xref: /freebsd/usr.sbin/bhyve/bhyverun.c (revision 0957b409)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2011 NetApp, Inc.
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY NETAPP, INC ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL NETAPP, INC OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  *
28  * $FreeBSD$
29  */
30 
31 #include <sys/cdefs.h>
32 __FBSDID("$FreeBSD$");
33 
34 #include <sys/types.h>
35 #ifndef WITHOUT_CAPSICUM
36 #include <sys/capsicum.h>
37 #endif
38 #include <sys/mman.h>
39 #include <sys/time.h>
40 
41 #include <amd64/vmm/intel/vmcs.h>
42 
43 #include <machine/atomic.h>
44 #include <machine/segments.h>
45 
46 #ifndef WITHOUT_CAPSICUM
47 #include <capsicum_helpers.h>
48 #endif
49 #include <stdio.h>
50 #include <stdlib.h>
51 #include <string.h>
52 #include <err.h>
53 #include <errno.h>
54 #include <libgen.h>
55 #include <unistd.h>
56 #include <assert.h>
57 #include <pthread.h>
58 #include <pthread_np.h>
59 #include <sysexits.h>
60 #include <stdbool.h>
61 #include <stdint.h>
62 
63 #include <machine/vmm.h>
64 #ifndef WITHOUT_CAPSICUM
65 #include <machine/vmm_dev.h>
66 #endif
67 #include <vmmapi.h>
68 
69 #include "bhyverun.h"
70 #include "acpi.h"
71 #include "atkbdc.h"
72 #include "inout.h"
73 #include "dbgport.h"
74 #include "fwctl.h"
75 #include "gdb.h"
76 #include "ioapic.h"
77 #include "mem.h"
78 #include "mevent.h"
79 #include "mptbl.h"
80 #include "pci_emul.h"
81 #include "pci_irq.h"
82 #include "pci_lpc.h"
83 #include "smbiostbl.h"
84 #include "xmsr.h"
85 #include "spinup_ap.h"
86 #include "rtc.h"
87 
88 #define GUEST_NIO_PORT		0x488	/* guest upcalls via i/o port */
89 
90 #define MB		(1024UL * 1024)
91 #define GB		(1024UL * MB)
92 
93 static const char * const vmx_exit_reason_desc[] = {
94 	[EXIT_REASON_EXCEPTION] = "Exception or non-maskable interrupt (NMI)",
95 	[EXIT_REASON_EXT_INTR] = "External interrupt",
96 	[EXIT_REASON_TRIPLE_FAULT] = "Triple fault",
97 	[EXIT_REASON_INIT] = "INIT signal",
98 	[EXIT_REASON_SIPI] = "Start-up IPI (SIPI)",
99 	[EXIT_REASON_IO_SMI] = "I/O system-management interrupt (SMI)",
100 	[EXIT_REASON_SMI] = "Other SMI",
101 	[EXIT_REASON_INTR_WINDOW] = "Interrupt window",
102 	[EXIT_REASON_NMI_WINDOW] = "NMI window",
103 	[EXIT_REASON_TASK_SWITCH] = "Task switch",
104 	[EXIT_REASON_CPUID] = "CPUID",
105 	[EXIT_REASON_GETSEC] = "GETSEC",
106 	[EXIT_REASON_HLT] = "HLT",
107 	[EXIT_REASON_INVD] = "INVD",
108 	[EXIT_REASON_INVLPG] = "INVLPG",
109 	[EXIT_REASON_RDPMC] = "RDPMC",
110 	[EXIT_REASON_RDTSC] = "RDTSC",
111 	[EXIT_REASON_RSM] = "RSM",
112 	[EXIT_REASON_VMCALL] = "VMCALL",
113 	[EXIT_REASON_VMCLEAR] = "VMCLEAR",
114 	[EXIT_REASON_VMLAUNCH] = "VMLAUNCH",
115 	[EXIT_REASON_VMPTRLD] = "VMPTRLD",
116 	[EXIT_REASON_VMPTRST] = "VMPTRST",
117 	[EXIT_REASON_VMREAD] = "VMREAD",
118 	[EXIT_REASON_VMRESUME] = "VMRESUME",
119 	[EXIT_REASON_VMWRITE] = "VMWRITE",
120 	[EXIT_REASON_VMXOFF] = "VMXOFF",
121 	[EXIT_REASON_VMXON] = "VMXON",
122 	[EXIT_REASON_CR_ACCESS] = "Control-register accesses",
123 	[EXIT_REASON_DR_ACCESS] = "MOV DR",
124 	[EXIT_REASON_INOUT] = "I/O instruction",
125 	[EXIT_REASON_RDMSR] = "RDMSR",
126 	[EXIT_REASON_WRMSR] = "WRMSR",
127 	[EXIT_REASON_INVAL_VMCS] =
128 	    "VM-entry failure due to invalid guest state",
129 	[EXIT_REASON_INVAL_MSR] = "VM-entry failure due to MSR loading",
130 	[EXIT_REASON_MWAIT] = "MWAIT",
131 	[EXIT_REASON_MTF] = "Monitor trap flag",
132 	[EXIT_REASON_MONITOR] = "MONITOR",
133 	[EXIT_REASON_PAUSE] = "PAUSE",
134 	[EXIT_REASON_MCE_DURING_ENTRY] =
135 	    "VM-entry failure due to machine-check event",
136 	[EXIT_REASON_TPR] = "TPR below threshold",
137 	[EXIT_REASON_APIC_ACCESS] = "APIC access",
138 	[EXIT_REASON_VIRTUALIZED_EOI] = "Virtualized EOI",
139 	[EXIT_REASON_GDTR_IDTR] = "Access to GDTR or IDTR",
140 	[EXIT_REASON_LDTR_TR] = "Access to LDTR or TR",
141 	[EXIT_REASON_EPT_FAULT] = "EPT violation",
142 	[EXIT_REASON_EPT_MISCONFIG] = "EPT misconfiguration",
143 	[EXIT_REASON_INVEPT] = "INVEPT",
144 	[EXIT_REASON_RDTSCP] = "RDTSCP",
145 	[EXIT_REASON_VMX_PREEMPT] = "VMX-preemption timer expired",
146 	[EXIT_REASON_INVVPID] = "INVVPID",
147 	[EXIT_REASON_WBINVD] = "WBINVD",
148 	[EXIT_REASON_XSETBV] = "XSETBV",
149 	[EXIT_REASON_APIC_WRITE] = "APIC write",
150 	[EXIT_REASON_RDRAND] = "RDRAND",
151 	[EXIT_REASON_INVPCID] = "INVPCID",
152 	[EXIT_REASON_VMFUNC] = "VMFUNC",
153 	[EXIT_REASON_ENCLS] = "ENCLS",
154 	[EXIT_REASON_RDSEED] = "RDSEED",
155 	[EXIT_REASON_PM_LOG_FULL] = "Page-modification log full",
156 	[EXIT_REASON_XSAVES] = "XSAVES",
157 	[EXIT_REASON_XRSTORS] = "XRSTORS"
158 };
159 
160 typedef int (*vmexit_handler_t)(struct vmctx *, struct vm_exit *, int *vcpu);
161 extern int vmexit_task_switch(struct vmctx *, struct vm_exit *, int *vcpu);
162 
163 char *vmname;
164 
165 int guest_ncpus;
166 uint16_t cores, maxcpus, sockets, threads;
167 
168 char *guest_uuid_str;
169 
170 static int guest_vmexit_on_hlt, guest_vmexit_on_pause;
171 static int virtio_msix = 1;
172 static int x2apic_mode = 0;	/* default is xAPIC */
173 
174 static int strictio;
175 static int strictmsr = 1;
176 
177 static int acpi;
178 
179 static char *progname;
180 static const int BSP = 0;
181 
182 static cpuset_t cpumask;
183 
184 static void vm_loop(struct vmctx *ctx, int vcpu, uint64_t rip);
185 
186 static struct vm_exit vmexit[VM_MAXCPU];
187 
188 struct bhyvestats {
189 	uint64_t	vmexit_bogus;
190 	uint64_t	vmexit_reqidle;
191 	uint64_t	vmexit_hlt;
192 	uint64_t	vmexit_pause;
193 	uint64_t	vmexit_mtrap;
194 	uint64_t	vmexit_inst_emul;
195 	uint64_t	cpu_switch_rotate;
196 	uint64_t	cpu_switch_direct;
197 } stats;
198 
199 struct mt_vmm_info {
200 	pthread_t	mt_thr;
201 	struct vmctx	*mt_ctx;
202 	int		mt_vcpu;
203 } mt_vmm_info[VM_MAXCPU];
204 
205 static cpuset_t *vcpumap[VM_MAXCPU] = { NULL };
206 
207 static void
208 usage(int code)
209 {
210 
211         fprintf(stderr,
212 		"Usage: %s [-abehuwxACHPSWY]\n"
213 		"       %*s [-c [[cpus=]numcpus][,sockets=n][,cores=n][,threads=n]]\n"
214 		"       %*s [-g <gdb port>] [-l <lpc>]\n"
215 		"       %*s [-m mem] [-p vcpu:hostcpu] [-s <pci>] [-U uuid] <vm>\n"
216 		"       -a: local apic is in xAPIC mode (deprecated)\n"
217 		"       -A: create ACPI tables\n"
218 		"       -c: number of cpus and/or topology specification\n"
219 		"       -C: include guest memory in core file\n"
220 		"       -e: exit on unhandled I/O access\n"
221 		"       -g: gdb port\n"
222 		"       -h: help\n"
223 		"       -H: vmexit from the guest on hlt\n"
224 		"       -l: LPC device configuration\n"
225 		"       -m: memory size in MB\n"
226 		"       -p: pin 'vcpu' to 'hostcpu'\n"
227 		"       -P: vmexit from the guest on pause\n"
228 		"       -s: <slot,driver,configinfo> PCI slot config\n"
229 		"       -S: guest memory cannot be swapped\n"
230 		"       -u: RTC keeps UTC time\n"
231 		"       -U: uuid\n"
232 		"       -w: ignore unimplemented MSRs\n"
233 		"       -W: force virtio to use single-vector MSI\n"
234 		"       -x: local apic is in x2APIC mode\n"
235 		"       -Y: disable MPtable generation\n",
236 		progname, (int)strlen(progname), "", (int)strlen(progname), "",
237 		(int)strlen(progname), "");
238 
239 	exit(code);
240 }
241 
242 /*
243  * XXX This parser is known to have the following issues:
244  * 1.  It accepts null key=value tokens ",,".
245  * 2.  It accepts whitespace after = and before value.
246  * 3.  Values out of range of INT are silently wrapped.
247  * 4.  It doesn't check non-final values.
248  * 5.  The apparently bogus limits of UINT16_MAX are for future expansion.
249  *
250  * The acceptance of a null specification ('-c ""') is by design to match the
251  * manual page syntax specification, this results in a topology of 1 vCPU.
252  */
253 static int
254 topology_parse(const char *opt)
255 {
256 	uint64_t ncpus;
257 	int c, chk, n, s, t, tmp;
258 	char *cp, *str;
259 	bool ns, scts;
260 
261 	c = 1, n = 1, s = 1, t = 1;
262 	ns = false, scts = false;
263 	str = strdup(opt);
264 	if (str == NULL)
265 		goto out;
266 
267 	while ((cp = strsep(&str, ",")) != NULL) {
268 		if (sscanf(cp, "%i%n", &tmp, &chk) == 1) {
269 			n = tmp;
270 			ns = true;
271 		} else if (sscanf(cp, "cpus=%i%n", &tmp, &chk) == 1) {
272 			n = tmp;
273 			ns = true;
274 		} else if (sscanf(cp, "sockets=%i%n", &tmp, &chk) == 1) {
275 			s = tmp;
276 			scts = true;
277 		} else if (sscanf(cp, "cores=%i%n", &tmp, &chk) == 1) {
278 			c = tmp;
279 			scts = true;
280 		} else if (sscanf(cp, "threads=%i%n", &tmp, &chk) == 1) {
281 			t = tmp;
282 			scts = true;
283 #ifdef notyet  /* Do not expose this until vmm.ko implements it */
284 		} else if (sscanf(cp, "maxcpus=%i%n", &tmp, &chk) == 1) {
285 			m = tmp;
286 #endif
287 		/* Skip the empty argument case from -c "" */
288 		} else if (cp[0] == '\0')
289 			continue;
290 		else
291 			goto out;
292 		/* Any trailing garbage causes an error */
293 		if (cp[chk] != '\0')
294 			goto out;
295 	}
296 	free(str);
297 	str = NULL;
298 
299 	/*
300 	 * Range check 1 <= n <= UINT16_MAX all values
301 	 */
302 	if (n < 1 || s < 1 || c < 1 || t < 1 ||
303 	    n > UINT16_MAX || s > UINT16_MAX || c > UINT16_MAX  ||
304 	    t > UINT16_MAX)
305 		return (-1);
306 
307 	/* If only the cpus was specified, use that as sockets */
308 	if (!scts)
309 		s = n;
310 	/*
311 	 * Compute sockets * cores * threads avoiding overflow
312 	 * The range check above insures these are 16 bit values
313 	 * If n was specified check it against computed ncpus
314 	 */
315 	ncpus = (uint64_t)s * c * t;
316 	if (ncpus > UINT16_MAX || (ns && n != ncpus))
317 		return (-1);
318 
319 	guest_ncpus = ncpus;
320 	sockets = s;
321 	cores = c;
322 	threads = t;
323 	return(0);
324 
325 out:
326 	free(str);
327 	return (-1);
328 }
329 
330 static int
331 pincpu_parse(const char *opt)
332 {
333 	int vcpu, pcpu;
334 
335 	if (sscanf(opt, "%d:%d", &vcpu, &pcpu) != 2) {
336 		fprintf(stderr, "invalid format: %s\n", opt);
337 		return (-1);
338 	}
339 
340 	if (vcpu < 0 || vcpu >= VM_MAXCPU) {
341 		fprintf(stderr, "vcpu '%d' outside valid range from 0 to %d\n",
342 		    vcpu, VM_MAXCPU - 1);
343 		return (-1);
344 	}
345 
346 	if (pcpu < 0 || pcpu >= CPU_SETSIZE) {
347 		fprintf(stderr, "hostcpu '%d' outside valid range from "
348 		    "0 to %d\n", pcpu, CPU_SETSIZE - 1);
349 		return (-1);
350 	}
351 
352 	if (vcpumap[vcpu] == NULL) {
353 		if ((vcpumap[vcpu] = malloc(sizeof(cpuset_t))) == NULL) {
354 			perror("malloc");
355 			return (-1);
356 		}
357 		CPU_ZERO(vcpumap[vcpu]);
358 	}
359 	CPU_SET(pcpu, vcpumap[vcpu]);
360 	return (0);
361 }
362 
363 void
364 vm_inject_fault(void *arg, int vcpu, int vector, int errcode_valid,
365     int errcode)
366 {
367 	struct vmctx *ctx;
368 	int error, restart_instruction;
369 
370 	ctx = arg;
371 	restart_instruction = 1;
372 
373 	error = vm_inject_exception(ctx, vcpu, vector, errcode_valid, errcode,
374 	    restart_instruction);
375 	assert(error == 0);
376 }
377 
378 void *
379 paddr_guest2host(struct vmctx *ctx, uintptr_t gaddr, size_t len)
380 {
381 
382 	return (vm_map_gpa(ctx, gaddr, len));
383 }
384 
385 int
386 fbsdrun_vmexit_on_pause(void)
387 {
388 
389 	return (guest_vmexit_on_pause);
390 }
391 
392 int
393 fbsdrun_vmexit_on_hlt(void)
394 {
395 
396 	return (guest_vmexit_on_hlt);
397 }
398 
399 int
400 fbsdrun_virtio_msix(void)
401 {
402 
403 	return (virtio_msix);
404 }
405 
406 static void *
407 fbsdrun_start_thread(void *param)
408 {
409 	char tname[MAXCOMLEN + 1];
410 	struct mt_vmm_info *mtp;
411 	int vcpu;
412 
413 	mtp = param;
414 	vcpu = mtp->mt_vcpu;
415 
416 	snprintf(tname, sizeof(tname), "vcpu %d", vcpu);
417 	pthread_set_name_np(mtp->mt_thr, tname);
418 
419 	gdb_cpu_add(vcpu);
420 
421 	vm_loop(mtp->mt_ctx, vcpu, vmexit[vcpu].rip);
422 
423 	/* not reached */
424 	exit(1);
425 	return (NULL);
426 }
427 
428 void
429 fbsdrun_addcpu(struct vmctx *ctx, int fromcpu, int newcpu, uint64_t rip)
430 {
431 	int error;
432 
433 	assert(fromcpu == BSP);
434 
435 	/*
436 	 * The 'newcpu' must be activated in the context of 'fromcpu'. If
437 	 * vm_activate_cpu() is delayed until newcpu's pthread starts running
438 	 * then vmm.ko is out-of-sync with bhyve and this can create a race
439 	 * with vm_suspend().
440 	 */
441 	error = vm_activate_cpu(ctx, newcpu);
442 	if (error != 0)
443 		err(EX_OSERR, "could not activate CPU %d", newcpu);
444 
445 	CPU_SET_ATOMIC(newcpu, &cpumask);
446 
447 	/*
448 	 * Set up the vmexit struct to allow execution to start
449 	 * at the given RIP
450 	 */
451 	vmexit[newcpu].rip = rip;
452 	vmexit[newcpu].inst_length = 0;
453 
454 	mt_vmm_info[newcpu].mt_ctx = ctx;
455 	mt_vmm_info[newcpu].mt_vcpu = newcpu;
456 
457 	error = pthread_create(&mt_vmm_info[newcpu].mt_thr, NULL,
458 	    fbsdrun_start_thread, &mt_vmm_info[newcpu]);
459 	assert(error == 0);
460 }
461 
462 static int
463 fbsdrun_deletecpu(struct vmctx *ctx, int vcpu)
464 {
465 
466 	if (!CPU_ISSET(vcpu, &cpumask)) {
467 		fprintf(stderr, "Attempting to delete unknown cpu %d\n", vcpu);
468 		exit(4);
469 	}
470 
471 	CPU_CLR_ATOMIC(vcpu, &cpumask);
472 	return (CPU_EMPTY(&cpumask));
473 }
474 
475 static int
476 vmexit_handle_notify(struct vmctx *ctx, struct vm_exit *vme, int *pvcpu,
477 		     uint32_t eax)
478 {
479 #if BHYVE_DEBUG
480 	/*
481 	 * put guest-driven debug here
482 	 */
483 #endif
484 	return (VMEXIT_CONTINUE);
485 }
486 
487 static int
488 vmexit_inout(struct vmctx *ctx, struct vm_exit *vme, int *pvcpu)
489 {
490 	int error;
491 	int bytes, port, in, out;
492 	int vcpu;
493 
494 	vcpu = *pvcpu;
495 
496 	port = vme->u.inout.port;
497 	bytes = vme->u.inout.bytes;
498 	in = vme->u.inout.in;
499 	out = !in;
500 
501         /* Extra-special case of host notifications */
502         if (out && port == GUEST_NIO_PORT) {
503                 error = vmexit_handle_notify(ctx, vme, pvcpu, vme->u.inout.eax);
504 		return (error);
505 	}
506 
507 	error = emulate_inout(ctx, vcpu, vme, strictio);
508 	if (error) {
509 		fprintf(stderr, "Unhandled %s%c 0x%04x at 0x%lx\n",
510 		    in ? "in" : "out",
511 		    bytes == 1 ? 'b' : (bytes == 2 ? 'w' : 'l'),
512 		    port, vmexit->rip);
513 		return (VMEXIT_ABORT);
514 	} else {
515 		return (VMEXIT_CONTINUE);
516 	}
517 }
518 
519 static int
520 vmexit_rdmsr(struct vmctx *ctx, struct vm_exit *vme, int *pvcpu)
521 {
522 	uint64_t val;
523 	uint32_t eax, edx;
524 	int error;
525 
526 	val = 0;
527 	error = emulate_rdmsr(ctx, *pvcpu, vme->u.msr.code, &val);
528 	if (error != 0) {
529 		fprintf(stderr, "rdmsr to register %#x on vcpu %d\n",
530 		    vme->u.msr.code, *pvcpu);
531 		if (strictmsr) {
532 			vm_inject_gp(ctx, *pvcpu);
533 			return (VMEXIT_CONTINUE);
534 		}
535 	}
536 
537 	eax = val;
538 	error = vm_set_register(ctx, *pvcpu, VM_REG_GUEST_RAX, eax);
539 	assert(error == 0);
540 
541 	edx = val >> 32;
542 	error = vm_set_register(ctx, *pvcpu, VM_REG_GUEST_RDX, edx);
543 	assert(error == 0);
544 
545 	return (VMEXIT_CONTINUE);
546 }
547 
548 static int
549 vmexit_wrmsr(struct vmctx *ctx, struct vm_exit *vme, int *pvcpu)
550 {
551 	int error;
552 
553 	error = emulate_wrmsr(ctx, *pvcpu, vme->u.msr.code, vme->u.msr.wval);
554 	if (error != 0) {
555 		fprintf(stderr, "wrmsr to register %#x(%#lx) on vcpu %d\n",
556 		    vme->u.msr.code, vme->u.msr.wval, *pvcpu);
557 		if (strictmsr) {
558 			vm_inject_gp(ctx, *pvcpu);
559 			return (VMEXIT_CONTINUE);
560 		}
561 	}
562 	return (VMEXIT_CONTINUE);
563 }
564 
565 static int
566 vmexit_spinup_ap(struct vmctx *ctx, struct vm_exit *vme, int *pvcpu)
567 {
568 
569 	(void)spinup_ap(ctx, *pvcpu,
570 		    vme->u.spinup_ap.vcpu, vme->u.spinup_ap.rip);
571 
572 	return (VMEXIT_CONTINUE);
573 }
574 
575 #define	DEBUG_EPT_MISCONFIG
576 #ifdef DEBUG_EPT_MISCONFIG
577 #define	VMCS_GUEST_PHYSICAL_ADDRESS	0x00002400
578 
579 static uint64_t ept_misconfig_gpa, ept_misconfig_pte[4];
580 static int ept_misconfig_ptenum;
581 #endif
582 
583 static const char *
584 vmexit_vmx_desc(uint32_t exit_reason)
585 {
586 
587 	if (exit_reason >= nitems(vmx_exit_reason_desc) ||
588 	    vmx_exit_reason_desc[exit_reason] == NULL)
589 		return ("Unknown");
590 	return (vmx_exit_reason_desc[exit_reason]);
591 }
592 
593 static int
594 vmexit_vmx(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
595 {
596 
597 	fprintf(stderr, "vm exit[%d]\n", *pvcpu);
598 	fprintf(stderr, "\treason\t\tVMX\n");
599 	fprintf(stderr, "\trip\t\t0x%016lx\n", vmexit->rip);
600 	fprintf(stderr, "\tinst_length\t%d\n", vmexit->inst_length);
601 	fprintf(stderr, "\tstatus\t\t%d\n", vmexit->u.vmx.status);
602 	fprintf(stderr, "\texit_reason\t%u (%s)\n", vmexit->u.vmx.exit_reason,
603 	    vmexit_vmx_desc(vmexit->u.vmx.exit_reason));
604 	fprintf(stderr, "\tqualification\t0x%016lx\n",
605 	    vmexit->u.vmx.exit_qualification);
606 	fprintf(stderr, "\tinst_type\t\t%d\n", vmexit->u.vmx.inst_type);
607 	fprintf(stderr, "\tinst_error\t\t%d\n", vmexit->u.vmx.inst_error);
608 #ifdef DEBUG_EPT_MISCONFIG
609 	if (vmexit->u.vmx.exit_reason == EXIT_REASON_EPT_MISCONFIG) {
610 		vm_get_register(ctx, *pvcpu,
611 		    VMCS_IDENT(VMCS_GUEST_PHYSICAL_ADDRESS),
612 		    &ept_misconfig_gpa);
613 		vm_get_gpa_pmap(ctx, ept_misconfig_gpa, ept_misconfig_pte,
614 		    &ept_misconfig_ptenum);
615 		fprintf(stderr, "\tEPT misconfiguration:\n");
616 		fprintf(stderr, "\t\tGPA: %#lx\n", ept_misconfig_gpa);
617 		fprintf(stderr, "\t\tPTE(%d): %#lx %#lx %#lx %#lx\n",
618 		    ept_misconfig_ptenum, ept_misconfig_pte[0],
619 		    ept_misconfig_pte[1], ept_misconfig_pte[2],
620 		    ept_misconfig_pte[3]);
621 	}
622 #endif	/* DEBUG_EPT_MISCONFIG */
623 	return (VMEXIT_ABORT);
624 }
625 
626 static int
627 vmexit_svm(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
628 {
629 
630 	fprintf(stderr, "vm exit[%d]\n", *pvcpu);
631 	fprintf(stderr, "\treason\t\tSVM\n");
632 	fprintf(stderr, "\trip\t\t0x%016lx\n", vmexit->rip);
633 	fprintf(stderr, "\tinst_length\t%d\n", vmexit->inst_length);
634 	fprintf(stderr, "\texitcode\t%#lx\n", vmexit->u.svm.exitcode);
635 	fprintf(stderr, "\texitinfo1\t%#lx\n", vmexit->u.svm.exitinfo1);
636 	fprintf(stderr, "\texitinfo2\t%#lx\n", vmexit->u.svm.exitinfo2);
637 	return (VMEXIT_ABORT);
638 }
639 
640 static int
641 vmexit_bogus(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
642 {
643 
644 	assert(vmexit->inst_length == 0);
645 
646 	stats.vmexit_bogus++;
647 
648 	return (VMEXIT_CONTINUE);
649 }
650 
651 static int
652 vmexit_reqidle(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
653 {
654 
655 	assert(vmexit->inst_length == 0);
656 
657 	stats.vmexit_reqidle++;
658 
659 	return (VMEXIT_CONTINUE);
660 }
661 
662 static int
663 vmexit_hlt(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
664 {
665 
666 	stats.vmexit_hlt++;
667 
668 	/*
669 	 * Just continue execution with the next instruction. We use
670 	 * the HLT VM exit as a way to be friendly with the host
671 	 * scheduler.
672 	 */
673 	return (VMEXIT_CONTINUE);
674 }
675 
676 static int
677 vmexit_pause(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
678 {
679 
680 	stats.vmexit_pause++;
681 
682 	return (VMEXIT_CONTINUE);
683 }
684 
685 static int
686 vmexit_mtrap(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
687 {
688 
689 	assert(vmexit->inst_length == 0);
690 
691 	stats.vmexit_mtrap++;
692 
693 	gdb_cpu_mtrap(*pvcpu);
694 
695 	return (VMEXIT_CONTINUE);
696 }
697 
698 static int
699 vmexit_inst_emul(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
700 {
701 	int err, i;
702 	struct vie *vie;
703 
704 	stats.vmexit_inst_emul++;
705 
706 	vie = &vmexit->u.inst_emul.vie;
707 	err = emulate_mem(ctx, *pvcpu, vmexit->u.inst_emul.gpa,
708 	    vie, &vmexit->u.inst_emul.paging);
709 
710 	if (err) {
711 		if (err == ESRCH) {
712 			fprintf(stderr, "Unhandled memory access to 0x%lx\n",
713 			    vmexit->u.inst_emul.gpa);
714 		}
715 
716 		fprintf(stderr, "Failed to emulate instruction [");
717 		for (i = 0; i < vie->num_valid; i++) {
718 			fprintf(stderr, "0x%02x%s", vie->inst[i],
719 			    i != (vie->num_valid - 1) ? " " : "");
720 		}
721 		fprintf(stderr, "] at 0x%lx\n", vmexit->rip);
722 		return (VMEXIT_ABORT);
723 	}
724 
725 	return (VMEXIT_CONTINUE);
726 }
727 
728 static pthread_mutex_t resetcpu_mtx = PTHREAD_MUTEX_INITIALIZER;
729 static pthread_cond_t resetcpu_cond = PTHREAD_COND_INITIALIZER;
730 
731 static int
732 vmexit_suspend(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
733 {
734 	enum vm_suspend_how how;
735 
736 	how = vmexit->u.suspended.how;
737 
738 	fbsdrun_deletecpu(ctx, *pvcpu);
739 
740 	if (*pvcpu != BSP) {
741 		pthread_mutex_lock(&resetcpu_mtx);
742 		pthread_cond_signal(&resetcpu_cond);
743 		pthread_mutex_unlock(&resetcpu_mtx);
744 		pthread_exit(NULL);
745 	}
746 
747 	pthread_mutex_lock(&resetcpu_mtx);
748 	while (!CPU_EMPTY(&cpumask)) {
749 		pthread_cond_wait(&resetcpu_cond, &resetcpu_mtx);
750 	}
751 	pthread_mutex_unlock(&resetcpu_mtx);
752 
753 	switch (how) {
754 	case VM_SUSPEND_RESET:
755 		exit(0);
756 	case VM_SUSPEND_POWEROFF:
757 		exit(1);
758 	case VM_SUSPEND_HALT:
759 		exit(2);
760 	case VM_SUSPEND_TRIPLEFAULT:
761 		exit(3);
762 	default:
763 		fprintf(stderr, "vmexit_suspend: invalid reason %d\n", how);
764 		exit(100);
765 	}
766 	return (0);	/* NOTREACHED */
767 }
768 
769 static int
770 vmexit_debug(struct vmctx *ctx, struct vm_exit *vmexit, int *pvcpu)
771 {
772 
773 	gdb_cpu_suspend(*pvcpu);
774 	return (VMEXIT_CONTINUE);
775 }
776 
777 static vmexit_handler_t handler[VM_EXITCODE_MAX] = {
778 	[VM_EXITCODE_INOUT]  = vmexit_inout,
779 	[VM_EXITCODE_INOUT_STR]  = vmexit_inout,
780 	[VM_EXITCODE_VMX]    = vmexit_vmx,
781 	[VM_EXITCODE_SVM]    = vmexit_svm,
782 	[VM_EXITCODE_BOGUS]  = vmexit_bogus,
783 	[VM_EXITCODE_REQIDLE] = vmexit_reqidle,
784 	[VM_EXITCODE_RDMSR]  = vmexit_rdmsr,
785 	[VM_EXITCODE_WRMSR]  = vmexit_wrmsr,
786 	[VM_EXITCODE_MTRAP]  = vmexit_mtrap,
787 	[VM_EXITCODE_INST_EMUL] = vmexit_inst_emul,
788 	[VM_EXITCODE_SPINUP_AP] = vmexit_spinup_ap,
789 	[VM_EXITCODE_SUSPENDED] = vmexit_suspend,
790 	[VM_EXITCODE_TASK_SWITCH] = vmexit_task_switch,
791 	[VM_EXITCODE_DEBUG] = vmexit_debug,
792 };
793 
794 static void
795 vm_loop(struct vmctx *ctx, int vcpu, uint64_t startrip)
796 {
797 	int error, rc;
798 	enum vm_exitcode exitcode;
799 	cpuset_t active_cpus;
800 
801 	if (vcpumap[vcpu] != NULL) {
802 		error = pthread_setaffinity_np(pthread_self(),
803 		    sizeof(cpuset_t), vcpumap[vcpu]);
804 		assert(error == 0);
805 	}
806 
807 	error = vm_active_cpus(ctx, &active_cpus);
808 	assert(CPU_ISSET(vcpu, &active_cpus));
809 
810 	error = vm_set_register(ctx, vcpu, VM_REG_GUEST_RIP, startrip);
811 	assert(error == 0);
812 
813 	while (1) {
814 		error = vm_run(ctx, vcpu, &vmexit[vcpu]);
815 		if (error != 0)
816 			break;
817 
818 		exitcode = vmexit[vcpu].exitcode;
819 		if (exitcode >= VM_EXITCODE_MAX || handler[exitcode] == NULL) {
820 			fprintf(stderr, "vm_loop: unexpected exitcode 0x%x\n",
821 			    exitcode);
822 			exit(4);
823 		}
824 
825 		rc = (*handler[exitcode])(ctx, &vmexit[vcpu], &vcpu);
826 
827 		switch (rc) {
828 		case VMEXIT_CONTINUE:
829 			break;
830 		case VMEXIT_ABORT:
831 			abort();
832 		default:
833 			exit(4);
834 		}
835 	}
836 	fprintf(stderr, "vm_run error %d, errno %d\n", error, errno);
837 }
838 
839 static int
840 num_vcpus_allowed(struct vmctx *ctx)
841 {
842 	int tmp, error;
843 
844 	error = vm_get_capability(ctx, BSP, VM_CAP_UNRESTRICTED_GUEST, &tmp);
845 
846 	/*
847 	 * The guest is allowed to spinup more than one processor only if the
848 	 * UNRESTRICTED_GUEST capability is available.
849 	 */
850 	if (error == 0)
851 		return (VM_MAXCPU);
852 	else
853 		return (1);
854 }
855 
856 void
857 fbsdrun_set_capabilities(struct vmctx *ctx, int cpu)
858 {
859 	int err, tmp;
860 
861 	if (fbsdrun_vmexit_on_hlt()) {
862 		err = vm_get_capability(ctx, cpu, VM_CAP_HALT_EXIT, &tmp);
863 		if (err < 0) {
864 			fprintf(stderr, "VM exit on HLT not supported\n");
865 			exit(4);
866 		}
867 		vm_set_capability(ctx, cpu, VM_CAP_HALT_EXIT, 1);
868 		if (cpu == BSP)
869 			handler[VM_EXITCODE_HLT] = vmexit_hlt;
870 	}
871 
872         if (fbsdrun_vmexit_on_pause()) {
873 		/*
874 		 * pause exit support required for this mode
875 		 */
876 		err = vm_get_capability(ctx, cpu, VM_CAP_PAUSE_EXIT, &tmp);
877 		if (err < 0) {
878 			fprintf(stderr,
879 			    "SMP mux requested, no pause support\n");
880 			exit(4);
881 		}
882 		vm_set_capability(ctx, cpu, VM_CAP_PAUSE_EXIT, 1);
883 		if (cpu == BSP)
884 			handler[VM_EXITCODE_PAUSE] = vmexit_pause;
885         }
886 
887 	if (x2apic_mode)
888 		err = vm_set_x2apic_state(ctx, cpu, X2APIC_ENABLED);
889 	else
890 		err = vm_set_x2apic_state(ctx, cpu, X2APIC_DISABLED);
891 
892 	if (err) {
893 		fprintf(stderr, "Unable to set x2apic state (%d)\n", err);
894 		exit(4);
895 	}
896 
897 	vm_set_capability(ctx, cpu, VM_CAP_ENABLE_INVPCID, 1);
898 }
899 
900 static struct vmctx *
901 do_open(const char *vmname)
902 {
903 	struct vmctx *ctx;
904 	int error;
905 	bool reinit, romboot;
906 #ifndef WITHOUT_CAPSICUM
907 	cap_rights_t rights;
908 	const cap_ioctl_t *cmds;
909 	size_t ncmds;
910 #endif
911 
912 	reinit = romboot = false;
913 
914 	if (lpc_bootrom())
915 		romboot = true;
916 
917 	error = vm_create(vmname);
918 	if (error) {
919 		if (errno == EEXIST) {
920 			if (romboot) {
921 				reinit = true;
922 			} else {
923 				/*
924 				 * The virtual machine has been setup by the
925 				 * userspace bootloader.
926 				 */
927 			}
928 		} else {
929 			perror("vm_create");
930 			exit(4);
931 		}
932 	} else {
933 		if (!romboot) {
934 			/*
935 			 * If the virtual machine was just created then a
936 			 * bootrom must be configured to boot it.
937 			 */
938 			fprintf(stderr, "virtual machine cannot be booted\n");
939 			exit(4);
940 		}
941 	}
942 
943 	ctx = vm_open(vmname);
944 	if (ctx == NULL) {
945 		perror("vm_open");
946 		exit(4);
947 	}
948 
949 #ifndef WITHOUT_CAPSICUM
950 	cap_rights_init(&rights, CAP_IOCTL, CAP_MMAP_RW);
951 	if (caph_rights_limit(vm_get_device_fd(ctx), &rights) == -1)
952 		errx(EX_OSERR, "Unable to apply rights for sandbox");
953 	vm_get_ioctls(&ncmds);
954 	cmds = vm_get_ioctls(NULL);
955 	if (cmds == NULL)
956 		errx(EX_OSERR, "out of memory");
957 	if (caph_ioctls_limit(vm_get_device_fd(ctx), cmds, ncmds) == -1)
958 		errx(EX_OSERR, "Unable to apply rights for sandbox");
959 	free((cap_ioctl_t *)cmds);
960 #endif
961 
962 	if (reinit) {
963 		error = vm_reinit(ctx);
964 		if (error) {
965 			perror("vm_reinit");
966 			exit(4);
967 		}
968 	}
969 	error = vm_set_topology(ctx, sockets, cores, threads, maxcpus);
970 	if (error)
971 		errx(EX_OSERR, "vm_set_topology");
972 	return (ctx);
973 }
974 
975 int
976 main(int argc, char *argv[])
977 {
978 	int c, error, dbg_port, gdb_port, err, bvmcons;
979 	int max_vcpus, mptgen, memflags;
980 	int rtc_localtime;
981 	bool gdb_stop;
982 	struct vmctx *ctx;
983 	uint64_t rip;
984 	size_t memsize;
985 	char *optstr;
986 
987 	bvmcons = 0;
988 	progname = basename(argv[0]);
989 	dbg_port = 0;
990 	gdb_port = 0;
991 	gdb_stop = false;
992 	guest_ncpus = 1;
993 	sockets = cores = threads = 1;
994 	maxcpus = 0;
995 	memsize = 256 * MB;
996 	mptgen = 1;
997 	rtc_localtime = 1;
998 	memflags = 0;
999 
1000 	optstr = "abehuwxACHIPSWYp:g:G:c:s:m:l:U:";
1001 	while ((c = getopt(argc, argv, optstr)) != -1) {
1002 		switch (c) {
1003 		case 'a':
1004 			x2apic_mode = 0;
1005 			break;
1006 		case 'A':
1007 			acpi = 1;
1008 			break;
1009 		case 'b':
1010 			bvmcons = 1;
1011 			break;
1012 		case 'p':
1013                         if (pincpu_parse(optarg) != 0) {
1014                             errx(EX_USAGE, "invalid vcpu pinning "
1015                                  "configuration '%s'", optarg);
1016                         }
1017 			break;
1018                 case 'c':
1019 			if (topology_parse(optarg) != 0) {
1020 			    errx(EX_USAGE, "invalid cpu topology "
1021 				"'%s'", optarg);
1022 			}
1023 			break;
1024 		case 'C':
1025 			memflags |= VM_MEM_F_INCORE;
1026 			break;
1027 		case 'g':
1028 			dbg_port = atoi(optarg);
1029 			break;
1030 		case 'G':
1031 			if (optarg[0] == 'w') {
1032 				gdb_stop = true;
1033 				optarg++;
1034 			}
1035 			gdb_port = atoi(optarg);
1036 			break;
1037 		case 'l':
1038 			if (strncmp(optarg, "help", strlen(optarg)) == 0) {
1039 				lpc_print_supported_devices();
1040 				exit(0);
1041 			} else if (lpc_device_parse(optarg) != 0) {
1042 				errx(EX_USAGE, "invalid lpc device "
1043 				    "configuration '%s'", optarg);
1044 			}
1045 			break;
1046 		case 's':
1047 			if (strncmp(optarg, "help", strlen(optarg)) == 0) {
1048 				pci_print_supported_devices();
1049 				exit(0);
1050 			} else if (pci_parse_slot(optarg) != 0)
1051 				exit(4);
1052 			else
1053 				break;
1054 		case 'S':
1055 			memflags |= VM_MEM_F_WIRED;
1056 			break;
1057                 case 'm':
1058 			error = vm_parse_memsize(optarg, &memsize);
1059 			if (error)
1060 				errx(EX_USAGE, "invalid memsize '%s'", optarg);
1061 			break;
1062 		case 'H':
1063 			guest_vmexit_on_hlt = 1;
1064 			break;
1065 		case 'I':
1066 			/*
1067 			 * The "-I" option was used to add an ioapic to the
1068 			 * virtual machine.
1069 			 *
1070 			 * An ioapic is now provided unconditionally for each
1071 			 * virtual machine and this option is now deprecated.
1072 			 */
1073 			break;
1074 		case 'P':
1075 			guest_vmexit_on_pause = 1;
1076 			break;
1077 		case 'e':
1078 			strictio = 1;
1079 			break;
1080 		case 'u':
1081 			rtc_localtime = 0;
1082 			break;
1083 		case 'U':
1084 			guest_uuid_str = optarg;
1085 			break;
1086 		case 'w':
1087 			strictmsr = 0;
1088 			break;
1089 		case 'W':
1090 			virtio_msix = 0;
1091 			break;
1092 		case 'x':
1093 			x2apic_mode = 1;
1094 			break;
1095 		case 'Y':
1096 			mptgen = 0;
1097 			break;
1098 		case 'h':
1099 			usage(0);
1100 		default:
1101 			usage(1);
1102 		}
1103 	}
1104 	argc -= optind;
1105 	argv += optind;
1106 
1107 	if (argc != 1)
1108 		usage(1);
1109 
1110 	vmname = argv[0];
1111 	ctx = do_open(vmname);
1112 
1113 	max_vcpus = num_vcpus_allowed(ctx);
1114 	if (guest_ncpus > max_vcpus) {
1115 		fprintf(stderr, "%d vCPUs requested but only %d available\n",
1116 			guest_ncpus, max_vcpus);
1117 		exit(4);
1118 	}
1119 
1120 	fbsdrun_set_capabilities(ctx, BSP);
1121 
1122 	vm_set_memflags(ctx, memflags);
1123 	err = vm_setup_memory(ctx, memsize, VM_MMAP_ALL);
1124 	if (err) {
1125 		fprintf(stderr, "Unable to setup memory (%d)\n", errno);
1126 		exit(4);
1127 	}
1128 
1129 	error = init_msr();
1130 	if (error) {
1131 		fprintf(stderr, "init_msr error %d", error);
1132 		exit(4);
1133 	}
1134 
1135 	init_mem();
1136 	init_inout();
1137 	atkbdc_init(ctx);
1138 	pci_irq_init(ctx);
1139 	ioapic_init(ctx);
1140 
1141 	rtc_init(ctx, rtc_localtime);
1142 	sci_init(ctx);
1143 
1144 	/*
1145 	 * Exit if a device emulation finds an error in its initilization
1146 	 */
1147 	if (init_pci(ctx) != 0) {
1148 		perror("device emulation initialization error");
1149 		exit(4);
1150 	}
1151 
1152 	if (dbg_port != 0)
1153 		init_dbgport(dbg_port);
1154 
1155 	if (gdb_port != 0)
1156 		init_gdb(ctx, gdb_port, gdb_stop);
1157 
1158 	if (bvmcons)
1159 		init_bvmcons();
1160 
1161 	if (lpc_bootrom()) {
1162 		if (vm_set_capability(ctx, BSP, VM_CAP_UNRESTRICTED_GUEST, 1)) {
1163 			fprintf(stderr, "ROM boot failed: unrestricted guest "
1164 			    "capability not available\n");
1165 			exit(4);
1166 		}
1167 		error = vcpu_reset(ctx, BSP);
1168 		assert(error == 0);
1169 	}
1170 
1171 	error = vm_get_register(ctx, BSP, VM_REG_GUEST_RIP, &rip);
1172 	assert(error == 0);
1173 
1174 	/*
1175 	 * build the guest tables, MP etc.
1176 	 */
1177 	if (mptgen) {
1178 		error = mptable_build(ctx, guest_ncpus);
1179 		if (error) {
1180 			perror("error to build the guest tables");
1181 			exit(4);
1182 		}
1183 	}
1184 
1185 	error = smbios_build(ctx);
1186 	assert(error == 0);
1187 
1188 	if (acpi) {
1189 		error = acpi_build(ctx, guest_ncpus);
1190 		assert(error == 0);
1191 	}
1192 
1193 	if (lpc_bootrom())
1194 		fwctl_init();
1195 
1196 	/*
1197 	 * Change the proc title to include the VM name.
1198 	 */
1199 	setproctitle("%s", vmname);
1200 
1201 #ifndef WITHOUT_CAPSICUM
1202 	caph_cache_catpages();
1203 
1204 	if (caph_limit_stdout() == -1 || caph_limit_stderr() == -1)
1205 		errx(EX_OSERR, "Unable to apply rights for sandbox");
1206 
1207 	if (caph_enter() == -1)
1208 		errx(EX_OSERR, "cap_enter() failed");
1209 #endif
1210 
1211 	/*
1212 	 * Add CPU 0
1213 	 */
1214 	fbsdrun_addcpu(ctx, BSP, BSP, rip);
1215 
1216 	/*
1217 	 * Head off to the main event dispatch loop
1218 	 */
1219 	mevent_dispatch();
1220 
1221 	exit(4);
1222 }
1223