xref: /freebsd/usr.bin/vmstat/vmstat.c (revision b5ecbcd26cc3a80831c7ff38433dc5f9c3ced575)
1 /*-
2  * SPDX-License-Identifier: BSD-3-Clause
3  *
4  * Copyright (c) 1980, 1986, 1991, 1993
5  *	The Regents of the University of California.  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  * 3. Neither the name of the University nor the names of its contributors
16  *    may be used to endorse or promote products derived from this software
17  *    without specific prior written permission.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29  * SUCH DAMAGE.
30  */
31 
32 #include <sys/param.h>
33 #include <sys/proc.h>
34 #include <sys/uio.h>
35 #include <sys/namei.h>
36 #include <sys/malloc.h>
37 #include <sys/signal.h>
38 #include <sys/fcntl.h>
39 #include <sys/ioctl.h>
40 #include <sys/resource.h>
41 #include <sys/sysctl.h>
42 #include <sys/time.h>
43 #include <sys/user.h>
44 #define	_WANT_VMMETER
45 #include <sys/vmmeter.h>
46 #include <sys/pcpu.h>
47 
48 #include <vm/vm_param.h>
49 
50 #include <ctype.h>
51 #include <devstat.h>
52 #include <errno.h>
53 #include <inttypes.h>
54 #include <kvm.h>
55 #include <limits.h>
56 #include <memstat.h>
57 #include <nlist.h>
58 #include <paths.h>
59 #include <stdio.h>
60 #include <stdlib.h>
61 #include <string.h>
62 #include <sysexits.h>
63 #include <time.h>
64 #include <unistd.h>
65 #include <libutil.h>
66 #include <libxo/xo.h>
67 
68 #define VMSTAT_XO_VERSION "2"
69 
70 static char da[] = "da";
71 
72 enum x_stats { X_SUM, X_HZ, X_STATHZ, X_NCHSTATS, X_INTRNAMES, X_SINTRNAMES,
73     X_INTRCNT, X_SINTRCNT, X_NINTRCNT };
74 
75 static struct nlist namelist[] = {
76 	[X_SUM] = { .n_name = "vm_cnt", },
77 	[X_HZ] = { .n_name = "hz", },
78 	[X_STATHZ] = { .n_name = "stathz", },
79 	[X_NCHSTATS] = { .n_name = "nchstats", },
80 	[X_INTRNAMES] = { .n_name = "intrnames", },
81 	[X_SINTRNAMES] = { .n_name = "sintrnames", },
82 	[X_INTRCNT] = { .n_name = "intrcnt", },
83 	[X_SINTRCNT] = { .n_name = "sintrcnt", },
84 	[X_NINTRCNT] = { .n_name = "nintrcnt", },
85 	{ .n_name = NULL, },
86 };
87 
88 static struct devstat_match *matches;
89 static struct device_selection *dev_select;
90 static struct statinfo cur, last;
91 static devstat_select_mode select_mode;
92 static size_t size_cp_times;
93 static long *cur_cp_times, *last_cp_times;
94 static long generation, select_generation;
95 static int hz, hdrcnt, maxshowdevs;
96 static int num_devices, num_devices_specified;
97 static int num_matches, num_selected, num_selections;
98 static char **specified_devices;
99 
100 static struct __vmmeter {
101 	uint64_t v_swtch;
102 	uint64_t v_trap;
103 	uint64_t v_syscall;
104 	uint64_t v_intr;
105 	uint64_t v_soft;
106 	uint64_t v_vm_faults;
107 	uint64_t v_io_faults;
108 	uint64_t v_cow_faults;
109 	uint64_t v_cow_optim;
110 	uint64_t v_zfod;
111 	uint64_t v_ozfod;
112 	uint64_t v_swapin;
113 	uint64_t v_swapout;
114 	uint64_t v_swappgsin;
115 	uint64_t v_swappgsout;
116 	uint64_t v_vnodein;
117 	uint64_t v_vnodeout;
118 	uint64_t v_vnodepgsin;
119 	uint64_t v_vnodepgsout;
120 	uint64_t v_intrans;
121 	uint64_t v_reactivated;
122 	uint64_t v_pdwakeups;
123 	uint64_t v_pdpages;
124 	uint64_t v_pdshortfalls;
125 	uint64_t v_dfree;
126 	uint64_t v_pfree;
127 	uint64_t v_tfree;
128 	uint64_t v_forks;
129 	uint64_t v_vforks;
130 	uint64_t v_rforks;
131 	uint64_t v_kthreads;
132 	uint64_t v_forkpages;
133 	uint64_t v_vforkpages;
134 	uint64_t v_rforkpages;
135 	uint64_t v_kthreadpages;
136 	u_int v_page_size;
137 	u_int v_page_count;
138 	u_int v_free_reserved;
139 	u_int v_free_target;
140 	u_int v_free_min;
141 	u_int v_free_count;
142 	u_int v_wire_count;
143 	u_long v_user_wire_count;
144 	u_int v_nofree_count;
145 	u_int v_active_count;
146 	u_int v_inactive_target;
147 	u_int v_inactive_count;
148 	u_int v_laundry_count;
149 	u_int v_pageout_free_min;
150 	u_int v_interrupt_free_min;
151 	u_int v_free_severe;
152 } sum, osum;
153 
154 #define	VMSTAT_DEFAULT_LINES	20	/* Default number of `winlines'. */
155 static volatile sig_atomic_t wresized;		/* Tty resized when non-zero. */
156 static int winlines = VMSTAT_DEFAULT_LINES; /* Current number of tty rows. */
157 
158 static int	aflag;
159 static int	nflag;
160 static int	Pflag;
161 static int	hflag;
162 
163 static kvm_t	*kd;
164 
165 #define	FORKSTAT	0x01
166 #define	INTRSTAT	0x02
167 #define	MEMSTAT		0x04
168 #define	SUMSTAT		0x08
169 #define	TIMESTAT	0x10
170 #define	VMSTAT		0x20
171 #define	ZMEMSTAT	0x40
172 #define	OBJSTAT		0x80
173 
174 static void	cpustats(void);
175 static void	pcpustats(u_long, int);
176 static void	devstats(void);
177 static void	doforkst(void);
178 static void	dointr(unsigned int, int);
179 static void	doobjstat(void);
180 static void	dosum(void);
181 static void	dovmstat(unsigned int, int);
182 static void	domemstat_malloc(void);
183 static void	domemstat_zone(void);
184 static void	kread(int, void *, size_t);
185 static void	kreado(int, void *, size_t, size_t);
186 static void	kreadptr(uintptr_t, void *, size_t);
187 static void	needhdr(int);
188 static void	needresize(int);
189 static void	doresize(void);
190 static void	printhdr(int, u_long);
191 static void	usage(void);
192 
193 static long	pct(long, long);
194 static long long	getuptime(void);
195 
196 static char	**getdrivedata(char **);
197 
198 int
main(int argc,char * argv[])199 main(int argc, char *argv[])
200 {
201 	char *bp, *buf, *memf, *nlistf;
202 	float f;
203 	int bufsize, c, reps, todo;
204 	size_t len;
205 	unsigned int interval;
206 	char errbuf[_POSIX2_LINE_MAX];
207 
208 	memf = nlistf = NULL;
209 	interval = reps = todo = 0;
210 	maxshowdevs = 2;
211 
212 	argc = xo_parse_args(argc, argv);
213 	if (argc < 0)
214 		return (argc);
215 
216 	hflag = isatty(1);
217 
218 	while ((c = getopt(argc, argv, "ac:fhHiM:mN:n:oPp:sw:z")) != -1) {
219 		switch (c) {
220 		case 'a':
221 			aflag++;
222 			break;
223 		case 'c':
224 			reps = atoi(optarg);
225 			break;
226 		case 'P':
227 			Pflag++;
228 			break;
229 		case 'f':
230 			todo |= FORKSTAT;
231 			break;
232 		case 'h':
233 			hflag = 1;
234 			break;
235 		case 'H':
236 			hflag = 0;
237 			break;
238 		case 'i':
239 			todo |= INTRSTAT;
240 			break;
241 		case 'M':
242 			memf = optarg;
243 			break;
244 		case 'm':
245 			todo |= MEMSTAT;
246 			break;
247 		case 'N':
248 			nlistf = optarg;
249 			break;
250 		case 'n':
251 			nflag = 1;
252 			maxshowdevs = atoi(optarg);
253 			if (maxshowdevs < 0)
254 				xo_errx(1, "number of devices %d is < 0",
255 				    maxshowdevs);
256 			break;
257 		case 'o':
258 			todo |= OBJSTAT;
259 			break;
260 		case 'p':
261 			if (devstat_buildmatch(optarg, &matches, &num_matches)
262 			    != 0)
263 				xo_errx(1, "%s", devstat_errbuf);
264 			break;
265 		case 's':
266 			todo |= SUMSTAT;
267 			break;
268 		case 'w':
269 			/* Convert to milliseconds. */
270 			f = atof(optarg);
271 			interval = f * 1000;
272 			break;
273 		case 'z':
274 			todo |= ZMEMSTAT;
275 			break;
276 		case '?':
277 		default:
278 			usage();
279 		}
280 	}
281 	argc -= optind;
282 	argv += optind;
283 
284 	xo_set_version(VMSTAT_XO_VERSION);
285 	xo_open_container("vmstat");
286 	if (!hflag)
287 		xo_set_options(NULL, "no-humanize");
288 	if (todo == 0)
289 		todo = VMSTAT;
290 
291 	if (memf != NULL) {
292 		kd = kvm_openfiles(nlistf, memf, NULL, O_RDONLY, errbuf);
293 		if (kd == NULL)
294 			xo_errx(1, "kvm_openfiles: %s", errbuf);
295 	}
296 
297 	if (kd != NULL && (c = kvm_nlist(kd, namelist)) != 0) {
298 		if (c > 0) {
299 			bufsize = 0;
300 			len = 0;
301 
302 			/*
303 			 * 'nintrcnt' doesn't exist in older kernels, but
304 			 * that isn't fatal.
305 			 */
306 			if (namelist[X_NINTRCNT].n_type == 0 && c == 1)
307 				goto nlist_ok;
308 
309 			for (c = 0; c < (int)(nitems(namelist)); c++)
310 				if (namelist[c].n_type == 0)
311 					bufsize += strlen(namelist[c].n_name)
312 					    + 1;
313 			bufsize += len + 1;
314 			buf = bp = alloca(bufsize);
315 
316 			for (c = 0; c < (int)(nitems(namelist)); c++)
317 				if (namelist[c].n_type == 0) {
318 					xo_error(" %s",
319 					    namelist[c].n_name);
320 					len = strlen(namelist[c].n_name);
321 					*bp++ = ' ';
322 					memcpy(bp, namelist[c].n_name, len);
323 					bp += len;
324 				}
325 			*bp = '\0';
326 			xo_error("undefined symbols:\n", buf);
327 		} else
328 			xo_warnx("kvm_nlist: %s", kvm_geterr(kd));
329 		if (xo_finish() < 0)
330 			xo_err(EXIT_FAILURE, "stdout");
331 		exit(EXIT_FAILURE);
332 	}
333 nlist_ok:
334 	if (kd && Pflag)
335 		xo_errx(1, "Cannot use -P with crash dumps");
336 
337 	if (todo & VMSTAT) {
338 		/*
339 		 * Make sure that the userland devstat version matches the
340 		 * kernel devstat version.  If not, exit and print a
341 		 * message informing the user of his mistake.
342 		 */
343 		if (devstat_checkversion(NULL) < 0)
344 			xo_errx(1, "%s", devstat_errbuf);
345 
346 
347 		argv = getdrivedata(argv);
348 	}
349 
350 	if (*argv) {
351 		f = atof(*argv);
352 		interval = f * 1000;
353 		if (*++argv)
354 			reps = atoi(*argv);
355 	}
356 
357 	if (interval) {
358 		if (!reps)
359 			reps = -1;
360 	} else if (reps)
361 		interval = 1 * 1000;
362 
363 	if (todo & FORKSTAT)
364 		doforkst();
365 	if (todo & MEMSTAT)
366 		domemstat_malloc();
367 	if (todo & ZMEMSTAT)
368 		domemstat_zone();
369 	if (todo & SUMSTAT)
370 		dosum();
371 	if (todo & OBJSTAT)
372 		doobjstat();
373 	if (todo & INTRSTAT)
374 		dointr(interval, reps);
375 	if (todo & VMSTAT)
376 		dovmstat(interval, reps);
377 	xo_close_container("vmstat");
378 	if (xo_finish() < 0)
379 		xo_err(EXIT_FAILURE, "stdout");
380 	exit(EXIT_SUCCESS);
381 }
382 
383 static int
mysysctl(const char * name,void * oldp,size_t * oldlenp)384 mysysctl(const char *name, void *oldp, size_t *oldlenp)
385 {
386 	int error;
387 
388 	error = sysctlbyname(name, oldp, oldlenp, NULL, 0);
389 	if (error != 0 && errno != ENOMEM)
390 		xo_err(1, "sysctl(%s)", name);
391 	return (error);
392 }
393 
394 static char **
getdrivedata(char ** argv)395 getdrivedata(char **argv)
396 {
397 
398 	if ((num_devices = devstat_getnumdevs(NULL)) < 0)
399 		xo_errx(1, "%s", devstat_errbuf);
400 
401 	cur.dinfo = (struct devinfo *)calloc(1, sizeof(struct devinfo));
402 	last.dinfo = (struct devinfo *)calloc(1, sizeof(struct devinfo));
403 
404 	if (devstat_getdevs(NULL, &cur) == -1)
405 		xo_errx(1, "%s", devstat_errbuf);
406 
407 	num_devices = cur.dinfo->numdevs;
408 	generation = cur.dinfo->generation;
409 
410 	specified_devices = malloc(sizeof(char *));
411 	for (num_devices_specified = 0; *argv; ++argv) {
412 		if (isdigit(**argv))
413 			break;
414 		num_devices_specified++;
415 		specified_devices = reallocf(specified_devices,
416 		    sizeof(char *) * num_devices_specified);
417 		if (specified_devices == NULL) {
418 			xo_errx(1, "%s", "reallocf (specified_devices)");
419 		}
420 		specified_devices[num_devices_specified - 1] = *argv;
421 	}
422 	dev_select = NULL;
423 
424 	if (nflag == 0 && maxshowdevs < num_devices_specified)
425 		maxshowdevs = num_devices_specified;
426 
427 	/*
428 	 * People are generally only interested in disk statistics when
429 	 * they're running vmstat.  So, that's what we're going to give
430 	 * them if they don't specify anything by default.  We'll also give
431 	 * them any other random devices in the system so that we get to
432 	 * maxshowdevs devices, if that many devices exist.  If the user
433 	 * specifies devices on the command line, either through a pattern
434 	 * match or by naming them explicitly, we will give the user only
435 	 * those devices.
436 	 */
437 	if ((num_devices_specified == 0) && (num_matches == 0)) {
438 		if (devstat_buildmatch(da, &matches, &num_matches) != 0)
439 			xo_errx(1, "%s", devstat_errbuf);
440 		select_mode = DS_SELECT_ADD;
441 	} else
442 		select_mode = DS_SELECT_ONLY;
443 
444 	/*
445 	 * At this point, selectdevs will almost surely indicate that the
446 	 * device list has changed, so we don't look for return values of 0
447 	 * or 1.  If we get back -1, though, there is an error.
448 	 */
449 	if (devstat_selectdevs(&dev_select, &num_selected, &num_selections,
450 	    &select_generation, generation, cur.dinfo->devices,
451 	    num_devices, matches, num_matches, specified_devices,
452 	    num_devices_specified, select_mode,
453 	    maxshowdevs, 0) == -1)
454 		xo_errx(1, "%s", devstat_errbuf);
455 
456 	return(argv);
457 }
458 
459 /* Return system uptime in nanoseconds */
460 static long long
getuptime(void)461 getuptime(void)
462 {
463 	struct timespec sp;
464 
465 	(void)clock_gettime(CLOCK_UPTIME, &sp);
466 	return((long long)sp.tv_sec * 1000000000LL + sp.tv_nsec);
467 }
468 
469 static void
fill_vmmeter(struct __vmmeter * vmmp)470 fill_vmmeter(struct __vmmeter *vmmp)
471 {
472 	struct vmmeter vm_cnt;
473 	size_t size;
474 
475 	if (kd != NULL) {
476 		kread(X_SUM, &vm_cnt, sizeof(vm_cnt));
477 #define	GET_COUNTER(name) \
478 		vmmp->name = kvm_counter_u64_fetch(kd, (u_long)vm_cnt.name)
479 		GET_COUNTER(v_swtch);
480 		GET_COUNTER(v_trap);
481 		GET_COUNTER(v_syscall);
482 		GET_COUNTER(v_intr);
483 		GET_COUNTER(v_soft);
484 		GET_COUNTER(v_vm_faults);
485 		GET_COUNTER(v_io_faults);
486 		GET_COUNTER(v_cow_faults);
487 		GET_COUNTER(v_cow_optim);
488 		GET_COUNTER(v_zfod);
489 		GET_COUNTER(v_ozfod);
490 		GET_COUNTER(v_swapin);
491 		GET_COUNTER(v_swapout);
492 		GET_COUNTER(v_swappgsin);
493 		GET_COUNTER(v_swappgsout);
494 		GET_COUNTER(v_vnodein);
495 		GET_COUNTER(v_vnodeout);
496 		GET_COUNTER(v_vnodepgsin);
497 		GET_COUNTER(v_vnodepgsout);
498 		GET_COUNTER(v_intrans);
499 		GET_COUNTER(v_tfree);
500 		GET_COUNTER(v_forks);
501 		GET_COUNTER(v_vforks);
502 		GET_COUNTER(v_rforks);
503 		GET_COUNTER(v_kthreads);
504 		GET_COUNTER(v_forkpages);
505 		GET_COUNTER(v_vforkpages);
506 		GET_COUNTER(v_rforkpages);
507 		GET_COUNTER(v_kthreadpages);
508 #undef GET_COUNTER
509 	} else {
510 #define GET_VM_STATS(cat, name)	do {					\
511 	size = sizeof(vmmp->name);					\
512 	mysysctl("vm.stats." #cat "." #name, &vmmp->name, &size);	\
513 } while (0)
514 		/* sys */
515 		GET_VM_STATS(sys, v_swtch);
516 		GET_VM_STATS(sys, v_trap);
517 		GET_VM_STATS(sys, v_syscall);
518 		GET_VM_STATS(sys, v_intr);
519 		GET_VM_STATS(sys, v_soft);
520 
521 		/* vm */
522 		GET_VM_STATS(vm, v_vm_faults);
523 		GET_VM_STATS(vm, v_io_faults);
524 		GET_VM_STATS(vm, v_cow_faults);
525 		GET_VM_STATS(vm, v_cow_optim);
526 		GET_VM_STATS(vm, v_zfod);
527 		GET_VM_STATS(vm, v_ozfod);
528 		GET_VM_STATS(vm, v_swapin);
529 		GET_VM_STATS(vm, v_swapout);
530 		GET_VM_STATS(vm, v_swappgsin);
531 		GET_VM_STATS(vm, v_swappgsout);
532 		GET_VM_STATS(vm, v_vnodein);
533 		GET_VM_STATS(vm, v_vnodeout);
534 		GET_VM_STATS(vm, v_vnodepgsin);
535 		GET_VM_STATS(vm, v_vnodepgsout);
536 		GET_VM_STATS(vm, v_intrans);
537 		GET_VM_STATS(vm, v_reactivated);
538 		GET_VM_STATS(vm, v_pdwakeups);
539 		GET_VM_STATS(vm, v_pdpages);
540 		GET_VM_STATS(vm, v_pdshortfalls);
541 		GET_VM_STATS(vm, v_dfree);
542 		GET_VM_STATS(vm, v_pfree);
543 		GET_VM_STATS(vm, v_tfree);
544 		GET_VM_STATS(vm, v_page_size);
545 		GET_VM_STATS(vm, v_page_count);
546 		GET_VM_STATS(vm, v_free_reserved);
547 		GET_VM_STATS(vm, v_free_target);
548 		GET_VM_STATS(vm, v_free_min);
549 		GET_VM_STATS(vm, v_free_count);
550 		GET_VM_STATS(vm, v_wire_count);
551 		GET_VM_STATS(vm, v_user_wire_count);
552 		GET_VM_STATS(vm, v_nofree_count);
553 		GET_VM_STATS(vm, v_active_count);
554 		GET_VM_STATS(vm, v_inactive_target);
555 		GET_VM_STATS(vm, v_inactive_count);
556 		GET_VM_STATS(vm, v_laundry_count);
557 		GET_VM_STATS(vm, v_pageout_free_min);
558 		GET_VM_STATS(vm, v_interrupt_free_min);
559 		/*GET_VM_STATS(vm, v_free_severe);*/
560 		GET_VM_STATS(vm, v_forks);
561 		GET_VM_STATS(vm, v_vforks);
562 		GET_VM_STATS(vm, v_rforks);
563 		GET_VM_STATS(vm, v_kthreads);
564 		GET_VM_STATS(vm, v_forkpages);
565 		GET_VM_STATS(vm, v_vforkpages);
566 		GET_VM_STATS(vm, v_rforkpages);
567 		GET_VM_STATS(vm, v_kthreadpages);
568 #undef GET_VM_STATS
569 	}
570 }
571 
572 static void
fill_vmtotal(struct vmtotal * vmtp)573 fill_vmtotal(struct vmtotal *vmtp)
574 {
575 	size_t size;
576 
577 	if (kd != NULL) {
578 		/* XXX fill vmtp */
579 		xo_errx(1, "not implemented");
580 	} else {
581 		size = sizeof(*vmtp);
582 		mysysctl("vm.vmtotal", vmtp, &size);
583 		if (size != sizeof(*vmtp))
584 			xo_errx(1, "vm.total size mismatch");
585 	}
586 }
587 
588 /* Determine how many cpu columns, and what index they are in kern.cp_times */
589 static void
getcpuinfo(u_long * maskp,int * maxidp)590 getcpuinfo(u_long *maskp, int *maxidp)
591 {
592 	long *times;
593 	u_long mask;
594 	size_t size;
595 	int empty, i, j, maxcpu, maxid;
596 
597 	if (kd != NULL)
598 		xo_errx(1, "not implemented");
599 	mask = 0;
600 	size = sizeof(maxcpu);
601 	mysysctl("kern.smp.maxcpus", &maxcpu, &size);
602 	if (size != sizeof(maxcpu))
603 		xo_errx(1, "sysctl kern.smp.maxcpus");
604 	size = sizeof(long) * maxcpu * CPUSTATES;
605 	times = malloc(size);
606 	if (times == NULL)
607 		xo_err(1, "malloc %zd bytes", size);
608 	mysysctl("kern.cp_times", times, &size);
609 	maxid = (size / CPUSTATES / sizeof(long)) - 1;
610 	for (i = 0; i <= maxid; i++) {
611 		empty = 1;
612 		for (j = 0; empty && j < CPUSTATES; j++) {
613 			if (times[i * CPUSTATES + j] != 0)
614 				empty = 0;
615 		}
616 		if (!empty)
617 			mask |= (1ul << i);
618 	}
619 	if (maskp)
620 		*maskp = mask;
621 	if (maxidp)
622 		*maxidp = maxid;
623 }
624 
625 static void
dovmstat(unsigned int interval,int reps)626 dovmstat(unsigned int interval, int reps)
627 {
628 	struct clockinfo clockrate;
629 	struct vmtotal total;
630 	struct devinfo *tmp_dinfo;
631 	u_long cpumask;
632 	size_t size;
633 	time_t uptime, halfuptime;
634 	int maxid, rate_adj, retval;
635 
636 	uptime = getuptime() / 1000000000LL;
637 	halfuptime = uptime / 2;
638 	rate_adj = 1;
639 	maxid = 0;
640 	cpumask = 0;
641 
642 	/*
643 	 * If the user stops the program (control-Z) and then resumes it,
644 	 * print out the header again.
645 	 */
646 	(void)signal(SIGCONT, needhdr);
647 
648 	/*
649 	 * If our standard output is a tty, then install a SIGWINCH handler
650 	 * and set wresized so that our first iteration through the main
651 	 * vmstat loop will peek at the terminal's current rows to find out
652 	 * how many lines can fit in a screenful of output.
653 	 */
654 	if (isatty(fileno(stdout)) != 0) {
655 		wresized = 1;
656 		(void)signal(SIGWINCH, needresize);
657 	} else {
658 		wresized = 0;
659 		winlines = VMSTAT_DEFAULT_LINES;
660 	}
661 
662 	if (kd != NULL) {
663 		if (namelist[X_STATHZ].n_type != 0 &&
664 		    namelist[X_STATHZ].n_value != 0)
665 			kread(X_STATHZ, &hz, sizeof(hz));
666 		if (!hz)
667 			kread(X_HZ, &hz, sizeof(hz));
668 	} else {
669 		size = sizeof(clockrate);
670 		mysysctl("kern.clockrate", &clockrate, &size);
671 		if (size != sizeof(clockrate))
672 			xo_errx(1, "clockrate size mismatch");
673 		hz = clockrate.hz;
674 	}
675 
676 	if (Pflag) {
677 		getcpuinfo(&cpumask, &maxid);
678 		size_cp_times = sizeof(long) * (maxid + 1) * CPUSTATES;
679 		cur_cp_times = calloc(1, size_cp_times);
680 		last_cp_times = calloc(1, size_cp_times);
681 	}
682 	for (hdrcnt = 1;;) {
683 		if (!--hdrcnt)
684 			printhdr(maxid, cpumask);
685 		if (kd != NULL) {
686 			if (kvm_getcptime(kd, cur.cp_time) < 0)
687 				xo_errx(1, "kvm_getcptime: %s", kvm_geterr(kd));
688 		} else {
689 			size = sizeof(cur.cp_time);
690 			mysysctl("kern.cp_time", &cur.cp_time, &size);
691 			if (size != sizeof(cur.cp_time))
692 				xo_errx(1, "cp_time size mismatch");
693 		}
694 		if (Pflag) {
695 			size = size_cp_times;
696 			mysysctl("kern.cp_times", cur_cp_times, &size);
697 			if (size != size_cp_times)
698 				xo_errx(1, "cp_times mismatch");
699 		}
700 
701 		tmp_dinfo = last.dinfo;
702 		last.dinfo = cur.dinfo;
703 		cur.dinfo = tmp_dinfo;
704 		last.snap_time = cur.snap_time;
705 
706 		/*
707 		 * Here what we want to do is refresh our device stats.
708 		 * getdevs() returns 1 when the device list has changed.
709 		 * If the device list has changed, we want to go through
710 		 * the selection process again, in case a device that we
711 		 * were previously displaying has gone away.
712 		 */
713 		switch (devstat_getdevs(NULL, &cur)) {
714 		case -1:
715 			xo_errx(1, "%s", devstat_errbuf);
716 			break;
717 		case 1:
718 			num_devices = cur.dinfo->numdevs;
719 			generation = cur.dinfo->generation;
720 
721 			retval = devstat_selectdevs(&dev_select, &num_selected,
722 			    &num_selections, &select_generation,
723 			    generation, cur.dinfo->devices,
724 			    num_devices, matches, num_matches,
725 			    specified_devices,
726 			    num_devices_specified, select_mode,
727 			    maxshowdevs, 0);
728 			switch (retval) {
729 			case -1:
730 				xo_errx(1, "%s", devstat_errbuf);
731 				break;
732 			case 1:
733 				printhdr(maxid, cpumask);
734 				break;
735 			default:
736 				break;
737 			}
738 			break;
739 		default:
740 			break;
741 		}
742 
743 		fill_vmmeter(&sum);
744 		fill_vmtotal(&total);
745 		xo_open_container("processes");
746 		xo_emit("{:runnable/%2d} {:waiting/%2ld} "
747 		    "{:swapped-out/%2ld}", total.t_rq - 1, total.t_dw +
748 		    total.t_pw, total.t_sw);
749 		xo_close_container("processes");
750 		xo_open_container("memory");
751 #define	rate(x)	(unsigned long)(((x) * rate_adj + halfuptime) / uptime)
752 		xo_emit(" {[:4}{h,hn-decimal:available-memory/%ju}{]:}",
753 		    (uintmax_t)total.t_avm * sum.v_page_size);
754 		xo_emit(" {[:4}{h,hn-decimal:free-memory/%ju}{]:}",
755 		    (uintmax_t)total.t_free * sum.v_page_size);
756 		xo_emit(" {[:4}{h,hn-decimal,hn-1000:total-page-faults/%lu}{]:} ",
757 		    rate(sum.v_vm_faults - osum.v_vm_faults));
758 		xo_close_container("memory");
759 
760 		xo_open_container("paging-rates");
761 		xo_emit("{:page-reactivated/%3lu} ",
762 		    rate(sum.v_reactivated - osum.v_reactivated));
763 		xo_emit("{:paged-in/%3lu} ",
764 		    rate(sum.v_swapin + sum.v_vnodein -
765 		    (osum.v_swapin + osum.v_vnodein)));
766 		xo_emit("{:paged-out/%3lu}",
767 		    rate(sum.v_swapout + sum.v_vnodeout -
768 		    (osum.v_swapout + osum.v_vnodeout)));
769 		xo_emit(" {[:4}{h,hn-decimal,hn-1000:freed/%lu}{]:}",
770 		    rate(sum.v_tfree - osum.v_tfree));
771 		xo_emit(" {[:4}{h,hn-decimal,hn-1000:scanned/%lu}{]:}",
772 		    rate(sum.v_pdpages - osum.v_pdpages));
773 		xo_close_container("paging-rates");
774 
775 		devstats();
776 		xo_open_container("fault-rates");
777 		xo_emit(" {[:4}{h,hn-decimal,hn-1000:interrupts/%lu}{]:}"
778 		    " {[:4}{h,hn-decimal,hn-1000:system-calls/%lu}{]:}"
779 		    " {[:4}{h,hn-decimal,hn-1000:context-switches/%lu}{]:}",
780 		    rate(sum.v_intr - osum.v_intr),
781 		    rate(sum.v_syscall - osum.v_syscall),
782 		    rate(sum.v_swtch - osum.v_swtch));
783 		xo_close_container("fault-rates");
784 		if (Pflag)
785 			pcpustats(cpumask, maxid);
786 		else
787 			cpustats();
788 		xo_emit("\n");
789 		if (xo_flush() < 0)
790 			xo_err(EXIT_FAILURE, "stdout");
791 		if (reps >= 0 && --reps <= 0)
792 			break;
793 		osum = sum;
794 		uptime = interval;
795 		rate_adj = 1000;
796 		/*
797 		 * We round upward to avoid losing low-frequency events
798 		 * (i.e., >= 1 per interval but < 1 per millisecond).
799 		 */
800 		if (interval != 1)
801 			halfuptime = (uptime + 1) / 2;
802 		else
803 			halfuptime = 0;
804 		(void)usleep(interval * 1000);
805 	}
806 }
807 
808 static void
printhdr(int maxid,u_long cpumask)809 printhdr(int maxid, u_long cpumask)
810 {
811 	int i, num_shown;
812 
813 	num_shown = MIN(num_selected, maxshowdevs);
814 	xo_emit(" {T:procs}    {T:memory}    {T:/page%*s}", 19, "");
815 	if (num_shown > 1)
816 		xo_emit("   {T:/disks %*s}  ", num_shown * 5 - 7, "");
817 	else if (num_shown == 1)
818 		xo_emit("   {T:disks} ");
819 	xo_emit(" {T:faults}      ");
820 	if (Pflag) {
821 		for (i = 0; i <= maxid; i++) {
822 			if (cpumask & (1ul << i))
823 				xo_emit("  {T:/cpu%d}   ", i);
824 		}
825 		xo_emit("\n");
826 	} else
827 		xo_emit(" {T:cpu}\n");
828 	xo_emit(" {T:r}  {T:b}  {T:w}  {T:avm}  {T:fre}  {T:flt}  {T:re}"
829 	    "  {T:pi}  {T:po}   {T:fr}   {T:sr} ");
830 	for (i = 0; i < num_devices; i++)
831 		if ((dev_select[i].selected) &&
832 		    (dev_select[i].selected <= maxshowdevs))
833 			xo_emit("{T:/%3.3s%d} ", dev_select[i].device_name,
834 			    dev_select[i].unit_number);
835 	xo_emit("  {T:in}   {T:sy}   {T:cs}");
836 	if (Pflag) {
837 		for (i = 0; i <= maxid; i++) {
838 			if (cpumask & (1ul << i))
839 				xo_emit(" {T:us} {T:sy} {T:id}");
840 		}
841 		xo_emit("\n");
842 	} else
843 		xo_emit(" {T:us} {T:sy} {T:id}\n");
844 	if (wresized != 0)
845 		doresize();
846 	hdrcnt = winlines;
847 }
848 
849 /*
850  * Force a header to be prepended to the next output.
851  */
852 static void
needhdr(int dummy __unused)853 needhdr(int dummy __unused)
854 {
855 
856 	hdrcnt = 1;
857 }
858 
859 /*
860  * When the terminal is resized, force an update of the maximum number of rows
861  * printed between each header repetition.  Then force a new header to be
862  * prepended to the next output.
863  */
864 void
needresize(int signo __unused)865 needresize(int signo __unused)
866 {
867 
868 	wresized = 1;
869 	hdrcnt = 1;
870 }
871 
872 /*
873  * Update the global `winlines' count of terminal rows.
874  */
875 void
doresize(void)876 doresize(void)
877 {
878 	struct winsize w;
879 	int status;
880 
881 	for (;;) {
882 		status = ioctl(fileno(stdout), TIOCGWINSZ, &w);
883 		if (status == -1 && errno == EINTR)
884 			continue;
885 		else if (status == -1)
886 			xo_err(1, "ioctl");
887 		if (w.ws_row > 3)
888 			winlines = w.ws_row - 3;
889 		else
890 			winlines = VMSTAT_DEFAULT_LINES;
891 		break;
892 	}
893 
894 	/*
895 	 * Inhibit doresize() calls until we are rescheduled by SIGWINCH.
896 	 */
897 	wresized = 0;
898 }
899 
900 static long
pct(long top,long bot)901 pct(long top, long bot)
902 {
903 	long ans;
904 
905 	if (bot == 0)
906 		return(0);
907 	ans = (quad_t)top * 100 / bot;
908 	return (ans);
909 }
910 
911 #define	PCT(top, bot) pct((long)(top), (long)(bot))
912 
913 static void
dosum(void)914 dosum(void)
915 {
916 	struct nchstats lnchstats;
917 	size_t size;
918 	long nchtotal;
919 
920 	fill_vmmeter(&sum);
921 	xo_open_container("summary-statistics");
922 	xo_emit("{:context-switches/%9u} {N:cpu context switches}\n",
923 	    sum.v_swtch);
924 	xo_emit("{:interrupts/%9u} {N:device interrupts}\n",
925 	    sum.v_intr);
926 	xo_emit("{:software-interrupts/%9u} {N:software interrupts}\n",
927 	    sum.v_soft);
928 	xo_emit("{:traps/%9u} {N:traps}\n", sum.v_trap);
929 	xo_emit("{:system-calls/%9u} {N:system calls}\n",
930 	    sum.v_syscall);
931 	xo_emit("{:kernel-threads/%9u} {N:kernel threads created}\n",
932 	    sum.v_kthreads);
933 	xo_emit("{:forks/%9u} {N: fork() calls}\n", sum.v_forks);
934 	xo_emit("{:vforks/%9u} {N:vfork() calls}\n",
935 	    sum.v_vforks);
936 	xo_emit("{:rforks/%9u} {N:rfork() calls}\n",
937 	    sum.v_rforks);
938 	xo_emit("{:swap-ins/%9u} {N:swap pager pageins}\n",
939 	    sum.v_swapin);
940 	xo_emit("{:swap-in-pages/%9u} {N:swap pager pages paged in}\n",
941 	    sum.v_swappgsin);
942 	xo_emit("{:swap-outs/%9u} {N:swap pager pageouts}\n",
943 	    sum.v_swapout);
944 	xo_emit("{:swap-out-pages/%9u} {N:swap pager pages paged out}\n",
945 	    sum.v_swappgsout);
946 	xo_emit("{:vnode-page-ins/%9u} {N:vnode pager pageins}\n",
947 	    sum.v_vnodein);
948 	xo_emit("{:vnode-page-in-pages/%9u} {N:vnode pager pages paged in}\n",
949 	    sum.v_vnodepgsin);
950 	xo_emit("{:vnode-page-outs/%9u} {N:vnode pager pageouts}\n",
951 	    sum.v_vnodeout);
952 	xo_emit("{:vnode-page-out-pages/%9u} {N:vnode pager pages paged out}\n",
953 	    sum.v_vnodepgsout);
954 	xo_emit("{:page-daemon-wakeups/%9u} {N:page daemon wakeups}\n",
955 	    sum.v_pdwakeups);
956 	xo_emit("{:page-daemon-pages/%9u} {N:pages examined by the page "
957 	    "daemon}\n", sum.v_pdpages);
958 	xo_emit("{:page-reclamation-shortfalls/%9u} {N:clean page reclamation "
959 	    "shortfalls}\n", sum.v_pdshortfalls);
960 	xo_emit("{:reactivated/%9u} {N:pages reactivated by the page daemon}\n",
961 	    sum.v_reactivated);
962 	xo_emit("{:copy-on-write-faults/%9u} {N:copy-on-write faults}\n",
963 	    sum.v_cow_faults);
964 	xo_emit("{:copy-on-write-optimized-faults/%9u} {N:copy-on-write "
965 	    "optimized faults}\n", sum.v_cow_optim);
966 	xo_emit("{:zero-fill-pages/%9u} {N:zero fill pages zeroed}\n",
967 	    sum.v_zfod);
968 	xo_emit("{:zero-fill-prezeroed/%9u} {N:zero fill pages prezeroed}\n",
969 	    sum.v_ozfod);
970 	xo_emit("{:intransit-blocking/%9u} {N:intransit blocking page faults}\n",
971 	    sum.v_intrans);
972 	xo_emit("{:total-faults/%9u} {N:total VM faults taken}\n",
973 	    sum.v_vm_faults);
974 	xo_emit("{:faults-requiring-io/%9u} {N:page faults requiring I\\/O}\n",
975 	    sum.v_io_faults);
976 	xo_emit("{:faults-from-thread-creation/%9u} {N:pages affected by "
977 	    "kernel thread creation}\n", sum.v_kthreadpages);
978 	xo_emit("{:faults-from-fork/%9u} {N:pages affected by  fork}()\n",
979 	    sum.v_forkpages);
980 	xo_emit("{:faults-from-vfork/%9u} {N:pages affected by vfork}()\n",
981 	    sum.v_vforkpages);
982 	xo_emit("{:pages-rfork/%9u} {N:pages affected by rfork}()\n",
983 	    sum.v_rforkpages);
984 	xo_emit("{:pages-freed/%9u} {N:pages freed}\n",
985 	    sum.v_tfree);
986 	xo_emit("{:pages-freed-by-daemon/%9u} {N:pages freed by daemon}\n",
987 	    sum.v_dfree);
988 	xo_emit("{:pages-freed-on-exit/%9u} {N:pages freed by exiting processes}\n",
989 	    sum.v_pfree);
990 	xo_emit("{:active-pages/%9u} {N:pages active}\n",
991 	    sum.v_active_count);
992 	xo_emit("{:inactive-pages/%9u} {N:pages inactive}\n",
993 	    sum.v_inactive_count);
994 	xo_emit("{:laundry-pages/%9u} {N:pages in the laundry queue}\n",
995 	    sum.v_laundry_count);
996 	xo_emit("{:wired-pages/%9u} {N:pages wired down}\n",
997 	    sum.v_wire_count);
998 	xo_emit("{:virtual-user-wired-pages/%9lu} {N:virtual user pages wired "
999 	    "down}\n", sum.v_user_wire_count);
1000 	xo_emit("{:nofree-pages/%9u} {N:permanently allocated pages}\n",
1001 	    sum.v_nofree_count);
1002 	xo_emit("{:free-pages/%9u} {N:pages free}\n",
1003 	    sum.v_free_count);
1004 	xo_emit("{:bytes-per-page/%9u} {N:bytes per page}\n", sum.v_page_size);
1005 	if (kd != NULL) {
1006 		kread(X_NCHSTATS, &lnchstats, sizeof(lnchstats));
1007 	} else {
1008 		size = sizeof(lnchstats);
1009 		mysysctl("vfs.cache.nchstats", &lnchstats, &size);
1010 		if (size != sizeof(lnchstats))
1011 			xo_errx(1, "vfs.cache.nchstats size mismatch");
1012 	}
1013 	nchtotal = lnchstats.ncs_goodhits + lnchstats.ncs_neghits +
1014 	    lnchstats.ncs_badhits + lnchstats.ncs_falsehits +
1015 	    lnchstats.ncs_miss + lnchstats.ncs_long;
1016 	xo_emit("{:total-name-lookups/%9ld} {N:total name lookups}\n",
1017 	    nchtotal);
1018 	xo_emit("{P:/%9s} {N:cache hits} "
1019 	    "({:positive-cache-hits/%ld}% pos + "
1020 	    "{:negative-cache-hits/%ld}% {N:neg}) "
1021 	    "system {:cache-hit-percent/%ld}% per-directory\n",
1022 	    "", PCT(lnchstats.ncs_goodhits, nchtotal),
1023 	    PCT(lnchstats.ncs_neghits, nchtotal),
1024 	    PCT(lnchstats.ncs_pass2, nchtotal));
1025 	xo_emit("{P:/%9s} {L:deletions} {:deletions/%ld}%, "
1026 	    "{L:falsehits} {:false-hits/%ld}%, "
1027 	    "{L:toolong} {:too-long/%ld}%\n", "",
1028 	    PCT(lnchstats.ncs_badhits, nchtotal),
1029 	    PCT(lnchstats.ncs_falsehits, nchtotal),
1030 	    PCT(lnchstats.ncs_long, nchtotal));
1031 	xo_close_container("summary-statistics");
1032 }
1033 
1034 static void
doforkst(void)1035 doforkst(void)
1036 {
1037 
1038 	fill_vmmeter(&sum);
1039 	xo_open_container("fork-statistics");
1040 	xo_emit("{:fork/%u} {N:forks}, {:fork-pages/%u} {N:pages}, "
1041 	    "{L:average} {:fork-average/%.2f}\n",
1042 	    sum.v_forks, sum.v_forkpages,
1043 	    sum.v_forks == 0 ? 0.0 :
1044 	    (double)sum.v_forkpages / sum.v_forks);
1045 	xo_emit("{:vfork/%u} {N:vforks}, {:vfork-pages/%u} {N:pages}, "
1046 	    "{L:average} {:vfork-average/%.2f}\n",
1047 	    sum.v_vforks, sum.v_vforkpages,
1048 	    sum.v_vforks == 0 ? 0.0 :
1049 	    (double)sum.v_vforkpages / sum.v_vforks);
1050 	xo_emit("{:rfork/%u} {N:rforks}, {:rfork-pages/%u} {N:pages}, "
1051 	    "{L:average} {:rfork-average/%.2f}\n",
1052 	    sum.v_rforks, sum.v_rforkpages,
1053 	    sum.v_rforks == 0 ? 0.0 :
1054 	    (double)sum.v_rforkpages / sum.v_rforks);
1055 	xo_close_container("fork-statistics");
1056 }
1057 
1058 static void
devstats(void)1059 devstats(void)
1060 {
1061 	long double busy_seconds, transfers_per_second;
1062 	long tmp;
1063 	int di, dn, state;
1064 
1065 	for (state = 0; state < CPUSTATES; ++state) {
1066 		tmp = cur.cp_time[state];
1067 		cur.cp_time[state] -= last.cp_time[state];
1068 		last.cp_time[state] = tmp;
1069 	}
1070 
1071 	busy_seconds = cur.snap_time - last.snap_time;
1072 
1073 	xo_open_list("device");
1074 	for (dn = 0; dn < num_devices; dn++) {
1075 		if (dev_select[dn].selected == 0 ||
1076 		    dev_select[dn].selected > maxshowdevs)
1077 			continue;
1078 
1079 		di = dev_select[dn].position;
1080 
1081 		if (devstat_compute_statistics(&cur.dinfo->devices[di],
1082 		    &last.dinfo->devices[di], busy_seconds,
1083 		    DSM_TRANSFERS_PER_SECOND, &transfers_per_second,
1084 		    DSM_NONE) != 0)
1085 			xo_errx(1, "%s", devstat_errbuf);
1086 
1087 		xo_open_instance("device");
1088 		xo_emit("{ekq:name/%s%d}",
1089 		    dev_select[dn].device_name,
1090 		    dev_select[dn].unit_number);
1091 		xo_emit("{[:5}{h,hn-decimal,hn-1000:transfers/%ju}{]:}",
1092 		    (uintmax_t)transfers_per_second);
1093 		xo_close_instance("device");
1094 	}
1095 	xo_close_list("device");
1096 }
1097 
1098 static void
percent(const char * name,long pctv,int * over)1099 percent(const char *name, long pctv, int *over)
1100 {
1101 	char fmt[64];
1102 
1103 	snprintf(fmt, sizeof(fmt), " {:%s/%%%uld/%%ld}", name,
1104 	    (*over && pctv <= 9) ? 1 : 2);
1105 	xo_emit(fmt, pctv);
1106 	if (*over && pctv <= 9)
1107 		(*over)--;
1108 	else if (pctv >= 100)
1109 		(*over)++;
1110 }
1111 
1112 static void
cpustats(void)1113 cpustats(void)
1114 {
1115 	long total;
1116 	int state, over;
1117 
1118 	total = 0;
1119 	for (state = 0; state < CPUSTATES; ++state)
1120 		total += cur.cp_time[state];
1121 	if (total == 0)
1122 		total = 1;
1123 	over = 0;
1124 	xo_open_container("cpu-statistics");
1125 	percent("user", 100LL * (cur.cp_time[CP_USER] + cur.cp_time[CP_NICE]) /
1126 	    total, &over);
1127 	percent("system", 100LL * (cur.cp_time[CP_SYS] + cur.cp_time[CP_INTR]) /
1128 	    total, &over);
1129 	percent("idle", 100LL * cur.cp_time[CP_IDLE] / total, &over);
1130 	xo_close_container("cpu-statistics");
1131 }
1132 
1133 static void
pcpustats(u_long cpumask,int maxid)1134 pcpustats(u_long cpumask, int maxid)
1135 {
1136 	long tmp, total;
1137 	int i, state, over;
1138 
1139 	/* devstats does this for cp_time */
1140 	for (i = 0; i <= maxid; i++) {
1141 		if ((cpumask & (1ul << i)) == 0)
1142 			continue;
1143 		for (state = 0; state < CPUSTATES; ++state) {
1144 			tmp = cur_cp_times[i * CPUSTATES + state];
1145 			cur_cp_times[i * CPUSTATES + state] -= last_cp_times[i *
1146 			    CPUSTATES + state];
1147 			last_cp_times[i * CPUSTATES + state] = tmp;
1148 		}
1149 	}
1150 
1151 	over = 0;
1152 	xo_open_list("cpu");
1153 	for (i = 0; i <= maxid; i++) {
1154 		if ((cpumask & (1ul << i)) == 0)
1155 			continue;
1156 		xo_open_instance("cpu");
1157 		xo_emit("{ke:name/%d}", i);
1158 		total = 0;
1159 		for (state = 0; state < CPUSTATES; ++state)
1160 			total += cur_cp_times[i * CPUSTATES + state];
1161 		if (total == 0)
1162 			total = 1;
1163 		percent("user",
1164 		    100LL * (cur_cp_times[i * CPUSTATES + CP_USER] +
1165 		    cur_cp_times[i * CPUSTATES + CP_NICE]) / total, &over);
1166 		percent("system",
1167 		    100LL * (cur_cp_times[i * CPUSTATES + CP_SYS] +
1168 		    cur_cp_times[i * CPUSTATES + CP_INTR]) / total, &over);
1169 		percent("idle",
1170 		    100LL * cur_cp_times[i * CPUSTATES + CP_IDLE] / total,
1171 		    &over);
1172 		xo_close_instance("cpu");
1173 	}
1174 	xo_close_list("cpu");
1175 }
1176 
1177 static unsigned int
read_intrcnts(unsigned long ** intrcnts)1178 read_intrcnts(unsigned long **intrcnts)
1179 {
1180 	size_t intrcntlen;
1181 	uintptr_t kaddr;
1182 
1183 	if (kd != NULL) {
1184 		kread(X_SINTRCNT, &intrcntlen, sizeof(intrcntlen));
1185 		if ((*intrcnts = malloc(intrcntlen)) == NULL)
1186 			xo_err(1, "malloc()");
1187 		if (namelist[X_NINTRCNT].n_type == 0)
1188 			kread(X_INTRCNT, *intrcnts, intrcntlen);
1189 		else {
1190 			kread(X_INTRCNT, &kaddr, sizeof(kaddr));
1191 			kreadptr(kaddr, *intrcnts, intrcntlen);
1192 		}
1193 	} else {
1194 		for (*intrcnts = NULL, intrcntlen = 1024; ; intrcntlen *= 2) {
1195 			*intrcnts = reallocf(*intrcnts, intrcntlen);
1196 			if (*intrcnts == NULL)
1197 				xo_err(1, "reallocf()");
1198 			if (mysysctl("hw.intrcnt", *intrcnts, &intrcntlen) == 0)
1199 				break;
1200 		}
1201 	}
1202 
1203 	return (intrcntlen / sizeof(unsigned long));
1204 }
1205 
1206 static void
print_intrcnts(unsigned long * intrcnts,unsigned long * old_intrcnts,char * intrnames,unsigned int nintr,size_t istrnamlen,long long period_ms)1207 print_intrcnts(unsigned long *intrcnts, unsigned long *old_intrcnts,
1208     char *intrnames, unsigned int nintr, size_t istrnamlen, long long period_ms)
1209 {
1210 	uint64_t inttotal, old_inttotal, total_count, total_rate;
1211 	unsigned long count, rate;
1212 	unsigned int i;
1213 
1214 	inttotal = 0;
1215 	old_inttotal = 0;
1216 	xo_open_list("interrupt");
1217 	for (i = 0; i < nintr; i++) {
1218 		if (intrnames[0] != '\0' && (*intrcnts != 0 || aflag)) {
1219 			count = *intrcnts - *old_intrcnts;
1220 			rate = ((uint64_t)count * 1000 + period_ms / 2) / period_ms;
1221 			xo_open_instance("interrupt");
1222 			xo_emit("{d:name/%-*s}{ket:name/%s} "
1223 			    "{:total/%20lu} {:rate/%10lu}\n",
1224 			    (int)istrnamlen, intrnames, intrnames, count, rate);
1225 			xo_close_instance("interrupt");
1226 		}
1227 		intrnames += strlen(intrnames) + 1;
1228 		inttotal += *intrcnts++;
1229 		old_inttotal += *old_intrcnts++;
1230 	}
1231 	total_count = inttotal - old_inttotal;
1232 	total_rate = (total_count * 1000 + period_ms / 2) / period_ms;
1233 	xo_close_list("interrupt");
1234 	xo_emit("{L:/%-*s} {:total-interrupts/%20ju} "
1235 	    "{:total-rate/%10ju}\n", (int)istrnamlen,
1236 	    "Total", (uintmax_t)total_count, (uintmax_t)total_rate);
1237 }
1238 
1239 static void
dointr(unsigned int interval,int reps)1240 dointr(unsigned int interval, int reps)
1241 {
1242 	unsigned long *intrcnts, *old_intrcnts;
1243 	char *intrname, *intrnames;
1244 	long long period_ms, old_uptime, uptime;
1245 	size_t clen, inamlen, istrnamlen;
1246 	uintptr_t kaddr;
1247 	unsigned int nintr;
1248 
1249 	old_intrcnts = NULL;
1250 	uptime = getuptime();
1251 
1252 	/* Get the names of each interrupt source */
1253 	if (kd != NULL) {
1254 		kread(X_SINTRNAMES, &inamlen, sizeof(inamlen));
1255 		if ((intrnames = malloc(inamlen)) == NULL)
1256 			xo_err(1, "malloc()");
1257 		if (namelist[X_NINTRCNT].n_type == 0)
1258 			kread(X_INTRNAMES, intrnames, inamlen);
1259 		else {
1260 			kread(X_INTRNAMES, &kaddr, sizeof(kaddr));
1261 			kreadptr(kaddr, intrnames, inamlen);
1262 		}
1263 	} else {
1264 		for (intrnames = NULL, inamlen = 1024; ; inamlen *= 2) {
1265 			if ((intrnames = reallocf(intrnames, inamlen)) == NULL)
1266 				xo_err(1, "reallocf()");
1267 			if (mysysctl("hw.intrnames", intrnames, &inamlen) == 0)
1268 				break;
1269 		}
1270 	}
1271 
1272 	/* Determine the length of the longest interrupt name */
1273 	intrname = intrnames;
1274 	istrnamlen = strlen("interrupt");
1275 	while (intrname < intrnames + inamlen) {
1276 		clen = strlen(intrname);
1277 		if (clen > istrnamlen)
1278 			istrnamlen = clen;
1279 		intrname += strlen(intrname) + 1;
1280 	}
1281 	xo_emit("{T:/%-*s} {T:/%20s} {T:/%10s}\n",
1282 	    (int)istrnamlen, "interrupt", "total", "rate");
1283 
1284 	/*
1285 	 * Loop reps times printing differential interrupt counts.  If reps is
1286 	 * zero, then run just once, printing total counts
1287 	 */
1288 	xo_open_container("interrupt-statistics");
1289 
1290 	period_ms = uptime / 1000000;
1291 	while(1) {
1292 		nintr = read_intrcnts(&intrcnts);
1293 		/*
1294 		 * Initialize old_intrcnts to 0 for the first pass, so
1295 		 * print_intrcnts will print total interrupts since boot
1296 		 */
1297 		if (old_intrcnts == NULL) {
1298 			old_intrcnts = calloc(nintr, sizeof(unsigned long));
1299 			if (old_intrcnts == NULL)
1300 				xo_err(1, "calloc()");
1301 		}
1302 
1303 		print_intrcnts(intrcnts, old_intrcnts, intrnames, nintr,
1304 		    istrnamlen, period_ms);
1305 		if (xo_flush() < 0)
1306 			xo_err(EXIT_FAILURE, "stdout");
1307 
1308 		free(old_intrcnts);
1309 		old_intrcnts = intrcnts;
1310 		if (reps >= 0 && --reps <= 0)
1311 			break;
1312 		usleep(interval * 1000);
1313 		old_uptime = uptime;
1314 		uptime = getuptime();
1315 		period_ms = (uptime - old_uptime) / 1000000;
1316 	}
1317 
1318 	xo_close_container("interrupt-statistics");
1319 }
1320 
1321 static void
domemstat_malloc(void)1322 domemstat_malloc(void)
1323 {
1324 	struct memory_type_list *mtlp;
1325 	struct memory_type *mtp;
1326 	size_t i, zones;
1327 	int error, first;
1328 
1329 	mtlp = memstat_mtl_alloc();
1330 	if (mtlp == NULL) {
1331 		xo_warn("memstat_mtl_alloc");
1332 		return;
1333 	}
1334 	if (kd == NULL) {
1335 		if (memstat_sysctl_malloc(mtlp, 0) < 0) {
1336 			xo_warnx("memstat_sysctl_malloc: %s",
1337 			    memstat_strerror(memstat_mtl_geterror(mtlp)));
1338 			return;
1339 		}
1340 	} else {
1341 		if (memstat_kvm_malloc(mtlp, kd) < 0) {
1342 			error = memstat_mtl_geterror(mtlp);
1343 			if (error == MEMSTAT_ERROR_KVM)
1344 				xo_warnx("memstat_kvm_malloc: %s",
1345 				    kvm_geterr(kd));
1346 			else
1347 				xo_warnx("memstat_kvm_malloc: %s",
1348 				    memstat_strerror(error));
1349 		}
1350 	}
1351 	xo_open_container("malloc-statistics");
1352 	xo_emit("{T:/%16s} {T:/%4s} {T:/%5s} {T:/%3s} {T:Size(s)}\n",
1353 	    "Type", "Use", "Memory", "Req");
1354 	xo_open_list("memory");
1355 	zones = memstat_malloc_zone_get_count();
1356 	for (mtp = memstat_mtl_first(mtlp); mtp != NULL;
1357 	    mtp = memstat_mtl_next(mtp)) {
1358 		if (memstat_get_numallocs(mtp) == 0 &&
1359 		    memstat_get_count(mtp) == 0)
1360 			continue;
1361 		xo_open_instance("memory");
1362 		xo_emit("{k:type/%16s/%s} "
1363 		    "{[:4}{h,hn-decimal,hn-1000:in-use/%ju}{]:} "
1364 		    "{[:5}{h,hn-decimal:memory-use/%ju}{]:} "
1365 		    "{[:4}{h,hn-decimal,hn-1000:requests/%ju}{]:} ",
1366 		    memstat_get_name(mtp), (uintmax_t)memstat_get_count(mtp),
1367 		    (uintmax_t)memstat_get_bytes(mtp),
1368 		    (uintmax_t)memstat_get_numallocs(mtp));
1369 		first = 1;
1370 		xo_open_list("size");
1371 		for (i = 0; i < zones; i++) {
1372 			if (memstat_malloc_zone_used(mtp, i)) {
1373 				if (!first)
1374 					xo_emit(",");
1375 				xo_emit("{lh:size/%d}", memstat_malloc_zone_get_size(i));
1376 				first = 0;
1377 			}
1378 		}
1379 		xo_close_list("size");
1380 		xo_close_instance("memory");
1381 		xo_emit("\n");
1382 	}
1383 	xo_close_list("memory");
1384 	xo_close_container("malloc-statistics");
1385 	memstat_mtl_free(mtlp);
1386 }
1387 
1388 static void
domemstat_zone(void)1389 domemstat_zone(void)
1390 {
1391 	struct memory_type_list *mtlp;
1392 	struct memory_type *mtp;
1393 	int error, len;
1394 
1395 	mtlp = memstat_mtl_alloc();
1396 	if (mtlp == NULL) {
1397 		xo_warn("memstat_mtl_alloc");
1398 		return;
1399 	}
1400 	if (kd == NULL) {
1401 		if (memstat_sysctl_uma(mtlp, 0) < 0) {
1402 			xo_warnx("memstat_sysctl_uma: %s",
1403 			    memstat_strerror(memstat_mtl_geterror(mtlp)));
1404 			return;
1405 		}
1406 	} else {
1407 		if (memstat_kvm_uma(mtlp, kd) < 0) {
1408 			error = memstat_mtl_geterror(mtlp);
1409 			if (error == MEMSTAT_ERROR_KVM)
1410 				xo_warnx("memstat_kvm_uma: %s",
1411 				    kvm_geterr(kd));
1412 			else
1413 				xo_warnx("memstat_kvm_uma: %s",
1414 				    memstat_strerror(error));
1415 		}
1416 	}
1417 	xo_open_container("memory-zone-statistics");
1418 	xo_emit("{T:/%-19s} {T:/%7s} {T:/%7s} {T:/%8s} {T:/%8s} {T:/%8s} "
1419 	    "{T:/%4s} {T:/%4s} {T:/%4s}\n", "ITEM", "SIZE",
1420 	    "LIMIT", "USED", "FREE", "REQ", "FAIL", "SLEEP", "XDOM");
1421 	xo_open_list("zone");
1422 	for (mtp = memstat_mtl_first(mtlp); mtp != NULL;
1423 	    mtp = memstat_mtl_next(mtp)) {
1424 		len = strlen(memstat_get_name(mtp));
1425 		xo_open_instance("zone");
1426 		xo_emit("{k:name/%s}:{d:size/%*ju}{e:size/%ju},"
1427 		    "{:limit/%7ju},{:used/%8ju},"
1428 		    "{:free/%8ju},{:requests/%8ju},"
1429 		    "{:fail/%4ju},{:sleep/%4ju},{:xdomain/%4ju}\n",
1430 		    memstat_get_name(mtp), MAX(1, 26 - len),
1431 		    (uintmax_t)memstat_get_size(mtp),
1432 		    (uintmax_t)memstat_get_size(mtp),
1433 		    (uintmax_t)memstat_get_countlimit(mtp),
1434 		    (uintmax_t)memstat_get_count(mtp),
1435 		    (uintmax_t)memstat_get_free(mtp),
1436 		    (uintmax_t)memstat_get_numallocs(mtp),
1437 		    (uintmax_t)memstat_get_failures(mtp),
1438 		    (uintmax_t)memstat_get_sleeps(mtp),
1439 		    (uintmax_t)memstat_get_xdomain(mtp));
1440 		xo_close_instance("zone");
1441 	}
1442 	memstat_mtl_free(mtlp);
1443 	xo_close_list("zone");
1444 	xo_close_container("memory-zone-statistics");
1445 }
1446 
1447 static void
display_object(struct kinfo_vmobject * kvo)1448 display_object(struct kinfo_vmobject *kvo)
1449 {
1450 	const char *str;
1451 
1452 	xo_open_instance("object");
1453 	xo_emit("{:resident/%5ju} ", (uintmax_t)kvo->kvo_resident);
1454 	xo_emit("{:active/%5ju} ", (uintmax_t)kvo->kvo_active);
1455 	xo_emit("{:inactive/%5ju} ", (uintmax_t)kvo->kvo_inactive);
1456 	xo_emit("{:laundry/%5ju} ", (uintmax_t)kvo->kvo_laundry);
1457 	xo_emit("{:wired/%5ju} ", (uintmax_t)kvo->kvo_wired);
1458 	xo_emit("{:refcount/%3d} ", kvo->kvo_ref_count);
1459 	xo_emit("{:shadowcount/%3d} ", kvo->kvo_shadow_count);
1460 
1461 #define	MEMATTR_STR(type, val)					\
1462 	if (kvo->kvo_memattr == (type)) {			\
1463 		str = (val);					\
1464 	} else
1465 #ifdef VM_MEMATTR_UNCACHEABLE
1466 	MEMATTR_STR(VM_MEMATTR_UNCACHEABLE, "UC")
1467 #endif
1468 #ifdef VM_MEMATTR_WRITE_COMBINING
1469 	MEMATTR_STR(VM_MEMATTR_WRITE_COMBINING, "WC")
1470 #endif
1471 #ifdef VM_MEMATTR_WRITE_THROUGH
1472 	MEMATTR_STR(VM_MEMATTR_WRITE_THROUGH, "WT")
1473 #endif
1474 #ifdef VM_MEMATTR_WRITE_PROTECTED
1475 	MEMATTR_STR(VM_MEMATTR_WRITE_PROTECTED, "WP")
1476 #endif
1477 #ifdef VM_MEMATTR_WRITE_BACK
1478 	MEMATTR_STR(VM_MEMATTR_WRITE_BACK, "WB")
1479 #endif
1480 #ifdef VM_MEMATTR_WEAK_UNCACHEABLE
1481 	MEMATTR_STR(VM_MEMATTR_WEAK_UNCACHEABLE, "UC-")
1482 #endif
1483 #ifdef VM_MEMATTR_WB_WA
1484 	MEMATTR_STR(VM_MEMATTR_WB_WA, "WB")
1485 #endif
1486 #ifdef VM_MEMATTR_NOCACHE
1487 	MEMATTR_STR(VM_MEMATTR_NOCACHE, "NC")
1488 #endif
1489 #ifdef VM_MEMATTR_DEVICE
1490 	MEMATTR_STR(VM_MEMATTR_DEVICE, "DEV")
1491 #endif
1492 #ifdef VM_MEMATTR_DEVICE_NP
1493 	MEMATTR_STR(VM_MEMATTR_DEVICE, "NP")
1494 #endif
1495 #ifdef VM_MEMATTR_CACHEABLE
1496 	MEMATTR_STR(VM_MEMATTR_CACHEABLE, "C")
1497 #endif
1498 #ifdef VM_MEMATTR_PREFETCHABLE
1499 	MEMATTR_STR(VM_MEMATTR_PREFETCHABLE, "PRE")
1500 #endif
1501 	{
1502 		str = "??";
1503 	}
1504 #undef MEMATTR_STR
1505 	xo_emit("{:attribute/%-3s} ", str);
1506 	switch (kvo->kvo_type) {
1507 	case KVME_TYPE_NONE:
1508 		str = "--";
1509 		break;
1510 	case KVME_TYPE_DEFAULT:
1511 		str = "df";
1512 		break;
1513 	case KVME_TYPE_VNODE:
1514 		str = "vn";
1515 		break;
1516 	case KVME_TYPE_SWAP:
1517 		str = "sw";
1518 		break;
1519 	case KVME_TYPE_DEVICE:
1520 		str = "dv";
1521 		break;
1522 	case KVME_TYPE_PHYS:
1523 		str = "ph";
1524 		break;
1525 	case KVME_TYPE_DEAD:
1526 		str = "dd";
1527 		break;
1528 	case KVME_TYPE_SG:
1529 		str = "sg";
1530 		break;
1531 	case KVME_TYPE_MGTDEVICE:
1532 		str = "md";
1533 		break;
1534 	case KVME_TYPE_UNKNOWN:
1535 	default:
1536 		str = "??";
1537 		break;
1538 	}
1539 	xo_emit("{:type/%-2s} ", str);
1540 	if ((kvo->kvo_flags & KVMO_FLAG_SYSVSHM) != 0)
1541 		xo_emit("{:sysvshm/sysvshm(%ju:%u)} ",
1542 		    (uintmax_t)kvo->kvo_vn_fileid, kvo->kvo_vn_fsid_freebsd11);
1543 	if ((kvo->kvo_flags & KVMO_FLAG_POSIXSHM) != 0)
1544 		xo_emit("{:posixshm/posixshm@/posixshm}");
1545 	xo_emit("{:path/%-s}\n", kvo->kvo_path);
1546 	xo_close_instance("object");
1547 }
1548 
1549 static void
doobjstat(void)1550 doobjstat(void)
1551 {
1552 	struct kinfo_vmobject *kvo;
1553 	int cnt, i;
1554 
1555 	kvo = kinfo_getvmobject(&cnt);
1556 	if (kvo == NULL) {
1557 		xo_warn("Failed to fetch VM object list");
1558 		return;
1559 	}
1560 	xo_emit("{T:RES/%5s} {T:ACT/%5s} {T:INACT/%5s} {T:LAUND/%5s} "
1561 	    "{T:WIRED/%5s} {T:REF/%3s} {T:SHD/%3s} {T:CM/%2s} {T:TP/%3s} "
1562 	    "{T:PATH/%s}\n");
1563 	xo_open_list("object");
1564 	for (i = 0; i < cnt; i++)
1565 		display_object(&kvo[i]);
1566 	free(kvo);
1567 	xo_close_list("object");
1568 }
1569 
1570 /*
1571  * kread reads something from the kernel, given its nlist index.
1572  */
1573 static void
kreado(int nlx,void * addr,size_t size,size_t offset)1574 kreado(int nlx, void *addr, size_t size, size_t offset)
1575 {
1576 	const char *sym;
1577 
1578 	if (namelist[nlx].n_type == 0 || namelist[nlx].n_value == 0) {
1579 		sym = namelist[nlx].n_name;
1580 		if (*sym == '_')
1581 			++sym;
1582 		xo_errx(1, "symbol %s not defined", sym);
1583 	}
1584 	if ((size_t)kvm_read(kd, namelist[nlx].n_value + offset, addr,
1585 	    size) != size) {
1586 		sym = namelist[nlx].n_name;
1587 		if (*sym == '_')
1588 			++sym;
1589 		xo_errx(1, "%s: %s", sym, kvm_geterr(kd));
1590 	}
1591 }
1592 
1593 static void
kread(int nlx,void * addr,size_t size)1594 kread(int nlx, void *addr, size_t size)
1595 {
1596 
1597 	kreado(nlx, addr, size, 0);
1598 }
1599 
1600 static void
kreadptr(uintptr_t addr,void * buf,size_t size)1601 kreadptr(uintptr_t addr, void *buf, size_t size)
1602 {
1603 
1604 	if ((size_t)kvm_read(kd, addr, buf, size) != size)
1605 		xo_errx(1, "%s", kvm_geterr(kd));
1606 }
1607 
1608 static void __dead2
usage(void)1609 usage(void)
1610 {
1611 	xo_error("%s%s",
1612 	    "usage: vmstat [-afHhimoPsz] [-M core [-N system]] [-c count] [-n devs]\n",
1613 	    "              [-p type,if,pass] [-w wait] [disks] [wait [count]]\n");
1614 	if (xo_finish() < 0)
1615 		xo_err(EXIT_FAILURE, "stdout");
1616 	exit(EXIT_FAILURE);
1617 }
1618