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1/*
2 * i386 virtual CPU header
3 *
4 * Copyright (c) 2003 Fabrice Bellard
5 *
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.
10 *
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.
15 *
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
19 */
20#ifndef CPU_I386_H
21#define CPU_I386_H
22
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23#include "config.h"
24
25#ifdef TARGET_X86_64
26#define TARGET_LONG_BITS 64
27#else
3cf1e035 28#define TARGET_LONG_BITS 32
14ce26e7 29#endif
3cf1e035 30
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31/* target supports implicit self modifying code */
32#define TARGET_HAS_SMC
33/* support for self modifying code even if the modified instruction is
34 close to the modifying instruction */
35#define TARGET_HAS_PRECISE_SMC
36
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37#define TARGET_HAS_ICE 1
38
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39#include "cpu-defs.h"
40
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41#include "softfloat.h"
42
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43#if defined(__i386__) && !defined(CONFIG_SOFTMMU)
44#define USE_CODE_COPY
45#endif
46
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47#define R_EAX 0
48#define R_ECX 1
49#define R_EDX 2
50#define R_EBX 3
51#define R_ESP 4
52#define R_EBP 5
53#define R_ESI 6
54#define R_EDI 7
55
56#define R_AL 0
57#define R_CL 1
58#define R_DL 2
59#define R_BL 3
60#define R_AH 4
61#define R_CH 5
62#define R_DH 6
63#define R_BH 7
64
65#define R_ES 0
66#define R_CS 1
67#define R_SS 2
68#define R_DS 3
69#define R_FS 4
70#define R_GS 5
71
72/* segment descriptor fields */
73#define DESC_G_MASK (1 << 23)
74#define DESC_B_SHIFT 22
75#define DESC_B_MASK (1 << DESC_B_SHIFT)
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76#define DESC_L_SHIFT 21 /* x86_64 only : 64 bit code segment */
77#define DESC_L_MASK (1 << DESC_L_SHIFT)
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78#define DESC_AVL_MASK (1 << 20)
79#define DESC_P_MASK (1 << 15)
80#define DESC_DPL_SHIFT 13
81#define DESC_S_MASK (1 << 12)
82#define DESC_TYPE_SHIFT 8
83#define DESC_A_MASK (1 << 8)
84
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85#define DESC_CS_MASK (1 << 11) /* 1=code segment 0=data segment */
86#define DESC_C_MASK (1 << 10) /* code: conforming */
87#define DESC_R_MASK (1 << 9) /* code: readable */
2c0262af 88
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89#define DESC_E_MASK (1 << 10) /* data: expansion direction */
90#define DESC_W_MASK (1 << 9) /* data: writable */
91
92#define DESC_TSS_BUSY_MASK (1 << 9)
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93
94/* eflags masks */
95#define CC_C 0x0001
96#define CC_P 0x0004
97#define CC_A 0x0010
98#define CC_Z 0x0040
99#define CC_S 0x0080
100#define CC_O 0x0800
101
102#define TF_SHIFT 8
103#define IOPL_SHIFT 12
104#define VM_SHIFT 17
105
106#define TF_MASK 0x00000100
107#define IF_MASK 0x00000200
108#define DF_MASK 0x00000400
109#define IOPL_MASK 0x00003000
110#define NT_MASK 0x00004000
111#define RF_MASK 0x00010000
112#define VM_MASK 0x00020000
113#define AC_MASK 0x00040000
114#define VIF_MASK 0x00080000
115#define VIP_MASK 0x00100000
116#define ID_MASK 0x00200000
117
118/* hidden flags - used internally by qemu to represent additionnal cpu
d2ac63e0 119 states. Only the CPL, INHIBIT_IRQ and HALTED are not redundant. We avoid
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120 using the IOPL_MASK, TF_MASK and VM_MASK bit position to ease oring
121 with eflags. */
122/* current cpl */
123#define HF_CPL_SHIFT 0
124/* true if soft mmu is being used */
125#define HF_SOFTMMU_SHIFT 2
126/* true if hardware interrupts must be disabled for next instruction */
127#define HF_INHIBIT_IRQ_SHIFT 3
128/* 16 or 32 segments */
129#define HF_CS32_SHIFT 4
130#define HF_SS32_SHIFT 5
dc196a57 131/* zero base for DS, ES and SS : can be '0' only in 32 bit CS segment */
2c0262af 132#define HF_ADDSEG_SHIFT 6
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133/* copy of CR0.PE (protected mode) */
134#define HF_PE_SHIFT 7
135#define HF_TF_SHIFT 8 /* must be same as eflags */
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136#define HF_MP_SHIFT 9 /* the order must be MP, EM, TS */
137#define HF_EM_SHIFT 10
138#define HF_TS_SHIFT 11
65262d57 139#define HF_IOPL_SHIFT 12 /* must be same as eflags */
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140#define HF_LMA_SHIFT 14 /* only used on x86_64: long mode active */
141#define HF_CS64_SHIFT 15 /* only used on x86_64: 64 bit code segment */
664e0f19 142#define HF_OSFXSR_SHIFT 16 /* CR4.OSFXSR */
65262d57 143#define HF_VM_SHIFT 17 /* must be same as eflags */
d2ac63e0 144#define HF_HALTED_SHIFT 18 /* CPU halted */
3b21e03e 145#define HF_SMM_SHIFT 19 /* CPU in SMM mode */
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146
147#define HF_CPL_MASK (3 << HF_CPL_SHIFT)
148#define HF_SOFTMMU_MASK (1 << HF_SOFTMMU_SHIFT)
149#define HF_INHIBIT_IRQ_MASK (1 << HF_INHIBIT_IRQ_SHIFT)
150#define HF_CS32_MASK (1 << HF_CS32_SHIFT)
151#define HF_SS32_MASK (1 << HF_SS32_SHIFT)
152#define HF_ADDSEG_MASK (1 << HF_ADDSEG_SHIFT)
65262d57 153#define HF_PE_MASK (1 << HF_PE_SHIFT)
58fe2f10 154#define HF_TF_MASK (1 << HF_TF_SHIFT)
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155#define HF_MP_MASK (1 << HF_MP_SHIFT)
156#define HF_EM_MASK (1 << HF_EM_SHIFT)
157#define HF_TS_MASK (1 << HF_TS_SHIFT)
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158#define HF_LMA_MASK (1 << HF_LMA_SHIFT)
159#define HF_CS64_MASK (1 << HF_CS64_SHIFT)
664e0f19 160#define HF_OSFXSR_MASK (1 << HF_OSFXSR_SHIFT)
d2ac63e0 161#define HF_HALTED_MASK (1 << HF_HALTED_SHIFT)
3b21e03e 162#define HF_SMM_MASK (1 << HF_SMM_SHIFT)
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163
164#define CR0_PE_MASK (1 << 0)
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165#define CR0_MP_MASK (1 << 1)
166#define CR0_EM_MASK (1 << 2)
2c0262af 167#define CR0_TS_MASK (1 << 3)
2ee73ac3 168#define CR0_ET_MASK (1 << 4)
7eee2a50 169#define CR0_NE_MASK (1 << 5)
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170#define CR0_WP_MASK (1 << 16)
171#define CR0_AM_MASK (1 << 18)
172#define CR0_PG_MASK (1 << 31)
173
174#define CR4_VME_MASK (1 << 0)
175#define CR4_PVI_MASK (1 << 1)
176#define CR4_TSD_MASK (1 << 2)
177#define CR4_DE_MASK (1 << 3)
178#define CR4_PSE_MASK (1 << 4)
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179#define CR4_PAE_MASK (1 << 5)
180#define CR4_PGE_MASK (1 << 7)
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181#define CR4_PCE_MASK (1 << 8)
182#define CR4_OSFXSR_MASK (1 << 9)
183#define CR4_OSXMMEXCPT_MASK (1 << 10)
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184
185#define PG_PRESENT_BIT 0
186#define PG_RW_BIT 1
187#define PG_USER_BIT 2
188#define PG_PWT_BIT 3
189#define PG_PCD_BIT 4
190#define PG_ACCESSED_BIT 5
191#define PG_DIRTY_BIT 6
192#define PG_PSE_BIT 7
193#define PG_GLOBAL_BIT 8
5cf38396 194#define PG_NX_BIT 63
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195
196#define PG_PRESENT_MASK (1 << PG_PRESENT_BIT)
197#define PG_RW_MASK (1 << PG_RW_BIT)
198#define PG_USER_MASK (1 << PG_USER_BIT)
199#define PG_PWT_MASK (1 << PG_PWT_BIT)
200#define PG_PCD_MASK (1 << PG_PCD_BIT)
201#define PG_ACCESSED_MASK (1 << PG_ACCESSED_BIT)
202#define PG_DIRTY_MASK (1 << PG_DIRTY_BIT)
203#define PG_PSE_MASK (1 << PG_PSE_BIT)
204#define PG_GLOBAL_MASK (1 << PG_GLOBAL_BIT)
5cf38396 205#define PG_NX_MASK (1LL << PG_NX_BIT)
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206
207#define PG_ERROR_W_BIT 1
208
209#define PG_ERROR_P_MASK 0x01
210#define PG_ERROR_W_MASK (1 << PG_ERROR_W_BIT)
211#define PG_ERROR_U_MASK 0x04
212#define PG_ERROR_RSVD_MASK 0x08
5cf38396 213#define PG_ERROR_I_D_MASK 0x10
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214
215#define MSR_IA32_APICBASE 0x1b
216#define MSR_IA32_APICBASE_BSP (1<<8)
217#define MSR_IA32_APICBASE_ENABLE (1<<11)
218#define MSR_IA32_APICBASE_BASE (0xfffff<<12)
219
220#define MSR_IA32_SYSENTER_CS 0x174
221#define MSR_IA32_SYSENTER_ESP 0x175
222#define MSR_IA32_SYSENTER_EIP 0x176
223
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224#define MSR_MCG_CAP 0x179
225#define MSR_MCG_STATUS 0x17a
226#define MSR_MCG_CTL 0x17b
227
228#define MSR_PAT 0x277
229
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230#define MSR_EFER 0xc0000080
231
232#define MSR_EFER_SCE (1 << 0)
233#define MSR_EFER_LME (1 << 8)
234#define MSR_EFER_LMA (1 << 10)
235#define MSR_EFER_NXE (1 << 11)
236#define MSR_EFER_FFXSR (1 << 14)
237
238#define MSR_STAR 0xc0000081
239#define MSR_LSTAR 0xc0000082
240#define MSR_CSTAR 0xc0000083
241#define MSR_FMASK 0xc0000084
242#define MSR_FSBASE 0xc0000100
243#define MSR_GSBASE 0xc0000101
244#define MSR_KERNELGSBASE 0xc0000102
245
246/* cpuid_features bits */
247#define CPUID_FP87 (1 << 0)
248#define CPUID_VME (1 << 1)
249#define CPUID_DE (1 << 2)
250#define CPUID_PSE (1 << 3)
251#define CPUID_TSC (1 << 4)
252#define CPUID_MSR (1 << 5)
253#define CPUID_PAE (1 << 6)
254#define CPUID_MCE (1 << 7)
255#define CPUID_CX8 (1 << 8)
256#define CPUID_APIC (1 << 9)
257#define CPUID_SEP (1 << 11) /* sysenter/sysexit */
258#define CPUID_MTRR (1 << 12)
259#define CPUID_PGE (1 << 13)
260#define CPUID_MCA (1 << 14)
261#define CPUID_CMOV (1 << 15)
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262#define CPUID_PAT (1 << 16)
263#define CPUID_CLFLUSH (1 << 19)
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264/* ... */
265#define CPUID_MMX (1 << 23)
266#define CPUID_FXSR (1 << 24)
267#define CPUID_SSE (1 << 25)
268#define CPUID_SSE2 (1 << 26)
269
465e9838 270#define CPUID_EXT_SSE3 (1 << 0)
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271#define CPUID_EXT_MONITOR (1 << 3)
272#define CPUID_EXT_CX16 (1 << 13)
273
274#define CPUID_EXT2_SYSCALL (1 << 11)
275#define CPUID_EXT2_NX (1 << 20)
8d9bfc2b 276#define CPUID_EXT2_FFXSR (1 << 25)
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277#define CPUID_EXT2_LM (1 << 29)
278
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279#define EXCP00_DIVZ 0
280#define EXCP01_SSTP 1
281#define EXCP02_NMI 2
282#define EXCP03_INT3 3
283#define EXCP04_INTO 4
284#define EXCP05_BOUND 5
285#define EXCP06_ILLOP 6
286#define EXCP07_PREX 7
287#define EXCP08_DBLE 8
288#define EXCP09_XERR 9
289#define EXCP0A_TSS 10
290#define EXCP0B_NOSEG 11
291#define EXCP0C_STACK 12
292#define EXCP0D_GPF 13
293#define EXCP0E_PAGE 14
294#define EXCP10_COPR 16
295#define EXCP11_ALGN 17
296#define EXCP12_MCHK 18
297
298enum {
299 CC_OP_DYNAMIC, /* must use dynamic code to get cc_op */
300 CC_OP_EFLAGS, /* all cc are explicitely computed, CC_SRC = flags */
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301
302 CC_OP_MULB, /* modify all flags, C, O = (CC_SRC != 0) */
303 CC_OP_MULW,
304 CC_OP_MULL,
14ce26e7 305 CC_OP_MULQ,
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306
307 CC_OP_ADDB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
308 CC_OP_ADDW,
309 CC_OP_ADDL,
14ce26e7 310 CC_OP_ADDQ,
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311
312 CC_OP_ADCB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
313 CC_OP_ADCW,
314 CC_OP_ADCL,
14ce26e7 315 CC_OP_ADCQ,
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316
317 CC_OP_SUBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
318 CC_OP_SUBW,
319 CC_OP_SUBL,
14ce26e7 320 CC_OP_SUBQ,
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321
322 CC_OP_SBBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
323 CC_OP_SBBW,
324 CC_OP_SBBL,
14ce26e7 325 CC_OP_SBBQ,
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326
327 CC_OP_LOGICB, /* modify all flags, CC_DST = res */
328 CC_OP_LOGICW,
329 CC_OP_LOGICL,
14ce26e7 330 CC_OP_LOGICQ,
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331
332 CC_OP_INCB, /* modify all flags except, CC_DST = res, CC_SRC = C */
333 CC_OP_INCW,
334 CC_OP_INCL,
14ce26e7 335 CC_OP_INCQ,
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336
337 CC_OP_DECB, /* modify all flags except, CC_DST = res, CC_SRC = C */
338 CC_OP_DECW,
339 CC_OP_DECL,
14ce26e7 340 CC_OP_DECQ,
2c0262af 341
6b652794 342 CC_OP_SHLB, /* modify all flags, CC_DST = res, CC_SRC.msb = C */
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343 CC_OP_SHLW,
344 CC_OP_SHLL,
14ce26e7 345 CC_OP_SHLQ,
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346
347 CC_OP_SARB, /* modify all flags, CC_DST = res, CC_SRC.lsb = C */
348 CC_OP_SARW,
349 CC_OP_SARL,
14ce26e7 350 CC_OP_SARQ,
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351
352 CC_OP_NB,
353};
354
7a0e1f41 355#ifdef FLOATX80
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356#define USE_X86LDOUBLE
357#endif
358
359#ifdef USE_X86LDOUBLE
7a0e1f41 360typedef floatx80 CPU86_LDouble;
2c0262af 361#else
7a0e1f41 362typedef float64 CPU86_LDouble;
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363#endif
364
365typedef struct SegmentCache {
366 uint32_t selector;
14ce26e7 367 target_ulong base;
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368 uint32_t limit;
369 uint32_t flags;
370} SegmentCache;
371
826461bb 372typedef union {
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373 uint8_t _b[16];
374 uint16_t _w[8];
375 uint32_t _l[4];
376 uint64_t _q[2];
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377 float32 _s[4];
378 float64 _d[2];
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379} XMMReg;
380
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381typedef union {
382 uint8_t _b[8];
383 uint16_t _w[2];
384 uint32_t _l[1];
385 uint64_t q;
386} MMXReg;
387
388#ifdef WORDS_BIGENDIAN
389#define XMM_B(n) _b[15 - (n)]
390#define XMM_W(n) _w[7 - (n)]
391#define XMM_L(n) _l[3 - (n)]
664e0f19 392#define XMM_S(n) _s[3 - (n)]
826461bb 393#define XMM_Q(n) _q[1 - (n)]
664e0f19 394#define XMM_D(n) _d[1 - (n)]
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395
396#define MMX_B(n) _b[7 - (n)]
397#define MMX_W(n) _w[3 - (n)]
398#define MMX_L(n) _l[1 - (n)]
399#else
400#define XMM_B(n) _b[n]
401#define XMM_W(n) _w[n]
402#define XMM_L(n) _l[n]
664e0f19 403#define XMM_S(n) _s[n]
826461bb 404#define XMM_Q(n) _q[n]
664e0f19 405#define XMM_D(n) _d[n]
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406
407#define MMX_B(n) _b[n]
408#define MMX_W(n) _w[n]
409#define MMX_L(n) _l[n]
410#endif
664e0f19 411#define MMX_Q(n) q
826461bb 412
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413#ifdef TARGET_X86_64
414#define CPU_NB_REGS 16
415#else
416#define CPU_NB_REGS 8
417#endif
418
2c0262af 419typedef struct CPUX86State {
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420#if TARGET_LONG_BITS > HOST_LONG_BITS
421 /* temporaries if we cannot store them in host registers */
422 target_ulong t0, t1, t2;
423#endif
424
2c0262af 425 /* standard registers */
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426 target_ulong regs[CPU_NB_REGS];
427 target_ulong eip;
428 target_ulong eflags; /* eflags register. During CPU emulation, CC
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429 flags and DF are set to zero because they are
430 stored elsewhere */
431
432 /* emulator internal eflags handling */
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433 target_ulong cc_src;
434 target_ulong cc_dst;
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435 uint32_t cc_op;
436 int32_t df; /* D flag : 1 if D = 0, -1 if D = 1 */
437 uint32_t hflags; /* hidden flags, see HF_xxx constants */
438
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439 /* segments */
440 SegmentCache segs[6]; /* selector values */
441 SegmentCache ldt;
442 SegmentCache tr;
443 SegmentCache gdt; /* only base and limit are used */
444 SegmentCache idt; /* only base and limit are used */
445
446 target_ulong cr[5]; /* NOTE: cr1 is unused */
447 uint32_t a20_mask;
448
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449 /* FPU state */
450 unsigned int fpstt; /* top of stack index */
451 unsigned int fpus;
452 unsigned int fpuc;
453 uint8_t fptags[8]; /* 0 = valid, 1 = empty */
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454 union {
455#ifdef USE_X86LDOUBLE
456 CPU86_LDouble d __attribute__((aligned(16)));
457#else
458 CPU86_LDouble d;
459#endif
460 MMXReg mmx;
461 } fpregs[8];
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462
463 /* emulator internal variables */
7a0e1f41 464 float_status fp_status;
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465 CPU86_LDouble ft0;
466 union {
467 float f;
468 double d;
469 int i32;
470 int64_t i64;
471 } fp_convert;
472
7a0e1f41 473 float_status sse_status;
664e0f19 474 uint32_t mxcsr;
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475 XMMReg xmm_regs[CPU_NB_REGS];
476 XMMReg xmm_t0;
664e0f19 477 MMXReg mmx_t0;
14ce26e7 478
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479 /* sysenter registers */
480 uint32_t sysenter_cs;
481 uint32_t sysenter_esp;
482 uint32_t sysenter_eip;
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483 uint64_t efer;
484 uint64_t star;
14ce26e7 485#ifdef TARGET_X86_64
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486 target_ulong lstar;
487 target_ulong cstar;
488 target_ulong fmask;
489 target_ulong kernelgsbase;
490#endif
58fe2f10 491
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492 uint64_t pat;
493
58fe2f10 494 /* temporary data for USE_CODE_COPY mode */
7eee2a50 495#ifdef USE_CODE_COPY
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496 uint32_t tmp0;
497 uint32_t saved_esp;
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498 int native_fp_regs; /* if true, the FPU state is in the native CPU regs */
499#endif
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500
501 /* exception/interrupt handling */
502 jmp_buf jmp_env;
503 int exception_index;
504 int error_code;
505 int exception_is_int;
826461bb 506 target_ulong exception_next_eip;
14ce26e7 507 target_ulong dr[8]; /* debug registers */
3b21e03e 508 uint32_t smbase;
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509 int interrupt_request;
510 int user_mode_only; /* user mode only simulation */
511
a316d335 512 CPU_COMMON
2c0262af 513
14ce26e7 514 /* processor features (e.g. for CPUID insn) */
8d9bfc2b 515 uint32_t cpuid_level;
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516 uint32_t cpuid_vendor1;
517 uint32_t cpuid_vendor2;
518 uint32_t cpuid_vendor3;
519 uint32_t cpuid_version;
520 uint32_t cpuid_features;
9df217a3 521 uint32_t cpuid_ext_features;
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522 uint32_t cpuid_xlevel;
523 uint32_t cpuid_model[12];
524 uint32_t cpuid_ext2_features;
525
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526#ifdef USE_KQEMU
527 int kqemu_enabled;
f1c85677 528 int last_io_time;
9df217a3 529#endif
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530 /* in order to simplify APIC support, we leave this pointer to the
531 user */
532 struct APICState *apic_state;
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533} CPUX86State;
534
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535CPUX86State *cpu_x86_init(void);
536int cpu_x86_exec(CPUX86State *s);
537void cpu_x86_close(CPUX86State *s);
d720b93d 538int cpu_get_pic_interrupt(CPUX86State *s);
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539/* MSDOS compatibility mode FPU exception support */
540void cpu_set_ferr(CPUX86State *s);
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541
542/* this function must always be used to load data in the segment
543 cache: it synchronizes the hflags with the segment cache values */
544static inline void cpu_x86_load_seg_cache(CPUX86State *env,
545 int seg_reg, unsigned int selector,
14ce26e7 546 uint32_t base, unsigned int limit,
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547 unsigned int flags)
548{
549 SegmentCache *sc;
550 unsigned int new_hflags;
551
552 sc = &env->segs[seg_reg];
553 sc->selector = selector;
554 sc->base = base;
555 sc->limit = limit;
556 sc->flags = flags;
557
558 /* update the hidden flags */
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559 {
560 if (seg_reg == R_CS) {
561#ifdef TARGET_X86_64
562 if ((env->hflags & HF_LMA_MASK) && (flags & DESC_L_MASK)) {
563 /* long mode */
564 env->hflags |= HF_CS32_MASK | HF_SS32_MASK | HF_CS64_MASK;
565 env->hflags &= ~(HF_ADDSEG_MASK);
566 } else
567#endif
568 {
569 /* legacy / compatibility case */
570 new_hflags = (env->segs[R_CS].flags & DESC_B_MASK)
571 >> (DESC_B_SHIFT - HF_CS32_SHIFT);
572 env->hflags = (env->hflags & ~(HF_CS32_MASK | HF_CS64_MASK)) |
573 new_hflags;
574 }
575 }
576 new_hflags = (env->segs[R_SS].flags & DESC_B_MASK)
577 >> (DESC_B_SHIFT - HF_SS32_SHIFT);
578 if (env->hflags & HF_CS64_MASK) {
579 /* zero base assumed for DS, ES and SS in long mode */
580 } else if (!(env->cr[0] & CR0_PE_MASK) ||
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581 (env->eflags & VM_MASK) ||
582 !(env->hflags & HF_CS32_MASK)) {
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583 /* XXX: try to avoid this test. The problem comes from the
584 fact that is real mode or vm86 mode we only modify the
585 'base' and 'selector' fields of the segment cache to go
586 faster. A solution may be to force addseg to one in
587 translate-i386.c. */
588 new_hflags |= HF_ADDSEG_MASK;
589 } else {
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590 new_hflags |= ((env->segs[R_DS].base |
591 env->segs[R_ES].base |
592 env->segs[R_SS].base) != 0) <<
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593 HF_ADDSEG_SHIFT;
594 }
595 env->hflags = (env->hflags &
596 ~(HF_SS32_MASK | HF_ADDSEG_MASK)) | new_hflags;
2c0262af 597 }
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598}
599
600/* wrapper, just in case memory mappings must be changed */
601static inline void cpu_x86_set_cpl(CPUX86State *s, int cpl)
602{
603#if HF_CPL_MASK == 3
604 s->hflags = (s->hflags & ~HF_CPL_MASK) | cpl;
605#else
606#error HF_CPL_MASK is hardcoded
607#endif
608}
609
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610/* used for debug or cpu save/restore */
611void cpu_get_fp80(uint64_t *pmant, uint16_t *pexp, CPU86_LDouble f);
612CPU86_LDouble cpu_set_fp80(uint64_t mant, uint16_t upper);
613
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614/* the following helpers are only usable in user mode simulation as
615 they can trigger unexpected exceptions */
616void cpu_x86_load_seg(CPUX86State *s, int seg_reg, int selector);
617void cpu_x86_fsave(CPUX86State *s, uint8_t *ptr, int data32);
618void cpu_x86_frstor(CPUX86State *s, uint8_t *ptr, int data32);
619
620/* you can call this signal handler from your SIGBUS and SIGSEGV
621 signal handlers to inform the virtual CPU of exceptions. non zero
622 is returned if the signal was handled by the virtual CPU. */
623struct siginfo;
624int cpu_x86_signal_handler(int host_signum, struct siginfo *info,
625 void *puc);
461c0471 626void cpu_x86_set_a20(CPUX86State *env, int a20_state);
2c0262af 627
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628uint64_t cpu_get_tsc(CPUX86State *env);
629
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630void cpu_set_apic_base(CPUX86State *env, uint64_t val);
631uint64_t cpu_get_apic_base(CPUX86State *env);
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632void cpu_set_apic_tpr(CPUX86State *env, uint8_t val);
633#ifndef NO_CPU_IO_DEFS
634uint8_t cpu_get_apic_tpr(CPUX86State *env);
635#endif
3b21e03e 636void cpu_smm_update(CPUX86State *env);
14ce26e7 637
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638/* will be suppressed */
639void cpu_x86_update_cr0(CPUX86State *env, uint32_t new_cr0);
640
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641/* used to debug */
642#define X86_DUMP_FPU 0x0001 /* dump FPU state too */
643#define X86_DUMP_CCOP 0x0002 /* dump qemu flag cache */
2c0262af 644
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645#ifdef USE_KQEMU
646static inline int cpu_get_time_fast(void)
647{
648 int low, high;
649 asm volatile("rdtsc" : "=a" (low), "=d" (high));
650 return low;
651}
652#endif
653
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654#define TARGET_PAGE_BITS 12
655#include "cpu-all.h"
656
657#endif /* CPU_I386_H */