kvm_host.h 21 KB

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  1. /*
  2. * Kernel-based Virtual Machine driver for Linux
  3. *
  4. * This header defines architecture specific interfaces, x86 version
  5. *
  6. * This work is licensed under the terms of the GNU GPL, version 2. See
  7. * the COPYING file in the top-level directory.
  8. *
  9. */
  10. #ifndef _ASM_X86_KVM_HOST_H
  11. #define _ASM_X86_KVM_HOST_H
  12. #include <linux/types.h>
  13. #include <linux/mm.h>
  14. #include <linux/mmu_notifier.h>
  15. #include <linux/kvm.h>
  16. #include <linux/kvm_para.h>
  17. #include <linux/kvm_types.h>
  18. #include <asm/pvclock-abi.h>
  19. #include <asm/desc.h>
  20. #define KVM_MAX_VCPUS 16
  21. #define KVM_MEMORY_SLOTS 32
  22. /* memory slots that does not exposed to userspace */
  23. #define KVM_PRIVATE_MEM_SLOTS 4
  24. #define KVM_PIO_PAGE_OFFSET 1
  25. #define KVM_COALESCED_MMIO_PAGE_OFFSET 2
  26. #define CR3_PAE_RESERVED_BITS ((X86_CR3_PWT | X86_CR3_PCD) - 1)
  27. #define CR3_NONPAE_RESERVED_BITS ((PAGE_SIZE-1) & ~(X86_CR3_PWT | X86_CR3_PCD))
  28. #define CR3_L_MODE_RESERVED_BITS (CR3_NONPAE_RESERVED_BITS | \
  29. 0xFFFFFF0000000000ULL)
  30. #define KVM_GUEST_CR0_MASK \
  31. (X86_CR0_PG | X86_CR0_PE | X86_CR0_WP | X86_CR0_NE \
  32. | X86_CR0_NW | X86_CR0_CD)
  33. #define KVM_VM_CR0_ALWAYS_ON \
  34. (X86_CR0_PG | X86_CR0_PE | X86_CR0_WP | X86_CR0_NE | X86_CR0_TS \
  35. | X86_CR0_MP)
  36. #define KVM_GUEST_CR4_MASK \
  37. (X86_CR4_VME | X86_CR4_PSE | X86_CR4_PAE | X86_CR4_PGE | X86_CR4_VMXE)
  38. #define KVM_PMODE_VM_CR4_ALWAYS_ON (X86_CR4_PAE | X86_CR4_VMXE)
  39. #define KVM_RMODE_VM_CR4_ALWAYS_ON (X86_CR4_VME | X86_CR4_PAE | X86_CR4_VMXE)
  40. #define INVALID_PAGE (~(hpa_t)0)
  41. #define UNMAPPED_GVA (~(gpa_t)0)
  42. /* shadow tables are PAE even on non-PAE hosts */
  43. #define KVM_HPAGE_SHIFT 21
  44. #define KVM_HPAGE_SIZE (1UL << KVM_HPAGE_SHIFT)
  45. #define KVM_HPAGE_MASK (~(KVM_HPAGE_SIZE - 1))
  46. #define KVM_PAGES_PER_HPAGE (KVM_HPAGE_SIZE / PAGE_SIZE)
  47. #define DE_VECTOR 0
  48. #define DB_VECTOR 1
  49. #define BP_VECTOR 3
  50. #define OF_VECTOR 4
  51. #define BR_VECTOR 5
  52. #define UD_VECTOR 6
  53. #define NM_VECTOR 7
  54. #define DF_VECTOR 8
  55. #define TS_VECTOR 10
  56. #define NP_VECTOR 11
  57. #define SS_VECTOR 12
  58. #define GP_VECTOR 13
  59. #define PF_VECTOR 14
  60. #define MF_VECTOR 16
  61. #define MC_VECTOR 18
  62. #define SELECTOR_TI_MASK (1 << 2)
  63. #define SELECTOR_RPL_MASK 0x03
  64. #define IOPL_SHIFT 12
  65. #define KVM_ALIAS_SLOTS 4
  66. #define KVM_PERMILLE_MMU_PAGES 20
  67. #define KVM_MIN_ALLOC_MMU_PAGES 64
  68. #define KVM_MMU_HASH_SHIFT 10
  69. #define KVM_NUM_MMU_PAGES (1 << KVM_MMU_HASH_SHIFT)
  70. #define KVM_MIN_FREE_MMU_PAGES 5
  71. #define KVM_REFILL_PAGES 25
  72. #define KVM_MAX_CPUID_ENTRIES 40
  73. #define KVM_NR_VAR_MTRR 8
  74. extern spinlock_t kvm_lock;
  75. extern struct list_head vm_list;
  76. struct kvm_vcpu;
  77. struct kvm;
  78. enum kvm_reg {
  79. VCPU_REGS_RAX = 0,
  80. VCPU_REGS_RCX = 1,
  81. VCPU_REGS_RDX = 2,
  82. VCPU_REGS_RBX = 3,
  83. VCPU_REGS_RSP = 4,
  84. VCPU_REGS_RBP = 5,
  85. VCPU_REGS_RSI = 6,
  86. VCPU_REGS_RDI = 7,
  87. #ifdef CONFIG_X86_64
  88. VCPU_REGS_R8 = 8,
  89. VCPU_REGS_R9 = 9,
  90. VCPU_REGS_R10 = 10,
  91. VCPU_REGS_R11 = 11,
  92. VCPU_REGS_R12 = 12,
  93. VCPU_REGS_R13 = 13,
  94. VCPU_REGS_R14 = 14,
  95. VCPU_REGS_R15 = 15,
  96. #endif
  97. VCPU_REGS_RIP,
  98. NR_VCPU_REGS
  99. };
  100. enum {
  101. VCPU_SREG_ES,
  102. VCPU_SREG_CS,
  103. VCPU_SREG_SS,
  104. VCPU_SREG_DS,
  105. VCPU_SREG_FS,
  106. VCPU_SREG_GS,
  107. VCPU_SREG_TR,
  108. VCPU_SREG_LDTR,
  109. };
  110. #include <asm/kvm_x86_emulate.h>
  111. #define KVM_NR_MEM_OBJS 40
  112. struct kvm_guest_debug {
  113. int enabled;
  114. unsigned long bp[4];
  115. int singlestep;
  116. };
  117. /*
  118. * We don't want allocation failures within the mmu code, so we preallocate
  119. * enough memory for a single page fault in a cache.
  120. */
  121. struct kvm_mmu_memory_cache {
  122. int nobjs;
  123. void *objects[KVM_NR_MEM_OBJS];
  124. };
  125. #define NR_PTE_CHAIN_ENTRIES 5
  126. struct kvm_pte_chain {
  127. u64 *parent_ptes[NR_PTE_CHAIN_ENTRIES];
  128. struct hlist_node link;
  129. };
  130. /*
  131. * kvm_mmu_page_role, below, is defined as:
  132. *
  133. * bits 0:3 - total guest paging levels (2-4, or zero for real mode)
  134. * bits 4:7 - page table level for this shadow (1-4)
  135. * bits 8:9 - page table quadrant for 2-level guests
  136. * bit 16 - "metaphysical" - gfn is not a real page (huge page/real mode)
  137. * bits 17:19 - common access permissions for all ptes in this shadow page
  138. */
  139. union kvm_mmu_page_role {
  140. unsigned word;
  141. struct {
  142. unsigned glevels:4;
  143. unsigned level:4;
  144. unsigned quadrant:2;
  145. unsigned pad_for_nice_hex_output:6;
  146. unsigned metaphysical:1;
  147. unsigned access:3;
  148. unsigned invalid:1;
  149. };
  150. };
  151. struct kvm_mmu_page {
  152. struct list_head link;
  153. struct hlist_node hash_link;
  154. /*
  155. * The following two entries are used to key the shadow page in the
  156. * hash table.
  157. */
  158. gfn_t gfn;
  159. union kvm_mmu_page_role role;
  160. u64 *spt;
  161. /* hold the gfn of each spte inside spt */
  162. gfn_t *gfns;
  163. unsigned long slot_bitmap; /* One bit set per slot which has memory
  164. * in this shadow page.
  165. */
  166. int multimapped; /* More than one parent_pte? */
  167. int root_count; /* Currently serving as active root */
  168. bool unsync;
  169. bool unsync_children;
  170. union {
  171. u64 *parent_pte; /* !multimapped */
  172. struct hlist_head parent_ptes; /* multimapped, kvm_pte_chain */
  173. };
  174. DECLARE_BITMAP(unsync_child_bitmap, 512);
  175. };
  176. struct kvm_pv_mmu_op_buffer {
  177. void *ptr;
  178. unsigned len;
  179. unsigned processed;
  180. char buf[512] __aligned(sizeof(long));
  181. };
  182. /*
  183. * x86 supports 3 paging modes (4-level 64-bit, 3-level 64-bit, and 2-level
  184. * 32-bit). The kvm_mmu structure abstracts the details of the current mmu
  185. * mode.
  186. */
  187. struct kvm_mmu {
  188. void (*new_cr3)(struct kvm_vcpu *vcpu);
  189. int (*page_fault)(struct kvm_vcpu *vcpu, gva_t gva, u32 err);
  190. void (*free)(struct kvm_vcpu *vcpu);
  191. gpa_t (*gva_to_gpa)(struct kvm_vcpu *vcpu, gva_t gva);
  192. void (*prefetch_page)(struct kvm_vcpu *vcpu,
  193. struct kvm_mmu_page *page);
  194. int (*sync_page)(struct kvm_vcpu *vcpu,
  195. struct kvm_mmu_page *sp);
  196. void (*invlpg)(struct kvm_vcpu *vcpu, gva_t gva);
  197. hpa_t root_hpa;
  198. int root_level;
  199. int shadow_root_level;
  200. u64 *pae_root;
  201. };
  202. struct kvm_vcpu_arch {
  203. u64 host_tsc;
  204. int interrupt_window_open;
  205. unsigned long irq_summary; /* bit vector: 1 per word in irq_pending */
  206. DECLARE_BITMAP(irq_pending, KVM_NR_INTERRUPTS);
  207. /*
  208. * rip and regs accesses must go through
  209. * kvm_{register,rip}_{read,write} functions.
  210. */
  211. unsigned long regs[NR_VCPU_REGS];
  212. u32 regs_avail;
  213. u32 regs_dirty;
  214. unsigned long cr0;
  215. unsigned long cr2;
  216. unsigned long cr3;
  217. unsigned long cr4;
  218. unsigned long cr8;
  219. u64 pdptrs[4]; /* pae */
  220. u64 shadow_efer;
  221. u64 apic_base;
  222. struct kvm_lapic *apic; /* kernel irqchip context */
  223. int mp_state;
  224. int sipi_vector;
  225. u64 ia32_misc_enable_msr;
  226. bool tpr_access_reporting;
  227. struct kvm_mmu mmu;
  228. /* only needed in kvm_pv_mmu_op() path, but it's hot so
  229. * put it here to avoid allocation */
  230. struct kvm_pv_mmu_op_buffer mmu_op_buffer;
  231. struct kvm_mmu_memory_cache mmu_pte_chain_cache;
  232. struct kvm_mmu_memory_cache mmu_rmap_desc_cache;
  233. struct kvm_mmu_memory_cache mmu_page_cache;
  234. struct kvm_mmu_memory_cache mmu_page_header_cache;
  235. gfn_t last_pt_write_gfn;
  236. int last_pt_write_count;
  237. u64 *last_pte_updated;
  238. gfn_t last_pte_gfn;
  239. struct {
  240. gfn_t gfn; /* presumed gfn during guest pte update */
  241. pfn_t pfn; /* pfn corresponding to that gfn */
  242. int largepage;
  243. unsigned long mmu_seq;
  244. } update_pte;
  245. struct i387_fxsave_struct host_fx_image;
  246. struct i387_fxsave_struct guest_fx_image;
  247. gva_t mmio_fault_cr2;
  248. struct kvm_pio_request pio;
  249. void *pio_data;
  250. struct kvm_queued_exception {
  251. bool pending;
  252. bool has_error_code;
  253. u8 nr;
  254. u32 error_code;
  255. } exception;
  256. struct kvm_queued_interrupt {
  257. bool pending;
  258. u8 nr;
  259. } interrupt;
  260. struct {
  261. int active;
  262. u8 save_iopl;
  263. struct kvm_save_segment {
  264. u16 selector;
  265. unsigned long base;
  266. u32 limit;
  267. u32 ar;
  268. } tr, es, ds, fs, gs;
  269. } rmode;
  270. int halt_request; /* real mode on Intel only */
  271. int cpuid_nent;
  272. struct kvm_cpuid_entry2 cpuid_entries[KVM_MAX_CPUID_ENTRIES];
  273. /* emulate context */
  274. struct x86_emulate_ctxt emulate_ctxt;
  275. gpa_t time;
  276. struct pvclock_vcpu_time_info hv_clock;
  277. unsigned int hv_clock_tsc_khz;
  278. unsigned int time_offset;
  279. struct page *time_page;
  280. bool nmi_pending;
  281. bool nmi_injected;
  282. bool nmi_window_open;
  283. u64 mtrr[0x100];
  284. };
  285. struct kvm_mem_alias {
  286. gfn_t base_gfn;
  287. unsigned long npages;
  288. gfn_t target_gfn;
  289. };
  290. struct kvm_arch{
  291. int naliases;
  292. struct kvm_mem_alias aliases[KVM_ALIAS_SLOTS];
  293. unsigned int n_free_mmu_pages;
  294. unsigned int n_requested_mmu_pages;
  295. unsigned int n_alloc_mmu_pages;
  296. struct hlist_head mmu_page_hash[KVM_NUM_MMU_PAGES];
  297. /*
  298. * Hash table of struct kvm_mmu_page.
  299. */
  300. struct list_head active_mmu_pages;
  301. struct list_head assigned_dev_head;
  302. struct dmar_domain *intel_iommu_domain;
  303. struct kvm_pic *vpic;
  304. struct kvm_ioapic *vioapic;
  305. struct kvm_pit *vpit;
  306. struct hlist_head irq_ack_notifier_list;
  307. int round_robin_prev_vcpu;
  308. unsigned int tss_addr;
  309. struct page *apic_access_page;
  310. gpa_t wall_clock;
  311. struct page *ept_identity_pagetable;
  312. bool ept_identity_pagetable_done;
  313. unsigned long irq_sources_bitmap;
  314. unsigned long irq_states[KVM_IOAPIC_NUM_PINS];
  315. };
  316. struct kvm_vm_stat {
  317. u32 mmu_shadow_zapped;
  318. u32 mmu_pte_write;
  319. u32 mmu_pte_updated;
  320. u32 mmu_pde_zapped;
  321. u32 mmu_flooded;
  322. u32 mmu_recycled;
  323. u32 mmu_cache_miss;
  324. u32 mmu_unsync;
  325. u32 remote_tlb_flush;
  326. u32 lpages;
  327. };
  328. struct kvm_vcpu_stat {
  329. u32 pf_fixed;
  330. u32 pf_guest;
  331. u32 tlb_flush;
  332. u32 invlpg;
  333. u32 exits;
  334. u32 io_exits;
  335. u32 mmio_exits;
  336. u32 signal_exits;
  337. u32 irq_window_exits;
  338. u32 nmi_window_exits;
  339. u32 halt_exits;
  340. u32 halt_wakeup;
  341. u32 request_irq_exits;
  342. u32 irq_exits;
  343. u32 host_state_reload;
  344. u32 efer_reload;
  345. u32 fpu_reload;
  346. u32 insn_emulation;
  347. u32 insn_emulation_fail;
  348. u32 hypercalls;
  349. u32 irq_injections;
  350. };
  351. struct descriptor_table {
  352. u16 limit;
  353. unsigned long base;
  354. } __attribute__((packed));
  355. struct kvm_x86_ops {
  356. int (*cpu_has_kvm_support)(void); /* __init */
  357. int (*disabled_by_bios)(void); /* __init */
  358. void (*hardware_enable)(void *dummy); /* __init */
  359. void (*hardware_disable)(void *dummy);
  360. void (*check_processor_compatibility)(void *rtn);
  361. int (*hardware_setup)(void); /* __init */
  362. void (*hardware_unsetup)(void); /* __exit */
  363. bool (*cpu_has_accelerated_tpr)(void);
  364. /* Create, but do not attach this VCPU */
  365. struct kvm_vcpu *(*vcpu_create)(struct kvm *kvm, unsigned id);
  366. void (*vcpu_free)(struct kvm_vcpu *vcpu);
  367. int (*vcpu_reset)(struct kvm_vcpu *vcpu);
  368. void (*prepare_guest_switch)(struct kvm_vcpu *vcpu);
  369. void (*vcpu_load)(struct kvm_vcpu *vcpu, int cpu);
  370. void (*vcpu_put)(struct kvm_vcpu *vcpu);
  371. int (*set_guest_debug)(struct kvm_vcpu *vcpu,
  372. struct kvm_debug_guest *dbg);
  373. void (*guest_debug_pre)(struct kvm_vcpu *vcpu);
  374. int (*get_msr)(struct kvm_vcpu *vcpu, u32 msr_index, u64 *pdata);
  375. int (*set_msr)(struct kvm_vcpu *vcpu, u32 msr_index, u64 data);
  376. u64 (*get_segment_base)(struct kvm_vcpu *vcpu, int seg);
  377. void (*get_segment)(struct kvm_vcpu *vcpu,
  378. struct kvm_segment *var, int seg);
  379. int (*get_cpl)(struct kvm_vcpu *vcpu);
  380. void (*set_segment)(struct kvm_vcpu *vcpu,
  381. struct kvm_segment *var, int seg);
  382. void (*get_cs_db_l_bits)(struct kvm_vcpu *vcpu, int *db, int *l);
  383. void (*decache_cr4_guest_bits)(struct kvm_vcpu *vcpu);
  384. void (*set_cr0)(struct kvm_vcpu *vcpu, unsigned long cr0);
  385. void (*set_cr3)(struct kvm_vcpu *vcpu, unsigned long cr3);
  386. void (*set_cr4)(struct kvm_vcpu *vcpu, unsigned long cr4);
  387. void (*set_efer)(struct kvm_vcpu *vcpu, u64 efer);
  388. void (*get_idt)(struct kvm_vcpu *vcpu, struct descriptor_table *dt);
  389. void (*set_idt)(struct kvm_vcpu *vcpu, struct descriptor_table *dt);
  390. void (*get_gdt)(struct kvm_vcpu *vcpu, struct descriptor_table *dt);
  391. void (*set_gdt)(struct kvm_vcpu *vcpu, struct descriptor_table *dt);
  392. unsigned long (*get_dr)(struct kvm_vcpu *vcpu, int dr);
  393. void (*set_dr)(struct kvm_vcpu *vcpu, int dr, unsigned long value,
  394. int *exception);
  395. void (*cache_reg)(struct kvm_vcpu *vcpu, enum kvm_reg reg);
  396. unsigned long (*get_rflags)(struct kvm_vcpu *vcpu);
  397. void (*set_rflags)(struct kvm_vcpu *vcpu, unsigned long rflags);
  398. void (*tlb_flush)(struct kvm_vcpu *vcpu);
  399. void (*run)(struct kvm_vcpu *vcpu, struct kvm_run *run);
  400. int (*handle_exit)(struct kvm_run *run, struct kvm_vcpu *vcpu);
  401. void (*skip_emulated_instruction)(struct kvm_vcpu *vcpu);
  402. void (*patch_hypercall)(struct kvm_vcpu *vcpu,
  403. unsigned char *hypercall_addr);
  404. int (*get_irq)(struct kvm_vcpu *vcpu);
  405. void (*set_irq)(struct kvm_vcpu *vcpu, int vec);
  406. void (*queue_exception)(struct kvm_vcpu *vcpu, unsigned nr,
  407. bool has_error_code, u32 error_code);
  408. bool (*exception_injected)(struct kvm_vcpu *vcpu);
  409. void (*inject_pending_irq)(struct kvm_vcpu *vcpu);
  410. void (*inject_pending_vectors)(struct kvm_vcpu *vcpu,
  411. struct kvm_run *run);
  412. int (*set_tss_addr)(struct kvm *kvm, unsigned int addr);
  413. int (*get_tdp_level)(void);
  414. };
  415. extern struct kvm_x86_ops *kvm_x86_ops;
  416. int kvm_mmu_module_init(void);
  417. void kvm_mmu_module_exit(void);
  418. void kvm_mmu_destroy(struct kvm_vcpu *vcpu);
  419. int kvm_mmu_create(struct kvm_vcpu *vcpu);
  420. int kvm_mmu_setup(struct kvm_vcpu *vcpu);
  421. void kvm_mmu_set_nonpresent_ptes(u64 trap_pte, u64 notrap_pte);
  422. void kvm_mmu_set_base_ptes(u64 base_pte);
  423. void kvm_mmu_set_mask_ptes(u64 user_mask, u64 accessed_mask,
  424. u64 dirty_mask, u64 nx_mask, u64 x_mask);
  425. int kvm_mmu_reset_context(struct kvm_vcpu *vcpu);
  426. void kvm_mmu_slot_remove_write_access(struct kvm *kvm, int slot);
  427. void kvm_mmu_zap_all(struct kvm *kvm);
  428. unsigned int kvm_mmu_calculate_mmu_pages(struct kvm *kvm);
  429. void kvm_mmu_change_mmu_pages(struct kvm *kvm, unsigned int kvm_nr_mmu_pages);
  430. int load_pdptrs(struct kvm_vcpu *vcpu, unsigned long cr3);
  431. int emulator_write_phys(struct kvm_vcpu *vcpu, gpa_t gpa,
  432. const void *val, int bytes);
  433. int kvm_pv_mmu_op(struct kvm_vcpu *vcpu, unsigned long bytes,
  434. gpa_t addr, unsigned long *ret);
  435. extern bool tdp_enabled;
  436. enum emulation_result {
  437. EMULATE_DONE, /* no further processing */
  438. EMULATE_DO_MMIO, /* kvm_run filled with mmio request */
  439. EMULATE_FAIL, /* can't emulate this instruction */
  440. };
  441. #define EMULTYPE_NO_DECODE (1 << 0)
  442. #define EMULTYPE_TRAP_UD (1 << 1)
  443. int emulate_instruction(struct kvm_vcpu *vcpu, struct kvm_run *run,
  444. unsigned long cr2, u16 error_code, int emulation_type);
  445. void kvm_report_emulation_failure(struct kvm_vcpu *cvpu, const char *context);
  446. void realmode_lgdt(struct kvm_vcpu *vcpu, u16 size, unsigned long address);
  447. void realmode_lidt(struct kvm_vcpu *vcpu, u16 size, unsigned long address);
  448. void realmode_lmsw(struct kvm_vcpu *vcpu, unsigned long msw,
  449. unsigned long *rflags);
  450. unsigned long realmode_get_cr(struct kvm_vcpu *vcpu, int cr);
  451. void realmode_set_cr(struct kvm_vcpu *vcpu, int cr, unsigned long value,
  452. unsigned long *rflags);
  453. void kvm_enable_efer_bits(u64);
  454. int kvm_get_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 *data);
  455. int kvm_set_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 data);
  456. struct x86_emulate_ctxt;
  457. int kvm_emulate_pio(struct kvm_vcpu *vcpu, struct kvm_run *run, int in,
  458. int size, unsigned port);
  459. int kvm_emulate_pio_string(struct kvm_vcpu *vcpu, struct kvm_run *run, int in,
  460. int size, unsigned long count, int down,
  461. gva_t address, int rep, unsigned port);
  462. void kvm_emulate_cpuid(struct kvm_vcpu *vcpu);
  463. int kvm_emulate_halt(struct kvm_vcpu *vcpu);
  464. int emulate_invlpg(struct kvm_vcpu *vcpu, gva_t address);
  465. int emulate_clts(struct kvm_vcpu *vcpu);
  466. int emulator_get_dr(struct x86_emulate_ctxt *ctxt, int dr,
  467. unsigned long *dest);
  468. int emulator_set_dr(struct x86_emulate_ctxt *ctxt, int dr,
  469. unsigned long value);
  470. void kvm_get_segment(struct kvm_vcpu *vcpu, struct kvm_segment *var, int seg);
  471. int kvm_load_segment_descriptor(struct kvm_vcpu *vcpu, u16 selector,
  472. int type_bits, int seg);
  473. int kvm_task_switch(struct kvm_vcpu *vcpu, u16 tss_selector, int reason);
  474. void kvm_set_cr0(struct kvm_vcpu *vcpu, unsigned long cr0);
  475. void kvm_set_cr3(struct kvm_vcpu *vcpu, unsigned long cr3);
  476. void kvm_set_cr4(struct kvm_vcpu *vcpu, unsigned long cr4);
  477. void kvm_set_cr8(struct kvm_vcpu *vcpu, unsigned long cr8);
  478. unsigned long kvm_get_cr8(struct kvm_vcpu *vcpu);
  479. void kvm_lmsw(struct kvm_vcpu *vcpu, unsigned long msw);
  480. void kvm_get_cs_db_l_bits(struct kvm_vcpu *vcpu, int *db, int *l);
  481. int kvm_get_msr_common(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata);
  482. int kvm_set_msr_common(struct kvm_vcpu *vcpu, u32 msr, u64 data);
  483. void kvm_queue_exception(struct kvm_vcpu *vcpu, unsigned nr);
  484. void kvm_queue_exception_e(struct kvm_vcpu *vcpu, unsigned nr, u32 error_code);
  485. void kvm_inject_page_fault(struct kvm_vcpu *vcpu, unsigned long cr2,
  486. u32 error_code);
  487. void kvm_pic_set_irq(void *opaque, int irq, int level);
  488. void kvm_inject_nmi(struct kvm_vcpu *vcpu);
  489. void fx_init(struct kvm_vcpu *vcpu);
  490. int emulator_read_std(unsigned long addr,
  491. void *val,
  492. unsigned int bytes,
  493. struct kvm_vcpu *vcpu);
  494. int emulator_write_emulated(unsigned long addr,
  495. const void *val,
  496. unsigned int bytes,
  497. struct kvm_vcpu *vcpu);
  498. unsigned long segment_base(u16 selector);
  499. void kvm_mmu_flush_tlb(struct kvm_vcpu *vcpu);
  500. void kvm_mmu_pte_write(struct kvm_vcpu *vcpu, gpa_t gpa,
  501. const u8 *new, int bytes);
  502. int kvm_mmu_unprotect_page_virt(struct kvm_vcpu *vcpu, gva_t gva);
  503. void __kvm_mmu_free_some_pages(struct kvm_vcpu *vcpu);
  504. int kvm_mmu_load(struct kvm_vcpu *vcpu);
  505. void kvm_mmu_unload(struct kvm_vcpu *vcpu);
  506. void kvm_mmu_sync_roots(struct kvm_vcpu *vcpu);
  507. int kvm_emulate_hypercall(struct kvm_vcpu *vcpu);
  508. int kvm_fix_hypercall(struct kvm_vcpu *vcpu);
  509. int kvm_mmu_page_fault(struct kvm_vcpu *vcpu, gva_t gva, u32 error_code);
  510. void kvm_mmu_invlpg(struct kvm_vcpu *vcpu, gva_t gva);
  511. void kvm_enable_tdp(void);
  512. void kvm_disable_tdp(void);
  513. int load_pdptrs(struct kvm_vcpu *vcpu, unsigned long cr3);
  514. int complete_pio(struct kvm_vcpu *vcpu);
  515. static inline struct kvm_mmu_page *page_header(hpa_t shadow_page)
  516. {
  517. struct page *page = pfn_to_page(shadow_page >> PAGE_SHIFT);
  518. return (struct kvm_mmu_page *)page_private(page);
  519. }
  520. static inline u16 kvm_read_fs(void)
  521. {
  522. u16 seg;
  523. asm("mov %%fs, %0" : "=g"(seg));
  524. return seg;
  525. }
  526. static inline u16 kvm_read_gs(void)
  527. {
  528. u16 seg;
  529. asm("mov %%gs, %0" : "=g"(seg));
  530. return seg;
  531. }
  532. static inline u16 kvm_read_ldt(void)
  533. {
  534. u16 ldt;
  535. asm("sldt %0" : "=g"(ldt));
  536. return ldt;
  537. }
  538. static inline void kvm_load_fs(u16 sel)
  539. {
  540. asm("mov %0, %%fs" : : "rm"(sel));
  541. }
  542. static inline void kvm_load_gs(u16 sel)
  543. {
  544. asm("mov %0, %%gs" : : "rm"(sel));
  545. }
  546. static inline void kvm_load_ldt(u16 sel)
  547. {
  548. asm("lldt %0" : : "rm"(sel));
  549. }
  550. static inline void kvm_get_idt(struct descriptor_table *table)
  551. {
  552. asm("sidt %0" : "=m"(*table));
  553. }
  554. static inline void kvm_get_gdt(struct descriptor_table *table)
  555. {
  556. asm("sgdt %0" : "=m"(*table));
  557. }
  558. static inline unsigned long kvm_read_tr_base(void)
  559. {
  560. u16 tr;
  561. asm("str %0" : "=g"(tr));
  562. return segment_base(tr);
  563. }
  564. #ifdef CONFIG_X86_64
  565. static inline unsigned long read_msr(unsigned long msr)
  566. {
  567. u64 value;
  568. rdmsrl(msr, value);
  569. return value;
  570. }
  571. #endif
  572. static inline void kvm_fx_save(struct i387_fxsave_struct *image)
  573. {
  574. asm("fxsave (%0)":: "r" (image));
  575. }
  576. static inline void kvm_fx_restore(struct i387_fxsave_struct *image)
  577. {
  578. asm("fxrstor (%0)":: "r" (image));
  579. }
  580. static inline void kvm_fx_finit(void)
  581. {
  582. asm("finit");
  583. }
  584. static inline u32 get_rdx_init_val(void)
  585. {
  586. return 0x600; /* P6 family */
  587. }
  588. static inline void kvm_inject_gp(struct kvm_vcpu *vcpu, u32 error_code)
  589. {
  590. kvm_queue_exception_e(vcpu, GP_VECTOR, error_code);
  591. }
  592. #define ASM_VMX_VMCLEAR_RAX ".byte 0x66, 0x0f, 0xc7, 0x30"
  593. #define ASM_VMX_VMLAUNCH ".byte 0x0f, 0x01, 0xc2"
  594. #define ASM_VMX_VMRESUME ".byte 0x0f, 0x01, 0xc3"
  595. #define ASM_VMX_VMPTRLD_RAX ".byte 0x0f, 0xc7, 0x30"
  596. #define ASM_VMX_VMREAD_RDX_RAX ".byte 0x0f, 0x78, 0xd0"
  597. #define ASM_VMX_VMWRITE_RAX_RDX ".byte 0x0f, 0x79, 0xd0"
  598. #define ASM_VMX_VMWRITE_RSP_RDX ".byte 0x0f, 0x79, 0xd4"
  599. #define ASM_VMX_VMXOFF ".byte 0x0f, 0x01, 0xc4"
  600. #define ASM_VMX_VMXON_RAX ".byte 0xf3, 0x0f, 0xc7, 0x30"
  601. #define ASM_VMX_INVEPT ".byte 0x66, 0x0f, 0x38, 0x80, 0x08"
  602. #define ASM_VMX_INVVPID ".byte 0x66, 0x0f, 0x38, 0x81, 0x08"
  603. #define MSR_IA32_TIME_STAMP_COUNTER 0x010
  604. #define TSS_IOPB_BASE_OFFSET 0x66
  605. #define TSS_BASE_SIZE 0x68
  606. #define TSS_IOPB_SIZE (65536 / 8)
  607. #define TSS_REDIRECTION_SIZE (256 / 8)
  608. #define RMODE_TSS_SIZE \
  609. (TSS_BASE_SIZE + TSS_REDIRECTION_SIZE + TSS_IOPB_SIZE + 1)
  610. enum {
  611. TASK_SWITCH_CALL = 0,
  612. TASK_SWITCH_IRET = 1,
  613. TASK_SWITCH_JMP = 2,
  614. TASK_SWITCH_GATE = 3,
  615. };
  616. /*
  617. * Hardware virtualization extension instructions may fault if a
  618. * reboot turns off virtualization while processes are running.
  619. * Trap the fault and ignore the instruction if that happens.
  620. */
  621. asmlinkage void kvm_handle_fault_on_reboot(void);
  622. #define __kvm_handle_fault_on_reboot(insn) \
  623. "666: " insn "\n\t" \
  624. ".pushsection .fixup, \"ax\" \n" \
  625. "667: \n\t" \
  626. __ASM_SIZE(push) " $666b \n\t" \
  627. "jmp kvm_handle_fault_on_reboot \n\t" \
  628. ".popsection \n\t" \
  629. ".pushsection __ex_table, \"a\" \n\t" \
  630. _ASM_PTR " 666b, 667b \n\t" \
  631. ".popsection"
  632. #define KVM_ARCH_WANT_MMU_NOTIFIER
  633. int kvm_unmap_hva(struct kvm *kvm, unsigned long hva);
  634. int kvm_age_hva(struct kvm *kvm, unsigned long hva);
  635. #endif /* _ASM_X86_KVM_HOST_H */