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1 /****************************************************************************
2  ****************************************************************************
3  ***
4  ***   This header was automatically generated from a Linux kernel header
5  ***   of the same name, to make information necessary for userspace to
6  ***   call into the kernel available to libc.  It contains only constants,
7  ***   structures, and macros generated from the original header, and thus,
8  ***   contains no copyrightable information.
9  ***
10  ***   To edit the content of this header, modify the corresponding
11  ***   source file (e.g. under external/kernel-headers/original/) then
12  ***   run bionic/libc/kernel/tools/update_all.py
13  ***
14  ***   Any manual change here will be lost the next time this script will
15  ***   be run. You've been warned!
16  ***
17  ****************************************************************************
18  ****************************************************************************/
19 #ifndef _ASM_X86_KVM_H
20 #define _ASM_X86_KVM_H
21 #include <linux/types.h>
22 #include <linux/ioctl.h>
23 #define KVM_PIO_PAGE_OFFSET 1
24 #define KVM_COALESCED_MMIO_PAGE_OFFSET 2
25 #define KVM_DIRTY_LOG_PAGE_OFFSET 64
26 #define DE_VECTOR 0
27 #define DB_VECTOR 1
28 #define BP_VECTOR 3
29 #define OF_VECTOR 4
30 #define BR_VECTOR 5
31 #define UD_VECTOR 6
32 #define NM_VECTOR 7
33 #define DF_VECTOR 8
34 #define TS_VECTOR 10
35 #define NP_VECTOR 11
36 #define SS_VECTOR 12
37 #define GP_VECTOR 13
38 #define PF_VECTOR 14
39 #define MF_VECTOR 16
40 #define AC_VECTOR 17
41 #define MC_VECTOR 18
42 #define XM_VECTOR 19
43 #define VE_VECTOR 20
44 #define __KVM_HAVE_PIT
45 #define __KVM_HAVE_IOAPIC
46 #define __KVM_HAVE_IRQ_LINE
47 #define __KVM_HAVE_MSI
48 #define __KVM_HAVE_USER_NMI
49 #define __KVM_HAVE_GUEST_DEBUG
50 #define __KVM_HAVE_MSIX
51 #define __KVM_HAVE_MCE
52 #define __KVM_HAVE_PIT_STATE2
53 #define __KVM_HAVE_XEN_HVM
54 #define __KVM_HAVE_VCPU_EVENTS
55 #define __KVM_HAVE_DEBUGREGS
56 #define __KVM_HAVE_XSAVE
57 #define __KVM_HAVE_XCRS
58 #define __KVM_HAVE_READONLY_MEM
59 #define KVM_NR_INTERRUPTS 256
60 struct kvm_pic_state {
61   __u8 last_irr;
62   __u8 irr;
63   __u8 imr;
64   __u8 isr;
65   __u8 priority_add;
66   __u8 irq_base;
67   __u8 read_reg_select;
68   __u8 poll;
69   __u8 special_mask;
70   __u8 init_state;
71   __u8 auto_eoi;
72   __u8 rotate_on_auto_eoi;
73   __u8 special_fully_nested_mode;
74   __u8 init4;
75   __u8 elcr;
76   __u8 elcr_mask;
77 };
78 #define KVM_IOAPIC_NUM_PINS 24
79 struct kvm_ioapic_state {
80   __u64 base_address;
81   __u32 ioregsel;
82   __u32 id;
83   __u32 irr;
84   __u32 pad;
85   union {
86     __u64 bits;
87     struct {
88       __u8 vector;
89       __u8 delivery_mode : 3;
90       __u8 dest_mode : 1;
91       __u8 delivery_status : 1;
92       __u8 polarity : 1;
93       __u8 remote_irr : 1;
94       __u8 trig_mode : 1;
95       __u8 mask : 1;
96       __u8 reserve : 7;
97       __u8 reserved[4];
98       __u8 dest_id;
99     } fields;
100   } redirtbl[KVM_IOAPIC_NUM_PINS];
101 };
102 #define KVM_IRQCHIP_PIC_MASTER 0
103 #define KVM_IRQCHIP_PIC_SLAVE 1
104 #define KVM_IRQCHIP_IOAPIC 2
105 #define KVM_NR_IRQCHIPS 3
106 #define KVM_RUN_X86_SMM (1 << 0)
107 #define KVM_RUN_X86_BUS_LOCK (1 << 1)
108 struct kvm_regs {
109   __u64 rax, rbx, rcx, rdx;
110   __u64 rsi, rdi, rsp, rbp;
111   __u64 r8, r9, r10, r11;
112   __u64 r12, r13, r14, r15;
113   __u64 rip, rflags;
114 };
115 #define KVM_APIC_REG_SIZE 0x400
116 struct kvm_lapic_state {
117   char regs[KVM_APIC_REG_SIZE];
118 };
119 struct kvm_segment {
120   __u64 base;
121   __u32 limit;
122   __u16 selector;
123   __u8 type;
124   __u8 present, dpl, db, s, l, g, avl;
125   __u8 unusable;
126   __u8 padding;
127 };
128 struct kvm_dtable {
129   __u64 base;
130   __u16 limit;
131   __u16 padding[3];
132 };
133 struct kvm_sregs {
134   struct kvm_segment cs, ds, es, fs, gs, ss;
135   struct kvm_segment tr, ldt;
136   struct kvm_dtable gdt, idt;
137   __u64 cr0, cr2, cr3, cr4, cr8;
138   __u64 efer;
139   __u64 apic_base;
140   __u64 interrupt_bitmap[(KVM_NR_INTERRUPTS + 63) / 64];
141 };
142 struct kvm_sregs2 {
143   struct kvm_segment cs, ds, es, fs, gs, ss;
144   struct kvm_segment tr, ldt;
145   struct kvm_dtable gdt, idt;
146   __u64 cr0, cr2, cr3, cr4, cr8;
147   __u64 efer;
148   __u64 apic_base;
149   __u64 flags;
150   __u64 pdptrs[4];
151 };
152 #define KVM_SREGS2_FLAGS_PDPTRS_VALID 1
153 struct kvm_fpu {
154   __u8 fpr[8][16];
155   __u16 fcw;
156   __u16 fsw;
157   __u8 ftwx;
158   __u8 pad1;
159   __u16 last_opcode;
160   __u64 last_ip;
161   __u64 last_dp;
162   __u8 xmm[16][16];
163   __u32 mxcsr;
164   __u32 pad2;
165 };
166 struct kvm_msr_entry {
167   __u32 index;
168   __u32 reserved;
169   __u64 data;
170 };
171 struct kvm_msrs {
172   __u32 nmsrs;
173   __u32 pad;
174   struct kvm_msr_entry entries[];
175 };
176 struct kvm_msr_list {
177   __u32 nmsrs;
178   __u32 indices[];
179 };
180 #define KVM_MSR_FILTER_MAX_BITMAP_SIZE 0x600
181 struct kvm_msr_filter_range {
182 #define KVM_MSR_FILTER_READ (1 << 0)
183 #define KVM_MSR_FILTER_WRITE (1 << 1)
184 #define KVM_MSR_FILTER_RANGE_VALID_MASK (KVM_MSR_FILTER_READ | KVM_MSR_FILTER_WRITE)
185   __u32 flags;
186   __u32 nmsrs;
187   __u32 base;
188   __u8 * bitmap;
189 };
190 #define KVM_MSR_FILTER_MAX_RANGES 16
191 struct kvm_msr_filter {
192 #define KVM_MSR_FILTER_DEFAULT_ALLOW (0 << 0)
193 #define KVM_MSR_FILTER_DEFAULT_DENY (1 << 0)
194 #define KVM_MSR_FILTER_VALID_MASK (KVM_MSR_FILTER_DEFAULT_DENY)
195   __u32 flags;
196   struct kvm_msr_filter_range ranges[KVM_MSR_FILTER_MAX_RANGES];
197 };
198 struct kvm_cpuid_entry {
199   __u32 function;
200   __u32 eax;
201   __u32 ebx;
202   __u32 ecx;
203   __u32 edx;
204   __u32 padding;
205 };
206 struct kvm_cpuid {
207   __u32 nent;
208   __u32 padding;
209   struct kvm_cpuid_entry entries[];
210 };
211 struct kvm_cpuid_entry2 {
212   __u32 function;
213   __u32 index;
214   __u32 flags;
215   __u32 eax;
216   __u32 ebx;
217   __u32 ecx;
218   __u32 edx;
219   __u32 padding[3];
220 };
221 #define KVM_CPUID_FLAG_SIGNIFCANT_INDEX (1 << 0)
222 #define KVM_CPUID_FLAG_STATEFUL_FUNC (1 << 1)
223 #define KVM_CPUID_FLAG_STATE_READ_NEXT (1 << 2)
224 struct kvm_cpuid2 {
225   __u32 nent;
226   __u32 padding;
227   struct kvm_cpuid_entry2 entries[];
228 };
229 struct kvm_pit_channel_state {
230   __u32 count;
231   __u16 latched_count;
232   __u8 count_latched;
233   __u8 status_latched;
234   __u8 status;
235   __u8 read_state;
236   __u8 write_state;
237   __u8 write_latch;
238   __u8 rw_mode;
239   __u8 mode;
240   __u8 bcd;
241   __u8 gate;
242   __s64 count_load_time;
243 };
244 struct kvm_debug_exit_arch {
245   __u32 exception;
246   __u32 pad;
247   __u64 pc;
248   __u64 dr6;
249   __u64 dr7;
250 };
251 #define KVM_GUESTDBG_USE_SW_BP 0x00010000
252 #define KVM_GUESTDBG_USE_HW_BP 0x00020000
253 #define KVM_GUESTDBG_INJECT_DB 0x00040000
254 #define KVM_GUESTDBG_INJECT_BP 0x00080000
255 #define KVM_GUESTDBG_BLOCKIRQ 0x00100000
256 struct kvm_guest_debug_arch {
257   __u64 debugreg[8];
258 };
259 struct kvm_pit_state {
260   struct kvm_pit_channel_state channels[3];
261 };
262 #define KVM_PIT_FLAGS_HPET_LEGACY 0x00000001
263 #define KVM_PIT_FLAGS_SPEAKER_DATA_ON 0x00000002
264 struct kvm_pit_state2 {
265   struct kvm_pit_channel_state channels[3];
266   __u32 flags;
267   __u32 reserved[9];
268 };
269 struct kvm_reinject_control {
270   __u8 pit_reinject;
271   __u8 reserved[31];
272 };
273 #define KVM_VCPUEVENT_VALID_NMI_PENDING 0x00000001
274 #define KVM_VCPUEVENT_VALID_SIPI_VECTOR 0x00000002
275 #define KVM_VCPUEVENT_VALID_SHADOW 0x00000004
276 #define KVM_VCPUEVENT_VALID_SMM 0x00000008
277 #define KVM_VCPUEVENT_VALID_PAYLOAD 0x00000010
278 #define KVM_VCPUEVENT_VALID_TRIPLE_FAULT 0x00000020
279 #define KVM_X86_SHADOW_INT_MOV_SS 0x01
280 #define KVM_X86_SHADOW_INT_STI 0x02
281 struct kvm_vcpu_events {
282   struct {
283     __u8 injected;
284     __u8 nr;
285     __u8 has_error_code;
286     __u8 pending;
287     __u32 error_code;
288   } exception;
289   struct {
290     __u8 injected;
291     __u8 nr;
292     __u8 soft;
293     __u8 shadow;
294   } interrupt;
295   struct {
296     __u8 injected;
297     __u8 pending;
298     __u8 masked;
299     __u8 pad;
300   } nmi;
301   __u32 sipi_vector;
302   __u32 flags;
303   struct {
304     __u8 smm;
305     __u8 pending;
306     __u8 smm_inside_nmi;
307     __u8 latched_init;
308   } smi;
309   struct {
310     __u8 pending;
311   } triple_fault;
312   __u8 reserved[26];
313   __u8 exception_has_payload;
314   __u64 exception_payload;
315 };
316 struct kvm_debugregs {
317   __u64 db[4];
318   __u64 dr6;
319   __u64 dr7;
320   __u64 flags;
321   __u64 reserved[9];
322 };
323 struct kvm_xsave {
324   __u32 region[1024];
325   __u32 extra[];
326 };
327 #define KVM_MAX_XCRS 16
328 struct kvm_xcr {
329   __u32 xcr;
330   __u32 reserved;
331   __u64 value;
332 };
333 struct kvm_xcrs {
334   __u32 nr_xcrs;
335   __u32 flags;
336   struct kvm_xcr xcrs[KVM_MAX_XCRS];
337   __u64 padding[16];
338 };
339 #define KVM_SYNC_X86_REGS (1UL << 0)
340 #define KVM_SYNC_X86_SREGS (1UL << 1)
341 #define KVM_SYNC_X86_EVENTS (1UL << 2)
342 #define KVM_SYNC_X86_VALID_FIELDS (KVM_SYNC_X86_REGS | KVM_SYNC_X86_SREGS | KVM_SYNC_X86_EVENTS)
343 struct kvm_sync_regs {
344   struct kvm_regs regs;
345   struct kvm_sregs sregs;
346   struct kvm_vcpu_events events;
347 };
348 #define KVM_X86_QUIRK_LINT0_REENABLED (1 << 0)
349 #define KVM_X86_QUIRK_CD_NW_CLEARED (1 << 1)
350 #define KVM_X86_QUIRK_LAPIC_MMIO_HOLE (1 << 2)
351 #define KVM_X86_QUIRK_OUT_7E_INC_RIP (1 << 3)
352 #define KVM_X86_QUIRK_MISC_ENABLE_NO_MWAIT (1 << 4)
353 #define KVM_X86_QUIRK_FIX_HYPERCALL_INSN (1 << 5)
354 #define KVM_X86_QUIRK_MWAIT_NEVER_UD_FAULTS (1 << 6)
355 #define KVM_STATE_NESTED_FORMAT_VMX 0
356 #define KVM_STATE_NESTED_FORMAT_SVM 1
357 #define KVM_STATE_NESTED_GUEST_MODE 0x00000001
358 #define KVM_STATE_NESTED_RUN_PENDING 0x00000002
359 #define KVM_STATE_NESTED_EVMCS 0x00000004
360 #define KVM_STATE_NESTED_MTF_PENDING 0x00000008
361 #define KVM_STATE_NESTED_GIF_SET 0x00000100
362 #define KVM_STATE_NESTED_SMM_GUEST_MODE 0x00000001
363 #define KVM_STATE_NESTED_SMM_VMXON 0x00000002
364 #define KVM_STATE_NESTED_VMX_VMCS_SIZE 0x1000
365 #define KVM_STATE_NESTED_SVM_VMCB_SIZE 0x1000
366 #define KVM_STATE_VMX_PREEMPTION_TIMER_DEADLINE 0x00000001
367 #define KVM_X86_XCOMP_GUEST_SUPP 0
368 struct kvm_vmx_nested_state_data {
369   __u8 vmcs12[KVM_STATE_NESTED_VMX_VMCS_SIZE];
370   __u8 shadow_vmcs12[KVM_STATE_NESTED_VMX_VMCS_SIZE];
371 };
372 struct kvm_vmx_nested_state_hdr {
373   __u64 vmxon_pa;
374   __u64 vmcs12_pa;
375   struct {
376     __u16 flags;
377   } smm;
378   __u16 pad;
379   __u32 flags;
380   __u64 preemption_timer_deadline;
381 };
382 struct kvm_svm_nested_state_data {
383   __u8 vmcb12[KVM_STATE_NESTED_SVM_VMCB_SIZE];
384 };
385 struct kvm_svm_nested_state_hdr {
386   __u64 vmcb_pa;
387 };
388 struct kvm_nested_state {
389   __u16 flags;
390   __u16 format;
391   __u32 size;
392   union {
393     struct kvm_vmx_nested_state_hdr vmx;
394     struct kvm_svm_nested_state_hdr svm;
395     __u8 pad[120];
396   } hdr;
397   union {
398     struct kvm_vmx_nested_state_data vmx[0];
399     struct kvm_svm_nested_state_data svm[0];
400   } data;
401 };
402 struct kvm_pmu_event_filter {
403   __u32 action;
404   __u32 nevents;
405   __u32 fixed_counter_bitmap;
406   __u32 flags;
407   __u32 pad[4];
408   __u64 events[];
409 };
410 #define KVM_PMU_EVENT_ALLOW 0
411 #define KVM_PMU_EVENT_DENY 1
412 #define KVM_VCPU_TSC_CTRL 0
413 #define KVM_VCPU_TSC_OFFSET 0
414 #endif
415