xref: /openbmc/qemu/target/i386/cpu.h (revision 2e641870170e28df28c5d9914e76ea7cab141516)
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 2.1 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, see <http://www.gnu.org/licenses/>.
18  */
19 
20 #ifndef I386_CPU_H
21 #define I386_CPU_H
22 
23 #include "sysemu/tcg.h"
24 #include "cpu-qom.h"
25 #include "kvm/hyperv-proto.h"
26 #include "exec/cpu-defs.h"
27 #include "hw/i386/topology.h"
28 #include "qapi/qapi-types-common.h"
29 #include "qemu/cpu-float.h"
30 #include "qemu/timer.h"
31 
32 #define XEN_NR_VIRQS 24
33 
34 #define KVM_HAVE_MCE_INJECTION 1
35 
36 /* support for self modifying code even if the modified instruction is
37    close to the modifying instruction */
38 #define TARGET_HAS_PRECISE_SMC
39 
40 #ifdef TARGET_X86_64
41 #define I386_ELF_MACHINE  EM_X86_64
42 #define ELF_MACHINE_UNAME "x86_64"
43 #else
44 #define I386_ELF_MACHINE  EM_386
45 #define ELF_MACHINE_UNAME "i686"
46 #endif
47 
48 enum {
49     R_EAX = 0,
50     R_ECX = 1,
51     R_EDX = 2,
52     R_EBX = 3,
53     R_ESP = 4,
54     R_EBP = 5,
55     R_ESI = 6,
56     R_EDI = 7,
57     R_R8 = 8,
58     R_R9 = 9,
59     R_R10 = 10,
60     R_R11 = 11,
61     R_R12 = 12,
62     R_R13 = 13,
63     R_R14 = 14,
64     R_R15 = 15,
65 
66     R_AL = 0,
67     R_CL = 1,
68     R_DL = 2,
69     R_BL = 3,
70     R_AH = 4,
71     R_CH = 5,
72     R_DH = 6,
73     R_BH = 7,
74 };
75 
76 typedef enum X86Seg {
77     R_ES = 0,
78     R_CS = 1,
79     R_SS = 2,
80     R_DS = 3,
81     R_FS = 4,
82     R_GS = 5,
83     R_LDTR = 6,
84     R_TR = 7,
85 } X86Seg;
86 
87 /* segment descriptor fields */
88 #define DESC_G_SHIFT    23
89 #define DESC_G_MASK     (1 << DESC_G_SHIFT)
90 #define DESC_B_SHIFT    22
91 #define DESC_B_MASK     (1 << DESC_B_SHIFT)
92 #define DESC_L_SHIFT    21 /* x86_64 only : 64 bit code segment */
93 #define DESC_L_MASK     (1 << DESC_L_SHIFT)
94 #define DESC_AVL_SHIFT  20
95 #define DESC_AVL_MASK   (1 << DESC_AVL_SHIFT)
96 #define DESC_P_SHIFT    15
97 #define DESC_P_MASK     (1 << DESC_P_SHIFT)
98 #define DESC_DPL_SHIFT  13
99 #define DESC_DPL_MASK   (3 << DESC_DPL_SHIFT)
100 #define DESC_S_SHIFT    12
101 #define DESC_S_MASK     (1 << DESC_S_SHIFT)
102 #define DESC_TYPE_SHIFT 8
103 #define DESC_TYPE_MASK  (15 << DESC_TYPE_SHIFT)
104 #define DESC_A_MASK     (1 << 8)
105 
106 #define DESC_CS_MASK    (1 << 11) /* 1=code segment 0=data segment */
107 #define DESC_C_MASK     (1 << 10) /* code: conforming */
108 #define DESC_R_MASK     (1 << 9)  /* code: readable */
109 
110 #define DESC_E_MASK     (1 << 10) /* data: expansion direction */
111 #define DESC_W_MASK     (1 << 9)  /* data: writable */
112 
113 #define DESC_TSS_BUSY_MASK (1 << 9)
114 
115 /* eflags masks */
116 #define CC_C    0x0001
117 #define CC_P    0x0004
118 #define CC_A    0x0010
119 #define CC_Z    0x0040
120 #define CC_S    0x0080
121 #define CC_O    0x0800
122 
123 #define TF_SHIFT   8
124 #define IOPL_SHIFT 12
125 #define VM_SHIFT   17
126 
127 #define TF_MASK                 0x00000100
128 #define IF_MASK                 0x00000200
129 #define DF_MASK                 0x00000400
130 #define IOPL_MASK               0x00003000
131 #define NT_MASK                 0x00004000
132 #define RF_MASK                 0x00010000
133 #define VM_MASK                 0x00020000
134 #define AC_MASK                 0x00040000
135 #define VIF_MASK                0x00080000
136 #define VIP_MASK                0x00100000
137 #define ID_MASK                 0x00200000
138 
139 /* hidden flags - used internally by qemu to represent additional cpu
140    states. Only the INHIBIT_IRQ, SMM and SVMI are not redundant. We
141    avoid using the IOPL_MASK, TF_MASK, VM_MASK and AC_MASK bit
142    positions to ease oring with eflags. */
143 /* current cpl */
144 #define HF_CPL_SHIFT         0
145 /* true if hardware interrupts must be disabled for next instruction */
146 #define HF_INHIBIT_IRQ_SHIFT 3
147 /* 16 or 32 segments */
148 #define HF_CS32_SHIFT        4
149 #define HF_SS32_SHIFT        5
150 /* zero base for DS, ES and SS : can be '0' only in 32 bit CS segment */
151 #define HF_ADDSEG_SHIFT      6
152 /* copy of CR0.PE (protected mode) */
153 #define HF_PE_SHIFT          7
154 #define HF_TF_SHIFT          8 /* must be same as eflags */
155 #define HF_MP_SHIFT          9 /* the order must be MP, EM, TS */
156 #define HF_EM_SHIFT         10
157 #define HF_TS_SHIFT         11
158 #define HF_IOPL_SHIFT       12 /* must be same as eflags */
159 #define HF_LMA_SHIFT        14 /* only used on x86_64: long mode active */
160 #define HF_CS64_SHIFT       15 /* only used on x86_64: 64 bit code segment  */
161 #define HF_RF_SHIFT         16 /* must be same as eflags */
162 #define HF_VM_SHIFT         17 /* must be same as eflags */
163 #define HF_AC_SHIFT         18 /* must be same as eflags */
164 #define HF_SMM_SHIFT        19 /* CPU in SMM mode */
165 #define HF_SVME_SHIFT       20 /* SVME enabled (copy of EFER.SVME) */
166 #define HF_GUEST_SHIFT      21 /* SVM intercepts are active */
167 #define HF_OSFXSR_SHIFT     22 /* CR4.OSFXSR */
168 #define HF_SMAP_SHIFT       23 /* CR4.SMAP */
169 #define HF_IOBPT_SHIFT      24 /* an io breakpoint enabled */
170 #define HF_MPX_EN_SHIFT     25 /* MPX Enabled (CR4+XCR0+BNDCFGx) */
171 #define HF_MPX_IU_SHIFT     26 /* BND registers in-use */
172 #define HF_UMIP_SHIFT       27 /* CR4.UMIP */
173 #define HF_AVX_EN_SHIFT     28 /* AVX Enabled (CR4+XCR0) */
174 
175 #define HF_CPL_MASK          (3 << HF_CPL_SHIFT)
176 #define HF_INHIBIT_IRQ_MASK  (1 << HF_INHIBIT_IRQ_SHIFT)
177 #define HF_CS32_MASK         (1 << HF_CS32_SHIFT)
178 #define HF_SS32_MASK         (1 << HF_SS32_SHIFT)
179 #define HF_ADDSEG_MASK       (1 << HF_ADDSEG_SHIFT)
180 #define HF_PE_MASK           (1 << HF_PE_SHIFT)
181 #define HF_TF_MASK           (1 << HF_TF_SHIFT)
182 #define HF_MP_MASK           (1 << HF_MP_SHIFT)
183 #define HF_EM_MASK           (1 << HF_EM_SHIFT)
184 #define HF_TS_MASK           (1 << HF_TS_SHIFT)
185 #define HF_IOPL_MASK         (3 << HF_IOPL_SHIFT)
186 #define HF_LMA_MASK          (1 << HF_LMA_SHIFT)
187 #define HF_CS64_MASK         (1 << HF_CS64_SHIFT)
188 #define HF_RF_MASK           (1 << HF_RF_SHIFT)
189 #define HF_VM_MASK           (1 << HF_VM_SHIFT)
190 #define HF_AC_MASK           (1 << HF_AC_SHIFT)
191 #define HF_SMM_MASK          (1 << HF_SMM_SHIFT)
192 #define HF_SVME_MASK         (1 << HF_SVME_SHIFT)
193 #define HF_GUEST_MASK        (1 << HF_GUEST_SHIFT)
194 #define HF_OSFXSR_MASK       (1 << HF_OSFXSR_SHIFT)
195 #define HF_SMAP_MASK         (1 << HF_SMAP_SHIFT)
196 #define HF_IOBPT_MASK        (1 << HF_IOBPT_SHIFT)
197 #define HF_MPX_EN_MASK       (1 << HF_MPX_EN_SHIFT)
198 #define HF_MPX_IU_MASK       (1 << HF_MPX_IU_SHIFT)
199 #define HF_UMIP_MASK         (1 << HF_UMIP_SHIFT)
200 #define HF_AVX_EN_MASK       (1 << HF_AVX_EN_SHIFT)
201 
202 /* hflags2 */
203 
204 #define HF2_GIF_SHIFT            0 /* if set CPU takes interrupts */
205 #define HF2_HIF_SHIFT            1 /* value of IF_MASK when entering SVM */
206 #define HF2_NMI_SHIFT            2 /* CPU serving NMI */
207 #define HF2_VINTR_SHIFT          3 /* value of V_INTR_MASKING bit */
208 #define HF2_SMM_INSIDE_NMI_SHIFT 4 /* CPU serving SMI nested inside NMI */
209 #define HF2_MPX_PR_SHIFT         5 /* BNDCFGx.BNDPRESERVE */
210 #define HF2_NPT_SHIFT            6 /* Nested Paging enabled */
211 #define HF2_IGNNE_SHIFT          7 /* Ignore CR0.NE=0 */
212 #define HF2_VGIF_SHIFT           8 /* Can take VIRQ*/
213 
214 #define HF2_GIF_MASK            (1 << HF2_GIF_SHIFT)
215 #define HF2_HIF_MASK            (1 << HF2_HIF_SHIFT)
216 #define HF2_NMI_MASK            (1 << HF2_NMI_SHIFT)
217 #define HF2_VINTR_MASK          (1 << HF2_VINTR_SHIFT)
218 #define HF2_SMM_INSIDE_NMI_MASK (1 << HF2_SMM_INSIDE_NMI_SHIFT)
219 #define HF2_MPX_PR_MASK         (1 << HF2_MPX_PR_SHIFT)
220 #define HF2_NPT_MASK            (1 << HF2_NPT_SHIFT)
221 #define HF2_IGNNE_MASK          (1 << HF2_IGNNE_SHIFT)
222 #define HF2_VGIF_MASK           (1 << HF2_VGIF_SHIFT)
223 
224 #define CR0_PE_SHIFT 0
225 #define CR0_MP_SHIFT 1
226 
227 #define CR0_PE_MASK  (1U << 0)
228 #define CR0_MP_MASK  (1U << 1)
229 #define CR0_EM_MASK  (1U << 2)
230 #define CR0_TS_MASK  (1U << 3)
231 #define CR0_ET_MASK  (1U << 4)
232 #define CR0_NE_MASK  (1U << 5)
233 #define CR0_WP_MASK  (1U << 16)
234 #define CR0_AM_MASK  (1U << 18)
235 #define CR0_NW_MASK  (1U << 29)
236 #define CR0_CD_MASK  (1U << 30)
237 #define CR0_PG_MASK  (1U << 31)
238 
239 #define CR4_VME_MASK  (1U << 0)
240 #define CR4_PVI_MASK  (1U << 1)
241 #define CR4_TSD_MASK  (1U << 2)
242 #define CR4_DE_MASK   (1U << 3)
243 #define CR4_PSE_MASK  (1U << 4)
244 #define CR4_PAE_MASK  (1U << 5)
245 #define CR4_MCE_MASK  (1U << 6)
246 #define CR4_PGE_MASK  (1U << 7)
247 #define CR4_PCE_MASK  (1U << 8)
248 #define CR4_OSFXSR_SHIFT 9
249 #define CR4_OSFXSR_MASK (1U << CR4_OSFXSR_SHIFT)
250 #define CR4_OSXMMEXCPT_MASK  (1U << 10)
251 #define CR4_UMIP_MASK   (1U << 11)
252 #define CR4_LA57_MASK   (1U << 12)
253 #define CR4_VMXE_MASK   (1U << 13)
254 #define CR4_SMXE_MASK   (1U << 14)
255 #define CR4_FSGSBASE_MASK (1U << 16)
256 #define CR4_PCIDE_MASK  (1U << 17)
257 #define CR4_OSXSAVE_MASK (1U << 18)
258 #define CR4_SMEP_MASK   (1U << 20)
259 #define CR4_SMAP_MASK   (1U << 21)
260 #define CR4_PKE_MASK   (1U << 22)
261 #define CR4_PKS_MASK   (1U << 24)
262 #define CR4_LAM_SUP_MASK (1U << 28)
263 
264 #ifdef TARGET_X86_64
265 #define CR4_FRED_MASK   (1ULL << 32)
266 #else
267 #define CR4_FRED_MASK   0
268 #endif
269 
270 #ifdef TARGET_X86_64
271 #define CR4_FRED_MASK   (1ULL << 32)
272 #else
273 #define CR4_FRED_MASK   0
274 #endif
275 
276 #define CR4_RESERVED_MASK \
277 (~(target_ulong)(CR4_VME_MASK | CR4_PVI_MASK | CR4_TSD_MASK \
278                 | CR4_DE_MASK | CR4_PSE_MASK | CR4_PAE_MASK \
279                 | CR4_MCE_MASK | CR4_PGE_MASK | CR4_PCE_MASK \
280                 | CR4_OSFXSR_MASK | CR4_OSXMMEXCPT_MASK | CR4_UMIP_MASK \
281                 | CR4_LA57_MASK \
282                 | CR4_FSGSBASE_MASK | CR4_PCIDE_MASK | CR4_OSXSAVE_MASK \
283                 | CR4_SMEP_MASK | CR4_SMAP_MASK | CR4_PKE_MASK | CR4_PKS_MASK \
284                 | CR4_LAM_SUP_MASK | CR4_FRED_MASK))
285 
286 #define DR6_BD          (1 << 13)
287 #define DR6_BS          (1 << 14)
288 #define DR6_BT          (1 << 15)
289 #define DR6_FIXED_1     0xffff0ff0
290 
291 #define DR7_GD          (1 << 13)
292 #define DR7_TYPE_SHIFT  16
293 #define DR7_LEN_SHIFT   18
294 #define DR7_FIXED_1     0x00000400
295 #define DR7_GLOBAL_BP_MASK   0xaa
296 #define DR7_LOCAL_BP_MASK    0x55
297 #define DR7_MAX_BP           4
298 #define DR7_TYPE_BP_INST     0x0
299 #define DR7_TYPE_DATA_WR     0x1
300 #define DR7_TYPE_IO_RW       0x2
301 #define DR7_TYPE_DATA_RW     0x3
302 
303 #define DR_RESERVED_MASK 0xffffffff00000000ULL
304 
305 #define PG_PRESENT_BIT  0
306 #define PG_RW_BIT       1
307 #define PG_USER_BIT     2
308 #define PG_PWT_BIT      3
309 #define PG_PCD_BIT      4
310 #define PG_ACCESSED_BIT 5
311 #define PG_DIRTY_BIT    6
312 #define PG_PSE_BIT      7
313 #define PG_GLOBAL_BIT   8
314 #define PG_PSE_PAT_BIT  12
315 #define PG_PKRU_BIT     59
316 #define PG_NX_BIT       63
317 
318 #define PG_PRESENT_MASK  (1 << PG_PRESENT_BIT)
319 #define PG_RW_MASK       (1 << PG_RW_BIT)
320 #define PG_USER_MASK     (1 << PG_USER_BIT)
321 #define PG_PWT_MASK      (1 << PG_PWT_BIT)
322 #define PG_PCD_MASK      (1 << PG_PCD_BIT)
323 #define PG_ACCESSED_MASK (1 << PG_ACCESSED_BIT)
324 #define PG_DIRTY_MASK    (1 << PG_DIRTY_BIT)
325 #define PG_PSE_MASK      (1 << PG_PSE_BIT)
326 #define PG_GLOBAL_MASK   (1 << PG_GLOBAL_BIT)
327 #define PG_PSE_PAT_MASK  (1 << PG_PSE_PAT_BIT)
328 #define PG_ADDRESS_MASK  0x000ffffffffff000LL
329 #define PG_HI_USER_MASK  0x7ff0000000000000LL
330 #define PG_PKRU_MASK     (15ULL << PG_PKRU_BIT)
331 #define PG_NX_MASK       (1ULL << PG_NX_BIT)
332 
333 #define PG_ERROR_W_BIT     1
334 
335 #define PG_ERROR_P_MASK    0x01
336 #define PG_ERROR_W_MASK    (1 << PG_ERROR_W_BIT)
337 #define PG_ERROR_U_MASK    0x04
338 #define PG_ERROR_RSVD_MASK 0x08
339 #define PG_ERROR_I_D_MASK  0x10
340 #define PG_ERROR_PK_MASK   0x20
341 
342 #define PG_MODE_PAE      (1 << 0)
343 #define PG_MODE_LMA      (1 << 1)
344 #define PG_MODE_NXE      (1 << 2)
345 #define PG_MODE_PSE      (1 << 3)
346 #define PG_MODE_LA57     (1 << 4)
347 #define PG_MODE_SVM_MASK MAKE_64BIT_MASK(0, 15)
348 
349 /* Bits of CR4 that do not affect the NPT page format.  */
350 #define PG_MODE_WP       (1 << 16)
351 #define PG_MODE_PKE      (1 << 17)
352 #define PG_MODE_PKS      (1 << 18)
353 #define PG_MODE_SMEP     (1 << 19)
354 
355 #define MCG_CTL_P       (1ULL<<8)   /* MCG_CAP register available */
356 #define MCG_SER_P       (1ULL<<24) /* MCA recovery/new status bits */
357 #define MCG_LMCE_P      (1ULL<<27) /* Local Machine Check Supported */
358 
359 #define MCE_CAP_DEF     (MCG_CTL_P|MCG_SER_P)
360 #define MCE_BANKS_DEF   10
361 
362 #define MCG_CAP_BANKS_MASK 0xff
363 
364 #define MCG_STATUS_RIPV (1ULL<<0)   /* restart ip valid */
365 #define MCG_STATUS_EIPV (1ULL<<1)   /* ip points to correct instruction */
366 #define MCG_STATUS_MCIP (1ULL<<2)   /* machine check in progress */
367 #define MCG_STATUS_LMCE (1ULL<<3)   /* Local MCE signaled */
368 
369 #define MCG_EXT_CTL_LMCE_EN (1ULL<<0) /* Local MCE enabled */
370 
371 #define MCI_STATUS_VAL   (1ULL<<63)  /* valid error */
372 #define MCI_STATUS_OVER  (1ULL<<62)  /* previous errors lost */
373 #define MCI_STATUS_UC    (1ULL<<61)  /* uncorrected error */
374 #define MCI_STATUS_EN    (1ULL<<60)  /* error enabled */
375 #define MCI_STATUS_MISCV (1ULL<<59)  /* misc error reg. valid */
376 #define MCI_STATUS_ADDRV (1ULL<<58)  /* addr reg. valid */
377 #define MCI_STATUS_PCC   (1ULL<<57)  /* processor context corrupt */
378 #define MCI_STATUS_S     (1ULL<<56)  /* Signaled machine check */
379 #define MCI_STATUS_AR    (1ULL<<55)  /* Action required */
380 
381 /* MISC register defines */
382 #define MCM_ADDR_SEGOFF  0      /* segment offset */
383 #define MCM_ADDR_LINEAR  1      /* linear address */
384 #define MCM_ADDR_PHYS    2      /* physical address */
385 #define MCM_ADDR_MEM     3      /* memory address */
386 #define MCM_ADDR_GENERIC 7      /* generic */
387 
388 #define MSR_IA32_TSC                    0x10
389 #define MSR_IA32_APICBASE               0x1b
390 #define MSR_IA32_APICBASE_BSP           (1<<8)
391 #define MSR_IA32_APICBASE_ENABLE        (1<<11)
392 #define MSR_IA32_APICBASE_EXTD          (1 << 10)
393 #define MSR_IA32_APICBASE_BASE          (0xfffffU<<12)
394 #define MSR_IA32_APICBASE_RESERVED \
395         (~(uint64_t)(MSR_IA32_APICBASE_BSP | MSR_IA32_APICBASE_ENABLE \
396                      | MSR_IA32_APICBASE_EXTD | MSR_IA32_APICBASE_BASE))
397 
398 #define MSR_IA32_FEATURE_CONTROL        0x0000003a
399 #define MSR_TSC_ADJUST                  0x0000003b
400 #define MSR_IA32_SPEC_CTRL              0x48
401 #define MSR_VIRT_SSBD                   0xc001011f
402 #define MSR_IA32_PRED_CMD               0x49
403 #define MSR_IA32_UCODE_REV              0x8b
404 #define MSR_IA32_CORE_CAPABILITY        0xcf
405 
406 #define MSR_IA32_ARCH_CAPABILITIES      0x10a
407 #define ARCH_CAP_TSX_CTRL_MSR		(1<<7)
408 
409 #define MSR_IA32_PERF_CAPABILITIES      0x345
410 #define PERF_CAP_LBR_FMT                0x3f
411 
412 #define MSR_IA32_TSX_CTRL		0x122
413 #define MSR_IA32_TSCDEADLINE            0x6e0
414 #define MSR_IA32_PKRS                   0x6e1
415 #define MSR_ARCH_LBR_CTL                0x000014ce
416 #define MSR_ARCH_LBR_DEPTH              0x000014cf
417 #define MSR_ARCH_LBR_FROM_0             0x00001500
418 #define MSR_ARCH_LBR_TO_0               0x00001600
419 #define MSR_ARCH_LBR_INFO_0             0x00001200
420 
421 #define FEATURE_CONTROL_LOCKED                    (1<<0)
422 #define FEATURE_CONTROL_VMXON_ENABLED_INSIDE_SMX  (1ULL << 1)
423 #define FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX (1<<2)
424 #define FEATURE_CONTROL_SGX_LC                    (1ULL << 17)
425 #define FEATURE_CONTROL_SGX                       (1ULL << 18)
426 #define FEATURE_CONTROL_LMCE                      (1<<20)
427 
428 #define MSR_IA32_SGXLEPUBKEYHASH0       0x8c
429 #define MSR_IA32_SGXLEPUBKEYHASH1       0x8d
430 #define MSR_IA32_SGXLEPUBKEYHASH2       0x8e
431 #define MSR_IA32_SGXLEPUBKEYHASH3       0x8f
432 
433 #define MSR_P6_PERFCTR0                 0xc1
434 
435 #define MSR_IA32_SMBASE                 0x9e
436 #define MSR_SMI_COUNT                   0x34
437 #define MSR_CORE_THREAD_COUNT           0x35
438 #define MSR_MTRRcap                     0xfe
439 #define MSR_MTRRcap_VCNT                8
440 #define MSR_MTRRcap_FIXRANGE_SUPPORT    (1 << 8)
441 #define MSR_MTRRcap_WC_SUPPORTED        (1 << 10)
442 
443 #define MSR_IA32_SYSENTER_CS            0x174
444 #define MSR_IA32_SYSENTER_ESP           0x175
445 #define MSR_IA32_SYSENTER_EIP           0x176
446 
447 #define MSR_MCG_CAP                     0x179
448 #define MSR_MCG_STATUS                  0x17a
449 #define MSR_MCG_CTL                     0x17b
450 #define MSR_MCG_EXT_CTL                 0x4d0
451 
452 #define MSR_P6_EVNTSEL0                 0x186
453 
454 #define MSR_IA32_PERF_STATUS            0x198
455 
456 #define MSR_IA32_MISC_ENABLE            0x1a0
457 /* Indicates good rep/movs microcode on some processors: */
458 #define MSR_IA32_MISC_ENABLE_DEFAULT    1
459 #define MSR_IA32_MISC_ENABLE_MWAIT      (1ULL << 18)
460 
461 #define MSR_MTRRphysBase(reg)           (0x200 + 2 * (reg))
462 #define MSR_MTRRphysMask(reg)           (0x200 + 2 * (reg) + 1)
463 
464 #define MSR_MTRRphysIndex(addr)         ((((addr) & ~1u) - 0x200) / 2)
465 
466 #define MSR_MTRRfix64K_00000            0x250
467 #define MSR_MTRRfix16K_80000            0x258
468 #define MSR_MTRRfix16K_A0000            0x259
469 #define MSR_MTRRfix4K_C0000             0x268
470 #define MSR_MTRRfix4K_C8000             0x269
471 #define MSR_MTRRfix4K_D0000             0x26a
472 #define MSR_MTRRfix4K_D8000             0x26b
473 #define MSR_MTRRfix4K_E0000             0x26c
474 #define MSR_MTRRfix4K_E8000             0x26d
475 #define MSR_MTRRfix4K_F0000             0x26e
476 #define MSR_MTRRfix4K_F8000             0x26f
477 
478 #define MSR_PAT                         0x277
479 
480 #define MSR_MTRRdefType                 0x2ff
481 
482 #define MSR_CORE_PERF_FIXED_CTR0        0x309
483 #define MSR_CORE_PERF_FIXED_CTR1        0x30a
484 #define MSR_CORE_PERF_FIXED_CTR2        0x30b
485 #define MSR_CORE_PERF_FIXED_CTR_CTRL    0x38d
486 #define MSR_CORE_PERF_GLOBAL_STATUS     0x38e
487 #define MSR_CORE_PERF_GLOBAL_CTRL       0x38f
488 #define MSR_CORE_PERF_GLOBAL_OVF_CTRL   0x390
489 
490 #define MSR_MC0_CTL                     0x400
491 #define MSR_MC0_STATUS                  0x401
492 #define MSR_MC0_ADDR                    0x402
493 #define MSR_MC0_MISC                    0x403
494 
495 #define MSR_IA32_RTIT_OUTPUT_BASE       0x560
496 #define MSR_IA32_RTIT_OUTPUT_MASK       0x561
497 #define MSR_IA32_RTIT_CTL               0x570
498 #define MSR_IA32_RTIT_STATUS            0x571
499 #define MSR_IA32_RTIT_CR3_MATCH         0x572
500 #define MSR_IA32_RTIT_ADDR0_A           0x580
501 #define MSR_IA32_RTIT_ADDR0_B           0x581
502 #define MSR_IA32_RTIT_ADDR1_A           0x582
503 #define MSR_IA32_RTIT_ADDR1_B           0x583
504 #define MSR_IA32_RTIT_ADDR2_A           0x584
505 #define MSR_IA32_RTIT_ADDR2_B           0x585
506 #define MSR_IA32_RTIT_ADDR3_A           0x586
507 #define MSR_IA32_RTIT_ADDR3_B           0x587
508 #define MAX_RTIT_ADDRS                  8
509 
510 #define MSR_EFER                        0xc0000080
511 
512 #define MSR_EFER_SCE   (1 << 0)
513 #define MSR_EFER_LME   (1 << 8)
514 #define MSR_EFER_LMA   (1 << 10)
515 #define MSR_EFER_NXE   (1 << 11)
516 #define MSR_EFER_SVME  (1 << 12)
517 #define MSR_EFER_FFXSR (1 << 14)
518 
519 #define MSR_EFER_RESERVED\
520         (~(target_ulong)(MSR_EFER_SCE | MSR_EFER_LME\
521             | MSR_EFER_LMA | MSR_EFER_NXE | MSR_EFER_SVME\
522             | MSR_EFER_FFXSR))
523 
524 #define MSR_STAR                        0xc0000081
525 #define MSR_LSTAR                       0xc0000082
526 #define MSR_CSTAR                       0xc0000083
527 #define MSR_FMASK                       0xc0000084
528 #define MSR_FSBASE                      0xc0000100
529 #define MSR_GSBASE                      0xc0000101
530 #define MSR_KERNELGSBASE                0xc0000102
531 #define MSR_TSC_AUX                     0xc0000103
532 #define MSR_AMD64_TSC_RATIO             0xc0000104
533 
534 #define MSR_AMD64_TSC_RATIO_DEFAULT     0x100000000ULL
535 
536 #define MSR_VM_HSAVE_PA                 0xc0010117
537 
538 #define MSR_IA32_XFD                    0x000001c4
539 #define MSR_IA32_XFD_ERR                0x000001c5
540 
541 #define MSR_IA32_BNDCFGS                0x00000d90
542 #define MSR_IA32_XSS                    0x00000da0
543 #define MSR_IA32_UMWAIT_CONTROL         0xe1
544 
545 #define MSR_IA32_VMX_BASIC              0x00000480
546 #define MSR_IA32_VMX_PINBASED_CTLS      0x00000481
547 #define MSR_IA32_VMX_PROCBASED_CTLS     0x00000482
548 #define MSR_IA32_VMX_EXIT_CTLS          0x00000483
549 #define MSR_IA32_VMX_ENTRY_CTLS         0x00000484
550 #define MSR_IA32_VMX_MISC               0x00000485
551 #define MSR_IA32_VMX_CR0_FIXED0         0x00000486
552 #define MSR_IA32_VMX_CR0_FIXED1         0x00000487
553 #define MSR_IA32_VMX_CR4_FIXED0         0x00000488
554 #define MSR_IA32_VMX_CR4_FIXED1         0x00000489
555 #define MSR_IA32_VMX_VMCS_ENUM          0x0000048a
556 #define MSR_IA32_VMX_PROCBASED_CTLS2    0x0000048b
557 #define MSR_IA32_VMX_EPT_VPID_CAP       0x0000048c
558 #define MSR_IA32_VMX_TRUE_PINBASED_CTLS  0x0000048d
559 #define MSR_IA32_VMX_TRUE_PROCBASED_CTLS 0x0000048e
560 #define MSR_IA32_VMX_TRUE_EXIT_CTLS      0x0000048f
561 #define MSR_IA32_VMX_TRUE_ENTRY_CTLS     0x00000490
562 #define MSR_IA32_VMX_VMFUNC             0x00000491
563 
564 #define MSR_APIC_START                  0x00000800
565 #define MSR_APIC_END                    0x000008ff
566 
567 #define XSTATE_FP_BIT                   0
568 #define XSTATE_SSE_BIT                  1
569 #define XSTATE_YMM_BIT                  2
570 #define XSTATE_BNDREGS_BIT              3
571 #define XSTATE_BNDCSR_BIT               4
572 #define XSTATE_OPMASK_BIT               5
573 #define XSTATE_ZMM_Hi256_BIT            6
574 #define XSTATE_Hi16_ZMM_BIT             7
575 #define XSTATE_PKRU_BIT                 9
576 #define XSTATE_ARCH_LBR_BIT             15
577 #define XSTATE_XTILE_CFG_BIT            17
578 #define XSTATE_XTILE_DATA_BIT           18
579 
580 #define XSTATE_FP_MASK                  (1ULL << XSTATE_FP_BIT)
581 #define XSTATE_SSE_MASK                 (1ULL << XSTATE_SSE_BIT)
582 #define XSTATE_YMM_MASK                 (1ULL << XSTATE_YMM_BIT)
583 #define XSTATE_BNDREGS_MASK             (1ULL << XSTATE_BNDREGS_BIT)
584 #define XSTATE_BNDCSR_MASK              (1ULL << XSTATE_BNDCSR_BIT)
585 #define XSTATE_OPMASK_MASK              (1ULL << XSTATE_OPMASK_BIT)
586 #define XSTATE_ZMM_Hi256_MASK           (1ULL << XSTATE_ZMM_Hi256_BIT)
587 #define XSTATE_Hi16_ZMM_MASK            (1ULL << XSTATE_Hi16_ZMM_BIT)
588 #define XSTATE_PKRU_MASK                (1ULL << XSTATE_PKRU_BIT)
589 #define XSTATE_ARCH_LBR_MASK            (1ULL << XSTATE_ARCH_LBR_BIT)
590 #define XSTATE_XTILE_CFG_MASK           (1ULL << XSTATE_XTILE_CFG_BIT)
591 #define XSTATE_XTILE_DATA_MASK          (1ULL << XSTATE_XTILE_DATA_BIT)
592 
593 #define XSTATE_DYNAMIC_MASK             (XSTATE_XTILE_DATA_MASK)
594 
595 #define ESA_FEATURE_ALIGN64_BIT         1
596 #define ESA_FEATURE_XFD_BIT             2
597 
598 #define ESA_FEATURE_ALIGN64_MASK        (1U << ESA_FEATURE_ALIGN64_BIT)
599 #define ESA_FEATURE_XFD_MASK            (1U << ESA_FEATURE_XFD_BIT)
600 
601 
602 /* CPUID feature bits available in XCR0 */
603 #define CPUID_XSTATE_XCR0_MASK  (XSTATE_FP_MASK | XSTATE_SSE_MASK | \
604                                  XSTATE_YMM_MASK | XSTATE_BNDREGS_MASK | \
605                                  XSTATE_BNDCSR_MASK | XSTATE_OPMASK_MASK | \
606                                  XSTATE_ZMM_Hi256_MASK | \
607                                  XSTATE_Hi16_ZMM_MASK | XSTATE_PKRU_MASK | \
608                                  XSTATE_XTILE_CFG_MASK | XSTATE_XTILE_DATA_MASK)
609 
610 /* CPUID feature words */
611 typedef enum FeatureWord {
612     FEAT_1_EDX,         /* CPUID[1].EDX */
613     FEAT_1_ECX,         /* CPUID[1].ECX */
614     FEAT_7_0_EBX,       /* CPUID[EAX=7,ECX=0].EBX */
615     FEAT_7_0_ECX,       /* CPUID[EAX=7,ECX=0].ECX */
616     FEAT_7_0_EDX,       /* CPUID[EAX=7,ECX=0].EDX */
617     FEAT_7_1_EAX,       /* CPUID[EAX=7,ECX=1].EAX */
618     FEAT_8000_0001_EDX, /* CPUID[8000_0001].EDX */
619     FEAT_8000_0001_ECX, /* CPUID[8000_0001].ECX */
620     FEAT_8000_0007_EDX, /* CPUID[8000_0007].EDX */
621     FEAT_8000_0008_EBX, /* CPUID[8000_0008].EBX */
622     FEAT_8000_0021_EAX, /* CPUID[8000_0021].EAX */
623     FEAT_C000_0001_EDX, /* CPUID[C000_0001].EDX */
624     FEAT_KVM,           /* CPUID[4000_0001].EAX (KVM_CPUID_FEATURES) */
625     FEAT_KVM_HINTS,     /* CPUID[4000_0001].EDX */
626     FEAT_SVM,           /* CPUID[8000_000A].EDX */
627     FEAT_XSAVE,         /* CPUID[EAX=0xd,ECX=1].EAX */
628     FEAT_6_EAX,         /* CPUID[6].EAX */
629     FEAT_XSAVE_XCR0_LO, /* CPUID[EAX=0xd,ECX=0].EAX */
630     FEAT_XSAVE_XCR0_HI, /* CPUID[EAX=0xd,ECX=0].EDX */
631     FEAT_ARCH_CAPABILITIES,
632     FEAT_CORE_CAPABILITY,
633     FEAT_PERF_CAPABILITIES,
634     FEAT_VMX_PROCBASED_CTLS,
635     FEAT_VMX_SECONDARY_CTLS,
636     FEAT_VMX_PINBASED_CTLS,
637     FEAT_VMX_EXIT_CTLS,
638     FEAT_VMX_ENTRY_CTLS,
639     FEAT_VMX_MISC,
640     FEAT_VMX_EPT_VPID_CAPS,
641     FEAT_VMX_BASIC,
642     FEAT_VMX_VMFUNC,
643     FEAT_14_0_ECX,
644     FEAT_SGX_12_0_EAX,  /* CPUID[EAX=0x12,ECX=0].EAX (SGX) */
645     FEAT_SGX_12_0_EBX,  /* CPUID[EAX=0x12,ECX=0].EBX (SGX MISCSELECT[31:0]) */
646     FEAT_SGX_12_1_EAX,  /* CPUID[EAX=0x12,ECX=1].EAX (SGX ATTRIBUTES[31:0]) */
647     FEAT_XSAVE_XSS_LO,     /* CPUID[EAX=0xd,ECX=1].ECX */
648     FEAT_XSAVE_XSS_HI,     /* CPUID[EAX=0xd,ECX=1].EDX */
649     FEAT_7_1_EDX,       /* CPUID[EAX=7,ECX=1].EDX */
650     FEAT_7_2_EDX,       /* CPUID[EAX=7,ECX=2].EDX */
651     FEATURE_WORDS,
652 } FeatureWord;
653 
654 typedef uint64_t FeatureWordArray[FEATURE_WORDS];
655 uint64_t x86_cpu_get_supported_feature_word(FeatureWord w,
656                                             bool migratable_only);
657 
658 /* cpuid_features bits */
659 #define CPUID_FP87 (1U << 0)
660 #define CPUID_VME  (1U << 1)
661 #define CPUID_DE   (1U << 2)
662 #define CPUID_PSE  (1U << 3)
663 #define CPUID_TSC  (1U << 4)
664 #define CPUID_MSR  (1U << 5)
665 #define CPUID_PAE  (1U << 6)
666 #define CPUID_MCE  (1U << 7)
667 #define CPUID_CX8  (1U << 8)
668 #define CPUID_APIC (1U << 9)
669 #define CPUID_SEP  (1U << 11) /* sysenter/sysexit */
670 #define CPUID_MTRR (1U << 12)
671 #define CPUID_PGE  (1U << 13)
672 #define CPUID_MCA  (1U << 14)
673 #define CPUID_CMOV (1U << 15)
674 #define CPUID_PAT  (1U << 16)
675 #define CPUID_PSE36   (1U << 17)
676 #define CPUID_PN   (1U << 18)
677 #define CPUID_CLFLUSH (1U << 19)
678 #define CPUID_DTS (1U << 21)
679 #define CPUID_ACPI (1U << 22)
680 #define CPUID_MMX  (1U << 23)
681 #define CPUID_FXSR (1U << 24)
682 #define CPUID_SSE  (1U << 25)
683 #define CPUID_SSE2 (1U << 26)
684 #define CPUID_SS (1U << 27)
685 #define CPUID_HT (1U << 28)
686 #define CPUID_TM (1U << 29)
687 #define CPUID_IA64 (1U << 30)
688 #define CPUID_PBE (1U << 31)
689 
690 #define CPUID_EXT_SSE3     (1U << 0)
691 #define CPUID_EXT_PCLMULQDQ (1U << 1)
692 #define CPUID_EXT_DTES64   (1U << 2)
693 #define CPUID_EXT_MONITOR  (1U << 3)
694 #define CPUID_EXT_DSCPL    (1U << 4)
695 #define CPUID_EXT_VMX      (1U << 5)
696 #define CPUID_EXT_SMX      (1U << 6)
697 #define CPUID_EXT_EST      (1U << 7)
698 #define CPUID_EXT_TM2      (1U << 8)
699 #define CPUID_EXT_SSSE3    (1U << 9)
700 #define CPUID_EXT_CID      (1U << 10)
701 #define CPUID_EXT_FMA      (1U << 12)
702 #define CPUID_EXT_CX16     (1U << 13)
703 #define CPUID_EXT_XTPR     (1U << 14)
704 #define CPUID_EXT_PDCM     (1U << 15)
705 #define CPUID_EXT_PCID     (1U << 17)
706 #define CPUID_EXT_DCA      (1U << 18)
707 #define CPUID_EXT_SSE41    (1U << 19)
708 #define CPUID_EXT_SSE42    (1U << 20)
709 #define CPUID_EXT_X2APIC   (1U << 21)
710 #define CPUID_EXT_MOVBE    (1U << 22)
711 #define CPUID_EXT_POPCNT   (1U << 23)
712 #define CPUID_EXT_TSC_DEADLINE_TIMER (1U << 24)
713 #define CPUID_EXT_AES      (1U << 25)
714 #define CPUID_EXT_XSAVE    (1U << 26)
715 #define CPUID_EXT_OSXSAVE  (1U << 27)
716 #define CPUID_EXT_AVX      (1U << 28)
717 #define CPUID_EXT_F16C     (1U << 29)
718 #define CPUID_EXT_RDRAND   (1U << 30)
719 #define CPUID_EXT_HYPERVISOR  (1U << 31)
720 
721 #define CPUID_EXT2_FPU     (1U << 0)
722 #define CPUID_EXT2_VME     (1U << 1)
723 #define CPUID_EXT2_DE      (1U << 2)
724 #define CPUID_EXT2_PSE     (1U << 3)
725 #define CPUID_EXT2_TSC     (1U << 4)
726 #define CPUID_EXT2_MSR     (1U << 5)
727 #define CPUID_EXT2_PAE     (1U << 6)
728 #define CPUID_EXT2_MCE     (1U << 7)
729 #define CPUID_EXT2_CX8     (1U << 8)
730 #define CPUID_EXT2_APIC    (1U << 9)
731 #define CPUID_EXT2_SYSCALL (1U << 11)
732 #define CPUID_EXT2_MTRR    (1U << 12)
733 #define CPUID_EXT2_PGE     (1U << 13)
734 #define CPUID_EXT2_MCA     (1U << 14)
735 #define CPUID_EXT2_CMOV    (1U << 15)
736 #define CPUID_EXT2_PAT     (1U << 16)
737 #define CPUID_EXT2_PSE36   (1U << 17)
738 #define CPUID_EXT2_MP      (1U << 19)
739 #define CPUID_EXT2_NX      (1U << 20)
740 #define CPUID_EXT2_MMXEXT  (1U << 22)
741 #define CPUID_EXT2_MMX     (1U << 23)
742 #define CPUID_EXT2_FXSR    (1U << 24)
743 #define CPUID_EXT2_FFXSR   (1U << 25)
744 #define CPUID_EXT2_PDPE1GB (1U << 26)
745 #define CPUID_EXT2_RDTSCP  (1U << 27)
746 #define CPUID_EXT2_LM      (1U << 29)
747 #define CPUID_EXT2_3DNOWEXT (1U << 30)
748 #define CPUID_EXT2_3DNOW   (1U << 31)
749 
750 /* CPUID[8000_0001].EDX bits that are aliases of CPUID[1].EDX bits on AMD CPUs */
751 #define CPUID_EXT2_AMD_ALIASES (CPUID_EXT2_FPU | CPUID_EXT2_VME | \
752                                 CPUID_EXT2_DE | CPUID_EXT2_PSE | \
753                                 CPUID_EXT2_TSC | CPUID_EXT2_MSR | \
754                                 CPUID_EXT2_PAE | CPUID_EXT2_MCE | \
755                                 CPUID_EXT2_CX8 | CPUID_EXT2_APIC | \
756                                 CPUID_EXT2_MTRR | CPUID_EXT2_PGE | \
757                                 CPUID_EXT2_MCA | CPUID_EXT2_CMOV | \
758                                 CPUID_EXT2_PAT | CPUID_EXT2_PSE36 | \
759                                 CPUID_EXT2_MMX | CPUID_EXT2_FXSR)
760 
761 #define CPUID_EXT3_LAHF_LM (1U << 0)
762 #define CPUID_EXT3_CMP_LEG (1U << 1)
763 #define CPUID_EXT3_SVM     (1U << 2)
764 #define CPUID_EXT3_EXTAPIC (1U << 3)
765 #define CPUID_EXT3_CR8LEG  (1U << 4)
766 #define CPUID_EXT3_ABM     (1U << 5)
767 #define CPUID_EXT3_SSE4A   (1U << 6)
768 #define CPUID_EXT3_MISALIGNSSE (1U << 7)
769 #define CPUID_EXT3_3DNOWPREFETCH (1U << 8)
770 #define CPUID_EXT3_OSVW    (1U << 9)
771 #define CPUID_EXT3_IBS     (1U << 10)
772 #define CPUID_EXT3_XOP     (1U << 11)
773 #define CPUID_EXT3_SKINIT  (1U << 12)
774 #define CPUID_EXT3_WDT     (1U << 13)
775 #define CPUID_EXT3_LWP     (1U << 15)
776 #define CPUID_EXT3_FMA4    (1U << 16)
777 #define CPUID_EXT3_TCE     (1U << 17)
778 #define CPUID_EXT3_NODEID  (1U << 19)
779 #define CPUID_EXT3_TBM     (1U << 21)
780 #define CPUID_EXT3_TOPOEXT (1U << 22)
781 #define CPUID_EXT3_PERFCORE (1U << 23)
782 #define CPUID_EXT3_PERFNB  (1U << 24)
783 
784 #define CPUID_SVM_NPT             (1U << 0)
785 #define CPUID_SVM_LBRV            (1U << 1)
786 #define CPUID_SVM_SVMLOCK         (1U << 2)
787 #define CPUID_SVM_NRIPSAVE        (1U << 3)
788 #define CPUID_SVM_TSCSCALE        (1U << 4)
789 #define CPUID_SVM_VMCBCLEAN       (1U << 5)
790 #define CPUID_SVM_FLUSHASID       (1U << 6)
791 #define CPUID_SVM_DECODEASSIST    (1U << 7)
792 #define CPUID_SVM_PAUSEFILTER     (1U << 10)
793 #define CPUID_SVM_PFTHRESHOLD     (1U << 12)
794 #define CPUID_SVM_AVIC            (1U << 13)
795 #define CPUID_SVM_V_VMSAVE_VMLOAD (1U << 15)
796 #define CPUID_SVM_VGIF            (1U << 16)
797 #define CPUID_SVM_VNMI            (1U << 25)
798 #define CPUID_SVM_SVME_ADDR_CHK   (1U << 28)
799 
800 /* Support RDFSBASE/RDGSBASE/WRFSBASE/WRGSBASE */
801 #define CPUID_7_0_EBX_FSGSBASE          (1U << 0)
802 /* Support SGX */
803 #define CPUID_7_0_EBX_SGX               (1U << 2)
804 /* 1st Group of Advanced Bit Manipulation Extensions */
805 #define CPUID_7_0_EBX_BMI1              (1U << 3)
806 /* Hardware Lock Elision */
807 #define CPUID_7_0_EBX_HLE               (1U << 4)
808 /* Intel Advanced Vector Extensions 2 */
809 #define CPUID_7_0_EBX_AVX2              (1U << 5)
810 /* Supervisor-mode Execution Prevention */
811 #define CPUID_7_0_EBX_SMEP              (1U << 7)
812 /* 2nd Group of Advanced Bit Manipulation Extensions */
813 #define CPUID_7_0_EBX_BMI2              (1U << 8)
814 /* Enhanced REP MOVSB/STOSB */
815 #define CPUID_7_0_EBX_ERMS              (1U << 9)
816 /* Invalidate Process-Context Identifier */
817 #define CPUID_7_0_EBX_INVPCID           (1U << 10)
818 /* Restricted Transactional Memory */
819 #define CPUID_7_0_EBX_RTM               (1U << 11)
820 /* Memory Protection Extension */
821 #define CPUID_7_0_EBX_MPX               (1U << 14)
822 /* AVX-512 Foundation */
823 #define CPUID_7_0_EBX_AVX512F           (1U << 16)
824 /* AVX-512 Doubleword & Quadword Instruction */
825 #define CPUID_7_0_EBX_AVX512DQ          (1U << 17)
826 /* Read Random SEED */
827 #define CPUID_7_0_EBX_RDSEED            (1U << 18)
828 /* ADCX and ADOX instructions */
829 #define CPUID_7_0_EBX_ADX               (1U << 19)
830 /* Supervisor Mode Access Prevention */
831 #define CPUID_7_0_EBX_SMAP              (1U << 20)
832 /* AVX-512 Integer Fused Multiply Add */
833 #define CPUID_7_0_EBX_AVX512IFMA        (1U << 21)
834 /* Flush a Cache Line Optimized */
835 #define CPUID_7_0_EBX_CLFLUSHOPT        (1U << 23)
836 /* Cache Line Write Back */
837 #define CPUID_7_0_EBX_CLWB              (1U << 24)
838 /* Intel Processor Trace */
839 #define CPUID_7_0_EBX_INTEL_PT          (1U << 25)
840 /* AVX-512 Prefetch */
841 #define CPUID_7_0_EBX_AVX512PF          (1U << 26)
842 /* AVX-512 Exponential and Reciprocal */
843 #define CPUID_7_0_EBX_AVX512ER          (1U << 27)
844 /* AVX-512 Conflict Detection */
845 #define CPUID_7_0_EBX_AVX512CD          (1U << 28)
846 /* SHA1/SHA256 Instruction Extensions */
847 #define CPUID_7_0_EBX_SHA_NI            (1U << 29)
848 /* AVX-512 Byte and Word Instructions */
849 #define CPUID_7_0_EBX_AVX512BW          (1U << 30)
850 /* AVX-512 Vector Length Extensions */
851 #define CPUID_7_0_EBX_AVX512VL          (1U << 31)
852 
853 /* AVX-512 Vector Byte Manipulation Instruction */
854 #define CPUID_7_0_ECX_AVX512_VBMI       (1U << 1)
855 /* User-Mode Instruction Prevention */
856 #define CPUID_7_0_ECX_UMIP              (1U << 2)
857 /* Protection Keys for User-mode Pages */
858 #define CPUID_7_0_ECX_PKU               (1U << 3)
859 /* OS Enable Protection Keys */
860 #define CPUID_7_0_ECX_OSPKE             (1U << 4)
861 /* UMONITOR/UMWAIT/TPAUSE Instructions */
862 #define CPUID_7_0_ECX_WAITPKG           (1U << 5)
863 /* Additional AVX-512 Vector Byte Manipulation Instruction */
864 #define CPUID_7_0_ECX_AVX512_VBMI2      (1U << 6)
865 /* Galois Field New Instructions */
866 #define CPUID_7_0_ECX_GFNI              (1U << 8)
867 /* Vector AES Instructions */
868 #define CPUID_7_0_ECX_VAES              (1U << 9)
869 /* Carry-Less Multiplication Quadword */
870 #define CPUID_7_0_ECX_VPCLMULQDQ        (1U << 10)
871 /* Vector Neural Network Instructions */
872 #define CPUID_7_0_ECX_AVX512VNNI        (1U << 11)
873 /* Support for VPOPCNT[B,W] and VPSHUFBITQMB */
874 #define CPUID_7_0_ECX_AVX512BITALG      (1U << 12)
875 /* POPCNT for vectors of DW/QW */
876 #define CPUID_7_0_ECX_AVX512_VPOPCNTDQ  (1U << 14)
877 /* 5-level Page Tables */
878 #define CPUID_7_0_ECX_LA57              (1U << 16)
879 /* Read Processor ID */
880 #define CPUID_7_0_ECX_RDPID             (1U << 22)
881 /* Bus Lock Debug Exception */
882 #define CPUID_7_0_ECX_BUS_LOCK_DETECT   (1U << 24)
883 /* Cache Line Demote Instruction */
884 #define CPUID_7_0_ECX_CLDEMOTE          (1U << 25)
885 /* Move Doubleword as Direct Store Instruction */
886 #define CPUID_7_0_ECX_MOVDIRI           (1U << 27)
887 /* Move 64 Bytes as Direct Store Instruction */
888 #define CPUID_7_0_ECX_MOVDIR64B         (1U << 28)
889 /* Support SGX Launch Control */
890 #define CPUID_7_0_ECX_SGX_LC            (1U << 30)
891 /* Protection Keys for Supervisor-mode Pages */
892 #define CPUID_7_0_ECX_PKS               (1U << 31)
893 
894 /* AVX512 Neural Network Instructions */
895 #define CPUID_7_0_EDX_AVX512_4VNNIW     (1U << 2)
896 /* AVX512 Multiply Accumulation Single Precision */
897 #define CPUID_7_0_EDX_AVX512_4FMAPS     (1U << 3)
898 /* Fast Short Rep Mov */
899 #define CPUID_7_0_EDX_FSRM              (1U << 4)
900 /* AVX512 Vector Pair Intersection to a Pair of Mask Registers */
901 #define CPUID_7_0_EDX_AVX512_VP2INTERSECT (1U << 8)
902 /* SERIALIZE instruction */
903 #define CPUID_7_0_EDX_SERIALIZE         (1U << 14)
904 /* TSX Suspend Load Address Tracking instruction */
905 #define CPUID_7_0_EDX_TSX_LDTRK         (1U << 16)
906 /* Architectural LBRs */
907 #define CPUID_7_0_EDX_ARCH_LBR          (1U << 19)
908 /* AMX_BF16 instruction */
909 #define CPUID_7_0_EDX_AMX_BF16          (1U << 22)
910 /* AVX512_FP16 instruction */
911 #define CPUID_7_0_EDX_AVX512_FP16       (1U << 23)
912 /* AMX tile (two-dimensional register) */
913 #define CPUID_7_0_EDX_AMX_TILE          (1U << 24)
914 /* AMX_INT8 instruction */
915 #define CPUID_7_0_EDX_AMX_INT8          (1U << 25)
916 /* Speculation Control */
917 #define CPUID_7_0_EDX_SPEC_CTRL         (1U << 26)
918 /* Single Thread Indirect Branch Predictors */
919 #define CPUID_7_0_EDX_STIBP             (1U << 27)
920 /* Flush L1D cache */
921 #define CPUID_7_0_EDX_FLUSH_L1D         (1U << 28)
922 /* Arch Capabilities */
923 #define CPUID_7_0_EDX_ARCH_CAPABILITIES (1U << 29)
924 /* Core Capability */
925 #define CPUID_7_0_EDX_CORE_CAPABILITY   (1U << 30)
926 /* Speculative Store Bypass Disable */
927 #define CPUID_7_0_EDX_SPEC_CTRL_SSBD    (1U << 31)
928 
929 /* AVX VNNI Instruction */
930 #define CPUID_7_1_EAX_AVX_VNNI          (1U << 4)
931 /* AVX512 BFloat16 Instruction */
932 #define CPUID_7_1_EAX_AVX512_BF16       (1U << 5)
933 /* CMPCCXADD Instructions */
934 #define CPUID_7_1_EAX_CMPCCXADD         (1U << 7)
935 /* Fast Zero REP MOVS */
936 #define CPUID_7_1_EAX_FZRM              (1U << 10)
937 /* Fast Short REP STOS */
938 #define CPUID_7_1_EAX_FSRS              (1U << 11)
939 /* Fast Short REP CMPS/SCAS */
940 #define CPUID_7_1_EAX_FSRC              (1U << 12)
941 /* Support Tile Computational Operations on FP16 Numbers */
942 #define CPUID_7_1_EAX_AMX_FP16          (1U << 21)
943 /* Support for VPMADD52[H,L]UQ */
944 #define CPUID_7_1_EAX_AVX_IFMA          (1U << 23)
945 /* Linear Address Masking */
946 #define CPUID_7_1_EAX_LAM               (1U << 26)
947 
948 /* Support for VPDPB[SU,UU,SS]D[,S] */
949 #define CPUID_7_1_EDX_AVX_VNNI_INT8     (1U << 4)
950 /* AVX NE CONVERT Instructions */
951 #define CPUID_7_1_EDX_AVX_NE_CONVERT    (1U << 5)
952 /* AMX COMPLEX Instructions */
953 #define CPUID_7_1_EDX_AMX_COMPLEX       (1U << 8)
954 /* PREFETCHIT0/1 Instructions */
955 #define CPUID_7_1_EDX_PREFETCHITI       (1U << 14)
956 /* Flexible return and event delivery (FRED) */
957 #define CPUID_7_1_EAX_FRED              (1U << 17)
958 /* Load into IA32_KERNEL_GS_BASE (LKGS) */
959 #define CPUID_7_1_EAX_LKGS              (1U << 18)
960 /* Non-Serializing Write to Model Specific Register (WRMSRNS) */
961 #define CPUID_7_1_EAX_WRMSRNS           (1U << 19)
962 
963 /* Do not exhibit MXCSR Configuration Dependent Timing (MCDT) behavior */
964 #define CPUID_7_2_EDX_MCDT_NO           (1U << 5)
965 
966 /* XFD Extend Feature Disabled */
967 #define CPUID_D_1_EAX_XFD               (1U << 4)
968 
969 /* Packets which contain IP payload have LIP values */
970 #define CPUID_14_0_ECX_LIP              (1U << 31)
971 
972 /* CLZERO instruction */
973 #define CPUID_8000_0008_EBX_CLZERO      (1U << 0)
974 /* Always save/restore FP error pointers */
975 #define CPUID_8000_0008_EBX_XSAVEERPTR  (1U << 2)
976 /* Write back and do not invalidate cache */
977 #define CPUID_8000_0008_EBX_WBNOINVD    (1U << 9)
978 /* Indirect Branch Prediction Barrier */
979 #define CPUID_8000_0008_EBX_IBPB        (1U << 12)
980 /* Indirect Branch Restricted Speculation */
981 #define CPUID_8000_0008_EBX_IBRS        (1U << 14)
982 /* Single Thread Indirect Branch Predictors */
983 #define CPUID_8000_0008_EBX_STIBP       (1U << 15)
984 /* STIBP mode has enhanced performance and may be left always on */
985 #define CPUID_8000_0008_EBX_STIBP_ALWAYS_ON    (1U << 17)
986 /* Speculative Store Bypass Disable */
987 #define CPUID_8000_0008_EBX_AMD_SSBD    (1U << 24)
988 /* Predictive Store Forwarding Disable */
989 #define CPUID_8000_0008_EBX_AMD_PSFD    (1U << 28)
990 
991 /* Processor ignores nested data breakpoints */
992 #define CPUID_8000_0021_EAX_No_NESTED_DATA_BP    (1U << 0)
993 /* LFENCE is always serializing */
994 #define CPUID_8000_0021_EAX_LFENCE_ALWAYS_SERIALIZING    (1U << 2)
995 /* Null Selector Clears Base */
996 #define CPUID_8000_0021_EAX_NULL_SEL_CLR_BASE    (1U << 6)
997 /* Automatic IBRS */
998 #define CPUID_8000_0021_EAX_AUTO_IBRS   (1U << 8)
999 
1000 #define CPUID_XSAVE_XSAVEOPT   (1U << 0)
1001 #define CPUID_XSAVE_XSAVEC     (1U << 1)
1002 #define CPUID_XSAVE_XGETBV1    (1U << 2)
1003 #define CPUID_XSAVE_XSAVES     (1U << 3)
1004 
1005 #define CPUID_6_EAX_ARAT       (1U << 2)
1006 
1007 /* CPUID[0x80000007].EDX flags: */
1008 #define CPUID_APM_INVTSC       (1U << 8)
1009 
1010 #define CPUID_VENDOR_SZ      12
1011 
1012 #define CPUID_VENDOR_INTEL_1 0x756e6547 /* "Genu" */
1013 #define CPUID_VENDOR_INTEL_2 0x49656e69 /* "ineI" */
1014 #define CPUID_VENDOR_INTEL_3 0x6c65746e /* "ntel" */
1015 #define CPUID_VENDOR_INTEL "GenuineIntel"
1016 
1017 #define CPUID_VENDOR_AMD_1   0x68747541 /* "Auth" */
1018 #define CPUID_VENDOR_AMD_2   0x69746e65 /* "enti" */
1019 #define CPUID_VENDOR_AMD_3   0x444d4163 /* "cAMD" */
1020 #define CPUID_VENDOR_AMD   "AuthenticAMD"
1021 
1022 #define CPUID_VENDOR_VIA   "CentaurHauls"
1023 
1024 #define CPUID_VENDOR_HYGON    "HygonGenuine"
1025 
1026 #define IS_INTEL_CPU(env) ((env)->cpuid_vendor1 == CPUID_VENDOR_INTEL_1 && \
1027                            (env)->cpuid_vendor2 == CPUID_VENDOR_INTEL_2 && \
1028                            (env)->cpuid_vendor3 == CPUID_VENDOR_INTEL_3)
1029 #define IS_AMD_CPU(env) ((env)->cpuid_vendor1 == CPUID_VENDOR_AMD_1 && \
1030                          (env)->cpuid_vendor2 == CPUID_VENDOR_AMD_2 && \
1031                          (env)->cpuid_vendor3 == CPUID_VENDOR_AMD_3)
1032 
1033 #define CPUID_MWAIT_IBE     (1U << 1) /* Interrupts can exit capability */
1034 #define CPUID_MWAIT_EMX     (1U << 0) /* enumeration supported */
1035 
1036 /* CPUID[0xB].ECX level types */
1037 #define CPUID_B_ECX_TOPO_LEVEL_INVALID  0
1038 #define CPUID_B_ECX_TOPO_LEVEL_SMT      1
1039 #define CPUID_B_ECX_TOPO_LEVEL_CORE     2
1040 
1041 /* COUID[0x1F].ECX level types */
1042 #define CPUID_1F_ECX_TOPO_LEVEL_INVALID  CPUID_B_ECX_TOPO_LEVEL_INVALID
1043 #define CPUID_1F_ECX_TOPO_LEVEL_SMT      CPUID_B_ECX_TOPO_LEVEL_SMT
1044 #define CPUID_1F_ECX_TOPO_LEVEL_CORE     CPUID_B_ECX_TOPO_LEVEL_CORE
1045 #define CPUID_1F_ECX_TOPO_LEVEL_MODULE   3
1046 #define CPUID_1F_ECX_TOPO_LEVEL_DIE      5
1047 
1048 /* MSR Feature Bits */
1049 #define MSR_ARCH_CAP_RDCL_NO            (1U << 0)
1050 #define MSR_ARCH_CAP_IBRS_ALL           (1U << 1)
1051 #define MSR_ARCH_CAP_RSBA               (1U << 2)
1052 #define MSR_ARCH_CAP_SKIP_L1DFL_VMENTRY (1U << 3)
1053 #define MSR_ARCH_CAP_SSB_NO             (1U << 4)
1054 #define MSR_ARCH_CAP_MDS_NO             (1U << 5)
1055 #define MSR_ARCH_CAP_PSCHANGE_MC_NO     (1U << 6)
1056 #define MSR_ARCH_CAP_TSX_CTRL_MSR       (1U << 7)
1057 #define MSR_ARCH_CAP_TAA_NO             (1U << 8)
1058 #define MSR_ARCH_CAP_SBDR_SSDP_NO       (1U << 13)
1059 #define MSR_ARCH_CAP_FBSDP_NO           (1U << 14)
1060 #define MSR_ARCH_CAP_PSDP_NO            (1U << 15)
1061 #define MSR_ARCH_CAP_FB_CLEAR           (1U << 17)
1062 #define MSR_ARCH_CAP_PBRSB_NO           (1U << 24)
1063 
1064 #define MSR_CORE_CAP_SPLIT_LOCK_DETECT  (1U << 5)
1065 
1066 /* VMX MSR features */
1067 #define MSR_VMX_BASIC_VMCS_REVISION_MASK             0x7FFFFFFFull
1068 #define MSR_VMX_BASIC_VMXON_REGION_SIZE_MASK         (0x00001FFFull << 32)
1069 #define MSR_VMX_BASIC_VMCS_MEM_TYPE_MASK             (0x003C0000ull << 32)
1070 #define MSR_VMX_BASIC_DUAL_MONITOR                   (1ULL << 49)
1071 #define MSR_VMX_BASIC_INS_OUTS                       (1ULL << 54)
1072 #define MSR_VMX_BASIC_TRUE_CTLS                      (1ULL << 55)
1073 #define MSR_VMX_BASIC_ANY_ERRCODE                    (1ULL << 56)
1074 
1075 #define MSR_VMX_MISC_PREEMPTION_TIMER_SHIFT_MASK     0x1Full
1076 #define MSR_VMX_MISC_STORE_LMA                       (1ULL << 5)
1077 #define MSR_VMX_MISC_ACTIVITY_HLT                    (1ULL << 6)
1078 #define MSR_VMX_MISC_ACTIVITY_SHUTDOWN               (1ULL << 7)
1079 #define MSR_VMX_MISC_ACTIVITY_WAIT_SIPI              (1ULL << 8)
1080 #define MSR_VMX_MISC_MAX_MSR_LIST_SIZE_MASK          0x0E000000ull
1081 #define MSR_VMX_MISC_VMWRITE_VMEXIT                  (1ULL << 29)
1082 #define MSR_VMX_MISC_ZERO_LEN_INJECT                 (1ULL << 30)
1083 
1084 #define MSR_VMX_EPT_EXECONLY                         (1ULL << 0)
1085 #define MSR_VMX_EPT_PAGE_WALK_LENGTH_4               (1ULL << 6)
1086 #define MSR_VMX_EPT_PAGE_WALK_LENGTH_5               (1ULL << 7)
1087 #define MSR_VMX_EPT_UC                               (1ULL << 8)
1088 #define MSR_VMX_EPT_WB                               (1ULL << 14)
1089 #define MSR_VMX_EPT_2MB                              (1ULL << 16)
1090 #define MSR_VMX_EPT_1GB                              (1ULL << 17)
1091 #define MSR_VMX_EPT_INVEPT                           (1ULL << 20)
1092 #define MSR_VMX_EPT_AD_BITS                          (1ULL << 21)
1093 #define MSR_VMX_EPT_ADVANCED_VMEXIT_INFO             (1ULL << 22)
1094 #define MSR_VMX_EPT_INVEPT_SINGLE_CONTEXT            (1ULL << 25)
1095 #define MSR_VMX_EPT_INVEPT_ALL_CONTEXT               (1ULL << 26)
1096 #define MSR_VMX_EPT_INVVPID                          (1ULL << 32)
1097 #define MSR_VMX_EPT_INVVPID_SINGLE_ADDR              (1ULL << 40)
1098 #define MSR_VMX_EPT_INVVPID_SINGLE_CONTEXT           (1ULL << 41)
1099 #define MSR_VMX_EPT_INVVPID_ALL_CONTEXT              (1ULL << 42)
1100 #define MSR_VMX_EPT_INVVPID_SINGLE_CONTEXT_NOGLOBALS (1ULL << 43)
1101 
1102 #define MSR_VMX_VMFUNC_EPT_SWITCHING                 (1ULL << 0)
1103 
1104 
1105 /* VMX controls */
1106 #define VMX_CPU_BASED_VIRTUAL_INTR_PENDING          0x00000004
1107 #define VMX_CPU_BASED_USE_TSC_OFFSETING             0x00000008
1108 #define VMX_CPU_BASED_HLT_EXITING                   0x00000080
1109 #define VMX_CPU_BASED_INVLPG_EXITING                0x00000200
1110 #define VMX_CPU_BASED_MWAIT_EXITING                 0x00000400
1111 #define VMX_CPU_BASED_RDPMC_EXITING                 0x00000800
1112 #define VMX_CPU_BASED_RDTSC_EXITING                 0x00001000
1113 #define VMX_CPU_BASED_CR3_LOAD_EXITING              0x00008000
1114 #define VMX_CPU_BASED_CR3_STORE_EXITING             0x00010000
1115 #define VMX_CPU_BASED_CR8_LOAD_EXITING              0x00080000
1116 #define VMX_CPU_BASED_CR8_STORE_EXITING             0x00100000
1117 #define VMX_CPU_BASED_TPR_SHADOW                    0x00200000
1118 #define VMX_CPU_BASED_VIRTUAL_NMI_PENDING           0x00400000
1119 #define VMX_CPU_BASED_MOV_DR_EXITING                0x00800000
1120 #define VMX_CPU_BASED_UNCOND_IO_EXITING             0x01000000
1121 #define VMX_CPU_BASED_USE_IO_BITMAPS                0x02000000
1122 #define VMX_CPU_BASED_MONITOR_TRAP_FLAG             0x08000000
1123 #define VMX_CPU_BASED_USE_MSR_BITMAPS               0x10000000
1124 #define VMX_CPU_BASED_MONITOR_EXITING               0x20000000
1125 #define VMX_CPU_BASED_PAUSE_EXITING                 0x40000000
1126 #define VMX_CPU_BASED_ACTIVATE_SECONDARY_CONTROLS   0x80000000
1127 
1128 #define VMX_SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES 0x00000001
1129 #define VMX_SECONDARY_EXEC_ENABLE_EPT               0x00000002
1130 #define VMX_SECONDARY_EXEC_DESC                     0x00000004
1131 #define VMX_SECONDARY_EXEC_RDTSCP                   0x00000008
1132 #define VMX_SECONDARY_EXEC_VIRTUALIZE_X2APIC_MODE   0x00000010
1133 #define VMX_SECONDARY_EXEC_ENABLE_VPID              0x00000020
1134 #define VMX_SECONDARY_EXEC_WBINVD_EXITING           0x00000040
1135 #define VMX_SECONDARY_EXEC_UNRESTRICTED_GUEST       0x00000080
1136 #define VMX_SECONDARY_EXEC_APIC_REGISTER_VIRT       0x00000100
1137 #define VMX_SECONDARY_EXEC_VIRTUAL_INTR_DELIVERY    0x00000200
1138 #define VMX_SECONDARY_EXEC_PAUSE_LOOP_EXITING       0x00000400
1139 #define VMX_SECONDARY_EXEC_RDRAND_EXITING           0x00000800
1140 #define VMX_SECONDARY_EXEC_ENABLE_INVPCID           0x00001000
1141 #define VMX_SECONDARY_EXEC_ENABLE_VMFUNC            0x00002000
1142 #define VMX_SECONDARY_EXEC_SHADOW_VMCS              0x00004000
1143 #define VMX_SECONDARY_EXEC_ENCLS_EXITING            0x00008000
1144 #define VMX_SECONDARY_EXEC_RDSEED_EXITING           0x00010000
1145 #define VMX_SECONDARY_EXEC_ENABLE_PML               0x00020000
1146 #define VMX_SECONDARY_EXEC_XSAVES                   0x00100000
1147 #define VMX_SECONDARY_EXEC_TSC_SCALING              0x02000000
1148 #define VMX_SECONDARY_EXEC_ENABLE_USER_WAIT_PAUSE   0x04000000
1149 
1150 #define VMX_PIN_BASED_EXT_INTR_MASK                 0x00000001
1151 #define VMX_PIN_BASED_NMI_EXITING                   0x00000008
1152 #define VMX_PIN_BASED_VIRTUAL_NMIS                  0x00000020
1153 #define VMX_PIN_BASED_VMX_PREEMPTION_TIMER          0x00000040
1154 #define VMX_PIN_BASED_POSTED_INTR                   0x00000080
1155 
1156 #define VMX_VM_EXIT_SAVE_DEBUG_CONTROLS             0x00000004
1157 #define VMX_VM_EXIT_HOST_ADDR_SPACE_SIZE            0x00000200
1158 #define VMX_VM_EXIT_LOAD_IA32_PERF_GLOBAL_CTRL      0x00001000
1159 #define VMX_VM_EXIT_ACK_INTR_ON_EXIT                0x00008000
1160 #define VMX_VM_EXIT_SAVE_IA32_PAT                   0x00040000
1161 #define VMX_VM_EXIT_LOAD_IA32_PAT                   0x00080000
1162 #define VMX_VM_EXIT_SAVE_IA32_EFER                  0x00100000
1163 #define VMX_VM_EXIT_LOAD_IA32_EFER                  0x00200000
1164 #define VMX_VM_EXIT_SAVE_VMX_PREEMPTION_TIMER       0x00400000
1165 #define VMX_VM_EXIT_CLEAR_BNDCFGS                   0x00800000
1166 #define VMX_VM_EXIT_PT_CONCEAL_PIP                  0x01000000
1167 #define VMX_VM_EXIT_CLEAR_IA32_RTIT_CTL             0x02000000
1168 #define VMX_VM_EXIT_LOAD_IA32_PKRS                  0x20000000
1169 
1170 #define VMX_VM_ENTRY_LOAD_DEBUG_CONTROLS            0x00000004
1171 #define VMX_VM_ENTRY_IA32E_MODE                     0x00000200
1172 #define VMX_VM_ENTRY_SMM                            0x00000400
1173 #define VMX_VM_ENTRY_DEACT_DUAL_MONITOR             0x00000800
1174 #define VMX_VM_ENTRY_LOAD_IA32_PERF_GLOBAL_CTRL     0x00002000
1175 #define VMX_VM_ENTRY_LOAD_IA32_PAT                  0x00004000
1176 #define VMX_VM_ENTRY_LOAD_IA32_EFER                 0x00008000
1177 #define VMX_VM_ENTRY_LOAD_BNDCFGS                   0x00010000
1178 #define VMX_VM_ENTRY_PT_CONCEAL_PIP                 0x00020000
1179 #define VMX_VM_ENTRY_LOAD_IA32_RTIT_CTL             0x00040000
1180 #define VMX_VM_ENTRY_LOAD_IA32_PKRS                 0x00400000
1181 
1182 /* Supported Hyper-V Enlightenments */
1183 #define HYPERV_FEAT_RELAXED             0
1184 #define HYPERV_FEAT_VAPIC               1
1185 #define HYPERV_FEAT_TIME                2
1186 #define HYPERV_FEAT_CRASH               3
1187 #define HYPERV_FEAT_RESET               4
1188 #define HYPERV_FEAT_VPINDEX             5
1189 #define HYPERV_FEAT_RUNTIME             6
1190 #define HYPERV_FEAT_SYNIC               7
1191 #define HYPERV_FEAT_STIMER              8
1192 #define HYPERV_FEAT_FREQUENCIES         9
1193 #define HYPERV_FEAT_REENLIGHTENMENT     10
1194 #define HYPERV_FEAT_TLBFLUSH            11
1195 #define HYPERV_FEAT_EVMCS               12
1196 #define HYPERV_FEAT_IPI                 13
1197 #define HYPERV_FEAT_STIMER_DIRECT       14
1198 #define HYPERV_FEAT_AVIC                15
1199 #define HYPERV_FEAT_SYNDBG              16
1200 #define HYPERV_FEAT_MSR_BITMAP          17
1201 #define HYPERV_FEAT_XMM_INPUT           18
1202 #define HYPERV_FEAT_TLBFLUSH_EXT        19
1203 #define HYPERV_FEAT_TLBFLUSH_DIRECT     20
1204 
1205 #ifndef HYPERV_SPINLOCK_NEVER_NOTIFY
1206 #define HYPERV_SPINLOCK_NEVER_NOTIFY             0xFFFFFFFF
1207 #endif
1208 
1209 #define EXCP00_DIVZ	0
1210 #define EXCP01_DB	1
1211 #define EXCP02_NMI	2
1212 #define EXCP03_INT3	3
1213 #define EXCP04_INTO	4
1214 #define EXCP05_BOUND	5
1215 #define EXCP06_ILLOP	6
1216 #define EXCP07_PREX	7
1217 #define EXCP08_DBLE	8
1218 #define EXCP09_XERR	9
1219 #define EXCP0A_TSS	10
1220 #define EXCP0B_NOSEG	11
1221 #define EXCP0C_STACK	12
1222 #define EXCP0D_GPF	13
1223 #define EXCP0E_PAGE	14
1224 #define EXCP10_COPR	16
1225 #define EXCP11_ALGN	17
1226 #define EXCP12_MCHK	18
1227 
1228 #define EXCP_VMEXIT     0x100 /* only for system emulation */
1229 #define EXCP_SYSCALL    0x101 /* only for user emulation */
1230 #define EXCP_VSYSCALL   0x102 /* only for user emulation */
1231 
1232 /* i386-specific interrupt pending bits.  */
1233 #define CPU_INTERRUPT_POLL      CPU_INTERRUPT_TGT_EXT_1
1234 #define CPU_INTERRUPT_SMI       CPU_INTERRUPT_TGT_EXT_2
1235 #define CPU_INTERRUPT_NMI       CPU_INTERRUPT_TGT_EXT_3
1236 #define CPU_INTERRUPT_MCE       CPU_INTERRUPT_TGT_EXT_4
1237 #define CPU_INTERRUPT_VIRQ      CPU_INTERRUPT_TGT_INT_0
1238 #define CPU_INTERRUPT_SIPI      CPU_INTERRUPT_TGT_INT_1
1239 #define CPU_INTERRUPT_TPR       CPU_INTERRUPT_TGT_INT_2
1240 
1241 /* Use a clearer name for this.  */
1242 #define CPU_INTERRUPT_INIT      CPU_INTERRUPT_RESET
1243 
1244 /* Instead of computing the condition codes after each x86 instruction,
1245  * QEMU just stores one operand (called CC_SRC), the result
1246  * (called CC_DST) and the type of operation (called CC_OP). When the
1247  * condition codes are needed, the condition codes can be calculated
1248  * using this information. Condition codes are not generated if they
1249  * are only needed for conditional branches.
1250  */
1251 typedef enum {
1252     CC_OP_DYNAMIC, /* must use dynamic code to get cc_op */
1253     CC_OP_EFLAGS,  /* all cc are explicitly computed, CC_SRC = flags */
1254 
1255     CC_OP_MULB, /* modify all flags, C, O = (CC_SRC != 0) */
1256     CC_OP_MULW,
1257     CC_OP_MULL,
1258     CC_OP_MULQ,
1259 
1260     CC_OP_ADDB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
1261     CC_OP_ADDW,
1262     CC_OP_ADDL,
1263     CC_OP_ADDQ,
1264 
1265     CC_OP_ADCB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
1266     CC_OP_ADCW,
1267     CC_OP_ADCL,
1268     CC_OP_ADCQ,
1269 
1270     CC_OP_SUBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
1271     CC_OP_SUBW,
1272     CC_OP_SUBL,
1273     CC_OP_SUBQ,
1274 
1275     CC_OP_SBBB, /* modify all flags, CC_DST = res, CC_SRC = src1 */
1276     CC_OP_SBBW,
1277     CC_OP_SBBL,
1278     CC_OP_SBBQ,
1279 
1280     CC_OP_LOGICB, /* modify all flags, CC_DST = res */
1281     CC_OP_LOGICW,
1282     CC_OP_LOGICL,
1283     CC_OP_LOGICQ,
1284 
1285     CC_OP_INCB, /* modify all flags except, CC_DST = res, CC_SRC = C */
1286     CC_OP_INCW,
1287     CC_OP_INCL,
1288     CC_OP_INCQ,
1289 
1290     CC_OP_DECB, /* modify all flags except, CC_DST = res, CC_SRC = C  */
1291     CC_OP_DECW,
1292     CC_OP_DECL,
1293     CC_OP_DECQ,
1294 
1295     CC_OP_SHLB, /* modify all flags, CC_DST = res, CC_SRC.msb = C */
1296     CC_OP_SHLW,
1297     CC_OP_SHLL,
1298     CC_OP_SHLQ,
1299 
1300     CC_OP_SARB, /* modify all flags, CC_DST = res, CC_SRC.lsb = C */
1301     CC_OP_SARW,
1302     CC_OP_SARL,
1303     CC_OP_SARQ,
1304 
1305     CC_OP_BMILGB, /* Z,S via CC_DST, C = SRC==0; O=0; P,A undefined */
1306     CC_OP_BMILGW,
1307     CC_OP_BMILGL,
1308     CC_OP_BMILGQ,
1309 
1310     CC_OP_ADCX, /* CC_DST = C, CC_SRC = rest.  */
1311     CC_OP_ADOX, /* CC_DST = O, CC_SRC = rest.  */
1312     CC_OP_ADCOX, /* CC_DST = C, CC_SRC2 = O, CC_SRC = rest.  */
1313 
1314     CC_OP_CLR, /* Z set, all other flags clear.  */
1315     CC_OP_POPCNT, /* Z via CC_SRC, all other flags clear.  */
1316 
1317     CC_OP_NB,
1318 } CCOp;
1319 QEMU_BUILD_BUG_ON(CC_OP_NB >= 128);
1320 
1321 typedef struct SegmentCache {
1322     uint32_t selector;
1323     target_ulong base;
1324     uint32_t limit;
1325     uint32_t flags;
1326 } SegmentCache;
1327 
1328 typedef union MMXReg {
1329     uint8_t  _b_MMXReg[64 / 8];
1330     uint16_t _w_MMXReg[64 / 16];
1331     uint32_t _l_MMXReg[64 / 32];
1332     uint64_t _q_MMXReg[64 / 64];
1333     float32  _s_MMXReg[64 / 32];
1334     float64  _d_MMXReg[64 / 64];
1335 } MMXReg;
1336 
1337 typedef union XMMReg {
1338     uint64_t _q_XMMReg[128 / 64];
1339 } XMMReg;
1340 
1341 typedef union YMMReg {
1342     uint64_t _q_YMMReg[256 / 64];
1343     XMMReg   _x_YMMReg[256 / 128];
1344 } YMMReg;
1345 
1346 typedef union ZMMReg {
1347     uint8_t  _b_ZMMReg[512 / 8];
1348     uint16_t _w_ZMMReg[512 / 16];
1349     uint32_t _l_ZMMReg[512 / 32];
1350     uint64_t _q_ZMMReg[512 / 64];
1351     float16  _h_ZMMReg[512 / 16];
1352     float32  _s_ZMMReg[512 / 32];
1353     float64  _d_ZMMReg[512 / 64];
1354     XMMReg   _x_ZMMReg[512 / 128];
1355     YMMReg   _y_ZMMReg[512 / 256];
1356 } ZMMReg;
1357 
1358 typedef struct BNDReg {
1359     uint64_t lb;
1360     uint64_t ub;
1361 } BNDReg;
1362 
1363 typedef struct BNDCSReg {
1364     uint64_t cfgu;
1365     uint64_t sts;
1366 } BNDCSReg;
1367 
1368 #define BNDCFG_ENABLE       1ULL
1369 #define BNDCFG_BNDPRESERVE  2ULL
1370 #define BNDCFG_BDIR_MASK    TARGET_PAGE_MASK
1371 
1372 #if HOST_BIG_ENDIAN
1373 #define ZMM_B(n) _b_ZMMReg[63 - (n)]
1374 #define ZMM_W(n) _w_ZMMReg[31 - (n)]
1375 #define ZMM_L(n) _l_ZMMReg[15 - (n)]
1376 #define ZMM_H(n) _h_ZMMReg[31 - (n)]
1377 #define ZMM_S(n) _s_ZMMReg[15 - (n)]
1378 #define ZMM_Q(n) _q_ZMMReg[7 - (n)]
1379 #define ZMM_D(n) _d_ZMMReg[7 - (n)]
1380 #define ZMM_X(n) _x_ZMMReg[3 - (n)]
1381 #define ZMM_Y(n) _y_ZMMReg[1 - (n)]
1382 
1383 #define XMM_Q(n) _q_XMMReg[1 - (n)]
1384 
1385 #define YMM_Q(n) _q_YMMReg[3 - (n)]
1386 #define YMM_X(n) _x_YMMReg[1 - (n)]
1387 
1388 #define MMX_B(n) _b_MMXReg[7 - (n)]
1389 #define MMX_W(n) _w_MMXReg[3 - (n)]
1390 #define MMX_L(n) _l_MMXReg[1 - (n)]
1391 #define MMX_S(n) _s_MMXReg[1 - (n)]
1392 #else
1393 #define ZMM_B(n) _b_ZMMReg[n]
1394 #define ZMM_W(n) _w_ZMMReg[n]
1395 #define ZMM_L(n) _l_ZMMReg[n]
1396 #define ZMM_H(n) _h_ZMMReg[n]
1397 #define ZMM_S(n) _s_ZMMReg[n]
1398 #define ZMM_Q(n) _q_ZMMReg[n]
1399 #define ZMM_D(n) _d_ZMMReg[n]
1400 #define ZMM_X(n) _x_ZMMReg[n]
1401 #define ZMM_Y(n) _y_ZMMReg[n]
1402 
1403 #define XMM_Q(n) _q_XMMReg[n]
1404 
1405 #define YMM_Q(n) _q_YMMReg[n]
1406 #define YMM_X(n) _x_YMMReg[n]
1407 
1408 #define MMX_B(n) _b_MMXReg[n]
1409 #define MMX_W(n) _w_MMXReg[n]
1410 #define MMX_L(n) _l_MMXReg[n]
1411 #define MMX_S(n) _s_MMXReg[n]
1412 #endif
1413 #define MMX_Q(n) _q_MMXReg[n]
1414 
1415 typedef union {
1416     floatx80 d __attribute__((aligned(16)));
1417     MMXReg mmx;
1418 } FPReg;
1419 
1420 typedef struct {
1421     uint64_t base;
1422     uint64_t mask;
1423 } MTRRVar;
1424 
1425 #define CPU_NB_REGS64 16
1426 #define CPU_NB_REGS32 8
1427 
1428 #ifdef TARGET_X86_64
1429 #define CPU_NB_REGS CPU_NB_REGS64
1430 #else
1431 #define CPU_NB_REGS CPU_NB_REGS32
1432 #endif
1433 
1434 #define MAX_FIXED_COUNTERS 3
1435 #define MAX_GP_COUNTERS    (MSR_IA32_PERF_STATUS - MSR_P6_EVNTSEL0)
1436 
1437 #define TARGET_INSN_START_EXTRA_WORDS 1
1438 
1439 #define NB_OPMASK_REGS 8
1440 
1441 /* CPU can't have 0xFFFFFFFF APIC ID, use that value to distinguish
1442  * that APIC ID hasn't been set yet
1443  */
1444 #define UNASSIGNED_APIC_ID 0xFFFFFFFF
1445 
1446 typedef struct X86LegacyXSaveArea {
1447     uint16_t fcw;
1448     uint16_t fsw;
1449     uint8_t ftw;
1450     uint8_t reserved;
1451     uint16_t fpop;
1452     union {
1453         struct {
1454             uint64_t fpip;
1455             uint64_t fpdp;
1456         };
1457         struct {
1458             uint32_t fip;
1459             uint32_t fcs;
1460             uint32_t foo;
1461             uint32_t fos;
1462         };
1463     };
1464     uint32_t mxcsr;
1465     uint32_t mxcsr_mask;
1466     FPReg fpregs[8];
1467     uint8_t xmm_regs[16][16];
1468     uint32_t hw_reserved[12];
1469     uint32_t sw_reserved[12];
1470 } X86LegacyXSaveArea;
1471 
1472 QEMU_BUILD_BUG_ON(sizeof(X86LegacyXSaveArea) != 512);
1473 
1474 typedef struct X86XSaveHeader {
1475     uint64_t xstate_bv;
1476     uint64_t xcomp_bv;
1477     uint64_t reserve0;
1478     uint8_t reserved[40];
1479 } X86XSaveHeader;
1480 
1481 /* Ext. save area 2: AVX State */
1482 typedef struct XSaveAVX {
1483     uint8_t ymmh[16][16];
1484 } XSaveAVX;
1485 
1486 /* Ext. save area 3: BNDREG */
1487 typedef struct XSaveBNDREG {
1488     BNDReg bnd_regs[4];
1489 } XSaveBNDREG;
1490 
1491 /* Ext. save area 4: BNDCSR */
1492 typedef union XSaveBNDCSR {
1493     BNDCSReg bndcsr;
1494     uint8_t data[64];
1495 } XSaveBNDCSR;
1496 
1497 /* Ext. save area 5: Opmask */
1498 typedef struct XSaveOpmask {
1499     uint64_t opmask_regs[NB_OPMASK_REGS];
1500 } XSaveOpmask;
1501 
1502 /* Ext. save area 6: ZMM_Hi256 */
1503 typedef struct XSaveZMM_Hi256 {
1504     uint8_t zmm_hi256[16][32];
1505 } XSaveZMM_Hi256;
1506 
1507 /* Ext. save area 7: Hi16_ZMM */
1508 typedef struct XSaveHi16_ZMM {
1509     uint8_t hi16_zmm[16][64];
1510 } XSaveHi16_ZMM;
1511 
1512 /* Ext. save area 9: PKRU state */
1513 typedef struct XSavePKRU {
1514     uint32_t pkru;
1515     uint32_t padding;
1516 } XSavePKRU;
1517 
1518 /* Ext. save area 17: AMX XTILECFG state */
1519 typedef struct XSaveXTILECFG {
1520     uint8_t xtilecfg[64];
1521 } XSaveXTILECFG;
1522 
1523 /* Ext. save area 18: AMX XTILEDATA state */
1524 typedef struct XSaveXTILEDATA {
1525     uint8_t xtiledata[8][1024];
1526 } XSaveXTILEDATA;
1527 
1528 typedef struct {
1529        uint64_t from;
1530        uint64_t to;
1531        uint64_t info;
1532 } LBREntry;
1533 
1534 #define ARCH_LBR_NR_ENTRIES            32
1535 
1536 /* Ext. save area 19: Supervisor mode Arch LBR state */
1537 typedef struct XSavesArchLBR {
1538     uint64_t lbr_ctl;
1539     uint64_t lbr_depth;
1540     uint64_t ler_from;
1541     uint64_t ler_to;
1542     uint64_t ler_info;
1543     LBREntry lbr_records[ARCH_LBR_NR_ENTRIES];
1544 } XSavesArchLBR;
1545 
1546 QEMU_BUILD_BUG_ON(sizeof(XSaveAVX) != 0x100);
1547 QEMU_BUILD_BUG_ON(sizeof(XSaveBNDREG) != 0x40);
1548 QEMU_BUILD_BUG_ON(sizeof(XSaveBNDCSR) != 0x40);
1549 QEMU_BUILD_BUG_ON(sizeof(XSaveOpmask) != 0x40);
1550 QEMU_BUILD_BUG_ON(sizeof(XSaveZMM_Hi256) != 0x200);
1551 QEMU_BUILD_BUG_ON(sizeof(XSaveHi16_ZMM) != 0x400);
1552 QEMU_BUILD_BUG_ON(sizeof(XSavePKRU) != 0x8);
1553 QEMU_BUILD_BUG_ON(sizeof(XSaveXTILECFG) != 0x40);
1554 QEMU_BUILD_BUG_ON(sizeof(XSaveXTILEDATA) != 0x2000);
1555 QEMU_BUILD_BUG_ON(sizeof(XSavesArchLBR) != 0x328);
1556 
1557 typedef struct ExtSaveArea {
1558     uint32_t feature, bits;
1559     uint32_t offset, size;
1560     uint32_t ecx;
1561 } ExtSaveArea;
1562 
1563 #define XSAVE_STATE_AREA_COUNT (XSTATE_XTILE_DATA_BIT + 1)
1564 
1565 extern ExtSaveArea x86_ext_save_areas[XSAVE_STATE_AREA_COUNT];
1566 
1567 typedef enum TPRAccess {
1568     TPR_ACCESS_READ,
1569     TPR_ACCESS_WRITE,
1570 } TPRAccess;
1571 
1572 /* Cache information data structures: */
1573 
1574 enum CacheType {
1575     DATA_CACHE,
1576     INSTRUCTION_CACHE,
1577     UNIFIED_CACHE
1578 };
1579 
1580 typedef struct CPUCacheInfo {
1581     enum CacheType type;
1582     uint8_t level;
1583     /* Size in bytes */
1584     uint32_t size;
1585     /* Line size, in bytes */
1586     uint16_t line_size;
1587     /*
1588      * Associativity.
1589      * Note: representation of fully-associative caches is not implemented
1590      */
1591     uint8_t associativity;
1592     /* Physical line partitions. CPUID[0x8000001D].EBX, CPUID[4].EBX */
1593     uint8_t partitions;
1594     /* Number of sets. CPUID[0x8000001D].ECX, CPUID[4].ECX */
1595     uint32_t sets;
1596     /*
1597      * Lines per tag.
1598      * AMD-specific: CPUID[0x80000005], CPUID[0x80000006].
1599      * (Is this synonym to @partitions?)
1600      */
1601     uint8_t lines_per_tag;
1602 
1603     /* Self-initializing cache */
1604     bool self_init;
1605     /*
1606      * WBINVD/INVD is not guaranteed to act upon lower level caches of
1607      * non-originating threads sharing this cache.
1608      * CPUID[4].EDX[bit 0], CPUID[0x8000001D].EDX[bit 0]
1609      */
1610     bool no_invd_sharing;
1611     /*
1612      * Cache is inclusive of lower cache levels.
1613      * CPUID[4].EDX[bit 1], CPUID[0x8000001D].EDX[bit 1].
1614      */
1615     bool inclusive;
1616     /*
1617      * A complex function is used to index the cache, potentially using all
1618      * address bits.  CPUID[4].EDX[bit 2].
1619      */
1620     bool complex_indexing;
1621 
1622     /*
1623      * Cache Topology. The level that cache is shared in.
1624      * Used to encode CPUID[4].EAX[bits 25:14] or
1625      * CPUID[0x8000001D].EAX[bits 25:14].
1626      */
1627     enum CPUTopoLevel share_level;
1628 } CPUCacheInfo;
1629 
1630 
1631 typedef struct CPUCaches {
1632         CPUCacheInfo *l1d_cache;
1633         CPUCacheInfo *l1i_cache;
1634         CPUCacheInfo *l2_cache;
1635         CPUCacheInfo *l3_cache;
1636 } CPUCaches;
1637 
1638 typedef struct HVFX86LazyFlags {
1639     target_ulong result;
1640     target_ulong auxbits;
1641 } HVFX86LazyFlags;
1642 
1643 typedef struct CPUArchState {
1644     /* standard registers */
1645     target_ulong regs[CPU_NB_REGS];
1646     target_ulong eip;
1647     target_ulong eflags; /* eflags register. During CPU emulation, CC
1648                         flags and DF are set to zero because they are
1649                         stored elsewhere */
1650 
1651     /* emulator internal eflags handling */
1652     target_ulong cc_dst;
1653     target_ulong cc_src;
1654     target_ulong cc_src2;
1655     uint32_t cc_op;
1656     int32_t df; /* D flag : 1 if D = 0, -1 if D = 1 */
1657     uint32_t hflags; /* TB flags, see HF_xxx constants. These flags
1658                         are known at translation time. */
1659     uint32_t hflags2; /* various other flags, see HF2_xxx constants. */
1660 
1661     /* segments */
1662     SegmentCache segs[6]; /* selector values */
1663     SegmentCache ldt;
1664     SegmentCache tr;
1665     SegmentCache gdt; /* only base and limit are used */
1666     SegmentCache idt; /* only base and limit are used */
1667 
1668     target_ulong cr[5]; /* NOTE: cr1 is unused */
1669 
1670     bool pdptrs_valid;
1671     uint64_t pdptrs[4];
1672     int32_t a20_mask;
1673 
1674     BNDReg bnd_regs[4];
1675     BNDCSReg bndcs_regs;
1676     uint64_t msr_bndcfgs;
1677     uint64_t efer;
1678 
1679     /* Beginning of state preserved by INIT (dummy marker).  */
1680     struct {} start_init_save;
1681 
1682     /* FPU state */
1683     unsigned int fpstt; /* top of stack index */
1684     uint16_t fpus;
1685     uint16_t fpuc;
1686     uint8_t fptags[8];   /* 0 = valid, 1 = empty */
1687     FPReg fpregs[8];
1688     /* KVM-only so far */
1689     uint16_t fpop;
1690     uint16_t fpcs;
1691     uint16_t fpds;
1692     uint64_t fpip;
1693     uint64_t fpdp;
1694 
1695     /* emulator internal variables */
1696     float_status fp_status;
1697     floatx80 ft0;
1698 
1699     float_status mmx_status; /* for 3DNow! float ops */
1700     float_status sse_status;
1701     uint32_t mxcsr;
1702     ZMMReg xmm_regs[CPU_NB_REGS == 8 ? 8 : 32] QEMU_ALIGNED(16);
1703     ZMMReg xmm_t0 QEMU_ALIGNED(16);
1704     MMXReg mmx_t0;
1705 
1706     uint64_t opmask_regs[NB_OPMASK_REGS];
1707 #ifdef TARGET_X86_64
1708     uint8_t xtilecfg[64];
1709     uint8_t xtiledata[8192];
1710 #endif
1711 
1712     /* sysenter registers */
1713     uint32_t sysenter_cs;
1714     target_ulong sysenter_esp;
1715     target_ulong sysenter_eip;
1716     uint64_t star;
1717 
1718     uint64_t vm_hsave;
1719 
1720 #ifdef TARGET_X86_64
1721     target_ulong lstar;
1722     target_ulong cstar;
1723     target_ulong fmask;
1724     target_ulong kernelgsbase;
1725 #endif
1726 
1727     uint64_t tsc_adjust;
1728     uint64_t tsc_deadline;
1729     uint64_t tsc_aux;
1730 
1731     uint64_t xcr0;
1732 
1733     uint64_t mcg_status;
1734     uint64_t msr_ia32_misc_enable;
1735     uint64_t msr_ia32_feature_control;
1736     uint64_t msr_ia32_sgxlepubkeyhash[4];
1737 
1738     uint64_t msr_fixed_ctr_ctrl;
1739     uint64_t msr_global_ctrl;
1740     uint64_t msr_global_status;
1741     uint64_t msr_global_ovf_ctrl;
1742     uint64_t msr_fixed_counters[MAX_FIXED_COUNTERS];
1743     uint64_t msr_gp_counters[MAX_GP_COUNTERS];
1744     uint64_t msr_gp_evtsel[MAX_GP_COUNTERS];
1745 
1746     uint64_t pat;
1747     uint32_t smbase;
1748     uint64_t msr_smi_count;
1749 
1750     uint32_t pkru;
1751     uint32_t pkrs;
1752     uint32_t tsx_ctrl;
1753 
1754     uint64_t spec_ctrl;
1755     uint64_t amd_tsc_scale_msr;
1756     uint64_t virt_ssbd;
1757 
1758     /* End of state preserved by INIT (dummy marker).  */
1759     struct {} end_init_save;
1760 
1761     uint64_t system_time_msr;
1762     uint64_t wall_clock_msr;
1763     uint64_t steal_time_msr;
1764     uint64_t async_pf_en_msr;
1765     uint64_t async_pf_int_msr;
1766     uint64_t pv_eoi_en_msr;
1767     uint64_t poll_control_msr;
1768 
1769     /* Partition-wide HV MSRs, will be updated only on the first vcpu */
1770     uint64_t msr_hv_hypercall;
1771     uint64_t msr_hv_guest_os_id;
1772     uint64_t msr_hv_tsc;
1773     uint64_t msr_hv_syndbg_control;
1774     uint64_t msr_hv_syndbg_status;
1775     uint64_t msr_hv_syndbg_send_page;
1776     uint64_t msr_hv_syndbg_recv_page;
1777     uint64_t msr_hv_syndbg_pending_page;
1778     uint64_t msr_hv_syndbg_options;
1779 
1780     /* Per-VCPU HV MSRs */
1781     uint64_t msr_hv_vapic;
1782     uint64_t msr_hv_crash_params[HV_CRASH_PARAMS];
1783     uint64_t msr_hv_runtime;
1784     uint64_t msr_hv_synic_control;
1785     uint64_t msr_hv_synic_evt_page;
1786     uint64_t msr_hv_synic_msg_page;
1787     uint64_t msr_hv_synic_sint[HV_SINT_COUNT];
1788     uint64_t msr_hv_stimer_config[HV_STIMER_COUNT];
1789     uint64_t msr_hv_stimer_count[HV_STIMER_COUNT];
1790     uint64_t msr_hv_reenlightenment_control;
1791     uint64_t msr_hv_tsc_emulation_control;
1792     uint64_t msr_hv_tsc_emulation_status;
1793 
1794     uint64_t msr_rtit_ctrl;
1795     uint64_t msr_rtit_status;
1796     uint64_t msr_rtit_output_base;
1797     uint64_t msr_rtit_output_mask;
1798     uint64_t msr_rtit_cr3_match;
1799     uint64_t msr_rtit_addrs[MAX_RTIT_ADDRS];
1800 
1801     /* Per-VCPU XFD MSRs */
1802     uint64_t msr_xfd;
1803     uint64_t msr_xfd_err;
1804 
1805     /* Per-VCPU Arch LBR MSRs */
1806     uint64_t msr_lbr_ctl;
1807     uint64_t msr_lbr_depth;
1808     LBREntry lbr_records[ARCH_LBR_NR_ENTRIES];
1809 
1810     /* exception/interrupt handling */
1811     int error_code;
1812     int exception_is_int;
1813     target_ulong exception_next_eip;
1814     target_ulong dr[8]; /* debug registers; note dr4 and dr5 are unused */
1815     union {
1816         struct CPUBreakpoint *cpu_breakpoint[4];
1817         struct CPUWatchpoint *cpu_watchpoint[4];
1818     }; /* break/watchpoints for dr[0..3] */
1819     int old_exception;  /* exception in flight */
1820 
1821     uint64_t vm_vmcb;
1822     uint64_t tsc_offset;
1823     uint64_t intercept;
1824     uint16_t intercept_cr_read;
1825     uint16_t intercept_cr_write;
1826     uint16_t intercept_dr_read;
1827     uint16_t intercept_dr_write;
1828     uint32_t intercept_exceptions;
1829     uint64_t nested_cr3;
1830     uint32_t nested_pg_mode;
1831     uint8_t v_tpr;
1832     uint32_t int_ctl;
1833 
1834     /* KVM states, automatically cleared on reset */
1835     uint8_t nmi_injected;
1836     uint8_t nmi_pending;
1837 
1838     uintptr_t retaddr;
1839 
1840     /* Fields up to this point are cleared by a CPU reset */
1841     struct {} end_reset_fields;
1842 
1843     /* Fields after this point are preserved across CPU reset. */
1844 
1845     /* processor features (e.g. for CPUID insn) */
1846     /* Minimum cpuid leaf 7 value */
1847     uint32_t cpuid_level_func7;
1848     /* Actual cpuid leaf 7 value */
1849     uint32_t cpuid_min_level_func7;
1850     /* Minimum level/xlevel/xlevel2, based on CPU model + features */
1851     uint32_t cpuid_min_level, cpuid_min_xlevel, cpuid_min_xlevel2;
1852     /* Maximum level/xlevel/xlevel2 value for auto-assignment: */
1853     uint32_t cpuid_max_level, cpuid_max_xlevel, cpuid_max_xlevel2;
1854     /* Actual level/xlevel/xlevel2 value: */
1855     uint32_t cpuid_level, cpuid_xlevel, cpuid_xlevel2;
1856     uint32_t cpuid_vendor1;
1857     uint32_t cpuid_vendor2;
1858     uint32_t cpuid_vendor3;
1859     uint32_t cpuid_version;
1860     FeatureWordArray features;
1861     /* Features that were explicitly enabled/disabled */
1862     FeatureWordArray user_features;
1863     uint32_t cpuid_model[12];
1864     /* Cache information for CPUID.  When legacy-cache=on, the cache data
1865      * on each CPUID leaf will be different, because we keep compatibility
1866      * with old QEMU versions.
1867      */
1868     CPUCaches cache_info_cpuid2, cache_info_cpuid4, cache_info_amd;
1869 
1870     /* MTRRs */
1871     uint64_t mtrr_fixed[11];
1872     uint64_t mtrr_deftype;
1873     MTRRVar mtrr_var[MSR_MTRRcap_VCNT];
1874 
1875     /* For KVM */
1876     uint32_t mp_state;
1877     int32_t exception_nr;
1878     int32_t interrupt_injected;
1879     uint8_t soft_interrupt;
1880     uint8_t exception_pending;
1881     uint8_t exception_injected;
1882     uint8_t has_error_code;
1883     uint8_t exception_has_payload;
1884     uint64_t exception_payload;
1885     uint8_t triple_fault_pending;
1886     uint32_t ins_len;
1887     uint32_t sipi_vector;
1888     bool tsc_valid;
1889     int64_t tsc_khz;
1890     int64_t user_tsc_khz; /* for sanity check only */
1891     uint64_t apic_bus_freq;
1892     uint64_t tsc;
1893 #if defined(CONFIG_KVM) || defined(CONFIG_HVF)
1894     void *xsave_buf;
1895     uint32_t xsave_buf_len;
1896 #endif
1897 #if defined(CONFIG_KVM)
1898     struct kvm_nested_state *nested_state;
1899     MemoryRegion *xen_vcpu_info_mr;
1900     void *xen_vcpu_info_hva;
1901     uint64_t xen_vcpu_info_gpa;
1902     uint64_t xen_vcpu_info_default_gpa;
1903     uint64_t xen_vcpu_time_info_gpa;
1904     uint64_t xen_vcpu_runstate_gpa;
1905     uint8_t xen_vcpu_callback_vector;
1906     bool xen_callback_asserted;
1907     uint16_t xen_virq[XEN_NR_VIRQS];
1908     uint64_t xen_singleshot_timer_ns;
1909     QEMUTimer *xen_singleshot_timer;
1910     uint64_t xen_periodic_timer_period;
1911     QEMUTimer *xen_periodic_timer;
1912     QemuMutex xen_timers_lock;
1913 #endif
1914 #if defined(CONFIG_HVF)
1915     HVFX86LazyFlags hvf_lflags;
1916     void *hvf_mmio_buf;
1917 #endif
1918 
1919     uint64_t mcg_cap;
1920     uint64_t mcg_ctl;
1921     uint64_t mcg_ext_ctl;
1922     uint64_t mce_banks[MCE_BANKS_DEF*4];
1923     uint64_t xstate_bv;
1924 
1925     /* vmstate */
1926     uint16_t fpus_vmstate;
1927     uint16_t fptag_vmstate;
1928     uint16_t fpregs_format_vmstate;
1929 
1930     uint64_t xss;
1931     uint32_t umwait;
1932 
1933     TPRAccess tpr_access_type;
1934 
1935     /* Number of dies within this CPU package. */
1936     unsigned nr_dies;
1937 
1938     /* Number of modules within one die. */
1939     unsigned nr_modules;
1940 
1941     /* Bitmap of available CPU topology levels for this CPU. */
1942     DECLARE_BITMAP(avail_cpu_topo, CPU_TOPO_LEVEL_MAX);
1943 } CPUX86State;
1944 
1945 struct kvm_msrs;
1946 
1947 /**
1948  * X86CPU:
1949  * @env: #CPUX86State
1950  * @migratable: If set, only migratable flags will be accepted when "enforce"
1951  * mode is used, and only migratable flags will be included in the "host"
1952  * CPU model.
1953  *
1954  * An x86 CPU.
1955  */
1956 struct ArchCPU {
1957     CPUState parent_obj;
1958 
1959     CPUX86State env;
1960     VMChangeStateEntry *vmsentry;
1961 
1962     uint64_t ucode_rev;
1963 
1964     uint32_t hyperv_spinlock_attempts;
1965     char *hyperv_vendor;
1966     bool hyperv_synic_kvm_only;
1967     uint64_t hyperv_features;
1968     bool hyperv_passthrough;
1969     OnOffAuto hyperv_no_nonarch_cs;
1970     uint32_t hyperv_vendor_id[3];
1971     uint32_t hyperv_interface_id[4];
1972     uint32_t hyperv_limits[3];
1973     bool hyperv_enforce_cpuid;
1974     uint32_t hyperv_ver_id_build;
1975     uint16_t hyperv_ver_id_major;
1976     uint16_t hyperv_ver_id_minor;
1977     uint32_t hyperv_ver_id_sp;
1978     uint8_t hyperv_ver_id_sb;
1979     uint32_t hyperv_ver_id_sn;
1980 
1981     bool check_cpuid;
1982     bool enforce_cpuid;
1983     /*
1984      * Force features to be enabled even if the host doesn't support them.
1985      * This is dangerous and should be done only for testing CPUID
1986      * compatibility.
1987      */
1988     bool force_features;
1989     bool expose_kvm;
1990     bool expose_tcg;
1991     bool migratable;
1992     bool migrate_smi_count;
1993     bool max_features; /* Enable all supported features automatically */
1994     uint32_t apic_id;
1995 
1996     /* Enables publishing of TSC increment and Local APIC bus frequencies to
1997      * the guest OS in CPUID page 0x40000010, the same way that VMWare does. */
1998     bool vmware_cpuid_freq;
1999 
2000     /* if true the CPUID code directly forward host cache leaves to the guest */
2001     bool cache_info_passthrough;
2002 
2003     /* if true the CPUID code directly forwards
2004      * host monitor/mwait leaves to the guest */
2005     struct {
2006         uint32_t eax;
2007         uint32_t ebx;
2008         uint32_t ecx;
2009         uint32_t edx;
2010     } mwait;
2011 
2012     /* Features that were filtered out because of missing host capabilities */
2013     FeatureWordArray filtered_features;
2014 
2015     /* Enable PMU CPUID bits. This can't be enabled by default yet because
2016      * it doesn't have ABI stability guarantees, as it passes all PMU CPUID
2017      * bits returned by GET_SUPPORTED_CPUID (that depend on host CPU and kernel
2018      * capabilities) directly to the guest.
2019      */
2020     bool enable_pmu;
2021 
2022     /*
2023      * Enable LBR_FMT bits of IA32_PERF_CAPABILITIES MSR.
2024      * This can't be initialized with a default because it doesn't have
2025      * stable ABI support yet. It is only allowed to pass all LBR_FMT bits
2026      * returned by kvm_arch_get_supported_msr_feature()(which depends on both
2027      * host CPU and kernel capabilities) to the guest.
2028      */
2029     uint64_t lbr_fmt;
2030 
2031     /* LMCE support can be enabled/disabled via cpu option 'lmce=on/off'. It is
2032      * disabled by default to avoid breaking migration between QEMU with
2033      * different LMCE configurations.
2034      */
2035     bool enable_lmce;
2036 
2037     /* Compatibility bits for old machine types.
2038      * If true present virtual l3 cache for VM, the vcpus in the same virtual
2039      * socket share an virtual l3 cache.
2040      */
2041     bool enable_l3_cache;
2042 
2043     /* Compatibility bits for old machine types.
2044      * If true present L1 cache as per-thread, not per-core.
2045      */
2046     bool l1_cache_per_core;
2047 
2048     /* Compatibility bits for old machine types.
2049      * If true present the old cache topology information
2050      */
2051     bool legacy_cache;
2052 
2053     /* Compatibility bits for old machine types.
2054      * If true decode the CPUID Function 0x8000001E_ECX to support multiple
2055      * nodes per processor
2056      */
2057     bool legacy_multi_node;
2058 
2059     /* Compatibility bits for old machine types: */
2060     bool enable_cpuid_0xb;
2061 
2062     /* Enable auto level-increase for all CPUID leaves */
2063     bool full_cpuid_auto_level;
2064 
2065     /* Only advertise CPUID leaves defined by the vendor */
2066     bool vendor_cpuid_only;
2067 
2068     /* Enable auto level-increase for Intel Processor Trace leave */
2069     bool intel_pt_auto_level;
2070 
2071     /* if true fill the top bits of the MTRR_PHYSMASKn variable range */
2072     bool fill_mtrr_mask;
2073 
2074     /* if true override the phys_bits value with a value read from the host */
2075     bool host_phys_bits;
2076 
2077     /* if set, limit maximum value for phys_bits when host_phys_bits is true */
2078     uint8_t host_phys_bits_limit;
2079 
2080     /* Stop SMI delivery for migration compatibility with old machines */
2081     bool kvm_no_smi_migration;
2082 
2083     /* Forcefully disable KVM PV features not exposed in guest CPUIDs */
2084     bool kvm_pv_enforce_cpuid;
2085 
2086     /* Number of physical address bits supported */
2087     uint32_t phys_bits;
2088 
2089     /*
2090      * Number of guest physical address bits available. Usually this is
2091      * identical to host physical address bits. With NPT or EPT 4-level
2092      * paging, guest physical address space might be restricted to 48 bits
2093      * even if the host cpu supports more physical address bits.
2094      */
2095     uint32_t guest_phys_bits;
2096 
2097     /* in order to simplify APIC support, we leave this pointer to the
2098        user */
2099     struct DeviceState *apic_state;
2100     struct MemoryRegion *cpu_as_root, *cpu_as_mem, *smram;
2101     Notifier machine_done;
2102 
2103     struct kvm_msrs *kvm_msr_buf;
2104 
2105     int32_t node_id; /* NUMA node this CPU belongs to */
2106     int32_t socket_id;
2107     int32_t die_id;
2108     int32_t module_id;
2109     int32_t core_id;
2110     int32_t thread_id;
2111 
2112     int32_t hv_max_vps;
2113 
2114     bool xen_vapic;
2115 };
2116 
2117 typedef struct X86CPUModel X86CPUModel;
2118 
2119 /**
2120  * X86CPUClass:
2121  * @cpu_def: CPU model definition
2122  * @host_cpuid_required: Whether CPU model requires cpuid from host.
2123  * @ordering: Ordering on the "-cpu help" CPU model list.
2124  * @migration_safe: See CpuDefinitionInfo::migration_safe
2125  * @static_model: See CpuDefinitionInfo::static
2126  * @parent_realize: The parent class' realize handler.
2127  * @parent_phases: The parent class' reset phase handlers.
2128  *
2129  * An x86 CPU model or family.
2130  */
2131 struct X86CPUClass {
2132     CPUClass parent_class;
2133 
2134     /*
2135      * CPU definition, automatically loaded by instance_init if not NULL.
2136      * Should be eventually replaced by subclass-specific property defaults.
2137      */
2138     X86CPUModel *model;
2139 
2140     bool host_cpuid_required;
2141     int ordering;
2142     bool migration_safe;
2143     bool static_model;
2144 
2145     /*
2146      * Optional description of CPU model.
2147      * If unavailable, cpu_def->model_id is used.
2148      */
2149     const char *model_description;
2150 
2151     DeviceRealize parent_realize;
2152     DeviceUnrealize parent_unrealize;
2153     ResettablePhases parent_phases;
2154 };
2155 
2156 #ifndef CONFIG_USER_ONLY
2157 extern const VMStateDescription vmstate_x86_cpu;
2158 #endif
2159 
2160 int x86_cpu_pending_interrupt(CPUState *cs, int interrupt_request);
2161 
2162 int x86_cpu_write_elf64_note(WriteCoreDumpFunction f, CPUState *cpu,
2163                              int cpuid, DumpState *s);
2164 int x86_cpu_write_elf32_note(WriteCoreDumpFunction f, CPUState *cpu,
2165                              int cpuid, DumpState *s);
2166 int x86_cpu_write_elf64_qemunote(WriteCoreDumpFunction f, CPUState *cpu,
2167                                  DumpState *s);
2168 int x86_cpu_write_elf32_qemunote(WriteCoreDumpFunction f, CPUState *cpu,
2169                                  DumpState *s);
2170 
2171 bool x86_cpu_get_memory_mapping(CPUState *cpu, MemoryMappingList *list,
2172                                 Error **errp);
2173 
2174 void x86_cpu_dump_state(CPUState *cs, FILE *f, int flags);
2175 
2176 int x86_cpu_gdb_read_register(CPUState *cpu, GByteArray *buf, int reg);
2177 int x86_cpu_gdb_write_register(CPUState *cpu, uint8_t *buf, int reg);
2178 
2179 void x86_cpu_list(void);
2180 int cpu_x86_support_mca_broadcast(CPUX86State *env);
2181 
2182 #ifndef CONFIG_USER_ONLY
2183 hwaddr x86_cpu_get_phys_page_attrs_debug(CPUState *cpu, vaddr addr,
2184                                          MemTxAttrs *attrs);
2185 int cpu_get_pic_interrupt(CPUX86State *s);
2186 
2187 /* MS-DOS compatibility mode FPU exception support */
2188 void x86_register_ferr_irq(qemu_irq irq);
2189 void fpu_check_raise_ferr_irq(CPUX86State *s);
2190 void cpu_set_ignne(void);
2191 void cpu_clear_ignne(void);
2192 #endif
2193 
2194 /* mpx_helper.c */
2195 void cpu_sync_bndcs_hflags(CPUX86State *env);
2196 
2197 /* this function must always be used to load data in the segment
2198    cache: it synchronizes the hflags with the segment cache values */
2199 static inline void cpu_x86_load_seg_cache(CPUX86State *env,
2200                                           X86Seg seg_reg, unsigned int selector,
2201                                           target_ulong base,
2202                                           unsigned int limit,
2203                                           unsigned int flags)
2204 {
2205     SegmentCache *sc;
2206     unsigned int new_hflags;
2207 
2208     sc = &env->segs[seg_reg];
2209     sc->selector = selector;
2210     sc->base = base;
2211     sc->limit = limit;
2212     sc->flags = flags;
2213 
2214     /* update the hidden flags */
2215     {
2216         if (seg_reg == R_CS) {
2217 #ifdef TARGET_X86_64
2218             if ((env->hflags & HF_LMA_MASK) && (flags & DESC_L_MASK)) {
2219                 /* long mode */
2220                 env->hflags |= HF_CS32_MASK | HF_SS32_MASK | HF_CS64_MASK;
2221                 env->hflags &= ~(HF_ADDSEG_MASK);
2222             } else
2223 #endif
2224             {
2225                 /* legacy / compatibility case */
2226                 new_hflags = (env->segs[R_CS].flags & DESC_B_MASK)
2227                     >> (DESC_B_SHIFT - HF_CS32_SHIFT);
2228                 env->hflags = (env->hflags & ~(HF_CS32_MASK | HF_CS64_MASK)) |
2229                     new_hflags;
2230             }
2231         }
2232         if (seg_reg == R_SS) {
2233             int cpl = (flags >> DESC_DPL_SHIFT) & 3;
2234 #if HF_CPL_MASK != 3
2235 #error HF_CPL_MASK is hardcoded
2236 #endif
2237             env->hflags = (env->hflags & ~HF_CPL_MASK) | cpl;
2238             /* Possibly switch between BNDCFGS and BNDCFGU */
2239             cpu_sync_bndcs_hflags(env);
2240         }
2241         new_hflags = (env->segs[R_SS].flags & DESC_B_MASK)
2242             >> (DESC_B_SHIFT - HF_SS32_SHIFT);
2243         if (env->hflags & HF_CS64_MASK) {
2244             /* zero base assumed for DS, ES and SS in long mode */
2245         } else if (!(env->cr[0] & CR0_PE_MASK) ||
2246                    (env->eflags & VM_MASK) ||
2247                    !(env->hflags & HF_CS32_MASK)) {
2248             /* XXX: try to avoid this test. The problem comes from the
2249                fact that is real mode or vm86 mode we only modify the
2250                'base' and 'selector' fields of the segment cache to go
2251                faster. A solution may be to force addseg to one in
2252                translate-i386.c. */
2253             new_hflags |= HF_ADDSEG_MASK;
2254         } else {
2255             new_hflags |= ((env->segs[R_DS].base |
2256                             env->segs[R_ES].base |
2257                             env->segs[R_SS].base) != 0) <<
2258                 HF_ADDSEG_SHIFT;
2259         }
2260         env->hflags = (env->hflags &
2261                        ~(HF_SS32_MASK | HF_ADDSEG_MASK)) | new_hflags;
2262     }
2263 }
2264 
2265 static inline void cpu_x86_load_seg_cache_sipi(X86CPU *cpu,
2266                                                uint8_t sipi_vector)
2267 {
2268     CPUState *cs = CPU(cpu);
2269     CPUX86State *env = &cpu->env;
2270 
2271     env->eip = 0;
2272     cpu_x86_load_seg_cache(env, R_CS, sipi_vector << 8,
2273                            sipi_vector << 12,
2274                            env->segs[R_CS].limit,
2275                            env->segs[R_CS].flags);
2276     cs->halted = 0;
2277 }
2278 
2279 int cpu_x86_get_descr_debug(CPUX86State *env, unsigned int selector,
2280                             target_ulong *base, unsigned int *limit,
2281                             unsigned int *flags);
2282 
2283 /* op_helper.c */
2284 /* used for debug or cpu save/restore */
2285 
2286 /* cpu-exec.c */
2287 /*
2288  * The following helpers are only usable in user mode simulation.
2289  * The host pointers should come from lock_user().
2290  */
2291 void cpu_x86_load_seg(CPUX86State *s, X86Seg seg_reg, int selector);
2292 void cpu_x86_fsave(CPUX86State *s, void *host, size_t len);
2293 void cpu_x86_frstor(CPUX86State *s, void *host, size_t len);
2294 void cpu_x86_fxsave(CPUX86State *s, void *host, size_t len);
2295 void cpu_x86_fxrstor(CPUX86State *s, void *host, size_t len);
2296 void cpu_x86_xsave(CPUX86State *s, void *host, size_t len, uint64_t rbfm);
2297 bool cpu_x86_xrstor(CPUX86State *s, void *host, size_t len, uint64_t rbfm);
2298 
2299 /* cpu.c */
2300 void x86_cpu_vendor_words2str(char *dst, uint32_t vendor1,
2301                               uint32_t vendor2, uint32_t vendor3);
2302 typedef struct PropValue {
2303     const char *prop, *value;
2304 } PropValue;
2305 void x86_cpu_apply_props(X86CPU *cpu, PropValue *props);
2306 
2307 void x86_cpu_after_reset(X86CPU *cpu);
2308 
2309 uint32_t cpu_x86_virtual_addr_width(CPUX86State *env);
2310 
2311 /* cpu.c other functions (cpuid) */
2312 void cpu_x86_cpuid(CPUX86State *env, uint32_t index, uint32_t count,
2313                    uint32_t *eax, uint32_t *ebx,
2314                    uint32_t *ecx, uint32_t *edx);
2315 void cpu_clear_apic_feature(CPUX86State *env);
2316 void cpu_set_apic_feature(CPUX86State *env);
2317 void host_cpuid(uint32_t function, uint32_t count,
2318                 uint32_t *eax, uint32_t *ebx, uint32_t *ecx, uint32_t *edx);
2319 bool cpu_has_x2apic_feature(CPUX86State *env);
2320 
2321 /* helper.c */
2322 void x86_cpu_set_a20(X86CPU *cpu, int a20_state);
2323 void cpu_sync_avx_hflag(CPUX86State *env);
2324 
2325 #ifndef CONFIG_USER_ONLY
2326 static inline int x86_asidx_from_attrs(CPUState *cs, MemTxAttrs attrs)
2327 {
2328     return !!attrs.secure;
2329 }
2330 
2331 static inline AddressSpace *cpu_addressspace(CPUState *cs, MemTxAttrs attrs)
2332 {
2333     return cpu_get_address_space(cs, cpu_asidx_from_attrs(cs, attrs));
2334 }
2335 
2336 /*
2337  * load efer and update the corresponding hflags. XXX: do consistency
2338  * checks with cpuid bits?
2339  */
2340 void cpu_load_efer(CPUX86State *env, uint64_t val);
2341 uint8_t x86_ldub_phys(CPUState *cs, hwaddr addr);
2342 uint32_t x86_lduw_phys(CPUState *cs, hwaddr addr);
2343 uint32_t x86_ldl_phys(CPUState *cs, hwaddr addr);
2344 uint64_t x86_ldq_phys(CPUState *cs, hwaddr addr);
2345 void x86_stb_phys(CPUState *cs, hwaddr addr, uint8_t val);
2346 void x86_stl_phys_notdirty(CPUState *cs, hwaddr addr, uint32_t val);
2347 void x86_stw_phys(CPUState *cs, hwaddr addr, uint32_t val);
2348 void x86_stl_phys(CPUState *cs, hwaddr addr, uint32_t val);
2349 void x86_stq_phys(CPUState *cs, hwaddr addr, uint64_t val);
2350 #endif
2351 
2352 /* will be suppressed */
2353 void cpu_x86_update_cr0(CPUX86State *env, uint32_t new_cr0);
2354 void cpu_x86_update_cr3(CPUX86State *env, target_ulong new_cr3);
2355 void cpu_x86_update_cr4(CPUX86State *env, uint32_t new_cr4);
2356 void cpu_x86_update_dr7(CPUX86State *env, uint32_t new_dr7);
2357 
2358 /* hw/pc.c */
2359 uint64_t cpu_get_tsc(CPUX86State *env);
2360 
2361 #define CPU_RESOLVING_TYPE TYPE_X86_CPU
2362 
2363 #ifdef TARGET_X86_64
2364 #define TARGET_DEFAULT_CPU_TYPE X86_CPU_TYPE_NAME("qemu64")
2365 #else
2366 #define TARGET_DEFAULT_CPU_TYPE X86_CPU_TYPE_NAME("qemu32")
2367 #endif
2368 
2369 #define cpu_list x86_cpu_list
2370 
2371 /* MMU modes definitions */
2372 #define MMU_KSMAP64_IDX    0
2373 #define MMU_KSMAP32_IDX    1
2374 #define MMU_USER64_IDX     2
2375 #define MMU_USER32_IDX     3
2376 #define MMU_KNOSMAP64_IDX  4
2377 #define MMU_KNOSMAP32_IDX  5
2378 #define MMU_PHYS_IDX       6
2379 #define MMU_NESTED_IDX     7
2380 
2381 #ifdef CONFIG_USER_ONLY
2382 #ifdef TARGET_X86_64
2383 #define MMU_USER_IDX MMU_USER64_IDX
2384 #else
2385 #define MMU_USER_IDX MMU_USER32_IDX
2386 #endif
2387 #endif
2388 
2389 static inline bool is_mmu_index_smap(int mmu_index)
2390 {
2391     return (mmu_index & ~1) == MMU_KSMAP64_IDX;
2392 }
2393 
2394 static inline bool is_mmu_index_user(int mmu_index)
2395 {
2396     return (mmu_index & ~1) == MMU_USER64_IDX;
2397 }
2398 
2399 static inline bool is_mmu_index_32(int mmu_index)
2400 {
2401     assert(mmu_index < MMU_PHYS_IDX);
2402     return mmu_index & 1;
2403 }
2404 
2405 static inline int cpu_mmu_index_kernel(CPUX86State *env)
2406 {
2407     int mmu_index_32 = (env->hflags & HF_LMA_MASK) ? 0 : 1;
2408     int mmu_index_base =
2409         !(env->hflags & HF_SMAP_MASK) ? MMU_KNOSMAP64_IDX :
2410         ((env->hflags & HF_CPL_MASK) < 3 && (env->eflags & AC_MASK)) ? MMU_KNOSMAP64_IDX : MMU_KSMAP64_IDX;
2411 
2412     return mmu_index_base + mmu_index_32;
2413 }
2414 
2415 #define CC_DST  (env->cc_dst)
2416 #define CC_SRC  (env->cc_src)
2417 #define CC_SRC2 (env->cc_src2)
2418 #define CC_OP   (env->cc_op)
2419 
2420 #include "exec/cpu-all.h"
2421 #include "svm.h"
2422 
2423 #if !defined(CONFIG_USER_ONLY)
2424 #include "hw/i386/apic.h"
2425 #endif
2426 
2427 static inline void cpu_get_tb_cpu_state(CPUX86State *env, vaddr *pc,
2428                                         uint64_t *cs_base, uint32_t *flags)
2429 {
2430     *flags = env->hflags |
2431         (env->eflags & (IOPL_MASK | TF_MASK | RF_MASK | VM_MASK | AC_MASK));
2432     if (env->hflags & HF_CS64_MASK) {
2433         *cs_base = 0;
2434         *pc = env->eip;
2435     } else {
2436         *cs_base = env->segs[R_CS].base;
2437         *pc = (uint32_t)(*cs_base + env->eip);
2438     }
2439 }
2440 
2441 void do_cpu_init(X86CPU *cpu);
2442 
2443 #define MCE_INJECT_BROADCAST    1
2444 #define MCE_INJECT_UNCOND_AO    2
2445 
2446 void cpu_x86_inject_mce(Monitor *mon, X86CPU *cpu, int bank,
2447                         uint64_t status, uint64_t mcg_status, uint64_t addr,
2448                         uint64_t misc, int flags);
2449 
2450 uint32_t cpu_cc_compute_all(CPUX86State *env1);
2451 
2452 static inline uint32_t cpu_compute_eflags(CPUX86State *env)
2453 {
2454     uint32_t eflags = env->eflags;
2455     if (tcg_enabled()) {
2456         eflags |= cpu_cc_compute_all(env) | (env->df & DF_MASK);
2457     }
2458     return eflags;
2459 }
2460 
2461 static inline MemTxAttrs cpu_get_mem_attrs(CPUX86State *env)
2462 {
2463     return ((MemTxAttrs) { .secure = (env->hflags & HF_SMM_MASK) != 0 });
2464 }
2465 
2466 static inline int32_t x86_get_a20_mask(CPUX86State *env)
2467 {
2468     if (env->hflags & HF_SMM_MASK) {
2469         return -1;
2470     } else {
2471         return env->a20_mask;
2472     }
2473 }
2474 
2475 static inline bool cpu_has_vmx(CPUX86State *env)
2476 {
2477     return env->features[FEAT_1_ECX] & CPUID_EXT_VMX;
2478 }
2479 
2480 static inline bool cpu_has_svm(CPUX86State *env)
2481 {
2482     return env->features[FEAT_8000_0001_ECX] & CPUID_EXT3_SVM;
2483 }
2484 
2485 /*
2486  * In order for a vCPU to enter VMX operation it must have CR4.VMXE set.
2487  * Since it was set, CR4.VMXE must remain set as long as vCPU is in
2488  * VMX operation. This is because CR4.VMXE is one of the bits set
2489  * in MSR_IA32_VMX_CR4_FIXED1.
2490  *
2491  * There is one exception to above statement when vCPU enters SMM mode.
2492  * When a vCPU enters SMM mode, it temporarily exit VMX operation and
2493  * may also reset CR4.VMXE during execution in SMM mode.
2494  * When vCPU exits SMM mode, vCPU state is restored to be in VMX operation
2495  * and CR4.VMXE is restored to it's original value of being set.
2496  *
2497  * Therefore, when vCPU is not in SMM mode, we can infer whether
2498  * VMX is being used by examining CR4.VMXE. Otherwise, we cannot
2499  * know for certain.
2500  */
2501 static inline bool cpu_vmx_maybe_enabled(CPUX86State *env)
2502 {
2503     return cpu_has_vmx(env) &&
2504            ((env->cr[4] & CR4_VMXE_MASK) || (env->hflags & HF_SMM_MASK));
2505 }
2506 
2507 /* excp_helper.c */
2508 int get_pg_mode(CPUX86State *env);
2509 
2510 /* fpu_helper.c */
2511 void update_fp_status(CPUX86State *env);
2512 void update_mxcsr_status(CPUX86State *env);
2513 void update_mxcsr_from_sse_status(CPUX86State *env);
2514 
2515 static inline void cpu_set_mxcsr(CPUX86State *env, uint32_t mxcsr)
2516 {
2517     env->mxcsr = mxcsr;
2518     if (tcg_enabled()) {
2519         update_mxcsr_status(env);
2520     }
2521 }
2522 
2523 static inline void cpu_set_fpuc(CPUX86State *env, uint16_t fpuc)
2524 {
2525      env->fpuc = fpuc;
2526      if (tcg_enabled()) {
2527         update_fp_status(env);
2528      }
2529 }
2530 
2531 /* svm_helper.c */
2532 #ifdef CONFIG_USER_ONLY
2533 static inline void
2534 cpu_svm_check_intercept_param(CPUX86State *env1, uint32_t type,
2535                               uint64_t param, uintptr_t retaddr)
2536 { /* no-op */ }
2537 static inline bool
2538 cpu_svm_has_intercept(CPUX86State *env, uint32_t type)
2539 { return false; }
2540 #else
2541 void cpu_svm_check_intercept_param(CPUX86State *env1, uint32_t type,
2542                                    uint64_t param, uintptr_t retaddr);
2543 bool cpu_svm_has_intercept(CPUX86State *env, uint32_t type);
2544 #endif
2545 
2546 /* apic.c */
2547 void cpu_report_tpr_access(CPUX86State *env, TPRAccess access);
2548 void apic_handle_tpr_access_report(DeviceState *d, target_ulong ip,
2549                                    TPRAccess access);
2550 
2551 /* Special values for X86CPUVersion: */
2552 
2553 /* Resolve to latest CPU version */
2554 #define CPU_VERSION_LATEST -1
2555 
2556 /*
2557  * Resolve to version defined by current machine type.
2558  * See x86_cpu_set_default_version()
2559  */
2560 #define CPU_VERSION_AUTO   -2
2561 
2562 /* Don't resolve to any versioned CPU models, like old QEMU versions */
2563 #define CPU_VERSION_LEGACY  0
2564 
2565 typedef int X86CPUVersion;
2566 
2567 /*
2568  * Set default CPU model version for CPU models having
2569  * version == CPU_VERSION_AUTO.
2570  */
2571 void x86_cpu_set_default_version(X86CPUVersion version);
2572 
2573 #ifndef CONFIG_USER_ONLY
2574 
2575 void do_cpu_sipi(X86CPU *cpu);
2576 
2577 #define APIC_DEFAULT_ADDRESS 0xfee00000
2578 #define APIC_SPACE_SIZE      0x100000
2579 
2580 /* cpu-dump.c */
2581 void x86_cpu_dump_local_apic_state(CPUState *cs, int flags);
2582 
2583 #endif
2584 
2585 /* cpu.c */
2586 bool cpu_is_bsp(X86CPU *cpu);
2587 
2588 void x86_cpu_xrstor_all_areas(X86CPU *cpu, const void *buf, uint32_t buflen);
2589 void x86_cpu_xsave_all_areas(X86CPU *cpu, void *buf, uint32_t buflen);
2590 uint32_t xsave_area_size(uint64_t mask, bool compacted);
2591 void x86_update_hflags(CPUX86State* env);
2592 
2593 static inline bool hyperv_feat_enabled(X86CPU *cpu, int feat)
2594 {
2595     return !!(cpu->hyperv_features & BIT(feat));
2596 }
2597 
2598 static inline uint64_t cr4_reserved_bits(CPUX86State *env)
2599 {
2600     uint64_t reserved_bits = CR4_RESERVED_MASK;
2601     if (!env->features[FEAT_XSAVE]) {
2602         reserved_bits |= CR4_OSXSAVE_MASK;
2603     }
2604     if (!(env->features[FEAT_7_0_EBX] & CPUID_7_0_EBX_SMEP)) {
2605         reserved_bits |= CR4_SMEP_MASK;
2606     }
2607     if (!(env->features[FEAT_7_0_EBX] & CPUID_7_0_EBX_SMAP)) {
2608         reserved_bits |= CR4_SMAP_MASK;
2609     }
2610     if (!(env->features[FEAT_7_0_EBX] & CPUID_7_0_EBX_FSGSBASE)) {
2611         reserved_bits |= CR4_FSGSBASE_MASK;
2612     }
2613     if (!(env->features[FEAT_7_0_ECX] & CPUID_7_0_ECX_PKU)) {
2614         reserved_bits |= CR4_PKE_MASK;
2615     }
2616     if (!(env->features[FEAT_7_0_ECX] & CPUID_7_0_ECX_LA57)) {
2617         reserved_bits |= CR4_LA57_MASK;
2618     }
2619     if (!(env->features[FEAT_7_0_ECX] & CPUID_7_0_ECX_UMIP)) {
2620         reserved_bits |= CR4_UMIP_MASK;
2621     }
2622     if (!(env->features[FEAT_7_0_ECX] & CPUID_7_0_ECX_PKS)) {
2623         reserved_bits |= CR4_PKS_MASK;
2624     }
2625     if (!(env->features[FEAT_7_1_EAX] & CPUID_7_1_EAX_LAM)) {
2626         reserved_bits |= CR4_LAM_SUP_MASK;
2627     }
2628     if (!(env->features[FEAT_7_1_EAX] & CPUID_7_1_EAX_FRED)) {
2629         reserved_bits |= CR4_FRED_MASK;
2630     }
2631     return reserved_bits;
2632 }
2633 
2634 static inline bool ctl_has_irq(CPUX86State *env)
2635 {
2636     uint32_t int_prio;
2637     uint32_t tpr;
2638 
2639     int_prio = (env->int_ctl & V_INTR_PRIO_MASK) >> V_INTR_PRIO_SHIFT;
2640     tpr = env->int_ctl & V_TPR_MASK;
2641 
2642     if (env->int_ctl & V_IGN_TPR_MASK) {
2643         return (env->int_ctl & V_IRQ_MASK);
2644     }
2645 
2646     return (env->int_ctl & V_IRQ_MASK) && (int_prio >= tpr);
2647 }
2648 
2649 #if defined(TARGET_X86_64) && \
2650     defined(CONFIG_USER_ONLY) && \
2651     defined(CONFIG_LINUX)
2652 # define TARGET_VSYSCALL_PAGE  (UINT64_C(-10) << 20)
2653 #endif
2654 
2655 #endif /* I386_CPU_H */
2656