KVM: introduce gfn_to_hva_read/kvm_read_hva/kvm_read_hva_atomic
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / virt / kvm / kvm_main.c
CommitLineData
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1/*
2 * Kernel-based Virtual Machine driver for Linux
3 *
4 * This module enables machines with Intel VT-x extensions to run virtual
5 * machines without emulation or binary translation.
6 *
7 * Copyright (C) 2006 Qumranet, Inc.
9611c187 8 * Copyright 2010 Red Hat, Inc. and/or its affiliates.
6aa8b732
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9 *
10 * Authors:
11 * Avi Kivity <avi@qumranet.com>
12 * Yaniv Kamay <yaniv@qumranet.com>
13 *
14 * This work is licensed under the terms of the GNU GPL, version 2. See
15 * the COPYING file in the top-level directory.
16 *
17 */
18
e2174021 19#include "iodev.h"
6aa8b732 20
edf88417 21#include <linux/kvm_host.h>
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22#include <linux/kvm.h>
23#include <linux/module.h>
24#include <linux/errno.h>
6aa8b732 25#include <linux/percpu.h>
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26#include <linux/mm.h>
27#include <linux/miscdevice.h>
28#include <linux/vmalloc.h>
6aa8b732 29#include <linux/reboot.h>
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30#include <linux/debugfs.h>
31#include <linux/highmem.h>
32#include <linux/file.h>
fb3600cc 33#include <linux/syscore_ops.h>
774c47f1 34#include <linux/cpu.h>
e8edc6e0 35#include <linux/sched.h>
d9e368d6
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36#include <linux/cpumask.h>
37#include <linux/smp.h>
d6d28168 38#include <linux/anon_inodes.h>
04d2cc77 39#include <linux/profile.h>
7aa81cc0 40#include <linux/kvm_para.h>
6fc138d2 41#include <linux/pagemap.h>
8d4e1288 42#include <linux/mman.h>
35149e21 43#include <linux/swap.h>
e56d532f 44#include <linux/bitops.h>
547de29e 45#include <linux/spinlock.h>
6ff5894c 46#include <linux/compat.h>
bc6678a3 47#include <linux/srcu.h>
8f0b1ab6 48#include <linux/hugetlb.h>
5a0e3ad6 49#include <linux/slab.h>
743eeb0b
SL
50#include <linux/sort.h>
51#include <linux/bsearch.h>
6aa8b732 52
e495606d 53#include <asm/processor.h>
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54#include <asm/io.h>
55#include <asm/uaccess.h>
3e021bf5 56#include <asm/pgtable.h>
6aa8b732 57
5f94c174 58#include "coalesced_mmio.h"
af585b92 59#include "async_pf.h"
5f94c174 60
229456fc
MT
61#define CREATE_TRACE_POINTS
62#include <trace/events/kvm.h>
63
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64MODULE_AUTHOR("Qumranet");
65MODULE_LICENSE("GPL");
66
fa40a821
MT
67/*
68 * Ordering of locks:
69 *
fae3a353 70 * kvm->lock --> kvm->slots_lock --> kvm->irq_lock
fa40a821
MT
71 */
72
e935b837 73DEFINE_RAW_SPINLOCK(kvm_lock);
e9b11c17 74LIST_HEAD(vm_list);
133de902 75
7f59f492 76static cpumask_var_t cpus_hardware_enabled;
10474ae8
AG
77static int kvm_usage_count = 0;
78static atomic_t hardware_enable_failed;
1b6c0168 79
c16f862d
RR
80struct kmem_cache *kvm_vcpu_cache;
81EXPORT_SYMBOL_GPL(kvm_vcpu_cache);
1165f5fe 82
15ad7146
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83static __read_mostly struct preempt_ops kvm_preempt_ops;
84
76f7c879 85struct dentry *kvm_debugfs_dir;
6aa8b732 86
bccf2150
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87static long kvm_vcpu_ioctl(struct file *file, unsigned int ioctl,
88 unsigned long arg);
1dda606c
AG
89#ifdef CONFIG_COMPAT
90static long kvm_vcpu_compat_ioctl(struct file *file, unsigned int ioctl,
91 unsigned long arg);
92#endif
10474ae8
AG
93static int hardware_enable_all(void);
94static void hardware_disable_all(void);
bccf2150 95
e93f8a0f
MT
96static void kvm_io_bus_destroy(struct kvm_io_bus *bus);
97
b7c4145b
AK
98bool kvm_rebooting;
99EXPORT_SYMBOL_GPL(kvm_rebooting);
4ecac3fd 100
54dee993
MT
101static bool largepages_enabled = true;
102
a2766325 103bool kvm_is_mmio_pfn(pfn_t pfn)
cbff90a7 104{
fc5659c8 105 if (pfn_valid(pfn)) {
22e5c47e 106 int reserved;
936a5fe6 107 struct page *tail = pfn_to_page(pfn);
22e5c47e
AA
108 struct page *head = compound_trans_head(tail);
109 reserved = PageReserved(head);
936a5fe6 110 if (head != tail) {
936a5fe6 111 /*
22e5c47e
AA
112 * "head" is not a dangling pointer
113 * (compound_trans_head takes care of that)
114 * but the hugepage may have been splitted
115 * from under us (and we may not hold a
116 * reference count on the head page so it can
117 * be reused before we run PageReferenced), so
118 * we've to check PageTail before returning
119 * what we just read.
936a5fe6 120 */
22e5c47e
AA
121 smp_rmb();
122 if (PageTail(tail))
123 return reserved;
936a5fe6
AA
124 }
125 return PageReserved(tail);
fc5659c8 126 }
cbff90a7
BAY
127
128 return true;
129}
130
bccf2150
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131/*
132 * Switches to specified vcpu, until a matching vcpu_put()
133 */
313a3dc7 134void vcpu_load(struct kvm_vcpu *vcpu)
6aa8b732 135{
15ad7146
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136 int cpu;
137
bccf2150 138 mutex_lock(&vcpu->mutex);
34bb10b7
RR
139 if (unlikely(vcpu->pid != current->pids[PIDTYPE_PID].pid)) {
140 /* The thread running this VCPU changed. */
141 struct pid *oldpid = vcpu->pid;
142 struct pid *newpid = get_task_pid(current, PIDTYPE_PID);
143 rcu_assign_pointer(vcpu->pid, newpid);
144 synchronize_rcu();
145 put_pid(oldpid);
146 }
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147 cpu = get_cpu();
148 preempt_notifier_register(&vcpu->preempt_notifier);
313a3dc7 149 kvm_arch_vcpu_load(vcpu, cpu);
15ad7146 150 put_cpu();
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151}
152
313a3dc7 153void vcpu_put(struct kvm_vcpu *vcpu)
6aa8b732 154{
15ad7146 155 preempt_disable();
313a3dc7 156 kvm_arch_vcpu_put(vcpu);
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157 preempt_notifier_unregister(&vcpu->preempt_notifier);
158 preempt_enable();
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159 mutex_unlock(&vcpu->mutex);
160}
161
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162static void ack_flush(void *_completed)
163{
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164}
165
49846896 166static bool make_all_cpus_request(struct kvm *kvm, unsigned int req)
d9e368d6 167{
597a5f55 168 int i, cpu, me;
6ef7a1bc
RR
169 cpumask_var_t cpus;
170 bool called = true;
d9e368d6 171 struct kvm_vcpu *vcpu;
d9e368d6 172
79f55997 173 zalloc_cpumask_var(&cpus, GFP_ATOMIC);
6ef7a1bc 174
3cba4130 175 me = get_cpu();
988a2cae 176 kvm_for_each_vcpu(i, vcpu, kvm) {
3cba4130 177 kvm_make_request(req, vcpu);
d9e368d6 178 cpu = vcpu->cpu;
6b7e2d09
XG
179
180 /* Set ->requests bit before we read ->mode */
181 smp_mb();
182
183 if (cpus != NULL && cpu != -1 && cpu != me &&
184 kvm_vcpu_exiting_guest_mode(vcpu) != OUTSIDE_GUEST_MODE)
6ef7a1bc 185 cpumask_set_cpu(cpu, cpus);
49846896 186 }
6ef7a1bc
RR
187 if (unlikely(cpus == NULL))
188 smp_call_function_many(cpu_online_mask, ack_flush, NULL, 1);
189 else if (!cpumask_empty(cpus))
190 smp_call_function_many(cpus, ack_flush, NULL, 1);
191 else
192 called = false;
3cba4130 193 put_cpu();
6ef7a1bc 194 free_cpumask_var(cpus);
49846896 195 return called;
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196}
197
49846896 198void kvm_flush_remote_tlbs(struct kvm *kvm)
2e53d63a 199{
bec87d6e 200 long dirty_count = kvm->tlbs_dirty;
a4ee1ca4
XG
201
202 smp_mb();
49846896
RR
203 if (make_all_cpus_request(kvm, KVM_REQ_TLB_FLUSH))
204 ++kvm->stat.remote_tlb_flush;
a4ee1ca4 205 cmpxchg(&kvm->tlbs_dirty, dirty_count, 0);
2e53d63a
MT
206}
207
49846896
RR
208void kvm_reload_remote_mmus(struct kvm *kvm)
209{
210 make_all_cpus_request(kvm, KVM_REQ_MMU_RELOAD);
211}
2e53d63a 212
fb3f0f51
RR
213int kvm_vcpu_init(struct kvm_vcpu *vcpu, struct kvm *kvm, unsigned id)
214{
215 struct page *page;
216 int r;
217
218 mutex_init(&vcpu->mutex);
219 vcpu->cpu = -1;
fb3f0f51
RR
220 vcpu->kvm = kvm;
221 vcpu->vcpu_id = id;
34bb10b7 222 vcpu->pid = NULL;
b6958ce4 223 init_waitqueue_head(&vcpu->wq);
af585b92 224 kvm_async_pf_vcpu_init(vcpu);
fb3f0f51
RR
225
226 page = alloc_page(GFP_KERNEL | __GFP_ZERO);
227 if (!page) {
228 r = -ENOMEM;
229 goto fail;
230 }
231 vcpu->run = page_address(page);
232
4c088493
R
233 kvm_vcpu_set_in_spin_loop(vcpu, false);
234 kvm_vcpu_set_dy_eligible(vcpu, false);
235
e9b11c17 236 r = kvm_arch_vcpu_init(vcpu);
fb3f0f51 237 if (r < 0)
e9b11c17 238 goto fail_free_run;
fb3f0f51
RR
239 return 0;
240
fb3f0f51
RR
241fail_free_run:
242 free_page((unsigned long)vcpu->run);
243fail:
76fafa5e 244 return r;
fb3f0f51
RR
245}
246EXPORT_SYMBOL_GPL(kvm_vcpu_init);
247
248void kvm_vcpu_uninit(struct kvm_vcpu *vcpu)
249{
34bb10b7 250 put_pid(vcpu->pid);
e9b11c17 251 kvm_arch_vcpu_uninit(vcpu);
fb3f0f51
RR
252 free_page((unsigned long)vcpu->run);
253}
254EXPORT_SYMBOL_GPL(kvm_vcpu_uninit);
255
e930bffe
AA
256#if defined(CONFIG_MMU_NOTIFIER) && defined(KVM_ARCH_WANT_MMU_NOTIFIER)
257static inline struct kvm *mmu_notifier_to_kvm(struct mmu_notifier *mn)
258{
259 return container_of(mn, struct kvm, mmu_notifier);
260}
261
262static void kvm_mmu_notifier_invalidate_page(struct mmu_notifier *mn,
263 struct mm_struct *mm,
264 unsigned long address)
265{
266 struct kvm *kvm = mmu_notifier_to_kvm(mn);
bc6678a3 267 int need_tlb_flush, idx;
e930bffe
AA
268
269 /*
270 * When ->invalidate_page runs, the linux pte has been zapped
271 * already but the page is still allocated until
272 * ->invalidate_page returns. So if we increase the sequence
273 * here the kvm page fault will notice if the spte can't be
274 * established because the page is going to be freed. If
275 * instead the kvm page fault establishes the spte before
276 * ->invalidate_page runs, kvm_unmap_hva will release it
277 * before returning.
278 *
279 * The sequence increase only need to be seen at spin_unlock
280 * time, and not at spin_lock time.
281 *
282 * Increasing the sequence after the spin_unlock would be
283 * unsafe because the kvm page fault could then establish the
284 * pte after kvm_unmap_hva returned, without noticing the page
285 * is going to be freed.
286 */
bc6678a3 287 idx = srcu_read_lock(&kvm->srcu);
e930bffe 288 spin_lock(&kvm->mmu_lock);
565f3be2 289
e930bffe 290 kvm->mmu_notifier_seq++;
a4ee1ca4 291 need_tlb_flush = kvm_unmap_hva(kvm, address) | kvm->tlbs_dirty;
e930bffe
AA
292 /* we've to flush the tlb before the pages can be freed */
293 if (need_tlb_flush)
294 kvm_flush_remote_tlbs(kvm);
295
565f3be2
TY
296 spin_unlock(&kvm->mmu_lock);
297 srcu_read_unlock(&kvm->srcu, idx);
e930bffe
AA
298}
299
3da0dd43
IE
300static void kvm_mmu_notifier_change_pte(struct mmu_notifier *mn,
301 struct mm_struct *mm,
302 unsigned long address,
303 pte_t pte)
304{
305 struct kvm *kvm = mmu_notifier_to_kvm(mn);
bc6678a3 306 int idx;
3da0dd43 307
bc6678a3 308 idx = srcu_read_lock(&kvm->srcu);
3da0dd43
IE
309 spin_lock(&kvm->mmu_lock);
310 kvm->mmu_notifier_seq++;
311 kvm_set_spte_hva(kvm, address, pte);
312 spin_unlock(&kvm->mmu_lock);
bc6678a3 313 srcu_read_unlock(&kvm->srcu, idx);
3da0dd43
IE
314}
315
e930bffe
AA
316static void kvm_mmu_notifier_invalidate_range_start(struct mmu_notifier *mn,
317 struct mm_struct *mm,
318 unsigned long start,
319 unsigned long end)
320{
321 struct kvm *kvm = mmu_notifier_to_kvm(mn);
bc6678a3 322 int need_tlb_flush = 0, idx;
e930bffe 323
bc6678a3 324 idx = srcu_read_lock(&kvm->srcu);
e930bffe
AA
325 spin_lock(&kvm->mmu_lock);
326 /*
327 * The count increase must become visible at unlock time as no
328 * spte can be established without taking the mmu_lock and
329 * count is also read inside the mmu_lock critical section.
330 */
331 kvm->mmu_notifier_count++;
b3ae2096 332 need_tlb_flush = kvm_unmap_hva_range(kvm, start, end);
a4ee1ca4 333 need_tlb_flush |= kvm->tlbs_dirty;
e930bffe
AA
334 /* we've to flush the tlb before the pages can be freed */
335 if (need_tlb_flush)
336 kvm_flush_remote_tlbs(kvm);
565f3be2
TY
337
338 spin_unlock(&kvm->mmu_lock);
339 srcu_read_unlock(&kvm->srcu, idx);
e930bffe
AA
340}
341
342static void kvm_mmu_notifier_invalidate_range_end(struct mmu_notifier *mn,
343 struct mm_struct *mm,
344 unsigned long start,
345 unsigned long end)
346{
347 struct kvm *kvm = mmu_notifier_to_kvm(mn);
348
349 spin_lock(&kvm->mmu_lock);
350 /*
351 * This sequence increase will notify the kvm page fault that
352 * the page that is going to be mapped in the spte could have
353 * been freed.
354 */
355 kvm->mmu_notifier_seq++;
a355aa54 356 smp_wmb();
e930bffe
AA
357 /*
358 * The above sequence increase must be visible before the
a355aa54
PM
359 * below count decrease, which is ensured by the smp_wmb above
360 * in conjunction with the smp_rmb in mmu_notifier_retry().
e930bffe
AA
361 */
362 kvm->mmu_notifier_count--;
363 spin_unlock(&kvm->mmu_lock);
364
365 BUG_ON(kvm->mmu_notifier_count < 0);
366}
367
368static int kvm_mmu_notifier_clear_flush_young(struct mmu_notifier *mn,
369 struct mm_struct *mm,
370 unsigned long address)
371{
372 struct kvm *kvm = mmu_notifier_to_kvm(mn);
bc6678a3 373 int young, idx;
e930bffe 374
bc6678a3 375 idx = srcu_read_lock(&kvm->srcu);
e930bffe 376 spin_lock(&kvm->mmu_lock);
e930bffe 377
565f3be2 378 young = kvm_age_hva(kvm, address);
e930bffe
AA
379 if (young)
380 kvm_flush_remote_tlbs(kvm);
381
565f3be2
TY
382 spin_unlock(&kvm->mmu_lock);
383 srcu_read_unlock(&kvm->srcu, idx);
384
e930bffe
AA
385 return young;
386}
387
8ee53820
AA
388static int kvm_mmu_notifier_test_young(struct mmu_notifier *mn,
389 struct mm_struct *mm,
390 unsigned long address)
391{
392 struct kvm *kvm = mmu_notifier_to_kvm(mn);
393 int young, idx;
394
395 idx = srcu_read_lock(&kvm->srcu);
396 spin_lock(&kvm->mmu_lock);
397 young = kvm_test_age_hva(kvm, address);
398 spin_unlock(&kvm->mmu_lock);
399 srcu_read_unlock(&kvm->srcu, idx);
400
401 return young;
402}
403
85db06e5
MT
404static void kvm_mmu_notifier_release(struct mmu_notifier *mn,
405 struct mm_struct *mm)
406{
407 struct kvm *kvm = mmu_notifier_to_kvm(mn);
eda2beda
LJ
408 int idx;
409
410 idx = srcu_read_lock(&kvm->srcu);
85db06e5 411 kvm_arch_flush_shadow(kvm);
eda2beda 412 srcu_read_unlock(&kvm->srcu, idx);
85db06e5
MT
413}
414
e930bffe
AA
415static const struct mmu_notifier_ops kvm_mmu_notifier_ops = {
416 .invalidate_page = kvm_mmu_notifier_invalidate_page,
417 .invalidate_range_start = kvm_mmu_notifier_invalidate_range_start,
418 .invalidate_range_end = kvm_mmu_notifier_invalidate_range_end,
419 .clear_flush_young = kvm_mmu_notifier_clear_flush_young,
8ee53820 420 .test_young = kvm_mmu_notifier_test_young,
3da0dd43 421 .change_pte = kvm_mmu_notifier_change_pte,
85db06e5 422 .release = kvm_mmu_notifier_release,
e930bffe 423};
4c07b0a4
AK
424
425static int kvm_init_mmu_notifier(struct kvm *kvm)
426{
427 kvm->mmu_notifier.ops = &kvm_mmu_notifier_ops;
428 return mmu_notifier_register(&kvm->mmu_notifier, current->mm);
429}
430
431#else /* !(CONFIG_MMU_NOTIFIER && KVM_ARCH_WANT_MMU_NOTIFIER) */
432
433static int kvm_init_mmu_notifier(struct kvm *kvm)
434{
435 return 0;
436}
437
e930bffe
AA
438#endif /* CONFIG_MMU_NOTIFIER && KVM_ARCH_WANT_MMU_NOTIFIER */
439
bf3e05bc
XG
440static void kvm_init_memslots_id(struct kvm *kvm)
441{
442 int i;
443 struct kvm_memslots *slots = kvm->memslots;
444
445 for (i = 0; i < KVM_MEM_SLOTS_NUM; i++)
f85e2cb5 446 slots->id_to_index[i] = slots->memslots[i].id = i;
bf3e05bc
XG
447}
448
e08b9637 449static struct kvm *kvm_create_vm(unsigned long type)
6aa8b732 450{
d89f5eff
JK
451 int r, i;
452 struct kvm *kvm = kvm_arch_alloc_vm();
6aa8b732 453
d89f5eff
JK
454 if (!kvm)
455 return ERR_PTR(-ENOMEM);
456
e08b9637 457 r = kvm_arch_init_vm(kvm, type);
d89f5eff
JK
458 if (r)
459 goto out_err_nodisable;
10474ae8
AG
460
461 r = hardware_enable_all();
462 if (r)
463 goto out_err_nodisable;
464
75858a84
AK
465#ifdef CONFIG_HAVE_KVM_IRQCHIP
466 INIT_HLIST_HEAD(&kvm->mask_notifier_list);
136bdfee 467 INIT_HLIST_HEAD(&kvm->irq_ack_notifier_list);
75858a84 468#endif
6aa8b732 469
46a26bf5
MT
470 r = -ENOMEM;
471 kvm->memslots = kzalloc(sizeof(struct kvm_memslots), GFP_KERNEL);
472 if (!kvm->memslots)
57e7fbee 473 goto out_err_nosrcu;
bf3e05bc 474 kvm_init_memslots_id(kvm);
bc6678a3 475 if (init_srcu_struct(&kvm->srcu))
57e7fbee 476 goto out_err_nosrcu;
e93f8a0f
MT
477 for (i = 0; i < KVM_NR_BUSES; i++) {
478 kvm->buses[i] = kzalloc(sizeof(struct kvm_io_bus),
479 GFP_KERNEL);
57e7fbee 480 if (!kvm->buses[i])
e93f8a0f 481 goto out_err;
e93f8a0f 482 }
e930bffe 483
74b5c5bf 484 spin_lock_init(&kvm->mmu_lock);
6d4e4c4f
AK
485 kvm->mm = current->mm;
486 atomic_inc(&kvm->mm->mm_count);
d34e6b17 487 kvm_eventfd_init(kvm);
11ec2804 488 mutex_init(&kvm->lock);
60eead79 489 mutex_init(&kvm->irq_lock);
79fac95e 490 mutex_init(&kvm->slots_lock);
d39f13b0 491 atomic_set(&kvm->users_count, 1);
74b5c5bf
MW
492
493 r = kvm_init_mmu_notifier(kvm);
494 if (r)
495 goto out_err;
496
e935b837 497 raw_spin_lock(&kvm_lock);
5e58cfe4 498 list_add(&kvm->vm_list, &vm_list);
e935b837 499 raw_spin_unlock(&kvm_lock);
d89f5eff 500
f17abe9a 501 return kvm;
10474ae8
AG
502
503out_err:
57e7fbee
JK
504 cleanup_srcu_struct(&kvm->srcu);
505out_err_nosrcu:
10474ae8
AG
506 hardware_disable_all();
507out_err_nodisable:
e93f8a0f
MT
508 for (i = 0; i < KVM_NR_BUSES; i++)
509 kfree(kvm->buses[i]);
46a26bf5 510 kfree(kvm->memslots);
d89f5eff 511 kvm_arch_free_vm(kvm);
10474ae8 512 return ERR_PTR(r);
f17abe9a
AK
513}
514
92eca8fa
TY
515/*
516 * Avoid using vmalloc for a small buffer.
517 * Should not be used when the size is statically known.
518 */
c1a7b32a 519void *kvm_kvzalloc(unsigned long size)
92eca8fa
TY
520{
521 if (size > PAGE_SIZE)
522 return vzalloc(size);
523 else
524 return kzalloc(size, GFP_KERNEL);
525}
526
c1a7b32a 527void kvm_kvfree(const void *addr)
92eca8fa
TY
528{
529 if (is_vmalloc_addr(addr))
530 vfree(addr);
531 else
532 kfree(addr);
533}
534
a36a57b1
TY
535static void kvm_destroy_dirty_bitmap(struct kvm_memory_slot *memslot)
536{
537 if (!memslot->dirty_bitmap)
538 return;
539
92eca8fa 540 kvm_kvfree(memslot->dirty_bitmap);
a36a57b1
TY
541 memslot->dirty_bitmap = NULL;
542}
543
6aa8b732
AK
544/*
545 * Free any memory in @free but not in @dont.
546 */
547static void kvm_free_physmem_slot(struct kvm_memory_slot *free,
548 struct kvm_memory_slot *dont)
549{
6aa8b732 550 if (!dont || free->dirty_bitmap != dont->dirty_bitmap)
a36a57b1 551 kvm_destroy_dirty_bitmap(free);
6aa8b732 552
db3fe4eb 553 kvm_arch_free_memslot(free, dont);
05da4558 554
6aa8b732 555 free->npages = 0;
6aa8b732
AK
556}
557
d19a9cd2 558void kvm_free_physmem(struct kvm *kvm)
6aa8b732 559{
46a26bf5 560 struct kvm_memslots *slots = kvm->memslots;
be6ba0f0 561 struct kvm_memory_slot *memslot;
46a26bf5 562
be6ba0f0
XG
563 kvm_for_each_memslot(memslot, slots)
564 kvm_free_physmem_slot(memslot, NULL);
6aa8b732 565
46a26bf5 566 kfree(kvm->memslots);
6aa8b732
AK
567}
568
f17abe9a
AK
569static void kvm_destroy_vm(struct kvm *kvm)
570{
e93f8a0f 571 int i;
6d4e4c4f
AK
572 struct mm_struct *mm = kvm->mm;
573
ad8ba2cd 574 kvm_arch_sync_events(kvm);
e935b837 575 raw_spin_lock(&kvm_lock);
133de902 576 list_del(&kvm->vm_list);
e935b837 577 raw_spin_unlock(&kvm_lock);
399ec807 578 kvm_free_irq_routing(kvm);
e93f8a0f
MT
579 for (i = 0; i < KVM_NR_BUSES; i++)
580 kvm_io_bus_destroy(kvm->buses[i]);
980da6ce 581 kvm_coalesced_mmio_free(kvm);
e930bffe
AA
582#if defined(CONFIG_MMU_NOTIFIER) && defined(KVM_ARCH_WANT_MMU_NOTIFIER)
583 mmu_notifier_unregister(&kvm->mmu_notifier, kvm->mm);
f00be0ca
GN
584#else
585 kvm_arch_flush_shadow(kvm);
5f94c174 586#endif
d19a9cd2 587 kvm_arch_destroy_vm(kvm);
d89f5eff
JK
588 kvm_free_physmem(kvm);
589 cleanup_srcu_struct(&kvm->srcu);
590 kvm_arch_free_vm(kvm);
10474ae8 591 hardware_disable_all();
6d4e4c4f 592 mmdrop(mm);
f17abe9a
AK
593}
594
d39f13b0
IE
595void kvm_get_kvm(struct kvm *kvm)
596{
597 atomic_inc(&kvm->users_count);
598}
599EXPORT_SYMBOL_GPL(kvm_get_kvm);
600
601void kvm_put_kvm(struct kvm *kvm)
602{
603 if (atomic_dec_and_test(&kvm->users_count))
604 kvm_destroy_vm(kvm);
605}
606EXPORT_SYMBOL_GPL(kvm_put_kvm);
607
608
f17abe9a
AK
609static int kvm_vm_release(struct inode *inode, struct file *filp)
610{
611 struct kvm *kvm = filp->private_data;
612
721eecbf
GH
613 kvm_irqfd_release(kvm);
614
d39f13b0 615 kvm_put_kvm(kvm);
6aa8b732
AK
616 return 0;
617}
618
515a0127
TY
619/*
620 * Allocation size is twice as large as the actual dirty bitmap size.
93474b25 621 * See x86's kvm_vm_ioctl_get_dirty_log() why this is needed.
515a0127 622 */
a36a57b1
TY
623static int kvm_create_dirty_bitmap(struct kvm_memory_slot *memslot)
624{
189a2f7b 625#ifndef CONFIG_S390
515a0127 626 unsigned long dirty_bytes = 2 * kvm_dirty_bitmap_bytes(memslot);
a36a57b1 627
92eca8fa 628 memslot->dirty_bitmap = kvm_kvzalloc(dirty_bytes);
a36a57b1
TY
629 if (!memslot->dirty_bitmap)
630 return -ENOMEM;
631
189a2f7b 632#endif /* !CONFIG_S390 */
a36a57b1
TY
633 return 0;
634}
635
bf3e05bc
XG
636static int cmp_memslot(const void *slot1, const void *slot2)
637{
638 struct kvm_memory_slot *s1, *s2;
639
640 s1 = (struct kvm_memory_slot *)slot1;
641 s2 = (struct kvm_memory_slot *)slot2;
642
643 if (s1->npages < s2->npages)
644 return 1;
645 if (s1->npages > s2->npages)
646 return -1;
647
648 return 0;
649}
650
651/*
652 * Sort the memslots base on its size, so the larger slots
653 * will get better fit.
654 */
655static void sort_memslots(struct kvm_memslots *slots)
656{
f85e2cb5
XG
657 int i;
658
bf3e05bc
XG
659 sort(slots->memslots, KVM_MEM_SLOTS_NUM,
660 sizeof(struct kvm_memory_slot), cmp_memslot, NULL);
f85e2cb5
XG
661
662 for (i = 0; i < KVM_MEM_SLOTS_NUM; i++)
663 slots->id_to_index[slots->memslots[i].id] = i;
bf3e05bc
XG
664}
665
be593d62
XG
666void update_memslots(struct kvm_memslots *slots, struct kvm_memory_slot *new)
667{
668 if (new) {
669 int id = new->id;
28a37544 670 struct kvm_memory_slot *old = id_to_memslot(slots, id);
bf3e05bc 671 unsigned long npages = old->npages;
be593d62 672
28a37544 673 *old = *new;
bf3e05bc
XG
674 if (new->npages != npages)
675 sort_memslots(slots);
be593d62
XG
676 }
677
678 slots->generation++;
679}
680
a50d64d6
XG
681static int check_memory_region_flags(struct kvm_userspace_memory_region *mem)
682{
683 if (mem->flags & ~KVM_MEM_LOG_DIRTY_PAGES)
684 return -EINVAL;
685
686 return 0;
687}
688
6aa8b732
AK
689/*
690 * Allocate some memory and give it an address in the guest physical address
691 * space.
692 *
693 * Discontiguous memory is allowed, mostly for framebuffers.
f78e0e2e 694 *
10589a46 695 * Must be called holding mmap_sem for write.
6aa8b732 696 */
f78e0e2e
SY
697int __kvm_set_memory_region(struct kvm *kvm,
698 struct kvm_userspace_memory_region *mem,
699 int user_alloc)
6aa8b732 700{
8234b22e 701 int r;
6aa8b732 702 gfn_t base_gfn;
28bcb112
HC
703 unsigned long npages;
704 unsigned long i;
6aa8b732
AK
705 struct kvm_memory_slot *memslot;
706 struct kvm_memory_slot old, new;
bc6678a3 707 struct kvm_memslots *slots, *old_memslots;
6aa8b732 708
a50d64d6
XG
709 r = check_memory_region_flags(mem);
710 if (r)
711 goto out;
712
6aa8b732
AK
713 r = -EINVAL;
714 /* General sanity checks */
715 if (mem->memory_size & (PAGE_SIZE - 1))
716 goto out;
717 if (mem->guest_phys_addr & (PAGE_SIZE - 1))
718 goto out;
fa3d315a
TY
719 /* We can read the guest memory with __xxx_user() later on. */
720 if (user_alloc &&
721 ((mem->userspace_addr & (PAGE_SIZE - 1)) ||
9e3bb6b6
HC
722 !access_ok(VERIFY_WRITE,
723 (void __user *)(unsigned long)mem->userspace_addr,
724 mem->memory_size)))
78749809 725 goto out;
93a5cef0 726 if (mem->slot >= KVM_MEM_SLOTS_NUM)
6aa8b732
AK
727 goto out;
728 if (mem->guest_phys_addr + mem->memory_size < mem->guest_phys_addr)
729 goto out;
730
28a37544 731 memslot = id_to_memslot(kvm->memslots, mem->slot);
6aa8b732
AK
732 base_gfn = mem->guest_phys_addr >> PAGE_SHIFT;
733 npages = mem->memory_size >> PAGE_SHIFT;
734
660c22c4
TY
735 r = -EINVAL;
736 if (npages > KVM_MEM_MAX_NR_PAGES)
737 goto out;
738
6aa8b732
AK
739 if (!npages)
740 mem->flags &= ~KVM_MEM_LOG_DIRTY_PAGES;
741
6aa8b732
AK
742 new = old = *memslot;
743
e36d96f7 744 new.id = mem->slot;
6aa8b732
AK
745 new.base_gfn = base_gfn;
746 new.npages = npages;
747 new.flags = mem->flags;
748
749 /* Disallow changing a memory slot's size. */
750 r = -EINVAL;
751 if (npages && old.npages && npages != old.npages)
f78e0e2e 752 goto out_free;
6aa8b732
AK
753
754 /* Check for overlaps */
755 r = -EEXIST;
756 for (i = 0; i < KVM_MEMORY_SLOTS; ++i) {
46a26bf5 757 struct kvm_memory_slot *s = &kvm->memslots->memslots[i];
6aa8b732 758
4cd481f6 759 if (s == memslot || !s->npages)
6aa8b732
AK
760 continue;
761 if (!((base_gfn + npages <= s->base_gfn) ||
762 (base_gfn >= s->base_gfn + s->npages)))
f78e0e2e 763 goto out_free;
6aa8b732 764 }
6aa8b732 765
6aa8b732
AK
766 /* Free page dirty bitmap if unneeded */
767 if (!(new.flags & KVM_MEM_LOG_DIRTY_PAGES))
8b6d44c7 768 new.dirty_bitmap = NULL;
6aa8b732
AK
769
770 r = -ENOMEM;
771
772 /* Allocate if a slot is being created */
189a2f7b
TY
773 if (npages && !old.npages) {
774 new.user_alloc = user_alloc;
775 new.userspace_addr = mem->userspace_addr;
d89cc617 776
db3fe4eb
TY
777 if (kvm_arch_create_memslot(&new, npages))
778 goto out_free;
6aa8b732 779 }
ec04b260 780
6aa8b732
AK
781 /* Allocate page dirty bitmap if needed */
782 if ((new.flags & KVM_MEM_LOG_DIRTY_PAGES) && !new.dirty_bitmap) {
a36a57b1 783 if (kvm_create_dirty_bitmap(&new) < 0)
f78e0e2e 784 goto out_free;
bc6678a3 785 /* destroy any largepage mappings for dirty tracking */
6aa8b732
AK
786 }
787
bc6678a3 788 if (!npages) {
28a37544
XG
789 struct kvm_memory_slot *slot;
790
bc6678a3 791 r = -ENOMEM;
6da64fdb
TM
792 slots = kmemdup(kvm->memslots, sizeof(struct kvm_memslots),
793 GFP_KERNEL);
bc6678a3
MT
794 if (!slots)
795 goto out_free;
28a37544
XG
796 slot = id_to_memslot(slots, mem->slot);
797 slot->flags |= KVM_MEMSLOT_INVALID;
798
be593d62 799 update_memslots(slots, NULL);
bc6678a3
MT
800
801 old_memslots = kvm->memslots;
802 rcu_assign_pointer(kvm->memslots, slots);
803 synchronize_srcu_expedited(&kvm->srcu);
804 /* From this point no new shadow pages pointing to a deleted
805 * memslot will be created.
806 *
807 * validation of sp->gfn happens in:
808 * - gfn_to_hva (kvm_read_guest, gfn_to_pfn)
809 * - kvm_is_visible_gfn (mmu_check_roots)
810 */
34d4cb8f 811 kvm_arch_flush_shadow(kvm);
bc6678a3
MT
812 kfree(old_memslots);
813 }
34d4cb8f 814
f7784b8e
MT
815 r = kvm_arch_prepare_memory_region(kvm, &new, old, mem, user_alloc);
816 if (r)
817 goto out_free;
818
32f6daad 819 /* map/unmap the pages in iommu page table */
bc6678a3
MT
820 if (npages) {
821 r = kvm_iommu_map_pages(kvm, &new);
822 if (r)
823 goto out_free;
32f6daad
AW
824 } else
825 kvm_iommu_unmap_pages(kvm, &old);
604b38ac 826
bc6678a3 827 r = -ENOMEM;
6da64fdb
TM
828 slots = kmemdup(kvm->memslots, sizeof(struct kvm_memslots),
829 GFP_KERNEL);
bc6678a3
MT
830 if (!slots)
831 goto out_free;
bc6678a3
MT
832
833 /* actual memory is freed via old in kvm_free_physmem_slot below */
834 if (!npages) {
bc6678a3 835 new.dirty_bitmap = NULL;
db3fe4eb 836 memset(&new.arch, 0, sizeof(new.arch));
bc6678a3
MT
837 }
838
be593d62 839 update_memslots(slots, &new);
bc6678a3
MT
840 old_memslots = kvm->memslots;
841 rcu_assign_pointer(kvm->memslots, slots);
842 synchronize_srcu_expedited(&kvm->srcu);
3ad82a7e 843
f7784b8e 844 kvm_arch_commit_memory_region(kvm, mem, old, user_alloc);
82ce2c96 845
ce88decf
XG
846 /*
847 * If the new memory slot is created, we need to clear all
848 * mmio sptes.
849 */
850 if (npages && old.base_gfn != mem->guest_phys_addr >> PAGE_SHIFT)
851 kvm_arch_flush_shadow(kvm);
852
bc6678a3
MT
853 kvm_free_physmem_slot(&old, &new);
854 kfree(old_memslots);
855
6aa8b732
AK
856 return 0;
857
f78e0e2e 858out_free:
6aa8b732
AK
859 kvm_free_physmem_slot(&new, &old);
860out:
861 return r;
210c7c4d
IE
862
863}
f78e0e2e
SY
864EXPORT_SYMBOL_GPL(__kvm_set_memory_region);
865
866int kvm_set_memory_region(struct kvm *kvm,
867 struct kvm_userspace_memory_region *mem,
868 int user_alloc)
869{
870 int r;
871
79fac95e 872 mutex_lock(&kvm->slots_lock);
f78e0e2e 873 r = __kvm_set_memory_region(kvm, mem, user_alloc);
79fac95e 874 mutex_unlock(&kvm->slots_lock);
f78e0e2e
SY
875 return r;
876}
210c7c4d
IE
877EXPORT_SYMBOL_GPL(kvm_set_memory_region);
878
1fe779f8
CO
879int kvm_vm_ioctl_set_memory_region(struct kvm *kvm,
880 struct
881 kvm_userspace_memory_region *mem,
882 int user_alloc)
210c7c4d 883{
e0d62c7f
IE
884 if (mem->slot >= KVM_MEMORY_SLOTS)
885 return -EINVAL;
210c7c4d 886 return kvm_set_memory_region(kvm, mem, user_alloc);
6aa8b732
AK
887}
888
5bb064dc
ZX
889int kvm_get_dirty_log(struct kvm *kvm,
890 struct kvm_dirty_log *log, int *is_dirty)
6aa8b732
AK
891{
892 struct kvm_memory_slot *memslot;
893 int r, i;
87bf6e7d 894 unsigned long n;
6aa8b732
AK
895 unsigned long any = 0;
896
6aa8b732
AK
897 r = -EINVAL;
898 if (log->slot >= KVM_MEMORY_SLOTS)
899 goto out;
900
28a37544 901 memslot = id_to_memslot(kvm->memslots, log->slot);
6aa8b732
AK
902 r = -ENOENT;
903 if (!memslot->dirty_bitmap)
904 goto out;
905
87bf6e7d 906 n = kvm_dirty_bitmap_bytes(memslot);
6aa8b732 907
cd1a4a98 908 for (i = 0; !any && i < n/sizeof(long); ++i)
6aa8b732
AK
909 any = memslot->dirty_bitmap[i];
910
911 r = -EFAULT;
912 if (copy_to_user(log->dirty_bitmap, memslot->dirty_bitmap, n))
913 goto out;
914
5bb064dc
ZX
915 if (any)
916 *is_dirty = 1;
6aa8b732
AK
917
918 r = 0;
6aa8b732 919out:
6aa8b732
AK
920 return r;
921}
922
db3fe4eb
TY
923bool kvm_largepages_enabled(void)
924{
925 return largepages_enabled;
926}
927
54dee993
MT
928void kvm_disable_largepages(void)
929{
930 largepages_enabled = false;
931}
932EXPORT_SYMBOL_GPL(kvm_disable_largepages);
933
f9d46eb0
IE
934static inline unsigned long bad_hva(void)
935{
936 return PAGE_OFFSET;
937}
938
939int kvm_is_error_hva(unsigned long addr)
940{
941 return addr == bad_hva();
942}
943EXPORT_SYMBOL_GPL(kvm_is_error_hva);
944
49c7754c
GN
945struct kvm_memory_slot *gfn_to_memslot(struct kvm *kvm, gfn_t gfn)
946{
947 return __gfn_to_memslot(kvm_memslots(kvm), gfn);
948}
a1f4d395 949EXPORT_SYMBOL_GPL(gfn_to_memslot);
6aa8b732 950
e0d62c7f
IE
951int kvm_is_visible_gfn(struct kvm *kvm, gfn_t gfn)
952{
bf3e05bc 953 struct kvm_memory_slot *memslot = gfn_to_memslot(kvm, gfn);
e0d62c7f 954
bf3e05bc
XG
955 if (!memslot || memslot->id >= KVM_MEMORY_SLOTS ||
956 memslot->flags & KVM_MEMSLOT_INVALID)
957 return 0;
e0d62c7f 958
bf3e05bc 959 return 1;
e0d62c7f
IE
960}
961EXPORT_SYMBOL_GPL(kvm_is_visible_gfn);
962
8f0b1ab6
JR
963unsigned long kvm_host_page_size(struct kvm *kvm, gfn_t gfn)
964{
965 struct vm_area_struct *vma;
966 unsigned long addr, size;
967
968 size = PAGE_SIZE;
969
970 addr = gfn_to_hva(kvm, gfn);
971 if (kvm_is_error_hva(addr))
972 return PAGE_SIZE;
973
974 down_read(&current->mm->mmap_sem);
975 vma = find_vma(current->mm, addr);
976 if (!vma)
977 goto out;
978
979 size = vma_kernel_pagesize(vma);
980
981out:
982 up_read(&current->mm->mmap_sem);
983
984 return size;
985}
986
49c7754c 987static unsigned long gfn_to_hva_many(struct kvm_memory_slot *slot, gfn_t gfn,
48987781 988 gfn_t *nr_pages)
539cb660 989{
bc6678a3 990 if (!slot || slot->flags & KVM_MEMSLOT_INVALID)
539cb660 991 return bad_hva();
48987781
XG
992
993 if (nr_pages)
994 *nr_pages = slot->npages - (gfn - slot->base_gfn);
995
f5c98031 996 return gfn_to_hva_memslot(slot, gfn);
539cb660 997}
48987781
XG
998
999unsigned long gfn_to_hva(struct kvm *kvm, gfn_t gfn)
1000{
49c7754c 1001 return gfn_to_hva_many(gfn_to_memslot(kvm, gfn), gfn, NULL);
48987781 1002}
0d150298 1003EXPORT_SYMBOL_GPL(gfn_to_hva);
539cb660 1004
86ab8cff
XG
1005/*
1006 * The hva returned by this function is only allowed to be read.
1007 * It should pair with kvm_read_hva() or kvm_read_hva_atomic().
1008 */
1009static unsigned long gfn_to_hva_read(struct kvm *kvm, gfn_t gfn)
1010{
1011 return gfn_to_hva_many(gfn_to_memslot(kvm, gfn), gfn, NULL);
1012}
1013
1014static int kvm_read_hva(void *data, void __user *hva, int len)
1015{
1016 return __copy_from_user(data, hva, len);
1017}
1018
1019static int kvm_read_hva_atomic(void *data, void __user *hva, int len)
1020{
1021 return __copy_from_user_inatomic(data, hva, len);
1022}
1023
0857b9e9
GN
1024int get_user_page_nowait(struct task_struct *tsk, struct mm_struct *mm,
1025 unsigned long start, int write, struct page **page)
1026{
1027 int flags = FOLL_TOUCH | FOLL_NOWAIT | FOLL_HWPOISON | FOLL_GET;
1028
1029 if (write)
1030 flags |= FOLL_WRITE;
1031
1032 return __get_user_pages(tsk, mm, start, 1, flags, page, NULL, NULL);
1033}
1034
fafc3dba
HY
1035static inline int check_user_page_hwpoison(unsigned long addr)
1036{
1037 int rc, flags = FOLL_TOUCH | FOLL_HWPOISON | FOLL_WRITE;
1038
1039 rc = __get_user_pages(current, current->mm, addr, 1,
1040 flags, NULL, NULL, NULL);
1041 return rc == -EHWPOISON;
1042}
1043
d5661048
XG
1044static pfn_t hva_to_pfn(unsigned long addr, bool atomic, bool *async,
1045 bool write_fault, bool *writable)
954bbbc2 1046{
8d4e1288 1047 struct page *page[1];
af585b92 1048 int npages = 0;
2e2e3738 1049 pfn_t pfn;
954bbbc2 1050
af585b92
GN
1051 /* we can do it either atomically or asynchronously, not both */
1052 BUG_ON(atomic && async);
1053
612819c3
MT
1054 BUG_ON(!write_fault && !writable);
1055
1056 if (writable)
1057 *writable = true;
1058
af585b92 1059 if (atomic || async)
887c08ac 1060 npages = __get_user_pages_fast(addr, 1, 1, page);
af585b92
GN
1061
1062 if (unlikely(npages != 1) && !atomic) {
887c08ac 1063 might_sleep();
612819c3
MT
1064
1065 if (writable)
1066 *writable = write_fault;
1067
0857b9e9
GN
1068 if (async) {
1069 down_read(&current->mm->mmap_sem);
1070 npages = get_user_page_nowait(current, current->mm,
1071 addr, write_fault, page);
1072 up_read(&current->mm->mmap_sem);
1073 } else
1074 npages = get_user_pages_fast(addr, 1, write_fault,
1075 page);
612819c3
MT
1076
1077 /* map read fault as writable if possible */
1078 if (unlikely(!write_fault) && npages == 1) {
1079 struct page *wpage[1];
1080
1081 npages = __get_user_pages_fast(addr, 1, 1, wpage);
1082 if (npages == 1) {
1083 *writable = true;
1084 put_page(page[0]);
1085 page[0] = wpage[0];
1086 }
1087 npages = 1;
1088 }
887c08ac 1089 }
539cb660 1090
2e2e3738
AL
1091 if (unlikely(npages != 1)) {
1092 struct vm_area_struct *vma;
1093
887c08ac 1094 if (atomic)
6c8ee57b 1095 return KVM_PFN_ERR_FAULT;
887c08ac 1096
bbeb3406 1097 down_read(&current->mm->mmap_sem);
0857b9e9
GN
1098 if (npages == -EHWPOISON ||
1099 (!async && check_user_page_hwpoison(addr))) {
bbeb3406 1100 up_read(&current->mm->mmap_sem);
e6c1502b 1101 return KVM_PFN_ERR_HWPOISON;
bf998156
HY
1102 }
1103
8030089f 1104 vma = find_vma_intersection(current->mm, addr, addr+1);
4c2155ce 1105
8030089f 1106 if (vma == NULL)
6c8ee57b 1107 pfn = KVM_PFN_ERR_FAULT;
8030089f
GN
1108 else if ((vma->vm_flags & VM_PFNMAP)) {
1109 pfn = ((addr - vma->vm_start) >> PAGE_SHIFT) +
1110 vma->vm_pgoff;
1111 BUG_ON(!kvm_is_mmio_pfn(pfn));
1112 } else {
1113 if (async && (vma->vm_flags & VM_WRITE))
af585b92 1114 *async = true;
6c8ee57b 1115 pfn = KVM_PFN_ERR_FAULT;
2e2e3738 1116 }
4c2155ce 1117 up_read(&current->mm->mmap_sem);
2e2e3738
AL
1118 } else
1119 pfn = page_to_pfn(page[0]);
8d4e1288 1120
2e2e3738 1121 return pfn;
35149e21
AL
1122}
1123
612819c3
MT
1124static pfn_t __gfn_to_pfn(struct kvm *kvm, gfn_t gfn, bool atomic, bool *async,
1125 bool write_fault, bool *writable)
506f0d6f
MT
1126{
1127 unsigned long addr;
1128
af585b92
GN
1129 if (async)
1130 *async = false;
1131
506f0d6f 1132 addr = gfn_to_hva(kvm, gfn);
a2766325 1133 if (kvm_is_error_hva(addr))
950e9509 1134 return KVM_PFN_ERR_BAD;
506f0d6f 1135
d5661048 1136 return hva_to_pfn(addr, atomic, async, write_fault, writable);
365fb3fd
XG
1137}
1138
1139pfn_t gfn_to_pfn_atomic(struct kvm *kvm, gfn_t gfn)
1140{
612819c3 1141 return __gfn_to_pfn(kvm, gfn, true, NULL, true, NULL);
365fb3fd
XG
1142}
1143EXPORT_SYMBOL_GPL(gfn_to_pfn_atomic);
1144
612819c3
MT
1145pfn_t gfn_to_pfn_async(struct kvm *kvm, gfn_t gfn, bool *async,
1146 bool write_fault, bool *writable)
af585b92 1147{
612819c3 1148 return __gfn_to_pfn(kvm, gfn, false, async, write_fault, writable);
af585b92
GN
1149}
1150EXPORT_SYMBOL_GPL(gfn_to_pfn_async);
1151
365fb3fd
XG
1152pfn_t gfn_to_pfn(struct kvm *kvm, gfn_t gfn)
1153{
612819c3 1154 return __gfn_to_pfn(kvm, gfn, false, NULL, true, NULL);
506f0d6f 1155}
35149e21
AL
1156EXPORT_SYMBOL_GPL(gfn_to_pfn);
1157
612819c3
MT
1158pfn_t gfn_to_pfn_prot(struct kvm *kvm, gfn_t gfn, bool write_fault,
1159 bool *writable)
1160{
1161 return __gfn_to_pfn(kvm, gfn, false, NULL, write_fault, writable);
1162}
1163EXPORT_SYMBOL_GPL(gfn_to_pfn_prot);
1164
d5661048 1165pfn_t gfn_to_pfn_memslot(struct kvm_memory_slot *slot, gfn_t gfn)
506f0d6f
MT
1166{
1167 unsigned long addr = gfn_to_hva_memslot(slot, gfn);
d5661048 1168 return hva_to_pfn(addr, false, NULL, true, NULL);
506f0d6f
MT
1169}
1170
037d92dc
XG
1171pfn_t gfn_to_pfn_memslot_atomic(struct kvm_memory_slot *slot, gfn_t gfn)
1172{
1173 unsigned long addr = gfn_to_hva_memslot(slot, gfn);
1174
1175 return hva_to_pfn(addr, true, NULL, true, NULL);
1176}
1177EXPORT_SYMBOL_GPL(gfn_to_pfn_memslot_atomic);
1178
48987781
XG
1179int gfn_to_page_many_atomic(struct kvm *kvm, gfn_t gfn, struct page **pages,
1180 int nr_pages)
1181{
1182 unsigned long addr;
1183 gfn_t entry;
1184
49c7754c 1185 addr = gfn_to_hva_many(gfn_to_memslot(kvm, gfn), gfn, &entry);
48987781
XG
1186 if (kvm_is_error_hva(addr))
1187 return -1;
1188
1189 if (entry < nr_pages)
1190 return 0;
1191
1192 return __get_user_pages_fast(addr, nr_pages, 1, pages);
1193}
1194EXPORT_SYMBOL_GPL(gfn_to_page_many_atomic);
1195
a2766325
XG
1196static struct page *kvm_pfn_to_page(pfn_t pfn)
1197{
cb9aaa30
XG
1198 if (is_error_pfn(pfn))
1199 return KVM_ERR_PTR_BAD_PAGE;
a2766325 1200
cb9aaa30
XG
1201 if (kvm_is_mmio_pfn(pfn)) {
1202 WARN_ON(1);
6cede2e6 1203 return KVM_ERR_PTR_BAD_PAGE;
cb9aaa30 1204 }
a2766325
XG
1205
1206 return pfn_to_page(pfn);
1207}
1208
35149e21
AL
1209struct page *gfn_to_page(struct kvm *kvm, gfn_t gfn)
1210{
2e2e3738
AL
1211 pfn_t pfn;
1212
1213 pfn = gfn_to_pfn(kvm, gfn);
2e2e3738 1214
a2766325 1215 return kvm_pfn_to_page(pfn);
954bbbc2 1216}
aab61cc0 1217
954bbbc2
AK
1218EXPORT_SYMBOL_GPL(gfn_to_page);
1219
b4231d61
IE
1220void kvm_release_page_clean(struct page *page)
1221{
32cad84f
XG
1222 WARN_ON(is_error_page(page));
1223
1224 kvm_release_pfn_clean(page_to_pfn(page));
b4231d61
IE
1225}
1226EXPORT_SYMBOL_GPL(kvm_release_page_clean);
1227
35149e21
AL
1228void kvm_release_pfn_clean(pfn_t pfn)
1229{
cb9aaa30
XG
1230 WARN_ON(is_error_pfn(pfn));
1231
1232 if (!kvm_is_mmio_pfn(pfn))
2e2e3738 1233 put_page(pfn_to_page(pfn));
35149e21
AL
1234}
1235EXPORT_SYMBOL_GPL(kvm_release_pfn_clean);
1236
b4231d61 1237void kvm_release_page_dirty(struct page *page)
8a7ae055 1238{
a2766325
XG
1239 WARN_ON(is_error_page(page));
1240
35149e21
AL
1241 kvm_release_pfn_dirty(page_to_pfn(page));
1242}
1243EXPORT_SYMBOL_GPL(kvm_release_page_dirty);
1244
1245void kvm_release_pfn_dirty(pfn_t pfn)
1246{
1247 kvm_set_pfn_dirty(pfn);
1248 kvm_release_pfn_clean(pfn);
1249}
1250EXPORT_SYMBOL_GPL(kvm_release_pfn_dirty);
1251
1252void kvm_set_page_dirty(struct page *page)
1253{
1254 kvm_set_pfn_dirty(page_to_pfn(page));
1255}
1256EXPORT_SYMBOL_GPL(kvm_set_page_dirty);
1257
1258void kvm_set_pfn_dirty(pfn_t pfn)
1259{
c77fb9dc 1260 if (!kvm_is_mmio_pfn(pfn)) {
2e2e3738
AL
1261 struct page *page = pfn_to_page(pfn);
1262 if (!PageReserved(page))
1263 SetPageDirty(page);
1264 }
8a7ae055 1265}
35149e21
AL
1266EXPORT_SYMBOL_GPL(kvm_set_pfn_dirty);
1267
1268void kvm_set_pfn_accessed(pfn_t pfn)
1269{
c77fb9dc 1270 if (!kvm_is_mmio_pfn(pfn))
2e2e3738 1271 mark_page_accessed(pfn_to_page(pfn));
35149e21
AL
1272}
1273EXPORT_SYMBOL_GPL(kvm_set_pfn_accessed);
1274
1275void kvm_get_pfn(pfn_t pfn)
1276{
c77fb9dc 1277 if (!kvm_is_mmio_pfn(pfn))
2e2e3738 1278 get_page(pfn_to_page(pfn));
35149e21
AL
1279}
1280EXPORT_SYMBOL_GPL(kvm_get_pfn);
8a7ae055 1281
195aefde
IE
1282static int next_segment(unsigned long len, int offset)
1283{
1284 if (len > PAGE_SIZE - offset)
1285 return PAGE_SIZE - offset;
1286 else
1287 return len;
1288}
1289
1290int kvm_read_guest_page(struct kvm *kvm, gfn_t gfn, void *data, int offset,
1291 int len)
1292{
e0506bcb
IE
1293 int r;
1294 unsigned long addr;
195aefde 1295
86ab8cff 1296 addr = gfn_to_hva_read(kvm, gfn);
e0506bcb
IE
1297 if (kvm_is_error_hva(addr))
1298 return -EFAULT;
86ab8cff 1299 r = kvm_read_hva(data, (void __user *)addr + offset, len);
e0506bcb 1300 if (r)
195aefde 1301 return -EFAULT;
195aefde
IE
1302 return 0;
1303}
1304EXPORT_SYMBOL_GPL(kvm_read_guest_page);
1305
1306int kvm_read_guest(struct kvm *kvm, gpa_t gpa, void *data, unsigned long len)
1307{
1308 gfn_t gfn = gpa >> PAGE_SHIFT;
1309 int seg;
1310 int offset = offset_in_page(gpa);
1311 int ret;
1312
1313 while ((seg = next_segment(len, offset)) != 0) {
1314 ret = kvm_read_guest_page(kvm, gfn, data, offset, seg);
1315 if (ret < 0)
1316 return ret;
1317 offset = 0;
1318 len -= seg;
1319 data += seg;
1320 ++gfn;
1321 }
1322 return 0;
1323}
1324EXPORT_SYMBOL_GPL(kvm_read_guest);
1325
7ec54588
MT
1326int kvm_read_guest_atomic(struct kvm *kvm, gpa_t gpa, void *data,
1327 unsigned long len)
1328{
1329 int r;
1330 unsigned long addr;
1331 gfn_t gfn = gpa >> PAGE_SHIFT;
1332 int offset = offset_in_page(gpa);
1333
86ab8cff 1334 addr = gfn_to_hva_read(kvm, gfn);
7ec54588
MT
1335 if (kvm_is_error_hva(addr))
1336 return -EFAULT;
0aac03f0 1337 pagefault_disable();
86ab8cff 1338 r = kvm_read_hva_atomic(data, (void __user *)addr + offset, len);
0aac03f0 1339 pagefault_enable();
7ec54588
MT
1340 if (r)
1341 return -EFAULT;
1342 return 0;
1343}
1344EXPORT_SYMBOL(kvm_read_guest_atomic);
1345
195aefde
IE
1346int kvm_write_guest_page(struct kvm *kvm, gfn_t gfn, const void *data,
1347 int offset, int len)
1348{
e0506bcb
IE
1349 int r;
1350 unsigned long addr;
195aefde 1351
e0506bcb
IE
1352 addr = gfn_to_hva(kvm, gfn);
1353 if (kvm_is_error_hva(addr))
1354 return -EFAULT;
8b0cedff 1355 r = __copy_to_user((void __user *)addr + offset, data, len);
e0506bcb 1356 if (r)
195aefde 1357 return -EFAULT;
195aefde
IE
1358 mark_page_dirty(kvm, gfn);
1359 return 0;
1360}
1361EXPORT_SYMBOL_GPL(kvm_write_guest_page);
1362
1363int kvm_write_guest(struct kvm *kvm, gpa_t gpa, const void *data,
1364 unsigned long len)
1365{
1366 gfn_t gfn = gpa >> PAGE_SHIFT;
1367 int seg;
1368 int offset = offset_in_page(gpa);
1369 int ret;
1370
1371 while ((seg = next_segment(len, offset)) != 0) {
1372 ret = kvm_write_guest_page(kvm, gfn, data, offset, seg);
1373 if (ret < 0)
1374 return ret;
1375 offset = 0;
1376 len -= seg;
1377 data += seg;
1378 ++gfn;
1379 }
1380 return 0;
1381}
1382
49c7754c
GN
1383int kvm_gfn_to_hva_cache_init(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
1384 gpa_t gpa)
1385{
1386 struct kvm_memslots *slots = kvm_memslots(kvm);
1387 int offset = offset_in_page(gpa);
1388 gfn_t gfn = gpa >> PAGE_SHIFT;
1389
1390 ghc->gpa = gpa;
1391 ghc->generation = slots->generation;
9d4cba7f 1392 ghc->memslot = gfn_to_memslot(kvm, gfn);
49c7754c
GN
1393 ghc->hva = gfn_to_hva_many(ghc->memslot, gfn, NULL);
1394 if (!kvm_is_error_hva(ghc->hva))
1395 ghc->hva += offset;
1396 else
1397 return -EFAULT;
1398
1399 return 0;
1400}
1401EXPORT_SYMBOL_GPL(kvm_gfn_to_hva_cache_init);
1402
1403int kvm_write_guest_cached(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
1404 void *data, unsigned long len)
1405{
1406 struct kvm_memslots *slots = kvm_memslots(kvm);
1407 int r;
1408
1409 if (slots->generation != ghc->generation)
1410 kvm_gfn_to_hva_cache_init(kvm, ghc, ghc->gpa);
1411
1412 if (kvm_is_error_hva(ghc->hva))
1413 return -EFAULT;
1414
8b0cedff 1415 r = __copy_to_user((void __user *)ghc->hva, data, len);
49c7754c
GN
1416 if (r)
1417 return -EFAULT;
1418 mark_page_dirty_in_slot(kvm, ghc->memslot, ghc->gpa >> PAGE_SHIFT);
1419
1420 return 0;
1421}
1422EXPORT_SYMBOL_GPL(kvm_write_guest_cached);
1423
e03b644f
GN
1424int kvm_read_guest_cached(struct kvm *kvm, struct gfn_to_hva_cache *ghc,
1425 void *data, unsigned long len)
1426{
1427 struct kvm_memslots *slots = kvm_memslots(kvm);
1428 int r;
1429
1430 if (slots->generation != ghc->generation)
1431 kvm_gfn_to_hva_cache_init(kvm, ghc, ghc->gpa);
1432
1433 if (kvm_is_error_hva(ghc->hva))
1434 return -EFAULT;
1435
1436 r = __copy_from_user(data, (void __user *)ghc->hva, len);
1437 if (r)
1438 return -EFAULT;
1439
1440 return 0;
1441}
1442EXPORT_SYMBOL_GPL(kvm_read_guest_cached);
1443
195aefde
IE
1444int kvm_clear_guest_page(struct kvm *kvm, gfn_t gfn, int offset, int len)
1445{
3bcc8a8c
HC
1446 return kvm_write_guest_page(kvm, gfn, (const void *) empty_zero_page,
1447 offset, len);
195aefde
IE
1448}
1449EXPORT_SYMBOL_GPL(kvm_clear_guest_page);
1450
1451int kvm_clear_guest(struct kvm *kvm, gpa_t gpa, unsigned long len)
1452{
1453 gfn_t gfn = gpa >> PAGE_SHIFT;
1454 int seg;
1455 int offset = offset_in_page(gpa);
1456 int ret;
1457
1458 while ((seg = next_segment(len, offset)) != 0) {
1459 ret = kvm_clear_guest_page(kvm, gfn, offset, seg);
1460 if (ret < 0)
1461 return ret;
1462 offset = 0;
1463 len -= seg;
1464 ++gfn;
1465 }
1466 return 0;
1467}
1468EXPORT_SYMBOL_GPL(kvm_clear_guest);
1469
49c7754c
GN
1470void mark_page_dirty_in_slot(struct kvm *kvm, struct kvm_memory_slot *memslot,
1471 gfn_t gfn)
6aa8b732 1472{
7e9d619d
RR
1473 if (memslot && memslot->dirty_bitmap) {
1474 unsigned long rel_gfn = gfn - memslot->base_gfn;
6aa8b732 1475
93474b25
TY
1476 /* TODO: introduce set_bit_le() and use it */
1477 test_and_set_bit_le(rel_gfn, memslot->dirty_bitmap);
6aa8b732
AK
1478 }
1479}
1480
49c7754c
GN
1481void mark_page_dirty(struct kvm *kvm, gfn_t gfn)
1482{
1483 struct kvm_memory_slot *memslot;
1484
1485 memslot = gfn_to_memslot(kvm, gfn);
1486 mark_page_dirty_in_slot(kvm, memslot, gfn);
1487}
1488
b6958ce4
ED
1489/*
1490 * The vCPU has executed a HLT instruction with in-kernel mode enabled.
1491 */
8776e519 1492void kvm_vcpu_block(struct kvm_vcpu *vcpu)
d3bef15f 1493{
e5c239cf
MT
1494 DEFINE_WAIT(wait);
1495
1496 for (;;) {
1497 prepare_to_wait(&vcpu->wq, &wait, TASK_INTERRUPTIBLE);
1498
a1b37100 1499 if (kvm_arch_vcpu_runnable(vcpu)) {
a8eeb04a 1500 kvm_make_request(KVM_REQ_UNHALT, vcpu);
e5c239cf 1501 break;
d7690175 1502 }
09cec754
GN
1503 if (kvm_cpu_has_pending_timer(vcpu))
1504 break;
e5c239cf
MT
1505 if (signal_pending(current))
1506 break;
1507
b6958ce4 1508 schedule();
b6958ce4 1509 }
d3bef15f 1510
e5c239cf 1511 finish_wait(&vcpu->wq, &wait);
b6958ce4
ED
1512}
1513
8c84780d 1514#ifndef CONFIG_S390
b6d33834
CD
1515/*
1516 * Kick a sleeping VCPU, or a guest VCPU in guest mode, into host kernel mode.
1517 */
1518void kvm_vcpu_kick(struct kvm_vcpu *vcpu)
1519{
1520 int me;
1521 int cpu = vcpu->cpu;
1522 wait_queue_head_t *wqp;
1523
1524 wqp = kvm_arch_vcpu_wq(vcpu);
1525 if (waitqueue_active(wqp)) {
1526 wake_up_interruptible(wqp);
1527 ++vcpu->stat.halt_wakeup;
1528 }
1529
1530 me = get_cpu();
1531 if (cpu != me && (unsigned)cpu < nr_cpu_ids && cpu_online(cpu))
1532 if (kvm_arch_vcpu_should_kick(vcpu))
1533 smp_send_reschedule(cpu);
1534 put_cpu();
1535}
8c84780d 1536#endif /* !CONFIG_S390 */
b6d33834 1537
6aa8b732
AK
1538void kvm_resched(struct kvm_vcpu *vcpu)
1539{
3fca0365
YD
1540 if (!need_resched())
1541 return;
6aa8b732 1542 cond_resched();
6aa8b732
AK
1543}
1544EXPORT_SYMBOL_GPL(kvm_resched);
1545
41628d33
KW
1546bool kvm_vcpu_yield_to(struct kvm_vcpu *target)
1547{
1548 struct pid *pid;
1549 struct task_struct *task = NULL;
1550
1551 rcu_read_lock();
1552 pid = rcu_dereference(target->pid);
1553 if (pid)
1554 task = get_pid_task(target->pid, PIDTYPE_PID);
1555 rcu_read_unlock();
1556 if (!task)
1557 return false;
1558 if (task->flags & PF_VCPU) {
1559 put_task_struct(task);
1560 return false;
1561 }
1562 if (yield_to(task, 1)) {
1563 put_task_struct(task);
1564 return true;
1565 }
1566 put_task_struct(task);
1567 return false;
1568}
1569EXPORT_SYMBOL_GPL(kvm_vcpu_yield_to);
1570
06e48c51
R
1571#ifdef CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT
1572/*
1573 * Helper that checks whether a VCPU is eligible for directed yield.
1574 * Most eligible candidate to yield is decided by following heuristics:
1575 *
1576 * (a) VCPU which has not done pl-exit or cpu relax intercepted recently
1577 * (preempted lock holder), indicated by @in_spin_loop.
1578 * Set at the beiginning and cleared at the end of interception/PLE handler.
1579 *
1580 * (b) VCPU which has done pl-exit/ cpu relax intercepted but did not get
1581 * chance last time (mostly it has become eligible now since we have probably
1582 * yielded to lockholder in last iteration. This is done by toggling
1583 * @dy_eligible each time a VCPU checked for eligibility.)
1584 *
1585 * Yielding to a recently pl-exited/cpu relax intercepted VCPU before yielding
1586 * to preempted lock-holder could result in wrong VCPU selection and CPU
1587 * burning. Giving priority for a potential lock-holder increases lock
1588 * progress.
1589 *
1590 * Since algorithm is based on heuristics, accessing another VCPU data without
1591 * locking does not harm. It may result in trying to yield to same VCPU, fail
1592 * and continue with next VCPU and so on.
1593 */
1594bool kvm_vcpu_eligible_for_directed_yield(struct kvm_vcpu *vcpu)
1595{
1596 bool eligible;
1597
1598 eligible = !vcpu->spin_loop.in_spin_loop ||
1599 (vcpu->spin_loop.in_spin_loop &&
1600 vcpu->spin_loop.dy_eligible);
1601
1602 if (vcpu->spin_loop.in_spin_loop)
1603 kvm_vcpu_set_dy_eligible(vcpu, !vcpu->spin_loop.dy_eligible);
1604
1605 return eligible;
1606}
1607#endif
217ece61 1608void kvm_vcpu_on_spin(struct kvm_vcpu *me)
d255f4f2 1609{
217ece61
RR
1610 struct kvm *kvm = me->kvm;
1611 struct kvm_vcpu *vcpu;
1612 int last_boosted_vcpu = me->kvm->last_boosted_vcpu;
1613 int yielded = 0;
1614 int pass;
1615 int i;
d255f4f2 1616
4c088493 1617 kvm_vcpu_set_in_spin_loop(me, true);
217ece61
RR
1618 /*
1619 * We boost the priority of a VCPU that is runnable but not
1620 * currently running, because it got preempted by something
1621 * else and called schedule in __vcpu_run. Hopefully that
1622 * VCPU is holding the lock that we need and will release it.
1623 * We approximate round-robin by starting at the last boosted VCPU.
1624 */
1625 for (pass = 0; pass < 2 && !yielded; pass++) {
1626 kvm_for_each_vcpu(i, vcpu, kvm) {
5cfc2aab 1627 if (!pass && i <= last_boosted_vcpu) {
217ece61
RR
1628 i = last_boosted_vcpu;
1629 continue;
1630 } else if (pass && i > last_boosted_vcpu)
1631 break;
1632 if (vcpu == me)
1633 continue;
1634 if (waitqueue_active(&vcpu->wq))
1635 continue;
06e48c51
R
1636 if (!kvm_vcpu_eligible_for_directed_yield(vcpu))
1637 continue;
41628d33 1638 if (kvm_vcpu_yield_to(vcpu)) {
217ece61
RR
1639 kvm->last_boosted_vcpu = i;
1640 yielded = 1;
1641 break;
1642 }
217ece61
RR
1643 }
1644 }
4c088493 1645 kvm_vcpu_set_in_spin_loop(me, false);
06e48c51
R
1646
1647 /* Ensure vcpu is not eligible during next spinloop */
1648 kvm_vcpu_set_dy_eligible(me, false);
d255f4f2
ZE
1649}
1650EXPORT_SYMBOL_GPL(kvm_vcpu_on_spin);
1651
e4a533a4 1652static int kvm_vcpu_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
9a2bb7f4
AK
1653{
1654 struct kvm_vcpu *vcpu = vma->vm_file->private_data;
9a2bb7f4
AK
1655 struct page *page;
1656
e4a533a4 1657 if (vmf->pgoff == 0)
039576c0 1658 page = virt_to_page(vcpu->run);
09566765 1659#ifdef CONFIG_X86
e4a533a4 1660 else if (vmf->pgoff == KVM_PIO_PAGE_OFFSET)
ad312c7c 1661 page = virt_to_page(vcpu->arch.pio_data);
5f94c174
LV
1662#endif
1663#ifdef KVM_COALESCED_MMIO_PAGE_OFFSET
1664 else if (vmf->pgoff == KVM_COALESCED_MMIO_PAGE_OFFSET)
1665 page = virt_to_page(vcpu->kvm->coalesced_mmio_ring);
09566765 1666#endif
039576c0 1667 else
5b1c1493 1668 return kvm_arch_vcpu_fault(vcpu, vmf);
9a2bb7f4 1669 get_page(page);
e4a533a4 1670 vmf->page = page;
1671 return 0;
9a2bb7f4
AK
1672}
1673
f0f37e2f 1674static const struct vm_operations_struct kvm_vcpu_vm_ops = {
e4a533a4 1675 .fault = kvm_vcpu_fault,
9a2bb7f4
AK
1676};
1677
1678static int kvm_vcpu_mmap(struct file *file, struct vm_area_struct *vma)
1679{
1680 vma->vm_ops = &kvm_vcpu_vm_ops;
1681 return 0;
1682}
1683
bccf2150
AK
1684static int kvm_vcpu_release(struct inode *inode, struct file *filp)
1685{
1686 struct kvm_vcpu *vcpu = filp->private_data;
1687
66c0b394 1688 kvm_put_kvm(vcpu->kvm);
bccf2150
AK
1689 return 0;
1690}
1691
3d3aab1b 1692static struct file_operations kvm_vcpu_fops = {
bccf2150
AK
1693 .release = kvm_vcpu_release,
1694 .unlocked_ioctl = kvm_vcpu_ioctl,
1dda606c
AG
1695#ifdef CONFIG_COMPAT
1696 .compat_ioctl = kvm_vcpu_compat_ioctl,
1697#endif
9a2bb7f4 1698 .mmap = kvm_vcpu_mmap,
6038f373 1699 .llseek = noop_llseek,
bccf2150
AK
1700};
1701
1702/*
1703 * Allocates an inode for the vcpu.
1704 */
1705static int create_vcpu_fd(struct kvm_vcpu *vcpu)
1706{
628ff7c1 1707 return anon_inode_getfd("kvm-vcpu", &kvm_vcpu_fops, vcpu, O_RDWR);
bccf2150
AK
1708}
1709
c5ea7660
AK
1710/*
1711 * Creates some virtual cpus. Good luck creating more than one.
1712 */
73880c80 1713static int kvm_vm_ioctl_create_vcpu(struct kvm *kvm, u32 id)
c5ea7660
AK
1714{
1715 int r;
988a2cae 1716 struct kvm_vcpu *vcpu, *v;
c5ea7660 1717
73880c80 1718 vcpu = kvm_arch_vcpu_create(kvm, id);
fb3f0f51
RR
1719 if (IS_ERR(vcpu))
1720 return PTR_ERR(vcpu);
c5ea7660 1721
15ad7146
AK
1722 preempt_notifier_init(&vcpu->preempt_notifier, &kvm_preempt_ops);
1723
26e5215f
AK
1724 r = kvm_arch_vcpu_setup(vcpu);
1725 if (r)
d780592b 1726 goto vcpu_destroy;
26e5215f 1727
11ec2804 1728 mutex_lock(&kvm->lock);
3e515705
AK
1729 if (!kvm_vcpu_compatible(vcpu)) {
1730 r = -EINVAL;
1731 goto unlock_vcpu_destroy;
1732 }
73880c80
GN
1733 if (atomic_read(&kvm->online_vcpus) == KVM_MAX_VCPUS) {
1734 r = -EINVAL;
d780592b 1735 goto unlock_vcpu_destroy;
fb3f0f51 1736 }
73880c80 1737
988a2cae
GN
1738 kvm_for_each_vcpu(r, v, kvm)
1739 if (v->vcpu_id == id) {
73880c80 1740 r = -EEXIST;
d780592b 1741 goto unlock_vcpu_destroy;
73880c80
GN
1742 }
1743
1744 BUG_ON(kvm->vcpus[atomic_read(&kvm->online_vcpus)]);
c5ea7660 1745
fb3f0f51 1746 /* Now it's all set up, let userspace reach it */
66c0b394 1747 kvm_get_kvm(kvm);
bccf2150 1748 r = create_vcpu_fd(vcpu);
73880c80
GN
1749 if (r < 0) {
1750 kvm_put_kvm(kvm);
d780592b 1751 goto unlock_vcpu_destroy;
73880c80
GN
1752 }
1753
1754 kvm->vcpus[atomic_read(&kvm->online_vcpus)] = vcpu;
1755 smp_wmb();
1756 atomic_inc(&kvm->online_vcpus);
1757
73880c80 1758 mutex_unlock(&kvm->lock);
fb3f0f51 1759 return r;
39c3b86e 1760
d780592b 1761unlock_vcpu_destroy:
7d8fece6 1762 mutex_unlock(&kvm->lock);
d780592b 1763vcpu_destroy:
d40ccc62 1764 kvm_arch_vcpu_destroy(vcpu);
c5ea7660
AK
1765 return r;
1766}
1767
1961d276
AK
1768static int kvm_vcpu_ioctl_set_sigmask(struct kvm_vcpu *vcpu, sigset_t *sigset)
1769{
1770 if (sigset) {
1771 sigdelsetmask(sigset, sigmask(SIGKILL)|sigmask(SIGSTOP));
1772 vcpu->sigset_active = 1;
1773 vcpu->sigset = *sigset;
1774 } else
1775 vcpu->sigset_active = 0;
1776 return 0;
1777}
1778
bccf2150
AK
1779static long kvm_vcpu_ioctl(struct file *filp,
1780 unsigned int ioctl, unsigned long arg)
6aa8b732 1781{
bccf2150 1782 struct kvm_vcpu *vcpu = filp->private_data;
2f366987 1783 void __user *argp = (void __user *)arg;
313a3dc7 1784 int r;
fa3795a7
DH
1785 struct kvm_fpu *fpu = NULL;
1786 struct kvm_sregs *kvm_sregs = NULL;
6aa8b732 1787
6d4e4c4f
AK
1788 if (vcpu->kvm->mm != current->mm)
1789 return -EIO;
2122ff5e
AK
1790
1791#if defined(CONFIG_S390) || defined(CONFIG_PPC)
1792 /*
1793 * Special cases: vcpu ioctls that are asynchronous to vcpu execution,
1794 * so vcpu_load() would break it.
1795 */
1796 if (ioctl == KVM_S390_INTERRUPT || ioctl == KVM_INTERRUPT)
1797 return kvm_arch_vcpu_ioctl(filp, ioctl, arg);
1798#endif
1799
1800
1801 vcpu_load(vcpu);
6aa8b732 1802 switch (ioctl) {
9a2bb7f4 1803 case KVM_RUN:
f0fe5108
AK
1804 r = -EINVAL;
1805 if (arg)
1806 goto out;
b6c7a5dc 1807 r = kvm_arch_vcpu_ioctl_run(vcpu, vcpu->run);
64be5007 1808 trace_kvm_userspace_exit(vcpu->run->exit_reason, r);
6aa8b732 1809 break;
6aa8b732 1810 case KVM_GET_REGS: {
3e4bb3ac 1811 struct kvm_regs *kvm_regs;
6aa8b732 1812
3e4bb3ac
XZ
1813 r = -ENOMEM;
1814 kvm_regs = kzalloc(sizeof(struct kvm_regs), GFP_KERNEL);
1815 if (!kvm_regs)
6aa8b732 1816 goto out;
3e4bb3ac
XZ
1817 r = kvm_arch_vcpu_ioctl_get_regs(vcpu, kvm_regs);
1818 if (r)
1819 goto out_free1;
6aa8b732 1820 r = -EFAULT;
3e4bb3ac
XZ
1821 if (copy_to_user(argp, kvm_regs, sizeof(struct kvm_regs)))
1822 goto out_free1;
6aa8b732 1823 r = 0;
3e4bb3ac
XZ
1824out_free1:
1825 kfree(kvm_regs);
6aa8b732
AK
1826 break;
1827 }
1828 case KVM_SET_REGS: {
3e4bb3ac 1829 struct kvm_regs *kvm_regs;
6aa8b732 1830
3e4bb3ac 1831 r = -ENOMEM;
ff5c2c03
SL
1832 kvm_regs = memdup_user(argp, sizeof(*kvm_regs));
1833 if (IS_ERR(kvm_regs)) {
1834 r = PTR_ERR(kvm_regs);
6aa8b732 1835 goto out;
ff5c2c03 1836 }
3e4bb3ac 1837 r = kvm_arch_vcpu_ioctl_set_regs(vcpu, kvm_regs);
6aa8b732 1838 if (r)
3e4bb3ac 1839 goto out_free2;
6aa8b732 1840 r = 0;
3e4bb3ac
XZ
1841out_free2:
1842 kfree(kvm_regs);
6aa8b732
AK
1843 break;
1844 }
1845 case KVM_GET_SREGS: {
fa3795a7
DH
1846 kvm_sregs = kzalloc(sizeof(struct kvm_sregs), GFP_KERNEL);
1847 r = -ENOMEM;
1848 if (!kvm_sregs)
1849 goto out;
1850 r = kvm_arch_vcpu_ioctl_get_sregs(vcpu, kvm_sregs);
6aa8b732
AK
1851 if (r)
1852 goto out;
1853 r = -EFAULT;
fa3795a7 1854 if (copy_to_user(argp, kvm_sregs, sizeof(struct kvm_sregs)))
6aa8b732
AK
1855 goto out;
1856 r = 0;
1857 break;
1858 }
1859 case KVM_SET_SREGS: {
ff5c2c03
SL
1860 kvm_sregs = memdup_user(argp, sizeof(*kvm_sregs));
1861 if (IS_ERR(kvm_sregs)) {
1862 r = PTR_ERR(kvm_sregs);
6aa8b732 1863 goto out;
ff5c2c03 1864 }
fa3795a7 1865 r = kvm_arch_vcpu_ioctl_set_sregs(vcpu, kvm_sregs);
6aa8b732
AK
1866 if (r)
1867 goto out;
1868 r = 0;
1869 break;
1870 }
62d9f0db
MT
1871 case KVM_GET_MP_STATE: {
1872 struct kvm_mp_state mp_state;
1873
1874 r = kvm_arch_vcpu_ioctl_get_mpstate(vcpu, &mp_state);
1875 if (r)
1876 goto out;
1877 r = -EFAULT;
1878 if (copy_to_user(argp, &mp_state, sizeof mp_state))
1879 goto out;
1880 r = 0;
1881 break;
1882 }
1883 case KVM_SET_MP_STATE: {
1884 struct kvm_mp_state mp_state;
1885
1886 r = -EFAULT;
1887 if (copy_from_user(&mp_state, argp, sizeof mp_state))
1888 goto out;
1889 r = kvm_arch_vcpu_ioctl_set_mpstate(vcpu, &mp_state);
1890 if (r)
1891 goto out;
1892 r = 0;
1893 break;
1894 }
6aa8b732
AK
1895 case KVM_TRANSLATE: {
1896 struct kvm_translation tr;
1897
1898 r = -EFAULT;
2f366987 1899 if (copy_from_user(&tr, argp, sizeof tr))
6aa8b732 1900 goto out;
8b006791 1901 r = kvm_arch_vcpu_ioctl_translate(vcpu, &tr);
6aa8b732
AK
1902 if (r)
1903 goto out;
1904 r = -EFAULT;
2f366987 1905 if (copy_to_user(argp, &tr, sizeof tr))
6aa8b732
AK
1906 goto out;
1907 r = 0;
1908 break;
1909 }
d0bfb940
JK
1910 case KVM_SET_GUEST_DEBUG: {
1911 struct kvm_guest_debug dbg;
6aa8b732
AK
1912
1913 r = -EFAULT;
2f366987 1914 if (copy_from_user(&dbg, argp, sizeof dbg))
6aa8b732 1915 goto out;
d0bfb940 1916 r = kvm_arch_vcpu_ioctl_set_guest_debug(vcpu, &dbg);
6aa8b732
AK
1917 if (r)
1918 goto out;
1919 r = 0;
1920 break;
1921 }
1961d276
AK
1922 case KVM_SET_SIGNAL_MASK: {
1923 struct kvm_signal_mask __user *sigmask_arg = argp;
1924 struct kvm_signal_mask kvm_sigmask;
1925 sigset_t sigset, *p;
1926
1927 p = NULL;
1928 if (argp) {
1929 r = -EFAULT;
1930 if (copy_from_user(&kvm_sigmask, argp,
1931 sizeof kvm_sigmask))
1932 goto out;
1933 r = -EINVAL;
1934 if (kvm_sigmask.len != sizeof sigset)
1935 goto out;
1936 r = -EFAULT;
1937 if (copy_from_user(&sigset, sigmask_arg->sigset,
1938 sizeof sigset))
1939 goto out;
1940 p = &sigset;
1941 }
376d41ff 1942 r = kvm_vcpu_ioctl_set_sigmask(vcpu, p);
1961d276
AK
1943 break;
1944 }
b8836737 1945 case KVM_GET_FPU: {
fa3795a7
DH
1946 fpu = kzalloc(sizeof(struct kvm_fpu), GFP_KERNEL);
1947 r = -ENOMEM;
1948 if (!fpu)
1949 goto out;
1950 r = kvm_arch_vcpu_ioctl_get_fpu(vcpu, fpu);
b8836737
AK
1951 if (r)
1952 goto out;
1953 r = -EFAULT;
fa3795a7 1954 if (copy_to_user(argp, fpu, sizeof(struct kvm_fpu)))
b8836737
AK
1955 goto out;
1956 r = 0;
1957 break;
1958 }
1959 case KVM_SET_FPU: {
ff5c2c03
SL
1960 fpu = memdup_user(argp, sizeof(*fpu));
1961 if (IS_ERR(fpu)) {
1962 r = PTR_ERR(fpu);
b8836737 1963 goto out;
ff5c2c03 1964 }
fa3795a7 1965 r = kvm_arch_vcpu_ioctl_set_fpu(vcpu, fpu);
b8836737
AK
1966 if (r)
1967 goto out;
1968 r = 0;
1969 break;
1970 }
bccf2150 1971 default:
313a3dc7 1972 r = kvm_arch_vcpu_ioctl(filp, ioctl, arg);
bccf2150
AK
1973 }
1974out:
2122ff5e 1975 vcpu_put(vcpu);
fa3795a7
DH
1976 kfree(fpu);
1977 kfree(kvm_sregs);
bccf2150
AK
1978 return r;
1979}
1980
1dda606c
AG
1981#ifdef CONFIG_COMPAT
1982static long kvm_vcpu_compat_ioctl(struct file *filp,
1983 unsigned int ioctl, unsigned long arg)
1984{
1985 struct kvm_vcpu *vcpu = filp->private_data;
1986 void __user *argp = compat_ptr(arg);
1987 int r;
1988
1989 if (vcpu->kvm->mm != current->mm)
1990 return -EIO;
1991
1992 switch (ioctl) {
1993 case KVM_SET_SIGNAL_MASK: {
1994 struct kvm_signal_mask __user *sigmask_arg = argp;
1995 struct kvm_signal_mask kvm_sigmask;
1996 compat_sigset_t csigset;
1997 sigset_t sigset;
1998
1999 if (argp) {
2000 r = -EFAULT;
2001 if (copy_from_user(&kvm_sigmask, argp,
2002 sizeof kvm_sigmask))
2003 goto out;
2004 r = -EINVAL;
2005 if (kvm_sigmask.len != sizeof csigset)
2006 goto out;
2007 r = -EFAULT;
2008 if (copy_from_user(&csigset, sigmask_arg->sigset,
2009 sizeof csigset))
2010 goto out;
2011 }
2012 sigset_from_compat(&sigset, &csigset);
2013 r = kvm_vcpu_ioctl_set_sigmask(vcpu, &sigset);
2014 break;
2015 }
2016 default:
2017 r = kvm_vcpu_ioctl(filp, ioctl, arg);
2018 }
2019
2020out:
2021 return r;
2022}
2023#endif
2024
bccf2150
AK
2025static long kvm_vm_ioctl(struct file *filp,
2026 unsigned int ioctl, unsigned long arg)
2027{
2028 struct kvm *kvm = filp->private_data;
2029 void __user *argp = (void __user *)arg;
1fe779f8 2030 int r;
bccf2150 2031
6d4e4c4f
AK
2032 if (kvm->mm != current->mm)
2033 return -EIO;
bccf2150
AK
2034 switch (ioctl) {
2035 case KVM_CREATE_VCPU:
2036 r = kvm_vm_ioctl_create_vcpu(kvm, arg);
2037 if (r < 0)
2038 goto out;
2039 break;
6fc138d2
IE
2040 case KVM_SET_USER_MEMORY_REGION: {
2041 struct kvm_userspace_memory_region kvm_userspace_mem;
2042
2043 r = -EFAULT;
2044 if (copy_from_user(&kvm_userspace_mem, argp,
2045 sizeof kvm_userspace_mem))
2046 goto out;
2047
2048 r = kvm_vm_ioctl_set_memory_region(kvm, &kvm_userspace_mem, 1);
6aa8b732
AK
2049 if (r)
2050 goto out;
2051 break;
2052 }
2053 case KVM_GET_DIRTY_LOG: {
2054 struct kvm_dirty_log log;
2055
2056 r = -EFAULT;
2f366987 2057 if (copy_from_user(&log, argp, sizeof log))
6aa8b732 2058 goto out;
2c6f5df9 2059 r = kvm_vm_ioctl_get_dirty_log(kvm, &log);
6aa8b732
AK
2060 if (r)
2061 goto out;
2062 break;
2063 }
5f94c174
LV
2064#ifdef KVM_COALESCED_MMIO_PAGE_OFFSET
2065 case KVM_REGISTER_COALESCED_MMIO: {
2066 struct kvm_coalesced_mmio_zone zone;
2067 r = -EFAULT;
2068 if (copy_from_user(&zone, argp, sizeof zone))
2069 goto out;
5f94c174
LV
2070 r = kvm_vm_ioctl_register_coalesced_mmio(kvm, &zone);
2071 if (r)
2072 goto out;
2073 r = 0;
2074 break;
2075 }
2076 case KVM_UNREGISTER_COALESCED_MMIO: {
2077 struct kvm_coalesced_mmio_zone zone;
2078 r = -EFAULT;
2079 if (copy_from_user(&zone, argp, sizeof zone))
2080 goto out;
5f94c174
LV
2081 r = kvm_vm_ioctl_unregister_coalesced_mmio(kvm, &zone);
2082 if (r)
2083 goto out;
2084 r = 0;
2085 break;
2086 }
2087#endif
721eecbf
GH
2088 case KVM_IRQFD: {
2089 struct kvm_irqfd data;
2090
2091 r = -EFAULT;
2092 if (copy_from_user(&data, argp, sizeof data))
2093 goto out;
d4db2935 2094 r = kvm_irqfd(kvm, &data);
721eecbf
GH
2095 break;
2096 }
d34e6b17
GH
2097 case KVM_IOEVENTFD: {
2098 struct kvm_ioeventfd data;
2099
2100 r = -EFAULT;
2101 if (copy_from_user(&data, argp, sizeof data))
2102 goto out;
2103 r = kvm_ioeventfd(kvm, &data);
2104 break;
2105 }
73880c80
GN
2106#ifdef CONFIG_KVM_APIC_ARCHITECTURE
2107 case KVM_SET_BOOT_CPU_ID:
2108 r = 0;
894a9c55 2109 mutex_lock(&kvm->lock);
73880c80
GN
2110 if (atomic_read(&kvm->online_vcpus) != 0)
2111 r = -EBUSY;
2112 else
2113 kvm->bsp_vcpu_id = arg;
894a9c55 2114 mutex_unlock(&kvm->lock);
73880c80 2115 break;
07975ad3
JK
2116#endif
2117#ifdef CONFIG_HAVE_KVM_MSI
2118 case KVM_SIGNAL_MSI: {
2119 struct kvm_msi msi;
2120
2121 r = -EFAULT;
2122 if (copy_from_user(&msi, argp, sizeof msi))
2123 goto out;
2124 r = kvm_send_userspace_msi(kvm, &msi);
2125 break;
2126 }
23d43cf9
CD
2127#endif
2128#ifdef __KVM_HAVE_IRQ_LINE
2129 case KVM_IRQ_LINE_STATUS:
2130 case KVM_IRQ_LINE: {
2131 struct kvm_irq_level irq_event;
2132
2133 r = -EFAULT;
2134 if (copy_from_user(&irq_event, argp, sizeof irq_event))
2135 goto out;
2136
2137 r = kvm_vm_ioctl_irq_line(kvm, &irq_event);
2138 if (r)
2139 goto out;
2140
2141 r = -EFAULT;
2142 if (ioctl == KVM_IRQ_LINE_STATUS) {
2143 if (copy_to_user(argp, &irq_event, sizeof irq_event))
2144 goto out;
2145 }
2146
2147 r = 0;
2148 break;
2149 }
73880c80 2150#endif
f17abe9a 2151 default:
1fe779f8 2152 r = kvm_arch_vm_ioctl(filp, ioctl, arg);
bfd99ff5
AK
2153 if (r == -ENOTTY)
2154 r = kvm_vm_ioctl_assigned_device(kvm, ioctl, arg);
f17abe9a
AK
2155 }
2156out:
2157 return r;
2158}
2159
6ff5894c
AB
2160#ifdef CONFIG_COMPAT
2161struct compat_kvm_dirty_log {
2162 __u32 slot;
2163 __u32 padding1;
2164 union {
2165 compat_uptr_t dirty_bitmap; /* one bit per page */
2166 __u64 padding2;
2167 };
2168};
2169
2170static long kvm_vm_compat_ioctl(struct file *filp,
2171 unsigned int ioctl, unsigned long arg)
2172{
2173 struct kvm *kvm = filp->private_data;
2174 int r;
2175
2176 if (kvm->mm != current->mm)
2177 return -EIO;
2178 switch (ioctl) {
2179 case KVM_GET_DIRTY_LOG: {
2180 struct compat_kvm_dirty_log compat_log;
2181 struct kvm_dirty_log log;
2182
2183 r = -EFAULT;
2184 if (copy_from_user(&compat_log, (void __user *)arg,
2185 sizeof(compat_log)))
2186 goto out;
2187 log.slot = compat_log.slot;
2188 log.padding1 = compat_log.padding1;
2189 log.padding2 = compat_log.padding2;
2190 log.dirty_bitmap = compat_ptr(compat_log.dirty_bitmap);
2191
2192 r = kvm_vm_ioctl_get_dirty_log(kvm, &log);
2193 if (r)
2194 goto out;
2195 break;
2196 }
2197 default:
2198 r = kvm_vm_ioctl(filp, ioctl, arg);
2199 }
2200
2201out:
2202 return r;
2203}
2204#endif
2205
e4a533a4 2206static int kvm_vm_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
f17abe9a 2207{
777b3f49
MT
2208 struct page *page[1];
2209 unsigned long addr;
2210 int npages;
2211 gfn_t gfn = vmf->pgoff;
f17abe9a 2212 struct kvm *kvm = vma->vm_file->private_data;
f17abe9a 2213
777b3f49
MT
2214 addr = gfn_to_hva(kvm, gfn);
2215 if (kvm_is_error_hva(addr))
e4a533a4 2216 return VM_FAULT_SIGBUS;
777b3f49
MT
2217
2218 npages = get_user_pages(current, current->mm, addr, 1, 1, 0, page,
2219 NULL);
2220 if (unlikely(npages != 1))
e4a533a4 2221 return VM_FAULT_SIGBUS;
777b3f49
MT
2222
2223 vmf->page = page[0];
e4a533a4 2224 return 0;
f17abe9a
AK
2225}
2226
f0f37e2f 2227static const struct vm_operations_struct kvm_vm_vm_ops = {
e4a533a4 2228 .fault = kvm_vm_fault,
f17abe9a
AK
2229};
2230
2231static int kvm_vm_mmap(struct file *file, struct vm_area_struct *vma)
2232{
2233 vma->vm_ops = &kvm_vm_vm_ops;
2234 return 0;
2235}
2236
3d3aab1b 2237static struct file_operations kvm_vm_fops = {
f17abe9a
AK
2238 .release = kvm_vm_release,
2239 .unlocked_ioctl = kvm_vm_ioctl,
6ff5894c
AB
2240#ifdef CONFIG_COMPAT
2241 .compat_ioctl = kvm_vm_compat_ioctl,
2242#endif
f17abe9a 2243 .mmap = kvm_vm_mmap,
6038f373 2244 .llseek = noop_llseek,
f17abe9a
AK
2245};
2246
e08b9637 2247static int kvm_dev_ioctl_create_vm(unsigned long type)
f17abe9a 2248{
aac87636 2249 int r;
f17abe9a
AK
2250 struct kvm *kvm;
2251
e08b9637 2252 kvm = kvm_create_vm(type);
d6d28168
AK
2253 if (IS_ERR(kvm))
2254 return PTR_ERR(kvm);
6ce5a090
TY
2255#ifdef KVM_COALESCED_MMIO_PAGE_OFFSET
2256 r = kvm_coalesced_mmio_init(kvm);
2257 if (r < 0) {
2258 kvm_put_kvm(kvm);
2259 return r;
2260 }
2261#endif
aac87636
HC
2262 r = anon_inode_getfd("kvm-vm", &kvm_vm_fops, kvm, O_RDWR);
2263 if (r < 0)
66c0b394 2264 kvm_put_kvm(kvm);
f17abe9a 2265
aac87636 2266 return r;
f17abe9a
AK
2267}
2268
1a811b61
AK
2269static long kvm_dev_ioctl_check_extension_generic(long arg)
2270{
2271 switch (arg) {
ca9edaee 2272 case KVM_CAP_USER_MEMORY:
1a811b61 2273 case KVM_CAP_DESTROY_MEMORY_REGION_WORKS:
4cd481f6 2274 case KVM_CAP_JOIN_MEMORY_REGIONS_WORKS:
73880c80
GN
2275#ifdef CONFIG_KVM_APIC_ARCHITECTURE
2276 case KVM_CAP_SET_BOOT_CPU_ID:
2277#endif
a9c7399d 2278 case KVM_CAP_INTERNAL_ERROR_DATA:
07975ad3
JK
2279#ifdef CONFIG_HAVE_KVM_MSI
2280 case KVM_CAP_SIGNAL_MSI:
2281#endif
1a811b61 2282 return 1;
9900b4b4 2283#ifdef KVM_CAP_IRQ_ROUTING
399ec807 2284 case KVM_CAP_IRQ_ROUTING:
36463146 2285 return KVM_MAX_IRQ_ROUTES;
399ec807 2286#endif
1a811b61
AK
2287 default:
2288 break;
2289 }
2290 return kvm_dev_ioctl_check_extension(arg);
2291}
2292
f17abe9a
AK
2293static long kvm_dev_ioctl(struct file *filp,
2294 unsigned int ioctl, unsigned long arg)
2295{
07c45a36 2296 long r = -EINVAL;
f17abe9a
AK
2297
2298 switch (ioctl) {
2299 case KVM_GET_API_VERSION:
f0fe5108
AK
2300 r = -EINVAL;
2301 if (arg)
2302 goto out;
f17abe9a
AK
2303 r = KVM_API_VERSION;
2304 break;
2305 case KVM_CREATE_VM:
e08b9637 2306 r = kvm_dev_ioctl_create_vm(arg);
f17abe9a 2307 break;
018d00d2 2308 case KVM_CHECK_EXTENSION:
1a811b61 2309 r = kvm_dev_ioctl_check_extension_generic(arg);
5d308f45 2310 break;
07c45a36
AK
2311 case KVM_GET_VCPU_MMAP_SIZE:
2312 r = -EINVAL;
2313 if (arg)
2314 goto out;
adb1ff46
AK
2315 r = PAGE_SIZE; /* struct kvm_run */
2316#ifdef CONFIG_X86
2317 r += PAGE_SIZE; /* pio data page */
5f94c174
LV
2318#endif
2319#ifdef KVM_COALESCED_MMIO_PAGE_OFFSET
2320 r += PAGE_SIZE; /* coalesced mmio ring page */
adb1ff46 2321#endif
07c45a36 2322 break;
d4c9ff2d
FEL
2323 case KVM_TRACE_ENABLE:
2324 case KVM_TRACE_PAUSE:
2325 case KVM_TRACE_DISABLE:
2023a29c 2326 r = -EOPNOTSUPP;
d4c9ff2d 2327 break;
6aa8b732 2328 default:
043405e1 2329 return kvm_arch_dev_ioctl(filp, ioctl, arg);
6aa8b732
AK
2330 }
2331out:
2332 return r;
2333}
2334
6aa8b732 2335static struct file_operations kvm_chardev_ops = {
6aa8b732
AK
2336 .unlocked_ioctl = kvm_dev_ioctl,
2337 .compat_ioctl = kvm_dev_ioctl,
6038f373 2338 .llseek = noop_llseek,
6aa8b732
AK
2339};
2340
2341static struct miscdevice kvm_dev = {
bbe4432e 2342 KVM_MINOR,
6aa8b732
AK
2343 "kvm",
2344 &kvm_chardev_ops,
2345};
2346
75b7127c 2347static void hardware_enable_nolock(void *junk)
1b6c0168
AK
2348{
2349 int cpu = raw_smp_processor_id();
10474ae8 2350 int r;
1b6c0168 2351
7f59f492 2352 if (cpumask_test_cpu(cpu, cpus_hardware_enabled))
1b6c0168 2353 return;
10474ae8 2354
7f59f492 2355 cpumask_set_cpu(cpu, cpus_hardware_enabled);
10474ae8
AG
2356
2357 r = kvm_arch_hardware_enable(NULL);
2358
2359 if (r) {
2360 cpumask_clear_cpu(cpu, cpus_hardware_enabled);
2361 atomic_inc(&hardware_enable_failed);
2362 printk(KERN_INFO "kvm: enabling virtualization on "
2363 "CPU%d failed\n", cpu);
2364 }
1b6c0168
AK
2365}
2366
75b7127c
TY
2367static void hardware_enable(void *junk)
2368{
e935b837 2369 raw_spin_lock(&kvm_lock);
75b7127c 2370 hardware_enable_nolock(junk);
e935b837 2371 raw_spin_unlock(&kvm_lock);
75b7127c
TY
2372}
2373
2374static void hardware_disable_nolock(void *junk)
1b6c0168
AK
2375{
2376 int cpu = raw_smp_processor_id();
2377
7f59f492 2378 if (!cpumask_test_cpu(cpu, cpus_hardware_enabled))
1b6c0168 2379 return;
7f59f492 2380 cpumask_clear_cpu(cpu, cpus_hardware_enabled);
e9b11c17 2381 kvm_arch_hardware_disable(NULL);
1b6c0168
AK
2382}
2383
75b7127c
TY
2384static void hardware_disable(void *junk)
2385{
e935b837 2386 raw_spin_lock(&kvm_lock);
75b7127c 2387 hardware_disable_nolock(junk);
e935b837 2388 raw_spin_unlock(&kvm_lock);
75b7127c
TY
2389}
2390
10474ae8
AG
2391static void hardware_disable_all_nolock(void)
2392{
2393 BUG_ON(!kvm_usage_count);
2394
2395 kvm_usage_count--;
2396 if (!kvm_usage_count)
75b7127c 2397 on_each_cpu(hardware_disable_nolock, NULL, 1);
10474ae8
AG
2398}
2399
2400static void hardware_disable_all(void)
2401{
e935b837 2402 raw_spin_lock(&kvm_lock);
10474ae8 2403 hardware_disable_all_nolock();
e935b837 2404 raw_spin_unlock(&kvm_lock);
10474ae8
AG
2405}
2406
2407static int hardware_enable_all(void)
2408{
2409 int r = 0;
2410
e935b837 2411 raw_spin_lock(&kvm_lock);
10474ae8
AG
2412
2413 kvm_usage_count++;
2414 if (kvm_usage_count == 1) {
2415 atomic_set(&hardware_enable_failed, 0);
75b7127c 2416 on_each_cpu(hardware_enable_nolock, NULL, 1);
10474ae8
AG
2417
2418 if (atomic_read(&hardware_enable_failed)) {
2419 hardware_disable_all_nolock();
2420 r = -EBUSY;
2421 }
2422 }
2423
e935b837 2424 raw_spin_unlock(&kvm_lock);
10474ae8
AG
2425
2426 return r;
2427}
2428
774c47f1
AK
2429static int kvm_cpu_hotplug(struct notifier_block *notifier, unsigned long val,
2430 void *v)
2431{
2432 int cpu = (long)v;
2433
10474ae8
AG
2434 if (!kvm_usage_count)
2435 return NOTIFY_OK;
2436
1a6f4d7f 2437 val &= ~CPU_TASKS_FROZEN;
774c47f1 2438 switch (val) {
cec9ad27 2439 case CPU_DYING:
6ec8a856
AK
2440 printk(KERN_INFO "kvm: disabling virtualization on CPU%d\n",
2441 cpu);
2442 hardware_disable(NULL);
2443 break;
da908f2f 2444 case CPU_STARTING:
43934a38
JK
2445 printk(KERN_INFO "kvm: enabling virtualization on CPU%d\n",
2446 cpu);
da908f2f 2447 hardware_enable(NULL);
774c47f1
AK
2448 break;
2449 }
2450 return NOTIFY_OK;
2451}
2452
4ecac3fd 2453
b7c4145b 2454asmlinkage void kvm_spurious_fault(void)
4ecac3fd 2455{
4ecac3fd
AK
2456 /* Fault while not rebooting. We want the trace. */
2457 BUG();
2458}
b7c4145b 2459EXPORT_SYMBOL_GPL(kvm_spurious_fault);
4ecac3fd 2460
9a2b85c6 2461static int kvm_reboot(struct notifier_block *notifier, unsigned long val,
d77c26fc 2462 void *v)
9a2b85c6 2463{
8e1c1815
SY
2464 /*
2465 * Some (well, at least mine) BIOSes hang on reboot if
2466 * in vmx root mode.
2467 *
2468 * And Intel TXT required VMX off for all cpu when system shutdown.
2469 */
2470 printk(KERN_INFO "kvm: exiting hardware virtualization\n");
2471 kvm_rebooting = true;
75b7127c 2472 on_each_cpu(hardware_disable_nolock, NULL, 1);
9a2b85c6
RR
2473 return NOTIFY_OK;
2474}
2475
2476static struct notifier_block kvm_reboot_notifier = {
2477 .notifier_call = kvm_reboot,
2478 .priority = 0,
2479};
2480
e93f8a0f 2481static void kvm_io_bus_destroy(struct kvm_io_bus *bus)
2eeb2e94
GH
2482{
2483 int i;
2484
2485 for (i = 0; i < bus->dev_count; i++) {
743eeb0b 2486 struct kvm_io_device *pos = bus->range[i].dev;
2eeb2e94
GH
2487
2488 kvm_iodevice_destructor(pos);
2489 }
e93f8a0f 2490 kfree(bus);
2eeb2e94
GH
2491}
2492
743eeb0b
SL
2493int kvm_io_bus_sort_cmp(const void *p1, const void *p2)
2494{
2495 const struct kvm_io_range *r1 = p1;
2496 const struct kvm_io_range *r2 = p2;
2497
2498 if (r1->addr < r2->addr)
2499 return -1;
2500 if (r1->addr + r1->len > r2->addr + r2->len)
2501 return 1;
2502 return 0;
2503}
2504
2505int kvm_io_bus_insert_dev(struct kvm_io_bus *bus, struct kvm_io_device *dev,
2506 gpa_t addr, int len)
2507{
743eeb0b
SL
2508 bus->range[bus->dev_count++] = (struct kvm_io_range) {
2509 .addr = addr,
2510 .len = len,
2511 .dev = dev,
2512 };
2513
2514 sort(bus->range, bus->dev_count, sizeof(struct kvm_io_range),
2515 kvm_io_bus_sort_cmp, NULL);
2516
2517 return 0;
2518}
2519
2520int kvm_io_bus_get_first_dev(struct kvm_io_bus *bus,
2521 gpa_t addr, int len)
2522{
2523 struct kvm_io_range *range, key;
2524 int off;
2525
2526 key = (struct kvm_io_range) {
2527 .addr = addr,
2528 .len = len,
2529 };
2530
2531 range = bsearch(&key, bus->range, bus->dev_count,
2532 sizeof(struct kvm_io_range), kvm_io_bus_sort_cmp);
2533 if (range == NULL)
2534 return -ENOENT;
2535
2536 off = range - bus->range;
2537
2538 while (off > 0 && kvm_io_bus_sort_cmp(&key, &bus->range[off-1]) == 0)
2539 off--;
2540
2541 return off;
2542}
2543
bda9020e 2544/* kvm_io_bus_write - called under kvm->slots_lock */
e93f8a0f 2545int kvm_io_bus_write(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
bda9020e 2546 int len, const void *val)
2eeb2e94 2547{
743eeb0b 2548 int idx;
90d83dc3 2549 struct kvm_io_bus *bus;
743eeb0b
SL
2550 struct kvm_io_range range;
2551
2552 range = (struct kvm_io_range) {
2553 .addr = addr,
2554 .len = len,
2555 };
90d83dc3
LJ
2556
2557 bus = srcu_dereference(kvm->buses[bus_idx], &kvm->srcu);
743eeb0b
SL
2558 idx = kvm_io_bus_get_first_dev(bus, addr, len);
2559 if (idx < 0)
2560 return -EOPNOTSUPP;
2561
2562 while (idx < bus->dev_count &&
2563 kvm_io_bus_sort_cmp(&range, &bus->range[idx]) == 0) {
2564 if (!kvm_iodevice_write(bus->range[idx].dev, addr, len, val))
bda9020e 2565 return 0;
743eeb0b
SL
2566 idx++;
2567 }
2568
bda9020e
MT
2569 return -EOPNOTSUPP;
2570}
2eeb2e94 2571
bda9020e 2572/* kvm_io_bus_read - called under kvm->slots_lock */
e93f8a0f
MT
2573int kvm_io_bus_read(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
2574 int len, void *val)
bda9020e 2575{
743eeb0b 2576 int idx;
90d83dc3 2577 struct kvm_io_bus *bus;
743eeb0b
SL
2578 struct kvm_io_range range;
2579
2580 range = (struct kvm_io_range) {
2581 .addr = addr,
2582 .len = len,
2583 };
e93f8a0f 2584
90d83dc3 2585 bus = srcu_dereference(kvm->buses[bus_idx], &kvm->srcu);
743eeb0b
SL
2586 idx = kvm_io_bus_get_first_dev(bus, addr, len);
2587 if (idx < 0)
2588 return -EOPNOTSUPP;
2589
2590 while (idx < bus->dev_count &&
2591 kvm_io_bus_sort_cmp(&range, &bus->range[idx]) == 0) {
2592 if (!kvm_iodevice_read(bus->range[idx].dev, addr, len, val))
bda9020e 2593 return 0;
743eeb0b
SL
2594 idx++;
2595 }
2596
bda9020e 2597 return -EOPNOTSUPP;
2eeb2e94
GH
2598}
2599
79fac95e 2600/* Caller must hold slots_lock. */
743eeb0b
SL
2601int kvm_io_bus_register_dev(struct kvm *kvm, enum kvm_bus bus_idx, gpa_t addr,
2602 int len, struct kvm_io_device *dev)
6c474694 2603{
e93f8a0f 2604 struct kvm_io_bus *new_bus, *bus;
090b7aff 2605
e93f8a0f 2606 bus = kvm->buses[bus_idx];
a1300716 2607 if (bus->dev_count > NR_IOBUS_DEVS - 1)
090b7aff 2608 return -ENOSPC;
2eeb2e94 2609
a1300716
AK
2610 new_bus = kzalloc(sizeof(*bus) + ((bus->dev_count + 1) *
2611 sizeof(struct kvm_io_range)), GFP_KERNEL);
e93f8a0f
MT
2612 if (!new_bus)
2613 return -ENOMEM;
a1300716
AK
2614 memcpy(new_bus, bus, sizeof(*bus) + (bus->dev_count *
2615 sizeof(struct kvm_io_range)));
743eeb0b 2616 kvm_io_bus_insert_dev(new_bus, dev, addr, len);
e93f8a0f
MT
2617 rcu_assign_pointer(kvm->buses[bus_idx], new_bus);
2618 synchronize_srcu_expedited(&kvm->srcu);
2619 kfree(bus);
090b7aff
GH
2620
2621 return 0;
2622}
2623
79fac95e 2624/* Caller must hold slots_lock. */
e93f8a0f
MT
2625int kvm_io_bus_unregister_dev(struct kvm *kvm, enum kvm_bus bus_idx,
2626 struct kvm_io_device *dev)
090b7aff 2627{
e93f8a0f
MT
2628 int i, r;
2629 struct kvm_io_bus *new_bus, *bus;
090b7aff 2630
cdfca7b3 2631 bus = kvm->buses[bus_idx];
e93f8a0f 2632 r = -ENOENT;
a1300716
AK
2633 for (i = 0; i < bus->dev_count; i++)
2634 if (bus->range[i].dev == dev) {
e93f8a0f 2635 r = 0;
090b7aff
GH
2636 break;
2637 }
e93f8a0f 2638
a1300716 2639 if (r)
e93f8a0f 2640 return r;
a1300716
AK
2641
2642 new_bus = kzalloc(sizeof(*bus) + ((bus->dev_count - 1) *
2643 sizeof(struct kvm_io_range)), GFP_KERNEL);
2644 if (!new_bus)
2645 return -ENOMEM;
2646
2647 memcpy(new_bus, bus, sizeof(*bus) + i * sizeof(struct kvm_io_range));
2648 new_bus->dev_count--;
2649 memcpy(new_bus->range + i, bus->range + i + 1,
2650 (new_bus->dev_count - i) * sizeof(struct kvm_io_range));
e93f8a0f
MT
2651
2652 rcu_assign_pointer(kvm->buses[bus_idx], new_bus);
2653 synchronize_srcu_expedited(&kvm->srcu);
2654 kfree(bus);
2655 return r;
2eeb2e94
GH
2656}
2657
774c47f1
AK
2658static struct notifier_block kvm_cpu_notifier = {
2659 .notifier_call = kvm_cpu_hotplug,
774c47f1
AK
2660};
2661
8b88b099 2662static int vm_stat_get(void *_offset, u64 *val)
ba1389b7
AK
2663{
2664 unsigned offset = (long)_offset;
ba1389b7
AK
2665 struct kvm *kvm;
2666
8b88b099 2667 *val = 0;
e935b837 2668 raw_spin_lock(&kvm_lock);
ba1389b7 2669 list_for_each_entry(kvm, &vm_list, vm_list)
8b88b099 2670 *val += *(u32 *)((void *)kvm + offset);
e935b837 2671 raw_spin_unlock(&kvm_lock);
8b88b099 2672 return 0;
ba1389b7
AK
2673}
2674
2675DEFINE_SIMPLE_ATTRIBUTE(vm_stat_fops, vm_stat_get, NULL, "%llu\n");
2676
8b88b099 2677static int vcpu_stat_get(void *_offset, u64 *val)
1165f5fe
AK
2678{
2679 unsigned offset = (long)_offset;
1165f5fe
AK
2680 struct kvm *kvm;
2681 struct kvm_vcpu *vcpu;
2682 int i;
2683
8b88b099 2684 *val = 0;
e935b837 2685 raw_spin_lock(&kvm_lock);
1165f5fe 2686 list_for_each_entry(kvm, &vm_list, vm_list)
988a2cae
GN
2687 kvm_for_each_vcpu(i, vcpu, kvm)
2688 *val += *(u32 *)((void *)vcpu + offset);
2689
e935b837 2690 raw_spin_unlock(&kvm_lock);
8b88b099 2691 return 0;
1165f5fe
AK
2692}
2693
ba1389b7
AK
2694DEFINE_SIMPLE_ATTRIBUTE(vcpu_stat_fops, vcpu_stat_get, NULL, "%llu\n");
2695
828c0950 2696static const struct file_operations *stat_fops[] = {
ba1389b7
AK
2697 [KVM_STAT_VCPU] = &vcpu_stat_fops,
2698 [KVM_STAT_VM] = &vm_stat_fops,
2699};
1165f5fe 2700
4f69b680 2701static int kvm_init_debug(void)
6aa8b732 2702{
4f69b680 2703 int r = -EFAULT;
6aa8b732
AK
2704 struct kvm_stats_debugfs_item *p;
2705
76f7c879 2706 kvm_debugfs_dir = debugfs_create_dir("kvm", NULL);
4f69b680
H
2707 if (kvm_debugfs_dir == NULL)
2708 goto out;
2709
2710 for (p = debugfs_entries; p->name; ++p) {
76f7c879 2711 p->dentry = debugfs_create_file(p->name, 0444, kvm_debugfs_dir,
1165f5fe 2712 (void *)(long)p->offset,
ba1389b7 2713 stat_fops[p->kind]);
4f69b680
H
2714 if (p->dentry == NULL)
2715 goto out_dir;
2716 }
2717
2718 return 0;
2719
2720out_dir:
2721 debugfs_remove_recursive(kvm_debugfs_dir);
2722out:
2723 return r;
6aa8b732
AK
2724}
2725
2726static void kvm_exit_debug(void)
2727{
2728 struct kvm_stats_debugfs_item *p;
2729
2730 for (p = debugfs_entries; p->name; ++p)
2731 debugfs_remove(p->dentry);
76f7c879 2732 debugfs_remove(kvm_debugfs_dir);
6aa8b732
AK
2733}
2734
fb3600cc 2735static int kvm_suspend(void)
59ae6c6b 2736{
10474ae8 2737 if (kvm_usage_count)
75b7127c 2738 hardware_disable_nolock(NULL);
59ae6c6b
AK
2739 return 0;
2740}
2741
fb3600cc 2742static void kvm_resume(void)
59ae6c6b 2743{
ca84d1a2 2744 if (kvm_usage_count) {
e935b837 2745 WARN_ON(raw_spin_is_locked(&kvm_lock));
75b7127c 2746 hardware_enable_nolock(NULL);
ca84d1a2 2747 }
59ae6c6b
AK
2748}
2749
fb3600cc 2750static struct syscore_ops kvm_syscore_ops = {
59ae6c6b
AK
2751 .suspend = kvm_suspend,
2752 .resume = kvm_resume,
2753};
2754
15ad7146
AK
2755static inline
2756struct kvm_vcpu *preempt_notifier_to_vcpu(struct preempt_notifier *pn)
2757{
2758 return container_of(pn, struct kvm_vcpu, preempt_notifier);
2759}
2760
2761static void kvm_sched_in(struct preempt_notifier *pn, int cpu)
2762{
2763 struct kvm_vcpu *vcpu = preempt_notifier_to_vcpu(pn);
2764
e9b11c17 2765 kvm_arch_vcpu_load(vcpu, cpu);
15ad7146
AK
2766}
2767
2768static void kvm_sched_out(struct preempt_notifier *pn,
2769 struct task_struct *next)
2770{
2771 struct kvm_vcpu *vcpu = preempt_notifier_to_vcpu(pn);
2772
e9b11c17 2773 kvm_arch_vcpu_put(vcpu);
15ad7146
AK
2774}
2775
0ee75bea 2776int kvm_init(void *opaque, unsigned vcpu_size, unsigned vcpu_align,
c16f862d 2777 struct module *module)
6aa8b732
AK
2778{
2779 int r;
002c7f7c 2780 int cpu;
6aa8b732 2781
f8c16bba
ZX
2782 r = kvm_arch_init(opaque);
2783 if (r)
d2308784 2784 goto out_fail;
cb498ea2 2785
8437a617 2786 if (!zalloc_cpumask_var(&cpus_hardware_enabled, GFP_KERNEL)) {
7f59f492
RR
2787 r = -ENOMEM;
2788 goto out_free_0;
2789 }
2790
e9b11c17 2791 r = kvm_arch_hardware_setup();
6aa8b732 2792 if (r < 0)
7f59f492 2793 goto out_free_0a;
6aa8b732 2794
002c7f7c
YS
2795 for_each_online_cpu(cpu) {
2796 smp_call_function_single(cpu,
e9b11c17 2797 kvm_arch_check_processor_compat,
8691e5a8 2798 &r, 1);
002c7f7c 2799 if (r < 0)
d2308784 2800 goto out_free_1;
002c7f7c
YS
2801 }
2802
774c47f1
AK
2803 r = register_cpu_notifier(&kvm_cpu_notifier);
2804 if (r)
d2308784 2805 goto out_free_2;
6aa8b732
AK
2806 register_reboot_notifier(&kvm_reboot_notifier);
2807
c16f862d 2808 /* A kmem cache lets us meet the alignment requirements of fx_save. */
0ee75bea
AK
2809 if (!vcpu_align)
2810 vcpu_align = __alignof__(struct kvm_vcpu);
2811 kvm_vcpu_cache = kmem_cache_create("kvm_vcpu", vcpu_size, vcpu_align,
56919c5c 2812 0, NULL);
c16f862d
RR
2813 if (!kvm_vcpu_cache) {
2814 r = -ENOMEM;
fb3600cc 2815 goto out_free_3;
c16f862d
RR
2816 }
2817
af585b92
GN
2818 r = kvm_async_pf_init();
2819 if (r)
2820 goto out_free;
2821
6aa8b732 2822 kvm_chardev_ops.owner = module;
3d3aab1b
CB
2823 kvm_vm_fops.owner = module;
2824 kvm_vcpu_fops.owner = module;
6aa8b732
AK
2825
2826 r = misc_register(&kvm_dev);
2827 if (r) {
d77c26fc 2828 printk(KERN_ERR "kvm: misc device register failed\n");
af585b92 2829 goto out_unreg;
6aa8b732
AK
2830 }
2831
fb3600cc
RW
2832 register_syscore_ops(&kvm_syscore_ops);
2833
15ad7146
AK
2834 kvm_preempt_ops.sched_in = kvm_sched_in;
2835 kvm_preempt_ops.sched_out = kvm_sched_out;
2836
4f69b680
H
2837 r = kvm_init_debug();
2838 if (r) {
2839 printk(KERN_ERR "kvm: create debugfs files failed\n");
2840 goto out_undebugfs;
2841 }
0ea4ed8e 2842
c7addb90 2843 return 0;
6aa8b732 2844
4f69b680
H
2845out_undebugfs:
2846 unregister_syscore_ops(&kvm_syscore_ops);
af585b92
GN
2847out_unreg:
2848 kvm_async_pf_deinit();
6aa8b732 2849out_free:
c16f862d 2850 kmem_cache_destroy(kvm_vcpu_cache);
d2308784 2851out_free_3:
6aa8b732 2852 unregister_reboot_notifier(&kvm_reboot_notifier);
774c47f1 2853 unregister_cpu_notifier(&kvm_cpu_notifier);
d2308784 2854out_free_2:
d2308784 2855out_free_1:
e9b11c17 2856 kvm_arch_hardware_unsetup();
7f59f492
RR
2857out_free_0a:
2858 free_cpumask_var(cpus_hardware_enabled);
d2308784 2859out_free_0:
f8c16bba 2860 kvm_arch_exit();
d2308784 2861out_fail:
6aa8b732
AK
2862 return r;
2863}
cb498ea2 2864EXPORT_SYMBOL_GPL(kvm_init);
6aa8b732 2865
cb498ea2 2866void kvm_exit(void)
6aa8b732 2867{
0ea4ed8e 2868 kvm_exit_debug();
6aa8b732 2869 misc_deregister(&kvm_dev);
c16f862d 2870 kmem_cache_destroy(kvm_vcpu_cache);
af585b92 2871 kvm_async_pf_deinit();
fb3600cc 2872 unregister_syscore_ops(&kvm_syscore_ops);
6aa8b732 2873 unregister_reboot_notifier(&kvm_reboot_notifier);
59ae6c6b 2874 unregister_cpu_notifier(&kvm_cpu_notifier);
75b7127c 2875 on_each_cpu(hardware_disable_nolock, NULL, 1);
e9b11c17 2876 kvm_arch_hardware_unsetup();
f8c16bba 2877 kvm_arch_exit();
7f59f492 2878 free_cpumask_var(cpus_hardware_enabled);
6aa8b732 2879}
cb498ea2 2880EXPORT_SYMBOL_GPL(kvm_exit);