1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * KVM paravirt_ops implementation
5 * Copyright (C) 2007, Red Hat, Inc., Ingo Molnar <mingo@redhat.com>
6 * Copyright IBM Corporation, 2007
7 * Authors: Anthony Liguori <aliguori@us.ibm.com>
10 #define pr_fmt(fmt) "kvm-guest: " fmt
12 #include <linux/context_tracking.h>
13 #include <linux/init.h>
14 #include <linux/irq.h>
15 #include <linux/kernel.h>
16 #include <linux/kvm_para.h>
17 #include <linux/cpu.h>
19 #include <linux/highmem.h>
20 #include <linux/hardirq.h>
21 #include <linux/notifier.h>
22 #include <linux/reboot.h>
23 #include <linux/hash.h>
24 #include <linux/sched.h>
25 #include <linux/slab.h>
26 #include <linux/kprobes.h>
27 #include <linux/nmi.h>
28 #include <linux/swait.h>
29 #include <linux/syscore_ops.h>
30 #include <linux/cc_platform.h>
31 #include <linux/efi.h>
32 #include <asm/timer.h>
34 #include <asm/traps.h>
36 #include <asm/tlbflush.h>
38 #include <asm/apicdef.h>
39 #include <asm/hypervisor.h>
41 #include <asm/cpuidle_haltpoll.h>
42 #include <asm/ptrace.h>
43 #include <asm/reboot.h>
45 #include <asm/e820/api.h>
47 DEFINE_STATIC_KEY_FALSE_RO(kvm_async_pf_enabled
);
49 static int kvmapf
= 1;
51 static int __init
parse_no_kvmapf(char *arg
)
57 early_param("no-kvmapf", parse_no_kvmapf
);
59 static int steal_acc
= 1;
60 static int __init
parse_no_stealacc(char *arg
)
66 early_param("no-steal-acc", parse_no_stealacc
);
68 static DEFINE_PER_CPU_READ_MOSTLY(bool, async_pf_enabled
);
69 static DEFINE_PER_CPU_DECRYPTED(struct kvm_vcpu_pv_apf_data
, apf_reason
) __aligned(64);
70 DEFINE_PER_CPU_DECRYPTED(struct kvm_steal_time
, steal_time
) __aligned(64) __visible
;
71 static int has_steal_clock
= 0;
73 static int has_guest_poll
= 0;
75 * No need for any "IO delay" on KVM
77 static void kvm_io_delay(void)
81 #define KVM_TASK_SLEEP_HASHBITS 8
82 #define KVM_TASK_SLEEP_HASHSIZE (1<<KVM_TASK_SLEEP_HASHBITS)
84 struct kvm_task_sleep_node
{
85 struct hlist_node link
;
86 struct swait_queue_head wq
;
91 static struct kvm_task_sleep_head
{
93 struct hlist_head list
;
94 } async_pf_sleepers
[KVM_TASK_SLEEP_HASHSIZE
];
96 static struct kvm_task_sleep_node
*_find_apf_task(struct kvm_task_sleep_head
*b
,
101 hlist_for_each(p
, &b
->list
) {
102 struct kvm_task_sleep_node
*n
=
103 hlist_entry(p
, typeof(*n
), link
);
104 if (n
->token
== token
)
111 static bool kvm_async_pf_queue_task(u32 token
, struct kvm_task_sleep_node
*n
)
113 u32 key
= hash_32(token
, KVM_TASK_SLEEP_HASHBITS
);
114 struct kvm_task_sleep_head
*b
= &async_pf_sleepers
[key
];
115 struct kvm_task_sleep_node
*e
;
117 raw_spin_lock(&b
->lock
);
118 e
= _find_apf_task(b
, token
);
120 /* dummy entry exist -> wake up was delivered ahead of PF */
122 raw_spin_unlock(&b
->lock
);
128 n
->cpu
= smp_processor_id();
129 init_swait_queue_head(&n
->wq
);
130 hlist_add_head(&n
->link
, &b
->list
);
131 raw_spin_unlock(&b
->lock
);
136 * kvm_async_pf_task_wait_schedule - Wait for pagefault to be handled
137 * @token: Token to identify the sleep node entry
139 * Invoked from the async pagefault handling code or from the VM exit page
140 * fault handler. In both cases RCU is watching.
142 void kvm_async_pf_task_wait_schedule(u32 token
)
144 struct kvm_task_sleep_node n
;
145 DECLARE_SWAITQUEUE(wait
);
147 lockdep_assert_irqs_disabled();
149 if (!kvm_async_pf_queue_task(token
, &n
))
153 prepare_to_swait_exclusive(&n
.wq
, &wait
, TASK_UNINTERRUPTIBLE
);
154 if (hlist_unhashed(&n
.link
))
161 finish_swait(&n
.wq
, &wait
);
163 EXPORT_SYMBOL_GPL(kvm_async_pf_task_wait_schedule
);
165 static void apf_task_wake_one(struct kvm_task_sleep_node
*n
)
167 hlist_del_init(&n
->link
);
168 if (swq_has_sleeper(&n
->wq
))
169 swake_up_one(&n
->wq
);
172 static void apf_task_wake_all(void)
176 for (i
= 0; i
< KVM_TASK_SLEEP_HASHSIZE
; i
++) {
177 struct kvm_task_sleep_head
*b
= &async_pf_sleepers
[i
];
178 struct kvm_task_sleep_node
*n
;
179 struct hlist_node
*p
, *next
;
181 raw_spin_lock(&b
->lock
);
182 hlist_for_each_safe(p
, next
, &b
->list
) {
183 n
= hlist_entry(p
, typeof(*n
), link
);
184 if (n
->cpu
== smp_processor_id())
185 apf_task_wake_one(n
);
187 raw_spin_unlock(&b
->lock
);
191 void kvm_async_pf_task_wake(u32 token
)
193 u32 key
= hash_32(token
, KVM_TASK_SLEEP_HASHBITS
);
194 struct kvm_task_sleep_head
*b
= &async_pf_sleepers
[key
];
195 struct kvm_task_sleep_node
*n
, *dummy
= NULL
;
203 raw_spin_lock(&b
->lock
);
204 n
= _find_apf_task(b
, token
);
207 * Async #PF not yet handled, add a dummy entry for the token.
208 * Allocating the token must be down outside of the raw lock
209 * as the allocator is preemptible on PREEMPT_RT kernels.
212 raw_spin_unlock(&b
->lock
);
213 dummy
= kzalloc(sizeof(*dummy
), GFP_ATOMIC
);
216 * Continue looping on allocation failure, eventually
217 * the async #PF will be handled and allocating a new
218 * node will be unnecessary.
224 * Recheck for async #PF completion before enqueueing
225 * the dummy token to avoid duplicate list entries.
229 dummy
->token
= token
;
230 dummy
->cpu
= smp_processor_id();
231 init_swait_queue_head(&dummy
->wq
);
232 hlist_add_head(&dummy
->link
, &b
->list
);
235 apf_task_wake_one(n
);
237 raw_spin_unlock(&b
->lock
);
239 /* A dummy token might be allocated and ultimately not used. */
242 EXPORT_SYMBOL_GPL(kvm_async_pf_task_wake
);
244 noinstr u32
kvm_read_and_reset_apf_flags(void)
248 if (__this_cpu_read(async_pf_enabled
)) {
249 flags
= __this_cpu_read(apf_reason
.flags
);
250 __this_cpu_write(apf_reason
.flags
, 0);
255 EXPORT_SYMBOL_GPL(kvm_read_and_reset_apf_flags
);
257 noinstr
bool __kvm_handle_async_pf(struct pt_regs
*regs
, u32 token
)
259 u32 flags
= kvm_read_and_reset_apf_flags();
260 irqentry_state_t state
;
265 state
= irqentry_enter(regs
);
266 instrumentation_begin();
269 * If the host managed to inject an async #PF into an interrupt
270 * disabled region, then die hard as this is not going to end well
271 * and the host side is seriously broken.
273 if (unlikely(!(regs
->flags
& X86_EFLAGS_IF
)))
274 panic("Host injected async #PF in interrupt disabled region\n");
276 if (flags
& KVM_PV_REASON_PAGE_NOT_PRESENT
) {
277 if (unlikely(!(user_mode(regs
))))
278 panic("Host injected async #PF in kernel mode\n");
279 /* Page is swapped out by the host. */
280 kvm_async_pf_task_wait_schedule(token
);
282 WARN_ONCE(1, "Unexpected async PF flags: %x\n", flags
);
285 instrumentation_end();
286 irqentry_exit(regs
, state
);
290 DEFINE_IDTENTRY_SYSVEC(sysvec_kvm_asyncpf_interrupt
)
292 struct pt_regs
*old_regs
= set_irq_regs(regs
);
297 inc_irq_stat(irq_hv_callback_count
);
299 if (__this_cpu_read(async_pf_enabled
)) {
300 token
= __this_cpu_read(apf_reason
.token
);
301 kvm_async_pf_task_wake(token
);
302 __this_cpu_write(apf_reason
.token
, 0);
303 wrmsrl(MSR_KVM_ASYNC_PF_ACK
, 1);
306 set_irq_regs(old_regs
);
309 static void __init
paravirt_ops_setup(void)
311 pv_info
.name
= "KVM";
313 if (kvm_para_has_feature(KVM_FEATURE_NOP_IO_DELAY
))
314 pv_ops
.cpu
.io_delay
= kvm_io_delay
;
316 #ifdef CONFIG_X86_IO_APIC
321 static void kvm_register_steal_time(void)
323 int cpu
= smp_processor_id();
324 struct kvm_steal_time
*st
= &per_cpu(steal_time
, cpu
);
326 if (!has_steal_clock
)
329 wrmsrl(MSR_KVM_STEAL_TIME
, (slow_virt_to_phys(st
) | KVM_MSR_ENABLED
));
330 pr_debug("stealtime: cpu %d, msr %llx\n", cpu
,
331 (unsigned long long) slow_virt_to_phys(st
));
334 static DEFINE_PER_CPU_DECRYPTED(unsigned long, kvm_apic_eoi
) = KVM_PV_EOI_DISABLED
;
336 static notrace __maybe_unused
void kvm_guest_apic_eoi_write(void)
339 * This relies on __test_and_clear_bit to modify the memory
340 * in a way that is atomic with respect to the local CPU.
341 * The hypervisor only accesses this memory from the local CPU so
342 * there's no need for lock or memory barriers.
343 * An optimization barrier is implied in apic write.
345 if (__test_and_clear_bit(KVM_PV_EOI_BIT
, this_cpu_ptr(&kvm_apic_eoi
)))
350 static void kvm_guest_cpu_init(void)
352 if (kvm_para_has_feature(KVM_FEATURE_ASYNC_PF_INT
) && kvmapf
) {
355 WARN_ON_ONCE(!static_branch_likely(&kvm_async_pf_enabled
));
357 pa
= slow_virt_to_phys(this_cpu_ptr(&apf_reason
));
358 pa
|= KVM_ASYNC_PF_ENABLED
| KVM_ASYNC_PF_DELIVERY_AS_INT
;
360 if (kvm_para_has_feature(KVM_FEATURE_ASYNC_PF_VMEXIT
))
361 pa
|= KVM_ASYNC_PF_DELIVERY_AS_PF_VMEXIT
;
363 wrmsrl(MSR_KVM_ASYNC_PF_INT
, HYPERVISOR_CALLBACK_VECTOR
);
365 wrmsrl(MSR_KVM_ASYNC_PF_EN
, pa
);
366 __this_cpu_write(async_pf_enabled
, true);
367 pr_debug("setup async PF for cpu %d\n", smp_processor_id());
370 if (kvm_para_has_feature(KVM_FEATURE_PV_EOI
)) {
373 /* Size alignment is implied but just to make it explicit. */
374 BUILD_BUG_ON(__alignof__(kvm_apic_eoi
) < 4);
375 __this_cpu_write(kvm_apic_eoi
, 0);
376 pa
= slow_virt_to_phys(this_cpu_ptr(&kvm_apic_eoi
))
378 wrmsrl(MSR_KVM_PV_EOI_EN
, pa
);
382 kvm_register_steal_time();
385 static void kvm_pv_disable_apf(void)
387 if (!__this_cpu_read(async_pf_enabled
))
390 wrmsrl(MSR_KVM_ASYNC_PF_EN
, 0);
391 __this_cpu_write(async_pf_enabled
, false);
393 pr_debug("disable async PF for cpu %d\n", smp_processor_id());
396 static void kvm_disable_steal_time(void)
398 if (!has_steal_clock
)
401 wrmsr(MSR_KVM_STEAL_TIME
, 0, 0);
404 static u64
kvm_steal_clock(int cpu
)
407 struct kvm_steal_time
*src
;
410 src
= &per_cpu(steal_time
, cpu
);
412 version
= src
->version
;
416 } while ((version
& 1) || (version
!= src
->version
));
421 static inline void __set_percpu_decrypted(void *ptr
, unsigned long size
)
423 early_set_memory_decrypted((unsigned long) ptr
, size
);
427 * Iterate through all possible CPUs and map the memory region pointed
428 * by apf_reason, steal_time and kvm_apic_eoi as decrypted at once.
430 * Note: we iterate through all possible CPUs to ensure that CPUs
431 * hotplugged will have their per-cpu variable already mapped as
434 static void __init
sev_map_percpu_data(void)
438 if (cc_vendor
!= CC_VENDOR_AMD
||
439 !cc_platform_has(CC_ATTR_GUEST_MEM_ENCRYPT
))
442 for_each_possible_cpu(cpu
) {
443 __set_percpu_decrypted(&per_cpu(apf_reason
, cpu
), sizeof(apf_reason
));
444 __set_percpu_decrypted(&per_cpu(steal_time
, cpu
), sizeof(steal_time
));
445 __set_percpu_decrypted(&per_cpu(kvm_apic_eoi
, cpu
), sizeof(kvm_apic_eoi
));
449 static void kvm_guest_cpu_offline(bool shutdown
)
451 kvm_disable_steal_time();
452 if (kvm_para_has_feature(KVM_FEATURE_PV_EOI
))
453 wrmsrl(MSR_KVM_PV_EOI_EN
, 0);
454 if (kvm_para_has_feature(KVM_FEATURE_MIGRATION_CONTROL
))
455 wrmsrl(MSR_KVM_MIGRATION_CONTROL
, 0);
456 kvm_pv_disable_apf();
462 static int kvm_cpu_online(unsigned int cpu
)
466 local_irq_save(flags
);
467 kvm_guest_cpu_init();
468 local_irq_restore(flags
);
474 static DEFINE_PER_CPU(cpumask_var_t
, __pv_cpu_mask
);
476 static bool pv_tlb_flush_supported(void)
478 return (kvm_para_has_feature(KVM_FEATURE_PV_TLB_FLUSH
) &&
479 !kvm_para_has_hint(KVM_HINTS_REALTIME
) &&
480 kvm_para_has_feature(KVM_FEATURE_STEAL_TIME
) &&
481 !boot_cpu_has(X86_FEATURE_MWAIT
) &&
482 (num_possible_cpus() != 1));
485 static bool pv_ipi_supported(void)
487 return (kvm_para_has_feature(KVM_FEATURE_PV_SEND_IPI
) &&
488 (num_possible_cpus() != 1));
491 static bool pv_sched_yield_supported(void)
493 return (kvm_para_has_feature(KVM_FEATURE_PV_SCHED_YIELD
) &&
494 !kvm_para_has_hint(KVM_HINTS_REALTIME
) &&
495 kvm_para_has_feature(KVM_FEATURE_STEAL_TIME
) &&
496 !boot_cpu_has(X86_FEATURE_MWAIT
) &&
497 (num_possible_cpus() != 1));
500 #define KVM_IPI_CLUSTER_SIZE (2 * BITS_PER_LONG)
502 static void __send_ipi_mask(const struct cpumask
*mask
, int vector
)
505 int cpu
, min
= 0, max
= 0;
507 __uint128_t ipi_bitmap
= 0;
514 if (cpumask_empty(mask
))
517 local_irq_save(flags
);
521 icr
= APIC_DM_FIXED
| vector
;
528 for_each_cpu(cpu
, mask
) {
529 apic_id
= per_cpu(x86_cpu_to_apicid
, cpu
);
532 } else if (apic_id
< min
&& max
- apic_id
< KVM_IPI_CLUSTER_SIZE
) {
533 ipi_bitmap
<<= min
- apic_id
;
535 } else if (apic_id
> min
&& apic_id
< min
+ KVM_IPI_CLUSTER_SIZE
) {
536 max
= apic_id
< max
? max
: apic_id
;
538 ret
= kvm_hypercall4(KVM_HC_SEND_IPI
, (unsigned long)ipi_bitmap
,
539 (unsigned long)(ipi_bitmap
>> BITS_PER_LONG
), min
, icr
);
540 WARN_ONCE(ret
< 0, "kvm-guest: failed to send PV IPI: %ld",
545 __set_bit(apic_id
- min
, (unsigned long *)&ipi_bitmap
);
549 ret
= kvm_hypercall4(KVM_HC_SEND_IPI
, (unsigned long)ipi_bitmap
,
550 (unsigned long)(ipi_bitmap
>> BITS_PER_LONG
), min
, icr
);
551 WARN_ONCE(ret
< 0, "kvm-guest: failed to send PV IPI: %ld",
555 local_irq_restore(flags
);
558 static void kvm_send_ipi_mask(const struct cpumask
*mask
, int vector
)
560 __send_ipi_mask(mask
, vector
);
563 static void kvm_send_ipi_mask_allbutself(const struct cpumask
*mask
, int vector
)
565 unsigned int this_cpu
= smp_processor_id();
566 struct cpumask
*new_mask
= this_cpu_cpumask_var_ptr(__pv_cpu_mask
);
567 const struct cpumask
*local_mask
;
569 cpumask_copy(new_mask
, mask
);
570 cpumask_clear_cpu(this_cpu
, new_mask
);
571 local_mask
= new_mask
;
572 __send_ipi_mask(local_mask
, vector
);
575 static int __init
setup_efi_kvm_sev_migration(void)
577 efi_char16_t efi_sev_live_migration_enabled
[] = L
"SevLiveMigrationEnabled";
578 efi_guid_t efi_variable_guid
= AMD_SEV_MEM_ENCRYPT_GUID
;
583 if (!cc_platform_has(CC_ATTR_GUEST_MEM_ENCRYPT
) ||
584 !kvm_para_has_feature(KVM_FEATURE_MIGRATION_CONTROL
))
587 if (!efi_enabled(EFI_BOOT
))
590 if (!efi_enabled(EFI_RUNTIME_SERVICES
)) {
591 pr_info("%s : EFI runtime services are not enabled\n", __func__
);
595 size
= sizeof(enabled
);
597 /* Get variable contents into buffer */
598 status
= efi
.get_variable(efi_sev_live_migration_enabled
,
599 &efi_variable_guid
, NULL
, &size
, &enabled
);
601 if (status
== EFI_NOT_FOUND
) {
602 pr_info("%s : EFI live migration variable not found\n", __func__
);
606 if (status
!= EFI_SUCCESS
) {
607 pr_info("%s : EFI variable retrieval failed\n", __func__
);
612 pr_info("%s: live migration disabled in EFI\n", __func__
);
616 pr_info("%s : live migration enabled in EFI\n", __func__
);
617 wrmsrl(MSR_KVM_MIGRATION_CONTROL
, KVM_MIGRATION_READY
);
622 late_initcall(setup_efi_kvm_sev_migration
);
625 * Set the IPI entry points
627 static __init
void kvm_setup_pv_ipi(void)
629 apic_update_callback(send_IPI_mask
, kvm_send_ipi_mask
);
630 apic_update_callback(send_IPI_mask_allbutself
, kvm_send_ipi_mask_allbutself
);
631 pr_info("setup PV IPIs\n");
634 static void kvm_smp_send_call_func_ipi(const struct cpumask
*mask
)
638 native_send_call_func_ipi(mask
);
640 /* Make sure other vCPUs get a chance to run if they need to. */
641 for_each_cpu(cpu
, mask
) {
642 if (!idle_cpu(cpu
) && vcpu_is_preempted(cpu
)) {
643 kvm_hypercall1(KVM_HC_SCHED_YIELD
, per_cpu(x86_cpu_to_apicid
, cpu
));
649 static void kvm_flush_tlb_multi(const struct cpumask
*cpumask
,
650 const struct flush_tlb_info
*info
)
654 struct kvm_steal_time
*src
;
655 struct cpumask
*flushmask
= this_cpu_cpumask_var_ptr(__pv_cpu_mask
);
657 cpumask_copy(flushmask
, cpumask
);
659 * We have to call flush only on online vCPUs. And
660 * queue flush_on_enter for pre-empted vCPUs
662 for_each_cpu(cpu
, flushmask
) {
664 * The local vCPU is never preempted, so we do not explicitly
665 * skip check for local vCPU - it will never be cleared from
668 src
= &per_cpu(steal_time
, cpu
);
669 state
= READ_ONCE(src
->preempted
);
670 if ((state
& KVM_VCPU_PREEMPTED
)) {
671 if (try_cmpxchg(&src
->preempted
, &state
,
672 state
| KVM_VCPU_FLUSH_TLB
))
673 __cpumask_clear_cpu(cpu
, flushmask
);
677 native_flush_tlb_multi(flushmask
, info
);
680 static __init
int kvm_alloc_cpumask(void)
684 if (!kvm_para_available() || nopv
)
687 if (pv_tlb_flush_supported() || pv_ipi_supported())
688 for_each_possible_cpu(cpu
) {
689 zalloc_cpumask_var_node(per_cpu_ptr(&__pv_cpu_mask
, cpu
),
690 GFP_KERNEL
, cpu_to_node(cpu
));
695 arch_initcall(kvm_alloc_cpumask
);
697 static void __init
kvm_smp_prepare_boot_cpu(void)
700 * Map the per-cpu variables as decrypted before kvm_guest_cpu_init()
701 * shares the guest physical address with the hypervisor.
703 sev_map_percpu_data();
705 kvm_guest_cpu_init();
706 native_smp_prepare_boot_cpu();
710 static int kvm_cpu_down_prepare(unsigned int cpu
)
714 local_irq_save(flags
);
715 kvm_guest_cpu_offline(false);
716 local_irq_restore(flags
);
722 static int kvm_suspend(void)
726 kvm_guest_cpu_offline(false);
728 #ifdef CONFIG_ARCH_CPUIDLE_HALTPOLL
729 if (kvm_para_has_feature(KVM_FEATURE_POLL_CONTROL
))
730 rdmsrl(MSR_KVM_POLL_CONTROL
, val
);
731 has_guest_poll
= !(val
& 1);
736 static void kvm_resume(void)
738 kvm_cpu_online(raw_smp_processor_id());
740 #ifdef CONFIG_ARCH_CPUIDLE_HALTPOLL
741 if (kvm_para_has_feature(KVM_FEATURE_POLL_CONTROL
) && has_guest_poll
)
742 wrmsrl(MSR_KVM_POLL_CONTROL
, 0);
746 static struct syscore_ops kvm_syscore_ops
= {
747 .suspend
= kvm_suspend
,
748 .resume
= kvm_resume
,
751 static void kvm_pv_guest_cpu_reboot(void *unused
)
753 kvm_guest_cpu_offline(true);
756 static int kvm_pv_reboot_notify(struct notifier_block
*nb
,
757 unsigned long code
, void *unused
)
759 if (code
== SYS_RESTART
)
760 on_each_cpu(kvm_pv_guest_cpu_reboot
, NULL
, 1);
764 static struct notifier_block kvm_pv_reboot_nb
= {
765 .notifier_call
= kvm_pv_reboot_notify
,
769 * After a PV feature is registered, the host will keep writing to the
770 * registered memory location. If the guest happens to shutdown, this memory
771 * won't be valid. In cases like kexec, in which you install a new kernel, this
772 * means a random memory location will be kept being written.
774 #ifdef CONFIG_CRASH_DUMP
775 static void kvm_crash_shutdown(struct pt_regs
*regs
)
777 kvm_guest_cpu_offline(true);
778 native_machine_crash_shutdown(regs
);
782 #if defined(CONFIG_X86_32) || !defined(CONFIG_SMP)
783 bool __kvm_vcpu_is_preempted(long cpu
);
785 __visible
bool __kvm_vcpu_is_preempted(long cpu
)
787 struct kvm_steal_time
*src
= &per_cpu(steal_time
, cpu
);
789 return !!(src
->preempted
& KVM_VCPU_PREEMPTED
);
791 PV_CALLEE_SAVE_REGS_THUNK(__kvm_vcpu_is_preempted
);
795 #include <asm/asm-offsets.h>
797 extern bool __raw_callee_save___kvm_vcpu_is_preempted(long);
800 * Hand-optimize version for x86-64 to avoid 8 64-bit register saving and
801 * restoring to/from the stack.
803 #define PV_VCPU_PREEMPTED_ASM \
804 "movq __per_cpu_offset(,%rdi,8), %rax\n\t" \
805 "cmpb $0, " __stringify(KVM_STEAL_TIME_preempted) "+steal_time(%rax)\n\t" \
808 DEFINE_ASM_FUNC(__raw_callee_save___kvm_vcpu_is_preempted
,
809 PV_VCPU_PREEMPTED_ASM
, .text
);
812 static void __init
kvm_guest_init(void)
816 paravirt_ops_setup();
817 register_reboot_notifier(&kvm_pv_reboot_nb
);
818 for (i
= 0; i
< KVM_TASK_SLEEP_HASHSIZE
; i
++)
819 raw_spin_lock_init(&async_pf_sleepers
[i
].lock
);
821 if (kvm_para_has_feature(KVM_FEATURE_STEAL_TIME
)) {
823 static_call_update(pv_steal_clock
, kvm_steal_clock
);
825 pv_ops
.lock
.vcpu_is_preempted
=
826 PV_CALLEE_SAVE(__kvm_vcpu_is_preempted
);
829 if (kvm_para_has_feature(KVM_FEATURE_PV_EOI
))
830 apic_update_callback(eoi
, kvm_guest_apic_eoi_write
);
832 if (kvm_para_has_feature(KVM_FEATURE_ASYNC_PF_INT
) && kvmapf
) {
833 static_branch_enable(&kvm_async_pf_enabled
);
834 sysvec_install(HYPERVISOR_CALLBACK_VECTOR
, sysvec_kvm_asyncpf_interrupt
);
838 if (pv_tlb_flush_supported()) {
839 pv_ops
.mmu
.flush_tlb_multi
= kvm_flush_tlb_multi
;
840 pv_ops
.mmu
.tlb_remove_table
= tlb_remove_table
;
841 pr_info("KVM setup pv remote TLB flush\n");
844 smp_ops
.smp_prepare_boot_cpu
= kvm_smp_prepare_boot_cpu
;
845 if (pv_sched_yield_supported()) {
846 smp_ops
.send_call_func_ipi
= kvm_smp_send_call_func_ipi
;
847 pr_info("setup PV sched yield\n");
849 if (cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN
, "x86/kvm:online",
850 kvm_cpu_online
, kvm_cpu_down_prepare
) < 0)
851 pr_err("failed to install cpu hotplug callbacks\n");
853 sev_map_percpu_data();
854 kvm_guest_cpu_init();
857 #ifdef CONFIG_CRASH_DUMP
858 machine_ops
.crash_shutdown
= kvm_crash_shutdown
;
861 register_syscore_ops(&kvm_syscore_ops
);
864 * Hard lockup detection is enabled by default. Disable it, as guests
865 * can get false positives too easily, for example if the host is
868 hardlockup_detector_disable();
871 static noinline
uint32_t __kvm_cpuid_base(void)
873 if (boot_cpu_data
.cpuid_level
< 0)
874 return 0; /* So we don't blow up on old processors */
876 if (boot_cpu_has(X86_FEATURE_HYPERVISOR
))
877 return hypervisor_cpuid_base(KVM_SIGNATURE
, 0);
882 static inline uint32_t kvm_cpuid_base(void)
884 static int kvm_cpuid_base
= -1;
886 if (kvm_cpuid_base
== -1)
887 kvm_cpuid_base
= __kvm_cpuid_base();
889 return kvm_cpuid_base
;
892 bool kvm_para_available(void)
894 return kvm_cpuid_base() != 0;
896 EXPORT_SYMBOL_GPL(kvm_para_available
);
898 unsigned int kvm_arch_para_features(void)
900 return cpuid_eax(kvm_cpuid_base() | KVM_CPUID_FEATURES
);
903 unsigned int kvm_arch_para_hints(void)
905 return cpuid_edx(kvm_cpuid_base() | KVM_CPUID_FEATURES
);
907 EXPORT_SYMBOL_GPL(kvm_arch_para_hints
);
909 static uint32_t __init
kvm_detect(void)
911 return kvm_cpuid_base();
914 static void __init
kvm_apic_init(void)
917 if (pv_ipi_supported())
922 static bool __init
kvm_msi_ext_dest_id(void)
924 return kvm_para_has_feature(KVM_FEATURE_MSI_EXT_DEST_ID
);
927 static void kvm_sev_hc_page_enc_status(unsigned long pfn
, int npages
, bool enc
)
929 kvm_sev_hypercall3(KVM_HC_MAP_GPA_RANGE
, pfn
<< PAGE_SHIFT
, npages
,
930 KVM_MAP_GPA_RANGE_ENC_STAT(enc
) | KVM_MAP_GPA_RANGE_PAGE_SZ_4K
);
933 static void __init
kvm_init_platform(void)
935 if (cc_platform_has(CC_ATTR_GUEST_MEM_ENCRYPT
) &&
936 kvm_para_has_feature(KVM_FEATURE_MIGRATION_CONTROL
)) {
937 unsigned long nr_pages
;
940 pv_ops
.mmu
.notify_page_enc_status_changed
=
941 kvm_sev_hc_page_enc_status
;
944 * Reset the host's shared pages list related to kernel
945 * specific page encryption status settings before we load a
946 * new kernel by kexec. Reset the page encryption status
947 * during early boot instead of just before kexec to avoid SMP
948 * races during kvm_pv_guest_cpu_reboot().
949 * NOTE: We cannot reset the complete shared pages list
950 * here as we need to retain the UEFI/OVMF firmware
954 for (i
= 0; i
< e820_table
->nr_entries
; i
++) {
955 struct e820_entry
*entry
= &e820_table
->entries
[i
];
957 if (entry
->type
!= E820_TYPE_RAM
)
960 nr_pages
= DIV_ROUND_UP(entry
->size
, PAGE_SIZE
);
962 kvm_sev_hypercall3(KVM_HC_MAP_GPA_RANGE
, entry
->addr
,
964 KVM_MAP_GPA_RANGE_ENCRYPTED
| KVM_MAP_GPA_RANGE_PAGE_SZ_4K
);
968 * Ensure that _bss_decrypted section is marked as decrypted in the
971 early_set_mem_enc_dec_hypercall((unsigned long)__start_bss_decrypted
,
972 __end_bss_decrypted
- __start_bss_decrypted
, 0);
975 * If not booted using EFI, enable Live migration support.
977 if (!efi_enabled(EFI_BOOT
))
978 wrmsrl(MSR_KVM_MIGRATION_CONTROL
,
979 KVM_MIGRATION_READY
);
982 x86_platform
.apic_post_init
= kvm_apic_init
;
985 #if defined(CONFIG_AMD_MEM_ENCRYPT)
986 static void kvm_sev_es_hcall_prepare(struct ghcb
*ghcb
, struct pt_regs
*regs
)
988 /* RAX and CPL are already in the GHCB */
989 ghcb_set_rbx(ghcb
, regs
->bx
);
990 ghcb_set_rcx(ghcb
, regs
->cx
);
991 ghcb_set_rdx(ghcb
, regs
->dx
);
992 ghcb_set_rsi(ghcb
, regs
->si
);
995 static bool kvm_sev_es_hcall_finish(struct ghcb
*ghcb
, struct pt_regs
*regs
)
997 /* No checking of the return state needed */
1002 const __initconst
struct hypervisor_x86 x86_hyper_kvm
= {
1004 .detect
= kvm_detect
,
1005 .type
= X86_HYPER_KVM
,
1006 .init
.guest_late_init
= kvm_guest_init
,
1007 .init
.x2apic_available
= kvm_para_available
,
1008 .init
.msi_ext_dest_id
= kvm_msi_ext_dest_id
,
1009 .init
.init_platform
= kvm_init_platform
,
1010 #if defined(CONFIG_AMD_MEM_ENCRYPT)
1011 .runtime
.sev_es_hcall_prepare
= kvm_sev_es_hcall_prepare
,
1012 .runtime
.sev_es_hcall_finish
= kvm_sev_es_hcall_finish
,
1016 static __init
int activate_jump_labels(void)
1018 if (has_steal_clock
) {
1019 static_key_slow_inc(¶virt_steal_enabled
);
1021 static_key_slow_inc(¶virt_steal_rq_enabled
);
1026 arch_initcall(activate_jump_labels
);
1028 #ifdef CONFIG_PARAVIRT_SPINLOCKS
1030 /* Kick a cpu by its apicid. Used to wake up a halted vcpu */
1031 static void kvm_kick_cpu(int cpu
)
1033 unsigned long flags
= 0;
1036 apicid
= per_cpu(x86_cpu_to_apicid
, cpu
);
1037 kvm_hypercall2(KVM_HC_KICK_CPU
, flags
, apicid
);
1040 #include <asm/qspinlock.h>
1042 static void kvm_wait(u8
*ptr
, u8 val
)
1048 * halt until it's our turn and kicked. Note that we do safe halt
1049 * for irq enabled case to avoid hang when lock info is overwritten
1050 * in irq spinlock slowpath and no spurious interrupt occur to save us.
1052 if (irqs_disabled()) {
1053 if (READ_ONCE(*ptr
) == val
)
1056 local_irq_disable();
1058 /* safe_halt() will enable IRQ */
1059 if (READ_ONCE(*ptr
) == val
)
1067 * Setup pv_lock_ops to exploit KVM_FEATURE_PV_UNHALT if present.
1069 void __init
kvm_spinlock_init(void)
1072 * In case host doesn't support KVM_FEATURE_PV_UNHALT there is still an
1073 * advantage of keeping virt_spin_lock_key enabled: virt_spin_lock() is
1074 * preferred over native qspinlock when vCPU is preempted.
1076 if (!kvm_para_has_feature(KVM_FEATURE_PV_UNHALT
)) {
1077 pr_info("PV spinlocks disabled, no host support\n");
1082 * Disable PV spinlocks and use native qspinlock when dedicated pCPUs
1085 if (kvm_para_has_hint(KVM_HINTS_REALTIME
)) {
1086 pr_info("PV spinlocks disabled with KVM_HINTS_REALTIME hints\n");
1090 if (num_possible_cpus() == 1) {
1091 pr_info("PV spinlocks disabled, single CPU\n");
1096 pr_info("PV spinlocks disabled, forced by \"nopvspin\" parameter\n");
1100 pr_info("PV spinlocks enabled\n");
1102 __pv_init_lock_hash();
1103 pv_ops
.lock
.queued_spin_lock_slowpath
= __pv_queued_spin_lock_slowpath
;
1104 pv_ops
.lock
.queued_spin_unlock
=
1105 PV_CALLEE_SAVE(__pv_queued_spin_unlock
);
1106 pv_ops
.lock
.wait
= kvm_wait
;
1107 pv_ops
.lock
.kick
= kvm_kick_cpu
;
1110 * When PV spinlock is enabled which is preferred over
1111 * virt_spin_lock(), virt_spin_lock_key's value is meaningless.
1112 * Just disable it anyway.
1115 static_branch_disable(&virt_spin_lock_key
);
1118 #endif /* CONFIG_PARAVIRT_SPINLOCKS */
1120 #ifdef CONFIG_ARCH_CPUIDLE_HALTPOLL
1122 static void kvm_disable_host_haltpoll(void *i
)
1124 wrmsrl(MSR_KVM_POLL_CONTROL
, 0);
1127 static void kvm_enable_host_haltpoll(void *i
)
1129 wrmsrl(MSR_KVM_POLL_CONTROL
, 1);
1132 void arch_haltpoll_enable(unsigned int cpu
)
1134 if (!kvm_para_has_feature(KVM_FEATURE_POLL_CONTROL
)) {
1135 pr_err_once("host does not support poll control\n");
1136 pr_err_once("host upgrade recommended\n");
1140 /* Enable guest halt poll disables host halt poll */
1141 smp_call_function_single(cpu
, kvm_disable_host_haltpoll
, NULL
, 1);
1143 EXPORT_SYMBOL_GPL(arch_haltpoll_enable
);
1145 void arch_haltpoll_disable(unsigned int cpu
)
1147 if (!kvm_para_has_feature(KVM_FEATURE_POLL_CONTROL
))
1150 /* Disable guest halt poll enables host halt poll */
1151 smp_call_function_single(cpu
, kvm_enable_host_haltpoll
, NULL
, 1);
1153 EXPORT_SYMBOL_GPL(arch_haltpoll_disable
);