xref: /freebsd/sys/amd64/vmm/vmm.c (revision e3b4fe645e50bfd06becb74e52ea958315024d5f)
1366f6083SPeter Grehan /*-
24d846d26SWarner Losh  * SPDX-License-Identifier: BSD-2-Clause
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 
29366f6083SPeter Grehan #include <sys/cdefs.h>
30483d953aSJohn Baldwin #include "opt_bhyve_snapshot.h"
31483d953aSJohn Baldwin 
32366f6083SPeter Grehan #include <sys/param.h>
3338f1b189SPeter Grehan #include <sys/systm.h>
34366f6083SPeter Grehan #include <sys/kernel.h>
35366f6083SPeter Grehan #include <sys/module.h>
36366f6083SPeter Grehan #include <sys/sysctl.h>
37366f6083SPeter Grehan #include <sys/malloc.h>
38366f6083SPeter Grehan #include <sys/pcpu.h>
39366f6083SPeter Grehan #include <sys/lock.h>
40366f6083SPeter Grehan #include <sys/mutex.h>
41366f6083SPeter Grehan #include <sys/proc.h>
42318224bbSNeel Natu #include <sys/rwlock.h>
43366f6083SPeter Grehan #include <sys/sched.h>
44366f6083SPeter Grehan #include <sys/smp.h>
4567b69e76SJohn Baldwin #include <sys/sx.h>
46483d953aSJohn Baldwin #include <sys/vnode.h>
47366f6083SPeter Grehan 
48366f6083SPeter Grehan #include <vm/vm.h>
493c48106aSKonstantin Belousov #include <vm/vm_param.h>
503c48106aSKonstantin Belousov #include <vm/vm_extern.h>
51318224bbSNeel Natu #include <vm/vm_object.h>
52318224bbSNeel Natu #include <vm/vm_page.h>
53318224bbSNeel Natu #include <vm/pmap.h>
54318224bbSNeel Natu #include <vm/vm_map.h>
55483d953aSJohn Baldwin #include <vm/vm_pager.h>
56483d953aSJohn Baldwin #include <vm/vm_kern.h>
57483d953aSJohn Baldwin #include <vm/vnode_pager.h>
58483d953aSJohn Baldwin #include <vm/swap_pager.h>
59483d953aSJohn Baldwin #include <vm/uma.h>
60366f6083SPeter Grehan 
6163e62d39SJohn Baldwin #include <machine/cpu.h>
62366f6083SPeter Grehan #include <machine/pcb.h>
6375dd3366SNeel Natu #include <machine/smp.h>
64bd50262fSKonstantin Belousov #include <machine/md_var.h>
651c052192SNeel Natu #include <x86/psl.h>
6634a6b2d6SJohn Baldwin #include <x86/apicreg.h>
6715add60dSPeter Grehan #include <x86/ifunc.h>
68366f6083SPeter Grehan 
69366f6083SPeter Grehan #include <machine/vmm.h>
70565bbb86SNeel Natu #include <machine/vmm_dev.h>
71e813a873SNeel Natu #include <machine/vmm_instruction_emul.h>
72483d953aSJohn Baldwin #include <machine/vmm_snapshot.h>
73565bbb86SNeel Natu 
74d17b5104SNeel Natu #include "vmm_ioport.h"
75318224bbSNeel Natu #include "vmm_ktr.h"
76b01c2033SNeel Natu #include "vmm_host.h"
77366f6083SPeter Grehan #include "vmm_mem.h"
78366f6083SPeter Grehan #include "vmm_util.h"
79762fd208STycho Nightingale #include "vatpic.h"
80e883c9bbSTycho Nightingale #include "vatpit.h"
8108e3ff32SNeel Natu #include "vhpet.h"
82565bbb86SNeel Natu #include "vioapic.h"
83366f6083SPeter Grehan #include "vlapic.h"
84160ef77aSNeel Natu #include "vpmtmr.h"
850dafa5cdSNeel Natu #include "vrtc.h"
86366f6083SPeter Grehan #include "vmm_stat.h"
87f76fc5d4SNeel Natu #include "vmm_lapic.h"
88366f6083SPeter Grehan 
89366f6083SPeter Grehan #include "io/ppt.h"
90366f6083SPeter Grehan #include "io/iommu.h"
91366f6083SPeter Grehan 
92366f6083SPeter Grehan struct vlapic;
93366f6083SPeter Grehan 
945fcf252fSNeel Natu /*
955fcf252fSNeel Natu  * Initialization:
965fcf252fSNeel Natu  * (a) allocated when vcpu is created
975fcf252fSNeel Natu  * (i) initialized when vcpu is created and when it is reinitialized
985fcf252fSNeel Natu  * (o) initialized the first time the vcpu is created
995fcf252fSNeel Natu  * (x) initialized before use
1005fcf252fSNeel Natu  */
101366f6083SPeter Grehan struct vcpu {
1025fcf252fSNeel Natu 	struct mtx 	mtx;		/* (o) protects 'state' and 'hostcpu' */
1035fcf252fSNeel Natu 	enum vcpu_state	state;		/* (o) vcpu state */
104950af9ffSJohn Baldwin 	int		vcpuid;		/* (o) */
1055fcf252fSNeel Natu 	int		hostcpu;	/* (o) vcpu's host cpu */
106248e6799SNeel Natu 	int		reqidle;	/* (i) request vcpu to idle */
107950af9ffSJohn Baldwin 	struct vm	*vm;		/* (o) */
1081aa51504SJohn Baldwin 	void		*cookie;	/* (i) cpu-specific data */
1095fcf252fSNeel Natu 	struct vlapic	*vlapic;	/* (i) APIC device model */
1105fcf252fSNeel Natu 	enum x2apic_state x2apic_state;	/* (i) APIC mode */
111091d4532SNeel Natu 	uint64_t	exitintinfo;	/* (i) events pending at VM exit */
1125fcf252fSNeel Natu 	int		nmi_pending;	/* (i) NMI pending */
1135fcf252fSNeel Natu 	int		extint_pending;	/* (i) INTR pending */
1145fcf252fSNeel Natu 	int	exception_pending;	/* (i) exception pending */
115c9c75df4SNeel Natu 	int	exc_vector;		/* (x) exception collateral */
116c9c75df4SNeel Natu 	int	exc_errcode_valid;
117c9c75df4SNeel Natu 	uint32_t exc_errcode;
1185fcf252fSNeel Natu 	struct savefpu	*guestfpu;	/* (a,i) guest fpu state */
1195fcf252fSNeel Natu 	uint64_t	guest_xcr0;	/* (i) guest %xcr0 register */
1205fcf252fSNeel Natu 	void		*stats;		/* (a,i) statistics */
1215fcf252fSNeel Natu 	struct vm_exit	exitinfo;	/* (x) exit reason and collateral */
122e17eca32SMark Johnston 	cpuset_t	exitinfo_cpuset; /* (x) storage for vmexit handlers */
123d087a399SNeel Natu 	uint64_t	nextrip;	/* (x) next instruction to execute */
124483d953aSJohn Baldwin 	uint64_t	tsc_offset;	/* (o) TSC offsetting */
125366f6083SPeter Grehan };
126366f6083SPeter Grehan 
127f76fc5d4SNeel Natu #define	vcpu_lock_init(v)	mtx_init(&((v)->mtx), "vcpu lock", 0, MTX_SPIN)
12808ebb360SJohn Baldwin #define	vcpu_lock_destroy(v)	mtx_destroy(&((v)->mtx))
129f76fc5d4SNeel Natu #define	vcpu_lock(v)		mtx_lock_spin(&((v)->mtx))
130f76fc5d4SNeel Natu #define	vcpu_unlock(v)		mtx_unlock_spin(&((v)->mtx))
131318224bbSNeel Natu #define	vcpu_assert_locked(v)	mtx_assert(&((v)->mtx), MA_OWNED)
13275dd3366SNeel Natu 
133318224bbSNeel Natu struct mem_seg {
1349b1aa8d6SNeel Natu 	size_t	len;
1359b1aa8d6SNeel Natu 	bool	sysmem;
1369b1aa8d6SNeel Natu 	struct vm_object *object;
1379b1aa8d6SNeel Natu };
138e47fe318SCorvin Köhne #define	VM_MAX_MEMSEGS	4
1399b1aa8d6SNeel Natu 
1409b1aa8d6SNeel Natu struct mem_map {
141318224bbSNeel Natu 	vm_paddr_t	gpa;
142318224bbSNeel Natu 	size_t		len;
1439b1aa8d6SNeel Natu 	vm_ooffset_t	segoff;
1449b1aa8d6SNeel Natu 	int		segid;
1459b1aa8d6SNeel Natu 	int		prot;
1469b1aa8d6SNeel Natu 	int		flags;
147318224bbSNeel Natu };
14800d3723fSConrad Meyer #define	VM_MAX_MEMMAPS	8
149366f6083SPeter Grehan 
150366f6083SPeter Grehan /*
1515fcf252fSNeel Natu  * Initialization:
1525fcf252fSNeel Natu  * (o) initialized the first time the VM is created
1535fcf252fSNeel Natu  * (i) initialized when VM is created and when it is reinitialized
1545fcf252fSNeel Natu  * (x) initialized before use
15567b69e76SJohn Baldwin  *
15667b69e76SJohn Baldwin  * Locking:
15767b69e76SJohn Baldwin  * [m] mem_segs_lock
15867b69e76SJohn Baldwin  * [r] rendezvous_mtx
15967b69e76SJohn Baldwin  * [v] reads require one frozen vcpu, writes require freezing all vcpus
160366f6083SPeter Grehan  */
1615fcf252fSNeel Natu struct vm {
1625fcf252fSNeel Natu 	void		*cookie;		/* (i) cpu-specific data */
1635fcf252fSNeel Natu 	void		*iommu;			/* (x) iommu-specific data */
1645fcf252fSNeel Natu 	struct vhpet	*vhpet;			/* (i) virtual HPET */
1655fcf252fSNeel Natu 	struct vioapic	*vioapic;		/* (i) virtual ioapic */
1665fcf252fSNeel Natu 	struct vatpic	*vatpic;		/* (i) virtual atpic */
1675fcf252fSNeel Natu 	struct vatpit	*vatpit;		/* (i) virtual atpit */
168160ef77aSNeel Natu 	struct vpmtmr	*vpmtmr;		/* (i) virtual ACPI PM timer */
1690dafa5cdSNeel Natu 	struct vrtc	*vrtc;			/* (o) virtual RTC */
1705fcf252fSNeel Natu 	volatile cpuset_t active_cpus;		/* (i) active vcpus */
171fc276d92SJohn Baldwin 	volatile cpuset_t debug_cpus;		/* (i) vcpus stopped for debug */
172c0f35dbfSJohn Baldwin 	cpuset_t	startup_cpus;		/* (i) [r] waiting for startup */
1735fcf252fSNeel Natu 	int		suspend;		/* (i) stop VM execution */
17498568a00SJohn Baldwin 	bool		dying;			/* (o) is dying */
1755fcf252fSNeel Natu 	volatile cpuset_t suspended_cpus; 	/* (i) suspended vcpus */
1765fcf252fSNeel Natu 	volatile cpuset_t halted_cpus;		/* (x) cpus in a hard halt */
17767b69e76SJohn Baldwin 	cpuset_t	rendezvous_req_cpus;	/* (x) [r] rendezvous requested */
17867b69e76SJohn Baldwin 	cpuset_t	rendezvous_done_cpus;	/* (x) [r] rendezvous finished */
17967b69e76SJohn Baldwin 	void		*rendezvous_arg;	/* (x) [r] rendezvous func/arg */
1805b8a8cd1SNeel Natu 	vm_rendezvous_func_t rendezvous_func;
1815fcf252fSNeel Natu 	struct mtx	rendezvous_mtx;		/* (o) rendezvous lock */
18267b69e76SJohn Baldwin 	struct mem_map	mem_maps[VM_MAX_MEMMAPS]; /* (i) [m+v] guest address space */
18367b69e76SJohn Baldwin 	struct mem_seg	mem_segs[VM_MAX_MEMSEGS]; /* (o) [m+v] guest memory regions */
1845fcf252fSNeel Natu 	struct vmspace	*vmspace;		/* (o) guest's address space */
185df95cc76SKa Ho Ng 	char		name[VM_MAX_NAMELEN+1];	/* (o) virtual machine name */
186ee98f99dSJohn Baldwin 	struct vcpu	**vcpu;			/* (o) guest vcpus */
18701d822d3SRodney W. Grimes 	/* The following describe the vm cpu topology */
18801d822d3SRodney W. Grimes 	uint16_t	sockets;		/* (o) num of sockets */
18901d822d3SRodney W. Grimes 	uint16_t	cores;			/* (o) num of cores/socket */
19001d822d3SRodney W. Grimes 	uint16_t	threads;		/* (o) num of threads/core */
19101d822d3SRodney W. Grimes 	uint16_t	maxcpus;		/* (o) max pluggable cpus */
19267b69e76SJohn Baldwin 	struct sx	mem_segs_lock;		/* (o) */
19398568a00SJohn Baldwin 	struct sx	vcpus_init_lock;	/* (o) */
194366f6083SPeter Grehan };
195366f6083SPeter Grehan 
196950af9ffSJohn Baldwin #define	VMM_CTR0(vcpu, format)						\
197950af9ffSJohn Baldwin 	VCPU_CTR0((vcpu)->vm, (vcpu)->vcpuid, format)
198950af9ffSJohn Baldwin 
199950af9ffSJohn Baldwin #define	VMM_CTR1(vcpu, format, p1)					\
200950af9ffSJohn Baldwin 	VCPU_CTR1((vcpu)->vm, (vcpu)->vcpuid, format, p1)
201950af9ffSJohn Baldwin 
202950af9ffSJohn Baldwin #define	VMM_CTR2(vcpu, format, p1, p2)					\
203950af9ffSJohn Baldwin 	VCPU_CTR2((vcpu)->vm, (vcpu)->vcpuid, format, p1, p2)
204950af9ffSJohn Baldwin 
205950af9ffSJohn Baldwin #define	VMM_CTR3(vcpu, format, p1, p2, p3)				\
206950af9ffSJohn Baldwin 	VCPU_CTR3((vcpu)->vm, (vcpu)->vcpuid, format, p1, p2, p3)
207950af9ffSJohn Baldwin 
208950af9ffSJohn Baldwin #define	VMM_CTR4(vcpu, format, p1, p2, p3, p4)				\
209950af9ffSJohn Baldwin 	VCPU_CTR4((vcpu)->vm, (vcpu)->vcpuid, format, p1, p2, p3, p4)
210950af9ffSJohn Baldwin 
211d5408b1dSNeel Natu static int vmm_initialized;
212d5408b1dSNeel Natu 
21315add60dSPeter Grehan static void	vmmops_panic(void);
214366f6083SPeter Grehan 
21515add60dSPeter Grehan static void
21615add60dSPeter Grehan vmmops_panic(void)
21715add60dSPeter Grehan {
21815add60dSPeter Grehan 	panic("vmm_ops func called when !vmm_is_intel() && !vmm_is_svm()");
21915add60dSPeter Grehan }
22015add60dSPeter Grehan 
22115add60dSPeter Grehan #define	DEFINE_VMMOPS_IFUNC(ret_type, opname, args)			\
22215add60dSPeter Grehan     DEFINE_IFUNC(static, ret_type, vmmops_##opname, args)		\
22315add60dSPeter Grehan     {									\
22415add60dSPeter Grehan     	if (vmm_is_intel())						\
22515add60dSPeter Grehan     		return (vmm_ops_intel.opname);				\
22615add60dSPeter Grehan     	else if (vmm_is_svm())						\
22715add60dSPeter Grehan     		return (vmm_ops_amd.opname);				\
22815add60dSPeter Grehan     	else								\
22915add60dSPeter Grehan     		return ((ret_type (*)args)vmmops_panic);		\
23015add60dSPeter Grehan     }
23115add60dSPeter Grehan 
23215add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(int, modinit, (int ipinum))
23315add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(int, modcleanup, (void))
23415add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(void, modresume, (void))
23515add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(void *, init, (struct vm *vm, struct pmap *pmap))
236869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, run, (void *vcpui, register_t rip, struct pmap *pmap,
237869c8d19SJohn Baldwin     struct vm_eventinfo *info))
23815add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(void, cleanup, (void *vmi))
239950af9ffSJohn Baldwin DEFINE_VMMOPS_IFUNC(void *, vcpu_init, (void *vmi, struct vcpu *vcpu,
240950af9ffSJohn Baldwin     int vcpu_id))
241869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(void, vcpu_cleanup, (void *vcpui))
242869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, getreg, (void *vcpui, int num, uint64_t *retval))
243869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, setreg, (void *vcpui, int num, uint64_t val))
244869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, getdesc, (void *vcpui, int num, struct seg_desc *desc))
245869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, setdesc, (void *vcpui, int num, struct seg_desc *desc))
246869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, getcap, (void *vcpui, int num, int *retval))
247869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, setcap, (void *vcpui, int num, int val))
24815add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(struct vmspace *, vmspace_alloc, (vm_offset_t min,
24915add60dSPeter Grehan     vm_offset_t max))
25015add60dSPeter Grehan DEFINE_VMMOPS_IFUNC(void, vmspace_free, (struct vmspace *vmspace))
251869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(struct vlapic *, vlapic_init, (void *vcpui))
252869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(void, vlapic_cleanup, (struct vlapic *vlapic))
253483d953aSJohn Baldwin #ifdef BHYVE_SNAPSHOT
254869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, vcpu_snapshot, (void *vcpui,
255869c8d19SJohn Baldwin     struct vm_snapshot_meta *meta))
256869c8d19SJohn Baldwin DEFINE_VMMOPS_IFUNC(int, restore_tsc, (void *vcpui, uint64_t now))
257483d953aSJohn Baldwin #endif
258366f6083SPeter Grehan 
2596ac73777STycho Nightingale SDT_PROVIDER_DEFINE(vmm);
2606ac73777STycho Nightingale 
261366f6083SPeter Grehan static MALLOC_DEFINE(M_VM, "vm", "vm");
262366f6083SPeter Grehan 
263366f6083SPeter Grehan /* statistics */
26461592433SNeel Natu static VMM_STAT(VCPU_TOTAL_RUNTIME, "vcpu total runtime");
265366f6083SPeter Grehan 
266b40598c5SPawel Biernacki SYSCTL_NODE(_hw, OID_AUTO, vmm, CTLFLAG_RW | CTLFLAG_MPSAFE, NULL,
267b40598c5SPawel Biernacki     NULL);
268add611fdSNeel Natu 
269055fc2cbSNeel Natu /*
270055fc2cbSNeel Natu  * Halt the guest if all vcpus are executing a HLT instruction with
271055fc2cbSNeel Natu  * interrupts disabled.
272055fc2cbSNeel Natu  */
273055fc2cbSNeel Natu static int halt_detection_enabled = 1;
274055fc2cbSNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, halt_detection, CTLFLAG_RDTUN,
275055fc2cbSNeel Natu     &halt_detection_enabled, 0,
276055fc2cbSNeel Natu     "Halt VM if all vcpus execute HLT with interrupts disabled");
277055fc2cbSNeel Natu 
278978f3da1SAndriy Gapon static int vmm_ipinum;
279add611fdSNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, ipinum, CTLFLAG_RD, &vmm_ipinum, 0,
280add611fdSNeel Natu     "IPI vector used for vcpu notifications");
281add611fdSNeel Natu 
282b0538143SNeel Natu static int trace_guest_exceptions;
283b0538143SNeel Natu SYSCTL_INT(_hw_vmm, OID_AUTO, trace_guest_exceptions, CTLFLAG_RDTUN,
284b0538143SNeel Natu     &trace_guest_exceptions, 0,
285b0538143SNeel Natu     "Trap into hypervisor on all guest exceptions and reflect them back");
286b0538143SNeel Natu 
2873ba952e1SCorvin Köhne static int trap_wbinvd;
2883ba952e1SCorvin Köhne SYSCTL_INT(_hw_vmm, OID_AUTO, trap_wbinvd, CTLFLAG_RDTUN, &trap_wbinvd, 0,
2893ba952e1SCorvin Köhne     "WBINVD triggers a VM-exit");
2903ba952e1SCorvin Köhne 
291ee98f99dSJohn Baldwin u_int vm_maxcpu;
292ee98f99dSJohn Baldwin SYSCTL_UINT(_hw_vmm, OID_AUTO, maxcpu, CTLFLAG_RDTUN | CTLFLAG_NOFETCH,
293ee98f99dSJohn Baldwin     &vm_maxcpu, 0, "Maximum number of vCPUs");
294ee98f99dSJohn Baldwin 
2959b1aa8d6SNeel Natu static void vm_free_memmap(struct vm *vm, int ident);
2969b1aa8d6SNeel Natu static bool sysmem_mapping(struct vm *vm, struct mem_map *mm);
297248e6799SNeel Natu static void vcpu_notify_event_locked(struct vcpu *vcpu, bool lapic_intr);
298248e6799SNeel Natu 
299ee98f99dSJohn Baldwin /*
300ee98f99dSJohn Baldwin  * Upper limit on vm_maxcpu.  Limited by use of uint16_t types for CPU
301ee98f99dSJohn Baldwin  * counts as well as range of vpid values for VT-x and by the capacity
302ee98f99dSJohn Baldwin  * of cpuset_t masks.  The call to new_unrhdr() in vpid_init() in
303ee98f99dSJohn Baldwin  * vmx.c requires 'vm_maxcpu + 1 <= 0xffff', hence the '- 1' below.
304ee98f99dSJohn Baldwin  */
305ee98f99dSJohn Baldwin #define	VM_MAXCPU	MIN(0xffff - 1, CPU_SETSIZE)
306ee98f99dSJohn Baldwin 
307248e6799SNeel Natu #ifdef KTR
308248e6799SNeel Natu static const char *
309248e6799SNeel Natu vcpu_state2str(enum vcpu_state state)
310248e6799SNeel Natu {
311248e6799SNeel Natu 
312248e6799SNeel Natu 	switch (state) {
313248e6799SNeel Natu 	case VCPU_IDLE:
314248e6799SNeel Natu 		return ("idle");
315248e6799SNeel Natu 	case VCPU_FROZEN:
316248e6799SNeel Natu 		return ("frozen");
317248e6799SNeel Natu 	case VCPU_RUNNING:
318248e6799SNeel Natu 		return ("running");
319248e6799SNeel Natu 	case VCPU_SLEEPING:
320248e6799SNeel Natu 		return ("sleeping");
321248e6799SNeel Natu 	default:
322248e6799SNeel Natu 		return ("unknown");
323248e6799SNeel Natu 	}
324248e6799SNeel Natu }
325248e6799SNeel Natu #endif
326248e6799SNeel Natu 
327366f6083SPeter Grehan static void
32898568a00SJohn Baldwin vcpu_cleanup(struct vcpu *vcpu, bool destroy)
329366f6083SPeter Grehan {
330869c8d19SJohn Baldwin 	vmmops_vlapic_cleanup(vcpu->vlapic);
331869c8d19SJohn Baldwin 	vmmops_vcpu_cleanup(vcpu->cookie);
3321aa51504SJohn Baldwin 	vcpu->cookie = NULL;
3335fcf252fSNeel Natu 	if (destroy) {
334366f6083SPeter Grehan 		vmm_stat_free(vcpu->stats);
33538f1b189SPeter Grehan 		fpu_save_area_free(vcpu->guestfpu);
33608ebb360SJohn Baldwin 		vcpu_lock_destroy(vcpu);
337af3b48e1SJohn Baldwin 		free(vcpu, M_VM);
338366f6083SPeter Grehan 	}
3395fcf252fSNeel Natu }
340366f6083SPeter Grehan 
34198568a00SJohn Baldwin static struct vcpu *
34298568a00SJohn Baldwin vcpu_alloc(struct vm *vm, int vcpu_id)
343366f6083SPeter Grehan {
344366f6083SPeter Grehan 	struct vcpu *vcpu;
345366f6083SPeter Grehan 
346a488c9c9SRodney W. Grimes 	KASSERT(vcpu_id >= 0 && vcpu_id < vm->maxcpus,
3475fcf252fSNeel Natu 	    ("vcpu_init: invalid vcpu %d", vcpu_id));
3485fcf252fSNeel Natu 
34998568a00SJohn Baldwin 	vcpu = malloc(sizeof(*vcpu), M_VM, M_WAITOK | M_ZERO);
35075dd3366SNeel Natu 	vcpu_lock_init(vcpu);
3515fcf252fSNeel Natu 	vcpu->state = VCPU_IDLE;
35275dd3366SNeel Natu 	vcpu->hostcpu = NOCPU;
353950af9ffSJohn Baldwin 	vcpu->vcpuid = vcpu_id;
354950af9ffSJohn Baldwin 	vcpu->vm = vm;
3555fcf252fSNeel Natu 	vcpu->guestfpu = fpu_save_area_alloc();
3565fcf252fSNeel Natu 	vcpu->stats = vmm_stat_alloc();
357483d953aSJohn Baldwin 	vcpu->tsc_offset = 0;
35898568a00SJohn Baldwin 	return (vcpu);
3595fcf252fSNeel Natu }
3605fcf252fSNeel Natu 
36198568a00SJohn Baldwin static void
36298568a00SJohn Baldwin vcpu_init(struct vcpu *vcpu)
36398568a00SJohn Baldwin {
36498568a00SJohn Baldwin 	vcpu->cookie = vmmops_vcpu_init(vcpu->vm->cookie, vcpu, vcpu->vcpuid);
365869c8d19SJohn Baldwin 	vcpu->vlapic = vmmops_vlapic_init(vcpu->cookie);
3663f0f4b15SJohn Baldwin 	vm_set_x2apic_state(vcpu, X2APIC_DISABLED);
367248e6799SNeel Natu 	vcpu->reqidle = 0;
368091d4532SNeel Natu 	vcpu->exitintinfo = 0;
3695fcf252fSNeel Natu 	vcpu->nmi_pending = 0;
3705fcf252fSNeel Natu 	vcpu->extint_pending = 0;
3715fcf252fSNeel Natu 	vcpu->exception_pending = 0;
372abb023fbSJohn Baldwin 	vcpu->guest_xcr0 = XFEATURE_ENABLED_X87;
37338f1b189SPeter Grehan 	fpu_save_area_reset(vcpu->guestfpu);
3745fcf252fSNeel Natu 	vmm_stat_init(vcpu->stats);
375366f6083SPeter Grehan }
376366f6083SPeter Grehan 
377b0538143SNeel Natu int
37880cb5d84SJohn Baldwin vcpu_trace_exceptions(struct vcpu *vcpu)
379b0538143SNeel Natu {
380b0538143SNeel Natu 
381b0538143SNeel Natu 	return (trace_guest_exceptions);
382b0538143SNeel Natu }
383b0538143SNeel Natu 
3843ba952e1SCorvin Köhne int
38580cb5d84SJohn Baldwin vcpu_trap_wbinvd(struct vcpu *vcpu)
3863ba952e1SCorvin Köhne {
3873ba952e1SCorvin Köhne 	return (trap_wbinvd);
3883ba952e1SCorvin Köhne }
3893ba952e1SCorvin Köhne 
39098ed632cSNeel Natu struct vm_exit *
39180cb5d84SJohn Baldwin vm_exitinfo(struct vcpu *vcpu)
39298ed632cSNeel Natu {
39398ed632cSNeel Natu 	return (&vcpu->exitinfo);
39498ed632cSNeel Natu }
39598ed632cSNeel Natu 
396e17eca32SMark Johnston cpuset_t *
397e17eca32SMark Johnston vm_exitinfo_cpuset(struct vcpu *vcpu)
398e17eca32SMark Johnston {
399e17eca32SMark Johnston 	return (&vcpu->exitinfo_cpuset);
400e17eca32SMark Johnston }
401e17eca32SMark Johnston 
402366f6083SPeter Grehan static int
403366f6083SPeter Grehan vmm_init(void)
404366f6083SPeter Grehan {
405366f6083SPeter Grehan 	int error;
406366f6083SPeter Grehan 
40715add60dSPeter Grehan 	if (!vmm_is_hw_supported())
40815add60dSPeter Grehan 		return (ENXIO);
40915add60dSPeter Grehan 
410ee98f99dSJohn Baldwin 	vm_maxcpu = mp_ncpus;
411ee98f99dSJohn Baldwin 	TUNABLE_INT_FETCH("hw.vmm.maxcpu", &vm_maxcpu);
412ee98f99dSJohn Baldwin 
413ee98f99dSJohn Baldwin 	if (vm_maxcpu > VM_MAXCPU) {
414ee98f99dSJohn Baldwin 		printf("vmm: vm_maxcpu clamped to %u\n", VM_MAXCPU);
415ee98f99dSJohn Baldwin 		vm_maxcpu = VM_MAXCPU;
416ee98f99dSJohn Baldwin 	}
417ee98f99dSJohn Baldwin 	if (vm_maxcpu == 0)
418ee98f99dSJohn Baldwin 		vm_maxcpu = 1;
419ee98f99dSJohn Baldwin 
420b01c2033SNeel Natu 	vmm_host_state_init();
421add611fdSNeel Natu 
422bd50262fSKonstantin Belousov 	vmm_ipinum = lapic_ipi_alloc(pti ? &IDTVEC(justreturn1_pti) :
423bd50262fSKonstantin Belousov 	    &IDTVEC(justreturn));
42418a2b08eSNeel Natu 	if (vmm_ipinum < 0)
425add611fdSNeel Natu 		vmm_ipinum = IPI_AST;
426366f6083SPeter Grehan 
427366f6083SPeter Grehan 	error = vmm_mem_init();
428366f6083SPeter Grehan 	if (error)
429366f6083SPeter Grehan 		return (error);
430366f6083SPeter Grehan 
43115add60dSPeter Grehan 	vmm_resume_p = vmmops_modresume;
432366f6083SPeter Grehan 
43315add60dSPeter Grehan 	return (vmmops_modinit(vmm_ipinum));
434366f6083SPeter Grehan }
435366f6083SPeter Grehan 
436366f6083SPeter Grehan static int
437366f6083SPeter Grehan vmm_handler(module_t mod, int what, void *arg)
438366f6083SPeter Grehan {
439366f6083SPeter Grehan 	int error;
440366f6083SPeter Grehan 
441366f6083SPeter Grehan 	switch (what) {
442366f6083SPeter Grehan 	case MOD_LOAD:
44315add60dSPeter Grehan 		if (vmm_is_hw_supported()) {
444366f6083SPeter Grehan 			vmmdev_init();
445366f6083SPeter Grehan 			error = vmm_init();
446d5408b1dSNeel Natu 			if (error == 0)
447d5408b1dSNeel Natu 				vmm_initialized = 1;
44815add60dSPeter Grehan 		} else {
44915add60dSPeter Grehan 			error = ENXIO;
45015add60dSPeter Grehan 		}
451366f6083SPeter Grehan 		break;
452366f6083SPeter Grehan 	case MOD_UNLOAD:
45315add60dSPeter Grehan 		if (vmm_is_hw_supported()) {
454cdc5b9e7SNeel Natu 			error = vmmdev_cleanup();
455cdc5b9e7SNeel Natu 			if (error == 0) {
45663e62d39SJohn Baldwin 				vmm_resume_p = NULL;
457366f6083SPeter Grehan 				iommu_cleanup();
458add611fdSNeel Natu 				if (vmm_ipinum != IPI_AST)
45918a2b08eSNeel Natu 					lapic_ipi_free(vmm_ipinum);
46015add60dSPeter Grehan 				error = vmmops_modcleanup();
46181ef6611SPeter Grehan 				/*
46281ef6611SPeter Grehan 				 * Something bad happened - prevent new
46381ef6611SPeter Grehan 				 * VMs from being created
46481ef6611SPeter Grehan 				 */
46581ef6611SPeter Grehan 				if (error)
466d5408b1dSNeel Natu 					vmm_initialized = 0;
46781ef6611SPeter Grehan 			}
46815add60dSPeter Grehan 		} else {
46915add60dSPeter Grehan 			error = 0;
47015add60dSPeter Grehan 		}
471366f6083SPeter Grehan 		break;
472366f6083SPeter Grehan 	default:
473366f6083SPeter Grehan 		error = 0;
474366f6083SPeter Grehan 		break;
475366f6083SPeter Grehan 	}
476366f6083SPeter Grehan 	return (error);
477366f6083SPeter Grehan }
478366f6083SPeter Grehan 
479366f6083SPeter Grehan static moduledata_t vmm_kmod = {
480366f6083SPeter Grehan 	"vmm",
481366f6083SPeter Grehan 	vmm_handler,
482366f6083SPeter Grehan 	NULL
483366f6083SPeter Grehan };
484366f6083SPeter Grehan 
485366f6083SPeter Grehan /*
486e3f0800bSNeel Natu  * vmm initialization has the following dependencies:
487e3f0800bSNeel Natu  *
488e3f0800bSNeel Natu  * - VT-x initialization requires smp_rendezvous() and therefore must happen
489e3f0800bSNeel Natu  *   after SMP is fully functional (after SI_SUB_SMP).
490366f6083SPeter Grehan  */
491e3f0800bSNeel Natu DECLARE_MODULE(vmm, vmm_kmod, SI_SUB_SMP + 1, SI_ORDER_ANY);
492366f6083SPeter Grehan MODULE_VERSION(vmm, 1);
493366f6083SPeter Grehan 
4945fcf252fSNeel Natu static void
4955fcf252fSNeel Natu vm_init(struct vm *vm, bool create)
4965fcf252fSNeel Natu {
49715add60dSPeter Grehan 	vm->cookie = vmmops_init(vm, vmspace_pmap(vm->vmspace));
4985fcf252fSNeel Natu 	vm->iommu = NULL;
4995fcf252fSNeel Natu 	vm->vioapic = vioapic_init(vm);
5005fcf252fSNeel Natu 	vm->vhpet = vhpet_init(vm);
5015fcf252fSNeel Natu 	vm->vatpic = vatpic_init(vm);
5025fcf252fSNeel Natu 	vm->vatpit = vatpit_init(vm);
503160ef77aSNeel Natu 	vm->vpmtmr = vpmtmr_init(vm);
5040dafa5cdSNeel Natu 	if (create)
5050dafa5cdSNeel Natu 		vm->vrtc = vrtc_init(vm);
5065fcf252fSNeel Natu 
5075fcf252fSNeel Natu 	CPU_ZERO(&vm->active_cpus);
508fc276d92SJohn Baldwin 	CPU_ZERO(&vm->debug_cpus);
509c0f35dbfSJohn Baldwin 	CPU_ZERO(&vm->startup_cpus);
5105fcf252fSNeel Natu 
5115fcf252fSNeel Natu 	vm->suspend = 0;
5125fcf252fSNeel Natu 	CPU_ZERO(&vm->suspended_cpus);
5135fcf252fSNeel Natu 
51498568a00SJohn Baldwin 	if (!create) {
51598568a00SJohn Baldwin 		for (int i = 0; i < vm->maxcpus; i++) {
51698568a00SJohn Baldwin 			if (vm->vcpu[i] != NULL)
51798568a00SJohn Baldwin 				vcpu_init(vm->vcpu[i]);
51898568a00SJohn Baldwin 		}
51998568a00SJohn Baldwin 	}
52098568a00SJohn Baldwin }
52198568a00SJohn Baldwin 
52298568a00SJohn Baldwin void
52398568a00SJohn Baldwin vm_disable_vcpu_creation(struct vm *vm)
52498568a00SJohn Baldwin {
52598568a00SJohn Baldwin 	sx_xlock(&vm->vcpus_init_lock);
52698568a00SJohn Baldwin 	vm->dying = true;
52798568a00SJohn Baldwin 	sx_xunlock(&vm->vcpus_init_lock);
52898568a00SJohn Baldwin }
52998568a00SJohn Baldwin 
53098568a00SJohn Baldwin struct vcpu *
53198568a00SJohn Baldwin vm_alloc_vcpu(struct vm *vm, int vcpuid)
53298568a00SJohn Baldwin {
53398568a00SJohn Baldwin 	struct vcpu *vcpu;
53498568a00SJohn Baldwin 
53598568a00SJohn Baldwin 	if (vcpuid < 0 || vcpuid >= vm_get_maxcpus(vm))
53698568a00SJohn Baldwin 		return (NULL);
53798568a00SJohn Baldwin 
53898568a00SJohn Baldwin 	vcpu = atomic_load_ptr(&vm->vcpu[vcpuid]);
53998568a00SJohn Baldwin 	if (__predict_true(vcpu != NULL))
54098568a00SJohn Baldwin 		return (vcpu);
54198568a00SJohn Baldwin 
54298568a00SJohn Baldwin 	sx_xlock(&vm->vcpus_init_lock);
54398568a00SJohn Baldwin 	vcpu = vm->vcpu[vcpuid];
54498568a00SJohn Baldwin 	if (vcpu == NULL && !vm->dying) {
54598568a00SJohn Baldwin 		vcpu = vcpu_alloc(vm, vcpuid);
54698568a00SJohn Baldwin 		vcpu_init(vcpu);
54798568a00SJohn Baldwin 
54898568a00SJohn Baldwin 		/*
54998568a00SJohn Baldwin 		 * Ensure vCPU is fully created before updating pointer
55098568a00SJohn Baldwin 		 * to permit unlocked reads above.
55198568a00SJohn Baldwin 		 */
55298568a00SJohn Baldwin 		atomic_store_rel_ptr((uintptr_t *)&vm->vcpu[vcpuid],
55398568a00SJohn Baldwin 		    (uintptr_t)vcpu);
55498568a00SJohn Baldwin 	}
55598568a00SJohn Baldwin 	sx_xunlock(&vm->vcpus_init_lock);
55698568a00SJohn Baldwin 	return (vcpu);
55798568a00SJohn Baldwin }
55898568a00SJohn Baldwin 
55998568a00SJohn Baldwin void
56098568a00SJohn Baldwin vm_slock_vcpus(struct vm *vm)
56198568a00SJohn Baldwin {
56298568a00SJohn Baldwin 	sx_slock(&vm->vcpus_init_lock);
56398568a00SJohn Baldwin }
56498568a00SJohn Baldwin 
56598568a00SJohn Baldwin void
56698568a00SJohn Baldwin vm_unlock_vcpus(struct vm *vm)
56798568a00SJohn Baldwin {
56898568a00SJohn Baldwin 	sx_unlock(&vm->vcpus_init_lock);
5695fcf252fSNeel Natu }
5705fcf252fSNeel Natu 
57101d822d3SRodney W. Grimes /*
57201d822d3SRodney W. Grimes  * The default CPU topology is a single thread per package.
57301d822d3SRodney W. Grimes  */
57401d822d3SRodney W. Grimes u_int cores_per_package = 1;
57501d822d3SRodney W. Grimes u_int threads_per_core = 1;
57601d822d3SRodney W. Grimes 
577d5408b1dSNeel Natu int
578d5408b1dSNeel Natu vm_create(const char *name, struct vm **retvm)
579366f6083SPeter Grehan {
580366f6083SPeter Grehan 	struct vm *vm;
581318224bbSNeel Natu 	struct vmspace *vmspace;
582366f6083SPeter Grehan 
583d5408b1dSNeel Natu 	/*
584d5408b1dSNeel Natu 	 * If vmm.ko could not be successfully initialized then don't attempt
585d5408b1dSNeel Natu 	 * to create the virtual machine.
586d5408b1dSNeel Natu 	 */
587d5408b1dSNeel Natu 	if (!vmm_initialized)
588d5408b1dSNeel Natu 		return (ENXIO);
589d5408b1dSNeel Natu 
590df95cc76SKa Ho Ng 	if (name == NULL || strnlen(name, VM_MAX_NAMELEN + 1) ==
591df95cc76SKa Ho Ng 	    VM_MAX_NAMELEN + 1)
592d5408b1dSNeel Natu 		return (EINVAL);
593366f6083SPeter Grehan 
5943c48106aSKonstantin Belousov 	vmspace = vmmops_vmspace_alloc(0, VM_MAXUSER_ADDRESS_LA48);
595318224bbSNeel Natu 	if (vmspace == NULL)
596318224bbSNeel Natu 		return (ENOMEM);
597318224bbSNeel Natu 
598366f6083SPeter Grehan 	vm = malloc(sizeof(struct vm), M_VM, M_WAITOK | M_ZERO);
599366f6083SPeter Grehan 	strcpy(vm->name, name);
60088c4b8d1SNeel Natu 	vm->vmspace = vmspace;
6015b8a8cd1SNeel Natu 	mtx_init(&vm->rendezvous_mtx, "vm rendezvous lock", 0, MTX_DEF);
60267b69e76SJohn Baldwin 	sx_init(&vm->mem_segs_lock, "vm mem_segs");
60398568a00SJohn Baldwin 	sx_init(&vm->vcpus_init_lock, "vm vcpus");
604ee98f99dSJohn Baldwin 	vm->vcpu = malloc(sizeof(*vm->vcpu) * vm_maxcpu, M_VM, M_WAITOK |
605ee98f99dSJohn Baldwin 	    M_ZERO);
606366f6083SPeter Grehan 
60701d822d3SRodney W. Grimes 	vm->sockets = 1;
60801d822d3SRodney W. Grimes 	vm->cores = cores_per_package;	/* XXX backwards compatibility */
60901d822d3SRodney W. Grimes 	vm->threads = threads_per_core;	/* XXX backwards compatibility */
610ee98f99dSJohn Baldwin 	vm->maxcpus = vm_maxcpu;
61101d822d3SRodney W. Grimes 
6125fcf252fSNeel Natu 	vm_init(vm, true);
613366f6083SPeter Grehan 
614d5408b1dSNeel Natu 	*retvm = vm;
615d5408b1dSNeel Natu 	return (0);
616366f6083SPeter Grehan }
617366f6083SPeter Grehan 
61801d822d3SRodney W. Grimes void
61901d822d3SRodney W. Grimes vm_get_topology(struct vm *vm, uint16_t *sockets, uint16_t *cores,
62001d822d3SRodney W. Grimes     uint16_t *threads, uint16_t *maxcpus)
62101d822d3SRodney W. Grimes {
62201d822d3SRodney W. Grimes 	*sockets = vm->sockets;
62301d822d3SRodney W. Grimes 	*cores = vm->cores;
62401d822d3SRodney W. Grimes 	*threads = vm->threads;
62501d822d3SRodney W. Grimes 	*maxcpus = vm->maxcpus;
62601d822d3SRodney W. Grimes }
62701d822d3SRodney W. Grimes 
628a488c9c9SRodney W. Grimes uint16_t
629a488c9c9SRodney W. Grimes vm_get_maxcpus(struct vm *vm)
630a488c9c9SRodney W. Grimes {
631a488c9c9SRodney W. Grimes 	return (vm->maxcpus);
632a488c9c9SRodney W. Grimes }
633a488c9c9SRodney W. Grimes 
63401d822d3SRodney W. Grimes int
63501d822d3SRodney W. Grimes vm_set_topology(struct vm *vm, uint16_t sockets, uint16_t cores,
63698568a00SJohn Baldwin     uint16_t threads, uint16_t maxcpus __unused)
63701d822d3SRodney W. Grimes {
63898568a00SJohn Baldwin 	/* Ignore maxcpus. */
639a488c9c9SRodney W. Grimes 	if ((sockets * cores * threads) > vm->maxcpus)
64001d822d3SRodney W. Grimes 		return (EINVAL);
64101d822d3SRodney W. Grimes 	vm->sockets = sockets;
64201d822d3SRodney W. Grimes 	vm->cores = cores;
64301d822d3SRodney W. Grimes 	vm->threads = threads;
64401d822d3SRodney W. Grimes 	return(0);
64501d822d3SRodney W. Grimes }
64601d822d3SRodney W. Grimes 
647f7d51510SNeel Natu static void
6485fcf252fSNeel Natu vm_cleanup(struct vm *vm, bool destroy)
649366f6083SPeter Grehan {
6509b1aa8d6SNeel Natu 	struct mem_map *mm;
651366f6083SPeter Grehan 	int i;
652366f6083SPeter Grehan 
653c668e817SRobert Wing 	if (destroy)
654c668e817SRobert Wing 		vm_xlock_memsegs(vm);
655c668e817SRobert Wing 
656366f6083SPeter Grehan 	ppt_unassign_all(vm);
657366f6083SPeter Grehan 
658318224bbSNeel Natu 	if (vm->iommu != NULL)
659318224bbSNeel Natu 		iommu_destroy_domain(vm->iommu);
660318224bbSNeel Natu 
6610dafa5cdSNeel Natu 	if (destroy)
6620dafa5cdSNeel Natu 		vrtc_cleanup(vm->vrtc);
6630dafa5cdSNeel Natu 	else
6640dafa5cdSNeel Natu 		vrtc_reset(vm->vrtc);
665160ef77aSNeel Natu 	vpmtmr_cleanup(vm->vpmtmr);
666e883c9bbSTycho Nightingale 	vatpit_cleanup(vm->vatpit);
66708e3ff32SNeel Natu 	vhpet_cleanup(vm->vhpet);
668762fd208STycho Nightingale 	vatpic_cleanup(vm->vatpic);
66908e3ff32SNeel Natu 	vioapic_cleanup(vm->vioapic);
67008e3ff32SNeel Natu 
67198568a00SJohn Baldwin 	for (i = 0; i < vm->maxcpus; i++) {
67298568a00SJohn Baldwin 		if (vm->vcpu[i] != NULL)
67398568a00SJohn Baldwin 			vcpu_cleanup(vm->vcpu[i], destroy);
67498568a00SJohn Baldwin 	}
6755fcf252fSNeel Natu 
67615add60dSPeter Grehan 	vmmops_cleanup(vm->cookie);
6775fcf252fSNeel Natu 
6789b1aa8d6SNeel Natu 	/*
6799b1aa8d6SNeel Natu 	 * System memory is removed from the guest address space only when
6809b1aa8d6SNeel Natu 	 * the VM is destroyed. This is because the mapping remains the same
6819b1aa8d6SNeel Natu 	 * across VM reset.
6829b1aa8d6SNeel Natu 	 *
6839b1aa8d6SNeel Natu 	 * Device memory can be relocated by the guest (e.g. using PCI BARs)
6849b1aa8d6SNeel Natu 	 * so those mappings are removed on a VM reset.
6859b1aa8d6SNeel Natu 	 */
6869b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
6879b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
6889b1aa8d6SNeel Natu 		if (destroy || !sysmem_mapping(vm, mm))
6899b1aa8d6SNeel Natu 			vm_free_memmap(vm, i);
6909b1aa8d6SNeel Natu 	}
691f7d51510SNeel Natu 
6929b1aa8d6SNeel Natu 	if (destroy) {
6939b1aa8d6SNeel Natu 		for (i = 0; i < VM_MAX_MEMSEGS; i++)
6949b1aa8d6SNeel Natu 			vm_free_memseg(vm, i);
695c668e817SRobert Wing 		vm_unlock_memsegs(vm);
696366f6083SPeter Grehan 
69715add60dSPeter Grehan 		vmmops_vmspace_free(vm->vmspace);
6985fcf252fSNeel Natu 		vm->vmspace = NULL;
69908ebb360SJohn Baldwin 
700ee98f99dSJohn Baldwin 		free(vm->vcpu, M_VM);
70198568a00SJohn Baldwin 		sx_destroy(&vm->vcpus_init_lock);
70267b69e76SJohn Baldwin 		sx_destroy(&vm->mem_segs_lock);
70308ebb360SJohn Baldwin 		mtx_destroy(&vm->rendezvous_mtx);
7045fcf252fSNeel Natu 	}
7055fcf252fSNeel Natu }
706366f6083SPeter Grehan 
7075fcf252fSNeel Natu void
7085fcf252fSNeel Natu vm_destroy(struct vm *vm)
7095fcf252fSNeel Natu {
7105fcf252fSNeel Natu 	vm_cleanup(vm, true);
711366f6083SPeter Grehan 	free(vm, M_VM);
712366f6083SPeter Grehan }
713366f6083SPeter Grehan 
7145fcf252fSNeel Natu int
7155fcf252fSNeel Natu vm_reinit(struct vm *vm)
7165fcf252fSNeel Natu {
7175fcf252fSNeel Natu 	int error;
7185fcf252fSNeel Natu 
7195fcf252fSNeel Natu 	/*
7205fcf252fSNeel Natu 	 * A virtual machine can be reset only if all vcpus are suspended.
7215fcf252fSNeel Natu 	 */
7225fcf252fSNeel Natu 	if (CPU_CMP(&vm->suspended_cpus, &vm->active_cpus) == 0) {
7235fcf252fSNeel Natu 		vm_cleanup(vm, false);
7245fcf252fSNeel Natu 		vm_init(vm, false);
7255fcf252fSNeel Natu 		error = 0;
7265fcf252fSNeel Natu 	} else {
7275fcf252fSNeel Natu 		error = EBUSY;
7285fcf252fSNeel Natu 	}
7295fcf252fSNeel Natu 
7305fcf252fSNeel Natu 	return (error);
7315fcf252fSNeel Natu }
7325fcf252fSNeel Natu 
733366f6083SPeter Grehan const char *
734366f6083SPeter Grehan vm_name(struct vm *vm)
735366f6083SPeter Grehan {
736366f6083SPeter Grehan 	return (vm->name);
737366f6083SPeter Grehan }
738366f6083SPeter Grehan 
73967b69e76SJohn Baldwin void
74067b69e76SJohn Baldwin vm_slock_memsegs(struct vm *vm)
74167b69e76SJohn Baldwin {
74267b69e76SJohn Baldwin 	sx_slock(&vm->mem_segs_lock);
74367b69e76SJohn Baldwin }
74467b69e76SJohn Baldwin 
74567b69e76SJohn Baldwin void
74667b69e76SJohn Baldwin vm_xlock_memsegs(struct vm *vm)
74767b69e76SJohn Baldwin {
74867b69e76SJohn Baldwin 	sx_xlock(&vm->mem_segs_lock);
74967b69e76SJohn Baldwin }
75067b69e76SJohn Baldwin 
75167b69e76SJohn Baldwin void
75267b69e76SJohn Baldwin vm_unlock_memsegs(struct vm *vm)
75367b69e76SJohn Baldwin {
75467b69e76SJohn Baldwin 	sx_unlock(&vm->mem_segs_lock);
75567b69e76SJohn Baldwin }
75667b69e76SJohn Baldwin 
757366f6083SPeter Grehan int
758366f6083SPeter Grehan vm_map_mmio(struct vm *vm, vm_paddr_t gpa, size_t len, vm_paddr_t hpa)
759366f6083SPeter Grehan {
760318224bbSNeel Natu 	vm_object_t obj;
761366f6083SPeter Grehan 
762318224bbSNeel Natu 	if ((obj = vmm_mmio_alloc(vm->vmspace, gpa, len, hpa)) == NULL)
763318224bbSNeel Natu 		return (ENOMEM);
764318224bbSNeel Natu 	else
765318224bbSNeel Natu 		return (0);
766366f6083SPeter Grehan }
767366f6083SPeter Grehan 
768366f6083SPeter Grehan int
769366f6083SPeter Grehan vm_unmap_mmio(struct vm *vm, vm_paddr_t gpa, size_t len)
770366f6083SPeter Grehan {
771366f6083SPeter Grehan 
772318224bbSNeel Natu 	vmm_mmio_free(vm->vmspace, gpa, len);
773318224bbSNeel Natu 	return (0);
774366f6083SPeter Grehan }
775366f6083SPeter Grehan 
7769b1aa8d6SNeel Natu /*
7779b1aa8d6SNeel Natu  * Return 'true' if 'gpa' is allocated in the guest address space.
7789b1aa8d6SNeel Natu  *
7799b1aa8d6SNeel Natu  * This function is called in the context of a running vcpu which acts as
7809b1aa8d6SNeel Natu  * an implicit lock on 'vm->mem_maps[]'.
7819b1aa8d6SNeel Natu  */
7829b1aa8d6SNeel Natu bool
78380cb5d84SJohn Baldwin vm_mem_allocated(struct vcpu *vcpu, vm_paddr_t gpa)
784366f6083SPeter Grehan {
78580cb5d84SJohn Baldwin 	struct vm *vm = vcpu->vm;
7869b1aa8d6SNeel Natu 	struct mem_map *mm;
787341f19c9SNeel Natu 	int i;
788341f19c9SNeel Natu 
7899b1aa8d6SNeel Natu #ifdef INVARIANTS
7909b1aa8d6SNeel Natu 	int hostcpu, state;
79180cb5d84SJohn Baldwin 	state = vcpu_get_state(vcpu, &hostcpu);
7929b1aa8d6SNeel Natu 	KASSERT(state == VCPU_RUNNING && hostcpu == curcpu,
7939b1aa8d6SNeel Natu 	    ("%s: invalid vcpu state %d/%d", __func__, state, hostcpu));
7949b1aa8d6SNeel Natu #endif
7959b1aa8d6SNeel Natu 
7969b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
7979b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
7989b1aa8d6SNeel Natu 		if (mm->len != 0 && gpa >= mm->gpa && gpa < mm->gpa + mm->len)
7999b1aa8d6SNeel Natu 			return (true);		/* 'gpa' is sysmem or devmem */
800341f19c9SNeel Natu 	}
801341f19c9SNeel Natu 
802318224bbSNeel Natu 	if (ppt_is_mmio(vm, gpa))
8039b1aa8d6SNeel Natu 		return (true);			/* 'gpa' is pci passthru mmio */
804318224bbSNeel Natu 
8059b1aa8d6SNeel Natu 	return (false);
806341f19c9SNeel Natu }
807341f19c9SNeel Natu 
808341f19c9SNeel Natu int
8099b1aa8d6SNeel Natu vm_alloc_memseg(struct vm *vm, int ident, size_t len, bool sysmem)
810341f19c9SNeel Natu {
811318224bbSNeel Natu 	struct mem_seg *seg;
8129b1aa8d6SNeel Natu 	vm_object_t obj;
813366f6083SPeter Grehan 
81467b69e76SJohn Baldwin 	sx_assert(&vm->mem_segs_lock, SX_XLOCKED);
81567b69e76SJohn Baldwin 
8169b1aa8d6SNeel Natu 	if (ident < 0 || ident >= VM_MAX_MEMSEGS)
817341f19c9SNeel Natu 		return (EINVAL);
818341f19c9SNeel Natu 
8199b1aa8d6SNeel Natu 	if (len == 0 || (len & PAGE_MASK))
8209b1aa8d6SNeel Natu 		return (EINVAL);
821341f19c9SNeel Natu 
8229b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
8239b1aa8d6SNeel Natu 	if (seg->object != NULL) {
8249b1aa8d6SNeel Natu 		if (seg->len == len && seg->sysmem == sysmem)
8259b1aa8d6SNeel Natu 			return (EEXIST);
8269b1aa8d6SNeel Natu 		else
8279b1aa8d6SNeel Natu 			return (EINVAL);
828341f19c9SNeel Natu 	}
829341f19c9SNeel Natu 
8306b389740SMark Johnston 	obj = vm_object_allocate(OBJT_SWAP, len >> PAGE_SHIFT);
8319b1aa8d6SNeel Natu 	if (obj == NULL)
832318224bbSNeel Natu 		return (ENOMEM);
833318224bbSNeel Natu 
834318224bbSNeel Natu 	seg->len = len;
8359b1aa8d6SNeel Natu 	seg->object = obj;
8369b1aa8d6SNeel Natu 	seg->sysmem = sysmem;
837366f6083SPeter Grehan 	return (0);
838366f6083SPeter Grehan }
839366f6083SPeter Grehan 
8409b1aa8d6SNeel Natu int
8419b1aa8d6SNeel Natu vm_get_memseg(struct vm *vm, int ident, size_t *len, bool *sysmem,
8429b1aa8d6SNeel Natu     vm_object_t *objptr)
843477867a0SNeel Natu {
8449b1aa8d6SNeel Natu 	struct mem_seg *seg;
845477867a0SNeel Natu 
84667b69e76SJohn Baldwin 	sx_assert(&vm->mem_segs_lock, SX_LOCKED);
84767b69e76SJohn Baldwin 
8489b1aa8d6SNeel Natu 	if (ident < 0 || ident >= VM_MAX_MEMSEGS)
8499b1aa8d6SNeel Natu 		return (EINVAL);
8509b1aa8d6SNeel Natu 
8519b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
8529b1aa8d6SNeel Natu 	if (len)
8539b1aa8d6SNeel Natu 		*len = seg->len;
8549b1aa8d6SNeel Natu 	if (sysmem)
8559b1aa8d6SNeel Natu 		*sysmem = seg->sysmem;
8569b1aa8d6SNeel Natu 	if (objptr)
8579b1aa8d6SNeel Natu 		*objptr = seg->object;
8589b1aa8d6SNeel Natu 	return (0);
859477867a0SNeel Natu }
8609b1aa8d6SNeel Natu 
8619b1aa8d6SNeel Natu void
8629b1aa8d6SNeel Natu vm_free_memseg(struct vm *vm, int ident)
8639b1aa8d6SNeel Natu {
8649b1aa8d6SNeel Natu 	struct mem_seg *seg;
8659b1aa8d6SNeel Natu 
8669b1aa8d6SNeel Natu 	KASSERT(ident >= 0 && ident < VM_MAX_MEMSEGS,
8679b1aa8d6SNeel Natu 	    ("%s: invalid memseg ident %d", __func__, ident));
8689b1aa8d6SNeel Natu 
8699b1aa8d6SNeel Natu 	seg = &vm->mem_segs[ident];
8709b1aa8d6SNeel Natu 	if (seg->object != NULL) {
8719b1aa8d6SNeel Natu 		vm_object_deallocate(seg->object);
8729b1aa8d6SNeel Natu 		bzero(seg, sizeof(struct mem_seg));
8739b1aa8d6SNeel Natu 	}
8749b1aa8d6SNeel Natu }
8759b1aa8d6SNeel Natu 
8769b1aa8d6SNeel Natu int
8779b1aa8d6SNeel Natu vm_mmap_memseg(struct vm *vm, vm_paddr_t gpa, int segid, vm_ooffset_t first,
8789b1aa8d6SNeel Natu     size_t len, int prot, int flags)
8799b1aa8d6SNeel Natu {
8809b1aa8d6SNeel Natu 	struct mem_seg *seg;
8819b1aa8d6SNeel Natu 	struct mem_map *m, *map;
8829b1aa8d6SNeel Natu 	vm_ooffset_t last;
8839b1aa8d6SNeel Natu 	int i, error;
8849b1aa8d6SNeel Natu 
8859b1aa8d6SNeel Natu 	if (prot == 0 || (prot & ~(VM_PROT_ALL)) != 0)
8869b1aa8d6SNeel Natu 		return (EINVAL);
8879b1aa8d6SNeel Natu 
8889b1aa8d6SNeel Natu 	if (flags & ~VM_MEMMAP_F_WIRED)
8899b1aa8d6SNeel Natu 		return (EINVAL);
8909b1aa8d6SNeel Natu 
8919b1aa8d6SNeel Natu 	if (segid < 0 || segid >= VM_MAX_MEMSEGS)
8929b1aa8d6SNeel Natu 		return (EINVAL);
8939b1aa8d6SNeel Natu 
8949b1aa8d6SNeel Natu 	seg = &vm->mem_segs[segid];
8959b1aa8d6SNeel Natu 	if (seg->object == NULL)
8969b1aa8d6SNeel Natu 		return (EINVAL);
8979b1aa8d6SNeel Natu 
8989b1aa8d6SNeel Natu 	last = first + len;
8999b1aa8d6SNeel Natu 	if (first < 0 || first >= last || last > seg->len)
9009b1aa8d6SNeel Natu 		return (EINVAL);
9019b1aa8d6SNeel Natu 
9029b1aa8d6SNeel Natu 	if ((gpa | first | last) & PAGE_MASK)
9039b1aa8d6SNeel Natu 		return (EINVAL);
9049b1aa8d6SNeel Natu 
9059b1aa8d6SNeel Natu 	map = NULL;
9069b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
9079b1aa8d6SNeel Natu 		m = &vm->mem_maps[i];
9089b1aa8d6SNeel Natu 		if (m->len == 0) {
9099b1aa8d6SNeel Natu 			map = m;
9109b1aa8d6SNeel Natu 			break;
9119b1aa8d6SNeel Natu 		}
9129b1aa8d6SNeel Natu 	}
9139b1aa8d6SNeel Natu 
9149b1aa8d6SNeel Natu 	if (map == NULL)
9159b1aa8d6SNeel Natu 		return (ENOSPC);
9169b1aa8d6SNeel Natu 
9179b1aa8d6SNeel Natu 	error = vm_map_find(&vm->vmspace->vm_map, seg->object, first, &gpa,
9189b1aa8d6SNeel Natu 	    len, 0, VMFS_NO_SPACE, prot, prot, 0);
9199b1aa8d6SNeel Natu 	if (error != KERN_SUCCESS)
9209b1aa8d6SNeel Natu 		return (EFAULT);
9219b1aa8d6SNeel Natu 
9229b1aa8d6SNeel Natu 	vm_object_reference(seg->object);
9239b1aa8d6SNeel Natu 
9249b1aa8d6SNeel Natu 	if (flags & VM_MEMMAP_F_WIRED) {
9259b1aa8d6SNeel Natu 		error = vm_map_wire(&vm->vmspace->vm_map, gpa, gpa + len,
9269b1aa8d6SNeel Natu 		    VM_MAP_WIRE_USER | VM_MAP_WIRE_NOHOLES);
9279b1aa8d6SNeel Natu 		if (error != KERN_SUCCESS) {
9289b1aa8d6SNeel Natu 			vm_map_remove(&vm->vmspace->vm_map, gpa, gpa + len);
92954a3a114SMark Johnston 			return (error == KERN_RESOURCE_SHORTAGE ? ENOMEM :
93054a3a114SMark Johnston 			    EFAULT);
9319b1aa8d6SNeel Natu 		}
9329b1aa8d6SNeel Natu 	}
9339b1aa8d6SNeel Natu 
9349b1aa8d6SNeel Natu 	map->gpa = gpa;
9359b1aa8d6SNeel Natu 	map->len = len;
9369b1aa8d6SNeel Natu 	map->segoff = first;
9379b1aa8d6SNeel Natu 	map->segid = segid;
9389b1aa8d6SNeel Natu 	map->prot = prot;
9399b1aa8d6SNeel Natu 	map->flags = flags;
9409b1aa8d6SNeel Natu 	return (0);
9419b1aa8d6SNeel Natu }
9429b1aa8d6SNeel Natu 
9439b1aa8d6SNeel Natu int
944f8a6ec2dSD Scott Phillips vm_munmap_memseg(struct vm *vm, vm_paddr_t gpa, size_t len)
945f8a6ec2dSD Scott Phillips {
946f8a6ec2dSD Scott Phillips 	struct mem_map *m;
947f8a6ec2dSD Scott Phillips 	int i;
948f8a6ec2dSD Scott Phillips 
949f8a6ec2dSD Scott Phillips 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
950f8a6ec2dSD Scott Phillips 		m = &vm->mem_maps[i];
951f8a6ec2dSD Scott Phillips 		if (m->gpa == gpa && m->len == len &&
952f8a6ec2dSD Scott Phillips 		    (m->flags & VM_MEMMAP_F_IOMMU) == 0) {
953f8a6ec2dSD Scott Phillips 			vm_free_memmap(vm, i);
954f8a6ec2dSD Scott Phillips 			return (0);
955f8a6ec2dSD Scott Phillips 		}
956f8a6ec2dSD Scott Phillips 	}
957f8a6ec2dSD Scott Phillips 
958f8a6ec2dSD Scott Phillips 	return (EINVAL);
959f8a6ec2dSD Scott Phillips }
960f8a6ec2dSD Scott Phillips 
961f8a6ec2dSD Scott Phillips int
9629b1aa8d6SNeel Natu vm_mmap_getnext(struct vm *vm, vm_paddr_t *gpa, int *segid,
9639b1aa8d6SNeel Natu     vm_ooffset_t *segoff, size_t *len, int *prot, int *flags)
9649b1aa8d6SNeel Natu {
9659b1aa8d6SNeel Natu 	struct mem_map *mm, *mmnext;
9669b1aa8d6SNeel Natu 	int i;
9679b1aa8d6SNeel Natu 
9689b1aa8d6SNeel Natu 	mmnext = NULL;
9699b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
9709b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
9719b1aa8d6SNeel Natu 		if (mm->len == 0 || mm->gpa < *gpa)
9729b1aa8d6SNeel Natu 			continue;
9739b1aa8d6SNeel Natu 		if (mmnext == NULL || mm->gpa < mmnext->gpa)
9749b1aa8d6SNeel Natu 			mmnext = mm;
9759b1aa8d6SNeel Natu 	}
9769b1aa8d6SNeel Natu 
9779b1aa8d6SNeel Natu 	if (mmnext != NULL) {
9789b1aa8d6SNeel Natu 		*gpa = mmnext->gpa;
9799b1aa8d6SNeel Natu 		if (segid)
9809b1aa8d6SNeel Natu 			*segid = mmnext->segid;
9819b1aa8d6SNeel Natu 		if (segoff)
9829b1aa8d6SNeel Natu 			*segoff = mmnext->segoff;
9839b1aa8d6SNeel Natu 		if (len)
9849b1aa8d6SNeel Natu 			*len = mmnext->len;
9859b1aa8d6SNeel Natu 		if (prot)
9869b1aa8d6SNeel Natu 			*prot = mmnext->prot;
9879b1aa8d6SNeel Natu 		if (flags)
9889b1aa8d6SNeel Natu 			*flags = mmnext->flags;
9899b1aa8d6SNeel Natu 		return (0);
9909b1aa8d6SNeel Natu 	} else {
9919b1aa8d6SNeel Natu 		return (ENOENT);
9929b1aa8d6SNeel Natu 	}
993477867a0SNeel Natu }
994477867a0SNeel Natu 
995318224bbSNeel Natu static void
9969b1aa8d6SNeel Natu vm_free_memmap(struct vm *vm, int ident)
997366f6083SPeter Grehan {
9989b1aa8d6SNeel Natu 	struct mem_map *mm;
99973505a10SRobert Wing 	int error __diagused;
10004db4fb2cSNeel Natu 
10019b1aa8d6SNeel Natu 	mm = &vm->mem_maps[ident];
10029b1aa8d6SNeel Natu 	if (mm->len) {
10039b1aa8d6SNeel Natu 		error = vm_map_remove(&vm->vmspace->vm_map, mm->gpa,
10049b1aa8d6SNeel Natu 		    mm->gpa + mm->len);
10059b1aa8d6SNeel Natu 		KASSERT(error == KERN_SUCCESS, ("%s: vm_map_remove error %d",
10069b1aa8d6SNeel Natu 		    __func__, error));
10079b1aa8d6SNeel Natu 		bzero(mm, sizeof(struct mem_map));
1008318224bbSNeel Natu 	}
1009318224bbSNeel Natu }
1010318224bbSNeel Natu 
10119b1aa8d6SNeel Natu static __inline bool
10129b1aa8d6SNeel Natu sysmem_mapping(struct vm *vm, struct mem_map *mm)
1013318224bbSNeel Natu {
1014318224bbSNeel Natu 
10159b1aa8d6SNeel Natu 	if (mm->len != 0 && vm->mem_segs[mm->segid].sysmem)
10169b1aa8d6SNeel Natu 		return (true);
10179b1aa8d6SNeel Natu 	else
10189b1aa8d6SNeel Natu 		return (false);
1019318224bbSNeel Natu }
1020318224bbSNeel Natu 
1021147d12a7SAntoine Brodin vm_paddr_t
1022147d12a7SAntoine Brodin vmm_sysmem_maxaddr(struct vm *vm)
10239b1aa8d6SNeel Natu {
10249b1aa8d6SNeel Natu 	struct mem_map *mm;
10259b1aa8d6SNeel Natu 	vm_paddr_t maxaddr;
10269b1aa8d6SNeel Natu 	int i;
1027318224bbSNeel Natu 
10289b1aa8d6SNeel Natu 	maxaddr = 0;
10299b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
10309b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
10319b1aa8d6SNeel Natu 		if (sysmem_mapping(vm, mm)) {
10329b1aa8d6SNeel Natu 			if (maxaddr < mm->gpa + mm->len)
10339b1aa8d6SNeel Natu 				maxaddr = mm->gpa + mm->len;
10349b1aa8d6SNeel Natu 		}
10359b1aa8d6SNeel Natu 	}
10369b1aa8d6SNeel Natu 	return (maxaddr);
1037318224bbSNeel Natu }
1038318224bbSNeel Natu 
1039318224bbSNeel Natu static void
1040490d56c5SEd Maste vm_iommu_modify(struct vm *vm, bool map)
1041318224bbSNeel Natu {
1042318224bbSNeel Natu 	int i, sz;
1043318224bbSNeel Natu 	vm_paddr_t gpa, hpa;
10449b1aa8d6SNeel Natu 	struct mem_map *mm;
1045318224bbSNeel Natu 	void *vp, *cookie, *host_domain;
1046318224bbSNeel Natu 
1047318224bbSNeel Natu 	sz = PAGE_SIZE;
1048318224bbSNeel Natu 	host_domain = iommu_host_domain();
1049318224bbSNeel Natu 
10509b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
10519b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
10529b1aa8d6SNeel Natu 		if (!sysmem_mapping(vm, mm))
10539b1aa8d6SNeel Natu 			continue;
1054318224bbSNeel Natu 
10559b1aa8d6SNeel Natu 		if (map) {
10569b1aa8d6SNeel Natu 			KASSERT((mm->flags & VM_MEMMAP_F_IOMMU) == 0,
10579b1aa8d6SNeel Natu 			    ("iommu map found invalid memmap %#lx/%#lx/%#x",
10589b1aa8d6SNeel Natu 			    mm->gpa, mm->len, mm->flags));
10599b1aa8d6SNeel Natu 			if ((mm->flags & VM_MEMMAP_F_WIRED) == 0)
10609b1aa8d6SNeel Natu 				continue;
10619b1aa8d6SNeel Natu 			mm->flags |= VM_MEMMAP_F_IOMMU;
10629b1aa8d6SNeel Natu 		} else {
10639b1aa8d6SNeel Natu 			if ((mm->flags & VM_MEMMAP_F_IOMMU) == 0)
10649b1aa8d6SNeel Natu 				continue;
10659b1aa8d6SNeel Natu 			mm->flags &= ~VM_MEMMAP_F_IOMMU;
10669b1aa8d6SNeel Natu 			KASSERT((mm->flags & VM_MEMMAP_F_WIRED) != 0,
10679b1aa8d6SNeel Natu 			    ("iommu unmap found invalid memmap %#lx/%#lx/%#x",
10689b1aa8d6SNeel Natu 			    mm->gpa, mm->len, mm->flags));
10699b1aa8d6SNeel Natu 		}
10709b1aa8d6SNeel Natu 
10719b1aa8d6SNeel Natu 		gpa = mm->gpa;
10729b1aa8d6SNeel Natu 		while (gpa < mm->gpa + mm->len) {
107328b561adSJohn Baldwin 			vp = vm_gpa_hold_global(vm, gpa, PAGE_SIZE,
107428b561adSJohn Baldwin 			    VM_PROT_WRITE, &cookie);
1075318224bbSNeel Natu 			KASSERT(vp != NULL, ("vm(%s) could not map gpa %#lx",
1076318224bbSNeel Natu 			    vm_name(vm), gpa));
1077318224bbSNeel Natu 
1078318224bbSNeel Natu 			vm_gpa_release(cookie);
1079318224bbSNeel Natu 
1080318224bbSNeel Natu 			hpa = DMAP_TO_PHYS((uintptr_t)vp);
1081318224bbSNeel Natu 			if (map) {
1082318224bbSNeel Natu 				iommu_create_mapping(vm->iommu, gpa, hpa, sz);
1083318224bbSNeel Natu 			} else {
1084318224bbSNeel Natu 				iommu_remove_mapping(vm->iommu, gpa, sz);
1085318224bbSNeel Natu 			}
1086318224bbSNeel Natu 
1087318224bbSNeel Natu 			gpa += PAGE_SIZE;
1088318224bbSNeel Natu 		}
1089318224bbSNeel Natu 	}
1090318224bbSNeel Natu 
1091318224bbSNeel Natu 	/*
1092318224bbSNeel Natu 	 * Invalidate the cached translations associated with the domain
1093318224bbSNeel Natu 	 * from which pages were removed.
1094318224bbSNeel Natu 	 */
1095318224bbSNeel Natu 	if (map)
1096318224bbSNeel Natu 		iommu_invalidate_tlb(host_domain);
1097318224bbSNeel Natu 	else
1098318224bbSNeel Natu 		iommu_invalidate_tlb(vm->iommu);
1099318224bbSNeel Natu }
1100318224bbSNeel Natu 
1101490d56c5SEd Maste #define	vm_iommu_unmap(vm)	vm_iommu_modify((vm), false)
1102490d56c5SEd Maste #define	vm_iommu_map(vm)	vm_iommu_modify((vm), true)
1103318224bbSNeel Natu 
1104318224bbSNeel Natu int
1105318224bbSNeel Natu vm_unassign_pptdev(struct vm *vm, int bus, int slot, int func)
1106318224bbSNeel Natu {
1107318224bbSNeel Natu 	int error;
1108318224bbSNeel Natu 
1109318224bbSNeel Natu 	error = ppt_unassign_device(vm, bus, slot, func);
1110318224bbSNeel Natu 	if (error)
1111318224bbSNeel Natu 		return (error);
1112318224bbSNeel Natu 
11139b1aa8d6SNeel Natu 	if (ppt_assigned_devices(vm) == 0)
1114318224bbSNeel Natu 		vm_iommu_unmap(vm);
11159b1aa8d6SNeel Natu 
1116318224bbSNeel Natu 	return (0);
1117318224bbSNeel Natu }
1118318224bbSNeel Natu 
1119318224bbSNeel Natu int
1120318224bbSNeel Natu vm_assign_pptdev(struct vm *vm, int bus, int slot, int func)
1121318224bbSNeel Natu {
1122318224bbSNeel Natu 	int error;
1123318224bbSNeel Natu 	vm_paddr_t maxaddr;
1124318224bbSNeel Natu 
11259b1aa8d6SNeel Natu 	/* Set up the IOMMU to do the 'gpa' to 'hpa' translation */
112651f45d01SNeel Natu 	if (ppt_assigned_devices(vm) == 0) {
1127318224bbSNeel Natu 		KASSERT(vm->iommu == NULL,
1128318224bbSNeel Natu 		    ("vm_assign_pptdev: iommu must be NULL"));
1129147d12a7SAntoine Brodin 		maxaddr = vmm_sysmem_maxaddr(vm);
1130318224bbSNeel Natu 		vm->iommu = iommu_create_domain(maxaddr);
1131ffe1b10dSJohn Baldwin 		if (vm->iommu == NULL)
1132ffe1b10dSJohn Baldwin 			return (ENXIO);
1133318224bbSNeel Natu 		vm_iommu_map(vm);
1134318224bbSNeel Natu 	}
1135318224bbSNeel Natu 
1136318224bbSNeel Natu 	error = ppt_assign_device(vm, bus, slot, func);
1137318224bbSNeel Natu 	return (error);
1138318224bbSNeel Natu }
1139318224bbSNeel Natu 
114028b561adSJohn Baldwin static void *
114128b561adSJohn Baldwin _vm_gpa_hold(struct vm *vm, vm_paddr_t gpa, size_t len, int reqprot,
1142318224bbSNeel Natu     void **cookie)
1143318224bbSNeel Natu {
11449b1aa8d6SNeel Natu 	int i, count, pageoff;
11459b1aa8d6SNeel Natu 	struct mem_map *mm;
1146318224bbSNeel Natu 	vm_page_t m;
114728b561adSJohn Baldwin 
1148318224bbSNeel Natu 	pageoff = gpa & PAGE_MASK;
1149318224bbSNeel Natu 	if (len > PAGE_SIZE - pageoff)
1150318224bbSNeel Natu 		panic("vm_gpa_hold: invalid gpa/len: 0x%016lx/%lu", gpa, len);
1151318224bbSNeel Natu 
11529b1aa8d6SNeel Natu 	count = 0;
11539b1aa8d6SNeel Natu 	for (i = 0; i < VM_MAX_MEMMAPS; i++) {
11549b1aa8d6SNeel Natu 		mm = &vm->mem_maps[i];
115546567b4fSPeter Grehan 		if (gpa >= mm->gpa && gpa < mm->gpa + mm->len) {
1156318224bbSNeel Natu 			count = vm_fault_quick_hold_pages(&vm->vmspace->vm_map,
1157318224bbSNeel Natu 			    trunc_page(gpa), PAGE_SIZE, reqprot, &m, 1);
11589b1aa8d6SNeel Natu 			break;
11599b1aa8d6SNeel Natu 		}
11609b1aa8d6SNeel Natu 	}
1161318224bbSNeel Natu 
1162318224bbSNeel Natu 	if (count == 1) {
1163318224bbSNeel Natu 		*cookie = m;
1164318224bbSNeel Natu 		return ((void *)(PHYS_TO_DMAP(VM_PAGE_TO_PHYS(m)) + pageoff));
1165318224bbSNeel Natu 	} else {
1166318224bbSNeel Natu 		*cookie = NULL;
1167318224bbSNeel Natu 		return (NULL);
1168318224bbSNeel Natu 	}
1169318224bbSNeel Natu }
1170318224bbSNeel Natu 
117128b561adSJohn Baldwin void *
1172d3956e46SJohn Baldwin vm_gpa_hold(struct vcpu *vcpu, vm_paddr_t gpa, size_t len, int reqprot,
117328b561adSJohn Baldwin     void **cookie)
117428b561adSJohn Baldwin {
117528b561adSJohn Baldwin #ifdef INVARIANTS
117628b561adSJohn Baldwin 	/*
117728b561adSJohn Baldwin 	 * The current vcpu should be frozen to ensure 'vm_memmap[]'
117828b561adSJohn Baldwin 	 * stability.
117928b561adSJohn Baldwin 	 */
1180d3956e46SJohn Baldwin 	int state = vcpu_get_state(vcpu, NULL);
118128b561adSJohn Baldwin 	KASSERT(state == VCPU_FROZEN, ("%s: invalid vcpu state %d",
118228b561adSJohn Baldwin 	    __func__, state));
118328b561adSJohn Baldwin #endif
1184d3956e46SJohn Baldwin 	return (_vm_gpa_hold(vcpu->vm, gpa, len, reqprot, cookie));
118528b561adSJohn Baldwin }
118628b561adSJohn Baldwin 
118728b561adSJohn Baldwin void *
118828b561adSJohn Baldwin vm_gpa_hold_global(struct vm *vm, vm_paddr_t gpa, size_t len, int reqprot,
118928b561adSJohn Baldwin     void **cookie)
119028b561adSJohn Baldwin {
119167b69e76SJohn Baldwin 	sx_assert(&vm->mem_segs_lock, SX_LOCKED);
119228b561adSJohn Baldwin 	return (_vm_gpa_hold(vm, gpa, len, reqprot, cookie));
119328b561adSJohn Baldwin }
119428b561adSJohn Baldwin 
1195318224bbSNeel Natu void
1196318224bbSNeel Natu vm_gpa_release(void *cookie)
1197318224bbSNeel Natu {
1198318224bbSNeel Natu 	vm_page_t m = cookie;
1199318224bbSNeel Natu 
1200eeacb3b0SMark Johnston 	vm_page_unwire(m, PQ_ACTIVE);
1201366f6083SPeter Grehan }
1202366f6083SPeter Grehan 
1203366f6083SPeter Grehan int
1204d3956e46SJohn Baldwin vm_get_register(struct vcpu *vcpu, int reg, uint64_t *retval)
1205366f6083SPeter Grehan {
1206366f6083SPeter Grehan 
1207366f6083SPeter Grehan 	if (reg >= VM_REG_LAST)
1208366f6083SPeter Grehan 		return (EINVAL);
1209366f6083SPeter Grehan 
1210d3956e46SJohn Baldwin 	return (vmmops_getreg(vcpu->cookie, reg, retval));
1211366f6083SPeter Grehan }
1212366f6083SPeter Grehan 
1213366f6083SPeter Grehan int
1214d3956e46SJohn Baldwin vm_set_register(struct vcpu *vcpu, int reg, uint64_t val)
1215366f6083SPeter Grehan {
1216d087a399SNeel Natu 	int error;
1217366f6083SPeter Grehan 
1218366f6083SPeter Grehan 	if (reg >= VM_REG_LAST)
1219366f6083SPeter Grehan 		return (EINVAL);
1220366f6083SPeter Grehan 
1221869c8d19SJohn Baldwin 	error = vmmops_setreg(vcpu->cookie, reg, val);
1222d087a399SNeel Natu 	if (error || reg != VM_REG_GUEST_RIP)
1223d087a399SNeel Natu 		return (error);
1224d087a399SNeel Natu 
1225d087a399SNeel Natu 	/* Set 'nextrip' to match the value of %rip */
1226d3956e46SJohn Baldwin 	VMM_CTR1(vcpu, "Setting nextrip to %#lx", val);
1227d087a399SNeel Natu 	vcpu->nextrip = val;
1228d087a399SNeel Natu 	return (0);
1229366f6083SPeter Grehan }
1230366f6083SPeter Grehan 
1231490d56c5SEd Maste static bool
1232366f6083SPeter Grehan is_descriptor_table(int reg)
1233366f6083SPeter Grehan {
1234366f6083SPeter Grehan 
1235366f6083SPeter Grehan 	switch (reg) {
1236366f6083SPeter Grehan 	case VM_REG_GUEST_IDTR:
1237366f6083SPeter Grehan 	case VM_REG_GUEST_GDTR:
1238490d56c5SEd Maste 		return (true);
1239366f6083SPeter Grehan 	default:
1240490d56c5SEd Maste 		return (false);
1241366f6083SPeter Grehan 	}
1242366f6083SPeter Grehan }
1243366f6083SPeter Grehan 
1244490d56c5SEd Maste static bool
1245366f6083SPeter Grehan is_segment_register(int reg)
1246366f6083SPeter Grehan {
1247366f6083SPeter Grehan 
1248366f6083SPeter Grehan 	switch (reg) {
1249366f6083SPeter Grehan 	case VM_REG_GUEST_ES:
1250366f6083SPeter Grehan 	case VM_REG_GUEST_CS:
1251366f6083SPeter Grehan 	case VM_REG_GUEST_SS:
1252366f6083SPeter Grehan 	case VM_REG_GUEST_DS:
1253366f6083SPeter Grehan 	case VM_REG_GUEST_FS:
1254366f6083SPeter Grehan 	case VM_REG_GUEST_GS:
1255366f6083SPeter Grehan 	case VM_REG_GUEST_TR:
1256366f6083SPeter Grehan 	case VM_REG_GUEST_LDTR:
1257490d56c5SEd Maste 		return (true);
1258366f6083SPeter Grehan 	default:
1259490d56c5SEd Maste 		return (false);
1260366f6083SPeter Grehan 	}
1261366f6083SPeter Grehan }
1262366f6083SPeter Grehan 
1263366f6083SPeter Grehan int
1264d3956e46SJohn Baldwin vm_get_seg_desc(struct vcpu *vcpu, int reg, struct seg_desc *desc)
1265366f6083SPeter Grehan {
1266366f6083SPeter Grehan 
1267366f6083SPeter Grehan 	if (!is_segment_register(reg) && !is_descriptor_table(reg))
1268366f6083SPeter Grehan 		return (EINVAL);
1269366f6083SPeter Grehan 
1270d3956e46SJohn Baldwin 	return (vmmops_getdesc(vcpu->cookie, reg, desc));
1271366f6083SPeter Grehan }
1272366f6083SPeter Grehan 
1273366f6083SPeter Grehan int
12743f0f4b15SJohn Baldwin vm_set_seg_desc(struct vcpu *vcpu, int reg, struct seg_desc *desc)
1275366f6083SPeter Grehan {
1276366f6083SPeter Grehan 
1277366f6083SPeter Grehan 	if (!is_segment_register(reg) && !is_descriptor_table(reg))
1278366f6083SPeter Grehan 		return (EINVAL);
1279366f6083SPeter Grehan 
12803f0f4b15SJohn Baldwin 	return (vmmops_setdesc(vcpu->cookie, reg, desc));
1281366f6083SPeter Grehan }
1282366f6083SPeter Grehan 
1283366f6083SPeter Grehan static void
1284366f6083SPeter Grehan restore_guest_fpustate(struct vcpu *vcpu)
1285366f6083SPeter Grehan {
1286366f6083SPeter Grehan 
128738f1b189SPeter Grehan 	/* flush host state to the pcb */
128838f1b189SPeter Grehan 	fpuexit(curthread);
1289bd8572e0SNeel Natu 
1290bd8572e0SNeel Natu 	/* restore guest FPU state */
1291cc1cb9eaSJohn Baldwin 	fpu_enable();
129238f1b189SPeter Grehan 	fpurestore(vcpu->guestfpu);
1293bd8572e0SNeel Natu 
1294abb023fbSJohn Baldwin 	/* restore guest XCR0 if XSAVE is enabled in the host */
1295abb023fbSJohn Baldwin 	if (rcr4() & CR4_XSAVE)
1296abb023fbSJohn Baldwin 		load_xcr(0, vcpu->guest_xcr0);
1297abb023fbSJohn Baldwin 
1298bd8572e0SNeel Natu 	/*
1299cc1cb9eaSJohn Baldwin 	 * The FPU is now "dirty" with the guest's state so disable
1300cc1cb9eaSJohn Baldwin 	 * the FPU to trap any access by the host.
1301bd8572e0SNeel Natu 	 */
1302cc1cb9eaSJohn Baldwin 	fpu_disable();
1303366f6083SPeter Grehan }
1304366f6083SPeter Grehan 
1305366f6083SPeter Grehan static void
1306366f6083SPeter Grehan save_guest_fpustate(struct vcpu *vcpu)
1307366f6083SPeter Grehan {
1308366f6083SPeter Grehan 
1309bd8572e0SNeel Natu 	if ((rcr0() & CR0_TS) == 0)
1310bd8572e0SNeel Natu 		panic("fpu emulation not enabled in host!");
1311bd8572e0SNeel Natu 
1312abb023fbSJohn Baldwin 	/* save guest XCR0 and restore host XCR0 */
1313abb023fbSJohn Baldwin 	if (rcr4() & CR4_XSAVE) {
1314abb023fbSJohn Baldwin 		vcpu->guest_xcr0 = rxcr(0);
1315abb023fbSJohn Baldwin 		load_xcr(0, vmm_get_host_xcr0());
1316abb023fbSJohn Baldwin 	}
1317abb023fbSJohn Baldwin 
1318bd8572e0SNeel Natu 	/* save guest FPU state */
1319cc1cb9eaSJohn Baldwin 	fpu_enable();
132038f1b189SPeter Grehan 	fpusave(vcpu->guestfpu);
1321cc1cb9eaSJohn Baldwin 	fpu_disable();
1322366f6083SPeter Grehan }
1323366f6083SPeter Grehan 
132461592433SNeel Natu static VMM_STAT(VCPU_IDLE_TICKS, "number of ticks vcpu was idle");
1325f76fc5d4SNeel Natu 
1326318224bbSNeel Natu static int
13273f0f4b15SJohn Baldwin vcpu_set_state_locked(struct vcpu *vcpu, enum vcpu_state newstate,
1328f80330a8SNeel Natu     bool from_idle)
1329366f6083SPeter Grehan {
1330318224bbSNeel Natu 	int error;
1331366f6083SPeter Grehan 
1332318224bbSNeel Natu 	vcpu_assert_locked(vcpu);
1333366f6083SPeter Grehan 
1334f76fc5d4SNeel Natu 	/*
1335f80330a8SNeel Natu 	 * State transitions from the vmmdev_ioctl() must always begin from
1336f80330a8SNeel Natu 	 * the VCPU_IDLE state. This guarantees that there is only a single
1337f80330a8SNeel Natu 	 * ioctl() operating on a vcpu at any point.
1338f80330a8SNeel Natu 	 */
1339f80330a8SNeel Natu 	if (from_idle) {
1340248e6799SNeel Natu 		while (vcpu->state != VCPU_IDLE) {
1341248e6799SNeel Natu 			vcpu->reqidle = 1;
1342248e6799SNeel Natu 			vcpu_notify_event_locked(vcpu, false);
13433f0f4b15SJohn Baldwin 			VMM_CTR1(vcpu, "vcpu state change from %s to "
1344248e6799SNeel Natu 			    "idle requested", vcpu_state2str(vcpu->state));
1345f80330a8SNeel Natu 			msleep_spin(&vcpu->state, &vcpu->mtx, "vmstat", hz);
1346248e6799SNeel Natu 		}
1347f80330a8SNeel Natu 	} else {
1348f80330a8SNeel Natu 		KASSERT(vcpu->state != VCPU_IDLE, ("invalid transition from "
1349f80330a8SNeel Natu 		    "vcpu idle state"));
1350f80330a8SNeel Natu 	}
1351f80330a8SNeel Natu 
1352ef39d7e9SNeel Natu 	if (vcpu->state == VCPU_RUNNING) {
1353ef39d7e9SNeel Natu 		KASSERT(vcpu->hostcpu == curcpu, ("curcpu %d and hostcpu %d "
1354ef39d7e9SNeel Natu 		    "mismatch for running vcpu", curcpu, vcpu->hostcpu));
1355ef39d7e9SNeel Natu 	} else {
1356ef39d7e9SNeel Natu 		KASSERT(vcpu->hostcpu == NOCPU, ("Invalid hostcpu %d for a "
1357ef39d7e9SNeel Natu 		    "vcpu that is not running", vcpu->hostcpu));
1358ef39d7e9SNeel Natu 	}
1359ef39d7e9SNeel Natu 
1360f80330a8SNeel Natu 	/*
1361318224bbSNeel Natu 	 * The following state transitions are allowed:
1362318224bbSNeel Natu 	 * IDLE -> FROZEN -> IDLE
1363318224bbSNeel Natu 	 * FROZEN -> RUNNING -> FROZEN
1364318224bbSNeel Natu 	 * FROZEN -> SLEEPING -> FROZEN
1365f76fc5d4SNeel Natu 	 */
1366318224bbSNeel Natu 	switch (vcpu->state) {
1367318224bbSNeel Natu 	case VCPU_IDLE:
1368318224bbSNeel Natu 	case VCPU_RUNNING:
1369318224bbSNeel Natu 	case VCPU_SLEEPING:
1370318224bbSNeel Natu 		error = (newstate != VCPU_FROZEN);
1371318224bbSNeel Natu 		break;
1372318224bbSNeel Natu 	case VCPU_FROZEN:
1373318224bbSNeel Natu 		error = (newstate == VCPU_FROZEN);
1374318224bbSNeel Natu 		break;
1375318224bbSNeel Natu 	default:
1376318224bbSNeel Natu 		error = 1;
1377318224bbSNeel Natu 		break;
1378318224bbSNeel Natu 	}
1379318224bbSNeel Natu 
1380f80330a8SNeel Natu 	if (error)
1381f80330a8SNeel Natu 		return (EBUSY);
1382318224bbSNeel Natu 
13833f0f4b15SJohn Baldwin 	VMM_CTR2(vcpu, "vcpu state changed from %s to %s",
1384248e6799SNeel Natu 	    vcpu_state2str(vcpu->state), vcpu_state2str(newstate));
1385248e6799SNeel Natu 
1386f80330a8SNeel Natu 	vcpu->state = newstate;
1387ef39d7e9SNeel Natu 	if (newstate == VCPU_RUNNING)
1388ef39d7e9SNeel Natu 		vcpu->hostcpu = curcpu;
1389ef39d7e9SNeel Natu 	else
1390ef39d7e9SNeel Natu 		vcpu->hostcpu = NOCPU;
1391ef39d7e9SNeel Natu 
1392f80330a8SNeel Natu 	if (newstate == VCPU_IDLE)
1393f80330a8SNeel Natu 		wakeup(&vcpu->state);
1394f80330a8SNeel Natu 
1395f80330a8SNeel Natu 	return (0);
1396318224bbSNeel Natu }
1397318224bbSNeel Natu 
1398318224bbSNeel Natu static void
13993f0f4b15SJohn Baldwin vcpu_require_state(struct vcpu *vcpu, enum vcpu_state newstate)
1400318224bbSNeel Natu {
1401318224bbSNeel Natu 	int error;
1402318224bbSNeel Natu 
14033f0f4b15SJohn Baldwin 	if ((error = vcpu_set_state(vcpu, newstate, false)) != 0)
1404318224bbSNeel Natu 		panic("Error %d setting state to %d\n", error, newstate);
1405318224bbSNeel Natu }
1406318224bbSNeel Natu 
1407318224bbSNeel Natu static void
14083f0f4b15SJohn Baldwin vcpu_require_state_locked(struct vcpu *vcpu, enum vcpu_state newstate)
1409318224bbSNeel Natu {
1410318224bbSNeel Natu 	int error;
1411318224bbSNeel Natu 
14123f0f4b15SJohn Baldwin 	if ((error = vcpu_set_state_locked(vcpu, newstate, false)) != 0)
1413318224bbSNeel Natu 		panic("Error %d setting state to %d", error, newstate);
1414318224bbSNeel Natu }
1415318224bbSNeel Natu 
1416b837daddSKonstantin Belousov static int
1417d8be3d52SJohn Baldwin vm_handle_rendezvous(struct vcpu *vcpu)
14185b8a8cd1SNeel Natu {
1419d8be3d52SJohn Baldwin 	struct vm *vm = vcpu->vm;
1420b837daddSKonstantin Belousov 	struct thread *td;
1421d8be3d52SJohn Baldwin 	int error, vcpuid;
14225b8a8cd1SNeel Natu 
1423b837daddSKonstantin Belousov 	error = 0;
1424d8be3d52SJohn Baldwin 	vcpuid = vcpu->vcpuid;
1425b837daddSKonstantin Belousov 	td = curthread;
14265b8a8cd1SNeel Natu 	mtx_lock(&vm->rendezvous_mtx);
14275b8a8cd1SNeel Natu 	while (vm->rendezvous_func != NULL) {
142822d822c6SNeel Natu 		/* 'rendezvous_req_cpus' must be a subset of 'active_cpus' */
1429e2650af1SStefan Eßer 		CPU_AND(&vm->rendezvous_req_cpus, &vm->rendezvous_req_cpus, &vm->active_cpus);
143022d822c6SNeel Natu 
1431949f0f47SJohn Baldwin 		if (CPU_ISSET(vcpuid, &vm->rendezvous_req_cpus) &&
143222d822c6SNeel Natu 		    !CPU_ISSET(vcpuid, &vm->rendezvous_done_cpus)) {
1433d8be3d52SJohn Baldwin 			VMM_CTR0(vcpu, "Calling rendezvous func");
1434d8be3d52SJohn Baldwin 			(*vm->rendezvous_func)(vcpu, vm->rendezvous_arg);
14355b8a8cd1SNeel Natu 			CPU_SET(vcpuid, &vm->rendezvous_done_cpus);
14365b8a8cd1SNeel Natu 		}
14375b8a8cd1SNeel Natu 		if (CPU_CMP(&vm->rendezvous_req_cpus,
14385b8a8cd1SNeel Natu 		    &vm->rendezvous_done_cpus) == 0) {
1439d8be3d52SJohn Baldwin 			VMM_CTR0(vcpu, "Rendezvous completed");
1440892feec2SCorvin Köhne 			CPU_ZERO(&vm->rendezvous_req_cpus);
1441869dbab7SAndriy Gapon 			vm->rendezvous_func = NULL;
14425b8a8cd1SNeel Natu 			wakeup(&vm->rendezvous_func);
14435b8a8cd1SNeel Natu 			break;
14445b8a8cd1SNeel Natu 		}
1445d8be3d52SJohn Baldwin 		VMM_CTR0(vcpu, "Wait for rendezvous completion");
14465b8a8cd1SNeel Natu 		mtx_sleep(&vm->rendezvous_func, &vm->rendezvous_mtx, 0,
1447b837daddSKonstantin Belousov 		    "vmrndv", hz);
1448c6d31b83SKonstantin Belousov 		if (td_ast_pending(td, TDA_SUSPEND)) {
1449b837daddSKonstantin Belousov 			mtx_unlock(&vm->rendezvous_mtx);
1450b837daddSKonstantin Belousov 			error = thread_check_susp(td, true);
1451b837daddSKonstantin Belousov 			if (error != 0)
1452b837daddSKonstantin Belousov 				return (error);
1453b837daddSKonstantin Belousov 			mtx_lock(&vm->rendezvous_mtx);
1454b837daddSKonstantin Belousov 		}
14555b8a8cd1SNeel Natu 	}
14565b8a8cd1SNeel Natu 	mtx_unlock(&vm->rendezvous_mtx);
1457b837daddSKonstantin Belousov 	return (0);
14585b8a8cd1SNeel Natu }
14595b8a8cd1SNeel Natu 
1460318224bbSNeel Natu /*
1461318224bbSNeel Natu  * Emulate a guest 'hlt' by sleeping until the vcpu is ready to run.
1462318224bbSNeel Natu  */
1463318224bbSNeel Natu static int
14643f0f4b15SJohn Baldwin vm_handle_hlt(struct vcpu *vcpu, bool intr_disabled, bool *retu)
1465318224bbSNeel Natu {
14663f0f4b15SJohn Baldwin 	struct vm *vm = vcpu->vm;
1467c6a0cc2eSNeel Natu 	const char *wmesg;
1468b837daddSKonstantin Belousov 	struct thread *td;
14693f0f4b15SJohn Baldwin 	int error, t, vcpuid, vcpu_halted, vm_halted;
1470e50ce2aaSNeel Natu 
14713f0f4b15SJohn Baldwin 	vcpuid = vcpu->vcpuid;
1472e50ce2aaSNeel Natu 	vcpu_halted = 0;
1473e50ce2aaSNeel Natu 	vm_halted = 0;
1474b837daddSKonstantin Belousov 	error = 0;
1475b837daddSKonstantin Belousov 	td = curthread;
1476318224bbSNeel Natu 
14773f0f4b15SJohn Baldwin 	KASSERT(!CPU_ISSET(vcpuid, &vm->halted_cpus), ("vcpu already halted"));
14783f0f4b15SJohn Baldwin 
1479f76fc5d4SNeel Natu 	vcpu_lock(vcpu);
1480c6a0cc2eSNeel Natu 	while (1) {
1481f76fc5d4SNeel Natu 		/*
1482f76fc5d4SNeel Natu 		 * Do a final check for pending NMI or interrupts before
1483c6a0cc2eSNeel Natu 		 * really putting this thread to sleep. Also check for
1484c6a0cc2eSNeel Natu 		 * software events that would cause this vcpu to wakeup.
1485f76fc5d4SNeel Natu 		 *
1486c6a0cc2eSNeel Natu 		 * These interrupts/events could have happened after the
148715add60dSPeter Grehan 		 * vcpu returned from vmmops_run() and before it acquired the
1488c6a0cc2eSNeel Natu 		 * vcpu lock above.
1489f76fc5d4SNeel Natu 		 */
1490248e6799SNeel Natu 		if (vm->rendezvous_func != NULL || vm->suspend || vcpu->reqidle)
1491c6a0cc2eSNeel Natu 			break;
149280cb5d84SJohn Baldwin 		if (vm_nmi_pending(vcpu))
1493c6a0cc2eSNeel Natu 			break;
1494c6a0cc2eSNeel Natu 		if (!intr_disabled) {
149580cb5d84SJohn Baldwin 			if (vm_extint_pending(vcpu) ||
1496c6a0cc2eSNeel Natu 			    vlapic_pending_intr(vcpu->vlapic, NULL)) {
1497c6a0cc2eSNeel Natu 				break;
1498c6a0cc2eSNeel Natu 			}
1499c6a0cc2eSNeel Natu 		}
1500c6a0cc2eSNeel Natu 
1501f008d157SNeel Natu 		/* Don't go to sleep if the vcpu thread needs to yield */
150280cb5d84SJohn Baldwin 		if (vcpu_should_yield(vcpu))
1503f008d157SNeel Natu 			break;
1504f008d157SNeel Natu 
150580cb5d84SJohn Baldwin 		if (vcpu_debugged(vcpu))
1506fc276d92SJohn Baldwin 			break;
1507fc276d92SJohn Baldwin 
1508e50ce2aaSNeel Natu 		/*
1509e50ce2aaSNeel Natu 		 * Some Linux guests implement "halt" by having all vcpus
1510e50ce2aaSNeel Natu 		 * execute HLT with interrupts disabled. 'halted_cpus' keeps
1511e50ce2aaSNeel Natu 		 * track of the vcpus that have entered this state. When all
1512e50ce2aaSNeel Natu 		 * vcpus enter the halted state the virtual machine is halted.
1513e50ce2aaSNeel Natu 		 */
1514e50ce2aaSNeel Natu 		if (intr_disabled) {
1515c6a0cc2eSNeel Natu 			wmesg = "vmhalt";
15163f0f4b15SJohn Baldwin 			VMM_CTR0(vcpu, "Halted");
1517055fc2cbSNeel Natu 			if (!vcpu_halted && halt_detection_enabled) {
1518e50ce2aaSNeel Natu 				vcpu_halted = 1;
1519e50ce2aaSNeel Natu 				CPU_SET_ATOMIC(vcpuid, &vm->halted_cpus);
1520e50ce2aaSNeel Natu 			}
1521e50ce2aaSNeel Natu 			if (CPU_CMP(&vm->halted_cpus, &vm->active_cpus) == 0) {
1522e50ce2aaSNeel Natu 				vm_halted = 1;
1523e50ce2aaSNeel Natu 				break;
1524e50ce2aaSNeel Natu 			}
1525e50ce2aaSNeel Natu 		} else {
1526e50ce2aaSNeel Natu 			wmesg = "vmidle";
1527e50ce2aaSNeel Natu 		}
1528c6a0cc2eSNeel Natu 
1529f76fc5d4SNeel Natu 		t = ticks;
15303f0f4b15SJohn Baldwin 		vcpu_require_state_locked(vcpu, VCPU_SLEEPING);
1531f008d157SNeel Natu 		/*
1532f008d157SNeel Natu 		 * XXX msleep_spin() cannot be interrupted by signals so
1533f008d157SNeel Natu 		 * wake up periodically to check pending signals.
1534f008d157SNeel Natu 		 */
1535f008d157SNeel Natu 		msleep_spin(vcpu, &vcpu->mtx, wmesg, hz);
15363f0f4b15SJohn Baldwin 		vcpu_require_state_locked(vcpu, VCPU_FROZEN);
15373dc3d32aSJohn Baldwin 		vmm_stat_incr(vcpu, VCPU_IDLE_TICKS, ticks - t);
1538c6d31b83SKonstantin Belousov 		if (td_ast_pending(td, TDA_SUSPEND)) {
1539b837daddSKonstantin Belousov 			vcpu_unlock(vcpu);
1540b837daddSKonstantin Belousov 			error = thread_check_susp(td, false);
15414d447b30SKonstantin Belousov 			if (error != 0) {
15424d447b30SKonstantin Belousov 				if (vcpu_halted) {
15434d447b30SKonstantin Belousov 					CPU_CLR_ATOMIC(vcpuid,
15444d447b30SKonstantin Belousov 					    &vm->halted_cpus);
15454d447b30SKonstantin Belousov 				}
1546b837daddSKonstantin Belousov 				return (error);
15474d447b30SKonstantin Belousov 			}
1548b837daddSKonstantin Belousov 			vcpu_lock(vcpu);
1549b837daddSKonstantin Belousov 		}
1550f76fc5d4SNeel Natu 	}
1551e50ce2aaSNeel Natu 
1552e50ce2aaSNeel Natu 	if (vcpu_halted)
1553e50ce2aaSNeel Natu 		CPU_CLR_ATOMIC(vcpuid, &vm->halted_cpus);
1554e50ce2aaSNeel Natu 
1555f76fc5d4SNeel Natu 	vcpu_unlock(vcpu);
1556f76fc5d4SNeel Natu 
1557e50ce2aaSNeel Natu 	if (vm_halted)
1558e50ce2aaSNeel Natu 		vm_suspend(vm, VM_SUSPEND_HALT);
1559e50ce2aaSNeel Natu 
1560318224bbSNeel Natu 	return (0);
1561318224bbSNeel Natu }
1562318224bbSNeel Natu 
1563318224bbSNeel Natu static int
15643f0f4b15SJohn Baldwin vm_handle_paging(struct vcpu *vcpu, bool *retu)
1565318224bbSNeel Natu {
15663f0f4b15SJohn Baldwin 	struct vm *vm = vcpu->vm;
1567318224bbSNeel Natu 	int rv, ftype;
1568318224bbSNeel Natu 	struct vm_map *map;
1569318224bbSNeel Natu 	struct vm_exit *vme;
1570318224bbSNeel Natu 
1571318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1572318224bbSNeel Natu 
1573d087a399SNeel Natu 	KASSERT(vme->inst_length == 0, ("%s: invalid inst_length %d",
1574d087a399SNeel Natu 	    __func__, vme->inst_length));
1575d087a399SNeel Natu 
1576318224bbSNeel Natu 	ftype = vme->u.paging.fault_type;
1577318224bbSNeel Natu 	KASSERT(ftype == VM_PROT_READ ||
1578318224bbSNeel Natu 	    ftype == VM_PROT_WRITE || ftype == VM_PROT_EXECUTE,
1579318224bbSNeel Natu 	    ("vm_handle_paging: invalid fault_type %d", ftype));
1580318224bbSNeel Natu 
1581318224bbSNeel Natu 	if (ftype == VM_PROT_READ || ftype == VM_PROT_WRITE) {
1582318224bbSNeel Natu 		rv = pmap_emulate_accessed_dirty(vmspace_pmap(vm->vmspace),
1583318224bbSNeel Natu 		    vme->u.paging.gpa, ftype);
15849d8d8e3eSNeel Natu 		if (rv == 0) {
15853f0f4b15SJohn Baldwin 			VMM_CTR2(vcpu, "%s bit emulation for gpa %#lx",
15869d8d8e3eSNeel Natu 			    ftype == VM_PROT_READ ? "accessed" : "dirty",
15879d8d8e3eSNeel Natu 			    vme->u.paging.gpa);
1588318224bbSNeel Natu 			goto done;
1589318224bbSNeel Natu 		}
15909d8d8e3eSNeel Natu 	}
1591318224bbSNeel Natu 
1592318224bbSNeel Natu 	map = &vm->vmspace->vm_map;
1593df08823dSKonstantin Belousov 	rv = vm_fault(map, vme->u.paging.gpa, ftype, VM_FAULT_NORMAL, NULL);
1594318224bbSNeel Natu 
15953f0f4b15SJohn Baldwin 	VMM_CTR3(vcpu, "vm_handle_paging rv = %d, gpa = %#lx, "
1596513c8d33SNeel Natu 	    "ftype = %d", rv, vme->u.paging.gpa, ftype);
1597318224bbSNeel Natu 
1598318224bbSNeel Natu 	if (rv != KERN_SUCCESS)
1599318224bbSNeel Natu 		return (EFAULT);
1600318224bbSNeel Natu done:
1601318224bbSNeel Natu 	return (0);
1602318224bbSNeel Natu }
1603318224bbSNeel Natu 
1604318224bbSNeel Natu static int
16053f0f4b15SJohn Baldwin vm_handle_inst_emul(struct vcpu *vcpu, bool *retu)
1606318224bbSNeel Natu {
1607318224bbSNeel Natu 	struct vie *vie;
1608318224bbSNeel Natu 	struct vm_exit *vme;
1609e4f605eeSTycho Nightingale 	uint64_t gla, gpa, cs_base;
1610e813a873SNeel Natu 	struct vm_guest_paging *paging;
1611565bbb86SNeel Natu 	mem_region_read_t mread;
1612565bbb86SNeel Natu 	mem_region_write_t mwrite;
1613f7a9f178SNeel Natu 	enum vm_cpu_mode cpu_mode;
16141c73ea3eSNeel Natu 	int cs_d, error, fault;
1615318224bbSNeel Natu 
1616318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1617318224bbSNeel Natu 
16181c73ea3eSNeel Natu 	KASSERT(vme->inst_length == 0, ("%s: invalid inst_length %d",
16191c73ea3eSNeel Natu 	    __func__, vme->inst_length));
16201c73ea3eSNeel Natu 
1621318224bbSNeel Natu 	gla = vme->u.inst_emul.gla;
1622318224bbSNeel Natu 	gpa = vme->u.inst_emul.gpa;
1623e4f605eeSTycho Nightingale 	cs_base = vme->u.inst_emul.cs_base;
1624f7a9f178SNeel Natu 	cs_d = vme->u.inst_emul.cs_d;
1625318224bbSNeel Natu 	vie = &vme->u.inst_emul.vie;
1626e813a873SNeel Natu 	paging = &vme->u.inst_emul.paging;
1627f7a9f178SNeel Natu 	cpu_mode = paging->cpu_mode;
1628318224bbSNeel Natu 
16293f0f4b15SJohn Baldwin 	VMM_CTR1(vcpu, "inst_emul fault accessing gpa %#lx", gpa);
16309d8d8e3eSNeel Natu 
1631318224bbSNeel Natu 	/* Fetch, decode and emulate the faulting instruction */
1632c2a875f9SNeel Natu 	if (vie->num_valid == 0) {
1633d3956e46SJohn Baldwin 		error = vmm_fetch_instruction(vcpu, paging, vme->rip + cs_base,
1634d3956e46SJohn Baldwin 		    VIE_INST_SIZE, vie, &fault);
1635c2a875f9SNeel Natu 	} else {
1636c2a875f9SNeel Natu 		/*
1637c2a875f9SNeel Natu 		 * The instruction bytes have already been copied into 'vie'
1638c2a875f9SNeel Natu 		 */
16399c4d5478SNeel Natu 		error = fault = 0;
1640c2a875f9SNeel Natu 	}
16419c4d5478SNeel Natu 	if (error || fault)
16429c4d5478SNeel Natu 		return (error);
1643318224bbSNeel Natu 
1644d3956e46SJohn Baldwin 	if (vmm_decode_instruction(vcpu, gla, cpu_mode, cs_d, vie) != 0) {
16453f0f4b15SJohn Baldwin 		VMM_CTR1(vcpu, "Error decoding instruction at %#lx",
1646c07a0648SNeel Natu 		    vme->rip + cs_base);
1647c07a0648SNeel Natu 		*retu = true;	    /* dump instruction bytes in userspace */
1648c07a0648SNeel Natu 		return (0);
1649c07a0648SNeel Natu 	}
1650318224bbSNeel Natu 
1651a0b78f09SPeter Grehan 	/*
16521c73ea3eSNeel Natu 	 * Update 'nextrip' based on the length of the emulated instruction.
1653a0b78f09SPeter Grehan 	 */
1654a0b78f09SPeter Grehan 	vme->inst_length = vie->num_processed;
1655d087a399SNeel Natu 	vcpu->nextrip += vie->num_processed;
16563f0f4b15SJohn Baldwin 	VMM_CTR1(vcpu, "nextrip updated to %#lx after instruction decoding",
16573f0f4b15SJohn Baldwin 	    vcpu->nextrip);
1658a0b78f09SPeter Grehan 
165908e3ff32SNeel Natu 	/* return to userland unless this is an in-kernel emulated device */
1660565bbb86SNeel Natu 	if (gpa >= DEFAULT_APIC_BASE && gpa < DEFAULT_APIC_BASE + PAGE_SIZE) {
1661565bbb86SNeel Natu 		mread = lapic_mmio_read;
1662565bbb86SNeel Natu 		mwrite = lapic_mmio_write;
1663565bbb86SNeel Natu 	} else if (gpa >= VIOAPIC_BASE && gpa < VIOAPIC_BASE + VIOAPIC_SIZE) {
1664565bbb86SNeel Natu 		mread = vioapic_mmio_read;
1665565bbb86SNeel Natu 		mwrite = vioapic_mmio_write;
166608e3ff32SNeel Natu 	} else if (gpa >= VHPET_BASE && gpa < VHPET_BASE + VHPET_SIZE) {
166708e3ff32SNeel Natu 		mread = vhpet_mmio_read;
166808e3ff32SNeel Natu 		mwrite = vhpet_mmio_write;
1669565bbb86SNeel Natu 	} else {
1670becd9849SNeel Natu 		*retu = true;
1671318224bbSNeel Natu 		return (0);
1672318224bbSNeel Natu 	}
1673318224bbSNeel Natu 
1674d3956e46SJohn Baldwin 	error = vmm_emulate_instruction(vcpu, gpa, vie, paging, mread, mwrite,
1675d3956e46SJohn Baldwin 	    retu);
1676318224bbSNeel Natu 
1677318224bbSNeel Natu 	return (error);
1678318224bbSNeel Natu }
1679318224bbSNeel Natu 
1680b15a09c0SNeel Natu static int
16813f0f4b15SJohn Baldwin vm_handle_suspend(struct vcpu *vcpu, bool *retu)
1682b15a09c0SNeel Natu {
16833f0f4b15SJohn Baldwin 	struct vm *vm = vcpu->vm;
1684b837daddSKonstantin Belousov 	int error, i;
1685b837daddSKonstantin Belousov 	struct thread *td;
1686b15a09c0SNeel Natu 
1687b837daddSKonstantin Belousov 	error = 0;
1688b837daddSKonstantin Belousov 	td = curthread;
1689b15a09c0SNeel Natu 
16903f0f4b15SJohn Baldwin 	CPU_SET_ATOMIC(vcpu->vcpuid, &vm->suspended_cpus);
1691b15a09c0SNeel Natu 
1692b15a09c0SNeel Natu 	/*
1693b15a09c0SNeel Natu 	 * Wait until all 'active_cpus' have suspended themselves.
1694b15a09c0SNeel Natu 	 *
1695b15a09c0SNeel Natu 	 * Since a VM may be suspended at any time including when one or
1696b15a09c0SNeel Natu 	 * more vcpus are doing a rendezvous we need to call the rendezvous
1697b15a09c0SNeel Natu 	 * handler while we are waiting to prevent a deadlock.
1698b15a09c0SNeel Natu 	 */
1699b15a09c0SNeel Natu 	vcpu_lock(vcpu);
1700b837daddSKonstantin Belousov 	while (error == 0) {
1701b15a09c0SNeel Natu 		if (CPU_CMP(&vm->suspended_cpus, &vm->active_cpus) == 0) {
17023f0f4b15SJohn Baldwin 			VMM_CTR0(vcpu, "All vcpus suspended");
1703b15a09c0SNeel Natu 			break;
1704b15a09c0SNeel Natu 		}
1705b15a09c0SNeel Natu 
1706b15a09c0SNeel Natu 		if (vm->rendezvous_func == NULL) {
17073f0f4b15SJohn Baldwin 			VMM_CTR0(vcpu, "Sleeping during suspend");
17083f0f4b15SJohn Baldwin 			vcpu_require_state_locked(vcpu, VCPU_SLEEPING);
1709b15a09c0SNeel Natu 			msleep_spin(vcpu, &vcpu->mtx, "vmsusp", hz);
17103f0f4b15SJohn Baldwin 			vcpu_require_state_locked(vcpu, VCPU_FROZEN);
1711c6d31b83SKonstantin Belousov 			if (td_ast_pending(td, TDA_SUSPEND)) {
1712b837daddSKonstantin Belousov 				vcpu_unlock(vcpu);
1713b837daddSKonstantin Belousov 				error = thread_check_susp(td, false);
1714b837daddSKonstantin Belousov 				vcpu_lock(vcpu);
1715b837daddSKonstantin Belousov 			}
1716b15a09c0SNeel Natu 		} else {
17173f0f4b15SJohn Baldwin 			VMM_CTR0(vcpu, "Rendezvous during suspend");
1718b15a09c0SNeel Natu 			vcpu_unlock(vcpu);
1719d8be3d52SJohn Baldwin 			error = vm_handle_rendezvous(vcpu);
1720b15a09c0SNeel Natu 			vcpu_lock(vcpu);
1721b15a09c0SNeel Natu 		}
1722b15a09c0SNeel Natu 	}
1723b15a09c0SNeel Natu 	vcpu_unlock(vcpu);
1724b15a09c0SNeel Natu 
1725b15a09c0SNeel Natu 	/*
1726b15a09c0SNeel Natu 	 * Wakeup the other sleeping vcpus and return to userspace.
1727b15a09c0SNeel Natu 	 */
1728a488c9c9SRodney W. Grimes 	for (i = 0; i < vm->maxcpus; i++) {
1729b15a09c0SNeel Natu 		if (CPU_ISSET(i, &vm->suspended_cpus)) {
17303f0f4b15SJohn Baldwin 			vcpu_notify_event(vm_vcpu(vm, i), false);
1731b15a09c0SNeel Natu 		}
1732b15a09c0SNeel Natu 	}
1733b15a09c0SNeel Natu 
1734b15a09c0SNeel Natu 	*retu = true;
1735b837daddSKonstantin Belousov 	return (error);
1736b15a09c0SNeel Natu }
1737b15a09c0SNeel Natu 
1738248e6799SNeel Natu static int
17393f0f4b15SJohn Baldwin vm_handle_reqidle(struct vcpu *vcpu, bool *retu)
1740248e6799SNeel Natu {
1741248e6799SNeel Natu 	vcpu_lock(vcpu);
1742248e6799SNeel Natu 	KASSERT(vcpu->reqidle, ("invalid vcpu reqidle %d", vcpu->reqidle));
1743248e6799SNeel Natu 	vcpu->reqidle = 0;
1744248e6799SNeel Natu 	vcpu_unlock(vcpu);
1745248e6799SNeel Natu 	*retu = true;
1746248e6799SNeel Natu 	return (0);
1747248e6799SNeel Natu }
1748248e6799SNeel Natu 
1749*e3b4fe64SBojan Novković static int
1750*e3b4fe64SBojan Novković vm_handle_db(struct vcpu *vcpu, struct vm_exit *vme, bool *retu)
1751*e3b4fe64SBojan Novković {
1752*e3b4fe64SBojan Novković 	int error, fault;
1753*e3b4fe64SBojan Novković 	uint64_t rsp;
1754*e3b4fe64SBojan Novković 	uint64_t rflags;
1755*e3b4fe64SBojan Novković 	struct vm_copyinfo copyinfo;
1756*e3b4fe64SBojan Novković 
1757*e3b4fe64SBojan Novković 	*retu = true;
1758*e3b4fe64SBojan Novković 	if (!vme->u.dbg.pushf_intercept || vme->u.dbg.tf_shadow_val != 0) {
1759*e3b4fe64SBojan Novković 		return (0);
1760*e3b4fe64SBojan Novković 	}
1761*e3b4fe64SBojan Novković 
1762*e3b4fe64SBojan Novković 	vm_get_register(vcpu, VM_REG_GUEST_RSP, &rsp);
1763*e3b4fe64SBojan Novković 	error = vm_copy_setup(vcpu, &vme->u.dbg.paging, rsp, sizeof(uint64_t),
1764*e3b4fe64SBojan Novković 	    VM_PROT_RW, &copyinfo, 1, &fault);
1765*e3b4fe64SBojan Novković 	if (error != 0 || fault != 0) {
1766*e3b4fe64SBojan Novković 		*retu = false;
1767*e3b4fe64SBojan Novković 		return (EINVAL);
1768*e3b4fe64SBojan Novković 	}
1769*e3b4fe64SBojan Novković 
1770*e3b4fe64SBojan Novković 	/* Read pushed rflags value from top of stack. */
1771*e3b4fe64SBojan Novković 	vm_copyin(&copyinfo, &rflags, sizeof(uint64_t));
1772*e3b4fe64SBojan Novković 
1773*e3b4fe64SBojan Novković 	/* Clear TF bit. */
1774*e3b4fe64SBojan Novković 	rflags &= ~(PSL_T);
1775*e3b4fe64SBojan Novković 
1776*e3b4fe64SBojan Novković 	/* Write updated value back to memory. */
1777*e3b4fe64SBojan Novković 	vm_copyout(&rflags, &copyinfo, sizeof(uint64_t));
1778*e3b4fe64SBojan Novković 	vm_copy_teardown(&copyinfo, 1);
1779*e3b4fe64SBojan Novković 
1780*e3b4fe64SBojan Novković 	return (0);
1781*e3b4fe64SBojan Novković }
1782*e3b4fe64SBojan Novković 
1783b15a09c0SNeel Natu int
1784f0fdcfe2SNeel Natu vm_suspend(struct vm *vm, enum vm_suspend_how how)
1785b15a09c0SNeel Natu {
1786f0fdcfe2SNeel Natu 	int i;
1787b15a09c0SNeel Natu 
1788f0fdcfe2SNeel Natu 	if (how <= VM_SUSPEND_NONE || how >= VM_SUSPEND_LAST)
1789f0fdcfe2SNeel Natu 		return (EINVAL);
1790f0fdcfe2SNeel Natu 
1791f0fdcfe2SNeel Natu 	if (atomic_cmpset_int(&vm->suspend, 0, how) == 0) {
1792f0fdcfe2SNeel Natu 		VM_CTR2(vm, "virtual machine already suspended %d/%d",
1793f0fdcfe2SNeel Natu 		    vm->suspend, how);
1794b15a09c0SNeel Natu 		return (EALREADY);
1795b15a09c0SNeel Natu 	}
1796f0fdcfe2SNeel Natu 
1797f0fdcfe2SNeel Natu 	VM_CTR1(vm, "virtual machine successfully suspended %d", how);
1798f0fdcfe2SNeel Natu 
1799f0fdcfe2SNeel Natu 	/*
1800f0fdcfe2SNeel Natu 	 * Notify all active vcpus that they are now suspended.
1801f0fdcfe2SNeel Natu 	 */
1802a488c9c9SRodney W. Grimes 	for (i = 0; i < vm->maxcpus; i++) {
1803f0fdcfe2SNeel Natu 		if (CPU_ISSET(i, &vm->active_cpus))
18043f0f4b15SJohn Baldwin 			vcpu_notify_event(vm_vcpu(vm, i), false);
1805f0fdcfe2SNeel Natu 	}
1806f0fdcfe2SNeel Natu 
1807f0fdcfe2SNeel Natu 	return (0);
1808f0fdcfe2SNeel Natu }
1809f0fdcfe2SNeel Natu 
1810f0fdcfe2SNeel Natu void
181180cb5d84SJohn Baldwin vm_exit_suspended(struct vcpu *vcpu, uint64_t rip)
1812f0fdcfe2SNeel Natu {
181380cb5d84SJohn Baldwin 	struct vm *vm = vcpu->vm;
1814f0fdcfe2SNeel Natu 	struct vm_exit *vmexit;
1815f0fdcfe2SNeel Natu 
1816f0fdcfe2SNeel Natu 	KASSERT(vm->suspend > VM_SUSPEND_NONE && vm->suspend < VM_SUSPEND_LAST,
1817f0fdcfe2SNeel Natu 	    ("vm_exit_suspended: invalid suspend type %d", vm->suspend));
1818f0fdcfe2SNeel Natu 
181980cb5d84SJohn Baldwin 	vmexit = vm_exitinfo(vcpu);
1820f0fdcfe2SNeel Natu 	vmexit->rip = rip;
1821f0fdcfe2SNeel Natu 	vmexit->inst_length = 0;
1822f0fdcfe2SNeel Natu 	vmexit->exitcode = VM_EXITCODE_SUSPENDED;
1823f0fdcfe2SNeel Natu 	vmexit->u.suspended.how = vm->suspend;
1824b15a09c0SNeel Natu }
1825b15a09c0SNeel Natu 
182640487465SNeel Natu void
182780cb5d84SJohn Baldwin vm_exit_debug(struct vcpu *vcpu, uint64_t rip)
1828fc276d92SJohn Baldwin {
1829fc276d92SJohn Baldwin 	struct vm_exit *vmexit;
1830fc276d92SJohn Baldwin 
183180cb5d84SJohn Baldwin 	vmexit = vm_exitinfo(vcpu);
1832fc276d92SJohn Baldwin 	vmexit->rip = rip;
1833fc276d92SJohn Baldwin 	vmexit->inst_length = 0;
1834fc276d92SJohn Baldwin 	vmexit->exitcode = VM_EXITCODE_DEBUG;
1835fc276d92SJohn Baldwin }
1836fc276d92SJohn Baldwin 
1837fc276d92SJohn Baldwin void
183880cb5d84SJohn Baldwin vm_exit_rendezvous(struct vcpu *vcpu, uint64_t rip)
183940487465SNeel Natu {
184040487465SNeel Natu 	struct vm_exit *vmexit;
184140487465SNeel Natu 
184280cb5d84SJohn Baldwin 	vmexit = vm_exitinfo(vcpu);
184340487465SNeel Natu 	vmexit->rip = rip;
184440487465SNeel Natu 	vmexit->inst_length = 0;
184540487465SNeel Natu 	vmexit->exitcode = VM_EXITCODE_RENDEZVOUS;
184680cb5d84SJohn Baldwin 	vmm_stat_incr(vcpu, VMEXIT_RENDEZVOUS, 1);
184740487465SNeel Natu }
184840487465SNeel Natu 
184940487465SNeel Natu void
185080cb5d84SJohn Baldwin vm_exit_reqidle(struct vcpu *vcpu, uint64_t rip)
1851248e6799SNeel Natu {
1852248e6799SNeel Natu 	struct vm_exit *vmexit;
1853248e6799SNeel Natu 
185480cb5d84SJohn Baldwin 	vmexit = vm_exitinfo(vcpu);
1855248e6799SNeel Natu 	vmexit->rip = rip;
1856248e6799SNeel Natu 	vmexit->inst_length = 0;
1857248e6799SNeel Natu 	vmexit->exitcode = VM_EXITCODE_REQIDLE;
185880cb5d84SJohn Baldwin 	vmm_stat_incr(vcpu, VMEXIT_REQIDLE, 1);
1859248e6799SNeel Natu }
1860248e6799SNeel Natu 
1861248e6799SNeel Natu void
186280cb5d84SJohn Baldwin vm_exit_astpending(struct vcpu *vcpu, uint64_t rip)
186340487465SNeel Natu {
186440487465SNeel Natu 	struct vm_exit *vmexit;
186540487465SNeel Natu 
186680cb5d84SJohn Baldwin 	vmexit = vm_exitinfo(vcpu);
186740487465SNeel Natu 	vmexit->rip = rip;
186840487465SNeel Natu 	vmexit->inst_length = 0;
186940487465SNeel Natu 	vmexit->exitcode = VM_EXITCODE_BOGUS;
187080cb5d84SJohn Baldwin 	vmm_stat_incr(vcpu, VMEXIT_ASTPENDING, 1);
187140487465SNeel Natu }
187240487465SNeel Natu 
1873318224bbSNeel Natu int
1874e17eca32SMark Johnston vm_run(struct vcpu *vcpu)
1875318224bbSNeel Natu {
18763f0f4b15SJohn Baldwin 	struct vm *vm = vcpu->vm;
1877248e6799SNeel Natu 	struct vm_eventinfo evinfo;
1878318224bbSNeel Natu 	int error, vcpuid;
1879318224bbSNeel Natu 	struct pcb *pcb;
1880d087a399SNeel Natu 	uint64_t tscval;
1881318224bbSNeel Natu 	struct vm_exit *vme;
1882becd9849SNeel Natu 	bool retu, intr_disabled;
1883318224bbSNeel Natu 	pmap_t pmap;
1884318224bbSNeel Natu 
18853f0f4b15SJohn Baldwin 	vcpuid = vcpu->vcpuid;
1886318224bbSNeel Natu 
188795ebc360SNeel Natu 	if (!CPU_ISSET(vcpuid, &vm->active_cpus))
188895ebc360SNeel Natu 		return (EINVAL);
188995ebc360SNeel Natu 
189095ebc360SNeel Natu 	if (CPU_ISSET(vcpuid, &vm->suspended_cpus))
189195ebc360SNeel Natu 		return (EINVAL);
189295ebc360SNeel Natu 
1893318224bbSNeel Natu 	pmap = vmspace_pmap(vm->vmspace);
1894318224bbSNeel Natu 	vme = &vcpu->exitinfo;
1895892feec2SCorvin Köhne 	evinfo.rptr = &vm->rendezvous_req_cpus;
1896248e6799SNeel Natu 	evinfo.sptr = &vm->suspend;
1897248e6799SNeel Natu 	evinfo.iptr = &vcpu->reqidle;
1898318224bbSNeel Natu restart:
1899318224bbSNeel Natu 	critical_enter();
1900318224bbSNeel Natu 
1901318224bbSNeel Natu 	KASSERT(!CPU_ISSET(curcpu, &pmap->pm_active),
1902318224bbSNeel Natu 	    ("vm_run: absurd pm_active"));
1903318224bbSNeel Natu 
1904318224bbSNeel Natu 	tscval = rdtsc();
1905318224bbSNeel Natu 
1906318224bbSNeel Natu 	pcb = PCPU_GET(curpcb);
1907318224bbSNeel Natu 	set_pcb_flags(pcb, PCB_FULL_IRET);
1908318224bbSNeel Natu 
1909318224bbSNeel Natu 	restore_guest_fpustate(vcpu);
1910318224bbSNeel Natu 
19113f0f4b15SJohn Baldwin 	vcpu_require_state(vcpu, VCPU_RUNNING);
1912869c8d19SJohn Baldwin 	error = vmmops_run(vcpu->cookie, vcpu->nextrip, pmap, &evinfo);
19133f0f4b15SJohn Baldwin 	vcpu_require_state(vcpu, VCPU_FROZEN);
1914318224bbSNeel Natu 
1915318224bbSNeel Natu 	save_guest_fpustate(vcpu);
1916318224bbSNeel Natu 
19173dc3d32aSJohn Baldwin 	vmm_stat_incr(vcpu, VCPU_TOTAL_RUNTIME, rdtsc() - tscval);
1918318224bbSNeel Natu 
1919318224bbSNeel Natu 	critical_exit();
1920318224bbSNeel Natu 
1921318224bbSNeel Natu 	if (error == 0) {
1922becd9849SNeel Natu 		retu = false;
1923d087a399SNeel Natu 		vcpu->nextrip = vme->rip + vme->inst_length;
1924318224bbSNeel Natu 		switch (vme->exitcode) {
1925248e6799SNeel Natu 		case VM_EXITCODE_REQIDLE:
19263f0f4b15SJohn Baldwin 			error = vm_handle_reqidle(vcpu, &retu);
1927248e6799SNeel Natu 			break;
1928b15a09c0SNeel Natu 		case VM_EXITCODE_SUSPENDED:
19293f0f4b15SJohn Baldwin 			error = vm_handle_suspend(vcpu, &retu);
1930b15a09c0SNeel Natu 			break;
193130b94db8SNeel Natu 		case VM_EXITCODE_IOAPIC_EOI:
1932e42c24d5SJohn Baldwin 			vioapic_process_eoi(vm, vme->u.ioapic_eoi.vector);
193330b94db8SNeel Natu 			break;
19345b8a8cd1SNeel Natu 		case VM_EXITCODE_RENDEZVOUS:
1935d8be3d52SJohn Baldwin 			error = vm_handle_rendezvous(vcpu);
19365b8a8cd1SNeel Natu 			break;
1937318224bbSNeel Natu 		case VM_EXITCODE_HLT:
1938becd9849SNeel Natu 			intr_disabled = ((vme->u.hlt.rflags & PSL_I) == 0);
19393f0f4b15SJohn Baldwin 			error = vm_handle_hlt(vcpu, intr_disabled, &retu);
1940318224bbSNeel Natu 			break;
1941318224bbSNeel Natu 		case VM_EXITCODE_PAGING:
19423f0f4b15SJohn Baldwin 			error = vm_handle_paging(vcpu, &retu);
1943318224bbSNeel Natu 			break;
1944318224bbSNeel Natu 		case VM_EXITCODE_INST_EMUL:
19453f0f4b15SJohn Baldwin 			error = vm_handle_inst_emul(vcpu, &retu);
1946318224bbSNeel Natu 			break;
1947d17b5104SNeel Natu 		case VM_EXITCODE_INOUT:
1948d17b5104SNeel Natu 		case VM_EXITCODE_INOUT_STR:
19493f0f4b15SJohn Baldwin 			error = vm_handle_inout(vcpu, vme, &retu);
1950d17b5104SNeel Natu 			break;
1951*e3b4fe64SBojan Novković 		case VM_EXITCODE_DB:
1952*e3b4fe64SBojan Novković 			error = vm_handle_db(vcpu, vme, &retu);
1953*e3b4fe64SBojan Novković 			break;
195465145c7fSNeel Natu 		case VM_EXITCODE_MONITOR:
195565145c7fSNeel Natu 		case VM_EXITCODE_MWAIT:
195627d26457SAndrew Turner 		case VM_EXITCODE_VMINSN:
1957d3956e46SJohn Baldwin 			vm_inject_ud(vcpu);
195865145c7fSNeel Natu 			break;
1959318224bbSNeel Natu 		default:
1960becd9849SNeel Natu 			retu = true;	/* handled in userland */
1961318224bbSNeel Natu 			break;
1962318224bbSNeel Natu 		}
1963318224bbSNeel Natu 	}
1964318224bbSNeel Natu 
19650bda8d3eSCorvin Köhne 	/*
19660bda8d3eSCorvin Köhne 	 * VM_EXITCODE_INST_EMUL could access the apic which could transform the
19670bda8d3eSCorvin Köhne 	 * exit code into VM_EXITCODE_IPI.
19680bda8d3eSCorvin Köhne 	 */
1969ba34de1bSMark Johnston 	if (error == 0 && vme->exitcode == VM_EXITCODE_IPI)
1970d8be3d52SJohn Baldwin 		error = vm_handle_ipi(vcpu, vme, &retu);
19710bda8d3eSCorvin Köhne 
1972d087a399SNeel Natu 	if (error == 0 && retu == false)
1973f76fc5d4SNeel Natu 		goto restart;
1974f76fc5d4SNeel Natu 
19753dc3d32aSJohn Baldwin 	vmm_stat_incr(vcpu, VMEXIT_USERSPACE, 1);
19763f0f4b15SJohn Baldwin 	VMM_CTR2(vcpu, "retu %d/%d", error, vme->exitcode);
1977248e6799SNeel Natu 
1978366f6083SPeter Grehan 	return (error);
1979366f6083SPeter Grehan }
1980366f6083SPeter Grehan 
1981366f6083SPeter Grehan int
1982d3956e46SJohn Baldwin vm_restart_instruction(struct vcpu *vcpu)
1983c9c75df4SNeel Natu {
1984d087a399SNeel Natu 	enum vcpu_state state;
1985d087a399SNeel Natu 	uint64_t rip;
198673505a10SRobert Wing 	int error __diagused;
1987c9c75df4SNeel Natu 
1988d3956e46SJohn Baldwin 	state = vcpu_get_state(vcpu, NULL);
1989d087a399SNeel Natu 	if (state == VCPU_RUNNING) {
1990d087a399SNeel Natu 		/*
1991d087a399SNeel Natu 		 * When a vcpu is "running" the next instruction is determined
1992d087a399SNeel Natu 		 * by adding 'rip' and 'inst_length' in the vcpu's 'exitinfo'.
1993d087a399SNeel Natu 		 * Thus setting 'inst_length' to zero will cause the current
1994d087a399SNeel Natu 		 * instruction to be restarted.
1995d087a399SNeel Natu 		 */
1996c9c75df4SNeel Natu 		vcpu->exitinfo.inst_length = 0;
1997d3956e46SJohn Baldwin 		VMM_CTR1(vcpu, "restarting instruction at %#lx by "
1998d087a399SNeel Natu 		    "setting inst_length to zero", vcpu->exitinfo.rip);
1999d087a399SNeel Natu 	} else if (state == VCPU_FROZEN) {
2000d087a399SNeel Natu 		/*
2001d087a399SNeel Natu 		 * When a vcpu is "frozen" it is outside the critical section
200215add60dSPeter Grehan 		 * around vmmops_run() and 'nextrip' points to the next
200315add60dSPeter Grehan 		 * instruction. Thus instruction restart is achieved by setting
200415add60dSPeter Grehan 		 * 'nextrip' to the vcpu's %rip.
2005d087a399SNeel Natu 		 */
2006d3956e46SJohn Baldwin 		error = vm_get_register(vcpu, VM_REG_GUEST_RIP, &rip);
2007d087a399SNeel Natu 		KASSERT(!error, ("%s: error %d getting rip", __func__, error));
2008d3956e46SJohn Baldwin 		VMM_CTR2(vcpu, "restarting instruction by updating "
2009d087a399SNeel Natu 		    "nextrip from %#lx to %#lx", vcpu->nextrip, rip);
2010d087a399SNeel Natu 		vcpu->nextrip = rip;
2011d087a399SNeel Natu 	} else {
2012d087a399SNeel Natu 		panic("%s: invalid state %d", __func__, state);
2013d087a399SNeel Natu 	}
2014c9c75df4SNeel Natu 	return (0);
2015c9c75df4SNeel Natu }
2016c9c75df4SNeel Natu 
2017c9c75df4SNeel Natu int
201880cb5d84SJohn Baldwin vm_exit_intinfo(struct vcpu *vcpu, uint64_t info)
2019091d4532SNeel Natu {
2020091d4532SNeel Natu 	int type, vector;
2021091d4532SNeel Natu 
2022091d4532SNeel Natu 	if (info & VM_INTINFO_VALID) {
2023091d4532SNeel Natu 		type = info & VM_INTINFO_TYPE;
2024091d4532SNeel Natu 		vector = info & 0xff;
2025091d4532SNeel Natu 		if (type == VM_INTINFO_NMI && vector != IDT_NMI)
2026091d4532SNeel Natu 			return (EINVAL);
2027091d4532SNeel Natu 		if (type == VM_INTINFO_HWEXCEPTION && vector >= 32)
2028091d4532SNeel Natu 			return (EINVAL);
2029091d4532SNeel Natu 		if (info & VM_INTINFO_RSVD)
2030091d4532SNeel Natu 			return (EINVAL);
2031091d4532SNeel Natu 	} else {
2032091d4532SNeel Natu 		info = 0;
2033091d4532SNeel Natu 	}
203480cb5d84SJohn Baldwin 	VMM_CTR2(vcpu, "%s: info1(%#lx)", __func__, info);
2035091d4532SNeel Natu 	vcpu->exitintinfo = info;
2036091d4532SNeel Natu 	return (0);
2037091d4532SNeel Natu }
2038091d4532SNeel Natu 
2039091d4532SNeel Natu enum exc_class {
2040091d4532SNeel Natu 	EXC_BENIGN,
2041091d4532SNeel Natu 	EXC_CONTRIBUTORY,
2042091d4532SNeel Natu 	EXC_PAGEFAULT
2043091d4532SNeel Natu };
2044091d4532SNeel Natu 
2045091d4532SNeel Natu #define	IDT_VE	20	/* Virtualization Exception (Intel specific) */
2046091d4532SNeel Natu 
2047091d4532SNeel Natu static enum exc_class
2048091d4532SNeel Natu exception_class(uint64_t info)
2049091d4532SNeel Natu {
2050091d4532SNeel Natu 	int type, vector;
2051091d4532SNeel Natu 
2052091d4532SNeel Natu 	KASSERT(info & VM_INTINFO_VALID, ("intinfo must be valid: %#lx", info));
2053091d4532SNeel Natu 	type = info & VM_INTINFO_TYPE;
2054091d4532SNeel Natu 	vector = info & 0xff;
2055091d4532SNeel Natu 
2056091d4532SNeel Natu 	/* Table 6-4, "Interrupt and Exception Classes", Intel SDM, Vol 3 */
2057091d4532SNeel Natu 	switch (type) {
2058091d4532SNeel Natu 	case VM_INTINFO_HWINTR:
2059091d4532SNeel Natu 	case VM_INTINFO_SWINTR:
2060091d4532SNeel Natu 	case VM_INTINFO_NMI:
2061091d4532SNeel Natu 		return (EXC_BENIGN);
2062091d4532SNeel Natu 	default:
2063091d4532SNeel Natu 		/*
2064091d4532SNeel Natu 		 * Hardware exception.
2065091d4532SNeel Natu 		 *
2066091d4532SNeel Natu 		 * SVM and VT-x use identical type values to represent NMI,
2067091d4532SNeel Natu 		 * hardware interrupt and software interrupt.
2068091d4532SNeel Natu 		 *
2069091d4532SNeel Natu 		 * SVM uses type '3' for all exceptions. VT-x uses type '3'
2070091d4532SNeel Natu 		 * for exceptions except #BP and #OF. #BP and #OF use a type
2071091d4532SNeel Natu 		 * value of '5' or '6'. Therefore we don't check for explicit
2072091d4532SNeel Natu 		 * values of 'type' to classify 'intinfo' into a hardware
2073091d4532SNeel Natu 		 * exception.
2074091d4532SNeel Natu 		 */
2075091d4532SNeel Natu 		break;
2076091d4532SNeel Natu 	}
2077091d4532SNeel Natu 
2078091d4532SNeel Natu 	switch (vector) {
2079091d4532SNeel Natu 	case IDT_PF:
2080091d4532SNeel Natu 	case IDT_VE:
2081091d4532SNeel Natu 		return (EXC_PAGEFAULT);
2082091d4532SNeel Natu 	case IDT_DE:
2083091d4532SNeel Natu 	case IDT_TS:
2084091d4532SNeel Natu 	case IDT_NP:
2085091d4532SNeel Natu 	case IDT_SS:
2086091d4532SNeel Natu 	case IDT_GP:
2087091d4532SNeel Natu 		return (EXC_CONTRIBUTORY);
2088091d4532SNeel Natu 	default:
2089091d4532SNeel Natu 		return (EXC_BENIGN);
2090091d4532SNeel Natu 	}
2091091d4532SNeel Natu }
2092091d4532SNeel Natu 
2093091d4532SNeel Natu static int
209480cb5d84SJohn Baldwin nested_fault(struct vcpu *vcpu, uint64_t info1, uint64_t info2,
2095091d4532SNeel Natu     uint64_t *retinfo)
2096091d4532SNeel Natu {
2097091d4532SNeel Natu 	enum exc_class exc1, exc2;
2098091d4532SNeel Natu 	int type1, vector1;
2099091d4532SNeel Natu 
2100091d4532SNeel Natu 	KASSERT(info1 & VM_INTINFO_VALID, ("info1 %#lx is not valid", info1));
2101091d4532SNeel Natu 	KASSERT(info2 & VM_INTINFO_VALID, ("info2 %#lx is not valid", info2));
2102091d4532SNeel Natu 
2103091d4532SNeel Natu 	/*
2104091d4532SNeel Natu 	 * If an exception occurs while attempting to call the double-fault
2105091d4532SNeel Natu 	 * handler the processor enters shutdown mode (aka triple fault).
2106091d4532SNeel Natu 	 */
2107091d4532SNeel Natu 	type1 = info1 & VM_INTINFO_TYPE;
2108091d4532SNeel Natu 	vector1 = info1 & 0xff;
2109091d4532SNeel Natu 	if (type1 == VM_INTINFO_HWEXCEPTION && vector1 == IDT_DF) {
211080cb5d84SJohn Baldwin 		VMM_CTR2(vcpu, "triple fault: info1(%#lx), info2(%#lx)",
2111091d4532SNeel Natu 		    info1, info2);
211280cb5d84SJohn Baldwin 		vm_suspend(vcpu->vm, VM_SUSPEND_TRIPLEFAULT);
2113091d4532SNeel Natu 		*retinfo = 0;
2114091d4532SNeel Natu 		return (0);
2115091d4532SNeel Natu 	}
2116091d4532SNeel Natu 
2117091d4532SNeel Natu 	/*
2118091d4532SNeel Natu 	 * Table 6-5 "Conditions for Generating a Double Fault", Intel SDM, Vol3
2119091d4532SNeel Natu 	 */
2120091d4532SNeel Natu 	exc1 = exception_class(info1);
2121091d4532SNeel Natu 	exc2 = exception_class(info2);
2122091d4532SNeel Natu 	if ((exc1 == EXC_CONTRIBUTORY && exc2 == EXC_CONTRIBUTORY) ||
2123091d4532SNeel Natu 	    (exc1 == EXC_PAGEFAULT && exc2 != EXC_BENIGN)) {
2124091d4532SNeel Natu 		/* Convert nested fault into a double fault. */
2125091d4532SNeel Natu 		*retinfo = IDT_DF;
2126091d4532SNeel Natu 		*retinfo |= VM_INTINFO_VALID | VM_INTINFO_HWEXCEPTION;
2127091d4532SNeel Natu 		*retinfo |= VM_INTINFO_DEL_ERRCODE;
2128091d4532SNeel Natu 	} else {
2129091d4532SNeel Natu 		/* Handle exceptions serially */
2130091d4532SNeel Natu 		*retinfo = info2;
2131091d4532SNeel Natu 	}
2132091d4532SNeel Natu 	return (1);
2133091d4532SNeel Natu }
2134091d4532SNeel Natu 
2135091d4532SNeel Natu static uint64_t
2136091d4532SNeel Natu vcpu_exception_intinfo(struct vcpu *vcpu)
2137091d4532SNeel Natu {
2138091d4532SNeel Natu 	uint64_t info = 0;
2139091d4532SNeel Natu 
2140091d4532SNeel Natu 	if (vcpu->exception_pending) {
2141c9c75df4SNeel Natu 		info = vcpu->exc_vector & 0xff;
2142091d4532SNeel Natu 		info |= VM_INTINFO_VALID | VM_INTINFO_HWEXCEPTION;
2143c9c75df4SNeel Natu 		if (vcpu->exc_errcode_valid) {
2144091d4532SNeel Natu 			info |= VM_INTINFO_DEL_ERRCODE;
2145c9c75df4SNeel Natu 			info |= (uint64_t)vcpu->exc_errcode << 32;
2146091d4532SNeel Natu 		}
2147091d4532SNeel Natu 	}
2148091d4532SNeel Natu 	return (info);
2149091d4532SNeel Natu }
2150091d4532SNeel Natu 
2151091d4532SNeel Natu int
215280cb5d84SJohn Baldwin vm_entry_intinfo(struct vcpu *vcpu, uint64_t *retinfo)
2153091d4532SNeel Natu {
2154091d4532SNeel Natu 	uint64_t info1, info2;
2155091d4532SNeel Natu 	int valid;
2156091d4532SNeel Natu 
2157091d4532SNeel Natu 	info1 = vcpu->exitintinfo;
2158091d4532SNeel Natu 	vcpu->exitintinfo = 0;
2159091d4532SNeel Natu 
2160091d4532SNeel Natu 	info2 = 0;
2161091d4532SNeel Natu 	if (vcpu->exception_pending) {
2162091d4532SNeel Natu 		info2 = vcpu_exception_intinfo(vcpu);
2163091d4532SNeel Natu 		vcpu->exception_pending = 0;
216480cb5d84SJohn Baldwin 		VMM_CTR2(vcpu, "Exception %d delivered: %#lx",
2165c9c75df4SNeel Natu 		    vcpu->exc_vector, info2);
2166091d4532SNeel Natu 	}
2167091d4532SNeel Natu 
2168091d4532SNeel Natu 	if ((info1 & VM_INTINFO_VALID) && (info2 & VM_INTINFO_VALID)) {
216980cb5d84SJohn Baldwin 		valid = nested_fault(vcpu, info1, info2, retinfo);
2170091d4532SNeel Natu 	} else if (info1 & VM_INTINFO_VALID) {
2171091d4532SNeel Natu 		*retinfo = info1;
2172091d4532SNeel Natu 		valid = 1;
2173091d4532SNeel Natu 	} else if (info2 & VM_INTINFO_VALID) {
2174091d4532SNeel Natu 		*retinfo = info2;
2175091d4532SNeel Natu 		valid = 1;
2176091d4532SNeel Natu 	} else {
2177091d4532SNeel Natu 		valid = 0;
2178091d4532SNeel Natu 	}
2179091d4532SNeel Natu 
2180091d4532SNeel Natu 	if (valid) {
2181d3956e46SJohn Baldwin 		VMM_CTR4(vcpu, "%s: info1(%#lx), info2(%#lx), "
2182091d4532SNeel Natu 		    "retinfo(%#lx)", __func__, info1, info2, *retinfo);
2183091d4532SNeel Natu 	}
2184091d4532SNeel Natu 
2185091d4532SNeel Natu 	return (valid);
2186091d4532SNeel Natu }
2187091d4532SNeel Natu 
2188091d4532SNeel Natu int
21893f0f4b15SJohn Baldwin vm_get_intinfo(struct vcpu *vcpu, uint64_t *info1, uint64_t *info2)
2190091d4532SNeel Natu {
2191091d4532SNeel Natu 	*info1 = vcpu->exitintinfo;
2192091d4532SNeel Natu 	*info2 = vcpu_exception_intinfo(vcpu);
2193091d4532SNeel Natu 	return (0);
2194091d4532SNeel Natu }
2195091d4532SNeel Natu 
2196091d4532SNeel Natu int
2197d3956e46SJohn Baldwin vm_inject_exception(struct vcpu *vcpu, int vector, int errcode_valid,
2198c9c75df4SNeel Natu     uint32_t errcode, int restart_instruction)
2199366f6083SPeter Grehan {
220047b9935dSNeel Natu 	uint64_t regval;
220173505a10SRobert Wing 	int error __diagused;
2202dc506506SNeel Natu 
2203c9c75df4SNeel Natu 	if (vector < 0 || vector >= 32)
2204366f6083SPeter Grehan 		return (EINVAL);
2205366f6083SPeter Grehan 
2206091d4532SNeel Natu 	/*
2207091d4532SNeel Natu 	 * A double fault exception should never be injected directly into
2208091d4532SNeel Natu 	 * the guest. It is a derived exception that results from specific
2209091d4532SNeel Natu 	 * combinations of nested faults.
2210091d4532SNeel Natu 	 */
2211c9c75df4SNeel Natu 	if (vector == IDT_DF)
2212091d4532SNeel Natu 		return (EINVAL);
2213091d4532SNeel Natu 
2214dc506506SNeel Natu 	if (vcpu->exception_pending) {
2215d3956e46SJohn Baldwin 		VMM_CTR2(vcpu, "Unable to inject exception %d due to "
2216c9c75df4SNeel Natu 		    "pending exception %d", vector, vcpu->exc_vector);
2217dc506506SNeel Natu 		return (EBUSY);
2218dc506506SNeel Natu 	}
2219dc506506SNeel Natu 
222047b9935dSNeel Natu 	if (errcode_valid) {
222147b9935dSNeel Natu 		/*
222247b9935dSNeel Natu 		 * Exceptions don't deliver an error code in real mode.
222347b9935dSNeel Natu 		 */
2224d3956e46SJohn Baldwin 		error = vm_get_register(vcpu, VM_REG_GUEST_CR0, &regval);
222547b9935dSNeel Natu 		KASSERT(!error, ("%s: error %d getting CR0", __func__, error));
222647b9935dSNeel Natu 		if (!(regval & CR0_PE))
222747b9935dSNeel Natu 			errcode_valid = 0;
222847b9935dSNeel Natu 	}
222947b9935dSNeel Natu 
22302ce12423SNeel Natu 	/*
22312ce12423SNeel Natu 	 * From section 26.6.1 "Interruptibility State" in Intel SDM:
22322ce12423SNeel Natu 	 *
22332ce12423SNeel Natu 	 * Event blocking by "STI" or "MOV SS" is cleared after guest executes
22342ce12423SNeel Natu 	 * one instruction or incurs an exception.
22352ce12423SNeel Natu 	 */
2236d3956e46SJohn Baldwin 	error = vm_set_register(vcpu, VM_REG_GUEST_INTR_SHADOW, 0);
22372ce12423SNeel Natu 	KASSERT(error == 0, ("%s: error %d clearing interrupt shadow",
22382ce12423SNeel Natu 	    __func__, error));
22392ce12423SNeel Natu 
2240c9c75df4SNeel Natu 	if (restart_instruction)
2241d3956e46SJohn Baldwin 		vm_restart_instruction(vcpu);
2242c9c75df4SNeel Natu 
2243dc506506SNeel Natu 	vcpu->exception_pending = 1;
2244c9c75df4SNeel Natu 	vcpu->exc_vector = vector;
2245c9c75df4SNeel Natu 	vcpu->exc_errcode = errcode;
2246c9c75df4SNeel Natu 	vcpu->exc_errcode_valid = errcode_valid;
2247d3956e46SJohn Baldwin 	VMM_CTR1(vcpu, "Exception %d pending", vector);
2248dc506506SNeel Natu 	return (0);
2249dc506506SNeel Natu }
2250dc506506SNeel Natu 
2251d37f2adbSNeel Natu void
2252d3956e46SJohn Baldwin vm_inject_fault(struct vcpu *vcpu, int vector, int errcode_valid, int errcode)
2253dc506506SNeel Natu {
225473505a10SRobert Wing 	int error __diagused, restart_instruction;
2255dc506506SNeel Natu 
2256c9c75df4SNeel Natu 	restart_instruction = 1;
2257d37f2adbSNeel Natu 
2258d3956e46SJohn Baldwin 	error = vm_inject_exception(vcpu, vector, errcode_valid,
2259c9c75df4SNeel Natu 	    errcode, restart_instruction);
2260dc506506SNeel Natu 	KASSERT(error == 0, ("vm_inject_exception error %d", error));
2261dc506506SNeel Natu }
2262dc506506SNeel Natu 
2263dc506506SNeel Natu void
2264d3956e46SJohn Baldwin vm_inject_pf(struct vcpu *vcpu, int error_code, uint64_t cr2)
2265fd949af6SNeel Natu {
226673505a10SRobert Wing 	int error __diagused;
226737a723a5SNeel Natu 
2268d3956e46SJohn Baldwin 	VMM_CTR2(vcpu, "Injecting page fault: error_code %#x, cr2 %#lx",
226937a723a5SNeel Natu 	    error_code, cr2);
227037a723a5SNeel Natu 
2271d3956e46SJohn Baldwin 	error = vm_set_register(vcpu, VM_REG_GUEST_CR2, cr2);
227237a723a5SNeel Natu 	KASSERT(error == 0, ("vm_set_register(cr2) error %d", error));
2273fd949af6SNeel Natu 
2274d3956e46SJohn Baldwin 	vm_inject_fault(vcpu, IDT_PF, 1, error_code);
2275366f6083SPeter Grehan }
2276366f6083SPeter Grehan 
227761592433SNeel Natu static VMM_STAT(VCPU_NMI_COUNT, "number of NMIs delivered to vcpu");
2278366f6083SPeter Grehan 
2279f352ff0cSNeel Natu int
22803f0f4b15SJohn Baldwin vm_inject_nmi(struct vcpu *vcpu)
2281f352ff0cSNeel Natu {
2282f352ff0cSNeel Natu 
2283f352ff0cSNeel Natu 	vcpu->nmi_pending = 1;
22843f0f4b15SJohn Baldwin 	vcpu_notify_event(vcpu, false);
2285f352ff0cSNeel Natu 	return (0);
2286f352ff0cSNeel Natu }
2287f352ff0cSNeel Natu 
2288f352ff0cSNeel Natu int
228980cb5d84SJohn Baldwin vm_nmi_pending(struct vcpu *vcpu)
2290f352ff0cSNeel Natu {
2291f352ff0cSNeel Natu 	return (vcpu->nmi_pending);
2292f352ff0cSNeel Natu }
2293f352ff0cSNeel Natu 
2294f352ff0cSNeel Natu void
229580cb5d84SJohn Baldwin vm_nmi_clear(struct vcpu *vcpu)
2296f352ff0cSNeel Natu {
2297f352ff0cSNeel Natu 	if (vcpu->nmi_pending == 0)
2298f352ff0cSNeel Natu 		panic("vm_nmi_clear: inconsistent nmi_pending state");
2299f352ff0cSNeel Natu 
2300f352ff0cSNeel Natu 	vcpu->nmi_pending = 0;
23013dc3d32aSJohn Baldwin 	vmm_stat_incr(vcpu, VCPU_NMI_COUNT, 1);
2302366f6083SPeter Grehan }
2303366f6083SPeter Grehan 
23040775fbb4STycho Nightingale static VMM_STAT(VCPU_EXTINT_COUNT, "number of ExtINTs delivered to vcpu");
23050775fbb4STycho Nightingale 
23060775fbb4STycho Nightingale int
23073f0f4b15SJohn Baldwin vm_inject_extint(struct vcpu *vcpu)
23080775fbb4STycho Nightingale {
23090775fbb4STycho Nightingale 
23100775fbb4STycho Nightingale 	vcpu->extint_pending = 1;
23113f0f4b15SJohn Baldwin 	vcpu_notify_event(vcpu, false);
23120775fbb4STycho Nightingale 	return (0);
23130775fbb4STycho Nightingale }
23140775fbb4STycho Nightingale 
23150775fbb4STycho Nightingale int
231680cb5d84SJohn Baldwin vm_extint_pending(struct vcpu *vcpu)
23170775fbb4STycho Nightingale {
23180775fbb4STycho Nightingale 	return (vcpu->extint_pending);
23190775fbb4STycho Nightingale }
23200775fbb4STycho Nightingale 
23210775fbb4STycho Nightingale void
232280cb5d84SJohn Baldwin vm_extint_clear(struct vcpu *vcpu)
23230775fbb4STycho Nightingale {
23240775fbb4STycho Nightingale 	if (vcpu->extint_pending == 0)
23250775fbb4STycho Nightingale 		panic("vm_extint_clear: inconsistent extint_pending state");
23260775fbb4STycho Nightingale 
23270775fbb4STycho Nightingale 	vcpu->extint_pending = 0;
23283dc3d32aSJohn Baldwin 	vmm_stat_incr(vcpu, VCPU_EXTINT_COUNT, 1);
23290775fbb4STycho Nightingale }
23300775fbb4STycho Nightingale 
2331366f6083SPeter Grehan int
23323f0f4b15SJohn Baldwin vm_get_capability(struct vcpu *vcpu, int type, int *retval)
2333366f6083SPeter Grehan {
2334366f6083SPeter Grehan 	if (type < 0 || type >= VM_CAP_MAX)
2335366f6083SPeter Grehan 		return (EINVAL);
2336366f6083SPeter Grehan 
23373f0f4b15SJohn Baldwin 	return (vmmops_getcap(vcpu->cookie, type, retval));
2338366f6083SPeter Grehan }
2339366f6083SPeter Grehan 
2340366f6083SPeter Grehan int
23413f0f4b15SJohn Baldwin vm_set_capability(struct vcpu *vcpu, int type, int val)
2342366f6083SPeter Grehan {
2343366f6083SPeter Grehan 	if (type < 0 || type >= VM_CAP_MAX)
2344366f6083SPeter Grehan 		return (EINVAL);
2345366f6083SPeter Grehan 
23463f0f4b15SJohn Baldwin 	return (vmmops_setcap(vcpu->cookie, type, val));
2347366f6083SPeter Grehan }
2348366f6083SPeter Grehan 
2349950af9ffSJohn Baldwin struct vm *
2350950af9ffSJohn Baldwin vcpu_vm(struct vcpu *vcpu)
2351950af9ffSJohn Baldwin {
2352950af9ffSJohn Baldwin 	return (vcpu->vm);
2353950af9ffSJohn Baldwin }
2354950af9ffSJohn Baldwin 
2355950af9ffSJohn Baldwin int
2356950af9ffSJohn Baldwin vcpu_vcpuid(struct vcpu *vcpu)
2357950af9ffSJohn Baldwin {
2358950af9ffSJohn Baldwin 	return (vcpu->vcpuid);
2359950af9ffSJohn Baldwin }
2360950af9ffSJohn Baldwin 
2361950af9ffSJohn Baldwin struct vcpu *
2362950af9ffSJohn Baldwin vm_vcpu(struct vm *vm, int vcpuid)
2363950af9ffSJohn Baldwin {
236498568a00SJohn Baldwin 	return (vm->vcpu[vcpuid]);
2365950af9ffSJohn Baldwin }
2366950af9ffSJohn Baldwin 
2367366f6083SPeter Grehan struct vlapic *
2368d3956e46SJohn Baldwin vm_lapic(struct vcpu *vcpu)
2369366f6083SPeter Grehan {
2370d3956e46SJohn Baldwin 	return (vcpu->vlapic);
2371366f6083SPeter Grehan }
2372366f6083SPeter Grehan 
2373565bbb86SNeel Natu struct vioapic *
2374565bbb86SNeel Natu vm_ioapic(struct vm *vm)
2375565bbb86SNeel Natu {
2376565bbb86SNeel Natu 
2377565bbb86SNeel Natu 	return (vm->vioapic);
2378565bbb86SNeel Natu }
2379565bbb86SNeel Natu 
238008e3ff32SNeel Natu struct vhpet *
238108e3ff32SNeel Natu vm_hpet(struct vm *vm)
238208e3ff32SNeel Natu {
238308e3ff32SNeel Natu 
238408e3ff32SNeel Natu 	return (vm->vhpet);
238508e3ff32SNeel Natu }
238608e3ff32SNeel Natu 
2387490d56c5SEd Maste bool
2388366f6083SPeter Grehan vmm_is_pptdev(int bus, int slot, int func)
2389366f6083SPeter Grehan {
2390490d56c5SEd Maste 	int b, f, i, n, s;
2391366f6083SPeter Grehan 	char *val, *cp, *cp2;
2392490d56c5SEd Maste 	bool found;
2393366f6083SPeter Grehan 
2394366f6083SPeter Grehan 	/*
239507044a96SNeel Natu 	 * XXX
239607044a96SNeel Natu 	 * The length of an environment variable is limited to 128 bytes which
239707044a96SNeel Natu 	 * puts an upper limit on the number of passthru devices that may be
239807044a96SNeel Natu 	 * specified using a single environment variable.
239907044a96SNeel Natu 	 *
240007044a96SNeel Natu 	 * Work around this by scanning multiple environment variable
240107044a96SNeel Natu 	 * names instead of a single one - yuck!
2402366f6083SPeter Grehan 	 */
240307044a96SNeel Natu 	const char *names[] = { "pptdevs", "pptdevs2", "pptdevs3", NULL };
240407044a96SNeel Natu 
240507044a96SNeel Natu 	/* set pptdevs="1/2/3 4/5/6 7/8/9 10/11/12" */
2406490d56c5SEd Maste 	found = false;
240707044a96SNeel Natu 	for (i = 0; names[i] != NULL && !found; i++) {
24082be111bfSDavide Italiano 		cp = val = kern_getenv(names[i]);
2409366f6083SPeter Grehan 		while (cp != NULL && *cp != '\0') {
2410366f6083SPeter Grehan 			if ((cp2 = strchr(cp, ' ')) != NULL)
2411366f6083SPeter Grehan 				*cp2 = '\0';
2412366f6083SPeter Grehan 
2413366f6083SPeter Grehan 			n = sscanf(cp, "%d/%d/%d", &b, &s, &f);
2414366f6083SPeter Grehan 			if (n == 3 && bus == b && slot == s && func == f) {
2415490d56c5SEd Maste 				found = true;
2416366f6083SPeter Grehan 				break;
2417366f6083SPeter Grehan 			}
2418366f6083SPeter Grehan 
2419366f6083SPeter Grehan 			if (cp2 != NULL)
2420366f6083SPeter Grehan 				*cp2++ = ' ';
2421366f6083SPeter Grehan 
2422366f6083SPeter Grehan 			cp = cp2;
2423366f6083SPeter Grehan 		}
2424366f6083SPeter Grehan 		freeenv(val);
242507044a96SNeel Natu 	}
2426366f6083SPeter Grehan 	return (found);
2427366f6083SPeter Grehan }
2428366f6083SPeter Grehan 
2429366f6083SPeter Grehan void *
2430366f6083SPeter Grehan vm_iommu_domain(struct vm *vm)
2431366f6083SPeter Grehan {
2432366f6083SPeter Grehan 
2433366f6083SPeter Grehan 	return (vm->iommu);
2434366f6083SPeter Grehan }
2435366f6083SPeter Grehan 
243675dd3366SNeel Natu int
24373f0f4b15SJohn Baldwin vcpu_set_state(struct vcpu *vcpu, enum vcpu_state newstate, bool from_idle)
2438366f6083SPeter Grehan {
243975dd3366SNeel Natu 	int error;
2440366f6083SPeter Grehan 
244175dd3366SNeel Natu 	vcpu_lock(vcpu);
24423f0f4b15SJohn Baldwin 	error = vcpu_set_state_locked(vcpu, newstate, from_idle);
244375dd3366SNeel Natu 	vcpu_unlock(vcpu);
244475dd3366SNeel Natu 
244575dd3366SNeel Natu 	return (error);
244675dd3366SNeel Natu }
244775dd3366SNeel Natu 
244875dd3366SNeel Natu enum vcpu_state
2449d3956e46SJohn Baldwin vcpu_get_state(struct vcpu *vcpu, int *hostcpu)
2450366f6083SPeter Grehan {
245175dd3366SNeel Natu 	enum vcpu_state state;
2452366f6083SPeter Grehan 
245375dd3366SNeel Natu 	vcpu_lock(vcpu);
245475dd3366SNeel Natu 	state = vcpu->state;
2455d3c11f40SPeter Grehan 	if (hostcpu != NULL)
2456d3c11f40SPeter Grehan 		*hostcpu = vcpu->hostcpu;
245775dd3366SNeel Natu 	vcpu_unlock(vcpu);
2458366f6083SPeter Grehan 
245975dd3366SNeel Natu 	return (state);
2460366f6083SPeter Grehan }
2461366f6083SPeter Grehan 
246295ebc360SNeel Natu int
24633f0f4b15SJohn Baldwin vm_activate_cpu(struct vcpu *vcpu)
2464366f6083SPeter Grehan {
24653f0f4b15SJohn Baldwin 	struct vm *vm = vcpu->vm;
2466366f6083SPeter Grehan 
24673f0f4b15SJohn Baldwin 	if (CPU_ISSET(vcpu->vcpuid, &vm->active_cpus))
246895ebc360SNeel Natu 		return (EBUSY);
246922d822c6SNeel Natu 
24703f0f4b15SJohn Baldwin 	VMM_CTR0(vcpu, "activated");
24713f0f4b15SJohn Baldwin 	CPU_SET_ATOMIC(vcpu->vcpuid, &vm->active_cpus);
247295ebc360SNeel Natu 	return (0);
2473366f6083SPeter Grehan }
2474366f6083SPeter Grehan 
2475fc276d92SJohn Baldwin int
24763f0f4b15SJohn Baldwin vm_suspend_cpu(struct vm *vm, struct vcpu *vcpu)
2477fc276d92SJohn Baldwin {
24783f0f4b15SJohn Baldwin 	if (vcpu == NULL) {
2479fc276d92SJohn Baldwin 		vm->debug_cpus = vm->active_cpus;
24803f0f4b15SJohn Baldwin 		for (int i = 0; i < vm->maxcpus; i++) {
2481fc276d92SJohn Baldwin 			if (CPU_ISSET(i, &vm->active_cpus))
24823f0f4b15SJohn Baldwin 				vcpu_notify_event(vm_vcpu(vm, i), false);
2483fc276d92SJohn Baldwin 		}
2484fc276d92SJohn Baldwin 	} else {
24853f0f4b15SJohn Baldwin 		if (!CPU_ISSET(vcpu->vcpuid, &vm->active_cpus))
2486fc276d92SJohn Baldwin 			return (EINVAL);
2487fc276d92SJohn Baldwin 
24883f0f4b15SJohn Baldwin 		CPU_SET_ATOMIC(vcpu->vcpuid, &vm->debug_cpus);
24893f0f4b15SJohn Baldwin 		vcpu_notify_event(vcpu, false);
2490fc276d92SJohn Baldwin 	}
2491fc276d92SJohn Baldwin 	return (0);
2492fc276d92SJohn Baldwin }
2493fc276d92SJohn Baldwin 
2494fc276d92SJohn Baldwin int
24953f0f4b15SJohn Baldwin vm_resume_cpu(struct vm *vm, struct vcpu *vcpu)
2496fc276d92SJohn Baldwin {
2497fc276d92SJohn Baldwin 
24983f0f4b15SJohn Baldwin 	if (vcpu == NULL) {
2499fc276d92SJohn Baldwin 		CPU_ZERO(&vm->debug_cpus);
2500fc276d92SJohn Baldwin 	} else {
25013f0f4b15SJohn Baldwin 		if (!CPU_ISSET(vcpu->vcpuid, &vm->debug_cpus))
2502fc276d92SJohn Baldwin 			return (EINVAL);
2503fc276d92SJohn Baldwin 
25043f0f4b15SJohn Baldwin 		CPU_CLR_ATOMIC(vcpu->vcpuid, &vm->debug_cpus);
2505fc276d92SJohn Baldwin 	}
2506fc276d92SJohn Baldwin 	return (0);
2507fc276d92SJohn Baldwin }
2508fc276d92SJohn Baldwin 
2509fc276d92SJohn Baldwin int
251080cb5d84SJohn Baldwin vcpu_debugged(struct vcpu *vcpu)
2511fc276d92SJohn Baldwin {
2512fc276d92SJohn Baldwin 
251380cb5d84SJohn Baldwin 	return (CPU_ISSET(vcpu->vcpuid, &vcpu->vm->debug_cpus));
2514fc276d92SJohn Baldwin }
2515fc276d92SJohn Baldwin 
2516a5615c90SPeter Grehan cpuset_t
2517366f6083SPeter Grehan vm_active_cpus(struct vm *vm)
2518366f6083SPeter Grehan {
2519366f6083SPeter Grehan 
2520366f6083SPeter Grehan 	return (vm->active_cpus);
2521366f6083SPeter Grehan }
2522366f6083SPeter Grehan 
252395ebc360SNeel Natu cpuset_t
2524fc276d92SJohn Baldwin vm_debug_cpus(struct vm *vm)
2525fc276d92SJohn Baldwin {
2526fc276d92SJohn Baldwin 
2527fc276d92SJohn Baldwin 	return (vm->debug_cpus);
2528fc276d92SJohn Baldwin }
2529fc276d92SJohn Baldwin 
2530fc276d92SJohn Baldwin cpuset_t
253195ebc360SNeel Natu vm_suspended_cpus(struct vm *vm)
253295ebc360SNeel Natu {
253395ebc360SNeel Natu 
253495ebc360SNeel Natu 	return (vm->suspended_cpus);
253595ebc360SNeel Natu }
253695ebc360SNeel Natu 
2537c0f35dbfSJohn Baldwin /*
2538c0f35dbfSJohn Baldwin  * Returns the subset of vCPUs in tostart that are awaiting startup.
2539c0f35dbfSJohn Baldwin  * These vCPUs are also marked as no longer awaiting startup.
2540c0f35dbfSJohn Baldwin  */
2541c0f35dbfSJohn Baldwin cpuset_t
2542c0f35dbfSJohn Baldwin vm_start_cpus(struct vm *vm, const cpuset_t *tostart)
2543c0f35dbfSJohn Baldwin {
2544c0f35dbfSJohn Baldwin 	cpuset_t set;
2545c0f35dbfSJohn Baldwin 
2546c0f35dbfSJohn Baldwin 	mtx_lock(&vm->rendezvous_mtx);
2547c0f35dbfSJohn Baldwin 	CPU_AND(&set, &vm->startup_cpus, tostart);
2548c0f35dbfSJohn Baldwin 	CPU_ANDNOT(&vm->startup_cpus, &vm->startup_cpus, &set);
2549c0f35dbfSJohn Baldwin 	mtx_unlock(&vm->rendezvous_mtx);
2550c0f35dbfSJohn Baldwin 	return (set);
2551c0f35dbfSJohn Baldwin }
2552c0f35dbfSJohn Baldwin 
2553c0f35dbfSJohn Baldwin void
2554c0f35dbfSJohn Baldwin vm_await_start(struct vm *vm, const cpuset_t *waiting)
2555c0f35dbfSJohn Baldwin {
2556c0f35dbfSJohn Baldwin 	mtx_lock(&vm->rendezvous_mtx);
2557c0f35dbfSJohn Baldwin 	CPU_OR(&vm->startup_cpus, &vm->startup_cpus, waiting);
2558c0f35dbfSJohn Baldwin 	mtx_unlock(&vm->rendezvous_mtx);
2559c0f35dbfSJohn Baldwin }
2560c0f35dbfSJohn Baldwin 
2561366f6083SPeter Grehan void *
25623dc3d32aSJohn Baldwin vcpu_stats(struct vcpu *vcpu)
2563366f6083SPeter Grehan {
2564366f6083SPeter Grehan 
25653dc3d32aSJohn Baldwin 	return (vcpu->stats);
2566366f6083SPeter Grehan }
2567e9027382SNeel Natu 
2568e9027382SNeel Natu int
25693f0f4b15SJohn Baldwin vm_get_x2apic_state(struct vcpu *vcpu, enum x2apic_state *state)
2570e9027382SNeel Natu {
25713f0f4b15SJohn Baldwin 	*state = vcpu->x2apic_state;
2572e9027382SNeel Natu 
2573e9027382SNeel Natu 	return (0);
2574e9027382SNeel Natu }
2575e9027382SNeel Natu 
2576e9027382SNeel Natu int
25773f0f4b15SJohn Baldwin vm_set_x2apic_state(struct vcpu *vcpu, enum x2apic_state state)
2578e9027382SNeel Natu {
25793f23d3caSNeel Natu 	if (state >= X2APIC_STATE_LAST)
2580e9027382SNeel Natu 		return (EINVAL);
2581e9027382SNeel Natu 
2582d3956e46SJohn Baldwin 	vcpu->x2apic_state = state;
2583e9027382SNeel Natu 
2584d3956e46SJohn Baldwin 	vlapic_set_x2apic_state(vcpu, state);
258573820fb0SNeel Natu 
2586e9027382SNeel Natu 	return (0);
2587e9027382SNeel Natu }
258875dd3366SNeel Natu 
258922821874SNeel Natu /*
259022821874SNeel Natu  * This function is called to ensure that a vcpu "sees" a pending event
259122821874SNeel Natu  * as soon as possible:
259222821874SNeel Natu  * - If the vcpu thread is sleeping then it is woken up.
259322821874SNeel Natu  * - If the vcpu is running on a different host_cpu then an IPI will be directed
259422821874SNeel Natu  *   to the host_cpu to cause the vcpu to trap into the hypervisor.
259522821874SNeel Natu  */
2596248e6799SNeel Natu static void
2597248e6799SNeel Natu vcpu_notify_event_locked(struct vcpu *vcpu, bool lapic_intr)
259875dd3366SNeel Natu {
259975dd3366SNeel Natu 	int hostcpu;
260075dd3366SNeel Natu 
260175dd3366SNeel Natu 	hostcpu = vcpu->hostcpu;
2602ef39d7e9SNeel Natu 	if (vcpu->state == VCPU_RUNNING) {
2603ef39d7e9SNeel Natu 		KASSERT(hostcpu != NOCPU, ("vcpu running on invalid hostcpu"));
2604de5ea6b6SNeel Natu 		if (hostcpu != curcpu) {
2605ef39d7e9SNeel Natu 			if (lapic_intr) {
2606add611fdSNeel Natu 				vlapic_post_intr(vcpu->vlapic, hostcpu,
2607add611fdSNeel Natu 				    vmm_ipinum);
2608ef39d7e9SNeel Natu 			} else {
260975dd3366SNeel Natu 				ipi_cpu(hostcpu, vmm_ipinum);
261075dd3366SNeel Natu 			}
2611ef39d7e9SNeel Natu 		} else {
2612ef39d7e9SNeel Natu 			/*
2613ef39d7e9SNeel Natu 			 * If the 'vcpu' is running on 'curcpu' then it must
2614ef39d7e9SNeel Natu 			 * be sending a notification to itself (e.g. SELF_IPI).
2615ef39d7e9SNeel Natu 			 * The pending event will be picked up when the vcpu
2616ef39d7e9SNeel Natu 			 * transitions back to guest context.
2617ef39d7e9SNeel Natu 			 */
2618ef39d7e9SNeel Natu 		}
2619ef39d7e9SNeel Natu 	} else {
2620ef39d7e9SNeel Natu 		KASSERT(hostcpu == NOCPU, ("vcpu state %d not consistent "
2621ef39d7e9SNeel Natu 		    "with hostcpu %d", vcpu->state, hostcpu));
2622366f6083SPeter Grehan 		if (vcpu->state == VCPU_SLEEPING)
2623366f6083SPeter Grehan 			wakeup_one(vcpu);
2624366f6083SPeter Grehan 	}
2625248e6799SNeel Natu }
2626248e6799SNeel Natu 
2627248e6799SNeel Natu void
26283f0f4b15SJohn Baldwin vcpu_notify_event(struct vcpu *vcpu, bool lapic_intr)
2629248e6799SNeel Natu {
2630248e6799SNeel Natu 	vcpu_lock(vcpu);
2631248e6799SNeel Natu 	vcpu_notify_event_locked(vcpu, lapic_intr);
2632f76fc5d4SNeel Natu 	vcpu_unlock(vcpu);
2633f76fc5d4SNeel Natu }
2634318224bbSNeel Natu 
2635318224bbSNeel Natu struct vmspace *
2636318224bbSNeel Natu vm_get_vmspace(struct vm *vm)
2637318224bbSNeel Natu {
2638318224bbSNeel Natu 
2639318224bbSNeel Natu 	return (vm->vmspace);
2640318224bbSNeel Natu }
2641565bbb86SNeel Natu 
2642565bbb86SNeel Natu int
2643565bbb86SNeel Natu vm_apicid2vcpuid(struct vm *vm, int apicid)
2644565bbb86SNeel Natu {
2645565bbb86SNeel Natu 	/*
2646565bbb86SNeel Natu 	 * XXX apic id is assumed to be numerically identical to vcpu id
2647565bbb86SNeel Natu 	 */
2648565bbb86SNeel Natu 	return (apicid);
2649565bbb86SNeel Natu }
26505b8a8cd1SNeel Natu 
2651b837daddSKonstantin Belousov int
2652d8be3d52SJohn Baldwin vm_smp_rendezvous(struct vcpu *vcpu, cpuset_t dest,
26535b8a8cd1SNeel Natu     vm_rendezvous_func_t func, void *arg)
26545b8a8cd1SNeel Natu {
2655d8be3d52SJohn Baldwin 	struct vm *vm = vcpu->vm;
2656b837daddSKonstantin Belousov 	int error, i;
2657970955e4SNeel Natu 
26585b8a8cd1SNeel Natu 	/*
26595b8a8cd1SNeel Natu 	 * Enforce that this function is called without any locks
26605b8a8cd1SNeel Natu 	 */
26615b8a8cd1SNeel Natu 	WITNESS_WARN(WARN_PANIC, NULL, "vm_smp_rendezvous");
26625b8a8cd1SNeel Natu 
26635b8a8cd1SNeel Natu restart:
26645b8a8cd1SNeel Natu 	mtx_lock(&vm->rendezvous_mtx);
26655b8a8cd1SNeel Natu 	if (vm->rendezvous_func != NULL) {
26665b8a8cd1SNeel Natu 		/*
26675b8a8cd1SNeel Natu 		 * If a rendezvous is already in progress then we need to
26683f0f4b15SJohn Baldwin 		 * call the rendezvous handler in case this 'vcpu' is one
26695b8a8cd1SNeel Natu 		 * of the targets of the rendezvous.
26705b8a8cd1SNeel Natu 		 */
2671d8be3d52SJohn Baldwin 		VMM_CTR0(vcpu, "Rendezvous already in progress");
26725b8a8cd1SNeel Natu 		mtx_unlock(&vm->rendezvous_mtx);
2673d8be3d52SJohn Baldwin 		error = vm_handle_rendezvous(vcpu);
2674b837daddSKonstantin Belousov 		if (error != 0)
2675b837daddSKonstantin Belousov 			return (error);
26765b8a8cd1SNeel Natu 		goto restart;
26775b8a8cd1SNeel Natu 	}
26785b8a8cd1SNeel Natu 	KASSERT(vm->rendezvous_func == NULL, ("vm_smp_rendezvous: previous "
26795b8a8cd1SNeel Natu 	    "rendezvous is still in progress"));
26805b8a8cd1SNeel Natu 
2681d8be3d52SJohn Baldwin 	VMM_CTR0(vcpu, "Initiating rendezvous");
26825b8a8cd1SNeel Natu 	vm->rendezvous_req_cpus = dest;
26835b8a8cd1SNeel Natu 	CPU_ZERO(&vm->rendezvous_done_cpus);
26845b8a8cd1SNeel Natu 	vm->rendezvous_arg = arg;
2685869dbab7SAndriy Gapon 	vm->rendezvous_func = func;
26865b8a8cd1SNeel Natu 	mtx_unlock(&vm->rendezvous_mtx);
26875b8a8cd1SNeel Natu 
2688970955e4SNeel Natu 	/*
2689970955e4SNeel Natu 	 * Wake up any sleeping vcpus and trigger a VM-exit in any running
2690970955e4SNeel Natu 	 * vcpus so they handle the rendezvous as soon as possible.
2691970955e4SNeel Natu 	 */
2692a488c9c9SRodney W. Grimes 	for (i = 0; i < vm->maxcpus; i++) {
2693970955e4SNeel Natu 		if (CPU_ISSET(i, &dest))
26943f0f4b15SJohn Baldwin 			vcpu_notify_event(vm_vcpu(vm, i), false);
2695970955e4SNeel Natu 	}
2696970955e4SNeel Natu 
2697d8be3d52SJohn Baldwin 	return (vm_handle_rendezvous(vcpu));
26985b8a8cd1SNeel Natu }
2699762fd208STycho Nightingale 
2700762fd208STycho Nightingale struct vatpic *
2701762fd208STycho Nightingale vm_atpic(struct vm *vm)
2702762fd208STycho Nightingale {
2703762fd208STycho Nightingale 	return (vm->vatpic);
2704762fd208STycho Nightingale }
2705e883c9bbSTycho Nightingale 
2706e883c9bbSTycho Nightingale struct vatpit *
2707e883c9bbSTycho Nightingale vm_atpit(struct vm *vm)
2708e883c9bbSTycho Nightingale {
2709e883c9bbSTycho Nightingale 	return (vm->vatpit);
2710e883c9bbSTycho Nightingale }
2711d17b5104SNeel Natu 
2712160ef77aSNeel Natu struct vpmtmr *
2713160ef77aSNeel Natu vm_pmtmr(struct vm *vm)
2714160ef77aSNeel Natu {
2715160ef77aSNeel Natu 
2716160ef77aSNeel Natu 	return (vm->vpmtmr);
2717160ef77aSNeel Natu }
2718160ef77aSNeel Natu 
27190dafa5cdSNeel Natu struct vrtc *
27200dafa5cdSNeel Natu vm_rtc(struct vm *vm)
27210dafa5cdSNeel Natu {
27220dafa5cdSNeel Natu 
27230dafa5cdSNeel Natu 	return (vm->vrtc);
27240dafa5cdSNeel Natu }
27250dafa5cdSNeel Natu 
2726d17b5104SNeel Natu enum vm_reg_name
2727d17b5104SNeel Natu vm_segment_name(int seg)
2728d17b5104SNeel Natu {
2729d17b5104SNeel Natu 	static enum vm_reg_name seg_names[] = {
2730d17b5104SNeel Natu 		VM_REG_GUEST_ES,
2731d17b5104SNeel Natu 		VM_REG_GUEST_CS,
2732d17b5104SNeel Natu 		VM_REG_GUEST_SS,
2733d17b5104SNeel Natu 		VM_REG_GUEST_DS,
2734d17b5104SNeel Natu 		VM_REG_GUEST_FS,
2735d17b5104SNeel Natu 		VM_REG_GUEST_GS
2736d17b5104SNeel Natu 	};
2737d17b5104SNeel Natu 
2738d17b5104SNeel Natu 	KASSERT(seg >= 0 && seg < nitems(seg_names),
2739d17b5104SNeel Natu 	    ("%s: invalid segment encoding %d", __func__, seg));
2740d17b5104SNeel Natu 	return (seg_names[seg]);
2741d17b5104SNeel Natu }
2742cf1d80d8SPeter Grehan 
2743d665d229SNeel Natu void
27442b4fe856SJohn Baldwin vm_copy_teardown(struct vm_copyinfo *copyinfo, int num_copyinfo)
2745d665d229SNeel Natu {
2746d665d229SNeel Natu 	int idx;
2747d665d229SNeel Natu 
2748d665d229SNeel Natu 	for (idx = 0; idx < num_copyinfo; idx++) {
2749d665d229SNeel Natu 		if (copyinfo[idx].cookie != NULL)
2750d665d229SNeel Natu 			vm_gpa_release(copyinfo[idx].cookie);
2751d665d229SNeel Natu 	}
2752d665d229SNeel Natu 	bzero(copyinfo, num_copyinfo * sizeof(struct vm_copyinfo));
2753d665d229SNeel Natu }
2754d665d229SNeel Natu 
2755d665d229SNeel Natu int
2756d3956e46SJohn Baldwin vm_copy_setup(struct vcpu *vcpu, struct vm_guest_paging *paging,
2757d665d229SNeel Natu     uint64_t gla, size_t len, int prot, struct vm_copyinfo *copyinfo,
27589c4d5478SNeel Natu     int num_copyinfo, int *fault)
2759d665d229SNeel Natu {
2760d665d229SNeel Natu 	int error, idx, nused;
2761d665d229SNeel Natu 	size_t n, off, remaining;
2762d665d229SNeel Natu 	void *hva, *cookie;
2763d665d229SNeel Natu 	uint64_t gpa;
2764d665d229SNeel Natu 
2765d665d229SNeel Natu 	bzero(copyinfo, sizeof(struct vm_copyinfo) * num_copyinfo);
2766d665d229SNeel Natu 
2767d665d229SNeel Natu 	nused = 0;
2768d665d229SNeel Natu 	remaining = len;
2769d665d229SNeel Natu 	while (remaining > 0) {
2770d665d229SNeel Natu 		KASSERT(nused < num_copyinfo, ("insufficient vm_copyinfo"));
2771d3956e46SJohn Baldwin 		error = vm_gla2gpa(vcpu, paging, gla, prot, &gpa, fault);
27729c4d5478SNeel Natu 		if (error || *fault)
2773d665d229SNeel Natu 			return (error);
2774d665d229SNeel Natu 		off = gpa & PAGE_MASK;
2775d665d229SNeel Natu 		n = min(remaining, PAGE_SIZE - off);
2776d665d229SNeel Natu 		copyinfo[nused].gpa = gpa;
2777d665d229SNeel Natu 		copyinfo[nused].len = n;
2778d665d229SNeel Natu 		remaining -= n;
2779d665d229SNeel Natu 		gla += n;
2780d665d229SNeel Natu 		nused++;
2781d665d229SNeel Natu 	}
2782d665d229SNeel Natu 
2783d665d229SNeel Natu 	for (idx = 0; idx < nused; idx++) {
2784d3956e46SJohn Baldwin 		hva = vm_gpa_hold(vcpu, copyinfo[idx].gpa,
27859b1aa8d6SNeel Natu 		    copyinfo[idx].len, prot, &cookie);
2786d665d229SNeel Natu 		if (hva == NULL)
2787d665d229SNeel Natu 			break;
2788d665d229SNeel Natu 		copyinfo[idx].hva = hva;
2789d665d229SNeel Natu 		copyinfo[idx].cookie = cookie;
2790d665d229SNeel Natu 	}
2791d665d229SNeel Natu 
2792d665d229SNeel Natu 	if (idx != nused) {
27932b4fe856SJohn Baldwin 		vm_copy_teardown(copyinfo, num_copyinfo);
27949c4d5478SNeel Natu 		return (EFAULT);
2795d665d229SNeel Natu 	} else {
27969c4d5478SNeel Natu 		*fault = 0;
2797d665d229SNeel Natu 		return (0);
2798d665d229SNeel Natu 	}
2799d665d229SNeel Natu }
2800d665d229SNeel Natu 
2801d665d229SNeel Natu void
28022b4fe856SJohn Baldwin vm_copyin(struct vm_copyinfo *copyinfo, void *kaddr, size_t len)
2803d665d229SNeel Natu {
2804d665d229SNeel Natu 	char *dst;
2805d665d229SNeel Natu 	int idx;
2806d665d229SNeel Natu 
2807d665d229SNeel Natu 	dst = kaddr;
2808d665d229SNeel Natu 	idx = 0;
2809d665d229SNeel Natu 	while (len > 0) {
2810d665d229SNeel Natu 		bcopy(copyinfo[idx].hva, dst, copyinfo[idx].len);
2811d665d229SNeel Natu 		len -= copyinfo[idx].len;
2812d665d229SNeel Natu 		dst += copyinfo[idx].len;
2813d665d229SNeel Natu 		idx++;
2814d665d229SNeel Natu 	}
2815d665d229SNeel Natu }
2816d665d229SNeel Natu 
2817d665d229SNeel Natu void
28182b4fe856SJohn Baldwin vm_copyout(const void *kaddr, struct vm_copyinfo *copyinfo, size_t len)
2819d665d229SNeel Natu {
2820d665d229SNeel Natu 	const char *src;
2821d665d229SNeel Natu 	int idx;
2822d665d229SNeel Natu 
2823d665d229SNeel Natu 	src = kaddr;
2824d665d229SNeel Natu 	idx = 0;
2825d665d229SNeel Natu 	while (len > 0) {
2826d665d229SNeel Natu 		bcopy(src, copyinfo[idx].hva, copyinfo[idx].len);
2827d665d229SNeel Natu 		len -= copyinfo[idx].len;
2828d665d229SNeel Natu 		src += copyinfo[idx].len;
2829d665d229SNeel Natu 		idx++;
2830d665d229SNeel Natu 	}
2831d665d229SNeel Natu }
2832cf1d80d8SPeter Grehan 
2833cf1d80d8SPeter Grehan /*
2834cf1d80d8SPeter Grehan  * Return the amount of in-use and wired memory for the VM. Since
2835cf1d80d8SPeter Grehan  * these are global stats, only return the values with for vCPU 0
2836cf1d80d8SPeter Grehan  */
2837cf1d80d8SPeter Grehan VMM_STAT_DECLARE(VMM_MEM_RESIDENT);
2838cf1d80d8SPeter Grehan VMM_STAT_DECLARE(VMM_MEM_WIRED);
2839cf1d80d8SPeter Grehan 
2840cf1d80d8SPeter Grehan static void
28413f0f4b15SJohn Baldwin vm_get_rescnt(struct vcpu *vcpu, struct vmm_stat_type *stat)
2842cf1d80d8SPeter Grehan {
2843cf1d80d8SPeter Grehan 
28443f0f4b15SJohn Baldwin 	if (vcpu->vcpuid == 0) {
28453f0f4b15SJohn Baldwin 		vmm_stat_set(vcpu, VMM_MEM_RESIDENT, PAGE_SIZE *
28463f0f4b15SJohn Baldwin 		    vmspace_resident_count(vcpu->vm->vmspace));
2847cf1d80d8SPeter Grehan 	}
2848cf1d80d8SPeter Grehan }
2849cf1d80d8SPeter Grehan 
2850cf1d80d8SPeter Grehan static void
28513f0f4b15SJohn Baldwin vm_get_wiredcnt(struct vcpu *vcpu, struct vmm_stat_type *stat)
2852cf1d80d8SPeter Grehan {
2853cf1d80d8SPeter Grehan 
28543f0f4b15SJohn Baldwin 	if (vcpu->vcpuid == 0) {
28553f0f4b15SJohn Baldwin 		vmm_stat_set(vcpu, VMM_MEM_WIRED, PAGE_SIZE *
28563f0f4b15SJohn Baldwin 		    pmap_wired_count(vmspace_pmap(vcpu->vm->vmspace)));
2857cf1d80d8SPeter Grehan 	}
2858cf1d80d8SPeter Grehan }
2859cf1d80d8SPeter Grehan 
2860cf1d80d8SPeter Grehan VMM_STAT_FUNC(VMM_MEM_RESIDENT, "Resident memory", vm_get_rescnt);
2861cf1d80d8SPeter Grehan VMM_STAT_FUNC(VMM_MEM_WIRED, "Wired memory", vm_get_wiredcnt);
2862483d953aSJohn Baldwin 
2863483d953aSJohn Baldwin #ifdef BHYVE_SNAPSHOT
2864483d953aSJohn Baldwin static int
2865483d953aSJohn Baldwin vm_snapshot_vcpus(struct vm *vm, struct vm_snapshot_meta *meta)
2866483d953aSJohn Baldwin {
2867a7db532eSJohn Baldwin 	uint64_t tsc, now;
2868483d953aSJohn Baldwin 	int ret;
2869483d953aSJohn Baldwin 	struct vcpu *vcpu;
287035abc6c2SJohn Baldwin 	uint16_t i, maxcpus;
2871483d953aSJohn Baldwin 
2872a7db532eSJohn Baldwin 	now = rdtsc();
287335abc6c2SJohn Baldwin 	maxcpus = vm_get_maxcpus(vm);
287435abc6c2SJohn Baldwin 	for (i = 0; i < maxcpus; i++) {
287598568a00SJohn Baldwin 		vcpu = vm->vcpu[i];
287698568a00SJohn Baldwin 		if (vcpu == NULL)
287798568a00SJohn Baldwin 			continue;
2878483d953aSJohn Baldwin 
2879483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->x2apic_state, meta, ret, done);
2880483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->exitintinfo, meta, ret, done);
2881483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->exc_vector, meta, ret, done);
2882483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->exc_errcode_valid, meta, ret, done);
2883483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->exc_errcode, meta, ret, done);
2884483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->guest_xcr0, meta, ret, done);
2885483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->exitinfo, meta, ret, done);
2886483d953aSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(vcpu->nextrip, meta, ret, done);
2887a7db532eSJohn Baldwin 
2888a7db532eSJohn Baldwin 		/*
2889a7db532eSJohn Baldwin 		 * Save the absolute TSC value by adding now to tsc_offset.
2890483d953aSJohn Baldwin 		 *
2891483d953aSJohn Baldwin 		 * It will be turned turned back into an actual offset when the
2892483d953aSJohn Baldwin 		 * TSC restore function is called
2893483d953aSJohn Baldwin 		 */
2894a7db532eSJohn Baldwin 		tsc = now + vcpu->tsc_offset;
2895a7db532eSJohn Baldwin 		SNAPSHOT_VAR_OR_LEAVE(tsc, meta, ret, done);
2896281b496fSVitaliy Gusev 		if (meta->op == VM_SNAPSHOT_RESTORE)
2897281b496fSVitaliy Gusev 			vcpu->tsc_offset = tsc;
2898483d953aSJohn Baldwin 	}
2899483d953aSJohn Baldwin 
2900483d953aSJohn Baldwin done:
2901483d953aSJohn Baldwin 	return (ret);
2902483d953aSJohn Baldwin }
2903483d953aSJohn Baldwin 
2904483d953aSJohn Baldwin static int
2905483d953aSJohn Baldwin vm_snapshot_vm(struct vm *vm, struct vm_snapshot_meta *meta)
2906483d953aSJohn Baldwin {
2907483d953aSJohn Baldwin 	int ret;
2908483d953aSJohn Baldwin 
2909483d953aSJohn Baldwin 	ret = vm_snapshot_vcpus(vm, meta);
2910a7db532eSJohn Baldwin 	if (ret != 0)
2911483d953aSJohn Baldwin 		goto done;
2912483d953aSJohn Baldwin 
2913c0f35dbfSJohn Baldwin 	SNAPSHOT_VAR_OR_LEAVE(vm->startup_cpus, meta, ret, done);
2914483d953aSJohn Baldwin done:
2915483d953aSJohn Baldwin 	return (ret);
2916483d953aSJohn Baldwin }
2917483d953aSJohn Baldwin 
2918483d953aSJohn Baldwin static int
29191aa51504SJohn Baldwin vm_snapshot_vcpu(struct vm *vm, struct vm_snapshot_meta *meta)
2920483d953aSJohn Baldwin {
292135abc6c2SJohn Baldwin 	int error;
29221aa51504SJohn Baldwin 	struct vcpu *vcpu;
292335abc6c2SJohn Baldwin 	uint16_t i, maxcpus;
2924483d953aSJohn Baldwin 
2925483d953aSJohn Baldwin 	error = 0;
2926483d953aSJohn Baldwin 
292735abc6c2SJohn Baldwin 	maxcpus = vm_get_maxcpus(vm);
292835abc6c2SJohn Baldwin 	for (i = 0; i < maxcpus; i++) {
292998568a00SJohn Baldwin 		vcpu = vm->vcpu[i];
293098568a00SJohn Baldwin 		if (vcpu == NULL)
293198568a00SJohn Baldwin 			continue;
29321aa51504SJohn Baldwin 
2933869c8d19SJohn Baldwin 		error = vmmops_vcpu_snapshot(vcpu->cookie, meta);
2934483d953aSJohn Baldwin 		if (error != 0) {
2935483d953aSJohn Baldwin 			printf("%s: failed to snapshot vmcs/vmcb data for "
2936483d953aSJohn Baldwin 			       "vCPU: %d; error: %d\n", __func__, i, error);
2937483d953aSJohn Baldwin 			goto done;
2938483d953aSJohn Baldwin 		}
2939483d953aSJohn Baldwin 	}
2940483d953aSJohn Baldwin 
2941483d953aSJohn Baldwin done:
2942483d953aSJohn Baldwin 	return (error);
2943483d953aSJohn Baldwin }
2944483d953aSJohn Baldwin 
2945483d953aSJohn Baldwin /*
2946483d953aSJohn Baldwin  * Save kernel-side structures to user-space for snapshotting.
2947483d953aSJohn Baldwin  */
2948483d953aSJohn Baldwin int
2949483d953aSJohn Baldwin vm_snapshot_req(struct vm *vm, struct vm_snapshot_meta *meta)
2950483d953aSJohn Baldwin {
2951483d953aSJohn Baldwin 	int ret = 0;
2952483d953aSJohn Baldwin 
2953483d953aSJohn Baldwin 	switch (meta->dev_req) {
2954483d953aSJohn Baldwin 	case STRUCT_VMCX:
29551aa51504SJohn Baldwin 		ret = vm_snapshot_vcpu(vm, meta);
2956483d953aSJohn Baldwin 		break;
2957483d953aSJohn Baldwin 	case STRUCT_VM:
2958483d953aSJohn Baldwin 		ret = vm_snapshot_vm(vm, meta);
2959483d953aSJohn Baldwin 		break;
2960483d953aSJohn Baldwin 	case STRUCT_VIOAPIC:
2961483d953aSJohn Baldwin 		ret = vioapic_snapshot(vm_ioapic(vm), meta);
2962483d953aSJohn Baldwin 		break;
2963483d953aSJohn Baldwin 	case STRUCT_VLAPIC:
2964483d953aSJohn Baldwin 		ret = vlapic_snapshot(vm, meta);
2965483d953aSJohn Baldwin 		break;
2966483d953aSJohn Baldwin 	case STRUCT_VHPET:
2967483d953aSJohn Baldwin 		ret = vhpet_snapshot(vm_hpet(vm), meta);
2968483d953aSJohn Baldwin 		break;
2969483d953aSJohn Baldwin 	case STRUCT_VATPIC:
2970483d953aSJohn Baldwin 		ret = vatpic_snapshot(vm_atpic(vm), meta);
2971483d953aSJohn Baldwin 		break;
2972483d953aSJohn Baldwin 	case STRUCT_VATPIT:
2973483d953aSJohn Baldwin 		ret = vatpit_snapshot(vm_atpit(vm), meta);
2974483d953aSJohn Baldwin 		break;
2975483d953aSJohn Baldwin 	case STRUCT_VPMTMR:
2976483d953aSJohn Baldwin 		ret = vpmtmr_snapshot(vm_pmtmr(vm), meta);
2977483d953aSJohn Baldwin 		break;
2978483d953aSJohn Baldwin 	case STRUCT_VRTC:
2979483d953aSJohn Baldwin 		ret = vrtc_snapshot(vm_rtc(vm), meta);
2980483d953aSJohn Baldwin 		break;
2981483d953aSJohn Baldwin 	default:
2982483d953aSJohn Baldwin 		printf("%s: failed to find the requested type %#x\n",
2983483d953aSJohn Baldwin 		       __func__, meta->dev_req);
2984483d953aSJohn Baldwin 		ret = (EINVAL);
2985483d953aSJohn Baldwin 	}
2986483d953aSJohn Baldwin 	return (ret);
2987483d953aSJohn Baldwin }
2988483d953aSJohn Baldwin 
298980cb5d84SJohn Baldwin void
299080cb5d84SJohn Baldwin vm_set_tsc_offset(struct vcpu *vcpu, uint64_t offset)
2991483d953aSJohn Baldwin {
2992483d953aSJohn Baldwin 	vcpu->tsc_offset = offset;
2993483d953aSJohn Baldwin }
2994483d953aSJohn Baldwin 
2995483d953aSJohn Baldwin int
2996483d953aSJohn Baldwin vm_restore_time(struct vm *vm)
2997483d953aSJohn Baldwin {
299835abc6c2SJohn Baldwin 	int error;
2999483d953aSJohn Baldwin 	uint64_t now;
3000483d953aSJohn Baldwin 	struct vcpu *vcpu;
300135abc6c2SJohn Baldwin 	uint16_t i, maxcpus;
3002483d953aSJohn Baldwin 
3003483d953aSJohn Baldwin 	now = rdtsc();
3004483d953aSJohn Baldwin 
3005483d953aSJohn Baldwin 	error = vhpet_restore_time(vm_hpet(vm));
3006483d953aSJohn Baldwin 	if (error)
3007483d953aSJohn Baldwin 		return (error);
3008483d953aSJohn Baldwin 
300935abc6c2SJohn Baldwin 	maxcpus = vm_get_maxcpus(vm);
301035abc6c2SJohn Baldwin 	for (i = 0; i < maxcpus; i++) {
301198568a00SJohn Baldwin 		vcpu = vm->vcpu[i];
301298568a00SJohn Baldwin 		if (vcpu == NULL)
301398568a00SJohn Baldwin 			continue;
3014483d953aSJohn Baldwin 
3015869c8d19SJohn Baldwin 		error = vmmops_restore_tsc(vcpu->cookie,
30161aa51504SJohn Baldwin 		    vcpu->tsc_offset - now);
3017483d953aSJohn Baldwin 		if (error)
3018483d953aSJohn Baldwin 			return (error);
3019483d953aSJohn Baldwin 	}
3020483d953aSJohn Baldwin 
3021483d953aSJohn Baldwin 	return (0);
3022483d953aSJohn Baldwin }
3023483d953aSJohn Baldwin #endif
3024