vmmapi.c revision 268891
1/*-
2 * Copyright (c) 2011 NetApp, Inc.
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 *
26 * $FreeBSD: stable/10/lib/libvmmapi/vmmapi.c 268891 2014-07-19 22:06:46Z jhb $
27 */
28
29#include <sys/cdefs.h>
30__FBSDID("$FreeBSD: stable/10/lib/libvmmapi/vmmapi.c 268891 2014-07-19 22:06:46Z jhb $");
31
32#include <sys/types.h>
33#include <sys/sysctl.h>
34#include <sys/ioctl.h>
35#include <sys/mman.h>
36
37#include <machine/specialreg.h>
38
39#include <stdio.h>
40#include <stdlib.h>
41#include <assert.h>
42#include <string.h>
43#include <fcntl.h>
44#include <unistd.h>
45
46#include <libutil.h>
47
48#include <machine/vmm.h>
49#include <machine/vmm_dev.h>
50
51#include "vmmapi.h"
52
53#define	MB	(1024 * 1024UL)
54#define	GB	(1024 * 1024 * 1024UL)
55
56struct vmctx {
57	int	fd;
58	uint32_t lowmem_limit;
59	enum vm_mmap_style vms;
60	size_t	lowmem;
61	char	*lowmem_addr;
62	size_t	highmem;
63	char	*highmem_addr;
64	char	*name;
65};
66
67#define	CREATE(x)  sysctlbyname("hw.vmm.create", NULL, NULL, (x), strlen((x)))
68#define	DESTROY(x) sysctlbyname("hw.vmm.destroy", NULL, NULL, (x), strlen((x)))
69
70static int
71vm_device_open(const char *name)
72{
73        int fd, len;
74        char *vmfile;
75
76	len = strlen("/dev/vmm/") + strlen(name) + 1;
77	vmfile = malloc(len);
78	assert(vmfile != NULL);
79	snprintf(vmfile, len, "/dev/vmm/%s", name);
80
81        /* Open the device file */
82        fd = open(vmfile, O_RDWR, 0);
83
84	free(vmfile);
85        return (fd);
86}
87
88int
89vm_create(const char *name)
90{
91
92	return (CREATE((char *)name));
93}
94
95struct vmctx *
96vm_open(const char *name)
97{
98	struct vmctx *vm;
99
100	vm = malloc(sizeof(struct vmctx) + strlen(name) + 1);
101	assert(vm != NULL);
102
103	vm->fd = -1;
104	vm->lowmem_limit = 3 * GB;
105	vm->name = (char *)(vm + 1);
106	strcpy(vm->name, name);
107
108	if ((vm->fd = vm_device_open(vm->name)) < 0)
109		goto err;
110
111	return (vm);
112err:
113	vm_destroy(vm);
114	return (NULL);
115}
116
117void
118vm_destroy(struct vmctx *vm)
119{
120	assert(vm != NULL);
121
122	if (vm->fd >= 0)
123		close(vm->fd);
124	DESTROY(vm->name);
125
126	free(vm);
127}
128
129int
130vm_parse_memsize(const char *optarg, size_t *ret_memsize)
131{
132	char *endptr;
133	size_t optval;
134	int error;
135
136	optval = strtoul(optarg, &endptr, 0);
137	if (*optarg != '\0' && *endptr == '\0') {
138		/*
139		 * For the sake of backward compatibility if the memory size
140		 * specified on the command line is less than a megabyte then
141		 * it is interpreted as being in units of MB.
142		 */
143		if (optval < MB)
144			optval *= MB;
145		*ret_memsize = optval;
146		error = 0;
147	} else
148		error = expand_number(optarg, ret_memsize);
149
150	return (error);
151}
152
153int
154vm_get_memory_seg(struct vmctx *ctx, vm_paddr_t gpa, size_t *ret_len,
155		  int *wired)
156{
157	int error;
158	struct vm_memory_segment seg;
159
160	bzero(&seg, sizeof(seg));
161	seg.gpa = gpa;
162	error = ioctl(ctx->fd, VM_GET_MEMORY_SEG, &seg);
163	*ret_len = seg.len;
164	if (wired != NULL)
165		*wired = seg.wired;
166	return (error);
167}
168
169uint32_t
170vm_get_lowmem_limit(struct vmctx *ctx)
171{
172
173	return (ctx->lowmem_limit);
174}
175
176void
177vm_set_lowmem_limit(struct vmctx *ctx, uint32_t limit)
178{
179
180	ctx->lowmem_limit = limit;
181}
182
183static int
184setup_memory_segment(struct vmctx *ctx, vm_paddr_t gpa, size_t len, char **addr)
185{
186	int error;
187	struct vm_memory_segment seg;
188
189	/*
190	 * Create and optionally map 'len' bytes of memory at guest
191	 * physical address 'gpa'
192	 */
193	bzero(&seg, sizeof(seg));
194	seg.gpa = gpa;
195	seg.len = len;
196	error = ioctl(ctx->fd, VM_MAP_MEMORY, &seg);
197	if (error == 0 && addr != NULL) {
198		*addr = mmap(NULL, len, PROT_READ | PROT_WRITE, MAP_SHARED,
199				ctx->fd, gpa);
200	}
201	return (error);
202}
203
204int
205vm_setup_memory(struct vmctx *ctx, size_t memsize, enum vm_mmap_style vms)
206{
207	char **addr;
208	int error;
209
210	/* XXX VM_MMAP_SPARSE not implemented yet */
211	assert(vms == VM_MMAP_NONE || vms == VM_MMAP_ALL);
212	ctx->vms = vms;
213
214	/*
215	 * If 'memsize' cannot fit entirely in the 'lowmem' segment then
216	 * create another 'highmem' segment above 4GB for the remainder.
217	 */
218	if (memsize > ctx->lowmem_limit) {
219		ctx->lowmem = ctx->lowmem_limit;
220		ctx->highmem = memsize - ctx->lowmem;
221	} else {
222		ctx->lowmem = memsize;
223		ctx->highmem = 0;
224	}
225
226	if (ctx->lowmem > 0) {
227		addr = (vms == VM_MMAP_ALL) ? &ctx->lowmem_addr : NULL;
228		error = setup_memory_segment(ctx, 0, ctx->lowmem, addr);
229		if (error)
230			return (error);
231	}
232
233	if (ctx->highmem > 0) {
234		addr = (vms == VM_MMAP_ALL) ? &ctx->highmem_addr : NULL;
235		error = setup_memory_segment(ctx, 4*GB, ctx->highmem, addr);
236		if (error)
237			return (error);
238	}
239
240	return (0);
241}
242
243void *
244vm_map_gpa(struct vmctx *ctx, vm_paddr_t gaddr, size_t len)
245{
246
247	/* XXX VM_MMAP_SPARSE not implemented yet */
248	assert(ctx->vms == VM_MMAP_ALL);
249
250	if (gaddr < ctx->lowmem && gaddr + len <= ctx->lowmem)
251		return ((void *)(ctx->lowmem_addr + gaddr));
252
253	if (gaddr >= 4*GB) {
254		gaddr -= 4*GB;
255		if (gaddr < ctx->highmem && gaddr + len <= ctx->highmem)
256			return ((void *)(ctx->highmem_addr + gaddr));
257	}
258
259	return (NULL);
260}
261
262int
263vm_set_desc(struct vmctx *ctx, int vcpu, int reg,
264	    uint64_t base, uint32_t limit, uint32_t access)
265{
266	int error;
267	struct vm_seg_desc vmsegdesc;
268
269	bzero(&vmsegdesc, sizeof(vmsegdesc));
270	vmsegdesc.cpuid = vcpu;
271	vmsegdesc.regnum = reg;
272	vmsegdesc.desc.base = base;
273	vmsegdesc.desc.limit = limit;
274	vmsegdesc.desc.access = access;
275
276	error = ioctl(ctx->fd, VM_SET_SEGMENT_DESCRIPTOR, &vmsegdesc);
277	return (error);
278}
279
280int
281vm_get_desc(struct vmctx *ctx, int vcpu, int reg,
282	    uint64_t *base, uint32_t *limit, uint32_t *access)
283{
284	int error;
285	struct vm_seg_desc vmsegdesc;
286
287	bzero(&vmsegdesc, sizeof(vmsegdesc));
288	vmsegdesc.cpuid = vcpu;
289	vmsegdesc.regnum = reg;
290
291	error = ioctl(ctx->fd, VM_GET_SEGMENT_DESCRIPTOR, &vmsegdesc);
292	if (error == 0) {
293		*base = vmsegdesc.desc.base;
294		*limit = vmsegdesc.desc.limit;
295		*access = vmsegdesc.desc.access;
296	}
297	return (error);
298}
299
300int
301vm_set_register(struct vmctx *ctx, int vcpu, int reg, uint64_t val)
302{
303	int error;
304	struct vm_register vmreg;
305
306	bzero(&vmreg, sizeof(vmreg));
307	vmreg.cpuid = vcpu;
308	vmreg.regnum = reg;
309	vmreg.regval = val;
310
311	error = ioctl(ctx->fd, VM_SET_REGISTER, &vmreg);
312	return (error);
313}
314
315int
316vm_get_register(struct vmctx *ctx, int vcpu, int reg, uint64_t *ret_val)
317{
318	int error;
319	struct vm_register vmreg;
320
321	bzero(&vmreg, sizeof(vmreg));
322	vmreg.cpuid = vcpu;
323	vmreg.regnum = reg;
324
325	error = ioctl(ctx->fd, VM_GET_REGISTER, &vmreg);
326	*ret_val = vmreg.regval;
327	return (error);
328}
329
330int
331vm_run(struct vmctx *ctx, int vcpu, uint64_t rip, struct vm_exit *vmexit)
332{
333	int error;
334	struct vm_run vmrun;
335
336	bzero(&vmrun, sizeof(vmrun));
337	vmrun.cpuid = vcpu;
338	vmrun.rip = rip;
339
340	error = ioctl(ctx->fd, VM_RUN, &vmrun);
341	bcopy(&vmrun.vm_exit, vmexit, sizeof(struct vm_exit));
342	return (error);
343}
344
345static int
346vm_inject_exception_real(struct vmctx *ctx, int vcpu, int vector,
347    int error_code, int error_code_valid)
348{
349	struct vm_exception exc;
350
351	bzero(&exc, sizeof(exc));
352	exc.cpuid = vcpu;
353	exc.vector = vector;
354	exc.error_code = error_code;
355	exc.error_code_valid = error_code_valid;
356
357	return (ioctl(ctx->fd, VM_INJECT_EXCEPTION, &exc));
358}
359
360int
361vm_inject_exception(struct vmctx *ctx, int vcpu, int vector)
362{
363
364	return (vm_inject_exception_real(ctx, vcpu, vector, 0, 0));
365}
366
367int
368vm_inject_exception2(struct vmctx *ctx, int vcpu, int vector, int errcode)
369{
370
371	return (vm_inject_exception_real(ctx, vcpu, vector, errcode, 1));
372}
373
374int
375vm_apicid2vcpu(struct vmctx *ctx, int apicid)
376{
377	/*
378	 * The apic id associated with the 'vcpu' has the same numerical value
379	 * as the 'vcpu' itself.
380	 */
381	return (apicid);
382}
383
384int
385vm_lapic_irq(struct vmctx *ctx, int vcpu, int vector)
386{
387	struct vm_lapic_irq vmirq;
388
389	bzero(&vmirq, sizeof(vmirq));
390	vmirq.cpuid = vcpu;
391	vmirq.vector = vector;
392
393	return (ioctl(ctx->fd, VM_LAPIC_IRQ, &vmirq));
394}
395
396int
397vm_lapic_local_irq(struct vmctx *ctx, int vcpu, int vector)
398{
399	struct vm_lapic_irq vmirq;
400
401	bzero(&vmirq, sizeof(vmirq));
402	vmirq.cpuid = vcpu;
403	vmirq.vector = vector;
404
405	return (ioctl(ctx->fd, VM_LAPIC_LOCAL_IRQ, &vmirq));
406}
407
408int
409vm_lapic_msi(struct vmctx *ctx, uint64_t addr, uint64_t msg)
410{
411	struct vm_lapic_msi vmmsi;
412
413	bzero(&vmmsi, sizeof(vmmsi));
414	vmmsi.addr = addr;
415	vmmsi.msg = msg;
416
417	return (ioctl(ctx->fd, VM_LAPIC_MSI, &vmmsi));
418}
419
420int
421vm_ioapic_assert_irq(struct vmctx *ctx, int irq)
422{
423	struct vm_ioapic_irq ioapic_irq;
424
425	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
426	ioapic_irq.irq = irq;
427
428	return (ioctl(ctx->fd, VM_IOAPIC_ASSERT_IRQ, &ioapic_irq));
429}
430
431int
432vm_ioapic_deassert_irq(struct vmctx *ctx, int irq)
433{
434	struct vm_ioapic_irq ioapic_irq;
435
436	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
437	ioapic_irq.irq = irq;
438
439	return (ioctl(ctx->fd, VM_IOAPIC_DEASSERT_IRQ, &ioapic_irq));
440}
441
442int
443vm_ioapic_pulse_irq(struct vmctx *ctx, int irq)
444{
445	struct vm_ioapic_irq ioapic_irq;
446
447	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
448	ioapic_irq.irq = irq;
449
450	return (ioctl(ctx->fd, VM_IOAPIC_PULSE_IRQ, &ioapic_irq));
451}
452
453int
454vm_ioapic_pincount(struct vmctx *ctx, int *pincount)
455{
456
457	return (ioctl(ctx->fd, VM_IOAPIC_PINCOUNT, pincount));
458}
459
460int
461vm_isa_assert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
462{
463	struct vm_isa_irq isa_irq;
464
465	bzero(&isa_irq, sizeof(struct vm_isa_irq));
466	isa_irq.atpic_irq = atpic_irq;
467	isa_irq.ioapic_irq = ioapic_irq;
468
469	return (ioctl(ctx->fd, VM_ISA_ASSERT_IRQ, &isa_irq));
470}
471
472int
473vm_isa_deassert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
474{
475	struct vm_isa_irq isa_irq;
476
477	bzero(&isa_irq, sizeof(struct vm_isa_irq));
478	isa_irq.atpic_irq = atpic_irq;
479	isa_irq.ioapic_irq = ioapic_irq;
480
481	return (ioctl(ctx->fd, VM_ISA_DEASSERT_IRQ, &isa_irq));
482}
483
484int
485vm_isa_pulse_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
486{
487	struct vm_isa_irq isa_irq;
488	bzero(&isa_irq, sizeof(struct vm_isa_irq));
489	isa_irq.atpic_irq = atpic_irq;
490	isa_irq.ioapic_irq = ioapic_irq;
491
492	return (ioctl(ctx->fd, VM_ISA_PULSE_IRQ, &isa_irq));
493}
494
495int
496vm_inject_nmi(struct vmctx *ctx, int vcpu)
497{
498	struct vm_nmi vmnmi;
499
500	bzero(&vmnmi, sizeof(vmnmi));
501	vmnmi.cpuid = vcpu;
502
503	return (ioctl(ctx->fd, VM_INJECT_NMI, &vmnmi));
504}
505
506static struct {
507	const char	*name;
508	int		type;
509} capstrmap[] = {
510	{ "hlt_exit",		VM_CAP_HALT_EXIT },
511	{ "mtrap_exit",		VM_CAP_MTRAP_EXIT },
512	{ "pause_exit",		VM_CAP_PAUSE_EXIT },
513	{ "unrestricted_guest",	VM_CAP_UNRESTRICTED_GUEST },
514	{ "enable_invpcid",	VM_CAP_ENABLE_INVPCID },
515	{ 0 }
516};
517
518int
519vm_capability_name2type(const char *capname)
520{
521	int i;
522
523	for (i = 0; capstrmap[i].name != NULL && capname != NULL; i++) {
524		if (strcmp(capstrmap[i].name, capname) == 0)
525			return (capstrmap[i].type);
526	}
527
528	return (-1);
529}
530
531const char *
532vm_capability_type2name(int type)
533{
534	int i;
535
536	for (i = 0; capstrmap[i].name != NULL; i++) {
537		if (capstrmap[i].type == type)
538			return (capstrmap[i].name);
539	}
540
541	return (NULL);
542}
543
544int
545vm_get_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap,
546		  int *retval)
547{
548	int error;
549	struct vm_capability vmcap;
550
551	bzero(&vmcap, sizeof(vmcap));
552	vmcap.cpuid = vcpu;
553	vmcap.captype = cap;
554
555	error = ioctl(ctx->fd, VM_GET_CAPABILITY, &vmcap);
556	*retval = vmcap.capval;
557	return (error);
558}
559
560int
561vm_set_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap, int val)
562{
563	struct vm_capability vmcap;
564
565	bzero(&vmcap, sizeof(vmcap));
566	vmcap.cpuid = vcpu;
567	vmcap.captype = cap;
568	vmcap.capval = val;
569
570	return (ioctl(ctx->fd, VM_SET_CAPABILITY, &vmcap));
571}
572
573int
574vm_assign_pptdev(struct vmctx *ctx, int bus, int slot, int func)
575{
576	struct vm_pptdev pptdev;
577
578	bzero(&pptdev, sizeof(pptdev));
579	pptdev.bus = bus;
580	pptdev.slot = slot;
581	pptdev.func = func;
582
583	return (ioctl(ctx->fd, VM_BIND_PPTDEV, &pptdev));
584}
585
586int
587vm_unassign_pptdev(struct vmctx *ctx, int bus, int slot, int func)
588{
589	struct vm_pptdev pptdev;
590
591	bzero(&pptdev, sizeof(pptdev));
592	pptdev.bus = bus;
593	pptdev.slot = slot;
594	pptdev.func = func;
595
596	return (ioctl(ctx->fd, VM_UNBIND_PPTDEV, &pptdev));
597}
598
599int
600vm_map_pptdev_mmio(struct vmctx *ctx, int bus, int slot, int func,
601		   vm_paddr_t gpa, size_t len, vm_paddr_t hpa)
602{
603	struct vm_pptdev_mmio pptmmio;
604
605	bzero(&pptmmio, sizeof(pptmmio));
606	pptmmio.bus = bus;
607	pptmmio.slot = slot;
608	pptmmio.func = func;
609	pptmmio.gpa = gpa;
610	pptmmio.len = len;
611	pptmmio.hpa = hpa;
612
613	return (ioctl(ctx->fd, VM_MAP_PPTDEV_MMIO, &pptmmio));
614}
615
616int
617vm_setup_pptdev_msi(struct vmctx *ctx, int vcpu, int bus, int slot, int func,
618    uint64_t addr, uint64_t msg, int numvec)
619{
620	struct vm_pptdev_msi pptmsi;
621
622	bzero(&pptmsi, sizeof(pptmsi));
623	pptmsi.vcpu = vcpu;
624	pptmsi.bus = bus;
625	pptmsi.slot = slot;
626	pptmsi.func = func;
627	pptmsi.msg = msg;
628	pptmsi.addr = addr;
629	pptmsi.numvec = numvec;
630
631	return (ioctl(ctx->fd, VM_PPTDEV_MSI, &pptmsi));
632}
633
634int
635vm_setup_pptdev_msix(struct vmctx *ctx, int vcpu, int bus, int slot, int func,
636    int idx, uint64_t addr, uint64_t msg, uint32_t vector_control)
637{
638	struct vm_pptdev_msix pptmsix;
639
640	bzero(&pptmsix, sizeof(pptmsix));
641	pptmsix.vcpu = vcpu;
642	pptmsix.bus = bus;
643	pptmsix.slot = slot;
644	pptmsix.func = func;
645	pptmsix.idx = idx;
646	pptmsix.msg = msg;
647	pptmsix.addr = addr;
648	pptmsix.vector_control = vector_control;
649
650	return ioctl(ctx->fd, VM_PPTDEV_MSIX, &pptmsix);
651}
652
653uint64_t *
654vm_get_stats(struct vmctx *ctx, int vcpu, struct timeval *ret_tv,
655	     int *ret_entries)
656{
657	int error;
658
659	static struct vm_stats vmstats;
660
661	vmstats.cpuid = vcpu;
662
663	error = ioctl(ctx->fd, VM_STATS, &vmstats);
664	if (error == 0) {
665		if (ret_entries)
666			*ret_entries = vmstats.num_entries;
667		if (ret_tv)
668			*ret_tv = vmstats.tv;
669		return (vmstats.statbuf);
670	} else
671		return (NULL);
672}
673
674const char *
675vm_get_stat_desc(struct vmctx *ctx, int index)
676{
677	static struct vm_stat_desc statdesc;
678
679	statdesc.index = index;
680	if (ioctl(ctx->fd, VM_STAT_DESC, &statdesc) == 0)
681		return (statdesc.desc);
682	else
683		return (NULL);
684}
685
686int
687vm_get_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state *state)
688{
689	int error;
690	struct vm_x2apic x2apic;
691
692	bzero(&x2apic, sizeof(x2apic));
693	x2apic.cpuid = vcpu;
694
695	error = ioctl(ctx->fd, VM_GET_X2APIC_STATE, &x2apic);
696	*state = x2apic.state;
697	return (error);
698}
699
700int
701vm_set_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state state)
702{
703	int error;
704	struct vm_x2apic x2apic;
705
706	bzero(&x2apic, sizeof(x2apic));
707	x2apic.cpuid = vcpu;
708	x2apic.state = state;
709
710	error = ioctl(ctx->fd, VM_SET_X2APIC_STATE, &x2apic);
711
712	return (error);
713}
714
715/*
716 * From Intel Vol 3a:
717 * Table 9-1. IA-32 Processor States Following Power-up, Reset or INIT
718 */
719int
720vcpu_reset(struct vmctx *vmctx, int vcpu)
721{
722	int error;
723	uint64_t rflags, rip, cr0, cr4, zero, desc_base, rdx;
724	uint32_t desc_access, desc_limit;
725	uint16_t sel;
726
727	zero = 0;
728
729	rflags = 0x2;
730	error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RFLAGS, rflags);
731	if (error)
732		goto done;
733
734	rip = 0xfff0;
735	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RIP, rip)) != 0)
736		goto done;
737
738	cr0 = CR0_NE;
739	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR0, cr0)) != 0)
740		goto done;
741
742	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR3, zero)) != 0)
743		goto done;
744
745	cr4 = 0;
746	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR4, cr4)) != 0)
747		goto done;
748
749	/*
750	 * CS: present, r/w, accessed, 16-bit, byte granularity, usable
751	 */
752	desc_base = 0xffff0000;
753	desc_limit = 0xffff;
754	desc_access = 0x0093;
755	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_CS,
756			    desc_base, desc_limit, desc_access);
757	if (error)
758		goto done;
759
760	sel = 0xf000;
761	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CS, sel)) != 0)
762		goto done;
763
764	/*
765	 * SS,DS,ES,FS,GS: present, r/w, accessed, 16-bit, byte granularity
766	 */
767	desc_base = 0;
768	desc_limit = 0xffff;
769	desc_access = 0x0093;
770	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_SS,
771			    desc_base, desc_limit, desc_access);
772	if (error)
773		goto done;
774
775	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_DS,
776			    desc_base, desc_limit, desc_access);
777	if (error)
778		goto done;
779
780	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_ES,
781			    desc_base, desc_limit, desc_access);
782	if (error)
783		goto done;
784
785	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_FS,
786			    desc_base, desc_limit, desc_access);
787	if (error)
788		goto done;
789
790	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_GS,
791			    desc_base, desc_limit, desc_access);
792	if (error)
793		goto done;
794
795	sel = 0;
796	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_SS, sel)) != 0)
797		goto done;
798	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_DS, sel)) != 0)
799		goto done;
800	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_ES, sel)) != 0)
801		goto done;
802	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_FS, sel)) != 0)
803		goto done;
804	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_GS, sel)) != 0)
805		goto done;
806
807	/* General purpose registers */
808	rdx = 0xf00;
809	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RAX, zero)) != 0)
810		goto done;
811	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RBX, zero)) != 0)
812		goto done;
813	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RCX, zero)) != 0)
814		goto done;
815	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RDX, rdx)) != 0)
816		goto done;
817	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RSI, zero)) != 0)
818		goto done;
819	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RDI, zero)) != 0)
820		goto done;
821	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RBP, zero)) != 0)
822		goto done;
823	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RSP, zero)) != 0)
824		goto done;
825
826	/* GDTR, IDTR */
827	desc_base = 0;
828	desc_limit = 0xffff;
829	desc_access = 0;
830	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_GDTR,
831			    desc_base, desc_limit, desc_access);
832	if (error != 0)
833		goto done;
834
835	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_IDTR,
836			    desc_base, desc_limit, desc_access);
837	if (error != 0)
838		goto done;
839
840	/* TR */
841	desc_base = 0;
842	desc_limit = 0xffff;
843	desc_access = 0x0000008b;
844	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_TR, 0, 0, desc_access);
845	if (error)
846		goto done;
847
848	sel = 0;
849	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_TR, sel)) != 0)
850		goto done;
851
852	/* LDTR */
853	desc_base = 0;
854	desc_limit = 0xffff;
855	desc_access = 0x00000082;
856	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_LDTR, desc_base,
857			    desc_limit, desc_access);
858	if (error)
859		goto done;
860
861	sel = 0;
862	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_LDTR, 0)) != 0)
863		goto done;
864
865	/* XXX cr2, debug registers */
866
867	error = 0;
868done:
869	return (error);
870}
871
872int
873vm_get_gpa_pmap(struct vmctx *ctx, uint64_t gpa, uint64_t *pte, int *num)
874{
875	int error, i;
876	struct vm_gpa_pte gpapte;
877
878	bzero(&gpapte, sizeof(gpapte));
879	gpapte.gpa = gpa;
880
881	error = ioctl(ctx->fd, VM_GET_GPA_PMAP, &gpapte);
882
883	if (error == 0) {
884		*num = gpapte.ptenum;
885		for (i = 0; i < gpapte.ptenum; i++)
886			pte[i] = gpapte.pte[i];
887	}
888
889	return (error);
890}
891
892int
893vm_get_hpet_capabilities(struct vmctx *ctx, uint32_t *capabilities)
894{
895	int error;
896	struct vm_hpet_cap cap;
897
898	bzero(&cap, sizeof(struct vm_hpet_cap));
899	error = ioctl(ctx->fd, VM_GET_HPET_CAPABILITIES, &cap);
900	if (capabilities != NULL)
901		*capabilities = cap.capabilities;
902	return (error);
903}
904