ecfa993 1013 FORCE_RET();
367e86e8
FB
1014}
1015
1016void OPPROTO op_jz_cc(void)
1017{
1018 int eflags;
1019 eflags = cc_table[CC_OP].compute_all();
1020 if (eflags & CC_Z)
dab2ed99 1021 EIP = PARAM1;
367e86e8 1022 else
dab2ed99 1023 EIP = PARAM2;
0ecfa993 1024 FORCE_RET();
367e86e8
FB
1025}
1026
1027void OPPROTO op_jbe_cc(void)
1028{
1029 int eflags;
1030 eflags = cc_table[CC_OP].compute_all();
1031 if (eflags & (CC_Z | CC_C))
dab2ed99 1032 EIP = PARAM1;
367e86e8 1033 else
dab2ed99 1034 EIP = PARAM2;
0ecfa993 1035 FORCE_RET();
367e86e8
FB
1036}
1037
1038void OPPROTO op_js_cc(void)
1039{
1040 int eflags;
1041 eflags = cc_table[CC_OP].compute_all();
1042 if (eflags & CC_S)
dab2ed99 1043 EIP = PARAM1;
367e86e8 1044 else
dab2ed99 1045 EIP = PARAM2;
0ecfa993 1046 FORCE_RET();
367e86e8
FB
1047}
1048
1049void OPPROTO op_jp_cc(void)
1050{
1051 int eflags;
1052 eflags = cc_table[CC_OP].compute_all();
1053 if (eflags & CC_P)
dab2ed99 1054 EIP = PARAM1;
367e86e8 1055 else
dab2ed99 1056 EIP = PARAM2;
0ecfa993 1057 FORCE_RET();
367e86e8
FB
1058}
1059
1060void OPPROTO op_jl_cc(void)
1061{
1062 int eflags;
1063 eflags = cc_table[CC_OP].compute_all();
1064 if ((eflags ^ (eflags >> 4)) & 0x80)
dab2ed99 1065 EIP = PARAM1;
367e86e8 1066 else
dab2ed99 1067 EIP = PARAM2;
0ecfa993 1068 FORCE_RET();
367e86e8
FB
1069}
1070
1071void OPPROTO op_jle_cc(void)
1072{
1073 int eflags;
1074 eflags = cc_table[CC_OP].compute_all();
1075 if (((eflags ^ (eflags >> 4)) & 0x80) || (eflags & CC_Z))
dab2ed99 1076 EIP = PARAM1;
367e86e8 1077 else
dab2ed99 1078 EIP = PARAM2;
0ecfa993 1079 FORCE_RET();
367e86e8
FB
1080}
1081
1082/* slow set cases (compute x86 flags) */
1083void OPPROTO op_seto_T0_cc(void)
1084{
1085 int eflags;
1086 eflags = cc_table[CC_OP].compute_all();
1087 T0 = (eflags >> 11) & 1;
1088}
1089
1090void OPPROTO op_setb_T0_cc(void)
1091{
1092 T0 = cc_table[CC_OP].compute_c();
1093}
1094
1095void OPPROTO op_setz_T0_cc(void)
1096{
1097 int eflags;
1098 eflags = cc_table[CC_OP].compute_all();
1099 T0 = (eflags >> 6) & 1;
1100}
1101
1102void OPPROTO op_setbe_T0_cc(void)
1103{
1104 int eflags;
1105 eflags = cc_table[CC_OP].compute_all();
1106 T0 = (eflags & (CC_Z | CC_C)) != 0;
1107}
1108
1109void OPPROTO op_sets_T0_cc(void)
1110{
1111 int eflags;
1112 eflags = cc_table[CC_OP].compute_all();
1113 T0 = (eflags >> 7) & 1;
1114}
1115
1116void OPPROTO op_setp_T0_cc(void)
1117{
1118 int eflags;
1119 eflags = cc_table[CC_OP].compute_all();
1120 T0 = (eflags >> 2) & 1;
1121}
1122
1123void OPPROTO op_setl_T0_cc(void)
1124{
1125 int eflags;
1126 eflags = cc_table[CC_OP].compute_all();
1127 T0 = ((eflags ^ (eflags >> 4)) >> 7) & 1;
1128}
1129
1130void OPPROTO op_setle_T0_cc(void)
1131{
1132 int eflags;
1133 eflags = cc_table[CC_OP].compute_all();
1134 T0 = (((eflags ^ (eflags >> 4)) & 0x80) || (eflags & CC_Z)) != 0;
1135}
1136
1137void OPPROTO op_xor_T0_1(void)
1138{
1139 T0 ^= 1;
1140}
1141
1142void OPPROTO op_set_cc_op(void)
1143{
1144 CC_OP = PARAM1;
1145}
1146
1147void OPPROTO op_movl_eflags_T0(void)
1148{
1149 CC_SRC = T0;
1150 DF = 1 - (2 * ((T0 >> 10) & 1));
1151}
1152
1153/* XXX: compute only O flag */
1154void OPPROTO op_movb_eflags_T0(void)
1155{
1156 int of;
1157 of = cc_table[CC_OP].compute_all() & CC_O;
1158 CC_SRC = T0 | of;
1159}
1160
1161void OPPROTO op_movl_T0_eflags(void)
1162{
1163 T0 = cc_table[CC_OP].compute_all();
1164 T0 |= (DF & DIRECTION_FLAG);
1165}
1166
1167void OPPROTO op_cld(void)
1168{
1169 DF = 1;
1170}
1171
1172void OPPROTO op_std(void)
1173{
1174 DF = -1;
1175}
1176
1177void OPPROTO op_clc(void)
1178{
1179 int eflags;
1180 eflags = cc_table[CC_OP].compute_all();
1181 eflags &= ~CC_C;
1182 CC_SRC = eflags;
1183}
1184
1185void OPPROTO op_stc(void)
1186{
1187 int eflags;
1188 eflags = cc_table[CC_OP].compute_all();
1189 eflags |= CC_C;
1190 CC_SRC = eflags;
1191}
1192
1193void OPPROTO op_cmc(void)
1194{
1195 int eflags;
1196 eflags = cc_table[CC_OP].compute_all();
1197 eflags ^= CC_C;
1198 CC_SRC = eflags;
1199}
1200
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1201void OPPROTO op_salc(void)
1202{
1203 int cf;
1204 cf = cc_table[CC_OP].compute_c();
1205 EAX = (EAX & ~0xff) | ((-cf) & 0xff);
1206}
1207
367e86e8
FB
1208static int compute_all_eflags(void)
1209{
1210 return CC_SRC;
1211}
1212
1213static int compute_c_eflags(void)
1214{
1215 return CC_SRC & CC_C;
1216}
1217
1218static int compute_c_mul(void)
1219{
1220 int cf;
1221 cf = (CC_SRC != 0);
1222 return cf;
1223}
1224
1225static int compute_all_mul(void)
1226{
1227 int cf, pf, af, zf, sf, of;
1228 cf = (CC_SRC != 0);
1229 pf = 0; /* undefined */
1230 af = 0; /* undefined */
1231 zf = 0; /* undefined */
1232 sf = 0; /* undefined */
1233 of = cf << 11;
1234 return cf | pf | af | zf | sf | of;
1235}
1236
1237CCTable cc_table[CC_OP_NB] = {
1238 [CC_OP_DYNAMIC] = { /* should never happen */ },
1239
1240 [CC_OP_EFLAGS] = { compute_all_eflags, compute_c_eflags },
1241
1242 [CC_OP_MUL] = { compute_all_mul, compute_c_mul },
1243
1244 [CC_OP_ADDB] = { compute_all_addb, compute_c_addb },
1245 [CC_OP_ADDW] = { compute_all_addw, compute_c_addw },
1246 [CC_OP_ADDL] = { compute_all_addl, compute_c_addl },
1247
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FB
1248 [CC_OP_ADCB] = { compute_all_adcb, compute_c_adcb },
1249 [CC_OP_ADCW] = { compute_all_adcw, compute_c_adcw },
1250 [CC_OP_ADCL] = { compute_all_adcl, compute_c_adcl },
1251
367e86e8
FB
1252 [CC_OP_SUBB] = { compute_all_subb, compute_c_subb },
1253 [CC_OP_SUBW] = { compute_all_subw, compute_c_subw },
1254 [CC_OP_SUBL] = { compute_all_subl, compute_c_subl },
1255
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FB
1256 [CC_OP_SBBB] = { compute_all_sbbb, compute_c_sbbb },
1257 [CC_OP_SBBW] = { compute_all_sbbw, compute_c_sbbw },
1258 [CC_OP_SBBL] = { compute_all_sbbl, compute_c_sbbl },
1259
367e86e8
FB
1260 [CC_OP_LOGICB] = { compute_all_logicb, compute_c_logicb },
1261 [CC_OP_LOGICW] = { compute_all_logicw, compute_c_logicw },
1262 [CC_OP_LOGICL] = { compute_all_logicl, compute_c_logicl },
1263
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FB
1264 [CC_OP_INCB] = { compute_all_incb, compute_c_incl },
1265 [CC_OP_INCW] = { compute_all_incw, compute_c_incl },
367e86e8
FB
1266 [CC_OP_INCL] = { compute_all_incl, compute_c_incl },
1267
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FB
1268 [CC_OP_DECB] = { compute_all_decb, compute_c_incl },
1269 [CC_OP_DECW] = { compute_all_decw, compute_c_incl },
367e86e8
FB
1270 [CC_OP_DECL] = { compute_all_decl, compute_c_incl },
1271
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FB
1272 [CC_OP_SHLB] = { compute_all_shlb, compute_c_shll },
1273 [CC_OP_SHLW] = { compute_all_shlw, compute_c_shll },
367e86e8 1274 [CC_OP_SHLL] = { compute_all_shll, compute_c_shll },
4b74fe1f
FB
1275
1276 [CC_OP_SARB] = { compute_all_sarb, compute_c_shll },
1277 [CC_OP_SARW] = { compute_all_sarw, compute_c_shll },
1278 [CC_OP_SARL] = { compute_all_sarl, compute_c_shll },
367e86e8 1279};
927f621e
FB
1280
1281/* floating point support */
1282
1283#ifdef USE_X86LDOUBLE
1284/* use long double functions */
1285#define lrint lrintl
1286#define llrint llrintl
1287#define fabs fabsl
1288#define sin sinl
1289#define cos cosl
1290#define sqrt sqrtl
1291#define pow powl
1292#define log logl
1293#define tan tanl
1294#define atan2 atan2l
1295#define floor floorl
1296#define ceil ceill
1297#define rint rintl
1298#endif
1299
1300extern int lrint(CPU86_LDouble x);
1301extern int64_t llrint(CPU86_LDouble x);
1302extern CPU86_LDouble fabs(CPU86_LDouble x);
1303extern CPU86_LDouble sin(CPU86_LDouble x);
1304extern CPU86_LDouble cos(CPU86_LDouble x);
1305extern CPU86_LDouble sqrt(CPU86_LDouble x);
1306extern CPU86_LDouble pow(CPU86_LDouble, CPU86_LDouble);
1307extern CPU86_LDouble log(CPU86_LDouble x);
1308extern CPU86_LDouble tan(CPU86_LDouble x);
1309extern CPU86_LDouble atan2(CPU86_LDouble, CPU86_LDouble);
1310extern CPU86_LDouble floor(CPU86_LDouble x);
1311extern CPU86_LDouble ceil(CPU86_LDouble x);
1312extern CPU86_LDouble rint(CPU86_LDouble x);
1313
1314#define RC_MASK 0xc00
1315#define RC_NEAR 0x000
1316#define RC_DOWN 0x400
1317#define RC_UP 0x800
1318#define RC_CHOP 0xc00
1319
1320#define MAXTAN 9223372036854775808.0
1321
1322#ifdef USE_X86LDOUBLE
1323
1324/* only for x86 */
1325typedef union {
1326 long double d;
1327 struct {
1328 unsigned long long lower;
1329 unsigned short upper;
1330 } l;
1331} CPU86_LDoubleU;
1332
1333/* the following deal with x86 long double-precision numbers */
1334#define MAXEXPD 0x7fff
1335#define EXPBIAS 16383
1336#define EXPD(fp) (fp.l.upper & 0x7fff)
1337#define SIGND(fp) ((fp.l.upper) & 0x8000)
1338#define MANTD(fp) (fp.l.lower)
1339#define BIASEXPONENT(fp) fp.l.upper = (fp.l.upper & ~(0x7fff)) | EXPBIAS
1340
1341#else
1342
77f8dd5a 1343typedef union {
927f621e
FB
1344 double d;
1345#ifndef WORDS_BIGENDIAN
1346 struct {
1347 unsigned long lower;
1348 long upper;
1349 } l;
1350#else
1351 struct {
1352 long upper;
1353 unsigned long lower;
1354 } l;
1355#endif
1356 long long ll;
1357} CPU86_LDoubleU;
1358
1359/* the following deal with IEEE double-precision numbers */
1360#define MAXEXPD 0x7ff
1361#define EXPBIAS 1023
1362#define EXPD(fp) (((fp.l.upper) >> 20) & 0x7FF)
1363#define SIGND(fp) ((fp.l.upper) & 0x80000000)
1364#define MANTD(fp) (fp.ll & ((1LL << 52) - 1))
1365#define BIASEXPONENT(fp) fp.l.upper = (fp.l.upper & ~(0x7ff << 20)) | (EXPBIAS << 20)
1366#endif
1367
1368/* fp load FT0 */
1369
1370void OPPROTO op_flds_FT0_A0(void)
1371{
1372 FT0 = ldfl((void *)A0);
1373}
1374
1375void OPPROTO op_fldl_FT0_A0(void)
1376{
1377 FT0 = ldfq((void *)A0);
1378}
1379
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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
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1415void OPPROTO op_fild_FT0_A0(void)
1416{
1417 FT0 = (CPU86_LDouble)ldsw((void *)A0);
1418}
1419
1420void OPPROTO op_fildl_FT0_A0(void)
1421{
1422 FT0 = (CPU86_LDouble)((int32_t)ldl((void *)A0));
1423}
1424
1425void OPPROTO op_fildll_FT0_A0(void)
1426{
1427 FT0 = (CPU86_LDouble)((int64_t)ldq((void *)A0));
1428}
04369ff2 1429#endif
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1430
1431/* fp load ST0 */
1432
1433void OPPROTO op_flds_ST0_A0(void)
1434{
1435 ST0 = ldfl((void *)A0);
1436}
1437
1438void OPPROTO op_fldl_ST0_A0(void)
1439{
1440 ST0 = ldfq((void *)A0);
1441}
1442
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1443#ifdef USE_X86LDOUBLE
1444void OPPROTO op_fldt_ST0_A0(void)
1445{
1446 ST0 = *(long double *)A0;
1447}
1448#else
1449void helper_fldt_ST0_A0(void)
1450{
1451 CPU86_LDoubleU temp;
1452 int upper, e;
1453 /* mantissa */
1454 upper = lduw((uint8_t *)A0 + 8);
1455 /* XXX: handle overflow ? */
1456 e = (upper & 0x7fff) - 16383 + EXPBIAS; /* exponent */
1457 e |= (upper >> 4) & 0x800; /* sign */
1458 temp.ll = ((ldq((void *)A0) >> 11) & ((1LL << 52) - 1)) | ((uint64_t)e << 52);
1459 ST0 = temp.d;
1460}
1461
1462void OPPROTO op_fldt_ST0_A0(void)
1463{
1464 helper_fldt_ST0_A0();
1465}
1466#endif
1467
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1468/* helpers are needed to avoid static constant reference. XXX: find a better way */
1469#ifdef USE_INT_TO_FLOAT_HELPERS
1470
1471void helper_fild_ST0_A0(void)
1472{
1473 ST0 = (CPU86_LDouble)ldsw((void *)A0);
1474}
1475
1476void helper_fildl_ST0_A0(void)
1477{
1478 ST0 = (CPU86_LDouble)((int32_t)ldl((void *)A0));
1479}
1480
1481void helper_fildll_ST0_A0(void)
1482{
1483 ST0 = (CPU86_LDouble)((int64_t)ldq((void *)A0));
1484}
1485
1486void OPPROTO op_fild_ST0_A0(void)
1487{
1488 helper_fild_ST0_A0();
1489}
1490
1491void OPPROTO op_fildl_ST0_A0(void)
1492{
1493 helper_fildl_ST0_A0();
1494}
1495
1496void OPPROTO op_fildll_ST0_A0(void)
1497{
1498 helper_fildll_ST0_A0();
1499}
1500
1501#else
1502
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1503void OPPROTO op_fild_ST0_A0(void)
1504{
1505 ST0 = (CPU86_LDouble)ldsw((void *)A0);
1506}
1507
1508void OPPROTO op_fildl_ST0_A0(void)
1509{
1510 ST0 = (CPU86_LDouble)((int32_t)ldl((void *)A0));
1511}
1512
1513void OPPROTO op_fildll_ST0_A0(void)
1514{
1515 ST0 = (CPU86_LDouble)((int64_t)ldq((void *)A0));
1516}
1517
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1518#endif
1519
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1520/* fp store */
1521
1522void OPPROTO op_fsts_ST0_A0(void)
1523{
1524 stfl((void *)A0, (float)ST0);
1525}
1526
1527void OPPROTO op_fstl_ST0_A0(void)
1528{
77f8dd5a 1529 stfq((void *)A0, (double)ST0);
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1530}
1531
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1532#ifdef USE_X86LDOUBLE
1533void OPPROTO op_fstt_ST0_A0(void)
1534{
1535 *(long double *)A0 = ST0;
1536}
1537#else
1538void helper_fstt_ST0_A0(void)
1539{
1540 CPU86_LDoubleU temp;
1541 int e;
1542 temp.d = ST0;
1543 /* mantissa */
1544 stq((void *)A0, (MANTD(temp) << 11) | (1LL << 63));
1545 /* exponent + sign */
1546 e = EXPD(temp) - EXPBIAS + 16383;
1547 e |= SIGND(temp) >> 16;
1548 stw((uint8_t *)A0 + 8, e);
1549}
1550
1551void OPPROTO op_fstt_ST0_A0(void)
1552{
1553 helper_fstt_ST0_A0();
1554}
1555#endif
1556
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1557void OPPROTO op_fist_ST0_A0(void)
1558{
1559 int val;
1560 val = lrint(ST0);
1561 stw((void *)A0, val);
1562}
1563
1564void OPPROTO op_fistl_ST0_A0(void)
1565{
1566 int val;
1567 val = lrint(ST0);
1568 stl((void *)A0, val);
1569}
1570
1571void OPPROTO op_fistll_ST0_A0(void)
1572{
1573 int64_t val;
1574 val = llrint(ST0);
1575 stq((void *)A0, val);
1576}
1577
77f8dd5a
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1578/* BCD ops */
1579
1580#define MUL10(iv) ( iv + iv + (iv << 3) )
1581
1582void helper_fbld_ST0_A0(void)
1583{
1584 uint8_t *seg;
1585 CPU86_LDouble fpsrcop;
1586 int m32i;
1587 unsigned int v;
1588
1589 /* in this code, seg/m32i will be used as temporary ptr/int */
1590 seg = (uint8_t *)A0 + 8;
1591 v = ldub(seg--);
1592 /* XXX: raise exception */
1593 if (v != 0)
1594 return;
1595 v = ldub(seg--);
1596 /* XXX: raise exception */
1597 if ((v & 0xf0) != 0)
1598 return;
1599 m32i = v; /* <-- d14 */
1600 v = ldub(seg--);
1601 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d13 */
1602 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d12 */
1603 v = ldub(seg--);
1604 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d11 */
1605 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d10 */
1606 v = ldub(seg--);
1607 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d9 */
1608 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d8 */
1609 fpsrcop = ((CPU86_LDouble)m32i) * 100000000.0;
1610
1611 v = ldub(seg--);
1612 m32i = (v >> 4); /* <-- d7 */
1613 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d6 */
1614 v = ldub(seg--);
1615 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d5 */
1616 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d4 */
1617 v = ldub(seg--);
1618 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d3 */
1619 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d2 */
1620 v = ldub(seg);
1621 m32i = MUL10(m32i) + (v >> 4); /* <-- val * 10 + d1 */
1622 m32i = MUL10(m32i) + (v & 0xf); /* <-- val * 10 + d0 */
1623 fpsrcop += ((CPU86_LDouble)m32i);
1624 if ( ldub(seg+9) & 0x80 )
1625 fpsrcop = -fpsrcop;
1626 ST0 = fpsrcop;
1627}
1628
1629void OPPROTO op_fbld_ST0_A0(void)
1630{
1631 helper_fbld_ST0_A0();
1632}
1633
1634void helper_fbst_ST0_A0(void)
1635{
1636 CPU86_LDouble fptemp;
1637 CPU86_LDouble fpsrcop;
1638 int v;
1639 uint8_t *mem_ref, *mem_end;
1640
1641 fpsrcop = rint(ST0);
1642 mem_ref = (uint8_t *)A0;
1643 mem_end = mem_ref + 8;
1644 if ( fpsrcop < 0.0 ) {
1645 stw(mem_end, 0x8000);
1646 fpsrcop = -fpsrcop;
1647 } else {
1648 stw(mem_end, 0x0000);
1649 }
1650 while (mem_ref < mem_end) {
1651 if (fpsrcop == 0.0)
1652 break;
1653 fptemp = floor(fpsrcop/10.0);
1654 v = ((int)(fpsrcop - fptemp*10.0));
1655 if (fptemp == 0.0) {
1656 stb(mem_ref++, v);
1657 break;
1658 }
1659 fpsrcop = fptemp;
1660 fptemp = floor(fpsrcop/10.0);
1661 v |= (((int)(fpsrcop - fptemp*10.0)) << 4);
1662 stb(mem_ref++, v);
1663 fpsrcop = fptemp;
1664 }
1665 while (mem_ref < mem_end) {
1666 stb(mem_ref++, 0);
1667 }
1668}
1669
1670void OPPROTO op_fbst_ST0_A0(void)
1671{
1672 helper_fbst_ST0_A0();
1673}
1674
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1675/* FPU move */
1676
1677static inline void fpush(void)
1678{
1679 env->fpstt = (env->fpstt - 1) & 7;
1680 env->fptags[env->fpstt] = 0; /* validate stack entry */
1681}
1682
1683static inline void fpop(void)
1684{
1685 env->fptags[env->fpstt] = 1; /* invvalidate stack entry */
1686 env->fpstt = (env->fpstt + 1) & 7;
1687}
1688
1689void OPPROTO op_fpush(void)
1690{
1691 fpush();
1692}
1693
1694void OPPROTO op_fpop(void)
1695{
1696 fpop();
1697}
1698
1699void OPPROTO op_fdecstp(void)
1700{
1701 env->fpstt = (env->fpstt - 1) & 7;
1702 env->fpus &= (~0x4700);
1703}
1704
1705void OPPROTO op_fincstp(void)
1706{
1707 env->fpstt = (env->fpstt + 1) & 7;
1708 env->fpus &= (~0x4700);
1709}
1710
1711void OPPROTO op_fmov_ST0_FT0(void)
1712{
1713 ST0 = FT0;
1714}
1715
1716void OPPROTO op_fmov_FT0_STN(void)
1717{
1718 FT0 = ST(PARAM1);
1719}
1720
1721void OPPROTO op_fmov_ST0_STN(void)
1722{
1723 ST0 = ST(PARAM1);
1724}
1725
1726void OPPROTO op_fmov_STN_ST0(void)
1727{
1728 ST(PARAM1) = ST0;
1729}
1730
1731void OPPROTO op_fxchg_ST0_STN(void)
1732{
1733 CPU86_LDouble tmp;
1734 tmp = ST(PARAM1);
1735 ST(PARAM1) = ST0;
1736 ST0 = tmp;
1737}
1738
1739/* FPU operations */
1740
1741/* XXX: handle nans */
1742void OPPROTO op_fcom_ST0_FT0(void)
1743{
1744 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1745 if (ST0 < FT0)
1746 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1747 else if (ST0 == FT0)
1748 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1749 FORCE_RET();
1750}
1751
77f8dd5a
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1752/* XXX: handle nans */
1753void OPPROTO op_fucom_ST0_FT0(void)
1754{
1755 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1756 if (ST0 < FT0)
1757 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1758 else if (ST0 == FT0)
1759 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1760 FORCE_RET();
1761}
1762
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1763void OPPROTO op_fadd_ST0_FT0(void)
1764{
1765 ST0 += FT0;
1766}
1767
1768void OPPROTO op_fmul_ST0_FT0(void)
1769{
1770 ST0 *= FT0;
1771}
1772
1773void OPPROTO op_fsub_ST0_FT0(void)
1774{
1775 ST0 -= FT0;
1776}
1777
1778void OPPROTO op_fsubr_ST0_FT0(void)
1779{
1780 ST0 = FT0 - ST0;
1781}
1782
1783void OPPROTO op_fdiv_ST0_FT0(void)
1784{
1785 ST0 /= FT0;
1786}
1787
1788void OPPROTO op_fdivr_ST0_FT0(void)
1789{
1790 ST0 = FT0 / ST0;
1791}
1792
1793/* fp operations between STN and ST0 */
1794
1795void OPPROTO op_fadd_STN_ST0(void)
1796{
1797 ST(PARAM1) += ST0;
1798}
1799
1800void OPPROTO op_fmul_STN_ST0(void)
1801{
1802 ST(PARAM1) *= ST0;
1803}
1804
1805void OPPROTO op_fsub_STN_ST0(void)
1806{
1807 ST(PARAM1) -= ST0;
1808}
1809
1810void OPPROTO op_fsubr_STN_ST0(void)
1811{
1812 CPU86_LDouble *p;
1813 p = &ST(PARAM1);
1814 *p = ST0 - *p;
1815}
1816
1817void OPPROTO op_fdiv_STN_ST0(void)
1818{
1819 ST(PARAM1) /= ST0;
1820}
1821
1822void OPPROTO op_fdivr_STN_ST0(void)
1823{
1824 CPU86_LDouble *p;
1825 p = &ST(PARAM1);
1826 *p = ST0 / *p;
1827}
1828
1829/* misc FPU operations */
1830void OPPROTO op_fchs_ST0(void)
1831{
1832 ST0 = -ST0;
1833}
1834
1835void OPPROTO op_fabs_ST0(void)
1836{
1837 ST0 = fabs(ST0);
1838}
1839
77f8dd5a 1840void helper_fxam_ST0(void)
927f621e
FB
1841{
1842 CPU86_LDoubleU temp;
1843 int expdif;
1844
1845 temp.d = ST0;
1846
1847 env->fpus &= (~0x4700); /* (C3,C2,C1,C0) <-- 0000 */
1848 if (SIGND(temp))
1849 env->fpus |= 0x200; /* C1 <-- 1 */
1850
1851 expdif = EXPD(temp);
1852 if (expdif == MAXEXPD) {
1853 if (MANTD(temp) == 0)
1854 env->fpus |= 0x500 /*Infinity*/;
1855 else
1856 env->fpus |= 0x100 /*NaN*/;
1857 } else if (expdif == 0) {
1858 if (MANTD(temp) == 0)
1859 env->fpus |= 0x4000 /*Zero*/;
1860 else
1861 env->fpus |= 0x4400 /*Denormal*/;
1862 } else {
1863 env->fpus |= 0x400;
1864 }
77f8dd5a
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1865}
1866
1867void OPPROTO op_fxam_ST0(void)
1868{
1869 helper_fxam_ST0();
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1870}
1871
1872void OPPROTO op_fld1_ST0(void)
1873{
1874 ST0 = *(CPU86_LDouble *)&f15rk[1];
1875}
1876
77f8dd5a 1877void OPPROTO op_fldl2t_ST0(void)
927f621e
FB
1878{
1879 ST0 = *(CPU86_LDouble *)&f15rk[6];
1880}
1881
77f8dd5a 1882void OPPROTO op_fldl2e_ST0(void)
927f621e
FB
1883{
1884 ST0 = *(CPU86_LDouble *)&f15rk[5];
1885}
1886
1887void OPPROTO op_fldpi_ST0(void)
1888{
1889 ST0 = *(CPU86_LDouble *)&f15rk[2];
1890}
1891
1892void OPPROTO op_fldlg2_ST0(void)
1893{
1894 ST0 = *(CPU86_LDouble *)&f15rk[3];
1895}
1896
1897void OPPROTO op_fldln2_ST0(void)
1898{
1899 ST0 = *(CPU86_LDouble *)&f15rk[4];
1900}
1901
1902void OPPROTO op_fldz_ST0(void)
1903{
1904 ST0 = *(CPU86_LDouble *)&f15rk[0];
1905}
1906
1907void OPPROTO op_fldz_FT0(void)
1908{
1909 ST0 = *(CPU86_LDouble *)&f15rk[0];
1910}
1911
1912void helper_f2xm1(void)
1913{
1914 ST0 = pow(2.0,ST0) - 1.0;
1915}
1916
1917void helper_fyl2x(void)
1918{
1919 CPU86_LDouble fptemp;
1920
1921 fptemp = ST0;
1922 if (fptemp>0.0){
1923 fptemp = log(fptemp)/log(2.0); /* log2(ST) */
1924 ST1 *= fptemp;
1925 fpop();
1926 } else {
1927 env->fpus &= (~0x4700);
1928 env->fpus |= 0x400;
1929 }
1930}
1931
1932void helper_fptan(void)
1933{
1934 CPU86_LDouble fptemp;
1935
1936 fptemp = ST0;
1937 if((fptemp > MAXTAN)||(fptemp < -MAXTAN)) {
1938 env->fpus |= 0x400;
1939 } else {
1940 ST0 = tan(fptemp);
1941 fpush();
1942 ST0 = 1.0;
1943 env->fpus &= (~0x400); /* C2 <-- 0 */
1944 /* the above code is for |arg| < 2**52 only */
1945 }
1946}
1947
1948void helper_fpatan(void)
1949{
1950 CPU86_LDouble fptemp, fpsrcop;
1951
1952 fpsrcop = ST1;
1953 fptemp = ST0;
1954 ST1 = atan2(fpsrcop,fptemp);
1955 fpop();
1956}
1957
1958void helper_fxtract(void)
1959{
1960 CPU86_LDoubleU temp;
1961 unsigned int expdif;
1962
1963 temp.d = ST0;
1964 expdif = EXPD(temp) - EXPBIAS;
1965 /*DP exponent bias*/
1966 ST0 = expdif;
1967 fpush();
1968 BIASEXPONENT(temp);
1969 ST0 = temp.d;
1970}
1971
1972void helper_fprem1(void)
1973{
1974 CPU86_LDouble dblq, fpsrcop, fptemp;
1975 CPU86_LDoubleU fpsrcop1, fptemp1;
1976 int expdif;
1977 int q;
1978
1979 fpsrcop = ST0;
1980 fptemp = ST1;
1981 fpsrcop1.d = fpsrcop;
1982 fptemp1.d = fptemp;
1983 expdif = EXPD(fpsrcop1) - EXPD(fptemp1);
1984 if (expdif < 53) {
1985 dblq = fpsrcop / fptemp;
1986 dblq = (dblq < 0.0)? ceil(dblq): floor(dblq);
1987 ST0 = fpsrcop - fptemp*dblq;
1988 q = (int)dblq; /* cutting off top bits is assumed here */
1989 env->fpus &= (~0x4700); /* (C3,C2,C1,C0) <-- 0000 */
1990 /* (C0,C1,C3) <-- (q2,q1,q0) */
1991 env->fpus |= (q&0x4) << 6; /* (C0) <-- q2 */
1992 env->fpus |= (q&0x2) << 8; /* (C1) <-- q1 */
1993 env->fpus |= (q&0x1) << 14; /* (C3) <-- q0 */
1994 } else {
1995 env->fpus |= 0x400; /* C2 <-- 1 */
1996 fptemp = pow(2.0, expdif-50);
1997 fpsrcop = (ST0 / ST1) / fptemp;
1998 /* fpsrcop = integer obtained by rounding to the nearest */
1999 fpsrcop = (fpsrcop-floor(fpsrcop) < ceil(fpsrcop)-fpsrcop)?
2000 floor(fpsrcop): ceil(fpsrcop);
2001 ST0 -= (ST1 * fpsrcop * fptemp);
2002 }
2003}
2004
2005void helper_fprem(void)
2006{
2007 CPU86_LDouble dblq, fpsrcop, fptemp;
2008 CPU86_LDoubleU fpsrcop1, fptemp1;
2009 int expdif;
2010 int q;
2011
2012 fpsrcop = ST0;
2013 fptemp = ST1;
2014 fpsrcop1.d = fpsrcop;
2015 fptemp1.d = fptemp;
2016 expdif = EXPD(fpsrcop1) - EXPD(fptemp1);
2017 if ( expdif < 53 ) {
2018 dblq = fpsrcop / fptemp;
2019 dblq = (dblq < 0.0)? ceil(dblq): floor(dblq);
2020 ST0 = fpsrcop - fptemp*dblq;
2021 q = (int)dblq; /* cutting off top bits is assumed here */
2022 env->fpus &= (~0x4700); /* (C3,C2,C1,C0) <-- 0000 */
2023 /* (C0,C1,C3) <-- (q2,q1,q0) */
2024 env->fpus |= (q&0x4) << 6; /* (C0) <-- q2 */
2025 env->fpus |= (q&0x2) << 8; /* (C1) <-- q1 */
2026 env->fpus |= (q&0x1) << 14; /* (C3) <-- q0 */
2027 } else {
2028 env->fpus |= 0x400; /* C2 <-- 1 */
2029 fptemp = pow(2.0, expdif-50);
2030 fpsrcop = (ST0 / ST1) / fptemp;
2031 /* fpsrcop = integer obtained by chopping */
2032 fpsrcop = (fpsrcop < 0.0)?
2033 -(floor(fabs(fpsrcop))): floor(fpsrcop);
2034 ST0 -= (ST1 * fpsrcop * fptemp);
2035 }
2036}
2037
2038void helper_fyl2xp1(void)
2039{
2040 CPU86_LDouble fptemp;
2041
2042 fptemp = ST0;
2043 if ((fptemp+1.0)>0.0) {
2044 fptemp = log(fptemp+1.0) / log(2.0); /* log2(ST+1.0) */
2045 ST1 *= fptemp;
2046 fpop();
2047 } else {
2048 env->fpus &= (~0x4700);
2049 env->fpus |= 0x400;
2050 }
2051}
2052
2053void helper_fsqrt(void)
2054{
2055 CPU86_LDouble fptemp;
2056
2057 fptemp = ST0;
2058 if (fptemp<0.0) {
2059 env->fpus &= (~0x4700); /* (C3,C2,C1,C0) <-- 0000 */
2060 env->fpus |= 0x400;
2061 }
2062 ST0 = sqrt(fptemp);
2063}
2064
2065void helper_fsincos(void)
2066{
2067 CPU86_LDouble fptemp;
2068
2069 fptemp = ST0;
2070 if ((fptemp > MAXTAN)||(fptemp < -MAXTAN)) {
2071 env->fpus |= 0x400;
2072 } else {
2073 ST0 = sin(fptemp);
2074 fpush();
2075 ST0 = cos(fptemp);
2076 env->fpus &= (~0x400); /* C2 <-- 0 */
2077 /* the above code is for |arg| < 2**63 only */
2078 }
2079}
2080
2081void helper_frndint(void)
2082{
2083 ST0 = rint(ST0);
2084}
2085
2086void helper_fscale(void)
2087{
2088 CPU86_LDouble fpsrcop, fptemp;
2089
2090 fpsrcop = 2.0;
2091 fptemp = pow(fpsrcop,ST1);
2092 ST0 *= fptemp;
2093}
2094
2095void helper_fsin(void)
2096{
2097 CPU86_LDouble fptemp;
2098
2099 fptemp = ST0;
2100 if ((fptemp > MAXTAN)||(fptemp < -MAXTAN)) {
2101 env->fpus |= 0x400;
2102 } else {
2103 ST0 = sin(fptemp);
2104 env->fpus &= (~0x400); /* C2 <-- 0 */
2105 /* the above code is for |arg| < 2**53 only */
2106 }
2107}
2108
2109void helper_fcos(void)
2110{
2111 CPU86_LDouble fptemp;
2112
2113 fptemp = ST0;
2114 if((fptemp > MAXTAN)||(fptemp < -MAXTAN)) {
2115 env->fpus |= 0x400;
2116 } else {
2117 ST0 = cos(fptemp);
2118 env->fpus &= (~0x400); /* C2 <-- 0 */
2119 /* the above code is for |arg5 < 2**63 only */
2120 }
2121}
2122
2123/* associated heplers to reduce generated code length and to simplify
2124 relocation (FP constants are usually stored in .rodata section) */
2125
2126void OPPROTO op_f2xm1(void)
2127{
2128 helper_f2xm1();
2129}
2130
2131void OPPROTO op_fyl2x(void)
2132{
2133 helper_fyl2x();
2134}
2135
2136void OPPROTO op_fptan(void)
2137{
2138 helper_fptan();
2139}
2140
2141void OPPROTO op_fpatan(void)
2142{
2143 helper_fpatan();
2144}
2145
2146void OPPROTO op_fxtract(void)
2147{
2148 helper_fxtract();
2149}
2150
2151void OPPROTO op_fprem1(void)
2152{
2153 helper_fprem1();
2154}
2155
2156
2157void OPPROTO op_fprem(void)
2158{
2159 helper_fprem();
2160}
2161
2162void OPPROTO op_fyl2xp1(void)
2163{
2164 helper_fyl2xp1();
2165}
2166
2167void OPPROTO op_fsqrt(void)
2168{
2169 helper_fsqrt();
2170}
2171
2172void OPPROTO op_fsincos(void)
2173{
2174 helper_fsincos();
2175}
2176
2177void OPPROTO op_frndint(void)
2178{
2179 helper_frndint();
2180}
2181
2182void OPPROTO op_fscale(void)
2183{
2184 helper_fscale();
2185}
2186
2187void OPPROTO op_fsin(void)
2188{
2189 helper_fsin();
2190}
2191
2192void OPPROTO op_fcos(void)
2193{
2194 helper_fcos();
2195}
2196
4b74fe1f
FB
2197void OPPROTO op_fnstsw_A0(void)
2198{
2199 int fpus;
2200 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
2201 stw((void *)A0, fpus);
2202}
2203
77f8dd5a
FB
2204void OPPROTO op_fnstsw_EAX(void)
2205{
2206 int fpus;
2207 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
2208 EAX = (EAX & 0xffff0000) | fpus;
2209}
2210
4b74fe1f
FB
2211void OPPROTO op_fnstcw_A0(void)
2212{
2213 stw((void *)A0, env->fpuc);
2214}
2215
2216void OPPROTO op_fldcw_A0(void)
2217{
2218 int rnd_type;
2219 env->fpuc = lduw((void *)A0);
2220 /* set rounding mode */
2221 switch(env->fpuc & RC_MASK) {
2222 default:
2223 case RC_NEAR:
2224 rnd_type = FE_TONEAREST;
2225 break;
2226 case RC_DOWN:
2227 rnd_type = FE_DOWNWARD;
2228 break;
2229 case RC_UP:
2230 rnd_type = FE_UPWARD;
2231 break;
2232 case RC_CHOP:
2233 rnd_type = FE_TOWARDZERO;
2234 break;
2235 }
2236 fesetround(rnd_type);
2237}
2238
1a9353d2
FB
2239void OPPROTO op_fclex(void)
2240{
2241 env->fpus &= 0x7f00;
2242}
2243
2244void OPPROTO op_fninit(void)
2245{
2246 env->fpus = 0;
2247 env->fpstt = 0;
2248 env->fpuc = 0x37f;
2249 env->fptags[0] = 1;
2250 env->fptags[1] = 1;
2251 env->fptags[2] = 1;
2252 env->fptags[3] = 1;
2253 env->fptags[4] = 1;
2254 env->fptags[5] = 1;
2255 env->fptags[6] = 1;
2256 env->fptags[7] = 1;
2257}
1b6b029e
FB
2258
2259/* threading support */
2260void OPPROTO op_lock(void)
2261{
2262 cpu_lock();
2263}
2264
2265void OPPROTO op_unlock(void)
2266{
2267 cpu_unlock();
2268}
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