kvm_host.h 30 KB

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  1. #ifndef __KVM_HOST_H
  2. #define __KVM_HOST_H
  3. /*
  4. * This work is licensed under the terms of the GNU GPL, version 2. See
  5. * the COPYING file in the top-level directory.
  6. */
  7. #include <linux/types.h>
  8. #include <linux/hardirq.h>
  9. #include <linux/list.h>
  10. #include <linux/mutex.h>
  11. #include <linux/spinlock.h>
  12. #include <linux/signal.h>
  13. #include <linux/sched.h>
  14. #include <linux/bug.h>
  15. #include <linux/mm.h>
  16. #include <linux/mmu_notifier.h>
  17. #include <linux/preempt.h>
  18. #include <linux/msi.h>
  19. #include <linux/slab.h>
  20. #include <linux/rcupdate.h>
  21. #include <linux/ratelimit.h>
  22. #include <linux/err.h>
  23. #include <linux/irqflags.h>
  24. #include <linux/context_tracking.h>
  25. #include <asm/signal.h>
  26. #include <linux/kvm.h>
  27. #include <linux/kvm_para.h>
  28. #include <linux/kvm_types.h>
  29. #include <asm/kvm_host.h>
  30. #ifndef KVM_MMIO_SIZE
  31. #define KVM_MMIO_SIZE 8
  32. #endif
  33. /*
  34. * The bit 16 ~ bit 31 of kvm_memory_region::flags are internally used
  35. * in kvm, other bits are visible for userspace which are defined in
  36. * include/linux/kvm_h.
  37. */
  38. #define KVM_MEMSLOT_INVALID (1UL << 16)
  39. /* Two fragments for cross MMIO pages. */
  40. #define KVM_MAX_MMIO_FRAGMENTS 2
  41. /*
  42. * For the normal pfn, the highest 12 bits should be zero,
  43. * so we can mask bit 62 ~ bit 52 to indicate the error pfn,
  44. * mask bit 63 to indicate the noslot pfn.
  45. */
  46. #define KVM_PFN_ERR_MASK (0x7ffULL << 52)
  47. #define KVM_PFN_ERR_NOSLOT_MASK (0xfffULL << 52)
  48. #define KVM_PFN_NOSLOT (0x1ULL << 63)
  49. #define KVM_PFN_ERR_FAULT (KVM_PFN_ERR_MASK)
  50. #define KVM_PFN_ERR_HWPOISON (KVM_PFN_ERR_MASK + 1)
  51. #define KVM_PFN_ERR_RO_FAULT (KVM_PFN_ERR_MASK + 2)
  52. /*
  53. * error pfns indicate that the gfn is in slot but faild to
  54. * translate it to pfn on host.
  55. */
  56. static inline bool is_error_pfn(pfn_t pfn)
  57. {
  58. return !!(pfn & KVM_PFN_ERR_MASK);
  59. }
  60. /*
  61. * error_noslot pfns indicate that the gfn can not be
  62. * translated to pfn - it is not in slot or failed to
  63. * translate it to pfn.
  64. */
  65. static inline bool is_error_noslot_pfn(pfn_t pfn)
  66. {
  67. return !!(pfn & KVM_PFN_ERR_NOSLOT_MASK);
  68. }
  69. /* noslot pfn indicates that the gfn is not in slot. */
  70. static inline bool is_noslot_pfn(pfn_t pfn)
  71. {
  72. return pfn == KVM_PFN_NOSLOT;
  73. }
  74. /*
  75. * architectures with KVM_HVA_ERR_BAD other than PAGE_OFFSET (e.g. s390)
  76. * provide own defines and kvm_is_error_hva
  77. */
  78. #ifndef KVM_HVA_ERR_BAD
  79. #define KVM_HVA_ERR_BAD (PAGE_OFFSET)
  80. #define KVM_HVA_ERR_RO_BAD (PAGE_OFFSET + PAGE_SIZE)
  81. static inline bool kvm_is_error_hva(unsigned long addr)
  82. {
  83. return addr >= PAGE_OFFSET;
  84. }
  85. #endif
  86. #define KVM_ERR_PTR_BAD_PAGE (ERR_PTR(-ENOENT))
  87. static inline bool is_error_page(struct page *page)
  88. {
  89. return IS_ERR(page);
  90. }
  91. /*
  92. * vcpu->requests bit members
  93. */
  94. #define KVM_REQ_TLB_FLUSH 0
  95. #define KVM_REQ_MIGRATE_TIMER 1
  96. #define KVM_REQ_REPORT_TPR_ACCESS 2
  97. #define KVM_REQ_MMU_RELOAD 3
  98. #define KVM_REQ_TRIPLE_FAULT 4
  99. #define KVM_REQ_PENDING_TIMER 5
  100. #define KVM_REQ_UNHALT 6
  101. #define KVM_REQ_MMU_SYNC 7
  102. #define KVM_REQ_CLOCK_UPDATE 8
  103. #define KVM_REQ_KICK 9
  104. #define KVM_REQ_DEACTIVATE_FPU 10
  105. #define KVM_REQ_EVENT 11
  106. #define KVM_REQ_APF_HALT 12
  107. #define KVM_REQ_STEAL_UPDATE 13
  108. #define KVM_REQ_NMI 14
  109. #define KVM_REQ_PMU 15
  110. #define KVM_REQ_PMI 16
  111. #define KVM_REQ_WATCHDOG 17
  112. #define KVM_REQ_MASTERCLOCK_UPDATE 18
  113. #define KVM_REQ_MCLOCK_INPROGRESS 19
  114. #define KVM_REQ_EPR_EXIT 20
  115. #define KVM_REQ_SCAN_IOAPIC 21
  116. #define KVM_REQ_GLOBAL_CLOCK_UPDATE 22
  117. #define KVM_REQ_ENABLE_IBS 23
  118. #define KVM_REQ_DISABLE_IBS 24
  119. #define KVM_USERSPACE_IRQ_SOURCE_ID 0
  120. #define KVM_IRQFD_RESAMPLE_IRQ_SOURCE_ID 1
  121. struct kvm;
  122. struct kvm_vcpu;
  123. extern struct kmem_cache *kvm_vcpu_cache;
  124. extern spinlock_t kvm_lock;
  125. extern struct list_head vm_list;
  126. struct kvm_io_range {
  127. gpa_t addr;
  128. int len;
  129. struct kvm_io_device *dev;
  130. };
  131. #define NR_IOBUS_DEVS 1000
  132. struct kvm_io_bus {
  133. int dev_count;
  134. int ioeventfd_count;
  135. struct kvm_io_range range[];
  136. };
  137. enum kvm_bus {
  138. KVM_MMIO_BUS,
  139. KVM_PIO_BUS,
  140. KVM_VIRTIO_CCW_NOTIFY_BUS,
  141. KVM_FAST_MMIO_BUS,
  142. KVM_NR_BUSES
  143. };
  144. int kvm_io_bus_write(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
  145. int len, const void *val);
  146. int kvm_io_bus_write_cookie(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
  147. int len, const void *val, long cookie);
  148. int kvm_io_bus_read(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr, int len,
  149. void *val);
  150. int kvm_io_bus_register_dev(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
  151. int len, struct kvm_io_device *dev);
  152. int kvm_io_bus_unregister_dev(struct kvm *kvm, enum kvm_bus bus_idx,
  153. struct kvm_io_device *dev);
  154. #ifdef CONFIG_KVM_ASYNC_PF
  155. struct kvm_async_pf {
  156. struct work_struct work;
  157. struct list_head link;
  158. struct list_head queue;
  159. struct kvm_vcpu *vcpu;
  160. struct mm_struct *mm;
  161. gva_t gva;
  162. unsigned long addr;
  163. struct kvm_arch_async_pf arch;
  164. bool wakeup_all;
  165. };
  166. void kvm_clear_async_pf_completion_queue(struct kvm_vcpu *vcpu);
  167. void kvm_check_async_pf_completion(struct kvm_vcpu *vcpu);
  168. int kvm_setup_async_pf(struct kvm_vcpu *vcpu, gva_t gva, unsigned long hva,
  169. struct kvm_arch_async_pf *arch);
  170. int kvm_async_pf_wakeup_all(struct kvm_vcpu *vcpu);
  171. #endif
  172. enum {
  173. OUTSIDE_GUEST_MODE,
  174. IN_GUEST_MODE,
  175. EXITING_GUEST_MODE,
  176. READING_SHADOW_PAGE_TABLES,
  177. };
  178. /*
  179. * Sometimes a large or cross-page mmio needs to be broken up into separate
  180. * exits for userspace servicing.
  181. */
  182. struct kvm_mmio_fragment {
  183. gpa_t gpa;
  184. void *data;
  185. unsigned len;
  186. };
  187. struct kvm_vcpu {
  188. struct kvm *kvm;
  189. #ifdef CONFIG_PREEMPT_NOTIFIERS
  190. struct preempt_notifier preempt_notifier;
  191. #endif
  192. int cpu;
  193. int vcpu_id;
  194. int srcu_idx;
  195. int mode;
  196. unsigned long requests;
  197. unsigned long guest_debug;
  198. struct mutex mutex;
  199. struct kvm_run *run;
  200. int fpu_active;
  201. int guest_fpu_loaded, guest_xcr0_loaded;
  202. wait_queue_head_t wq;
  203. struct pid *pid;
  204. int sigset_active;
  205. sigset_t sigset;
  206. struct kvm_vcpu_stat stat;
  207. #ifdef CONFIG_HAS_IOMEM
  208. int mmio_needed;
  209. int mmio_read_completed;
  210. int mmio_is_write;
  211. int mmio_cur_fragment;
  212. int mmio_nr_fragments;
  213. struct kvm_mmio_fragment mmio_fragments[KVM_MAX_MMIO_FRAGMENTS];
  214. #endif
  215. #ifdef CONFIG_KVM_ASYNC_PF
  216. struct {
  217. u32 queued;
  218. struct list_head queue;
  219. struct list_head done;
  220. spinlock_t lock;
  221. } async_pf;
  222. #endif
  223. #ifdef CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT
  224. /*
  225. * Cpu relax intercept or pause loop exit optimization
  226. * in_spin_loop: set when a vcpu does a pause loop exit
  227. * or cpu relax intercepted.
  228. * dy_eligible: indicates whether vcpu is eligible for directed yield.
  229. */
  230. struct {
  231. bool in_spin_loop;
  232. bool dy_eligible;
  233. } spin_loop;
  234. #endif
  235. bool preempted;
  236. struct kvm_vcpu_arch arch;
  237. };
  238. static inline int kvm_vcpu_exiting_guest_mode(struct kvm_vcpu *vcpu)
  239. {
  240. return cmpxchg(&vcpu->mode, IN_GUEST_MODE, EXITING_GUEST_MODE);
  241. }
  242. /*
  243. * Some of the bitops functions do not support too long bitmaps.
  244. * This number must be determined not to exceed such limits.
  245. */
  246. #define KVM_MEM_MAX_NR_PAGES ((1UL << 31) - 1)
  247. struct kvm_memory_slot {
  248. gfn_t base_gfn;
  249. unsigned long npages;
  250. unsigned long *dirty_bitmap;
  251. struct kvm_arch_memory_slot arch;
  252. unsigned long userspace_addr;
  253. u32 flags;
  254. short id;
  255. };
  256. static inline unsigned long kvm_dirty_bitmap_bytes(struct kvm_memory_slot *memslot)
  257. {
  258. return ALIGN(memslot->npages, BITS_PER_LONG) / 8;
  259. }
  260. struct kvm_s390_adapter_int {
  261. u64 ind_addr;
  262. u64 summary_addr;
  263. u64 ind_offset;
  264. u32 summary_offset;
  265. u32 adapter_id;
  266. };
  267. struct kvm_kernel_irq_routing_entry {
  268. u32 gsi;
  269. u32 type;
  270. int (*set)(struct kvm_kernel_irq_routing_entry *e,
  271. struct kvm *kvm, int irq_source_id, int level,
  272. bool line_status);
  273. union {
  274. struct {
  275. unsigned irqchip;
  276. unsigned pin;
  277. } irqchip;
  278. struct msi_msg msi;
  279. struct kvm_s390_adapter_int adapter;
  280. };
  281. struct hlist_node link;
  282. };
  283. #ifdef CONFIG_HAVE_KVM_IRQ_ROUTING
  284. struct kvm_irq_routing_table {
  285. int chip[KVM_NR_IRQCHIPS][KVM_IRQCHIP_NUM_PINS];
  286. struct kvm_kernel_irq_routing_entry *rt_entries;
  287. u32 nr_rt_entries;
  288. /*
  289. * Array indexed by gsi. Each entry contains list of irq chips
  290. * the gsi is connected to.
  291. */
  292. struct hlist_head map[0];
  293. };
  294. #else
  295. struct kvm_irq_routing_table {};
  296. #endif
  297. #ifndef KVM_PRIVATE_MEM_SLOTS
  298. #define KVM_PRIVATE_MEM_SLOTS 0
  299. #endif
  300. #ifndef KVM_MEM_SLOTS_NUM
  301. #define KVM_MEM_SLOTS_NUM (KVM_USER_MEM_SLOTS + KVM_PRIVATE_MEM_SLOTS)
  302. #endif
  303. /*
  304. * Note:
  305. * memslots are not sorted by id anymore, please use id_to_memslot()
  306. * to get the memslot by its id.
  307. */
  308. struct kvm_memslots {
  309. u64 generation;
  310. struct kvm_memory_slot memslots[KVM_MEM_SLOTS_NUM];
  311. /* The mapping table from slot id to the index in memslots[]. */
  312. short id_to_index[KVM_MEM_SLOTS_NUM];
  313. };
  314. struct kvm {
  315. spinlock_t mmu_lock;
  316. struct mutex slots_lock;
  317. struct mm_struct *mm; /* userspace tied to this vm */
  318. struct kvm_memslots *memslots;
  319. struct srcu_struct srcu;
  320. struct srcu_struct irq_srcu;
  321. #ifdef CONFIG_KVM_APIC_ARCHITECTURE
  322. u32 bsp_vcpu_id;
  323. #endif
  324. struct kvm_vcpu *vcpus[KVM_MAX_VCPUS];
  325. atomic_t online_vcpus;
  326. int last_boosted_vcpu;
  327. struct list_head vm_list;
  328. struct mutex lock;
  329. struct kvm_io_bus *buses[KVM_NR_BUSES];
  330. #ifdef CONFIG_HAVE_KVM_EVENTFD
  331. struct {
  332. spinlock_t lock;
  333. struct list_head items;
  334. struct list_head resampler_list;
  335. struct mutex resampler_lock;
  336. } irqfds;
  337. struct list_head ioeventfds;
  338. #endif
  339. struct kvm_vm_stat stat;
  340. struct kvm_arch arch;
  341. atomic_t users_count;
  342. #ifdef KVM_COALESCED_MMIO_PAGE_OFFSET
  343. struct kvm_coalesced_mmio_ring *coalesced_mmio_ring;
  344. spinlock_t ring_lock;
  345. struct list_head coalesced_zones;
  346. #endif
  347. struct mutex irq_lock;
  348. #ifdef CONFIG_HAVE_KVM_IRQCHIP
  349. /*
  350. * Update side is protected by irq_lock and,
  351. * if configured, irqfds.lock.
  352. */
  353. struct kvm_irq_routing_table __rcu *irq_routing;
  354. struct hlist_head mask_notifier_list;
  355. struct hlist_head irq_ack_notifier_list;
  356. #endif
  357. #if defined(CONFIG_MMU_NOTIFIER) && defined(KVM_ARCH_WANT_MMU_NOTIFIER)
  358. struct mmu_notifier mmu_notifier;
  359. unsigned long mmu_notifier_seq;
  360. long mmu_notifier_count;
  361. #endif
  362. long tlbs_dirty;
  363. struct list_head devices;
  364. };
  365. #define kvm_err(fmt, ...) \
  366. pr_err("kvm [%i]: " fmt, task_pid_nr(current), ## __VA_ARGS__)
  367. #define kvm_info(fmt, ...) \
  368. pr_info("kvm [%i]: " fmt, task_pid_nr(current), ## __VA_ARGS__)
  369. #define kvm_debug(fmt, ...) \
  370. pr_debug("kvm [%i]: " fmt, task_pid_nr(current), ## __VA_ARGS__)
  371. #define kvm_pr_unimpl(fmt, ...) \
  372. pr_err_ratelimited("kvm [%i]: " fmt, \
  373. task_tgid_nr(current), ## __VA_ARGS__)
  374. /* The guest did something we don't support. */
  375. #define vcpu_unimpl(vcpu, fmt, ...) \
  376. kvm_pr_unimpl("vcpu%i " fmt, (vcpu)->vcpu_id, ## __VA_ARGS__)
  377. static inline struct kvm_vcpu *kvm_get_vcpu(struct kvm *kvm, int i)
  378. {
  379. smp_rmb();
  380. return kvm->vcpus[i];
  381. }
  382. #define kvm_for_each_vcpu(idx, vcpup, kvm) \
  383. for (idx = 0; \
  384. idx < atomic_read(&kvm->online_vcpus) && \
  385. (vcpup = kvm_get_vcpu(kvm, idx)) != NULL; \
  386. idx++)
  387. #define kvm_for_each_memslot(memslot, slots) \
  388. for (memslot = &slots->memslots[0]; \
  389. memslot < slots->memslots + KVM_MEM_SLOTS_NUM && memslot->npages;\
  390. memslot++)
  391. int kvm_vcpu_init(struct kvm_vcpu *vcpu, struct kvm *kvm, unsigned id);
  392. void kvm_vcpu_uninit(struct kvm_vcpu *vcpu);
  393. int __must_check vcpu_load(struct kvm_vcpu *vcpu);
  394. void vcpu_put(struct kvm_vcpu *vcpu);
  395. #ifdef CONFIG_HAVE_KVM_IRQ_ROUTING
  396. int kvm_irqfd_init(void);
  397. void kvm_irqfd_exit(void);
  398. #else
  399. static inline int kvm_irqfd_init(void)
  400. {
  401. return 0;
  402. }
  403. static inline void kvm_irqfd_exit(void)
  404. {
  405. }
  406. #endif
  407. int kvm_init(void *opaque, unsigned vcpu_size, unsigned vcpu_align,
  408. struct module *module);
  409. void kvm_exit(void);
  410. void kvm_get_kvm(struct kvm *kvm);
  411. void kvm_put_kvm(struct kvm *kvm);
  412. static inline struct kvm_memslots *kvm_memslots(struct kvm *kvm)
  413. {
  414. return rcu_dereference_check(kvm->memslots,
  415. srcu_read_lock_held(&kvm->srcu)
  416. || lockdep_is_held(&kvm->slots_lock));
  417. }
  418. static inline struct kvm_memory_slot *
  419. id_to_memslot(struct kvm_memslots *slots, int id)
  420. {
  421. int index = slots->id_to_index[id];
  422. struct kvm_memory_slot *slot;
  423. slot = &slots->memslots[index];
  424. WARN_ON(slot->id != id);
  425. return slot;
  426. }
  427. /*
  428. * KVM_SET_USER_MEMORY_REGION ioctl allows the following operations:
  429. * - create a new memory slot
  430. * - delete an existing memory slot
  431. * - modify an existing memory slot
  432. * -- move it in the guest physical memory space
  433. * -- just change its flags
  434. *
  435. * Since flags can be changed by some of these operations, the following
  436. * differentiation is the best we can do for __kvm_set_memory_region():
  437. */
  438. enum kvm_mr_change {
  439. KVM_MR_CREATE,
  440. KVM_MR_DELETE,
  441. KVM_MR_MOVE,
  442. KVM_MR_FLAGS_ONLY,
  443. };
  444. int kvm_set_memory_region(struct kvm *kvm,
  445. struct kvm_userspace_memory_region *mem);
  446. int __kvm_set_memory_region(struct kvm *kvm,
  447. struct kvm_userspace_memory_region *mem);
  448. void kvm_arch_free_memslot(struct kvm *kvm, struct kvm_memory_slot *free,
  449. struct kvm_memory_slot *dont);
  450. int kvm_arch_create_memslot(struct kvm *kvm, struct kvm_memory_slot *slot,
  451. unsigned long npages);
  452. void kvm_arch_memslots_updated(struct kvm *kvm);
  453. int kvm_arch_prepare_memory_region(struct kvm *kvm,
  454. struct kvm_memory_slot *memslot,
  455. struct kvm_userspace_memory_region *mem,
  456. enum kvm_mr_change change);
  457. void kvm_arch_commit_memory_region(struct kvm *kvm,
  458. struct kvm_userspace_memory_region *mem,
  459. const struct kvm_memory_slot *old,
  460. enum kvm_mr_change change);
  461. bool kvm_largepages_enabled(void);
  462. void kvm_disable_largepages(void);
  463. /* flush all memory translations */
  464. void kvm_arch_flush_shadow_all(struct kvm *kvm);
  465. /* flush memory translations pointing to 'slot' */
  466. void kvm_arch_flush_shadow_memslot(struct kvm *kvm,
  467. struct kvm_memory_slot *slot);
  468. int gfn_to_page_many_atomic(struct kvm *kvm, gfn_t gfn, struct page **pages,
  469. int nr_pages);
  470. struct page *gfn_to_page(struct kvm *kvm, gfn_t gfn);
  471. unsigned long gfn_to_hva(struct kvm *kvm, gfn_t gfn);
  472. unsigned long gfn_to_hva_prot(struct kvm *kvm, gfn_t gfn, bool *writable);
  473. unsigned long gfn_to_hva_memslot(struct kvm_memory_slot *slot, gfn_t gfn);
  474. void kvm_release_page_clean(struct page *page);
  475. void kvm_release_page_dirty(struct page *page);
  476. void kvm_set_page_accessed(struct page *page);
  477. pfn_t gfn_to_pfn_atomic(struct kvm *kvm, gfn_t gfn);
  478. pfn_t gfn_to_pfn_async(struct kvm *kvm, gfn_t gfn, bool *async,
  479. bool write_fault, bool *writable);
  480. pfn_t gfn_to_pfn(struct kvm *kvm, gfn_t gfn);
  481. pfn_t gfn_to_pfn_prot(struct kvm *kvm, gfn_t gfn, bool write_fault,
  482. bool *writable);
  483. pfn_t gfn_to_pfn_memslot(struct kvm_memory_slot *slot, gfn_t gfn);
  484. pfn_t gfn_to_pfn_memslot_atomic(struct kvm_memory_slot *slot, gfn_t gfn);
  485. void kvm_release_pfn_clean(pfn_t pfn);
  486. void kvm_set_pfn_dirty(pfn_t pfn);
  487. void kvm_set_pfn_accessed(pfn_t pfn);
  488. void kvm_get_pfn(pfn_t pfn);
  489. int kvm_read_guest_page(struct kvm *kvm, gfn_t gfn, void *data, int offset,
  490. int len);
  491. int kvm_read_guest_atomic(struct kvm *kvm, gpa_t gpa, void *data,
  492. unsigned long len);
  493. int kvm_read_guest(struct kvm *kvm, gpa_t gpa, void *data, unsigned long len);
  494. int kvm_read_guest_cached(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
  495. void *data, unsigned long len);
  496. int kvm_write_guest_page(struct kvm *kvm, gfn_t gfn, const void *data,
  497. int offset, int len);
  498. int kvm_write_guest(struct kvm *kvm, gpa_t gpa, const void *data,
  499. unsigned long len);
  500. int kvm_write_guest_cached(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
  501. void *data, unsigned long len);
  502. int kvm_gfn_to_hva_cache_init(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
  503. gpa_t gpa, unsigned long len);
  504. int kvm_clear_guest_page(struct kvm *kvm, gfn_t gfn, int offset, int len);
  505. int kvm_clear_guest(struct kvm *kvm, gpa_t gpa, unsigned long len);
  506. struct kvm_memory_slot *gfn_to_memslot(struct kvm *kvm, gfn_t gfn);
  507. int kvm_is_visible_gfn(struct kvm *kvm, gfn_t gfn);
  508. unsigned long kvm_host_page_size(struct kvm *kvm, gfn_t gfn);
  509. void mark_page_dirty(struct kvm *kvm, gfn_t gfn);
  510. void kvm_vcpu_block(struct kvm_vcpu *vcpu);
  511. void kvm_vcpu_kick(struct kvm_vcpu *vcpu);
  512. int kvm_vcpu_yield_to(struct kvm_vcpu *target);
  513. void kvm_vcpu_on_spin(struct kvm_vcpu *vcpu);
  514. void kvm_load_guest_fpu(struct kvm_vcpu *vcpu);
  515. void kvm_put_guest_fpu(struct kvm_vcpu *vcpu);
  516. void kvm_flush_remote_tlbs(struct kvm *kvm);
  517. void kvm_reload_remote_mmus(struct kvm *kvm);
  518. void kvm_make_mclock_inprogress_request(struct kvm *kvm);
  519. void kvm_make_scan_ioapic_request(struct kvm *kvm);
  520. long kvm_arch_dev_ioctl(struct file *filp,
  521. unsigned int ioctl, unsigned long arg);
  522. long kvm_arch_vcpu_ioctl(struct file *filp,
  523. unsigned int ioctl, unsigned long arg);
  524. int kvm_arch_vcpu_fault(struct kvm_vcpu *vcpu, struct vm_fault *vmf);
  525. int kvm_dev_ioctl_check_extension(long ext);
  526. int kvm_get_dirty_log(struct kvm *kvm,
  527. struct kvm_dirty_log *log, int *is_dirty);
  528. int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm,
  529. struct kvm_dirty_log *log);
  530. int kvm_vm_ioctl_irq_line(struct kvm *kvm, struct kvm_irq_level *irq_level,
  531. bool line_status);
  532. long kvm_arch_vm_ioctl(struct file *filp,
  533. unsigned int ioctl, unsigned long arg);
  534. int kvm_arch_vcpu_ioctl_get_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu);
  535. int kvm_arch_vcpu_ioctl_set_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu);
  536. int kvm_arch_vcpu_ioctl_translate(struct kvm_vcpu *vcpu,
  537. struct kvm_translation *tr);
  538. int kvm_arch_vcpu_ioctl_get_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs);
  539. int kvm_arch_vcpu_ioctl_set_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs);
  540. int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu,
  541. struct kvm_sregs *sregs);
  542. int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu,
  543. struct kvm_sregs *sregs);
  544. int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu,
  545. struct kvm_mp_state *mp_state);
  546. int kvm_arch_vcpu_ioctl_set_mpstate(struct kvm_vcpu *vcpu,
  547. struct kvm_mp_state *mp_state);
  548. int kvm_arch_vcpu_ioctl_set_guest_debug(struct kvm_vcpu *vcpu,
  549. struct kvm_guest_debug *dbg);
  550. int kvm_arch_vcpu_ioctl_run(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run);
  551. int kvm_arch_init(void *opaque);
  552. void kvm_arch_exit(void);
  553. int kvm_arch_vcpu_init(struct kvm_vcpu *vcpu);
  554. void kvm_arch_vcpu_uninit(struct kvm_vcpu *vcpu);
  555. void kvm_arch_vcpu_free(struct kvm_vcpu *vcpu);
  556. void kvm_arch_vcpu_load(struct kvm_vcpu *vcpu, int cpu);
  557. void kvm_arch_vcpu_put(struct kvm_vcpu *vcpu);
  558. struct kvm_vcpu *kvm_arch_vcpu_create(struct kvm *kvm, unsigned int id);
  559. int kvm_arch_vcpu_setup(struct kvm_vcpu *vcpu);
  560. int kvm_arch_vcpu_postcreate(struct kvm_vcpu *vcpu);
  561. void kvm_arch_vcpu_destroy(struct kvm_vcpu *vcpu);
  562. int kvm_arch_hardware_enable(void *garbage);
  563. void kvm_arch_hardware_disable(void *garbage);
  564. int kvm_arch_hardware_setup(void);
  565. void kvm_arch_hardware_unsetup(void);
  566. void kvm_arch_check_processor_compat(void *rtn);
  567. int kvm_arch_vcpu_runnable(struct kvm_vcpu *vcpu);
  568. int kvm_arch_vcpu_should_kick(struct kvm_vcpu *vcpu);
  569. void *kvm_kvzalloc(unsigned long size);
  570. void kvm_kvfree(const void *addr);
  571. #ifndef __KVM_HAVE_ARCH_VM_ALLOC
  572. static inline struct kvm *kvm_arch_alloc_vm(void)
  573. {
  574. return kzalloc(sizeof(struct kvm), GFP_KERNEL);
  575. }
  576. static inline void kvm_arch_free_vm(struct kvm *kvm)
  577. {
  578. kfree(kvm);
  579. }
  580. #endif
  581. #ifdef __KVM_HAVE_ARCH_NONCOHERENT_DMA
  582. void kvm_arch_register_noncoherent_dma(struct kvm *kvm);
  583. void kvm_arch_unregister_noncoherent_dma(struct kvm *kvm);
  584. bool kvm_arch_has_noncoherent_dma(struct kvm *kvm);
  585. #else
  586. static inline void kvm_arch_register_noncoherent_dma(struct kvm *kvm)
  587. {
  588. }
  589. static inline void kvm_arch_unregister_noncoherent_dma(struct kvm *kvm)
  590. {
  591. }
  592. static inline bool kvm_arch_has_noncoherent_dma(struct kvm *kvm)
  593. {
  594. return false;
  595. }
  596. #endif
  597. static inline wait_queue_head_t *kvm_arch_vcpu_wq(struct kvm_vcpu *vcpu)
  598. {
  599. #ifdef __KVM_HAVE_ARCH_WQP
  600. return vcpu->arch.wqp;
  601. #else
  602. return &vcpu->wq;
  603. #endif
  604. }
  605. int kvm_arch_init_vm(struct kvm *kvm, unsigned long type);
  606. void kvm_arch_destroy_vm(struct kvm *kvm);
  607. void kvm_arch_sync_events(struct kvm *kvm);
  608. int kvm_cpu_has_pending_timer(struct kvm_vcpu *vcpu);
  609. void kvm_vcpu_kick(struct kvm_vcpu *vcpu);
  610. bool kvm_is_mmio_pfn(pfn_t pfn);
  611. struct kvm_irq_ack_notifier {
  612. struct hlist_node link;
  613. unsigned gsi;
  614. void (*irq_acked)(struct kvm_irq_ack_notifier *kian);
  615. };
  616. struct kvm_assigned_dev_kernel {
  617. struct kvm_irq_ack_notifier ack_notifier;
  618. struct list_head list;
  619. int assigned_dev_id;
  620. int host_segnr;
  621. int host_busnr;
  622. int host_devfn;
  623. unsigned int entries_nr;
  624. int host_irq;
  625. bool host_irq_disabled;
  626. bool pci_2_3;
  627. struct msix_entry *host_msix_entries;
  628. int guest_irq;
  629. struct msix_entry *guest_msix_entries;
  630. unsigned long irq_requested_type;
  631. int irq_source_id;
  632. int flags;
  633. struct pci_dev *dev;
  634. struct kvm *kvm;
  635. spinlock_t intx_lock;
  636. spinlock_t intx_mask_lock;
  637. char irq_name[32];
  638. struct pci_saved_state *pci_saved_state;
  639. };
  640. struct kvm_irq_mask_notifier {
  641. void (*func)(struct kvm_irq_mask_notifier *kimn, bool masked);
  642. int irq;
  643. struct hlist_node link;
  644. };
  645. void kvm_register_irq_mask_notifier(struct kvm *kvm, int irq,
  646. struct kvm_irq_mask_notifier *kimn);
  647. void kvm_unregister_irq_mask_notifier(struct kvm *kvm, int irq,
  648. struct kvm_irq_mask_notifier *kimn);
  649. void kvm_fire_mask_notifiers(struct kvm *kvm, unsigned irqchip, unsigned pin,
  650. bool mask);
  651. int kvm_set_irq(struct kvm *kvm, int irq_source_id, u32 irq, int level,
  652. bool line_status);
  653. int kvm_set_irq_inatomic(struct kvm *kvm, int irq_source_id, u32 irq, int level);
  654. int kvm_set_msi(struct kvm_kernel_irq_routing_entry *irq_entry, struct kvm *kvm,
  655. int irq_source_id, int level, bool line_status);
  656. bool kvm_irq_has_notifier(struct kvm *kvm, unsigned irqchip, unsigned pin);
  657. void kvm_notify_acked_irq(struct kvm *kvm, unsigned irqchip, unsigned pin);
  658. void kvm_register_irq_ack_notifier(struct kvm *kvm,
  659. struct kvm_irq_ack_notifier *kian);
  660. void kvm_unregister_irq_ack_notifier(struct kvm *kvm,
  661. struct kvm_irq_ack_notifier *kian);
  662. int kvm_request_irq_source_id(struct kvm *kvm);
  663. void kvm_free_irq_source_id(struct kvm *kvm, int irq_source_id);
  664. #ifdef CONFIG_KVM_DEVICE_ASSIGNMENT
  665. int kvm_iommu_map_pages(struct kvm *kvm, struct kvm_memory_slot *slot);
  666. void kvm_iommu_unmap_pages(struct kvm *kvm, struct kvm_memory_slot *slot);
  667. int kvm_iommu_map_guest(struct kvm *kvm);
  668. int kvm_iommu_unmap_guest(struct kvm *kvm);
  669. int kvm_assign_device(struct kvm *kvm,
  670. struct kvm_assigned_dev_kernel *assigned_dev);
  671. int kvm_deassign_device(struct kvm *kvm,
  672. struct kvm_assigned_dev_kernel *assigned_dev);
  673. #else
  674. static inline int kvm_iommu_map_pages(struct kvm *kvm,
  675. struct kvm_memory_slot *slot)
  676. {
  677. return 0;
  678. }
  679. static inline void kvm_iommu_unmap_pages(struct kvm *kvm,
  680. struct kvm_memory_slot *slot)
  681. {
  682. }
  683. static inline int kvm_iommu_unmap_guest(struct kvm *kvm)
  684. {
  685. return 0;
  686. }
  687. #endif
  688. static inline void kvm_guest_enter(void)
  689. {
  690. unsigned long flags;
  691. BUG_ON(preemptible());
  692. local_irq_save(flags);
  693. guest_enter();
  694. local_irq_restore(flags);
  695. /* KVM does not hold any references to rcu protected data when it
  696. * switches CPU into a guest mode. In fact switching to a guest mode
  697. * is very similar to exiting to userspace from rcu point of view. In
  698. * addition CPU may stay in a guest mode for quite a long time (up to
  699. * one time slice). Lets treat guest mode as quiescent state, just like
  700. * we do with user-mode execution.
  701. */
  702. rcu_virt_note_context_switch(smp_processor_id());
  703. }
  704. static inline void kvm_guest_exit(void)
  705. {
  706. unsigned long flags;
  707. local_irq_save(flags);
  708. guest_exit();
  709. local_irq_restore(flags);
  710. }
  711. /*
  712. * search_memslots() and __gfn_to_memslot() are here because they are
  713. * used in non-modular code in arch/powerpc/kvm/book3s_hv_rm_mmu.c.
  714. * gfn_to_memslot() itself isn't here as an inline because that would
  715. * bloat other code too much.
  716. */
  717. static inline struct kvm_memory_slot *
  718. search_memslots(struct kvm_memslots *slots, gfn_t gfn)
  719. {
  720. struct kvm_memory_slot *memslot;
  721. kvm_for_each_memslot(memslot, slots)
  722. if (gfn >= memslot->base_gfn &&
  723. gfn < memslot->base_gfn + memslot->npages)
  724. return memslot;
  725. return NULL;
  726. }
  727. static inline struct kvm_memory_slot *
  728. __gfn_to_memslot(struct kvm_memslots *slots, gfn_t gfn)
  729. {
  730. return search_memslots(slots, gfn);
  731. }
  732. static inline unsigned long
  733. __gfn_to_hva_memslot(struct kvm_memory_slot *slot, gfn_t gfn)
  734. {
  735. return slot->userspace_addr + (gfn - slot->base_gfn) * PAGE_SIZE;
  736. }
  737. static inline int memslot_id(struct kvm *kvm, gfn_t gfn)
  738. {
  739. return gfn_to_memslot(kvm, gfn)->id;
  740. }
  741. static inline gfn_t
  742. hva_to_gfn_memslot(unsigned long hva, struct kvm_memory_slot *slot)
  743. {
  744. gfn_t gfn_offset = (hva - slot->userspace_addr) >> PAGE_SHIFT;
  745. return slot->base_gfn + gfn_offset;
  746. }
  747. static inline gpa_t gfn_to_gpa(gfn_t gfn)
  748. {
  749. return (gpa_t)gfn << PAGE_SHIFT;
  750. }
  751. static inline gfn_t gpa_to_gfn(gpa_t gpa)
  752. {
  753. return (gfn_t)(gpa >> PAGE_SHIFT);
  754. }
  755. static inline hpa_t pfn_to_hpa(pfn_t pfn)
  756. {
  757. return (hpa_t)pfn << PAGE_SHIFT;
  758. }
  759. static inline bool kvm_is_error_gpa(struct kvm *kvm, gpa_t gpa)
  760. {
  761. unsigned long hva = gfn_to_hva(kvm, gpa_to_gfn(gpa));
  762. return kvm_is_error_hva(hva);
  763. }
  764. static inline void kvm_migrate_timers(struct kvm_vcpu *vcpu)
  765. {
  766. set_bit(KVM_REQ_MIGRATE_TIMER, &vcpu->requests);
  767. }
  768. enum kvm_stat_kind {
  769. KVM_STAT_VM,
  770. KVM_STAT_VCPU,
  771. };
  772. struct kvm_stats_debugfs_item {
  773. const char *name;
  774. int offset;
  775. enum kvm_stat_kind kind;
  776. struct dentry *dentry;
  777. };
  778. extern struct kvm_stats_debugfs_item debugfs_entries[];
  779. extern struct dentry *kvm_debugfs_dir;
  780. #if defined(CONFIG_MMU_NOTIFIER) && defined(KVM_ARCH_WANT_MMU_NOTIFIER)
  781. static inline int mmu_notifier_retry(struct kvm *kvm, unsigned long mmu_seq)
  782. {
  783. if (unlikely(kvm->mmu_notifier_count))
  784. return 1;
  785. /*
  786. * Ensure the read of mmu_notifier_count happens before the read
  787. * of mmu_notifier_seq. This interacts with the smp_wmb() in
  788. * mmu_notifier_invalidate_range_end to make sure that the caller
  789. * either sees the old (non-zero) value of mmu_notifier_count or
  790. * the new (incremented) value of mmu_notifier_seq.
  791. * PowerPC Book3s HV KVM calls this under a per-page lock
  792. * rather than under kvm->mmu_lock, for scalability, so
  793. * can't rely on kvm->mmu_lock to keep things ordered.
  794. */
  795. smp_rmb();
  796. if (kvm->mmu_notifier_seq != mmu_seq)
  797. return 1;
  798. return 0;
  799. }
  800. #endif
  801. #ifdef CONFIG_HAVE_KVM_IRQ_ROUTING
  802. #ifdef CONFIG_S390
  803. #define KVM_MAX_IRQ_ROUTES 4096 //FIXME: we can have more than that...
  804. #else
  805. #define KVM_MAX_IRQ_ROUTES 1024
  806. #endif
  807. int kvm_setup_default_irq_routing(struct kvm *kvm);
  808. int kvm_set_irq_routing(struct kvm *kvm,
  809. const struct kvm_irq_routing_entry *entries,
  810. unsigned nr,
  811. unsigned flags);
  812. int kvm_set_routing_entry(struct kvm_irq_routing_table *rt,
  813. struct kvm_kernel_irq_routing_entry *e,
  814. const struct kvm_irq_routing_entry *ue);
  815. void kvm_free_irq_routing(struct kvm *kvm);
  816. int kvm_send_userspace_msi(struct kvm *kvm, struct kvm_msi *msi);
  817. #else
  818. static inline void kvm_free_irq_routing(struct kvm *kvm) {}
  819. #endif
  820. #ifdef CONFIG_HAVE_KVM_EVENTFD
  821. void kvm_eventfd_init(struct kvm *kvm);
  822. int kvm_ioeventfd(struct kvm *kvm, struct kvm_ioeventfd *args);
  823. #ifdef CONFIG_HAVE_KVM_IRQCHIP
  824. int kvm_irqfd(struct kvm *kvm, struct kvm_irqfd *args);
  825. void kvm_irqfd_release(struct kvm *kvm);
  826. void kvm_irq_routing_update(struct kvm *, struct kvm_irq_routing_table *);
  827. #else
  828. static inline int kvm_irqfd(struct kvm *kvm, struct kvm_irqfd *args)
  829. {
  830. return -EINVAL;
  831. }
  832. static inline void kvm_irqfd_release(struct kvm *kvm) {}
  833. #endif
  834. #else
  835. static inline void kvm_eventfd_init(struct kvm *kvm) {}
  836. static inline int kvm_irqfd(struct kvm *kvm, struct kvm_irqfd *args)
  837. {
  838. return -EINVAL;
  839. }
  840. static inline void kvm_irqfd_release(struct kvm *kvm) {}
  841. #ifdef CONFIG_HAVE_KVM_IRQCHIP
  842. static inline void kvm_irq_routing_update(struct kvm *kvm,
  843. struct kvm_irq_routing_table *irq_rt)
  844. {
  845. rcu_assign_pointer(kvm->irq_routing, irq_rt);
  846. }
  847. #endif
  848. static inline int kvm_ioeventfd(struct kvm *kvm, struct kvm_ioeventfd *args)
  849. {
  850. return -ENOSYS;
  851. }
  852. #endif /* CONFIG_HAVE_KVM_EVENTFD */
  853. #ifdef CONFIG_KVM_APIC_ARCHITECTURE
  854. static inline bool kvm_vcpu_is_bsp(struct kvm_vcpu *vcpu)
  855. {
  856. return vcpu->kvm->bsp_vcpu_id == vcpu->vcpu_id;
  857. }
  858. bool kvm_vcpu_compatible(struct kvm_vcpu *vcpu);
  859. #else
  860. static inline bool kvm_vcpu_compatible(struct kvm_vcpu *vcpu) { return true; }
  861. #endif
  862. #ifdef CONFIG_KVM_DEVICE_ASSIGNMENT
  863. long kvm_vm_ioctl_assigned_device(struct kvm *kvm, unsigned ioctl,
  864. unsigned long arg);
  865. void kvm_free_all_assigned_devices(struct kvm *kvm);
  866. #else
  867. static inline long kvm_vm_ioctl_assigned_device(struct kvm *kvm, unsigned ioctl,
  868. unsigned long arg)
  869. {
  870. return -ENOTTY;
  871. }
  872. static inline void kvm_free_all_assigned_devices(struct kvm *kvm) {}
  873. #endif
  874. static inline void kvm_make_request(int req, struct kvm_vcpu *vcpu)
  875. {
  876. set_bit(req, &vcpu->requests);
  877. }
  878. static inline bool kvm_check_request(int req, struct kvm_vcpu *vcpu)
  879. {
  880. if (test_bit(req, &vcpu->requests)) {
  881. clear_bit(req, &vcpu->requests);
  882. return true;
  883. } else {
  884. return false;
  885. }
  886. }
  887. extern bool kvm_rebooting;
  888. struct kvm_device_ops;
  889. struct kvm_device {
  890. struct kvm_device_ops *ops;
  891. struct kvm *kvm;
  892. void *private;
  893. struct list_head vm_node;
  894. };
  895. /* create, destroy, and name are mandatory */
  896. struct kvm_device_ops {
  897. const char *name;
  898. int (*create)(struct kvm_device *dev, u32 type);
  899. /*
  900. * Destroy is responsible for freeing dev.
  901. *
  902. * Destroy may be called before or after destructors are called
  903. * on emulated I/O regions, depending on whether a reference is
  904. * held by a vcpu or other kvm component that gets destroyed
  905. * after the emulated I/O.
  906. */
  907. void (*destroy)(struct kvm_device *dev);
  908. int (*set_attr)(struct kvm_device *dev, struct kvm_device_attr *attr);
  909. int (*get_attr)(struct kvm_device *dev, struct kvm_device_attr *attr);
  910. int (*has_attr)(struct kvm_device *dev, struct kvm_device_attr *attr);
  911. long (*ioctl)(struct kvm_device *dev, unsigned int ioctl,
  912. unsigned long arg);
  913. };
  914. void kvm_device_get(struct kvm_device *dev);
  915. void kvm_device_put(struct kvm_device *dev);
  916. struct kvm_device *kvm_device_from_filp(struct file *filp);
  917. extern struct kvm_device_ops kvm_mpic_ops;
  918. extern struct kvm_device_ops kvm_xics_ops;
  919. extern struct kvm_device_ops kvm_vfio_ops;
  920. extern struct kvm_device_ops kvm_arm_vgic_v2_ops;
  921. extern struct kvm_device_ops kvm_flic_ops;
  922. #ifdef CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT
  923. static inline void kvm_vcpu_set_in_spin_loop(struct kvm_vcpu *vcpu, bool val)
  924. {
  925. vcpu->spin_loop.in_spin_loop = val;
  926. }
  927. static inline void kvm_vcpu_set_dy_eligible(struct kvm_vcpu *vcpu, bool val)
  928. {
  929. vcpu->spin_loop.dy_eligible = val;
  930. }
  931. #else /* !CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT */
  932. static inline void kvm_vcpu_set_in_spin_loop(struct kvm_vcpu *vcpu, bool val)
  933. {
  934. }
  935. static inline void kvm_vcpu_set_dy_eligible(struct kvm_vcpu *vcpu, bool val)
  936. {
  937. }
  938. #endif /* CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT */
  939. #endif