xref: /freebsd/sys/amd64/vmm/vmm.c (revision 01d822d33b0cd1f801ce39d0ed25fa7f57b5a429)
1366f6083SPeter Grehan /*-
2c49761ddSPedro F. Giffuni  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3c49761ddSPedro F. Giffuni  *
4366f6083SPeter Grehan  * Copyright (c) 2011 NetApp, Inc.
5366f6083SPeter Grehan  * All rights reserved.
6366f6083SPeter Grehan  *
7366f6083SPeter Grehan  * Redistribution and use in source and binary forms, with or without
8366f6083SPeter Grehan  * modification, are permitted provided that the following conditions
9366f6083SPeter Grehan  * are met:
10366f6083SPeter Grehan  * 1. Redistributions of source code must retain the above copyright
11366f6083SPeter Grehan  *    notice, this list of conditions and the following disclaimer.
12366f6083SPeter Grehan  * 2. Redistributions in binary form must reproduce the above copyright
13366f6083SPeter Grehan  *    notice, this list of conditions and the following disclaimer in the
14366f6083SPeter Grehan  *    documentation and/or other materials provided with the distribution.
15366f6083SPeter Grehan  *
16366f6083SPeter Grehan  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
17366f6083SPeter Grehan  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18366f6083SPeter Grehan  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19366f6083SPeter Grehan  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
20366f6083SPeter Grehan  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21366f6083SPeter Grehan  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22366f6083SPeter Grehan  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23366f6083SPeter Grehan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24366f6083SPeter Grehan  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25366f6083SPeter Grehan  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26366f6083SPeter Grehan  * SUCH DAMAGE.
27366f6083SPeter Grehan  *
28366f6083SPeter Grehan  * $FreeBSD$
29366f6083SPeter Grehan  */
30366f6083SPeter Grehan 
31366f6083SPeter Grehan #include <sys/cdefs.h>
32366f6083SPeter Grehan __FBSDID("$FreeBSD$");
33366f6083SPeter Grehan 
34366f6083SPeter Grehan #include <sys/param.h>
3538f1b189SPeter Grehan #include <sys/systm.h>
36366f6083SPeter Grehan #include <sys/kernel.h>
37366f6083SPeter Grehan #include <sys/module.h>
38366f6083SPeter Grehan #include <sys/sysctl.h>
39366f6083SPeter Grehan #include <sys/malloc.h>
40366f6083SPeter Grehan #include <sys/pcpu.h>
41366f6083SPeter Grehan #include <sys/lock.h>
42366f6083SPeter Grehan #include <sys/mutex.h>
43366f6083SPeter Grehan #include <sys/proc.h>
44318224bbSNeel Natu #include <sys/rwlock.h>
45366f6083SPeter Grehan #include <sys/sched.h>
46366f6083SPeter Grehan #include <sys/smp.h>
47366f6083SPeter Grehan #include <sys/systm.h>
48366f6083SPeter Grehan 
49366f6083SPeter Grehan #include <vm/vm.h>
50318224bbSNeel Natu #include <vm/vm_object.h>
51318224bbSNeel Natu #include <vm/vm_page.h>
52318224bbSNeel Natu #include <vm/pmap.h>
53318224bbSNeel Natu #include <vm/vm_map.h>
54318224bbSNeel Natu #include <vm/vm_extern.h>
55318224bbSNeel Natu #include <vm/vm_param.h>
56366f6083SPeter Grehan 
5763e62d39SJohn Baldwin #include <machine/cpu.h>
58366f6083SPeter Grehan #include <machine/pcb.h>
5975dd3366SNeel Natu #include <machine/smp.h>
60bd50262fSKonstantin Belousov #include <machine/md_var.h>
611c052192SNeel Natu #include <x86/psl.h>
6234a6b2d6SJohn Baldwin #include <x86/apicreg.h>
63366f6083SPeter Grehan 
64366f6083SPeter Grehan #include <machine/vmm.h>
65565bbb86SNeel Natu #include <machine/vmm_dev.h>
66e813a873SNeel Natu #include <machine/vmm_instruction_emul.h>
67565bbb86SNeel Natu 
68d17b5104SNeel Natu #include "vmm_ioport.h"
69318224bbSNeel Natu #include "vmm_ktr.h"
70b01c2033SNeel Natu #include "vmm_host.h"
71366f6083SPeter Grehan #include "vmm_mem.h"
72366f6083SPeter Grehan #include "vmm_util.h"
73762fd208STycho Nightingale #include "vatpic.h"
74e883c9bbSTycho Nightingale #include "vatpit.h"
7508e3ff32SNeel Natu #include "vhpet.h"
76565bbb86SNeel Natu #include "vioapic.h"
77366f6083SPeter Grehan #include "vlapic.h"
78160ef77aSNeel Natu #include "vpmtmr.h"
790dafa5cdSNeel Natu #include "vrtc.h"
80366f6083SPeter Grehan #include "vmm_stat.h"
81f76fc5d4SNeel Natu #include "vmm_lapic.h"
82366f6083SPeter Grehan 
83366f6083SPeter Grehan #include "io/ppt.h"
84366f6083SPeter Grehan #include "io/iommu.h"
85366f6083SPeter Grehan 
86366f6083SPeter Grehan struct vlapic;
87366f6083SPeter Grehan 
885fcf252fSNeel Natu /*
895fcf252fSNeel Natu  * Initialization:
905fcf252fSNeel Natu  * (a) allocated when vcpu is created
915fcf252fSNeel Natu  * (i) initialized when vcpu is created and when it is reinitialized
925fcf252fSNeel Natu  * (o) initialized the first time the vcpu is created
935fcf252fSNeel Natu  * (x) initialized before use
945fcf252fSNeel Natu  */
95366f6083SPeter Grehan struct vcpu {
965fcf252fSNeel Natu 	struct mtx 	mtx;		/* (o) protects 'state' and 'hostcpu' */
975fcf252fSNeel Natu 	enum vcpu_state	state;		/* (o) vcpu state */
985fcf252fSNeel Natu 	int		hostcpu;	/* (o) vcpu's host cpu */
99248e6799SNeel Natu 	int		reqidle;	/* (i) request vcpu to idle */
1005fcf252fSNeel Natu 	struct vlapic	*vlapic;	/* (i) APIC device model */
1015fcf252fSNeel Natu 	enum x2apic_state x2apic_state;	/* (i) APIC mode */
102091d4532SNeel Natu 	uint64_t	exitintinfo;	/* (i) events pending at VM exit */
1035fcf252fSNeel Natu 	int		nmi_pending;	/* (i) NMI pending */
1045fcf252fSNeel Natu 	int		extint_pending;	/* (i) INTR pending */
1055fcf252fSNeel Natu 	int	exception_pending;	/* (i) exception pending */
106c9c75df4SNeel Natu 	int	exc_vector;		/* (x) exception collateral */
107c9c75df4SNeel Natu 	int	exc_errcode_valid;
108c9c75df4SNeel Natu 	uint32_t exc_errcode;
1095fcf252fSNeel Natu 	struct savefpu	*guestfpu;	/* (a,i) guest fpu state */
1105fcf252fSNeel Natu 	uint64_t	guest_xcr0;	/* (i) guest %xcr0 register */
1115fcf252fSNeel Natu 	void		*stats;		/* (a,i) statistics */
1125fcf252fSNeel Natu 	struct vm_exit	exitinfo;	/* (x) exit reason and collateral */
113d087a399SNeel Natu 	uint64_t	nextrip;	/* (x) next instruction to execute */
114366f6083SPeter Grehan };
115366f6083SPeter Grehan 
1165fcf252fSNeel Natu #define	vcpu_lock_initialized(v) mtx_initialized(&((v)->mtx))
117f76fc5d4SNeel Natu #define	vcpu_lock_init(v)	mtx_init(&((v)->mtx), "vcpu lock", 0, MTX_SPIN)
118f76fc5d4SNeel Natu #define	vcpu_lock(v)		mtx_lock_spin(&((v)->mtx))
119f76fc5d4SNeel Natu #define	vcpu_unlock(v)		mtx_unlock_spin(&((v)->mtx))
120318224bbSNeel Natu #define	vcpu_assert_locked(v)	mtx_assert(&((v)->mtx), MA_OWNED)
12175dd3366SNeel Natu 
122318224bbSNeel Natu struct mem_seg {
1239b1aa8d6SNeel Natu 	size_t	len;
1249b1aa8d6SNeel Natu 	bool	sysmem;
1259b1aa8d6SNeel Natu 	struct vm_object *object;
1269b1aa8d6SNeel Natu };
1276bcf245eSMarcel Moolenaar #define	VM_MAX_MEMSEGS	3
1289b1aa8d6SNeel Natu 
1299b1aa8d6SNeel Natu struct mem_map {
130318224bbSNeel Natu 	vm_paddr_t	gpa;
131318224bbSNeel Natu 	size_t		len;
1329b1aa8d6SNeel Natu 	vm_ooffset_t	segoff;
1339b1aa8d6SNeel Natu 	int		segid;
1349b1aa8d6SNeel Natu 	int		prot;
1359b1aa8d6SNeel Natu 	int		flags;
136318224bbSNeel Natu };
1379b1aa8d6SNeel Natu #define	VM_MAX_MEMMAPS	4
138366f6083SPeter Grehan 
139366f6083SPeter Grehan /*
1405fcf252fSNeel Natu  * Initialization:
1415fcf252fSNeel Natu  * (o) initialized the first time the VM is created
1425fcf252fSNeel Natu  * (i) initialized when VM is created and when it is reinitialized
1435fcf252fSNeel Natu  * (x) initialized before use
144366f6083SPeter Grehan  */
1455fcf252fSNeel Natu struct vm {
1465fcf252fSNeel Natu 	void		*cookie;		/* (i) cpu-specific data */
1475fcf252fSNeel Natu 	void		*iommu;			/* (x) iommu-specific data */
1485fcf252fSNeel Natu 	struct vhpet	*vhpet;			/* (i) virtual HPET */
1495fcf252fSNeel Natu 	struct vioapic	*vioapic;		/* (i) virtual ioapic */
1505fcf252fSNeel Natu 	struct vatpic	*vatpic;		/* (i) virtual atpic */
1515fcf252fSNeel Natu 	struct vatpit	*vatpit;		/* (i) virtual atpit */
152160ef77aSNeel Natu 	struct vpmtmr	*vpmtmr;		/* (i) virtual ACPI PM timer */
1530dafa5cdSNeel Natu 	struct vrtc	*vrtc;			/* (o) virtual RTC */
1545fcf252fSNeel Natu 	volatile cpuset_t active_cpus;		/* (i) active vcpus */
155fc276d92SJohn Baldwin 	volatile cpuset_t debug_cpus;		/* (i) vcpus stopped for debug */
1565fcf252fSNeel Natu 	int		suspend;		/* (i) stop VM execution */
1575fcf252fSNeel Natu 	volatile cpuset_t suspended_cpus; 	/* (i) suspended vcpus */
1585fcf252fSNeel Natu 	volatile cpuset_t halted_cpus;		/* (x) cpus in a hard halt */
1595fcf252fSNeel Natu 	cpuset_t	rendezvous_req_cpus;	/* (x) rendezvous requested */
1605fcf252fSNeel Natu 	cpuset_t	rendezvous_done_cpus;	/* (x) rendezvous finished */
1615fcf252fSNeel Natu 	void		*rendezvous_arg;	/* (x) rendezvous func/arg */
1625b8a8cd1SNeel Natu 	vm_rendezvous_func_t rendezvous_func;
1635fcf252fSNeel Natu 	struct mtx	rendezvous_mtx;		/* (o) rendezvous lock */
1649b1aa8d6SNeel Natu 	struct mem_map	mem_maps[VM_MAX_MEMMAPS]; /* (i) guest address space */
1659b1aa8d6SNeel Natu 	struct mem_seg	mem_segs[VM_MAX_MEMSEGS]; /* (o) guest memory regions */
1665fcf252fSNeel Natu 	struct vmspace	*vmspace;		/* (o) guest's address space */
1675fcf252fSNeel Natu 	char		name[VM_MAX_NAMELEN];	/* (o) virtual machine name */
1685fcf252fSNeel Natu 	struct vcpu	vcpu[VM_MAXCPU];	/* (i) guest vcpus */
169*01d822d3SRodney W. Grimes 	/* The following describe the vm cpu topology */
170*01d822d3SRodney W. Grimes 	uint16_t	sockets;		/* (o) num of sockets */
171*01d822d3SRodney W. Grimes 	uint16_t	cores;			/* (o) num of cores/socket */
172*01d822d3SRodney W. Grimes 	uint16_t	threads;		/* (o) num of threads/core */
173*01d822d3SRodney W. Grimes 	uint16_t	maxcpus;		/* (o) max pluggable cpus */
174366f6083SPeter Grehan };
175366f6083SPeter Grehan 
176d5408b1dSNeel Natu static int vmm_initialized;
177d5408b1dSNeel Natu 
178366f6083SPeter Grehan static struct vmm_ops *ops;
179add611fdSNeel Natu #define	VMM_INIT(num)	(ops != NULL ? (*ops->init)(num) : 0)
180366f6083SPeter Grehan #define	VMM_CLEANUP()	(ops != NULL ? (*ops->cleanup)() : 0)
18163e62d39SJohn Baldwin #define	VMM_RESUME()	(ops != NULL ? (*ops->resume)() : 0)
182366f6083SPeter Grehan 
183318224bbSNeel Natu #define	VMINIT(vm, pmap) (ops != NULL ? (*ops->vminit)(vm, pmap): NULL)
184248e6799SNeel Natu #define	VMRUN(vmi, vcpu, rip, pmap, evinfo) \
185248e6799SNeel Natu 	(ops != NULL ? (*ops->vmrun)(vmi, vcpu, rip, pmap, evinfo) : ENXIO)
186366f6083SPeter Grehan #define	VMCLEANUP(vmi)	(ops != NULL ? (*ops->vmcleanup)(vmi) : NULL)
187318224bbSNeel Natu #define	VMSPACE_ALLOC(min, max) \
188318224bbSNeel Natu 	(ops != NULL ? (*ops->vmspace_alloc)(min, max) : NULL)
189318224bbSNeel Natu #define	VMSPACE_FREE(vmspace) \
190318224bbSNeel Natu 	(ops != NULL ? (*ops->vmspace_free)(vmspace) : ENXIO)
191366f6083SPeter Grehan #define	VMGETREG(vmi, vcpu, num, retval)		\
192366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmgetreg)(vmi, vcpu, num, retval) : ENXIO)
193366f6083SPeter Grehan #define	VMSETREG(vmi, vcpu, num, val)		\
194366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmsetreg)(vmi, vcpu, num, val) : ENXIO)
195366f6083SPeter Grehan #define	VMGETDESC(vmi, vcpu, num, desc)		\
196366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmgetdesc)(vmi, vcpu, num, desc) : ENXIO)
197366f6083SPeter Grehan #define	VMSETDESC(vmi, vcpu, num, desc)		\
198366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmsetdesc)(vmi, vcpu, num, desc) : ENXIO)
199366f6083SPeter Grehan #define	VMGETCAP(vmi, vcpu, num, retval)	\
200366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmgetcap)(vmi, vcpu, num, retval) : ENXIO)
201366f6083SPeter Grehan #define	VMSETCAP(vmi, vcpu, num, val)		\
202366f6083SPeter Grehan 	(ops != NULL ? (*ops->vmsetcap)(vmi, vcpu, num, val) : ENXIO)
203de5ea6b6SNeel Natu #define	VLAPIC_INIT(vmi, vcpu)			\
204de5ea6b6SNeel Natu 	(ops != NULL ? (*ops->vlapic_init)(vmi, vcpu) : NULL)
205de5ea6b6SNeel Natu #define	VLAPIC_CLEANUP(vmi, vlapic)		\
206de5ea6b6SNeel Natu 	(ops != NULL ? (*ops->vlapic_cleanup)(vmi, vlapic) : NULL)
207366f6083SPeter Grehan 
208014a52f3SNeel Natu #define	fpu_start_emulating()	load_cr0(rcr0() | CR0_TS)
209014a52f3SNeel Natu #define	fpu_stop_emulating()	clts()
210366f6083SPeter Grehan 
211366f6083SPeter Grehan static MALLOC_DEFINE(M_VM, "vm", "vm");
212366f6083SPeter Grehan 
213366f6083SPeter Grehan /* statistics */
21461592433SNeel Natu static VMM_STAT(VCPU_TOTAL_RUNTIME, "vcpu total runtime");
215366f6083SPeter Grehan 
216add611fdSNeel Natu SYSCTL_NODE(_hw, OID_AUTO, vmm, CTLFLAG_RW, NULL, NULL);
217add611fdSNeel Natu 
218055fc2cbSNeel Natu /*
219055fc2cbSNeel Natu  * Halt the guest if all vcpus are executing a HLT instruction with
220055fc2cbSNeel Natu  * interrupts disabled.
221055fc2cbSNeel Natu  */
222055fc2cbSNeel Natu static int halt_detection_enabled = 1;
223055fc2cbSNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, halt_detection, CTLFLAG_RDTUN,
224055fc2cbSNeel Natu     &halt_detection_enabled, 0,
225055fc2cbSNeel Natu     "Halt VM if all vcpus execute HLT with interrupts disabled");
226055fc2cbSNeel Natu 
227978f3da1SAndriy Gapon static int vmm_ipinum;
228add611fdSNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, ipinum, CTLFLAG_RD, &vmm_ipinum, 0,
229add611fdSNeel Natu     "IPI vector used for vcpu notifications");
230add611fdSNeel Natu 
231b0538143SNeel Natu static int trace_guest_exceptions;
232b0538143SNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, trace_guest_exceptions, CTLFLAG_RDTUN,
233b0538143SNeel Natu     &trace_guest_exceptions, 0,
234b0538143SNeel Natu     "Trap into hypervisor on all guest exceptions and reflect them back");
235b0538143SNeel Natu 
2369b1aa8d6SNeel Natu static void vm_free_memmap(struct vm *vm, int ident);
2379b1aa8d6SNeel Natu static bool sysmem_mapping(struct vm *vm, struct mem_map *mm);
238248e6799SNeel Natu static void vcpu_notify_event_locked(struct vcpu *vcpu, bool lapic_intr);
239248e6799SNeel Natu 
240248e6799SNeel Natu #ifdef KTR
241248e6799SNeel Natu static const char *
242248e6799SNeel Natu vcpu_state2str(enum vcpu_state state)
243248e6799SNeel Natu {
244248e6799SNeel Natu 
245248e6799SNeel Natu 	switch (state) {
246248e6799SNeel Natu 	case VCPU_IDLE:
247248e6799SNeel Natu 		return ("idle");
248248e6799SNeel Natu 	case VCPU_FROZEN:
249248e6799SNeel Natu 		return ("frozen");
250248e6799SNeel Natu 	case VCPU_RUNNING:
251248e6799SNeel Natu 		return ("running");
252248e6799SNeel Natu 	case VCPU_SLEEPING:
253248e6799SNeel Natu 		return ("sleeping");
254248e6799SNeel Natu 	default:
255248e6799SNeel Natu 		return ("unknown");
256248e6799SNeel Natu 	}
257248e6799SNeel Natu }
258248e6799SNeel Natu #endif
259248e6799SNeel Natu 
260366f6083SPeter Grehan static void
2615fcf252fSNeel Natu vcpu_cleanup(struct vm *vm, int i, bool destroy)
262366f6083SPeter Grehan {
263de5ea6b6SNeel Natu 	struct vcpu *vcpu = &vm->vcpu[i];
264de5ea6b6SNeel Natu 
265de5ea6b6SNeel Natu 	VLAPIC_CLEANUP(vm->cookie, vcpu->vlapic);
2665fcf252fSNeel Natu 	if (destroy) {
267366f6083SPeter Grehan 		vmm_stat_free(vcpu->stats);
26838f1b189SPeter Grehan 		fpu_save_area_free(vcpu->guestfpu);
269366f6083SPeter Grehan 	}
2705fcf252fSNeel Natu }
271366f6083SPeter Grehan 
272366f6083SPeter Grehan static void
2735fcf252fSNeel Natu vcpu_init(struct vm *vm, int vcpu_id, bool create)
274366f6083SPeter Grehan {
275366f6083SPeter Grehan 	struct vcpu *vcpu;
276366f6083SPeter Grehan 
2775fcf252fSNeel Natu 	KASSERT(vcpu_id >= 0 && vcpu_id < VM_MAXCPU,
2785fcf252fSNeel Natu 	    ("vcpu_init: invalid vcpu %d", vcpu_id));
2795fcf252fSNeel Natu 
280366f6083SPeter Grehan 	vcpu = &vm->vcpu[vcpu_id];
281366f6083SPeter Grehan 
2825fcf252fSNeel Natu 	if (create) {
2835fcf252fSNeel Natu 		KASSERT(!vcpu_lock_initialized(vcpu), ("vcpu %d already "
2845fcf252fSNeel Natu 		    "initialized", vcpu_id));
28575dd3366SNeel Natu 		vcpu_lock_init(vcpu);
2865fcf252fSNeel Natu 		vcpu->state = VCPU_IDLE;
28775dd3366SNeel Natu 		vcpu->hostcpu = NOCPU;
2885fcf252fSNeel Natu 		vcpu->guestfpu = fpu_save_area_alloc();
2895fcf252fSNeel Natu 		vcpu->stats = vmm_stat_alloc();
2905fcf252fSNeel Natu 	}
2915fcf252fSNeel Natu 
292de5ea6b6SNeel Natu 	vcpu->vlapic = VLAPIC_INIT(vm->cookie, vcpu_id);
29352e5c8a2SNeel Natu 	vm_set_x2apic_state(vm, vcpu_id, X2APIC_DISABLED);
294248e6799SNeel Natu 	vcpu->reqidle = 0;
295091d4532SNeel Natu 	vcpu->exitintinfo = 0;
2965fcf252fSNeel Natu 	vcpu->nmi_pending = 0;
2975fcf252fSNeel Natu 	vcpu->extint_pending = 0;
2985fcf252fSNeel Natu 	vcpu->exception_pending = 0;
299abb023fbSJohn Baldwin 	vcpu->guest_xcr0 = XFEATURE_ENABLED_X87;
30038f1b189SPeter Grehan 	fpu_save_area_reset(vcpu->guestfpu);
3015fcf252fSNeel Natu 	vmm_stat_init(vcpu->stats);
302366f6083SPeter Grehan }
303366f6083SPeter Grehan 
304b0538143SNeel Natu int
305b0538143SNeel Natu vcpu_trace_exceptions(struct vm *vm, int vcpuid)
306b0538143SNeel Natu {
307b0538143SNeel Natu 
308b0538143SNeel Natu 	return (trace_guest_exceptions);
309b0538143SNeel Natu }
310b0538143SNeel Natu 
31198ed632cSNeel Natu struct vm_exit *
31298ed632cSNeel Natu vm_exitinfo(struct vm *vm, int cpuid)
31398ed632cSNeel Natu {
31498ed632cSNeel Natu 	struct vcpu *vcpu;
31598ed632cSNeel Natu 
31698ed632cSNeel Natu 	if (cpuid < 0 || cpuid >= VM_MAXCPU)
31798ed632cSNeel Natu 		panic("vm_exitinfo: invalid cpuid %d", cpuid);
31898ed632cSNeel Natu 
31998ed632cSNeel Natu 	vcpu = &vm->vcpu[cpuid];
32098ed632cSNeel Natu 
32198ed632cSNeel Natu 	return (&vcpu->exitinfo);
32298ed632cSNeel Natu }
32398ed632cSNeel Natu 
32463e62d39SJohn Baldwin static void
32563e62d39SJohn Baldwin vmm_resume(void)
32663e62d39SJohn Baldwin {
32763e62d39SJohn Baldwin 	VMM_RESUME();
32863e62d39SJohn Baldwin }
32963e62d39SJohn Baldwin 
330366f6083SPeter Grehan static int
331366f6083SPeter Grehan vmm_init(void)
332366f6083SPeter Grehan {
333366f6083SPeter Grehan 	int error;
334366f6083SPeter Grehan 
335b01c2033SNeel Natu 	vmm_host_state_init();
336add611fdSNeel Natu 
337bd50262fSKonstantin Belousov 	vmm_ipinum = lapic_ipi_alloc(pti ? &IDTVEC(justreturn1_pti) :
338bd50262fSKonstantin Belousov 	    &IDTVEC(justreturn));
33918a2b08eSNeel Natu 	if (vmm_ipinum < 0)
340add611fdSNeel Natu 		vmm_ipinum = IPI_AST;
341366f6083SPeter Grehan 
342366f6083SPeter Grehan 	error = vmm_mem_init();
343366f6083SPeter Grehan 	if (error)
344366f6083SPeter Grehan 		return (error);
345366f6083SPeter Grehan 
346366f6083SPeter Grehan 	if (vmm_is_intel())
347366f6083SPeter Grehan 		ops = &vmm_ops_intel;
348366f6083SPeter Grehan 	else if (vmm_is_amd())
349366f6083SPeter Grehan 		ops = &vmm_ops_amd;
350366f6083SPeter Grehan 	else
351366f6083SPeter Grehan 		return (ENXIO);
352366f6083SPeter Grehan 
35363e62d39SJohn Baldwin 	vmm_resume_p = vmm_resume;
354366f6083SPeter Grehan 
355add611fdSNeel Natu 	return (VMM_INIT(vmm_ipinum));
356366f6083SPeter Grehan }
357366f6083SPeter Grehan 
358366f6083SPeter Grehan static int
359366f6083SPeter Grehan vmm_handler(module_t mod, int what, void *arg)
360366f6083SPeter Grehan {
361366f6083SPeter Grehan 	int error;
362366f6083SPeter Grehan 
363366f6083SPeter Grehan 	switch (what) {
364366f6083SPeter Grehan 	case MOD_LOAD:
365366f6083SPeter Grehan 		vmmdev_init();
366366f6083SPeter Grehan 		error = vmm_init();
367d5408b1dSNeel Natu 		if (error == 0)
368d5408b1dSNeel Natu 			vmm_initialized = 1;
369366f6083SPeter Grehan 		break;
370366f6083SPeter Grehan 	case MOD_UNLOAD:
371cdc5b9e7SNeel Natu 		error = vmmdev_cleanup();
372cdc5b9e7SNeel Natu 		if (error == 0) {
37363e62d39SJohn Baldwin 			vmm_resume_p = NULL;
374366f6083SPeter Grehan 			iommu_cleanup();
375add611fdSNeel Natu 			if (vmm_ipinum != IPI_AST)
37618a2b08eSNeel Natu 				lapic_ipi_free(vmm_ipinum);
377366f6083SPeter Grehan 			error = VMM_CLEANUP();
37881ef6611SPeter Grehan 			/*
37981ef6611SPeter Grehan 			 * Something bad happened - prevent new
38081ef6611SPeter Grehan 			 * VMs from being created
38181ef6611SPeter Grehan 			 */
38281ef6611SPeter Grehan 			if (error)
383d5408b1dSNeel Natu 				vmm_initialized = 0;
38481ef6611SPeter Grehan 		}
385366f6083SPeter Grehan 		break;
386366f6083SPeter Grehan 	default:
387366f6083SPeter Grehan 		error = 0;
388366f6083SPeter Grehan 		break;
389366f6083SPeter Grehan 	}
390366f6083SPeter Grehan 	return (error);
391366f6083SPeter Grehan }
392366f6083SPeter Grehan 
393366f6083SPeter Grehan static moduledata_t vmm_kmod = {
394366f6083SPeter Grehan 	"vmm",
395366f6083SPeter Grehan 	vmm_handler,
396366f6083SPeter Grehan 	NULL
397366f6083SPeter Grehan };
398366f6083SPeter Grehan 
399366f6083SPeter Grehan /*
400e3f0800bSNeel Natu  * vmm initialization has the following dependencies:
401e3f0800bSNeel Natu  *
402e3f0800bSNeel Natu  * - VT-x initialization requires smp_rendezvous() and therefore must happen
403e3f0800bSNeel Natu  *   after SMP is fully functional (after SI_SUB_SMP).
404366f6083SPeter Grehan  */
405e3f0800bSNeel Natu DECLARE_MODULE(vmm, vmm_kmod, SI_SUB_SMP + 1, SI_ORDER_ANY);
406366f6083SPeter Grehan MODULE_VERSION(vmm, 1);
407366f6083SPeter Grehan 
4085fcf252fSNeel Natu static void
4095fcf252fSNeel Natu vm_init(struct vm *vm, bool create)
4105fcf252fSNeel Natu {
4115fcf252fSNeel Natu 	int i;
4125fcf252fSNeel Natu 
4135fcf252fSNeel Natu 	vm->cookie = VMINIT(vm, vmspace_pmap(vm->vmspace));
4145fcf252fSNeel Natu 	vm->iommu = NULL;
4155fcf252fSNeel Natu 	vm->vioapic = vioapic_init(vm);
4165fcf252fSNeel Natu 	vm->vhpet = vhpet_init(vm);
4175fcf252fSNeel Natu 	vm->vatpic = vatpic_init(vm);
4185fcf252fSNeel Natu 	vm->vatpit = vatpit_init(vm);
419160ef77aSNeel Natu 	vm->vpmtmr = vpmtmr_init(vm);
4200dafa5cdSNeel Natu 	if (create)
4210dafa5cdSNeel Natu 		vm->vrtc = vrtc_init(vm);
4225fcf252fSNeel Natu 
4235fcf252fSNeel Natu 	CPU_ZERO(&vm->active_cpus);
424fc276d92SJohn Baldwin 	CPU_ZERO(&vm->debug_cpus);
4255fcf252fSNeel Natu 
4265fcf252fSNeel Natu 	vm->suspend = 0;
4275fcf252fSNeel Natu 	CPU_ZERO(&vm->suspended_cpus);
4285fcf252fSNeel Natu 
4295fcf252fSNeel Natu 	for (i = 0; i < VM_MAXCPU; i++)
4305fcf252fSNeel Natu 		vcpu_init(vm, i, create);
4315fcf252fSNeel Natu }
4325fcf252fSNeel Natu 
433*01d822d3SRodney W. Grimes /*
434*01d822d3SRodney W. Grimes  * The default CPU topology is a single thread per package.
435*01d822d3SRodney W. Grimes  */
436*01d822d3SRodney W. Grimes u_int cores_per_package = 1;
437*01d822d3SRodney W. Grimes u_int threads_per_core = 1;
438*01d822d3SRodney W. Grimes 
439d5408b1dSNeel Natu int
440d5408b1dSNeel Natu vm_create(const char *name, struct vm **retvm)
441366f6083SPeter Grehan {
442366f6083SPeter Grehan 	struct vm *vm;
443318224bbSNeel Natu 	struct vmspace *vmspace;
444366f6083SPeter Grehan 
445d5408b1dSNeel Natu 	/*
446d5408b1dSNeel Natu 	 * If vmm.ko could not be successfully initialized then don't attempt
447d5408b1dSNeel Natu 	 * to create the virtual machine.
448d5408b1dSNeel Natu 	 */
449d5408b1dSNeel Natu 	if (!vmm_initialized)
450d5408b1dSNeel Natu 		return (ENXIO);
451d5408b1dSNeel Natu 
452366f6083SPeter Grehan 	if (name == NULL || strlen(name) >= VM_MAX_NAMELEN)
453d5408b1dSNeel Natu 		return (EINVAL);
454366f6083SPeter Grehan 
455526c8885SPeter Grehan 	vmspace = VMSPACE_ALLOC(0, VM_MAXUSER_ADDRESS);
456318224bbSNeel Natu 	if (vmspace == NULL)
457318224bbSNeel Natu 		return (ENOMEM);
458318224bbSNeel Natu 
459366f6083SPeter Grehan 	vm = malloc(sizeof(struct vm), M_VM, M_WAITOK | M_ZERO);
460366f6083SPeter Grehan 	strcpy(vm->name, name);
46188c4b8d1SNeel Natu 	vm->vmspace = vmspace;
4625b8a8cd1SNeel Natu 	mtx_init(&vm->rendezvous_mtx, "vm rendezvous lock", 0, MTX_DEF);
463366f6083SPeter Grehan 
464*01d822d3SRodney W. Grimes 	vm->sockets = 1;
465*01d822d3SRodney W. Grimes 	vm->cores = cores_per_package;	/* XXX backwards compatibility */
466*01d822d3SRodney W. Grimes 	vm->threads = threads_per_core;	/* XXX backwards compatibility */
467*01d822d3SRodney W. Grimes 	vm->maxcpus = 0;		/* XXX not implemented */
468*01d822d3SRodney W. Grimes 
4695fcf252fSNeel Natu 	vm_init(vm, true);
470366f6083SPeter Grehan 
471d5408b1dSNeel Natu 	*retvm = vm;
472d5408b1dSNeel Natu 	return (0);
473366f6083SPeter Grehan }
474366f6083SPeter Grehan 
475*01d822d3SRodney W. Grimes void
476*01d822d3SRodney W. Grimes vm_get_topology(struct vm *vm, uint16_t *sockets, uint16_t *cores,
477*01d822d3SRodney W. Grimes     uint16_t *threads, uint16_t *maxcpus)
478*01d822d3SRodney W. Grimes {
479*01d822d3SRodney W. Grimes 	*sockets = vm->sockets;
480*01d822d3SRodney W. Grimes 	*cores = vm->cores;
481*01d822d3SRodney W. Grimes 	*threads = vm->threads;
482*01d822d3SRodney W. Grimes 	*maxcpus = vm->maxcpus;
483*01d822d3SRodney W. Grimes }
484*01d822d3SRodney W. Grimes 
485*01d822d3SRodney W. Grimes int
486*01d822d3SRodney W. Grimes vm_set_topology(struct vm *vm, uint16_t sockets, uint16_t cores,
487*01d822d3SRodney W. Grimes     uint16_t threads, uint16_t maxcpus)
488*01d822d3SRodney W. Grimes {
489*01d822d3SRodney W. Grimes 	if (maxcpus != 0)
490*01d822d3SRodney W. Grimes 		return (EINVAL);	/* XXX remove when supported */
491*01d822d3SRodney W. Grimes 	if ((sockets * cores * threads) > VM_MAXCPU)
492*01d822d3SRodney W. Grimes 		return (EINVAL);
493*01d822d3SRodney W. Grimes 	/* XXX need to check sockets * cores * threads == vCPU, how? */
494*01d822d3SRodney W. Grimes 	vm->sockets = sockets;
495*01d822d3SRodney W. Grimes 	vm->cores = cores;
496*01d822d3SRodney W. Grimes 	vm->threads = threads;
497*01d822d3SRodney W. Grimes 	vm->maxcpus = maxcpus;
498*01d822d3SRodney W. Grimes 	return(0);
499*01d822d3SRodney W. Grimes }
500*01d822d3SRodney W. Grimes 
501f7d51510SNeel Natu static void
5025fcf252fSNeel Natu vm_cleanup(struct vm *vm, bool destroy)
503366f6083SPeter Grehan {
5049b1aa8d6SNeel Natu 	struct mem_map *mm;
505366f6083SPeter Grehan 	int i;
506366f6083SPeter Grehan 
507366f6083SPeter Grehan 	ppt_unassign_all(vm);
508366f6083SPeter Grehan 
509318224bbSNeel Natu 	if (vm->iommu != NULL)
510318224bbSNeel Natu 		iommu_destroy_domain(vm->iommu);
511318224bbSNeel Natu 
5120dafa5cdSNeel Natu 	if (destroy)
5130dafa5cdSNeel Natu 		vrtc_cleanup(vm->vrtc);
5140dafa5cdSNeel Natu 	else
5150dafa5cdSNeel Natu 		vrtc_reset(vm->vrtc);
516160ef77aSNeel Natu 	vpmtmr_cleanup(vm->vpmtmr);
517e883c9bbSTycho Nightingale 	vatpit_cleanup(vm->vatpit);
51808e3ff32SNeel Natu 	vhpet_cleanup(vm->vhpet);
519762fd208STycho Nightingale 	vatpic_cleanup(vm->vatpic);
52008e3ff32SNeel Natu 	vioapic_cleanup(vm->vioapic);
52108e3ff32SNeel Natu 
5225fcf252fSNeel Natu 	for (i = 0; i < VM_MAXCPU; i++)
5235fcf252fSNeel Natu 		vcpu_cleanup(vm, i, destroy);
5245fcf252fSNeel Natu 
5255fcf252fSNeel Natu 	VMCLEANUP(vm->cookie);
5265fcf252fSNeel Natu 
5279b1aa8d6SNeel Natu 	/*
5289b1aa8d6SNeel Natu 	 * System memory is removed from the guest address space only when
5299b1aa8d6SNeel Natu 	 * the VM is destroyed. This is because the mapping remains the same
5309b1aa8d6SNeel Natu 	 * across VM reset.
5319b1aa8d6SNeel Natu 	 *
5329b1aa8d6SNeel Natu 	 * Device memory can be relocated by the guest (e.g. using PCI BARs)
5339b1aa8d6SNeel Natu 	 * so those mappings are removed on a VM reset.
5349b1aa8d6SNeel Natu 	 */
5359b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
5369b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
5379b1aa8d6SNeel Natu 		if (destroy || !sysmem_mapping(vm, mm))
5389b1aa8d6SNeel Natu 			vm_free_memmap(vm, i);
5399b1aa8d6SNeel Natu 	}
540f7d51510SNeel Natu 
5419b1aa8d6SNeel Natu 	if (destroy) {
5429b1aa8d6SNeel Natu 		for (i = 0; i < VM_MAX_MEMSEGS; i++)
5439b1aa8d6SNeel Natu 			vm_free_memseg(vm, i);
544366f6083SPeter Grehan 
545318224bbSNeel Natu 		VMSPACE_FREE(vm->vmspace);
5465fcf252fSNeel Natu 		vm->vmspace = NULL;
5475fcf252fSNeel Natu 	}
5485fcf252fSNeel Natu }
549366f6083SPeter Grehan 
5505fcf252fSNeel Natu void
5515fcf252fSNeel Natu vm_destroy(struct vm *vm)
5525fcf252fSNeel Natu {
5535fcf252fSNeel Natu 	vm_cleanup(vm, true);
554366f6083SPeter Grehan 	free(vm, M_VM);
555366f6083SPeter Grehan }
556366f6083SPeter Grehan 
5575fcf252fSNeel Natu int
5585fcf252fSNeel Natu vm_reinit(struct vm *vm)
5595fcf252fSNeel Natu {
5605fcf252fSNeel Natu 	int error;
5615fcf252fSNeel Natu 
5625fcf252fSNeel Natu 	/*
5635fcf252fSNeel Natu 	 * A virtual machine can be reset only if all vcpus are suspended.
5645fcf252fSNeel Natu 	 */
5655fcf252fSNeel Natu 	if (CPU_CMP(&vm->suspended_cpus, &vm->active_cpus) == 0) {
5665fcf252fSNeel Natu 		vm_cleanup(vm, false);
5675fcf252fSNeel Natu 		vm_init(vm, false);
5685fcf252fSNeel Natu 		error = 0;
5695fcf252fSNeel Natu 	} else {
5705fcf252fSNeel Natu 		error = EBUSY;
5715fcf252fSNeel Natu 	}
5725fcf252fSNeel Natu 
5735fcf252fSNeel Natu 	return (error);
5745fcf252fSNeel Natu }
5755fcf252fSNeel Natu 
576366f6083SPeter Grehan const char *
577366f6083SPeter Grehan vm_name(struct vm *vm)
578366f6083SPeter Grehan {
579366f6083SPeter Grehan 	return (vm->name);
580366f6083SPeter Grehan }
581366f6083SPeter Grehan 
582366f6083SPeter Grehan int
583366f6083SPeter Grehan vm_map_mmio(struct vm *vm, vm_paddr_t gpa, size_t len, vm_paddr_t hpa)
584366f6083SPeter Grehan {
585318224bbSNeel Natu 	vm_object_t obj;
586366f6083SPeter Grehan 
587318224bbSNeel Natu 	if ((obj = vmm_mmio_alloc(vm->vmspace, gpa, len, hpa)) == NULL)
588318224bbSNeel Natu 		return (ENOMEM);
589318224bbSNeel Natu 	else
590318224bbSNeel Natu 		return (0);
591366f6083SPeter Grehan }
592366f6083SPeter Grehan 
593366f6083SPeter Grehan int
594366f6083SPeter Grehan vm_unmap_mmio(struct vm *vm, vm_paddr_t gpa, size_t len)
595366f6083SPeter Grehan {
596366f6083SPeter Grehan 
597318224bbSNeel Natu 	vmm_mmio_free(vm->vmspace, gpa, len);
598318224bbSNeel Natu 	return (0);
599366f6083SPeter Grehan }
600366f6083SPeter Grehan 
6019b1aa8d6SNeel Natu /*
6029b1aa8d6SNeel Natu  * Return 'true' if 'gpa' is allocated in the guest address space.
6039b1aa8d6SNeel Natu  *
6049b1aa8d6SNeel Natu  * This function is called in the context of a running vcpu which acts as
6059b1aa8d6SNeel Natu  * an implicit lock on 'vm->mem_maps[]'.
6069b1aa8d6SNeel Natu  */
6079b1aa8d6SNeel Natu bool
6089b1aa8d6SNeel Natu vm_mem_allocated(struct vm *vm, int vcpuid, vm_paddr_t gpa)
609366f6083SPeter Grehan {
6109b1aa8d6SNeel Natu 	struct mem_map *mm;
611341f19c9SNeel Natu 	int i;
612341f19c9SNeel Natu 
6139b1aa8d6SNeel Natu #ifdef INVARIANTS
6149b1aa8d6SNeel Natu 	int hostcpu, state;
6159b1aa8d6SNeel Natu 	state = vcpu_get_state(vm, vcpuid, &hostcpu);
6169b1aa8d6SNeel Natu 	KASSERT(state == VCPU_RUNNING && hostcpu == curcpu,
6179b1aa8d6SNeel Natu 	    ("%s: invalid vcpu state %d/%d", __func__, state, hostcpu));
6189b1aa8d6SNeel Natu #endif
6199b1aa8d6SNeel Natu 
6209b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
6219b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
6229b1aa8d6SNeel Natu 		if (mm->len != 0 && gpa >= mm->gpa && gpa < mm->gpa + mm->len)
6239b1aa8d6SNeel Natu 			return (true);		/* 'gpa' is sysmem or devmem */
624341f19c9SNeel Natu 	}
625341f19c9SNeel Natu 
626318224bbSNeel Natu 	if (ppt_is_mmio(vm, gpa))
6279b1aa8d6SNeel Natu 		return (true);			/* 'gpa' is pci passthru mmio */
628318224bbSNeel Natu 
6299b1aa8d6SNeel Natu 	return (false);
630341f19c9SNeel Natu }
631341f19c9SNeel Natu 
632341f19c9SNeel Natu int
6339b1aa8d6SNeel Natu vm_alloc_memseg(struct vm *vm, int ident, size_t len, bool sysmem)
634341f19c9SNeel Natu {
635318224bbSNeel Natu 	struct mem_seg *seg;
6369b1aa8d6SNeel Natu 	vm_object_t obj;
637366f6083SPeter Grehan 
6389b1aa8d6SNeel Natu 	if (ident < 0 || ident >= VM_MAX_MEMSEGS)
639341f19c9SNeel Natu 		return (EINVAL);
640341f19c9SNeel Natu 
6419b1aa8d6SNeel Natu 	if (len == 0 || (len & PAGE_MASK))
6429b1aa8d6SNeel Natu 		return (EINVAL);
643341f19c9SNeel Natu 
6449b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
6459b1aa8d6SNeel Natu 	if (seg->object != NULL) {
6469b1aa8d6SNeel Natu 		if (seg->len == len && seg->sysmem == sysmem)
6479b1aa8d6SNeel Natu 			return (EEXIST);
6489b1aa8d6SNeel Natu 		else
6499b1aa8d6SNeel Natu 			return (EINVAL);
650341f19c9SNeel Natu 	}
651341f19c9SNeel Natu 
6529b1aa8d6SNeel Natu 	obj = vm_object_allocate(OBJT_DEFAULT, len >> PAGE_SHIFT);
6539b1aa8d6SNeel Natu 	if (obj == NULL)
654318224bbSNeel Natu 		return (ENOMEM);
655318224bbSNeel Natu 
656318224bbSNeel Natu 	seg->len = len;
6579b1aa8d6SNeel Natu 	seg->object = obj;
6589b1aa8d6SNeel Natu 	seg->sysmem = sysmem;
659366f6083SPeter Grehan 	return (0);
660366f6083SPeter Grehan }
661366f6083SPeter Grehan 
6629b1aa8d6SNeel Natu int
6639b1aa8d6SNeel Natu vm_get_memseg(struct vm *vm, int ident, size_t *len, bool *sysmem,
6649b1aa8d6SNeel Natu     vm_object_t *objptr)
665477867a0SNeel Natu {
6669b1aa8d6SNeel Natu 	struct mem_seg *seg;
667477867a0SNeel Natu 
6689b1aa8d6SNeel Natu 	if (ident < 0 || ident >= VM_MAX_MEMSEGS)
6699b1aa8d6SNeel Natu 		return (EINVAL);
6709b1aa8d6SNeel Natu 
6719b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
6729b1aa8d6SNeel Natu 	if (len)
6739b1aa8d6SNeel Natu 		*len = seg->len;
6749b1aa8d6SNeel Natu 	if (sysmem)
6759b1aa8d6SNeel Natu 		*sysmem = seg->sysmem;
6769b1aa8d6SNeel Natu 	if (objptr)
6779b1aa8d6SNeel Natu 		*objptr = seg->object;
6789b1aa8d6SNeel Natu 	return (0);
679477867a0SNeel Natu }
6809b1aa8d6SNeel Natu 
6819b1aa8d6SNeel Natu void
6829b1aa8d6SNeel Natu vm_free_memseg(struct vm *vm, int ident)
6839b1aa8d6SNeel Natu {
6849b1aa8d6SNeel Natu 	struct mem_seg *seg;
6859b1aa8d6SNeel Natu 
6869b1aa8d6SNeel Natu 	KASSERT(ident >= 0 && ident < VM_MAX_MEMSEGS,
6879b1aa8d6SNeel Natu 	    ("%s: invalid memseg ident %d", __func__, ident));
6889b1aa8d6SNeel Natu 
6899b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
6909b1aa8d6SNeel Natu 	if (seg->object != NULL) {
6919b1aa8d6SNeel Natu 		vm_object_deallocate(seg->object);
6929b1aa8d6SNeel Natu 		bzero(seg, sizeof(struct mem_seg));
6939b1aa8d6SNeel Natu 	}
6949b1aa8d6SNeel Natu }
6959b1aa8d6SNeel Natu 
6969b1aa8d6SNeel Natu int
6979b1aa8d6SNeel Natu vm_mmap_memseg(struct vm *vm, vm_paddr_t gpa, int segid, vm_ooffset_t first,
6989b1aa8d6SNeel Natu     size_t len, int prot, int flags)
6999b1aa8d6SNeel Natu {
7009b1aa8d6SNeel Natu 	struct mem_seg *seg;
7019b1aa8d6SNeel Natu 	struct mem_map *m, *map;
7029b1aa8d6SNeel Natu 	vm_ooffset_t last;
7039b1aa8d6SNeel Natu 	int i, error;
7049b1aa8d6SNeel Natu 
7059b1aa8d6SNeel Natu 	if (prot == 0 || (prot & ~(VM_PROT_ALL)) != 0)
7069b1aa8d6SNeel Natu 		return (EINVAL);
7079b1aa8d6SNeel Natu 
7089b1aa8d6SNeel Natu 	if (flags & ~VM_MEMMAP_F_WIRED)
7099b1aa8d6SNeel Natu 		return (EINVAL);
7109b1aa8d6SNeel Natu 
7119b1aa8d6SNeel Natu 	if (segid < 0 || segid >= VM_MAX_MEMSEGS)
7129b1aa8d6SNeel Natu 		return (EINVAL);
7139b1aa8d6SNeel Natu 
7149b1aa8d6SNeel Natu 	seg = &vm->mem_segs[segid];
7159b1aa8d6SNeel Natu 	if (seg->object == NULL)
7169b1aa8d6SNeel Natu 		return (EINVAL);
7179b1aa8d6SNeel Natu 
7189b1aa8d6SNeel Natu 	last = first + len;
7199b1aa8d6SNeel Natu 	if (first < 0 || first >= last || last > seg->len)
7209b1aa8d6SNeel Natu 		return (EINVAL);
7219b1aa8d6SNeel Natu 
7229b1aa8d6SNeel Natu 	if ((gpa | first | last) & PAGE_MASK)
7239b1aa8d6SNeel Natu 		return (EINVAL);
7249b1aa8d6SNeel Natu 
7259b1aa8d6SNeel Natu 	map = NULL;
7269b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
7279b1aa8d6SNeel Natu 		m = &vm->mem_maps[i];
7289b1aa8d6SNeel Natu 		if (m->len == 0) {
7299b1aa8d6SNeel Natu 			map = m;
7309b1aa8d6SNeel Natu 			break;
7319b1aa8d6SNeel Natu 		}
7329b1aa8d6SNeel Natu 	}
7339b1aa8d6SNeel Natu 
7349b1aa8d6SNeel Natu 	if (map == NULL)
7359b1aa8d6SNeel Natu 		return (ENOSPC);
7369b1aa8d6SNeel Natu 
7379b1aa8d6SNeel Natu 	error = vm_map_find(&vm->vmspace->vm_map, seg->object, first, &gpa,
7389b1aa8d6SNeel Natu 	    len, 0, VMFS_NO_SPACE, prot, prot, 0);
7399b1aa8d6SNeel Natu 	if (error != KERN_SUCCESS)
7409b1aa8d6SNeel Natu 		return (EFAULT);
7419b1aa8d6SNeel Natu 
7429b1aa8d6SNeel Natu 	vm_object_reference(seg->object);
7439b1aa8d6SNeel Natu 
7449b1aa8d6SNeel Natu 	if (flags & VM_MEMMAP_F_WIRED) {
7459b1aa8d6SNeel Natu 		error = vm_map_wire(&vm->vmspace->vm_map, gpa, gpa + len,
7469b1aa8d6SNeel Natu 		    VM_MAP_WIRE_USER | VM_MAP_WIRE_NOHOLES);
7479b1aa8d6SNeel Natu 		if (error != KERN_SUCCESS) {
7489b1aa8d6SNeel Natu 			vm_map_remove(&vm->vmspace->vm_map, gpa, gpa + len);
7499b1aa8d6SNeel Natu 			return (EFAULT);
7509b1aa8d6SNeel Natu 		}
7519b1aa8d6SNeel Natu 	}
7529b1aa8d6SNeel Natu 
7539b1aa8d6SNeel Natu 	map->gpa = gpa;
7549b1aa8d6SNeel Natu 	map->len = len;
7559b1aa8d6SNeel Natu 	map->segoff = first;
7569b1aa8d6SNeel Natu 	map->segid = segid;
7579b1aa8d6SNeel Natu 	map->prot = prot;
7589b1aa8d6SNeel Natu 	map->flags = flags;
7599b1aa8d6SNeel Natu 	return (0);
7609b1aa8d6SNeel Natu }
7619b1aa8d6SNeel Natu 
7629b1aa8d6SNeel Natu int
7639b1aa8d6SNeel Natu vm_mmap_getnext(struct vm *vm, vm_paddr_t *gpa, int *segid,
7649b1aa8d6SNeel Natu     vm_ooffset_t *segoff, size_t *len, int *prot, int *flags)
7659b1aa8d6SNeel Natu {
7669b1aa8d6SNeel Natu 	struct mem_map *mm, *mmnext;
7679b1aa8d6SNeel Natu 	int i;
7689b1aa8d6SNeel Natu 
7699b1aa8d6SNeel Natu 	mmnext = NULL;
7709b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
7719b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
7729b1aa8d6SNeel Natu 		if (mm->len == 0 || mm->gpa < *gpa)
7739b1aa8d6SNeel Natu 			continue;
7749b1aa8d6SNeel Natu 		if (mmnext == NULL || mm->gpa < mmnext->gpa)
7759b1aa8d6SNeel Natu 			mmnext = mm;
7769b1aa8d6SNeel Natu 	}
7779b1aa8d6SNeel Natu 
7789b1aa8d6SNeel Natu 	if (mmnext != NULL) {
7799b1aa8d6SNeel Natu 		*gpa = mmnext->gpa;
7809b1aa8d6SNeel Natu 		if (segid)
7819b1aa8d6SNeel Natu 			*segid = mmnext->segid;
7829b1aa8d6SNeel Natu 		if (segoff)
7839b1aa8d6SNeel Natu 			*segoff = mmnext->segoff;
7849b1aa8d6SNeel Natu 		if (len)
7859b1aa8d6SNeel Natu 			*len = mmnext->len;
7869b1aa8d6SNeel Natu 		if (prot)
7879b1aa8d6SNeel Natu 			*prot = mmnext->prot;
7889b1aa8d6SNeel Natu 		if (flags)
7899b1aa8d6SNeel Natu 			*flags = mmnext->flags;
7909b1aa8d6SNeel Natu 		return (0);
7919b1aa8d6SNeel Natu 	} else {
7929b1aa8d6SNeel Natu 		return (ENOENT);
7939b1aa8d6SNeel Natu 	}
794477867a0SNeel Natu }
795477867a0SNeel Natu 
796318224bbSNeel Natu static void
7979b1aa8d6SNeel Natu vm_free_memmap(struct vm *vm, int ident)
798366f6083SPeter Grehan {
7999b1aa8d6SNeel Natu 	struct mem_map *mm;
8009b1aa8d6SNeel Natu 	int error;
8014db4fb2cSNeel Natu 
8029b1aa8d6SNeel Natu 	mm = &vm->mem_maps[ident];
8039b1aa8d6SNeel Natu 	if (mm->len) {
8049b1aa8d6SNeel Natu 		error = vm_map_remove(&vm->vmspace->vm_map, mm->gpa,
8059b1aa8d6SNeel Natu 		    mm->gpa + mm->len);
8069b1aa8d6SNeel Natu 		KASSERT(error == KERN_SUCCESS, ("%s: vm_map_remove error %d",
8079b1aa8d6SNeel Natu 		    __func__, error));
8089b1aa8d6SNeel Natu 		bzero(mm, sizeof(struct mem_map));
809318224bbSNeel Natu 	}
810318224bbSNeel Natu }
811318224bbSNeel Natu 
8129b1aa8d6SNeel Natu static __inline bool
8139b1aa8d6SNeel Natu sysmem_mapping(struct vm *vm, struct mem_map *mm)
814318224bbSNeel Natu {
815318224bbSNeel Natu 
8169b1aa8d6SNeel Natu 	if (mm->len != 0 && vm->mem_segs[mm->segid].sysmem)
8179b1aa8d6SNeel Natu 		return (true);
8189b1aa8d6SNeel Natu 	else
8199b1aa8d6SNeel Natu 		return (false);
820318224bbSNeel Natu }
821318224bbSNeel Natu 
8229b1aa8d6SNeel Natu static vm_paddr_t
8239b1aa8d6SNeel Natu sysmem_maxaddr(struct vm *vm)
8249b1aa8d6SNeel Natu {
8259b1aa8d6SNeel Natu 	struct mem_map *mm;
8269b1aa8d6SNeel Natu 	vm_paddr_t maxaddr;
8279b1aa8d6SNeel Natu 	int i;
828318224bbSNeel Natu 
8299b1aa8d6SNeel Natu 	maxaddr = 0;
8309b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
8319b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
8329b1aa8d6SNeel Natu 		if (sysmem_mapping(vm, mm)) {
8339b1aa8d6SNeel Natu 			if (maxaddr < mm->gpa + mm->len)
8349b1aa8d6SNeel Natu 				maxaddr = mm->gpa + mm->len;
8359b1aa8d6SNeel Natu 		}
8369b1aa8d6SNeel Natu 	}
8379b1aa8d6SNeel Natu 	return (maxaddr);
838318224bbSNeel Natu }
839318224bbSNeel Natu 
840318224bbSNeel Natu static void
841318224bbSNeel Natu vm_iommu_modify(struct vm *vm, boolean_t map)
842318224bbSNeel Natu {
843318224bbSNeel Natu 	int i, sz;
844318224bbSNeel Natu 	vm_paddr_t gpa, hpa;
8459b1aa8d6SNeel Natu 	struct mem_map *mm;
846318224bbSNeel Natu 	void *vp, *cookie, *host_domain;
847318224bbSNeel Natu 
848318224bbSNeel Natu 	sz = PAGE_SIZE;
849318224bbSNeel Natu 	host_domain = iommu_host_domain();
850318224bbSNeel Natu 
8519b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
8529b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
8539b1aa8d6SNeel Natu 		if (!sysmem_mapping(vm, mm))
8549b1aa8d6SNeel Natu 			continue;
855318224bbSNeel Natu 
8569b1aa8d6SNeel Natu 		if (map) {
8579b1aa8d6SNeel Natu 			KASSERT((mm->flags & VM_MEMMAP_F_IOMMU) == 0,
8589b1aa8d6SNeel Natu 			    ("iommu map found invalid memmap %#lx/%#lx/%#x",
8599b1aa8d6SNeel Natu 			    mm->gpa, mm->len, mm->flags));
8609b1aa8d6SNeel Natu 			if ((mm->flags & VM_MEMMAP_F_WIRED) == 0)
8619b1aa8d6SNeel Natu 				continue;
8629b1aa8d6SNeel Natu 			mm->flags |= VM_MEMMAP_F_IOMMU;
8639b1aa8d6SNeel Natu 		} else {
8649b1aa8d6SNeel Natu 			if ((mm->flags & VM_MEMMAP_F_IOMMU) == 0)
8659b1aa8d6SNeel Natu 				continue;
8669b1aa8d6SNeel Natu 			mm->flags &= ~VM_MEMMAP_F_IOMMU;
8679b1aa8d6SNeel Natu 			KASSERT((mm->flags & VM_MEMMAP_F_WIRED) != 0,
8689b1aa8d6SNeel Natu 			    ("iommu unmap found invalid memmap %#lx/%#lx/%#x",
8699b1aa8d6SNeel Natu 			    mm->gpa, mm->len, mm->flags));
8709b1aa8d6SNeel Natu 		}
8719b1aa8d6SNeel Natu 
8729b1aa8d6SNeel Natu 		gpa = mm->gpa;
8739b1aa8d6SNeel Natu 		while (gpa < mm->gpa + mm->len) {
8749b1aa8d6SNeel Natu 			vp = vm_gpa_hold(vm, -1, gpa, PAGE_SIZE, VM_PROT_WRITE,
875318224bbSNeel Natu 					 &cookie);
876318224bbSNeel Natu 			KASSERT(vp != NULL, ("vm(%s) could not map gpa %#lx",
877318224bbSNeel Natu 			    vm_name(vm), gpa));
878318224bbSNeel Natu 
879318224bbSNeel Natu 			vm_gpa_release(cookie);
880318224bbSNeel Natu 
881318224bbSNeel Natu 			hpa = DMAP_TO_PHYS((uintptr_t)vp);
882318224bbSNeel Natu 			if (map) {
883318224bbSNeel Natu 				iommu_create_mapping(vm->iommu, gpa, hpa, sz);
884318224bbSNeel Natu 				iommu_remove_mapping(host_domain, hpa, sz);
885318224bbSNeel Natu 			} else {
886318224bbSNeel Natu 				iommu_remove_mapping(vm->iommu, gpa, sz);
887318224bbSNeel Natu 				iommu_create_mapping(host_domain, hpa, hpa, sz);
888318224bbSNeel Natu 			}
889318224bbSNeel Natu 
890318224bbSNeel Natu 			gpa += PAGE_SIZE;
891318224bbSNeel Natu 		}
892318224bbSNeel Natu 	}
893318224bbSNeel Natu 
894318224bbSNeel Natu 	/*
895318224bbSNeel Natu 	 * Invalidate the cached translations associated with the domain
896318224bbSNeel Natu 	 * from which pages were removed.
897318224bbSNeel Natu 	 */
898318224bbSNeel Natu 	if (map)
899318224bbSNeel Natu 		iommu_invalidate_tlb(host_domain);
900318224bbSNeel Natu 	else
901318224bbSNeel Natu 		iommu_invalidate_tlb(vm->iommu);
902318224bbSNeel Natu }
903318224bbSNeel Natu 
904318224bbSNeel Natu #define	vm_iommu_unmap(vm)	vm_iommu_modify((vm), FALSE)
905318224bbSNeel Natu #define	vm_iommu_map(vm)	vm_iommu_modify((vm), TRUE)
906318224bbSNeel Natu 
907318224bbSNeel Natu int
908318224bbSNeel Natu vm_unassign_pptdev(struct vm *vm, int bus, int slot, int func)
909318224bbSNeel Natu {
910318224bbSNeel Natu 	int error;
911318224bbSNeel Natu 
912318224bbSNeel Natu 	error = ppt_unassign_device(vm, bus, slot, func);
913318224bbSNeel Natu 	if (error)
914318224bbSNeel Natu 		return (error);
915318224bbSNeel Natu 
9169b1aa8d6SNeel Natu 	if (ppt_assigned_devices(vm) == 0)
917318224bbSNeel Natu 		vm_iommu_unmap(vm);
9189b1aa8d6SNeel Natu 
919318224bbSNeel Natu 	return (0);
920318224bbSNeel Natu }
921318224bbSNeel Natu 
922318224bbSNeel Natu int
923318224bbSNeel Natu vm_assign_pptdev(struct vm *vm, int bus, int slot, int func)
924318224bbSNeel Natu {
925318224bbSNeel Natu 	int error;
926318224bbSNeel Natu 	vm_paddr_t maxaddr;
927318224bbSNeel Natu 
9289b1aa8d6SNeel Natu 	/* Set up the IOMMU to do the 'gpa' to 'hpa' translation */
92951f45d01SNeel Natu 	if (ppt_assigned_devices(vm) == 0) {
930318224bbSNeel Natu 		KASSERT(vm->iommu == NULL,
931318224bbSNeel Natu 		    ("vm_assign_pptdev: iommu must be NULL"));
9329b1aa8d6SNeel Natu 		maxaddr = sysmem_maxaddr(vm);
933318224bbSNeel Natu 		vm->iommu = iommu_create_domain(maxaddr);
934ffe1b10dSJohn Baldwin 		if (vm->iommu == NULL)
935ffe1b10dSJohn Baldwin 			return (ENXIO);
936318224bbSNeel Natu 		vm_iommu_map(vm);
937318224bbSNeel Natu 	}
938318224bbSNeel Natu 
939318224bbSNeel Natu 	error = ppt_assign_device(vm, bus, slot, func);
940318224bbSNeel Natu 	return (error);
941318224bbSNeel Natu }
942318224bbSNeel Natu 
943318224bbSNeel Natu void *
9449b1aa8d6SNeel Natu vm_gpa_hold(struct vm *vm, int vcpuid, vm_paddr_t gpa, size_t len, int reqprot,
945318224bbSNeel Natu 	    void **cookie)
946318224bbSNeel Natu {
9479b1aa8d6SNeel Natu 	int i, count, pageoff;
9489b1aa8d6SNeel Natu 	struct mem_map *mm;
949318224bbSNeel Natu 	vm_page_t m;
9509b1aa8d6SNeel Natu #ifdef INVARIANTS
9519b1aa8d6SNeel Natu 	/*
9529b1aa8d6SNeel Natu 	 * All vcpus are frozen by ioctls that modify the memory map
9539b1aa8d6SNeel Natu 	 * (e.g. VM_MMAP_MEMSEG). Therefore 'vm->memmap[]' stability is
9549b1aa8d6SNeel Natu 	 * guaranteed if at least one vcpu is in the VCPU_FROZEN state.
9559b1aa8d6SNeel Natu 	 */
9569b1aa8d6SNeel Natu 	int state;
9572de70600SJohn Baldwin 	KASSERT(vcpuid >= -1 && vcpuid < VM_MAXCPU, ("%s: invalid vcpuid %d",
9589b1aa8d6SNeel Natu 	    __func__, vcpuid));
9599b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAXCPU; i++) {
9609b1aa8d6SNeel Natu 		if (vcpuid != -1 && vcpuid != i)
9619b1aa8d6SNeel Natu 			continue;
9629b1aa8d6SNeel Natu 		state = vcpu_get_state(vm, i, NULL);
9639b1aa8d6SNeel Natu 		KASSERT(state == VCPU_FROZEN, ("%s: invalid vcpu state %d",
9649b1aa8d6SNeel Natu 		    __func__, state));
9659b1aa8d6SNeel Natu 	}
9669b1aa8d6SNeel Natu #endif
967318224bbSNeel Natu 	pageoff = gpa & PAGE_MASK;
968318224bbSNeel Natu 	if (len > PAGE_SIZE - pageoff)
969318224bbSNeel Natu 		panic("vm_gpa_hold: invalid gpa/len: 0x%016lx/%lu", gpa, len);
970318224bbSNeel Natu 
9719b1aa8d6SNeel Natu 	count = 0;
9729b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
9739b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
9749b1aa8d6SNeel Natu 		if (sysmem_mapping(vm, mm) && gpa >= mm->gpa &&
9759b1aa8d6SNeel Natu 		    gpa < mm->gpa + mm->len) {
976318224bbSNeel Natu 			count = vm_fault_quick_hold_pages(&vm->vmspace->vm_map,
977318224bbSNeel Natu 			    trunc_page(gpa), PAGE_SIZE, reqprot, &m, 1);
9789b1aa8d6SNeel Natu 			break;
9799b1aa8d6SNeel Natu 		}
9809b1aa8d6SNeel Natu 	}
981318224bbSNeel Natu 
982318224bbSNeel Natu 	if (count == 1) {
983318224bbSNeel Natu 		*cookie = m;
984318224bbSNeel Natu 		return ((void *)(PHYS_TO_DMAP(VM_PAGE_TO_PHYS(m)) + pageoff));
985318224bbSNeel Natu 	} else {
986318224bbSNeel Natu 		*cookie = NULL;
987318224bbSNeel Natu 		return (NULL);
988318224bbSNeel Natu 	}
989318224bbSNeel Natu }
990318224bbSNeel Natu 
991318224bbSNeel Natu void
992318224bbSNeel Natu vm_gpa_release(void *cookie)
993318224bbSNeel Natu {
994318224bbSNeel Natu 	vm_page_t m = cookie;
995318224bbSNeel Natu 
996318224bbSNeel Natu 	vm_page_lock(m);
997318224bbSNeel Natu 	vm_page_unhold(m);
998318224bbSNeel Natu 	vm_page_unlock(m);
999366f6083SPeter Grehan }
1000366f6083SPeter Grehan 
1001366f6083SPeter Grehan int
1002366f6083SPeter Grehan vm_get_register(struct vm *vm, int vcpu, int reg, uint64_t *retval)
1003366f6083SPeter Grehan {
1004366f6083SPeter Grehan 
1005366f6083SPeter Grehan 	if (vcpu < 0 || vcpu >= VM_MAXCPU)
1006366f6083SPeter Grehan 		return (EINVAL);
1007366f6083SPeter Grehan 
1008366f6083SPeter Grehan 	if (reg >= VM_REG_LAST)
1009366f6083SPeter Grehan 		return (EINVAL);
1010366f6083SPeter Grehan 
1011366f6083SPeter Grehan 	return (VMGETREG(vm->cookie, vcpu, reg, retval));
1012366f6083SPeter Grehan }
1013366f6083SPeter Grehan 
1014366f6083SPeter Grehan int
1015d087a399SNeel Natu vm_set_register(struct vm *vm, int vcpuid, int reg, uint64_t val)
1016366f6083SPeter Grehan {
1017d087a399SNeel Natu 	struct vcpu *vcpu;
1018d087a399SNeel Natu 	int error;
1019366f6083SPeter Grehan 
1020d087a399SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
1021366f6083SPeter Grehan 		return (EINVAL);
1022366f6083SPeter Grehan 
1023366f6083SPeter Grehan 	if (reg >= VM_REG_LAST)
1024366f6083SPeter Grehan 		return (EINVAL);
1025366f6083SPeter Grehan 
1026d087a399SNeel Natu 	error = VMSETREG(vm->cookie, vcpuid, reg, val);
1027d087a399SNeel Natu 	if (error || reg != VM_REG_GUEST_RIP)
1028d087a399SNeel Natu 		return (error);
1029d087a399SNeel Natu 
1030d087a399SNeel Natu 	/* Set 'nextrip' to match the value of %rip */
1031d087a399SNeel Natu 	VCPU_CTR1(vm, vcpuid, "Setting nextrip to %#lx", val);
1032d087a399SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1033d087a399SNeel Natu 	vcpu->nextrip = val;
1034d087a399SNeel Natu 	return (0);
1035366f6083SPeter Grehan }
1036366f6083SPeter Grehan 
1037366f6083SPeter Grehan static boolean_t
1038366f6083SPeter Grehan is_descriptor_table(int reg)
1039366f6083SPeter Grehan {
1040366f6083SPeter Grehan 
1041366f6083SPeter Grehan 	switch (reg) {
1042366f6083SPeter Grehan 	case VM_REG_GUEST_IDTR:
1043366f6083SPeter Grehan 	case VM_REG_GUEST_GDTR:
1044366f6083SPeter Grehan 		return (TRUE);
1045366f6083SPeter Grehan 	default:
1046366f6083SPeter Grehan 		return (FALSE);
1047366f6083SPeter Grehan 	}
1048366f6083SPeter Grehan }
1049366f6083SPeter Grehan 
1050366f6083SPeter Grehan static boolean_t
1051366f6083SPeter Grehan is_segment_register(int reg)
1052366f6083SPeter Grehan {
1053366f6083SPeter Grehan 
1054366f6083SPeter Grehan 	switch (reg) {
1055366f6083SPeter Grehan 	case VM_REG_GUEST_ES:
1056366f6083SPeter Grehan 	case VM_REG_GUEST_CS:
1057366f6083SPeter Grehan 	case VM_REG_GUEST_SS:
1058366f6083SPeter Grehan 	case VM_REG_GUEST_DS:
1059366f6083SPeter Grehan 	case VM_REG_GUEST_FS:
1060366f6083SPeter Grehan 	case VM_REG_GUEST_GS:
1061366f6083SPeter Grehan 	case VM_REG_GUEST_TR:
1062366f6083SPeter Grehan 	case VM_REG_GUEST_LDTR:
1063366f6083SPeter Grehan 		return (TRUE);
1064366f6083SPeter Grehan 	default:
1065366f6083SPeter Grehan 		return (FALSE);
1066366f6083SPeter Grehan 	}
1067366f6083SPeter Grehan }
1068366f6083SPeter Grehan 
1069366f6083SPeter Grehan int
1070366f6083SPeter Grehan vm_get_seg_desc(struct vm *vm, int vcpu, int reg,
1071366f6083SPeter Grehan 		struct seg_desc *desc)
1072366f6083SPeter Grehan {
1073366f6083SPeter Grehan 
1074366f6083SPeter Grehan 	if (vcpu < 0 || vcpu >= VM_MAXCPU)
1075366f6083SPeter Grehan 		return (EINVAL);
1076366f6083SPeter Grehan 
1077366f6083SPeter Grehan 	if (!is_segment_register(reg) && !is_descriptor_table(reg))
1078366f6083SPeter Grehan 		return (EINVAL);
1079366f6083SPeter Grehan 
1080366f6083SPeter Grehan 	return (VMGETDESC(vm->cookie, vcpu, reg, desc));
1081366f6083SPeter Grehan }
1082366f6083SPeter Grehan 
1083366f6083SPeter Grehan int
1084366f6083SPeter Grehan vm_set_seg_desc(struct vm *vm, int vcpu, int reg,
1085366f6083SPeter Grehan 		struct seg_desc *desc)
1086366f6083SPeter Grehan {
1087366f6083SPeter Grehan 	if (vcpu < 0 || vcpu >= VM_MAXCPU)
1088366f6083SPeter Grehan 		return (EINVAL);
1089366f6083SPeter Grehan 
1090366f6083SPeter Grehan 	if (!is_segment_register(reg) && !is_descriptor_table(reg))
1091366f6083SPeter Grehan 		return (EINVAL);
1092366f6083SPeter Grehan 
1093366f6083SPeter Grehan 	return (VMSETDESC(vm->cookie, vcpu, reg, desc));
1094366f6083SPeter Grehan }
1095366f6083SPeter Grehan 
1096366f6083SPeter Grehan static void
1097366f6083SPeter Grehan restore_guest_fpustate(struct vcpu *vcpu)
1098366f6083SPeter Grehan {
1099366f6083SPeter Grehan 
110038f1b189SPeter Grehan 	/* flush host state to the pcb */
110138f1b189SPeter Grehan 	fpuexit(curthread);
1102bd8572e0SNeel Natu 
1103bd8572e0SNeel Natu 	/* restore guest FPU state */
1104366f6083SPeter Grehan 	fpu_stop_emulating();
110538f1b189SPeter Grehan 	fpurestore(vcpu->guestfpu);
1106bd8572e0SNeel Natu 
1107abb023fbSJohn Baldwin 	/* restore guest XCR0 if XSAVE is enabled in the host */
1108abb023fbSJohn Baldwin 	if (rcr4() & CR4_XSAVE)
1109abb023fbSJohn Baldwin 		load_xcr(0, vcpu->guest_xcr0);
1110abb023fbSJohn Baldwin 
1111bd8572e0SNeel Natu 	/*
1112bd8572e0SNeel Natu 	 * The FPU is now "dirty" with the guest's state so turn on emulation
1113bd8572e0SNeel Natu 	 * to trap any access to the FPU by the host.
1114bd8572e0SNeel Natu 	 */
1115bd8572e0SNeel Natu 	fpu_start_emulating();
1116366f6083SPeter Grehan }
1117366f6083SPeter Grehan 
1118366f6083SPeter Grehan static void
1119366f6083SPeter Grehan save_guest_fpustate(struct vcpu *vcpu)
1120366f6083SPeter Grehan {
1121366f6083SPeter Grehan 
1122bd8572e0SNeel Natu 	if ((rcr0() & CR0_TS) == 0)
1123bd8572e0SNeel Natu 		panic("fpu emulation not enabled in host!");
1124bd8572e0SNeel Natu 
1125abb023fbSJohn Baldwin 	/* save guest XCR0 and restore host XCR0 */
1126abb023fbSJohn Baldwin 	if (rcr4() & CR4_XSAVE) {
1127abb023fbSJohn Baldwin 		vcpu->guest_xcr0 = rxcr(0);
1128abb023fbSJohn Baldwin 		load_xcr(0, vmm_get_host_xcr0());
1129abb023fbSJohn Baldwin 	}
1130abb023fbSJohn Baldwin 
1131bd8572e0SNeel Natu 	/* save guest FPU state */
1132bd8572e0SNeel Natu 	fpu_stop_emulating();
113338f1b189SPeter Grehan 	fpusave(vcpu->guestfpu);
1134366f6083SPeter Grehan 	fpu_start_emulating();
1135366f6083SPeter Grehan }
1136366f6083SPeter Grehan 
113761592433SNeel Natu static VMM_STAT(VCPU_IDLE_TICKS, "number of ticks vcpu was idle");
1138f76fc5d4SNeel Natu 
1139318224bbSNeel Natu static int
1140248e6799SNeel Natu vcpu_set_state_locked(struct vm *vm, int vcpuid, enum vcpu_state newstate,
1141f80330a8SNeel Natu     bool from_idle)
1142366f6083SPeter Grehan {
1143248e6799SNeel Natu 	struct vcpu *vcpu;
1144318224bbSNeel Natu 	int error;
1145366f6083SPeter Grehan 
1146248e6799SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1147318224bbSNeel Natu 	vcpu_assert_locked(vcpu);
1148366f6083SPeter Grehan 
1149f76fc5d4SNeel Natu 	/*
1150f80330a8SNeel Natu 	 * State transitions from the vmmdev_ioctl() must always begin from
1151f80330a8SNeel Natu 	 * the VCPU_IDLE state. This guarantees that there is only a single
1152f80330a8SNeel Natu 	 * ioctl() operating on a vcpu at any point.
1153f80330a8SNeel Natu 	 */
1154f80330a8SNeel Natu 	if (from_idle) {
1155248e6799SNeel Natu 		while (vcpu->state != VCPU_IDLE) {
1156248e6799SNeel Natu 			vcpu->reqidle = 1;
1157248e6799SNeel Natu 			vcpu_notify_event_locked(vcpu, false);
1158248e6799SNeel Natu 			VCPU_CTR1(vm, vcpuid, "vcpu state change from %s to "
1159248e6799SNeel Natu 			    "idle requested", vcpu_state2str(vcpu->state));
1160f80330a8SNeel Natu 			msleep_spin(&vcpu->state, &vcpu->mtx, "vmstat", hz);
1161248e6799SNeel Natu 		}
1162f80330a8SNeel Natu 	} else {
1163f80330a8SNeel Natu 		KASSERT(vcpu->state != VCPU_IDLE, ("invalid transition from "
1164f80330a8SNeel Natu 		    "vcpu idle state"));
1165f80330a8SNeel Natu 	}
1166f80330a8SNeel Natu 
1167ef39d7e9SNeel Natu 	if (vcpu->state == VCPU_RUNNING) {
1168ef39d7e9SNeel Natu 		KASSERT(vcpu->hostcpu == curcpu, ("curcpu %d and hostcpu %d "
1169ef39d7e9SNeel Natu 		    "mismatch for running vcpu", curcpu, vcpu->hostcpu));
1170ef39d7e9SNeel Natu 	} else {
1171ef39d7e9SNeel Natu 		KASSERT(vcpu->hostcpu == NOCPU, ("Invalid hostcpu %d for a "
1172ef39d7e9SNeel Natu 		    "vcpu that is not running", vcpu->hostcpu));
1173ef39d7e9SNeel Natu 	}
1174ef39d7e9SNeel Natu 
1175f80330a8SNeel Natu 	/*
1176318224bbSNeel Natu 	 * The following state transitions are allowed:
1177318224bbSNeel Natu 	 * IDLE -> FROZEN -> IDLE
1178318224bbSNeel Natu 	 * FROZEN -> RUNNING -> FROZEN
1179318224bbSNeel Natu 	 * FROZEN -> SLEEPING -> FROZEN
1180f76fc5d4SNeel Natu 	 */
1181318224bbSNeel Natu 	switch (vcpu->state) {
1182318224bbSNeel Natu 	case VCPU_IDLE:
1183318224bbSNeel Natu 	case VCPU_RUNNING:
1184318224bbSNeel Natu 	case VCPU_SLEEPING:
1185318224bbSNeel Natu 		error = (newstate != VCPU_FROZEN);
1186318224bbSNeel Natu 		break;
1187318224bbSNeel Natu 	case VCPU_FROZEN:
1188318224bbSNeel Natu 		error = (newstate == VCPU_FROZEN);
1189318224bbSNeel Natu 		break;
1190318224bbSNeel Natu 	default:
1191318224bbSNeel Natu 		error = 1;
1192318224bbSNeel Natu 		break;
1193318224bbSNeel Natu 	}
1194318224bbSNeel Natu 
1195f80330a8SNeel Natu 	if (error)
1196f80330a8SNeel Natu 		return (EBUSY);
1197318224bbSNeel Natu 
1198248e6799SNeel Natu 	VCPU_CTR2(vm, vcpuid, "vcpu state changed from %s to %s",
1199248e6799SNeel Natu 	    vcpu_state2str(vcpu->state), vcpu_state2str(newstate));
1200248e6799SNeel Natu 
1201f80330a8SNeel Natu 	vcpu->state = newstate;
1202ef39d7e9SNeel Natu 	if (newstate == VCPU_RUNNING)
1203ef39d7e9SNeel Natu 		vcpu->hostcpu = curcpu;
1204ef39d7e9SNeel Natu 	else
1205ef39d7e9SNeel Natu 		vcpu->hostcpu = NOCPU;
1206ef39d7e9SNeel Natu 
1207f80330a8SNeel Natu 	if (newstate == VCPU_IDLE)
1208f80330a8SNeel Natu 		wakeup(&vcpu->state);
1209f80330a8SNeel Natu 
1210f80330a8SNeel Natu 	return (0);
1211318224bbSNeel Natu }
1212318224bbSNeel Natu 
1213318224bbSNeel Natu static void
1214318224bbSNeel Natu vcpu_require_state(struct vm *vm, int vcpuid, enum vcpu_state newstate)
1215318224bbSNeel Natu {
1216318224bbSNeel Natu 	int error;
1217318224bbSNeel Natu 
1218f80330a8SNeel Natu 	if ((error = vcpu_set_state(vm, vcpuid, newstate, false)) != 0)
1219318224bbSNeel Natu 		panic("Error %d setting state to %d\n", error, newstate);
1220318224bbSNeel Natu }
1221318224bbSNeel Natu 
1222318224bbSNeel Natu static void
1223248e6799SNeel Natu vcpu_require_state_locked(struct vm *vm, int vcpuid, enum vcpu_state newstate)
1224318224bbSNeel Natu {
1225318224bbSNeel Natu 	int error;
1226318224bbSNeel Natu 
1227248e6799SNeel Natu 	if ((error = vcpu_set_state_locked(vm, vcpuid, newstate, false)) != 0)
1228318224bbSNeel Natu 		panic("Error %d setting state to %d", error, newstate);
1229318224bbSNeel Natu }
1230318224bbSNeel Natu 
12315b8a8cd1SNeel Natu static void
12325b8a8cd1SNeel Natu vm_set_rendezvous_func(struct vm *vm, vm_rendezvous_func_t func)
12335b8a8cd1SNeel Natu {
12345b8a8cd1SNeel Natu 
12355b8a8cd1SNeel Natu 	KASSERT(mtx_owned(&vm->rendezvous_mtx), ("rendezvous_mtx not locked"));
12365b8a8cd1SNeel Natu 
12375b8a8cd1SNeel Natu 	/*
12385b8a8cd1SNeel Natu 	 * Update 'rendezvous_func' and execute a write memory barrier to
12395b8a8cd1SNeel Natu 	 * ensure that it is visible across all host cpus. This is not needed
12405b8a8cd1SNeel Natu 	 * for correctness but it does ensure that all the vcpus will notice
12415b8a8cd1SNeel Natu 	 * that the rendezvous is requested immediately.
12425b8a8cd1SNeel Natu 	 */
12435b8a8cd1SNeel Natu 	vm->rendezvous_func = func;
12445b8a8cd1SNeel Natu 	wmb();
12455b8a8cd1SNeel Natu }
12465b8a8cd1SNeel Natu 
12475b8a8cd1SNeel Natu #define	RENDEZVOUS_CTR0(vm, vcpuid, fmt)				\
12485b8a8cd1SNeel Natu 	do {								\
12495b8a8cd1SNeel Natu 		if (vcpuid >= 0)					\
12505b8a8cd1SNeel Natu 			VCPU_CTR0(vm, vcpuid, fmt);			\
12515b8a8cd1SNeel Natu 		else							\
12525b8a8cd1SNeel Natu 			VM_CTR0(vm, fmt);				\
12535b8a8cd1SNeel Natu 	} while (0)
12545b8a8cd1SNeel Natu 
12555b8a8cd1SNeel Natu static void
12565b8a8cd1SNeel Natu vm_handle_rendezvous(struct vm *vm, int vcpuid)
12575b8a8cd1SNeel Natu {
12585b8a8cd1SNeel Natu 
12595b8a8cd1SNeel Natu 	KASSERT(vcpuid == -1 || (vcpuid >= 0 && vcpuid < VM_MAXCPU),
12605b8a8cd1SNeel Natu 	    ("vm_handle_rendezvous: invalid vcpuid %d", vcpuid));
12615b8a8cd1SNeel Natu 
12625b8a8cd1SNeel Natu 	mtx_lock(&vm->rendezvous_mtx);
12635b8a8cd1SNeel Natu 	while (vm->rendezvous_func != NULL) {
126422d822c6SNeel Natu 		/* 'rendezvous_req_cpus' must be a subset of 'active_cpus' */
126522d822c6SNeel Natu 		CPU_AND(&vm->rendezvous_req_cpus, &vm->active_cpus);
126622d822c6SNeel Natu 
12675b8a8cd1SNeel Natu 		if (vcpuid != -1 &&
126822d822c6SNeel Natu 		    CPU_ISSET(vcpuid, &vm->rendezvous_req_cpus) &&
126922d822c6SNeel Natu 		    !CPU_ISSET(vcpuid, &vm->rendezvous_done_cpus)) {
12705b8a8cd1SNeel Natu 			VCPU_CTR0(vm, vcpuid, "Calling rendezvous func");
12715b8a8cd1SNeel Natu 			(*vm->rendezvous_func)(vm, vcpuid, vm->rendezvous_arg);
12725b8a8cd1SNeel Natu 			CPU_SET(vcpuid, &vm->rendezvous_done_cpus);
12735b8a8cd1SNeel Natu 		}
12745b8a8cd1SNeel Natu 		if (CPU_CMP(&vm->rendezvous_req_cpus,
12755b8a8cd1SNeel Natu 		    &vm->rendezvous_done_cpus) == 0) {
12765b8a8cd1SNeel Natu 			VCPU_CTR0(vm, vcpuid, "Rendezvous completed");
12775b8a8cd1SNeel Natu 			vm_set_rendezvous_func(vm, NULL);
12785b8a8cd1SNeel Natu 			wakeup(&vm->rendezvous_func);
12795b8a8cd1SNeel Natu 			break;
12805b8a8cd1SNeel Natu 		}
12815b8a8cd1SNeel Natu 		RENDEZVOUS_CTR0(vm, vcpuid, "Wait for rendezvous completion");
12825b8a8cd1SNeel Natu 		mtx_sleep(&vm->rendezvous_func, &vm->rendezvous_mtx, 0,
12835b8a8cd1SNeel Natu 		    "vmrndv", 0);
12845b8a8cd1SNeel Natu 	}
12855b8a8cd1SNeel Natu 	mtx_unlock(&vm->rendezvous_mtx);
12865b8a8cd1SNeel Natu }
12875b8a8cd1SNeel Natu 
1288318224bbSNeel Natu /*
1289318224bbSNeel Natu  * Emulate a guest 'hlt' by sleeping until the vcpu is ready to run.
1290318224bbSNeel Natu  */
1291318224bbSNeel Natu static int
1292becd9849SNeel Natu vm_handle_hlt(struct vm *vm, int vcpuid, bool intr_disabled, bool *retu)
1293318224bbSNeel Natu {
1294318224bbSNeel Natu 	struct vcpu *vcpu;
1295c6a0cc2eSNeel Natu 	const char *wmesg;
12962ce12423SNeel Natu 	int t, vcpu_halted, vm_halted;
1297e50ce2aaSNeel Natu 
1298e50ce2aaSNeel Natu 	KASSERT(!CPU_ISSET(vcpuid, &vm->halted_cpus), ("vcpu already halted"));
1299318224bbSNeel Natu 
1300318224bbSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1301e50ce2aaSNeel Natu 	vcpu_halted = 0;
1302e50ce2aaSNeel Natu 	vm_halted = 0;
1303318224bbSNeel Natu 
1304f76fc5d4SNeel Natu 	vcpu_lock(vcpu);
1305c6a0cc2eSNeel Natu 	while (1) {
1306f76fc5d4SNeel Natu 		/*
1307f76fc5d4SNeel Natu 		 * Do a final check for pending NMI or interrupts before
1308c6a0cc2eSNeel Natu 		 * really putting this thread to sleep. Also check for
1309c6a0cc2eSNeel Natu 		 * software events that would cause this vcpu to wakeup.
1310f76fc5d4SNeel Natu 		 *
1311c6a0cc2eSNeel Natu 		 * These interrupts/events could have happened after the
1312c6a0cc2eSNeel Natu 		 * vcpu returned from VMRUN() and before it acquired the
1313c6a0cc2eSNeel Natu 		 * vcpu lock above.
1314f76fc5d4SNeel Natu 		 */
1315248e6799SNeel Natu 		if (vm->rendezvous_func != NULL || vm->suspend || vcpu->reqidle)
1316c6a0cc2eSNeel Natu 			break;
1317c6a0cc2eSNeel Natu 		if (vm_nmi_pending(vm, vcpuid))
1318c6a0cc2eSNeel Natu 			break;
1319c6a0cc2eSNeel Natu 		if (!intr_disabled) {
1320c6a0cc2eSNeel Natu 			if (vm_extint_pending(vm, vcpuid) ||
1321c6a0cc2eSNeel Natu 			    vlapic_pending_intr(vcpu->vlapic, NULL)) {
1322c6a0cc2eSNeel Natu 				break;
1323c6a0cc2eSNeel Natu 			}
1324c6a0cc2eSNeel Natu 		}
1325c6a0cc2eSNeel Natu 
1326f008d157SNeel Natu 		/* Don't go to sleep if the vcpu thread needs to yield */
1327f008d157SNeel Natu 		if (vcpu_should_yield(vm, vcpuid))
1328f008d157SNeel Natu 			break;
1329f008d157SNeel Natu 
1330fc276d92SJohn Baldwin 		if (vcpu_debugged(vm, vcpuid))
1331fc276d92SJohn Baldwin 			break;
1332fc276d92SJohn Baldwin 
1333e50ce2aaSNeel Natu 		/*
1334e50ce2aaSNeel Natu 		 * Some Linux guests implement "halt" by having all vcpus
1335e50ce2aaSNeel Natu 		 * execute HLT with interrupts disabled. 'halted_cpus' keeps
1336e50ce2aaSNeel Natu 		 * track of the vcpus that have entered this state. When all
1337e50ce2aaSNeel Natu 		 * vcpus enter the halted state the virtual machine is halted.
1338e50ce2aaSNeel Natu 		 */
1339e50ce2aaSNeel Natu 		if (intr_disabled) {
1340c6a0cc2eSNeel Natu 			wmesg = "vmhalt";
1341e50ce2aaSNeel Natu 			VCPU_CTR0(vm, vcpuid, "Halted");
1342055fc2cbSNeel Natu 			if (!vcpu_halted && halt_detection_enabled) {
1343e50ce2aaSNeel Natu 				vcpu_halted = 1;
1344e50ce2aaSNeel Natu 				CPU_SET_ATOMIC(vcpuid, &vm->halted_cpus);
1345e50ce2aaSNeel Natu 			}
1346e50ce2aaSNeel Natu 			if (CPU_CMP(&vm->halted_cpus, &vm->active_cpus) == 0) {
1347e50ce2aaSNeel Natu 				vm_halted = 1;
1348e50ce2aaSNeel Natu 				break;
1349e50ce2aaSNeel Natu 			}
1350e50ce2aaSNeel Natu 		} else {
1351e50ce2aaSNeel Natu 			wmesg = "vmidle";
1352e50ce2aaSNeel Natu 		}
1353c6a0cc2eSNeel Natu 
1354f76fc5d4SNeel Natu 		t = ticks;
1355248e6799SNeel Natu 		vcpu_require_state_locked(vm, vcpuid, VCPU_SLEEPING);
1356f008d157SNeel Natu 		/*
1357f008d157SNeel Natu 		 * XXX msleep_spin() cannot be interrupted by signals so
1358f008d157SNeel Natu 		 * wake up periodically to check pending signals.
1359f008d157SNeel Natu 		 */
1360f008d157SNeel Natu 		msleep_spin(vcpu, &vcpu->mtx, wmesg, hz);
1361248e6799SNeel Natu 		vcpu_require_state_locked(vm, vcpuid, VCPU_FROZEN);
1362f76fc5d4SNeel Natu 		vmm_stat_incr(vm, vcpuid, VCPU_IDLE_TICKS, ticks - t);
1363f76fc5d4SNeel Natu 	}
1364e50ce2aaSNeel Natu 
1365e50ce2aaSNeel Natu 	if (vcpu_halted)
1366e50ce2aaSNeel Natu 		CPU_CLR_ATOMIC(vcpuid, &vm->halted_cpus);
1367e50ce2aaSNeel Natu 
1368f76fc5d4SNeel Natu 	vcpu_unlock(vcpu);
1369f76fc5d4SNeel Natu 
1370e50ce2aaSNeel Natu 	if (vm_halted)
1371e50ce2aaSNeel Natu 		vm_suspend(vm, VM_SUSPEND_HALT);
1372e50ce2aaSNeel Natu 
1373318224bbSNeel Natu 	return (0);
1374318224bbSNeel Natu }
1375318224bbSNeel Natu 
1376318224bbSNeel Natu static int
1377becd9849SNeel Natu vm_handle_paging(struct vm *vm, int vcpuid, bool *retu)
1378318224bbSNeel Natu {
1379318224bbSNeel Natu 	int rv, ftype;
1380318224bbSNeel Natu 	struct vm_map *map;
1381318224bbSNeel Natu 	struct vcpu *vcpu;
1382318224bbSNeel Natu 	struct vm_exit *vme;
1383318224bbSNeel Natu 
1384318224bbSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1385318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1386318224bbSNeel Natu 
1387d087a399SNeel Natu 	KASSERT(vme->inst_length == 0, ("%s: invalid inst_length %d",
1388d087a399SNeel Natu 	    __func__, vme->inst_length));
1389d087a399SNeel Natu 
1390318224bbSNeel Natu 	ftype = vme->u.paging.fault_type;
1391318224bbSNeel Natu 	KASSERT(ftype == VM_PROT_READ ||
1392318224bbSNeel Natu 	    ftype == VM_PROT_WRITE || ftype == VM_PROT_EXECUTE,
1393318224bbSNeel Natu 	    ("vm_handle_paging: invalid fault_type %d", ftype));
1394318224bbSNeel Natu 
1395318224bbSNeel Natu 	if (ftype == VM_PROT_READ || ftype == VM_PROT_WRITE) {
1396318224bbSNeel Natu 		rv = pmap_emulate_accessed_dirty(vmspace_pmap(vm->vmspace),
1397318224bbSNeel Natu 		    vme->u.paging.gpa, ftype);
13989d8d8e3eSNeel Natu 		if (rv == 0) {
13999d8d8e3eSNeel Natu 			VCPU_CTR2(vm, vcpuid, "%s bit emulation for gpa %#lx",
14009d8d8e3eSNeel Natu 			    ftype == VM_PROT_READ ? "accessed" : "dirty",
14019d8d8e3eSNeel Natu 			    vme->u.paging.gpa);
1402318224bbSNeel Natu 			goto done;
1403318224bbSNeel Natu 		}
14049d8d8e3eSNeel Natu 	}
1405318224bbSNeel Natu 
1406318224bbSNeel Natu 	map = &vm->vmspace->vm_map;
1407318224bbSNeel Natu 	rv = vm_fault(map, vme->u.paging.gpa, ftype, VM_FAULT_NORMAL);
1408318224bbSNeel Natu 
1409513c8d33SNeel Natu 	VCPU_CTR3(vm, vcpuid, "vm_handle_paging rv = %d, gpa = %#lx, "
1410513c8d33SNeel Natu 	    "ftype = %d", rv, vme->u.paging.gpa, ftype);
1411318224bbSNeel Natu 
1412318224bbSNeel Natu 	if (rv != KERN_SUCCESS)
1413318224bbSNeel Natu 		return (EFAULT);
1414318224bbSNeel Natu done:
1415318224bbSNeel Natu 	return (0);
1416318224bbSNeel Natu }
1417318224bbSNeel Natu 
1418318224bbSNeel Natu static int
1419becd9849SNeel Natu vm_handle_inst_emul(struct vm *vm, int vcpuid, bool *retu)
1420318224bbSNeel Natu {
1421318224bbSNeel Natu 	struct vie *vie;
1422318224bbSNeel Natu 	struct vcpu *vcpu;
1423318224bbSNeel Natu 	struct vm_exit *vme;
1424e4f605eeSTycho Nightingale 	uint64_t gla, gpa, cs_base;
1425e813a873SNeel Natu 	struct vm_guest_paging *paging;
1426565bbb86SNeel Natu 	mem_region_read_t mread;
1427565bbb86SNeel Natu 	mem_region_write_t mwrite;
1428f7a9f178SNeel Natu 	enum vm_cpu_mode cpu_mode;
14291c73ea3eSNeel Natu 	int cs_d, error, fault;
1430318224bbSNeel Natu 
1431318224bbSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1432318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1433318224bbSNeel Natu 
14341c73ea3eSNeel Natu 	KASSERT(vme->inst_length == 0, ("%s: invalid inst_length %d",
14351c73ea3eSNeel Natu 	    __func__, vme->inst_length));
14361c73ea3eSNeel Natu 
1437318224bbSNeel Natu 	gla = vme->u.inst_emul.gla;
1438318224bbSNeel Natu 	gpa = vme->u.inst_emul.gpa;
1439e4f605eeSTycho Nightingale 	cs_base = vme->u.inst_emul.cs_base;
1440f7a9f178SNeel Natu 	cs_d = vme->u.inst_emul.cs_d;
1441318224bbSNeel Natu 	vie = &vme->u.inst_emul.vie;
1442e813a873SNeel Natu 	paging = &vme->u.inst_emul.paging;
1443f7a9f178SNeel Natu 	cpu_mode = paging->cpu_mode;
1444318224bbSNeel Natu 
14459d8d8e3eSNeel Natu 	VCPU_CTR1(vm, vcpuid, "inst_emul fault accessing gpa %#lx", gpa);
14469d8d8e3eSNeel Natu 
1447318224bbSNeel Natu 	/* Fetch, decode and emulate the faulting instruction */
1448c2a875f9SNeel Natu 	if (vie->num_valid == 0) {
1449e4f605eeSTycho Nightingale 		error = vmm_fetch_instruction(vm, vcpuid, paging, vme->rip +
14501c73ea3eSNeel Natu 		    cs_base, VIE_INST_SIZE, vie, &fault);
1451c2a875f9SNeel Natu 	} else {
1452c2a875f9SNeel Natu 		/*
1453c2a875f9SNeel Natu 		 * The instruction bytes have already been copied into 'vie'
1454c2a875f9SNeel Natu 		 */
14559c4d5478SNeel Natu 		error = fault = 0;
1456c2a875f9SNeel Natu 	}
14579c4d5478SNeel Natu 	if (error || fault)
14589c4d5478SNeel Natu 		return (error);
1459318224bbSNeel Natu 
1460c07a0648SNeel Natu 	if (vmm_decode_instruction(vm, vcpuid, gla, cpu_mode, cs_d, vie) != 0) {
1461c07a0648SNeel Natu 		VCPU_CTR1(vm, vcpuid, "Error decoding instruction at %#lx",
1462c07a0648SNeel Natu 		    vme->rip + cs_base);
1463c07a0648SNeel Natu 		*retu = true;	    /* dump instruction bytes in userspace */
1464c07a0648SNeel Natu 		return (0);
1465c07a0648SNeel Natu 	}
1466318224bbSNeel Natu 
1467a0b78f09SPeter Grehan 	/*
14681c73ea3eSNeel Natu 	 * Update 'nextrip' based on the length of the emulated instruction.
1469a0b78f09SPeter Grehan 	 */
1470a0b78f09SPeter Grehan 	vme->inst_length = vie->num_processed;
1471d087a399SNeel Natu 	vcpu->nextrip += vie->num_processed;
14721c73ea3eSNeel Natu 	VCPU_CTR1(vm, vcpuid, "nextrip updated to %#lx after instruction "
14731c73ea3eSNeel Natu 	    "decoding", vcpu->nextrip);
1474a0b78f09SPeter Grehan 
147508e3ff32SNeel Natu 	/* return to userland unless this is an in-kernel emulated device */
1476565bbb86SNeel Natu 	if (gpa >= DEFAULT_APIC_BASE && gpa < DEFAULT_APIC_BASE + PAGE_SIZE) {
1477565bbb86SNeel Natu 		mread = lapic_mmio_read;
1478565bbb86SNeel Natu 		mwrite = lapic_mmio_write;
1479565bbb86SNeel Natu 	} else if (gpa >= VIOAPIC_BASE && gpa < VIOAPIC_BASE + VIOAPIC_SIZE) {
1480565bbb86SNeel Natu 		mread = vioapic_mmio_read;
1481565bbb86SNeel Natu 		mwrite = vioapic_mmio_write;
148208e3ff32SNeel Natu 	} else if (gpa >= VHPET_BASE && gpa < VHPET_BASE + VHPET_SIZE) {
148308e3ff32SNeel Natu 		mread = vhpet_mmio_read;
148408e3ff32SNeel Natu 		mwrite = vhpet_mmio_write;
1485565bbb86SNeel Natu 	} else {
1486becd9849SNeel Natu 		*retu = true;
1487318224bbSNeel Natu 		return (0);
1488318224bbSNeel Natu 	}
1489318224bbSNeel Natu 
1490d665d229SNeel Natu 	error = vmm_emulate_instruction(vm, vcpuid, gpa, vie, paging,
1491d665d229SNeel Natu 	    mread, mwrite, retu);
1492318224bbSNeel Natu 
1493318224bbSNeel Natu 	return (error);
1494318224bbSNeel Natu }
1495318224bbSNeel Natu 
1496b15a09c0SNeel Natu static int
1497b15a09c0SNeel Natu vm_handle_suspend(struct vm *vm, int vcpuid, bool *retu)
1498b15a09c0SNeel Natu {
1499b15a09c0SNeel Natu 	int i, done;
1500b15a09c0SNeel Natu 	struct vcpu *vcpu;
1501b15a09c0SNeel Natu 
1502b15a09c0SNeel Natu 	done = 0;
1503b15a09c0SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1504b15a09c0SNeel Natu 
1505b15a09c0SNeel Natu 	CPU_SET_ATOMIC(vcpuid, &vm->suspended_cpus);
1506b15a09c0SNeel Natu 
1507b15a09c0SNeel Natu 	/*
1508b15a09c0SNeel Natu 	 * Wait until all 'active_cpus' have suspended themselves.
1509b15a09c0SNeel Natu 	 *
1510b15a09c0SNeel Natu 	 * Since a VM may be suspended at any time including when one or
1511b15a09c0SNeel Natu 	 * more vcpus are doing a rendezvous we need to call the rendezvous
1512b15a09c0SNeel Natu 	 * handler while we are waiting to prevent a deadlock.
1513b15a09c0SNeel Natu 	 */
1514b15a09c0SNeel Natu 	vcpu_lock(vcpu);
1515b15a09c0SNeel Natu 	while (1) {
1516b15a09c0SNeel Natu 		if (CPU_CMP(&vm->suspended_cpus, &vm->active_cpus) == 0) {
1517b15a09c0SNeel Natu 			VCPU_CTR0(vm, vcpuid, "All vcpus suspended");
1518b15a09c0SNeel Natu 			break;
1519b15a09c0SNeel Natu 		}
1520b15a09c0SNeel Natu 
1521b15a09c0SNeel Natu 		if (vm->rendezvous_func == NULL) {
1522b15a09c0SNeel Natu 			VCPU_CTR0(vm, vcpuid, "Sleeping during suspend");
1523248e6799SNeel Natu 			vcpu_require_state_locked(vm, vcpuid, VCPU_SLEEPING);
1524b15a09c0SNeel Natu 			msleep_spin(vcpu, &vcpu->mtx, "vmsusp", hz);
1525248e6799SNeel Natu 			vcpu_require_state_locked(vm, vcpuid, VCPU_FROZEN);
1526b15a09c0SNeel Natu 		} else {
1527b15a09c0SNeel Natu 			VCPU_CTR0(vm, vcpuid, "Rendezvous during suspend");
1528b15a09c0SNeel Natu 			vcpu_unlock(vcpu);
1529b15a09c0SNeel Natu 			vm_handle_rendezvous(vm, vcpuid);
1530b15a09c0SNeel Natu 			vcpu_lock(vcpu);
1531b15a09c0SNeel Natu 		}
1532b15a09c0SNeel Natu 	}
1533b15a09c0SNeel Natu 	vcpu_unlock(vcpu);
1534b15a09c0SNeel Natu 
1535b15a09c0SNeel Natu 	/*
1536b15a09c0SNeel Natu 	 * Wakeup the other sleeping vcpus and return to userspace.
1537b15a09c0SNeel Natu 	 */
1538b15a09c0SNeel Natu 	for (i = 0; i < VM_MAXCPU; i++) {
1539b15a09c0SNeel Natu 		if (CPU_ISSET(i, &vm->suspended_cpus)) {
1540b15a09c0SNeel Natu 			vcpu_notify_event(vm, i, false);
1541b15a09c0SNeel Natu 		}
1542b15a09c0SNeel Natu 	}
1543b15a09c0SNeel Natu 
1544b15a09c0SNeel Natu 	*retu = true;
1545b15a09c0SNeel Natu 	return (0);
1546b15a09c0SNeel Natu }
1547b15a09c0SNeel Natu 
1548248e6799SNeel Natu static int
1549248e6799SNeel Natu vm_handle_reqidle(struct vm *vm, int vcpuid, bool *retu)
1550248e6799SNeel Natu {
1551248e6799SNeel Natu 	struct vcpu *vcpu = &vm->vcpu[vcpuid];
1552248e6799SNeel Natu 
1553248e6799SNeel Natu 	vcpu_lock(vcpu);
1554248e6799SNeel Natu 	KASSERT(vcpu->reqidle, ("invalid vcpu reqidle %d", vcpu->reqidle));
1555248e6799SNeel Natu 	vcpu->reqidle = 0;
1556248e6799SNeel Natu 	vcpu_unlock(vcpu);
1557248e6799SNeel Natu 	*retu = true;
1558248e6799SNeel Natu 	return (0);
1559248e6799SNeel Natu }
1560248e6799SNeel Natu 
1561b15a09c0SNeel Natu int
1562f0fdcfe2SNeel Natu vm_suspend(struct vm *vm, enum vm_suspend_how how)
1563b15a09c0SNeel Natu {
1564f0fdcfe2SNeel Natu 	int i;
1565b15a09c0SNeel Natu 
1566f0fdcfe2SNeel Natu 	if (how <= VM_SUSPEND_NONE || how >= VM_SUSPEND_LAST)
1567f0fdcfe2SNeel Natu 		return (EINVAL);
1568f0fdcfe2SNeel Natu 
1569f0fdcfe2SNeel Natu 	if (atomic_cmpset_int(&vm->suspend, 0, how) == 0) {
1570f0fdcfe2SNeel Natu 		VM_CTR2(vm, "virtual machine already suspended %d/%d",
1571f0fdcfe2SNeel Natu 		    vm->suspend, how);
1572b15a09c0SNeel Natu 		return (EALREADY);
1573b15a09c0SNeel Natu 	}
1574f0fdcfe2SNeel Natu 
1575f0fdcfe2SNeel Natu 	VM_CTR1(vm, "virtual machine successfully suspended %d", how);
1576f0fdcfe2SNeel Natu 
1577f0fdcfe2SNeel Natu 	/*
1578f0fdcfe2SNeel Natu 	 * Notify all active vcpus that they are now suspended.
1579f0fdcfe2SNeel Natu 	 */
1580f0fdcfe2SNeel Natu 	for (i = 0; i < VM_MAXCPU; i++) {
1581f0fdcfe2SNeel Natu 		if (CPU_ISSET(i, &vm->active_cpus))
1582f0fdcfe2SNeel Natu 			vcpu_notify_event(vm, i, false);
1583f0fdcfe2SNeel Natu 	}
1584f0fdcfe2SNeel Natu 
1585f0fdcfe2SNeel Natu 	return (0);
1586f0fdcfe2SNeel Natu }
1587f0fdcfe2SNeel Natu 
1588f0fdcfe2SNeel Natu void
1589f0fdcfe2SNeel Natu vm_exit_suspended(struct vm *vm, int vcpuid, uint64_t rip)
1590f0fdcfe2SNeel Natu {
1591f0fdcfe2SNeel Natu 	struct vm_exit *vmexit;
1592f0fdcfe2SNeel Natu 
1593f0fdcfe2SNeel Natu 	KASSERT(vm->suspend > VM_SUSPEND_NONE && vm->suspend < VM_SUSPEND_LAST,
1594f0fdcfe2SNeel Natu 	    ("vm_exit_suspended: invalid suspend type %d", vm->suspend));
1595f0fdcfe2SNeel Natu 
1596f0fdcfe2SNeel Natu 	vmexit = vm_exitinfo(vm, vcpuid);
1597f0fdcfe2SNeel Natu 	vmexit->rip = rip;
1598f0fdcfe2SNeel Natu 	vmexit->inst_length = 0;
1599f0fdcfe2SNeel Natu 	vmexit->exitcode = VM_EXITCODE_SUSPENDED;
1600f0fdcfe2SNeel Natu 	vmexit->u.suspended.how = vm->suspend;
1601b15a09c0SNeel Natu }
1602b15a09c0SNeel Natu 
160340487465SNeel Natu void
1604fc276d92SJohn Baldwin vm_exit_debug(struct vm *vm, int vcpuid, uint64_t rip)
1605fc276d92SJohn Baldwin {
1606fc276d92SJohn Baldwin 	struct vm_exit *vmexit;
1607fc276d92SJohn Baldwin 
1608fc276d92SJohn Baldwin 	vmexit = vm_exitinfo(vm, vcpuid);
1609fc276d92SJohn Baldwin 	vmexit->rip = rip;
1610fc276d92SJohn Baldwin 	vmexit->inst_length = 0;
1611fc276d92SJohn Baldwin 	vmexit->exitcode = VM_EXITCODE_DEBUG;
1612fc276d92SJohn Baldwin }
1613fc276d92SJohn Baldwin 
1614fc276d92SJohn Baldwin void
161540487465SNeel Natu vm_exit_rendezvous(struct vm *vm, int vcpuid, uint64_t rip)
161640487465SNeel Natu {
161740487465SNeel Natu 	struct vm_exit *vmexit;
161840487465SNeel Natu 
161940487465SNeel Natu 	KASSERT(vm->rendezvous_func != NULL, ("rendezvous not in progress"));
162040487465SNeel Natu 
162140487465SNeel Natu 	vmexit = vm_exitinfo(vm, vcpuid);
162240487465SNeel Natu 	vmexit->rip = rip;
162340487465SNeel Natu 	vmexit->inst_length = 0;
162440487465SNeel Natu 	vmexit->exitcode = VM_EXITCODE_RENDEZVOUS;
162540487465SNeel Natu 	vmm_stat_incr(vm, vcpuid, VMEXIT_RENDEZVOUS, 1);
162640487465SNeel Natu }
162740487465SNeel Natu 
162840487465SNeel Natu void
1629248e6799SNeel Natu vm_exit_reqidle(struct vm *vm, int vcpuid, uint64_t rip)
1630248e6799SNeel Natu {
1631248e6799SNeel Natu 	struct vm_exit *vmexit;
1632248e6799SNeel Natu 
1633248e6799SNeel Natu 	vmexit = vm_exitinfo(vm, vcpuid);
1634248e6799SNeel Natu 	vmexit->rip = rip;
1635248e6799SNeel Natu 	vmexit->inst_length = 0;
1636248e6799SNeel Natu 	vmexit->exitcode = VM_EXITCODE_REQIDLE;
1637248e6799SNeel Natu 	vmm_stat_incr(vm, vcpuid, VMEXIT_REQIDLE, 1);
1638248e6799SNeel Natu }
1639248e6799SNeel Natu 
1640248e6799SNeel Natu void
164140487465SNeel Natu vm_exit_astpending(struct vm *vm, int vcpuid, uint64_t rip)
164240487465SNeel Natu {
164340487465SNeel Natu 	struct vm_exit *vmexit;
164440487465SNeel Natu 
164540487465SNeel Natu 	vmexit = vm_exitinfo(vm, vcpuid);
164640487465SNeel Natu 	vmexit->rip = rip;
164740487465SNeel Natu 	vmexit->inst_length = 0;
164840487465SNeel Natu 	vmexit->exitcode = VM_EXITCODE_BOGUS;
164940487465SNeel Natu 	vmm_stat_incr(vm, vcpuid, VMEXIT_ASTPENDING, 1);
165040487465SNeel Natu }
165140487465SNeel Natu 
1652318224bbSNeel Natu int
1653318224bbSNeel Natu vm_run(struct vm *vm, struct vm_run *vmrun)
1654318224bbSNeel Natu {
1655248e6799SNeel Natu 	struct vm_eventinfo evinfo;
1656318224bbSNeel Natu 	int error, vcpuid;
1657318224bbSNeel Natu 	struct vcpu *vcpu;
1658318224bbSNeel Natu 	struct pcb *pcb;
1659d087a399SNeel Natu 	uint64_t tscval;
1660318224bbSNeel Natu 	struct vm_exit *vme;
1661becd9849SNeel Natu 	bool retu, intr_disabled;
1662318224bbSNeel Natu 	pmap_t pmap;
1663318224bbSNeel Natu 
1664318224bbSNeel Natu 	vcpuid = vmrun->cpuid;
1665318224bbSNeel Natu 
1666318224bbSNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
1667318224bbSNeel Natu 		return (EINVAL);
1668318224bbSNeel Natu 
166995ebc360SNeel Natu 	if (!CPU_ISSET(vcpuid, &vm->active_cpus))
167095ebc360SNeel Natu 		return (EINVAL);
167195ebc360SNeel Natu 
167295ebc360SNeel Natu 	if (CPU_ISSET(vcpuid, &vm->suspended_cpus))
167395ebc360SNeel Natu 		return (EINVAL);
167495ebc360SNeel Natu 
1675318224bbSNeel Natu 	pmap = vmspace_pmap(vm->vmspace);
1676318224bbSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1677318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1678248e6799SNeel Natu 	evinfo.rptr = &vm->rendezvous_func;
1679248e6799SNeel Natu 	evinfo.sptr = &vm->suspend;
1680248e6799SNeel Natu 	evinfo.iptr = &vcpu->reqidle;
1681318224bbSNeel Natu restart:
1682318224bbSNeel Natu 	critical_enter();
1683318224bbSNeel Natu 
1684318224bbSNeel Natu 	KASSERT(!CPU_ISSET(curcpu, &pmap->pm_active),
1685318224bbSNeel Natu 	    ("vm_run: absurd pm_active"));
1686318224bbSNeel Natu 
1687318224bbSNeel Natu 	tscval = rdtsc();
1688318224bbSNeel Natu 
1689318224bbSNeel Natu 	pcb = PCPU_GET(curpcb);
1690318224bbSNeel Natu 	set_pcb_flags(pcb, PCB_FULL_IRET);
1691318224bbSNeel Natu 
1692318224bbSNeel Natu 	restore_guest_fpustate(vcpu);
1693318224bbSNeel Natu 
1694318224bbSNeel Natu 	vcpu_require_state(vm, vcpuid, VCPU_RUNNING);
1695248e6799SNeel Natu 	error = VMRUN(vm->cookie, vcpuid, vcpu->nextrip, pmap, &evinfo);
1696318224bbSNeel Natu 	vcpu_require_state(vm, vcpuid, VCPU_FROZEN);
1697318224bbSNeel Natu 
1698318224bbSNeel Natu 	save_guest_fpustate(vcpu);
1699318224bbSNeel Natu 
1700318224bbSNeel Natu 	vmm_stat_incr(vm, vcpuid, VCPU_TOTAL_RUNTIME, rdtsc() - tscval);
1701318224bbSNeel Natu 
1702318224bbSNeel Natu 	critical_exit();
1703318224bbSNeel Natu 
1704318224bbSNeel Natu 	if (error == 0) {
1705becd9849SNeel Natu 		retu = false;
1706d087a399SNeel Natu 		vcpu->nextrip = vme->rip + vme->inst_length;
1707318224bbSNeel Natu 		switch (vme->exitcode) {
1708248e6799SNeel Natu 		case VM_EXITCODE_REQIDLE:
1709248e6799SNeel Natu 			error = vm_handle_reqidle(vm, vcpuid, &retu);
1710248e6799SNeel Natu 			break;
1711b15a09c0SNeel Natu 		case VM_EXITCODE_SUSPENDED:
1712b15a09c0SNeel Natu 			error = vm_handle_suspend(vm, vcpuid, &retu);
1713b15a09c0SNeel Natu 			break;
171430b94db8SNeel Natu 		case VM_EXITCODE_IOAPIC_EOI:
171530b94db8SNeel Natu 			vioapic_process_eoi(vm, vcpuid,
171630b94db8SNeel Natu 			    vme->u.ioapic_eoi.vector);
171730b94db8SNeel Natu 			break;
17185b8a8cd1SNeel Natu 		case VM_EXITCODE_RENDEZVOUS:
17195b8a8cd1SNeel Natu 			vm_handle_rendezvous(vm, vcpuid);
17205b8a8cd1SNeel Natu 			error = 0;
17215b8a8cd1SNeel Natu 			break;
1722318224bbSNeel Natu 		case VM_EXITCODE_HLT:
1723becd9849SNeel Natu 			intr_disabled = ((vme->u.hlt.rflags & PSL_I) == 0);
17241c052192SNeel Natu 			error = vm_handle_hlt(vm, vcpuid, intr_disabled, &retu);
1725318224bbSNeel Natu 			break;
1726318224bbSNeel Natu 		case VM_EXITCODE_PAGING:
1727318224bbSNeel Natu 			error = vm_handle_paging(vm, vcpuid, &retu);
1728318224bbSNeel Natu 			break;
1729318224bbSNeel Natu 		case VM_EXITCODE_INST_EMUL:
1730318224bbSNeel Natu 			error = vm_handle_inst_emul(vm, vcpuid, &retu);
1731318224bbSNeel Natu 			break;
1732d17b5104SNeel Natu 		case VM_EXITCODE_INOUT:
1733d17b5104SNeel Natu 		case VM_EXITCODE_INOUT_STR:
1734d17b5104SNeel Natu 			error = vm_handle_inout(vm, vcpuid, vme, &retu);
1735d17b5104SNeel Natu 			break;
173665145c7fSNeel Natu 		case VM_EXITCODE_MONITOR:
173765145c7fSNeel Natu 		case VM_EXITCODE_MWAIT:
173865145c7fSNeel Natu 			vm_inject_ud(vm, vcpuid);
173965145c7fSNeel Natu 			break;
1740318224bbSNeel Natu 		default:
1741becd9849SNeel Natu 			retu = true;	/* handled in userland */
1742318224bbSNeel Natu 			break;
1743318224bbSNeel Natu 		}
1744318224bbSNeel Natu 	}
1745318224bbSNeel Natu 
1746d087a399SNeel Natu 	if (error == 0 && retu == false)
1747f76fc5d4SNeel Natu 		goto restart;
1748f76fc5d4SNeel Natu 
1749248e6799SNeel Natu 	VCPU_CTR2(vm, vcpuid, "retu %d/%d", error, vme->exitcode);
1750248e6799SNeel Natu 
1751318224bbSNeel Natu 	/* copy the exit information */
1752318224bbSNeel Natu 	bcopy(vme, &vmrun->vm_exit, sizeof(struct vm_exit));
1753366f6083SPeter Grehan 	return (error);
1754366f6083SPeter Grehan }
1755366f6083SPeter Grehan 
1756366f6083SPeter Grehan int
1757c9c75df4SNeel Natu vm_restart_instruction(void *arg, int vcpuid)
1758c9c75df4SNeel Natu {
1759d087a399SNeel Natu 	struct vm *vm;
1760c9c75df4SNeel Natu 	struct vcpu *vcpu;
1761d087a399SNeel Natu 	enum vcpu_state state;
1762d087a399SNeel Natu 	uint64_t rip;
1763d087a399SNeel Natu 	int error;
1764c9c75df4SNeel Natu 
1765d087a399SNeel Natu 	vm = arg;
1766c9c75df4SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
1767c9c75df4SNeel Natu 		return (EINVAL);
1768c9c75df4SNeel Natu 
1769c9c75df4SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1770d087a399SNeel Natu 	state = vcpu_get_state(vm, vcpuid, NULL);
1771d087a399SNeel Natu 	if (state == VCPU_RUNNING) {
1772d087a399SNeel Natu 		/*
1773d087a399SNeel Natu 		 * When a vcpu is "running" the next instruction is determined
1774d087a399SNeel Natu 		 * by adding 'rip' and 'inst_length' in the vcpu's 'exitinfo'.
1775d087a399SNeel Natu 		 * Thus setting 'inst_length' to zero will cause the current
1776d087a399SNeel Natu 		 * instruction to be restarted.
1777d087a399SNeel Natu 		 */
1778c9c75df4SNeel Natu 		vcpu->exitinfo.inst_length = 0;
1779d087a399SNeel Natu 		VCPU_CTR1(vm, vcpuid, "restarting instruction at %#lx by "
1780d087a399SNeel Natu 		    "setting inst_length to zero", vcpu->exitinfo.rip);
1781d087a399SNeel Natu 	} else if (state == VCPU_FROZEN) {
1782d087a399SNeel Natu 		/*
1783d087a399SNeel Natu 		 * When a vcpu is "frozen" it is outside the critical section
1784d087a399SNeel Natu 		 * around VMRUN() and 'nextrip' points to the next instruction.
1785d087a399SNeel Natu 		 * Thus instruction restart is achieved by setting 'nextrip'
1786d087a399SNeel Natu 		 * to the vcpu's %rip.
1787d087a399SNeel Natu 		 */
1788d087a399SNeel Natu 		error = vm_get_register(vm, vcpuid, VM_REG_GUEST_RIP, &rip);
1789d087a399SNeel Natu 		KASSERT(!error, ("%s: error %d getting rip", __func__, error));
1790d087a399SNeel Natu 		VCPU_CTR2(vm, vcpuid, "restarting instruction by updating "
1791d087a399SNeel Natu 		    "nextrip from %#lx to %#lx", vcpu->nextrip, rip);
1792d087a399SNeel Natu 		vcpu->nextrip = rip;
1793d087a399SNeel Natu 	} else {
1794d087a399SNeel Natu 		panic("%s: invalid state %d", __func__, state);
1795d087a399SNeel Natu 	}
1796c9c75df4SNeel Natu 	return (0);
1797c9c75df4SNeel Natu }
1798c9c75df4SNeel Natu 
1799c9c75df4SNeel Natu int
1800091d4532SNeel Natu vm_exit_intinfo(struct vm *vm, int vcpuid, uint64_t info)
1801091d4532SNeel Natu {
1802091d4532SNeel Natu 	struct vcpu *vcpu;
1803091d4532SNeel Natu 	int type, vector;
1804091d4532SNeel Natu 
1805091d4532SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
1806091d4532SNeel Natu 		return (EINVAL);
1807091d4532SNeel Natu 
1808091d4532SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1809091d4532SNeel Natu 
1810091d4532SNeel Natu 	if (info & VM_INTINFO_VALID) {
1811091d4532SNeel Natu 		type = info & VM_INTINFO_TYPE;
1812091d4532SNeel Natu 		vector = info & 0xff;
1813091d4532SNeel Natu 		if (type == VM_INTINFO_NMI && vector != IDT_NMI)
1814091d4532SNeel Natu 			return (EINVAL);
1815091d4532SNeel Natu 		if (type == VM_INTINFO_HWEXCEPTION && vector >= 32)
1816091d4532SNeel Natu 			return (EINVAL);
1817091d4532SNeel Natu 		if (info & VM_INTINFO_RSVD)
1818091d4532SNeel Natu 			return (EINVAL);
1819091d4532SNeel Natu 	} else {
1820091d4532SNeel Natu 		info = 0;
1821091d4532SNeel Natu 	}
1822091d4532SNeel Natu 	VCPU_CTR2(vm, vcpuid, "%s: info1(%#lx)", __func__, info);
1823091d4532SNeel Natu 	vcpu->exitintinfo = info;
1824091d4532SNeel Natu 	return (0);
1825091d4532SNeel Natu }
1826091d4532SNeel Natu 
1827091d4532SNeel Natu enum exc_class {
1828091d4532SNeel Natu 	EXC_BENIGN,
1829091d4532SNeel Natu 	EXC_CONTRIBUTORY,
1830091d4532SNeel Natu 	EXC_PAGEFAULT
1831091d4532SNeel Natu };
1832091d4532SNeel Natu 
1833091d4532SNeel Natu #define	IDT_VE	20	/* Virtualization Exception (Intel specific) */
1834091d4532SNeel Natu 
1835091d4532SNeel Natu static enum exc_class
1836091d4532SNeel Natu exception_class(uint64_t info)
1837091d4532SNeel Natu {
1838091d4532SNeel Natu 	int type, vector;
1839091d4532SNeel Natu 
1840091d4532SNeel Natu 	KASSERT(info & VM_INTINFO_VALID, ("intinfo must be valid: %#lx", info));
1841091d4532SNeel Natu 	type = info & VM_INTINFO_TYPE;
1842091d4532SNeel Natu 	vector = info & 0xff;
1843091d4532SNeel Natu 
1844091d4532SNeel Natu 	/* Table 6-4, "Interrupt and Exception Classes", Intel SDM, Vol 3 */
1845091d4532SNeel Natu 	switch (type) {
1846091d4532SNeel Natu 	case VM_INTINFO_HWINTR:
1847091d4532SNeel Natu 	case VM_INTINFO_SWINTR:
1848091d4532SNeel Natu 	case VM_INTINFO_NMI:
1849091d4532SNeel Natu 		return (EXC_BENIGN);
1850091d4532SNeel Natu 	default:
1851091d4532SNeel Natu 		/*
1852091d4532SNeel Natu 		 * Hardware exception.
1853091d4532SNeel Natu 		 *
1854091d4532SNeel Natu 		 * SVM and VT-x use identical type values to represent NMI,
1855091d4532SNeel Natu 		 * hardware interrupt and software interrupt.
1856091d4532SNeel Natu 		 *
1857091d4532SNeel Natu 		 * SVM uses type '3' for all exceptions. VT-x uses type '3'
1858091d4532SNeel Natu 		 * for exceptions except #BP and #OF. #BP and #OF use a type
1859091d4532SNeel Natu 		 * value of '5' or '6'. Therefore we don't check for explicit
1860091d4532SNeel Natu 		 * values of 'type' to classify 'intinfo' into a hardware
1861091d4532SNeel Natu 		 * exception.
1862091d4532SNeel Natu 		 */
1863091d4532SNeel Natu 		break;
1864091d4532SNeel Natu 	}
1865091d4532SNeel Natu 
1866091d4532SNeel Natu 	switch (vector) {
1867091d4532SNeel Natu 	case IDT_PF:
1868091d4532SNeel Natu 	case IDT_VE:
1869091d4532SNeel Natu 		return (EXC_PAGEFAULT);
1870091d4532SNeel Natu 	case IDT_DE:
1871091d4532SNeel Natu 	case IDT_TS:
1872091d4532SNeel Natu 	case IDT_NP:
1873091d4532SNeel Natu 	case IDT_SS:
1874091d4532SNeel Natu 	case IDT_GP:
1875091d4532SNeel Natu 		return (EXC_CONTRIBUTORY);
1876091d4532SNeel Natu 	default:
1877091d4532SNeel Natu 		return (EXC_BENIGN);
1878091d4532SNeel Natu 	}
1879091d4532SNeel Natu }
1880091d4532SNeel Natu 
1881091d4532SNeel Natu static int
1882091d4532SNeel Natu nested_fault(struct vm *vm, int vcpuid, uint64_t info1, uint64_t info2,
1883091d4532SNeel Natu     uint64_t *retinfo)
1884091d4532SNeel Natu {
1885091d4532SNeel Natu 	enum exc_class exc1, exc2;
1886091d4532SNeel Natu 	int type1, vector1;
1887091d4532SNeel Natu 
1888091d4532SNeel Natu 	KASSERT(info1 & VM_INTINFO_VALID, ("info1 %#lx is not valid", info1));
1889091d4532SNeel Natu 	KASSERT(info2 & VM_INTINFO_VALID, ("info2 %#lx is not valid", info2));
1890091d4532SNeel Natu 
1891091d4532SNeel Natu 	/*
1892091d4532SNeel Natu 	 * If an exception occurs while attempting to call the double-fault
1893091d4532SNeel Natu 	 * handler the processor enters shutdown mode (aka triple fault).
1894091d4532SNeel Natu 	 */
1895091d4532SNeel Natu 	type1 = info1 & VM_INTINFO_TYPE;
1896091d4532SNeel Natu 	vector1 = info1 & 0xff;
1897091d4532SNeel Natu 	if (type1 == VM_INTINFO_HWEXCEPTION && vector1 == IDT_DF) {
1898091d4532SNeel Natu 		VCPU_CTR2(vm, vcpuid, "triple fault: info1(%#lx), info2(%#lx)",
1899091d4532SNeel Natu 		    info1, info2);
1900091d4532SNeel Natu 		vm_suspend(vm, VM_SUSPEND_TRIPLEFAULT);
1901091d4532SNeel Natu 		*retinfo = 0;
1902091d4532SNeel Natu 		return (0);
1903091d4532SNeel Natu 	}
1904091d4532SNeel Natu 
1905091d4532SNeel Natu 	/*
1906091d4532SNeel Natu 	 * Table 6-5 "Conditions for Generating a Double Fault", Intel SDM, Vol3
1907091d4532SNeel Natu 	 */
1908091d4532SNeel Natu 	exc1 = exception_class(info1);
1909091d4532SNeel Natu 	exc2 = exception_class(info2);
1910091d4532SNeel Natu 	if ((exc1 == EXC_CONTRIBUTORY && exc2 == EXC_CONTRIBUTORY) ||
1911091d4532SNeel Natu 	    (exc1 == EXC_PAGEFAULT && exc2 != EXC_BENIGN)) {
1912091d4532SNeel Natu 		/* Convert nested fault into a double fault. */
1913091d4532SNeel Natu 		*retinfo = IDT_DF;
1914091d4532SNeel Natu 		*retinfo |= VM_INTINFO_VALID | VM_INTINFO_HWEXCEPTION;
1915091d4532SNeel Natu 		*retinfo |= VM_INTINFO_DEL_ERRCODE;
1916091d4532SNeel Natu 	} else {
1917091d4532SNeel Natu 		/* Handle exceptions serially */
1918091d4532SNeel Natu 		*retinfo = info2;
1919091d4532SNeel Natu 	}
1920091d4532SNeel Natu 	return (1);
1921091d4532SNeel Natu }
1922091d4532SNeel Natu 
1923091d4532SNeel Natu static uint64_t
1924091d4532SNeel Natu vcpu_exception_intinfo(struct vcpu *vcpu)
1925091d4532SNeel Natu {
1926091d4532SNeel Natu 	uint64_t info = 0;
1927091d4532SNeel Natu 
1928091d4532SNeel Natu 	if (vcpu->exception_pending) {
1929c9c75df4SNeel Natu 		info = vcpu->exc_vector & 0xff;
1930091d4532SNeel Natu 		info |= VM_INTINFO_VALID | VM_INTINFO_HWEXCEPTION;
1931c9c75df4SNeel Natu 		if (vcpu->exc_errcode_valid) {
1932091d4532SNeel Natu 			info |= VM_INTINFO_DEL_ERRCODE;
1933c9c75df4SNeel Natu 			info |= (uint64_t)vcpu->exc_errcode << 32;
1934091d4532SNeel Natu 		}
1935091d4532SNeel Natu 	}
1936091d4532SNeel Natu 	return (info);
1937091d4532SNeel Natu }
1938091d4532SNeel Natu 
1939091d4532SNeel Natu int
1940091d4532SNeel Natu vm_entry_intinfo(struct vm *vm, int vcpuid, uint64_t *retinfo)
1941091d4532SNeel Natu {
1942091d4532SNeel Natu 	struct vcpu *vcpu;
1943091d4532SNeel Natu 	uint64_t info1, info2;
1944091d4532SNeel Natu 	int valid;
1945091d4532SNeel Natu 
1946091d4532SNeel Natu 	KASSERT(vcpuid >= 0 && vcpuid < VM_MAXCPU, ("invalid vcpu %d", vcpuid));
1947091d4532SNeel Natu 
1948091d4532SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1949091d4532SNeel Natu 
1950091d4532SNeel Natu 	info1 = vcpu->exitintinfo;
1951091d4532SNeel Natu 	vcpu->exitintinfo = 0;
1952091d4532SNeel Natu 
1953091d4532SNeel Natu 	info2 = 0;
1954091d4532SNeel Natu 	if (vcpu->exception_pending) {
1955091d4532SNeel Natu 		info2 = vcpu_exception_intinfo(vcpu);
1956091d4532SNeel Natu 		vcpu->exception_pending = 0;
1957091d4532SNeel Natu 		VCPU_CTR2(vm, vcpuid, "Exception %d delivered: %#lx",
1958c9c75df4SNeel Natu 		    vcpu->exc_vector, info2);
1959091d4532SNeel Natu 	}
1960091d4532SNeel Natu 
1961091d4532SNeel Natu 	if ((info1 & VM_INTINFO_VALID) && (info2 & VM_INTINFO_VALID)) {
1962091d4532SNeel Natu 		valid = nested_fault(vm, vcpuid, info1, info2, retinfo);
1963091d4532SNeel Natu 	} else if (info1 & VM_INTINFO_VALID) {
1964091d4532SNeel Natu 		*retinfo = info1;
1965091d4532SNeel Natu 		valid = 1;
1966091d4532SNeel Natu 	} else if (info2 & VM_INTINFO_VALID) {
1967091d4532SNeel Natu 		*retinfo = info2;
1968091d4532SNeel Natu 		valid = 1;
1969091d4532SNeel Natu 	} else {
1970091d4532SNeel Natu 		valid = 0;
1971091d4532SNeel Natu 	}
1972091d4532SNeel Natu 
1973091d4532SNeel Natu 	if (valid) {
1974091d4532SNeel Natu 		VCPU_CTR4(vm, vcpuid, "%s: info1(%#lx), info2(%#lx), "
1975091d4532SNeel Natu 		    "retinfo(%#lx)", __func__, info1, info2, *retinfo);
1976091d4532SNeel Natu 	}
1977091d4532SNeel Natu 
1978091d4532SNeel Natu 	return (valid);
1979091d4532SNeel Natu }
1980091d4532SNeel Natu 
1981091d4532SNeel Natu int
1982091d4532SNeel Natu vm_get_intinfo(struct vm *vm, int vcpuid, uint64_t *info1, uint64_t *info2)
1983091d4532SNeel Natu {
1984091d4532SNeel Natu 	struct vcpu *vcpu;
1985091d4532SNeel Natu 
1986091d4532SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
1987091d4532SNeel Natu 		return (EINVAL);
1988091d4532SNeel Natu 
1989091d4532SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
1990091d4532SNeel Natu 	*info1 = vcpu->exitintinfo;
1991091d4532SNeel Natu 	*info2 = vcpu_exception_intinfo(vcpu);
1992091d4532SNeel Natu 	return (0);
1993091d4532SNeel Natu }
1994091d4532SNeel Natu 
1995091d4532SNeel Natu int
1996c9c75df4SNeel Natu vm_inject_exception(struct vm *vm, int vcpuid, int vector, int errcode_valid,
1997c9c75df4SNeel Natu     uint32_t errcode, int restart_instruction)
1998366f6083SPeter Grehan {
1999dc506506SNeel Natu 	struct vcpu *vcpu;
200047b9935dSNeel Natu 	uint64_t regval;
20012ce12423SNeel Natu 	int error;
2002dc506506SNeel Natu 
2003366f6083SPeter Grehan 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2004366f6083SPeter Grehan 		return (EINVAL);
2005366f6083SPeter Grehan 
2006c9c75df4SNeel Natu 	if (vector < 0 || vector >= 32)
2007366f6083SPeter Grehan 		return (EINVAL);
2008366f6083SPeter Grehan 
2009091d4532SNeel Natu 	/*
2010091d4532SNeel Natu 	 * A double fault exception should never be injected directly into
2011091d4532SNeel Natu 	 * the guest. It is a derived exception that results from specific
2012091d4532SNeel Natu 	 * combinations of nested faults.
2013091d4532SNeel Natu 	 */
2014c9c75df4SNeel Natu 	if (vector == IDT_DF)
2015091d4532SNeel Natu 		return (EINVAL);
2016091d4532SNeel Natu 
2017dc506506SNeel Natu 	vcpu = &vm->vcpu[vcpuid];
2018366f6083SPeter Grehan 
2019dc506506SNeel Natu 	if (vcpu->exception_pending) {
2020dc506506SNeel Natu 		VCPU_CTR2(vm, vcpuid, "Unable to inject exception %d due to "
2021c9c75df4SNeel Natu 		    "pending exception %d", vector, vcpu->exc_vector);
2022dc506506SNeel Natu 		return (EBUSY);
2023dc506506SNeel Natu 	}
2024dc506506SNeel Natu 
202547b9935dSNeel Natu 	if (errcode_valid) {
202647b9935dSNeel Natu 		/*
202747b9935dSNeel Natu 		 * Exceptions don't deliver an error code in real mode.
202847b9935dSNeel Natu 		 */
202947b9935dSNeel Natu 		error = vm_get_register(vm, vcpuid, VM_REG_GUEST_CR0, &regval);
203047b9935dSNeel Natu 		KASSERT(!error, ("%s: error %d getting CR0", __func__, error));
203147b9935dSNeel Natu 		if (!(regval & CR0_PE))
203247b9935dSNeel Natu 			errcode_valid = 0;
203347b9935dSNeel Natu 	}
203447b9935dSNeel Natu 
20352ce12423SNeel Natu 	/*
20362ce12423SNeel Natu 	 * From section 26.6.1 "Interruptibility State" in Intel SDM:
20372ce12423SNeel Natu 	 *
20382ce12423SNeel Natu 	 * Event blocking by "STI" or "MOV SS" is cleared after guest executes
20392ce12423SNeel Natu 	 * one instruction or incurs an exception.
20402ce12423SNeel Natu 	 */
20412ce12423SNeel Natu 	error = vm_set_register(vm, vcpuid, VM_REG_GUEST_INTR_SHADOW, 0);
20422ce12423SNeel Natu 	KASSERT(error == 0, ("%s: error %d clearing interrupt shadow",
20432ce12423SNeel Natu 	    __func__, error));
20442ce12423SNeel Natu 
2045c9c75df4SNeel Natu 	if (restart_instruction)
2046c9c75df4SNeel Natu 		vm_restart_instruction(vm, vcpuid);
2047c9c75df4SNeel Natu 
2048dc506506SNeel Natu 	vcpu->exception_pending = 1;
2049c9c75df4SNeel Natu 	vcpu->exc_vector = vector;
2050c9c75df4SNeel Natu 	vcpu->exc_errcode = errcode;
2051c9c75df4SNeel Natu 	vcpu->exc_errcode_valid = errcode_valid;
2052c9c75df4SNeel Natu 	VCPU_CTR1(vm, vcpuid, "Exception %d pending", vector);
2053dc506506SNeel Natu 	return (0);
2054dc506506SNeel Natu }
2055dc506506SNeel Natu 
2056d37f2adbSNeel Natu void
2057d37f2adbSNeel Natu vm_inject_fault(void *vmarg, int vcpuid, int vector, int errcode_valid,
2058d37f2adbSNeel Natu     int errcode)
2059dc506506SNeel Natu {
2060d37f2adbSNeel Natu 	struct vm *vm;
2061c9c75df4SNeel Natu 	int error, restart_instruction;
2062dc506506SNeel Natu 
2063d37f2adbSNeel Natu 	vm = vmarg;
2064c9c75df4SNeel Natu 	restart_instruction = 1;
2065d37f2adbSNeel Natu 
2066c9c75df4SNeel Natu 	error = vm_inject_exception(vm, vcpuid, vector, errcode_valid,
2067c9c75df4SNeel Natu 	    errcode, restart_instruction);
2068dc506506SNeel Natu 	KASSERT(error == 0, ("vm_inject_exception error %d", error));
2069dc506506SNeel Natu }
2070dc506506SNeel Natu 
2071dc506506SNeel Natu void
2072d37f2adbSNeel Natu vm_inject_pf(void *vmarg, int vcpuid, int error_code, uint64_t cr2)
2073fd949af6SNeel Natu {
2074d37f2adbSNeel Natu 	struct vm *vm;
207537a723a5SNeel Natu 	int error;
207637a723a5SNeel Natu 
2077d37f2adbSNeel Natu 	vm = vmarg;
207837a723a5SNeel Natu 	VCPU_CTR2(vm, vcpuid, "Injecting page fault: error_code %#x, cr2 %#lx",
207937a723a5SNeel Natu 	    error_code, cr2);
208037a723a5SNeel Natu 
208137a723a5SNeel Natu 	error = vm_set_register(vm, vcpuid, VM_REG_GUEST_CR2, cr2);
208237a723a5SNeel Natu 	KASSERT(error == 0, ("vm_set_register(cr2) error %d", error));
2083fd949af6SNeel Natu 
2084d37f2adbSNeel Natu 	vm_inject_fault(vm, vcpuid, IDT_PF, 1, error_code);
2085366f6083SPeter Grehan }
2086366f6083SPeter Grehan 
208761592433SNeel Natu static VMM_STAT(VCPU_NMI_COUNT, "number of NMIs delivered to vcpu");
2088366f6083SPeter Grehan 
2089f352ff0cSNeel Natu int
2090f352ff0cSNeel Natu vm_inject_nmi(struct vm *vm, int vcpuid)
2091f352ff0cSNeel Natu {
2092f352ff0cSNeel Natu 	struct vcpu *vcpu;
2093f352ff0cSNeel Natu 
2094f352ff0cSNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2095366f6083SPeter Grehan 		return (EINVAL);
2096366f6083SPeter Grehan 
2097f352ff0cSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
2098f352ff0cSNeel Natu 
2099f352ff0cSNeel Natu 	vcpu->nmi_pending = 1;
2100de5ea6b6SNeel Natu 	vcpu_notify_event(vm, vcpuid, false);
2101f352ff0cSNeel Natu 	return (0);
2102f352ff0cSNeel Natu }
2103f352ff0cSNeel Natu 
2104f352ff0cSNeel Natu int
2105f352ff0cSNeel Natu vm_nmi_pending(struct vm *vm, int vcpuid)
2106f352ff0cSNeel Natu {
2107f352ff0cSNeel Natu 	struct vcpu *vcpu;
2108f352ff0cSNeel Natu 
2109f352ff0cSNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2110f352ff0cSNeel Natu 		panic("vm_nmi_pending: invalid vcpuid %d", vcpuid);
2111f352ff0cSNeel Natu 
2112f352ff0cSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
2113f352ff0cSNeel Natu 
2114f352ff0cSNeel Natu 	return (vcpu->nmi_pending);
2115f352ff0cSNeel Natu }
2116f352ff0cSNeel Natu 
2117f352ff0cSNeel Natu void
2118f352ff0cSNeel Natu vm_nmi_clear(struct vm *vm, int vcpuid)
2119f352ff0cSNeel Natu {
2120f352ff0cSNeel Natu 	struct vcpu *vcpu;
2121f352ff0cSNeel Natu 
2122f352ff0cSNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2123f352ff0cSNeel Natu 		panic("vm_nmi_pending: invalid vcpuid %d", vcpuid);
2124f352ff0cSNeel Natu 
2125f352ff0cSNeel Natu 	vcpu = &vm->vcpu[vcpuid];
2126f352ff0cSNeel Natu 
2127f352ff0cSNeel Natu 	if (vcpu->nmi_pending == 0)
2128f352ff0cSNeel Natu 		panic("vm_nmi_clear: inconsistent nmi_pending state");
2129f352ff0cSNeel Natu 
2130f352ff0cSNeel Natu 	vcpu->nmi_pending = 0;
2131f352ff0cSNeel Natu 	vmm_stat_incr(vm, vcpuid, VCPU_NMI_COUNT, 1);
2132366f6083SPeter Grehan }
2133366f6083SPeter Grehan 
21340775fbb4STycho Nightingale static VMM_STAT(VCPU_EXTINT_COUNT, "number of ExtINTs delivered to vcpu");
21350775fbb4STycho Nightingale 
21360775fbb4STycho Nightingale int
21370775fbb4STycho Nightingale vm_inject_extint(struct vm *vm, int vcpuid)
21380775fbb4STycho Nightingale {
21390775fbb4STycho Nightingale 	struct vcpu *vcpu;
21400775fbb4STycho Nightingale 
21410775fbb4STycho Nightingale 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
21420775fbb4STycho Nightingale 		return (EINVAL);
21430775fbb4STycho Nightingale 
21440775fbb4STycho Nightingale 	vcpu = &vm->vcpu[vcpuid];
21450775fbb4STycho Nightingale 
21460775fbb4STycho Nightingale 	vcpu->extint_pending = 1;
21470775fbb4STycho Nightingale 	vcpu_notify_event(vm, vcpuid, false);
21480775fbb4STycho Nightingale 	return (0);
21490775fbb4STycho Nightingale }
21500775fbb4STycho Nightingale 
21510775fbb4STycho Nightingale int
21520775fbb4STycho Nightingale vm_extint_pending(struct vm *vm, int vcpuid)
21530775fbb4STycho Nightingale {
21540775fbb4STycho Nightingale 	struct vcpu *vcpu;
21550775fbb4STycho Nightingale 
21560775fbb4STycho Nightingale 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
21570775fbb4STycho Nightingale 		panic("vm_extint_pending: invalid vcpuid %d", vcpuid);
21580775fbb4STycho Nightingale 
21590775fbb4STycho Nightingale 	vcpu = &vm->vcpu[vcpuid];
21600775fbb4STycho Nightingale 
21610775fbb4STycho Nightingale 	return (vcpu->extint_pending);
21620775fbb4STycho Nightingale }
21630775fbb4STycho Nightingale 
21640775fbb4STycho Nightingale void
21650775fbb4STycho Nightingale vm_extint_clear(struct vm *vm, int vcpuid)
21660775fbb4STycho Nightingale {
21670775fbb4STycho Nightingale 	struct vcpu *vcpu;
21680775fbb4STycho Nightingale 
21690775fbb4STycho Nightingale 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
21700775fbb4STycho Nightingale 		panic("vm_extint_pending: invalid vcpuid %d", vcpuid);
21710775fbb4STycho Nightingale 
21720775fbb4STycho Nightingale 	vcpu = &vm->vcpu[vcpuid];
21730775fbb4STycho Nightingale 
21740775fbb4STycho Nightingale 	if (vcpu->extint_pending == 0)
21750775fbb4STycho Nightingale 		panic("vm_extint_clear: inconsistent extint_pending state");
21760775fbb4STycho Nightingale 
21770775fbb4STycho Nightingale 	vcpu->extint_pending = 0;
21780775fbb4STycho Nightingale 	vmm_stat_incr(vm, vcpuid, VCPU_EXTINT_COUNT, 1);
21790775fbb4STycho Nightingale }
21800775fbb4STycho Nightingale 
2181366f6083SPeter Grehan int
2182366f6083SPeter Grehan vm_get_capability(struct vm *vm, int vcpu, int type, int *retval)
2183366f6083SPeter Grehan {
2184366f6083SPeter Grehan 	if (vcpu < 0 || vcpu >= VM_MAXCPU)
2185366f6083SPeter Grehan 		return (EINVAL);
2186366f6083SPeter Grehan 
2187366f6083SPeter Grehan 	if (type < 0 || type >= VM_CAP_MAX)
2188366f6083SPeter Grehan 		return (EINVAL);
2189366f6083SPeter Grehan 
2190366f6083SPeter Grehan 	return (VMGETCAP(vm->cookie, vcpu, type, retval));
2191366f6083SPeter Grehan }
2192366f6083SPeter Grehan 
2193366f6083SPeter Grehan int
2194366f6083SPeter Grehan vm_set_capability(struct vm *vm, int vcpu, int type, int val)
2195366f6083SPeter Grehan {
2196366f6083SPeter Grehan 	if (vcpu < 0 || vcpu >= VM_MAXCPU)
2197366f6083SPeter Grehan 		return (EINVAL);
2198366f6083SPeter Grehan 
2199366f6083SPeter Grehan 	if (type < 0 || type >= VM_CAP_MAX)
2200366f6083SPeter Grehan 		return (EINVAL);
2201366f6083SPeter Grehan 
2202366f6083SPeter Grehan 	return (VMSETCAP(vm->cookie, vcpu, type, val));
2203366f6083SPeter Grehan }
2204366f6083SPeter Grehan 
2205366f6083SPeter Grehan struct vlapic *
2206366f6083SPeter Grehan vm_lapic(struct vm *vm, int cpu)
2207366f6083SPeter Grehan {
2208366f6083SPeter Grehan 	return (vm->vcpu[cpu].vlapic);
2209366f6083SPeter Grehan }
2210366f6083SPeter Grehan 
2211565bbb86SNeel Natu struct vioapic *
2212565bbb86SNeel Natu vm_ioapic(struct vm *vm)
2213565bbb86SNeel Natu {
2214565bbb86SNeel Natu 
2215565bbb86SNeel Natu 	return (vm->vioapic);
2216565bbb86SNeel Natu }
2217565bbb86SNeel Natu 
221808e3ff32SNeel Natu struct vhpet *
221908e3ff32SNeel Natu vm_hpet(struct vm *vm)
222008e3ff32SNeel Natu {
222108e3ff32SNeel Natu 
222208e3ff32SNeel Natu 	return (vm->vhpet);
222308e3ff32SNeel Natu }
222408e3ff32SNeel Natu 
2225366f6083SPeter Grehan boolean_t
2226366f6083SPeter Grehan vmm_is_pptdev(int bus, int slot, int func)
2227366f6083SPeter Grehan {
222807044a96SNeel Natu 	int found, i, n;
222907044a96SNeel Natu 	int b, s, f;
2230366f6083SPeter Grehan 	char *val, *cp, *cp2;
2231366f6083SPeter Grehan 
2232366f6083SPeter Grehan 	/*
223307044a96SNeel Natu 	 * XXX
223407044a96SNeel Natu 	 * The length of an environment variable is limited to 128 bytes which
223507044a96SNeel Natu 	 * puts an upper limit on the number of passthru devices that may be
223607044a96SNeel Natu 	 * specified using a single environment variable.
223707044a96SNeel Natu 	 *
223807044a96SNeel Natu 	 * Work around this by scanning multiple environment variable
223907044a96SNeel Natu 	 * names instead of a single one - yuck!
2240366f6083SPeter Grehan 	 */
224107044a96SNeel Natu 	const char *names[] = { "pptdevs", "pptdevs2", "pptdevs3", NULL };
224207044a96SNeel Natu 
224307044a96SNeel Natu 	/* set pptdevs="1/2/3 4/5/6 7/8/9 10/11/12" */
2244366f6083SPeter Grehan 	found = 0;
224507044a96SNeel Natu 	for (i = 0; names[i] != NULL && !found; i++) {
22462be111bfSDavide Italiano 		cp = val = kern_getenv(names[i]);
2247366f6083SPeter Grehan 		while (cp != NULL && *cp != '\0') {
2248366f6083SPeter Grehan 			if ((cp2 = strchr(cp, ' ')) != NULL)
2249366f6083SPeter Grehan 				*cp2 = '\0';
2250366f6083SPeter Grehan 
2251366f6083SPeter Grehan 			n = sscanf(cp, "%d/%d/%d", &b, &s, &f);
2252366f6083SPeter Grehan 			if (n == 3 && bus == b && slot == s && func == f) {
2253366f6083SPeter Grehan 				found = 1;
2254366f6083SPeter Grehan 				break;
2255366f6083SPeter Grehan 			}
2256366f6083SPeter Grehan 
2257366f6083SPeter Grehan 			if (cp2 != NULL)
2258366f6083SPeter Grehan 				*cp2++ = ' ';
2259366f6083SPeter Grehan 
2260366f6083SPeter Grehan 			cp = cp2;
2261366f6083SPeter Grehan 		}
2262366f6083SPeter Grehan 		freeenv(val);
226307044a96SNeel Natu 	}
2264366f6083SPeter Grehan 	return (found);
2265366f6083SPeter Grehan }
2266366f6083SPeter Grehan 
2267366f6083SPeter Grehan void *
2268366f6083SPeter Grehan vm_iommu_domain(struct vm *vm)
2269366f6083SPeter Grehan {
2270366f6083SPeter Grehan 
2271366f6083SPeter Grehan 	return (vm->iommu);
2272366f6083SPeter Grehan }
2273366f6083SPeter Grehan 
227475dd3366SNeel Natu int
2275f80330a8SNeel Natu vcpu_set_state(struct vm *vm, int vcpuid, enum vcpu_state newstate,
2276f80330a8SNeel Natu     bool from_idle)
2277366f6083SPeter Grehan {
227875dd3366SNeel Natu 	int error;
2279366f6083SPeter Grehan 	struct vcpu *vcpu;
2280366f6083SPeter Grehan 
2281366f6083SPeter Grehan 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2282366f6083SPeter Grehan 		panic("vm_set_run_state: invalid vcpuid %d", vcpuid);
2283366f6083SPeter Grehan 
2284366f6083SPeter Grehan 	vcpu = &vm->vcpu[vcpuid];
2285366f6083SPeter Grehan 
228675dd3366SNeel Natu 	vcpu_lock(vcpu);
2287248e6799SNeel Natu 	error = vcpu_set_state_locked(vm, vcpuid, newstate, from_idle);
228875dd3366SNeel Natu 	vcpu_unlock(vcpu);
228975dd3366SNeel Natu 
229075dd3366SNeel Natu 	return (error);
229175dd3366SNeel Natu }
229275dd3366SNeel Natu 
229375dd3366SNeel Natu enum vcpu_state
2294d3c11f40SPeter Grehan vcpu_get_state(struct vm *vm, int vcpuid, int *hostcpu)
2295366f6083SPeter Grehan {
2296366f6083SPeter Grehan 	struct vcpu *vcpu;
229775dd3366SNeel Natu 	enum vcpu_state state;
2298366f6083SPeter Grehan 
2299366f6083SPeter Grehan 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2300366f6083SPeter Grehan 		panic("vm_get_run_state: invalid vcpuid %d", vcpuid);
2301366f6083SPeter Grehan 
2302366f6083SPeter Grehan 	vcpu = &vm->vcpu[vcpuid];
2303366f6083SPeter Grehan 
230475dd3366SNeel Natu 	vcpu_lock(vcpu);
230575dd3366SNeel Natu 	state = vcpu->state;
2306d3c11f40SPeter Grehan 	if (hostcpu != NULL)
2307d3c11f40SPeter Grehan 		*hostcpu = vcpu->hostcpu;
230875dd3366SNeel Natu 	vcpu_unlock(vcpu);
2309366f6083SPeter Grehan 
231075dd3366SNeel Natu 	return (state);
2311366f6083SPeter Grehan }
2312366f6083SPeter Grehan 
231395ebc360SNeel Natu int
2314366f6083SPeter Grehan vm_activate_cpu(struct vm *vm, int vcpuid)
2315366f6083SPeter Grehan {
2316366f6083SPeter Grehan 
231795ebc360SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
231895ebc360SNeel Natu 		return (EINVAL);
231995ebc360SNeel Natu 
232095ebc360SNeel Natu 	if (CPU_ISSET(vcpuid, &vm->active_cpus))
232195ebc360SNeel Natu 		return (EBUSY);
232222d822c6SNeel Natu 
232322d822c6SNeel Natu 	VCPU_CTR0(vm, vcpuid, "activated");
232422d822c6SNeel Natu 	CPU_SET_ATOMIC(vcpuid, &vm->active_cpus);
232595ebc360SNeel Natu 	return (0);
2326366f6083SPeter Grehan }
2327366f6083SPeter Grehan 
2328fc276d92SJohn Baldwin int
2329fc276d92SJohn Baldwin vm_suspend_cpu(struct vm *vm, int vcpuid)
2330fc276d92SJohn Baldwin {
2331fc276d92SJohn Baldwin 	int i;
2332fc276d92SJohn Baldwin 
2333fc276d92SJohn Baldwin 	if (vcpuid < -1 || vcpuid >= VM_MAXCPU)
2334fc276d92SJohn Baldwin 		return (EINVAL);
2335fc276d92SJohn Baldwin 
2336fc276d92SJohn Baldwin 	if (vcpuid == -1) {
2337fc276d92SJohn Baldwin 		vm->debug_cpus = vm->active_cpus;
2338fc276d92SJohn Baldwin 		for (i = 0; i < VM_MAXCPU; i++) {
2339fc276d92SJohn Baldwin 			if (CPU_ISSET(i, &vm->active_cpus))
2340fc276d92SJohn Baldwin 				vcpu_notify_event(vm, i, false);
2341fc276d92SJohn Baldwin 		}
2342fc276d92SJohn Baldwin 	} else {
2343fc276d92SJohn Baldwin 		if (!CPU_ISSET(vcpuid, &vm->active_cpus))
2344fc276d92SJohn Baldwin 			return (EINVAL);
2345fc276d92SJohn Baldwin 
2346fc276d92SJohn Baldwin 		CPU_SET_ATOMIC(vcpuid, &vm->debug_cpus);
2347fc276d92SJohn Baldwin 		vcpu_notify_event(vm, vcpuid, false);
2348fc276d92SJohn Baldwin 	}
2349fc276d92SJohn Baldwin 	return (0);
2350fc276d92SJohn Baldwin }
2351fc276d92SJohn Baldwin 
2352fc276d92SJohn Baldwin int
2353fc276d92SJohn Baldwin vm_resume_cpu(struct vm *vm, int vcpuid)
2354fc276d92SJohn Baldwin {
2355fc276d92SJohn Baldwin 
2356fc276d92SJohn Baldwin 	if (vcpuid < -1 || vcpuid >= VM_MAXCPU)
2357fc276d92SJohn Baldwin 		return (EINVAL);
2358fc276d92SJohn Baldwin 
2359fc276d92SJohn Baldwin 	if (vcpuid == -1) {
2360fc276d92SJohn Baldwin 		CPU_ZERO(&vm->debug_cpus);
2361fc276d92SJohn Baldwin 	} else {
2362fc276d92SJohn Baldwin 		if (!CPU_ISSET(vcpuid, &vm->debug_cpus))
2363fc276d92SJohn Baldwin 			return (EINVAL);
2364fc276d92SJohn Baldwin 
2365fc276d92SJohn Baldwin 		CPU_CLR_ATOMIC(vcpuid, &vm->debug_cpus);
2366fc276d92SJohn Baldwin 	}
2367fc276d92SJohn Baldwin 	return (0);
2368fc276d92SJohn Baldwin }
2369fc276d92SJohn Baldwin 
2370fc276d92SJohn Baldwin int
2371fc276d92SJohn Baldwin vcpu_debugged(struct vm *vm, int vcpuid)
2372fc276d92SJohn Baldwin {
2373fc276d92SJohn Baldwin 
2374fc276d92SJohn Baldwin 	return (CPU_ISSET(vcpuid, &vm->debug_cpus));
2375fc276d92SJohn Baldwin }
2376fc276d92SJohn Baldwin 
2377a5615c90SPeter Grehan cpuset_t
2378366f6083SPeter Grehan vm_active_cpus(struct vm *vm)
2379366f6083SPeter Grehan {
2380366f6083SPeter Grehan 
2381366f6083SPeter Grehan 	return (vm->active_cpus);
2382366f6083SPeter Grehan }
2383366f6083SPeter Grehan 
238495ebc360SNeel Natu cpuset_t
2385fc276d92SJohn Baldwin vm_debug_cpus(struct vm *vm)
2386fc276d92SJohn Baldwin {
2387fc276d92SJohn Baldwin 
2388fc276d92SJohn Baldwin 	return (vm->debug_cpus);
2389fc276d92SJohn Baldwin }
2390fc276d92SJohn Baldwin 
2391fc276d92SJohn Baldwin cpuset_t
239295ebc360SNeel Natu vm_suspended_cpus(struct vm *vm)
239395ebc360SNeel Natu {
239495ebc360SNeel Natu 
239595ebc360SNeel Natu 	return (vm->suspended_cpus);
239695ebc360SNeel Natu }
239795ebc360SNeel Natu 
2398366f6083SPeter Grehan void *
2399366f6083SPeter Grehan vcpu_stats(struct vm *vm, int vcpuid)
2400366f6083SPeter Grehan {
2401366f6083SPeter Grehan 
2402366f6083SPeter Grehan 	return (vm->vcpu[vcpuid].stats);
2403366f6083SPeter Grehan }
2404e9027382SNeel Natu 
2405e9027382SNeel Natu int
2406e9027382SNeel Natu vm_get_x2apic_state(struct vm *vm, int vcpuid, enum x2apic_state *state)
2407e9027382SNeel Natu {
2408e9027382SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2409e9027382SNeel Natu 		return (EINVAL);
2410e9027382SNeel Natu 
2411e9027382SNeel Natu 	*state = vm->vcpu[vcpuid].x2apic_state;
2412e9027382SNeel Natu 
2413e9027382SNeel Natu 	return (0);
2414e9027382SNeel Natu }
2415e9027382SNeel Natu 
2416e9027382SNeel Natu int
2417e9027382SNeel Natu vm_set_x2apic_state(struct vm *vm, int vcpuid, enum x2apic_state state)
2418e9027382SNeel Natu {
2419e9027382SNeel Natu 	if (vcpuid < 0 || vcpuid >= VM_MAXCPU)
2420e9027382SNeel Natu 		return (EINVAL);
2421e9027382SNeel Natu 
24223f23d3caSNeel Natu 	if (state >= X2APIC_STATE_LAST)
2423e9027382SNeel Natu 		return (EINVAL);
2424e9027382SNeel Natu 
2425e9027382SNeel Natu 	vm->vcpu[vcpuid].x2apic_state = state;
2426e9027382SNeel Natu 
242773820fb0SNeel Natu 	vlapic_set_x2apic_state(vm, vcpuid, state);
242873820fb0SNeel Natu 
2429e9027382SNeel Natu 	return (0);
2430e9027382SNeel Natu }
243175dd3366SNeel Natu 
243222821874SNeel Natu /*
243322821874SNeel Natu  * This function is called to ensure that a vcpu "sees" a pending event
243422821874SNeel Natu  * as soon as possible:
243522821874SNeel Natu  * - If the vcpu thread is sleeping then it is woken up.
243622821874SNeel Natu  * - If the vcpu is running on a different host_cpu then an IPI will be directed
243722821874SNeel Natu  *   to the host_cpu to cause the vcpu to trap into the hypervisor.
243822821874SNeel Natu  */
2439248e6799SNeel Natu static void
2440248e6799SNeel Natu vcpu_notify_event_locked(struct vcpu *vcpu, bool lapic_intr)
244175dd3366SNeel Natu {
244275dd3366SNeel Natu 	int hostcpu;
244375dd3366SNeel Natu 
244475dd3366SNeel Natu 	hostcpu = vcpu->hostcpu;
2445ef39d7e9SNeel Natu 	if (vcpu->state == VCPU_RUNNING) {
2446ef39d7e9SNeel Natu 		KASSERT(hostcpu != NOCPU, ("vcpu running on invalid hostcpu"));
2447de5ea6b6SNeel Natu 		if (hostcpu != curcpu) {
2448ef39d7e9SNeel Natu 			if (lapic_intr) {
2449add611fdSNeel Natu 				vlapic_post_intr(vcpu->vlapic, hostcpu,
2450add611fdSNeel Natu 				    vmm_ipinum);
2451ef39d7e9SNeel Natu 			} else {
245275dd3366SNeel Natu 				ipi_cpu(hostcpu, vmm_ipinum);
245375dd3366SNeel Natu 			}
2454ef39d7e9SNeel Natu 		} else {
2455ef39d7e9SNeel Natu 			/*
2456ef39d7e9SNeel Natu 			 * If the 'vcpu' is running on 'curcpu' then it must
2457ef39d7e9SNeel Natu 			 * be sending a notification to itself (e.g. SELF_IPI).
2458ef39d7e9SNeel Natu 			 * The pending event will be picked up when the vcpu
2459ef39d7e9SNeel Natu 			 * transitions back to guest context.
2460ef39d7e9SNeel Natu 			 */
2461ef39d7e9SNeel Natu 		}
2462ef39d7e9SNeel Natu 	} else {
2463ef39d7e9SNeel Natu 		KASSERT(hostcpu == NOCPU, ("vcpu state %d not consistent "
2464ef39d7e9SNeel Natu 		    "with hostcpu %d", vcpu->state, hostcpu));
2465366f6083SPeter Grehan 		if (vcpu->state == VCPU_SLEEPING)
2466366f6083SPeter Grehan 			wakeup_one(vcpu);
2467366f6083SPeter Grehan 	}
2468248e6799SNeel Natu }
2469248e6799SNeel Natu 
2470248e6799SNeel Natu void
2471248e6799SNeel Natu vcpu_notify_event(struct vm *vm, int vcpuid, bool lapic_intr)
2472248e6799SNeel Natu {
2473248e6799SNeel Natu 	struct vcpu *vcpu = &vm->vcpu[vcpuid];
2474248e6799SNeel Natu 
2475248e6799SNeel Natu 	vcpu_lock(vcpu);
2476248e6799SNeel Natu 	vcpu_notify_event_locked(vcpu, lapic_intr);
2477f76fc5d4SNeel Natu 	vcpu_unlock(vcpu);
2478f76fc5d4SNeel Natu }
2479318224bbSNeel Natu 
2480318224bbSNeel Natu struct vmspace *
2481318224bbSNeel Natu vm_get_vmspace(struct vm *vm)
2482318224bbSNeel Natu {
2483318224bbSNeel Natu 
2484318224bbSNeel Natu 	return (vm->vmspace);
2485318224bbSNeel Natu }
2486565bbb86SNeel Natu 
2487565bbb86SNeel Natu int
2488565bbb86SNeel Natu vm_apicid2vcpuid(struct vm *vm, int apicid)
2489565bbb86SNeel Natu {
2490565bbb86SNeel Natu 	/*
2491565bbb86SNeel Natu 	 * XXX apic id is assumed to be numerically identical to vcpu id
2492565bbb86SNeel Natu 	 */
2493565bbb86SNeel Natu 	return (apicid);
2494565bbb86SNeel Natu }
24955b8a8cd1SNeel Natu 
24965b8a8cd1SNeel Natu void
24975b8a8cd1SNeel Natu vm_smp_rendezvous(struct vm *vm, int vcpuid, cpuset_t dest,
24985b8a8cd1SNeel Natu     vm_rendezvous_func_t func, void *arg)
24995b8a8cd1SNeel Natu {
2500970955e4SNeel Natu 	int i;
2501970955e4SNeel Natu 
25025b8a8cd1SNeel Natu 	/*
25035b8a8cd1SNeel Natu 	 * Enforce that this function is called without any locks
25045b8a8cd1SNeel Natu 	 */
25055b8a8cd1SNeel Natu 	WITNESS_WARN(WARN_PANIC, NULL, "vm_smp_rendezvous");
25065b8a8cd1SNeel Natu 	KASSERT(vcpuid == -1 || (vcpuid >= 0 && vcpuid < VM_MAXCPU),
25075b8a8cd1SNeel Natu 	    ("vm_smp_rendezvous: invalid vcpuid %d", vcpuid));
25085b8a8cd1SNeel Natu 
25095b8a8cd1SNeel Natu restart:
25105b8a8cd1SNeel Natu 	mtx_lock(&vm->rendezvous_mtx);
25115b8a8cd1SNeel Natu 	if (vm->rendezvous_func != NULL) {
25125b8a8cd1SNeel Natu 		/*
25135b8a8cd1SNeel Natu 		 * If a rendezvous is already in progress then we need to
25145b8a8cd1SNeel Natu 		 * call the rendezvous handler in case this 'vcpuid' is one
25155b8a8cd1SNeel Natu 		 * of the targets of the rendezvous.
25165b8a8cd1SNeel Natu 		 */
25175b8a8cd1SNeel Natu 		RENDEZVOUS_CTR0(vm, vcpuid, "Rendezvous already in progress");
25185b8a8cd1SNeel Natu 		mtx_unlock(&vm->rendezvous_mtx);
25195b8a8cd1SNeel Natu 		vm_handle_rendezvous(vm, vcpuid);
25205b8a8cd1SNeel Natu 		goto restart;
25215b8a8cd1SNeel Natu 	}
25225b8a8cd1SNeel Natu 	KASSERT(vm->rendezvous_func == NULL, ("vm_smp_rendezvous: previous "
25235b8a8cd1SNeel Natu 	    "rendezvous is still in progress"));
25245b8a8cd1SNeel Natu 
25255b8a8cd1SNeel Natu 	RENDEZVOUS_CTR0(vm, vcpuid, "Initiating rendezvous");
25265b8a8cd1SNeel Natu 	vm->rendezvous_req_cpus = dest;
25275b8a8cd1SNeel Natu 	CPU_ZERO(&vm->rendezvous_done_cpus);
25285b8a8cd1SNeel Natu 	vm->rendezvous_arg = arg;
25295b8a8cd1SNeel Natu 	vm_set_rendezvous_func(vm, func);
25305b8a8cd1SNeel Natu 	mtx_unlock(&vm->rendezvous_mtx);
25315b8a8cd1SNeel Natu 
2532970955e4SNeel Natu 	/*
2533970955e4SNeel Natu 	 * Wake up any sleeping vcpus and trigger a VM-exit in any running
2534970955e4SNeel Natu 	 * vcpus so they handle the rendezvous as soon as possible.
2535970955e4SNeel Natu 	 */
2536970955e4SNeel Natu 	for (i = 0; i < VM_MAXCPU; i++) {
2537970955e4SNeel Natu 		if (CPU_ISSET(i, &dest))
2538970955e4SNeel Natu 			vcpu_notify_event(vm, i, false);
2539970955e4SNeel Natu 	}
2540970955e4SNeel Natu 
25415b8a8cd1SNeel Natu 	vm_handle_rendezvous(vm, vcpuid);
25425b8a8cd1SNeel Natu }
2543762fd208STycho Nightingale 
2544762fd208STycho Nightingale struct vatpic *
2545762fd208STycho Nightingale vm_atpic(struct vm *vm)
2546762fd208STycho Nightingale {
2547762fd208STycho Nightingale 	return (vm->vatpic);
2548762fd208STycho Nightingale }
2549e883c9bbSTycho Nightingale 
2550e883c9bbSTycho Nightingale struct vatpit *
2551e883c9bbSTycho Nightingale vm_atpit(struct vm *vm)
2552e883c9bbSTycho Nightingale {
2553e883c9bbSTycho Nightingale 	return (vm->vatpit);
2554e883c9bbSTycho Nightingale }
2555d17b5104SNeel Natu 
2556160ef77aSNeel Natu struct vpmtmr *
2557160ef77aSNeel Natu vm_pmtmr(struct vm *vm)
2558160ef77aSNeel Natu {
2559160ef77aSNeel Natu 
2560160ef77aSNeel Natu 	return (vm->vpmtmr);
2561160ef77aSNeel Natu }
2562160ef77aSNeel Natu 
25630dafa5cdSNeel Natu struct vrtc *
25640dafa5cdSNeel Natu vm_rtc(struct vm *vm)
25650dafa5cdSNeel Natu {
25660dafa5cdSNeel Natu 
25670dafa5cdSNeel Natu 	return (vm->vrtc);
25680dafa5cdSNeel Natu }
25690dafa5cdSNeel Natu 
2570d17b5104SNeel Natu enum vm_reg_name
2571d17b5104SNeel Natu vm_segment_name(int seg)
2572d17b5104SNeel Natu {
2573d17b5104SNeel Natu 	static enum vm_reg_name seg_names[] = {
2574d17b5104SNeel Natu 		VM_REG_GUEST_ES,
2575d17b5104SNeel Natu 		VM_REG_GUEST_CS,
2576d17b5104SNeel Natu 		VM_REG_GUEST_SS,
2577d17b5104SNeel Natu 		VM_REG_GUEST_DS,
2578d17b5104SNeel Natu 		VM_REG_GUEST_FS,
2579d17b5104SNeel Natu 		VM_REG_GUEST_GS
2580d17b5104SNeel Natu 	};
2581d17b5104SNeel Natu 
2582d17b5104SNeel Natu 	KASSERT(seg >= 0 && seg < nitems(seg_names),
2583d17b5104SNeel Natu 	    ("%s: invalid segment encoding %d", __func__, seg));
2584d17b5104SNeel Natu 	return (seg_names[seg]);
2585d17b5104SNeel Natu }
2586cf1d80d8SPeter Grehan 
2587d665d229SNeel Natu void
2588d665d229SNeel Natu vm_copy_teardown(struct vm *vm, int vcpuid, struct vm_copyinfo *copyinfo,
2589d665d229SNeel Natu     int num_copyinfo)
2590d665d229SNeel Natu {
2591d665d229SNeel Natu 	int idx;
2592d665d229SNeel Natu 
2593d665d229SNeel Natu 	for (idx = 0; idx < num_copyinfo; idx++) {
2594d665d229SNeel Natu 		if (copyinfo[idx].cookie != NULL)
2595d665d229SNeel Natu 			vm_gpa_release(copyinfo[idx].cookie);
2596d665d229SNeel Natu 	}
2597d665d229SNeel Natu 	bzero(copyinfo, num_copyinfo * sizeof(struct vm_copyinfo));
2598d665d229SNeel Natu }
2599d665d229SNeel Natu 
2600d665d229SNeel Natu int
2601d665d229SNeel Natu vm_copy_setup(struct vm *vm, int vcpuid, struct vm_guest_paging *paging,
2602d665d229SNeel Natu     uint64_t gla, size_t len, int prot, struct vm_copyinfo *copyinfo,
26039c4d5478SNeel Natu     int num_copyinfo, int *fault)
2604d665d229SNeel Natu {
2605d665d229SNeel Natu 	int error, idx, nused;
2606d665d229SNeel Natu 	size_t n, off, remaining;
2607d665d229SNeel Natu 	void *hva, *cookie;
2608d665d229SNeel Natu 	uint64_t gpa;
2609d665d229SNeel Natu 
2610d665d229SNeel Natu 	bzero(copyinfo, sizeof(struct vm_copyinfo) * num_copyinfo);
2611d665d229SNeel Natu 
2612d665d229SNeel Natu 	nused = 0;
2613d665d229SNeel Natu 	remaining = len;
2614d665d229SNeel Natu 	while (remaining > 0) {
2615d665d229SNeel Natu 		KASSERT(nused < num_copyinfo, ("insufficient vm_copyinfo"));
26169c4d5478SNeel Natu 		error = vm_gla2gpa(vm, vcpuid, paging, gla, prot, &gpa, fault);
26179c4d5478SNeel Natu 		if (error || *fault)
2618d665d229SNeel Natu 			return (error);
2619d665d229SNeel Natu 		off = gpa & PAGE_MASK;
2620d665d229SNeel Natu 		n = min(remaining, PAGE_SIZE - off);
2621d665d229SNeel Natu 		copyinfo[nused].gpa = gpa;
2622d665d229SNeel Natu 		copyinfo[nused].len = n;
2623d665d229SNeel Natu 		remaining -= n;
2624d665d229SNeel Natu 		gla += n;
2625d665d229SNeel Natu 		nused++;
2626d665d229SNeel Natu 	}
2627d665d229SNeel Natu 
2628d665d229SNeel Natu 	for (idx = 0; idx < nused; idx++) {
26299b1aa8d6SNeel Natu 		hva = vm_gpa_hold(vm, vcpuid, copyinfo[idx].gpa,
26309b1aa8d6SNeel Natu 		    copyinfo[idx].len, prot, &cookie);
2631d665d229SNeel Natu 		if (hva == NULL)
2632d665d229SNeel Natu 			break;
2633d665d229SNeel Natu 		copyinfo[idx].hva = hva;
2634d665d229SNeel Natu 		copyinfo[idx].cookie = cookie;
2635d665d229SNeel Natu 	}
2636d665d229SNeel Natu 
2637d665d229SNeel Natu 	if (idx != nused) {
2638d665d229SNeel Natu 		vm_copy_teardown(vm, vcpuid, copyinfo, num_copyinfo);
26399c4d5478SNeel Natu 		return (EFAULT);
2640d665d229SNeel Natu 	} else {
26419c4d5478SNeel Natu 		*fault = 0;
2642d665d229SNeel Natu 		return (0);
2643d665d229SNeel Natu 	}
2644d665d229SNeel Natu }
2645d665d229SNeel Natu 
2646d665d229SNeel Natu void
2647d665d229SNeel Natu vm_copyin(struct vm *vm, int vcpuid, struct vm_copyinfo *copyinfo, void *kaddr,
2648d665d229SNeel Natu     size_t len)
2649d665d229SNeel Natu {
2650d665d229SNeel Natu 	char *dst;
2651d665d229SNeel Natu 	int idx;
2652d665d229SNeel Natu 
2653d665d229SNeel Natu 	dst = kaddr;
2654d665d229SNeel Natu 	idx = 0;
2655d665d229SNeel Natu 	while (len > 0) {
2656d665d229SNeel Natu 		bcopy(copyinfo[idx].hva, dst, copyinfo[idx].len);
2657d665d229SNeel Natu 		len -= copyinfo[idx].len;
2658d665d229SNeel Natu 		dst += copyinfo[idx].len;
2659d665d229SNeel Natu 		idx++;
2660d665d229SNeel Natu 	}
2661d665d229SNeel Natu }
2662d665d229SNeel Natu 
2663d665d229SNeel Natu void
2664d665d229SNeel Natu vm_copyout(struct vm *vm, int vcpuid, const void *kaddr,
2665d665d229SNeel Natu     struct vm_copyinfo *copyinfo, size_t len)
2666d665d229SNeel Natu {
2667d665d229SNeel Natu 	const char *src;
2668d665d229SNeel Natu 	int idx;
2669d665d229SNeel Natu 
2670d665d229SNeel Natu 	src = kaddr;
2671d665d229SNeel Natu 	idx = 0;
2672d665d229SNeel Natu 	while (len > 0) {
2673d665d229SNeel Natu 		bcopy(src, copyinfo[idx].hva, copyinfo[idx].len);
2674d665d229SNeel Natu 		len -= copyinfo[idx].len;
2675d665d229SNeel Natu 		src += copyinfo[idx].len;
2676d665d229SNeel Natu 		idx++;
2677d665d229SNeel Natu 	}
2678d665d229SNeel Natu }
2679cf1d80d8SPeter Grehan 
2680cf1d80d8SPeter Grehan /*
2681cf1d80d8SPeter Grehan  * Return the amount of in-use and wired memory for the VM. Since
2682cf1d80d8SPeter Grehan  * these are global stats, only return the values with for vCPU 0
2683cf1d80d8SPeter Grehan  */
2684cf1d80d8SPeter Grehan VMM_STAT_DECLARE(VMM_MEM_RESIDENT);
2685cf1d80d8SPeter Grehan VMM_STAT_DECLARE(VMM_MEM_WIRED);
2686cf1d80d8SPeter Grehan 
2687cf1d80d8SPeter Grehan static void
2688cf1d80d8SPeter Grehan vm_get_rescnt(struct vm *vm, int vcpu, struct vmm_stat_type *stat)
2689cf1d80d8SPeter Grehan {
2690cf1d80d8SPeter Grehan 
2691cf1d80d8SPeter Grehan 	if (vcpu == 0) {
2692cf1d80d8SPeter Grehan 		vmm_stat_set(vm, vcpu, VMM_MEM_RESIDENT,
2693cf1d80d8SPeter Grehan 	       	    PAGE_SIZE * vmspace_resident_count(vm->vmspace));
2694cf1d80d8SPeter Grehan 	}
2695cf1d80d8SPeter Grehan }
2696cf1d80d8SPeter Grehan 
2697cf1d80d8SPeter Grehan static void
2698cf1d80d8SPeter Grehan vm_get_wiredcnt(struct vm *vm, int vcpu, struct vmm_stat_type *stat)
2699cf1d80d8SPeter Grehan {
2700cf1d80d8SPeter Grehan 
2701cf1d80d8SPeter Grehan 	if (vcpu == 0) {
2702cf1d80d8SPeter Grehan 		vmm_stat_set(vm, vcpu, VMM_MEM_WIRED,
2703cf1d80d8SPeter Grehan 	      	    PAGE_SIZE * pmap_wired_count(vmspace_pmap(vm->vmspace)));
2704cf1d80d8SPeter Grehan 	}
2705cf1d80d8SPeter Grehan }
2706cf1d80d8SPeter Grehan 
2707cf1d80d8SPeter Grehan VMM_STAT_FUNC(VMM_MEM_RESIDENT, "Resident memory", vm_get_rescnt);
2708cf1d80d8SPeter Grehan VMM_STAT_FUNC(VMM_MEM_WIRED, "Wired memory", vm_get_wiredcnt);
2709