x86_64 fixes
[qemu/qemu_0_9_1_stable.git] / target-i386 / op.c
blobdd9d7bad1f10d4d7d29f2055a6ce7b393fdf019d
1 /*
2 * i386 micro operations
3 *
4 * Copyright (c) 2003 Fabrice Bellard
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.
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.
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
21 #define ASM_SOFTMMU
22 #include "exec.h"
24 /* n must be a constant to be efficient */
25 static inline target_long lshift(target_long x, int n)
27 if (n >= 0)
28 return x << n;
29 else
30 return x >> (-n);
33 /* we define the various pieces of code used by the JIT */
35 #define REG EAX
36 #define REGNAME _EAX
37 #include "opreg_template.h"
38 #undef REG
39 #undef REGNAME
41 #define REG ECX
42 #define REGNAME _ECX
43 #include "opreg_template.h"
44 #undef REG
45 #undef REGNAME
47 #define REG EDX
48 #define REGNAME _EDX
49 #include "opreg_template.h"
50 #undef REG
51 #undef REGNAME
53 #define REG EBX
54 #define REGNAME _EBX
55 #include "opreg_template.h"
56 #undef REG
57 #undef REGNAME
59 #define REG ESP
60 #define REGNAME _ESP
61 #include "opreg_template.h"
62 #undef REG
63 #undef REGNAME
65 #define REG EBP
66 #define REGNAME _EBP
67 #include "opreg_template.h"
68 #undef REG
69 #undef REGNAME
71 #define REG ESI
72 #define REGNAME _ESI
73 #include "opreg_template.h"
74 #undef REG
75 #undef REGNAME
77 #define REG EDI
78 #define REGNAME _EDI
79 #include "opreg_template.h"
80 #undef REG
81 #undef REGNAME
83 #ifdef TARGET_X86_64
85 #define REG (env->regs[8])
86 #define REGNAME _R8
87 #include "opreg_template.h"
88 #undef REG
89 #undef REGNAME
91 #define REG (env->regs[9])
92 #define REGNAME _R9
93 #include "opreg_template.h"
94 #undef REG
95 #undef REGNAME
97 #define REG (env->regs[10])
98 #define REGNAME _R10
99 #include "opreg_template.h"
100 #undef REG
101 #undef REGNAME
103 #define REG (env->regs[11])
104 #define REGNAME _R11
105 #include "opreg_template.h"
106 #undef REG
107 #undef REGNAME
109 #define REG (env->regs[12])
110 #define REGNAME _R12
111 #include "opreg_template.h"
112 #undef REG
113 #undef REGNAME
115 #define REG (env->regs[13])
116 #define REGNAME _R13
117 #include "opreg_template.h"
118 #undef REG
119 #undef REGNAME
121 #define REG (env->regs[14])
122 #define REGNAME _R14
123 #include "opreg_template.h"
124 #undef REG
125 #undef REGNAME
127 #define REG (env->regs[15])
128 #define REGNAME _R15
129 #include "opreg_template.h"
130 #undef REG
131 #undef REGNAME
133 #endif
135 /* operations with flags */
137 /* update flags with T0 and T1 (add/sub case) */
138 void OPPROTO op_update2_cc(void)
140 CC_SRC = T1;
141 CC_DST = T0;
144 /* update flags with T0 (logic operation case) */
145 void OPPROTO op_update1_cc(void)
147 CC_DST = T0;
150 void OPPROTO op_update_neg_cc(void)
152 CC_SRC = -T0;
153 CC_DST = T0;
156 void OPPROTO op_cmpl_T0_T1_cc(void)
158 CC_SRC = T1;
159 CC_DST = T0 - T1;
162 void OPPROTO op_update_inc_cc(void)
164 CC_SRC = cc_table[CC_OP].compute_c();
165 CC_DST = T0;
168 void OPPROTO op_testl_T0_T1_cc(void)
170 CC_DST = T0 & T1;
173 /* operations without flags */
175 void OPPROTO op_addl_T0_T1(void)
177 T0 += T1;
180 void OPPROTO op_orl_T0_T1(void)
182 T0 |= T1;
185 void OPPROTO op_andl_T0_T1(void)
187 T0 &= T1;
190 void OPPROTO op_subl_T0_T1(void)
192 T0 -= T1;
195 void OPPROTO op_xorl_T0_T1(void)
197 T0 ^= T1;
200 void OPPROTO op_negl_T0(void)
202 T0 = -T0;
205 void OPPROTO op_incl_T0(void)
207 T0++;
210 void OPPROTO op_decl_T0(void)
212 T0--;
215 void OPPROTO op_notl_T0(void)
217 T0 = ~T0;
220 void OPPROTO op_bswapl_T0(void)
222 T0 = bswap32(T0);
225 #ifdef TARGET_X86_64
226 void OPPROTO op_bswapq_T0(void)
228 T0 = bswap64(T0);
230 #endif
232 /* multiply/divide */
234 /* XXX: add eflags optimizations */
235 /* XXX: add non P4 style flags */
237 void OPPROTO op_mulb_AL_T0(void)
239 unsigned int res;
240 res = (uint8_t)EAX * (uint8_t)T0;
241 EAX = (EAX & ~0xffff) | res;
242 CC_DST = res;
243 CC_SRC = (res & 0xff00);
246 void OPPROTO op_imulb_AL_T0(void)
248 int res;
249 res = (int8_t)EAX * (int8_t)T0;
250 EAX = (EAX & ~0xffff) | (res & 0xffff);
251 CC_DST = res;
252 CC_SRC = (res != (int8_t)res);
255 void OPPROTO op_mulw_AX_T0(void)
257 unsigned int res;
258 res = (uint16_t)EAX * (uint16_t)T0;
259 EAX = (EAX & ~0xffff) | (res & 0xffff);
260 EDX = (EDX & ~0xffff) | ((res >> 16) & 0xffff);
261 CC_DST = res;
262 CC_SRC = res >> 16;
265 void OPPROTO op_imulw_AX_T0(void)
267 int res;
268 res = (int16_t)EAX * (int16_t)T0;
269 EAX = (EAX & ~0xffff) | (res & 0xffff);
270 EDX = (EDX & ~0xffff) | ((res >> 16) & 0xffff);
271 CC_DST = res;
272 CC_SRC = (res != (int16_t)res);
275 void OPPROTO op_mull_EAX_T0(void)
277 uint64_t res;
278 res = (uint64_t)((uint32_t)EAX) * (uint64_t)((uint32_t)T0);
279 EAX = (uint32_t)res;
280 EDX = (uint32_t)(res >> 32);
281 CC_DST = (uint32_t)res;
282 CC_SRC = (uint32_t)(res >> 32);
285 void OPPROTO op_imull_EAX_T0(void)
287 int64_t res;
288 res = (int64_t)((int32_t)EAX) * (int64_t)((int32_t)T0);
289 EAX = (uint32_t)(res);
290 EDX = (uint32_t)(res >> 32);
291 CC_DST = res;
292 CC_SRC = (res != (int32_t)res);
295 void OPPROTO op_imulw_T0_T1(void)
297 int res;
298 res = (int16_t)T0 * (int16_t)T1;
299 T0 = res;
300 CC_DST = res;
301 CC_SRC = (res != (int16_t)res);
304 void OPPROTO op_imull_T0_T1(void)
306 int64_t res;
307 res = (int64_t)((int32_t)T0) * (int64_t)((int32_t)T1);
308 T0 = res;
309 CC_DST = res;
310 CC_SRC = (res != (int32_t)res);
313 #ifdef TARGET_X86_64
314 void OPPROTO op_mulq_EAX_T0(void)
316 helper_mulq_EAX_T0();
319 void OPPROTO op_imulq_EAX_T0(void)
321 helper_imulq_EAX_T0();
324 void OPPROTO op_imulq_T0_T1(void)
326 helper_imulq_T0_T1();
328 #endif
330 /* division, flags are undefined */
331 /* XXX: add exceptions for overflow */
333 void OPPROTO op_divb_AL_T0(void)
335 unsigned int num, den, q, r;
337 num = (EAX & 0xffff);
338 den = (T0 & 0xff);
339 if (den == 0) {
340 raise_exception(EXCP00_DIVZ);
342 q = (num / den) & 0xff;
343 r = (num % den) & 0xff;
344 EAX = (EAX & ~0xffff) | (r << 8) | q;
347 void OPPROTO op_idivb_AL_T0(void)
349 int num, den, q, r;
351 num = (int16_t)EAX;
352 den = (int8_t)T0;
353 if (den == 0) {
354 raise_exception(EXCP00_DIVZ);
356 q = (num / den) & 0xff;
357 r = (num % den) & 0xff;
358 EAX = (EAX & ~0xffff) | (r << 8) | q;
361 void OPPROTO op_divw_AX_T0(void)
363 unsigned int num, den, q, r;
365 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
366 den = (T0 & 0xffff);
367 if (den == 0) {
368 raise_exception(EXCP00_DIVZ);
370 q = (num / den) & 0xffff;
371 r = (num % den) & 0xffff;
372 EAX = (EAX & ~0xffff) | q;
373 EDX = (EDX & ~0xffff) | r;
376 void OPPROTO op_idivw_AX_T0(void)
378 int num, den, q, r;
380 num = (EAX & 0xffff) | ((EDX & 0xffff) << 16);
381 den = (int16_t)T0;
382 if (den == 0) {
383 raise_exception(EXCP00_DIVZ);
385 q = (num / den) & 0xffff;
386 r = (num % den) & 0xffff;
387 EAX = (EAX & ~0xffff) | q;
388 EDX = (EDX & ~0xffff) | r;
391 void OPPROTO op_divl_EAX_T0(void)
393 helper_divl_EAX_T0();
396 void OPPROTO op_idivl_EAX_T0(void)
398 helper_idivl_EAX_T0();
401 #ifdef TARGET_X86_64
402 void OPPROTO op_divq_EAX_T0(void)
404 helper_divq_EAX_T0();
407 void OPPROTO op_idivq_EAX_T0(void)
409 helper_idivq_EAX_T0();
411 #endif
413 /* constant load & misc op */
415 /* XXX: consistent names */
416 void OPPROTO op_movl_T0_imu(void)
418 T0 = (uint32_t)PARAM1;
421 void OPPROTO op_movl_T0_im(void)
423 T0 = (int32_t)PARAM1;
426 void OPPROTO op_addl_T0_im(void)
428 T0 += PARAM1;
431 void OPPROTO op_andl_T0_ffff(void)
433 T0 = T0 & 0xffff;
436 void OPPROTO op_andl_T0_im(void)
438 T0 = T0 & PARAM1;
441 void OPPROTO op_movl_T0_T1(void)
443 T0 = T1;
446 void OPPROTO op_movl_T1_imu(void)
448 T1 = (uint32_t)PARAM1;
451 void OPPROTO op_movl_T1_im(void)
453 T1 = (int32_t)PARAM1;
456 void OPPROTO op_addl_T1_im(void)
458 T1 += PARAM1;
461 void OPPROTO op_movl_T1_A0(void)
463 T1 = A0;
466 void OPPROTO op_movl_A0_im(void)
468 A0 = (uint32_t)PARAM1;
471 void OPPROTO op_addl_A0_im(void)
473 A0 = (uint32_t)(A0 + PARAM1);
476 void OPPROTO op_movl_A0_seg(void)
478 A0 = (uint32_t)*(target_ulong *)((char *)env + PARAM1);
481 void OPPROTO op_addl_A0_seg(void)
483 A0 = (uint32_t)(A0 + *(target_ulong *)((char *)env + PARAM1));
486 void OPPROTO op_addl_A0_AL(void)
488 A0 = (uint32_t)(A0 + (EAX & 0xff));
491 #ifdef WORDS_BIGENDIAN
492 typedef union UREG64 {
493 struct { uint16_t v3, v2, v1, v0; } w;
494 struct { uint32_t v1, v0; } l;
495 uint64_t q;
496 } UREG64;
497 #else
498 typedef union UREG64 {
499 struct { uint16_t v0, v1, v2, v3; } w;
500 struct { uint32_t v0, v1; } l;
501 uint64_t q;
502 } UREG64;
503 #endif
505 #ifdef TARGET_X86_64
507 #define PARAMQ1 \
509 UREG64 __p;\
510 __p.l.v1 = PARAM1;\
511 __p.l.v0 = PARAM2;\
512 __p.q;\
515 void OPPROTO op_movq_T0_im64(void)
517 T0 = PARAMQ1;
520 void OPPROTO op_movq_T1_im64(void)
522 T1 = PARAMQ1;
525 void OPPROTO op_movq_A0_im(void)
527 A0 = (int32_t)PARAM1;
530 void OPPROTO op_movq_A0_im64(void)
532 A0 = PARAMQ1;
535 void OPPROTO op_addq_A0_im(void)
537 A0 = (A0 + (int32_t)PARAM1);
540 void OPPROTO op_addq_A0_im64(void)
542 A0 = (A0 + PARAMQ1);
545 void OPPROTO op_movq_A0_seg(void)
547 A0 = *(target_ulong *)((char *)env + PARAM1);
550 void OPPROTO op_addq_A0_seg(void)
552 A0 += *(target_ulong *)((char *)env + PARAM1);
555 void OPPROTO op_addq_A0_AL(void)
557 A0 = (A0 + (EAX & 0xff));
560 #endif
562 void OPPROTO op_andl_A0_ffff(void)
564 A0 = A0 & 0xffff;
567 /* memory access */
569 #define MEMSUFFIX _raw
570 #include "ops_mem.h"
572 #if !defined(CONFIG_USER_ONLY)
573 #define MEMSUFFIX _kernel
574 #include "ops_mem.h"
576 #define MEMSUFFIX _user
577 #include "ops_mem.h"
578 #endif
580 /* indirect jump */
582 void OPPROTO op_jmp_T0(void)
584 EIP = T0;
587 void OPPROTO op_movl_eip_im(void)
589 EIP = (uint32_t)PARAM1;
592 #ifdef TARGET_X86_64
593 void OPPROTO op_movq_eip_im(void)
595 EIP = (int32_t)PARAM1;
598 void OPPROTO op_movq_eip_im64(void)
600 EIP = PARAMQ1;
602 #endif
604 void OPPROTO op_hlt(void)
606 env->hflags &= ~HF_INHIBIT_IRQ_MASK; /* needed if sti is just before */
607 env->exception_index = EXCP_HLT;
608 cpu_loop_exit();
611 void OPPROTO op_debug(void)
613 env->exception_index = EXCP_DEBUG;
614 cpu_loop_exit();
617 void OPPROTO op_raise_interrupt(void)
619 int intno, next_eip_addend;
620 intno = PARAM1;
621 next_eip_addend = PARAM2;
622 raise_interrupt(intno, 1, 0, next_eip_addend);
625 void OPPROTO op_raise_exception(void)
627 int exception_index;
628 exception_index = PARAM1;
629 raise_exception(exception_index);
632 void OPPROTO op_into(void)
634 int eflags;
635 eflags = cc_table[CC_OP].compute_all();
636 if (eflags & CC_O) {
637 raise_interrupt(EXCP04_INTO, 1, 0, PARAM1);
639 FORCE_RET();
642 void OPPROTO op_cli(void)
644 env->eflags &= ~IF_MASK;
647 void OPPROTO op_sti(void)
649 env->eflags |= IF_MASK;
652 void OPPROTO op_set_inhibit_irq(void)
654 env->hflags |= HF_INHIBIT_IRQ_MASK;
657 void OPPROTO op_reset_inhibit_irq(void)
659 env->hflags &= ~HF_INHIBIT_IRQ_MASK;
662 #if 0
663 /* vm86plus instructions */
664 void OPPROTO op_cli_vm(void)
666 env->eflags &= ~VIF_MASK;
669 void OPPROTO op_sti_vm(void)
671 env->eflags |= VIF_MASK;
672 if (env->eflags & VIP_MASK) {
673 EIP = PARAM1;
674 raise_exception(EXCP0D_GPF);
676 FORCE_RET();
678 #endif
680 void OPPROTO op_boundw(void)
682 int low, high, v;
683 low = ldsw(A0);
684 high = ldsw(A0 + 2);
685 v = (int16_t)T0;
686 if (v < low || v > high) {
687 raise_exception(EXCP05_BOUND);
689 FORCE_RET();
692 void OPPROTO op_boundl(void)
694 int low, high, v;
695 low = ldl(A0);
696 high = ldl(A0 + 4);
697 v = T0;
698 if (v < low || v > high) {
699 raise_exception(EXCP05_BOUND);
701 FORCE_RET();
704 void OPPROTO op_cmpxchg8b(void)
706 helper_cmpxchg8b();
709 void OPPROTO op_movl_T0_0(void)
711 T0 = 0;
714 void OPPROTO op_exit_tb(void)
716 EXIT_TB();
719 /* multiple size ops */
721 #define ldul ldl
723 #define SHIFT 0
724 #include "ops_template.h"
725 #undef SHIFT
727 #define SHIFT 1
728 #include "ops_template.h"
729 #undef SHIFT
731 #define SHIFT 2
732 #include "ops_template.h"
733 #undef SHIFT
735 #ifdef TARGET_X86_64
737 #define SHIFT 3
738 #include "ops_template.h"
739 #undef SHIFT
741 #endif
743 /* sign extend */
745 void OPPROTO op_movsbl_T0_T0(void)
747 T0 = (int8_t)T0;
750 void OPPROTO op_movzbl_T0_T0(void)
752 T0 = (uint8_t)T0;
755 void OPPROTO op_movswl_T0_T0(void)
757 T0 = (int16_t)T0;
760 void OPPROTO op_movzwl_T0_T0(void)
762 T0 = (uint16_t)T0;
765 void OPPROTO op_movswl_EAX_AX(void)
767 EAX = (int16_t)EAX;
770 #ifdef TARGET_X86_64
771 void OPPROTO op_movslq_T0_T0(void)
773 T0 = (int32_t)T0;
776 void OPPROTO op_movslq_RAX_EAX(void)
778 EAX = (int32_t)EAX;
780 #endif
782 void OPPROTO op_movsbw_AX_AL(void)
784 EAX = (EAX & ~0xffff) | ((int8_t)EAX & 0xffff);
787 void OPPROTO op_movslq_EDX_EAX(void)
789 EDX = (int32_t)EAX >> 31;
792 void OPPROTO op_movswl_DX_AX(void)
794 EDX = (EDX & ~0xffff) | (((int16_t)EAX >> 15) & 0xffff);
797 #ifdef TARGET_X86_64
798 void OPPROTO op_movsqo_RDX_RAX(void)
800 EDX = (int64_t)EAX >> 63;
802 #endif
804 /* string ops helpers */
806 void OPPROTO op_addl_ESI_T0(void)
808 ESI = (uint32_t)(ESI + T0);
811 void OPPROTO op_addw_ESI_T0(void)
813 ESI = (ESI & ~0xffff) | ((ESI + T0) & 0xffff);
816 void OPPROTO op_addl_EDI_T0(void)
818 EDI = (uint32_t)(EDI + T0);
821 void OPPROTO op_addw_EDI_T0(void)
823 EDI = (EDI & ~0xffff) | ((EDI + T0) & 0xffff);
826 void OPPROTO op_decl_ECX(void)
828 ECX = (uint32_t)(ECX - 1);
831 void OPPROTO op_decw_ECX(void)
833 ECX = (ECX & ~0xffff) | ((ECX - 1) & 0xffff);
836 #ifdef TARGET_X86_64
837 void OPPROTO op_addq_ESI_T0(void)
839 ESI = (ESI + T0);
842 void OPPROTO op_addq_EDI_T0(void)
844 EDI = (EDI + T0);
847 void OPPROTO op_decq_ECX(void)
849 ECX--;
851 #endif
853 /* push/pop utils */
855 void op_addl_A0_SS(void)
857 A0 += (long)env->segs[R_SS].base;
860 void op_subl_A0_2(void)
862 A0 = (uint32_t)(A0 - 2);
865 void op_subl_A0_4(void)
867 A0 = (uint32_t)(A0 - 4);
870 void op_addl_ESP_4(void)
872 ESP = (uint32_t)(ESP + 4);
875 void op_addl_ESP_2(void)
877 ESP = (uint32_t)(ESP + 2);
880 void op_addw_ESP_4(void)
882 ESP = (ESP & ~0xffff) | ((ESP + 4) & 0xffff);
885 void op_addw_ESP_2(void)
887 ESP = (ESP & ~0xffff) | ((ESP + 2) & 0xffff);
890 void op_addl_ESP_im(void)
892 ESP = (uint32_t)(ESP + PARAM1);
895 void op_addw_ESP_im(void)
897 ESP = (ESP & ~0xffff) | ((ESP + PARAM1) & 0xffff);
900 #ifdef TARGET_X86_64
901 void op_subq_A0_8(void)
903 A0 -= 8;
906 void op_addq_ESP_8(void)
908 ESP += 8;
911 void op_addq_ESP_im(void)
913 ESP += PARAM1;
915 #endif
917 void OPPROTO op_rdtsc(void)
919 helper_rdtsc();
922 void OPPROTO op_cpuid(void)
924 helper_cpuid();
927 void OPPROTO op_enter_level(void)
929 helper_enter_level(PARAM1, PARAM2);
932 void OPPROTO op_sysenter(void)
934 helper_sysenter();
937 void OPPROTO op_sysexit(void)
939 helper_sysexit();
942 #ifdef TARGET_X86_64
943 void OPPROTO op_syscall(void)
945 helper_syscall(PARAM1);
948 void OPPROTO op_sysret(void)
950 helper_sysret(PARAM1);
952 #endif
954 void OPPROTO op_rdmsr(void)
956 helper_rdmsr();
959 void OPPROTO op_wrmsr(void)
961 helper_wrmsr();
964 /* bcd */
966 /* XXX: exception */
967 void OPPROTO op_aam(void)
969 int base = PARAM1;
970 int al, ah;
971 al = EAX & 0xff;
972 ah = al / base;
973 al = al % base;
974 EAX = (EAX & ~0xffff) | al | (ah << 8);
975 CC_DST = al;
978 void OPPROTO op_aad(void)
980 int base = PARAM1;
981 int al, ah;
982 al = EAX & 0xff;
983 ah = (EAX >> 8) & 0xff;
984 al = ((ah * base) + al) & 0xff;
985 EAX = (EAX & ~0xffff) | al;
986 CC_DST = al;
989 void OPPROTO op_aaa(void)
991 int icarry;
992 int al, ah, af;
993 int eflags;
995 eflags = cc_table[CC_OP].compute_all();
996 af = eflags & CC_A;
997 al = EAX & 0xff;
998 ah = (EAX >> 8) & 0xff;
1000 icarry = (al > 0xf9);
1001 if (((al & 0x0f) > 9 ) || af) {
1002 al = (al + 6) & 0x0f;
1003 ah = (ah + 1 + icarry) & 0xff;
1004 eflags |= CC_C | CC_A;
1005 } else {
1006 eflags &= ~(CC_C | CC_A);
1007 al &= 0x0f;
1009 EAX = (EAX & ~0xffff) | al | (ah << 8);
1010 CC_SRC = eflags;
1013 void OPPROTO op_aas(void)
1015 int icarry;
1016 int al, ah, af;
1017 int eflags;
1019 eflags = cc_table[CC_OP].compute_all();
1020 af = eflags & CC_A;
1021 al = EAX & 0xff;
1022 ah = (EAX >> 8) & 0xff;
1024 icarry = (al < 6);
1025 if (((al & 0x0f) > 9 ) || af) {
1026 al = (al - 6) & 0x0f;
1027 ah = (ah - 1 - icarry) & 0xff;
1028 eflags |= CC_C | CC_A;
1029 } else {
1030 eflags &= ~(CC_C | CC_A);
1031 al &= 0x0f;
1033 EAX = (EAX & ~0xffff) | al | (ah << 8);
1034 CC_SRC = eflags;
1037 void OPPROTO op_daa(void)
1039 int al, af, cf;
1040 int eflags;
1042 eflags = cc_table[CC_OP].compute_all();
1043 cf = eflags & CC_C;
1044 af = eflags & CC_A;
1045 al = EAX & 0xff;
1047 eflags = 0;
1048 if (((al & 0x0f) > 9 ) || af) {
1049 al = (al + 6) & 0xff;
1050 eflags |= CC_A;
1052 if ((al > 0x9f) || cf) {
1053 al = (al + 0x60) & 0xff;
1054 eflags |= CC_C;
1056 EAX = (EAX & ~0xff) | al;
1057 /* well, speed is not an issue here, so we compute the flags by hand */
1058 eflags |= (al == 0) << 6; /* zf */
1059 eflags |= parity_table[al]; /* pf */
1060 eflags |= (al & 0x80); /* sf */
1061 CC_SRC = eflags;
1064 void OPPROTO op_das(void)
1066 int al, al1, af, cf;
1067 int eflags;
1069 eflags = cc_table[CC_OP].compute_all();
1070 cf = eflags & CC_C;
1071 af = eflags & CC_A;
1072 al = EAX & 0xff;
1074 eflags = 0;
1075 al1 = al;
1076 if (((al & 0x0f) > 9 ) || af) {
1077 eflags |= CC_A;
1078 if (al < 6 || cf)
1079 eflags |= CC_C;
1080 al = (al - 6) & 0xff;
1082 if ((al1 > 0x99) || cf) {
1083 al = (al - 0x60) & 0xff;
1084 eflags |= CC_C;
1086 EAX = (EAX & ~0xff) | al;
1087 /* well, speed is not an issue here, so we compute the flags by hand */
1088 eflags |= (al == 0) << 6; /* zf */
1089 eflags |= parity_table[al]; /* pf */
1090 eflags |= (al & 0x80); /* sf */
1091 CC_SRC = eflags;
1094 /* segment handling */
1096 /* never use it with R_CS */
1097 void OPPROTO op_movl_seg_T0(void)
1099 load_seg(PARAM1, T0);
1102 /* faster VM86 version */
1103 void OPPROTO op_movl_seg_T0_vm(void)
1105 int selector;
1106 SegmentCache *sc;
1108 selector = T0 & 0xffff;
1109 /* env->segs[] access */
1110 sc = (SegmentCache *)((char *)env + PARAM1);
1111 sc->selector = selector;
1112 sc->base = (selector << 4);
1115 void OPPROTO op_movl_T0_seg(void)
1117 T0 = env->segs[PARAM1].selector;
1120 void OPPROTO op_lsl(void)
1122 helper_lsl();
1125 void OPPROTO op_lar(void)
1127 helper_lar();
1130 void OPPROTO op_verr(void)
1132 helper_verr();
1135 void OPPROTO op_verw(void)
1137 helper_verw();
1140 void OPPROTO op_arpl(void)
1142 if ((T0 & 3) < (T1 & 3)) {
1143 /* XXX: emulate bug or 0xff3f0000 oring as in bochs ? */
1144 T0 = (T0 & ~3) | (T1 & 3);
1145 T1 = CC_Z;
1146 } else {
1147 T1 = 0;
1149 FORCE_RET();
1152 void OPPROTO op_arpl_update(void)
1154 int eflags;
1155 eflags = cc_table[CC_OP].compute_all();
1156 CC_SRC = (eflags & ~CC_Z) | T1;
1159 /* T0: segment, T1:eip */
1160 void OPPROTO op_ljmp_protected_T0_T1(void)
1162 helper_ljmp_protected_T0_T1(PARAM1);
1165 void OPPROTO op_lcall_real_T0_T1(void)
1167 helper_lcall_real_T0_T1(PARAM1, PARAM2);
1170 void OPPROTO op_lcall_protected_T0_T1(void)
1172 helper_lcall_protected_T0_T1(PARAM1, PARAM2);
1175 void OPPROTO op_iret_real(void)
1177 helper_iret_real(PARAM1);
1180 void OPPROTO op_iret_protected(void)
1182 helper_iret_protected(PARAM1, PARAM2);
1185 void OPPROTO op_lret_protected(void)
1187 helper_lret_protected(PARAM1, PARAM2);
1190 void OPPROTO op_lldt_T0(void)
1192 helper_lldt_T0();
1195 void OPPROTO op_ltr_T0(void)
1197 helper_ltr_T0();
1200 /* CR registers access */
1201 void OPPROTO op_movl_crN_T0(void)
1203 helper_movl_crN_T0(PARAM1);
1206 #if !defined(CONFIG_USER_ONLY)
1207 void OPPROTO op_movtl_T0_cr8(void)
1209 T0 = cpu_get_apic_tpr(env);
1211 #endif
1213 /* DR registers access */
1214 void OPPROTO op_movl_drN_T0(void)
1216 helper_movl_drN_T0(PARAM1);
1219 void OPPROTO op_lmsw_T0(void)
1221 /* only 4 lower bits of CR0 are modified. PE cannot be set to zero
1222 if already set to one. */
1223 T0 = (env->cr[0] & ~0xe) | (T0 & 0xf);
1224 helper_movl_crN_T0(0);
1227 void OPPROTO op_invlpg_A0(void)
1229 helper_invlpg(A0);
1232 void OPPROTO op_movl_T0_env(void)
1234 T0 = *(uint32_t *)((char *)env + PARAM1);
1237 void OPPROTO op_movl_env_T0(void)
1239 *(uint32_t *)((char *)env + PARAM1) = T0;
1242 void OPPROTO op_movl_env_T1(void)
1244 *(uint32_t *)((char *)env + PARAM1) = T1;
1247 void OPPROTO op_movtl_T0_env(void)
1249 T0 = *(target_ulong *)((char *)env + PARAM1);
1252 void OPPROTO op_movtl_env_T0(void)
1254 *(target_ulong *)((char *)env + PARAM1) = T0;
1257 void OPPROTO op_movtl_T1_env(void)
1259 T1 = *(target_ulong *)((char *)env + PARAM1);
1262 void OPPROTO op_movtl_env_T1(void)
1264 *(target_ulong *)((char *)env + PARAM1) = T1;
1267 void OPPROTO op_clts(void)
1269 env->cr[0] &= ~CR0_TS_MASK;
1270 env->hflags &= ~HF_TS_MASK;
1273 /* flags handling */
1275 void OPPROTO op_goto_tb0(void)
1277 GOTO_TB(op_goto_tb0, PARAM1, 0);
1280 void OPPROTO op_goto_tb1(void)
1282 GOTO_TB(op_goto_tb1, PARAM1, 1);
1285 void OPPROTO op_jmp_label(void)
1287 GOTO_LABEL_PARAM(1);
1290 void OPPROTO op_jnz_T0_label(void)
1292 if (T0)
1293 GOTO_LABEL_PARAM(1);
1294 FORCE_RET();
1297 void OPPROTO op_jz_T0_label(void)
1299 if (!T0)
1300 GOTO_LABEL_PARAM(1);
1301 FORCE_RET();
1304 /* slow set cases (compute x86 flags) */
1305 void OPPROTO op_seto_T0_cc(void)
1307 int eflags;
1308 eflags = cc_table[CC_OP].compute_all();
1309 T0 = (eflags >> 11) & 1;
1312 void OPPROTO op_setb_T0_cc(void)
1314 T0 = cc_table[CC_OP].compute_c();
1317 void OPPROTO op_setz_T0_cc(void)
1319 int eflags;
1320 eflags = cc_table[CC_OP].compute_all();
1321 T0 = (eflags >> 6) & 1;
1324 void OPPROTO op_setbe_T0_cc(void)
1326 int eflags;
1327 eflags = cc_table[CC_OP].compute_all();
1328 T0 = (eflags & (CC_Z | CC_C)) != 0;
1331 void OPPROTO op_sets_T0_cc(void)
1333 int eflags;
1334 eflags = cc_table[CC_OP].compute_all();
1335 T0 = (eflags >> 7) & 1;
1338 void OPPROTO op_setp_T0_cc(void)
1340 int eflags;
1341 eflags = cc_table[CC_OP].compute_all();
1342 T0 = (eflags >> 2) & 1;
1345 void OPPROTO op_setl_T0_cc(void)
1347 int eflags;
1348 eflags = cc_table[CC_OP].compute_all();
1349 T0 = ((eflags ^ (eflags >> 4)) >> 7) & 1;
1352 void OPPROTO op_setle_T0_cc(void)
1354 int eflags;
1355 eflags = cc_table[CC_OP].compute_all();
1356 T0 = (((eflags ^ (eflags >> 4)) & 0x80) || (eflags & CC_Z)) != 0;
1359 void OPPROTO op_xor_T0_1(void)
1361 T0 ^= 1;
1364 void OPPROTO op_set_cc_op(void)
1366 CC_OP = PARAM1;
1369 void OPPROTO op_mov_T0_cc(void)
1371 T0 = cc_table[CC_OP].compute_all();
1374 /* XXX: clear VIF/VIP in all ops ? */
1376 void OPPROTO op_movl_eflags_T0(void)
1378 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK));
1381 void OPPROTO op_movw_eflags_T0(void)
1383 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK) & 0xffff);
1386 void OPPROTO op_movl_eflags_T0_io(void)
1388 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK | IF_MASK));
1391 void OPPROTO op_movw_eflags_T0_io(void)
1393 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK | IF_MASK) & 0xffff);
1396 void OPPROTO op_movl_eflags_T0_cpl0(void)
1398 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK | IF_MASK | IOPL_MASK));
1401 void OPPROTO op_movw_eflags_T0_cpl0(void)
1403 load_eflags(T0, (TF_MASK | AC_MASK | ID_MASK | NT_MASK | IF_MASK | IOPL_MASK) & 0xffff);
1406 #if 0
1407 /* vm86plus version */
1408 void OPPROTO op_movw_eflags_T0_vm(void)
1410 int eflags;
1411 eflags = T0;
1412 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1413 DF = 1 - (2 * ((eflags >> 10) & 1));
1414 /* we also update some system flags as in user mode */
1415 env->eflags = (env->eflags & ~(FL_UPDATE_MASK16 | VIF_MASK)) |
1416 (eflags & FL_UPDATE_MASK16);
1417 if (eflags & IF_MASK) {
1418 env->eflags |= VIF_MASK;
1419 if (env->eflags & VIP_MASK) {
1420 EIP = PARAM1;
1421 raise_exception(EXCP0D_GPF);
1424 FORCE_RET();
1427 void OPPROTO op_movl_eflags_T0_vm(void)
1429 int eflags;
1430 eflags = T0;
1431 CC_SRC = eflags & (CC_O | CC_S | CC_Z | CC_A | CC_P | CC_C);
1432 DF = 1 - (2 * ((eflags >> 10) & 1));
1433 /* we also update some system flags as in user mode */
1434 env->eflags = (env->eflags & ~(FL_UPDATE_MASK32 | VIF_MASK)) |
1435 (eflags & FL_UPDATE_MASK32);
1436 if (eflags & IF_MASK) {
1437 env->eflags |= VIF_MASK;
1438 if (env->eflags & VIP_MASK) {
1439 EIP = PARAM1;
1440 raise_exception(EXCP0D_GPF);
1443 FORCE_RET();
1445 #endif
1447 /* XXX: compute only O flag */
1448 void OPPROTO op_movb_eflags_T0(void)
1450 int of;
1451 of = cc_table[CC_OP].compute_all() & CC_O;
1452 CC_SRC = (T0 & (CC_S | CC_Z | CC_A | CC_P | CC_C)) | of;
1455 void OPPROTO op_movl_T0_eflags(void)
1457 int eflags;
1458 eflags = cc_table[CC_OP].compute_all();
1459 eflags |= (DF & DF_MASK);
1460 eflags |= env->eflags & ~(VM_MASK | RF_MASK);
1461 T0 = eflags;
1464 /* vm86plus version */
1465 #if 0
1466 void OPPROTO op_movl_T0_eflags_vm(void)
1468 int eflags;
1469 eflags = cc_table[CC_OP].compute_all();
1470 eflags |= (DF & DF_MASK);
1471 eflags |= env->eflags & ~(VM_MASK | RF_MASK | IF_MASK);
1472 if (env->eflags & VIF_MASK)
1473 eflags |= IF_MASK;
1474 T0 = eflags;
1476 #endif
1478 void OPPROTO op_cld(void)
1480 DF = 1;
1483 void OPPROTO op_std(void)
1485 DF = -1;
1488 void OPPROTO op_clc(void)
1490 int eflags;
1491 eflags = cc_table[CC_OP].compute_all();
1492 eflags &= ~CC_C;
1493 CC_SRC = eflags;
1496 void OPPROTO op_stc(void)
1498 int eflags;
1499 eflags = cc_table[CC_OP].compute_all();
1500 eflags |= CC_C;
1501 CC_SRC = eflags;
1504 void OPPROTO op_cmc(void)
1506 int eflags;
1507 eflags = cc_table[CC_OP].compute_all();
1508 eflags ^= CC_C;
1509 CC_SRC = eflags;
1512 void OPPROTO op_salc(void)
1514 int cf;
1515 cf = cc_table[CC_OP].compute_c();
1516 EAX = (EAX & ~0xff) | ((-cf) & 0xff);
1519 static int compute_all_eflags(void)
1521 return CC_SRC;
1524 static int compute_c_eflags(void)
1526 return CC_SRC & CC_C;
1529 CCTable cc_table[CC_OP_NB] = {
1530 [CC_OP_DYNAMIC] = { /* should never happen */ },
1532 [CC_OP_EFLAGS] = { compute_all_eflags, compute_c_eflags },
1534 [CC_OP_MULB] = { compute_all_mulb, compute_c_mull },
1535 [CC_OP_MULW] = { compute_all_mulw, compute_c_mull },
1536 [CC_OP_MULL] = { compute_all_mull, compute_c_mull },
1538 [CC_OP_ADDB] = { compute_all_addb, compute_c_addb },
1539 [CC_OP_ADDW] = { compute_all_addw, compute_c_addw },
1540 [CC_OP_ADDL] = { compute_all_addl, compute_c_addl },
1542 [CC_OP_ADCB] = { compute_all_adcb, compute_c_adcb },
1543 [CC_OP_ADCW] = { compute_all_adcw, compute_c_adcw },
1544 [CC_OP_ADCL] = { compute_all_adcl, compute_c_adcl },
1546 [CC_OP_SUBB] = { compute_all_subb, compute_c_subb },
1547 [CC_OP_SUBW] = { compute_all_subw, compute_c_subw },
1548 [CC_OP_SUBL] = { compute_all_subl, compute_c_subl },
1550 [CC_OP_SBBB] = { compute_all_sbbb, compute_c_sbbb },
1551 [CC_OP_SBBW] = { compute_all_sbbw, compute_c_sbbw },
1552 [CC_OP_SBBL] = { compute_all_sbbl, compute_c_sbbl },
1554 [CC_OP_LOGICB] = { compute_all_logicb, compute_c_logicb },
1555 [CC_OP_LOGICW] = { compute_all_logicw, compute_c_logicw },
1556 [CC_OP_LOGICL] = { compute_all_logicl, compute_c_logicl },
1558 [CC_OP_INCB] = { compute_all_incb, compute_c_incl },
1559 [CC_OP_INCW] = { compute_all_incw, compute_c_incl },
1560 [CC_OP_INCL] = { compute_all_incl, compute_c_incl },
1562 [CC_OP_DECB] = { compute_all_decb, compute_c_incl },
1563 [CC_OP_DECW] = { compute_all_decw, compute_c_incl },
1564 [CC_OP_DECL] = { compute_all_decl, compute_c_incl },
1566 [CC_OP_SHLB] = { compute_all_shlb, compute_c_shlb },
1567 [CC_OP_SHLW] = { compute_all_shlw, compute_c_shlw },
1568 [CC_OP_SHLL] = { compute_all_shll, compute_c_shll },
1570 [CC_OP_SARB] = { compute_all_sarb, compute_c_sarl },
1571 [CC_OP_SARW] = { compute_all_sarw, compute_c_sarl },
1572 [CC_OP_SARL] = { compute_all_sarl, compute_c_sarl },
1574 #ifdef TARGET_X86_64
1575 [CC_OP_MULQ] = { compute_all_mulq, compute_c_mull },
1577 [CC_OP_ADDQ] = { compute_all_addq, compute_c_addq },
1579 [CC_OP_ADCQ] = { compute_all_adcq, compute_c_adcq },
1581 [CC_OP_SUBQ] = { compute_all_subq, compute_c_subq },
1583 [CC_OP_SBBQ] = { compute_all_sbbq, compute_c_sbbq },
1585 [CC_OP_LOGICQ] = { compute_all_logicq, compute_c_logicq },
1587 [CC_OP_INCQ] = { compute_all_incq, compute_c_incl },
1589 [CC_OP_DECQ] = { compute_all_decq, compute_c_incl },
1591 [CC_OP_SHLQ] = { compute_all_shlq, compute_c_shlq },
1593 [CC_OP_SARQ] = { compute_all_sarq, compute_c_sarl },
1594 #endif
1597 /* floating point support. Some of the code for complicated x87
1598 functions comes from the LGPL'ed x86 emulator found in the Willows
1599 TWIN windows emulator. */
1601 #if defined(__powerpc__)
1602 extern CPU86_LDouble copysign(CPU86_LDouble, CPU86_LDouble);
1604 /* correct (but slow) PowerPC rint() (glibc version is incorrect) */
1605 double qemu_rint(double x)
1607 double y = 4503599627370496.0;
1608 if (fabs(x) >= y)
1609 return x;
1610 if (x < 0)
1611 y = -y;
1612 y = (x + y) - y;
1613 if (y == 0.0)
1614 y = copysign(y, x);
1615 return y;
1618 #define rint qemu_rint
1619 #endif
1621 /* fp load FT0 */
1623 void OPPROTO op_flds_FT0_A0(void)
1625 #ifdef USE_FP_CONVERT
1626 FP_CONVERT.i32 = ldl(A0);
1627 FT0 = FP_CONVERT.f;
1628 #else
1629 FT0 = ldfl(A0);
1630 #endif
1633 void OPPROTO op_fldl_FT0_A0(void)
1635 #ifdef USE_FP_CONVERT
1636 FP_CONVERT.i64 = ldq(A0);
1637 FT0 = FP_CONVERT.d;
1638 #else
1639 FT0 = ldfq(A0);
1640 #endif
1643 /* helpers are needed to avoid static constant reference. XXX: find a better way */
1644 #ifdef USE_INT_TO_FLOAT_HELPERS
1646 void helper_fild_FT0_A0(void)
1648 FT0 = (CPU86_LDouble)ldsw(A0);
1651 void helper_fildl_FT0_A0(void)
1653 FT0 = (CPU86_LDouble)((int32_t)ldl(A0));
1656 void helper_fildll_FT0_A0(void)
1658 FT0 = (CPU86_LDouble)((int64_t)ldq(A0));
1661 void OPPROTO op_fild_FT0_A0(void)
1663 helper_fild_FT0_A0();
1666 void OPPROTO op_fildl_FT0_A0(void)
1668 helper_fildl_FT0_A0();
1671 void OPPROTO op_fildll_FT0_A0(void)
1673 helper_fildll_FT0_A0();
1676 #else
1678 void OPPROTO op_fild_FT0_A0(void)
1680 #ifdef USE_FP_CONVERT
1681 FP_CONVERT.i32 = ldsw(A0);
1682 FT0 = (CPU86_LDouble)FP_CONVERT.i32;
1683 #else
1684 FT0 = (CPU86_LDouble)ldsw(A0);
1685 #endif
1688 void OPPROTO op_fildl_FT0_A0(void)
1690 #ifdef USE_FP_CONVERT
1691 FP_CONVERT.i32 = (int32_t) ldl(A0);
1692 FT0 = (CPU86_LDouble)FP_CONVERT.i32;
1693 #else
1694 FT0 = (CPU86_LDouble)((int32_t)ldl(A0));
1695 #endif
1698 void OPPROTO op_fildll_FT0_A0(void)
1700 #ifdef USE_FP_CONVERT
1701 FP_CONVERT.i64 = (int64_t) ldq(A0);
1702 FT0 = (CPU86_LDouble)FP_CONVERT.i64;
1703 #else
1704 FT0 = (CPU86_LDouble)((int64_t)ldq(A0));
1705 #endif
1707 #endif
1709 /* fp load ST0 */
1711 void OPPROTO op_flds_ST0_A0(void)
1713 int new_fpstt;
1714 new_fpstt = (env->fpstt - 1) & 7;
1715 #ifdef USE_FP_CONVERT
1716 FP_CONVERT.i32 = ldl(A0);
1717 env->fpregs[new_fpstt].d = FP_CONVERT.f;
1718 #else
1719 env->fpregs[new_fpstt].d = ldfl(A0);
1720 #endif
1721 env->fpstt = new_fpstt;
1722 env->fptags[new_fpstt] = 0; /* validate stack entry */
1725 void OPPROTO op_fldl_ST0_A0(void)
1727 int new_fpstt;
1728 new_fpstt = (env->fpstt - 1) & 7;
1729 #ifdef USE_FP_CONVERT
1730 FP_CONVERT.i64 = ldq(A0);
1731 env->fpregs[new_fpstt].d = FP_CONVERT.d;
1732 #else
1733 env->fpregs[new_fpstt].d = ldfq(A0);
1734 #endif
1735 env->fpstt = new_fpstt;
1736 env->fptags[new_fpstt] = 0; /* validate stack entry */
1739 void OPPROTO op_fldt_ST0_A0(void)
1741 helper_fldt_ST0_A0();
1744 /* helpers are needed to avoid static constant reference. XXX: find a better way */
1745 #ifdef USE_INT_TO_FLOAT_HELPERS
1747 void helper_fild_ST0_A0(void)
1749 int new_fpstt;
1750 new_fpstt = (env->fpstt - 1) & 7;
1751 env->fpregs[new_fpstt].d = (CPU86_LDouble)ldsw(A0);
1752 env->fpstt = new_fpstt;
1753 env->fptags[new_fpstt] = 0; /* validate stack entry */
1756 void helper_fildl_ST0_A0(void)
1758 int new_fpstt;
1759 new_fpstt = (env->fpstt - 1) & 7;
1760 env->fpregs[new_fpstt].d = (CPU86_LDouble)((int32_t)ldl(A0));
1761 env->fpstt = new_fpstt;
1762 env->fptags[new_fpstt] = 0; /* validate stack entry */
1765 void helper_fildll_ST0_A0(void)
1767 int new_fpstt;
1768 new_fpstt = (env->fpstt - 1) & 7;
1769 env->fpregs[new_fpstt].d = (CPU86_LDouble)((int64_t)ldq(A0));
1770 env->fpstt = new_fpstt;
1771 env->fptags[new_fpstt] = 0; /* validate stack entry */
1774 void OPPROTO op_fild_ST0_A0(void)
1776 helper_fild_ST0_A0();
1779 void OPPROTO op_fildl_ST0_A0(void)
1781 helper_fildl_ST0_A0();
1784 void OPPROTO op_fildll_ST0_A0(void)
1786 helper_fildll_ST0_A0();
1789 #else
1791 void OPPROTO op_fild_ST0_A0(void)
1793 int new_fpstt;
1794 new_fpstt = (env->fpstt - 1) & 7;
1795 #ifdef USE_FP_CONVERT
1796 FP_CONVERT.i32 = ldsw(A0);
1797 env->fpregs[new_fpstt].d = (CPU86_LDouble)FP_CONVERT.i32;
1798 #else
1799 env->fpregs[new_fpstt].d = (CPU86_LDouble)ldsw(A0);
1800 #endif
1801 env->fpstt = new_fpstt;
1802 env->fptags[new_fpstt] = 0; /* validate stack entry */
1805 void OPPROTO op_fildl_ST0_A0(void)
1807 int new_fpstt;
1808 new_fpstt = (env->fpstt - 1) & 7;
1809 #ifdef USE_FP_CONVERT
1810 FP_CONVERT.i32 = (int32_t) ldl(A0);
1811 env->fpregs[new_fpstt].d = (CPU86_LDouble)FP_CONVERT.i32;
1812 #else
1813 env->fpregs[new_fpstt].d = (CPU86_LDouble)((int32_t)ldl(A0));
1814 #endif
1815 env->fpstt = new_fpstt;
1816 env->fptags[new_fpstt] = 0; /* validate stack entry */
1819 void OPPROTO op_fildll_ST0_A0(void)
1821 int new_fpstt;
1822 new_fpstt = (env->fpstt - 1) & 7;
1823 #ifdef USE_FP_CONVERT
1824 FP_CONVERT.i64 = (int64_t) ldq(A0);
1825 env->fpregs[new_fpstt].d = (CPU86_LDouble)FP_CONVERT.i64;
1826 #else
1827 env->fpregs[new_fpstt].d = (CPU86_LDouble)((int64_t)ldq(A0));
1828 #endif
1829 env->fpstt = new_fpstt;
1830 env->fptags[new_fpstt] = 0; /* validate stack entry */
1833 #endif
1835 /* fp store */
1837 void OPPROTO op_fsts_ST0_A0(void)
1839 #ifdef USE_FP_CONVERT
1840 FP_CONVERT.f = (float)ST0;
1841 stfl(A0, FP_CONVERT.f);
1842 #else
1843 stfl(A0, (float)ST0);
1844 #endif
1847 void OPPROTO op_fstl_ST0_A0(void)
1849 stfq(A0, (double)ST0);
1852 void OPPROTO op_fstt_ST0_A0(void)
1854 helper_fstt_ST0_A0();
1857 void OPPROTO op_fist_ST0_A0(void)
1859 #if defined(__sparc__) && !defined(__sparc_v9__)
1860 register CPU86_LDouble d asm("o0");
1861 #else
1862 CPU86_LDouble d;
1863 #endif
1864 int val;
1866 d = ST0;
1867 val = lrint(d);
1868 if (val != (int16_t)val)
1869 val = -32768;
1870 stw(A0, val);
1873 void OPPROTO op_fistl_ST0_A0(void)
1875 #if defined(__sparc__) && !defined(__sparc_v9__)
1876 register CPU86_LDouble d asm("o0");
1877 #else
1878 CPU86_LDouble d;
1879 #endif
1880 int val;
1882 d = ST0;
1883 val = lrint(d);
1884 stl(A0, val);
1887 void OPPROTO op_fistll_ST0_A0(void)
1889 #if defined(__sparc__) && !defined(__sparc_v9__)
1890 register CPU86_LDouble d asm("o0");
1891 #else
1892 CPU86_LDouble d;
1893 #endif
1894 int64_t val;
1896 d = ST0;
1897 val = llrint(d);
1898 stq(A0, val);
1901 void OPPROTO op_fbld_ST0_A0(void)
1903 helper_fbld_ST0_A0();
1906 void OPPROTO op_fbst_ST0_A0(void)
1908 helper_fbst_ST0_A0();
1911 /* FPU move */
1913 void OPPROTO op_fpush(void)
1915 fpush();
1918 void OPPROTO op_fpop(void)
1920 fpop();
1923 void OPPROTO op_fdecstp(void)
1925 env->fpstt = (env->fpstt - 1) & 7;
1926 env->fpus &= (~0x4700);
1929 void OPPROTO op_fincstp(void)
1931 env->fpstt = (env->fpstt + 1) & 7;
1932 env->fpus &= (~0x4700);
1935 void OPPROTO op_ffree_STN(void)
1937 env->fptags[(env->fpstt + PARAM1) & 7] = 1;
1940 void OPPROTO op_fmov_ST0_FT0(void)
1942 ST0 = FT0;
1945 void OPPROTO op_fmov_FT0_STN(void)
1947 FT0 = ST(PARAM1);
1950 void OPPROTO op_fmov_ST0_STN(void)
1952 ST0 = ST(PARAM1);
1955 void OPPROTO op_fmov_STN_ST0(void)
1957 ST(PARAM1) = ST0;
1960 void OPPROTO op_fxchg_ST0_STN(void)
1962 CPU86_LDouble tmp;
1963 tmp = ST(PARAM1);
1964 ST(PARAM1) = ST0;
1965 ST0 = tmp;
1968 /* FPU operations */
1970 /* XXX: handle nans */
1971 void OPPROTO op_fcom_ST0_FT0(void)
1973 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1974 if (ST0 < FT0)
1975 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1976 else if (ST0 == FT0)
1977 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1978 FORCE_RET();
1981 /* XXX: handle nans */
1982 void OPPROTO op_fucom_ST0_FT0(void)
1984 env->fpus &= (~0x4500); /* (C3,C2,C0) <-- 000 */
1985 if (ST0 < FT0)
1986 env->fpus |= 0x100; /* (C3,C2,C0) <-- 001 */
1987 else if (ST0 == FT0)
1988 env->fpus |= 0x4000; /* (C3,C2,C0) <-- 100 */
1989 FORCE_RET();
1992 /* XXX: handle nans */
1993 void OPPROTO op_fcomi_ST0_FT0(void)
1995 int eflags;
1996 eflags = cc_table[CC_OP].compute_all();
1997 eflags &= ~(CC_Z | CC_P | CC_C);
1998 if (ST0 < FT0)
1999 eflags |= CC_C;
2000 else if (ST0 == FT0)
2001 eflags |= CC_Z;
2002 CC_SRC = eflags;
2003 FORCE_RET();
2006 /* XXX: handle nans */
2007 void OPPROTO op_fucomi_ST0_FT0(void)
2009 int eflags;
2010 eflags = cc_table[CC_OP].compute_all();
2011 eflags &= ~(CC_Z | CC_P | CC_C);
2012 if (ST0 < FT0)
2013 eflags |= CC_C;
2014 else if (ST0 == FT0)
2015 eflags |= CC_Z;
2016 CC_SRC = eflags;
2017 FORCE_RET();
2020 void OPPROTO op_fcmov_ST0_STN_T0(void)
2022 if (T0) {
2023 ST0 = ST(PARAM1);
2025 FORCE_RET();
2028 void OPPROTO op_fadd_ST0_FT0(void)
2030 ST0 += FT0;
2033 void OPPROTO op_fmul_ST0_FT0(void)
2035 ST0 *= FT0;
2038 void OPPROTO op_fsub_ST0_FT0(void)
2040 ST0 -= FT0;
2043 void OPPROTO op_fsubr_ST0_FT0(void)
2045 ST0 = FT0 - ST0;
2048 void OPPROTO op_fdiv_ST0_FT0(void)
2050 ST0 = helper_fdiv(ST0, FT0);
2053 void OPPROTO op_fdivr_ST0_FT0(void)
2055 ST0 = helper_fdiv(FT0, ST0);
2058 /* fp operations between STN and ST0 */
2060 void OPPROTO op_fadd_STN_ST0(void)
2062 ST(PARAM1) += ST0;
2065 void OPPROTO op_fmul_STN_ST0(void)
2067 ST(PARAM1) *= ST0;
2070 void OPPROTO op_fsub_STN_ST0(void)
2072 ST(PARAM1) -= ST0;
2075 void OPPROTO op_fsubr_STN_ST0(void)
2077 CPU86_LDouble *p;
2078 p = &ST(PARAM1);
2079 *p = ST0 - *p;
2082 void OPPROTO op_fdiv_STN_ST0(void)
2084 CPU86_LDouble *p;
2085 p = &ST(PARAM1);
2086 *p = helper_fdiv(*p, ST0);
2089 void OPPROTO op_fdivr_STN_ST0(void)
2091 CPU86_LDouble *p;
2092 p = &ST(PARAM1);
2093 *p = helper_fdiv(ST0, *p);
2096 /* misc FPU operations */
2097 void OPPROTO op_fchs_ST0(void)
2099 ST0 = -ST0;
2102 void OPPROTO op_fabs_ST0(void)
2104 ST0 = fabs(ST0);
2107 void OPPROTO op_fxam_ST0(void)
2109 helper_fxam_ST0();
2112 void OPPROTO op_fld1_ST0(void)
2114 ST0 = f15rk[1];
2117 void OPPROTO op_fldl2t_ST0(void)
2119 ST0 = f15rk[6];
2122 void OPPROTO op_fldl2e_ST0(void)
2124 ST0 = f15rk[5];
2127 void OPPROTO op_fldpi_ST0(void)
2129 ST0 = f15rk[2];
2132 void OPPROTO op_fldlg2_ST0(void)
2134 ST0 = f15rk[3];
2137 void OPPROTO op_fldln2_ST0(void)
2139 ST0 = f15rk[4];
2142 void OPPROTO op_fldz_ST0(void)
2144 ST0 = f15rk[0];
2147 void OPPROTO op_fldz_FT0(void)
2149 FT0 = f15rk[0];
2152 /* associated heplers to reduce generated code length and to simplify
2153 relocation (FP constants are usually stored in .rodata section) */
2155 void OPPROTO op_f2xm1(void)
2157 helper_f2xm1();
2160 void OPPROTO op_fyl2x(void)
2162 helper_fyl2x();
2165 void OPPROTO op_fptan(void)
2167 helper_fptan();
2170 void OPPROTO op_fpatan(void)
2172 helper_fpatan();
2175 void OPPROTO op_fxtract(void)
2177 helper_fxtract();
2180 void OPPROTO op_fprem1(void)
2182 helper_fprem1();
2186 void OPPROTO op_fprem(void)
2188 helper_fprem();
2191 void OPPROTO op_fyl2xp1(void)
2193 helper_fyl2xp1();
2196 void OPPROTO op_fsqrt(void)
2198 helper_fsqrt();
2201 void OPPROTO op_fsincos(void)
2203 helper_fsincos();
2206 void OPPROTO op_frndint(void)
2208 helper_frndint();
2211 void OPPROTO op_fscale(void)
2213 helper_fscale();
2216 void OPPROTO op_fsin(void)
2218 helper_fsin();
2221 void OPPROTO op_fcos(void)
2223 helper_fcos();
2226 void OPPROTO op_fnstsw_A0(void)
2228 int fpus;
2229 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
2230 stw(A0, fpus);
2233 void OPPROTO op_fnstsw_EAX(void)
2235 int fpus;
2236 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
2237 EAX = (EAX & ~0xffff) | fpus;
2240 void OPPROTO op_fnstcw_A0(void)
2242 stw(A0, env->fpuc);
2245 void OPPROTO op_fldcw_A0(void)
2247 int rnd_type;
2248 env->fpuc = lduw(A0);
2249 /* set rounding mode */
2250 switch(env->fpuc & RC_MASK) {
2251 default:
2252 case RC_NEAR:
2253 rnd_type = FE_TONEAREST;
2254 break;
2255 case RC_DOWN:
2256 rnd_type = FE_DOWNWARD;
2257 break;
2258 case RC_UP:
2259 rnd_type = FE_UPWARD;
2260 break;
2261 case RC_CHOP:
2262 rnd_type = FE_TOWARDZERO;
2263 break;
2265 fesetround(rnd_type);
2268 void OPPROTO op_fclex(void)
2270 env->fpus &= 0x7f00;
2273 void OPPROTO op_fwait(void)
2275 if (env->fpus & FPUS_SE)
2276 fpu_raise_exception();
2277 FORCE_RET();
2280 void OPPROTO op_fninit(void)
2282 env->fpus = 0;
2283 env->fpstt = 0;
2284 env->fpuc = 0x37f;
2285 env->fptags[0] = 1;
2286 env->fptags[1] = 1;
2287 env->fptags[2] = 1;
2288 env->fptags[3] = 1;
2289 env->fptags[4] = 1;
2290 env->fptags[5] = 1;
2291 env->fptags[6] = 1;
2292 env->fptags[7] = 1;
2295 void OPPROTO op_fnstenv_A0(void)
2297 helper_fstenv(A0, PARAM1);
2300 void OPPROTO op_fldenv_A0(void)
2302 helper_fldenv(A0, PARAM1);
2305 void OPPROTO op_fnsave_A0(void)
2307 helper_fsave(A0, PARAM1);
2310 void OPPROTO op_frstor_A0(void)
2312 helper_frstor(A0, PARAM1);
2315 /* threading support */
2316 void OPPROTO op_lock(void)
2318 cpu_lock();
2321 void OPPROTO op_unlock(void)
2323 cpu_unlock();
2326 /* SSE support */
2327 static inline void memcpy16(void *d, void *s)
2329 ((uint32_t *)d)[0] = ((uint32_t *)s)[0];
2330 ((uint32_t *)d)[1] = ((uint32_t *)s)[1];
2331 ((uint32_t *)d)[2] = ((uint32_t *)s)[2];
2332 ((uint32_t *)d)[3] = ((uint32_t *)s)[3];
2335 void OPPROTO op_movo(void)
2337 /* XXX: badly generated code */
2338 XMMReg *d, *s;
2339 d = (XMMReg *)((char *)env + PARAM1);
2340 s = (XMMReg *)((char *)env + PARAM2);
2341 memcpy16(d, s);
2344 void OPPROTO op_movq(void)
2346 uint64_t *d, *s;
2347 d = (uint64_t *)((char *)env + PARAM1);
2348 s = (uint64_t *)((char *)env + PARAM2);
2349 *d = *s;
2352 void OPPROTO op_movl(void)
2354 uint32_t *d, *s;
2355 d = (uint32_t *)((char *)env + PARAM1);
2356 s = (uint32_t *)((char *)env + PARAM2);
2357 *d = *s;
2360 void OPPROTO op_movq_env_0(void)
2362 uint64_t *d;
2363 d = (uint64_t *)((char *)env + PARAM1);
2364 *d = 0;
2367 void OPPROTO op_fxsave_A0(void)
2369 helper_fxsave(A0, PARAM1);
2372 void OPPROTO op_fxrstor_A0(void)
2374 helper_fxrstor(A0, PARAM1);
2377 /* XXX: optimize by storing fptt and fptags in the static cpu state */
2378 void OPPROTO op_enter_mmx(void)
2380 env->fpstt = 0;
2381 *(uint32_t *)(env->fptags) = 0;
2382 *(uint32_t *)(env->fptags + 4) = 0;
2385 void OPPROTO op_emms(void)
2387 /* set to empty state */
2388 *(uint32_t *)(env->fptags) = 0x01010101;
2389 *(uint32_t *)(env->fptags + 4) = 0x01010101;
2392 #define SHIFT 0
2393 #include "ops_sse.h"
2395 #define SHIFT 1
2396 #include "ops_sse.h"