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[qemu.git] / target-i386 / cpu.h
CommitLineData
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1/*
2 * i386 virtual CPU header
5fafdf24 3 *
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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
8167ee88 17 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
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18 */
19#ifndef CPU_I386_H
20#define CPU_I386_H
21
14ce26e7 22#include "config.h"
9a78eead 23#include "qemu-common.h"
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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#ifdef TARGET_X86_64
40#define ELF_MACHINE EM_X86_64
41#else
42#define ELF_MACHINE EM_386
43#endif
44
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45#define CPUState struct CPUX86State
46
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47#include "cpu-defs.h"
48
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49#include "softfloat.h"
50
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51#define R_EAX 0
52#define R_ECX 1
53#define R_EDX 2
54#define R_EBX 3
55#define R_ESP 4
56#define R_EBP 5
57#define R_ESI 6
58#define R_EDI 7
59
60#define R_AL 0
61#define R_CL 1
62#define R_DL 2
63#define R_BL 3
64#define R_AH 4
65#define R_CH 5
66#define R_DH 6
67#define R_BH 7
68
69#define R_ES 0
70#define R_CS 1
71#define R_SS 2
72#define R_DS 3
73#define R_FS 4
74#define R_GS 5
75
76/* segment descriptor fields */
77#define DESC_G_MASK (1 << 23)
78#define DESC_B_SHIFT 22
79#define DESC_B_MASK (1 << DESC_B_SHIFT)
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80#define DESC_L_SHIFT 21 /* x86_64 only : 64 bit code segment */
81#define DESC_L_MASK (1 << DESC_L_SHIFT)
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82#define DESC_AVL_MASK (1 << 20)
83#define DESC_P_MASK (1 << 15)
84#define DESC_DPL_SHIFT 13
a3867ed2 85#define DESC_DPL_MASK (3 << DESC_DPL_SHIFT)
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86#define DESC_S_MASK (1 << 12)
87#define DESC_TYPE_SHIFT 8
a3867ed2 88#define DESC_TYPE_MASK (15 << DESC_TYPE_SHIFT)
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89#define DESC_A_MASK (1 << 8)
90
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91#define DESC_CS_MASK (1 << 11) /* 1=code segment 0=data segment */
92#define DESC_C_MASK (1 << 10) /* code: conforming */
93#define DESC_R_MASK (1 << 9) /* code: readable */
2c0262af 94
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95#define DESC_E_MASK (1 << 10) /* data: expansion direction */
96#define DESC_W_MASK (1 << 9) /* data: writable */
97
98#define DESC_TSS_BUSY_MASK (1 << 9)
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99
100/* eflags masks */
101#define CC_C 0x0001
102#define CC_P 0x0004
103#define CC_A 0x0010
104#define CC_Z 0x0040
105#define CC_S 0x0080
106#define CC_O 0x0800
107
108#define TF_SHIFT 8
109#define IOPL_SHIFT 12
110#define VM_SHIFT 17
111
112#define TF_MASK 0x00000100
113#define IF_MASK 0x00000200
114#define DF_MASK 0x00000400
115#define IOPL_MASK 0x00003000
116#define NT_MASK 0x00004000
117#define RF_MASK 0x00010000
118#define VM_MASK 0x00020000
5fafdf24 119#define AC_MASK 0x00040000
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120#define VIF_MASK 0x00080000
121#define VIP_MASK 0x00100000
122#define ID_MASK 0x00200000
123
aa1f17c1 124/* hidden flags - used internally by qemu to represent additional cpu
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125 states. Only the CPL, INHIBIT_IRQ, SMM and SVMI are not
126 redundant. We avoid using the IOPL_MASK, TF_MASK and VM_MASK bit
127 position to ease oring with eflags. */
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128/* current cpl */
129#define HF_CPL_SHIFT 0
130/* true if soft mmu is being used */
131#define HF_SOFTMMU_SHIFT 2
132/* true if hardware interrupts must be disabled for next instruction */
133#define HF_INHIBIT_IRQ_SHIFT 3
134/* 16 or 32 segments */
135#define HF_CS32_SHIFT 4
136#define HF_SS32_SHIFT 5
dc196a57 137/* zero base for DS, ES and SS : can be '0' only in 32 bit CS segment */
2c0262af 138#define HF_ADDSEG_SHIFT 6
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139/* copy of CR0.PE (protected mode) */
140#define HF_PE_SHIFT 7
141#define HF_TF_SHIFT 8 /* must be same as eflags */
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142#define HF_MP_SHIFT 9 /* the order must be MP, EM, TS */
143#define HF_EM_SHIFT 10
144#define HF_TS_SHIFT 11
65262d57 145#define HF_IOPL_SHIFT 12 /* must be same as eflags */
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146#define HF_LMA_SHIFT 14 /* only used on x86_64: long mode active */
147#define HF_CS64_SHIFT 15 /* only used on x86_64: 64 bit code segment */
a2397807 148#define HF_RF_SHIFT 16 /* must be same as eflags */
65262d57 149#define HF_VM_SHIFT 17 /* must be same as eflags */
3b21e03e 150#define HF_SMM_SHIFT 19 /* CPU in SMM mode */
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151#define HF_SVME_SHIFT 20 /* SVME enabled (copy of EFER.SVME) */
152#define HF_SVMI_SHIFT 21 /* SVM intercepts are active */
a2397807 153#define HF_OSFXSR_SHIFT 22 /* CR4.OSFXSR */
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154
155#define HF_CPL_MASK (3 << HF_CPL_SHIFT)
156#define HF_SOFTMMU_MASK (1 << HF_SOFTMMU_SHIFT)
157#define HF_INHIBIT_IRQ_MASK (1 << HF_INHIBIT_IRQ_SHIFT)
158#define HF_CS32_MASK (1 << HF_CS32_SHIFT)
159#define HF_SS32_MASK (1 << HF_SS32_SHIFT)
160#define HF_ADDSEG_MASK (1 << HF_ADDSEG_SHIFT)
65262d57 161#define HF_PE_MASK (1 << HF_PE_SHIFT)
58fe2f10 162#define HF_TF_MASK (1 << HF_TF_SHIFT)
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163#define HF_MP_MASK (1 << HF_MP_SHIFT)
164#define HF_EM_MASK (1 << HF_EM_SHIFT)
165#define HF_TS_MASK (1 << HF_TS_SHIFT)
0650f1ab 166#define HF_IOPL_MASK (3 << HF_IOPL_SHIFT)
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167#define HF_LMA_MASK (1 << HF_LMA_SHIFT)
168#define HF_CS64_MASK (1 << HF_CS64_SHIFT)
a2397807 169#define HF_RF_MASK (1 << HF_RF_SHIFT)
0650f1ab 170#define HF_VM_MASK (1 << HF_VM_SHIFT)
3b21e03e 171#define HF_SMM_MASK (1 << HF_SMM_SHIFT)
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172#define HF_SVME_MASK (1 << HF_SVME_SHIFT)
173#define HF_SVMI_MASK (1 << HF_SVMI_SHIFT)
a2397807 174#define HF_OSFXSR_MASK (1 << HF_OSFXSR_SHIFT)
2c0262af 175
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176/* hflags2 */
177
178#define HF2_GIF_SHIFT 0 /* if set CPU takes interrupts */
179#define HF2_HIF_SHIFT 1 /* value of IF_MASK when entering SVM */
180#define HF2_NMI_SHIFT 2 /* CPU serving NMI */
181#define HF2_VINTR_SHIFT 3 /* value of V_INTR_MASKING bit */
182
183#define HF2_GIF_MASK (1 << HF2_GIF_SHIFT)
184#define HF2_HIF_MASK (1 << HF2_HIF_SHIFT)
185#define HF2_NMI_MASK (1 << HF2_NMI_SHIFT)
186#define HF2_VINTR_MASK (1 << HF2_VINTR_SHIFT)
187
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188#define CR0_PE_SHIFT 0
189#define CR0_MP_SHIFT 1
190
2c0262af 191#define CR0_PE_MASK (1 << 0)
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192#define CR0_MP_MASK (1 << 1)
193#define CR0_EM_MASK (1 << 2)
2c0262af 194#define CR0_TS_MASK (1 << 3)
2ee73ac3 195#define CR0_ET_MASK (1 << 4)
7eee2a50 196#define CR0_NE_MASK (1 << 5)
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197#define CR0_WP_MASK (1 << 16)
198#define CR0_AM_MASK (1 << 18)
199#define CR0_PG_MASK (1 << 31)
200
201#define CR4_VME_MASK (1 << 0)
202#define CR4_PVI_MASK (1 << 1)
203#define CR4_TSD_MASK (1 << 2)
204#define CR4_DE_MASK (1 << 3)
205#define CR4_PSE_MASK (1 << 4)
64a595f2 206#define CR4_PAE_MASK (1 << 5)
79c4f6b0 207#define CR4_MCE_MASK (1 << 6)
64a595f2 208#define CR4_PGE_MASK (1 << 7)
14ce26e7 209#define CR4_PCE_MASK (1 << 8)
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210#define CR4_OSFXSR_SHIFT 9
211#define CR4_OSFXSR_MASK (1 << CR4_OSFXSR_SHIFT)
14ce26e7 212#define CR4_OSXMMEXCPT_MASK (1 << 10)
2c0262af 213
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214#define DR6_BD (1 << 13)
215#define DR6_BS (1 << 14)
216#define DR6_BT (1 << 15)
217#define DR6_FIXED_1 0xffff0ff0
218
219#define DR7_GD (1 << 13)
220#define DR7_TYPE_SHIFT 16
221#define DR7_LEN_SHIFT 18
222#define DR7_FIXED_1 0x00000400
223
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224#define PG_PRESENT_BIT 0
225#define PG_RW_BIT 1
226#define PG_USER_BIT 2
227#define PG_PWT_BIT 3
228#define PG_PCD_BIT 4
229#define PG_ACCESSED_BIT 5
230#define PG_DIRTY_BIT 6
231#define PG_PSE_BIT 7
232#define PG_GLOBAL_BIT 8
5cf38396 233#define PG_NX_BIT 63
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234
235#define PG_PRESENT_MASK (1 << PG_PRESENT_BIT)
236#define PG_RW_MASK (1 << PG_RW_BIT)
237#define PG_USER_MASK (1 << PG_USER_BIT)
238#define PG_PWT_MASK (1 << PG_PWT_BIT)
239#define PG_PCD_MASK (1 << PG_PCD_BIT)
240#define PG_ACCESSED_MASK (1 << PG_ACCESSED_BIT)
241#define PG_DIRTY_MASK (1 << PG_DIRTY_BIT)
242#define PG_PSE_MASK (1 << PG_PSE_BIT)
243#define PG_GLOBAL_MASK (1 << PG_GLOBAL_BIT)
5cf38396 244#define PG_NX_MASK (1LL << PG_NX_BIT)
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245
246#define PG_ERROR_W_BIT 1
247
248#define PG_ERROR_P_MASK 0x01
249#define PG_ERROR_W_MASK (1 << PG_ERROR_W_BIT)
250#define PG_ERROR_U_MASK 0x04
251#define PG_ERROR_RSVD_MASK 0x08
5cf38396 252#define PG_ERROR_I_D_MASK 0x10
2c0262af 253
c0532a76
MT
254#define MCG_CTL_P (1ULL<<8) /* MCG_CAP register available */
255#define MCG_SER_P (1ULL<<24) /* MCA recovery/new status bits */
79c4f6b0 256
c0532a76 257#define MCE_CAP_DEF (MCG_CTL_P|MCG_SER_P)
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258#define MCE_BANKS_DEF 10
259
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260#define MCG_STATUS_RIPV (1ULL<<0) /* restart ip valid */
261#define MCG_STATUS_EIPV (1ULL<<1) /* ip points to correct instruction */
e6a0575e 262#define MCG_STATUS_MCIP (1ULL<<2) /* machine check in progress */
79c4f6b0 263
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264#define MCI_STATUS_VAL (1ULL<<63) /* valid error */
265#define MCI_STATUS_OVER (1ULL<<62) /* previous errors lost */
266#define MCI_STATUS_UC (1ULL<<61) /* uncorrected error */
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267#define MCI_STATUS_EN (1ULL<<60) /* error enabled */
268#define MCI_STATUS_MISCV (1ULL<<59) /* misc error reg. valid */
269#define MCI_STATUS_ADDRV (1ULL<<58) /* addr reg. valid */
270#define MCI_STATUS_PCC (1ULL<<57) /* processor context corrupt */
271#define MCI_STATUS_S (1ULL<<56) /* Signaled machine check */
272#define MCI_STATUS_AR (1ULL<<55) /* Action required */
273
274/* MISC register defines */
275#define MCM_ADDR_SEGOFF 0 /* segment offset */
276#define MCM_ADDR_LINEAR 1 /* linear address */
277#define MCM_ADDR_PHYS 2 /* physical address */
278#define MCM_ADDR_MEM 3 /* memory address */
279#define MCM_ADDR_GENERIC 7 /* generic */
79c4f6b0 280
0650f1ab 281#define MSR_IA32_TSC 0x10
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282#define MSR_IA32_APICBASE 0x1b
283#define MSR_IA32_APICBASE_BSP (1<<8)
284#define MSR_IA32_APICBASE_ENABLE (1<<11)
285#define MSR_IA32_APICBASE_BASE (0xfffff<<12)
aa82ba54 286#define MSR_IA32_TSCDEADLINE 0x6e0
2c0262af 287
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288#define MSR_MTRRcap 0xfe
289#define MSR_MTRRcap_VCNT 8
290#define MSR_MTRRcap_FIXRANGE_SUPPORT (1 << 8)
291#define MSR_MTRRcap_WC_SUPPORTED (1 << 10)
292
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293#define MSR_IA32_SYSENTER_CS 0x174
294#define MSR_IA32_SYSENTER_ESP 0x175
295#define MSR_IA32_SYSENTER_EIP 0x176
296
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297#define MSR_MCG_CAP 0x179
298#define MSR_MCG_STATUS 0x17a
299#define MSR_MCG_CTL 0x17b
300
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301#define MSR_IA32_PERF_STATUS 0x198
302
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303#define MSR_MTRRphysBase(reg) (0x200 + 2 * (reg))
304#define MSR_MTRRphysMask(reg) (0x200 + 2 * (reg) + 1)
305
306#define MSR_MTRRfix64K_00000 0x250
307#define MSR_MTRRfix16K_80000 0x258
308#define MSR_MTRRfix16K_A0000 0x259
309#define MSR_MTRRfix4K_C0000 0x268
310#define MSR_MTRRfix4K_C8000 0x269
311#define MSR_MTRRfix4K_D0000 0x26a
312#define MSR_MTRRfix4K_D8000 0x26b
313#define MSR_MTRRfix4K_E0000 0x26c
314#define MSR_MTRRfix4K_E8000 0x26d
315#define MSR_MTRRfix4K_F0000 0x26e
316#define MSR_MTRRfix4K_F8000 0x26f
317
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318#define MSR_PAT 0x277
319
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320#define MSR_MTRRdefType 0x2ff
321
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322#define MSR_MC0_CTL 0x400
323#define MSR_MC0_STATUS 0x401
324#define MSR_MC0_ADDR 0x402
325#define MSR_MC0_MISC 0x403
326
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327#define MSR_EFER 0xc0000080
328
329#define MSR_EFER_SCE (1 << 0)
330#define MSR_EFER_LME (1 << 8)
331#define MSR_EFER_LMA (1 << 10)
332#define MSR_EFER_NXE (1 << 11)
872929aa 333#define MSR_EFER_SVME (1 << 12)
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334#define MSR_EFER_FFXSR (1 << 14)
335
336#define MSR_STAR 0xc0000081
337#define MSR_LSTAR 0xc0000082
338#define MSR_CSTAR 0xc0000083
339#define MSR_FMASK 0xc0000084
340#define MSR_FSBASE 0xc0000100
341#define MSR_GSBASE 0xc0000101
342#define MSR_KERNELGSBASE 0xc0000102
1b050077 343#define MSR_TSC_AUX 0xc0000103
14ce26e7 344
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345#define MSR_VM_HSAVE_PA 0xc0010117
346
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347/* cpuid_features bits */
348#define CPUID_FP87 (1 << 0)
349#define CPUID_VME (1 << 1)
350#define CPUID_DE (1 << 2)
351#define CPUID_PSE (1 << 3)
352#define CPUID_TSC (1 << 4)
353#define CPUID_MSR (1 << 5)
354#define CPUID_PAE (1 << 6)
355#define CPUID_MCE (1 << 7)
356#define CPUID_CX8 (1 << 8)
357#define CPUID_APIC (1 << 9)
358#define CPUID_SEP (1 << 11) /* sysenter/sysexit */
359#define CPUID_MTRR (1 << 12)
360#define CPUID_PGE (1 << 13)
361#define CPUID_MCA (1 << 14)
362#define CPUID_CMOV (1 << 15)
8f091a59 363#define CPUID_PAT (1 << 16)
8988ae89 364#define CPUID_PSE36 (1 << 17)
a049de61 365#define CPUID_PN (1 << 18)
8f091a59 366#define CPUID_CLFLUSH (1 << 19)
a049de61
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367#define CPUID_DTS (1 << 21)
368#define CPUID_ACPI (1 << 22)
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369#define CPUID_MMX (1 << 23)
370#define CPUID_FXSR (1 << 24)
371#define CPUID_SSE (1 << 25)
372#define CPUID_SSE2 (1 << 26)
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373#define CPUID_SS (1 << 27)
374#define CPUID_HT (1 << 28)
375#define CPUID_TM (1 << 29)
376#define CPUID_IA64 (1 << 30)
377#define CPUID_PBE (1 << 31)
14ce26e7 378
465e9838 379#define CPUID_EXT_SSE3 (1 << 0)
558fa836 380#define CPUID_EXT_DTES64 (1 << 2)
9df217a3 381#define CPUID_EXT_MONITOR (1 << 3)
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382#define CPUID_EXT_DSCPL (1 << 4)
383#define CPUID_EXT_VMX (1 << 5)
384#define CPUID_EXT_SMX (1 << 6)
385#define CPUID_EXT_EST (1 << 7)
386#define CPUID_EXT_TM2 (1 << 8)
387#define CPUID_EXT_SSSE3 (1 << 9)
388#define CPUID_EXT_CID (1 << 10)
9df217a3 389#define CPUID_EXT_CX16 (1 << 13)
a049de61 390#define CPUID_EXT_XTPR (1 << 14)
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391#define CPUID_EXT_PDCM (1 << 15)
392#define CPUID_EXT_DCA (1 << 18)
393#define CPUID_EXT_SSE41 (1 << 19)
394#define CPUID_EXT_SSE42 (1 << 20)
395#define CPUID_EXT_X2APIC (1 << 21)
396#define CPUID_EXT_MOVBE (1 << 22)
397#define CPUID_EXT_POPCNT (1 << 23)
398#define CPUID_EXT_XSAVE (1 << 26)
399#define CPUID_EXT_OSXSAVE (1 << 27)
6c0d7ee8 400#define CPUID_EXT_HYPERVISOR (1 << 31)
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401
402#define CPUID_EXT2_SYSCALL (1 << 11)
a049de61 403#define CPUID_EXT2_MP (1 << 19)
9df217a3 404#define CPUID_EXT2_NX (1 << 20)
a049de61 405#define CPUID_EXT2_MMXEXT (1 << 22)
8d9bfc2b 406#define CPUID_EXT2_FFXSR (1 << 25)
a049de61
FB
407#define CPUID_EXT2_PDPE1GB (1 << 26)
408#define CPUID_EXT2_RDTSCP (1 << 27)
9df217a3 409#define CPUID_EXT2_LM (1 << 29)
a049de61
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410#define CPUID_EXT2_3DNOWEXT (1 << 30)
411#define CPUID_EXT2_3DNOW (1 << 31)
9df217a3 412
a049de61
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413#define CPUID_EXT3_LAHF_LM (1 << 0)
414#define CPUID_EXT3_CMP_LEG (1 << 1)
0573fbfc 415#define CPUID_EXT3_SVM (1 << 2)
a049de61
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416#define CPUID_EXT3_EXTAPIC (1 << 3)
417#define CPUID_EXT3_CR8LEG (1 << 4)
418#define CPUID_EXT3_ABM (1 << 5)
419#define CPUID_EXT3_SSE4A (1 << 6)
420#define CPUID_EXT3_MISALIGNSSE (1 << 7)
421#define CPUID_EXT3_3DNOWPREFETCH (1 << 8)
422#define CPUID_EXT3_OSVW (1 << 9)
423#define CPUID_EXT3_IBS (1 << 10)
872929aa 424#define CPUID_EXT3_SKINIT (1 << 12)
0573fbfc 425
296acb64
JR
426#define CPUID_SVM_NPT (1 << 0)
427#define CPUID_SVM_LBRV (1 << 1)
428#define CPUID_SVM_SVMLOCK (1 << 2)
429#define CPUID_SVM_NRIPSAVE (1 << 3)
430#define CPUID_SVM_TSCSCALE (1 << 4)
431#define CPUID_SVM_VMCBCLEAN (1 << 5)
432#define CPUID_SVM_FLUSHASID (1 << 6)
433#define CPUID_SVM_DECODEASSIST (1 << 7)
434#define CPUID_SVM_PAUSEFILTER (1 << 10)
435#define CPUID_SVM_PFTHRESHOLD (1 << 12)
436
c5096daf
AZ
437#define CPUID_VENDOR_INTEL_1 0x756e6547 /* "Genu" */
438#define CPUID_VENDOR_INTEL_2 0x49656e69 /* "ineI" */
439#define CPUID_VENDOR_INTEL_3 0x6c65746e /* "ntel" */
440
441#define CPUID_VENDOR_AMD_1 0x68747541 /* "Auth" */
b3baa152 442#define CPUID_VENDOR_AMD_2 0x69746e65 /* "enti" */
c5096daf
AZ
443#define CPUID_VENDOR_AMD_3 0x444d4163 /* "cAMD" */
444
b3baa152 445#define CPUID_VENDOR_VIA_1 0x746e6543 /* "Cent" */
446#define CPUID_VENDOR_VIA_2 0x48727561 /* "aurH" */
447#define CPUID_VENDOR_VIA_3 0x736c7561 /* "auls" */
448
e737b32a 449#define CPUID_MWAIT_IBE (1 << 1) /* Interrupts can exit capability */
a876e289 450#define CPUID_MWAIT_EMX (1 << 0) /* enumeration supported */
e737b32a 451
2c0262af 452#define EXCP00_DIVZ 0
01df040b 453#define EXCP01_DB 1
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FB
454#define EXCP02_NMI 2
455#define EXCP03_INT3 3
456#define EXCP04_INTO 4
457#define EXCP05_BOUND 5
458#define EXCP06_ILLOP 6
459#define EXCP07_PREX 7
460#define EXCP08_DBLE 8
461#define EXCP09_XERR 9
462#define EXCP0A_TSS 10
463#define EXCP0B_NOSEG 11
464#define EXCP0C_STACK 12
465#define EXCP0D_GPF 13
466#define EXCP0E_PAGE 14
467#define EXCP10_COPR 16
468#define EXCP11_ALGN 17
469#define EXCP12_MCHK 18
470
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FB
471#define EXCP_SYSCALL 0x100 /* only happens in user only emulation
472 for syscall instruction */
473
00a152b4
RH
474/* i386-specific interrupt pending bits. */
475#define CPU_INTERRUPT_SMI CPU_INTERRUPT_TGT_EXT_2
85097db6 476#define CPU_INTERRUPT_NMI CPU_INTERRUPT_TGT_EXT_3
00a152b4
RH
477#define CPU_INTERRUPT_MCE CPU_INTERRUPT_TGT_EXT_4
478#define CPU_INTERRUPT_VIRQ CPU_INTERRUPT_TGT_INT_0
479#define CPU_INTERRUPT_INIT CPU_INTERRUPT_TGT_INT_1
480#define CPU_INTERRUPT_SIPI CPU_INTERRUPT_TGT_INT_2
481
482
2c0262af
FB
483enum {
484 CC_OP_DYNAMIC, /* must use dynamic code to get cc_op */
1235fc06 485 CC_OP_EFLAGS, /* all cc are explicitly computed, CC_SRC = flags */
d36cd60e
FB
486
487 CC_OP_MULB, /* modify all flags, C, O = (CC_SRC != 0) */
488 CC_OP_MULW,
489 CC_OP_MULL,
14ce26e7 490 CC_OP_MULQ,
2c0262af
FB
491
492 CC_OP_ADDB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
493 CC_OP_ADDW,
494 CC_OP_ADDL,
14ce26e7 495 CC_OP_ADDQ,
2c0262af
FB
496
497 CC_OP_ADCB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
498 CC_OP_ADCW,
499 CC_OP_ADCL,
14ce26e7 500 CC_OP_ADCQ,
2c0262af
FB
501
502 CC_OP_SUBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
503 CC_OP_SUBW,
504 CC_OP_SUBL,
14ce26e7 505 CC_OP_SUBQ,
2c0262af
FB
506
507 CC_OP_SBBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
508 CC_OP_SBBW,
509 CC_OP_SBBL,
14ce26e7 510 CC_OP_SBBQ,
2c0262af
FB
511
512 CC_OP_LOGICB, /* modify all flags, CC_DST = res */
513 CC_OP_LOGICW,
514 CC_OP_LOGICL,
14ce26e7 515 CC_OP_LOGICQ,
2c0262af
FB
516
517 CC_OP_INCB, /* modify all flags except, CC_DST = res, CC_SRC = C */
518 CC_OP_INCW,
519 CC_OP_INCL,
14ce26e7 520 CC_OP_INCQ,
2c0262af
FB
521
522 CC_OP_DECB, /* modify all flags except, CC_DST = res, CC_SRC = C */
523 CC_OP_DECW,
524 CC_OP_DECL,
14ce26e7 525 CC_OP_DECQ,
2c0262af 526
6b652794 527 CC_OP_SHLB, /* modify all flags, CC_DST = res, CC_SRC.msb = C */
2c0262af
FB
528 CC_OP_SHLW,
529 CC_OP_SHLL,
14ce26e7 530 CC_OP_SHLQ,
2c0262af
FB
531
532 CC_OP_SARB, /* modify all flags, CC_DST = res, CC_SRC.lsb = C */
533 CC_OP_SARW,
534 CC_OP_SARL,
14ce26e7 535 CC_OP_SARQ,
2c0262af
FB
536
537 CC_OP_NB,
538};
539
2c0262af
FB
540typedef struct SegmentCache {
541 uint32_t selector;
14ce26e7 542 target_ulong base;
2c0262af
FB
543 uint32_t limit;
544 uint32_t flags;
545} SegmentCache;
546
826461bb 547typedef union {
664e0f19
FB
548 uint8_t _b[16];
549 uint16_t _w[8];
550 uint32_t _l[4];
551 uint64_t _q[2];
7a0e1f41
FB
552 float32 _s[4];
553 float64 _d[2];
14ce26e7
FB
554} XMMReg;
555
826461bb
FB
556typedef union {
557 uint8_t _b[8];
a35f3ec7
AJ
558 uint16_t _w[4];
559 uint32_t _l[2];
560 float32 _s[2];
826461bb
FB
561 uint64_t q;
562} MMXReg;
563
e2542fe2 564#ifdef HOST_WORDS_BIGENDIAN
826461bb
FB
565#define XMM_B(n) _b[15 - (n)]
566#define XMM_W(n) _w[7 - (n)]
567#define XMM_L(n) _l[3 - (n)]
664e0f19 568#define XMM_S(n) _s[3 - (n)]
826461bb 569#define XMM_Q(n) _q[1 - (n)]
664e0f19 570#define XMM_D(n) _d[1 - (n)]
826461bb
FB
571
572#define MMX_B(n) _b[7 - (n)]
573#define MMX_W(n) _w[3 - (n)]
574#define MMX_L(n) _l[1 - (n)]
a35f3ec7 575#define MMX_S(n) _s[1 - (n)]
826461bb
FB
576#else
577#define XMM_B(n) _b[n]
578#define XMM_W(n) _w[n]
579#define XMM_L(n) _l[n]
664e0f19 580#define XMM_S(n) _s[n]
826461bb 581#define XMM_Q(n) _q[n]
664e0f19 582#define XMM_D(n) _d[n]
826461bb
FB
583
584#define MMX_B(n) _b[n]
585#define MMX_W(n) _w[n]
586#define MMX_L(n) _l[n]
a35f3ec7 587#define MMX_S(n) _s[n]
826461bb 588#endif
664e0f19 589#define MMX_Q(n) q
826461bb 590
acc68836 591typedef union {
c31da136 592 floatx80 d __attribute__((aligned(16)));
acc68836
JQ
593 MMXReg mmx;
594} FPReg;
595
c1a54d57
JQ
596typedef struct {
597 uint64_t base;
598 uint64_t mask;
599} MTRRVar;
600
5f30fa18
JK
601#define CPU_NB_REGS64 16
602#define CPU_NB_REGS32 8
603
14ce26e7 604#ifdef TARGET_X86_64
5f30fa18 605#define CPU_NB_REGS CPU_NB_REGS64
14ce26e7 606#else
5f30fa18 607#define CPU_NB_REGS CPU_NB_REGS32
14ce26e7
FB
608#endif
609
6ebbf390
JM
610#define NB_MMU_MODES 2
611
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FB
612typedef struct CPUX86State {
613 /* standard registers */
14ce26e7
FB
614 target_ulong regs[CPU_NB_REGS];
615 target_ulong eip;
616 target_ulong eflags; /* eflags register. During CPU emulation, CC
2c0262af
FB
617 flags and DF are set to zero because they are
618 stored elsewhere */
619
620 /* emulator internal eflags handling */
14ce26e7
FB
621 target_ulong cc_src;
622 target_ulong cc_dst;
2c0262af
FB
623 uint32_t cc_op;
624 int32_t df; /* D flag : 1 if D = 0, -1 if D = 1 */
db620f46
FB
625 uint32_t hflags; /* TB flags, see HF_xxx constants. These flags
626 are known at translation time. */
627 uint32_t hflags2; /* various other flags, see HF2_xxx constants. */
2c0262af 628
9df217a3
FB
629 /* segments */
630 SegmentCache segs[6]; /* selector values */
631 SegmentCache ldt;
632 SegmentCache tr;
633 SegmentCache gdt; /* only base and limit are used */
634 SegmentCache idt; /* only base and limit are used */
635
db620f46 636 target_ulong cr[5]; /* NOTE: cr1 is unused */
5ee0ffaa 637 int32_t a20_mask;
9df217a3 638
2c0262af
FB
639 /* FPU state */
640 unsigned int fpstt; /* top of stack index */
67b8f419 641 uint16_t fpus;
eb831623 642 uint16_t fpuc;
2c0262af 643 uint8_t fptags[8]; /* 0 = valid, 1 = empty */
acc68836 644 FPReg fpregs[8];
42cc8fa6
JK
645 /* KVM-only so far */
646 uint16_t fpop;
647 uint64_t fpip;
648 uint64_t fpdp;
2c0262af
FB
649
650 /* emulator internal variables */
7a0e1f41 651 float_status fp_status;
c31da136 652 floatx80 ft0;
3b46e624 653
a35f3ec7 654 float_status mmx_status; /* for 3DNow! float ops */
7a0e1f41 655 float_status sse_status;
664e0f19 656 uint32_t mxcsr;
14ce26e7
FB
657 XMMReg xmm_regs[CPU_NB_REGS];
658 XMMReg xmm_t0;
664e0f19 659 MMXReg mmx_t0;
1e4840bf 660 target_ulong cc_tmp; /* temporary for rcr/rcl */
14ce26e7 661
2c0262af
FB
662 /* sysenter registers */
663 uint32_t sysenter_cs;
2436b61a
AZ
664 target_ulong sysenter_esp;
665 target_ulong sysenter_eip;
8d9bfc2b
FB
666 uint64_t efer;
667 uint64_t star;
0573fbfc 668
5cc1d1e6
FB
669 uint64_t vm_hsave;
670 uint64_t vm_vmcb;
33c263df 671 uint64_t tsc_offset;
0573fbfc
TS
672 uint64_t intercept;
673 uint16_t intercept_cr_read;
674 uint16_t intercept_cr_write;
675 uint16_t intercept_dr_read;
676 uint16_t intercept_dr_write;
677 uint32_t intercept_exceptions;
db620f46 678 uint8_t v_tpr;
0573fbfc 679
14ce26e7 680#ifdef TARGET_X86_64
14ce26e7
FB
681 target_ulong lstar;
682 target_ulong cstar;
683 target_ulong fmask;
684 target_ulong kernelgsbase;
685#endif
1a03675d
GC
686 uint64_t system_time_msr;
687 uint64_t wall_clock_msr;
f6584ee2 688 uint64_t async_pf_en_msr;
58fe2f10 689
7ba1e619 690 uint64_t tsc;
aa82ba54 691 uint64_t tsc_deadline;
7ba1e619 692
18559232
JK
693 uint64_t mcg_status;
694
2c0262af 695 /* exception/interrupt handling */
2c0262af
FB
696 int error_code;
697 int exception_is_int;
826461bb 698 target_ulong exception_next_eip;
14ce26e7 699 target_ulong dr[8]; /* debug registers */
01df040b
AL
700 union {
701 CPUBreakpoint *cpu_breakpoint[4];
702 CPUWatchpoint *cpu_watchpoint[4];
703 }; /* break/watchpoints for dr[0..3] */
3b21e03e 704 uint32_t smbase;
678dde13 705 int old_exception; /* exception in flight */
2c0262af 706
d8f771d9
JK
707 /* KVM states, automatically cleared on reset */
708 uint8_t nmi_injected;
709 uint8_t nmi_pending;
710
a316d335 711 CPU_COMMON
2c0262af 712
ebda377f
JK
713 uint64_t pat;
714
14ce26e7 715 /* processor features (e.g. for CPUID insn) */
8d9bfc2b 716 uint32_t cpuid_level;
14ce26e7
FB
717 uint32_t cpuid_vendor1;
718 uint32_t cpuid_vendor2;
719 uint32_t cpuid_vendor3;
720 uint32_t cpuid_version;
721 uint32_t cpuid_features;
9df217a3 722 uint32_t cpuid_ext_features;
8d9bfc2b
FB
723 uint32_t cpuid_xlevel;
724 uint32_t cpuid_model[12];
725 uint32_t cpuid_ext2_features;
0573fbfc 726 uint32_t cpuid_ext3_features;
eae7629b 727 uint32_t cpuid_apic_id;
ef768138 728 int cpuid_vendor_override;
b3baa152 729 /* Store the results of Centaur's CPUID instructions */
730 uint32_t cpuid_xlevel2;
731 uint32_t cpuid_ext4_features;
3b46e624 732
165d9b82
AL
733 /* MTRRs */
734 uint64_t mtrr_fixed[11];
735 uint64_t mtrr_deftype;
c1a54d57 736 MTRRVar mtrr_var[8];
165d9b82 737
7ba1e619 738 /* For KVM */
f8d926e9 739 uint32_t mp_state;
31827373 740 int32_t exception_injected;
0e607a80 741 int32_t interrupt_injected;
a0fb002c 742 uint8_t soft_interrupt;
a0fb002c
JK
743 uint8_t has_error_code;
744 uint32_t sipi_vector;
bb0300dc 745 uint32_t cpuid_kvm_features;
296acb64 746 uint32_t cpuid_svm_features;
b8cc45d6 747 bool tsc_valid;
b862d1fe 748 int tsc_khz;
bb0300dc 749
14ce26e7
FB
750 /* in order to simplify APIC support, we leave this pointer to the
751 user */
92a16d7a 752 struct DeviceState *apic_state;
79c4f6b0 753
ac6c4120 754 uint64_t mcg_cap;
ac6c4120
AF
755 uint64_t mcg_ctl;
756 uint64_t mce_banks[MCE_BANKS_DEF*4];
1b050077
AP
757
758 uint64_t tsc_aux;
5a2d0e57
AJ
759
760 /* vmstate */
761 uint16_t fpus_vmstate;
762 uint16_t fptag_vmstate;
763 uint16_t fpregs_format_vmstate;
f1665b21
SY
764
765 uint64_t xstate_bv;
766 XMMReg ymmh_regs[CPU_NB_REGS];
767
768 uint64_t xcr0;
2c0262af
FB
769} CPUX86State;
770
aaed909a 771CPUX86State *cpu_x86_init(const char *cpu_model);
2c0262af
FB
772int cpu_x86_exec(CPUX86State *s);
773void cpu_x86_close(CPUX86State *s);
9a78eead 774void x86_cpu_list (FILE *f, fprintf_function cpu_fprintf, const char *optarg);
b5ec5ce0 775void x86_cpudef_setup(void);
2bd3e04c 776int cpu_x86_support_mca_broadcast(CPUState *env);
b5ec5ce0 777
d720b93d 778int cpu_get_pic_interrupt(CPUX86State *s);
2ee73ac3
FB
779/* MSDOS compatibility mode FPU exception support */
780void cpu_set_ferr(CPUX86State *s);
2c0262af
FB
781
782/* this function must always be used to load data in the segment
783 cache: it synchronizes the hflags with the segment cache values */
5fafdf24 784static inline void cpu_x86_load_seg_cache(CPUX86State *env,
2c0262af 785 int seg_reg, unsigned int selector,
8988ae89 786 target_ulong base,
5fafdf24 787 unsigned int limit,
2c0262af
FB
788 unsigned int flags)
789{
790 SegmentCache *sc;
791 unsigned int new_hflags;
3b46e624 792
2c0262af
FB
793 sc = &env->segs[seg_reg];
794 sc->selector = selector;
795 sc->base = base;
796 sc->limit = limit;
797 sc->flags = flags;
798
799 /* update the hidden flags */
14ce26e7
FB
800 {
801 if (seg_reg == R_CS) {
802#ifdef TARGET_X86_64
803 if ((env->hflags & HF_LMA_MASK) && (flags & DESC_L_MASK)) {
804 /* long mode */
805 env->hflags |= HF_CS32_MASK | HF_SS32_MASK | HF_CS64_MASK;
806 env->hflags &= ~(HF_ADDSEG_MASK);
5fafdf24 807 } else
14ce26e7
FB
808#endif
809 {
810 /* legacy / compatibility case */
811 new_hflags = (env->segs[R_CS].flags & DESC_B_MASK)
812 >> (DESC_B_SHIFT - HF_CS32_SHIFT);
813 env->hflags = (env->hflags & ~(HF_CS32_MASK | HF_CS64_MASK)) |
814 new_hflags;
815 }
816 }
817 new_hflags = (env->segs[R_SS].flags & DESC_B_MASK)
818 >> (DESC_B_SHIFT - HF_SS32_SHIFT);
819 if (env->hflags & HF_CS64_MASK) {
820 /* zero base assumed for DS, ES and SS in long mode */
5fafdf24 821 } else if (!(env->cr[0] & CR0_PE_MASK) ||
735a8fd3
FB
822 (env->eflags & VM_MASK) ||
823 !(env->hflags & HF_CS32_MASK)) {
14ce26e7
FB
824 /* XXX: try to avoid this test. The problem comes from the
825 fact that is real mode or vm86 mode we only modify the
826 'base' and 'selector' fields of the segment cache to go
827 faster. A solution may be to force addseg to one in
828 translate-i386.c. */
829 new_hflags |= HF_ADDSEG_MASK;
830 } else {
5fafdf24 831 new_hflags |= ((env->segs[R_DS].base |
735a8fd3 832 env->segs[R_ES].base |
5fafdf24 833 env->segs[R_SS].base) != 0) <<
14ce26e7
FB
834 HF_ADDSEG_SHIFT;
835 }
5fafdf24 836 env->hflags = (env->hflags &
14ce26e7 837 ~(HF_SS32_MASK | HF_ADDSEG_MASK)) | new_hflags;
2c0262af 838 }
2c0262af
FB
839}
840
0e26b7b8
BS
841static inline void cpu_x86_load_seg_cache_sipi(CPUX86State *env,
842 int sipi_vector)
843{
844 env->eip = 0;
845 cpu_x86_load_seg_cache(env, R_CS, sipi_vector << 8,
846 sipi_vector << 12,
847 env->segs[R_CS].limit,
848 env->segs[R_CS].flags);
849 env->halted = 0;
850}
851
84273177
JK
852int cpu_x86_get_descr_debug(CPUX86State *env, unsigned int selector,
853 target_ulong *base, unsigned int *limit,
854 unsigned int *flags);
855
2c0262af
FB
856/* wrapper, just in case memory mappings must be changed */
857static inline void cpu_x86_set_cpl(CPUX86State *s, int cpl)
858{
859#if HF_CPL_MASK == 3
860 s->hflags = (s->hflags & ~HF_CPL_MASK) | cpl;
861#else
862#error HF_CPL_MASK is hardcoded
863#endif
864}
865
d9957a8b 866/* op_helper.c */
1f1af9fd 867/* used for debug or cpu save/restore */
c31da136
AJ
868void cpu_get_fp80(uint64_t *pmant, uint16_t *pexp, floatx80 f);
869floatx80 cpu_set_fp80(uint64_t mant, uint16_t upper);
1f1af9fd 870
d9957a8b 871/* cpu-exec.c */
2c0262af
FB
872/* the following helpers are only usable in user mode simulation as
873 they can trigger unexpected exceptions */
874void cpu_x86_load_seg(CPUX86State *s, int seg_reg, int selector);
6f12a2a6
FB
875void cpu_x86_fsave(CPUX86State *s, target_ulong ptr, int data32);
876void cpu_x86_frstor(CPUX86State *s, target_ulong ptr, int data32);
2c0262af
FB
877
878/* you can call this signal handler from your SIGBUS and SIGSEGV
879 signal handlers to inform the virtual CPU of exceptions. non zero
880 is returned if the signal was handled by the virtual CPU. */
5fafdf24 881int cpu_x86_signal_handler(int host_signum, void *pinfo,
2c0262af 882 void *puc);
d9957a8b 883
c6dc6f63
AP
884/* cpuid.c */
885void cpu_x86_cpuid(CPUX86State *env, uint32_t index, uint32_t count,
886 uint32_t *eax, uint32_t *ebx,
887 uint32_t *ecx, uint32_t *edx);
888int cpu_x86_register (CPUX86State *env, const char *cpu_model);
0e26b7b8 889void cpu_clear_apic_feature(CPUX86State *env);
bb44e0d1
JK
890void host_cpuid(uint32_t function, uint32_t count,
891 uint32_t *eax, uint32_t *ebx, uint32_t *ecx, uint32_t *edx);
c6dc6f63 892
d9957a8b
BS
893/* helper.c */
894int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
97b348e7 895 int is_write, int mmu_idx);
0b5c1ce8 896#define cpu_handle_mmu_fault cpu_x86_handle_mmu_fault
461c0471 897void cpu_x86_set_a20(CPUX86State *env, int a20_state);
2c0262af 898
d9957a8b
BS
899static inline int hw_breakpoint_enabled(unsigned long dr7, int index)
900{
901 return (dr7 >> (index * 2)) & 3;
902}
28ab0e2e 903
d9957a8b
BS
904static inline int hw_breakpoint_type(unsigned long dr7, int index)
905{
d46272c7 906 return (dr7 >> (DR7_TYPE_SHIFT + (index * 4))) & 3;
d9957a8b
BS
907}
908
909static inline int hw_breakpoint_len(unsigned long dr7, int index)
910{
d46272c7 911 int len = ((dr7 >> (DR7_LEN_SHIFT + (index * 4))) & 3);
d9957a8b
BS
912 return (len == 2) ? 8 : len + 1;
913}
914
915void hw_breakpoint_insert(CPUX86State *env, int index);
916void hw_breakpoint_remove(CPUX86State *env, int index);
917int check_hw_breakpoints(CPUX86State *env, int force_dr6_update);
918
919/* will be suppressed */
920void cpu_x86_update_cr0(CPUX86State *env, uint32_t new_cr0);
921void cpu_x86_update_cr3(CPUX86State *env, target_ulong new_cr3);
922void cpu_x86_update_cr4(CPUX86State *env, uint32_t new_cr4);
923
d9957a8b
BS
924/* hw/pc.c */
925void cpu_smm_update(CPUX86State *env);
926uint64_t cpu_get_tsc(CPUX86State *env);
6fd805e1 927
2c0262af
FB
928/* used to debug */
929#define X86_DUMP_FPU 0x0001 /* dump FPU state too */
930#define X86_DUMP_CCOP 0x0002 /* dump qemu flag cache */
2c0262af
FB
931
932#define TARGET_PAGE_BITS 12
9467d44c 933
52705890
RH
934#ifdef TARGET_X86_64
935#define TARGET_PHYS_ADDR_SPACE_BITS 52
936/* ??? This is really 48 bits, sign-extended, but the only thing
937 accessible to userland with bit 48 set is the VSYSCALL, and that
938 is handled via other mechanisms. */
939#define TARGET_VIRT_ADDR_SPACE_BITS 47
940#else
941#define TARGET_PHYS_ADDR_SPACE_BITS 36
942#define TARGET_VIRT_ADDR_SPACE_BITS 32
943#endif
944
9467d44c
TS
945#define cpu_init cpu_x86_init
946#define cpu_exec cpu_x86_exec
947#define cpu_gen_code cpu_x86_gen_code
948#define cpu_signal_handler cpu_x86_signal_handler
b5ec5ce0 949#define cpu_list_id x86_cpu_list
950#define cpudef_setup x86_cpudef_setup
9467d44c 951
38d2c27e 952#define CPU_SAVE_VERSION 12
b3c7724c 953
6ebbf390
JM
954/* MMU modes definitions */
955#define MMU_MODE0_SUFFIX _kernel
956#define MMU_MODE1_SUFFIX _user
957#define MMU_USER_IDX 1
958static inline int cpu_mmu_index (CPUState *env)
959{
960 return (env->hflags & HF_CPL_MASK) == 3 ? 1 : 0;
961}
962
f081c76c
BS
963#undef EAX
964#define EAX (env->regs[R_EAX])
965#undef ECX
966#define ECX (env->regs[R_ECX])
967#undef EDX
968#define EDX (env->regs[R_EDX])
969#undef EBX
970#define EBX (env->regs[R_EBX])
971#undef ESP
972#define ESP (env->regs[R_ESP])
973#undef EBP
974#define EBP (env->regs[R_EBP])
975#undef ESI
976#define ESI (env->regs[R_ESI])
977#undef EDI
978#define EDI (env->regs[R_EDI])
979#undef EIP
980#define EIP (env->eip)
981#define DF (env->df)
982
983#define CC_SRC (env->cc_src)
984#define CC_DST (env->cc_dst)
985#define CC_OP (env->cc_op)
986
987/* float macros */
988#define FT0 (env->ft0)
989#define ST0 (env->fpregs[env->fpstt].d)
990#define ST(n) (env->fpregs[(env->fpstt + (n)) & 7].d)
991#define ST1 ST(1)
992
d9957a8b 993/* translate.c */
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994void optimize_flags_init(void);
995
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996#if defined(CONFIG_USER_ONLY)
997static inline void cpu_clone_regs(CPUState *env, target_ulong newsp)
998{
f8ed7070 999 if (newsp)
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1000 env->regs[R_ESP] = newsp;
1001 env->regs[R_EAX] = 0;
1002}
1003#endif
1004
2c0262af 1005#include "cpu-all.h"
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1006#include "svm.h"
1007
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1008#if !defined(CONFIG_USER_ONLY)
1009#include "hw/apic.h"
1010#endif
1011
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1012static inline bool cpu_has_work(CPUState *env)
1013{
1014 return ((env->interrupt_request & CPU_INTERRUPT_HARD) &&
1015 (env->eflags & IF_MASK)) ||
1016 (env->interrupt_request & (CPU_INTERRUPT_NMI |
1017 CPU_INTERRUPT_INIT |
1018 CPU_INTERRUPT_SIPI |
1019 CPU_INTERRUPT_MCE));
1020}
1021
1022#include "exec-all.h"
1023
1024static inline void cpu_pc_from_tb(CPUState *env, TranslationBlock *tb)
1025{
1026 env->eip = tb->pc - tb->cs_base;
1027}
1028
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1029static inline void cpu_get_tb_cpu_state(CPUState *env, target_ulong *pc,
1030 target_ulong *cs_base, int *flags)
1031{
1032 *cs_base = env->segs[R_CS].base;
1033 *pc = *cs_base + env->eip;
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1034 *flags = env->hflags |
1035 (env->eflags & (IOPL_MASK | TF_MASK | RF_MASK | VM_MASK));
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1036}
1037
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1038void do_cpu_init(CPUState *env);
1039void do_cpu_sipi(CPUState *env);
2fa11da0 1040
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1041#define MCE_INJECT_BROADCAST 1
1042#define MCE_INJECT_UNCOND_AO 2
1043
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1044void cpu_x86_inject_mce(Monitor *mon, CPUState *cenv, int bank,
1045 uint64_t status, uint64_t mcg_status, uint64_t addr,
747461c7 1046 uint64_t misc, int flags);
2fa11da0 1047
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1048/* op_helper.c */
1049void do_interrupt(CPUState *env);
1050void do_interrupt_x86_hardirq(CPUState *env, int intno, int is_hw);
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1051void QEMU_NORETURN raise_exception_env(int exception_index, CPUState *nenv);
1052void QEMU_NORETURN raise_exception_err_env(CPUState *nenv, int exception_index,
1053 int error_code);
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1054
1055void do_smm_enter(CPUState *env1);
1056
1057void svm_check_intercept(CPUState *env1, uint32_t type);
1058
1059uint32_t cpu_cc_compute_all(CPUState *env1, int op);
1060
2c0262af 1061#endif /* CPU_I386_H */