xref: /freebsd/lib/libvmmapi/vmmapi.c (revision 01d822d33b0cd1f801ce39d0ed25fa7f57b5a429)
1366f6083SPeter Grehan /*-
25e53a4f9SPedro F. Giffuni  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
35e53a4f9SPedro F. Giffuni  *
4366f6083SPeter Grehan  * Copyright (c) 2011 NetApp, Inc.
5366f6083SPeter Grehan  * All rights reserved.
6366f6083SPeter Grehan  *
7366f6083SPeter Grehan  * Redistribution and use in source and binary forms, with or without
8366f6083SPeter Grehan  * modification, are permitted provided that the following conditions
9366f6083SPeter Grehan  * are met:
10366f6083SPeter Grehan  * 1. Redistributions of source code must retain the above copyright
11366f6083SPeter Grehan  *    notice, this list of conditions and the following disclaimer.
12366f6083SPeter Grehan  * 2. Redistributions in binary form must reproduce the above copyright
13366f6083SPeter Grehan  *    notice, this list of conditions and the following disclaimer in the
14366f6083SPeter Grehan  *    documentation and/or other materials provided with the distribution.
15366f6083SPeter Grehan  *
16366f6083SPeter Grehan  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
17366f6083SPeter Grehan  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18366f6083SPeter Grehan  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19366f6083SPeter Grehan  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
20366f6083SPeter Grehan  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21366f6083SPeter Grehan  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22366f6083SPeter Grehan  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23366f6083SPeter Grehan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24366f6083SPeter Grehan  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25366f6083SPeter Grehan  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26366f6083SPeter Grehan  * SUCH DAMAGE.
27366f6083SPeter Grehan  *
28366f6083SPeter Grehan  * $FreeBSD$
29366f6083SPeter Grehan  */
30366f6083SPeter Grehan 
31366f6083SPeter Grehan #include <sys/cdefs.h>
32366f6083SPeter Grehan __FBSDID("$FreeBSD$");
33366f6083SPeter Grehan 
3495ebc360SNeel Natu #include <sys/param.h>
35366f6083SPeter Grehan #include <sys/sysctl.h>
36366f6083SPeter Grehan #include <sys/ioctl.h>
37366f6083SPeter Grehan #include <sys/mman.h>
386303b65dSNeel Natu #include <sys/_iovec.h>
3995ebc360SNeel Natu #include <sys/cpuset.h>
40366f6083SPeter Grehan 
41d665d229SNeel Natu #include <x86/segments.h>
42366f6083SPeter Grehan #include <machine/specialreg.h>
43366f6083SPeter Grehan 
449c4d5478SNeel Natu #include <errno.h>
45366f6083SPeter Grehan #include <stdio.h>
46366f6083SPeter Grehan #include <stdlib.h>
47366f6083SPeter Grehan #include <assert.h>
48366f6083SPeter Grehan #include <string.h>
49366f6083SPeter Grehan #include <fcntl.h>
50366f6083SPeter Grehan #include <unistd.h>
51366f6083SPeter Grehan 
52200758f1SNeel Natu #include <libutil.h>
53200758f1SNeel Natu 
54366f6083SPeter Grehan #include <machine/vmm.h>
55366f6083SPeter Grehan #include <machine/vmm_dev.h>
56366f6083SPeter Grehan 
57366f6083SPeter Grehan #include "vmmapi.h"
58366f6083SPeter Grehan 
59200758f1SNeel Natu #define	MB	(1024 * 1024UL)
60b060ba50SNeel Natu #define	GB	(1024 * 1024 * 1024UL)
61b060ba50SNeel Natu 
629b1aa8d6SNeel Natu /*
639b1aa8d6SNeel Natu  * Size of the guard region before and after the virtual address space
649b1aa8d6SNeel Natu  * mapping the guest physical memory. This must be a multiple of the
659b1aa8d6SNeel Natu  * superpage size for performance reasons.
669b1aa8d6SNeel Natu  */
679b1aa8d6SNeel Natu #define	VM_MMAP_GUARD_SIZE	(4 * MB)
689b1aa8d6SNeel Natu 
699b1aa8d6SNeel Natu #define	PROT_RW		(PROT_READ | PROT_WRITE)
709b1aa8d6SNeel Natu #define	PROT_ALL	(PROT_READ | PROT_WRITE | PROT_EXEC)
719b1aa8d6SNeel Natu 
72366f6083SPeter Grehan struct vmctx {
73366f6083SPeter Grehan 	int	fd;
74b060ba50SNeel Natu 	uint32_t lowmem_limit;
750dd10c00SNeel Natu 	int	memflags;
76b060ba50SNeel Natu 	size_t	lowmem;
77b060ba50SNeel Natu 	size_t	highmem;
789b1aa8d6SNeel Natu 	char	*baseaddr;
79366f6083SPeter Grehan 	char	*name;
80366f6083SPeter Grehan };
81366f6083SPeter Grehan 
82366f6083SPeter Grehan #define	CREATE(x)  sysctlbyname("hw.vmm.create", NULL, NULL, (x), strlen((x)))
83366f6083SPeter Grehan #define	DESTROY(x) sysctlbyname("hw.vmm.destroy", NULL, NULL, (x), strlen((x)))
84366f6083SPeter Grehan 
85366f6083SPeter Grehan static int
86366f6083SPeter Grehan vm_device_open(const char *name)
87366f6083SPeter Grehan {
88366f6083SPeter Grehan         int fd, len;
89366f6083SPeter Grehan         char *vmfile;
90366f6083SPeter Grehan 
91366f6083SPeter Grehan 	len = strlen("/dev/vmm/") + strlen(name) + 1;
92366f6083SPeter Grehan 	vmfile = malloc(len);
93366f6083SPeter Grehan 	assert(vmfile != NULL);
94366f6083SPeter Grehan 	snprintf(vmfile, len, "/dev/vmm/%s", name);
95366f6083SPeter Grehan 
96366f6083SPeter Grehan         /* Open the device file */
97366f6083SPeter Grehan         fd = open(vmfile, O_RDWR, 0);
98366f6083SPeter Grehan 
99366f6083SPeter Grehan 	free(vmfile);
100366f6083SPeter Grehan         return (fd);
101366f6083SPeter Grehan }
102366f6083SPeter Grehan 
103366f6083SPeter Grehan int
104366f6083SPeter Grehan vm_create(const char *name)
105366f6083SPeter Grehan {
106366f6083SPeter Grehan 
107366f6083SPeter Grehan 	return (CREATE((char *)name));
108366f6083SPeter Grehan }
109366f6083SPeter Grehan 
110366f6083SPeter Grehan struct vmctx *
111366f6083SPeter Grehan vm_open(const char *name)
112366f6083SPeter Grehan {
113366f6083SPeter Grehan 	struct vmctx *vm;
114366f6083SPeter Grehan 
115366f6083SPeter Grehan 	vm = malloc(sizeof(struct vmctx) + strlen(name) + 1);
116366f6083SPeter Grehan 	assert(vm != NULL);
117366f6083SPeter Grehan 
118366f6083SPeter Grehan 	vm->fd = -1;
1190dd10c00SNeel Natu 	vm->memflags = 0;
120b060ba50SNeel Natu 	vm->lowmem_limit = 3 * GB;
121366f6083SPeter Grehan 	vm->name = (char *)(vm + 1);
122366f6083SPeter Grehan 	strcpy(vm->name, name);
123366f6083SPeter Grehan 
124366f6083SPeter Grehan 	if ((vm->fd = vm_device_open(vm->name)) < 0)
125366f6083SPeter Grehan 		goto err;
126366f6083SPeter Grehan 
127366f6083SPeter Grehan 	return (vm);
128366f6083SPeter Grehan err:
129366f6083SPeter Grehan 	vm_destroy(vm);
130366f6083SPeter Grehan 	return (NULL);
131366f6083SPeter Grehan }
132366f6083SPeter Grehan 
133366f6083SPeter Grehan void
134366f6083SPeter Grehan vm_destroy(struct vmctx *vm)
135366f6083SPeter Grehan {
136366f6083SPeter Grehan 	assert(vm != NULL);
137366f6083SPeter Grehan 
138366f6083SPeter Grehan 	if (vm->fd >= 0)
139366f6083SPeter Grehan 		close(vm->fd);
140f7d51510SNeel Natu 	DESTROY(vm->name);
141f7d51510SNeel Natu 
142366f6083SPeter Grehan 	free(vm);
143366f6083SPeter Grehan }
144366f6083SPeter Grehan 
145366f6083SPeter Grehan int
146200758f1SNeel Natu vm_parse_memsize(const char *optarg, size_t *ret_memsize)
147200758f1SNeel Natu {
148200758f1SNeel Natu 	char *endptr;
149200758f1SNeel Natu 	size_t optval;
150200758f1SNeel Natu 	int error;
151200758f1SNeel Natu 
152200758f1SNeel Natu 	optval = strtoul(optarg, &endptr, 0);
153200758f1SNeel Natu 	if (*optarg != '\0' && *endptr == '\0') {
154200758f1SNeel Natu 		/*
155200758f1SNeel Natu 		 * For the sake of backward compatibility if the memory size
156200758f1SNeel Natu 		 * specified on the command line is less than a megabyte then
157200758f1SNeel Natu 		 * it is interpreted as being in units of MB.
158200758f1SNeel Natu 		 */
159200758f1SNeel Natu 		if (optval < MB)
160200758f1SNeel Natu 			optval *= MB;
161200758f1SNeel Natu 		*ret_memsize = optval;
162200758f1SNeel Natu 		error = 0;
163200758f1SNeel Natu 	} else
164200758f1SNeel Natu 		error = expand_number(optarg, ret_memsize);
165200758f1SNeel Natu 
166200758f1SNeel Natu 	return (error);
167200758f1SNeel Natu }
168200758f1SNeel Natu 
169b060ba50SNeel Natu uint32_t
170b060ba50SNeel Natu vm_get_lowmem_limit(struct vmctx *ctx)
171b060ba50SNeel Natu {
172b060ba50SNeel Natu 
173b060ba50SNeel Natu 	return (ctx->lowmem_limit);
174b060ba50SNeel Natu }
175b060ba50SNeel Natu 
176b060ba50SNeel Natu void
177b060ba50SNeel Natu vm_set_lowmem_limit(struct vmctx *ctx, uint32_t limit)
178b060ba50SNeel Natu {
179b060ba50SNeel Natu 
180b060ba50SNeel Natu 	ctx->lowmem_limit = limit;
181b060ba50SNeel Natu }
182b060ba50SNeel Natu 
1830dd10c00SNeel Natu void
1840dd10c00SNeel Natu vm_set_memflags(struct vmctx *ctx, int flags)
1850dd10c00SNeel Natu {
1860dd10c00SNeel Natu 
1870dd10c00SNeel Natu 	ctx->memflags = flags;
1880dd10c00SNeel Natu }
1890dd10c00SNeel Natu 
1909b1aa8d6SNeel Natu int
1919b1aa8d6SNeel Natu vm_get_memflags(struct vmctx *ctx)
192366f6083SPeter Grehan {
1939b1aa8d6SNeel Natu 
1949b1aa8d6SNeel Natu 	return (ctx->memflags);
1959b1aa8d6SNeel Natu }
196366f6083SPeter Grehan 
197366f6083SPeter Grehan /*
1989b1aa8d6SNeel Natu  * Map segment 'segid' starting at 'off' into guest address range [gpa,gpa+len).
199366f6083SPeter Grehan  */
2009b1aa8d6SNeel Natu int
2019b1aa8d6SNeel Natu vm_mmap_memseg(struct vmctx *ctx, vm_paddr_t gpa, int segid, vm_ooffset_t off,
2029b1aa8d6SNeel Natu     size_t len, int prot)
2039b1aa8d6SNeel Natu {
2049b1aa8d6SNeel Natu 	struct vm_memmap memmap;
2059b1aa8d6SNeel Natu 	int error, flags;
2069b1aa8d6SNeel Natu 
2079b1aa8d6SNeel Natu 	memmap.gpa = gpa;
2089b1aa8d6SNeel Natu 	memmap.segid = segid;
2099b1aa8d6SNeel Natu 	memmap.segoff = off;
2109b1aa8d6SNeel Natu 	memmap.len = len;
2119b1aa8d6SNeel Natu 	memmap.prot = prot;
2129b1aa8d6SNeel Natu 	memmap.flags = 0;
2139b1aa8d6SNeel Natu 
2149b1aa8d6SNeel Natu 	if (ctx->memflags & VM_MEM_F_WIRED)
2159b1aa8d6SNeel Natu 		memmap.flags |= VM_MEMMAP_F_WIRED;
2169b1aa8d6SNeel Natu 
2179b1aa8d6SNeel Natu 	/*
2189b1aa8d6SNeel Natu 	 * If this mapping already exists then don't create it again. This
2199b1aa8d6SNeel Natu 	 * is the common case for SYSMEM mappings created by bhyveload(8).
2209b1aa8d6SNeel Natu 	 */
2219b1aa8d6SNeel Natu 	error = vm_mmap_getnext(ctx, &gpa, &segid, &off, &len, &prot, &flags);
2229b1aa8d6SNeel Natu 	if (error == 0 && gpa == memmap.gpa) {
2239b1aa8d6SNeel Natu 		if (segid != memmap.segid || off != memmap.segoff ||
2249b1aa8d6SNeel Natu 		    prot != memmap.prot || flags != memmap.flags) {
2259b1aa8d6SNeel Natu 			errno = EEXIST;
2269b1aa8d6SNeel Natu 			return (-1);
2279b1aa8d6SNeel Natu 		} else {
2289b1aa8d6SNeel Natu 			return (0);
2299b1aa8d6SNeel Natu 		}
2309b1aa8d6SNeel Natu 	}
2319b1aa8d6SNeel Natu 
2329b1aa8d6SNeel Natu 	error = ioctl(ctx->fd, VM_MMAP_MEMSEG, &memmap);
2339b1aa8d6SNeel Natu 	return (error);
2349b1aa8d6SNeel Natu }
2359b1aa8d6SNeel Natu 
2369b1aa8d6SNeel Natu int
2379b1aa8d6SNeel Natu vm_mmap_getnext(struct vmctx *ctx, vm_paddr_t *gpa, int *segid,
2389b1aa8d6SNeel Natu     vm_ooffset_t *segoff, size_t *len, int *prot, int *flags)
2399b1aa8d6SNeel Natu {
2409b1aa8d6SNeel Natu 	struct vm_memmap memmap;
2419b1aa8d6SNeel Natu 	int error;
2429b1aa8d6SNeel Natu 
2439b1aa8d6SNeel Natu 	bzero(&memmap, sizeof(struct vm_memmap));
2449b1aa8d6SNeel Natu 	memmap.gpa = *gpa;
2459b1aa8d6SNeel Natu 	error = ioctl(ctx->fd, VM_MMAP_GETNEXT, &memmap);
2469b1aa8d6SNeel Natu 	if (error == 0) {
2479b1aa8d6SNeel Natu 		*gpa = memmap.gpa;
2489b1aa8d6SNeel Natu 		*segid = memmap.segid;
2499b1aa8d6SNeel Natu 		*segoff = memmap.segoff;
2509b1aa8d6SNeel Natu 		*len = memmap.len;
2519b1aa8d6SNeel Natu 		*prot = memmap.prot;
2529b1aa8d6SNeel Natu 		*flags = memmap.flags;
253366f6083SPeter Grehan 	}
254366f6083SPeter Grehan 	return (error);
255366f6083SPeter Grehan }
256366f6083SPeter Grehan 
2579b1aa8d6SNeel Natu /*
2589b1aa8d6SNeel Natu  * Return 0 if the segments are identical and non-zero otherwise.
2599b1aa8d6SNeel Natu  *
2609b1aa8d6SNeel Natu  * This is slightly complicated by the fact that only device memory segments
2619b1aa8d6SNeel Natu  * are named.
2629b1aa8d6SNeel Natu  */
2639b1aa8d6SNeel Natu static int
2649b1aa8d6SNeel Natu cmpseg(size_t len, const char *str, size_t len2, const char *str2)
2659b1aa8d6SNeel Natu {
2669b1aa8d6SNeel Natu 
2679b1aa8d6SNeel Natu 	if (len == len2) {
2689b1aa8d6SNeel Natu 		if ((!str && !str2) || (str && str2 && !strcmp(str, str2)))
2699b1aa8d6SNeel Natu 			return (0);
2709b1aa8d6SNeel Natu 	}
2719b1aa8d6SNeel Natu 	return (-1);
2729b1aa8d6SNeel Natu }
2739b1aa8d6SNeel Natu 
2749b1aa8d6SNeel Natu static int
2759b1aa8d6SNeel Natu vm_alloc_memseg(struct vmctx *ctx, int segid, size_t len, const char *name)
2769b1aa8d6SNeel Natu {
2779b1aa8d6SNeel Natu 	struct vm_memseg memseg;
2789b1aa8d6SNeel Natu 	size_t n;
2799b1aa8d6SNeel Natu 	int error;
2809b1aa8d6SNeel Natu 
2819b1aa8d6SNeel Natu 	/*
2829b1aa8d6SNeel Natu 	 * If the memory segment has already been created then just return.
2839b1aa8d6SNeel Natu 	 * This is the usual case for the SYSMEM segment created by userspace
2849b1aa8d6SNeel Natu 	 * loaders like bhyveload(8).
2859b1aa8d6SNeel Natu 	 */
2869b1aa8d6SNeel Natu 	error = vm_get_memseg(ctx, segid, &memseg.len, memseg.name,
2879b1aa8d6SNeel Natu 	    sizeof(memseg.name));
2889b1aa8d6SNeel Natu 	if (error)
2899b1aa8d6SNeel Natu 		return (error);
2909b1aa8d6SNeel Natu 
2919b1aa8d6SNeel Natu 	if (memseg.len != 0) {
2929b1aa8d6SNeel Natu 		if (cmpseg(len, name, memseg.len, VM_MEMSEG_NAME(&memseg))) {
2939b1aa8d6SNeel Natu 			errno = EINVAL;
2949b1aa8d6SNeel Natu 			return (-1);
2959b1aa8d6SNeel Natu 		} else {
2969b1aa8d6SNeel Natu 			return (0);
2979b1aa8d6SNeel Natu 		}
2989b1aa8d6SNeel Natu 	}
2999b1aa8d6SNeel Natu 
3009b1aa8d6SNeel Natu 	bzero(&memseg, sizeof(struct vm_memseg));
3019b1aa8d6SNeel Natu 	memseg.segid = segid;
3029b1aa8d6SNeel Natu 	memseg.len = len;
3039b1aa8d6SNeel Natu 	if (name != NULL) {
3049b1aa8d6SNeel Natu 		n = strlcpy(memseg.name, name, sizeof(memseg.name));
3059b1aa8d6SNeel Natu 		if (n >= sizeof(memseg.name)) {
3069b1aa8d6SNeel Natu 			errno = ENAMETOOLONG;
3079b1aa8d6SNeel Natu 			return (-1);
3089b1aa8d6SNeel Natu 		}
3099b1aa8d6SNeel Natu 	}
3109b1aa8d6SNeel Natu 
3119b1aa8d6SNeel Natu 	error = ioctl(ctx->fd, VM_ALLOC_MEMSEG, &memseg);
3129b1aa8d6SNeel Natu 	return (error);
3139b1aa8d6SNeel Natu }
3149b1aa8d6SNeel Natu 
3159b1aa8d6SNeel Natu int
3169b1aa8d6SNeel Natu vm_get_memseg(struct vmctx *ctx, int segid, size_t *lenp, char *namebuf,
3179b1aa8d6SNeel Natu     size_t bufsize)
3189b1aa8d6SNeel Natu {
3199b1aa8d6SNeel Natu 	struct vm_memseg memseg;
3209b1aa8d6SNeel Natu 	size_t n;
3219b1aa8d6SNeel Natu 	int error;
3229b1aa8d6SNeel Natu 
3239b1aa8d6SNeel Natu 	memseg.segid = segid;
3249b1aa8d6SNeel Natu 	error = ioctl(ctx->fd, VM_GET_MEMSEG, &memseg);
3259b1aa8d6SNeel Natu 	if (error == 0) {
3269b1aa8d6SNeel Natu 		*lenp = memseg.len;
3279b1aa8d6SNeel Natu 		n = strlcpy(namebuf, memseg.name, bufsize);
3289b1aa8d6SNeel Natu 		if (n >= bufsize) {
3299b1aa8d6SNeel Natu 			errno = ENAMETOOLONG;
3309b1aa8d6SNeel Natu 			error = -1;
3319b1aa8d6SNeel Natu 		}
3329b1aa8d6SNeel Natu 	}
3339b1aa8d6SNeel Natu 	return (error);
3349b1aa8d6SNeel Natu }
3359b1aa8d6SNeel Natu 
3369b1aa8d6SNeel Natu static int
3379b1aa8d6SNeel Natu setup_memory_segment(struct vmctx *ctx, vm_paddr_t gpa, size_t len, char *base)
3389b1aa8d6SNeel Natu {
3399b1aa8d6SNeel Natu 	char *ptr;
3409b1aa8d6SNeel Natu 	int error, flags;
3419b1aa8d6SNeel Natu 
3429b1aa8d6SNeel Natu 	/* Map 'len' bytes starting at 'gpa' in the guest address space */
3439b1aa8d6SNeel Natu 	error = vm_mmap_memseg(ctx, gpa, VM_SYSMEM, gpa, len, PROT_ALL);
3449b1aa8d6SNeel Natu 	if (error)
3459b1aa8d6SNeel Natu 		return (error);
3469b1aa8d6SNeel Natu 
3479b1aa8d6SNeel Natu 	flags = MAP_SHARED | MAP_FIXED;
3489b1aa8d6SNeel Natu 	if ((ctx->memflags & VM_MEM_F_INCORE) == 0)
3499b1aa8d6SNeel Natu 		flags |= MAP_NOCORE;
3509b1aa8d6SNeel Natu 
3519b1aa8d6SNeel Natu 	/* mmap into the process address space on the host */
3529b1aa8d6SNeel Natu 	ptr = mmap(base + gpa, len, PROT_RW, flags, ctx->fd, gpa);
3539b1aa8d6SNeel Natu 	if (ptr == MAP_FAILED)
3549b1aa8d6SNeel Natu 		return (-1);
3559b1aa8d6SNeel Natu 
3569b1aa8d6SNeel Natu 	return (0);
3579b1aa8d6SNeel Natu }
3589b1aa8d6SNeel Natu 
359b060ba50SNeel Natu int
360b060ba50SNeel Natu vm_setup_memory(struct vmctx *ctx, size_t memsize, enum vm_mmap_style vms)
361b060ba50SNeel Natu {
3629b1aa8d6SNeel Natu 	size_t objsize, len;
3639b1aa8d6SNeel Natu 	vm_paddr_t gpa;
3649b1aa8d6SNeel Natu 	char *baseaddr, *ptr;
3659b1aa8d6SNeel Natu 	int error, flags;
366b060ba50SNeel Natu 
3679b1aa8d6SNeel Natu 	assert(vms == VM_MMAP_ALL);
368b060ba50SNeel Natu 
369b060ba50SNeel Natu 	/*
370b060ba50SNeel Natu 	 * If 'memsize' cannot fit entirely in the 'lowmem' segment then
371b060ba50SNeel Natu 	 * create another 'highmem' segment above 4GB for the remainder.
372b060ba50SNeel Natu 	 */
373b060ba50SNeel Natu 	if (memsize > ctx->lowmem_limit) {
374b060ba50SNeel Natu 		ctx->lowmem = ctx->lowmem_limit;
3759b1aa8d6SNeel Natu 		ctx->highmem = memsize - ctx->lowmem_limit;
3769b1aa8d6SNeel Natu 		objsize = 4*GB + ctx->highmem;
377b060ba50SNeel Natu 	} else {
378b060ba50SNeel Natu 		ctx->lowmem = memsize;
379b060ba50SNeel Natu 		ctx->highmem = 0;
3809b1aa8d6SNeel Natu 		objsize = ctx->lowmem;
3819b1aa8d6SNeel Natu 	}
3829b1aa8d6SNeel Natu 
3839b1aa8d6SNeel Natu 	error = vm_alloc_memseg(ctx, VM_SYSMEM, objsize, NULL);
3849b1aa8d6SNeel Natu 	if (error)
3859b1aa8d6SNeel Natu 		return (error);
3869b1aa8d6SNeel Natu 
3879b1aa8d6SNeel Natu 	/*
3889b1aa8d6SNeel Natu 	 * Stake out a contiguous region covering the guest physical memory
3899b1aa8d6SNeel Natu 	 * and the adjoining guard regions.
3909b1aa8d6SNeel Natu 	 */
3919b1aa8d6SNeel Natu 	len = VM_MMAP_GUARD_SIZE + objsize + VM_MMAP_GUARD_SIZE;
3929b1aa8d6SNeel Natu 	flags = MAP_PRIVATE | MAP_ANON | MAP_NOCORE | MAP_ALIGNED_SUPER;
3939b1aa8d6SNeel Natu 	ptr = mmap(NULL, len, PROT_NONE, flags, -1, 0);
3949b1aa8d6SNeel Natu 	if (ptr == MAP_FAILED)
3959b1aa8d6SNeel Natu 		return (-1);
3969b1aa8d6SNeel Natu 
3979b1aa8d6SNeel Natu 	baseaddr = ptr + VM_MMAP_GUARD_SIZE;
3989b1aa8d6SNeel Natu 	if (ctx->highmem > 0) {
3999b1aa8d6SNeel Natu 		gpa = 4*GB;
4009b1aa8d6SNeel Natu 		len = ctx->highmem;
4019b1aa8d6SNeel Natu 		error = setup_memory_segment(ctx, gpa, len, baseaddr);
4029b1aa8d6SNeel Natu 		if (error)
4039b1aa8d6SNeel Natu 			return (error);
404b060ba50SNeel Natu 	}
405b060ba50SNeel Natu 
406b060ba50SNeel Natu 	if (ctx->lowmem > 0) {
4079b1aa8d6SNeel Natu 		gpa = 0;
4089b1aa8d6SNeel Natu 		len = ctx->lowmem;
4099b1aa8d6SNeel Natu 		error = setup_memory_segment(ctx, gpa, len, baseaddr);
410b060ba50SNeel Natu 		if (error)
411b060ba50SNeel Natu 			return (error);
412b060ba50SNeel Natu 	}
413b060ba50SNeel Natu 
4149b1aa8d6SNeel Natu 	ctx->baseaddr = baseaddr;
415b060ba50SNeel Natu 
416b060ba50SNeel Natu 	return (0);
417b060ba50SNeel Natu }
418b060ba50SNeel Natu 
41936e8356eSNeel Natu /*
42036e8356eSNeel Natu  * Returns a non-NULL pointer if [gaddr, gaddr+len) is entirely contained in
42136e8356eSNeel Natu  * the lowmem or highmem regions.
42236e8356eSNeel Natu  *
42336e8356eSNeel Natu  * In particular return NULL if [gaddr, gaddr+len) falls in guest MMIO region.
42436e8356eSNeel Natu  * The instruction emulation code depends on this behavior.
42536e8356eSNeel Natu  */
426b060ba50SNeel Natu void *
427b060ba50SNeel Natu vm_map_gpa(struct vmctx *ctx, vm_paddr_t gaddr, size_t len)
428366f6083SPeter Grehan {
429366f6083SPeter Grehan 
43036e8356eSNeel Natu 	if (ctx->lowmem > 0) {
431edc816d6SGleb Smirnoff 		if (gaddr < ctx->lowmem && len <= ctx->lowmem &&
432edc816d6SGleb Smirnoff 		    gaddr + len <= ctx->lowmem)
43336e8356eSNeel Natu 			return (ctx->baseaddr + gaddr);
43436e8356eSNeel Natu 	}
435b060ba50SNeel Natu 
43636e8356eSNeel Natu 	if (ctx->highmem > 0) {
437edc816d6SGleb Smirnoff                 if (gaddr >= 4*GB) {
438edc816d6SGleb Smirnoff 			if (gaddr < 4*GB + ctx->highmem &&
439edc816d6SGleb Smirnoff 			    len <= ctx->highmem &&
440edc816d6SGleb Smirnoff 			    gaddr + len <= 4*GB + ctx->highmem)
44136e8356eSNeel Natu 				return (ctx->baseaddr + gaddr);
44236e8356eSNeel Natu 		}
443edc816d6SGleb Smirnoff 	}
44436e8356eSNeel Natu 
445b060ba50SNeel Natu 	return (NULL);
446366f6083SPeter Grehan }
447366f6083SPeter Grehan 
448be679db4SNeel Natu size_t
449be679db4SNeel Natu vm_get_lowmem_size(struct vmctx *ctx)
450be679db4SNeel Natu {
451be679db4SNeel Natu 
452be679db4SNeel Natu 	return (ctx->lowmem);
453be679db4SNeel Natu }
454be679db4SNeel Natu 
455be679db4SNeel Natu size_t
456be679db4SNeel Natu vm_get_highmem_size(struct vmctx *ctx)
457be679db4SNeel Natu {
458be679db4SNeel Natu 
459be679db4SNeel Natu 	return (ctx->highmem);
460be679db4SNeel Natu }
461be679db4SNeel Natu 
4629b1aa8d6SNeel Natu void *
4639b1aa8d6SNeel Natu vm_create_devmem(struct vmctx *ctx, int segid, const char *name, size_t len)
4649b1aa8d6SNeel Natu {
4659b1aa8d6SNeel Natu 	char pathname[MAXPATHLEN];
4669b1aa8d6SNeel Natu 	size_t len2;
4679b1aa8d6SNeel Natu 	char *base, *ptr;
4689b1aa8d6SNeel Natu 	int fd, error, flags;
4699b1aa8d6SNeel Natu 
4709b1aa8d6SNeel Natu 	fd = -1;
4719b1aa8d6SNeel Natu 	ptr = MAP_FAILED;
4729b1aa8d6SNeel Natu 	if (name == NULL || strlen(name) == 0) {
4739b1aa8d6SNeel Natu 		errno = EINVAL;
4749b1aa8d6SNeel Natu 		goto done;
4759b1aa8d6SNeel Natu 	}
4769b1aa8d6SNeel Natu 
4779b1aa8d6SNeel Natu 	error = vm_alloc_memseg(ctx, segid, len, name);
4789b1aa8d6SNeel Natu 	if (error)
4799b1aa8d6SNeel Natu 		goto done;
4809b1aa8d6SNeel Natu 
4815e4f29c0SNeel Natu 	strlcpy(pathname, "/dev/vmm.io/", sizeof(pathname));
4829b1aa8d6SNeel Natu 	strlcat(pathname, ctx->name, sizeof(pathname));
4839b1aa8d6SNeel Natu 	strlcat(pathname, ".", sizeof(pathname));
4849b1aa8d6SNeel Natu 	strlcat(pathname, name, sizeof(pathname));
4859b1aa8d6SNeel Natu 
4869b1aa8d6SNeel Natu 	fd = open(pathname, O_RDWR);
4879b1aa8d6SNeel Natu 	if (fd < 0)
4889b1aa8d6SNeel Natu 		goto done;
4899b1aa8d6SNeel Natu 
4909b1aa8d6SNeel Natu 	/*
4919b1aa8d6SNeel Natu 	 * Stake out a contiguous region covering the device memory and the
4929b1aa8d6SNeel Natu 	 * adjoining guard regions.
4939b1aa8d6SNeel Natu 	 */
4949b1aa8d6SNeel Natu 	len2 = VM_MMAP_GUARD_SIZE + len + VM_MMAP_GUARD_SIZE;
4959b1aa8d6SNeel Natu 	flags = MAP_PRIVATE | MAP_ANON | MAP_NOCORE | MAP_ALIGNED_SUPER;
4969b1aa8d6SNeel Natu 	base = mmap(NULL, len2, PROT_NONE, flags, -1, 0);
4979b1aa8d6SNeel Natu 	if (base == MAP_FAILED)
4989b1aa8d6SNeel Natu 		goto done;
4999b1aa8d6SNeel Natu 
5009b1aa8d6SNeel Natu 	flags = MAP_SHARED | MAP_FIXED;
5019b1aa8d6SNeel Natu 	if ((ctx->memflags & VM_MEM_F_INCORE) == 0)
5029b1aa8d6SNeel Natu 		flags |= MAP_NOCORE;
5039b1aa8d6SNeel Natu 
5049b1aa8d6SNeel Natu 	/* mmap the devmem region in the host address space */
5059b1aa8d6SNeel Natu 	ptr = mmap(base + VM_MMAP_GUARD_SIZE, len, PROT_RW, flags, fd, 0);
5069b1aa8d6SNeel Natu done:
5079b1aa8d6SNeel Natu 	if (fd >= 0)
5089b1aa8d6SNeel Natu 		close(fd);
5099b1aa8d6SNeel Natu 	return (ptr);
5109b1aa8d6SNeel Natu }
5119b1aa8d6SNeel Natu 
512366f6083SPeter Grehan int
513366f6083SPeter Grehan vm_set_desc(struct vmctx *ctx, int vcpu, int reg,
514366f6083SPeter Grehan 	    uint64_t base, uint32_t limit, uint32_t access)
515366f6083SPeter Grehan {
516366f6083SPeter Grehan 	int error;
517366f6083SPeter Grehan 	struct vm_seg_desc vmsegdesc;
518366f6083SPeter Grehan 
519366f6083SPeter Grehan 	bzero(&vmsegdesc, sizeof(vmsegdesc));
520366f6083SPeter Grehan 	vmsegdesc.cpuid = vcpu;
521366f6083SPeter Grehan 	vmsegdesc.regnum = reg;
522366f6083SPeter Grehan 	vmsegdesc.desc.base = base;
523366f6083SPeter Grehan 	vmsegdesc.desc.limit = limit;
524366f6083SPeter Grehan 	vmsegdesc.desc.access = access;
525366f6083SPeter Grehan 
526366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_SET_SEGMENT_DESCRIPTOR, &vmsegdesc);
527366f6083SPeter Grehan 	return (error);
528366f6083SPeter Grehan }
529366f6083SPeter Grehan 
530366f6083SPeter Grehan int
531366f6083SPeter Grehan vm_get_desc(struct vmctx *ctx, int vcpu, int reg,
532366f6083SPeter Grehan 	    uint64_t *base, uint32_t *limit, uint32_t *access)
533366f6083SPeter Grehan {
534366f6083SPeter Grehan 	int error;
535366f6083SPeter Grehan 	struct vm_seg_desc vmsegdesc;
536366f6083SPeter Grehan 
537366f6083SPeter Grehan 	bzero(&vmsegdesc, sizeof(vmsegdesc));
538366f6083SPeter Grehan 	vmsegdesc.cpuid = vcpu;
539366f6083SPeter Grehan 	vmsegdesc.regnum = reg;
540366f6083SPeter Grehan 
541366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_GET_SEGMENT_DESCRIPTOR, &vmsegdesc);
542366f6083SPeter Grehan 	if (error == 0) {
543366f6083SPeter Grehan 		*base = vmsegdesc.desc.base;
544366f6083SPeter Grehan 		*limit = vmsegdesc.desc.limit;
545366f6083SPeter Grehan 		*access = vmsegdesc.desc.access;
546366f6083SPeter Grehan 	}
547366f6083SPeter Grehan 	return (error);
548366f6083SPeter Grehan }
549366f6083SPeter Grehan 
550366f6083SPeter Grehan int
551d665d229SNeel Natu vm_get_seg_desc(struct vmctx *ctx, int vcpu, int reg, struct seg_desc *seg_desc)
552d665d229SNeel Natu {
553d665d229SNeel Natu 	int error;
554d665d229SNeel Natu 
555d665d229SNeel Natu 	error = vm_get_desc(ctx, vcpu, reg, &seg_desc->base, &seg_desc->limit,
556d665d229SNeel Natu 	    &seg_desc->access);
557d665d229SNeel Natu 	return (error);
558d665d229SNeel Natu }
559d665d229SNeel Natu 
560d665d229SNeel Natu int
561366f6083SPeter Grehan vm_set_register(struct vmctx *ctx, int vcpu, int reg, uint64_t val)
562366f6083SPeter Grehan {
563366f6083SPeter Grehan 	int error;
564366f6083SPeter Grehan 	struct vm_register vmreg;
565366f6083SPeter Grehan 
566366f6083SPeter Grehan 	bzero(&vmreg, sizeof(vmreg));
567366f6083SPeter Grehan 	vmreg.cpuid = vcpu;
568366f6083SPeter Grehan 	vmreg.regnum = reg;
569366f6083SPeter Grehan 	vmreg.regval = val;
570366f6083SPeter Grehan 
571366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_SET_REGISTER, &vmreg);
572366f6083SPeter Grehan 	return (error);
573366f6083SPeter Grehan }
574366f6083SPeter Grehan 
575366f6083SPeter Grehan int
576366f6083SPeter Grehan vm_get_register(struct vmctx *ctx, int vcpu, int reg, uint64_t *ret_val)
577366f6083SPeter Grehan {
578366f6083SPeter Grehan 	int error;
579366f6083SPeter Grehan 	struct vm_register vmreg;
580366f6083SPeter Grehan 
581366f6083SPeter Grehan 	bzero(&vmreg, sizeof(vmreg));
582366f6083SPeter Grehan 	vmreg.cpuid = vcpu;
583366f6083SPeter Grehan 	vmreg.regnum = reg;
584366f6083SPeter Grehan 
585366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_GET_REGISTER, &vmreg);
586366f6083SPeter Grehan 	*ret_val = vmreg.regval;
587366f6083SPeter Grehan 	return (error);
588366f6083SPeter Grehan }
589366f6083SPeter Grehan 
590366f6083SPeter Grehan int
5914f866698SJohn Baldwin vm_set_register_set(struct vmctx *ctx, int vcpu, unsigned int count,
5924f866698SJohn Baldwin     const int *regnums, uint64_t *regvals)
5934f866698SJohn Baldwin {
5944f866698SJohn Baldwin 	int error;
5954f866698SJohn Baldwin 	struct vm_register_set vmregset;
5964f866698SJohn Baldwin 
5974f866698SJohn Baldwin 	bzero(&vmregset, sizeof(vmregset));
5984f866698SJohn Baldwin 	vmregset.cpuid = vcpu;
5994f866698SJohn Baldwin 	vmregset.count = count;
6004f866698SJohn Baldwin 	vmregset.regnums = regnums;
6014f866698SJohn Baldwin 	vmregset.regvals = regvals;
6024f866698SJohn Baldwin 
6034f866698SJohn Baldwin 	error = ioctl(ctx->fd, VM_SET_REGISTER_SET, &vmregset);
6044f866698SJohn Baldwin 	return (error);
6054f866698SJohn Baldwin }
6064f866698SJohn Baldwin 
6074f866698SJohn Baldwin int
6084f866698SJohn Baldwin vm_get_register_set(struct vmctx *ctx, int vcpu, unsigned int count,
6094f866698SJohn Baldwin     const int *regnums, uint64_t *regvals)
6104f866698SJohn Baldwin {
6114f866698SJohn Baldwin 	int error;
6124f866698SJohn Baldwin 	struct vm_register_set vmregset;
6134f866698SJohn Baldwin 
6144f866698SJohn Baldwin 	bzero(&vmregset, sizeof(vmregset));
6154f866698SJohn Baldwin 	vmregset.cpuid = vcpu;
6164f866698SJohn Baldwin 	vmregset.count = count;
6174f866698SJohn Baldwin 	vmregset.regnums = regnums;
6184f866698SJohn Baldwin 	vmregset.regvals = regvals;
6194f866698SJohn Baldwin 
6204f866698SJohn Baldwin 	error = ioctl(ctx->fd, VM_GET_REGISTER_SET, &vmregset);
6214f866698SJohn Baldwin 	return (error);
6224f866698SJohn Baldwin }
6234f866698SJohn Baldwin 
6244f866698SJohn Baldwin int
625d087a399SNeel Natu vm_run(struct vmctx *ctx, int vcpu, struct vm_exit *vmexit)
626366f6083SPeter Grehan {
627366f6083SPeter Grehan 	int error;
628366f6083SPeter Grehan 	struct vm_run vmrun;
629366f6083SPeter Grehan 
630366f6083SPeter Grehan 	bzero(&vmrun, sizeof(vmrun));
631366f6083SPeter Grehan 	vmrun.cpuid = vcpu;
632366f6083SPeter Grehan 
633366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_RUN, &vmrun);
634366f6083SPeter Grehan 	bcopy(&vmrun.vm_exit, vmexit, sizeof(struct vm_exit));
635366f6083SPeter Grehan 	return (error);
636366f6083SPeter Grehan }
637366f6083SPeter Grehan 
638b15a09c0SNeel Natu int
639f0fdcfe2SNeel Natu vm_suspend(struct vmctx *ctx, enum vm_suspend_how how)
640b15a09c0SNeel Natu {
641f0fdcfe2SNeel Natu 	struct vm_suspend vmsuspend;
642b15a09c0SNeel Natu 
643f0fdcfe2SNeel Natu 	bzero(&vmsuspend, sizeof(vmsuspend));
644f0fdcfe2SNeel Natu 	vmsuspend.how = how;
645f0fdcfe2SNeel Natu 	return (ioctl(ctx->fd, VM_SUSPEND, &vmsuspend));
646b15a09c0SNeel Natu }
647b15a09c0SNeel Natu 
6485fcf252fSNeel Natu int
6495fcf252fSNeel Natu vm_reinit(struct vmctx *ctx)
6505fcf252fSNeel Natu {
6515fcf252fSNeel Natu 
6525fcf252fSNeel Natu 	return (ioctl(ctx->fd, VM_REINIT, 0));
6535fcf252fSNeel Natu }
6545fcf252fSNeel Natu 
655d087a399SNeel Natu int
656d087a399SNeel Natu vm_inject_exception(struct vmctx *ctx, int vcpu, int vector, int errcode_valid,
657d087a399SNeel Natu     uint32_t errcode, int restart_instruction)
658366f6083SPeter Grehan {
659dc506506SNeel Natu 	struct vm_exception exc;
660366f6083SPeter Grehan 
661dc506506SNeel Natu 	exc.cpuid = vcpu;
662dc506506SNeel Natu 	exc.vector = vector;
663d087a399SNeel Natu 	exc.error_code = errcode;
664d087a399SNeel Natu 	exc.error_code_valid = errcode_valid;
665d087a399SNeel Natu 	exc.restart_instruction = restart_instruction;
666366f6083SPeter Grehan 
667dc506506SNeel Natu 	return (ioctl(ctx->fd, VM_INJECT_EXCEPTION, &exc));
668366f6083SPeter Grehan }
669366f6083SPeter Grehan 
670366f6083SPeter Grehan int
67190d4b48fSNeel Natu vm_apicid2vcpu(struct vmctx *ctx, int apicid)
67290d4b48fSNeel Natu {
67390d4b48fSNeel Natu 	/*
67490d4b48fSNeel Natu 	 * The apic id associated with the 'vcpu' has the same numerical value
67590d4b48fSNeel Natu 	 * as the 'vcpu' itself.
67690d4b48fSNeel Natu 	 */
67790d4b48fSNeel Natu 	return (apicid);
67890d4b48fSNeel Natu }
67990d4b48fSNeel Natu 
68090d4b48fSNeel Natu int
681366f6083SPeter Grehan vm_lapic_irq(struct vmctx *ctx, int vcpu, int vector)
682366f6083SPeter Grehan {
683366f6083SPeter Grehan 	struct vm_lapic_irq vmirq;
684366f6083SPeter Grehan 
685366f6083SPeter Grehan 	bzero(&vmirq, sizeof(vmirq));
686366f6083SPeter Grehan 	vmirq.cpuid = vcpu;
687366f6083SPeter Grehan 	vmirq.vector = vector;
688366f6083SPeter Grehan 
689366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_LAPIC_IRQ, &vmirq));
690366f6083SPeter Grehan }
691366f6083SPeter Grehan 
692366f6083SPeter Grehan int
693330baf58SJohn Baldwin vm_lapic_local_irq(struct vmctx *ctx, int vcpu, int vector)
694330baf58SJohn Baldwin {
695330baf58SJohn Baldwin 	struct vm_lapic_irq vmirq;
696330baf58SJohn Baldwin 
697330baf58SJohn Baldwin 	bzero(&vmirq, sizeof(vmirq));
698330baf58SJohn Baldwin 	vmirq.cpuid = vcpu;
699330baf58SJohn Baldwin 	vmirq.vector = vector;
700330baf58SJohn Baldwin 
701330baf58SJohn Baldwin 	return (ioctl(ctx->fd, VM_LAPIC_LOCAL_IRQ, &vmirq));
702330baf58SJohn Baldwin }
703330baf58SJohn Baldwin 
704330baf58SJohn Baldwin int
7054f8be175SNeel Natu vm_lapic_msi(struct vmctx *ctx, uint64_t addr, uint64_t msg)
7064f8be175SNeel Natu {
7074f8be175SNeel Natu 	struct vm_lapic_msi vmmsi;
7084f8be175SNeel Natu 
7094f8be175SNeel Natu 	bzero(&vmmsi, sizeof(vmmsi));
7104f8be175SNeel Natu 	vmmsi.addr = addr;
7114f8be175SNeel Natu 	vmmsi.msg = msg;
7124f8be175SNeel Natu 
7134f8be175SNeel Natu 	return (ioctl(ctx->fd, VM_LAPIC_MSI, &vmmsi));
7144f8be175SNeel Natu }
7154f8be175SNeel Natu 
7164f8be175SNeel Natu int
717565bbb86SNeel Natu vm_ioapic_assert_irq(struct vmctx *ctx, int irq)
718565bbb86SNeel Natu {
719565bbb86SNeel Natu 	struct vm_ioapic_irq ioapic_irq;
720565bbb86SNeel Natu 
721565bbb86SNeel Natu 	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
722565bbb86SNeel Natu 	ioapic_irq.irq = irq;
723565bbb86SNeel Natu 
724565bbb86SNeel Natu 	return (ioctl(ctx->fd, VM_IOAPIC_ASSERT_IRQ, &ioapic_irq));
725565bbb86SNeel Natu }
726565bbb86SNeel Natu 
727565bbb86SNeel Natu int
728565bbb86SNeel Natu vm_ioapic_deassert_irq(struct vmctx *ctx, int irq)
729565bbb86SNeel Natu {
730565bbb86SNeel Natu 	struct vm_ioapic_irq ioapic_irq;
731565bbb86SNeel Natu 
732565bbb86SNeel Natu 	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
733565bbb86SNeel Natu 	ioapic_irq.irq = irq;
734565bbb86SNeel Natu 
735565bbb86SNeel Natu 	return (ioctl(ctx->fd, VM_IOAPIC_DEASSERT_IRQ, &ioapic_irq));
736565bbb86SNeel Natu }
737565bbb86SNeel Natu 
738565bbb86SNeel Natu int
739ac7304a7SNeel Natu vm_ioapic_pulse_irq(struct vmctx *ctx, int irq)
740ac7304a7SNeel Natu {
741ac7304a7SNeel Natu 	struct vm_ioapic_irq ioapic_irq;
742ac7304a7SNeel Natu 
743ac7304a7SNeel Natu 	bzero(&ioapic_irq, sizeof(struct vm_ioapic_irq));
744ac7304a7SNeel Natu 	ioapic_irq.irq = irq;
745ac7304a7SNeel Natu 
746ac7304a7SNeel Natu 	return (ioctl(ctx->fd, VM_IOAPIC_PULSE_IRQ, &ioapic_irq));
747ac7304a7SNeel Natu }
748ac7304a7SNeel Natu 
749ac7304a7SNeel Natu int
7503cbf3585SJohn Baldwin vm_ioapic_pincount(struct vmctx *ctx, int *pincount)
7513cbf3585SJohn Baldwin {
7523cbf3585SJohn Baldwin 
7533cbf3585SJohn Baldwin 	return (ioctl(ctx->fd, VM_IOAPIC_PINCOUNT, pincount));
7543cbf3585SJohn Baldwin }
7553cbf3585SJohn Baldwin 
7563cbf3585SJohn Baldwin int
757762fd208STycho Nightingale vm_isa_assert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
758762fd208STycho Nightingale {
759762fd208STycho Nightingale 	struct vm_isa_irq isa_irq;
760762fd208STycho Nightingale 
761762fd208STycho Nightingale 	bzero(&isa_irq, sizeof(struct vm_isa_irq));
762762fd208STycho Nightingale 	isa_irq.atpic_irq = atpic_irq;
763762fd208STycho Nightingale 	isa_irq.ioapic_irq = ioapic_irq;
764762fd208STycho Nightingale 
765762fd208STycho Nightingale 	return (ioctl(ctx->fd, VM_ISA_ASSERT_IRQ, &isa_irq));
766762fd208STycho Nightingale }
767762fd208STycho Nightingale 
768762fd208STycho Nightingale int
769762fd208STycho Nightingale vm_isa_deassert_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
770762fd208STycho Nightingale {
771762fd208STycho Nightingale 	struct vm_isa_irq isa_irq;
772762fd208STycho Nightingale 
773762fd208STycho Nightingale 	bzero(&isa_irq, sizeof(struct vm_isa_irq));
774762fd208STycho Nightingale 	isa_irq.atpic_irq = atpic_irq;
775762fd208STycho Nightingale 	isa_irq.ioapic_irq = ioapic_irq;
776762fd208STycho Nightingale 
777762fd208STycho Nightingale 	return (ioctl(ctx->fd, VM_ISA_DEASSERT_IRQ, &isa_irq));
778762fd208STycho Nightingale }
779762fd208STycho Nightingale 
780762fd208STycho Nightingale int
781762fd208STycho Nightingale vm_isa_pulse_irq(struct vmctx *ctx, int atpic_irq, int ioapic_irq)
782762fd208STycho Nightingale {
783762fd208STycho Nightingale 	struct vm_isa_irq isa_irq;
784b3e9732aSJohn Baldwin 
785762fd208STycho Nightingale 	bzero(&isa_irq, sizeof(struct vm_isa_irq));
786762fd208STycho Nightingale 	isa_irq.atpic_irq = atpic_irq;
787762fd208STycho Nightingale 	isa_irq.ioapic_irq = ioapic_irq;
788762fd208STycho Nightingale 
789762fd208STycho Nightingale 	return (ioctl(ctx->fd, VM_ISA_PULSE_IRQ, &isa_irq));
790762fd208STycho Nightingale }
791762fd208STycho Nightingale 
792762fd208STycho Nightingale int
793b3e9732aSJohn Baldwin vm_isa_set_irq_trigger(struct vmctx *ctx, int atpic_irq,
794b3e9732aSJohn Baldwin     enum vm_intr_trigger trigger)
795b3e9732aSJohn Baldwin {
796b3e9732aSJohn Baldwin 	struct vm_isa_irq_trigger isa_irq_trigger;
797b3e9732aSJohn Baldwin 
798b3e9732aSJohn Baldwin 	bzero(&isa_irq_trigger, sizeof(struct vm_isa_irq_trigger));
799b3e9732aSJohn Baldwin 	isa_irq_trigger.atpic_irq = atpic_irq;
800b3e9732aSJohn Baldwin 	isa_irq_trigger.trigger = trigger;
801b3e9732aSJohn Baldwin 
802b3e9732aSJohn Baldwin 	return (ioctl(ctx->fd, VM_ISA_SET_IRQ_TRIGGER, &isa_irq_trigger));
803b3e9732aSJohn Baldwin }
804b3e9732aSJohn Baldwin 
805b3e9732aSJohn Baldwin int
806366f6083SPeter Grehan vm_inject_nmi(struct vmctx *ctx, int vcpu)
807366f6083SPeter Grehan {
808366f6083SPeter Grehan 	struct vm_nmi vmnmi;
809366f6083SPeter Grehan 
810366f6083SPeter Grehan 	bzero(&vmnmi, sizeof(vmnmi));
811366f6083SPeter Grehan 	vmnmi.cpuid = vcpu;
812366f6083SPeter Grehan 
813366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_INJECT_NMI, &vmnmi));
814366f6083SPeter Grehan }
815366f6083SPeter Grehan 
816366f6083SPeter Grehan static struct {
817366f6083SPeter Grehan 	const char	*name;
818366f6083SPeter Grehan 	int		type;
819366f6083SPeter Grehan } capstrmap[] = {
820366f6083SPeter Grehan 	{ "hlt_exit",		VM_CAP_HALT_EXIT },
821366f6083SPeter Grehan 	{ "mtrap_exit",		VM_CAP_MTRAP_EXIT },
822366f6083SPeter Grehan 	{ "pause_exit",		VM_CAP_PAUSE_EXIT },
823366f6083SPeter Grehan 	{ "unrestricted_guest",	VM_CAP_UNRESTRICTED_GUEST },
82449cc03daSNeel Natu 	{ "enable_invpcid",	VM_CAP_ENABLE_INVPCID },
825366f6083SPeter Grehan 	{ 0 }
826366f6083SPeter Grehan };
827366f6083SPeter Grehan 
82813f4cf6cSNeel Natu int
82913f4cf6cSNeel Natu vm_capability_name2type(const char *capname)
83013f4cf6cSNeel Natu {
83113f4cf6cSNeel Natu 	int i;
83213f4cf6cSNeel Natu 
833366f6083SPeter Grehan 	for (i = 0; capstrmap[i].name != NULL && capname != NULL; i++) {
834366f6083SPeter Grehan 		if (strcmp(capstrmap[i].name, capname) == 0)
835366f6083SPeter Grehan 			return (capstrmap[i].type);
836366f6083SPeter Grehan 	}
837366f6083SPeter Grehan 
838366f6083SPeter Grehan 	return (-1);
839366f6083SPeter Grehan }
840366f6083SPeter Grehan 
84113f4cf6cSNeel Natu const char *
84213f4cf6cSNeel Natu vm_capability_type2name(int type)
84313f4cf6cSNeel Natu {
84413f4cf6cSNeel Natu 	int i;
84513f4cf6cSNeel Natu 
84613f4cf6cSNeel Natu 	for (i = 0; capstrmap[i].name != NULL; i++) {
84713f4cf6cSNeel Natu 		if (capstrmap[i].type == type)
84813f4cf6cSNeel Natu 			return (capstrmap[i].name);
84913f4cf6cSNeel Natu 	}
85013f4cf6cSNeel Natu 
85113f4cf6cSNeel Natu 	return (NULL);
85213f4cf6cSNeel Natu }
85313f4cf6cSNeel Natu 
854366f6083SPeter Grehan int
855366f6083SPeter Grehan vm_get_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap,
856366f6083SPeter Grehan 		  int *retval)
857366f6083SPeter Grehan {
858366f6083SPeter Grehan 	int error;
859366f6083SPeter Grehan 	struct vm_capability vmcap;
860366f6083SPeter Grehan 
861366f6083SPeter Grehan 	bzero(&vmcap, sizeof(vmcap));
862366f6083SPeter Grehan 	vmcap.cpuid = vcpu;
863366f6083SPeter Grehan 	vmcap.captype = cap;
864366f6083SPeter Grehan 
865366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_GET_CAPABILITY, &vmcap);
866366f6083SPeter Grehan 	*retval = vmcap.capval;
867366f6083SPeter Grehan 	return (error);
868366f6083SPeter Grehan }
869366f6083SPeter Grehan 
870366f6083SPeter Grehan int
871366f6083SPeter Grehan vm_set_capability(struct vmctx *ctx, int vcpu, enum vm_cap_type cap, int val)
872366f6083SPeter Grehan {
873366f6083SPeter Grehan 	struct vm_capability vmcap;
874366f6083SPeter Grehan 
875366f6083SPeter Grehan 	bzero(&vmcap, sizeof(vmcap));
876366f6083SPeter Grehan 	vmcap.cpuid = vcpu;
877366f6083SPeter Grehan 	vmcap.captype = cap;
878366f6083SPeter Grehan 	vmcap.capval = val;
879366f6083SPeter Grehan 
880366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_SET_CAPABILITY, &vmcap));
881366f6083SPeter Grehan }
882366f6083SPeter Grehan 
883366f6083SPeter Grehan int
884366f6083SPeter Grehan vm_assign_pptdev(struct vmctx *ctx, int bus, int slot, int func)
885366f6083SPeter Grehan {
886366f6083SPeter Grehan 	struct vm_pptdev pptdev;
887366f6083SPeter Grehan 
888366f6083SPeter Grehan 	bzero(&pptdev, sizeof(pptdev));
889366f6083SPeter Grehan 	pptdev.bus = bus;
890366f6083SPeter Grehan 	pptdev.slot = slot;
891366f6083SPeter Grehan 	pptdev.func = func;
892366f6083SPeter Grehan 
893366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_BIND_PPTDEV, &pptdev));
894366f6083SPeter Grehan }
895366f6083SPeter Grehan 
896366f6083SPeter Grehan int
897366f6083SPeter Grehan vm_unassign_pptdev(struct vmctx *ctx, int bus, int slot, int func)
898366f6083SPeter Grehan {
899366f6083SPeter Grehan 	struct vm_pptdev pptdev;
900366f6083SPeter Grehan 
901366f6083SPeter Grehan 	bzero(&pptdev, sizeof(pptdev));
902366f6083SPeter Grehan 	pptdev.bus = bus;
903366f6083SPeter Grehan 	pptdev.slot = slot;
904366f6083SPeter Grehan 	pptdev.func = func;
905366f6083SPeter Grehan 
906366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_UNBIND_PPTDEV, &pptdev));
907366f6083SPeter Grehan }
908366f6083SPeter Grehan 
909366f6083SPeter Grehan int
910366f6083SPeter Grehan vm_map_pptdev_mmio(struct vmctx *ctx, int bus, int slot, int func,
911366f6083SPeter Grehan 		   vm_paddr_t gpa, size_t len, vm_paddr_t hpa)
912366f6083SPeter Grehan {
913366f6083SPeter Grehan 	struct vm_pptdev_mmio pptmmio;
914366f6083SPeter Grehan 
915366f6083SPeter Grehan 	bzero(&pptmmio, sizeof(pptmmio));
916366f6083SPeter Grehan 	pptmmio.bus = bus;
917366f6083SPeter Grehan 	pptmmio.slot = slot;
918366f6083SPeter Grehan 	pptmmio.func = func;
919366f6083SPeter Grehan 	pptmmio.gpa = gpa;
920366f6083SPeter Grehan 	pptmmio.len = len;
921366f6083SPeter Grehan 	pptmmio.hpa = hpa;
922366f6083SPeter Grehan 
923366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_MAP_PPTDEV_MMIO, &pptmmio));
924366f6083SPeter Grehan }
925366f6083SPeter Grehan 
926366f6083SPeter Grehan int
92755888cfaSNeel Natu vm_setup_pptdev_msi(struct vmctx *ctx, int vcpu, int bus, int slot, int func,
9284f8be175SNeel Natu     uint64_t addr, uint64_t msg, int numvec)
929366f6083SPeter Grehan {
930366f6083SPeter Grehan 	struct vm_pptdev_msi pptmsi;
931366f6083SPeter Grehan 
932366f6083SPeter Grehan 	bzero(&pptmsi, sizeof(pptmsi));
933366f6083SPeter Grehan 	pptmsi.vcpu = vcpu;
934366f6083SPeter Grehan 	pptmsi.bus = bus;
935366f6083SPeter Grehan 	pptmsi.slot = slot;
936366f6083SPeter Grehan 	pptmsi.func = func;
9374f8be175SNeel Natu 	pptmsi.msg = msg;
9384f8be175SNeel Natu 	pptmsi.addr = addr;
939366f6083SPeter Grehan 	pptmsi.numvec = numvec;
940366f6083SPeter Grehan 
941366f6083SPeter Grehan 	return (ioctl(ctx->fd, VM_PPTDEV_MSI, &pptmsi));
942366f6083SPeter Grehan }
943366f6083SPeter Grehan 
944cd942e0fSPeter Grehan int
94555888cfaSNeel Natu vm_setup_pptdev_msix(struct vmctx *ctx, int vcpu, int bus, int slot, int func,
9464f8be175SNeel Natu     int idx, uint64_t addr, uint64_t msg, uint32_t vector_control)
947cd942e0fSPeter Grehan {
948cd942e0fSPeter Grehan 	struct vm_pptdev_msix pptmsix;
949cd942e0fSPeter Grehan 
950cd942e0fSPeter Grehan 	bzero(&pptmsix, sizeof(pptmsix));
951cd942e0fSPeter Grehan 	pptmsix.vcpu = vcpu;
952cd942e0fSPeter Grehan 	pptmsix.bus = bus;
953cd942e0fSPeter Grehan 	pptmsix.slot = slot;
954cd942e0fSPeter Grehan 	pptmsix.func = func;
955cd942e0fSPeter Grehan 	pptmsix.idx = idx;
956cd942e0fSPeter Grehan 	pptmsix.msg = msg;
957cd942e0fSPeter Grehan 	pptmsix.addr = addr;
958cd942e0fSPeter Grehan 	pptmsix.vector_control = vector_control;
959cd942e0fSPeter Grehan 
960cd942e0fSPeter Grehan 	return ioctl(ctx->fd, VM_PPTDEV_MSIX, &pptmsix);
961cd942e0fSPeter Grehan }
962cd942e0fSPeter Grehan 
963366f6083SPeter Grehan uint64_t *
964366f6083SPeter Grehan vm_get_stats(struct vmctx *ctx, int vcpu, struct timeval *ret_tv,
965366f6083SPeter Grehan 	     int *ret_entries)
966366f6083SPeter Grehan {
967366f6083SPeter Grehan 	int error;
968366f6083SPeter Grehan 
969366f6083SPeter Grehan 	static struct vm_stats vmstats;
970366f6083SPeter Grehan 
971366f6083SPeter Grehan 	vmstats.cpuid = vcpu;
972366f6083SPeter Grehan 
973366f6083SPeter Grehan 	error = ioctl(ctx->fd, VM_STATS, &vmstats);
974366f6083SPeter Grehan 	if (error == 0) {
975366f6083SPeter Grehan 		if (ret_entries)
976366f6083SPeter Grehan 			*ret_entries = vmstats.num_entries;
977366f6083SPeter Grehan 		if (ret_tv)
978366f6083SPeter Grehan 			*ret_tv = vmstats.tv;
979366f6083SPeter Grehan 		return (vmstats.statbuf);
980366f6083SPeter Grehan 	} else
981366f6083SPeter Grehan 		return (NULL);
982366f6083SPeter Grehan }
983366f6083SPeter Grehan 
984366f6083SPeter Grehan const char *
985366f6083SPeter Grehan vm_get_stat_desc(struct vmctx *ctx, int index)
986366f6083SPeter Grehan {
987366f6083SPeter Grehan 	static struct vm_stat_desc statdesc;
988366f6083SPeter Grehan 
989366f6083SPeter Grehan 	statdesc.index = index;
990366f6083SPeter Grehan 	if (ioctl(ctx->fd, VM_STAT_DESC, &statdesc) == 0)
991366f6083SPeter Grehan 		return (statdesc.desc);
992366f6083SPeter Grehan 	else
993366f6083SPeter Grehan 		return (NULL);
994366f6083SPeter Grehan }
995366f6083SPeter Grehan 
996e9027382SNeel Natu int
997e9027382SNeel Natu vm_get_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state *state)
998e9027382SNeel Natu {
999e9027382SNeel Natu 	int error;
1000e9027382SNeel Natu 	struct vm_x2apic x2apic;
1001e9027382SNeel Natu 
1002e9027382SNeel Natu 	bzero(&x2apic, sizeof(x2apic));
1003e9027382SNeel Natu 	x2apic.cpuid = vcpu;
1004e9027382SNeel Natu 
1005e9027382SNeel Natu 	error = ioctl(ctx->fd, VM_GET_X2APIC_STATE, &x2apic);
1006e9027382SNeel Natu 	*state = x2apic.state;
1007e9027382SNeel Natu 	return (error);
1008e9027382SNeel Natu }
1009e9027382SNeel Natu 
1010e9027382SNeel Natu int
1011e9027382SNeel Natu vm_set_x2apic_state(struct vmctx *ctx, int vcpu, enum x2apic_state state)
1012e9027382SNeel Natu {
1013e9027382SNeel Natu 	int error;
1014e9027382SNeel Natu 	struct vm_x2apic x2apic;
1015e9027382SNeel Natu 
1016e9027382SNeel Natu 	bzero(&x2apic, sizeof(x2apic));
1017e9027382SNeel Natu 	x2apic.cpuid = vcpu;
1018e9027382SNeel Natu 	x2apic.state = state;
1019e9027382SNeel Natu 
1020e9027382SNeel Natu 	error = ioctl(ctx->fd, VM_SET_X2APIC_STATE, &x2apic);
1021e9027382SNeel Natu 
1022e9027382SNeel Natu 	return (error);
1023e9027382SNeel Natu }
1024e9027382SNeel Natu 
1025366f6083SPeter Grehan /*
1026366f6083SPeter Grehan  * From Intel Vol 3a:
1027366f6083SPeter Grehan  * Table 9-1. IA-32 Processor States Following Power-up, Reset or INIT
1028366f6083SPeter Grehan  */
1029366f6083SPeter Grehan int
1030366f6083SPeter Grehan vcpu_reset(struct vmctx *vmctx, int vcpu)
1031366f6083SPeter Grehan {
1032366f6083SPeter Grehan 	int error;
1033366f6083SPeter Grehan 	uint64_t rflags, rip, cr0, cr4, zero, desc_base, rdx;
1034366f6083SPeter Grehan 	uint32_t desc_access, desc_limit;
1035366f6083SPeter Grehan 	uint16_t sel;
1036366f6083SPeter Grehan 
1037366f6083SPeter Grehan 	zero = 0;
1038366f6083SPeter Grehan 
1039366f6083SPeter Grehan 	rflags = 0x2;
1040366f6083SPeter Grehan 	error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RFLAGS, rflags);
1041366f6083SPeter Grehan 	if (error)
1042366f6083SPeter Grehan 		goto done;
1043366f6083SPeter Grehan 
1044366f6083SPeter Grehan 	rip = 0xfff0;
1045366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RIP, rip)) != 0)
1046366f6083SPeter Grehan 		goto done;
1047366f6083SPeter Grehan 
1048366f6083SPeter Grehan 	cr0 = CR0_NE;
1049366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR0, cr0)) != 0)
1050366f6083SPeter Grehan 		goto done;
1051366f6083SPeter Grehan 
1052366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR3, zero)) != 0)
1053366f6083SPeter Grehan 		goto done;
1054366f6083SPeter Grehan 
105532c96bc8SNeel Natu 	cr4 = 0;
1056366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CR4, cr4)) != 0)
1057366f6083SPeter Grehan 		goto done;
1058366f6083SPeter Grehan 
1059366f6083SPeter Grehan 	/*
1060366f6083SPeter Grehan 	 * CS: present, r/w, accessed, 16-bit, byte granularity, usable
1061366f6083SPeter Grehan 	 */
1062366f6083SPeter Grehan 	desc_base = 0xffff0000;
1063366f6083SPeter Grehan 	desc_limit = 0xffff;
1064366f6083SPeter Grehan 	desc_access = 0x0093;
1065366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_CS,
1066366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1067366f6083SPeter Grehan 	if (error)
1068366f6083SPeter Grehan 		goto done;
1069366f6083SPeter Grehan 
1070366f6083SPeter Grehan 	sel = 0xf000;
1071366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_CS, sel)) != 0)
1072366f6083SPeter Grehan 		goto done;
1073366f6083SPeter Grehan 
1074366f6083SPeter Grehan 	/*
1075366f6083SPeter Grehan 	 * SS,DS,ES,FS,GS: present, r/w, accessed, 16-bit, byte granularity
1076366f6083SPeter Grehan 	 */
1077366f6083SPeter Grehan 	desc_base = 0;
1078366f6083SPeter Grehan 	desc_limit = 0xffff;
1079366f6083SPeter Grehan 	desc_access = 0x0093;
1080366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_SS,
1081366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1082366f6083SPeter Grehan 	if (error)
1083366f6083SPeter Grehan 		goto done;
1084366f6083SPeter Grehan 
1085366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_DS,
1086366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1087366f6083SPeter Grehan 	if (error)
1088366f6083SPeter Grehan 		goto done;
1089366f6083SPeter Grehan 
1090366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_ES,
1091366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1092366f6083SPeter Grehan 	if (error)
1093366f6083SPeter Grehan 		goto done;
1094366f6083SPeter Grehan 
1095366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_FS,
1096366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1097366f6083SPeter Grehan 	if (error)
1098366f6083SPeter Grehan 		goto done;
1099366f6083SPeter Grehan 
1100366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_GS,
1101366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1102366f6083SPeter Grehan 	if (error)
1103366f6083SPeter Grehan 		goto done;
1104366f6083SPeter Grehan 
1105366f6083SPeter Grehan 	sel = 0;
1106366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_SS, sel)) != 0)
1107366f6083SPeter Grehan 		goto done;
1108366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_DS, sel)) != 0)
1109366f6083SPeter Grehan 		goto done;
1110366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_ES, sel)) != 0)
1111366f6083SPeter Grehan 		goto done;
1112366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_FS, sel)) != 0)
1113366f6083SPeter Grehan 		goto done;
1114366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_GS, sel)) != 0)
1115366f6083SPeter Grehan 		goto done;
1116366f6083SPeter Grehan 
1117366f6083SPeter Grehan 	/* General purpose registers */
1118366f6083SPeter Grehan 	rdx = 0xf00;
1119366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RAX, zero)) != 0)
1120366f6083SPeter Grehan 		goto done;
1121366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RBX, zero)) != 0)
1122366f6083SPeter Grehan 		goto done;
1123366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RCX, zero)) != 0)
1124366f6083SPeter Grehan 		goto done;
1125366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RDX, rdx)) != 0)
1126366f6083SPeter Grehan 		goto done;
1127366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RSI, zero)) != 0)
1128366f6083SPeter Grehan 		goto done;
1129366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RDI, zero)) != 0)
1130366f6083SPeter Grehan 		goto done;
1131366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RBP, zero)) != 0)
1132366f6083SPeter Grehan 		goto done;
1133366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_RSP, zero)) != 0)
1134366f6083SPeter Grehan 		goto done;
1135366f6083SPeter Grehan 
1136366f6083SPeter Grehan 	/* GDTR, IDTR */
1137366f6083SPeter Grehan 	desc_base = 0;
1138366f6083SPeter Grehan 	desc_limit = 0xffff;
1139366f6083SPeter Grehan 	desc_access = 0;
1140366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_GDTR,
1141366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1142366f6083SPeter Grehan 	if (error != 0)
1143366f6083SPeter Grehan 		goto done;
1144366f6083SPeter Grehan 
1145366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_IDTR,
1146366f6083SPeter Grehan 			    desc_base, desc_limit, desc_access);
1147366f6083SPeter Grehan 	if (error != 0)
1148366f6083SPeter Grehan 		goto done;
1149366f6083SPeter Grehan 
1150366f6083SPeter Grehan 	/* TR */
1151366f6083SPeter Grehan 	desc_base = 0;
1152366f6083SPeter Grehan 	desc_limit = 0xffff;
1153366f6083SPeter Grehan 	desc_access = 0x0000008b;
1154366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_TR, 0, 0, desc_access);
1155366f6083SPeter Grehan 	if (error)
1156366f6083SPeter Grehan 		goto done;
1157366f6083SPeter Grehan 
1158366f6083SPeter Grehan 	sel = 0;
1159366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_TR, sel)) != 0)
1160366f6083SPeter Grehan 		goto done;
1161366f6083SPeter Grehan 
1162366f6083SPeter Grehan 	/* LDTR */
1163366f6083SPeter Grehan 	desc_base = 0;
1164366f6083SPeter Grehan 	desc_limit = 0xffff;
1165366f6083SPeter Grehan 	desc_access = 0x00000082;
1166366f6083SPeter Grehan 	error = vm_set_desc(vmctx, vcpu, VM_REG_GUEST_LDTR, desc_base,
1167366f6083SPeter Grehan 			    desc_limit, desc_access);
1168366f6083SPeter Grehan 	if (error)
1169366f6083SPeter Grehan 		goto done;
1170366f6083SPeter Grehan 
1171366f6083SPeter Grehan 	sel = 0;
1172366f6083SPeter Grehan 	if ((error = vm_set_register(vmctx, vcpu, VM_REG_GUEST_LDTR, 0)) != 0)
1173366f6083SPeter Grehan 		goto done;
1174366f6083SPeter Grehan 
1175366f6083SPeter Grehan 	/* XXX cr2, debug registers */
1176366f6083SPeter Grehan 
1177366f6083SPeter Grehan 	error = 0;
1178366f6083SPeter Grehan done:
1179366f6083SPeter Grehan 	return (error);
1180366f6083SPeter Grehan }
1181318224bbSNeel Natu 
1182318224bbSNeel Natu int
1183318224bbSNeel Natu vm_get_gpa_pmap(struct vmctx *ctx, uint64_t gpa, uint64_t *pte, int *num)
1184318224bbSNeel Natu {
1185318224bbSNeel Natu 	int error, i;
1186318224bbSNeel Natu 	struct vm_gpa_pte gpapte;
1187318224bbSNeel Natu 
1188318224bbSNeel Natu 	bzero(&gpapte, sizeof(gpapte));
1189318224bbSNeel Natu 	gpapte.gpa = gpa;
1190318224bbSNeel Natu 
1191318224bbSNeel Natu 	error = ioctl(ctx->fd, VM_GET_GPA_PMAP, &gpapte);
1192318224bbSNeel Natu 
1193318224bbSNeel Natu 	if (error == 0) {
1194318224bbSNeel Natu 		*num = gpapte.ptenum;
1195318224bbSNeel Natu 		for (i = 0; i < gpapte.ptenum; i++)
1196318224bbSNeel Natu 			pte[i] = gpapte.pte[i];
1197318224bbSNeel Natu 	}
1198318224bbSNeel Natu 
1199318224bbSNeel Natu 	return (error);
1200318224bbSNeel Natu }
120108e3ff32SNeel Natu 
120208e3ff32SNeel Natu int
120308e3ff32SNeel Natu vm_get_hpet_capabilities(struct vmctx *ctx, uint32_t *capabilities)
120408e3ff32SNeel Natu {
120508e3ff32SNeel Natu 	int error;
120608e3ff32SNeel Natu 	struct vm_hpet_cap cap;
120708e3ff32SNeel Natu 
120808e3ff32SNeel Natu 	bzero(&cap, sizeof(struct vm_hpet_cap));
120908e3ff32SNeel Natu 	error = ioctl(ctx->fd, VM_GET_HPET_CAPABILITIES, &cap);
121008e3ff32SNeel Natu 	if (capabilities != NULL)
121108e3ff32SNeel Natu 		*capabilities = cap.capabilities;
121208e3ff32SNeel Natu 	return (error);
121308e3ff32SNeel Natu }
1214da11f4aaSNeel Natu 
12159c4d5478SNeel Natu int
12169c4d5478SNeel Natu vm_gla2gpa(struct vmctx *ctx, int vcpu, struct vm_guest_paging *paging,
12179c4d5478SNeel Natu     uint64_t gla, int prot, uint64_t *gpa, int *fault)
1218da11f4aaSNeel Natu {
1219da11f4aaSNeel Natu 	struct vm_gla2gpa gg;
1220da11f4aaSNeel Natu 	int error;
1221da11f4aaSNeel Natu 
1222da11f4aaSNeel Natu 	bzero(&gg, sizeof(struct vm_gla2gpa));
1223da11f4aaSNeel Natu 	gg.vcpuid = vcpu;
1224da11f4aaSNeel Natu 	gg.prot = prot;
1225da11f4aaSNeel Natu 	gg.gla = gla;
1226da11f4aaSNeel Natu 	gg.paging = *paging;
1227da11f4aaSNeel Natu 
1228da11f4aaSNeel Natu 	error = ioctl(ctx->fd, VM_GLA2GPA, &gg);
1229da11f4aaSNeel Natu 	if (error == 0) {
1230da11f4aaSNeel Natu 		*fault = gg.fault;
1231da11f4aaSNeel Natu 		*gpa = gg.gpa;
1232da11f4aaSNeel Natu 	}
1233da11f4aaSNeel Natu 	return (error);
1234da11f4aaSNeel Natu }
1235da11f4aaSNeel Natu 
12365f8754c0SJohn Baldwin int
12375f8754c0SJohn Baldwin vm_gla2gpa_nofault(struct vmctx *ctx, int vcpu, struct vm_guest_paging *paging,
12385f8754c0SJohn Baldwin     uint64_t gla, int prot, uint64_t *gpa, int *fault)
12395f8754c0SJohn Baldwin {
12405f8754c0SJohn Baldwin 	struct vm_gla2gpa gg;
12415f8754c0SJohn Baldwin 	int error;
12425f8754c0SJohn Baldwin 
12435f8754c0SJohn Baldwin 	bzero(&gg, sizeof(struct vm_gla2gpa));
12445f8754c0SJohn Baldwin 	gg.vcpuid = vcpu;
12455f8754c0SJohn Baldwin 	gg.prot = prot;
12465f8754c0SJohn Baldwin 	gg.gla = gla;
12475f8754c0SJohn Baldwin 	gg.paging = *paging;
12485f8754c0SJohn Baldwin 
12495f8754c0SJohn Baldwin 	error = ioctl(ctx->fd, VM_GLA2GPA_NOFAULT, &gg);
12505f8754c0SJohn Baldwin 	if (error == 0) {
12515f8754c0SJohn Baldwin 		*fault = gg.fault;
12525f8754c0SJohn Baldwin 		*gpa = gg.gpa;
12535f8754c0SJohn Baldwin 	}
12545f8754c0SJohn Baldwin 	return (error);
12555f8754c0SJohn Baldwin }
12565f8754c0SJohn Baldwin 
1257da11f4aaSNeel Natu #ifndef min
1258da11f4aaSNeel Natu #define	min(a,b)	(((a) < (b)) ? (a) : (b))
1259da11f4aaSNeel Natu #endif
1260da11f4aaSNeel Natu 
1261da11f4aaSNeel Natu int
1262d665d229SNeel Natu vm_copy_setup(struct vmctx *ctx, int vcpu, struct vm_guest_paging *paging,
12639c4d5478SNeel Natu     uint64_t gla, size_t len, int prot, struct iovec *iov, int iovcnt,
12649c4d5478SNeel Natu     int *fault)
1265da11f4aaSNeel Natu {
1266009e2acbSNeel Natu 	void *va;
1267da11f4aaSNeel Natu 	uint64_t gpa;
12689c4d5478SNeel Natu 	int error, i, n, off;
12696303b65dSNeel Natu 
12706303b65dSNeel Natu 	for (i = 0; i < iovcnt; i++) {
12716303b65dSNeel Natu 		iov[i].iov_base = 0;
12726303b65dSNeel Natu 		iov[i].iov_len = 0;
12736303b65dSNeel Natu 	}
12746303b65dSNeel Natu 
12756303b65dSNeel Natu 	while (len) {
12766303b65dSNeel Natu 		assert(iovcnt > 0);
12779c4d5478SNeel Natu 		error = vm_gla2gpa(ctx, vcpu, paging, gla, prot, &gpa, fault);
12789c4d5478SNeel Natu 		if (error || *fault)
12799c4d5478SNeel Natu 			return (error);
12806303b65dSNeel Natu 
12816303b65dSNeel Natu 		off = gpa & PAGE_MASK;
12826303b65dSNeel Natu 		n = min(len, PAGE_SIZE - off);
12836303b65dSNeel Natu 
1284009e2acbSNeel Natu 		va = vm_map_gpa(ctx, gpa, n);
1285009e2acbSNeel Natu 		if (va == NULL)
12869c4d5478SNeel Natu 			return (EFAULT);
1287009e2acbSNeel Natu 
1288009e2acbSNeel Natu 		iov->iov_base = va;
12896303b65dSNeel Natu 		iov->iov_len = n;
12906303b65dSNeel Natu 		iov++;
12916303b65dSNeel Natu 		iovcnt--;
12926303b65dSNeel Natu 
12936303b65dSNeel Natu 		gla += n;
12946303b65dSNeel Natu 		len -= n;
12956303b65dSNeel Natu 	}
12966303b65dSNeel Natu 	return (0);
12976303b65dSNeel Natu }
12986303b65dSNeel Natu 
12996303b65dSNeel Natu void
1300009e2acbSNeel Natu vm_copy_teardown(struct vmctx *ctx, int vcpu, struct iovec *iov, int iovcnt)
1301009e2acbSNeel Natu {
1302009e2acbSNeel Natu 
1303009e2acbSNeel Natu 	return;
1304009e2acbSNeel Natu }
1305009e2acbSNeel Natu 
1306009e2acbSNeel Natu void
13076303b65dSNeel Natu vm_copyin(struct vmctx *ctx, int vcpu, struct iovec *iov, void *vp, size_t len)
13086303b65dSNeel Natu {
13096303b65dSNeel Natu 	const char *src;
13106303b65dSNeel Natu 	char *dst;
13116303b65dSNeel Natu 	size_t n;
1312da11f4aaSNeel Natu 
1313da11f4aaSNeel Natu 	dst = vp;
1314da11f4aaSNeel Natu 	while (len) {
13156303b65dSNeel Natu 		assert(iov->iov_len);
13166303b65dSNeel Natu 		n = min(len, iov->iov_len);
1317009e2acbSNeel Natu 		src = iov->iov_base;
1318da11f4aaSNeel Natu 		bcopy(src, dst, n);
1319da11f4aaSNeel Natu 
13206303b65dSNeel Natu 		iov++;
1321da11f4aaSNeel Natu 		dst += n;
1322da11f4aaSNeel Natu 		len -= n;
1323da11f4aaSNeel Natu 	}
1324da11f4aaSNeel Natu }
1325da11f4aaSNeel Natu 
13266303b65dSNeel Natu void
13276303b65dSNeel Natu vm_copyout(struct vmctx *ctx, int vcpu, const void *vp, struct iovec *iov,
13286303b65dSNeel Natu     size_t len)
1329da11f4aaSNeel Natu {
1330da11f4aaSNeel Natu 	const char *src;
13316303b65dSNeel Natu 	char *dst;
13326303b65dSNeel Natu 	size_t n;
1333da11f4aaSNeel Natu 
1334da11f4aaSNeel Natu 	src = vp;
1335da11f4aaSNeel Natu 	while (len) {
13366303b65dSNeel Natu 		assert(iov->iov_len);
13376303b65dSNeel Natu 		n = min(len, iov->iov_len);
1338009e2acbSNeel Natu 		dst = iov->iov_base;
1339da11f4aaSNeel Natu 		bcopy(src, dst, n);
1340da11f4aaSNeel Natu 
13416303b65dSNeel Natu 		iov++;
1342da11f4aaSNeel Natu 		src += n;
1343da11f4aaSNeel Natu 		len -= n;
1344da11f4aaSNeel Natu 	}
1345da11f4aaSNeel Natu }
134695ebc360SNeel Natu 
134795ebc360SNeel Natu static int
134895ebc360SNeel Natu vm_get_cpus(struct vmctx *ctx, int which, cpuset_t *cpus)
134995ebc360SNeel Natu {
135095ebc360SNeel Natu 	struct vm_cpuset vm_cpuset;
135195ebc360SNeel Natu 	int error;
135295ebc360SNeel Natu 
135395ebc360SNeel Natu 	bzero(&vm_cpuset, sizeof(struct vm_cpuset));
135495ebc360SNeel Natu 	vm_cpuset.which = which;
135595ebc360SNeel Natu 	vm_cpuset.cpusetsize = sizeof(cpuset_t);
135695ebc360SNeel Natu 	vm_cpuset.cpus = cpus;
135795ebc360SNeel Natu 
135895ebc360SNeel Natu 	error = ioctl(ctx->fd, VM_GET_CPUS, &vm_cpuset);
135995ebc360SNeel Natu 	return (error);
136095ebc360SNeel Natu }
136195ebc360SNeel Natu 
136295ebc360SNeel Natu int
136395ebc360SNeel Natu vm_active_cpus(struct vmctx *ctx, cpuset_t *cpus)
136495ebc360SNeel Natu {
136595ebc360SNeel Natu 
136695ebc360SNeel Natu 	return (vm_get_cpus(ctx, VM_ACTIVE_CPUS, cpus));
136795ebc360SNeel Natu }
136895ebc360SNeel Natu 
136995ebc360SNeel Natu int
137095ebc360SNeel Natu vm_suspended_cpus(struct vmctx *ctx, cpuset_t *cpus)
137195ebc360SNeel Natu {
137295ebc360SNeel Natu 
137395ebc360SNeel Natu 	return (vm_get_cpus(ctx, VM_SUSPENDED_CPUS, cpus));
137495ebc360SNeel Natu }
137595ebc360SNeel Natu 
137695ebc360SNeel Natu int
1377fc276d92SJohn Baldwin vm_debug_cpus(struct vmctx *ctx, cpuset_t *cpus)
1378fc276d92SJohn Baldwin {
1379fc276d92SJohn Baldwin 
1380fc276d92SJohn Baldwin 	return (vm_get_cpus(ctx, VM_DEBUG_CPUS, cpus));
1381fc276d92SJohn Baldwin }
1382fc276d92SJohn Baldwin 
1383fc276d92SJohn Baldwin int
138495ebc360SNeel Natu vm_activate_cpu(struct vmctx *ctx, int vcpu)
138595ebc360SNeel Natu {
138695ebc360SNeel Natu 	struct vm_activate_cpu ac;
138795ebc360SNeel Natu 	int error;
138895ebc360SNeel Natu 
138995ebc360SNeel Natu 	bzero(&ac, sizeof(struct vm_activate_cpu));
139095ebc360SNeel Natu 	ac.vcpuid = vcpu;
139195ebc360SNeel Natu 	error = ioctl(ctx->fd, VM_ACTIVATE_CPU, &ac);
139295ebc360SNeel Natu 	return (error);
139395ebc360SNeel Natu }
1394091d4532SNeel Natu 
1395091d4532SNeel Natu int
1396fc276d92SJohn Baldwin vm_suspend_cpu(struct vmctx *ctx, int vcpu)
1397fc276d92SJohn Baldwin {
1398fc276d92SJohn Baldwin 	struct vm_activate_cpu ac;
1399fc276d92SJohn Baldwin 	int error;
1400fc276d92SJohn Baldwin 
1401fc276d92SJohn Baldwin 	bzero(&ac, sizeof(struct vm_activate_cpu));
1402fc276d92SJohn Baldwin 	ac.vcpuid = vcpu;
1403fc276d92SJohn Baldwin 	error = ioctl(ctx->fd, VM_SUSPEND_CPU, &ac);
1404fc276d92SJohn Baldwin 	return (error);
1405fc276d92SJohn Baldwin }
1406fc276d92SJohn Baldwin 
1407fc276d92SJohn Baldwin int
1408fc276d92SJohn Baldwin vm_resume_cpu(struct vmctx *ctx, int vcpu)
1409fc276d92SJohn Baldwin {
1410fc276d92SJohn Baldwin 	struct vm_activate_cpu ac;
1411fc276d92SJohn Baldwin 	int error;
1412fc276d92SJohn Baldwin 
1413fc276d92SJohn Baldwin 	bzero(&ac, sizeof(struct vm_activate_cpu));
1414fc276d92SJohn Baldwin 	ac.vcpuid = vcpu;
1415fc276d92SJohn Baldwin 	error = ioctl(ctx->fd, VM_RESUME_CPU, &ac);
1416fc276d92SJohn Baldwin 	return (error);
1417fc276d92SJohn Baldwin }
1418fc276d92SJohn Baldwin 
1419fc276d92SJohn Baldwin int
1420091d4532SNeel Natu vm_get_intinfo(struct vmctx *ctx, int vcpu, uint64_t *info1, uint64_t *info2)
1421091d4532SNeel Natu {
1422091d4532SNeel Natu 	struct vm_intinfo vmii;
1423091d4532SNeel Natu 	int error;
1424091d4532SNeel Natu 
1425091d4532SNeel Natu 	bzero(&vmii, sizeof(struct vm_intinfo));
1426091d4532SNeel Natu 	vmii.vcpuid = vcpu;
1427091d4532SNeel Natu 	error = ioctl(ctx->fd, VM_GET_INTINFO, &vmii);
1428091d4532SNeel Natu 	if (error == 0) {
1429091d4532SNeel Natu 		*info1 = vmii.info1;
1430091d4532SNeel Natu 		*info2 = vmii.info2;
1431091d4532SNeel Natu 	}
1432091d4532SNeel Natu 	return (error);
1433091d4532SNeel Natu }
1434091d4532SNeel Natu 
1435091d4532SNeel Natu int
1436091d4532SNeel Natu vm_set_intinfo(struct vmctx *ctx, int vcpu, uint64_t info1)
1437091d4532SNeel Natu {
1438091d4532SNeel Natu 	struct vm_intinfo vmii;
1439091d4532SNeel Natu 	int error;
1440091d4532SNeel Natu 
1441091d4532SNeel Natu 	bzero(&vmii, sizeof(struct vm_intinfo));
1442091d4532SNeel Natu 	vmii.vcpuid = vcpu;
1443091d4532SNeel Natu 	vmii.info1 = info1;
1444091d4532SNeel Natu 	error = ioctl(ctx->fd, VM_SET_INTINFO, &vmii);
1445091d4532SNeel Natu 	return (error);
1446091d4532SNeel Natu }
14470dafa5cdSNeel Natu 
14480dafa5cdSNeel Natu int
14490dafa5cdSNeel Natu vm_rtc_write(struct vmctx *ctx, int offset, uint8_t value)
14500dafa5cdSNeel Natu {
14510dafa5cdSNeel Natu 	struct vm_rtc_data rtcdata;
14520dafa5cdSNeel Natu 	int error;
14530dafa5cdSNeel Natu 
14540dafa5cdSNeel Natu 	bzero(&rtcdata, sizeof(struct vm_rtc_data));
14550dafa5cdSNeel Natu 	rtcdata.offset = offset;
14560dafa5cdSNeel Natu 	rtcdata.value = value;
14570dafa5cdSNeel Natu 	error = ioctl(ctx->fd, VM_RTC_WRITE, &rtcdata);
14580dafa5cdSNeel Natu 	return (error);
14590dafa5cdSNeel Natu }
14600dafa5cdSNeel Natu 
14610dafa5cdSNeel Natu int
14620dafa5cdSNeel Natu vm_rtc_read(struct vmctx *ctx, int offset, uint8_t *retval)
14630dafa5cdSNeel Natu {
14640dafa5cdSNeel Natu 	struct vm_rtc_data rtcdata;
14650dafa5cdSNeel Natu 	int error;
14660dafa5cdSNeel Natu 
14670dafa5cdSNeel Natu 	bzero(&rtcdata, sizeof(struct vm_rtc_data));
14680dafa5cdSNeel Natu 	rtcdata.offset = offset;
14690dafa5cdSNeel Natu 	error = ioctl(ctx->fd, VM_RTC_READ, &rtcdata);
14700dafa5cdSNeel Natu 	if (error == 0)
14710dafa5cdSNeel Natu 		*retval = rtcdata.value;
14720dafa5cdSNeel Natu 	return (error);
14730dafa5cdSNeel Natu }
14740dafa5cdSNeel Natu 
14750dafa5cdSNeel Natu int
14760dafa5cdSNeel Natu vm_rtc_settime(struct vmctx *ctx, time_t secs)
14770dafa5cdSNeel Natu {
14780dafa5cdSNeel Natu 	struct vm_rtc_time rtctime;
14790dafa5cdSNeel Natu 	int error;
14800dafa5cdSNeel Natu 
14810dafa5cdSNeel Natu 	bzero(&rtctime, sizeof(struct vm_rtc_time));
14820dafa5cdSNeel Natu 	rtctime.secs = secs;
14830dafa5cdSNeel Natu 	error = ioctl(ctx->fd, VM_RTC_SETTIME, &rtctime);
14840dafa5cdSNeel Natu 	return (error);
14850dafa5cdSNeel Natu }
14860dafa5cdSNeel Natu 
14870dafa5cdSNeel Natu int
14880dafa5cdSNeel Natu vm_rtc_gettime(struct vmctx *ctx, time_t *secs)
14890dafa5cdSNeel Natu {
14900dafa5cdSNeel Natu 	struct vm_rtc_time rtctime;
14910dafa5cdSNeel Natu 	int error;
14920dafa5cdSNeel Natu 
14930dafa5cdSNeel Natu 	bzero(&rtctime, sizeof(struct vm_rtc_time));
14940dafa5cdSNeel Natu 	error = ioctl(ctx->fd, VM_RTC_GETTIME, &rtctime);
14950dafa5cdSNeel Natu 	if (error == 0)
14960dafa5cdSNeel Natu 		*secs = rtctime.secs;
14970dafa5cdSNeel Natu 	return (error);
14980dafa5cdSNeel Natu }
1499d087a399SNeel Natu 
1500d087a399SNeel Natu int
1501d087a399SNeel Natu vm_restart_instruction(void *arg, int vcpu)
1502d087a399SNeel Natu {
1503d087a399SNeel Natu 	struct vmctx *ctx = arg;
1504d087a399SNeel Natu 
1505d087a399SNeel Natu 	return (ioctl(ctx->fd, VM_RESTART_INSTRUCTION, &vcpu));
1506d087a399SNeel Natu }
150700ef17beSBartek Rutkowski 
150800ef17beSBartek Rutkowski int
1509*01d822d3SRodney W. Grimes vm_set_topology(struct vmctx *ctx,
1510*01d822d3SRodney W. Grimes     uint16_t sockets, uint16_t cores, uint16_t threads, uint16_t maxcpus)
1511*01d822d3SRodney W. Grimes {
1512*01d822d3SRodney W. Grimes 	struct vm_cpu_topology topology;
1513*01d822d3SRodney W. Grimes 
1514*01d822d3SRodney W. Grimes 	bzero(&topology, sizeof (struct vm_cpu_topology));
1515*01d822d3SRodney W. Grimes 	topology.sockets = sockets;
1516*01d822d3SRodney W. Grimes 	topology.cores = cores;
1517*01d822d3SRodney W. Grimes 	topology.threads = threads;
1518*01d822d3SRodney W. Grimes 	topology.maxcpus = maxcpus;
1519*01d822d3SRodney W. Grimes 	return (ioctl(ctx->fd, VM_SET_TOPOLOGY, &topology));
1520*01d822d3SRodney W. Grimes }
1521*01d822d3SRodney W. Grimes 
1522*01d822d3SRodney W. Grimes int
1523*01d822d3SRodney W. Grimes vm_get_topology(struct vmctx *ctx,
1524*01d822d3SRodney W. Grimes     uint16_t *sockets, uint16_t *cores, uint16_t *threads, uint16_t *maxcpus)
1525*01d822d3SRodney W. Grimes {
1526*01d822d3SRodney W. Grimes 	struct vm_cpu_topology topology;
1527*01d822d3SRodney W. Grimes 	int error;
1528*01d822d3SRodney W. Grimes 
1529*01d822d3SRodney W. Grimes 	bzero(&topology, sizeof (struct vm_cpu_topology));
1530*01d822d3SRodney W. Grimes 	error = ioctl(ctx->fd, VM_GET_TOPOLOGY, &topology);
1531*01d822d3SRodney W. Grimes 	if (error == 0) {
1532*01d822d3SRodney W. Grimes 		*sockets = topology.sockets;
1533*01d822d3SRodney W. Grimes 		*cores = topology.cores;
1534*01d822d3SRodney W. Grimes 		*threads = topology.threads;
1535*01d822d3SRodney W. Grimes 		*maxcpus = topology.maxcpus;
1536*01d822d3SRodney W. Grimes 	}
1537*01d822d3SRodney W. Grimes 	return (error);
1538*01d822d3SRodney W. Grimes }
1539*01d822d3SRodney W. Grimes 
1540*01d822d3SRodney W. Grimes int
154100ef17beSBartek Rutkowski vm_get_device_fd(struct vmctx *ctx)
154200ef17beSBartek Rutkowski {
154300ef17beSBartek Rutkowski 
154400ef17beSBartek Rutkowski 	return (ctx->fd);
154500ef17beSBartek Rutkowski }
154600ef17beSBartek Rutkowski 
154700ef17beSBartek Rutkowski const cap_ioctl_t *
154800ef17beSBartek Rutkowski vm_get_ioctls(size_t *len)
154900ef17beSBartek Rutkowski {
155000ef17beSBartek Rutkowski 	cap_ioctl_t *cmds;
155100ef17beSBartek Rutkowski 	/* keep in sync with machine/vmm_dev.h */
155200ef17beSBartek Rutkowski 	static const cap_ioctl_t vm_ioctl_cmds[] = { VM_RUN, VM_SUSPEND, VM_REINIT,
155300ef17beSBartek Rutkowski 	    VM_ALLOC_MEMSEG, VM_GET_MEMSEG, VM_MMAP_MEMSEG, VM_MMAP_MEMSEG,
155400ef17beSBartek Rutkowski 	    VM_MMAP_GETNEXT, VM_SET_REGISTER, VM_GET_REGISTER,
155500ef17beSBartek Rutkowski 	    VM_SET_SEGMENT_DESCRIPTOR, VM_GET_SEGMENT_DESCRIPTOR,
15564f866698SJohn Baldwin 	    VM_SET_REGISTER_SET, VM_GET_REGISTER_SET,
155700ef17beSBartek Rutkowski 	    VM_INJECT_EXCEPTION, VM_LAPIC_IRQ, VM_LAPIC_LOCAL_IRQ,
155800ef17beSBartek Rutkowski 	    VM_LAPIC_MSI, VM_IOAPIC_ASSERT_IRQ, VM_IOAPIC_DEASSERT_IRQ,
155900ef17beSBartek Rutkowski 	    VM_IOAPIC_PULSE_IRQ, VM_IOAPIC_PINCOUNT, VM_ISA_ASSERT_IRQ,
156000ef17beSBartek Rutkowski 	    VM_ISA_DEASSERT_IRQ, VM_ISA_PULSE_IRQ, VM_ISA_SET_IRQ_TRIGGER,
156100ef17beSBartek Rutkowski 	    VM_SET_CAPABILITY, VM_GET_CAPABILITY, VM_BIND_PPTDEV,
156200ef17beSBartek Rutkowski 	    VM_UNBIND_PPTDEV, VM_MAP_PPTDEV_MMIO, VM_PPTDEV_MSI,
156300ef17beSBartek Rutkowski 	    VM_PPTDEV_MSIX, VM_INJECT_NMI, VM_STATS, VM_STAT_DESC,
156400ef17beSBartek Rutkowski 	    VM_SET_X2APIC_STATE, VM_GET_X2APIC_STATE,
156500ef17beSBartek Rutkowski 	    VM_GET_HPET_CAPABILITIES, VM_GET_GPA_PMAP, VM_GLA2GPA,
15665f8754c0SJohn Baldwin 	    VM_GLA2GPA_NOFAULT,
1567fc276d92SJohn Baldwin 	    VM_ACTIVATE_CPU, VM_GET_CPUS, VM_SUSPEND_CPU, VM_RESUME_CPU,
1568fc276d92SJohn Baldwin 	    VM_SET_INTINFO, VM_GET_INTINFO,
156900ef17beSBartek Rutkowski 	    VM_RTC_WRITE, VM_RTC_READ, VM_RTC_SETTIME, VM_RTC_GETTIME,
1570*01d822d3SRodney W. Grimes 	    VM_RESTART_INSTRUCTION, VM_SET_TOPOLOGY, VM_GET_TOPOLOGY };
157100ef17beSBartek Rutkowski 
157200ef17beSBartek Rutkowski 	if (len == NULL) {
157300ef17beSBartek Rutkowski 		cmds = malloc(sizeof(vm_ioctl_cmds));
157400ef17beSBartek Rutkowski 		if (cmds == NULL)
157500ef17beSBartek Rutkowski 			return (NULL);
157600ef17beSBartek Rutkowski 		bcopy(vm_ioctl_cmds, cmds, sizeof(vm_ioctl_cmds));
157700ef17beSBartek Rutkowski 		return (cmds);
157800ef17beSBartek Rutkowski 	}
157900ef17beSBartek Rutkowski 
158000ef17beSBartek Rutkowski 	*len = nitems(vm_ioctl_cmds);
158100ef17beSBartek Rutkowski 	return (NULL);
158200ef17beSBartek Rutkowski }
158300ef17beSBartek Rutkowski 
1584