vmstat.c revision 1.153 1 1.153 christos /* $NetBSD: vmstat.c,v 1.153 2006/10/17 15:13:08 christos Exp $ */
2 1.45 thorpej
3 1.45 thorpej /*-
4 1.87 lukem * Copyright (c) 1998, 2000, 2001 The NetBSD Foundation, Inc.
5 1.45 thorpej * All rights reserved.
6 1.45 thorpej *
7 1.87 lukem * This code is derived from software contributed to The NetBSD Foundation by:
8 1.87 lukem * - Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.87 lukem * NASA Ames Research Center.
10 1.87 lukem * - Simon Burge and Luke Mewburn of Wasabi Systems, Inc.
11 1.45 thorpej *
12 1.45 thorpej * Redistribution and use in source and binary forms, with or without
13 1.45 thorpej * modification, are permitted provided that the following conditions
14 1.45 thorpej * are met:
15 1.45 thorpej * 1. Redistributions of source code must retain the above copyright
16 1.45 thorpej * notice, this list of conditions and the following disclaimer.
17 1.45 thorpej * 2. Redistributions in binary form must reproduce the above copyright
18 1.45 thorpej * notice, this list of conditions and the following disclaimer in the
19 1.45 thorpej * documentation and/or other materials provided with the distribution.
20 1.45 thorpej * 3. All advertising materials mentioning features or use of this software
21 1.45 thorpej * must display the following acknowledgement:
22 1.45 thorpej * This product includes software developed by the NetBSD
23 1.45 thorpej * Foundation, Inc. and its contributors.
24 1.45 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
25 1.45 thorpej * contributors may be used to endorse or promote products derived
26 1.45 thorpej * from this software without specific prior written permission.
27 1.45 thorpej *
28 1.45 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
29 1.45 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
30 1.45 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
31 1.45 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
32 1.45 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
33 1.45 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
34 1.45 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
35 1.45 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
36 1.45 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
37 1.45 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38 1.45 thorpej * POSSIBILITY OF SUCH DAMAGE.
39 1.45 thorpej */
40 1.21 cgd
41 1.1 cgd /*
42 1.13 cgd * Copyright (c) 1980, 1986, 1991, 1993
43 1.13 cgd * The Regents of the University of California. All rights reserved.
44 1.1 cgd *
45 1.1 cgd * Redistribution and use in source and binary forms, with or without
46 1.1 cgd * modification, are permitted provided that the following conditions
47 1.1 cgd * are met:
48 1.1 cgd * 1. Redistributions of source code must retain the above copyright
49 1.1 cgd * notice, this list of conditions and the following disclaimer.
50 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
51 1.1 cgd * notice, this list of conditions and the following disclaimer in the
52 1.1 cgd * documentation and/or other materials provided with the distribution.
53 1.117 agc * 3. Neither the name of the University nor the names of its contributors
54 1.1 cgd * may be used to endorse or promote products derived from this software
55 1.1 cgd * without specific prior written permission.
56 1.1 cgd *
57 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
58 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
59 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
60 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
61 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
62 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
63 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
64 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
65 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
66 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
67 1.1 cgd * SUCH DAMAGE.
68 1.1 cgd */
69 1.1 cgd
70 1.38 mrg #include <sys/cdefs.h>
71 1.1 cgd #ifndef lint
72 1.38 mrg __COPYRIGHT("@(#) Copyright (c) 1980, 1986, 1991, 1993\n\
73 1.38 mrg The Regents of the University of California. All rights reserved.\n");
74 1.1 cgd #endif /* not lint */
75 1.1 cgd
76 1.1 cgd #ifndef lint
77 1.21 cgd #if 0
78 1.37 mrg static char sccsid[] = "@(#)vmstat.c 8.2 (Berkeley) 3/1/95";
79 1.21 cgd #else
80 1.153 christos __RCSID("$NetBSD: vmstat.c,v 1.153 2006/10/17 15:13:08 christos Exp $");
81 1.21 cgd #endif
82 1.1 cgd #endif /* not lint */
83 1.57 thorpej
84 1.57 thorpej #define __POOL_EXPOSE
85 1.1 cgd
86 1.1 cgd #include <sys/param.h>
87 1.87 lukem #include <sys/mount.h>
88 1.87 lukem #include <sys/uio.h>
89 1.87 lukem
90 1.87 lukem #include <sys/buf.h>
91 1.146 yamt #include <sys/evcnt.h>
92 1.87 lukem #include <sys/ioctl.h>
93 1.87 lukem #include <sys/malloc.h>
94 1.109 thorpej #include <sys/mallocvar.h>
95 1.1 cgd #include <sys/namei.h>
96 1.87 lukem #include <sys/pool.h>
97 1.87 lukem #include <sys/proc.h>
98 1.64 perry #include <sys/sched.h>
99 1.87 lukem #include <sys/socket.h>
100 1.13 cgd #include <sys/sysctl.h>
101 1.87 lukem #include <sys/time.h>
102 1.87 lukem #include <sys/user.h>
103 1.67 mrg
104 1.67 mrg #include <uvm/uvm_extern.h>
105 1.67 mrg #include <uvm/uvm_stat.h>
106 1.67 mrg
107 1.87 lukem #include <net/if.h>
108 1.87 lukem #include <netinet/in.h>
109 1.87 lukem #include <netinet/in_var.h>
110 1.87 lukem
111 1.87 lukem #include <ufs/ufs/inode.h>
112 1.87 lukem
113 1.87 lukem #include <nfs/rpcv2.h>
114 1.87 lukem #include <nfs/nfsproto.h>
115 1.87 lukem #include <nfs/nfsnode.h>
116 1.87 lukem
117 1.87 lukem #include <ctype.h>
118 1.45 thorpej #include <err.h>
119 1.87 lukem #include <errno.h>
120 1.55 kleink #include <fcntl.h>
121 1.87 lukem #include <kvm.h>
122 1.87 lukem #include <limits.h>
123 1.1 cgd #include <nlist.h>
124 1.87 lukem #undef n_hash
125 1.87 lukem #include <paths.h>
126 1.22 jtc #include <signal.h>
127 1.1 cgd #include <stdio.h>
128 1.87 lukem #include <stddef.h>
129 1.1 cgd #include <stdlib.h>
130 1.1 cgd #include <string.h>
131 1.87 lukem #include <time.h>
132 1.87 lukem #include <unistd.h>
133 1.104 mrg #include <util.h>
134 1.87 lukem
135 1.140 blymn #include "drvstats.h"
136 1.45 thorpej
137 1.90 lukem /*
138 1.90 lukem * General namelist
139 1.90 lukem */
140 1.87 lukem struct nlist namelist[] =
141 1.87 lukem {
142 1.65 itojun #define X_BOOTTIME 0
143 1.153 christos { .n_name = "_boottime" },
144 1.75 enami #define X_HZ 1
145 1.153 christos { .n_name = "_hz" },
146 1.75 enami #define X_STATHZ 2
147 1.153 christos { .n_name = "_stathz" },
148 1.75 enami #define X_NCHSTATS 3
149 1.153 christos { .n_name = "_nchstats" },
150 1.133 chs #define X_KMEMSTAT 4
151 1.153 christos { .n_name = "_kmemstatistics" },
152 1.133 chs #define X_KMEMBUCKETS 5
153 1.153 christos { .n_name = "_kmembuckets" },
154 1.133 chs #define X_ALLEVENTS 6
155 1.153 christos { .n_name = "_allevents" },
156 1.133 chs #define X_POOLHEAD 7
157 1.153 christos { .n_name = "_pool_head" },
158 1.133 chs #define X_UVMEXP 8
159 1.153 christos { .n_name = "_uvmexp" },
160 1.145 kardel #define X_TIME_SECOND 9
161 1.153 christos { .n_name = "_time_second" },
162 1.147 kardel #define X_TIME 10
163 1.153 christos { .n_name = "_time" },
164 1.147 kardel #define X_NL_SIZE 11
165 1.153 christos { .n_name = NULL },
166 1.90 lukem };
167 1.90 lukem
168 1.90 lukem /*
169 1.133 chs * Namelist for pre-evcnt interrupt counters.
170 1.133 chs */
171 1.133 chs struct nlist intrnl[] =
172 1.133 chs {
173 1.133 chs #define X_INTRNAMES 0
174 1.153 christos { .n_name = "_intrnames" },
175 1.133 chs #define X_EINTRNAMES 1
176 1.153 christos { .n_name = "_eintrnames" },
177 1.133 chs #define X_INTRCNT 2
178 1.153 christos { .n_name = "_intrcnt" },
179 1.133 chs #define X_EINTRCNT 3
180 1.153 christos { .n_name = "_eintrcnt" },
181 1.133 chs #define X_INTRNL_SIZE 4
182 1.153 christos { .n_name = NULL },
183 1.133 chs };
184 1.133 chs
185 1.133 chs
186 1.133 chs /*
187 1.90 lukem * Namelist for hash statistics
188 1.90 lukem */
189 1.90 lukem struct nlist hashnl[] =
190 1.90 lukem {
191 1.90 lukem #define X_NFSNODE 0
192 1.153 christos { .n_name = "_nfsnodehash" },
193 1.90 lukem #define X_NFSNODETBL 1
194 1.153 christos { .n_name = "_nfsnodehashtbl" },
195 1.90 lukem #define X_IHASH 2
196 1.153 christos { .n_name = "_ihash" },
197 1.90 lukem #define X_IHASHTBL 3
198 1.153 christos { .n_name = "_ihashtbl" },
199 1.90 lukem #define X_BUFHASH 4
200 1.153 christos { .n_name = "_bufhash" },
201 1.90 lukem #define X_BUFHASHTBL 5
202 1.153 christos { .n_name = "_bufhashtbl" },
203 1.122 junyoung #define X_UIHASH 6
204 1.153 christos { .n_name = "_uihash" },
205 1.122 junyoung #define X_UIHASHTBL 7
206 1.153 christos { .n_name = "_uihashtbl" },
207 1.122 junyoung #define X_IFADDRHASH 8
208 1.153 christos { .n_name = "_in_ifaddrhash" },
209 1.122 junyoung #define X_IFADDRHASHTBL 9
210 1.153 christos { .n_name = "_in_ifaddrhashtbl" },
211 1.122 junyoung #define X_NCHASH 10
212 1.153 christos { .n_name = "_nchash" },
213 1.122 junyoung #define X_NCHASHTBL 11
214 1.153 christos { .n_name = "_nchashtbl" },
215 1.122 junyoung #define X_NCVHASH 12
216 1.153 christos { .n_name = "_ncvhash" },
217 1.122 junyoung #define X_NCVHASHTBL 13
218 1.153 christos { .n_name = "_ncvhashtbl" },
219 1.122 junyoung #define X_HASHNL_SIZE 14 /* must be last */
220 1.153 christos { .n_name = NULL },
221 1.90 lukem };
222 1.87 lukem
223 1.90 lukem /*
224 1.90 lukem * Namelist for UVM histories
225 1.90 lukem */
226 1.90 lukem struct nlist histnl[] =
227 1.90 lukem {
228 1.153 christos { .n_name = "_uvm_histories" },
229 1.90 lukem #define X_UVM_HISTORIES 0
230 1.153 christos { .n_name = NULL },
231 1.1 cgd };
232 1.1 cgd
233 1.87 lukem
234 1.152 christos #define KILO 1024
235 1.90 lukem
236 1.41 mrg struct uvmexp uvmexp, ouvmexp;
237 1.73 simonb int ndrives;
238 1.1 cgd
239 1.1 cgd int winlines = 20;
240 1.1 cgd
241 1.13 cgd kvm_t *kd;
242 1.13 cgd
243 1.87 lukem #define FORKSTAT 1<<0
244 1.87 lukem #define INTRSTAT 1<<1
245 1.87 lukem #define MEMSTAT 1<<2
246 1.87 lukem #define SUMSTAT 1<<3
247 1.87 lukem #define EVCNTSTAT 1<<4
248 1.87 lukem #define VMSTAT 1<<5
249 1.87 lukem #define HISTLIST 1<<6
250 1.87 lukem #define HISTDUMP 1<<7
251 1.87 lukem #define HASHSTAT 1<<8
252 1.88 lukem #define HASHLIST 1<<9
253 1.130 he #define VMTOTAL 1<<10
254 1.1 cgd
255 1.151 yamt /*
256 1.151 yamt * Print single word. `ovflow' is number of characters didn't fit
257 1.151 yamt * on the last word. `fmt' is a format string to print this word.
258 1.151 yamt * It must contain asterisk for field width. `width' is a width
259 1.151 yamt * occupied by this word. `fixed' is a number of constant chars in
260 1.151 yamt * `fmt'. `val' is a value to be printed using format string `fmt'.
261 1.151 yamt */
262 1.151 yamt #define PRWORD(ovflw, fmt, width, fixed, val) do { \
263 1.151 yamt (ovflw) += printf((fmt), \
264 1.151 yamt (width) - (fixed) - (ovflw) > 0 ? \
265 1.151 yamt (width) - (fixed) - (ovflw) : 0, \
266 1.151 yamt (val)) - (width); \
267 1.151 yamt if ((ovflw) < 0) \
268 1.151 yamt (ovflw) = 0; \
269 1.151 yamt } while (/* CONSTCOND */0)
270 1.151 yamt
271 1.151 yamt void cpustats(int *);
272 1.87 lukem void deref_kptr(const void *, void *, size_t, const char *);
273 1.151 yamt void drvstats(int *);
274 1.73 simonb void doevcnt(int verbose);
275 1.88 lukem void dohashstat(int, int, const char *);
276 1.73 simonb void dointr(int verbose);
277 1.73 simonb void domem(void);
278 1.126 simonb void dopool(int, int);
279 1.96 enami void dopoolcache(struct pool *, int);
280 1.73 simonb void dosum(void);
281 1.103 mycroft void dovmstat(struct timespec *, int);
282 1.130 he void print_total_hdr(void);
283 1.130 he void dovmtotal(struct timespec *, int);
284 1.133 chs void kread(struct nlist *, int, void *, size_t);
285 1.147 kardel int kreadc(struct nlist *, int, void *, size_t);
286 1.73 simonb void needhdr(int);
287 1.73 simonb long getuptime(void);
288 1.73 simonb void printhdr(void);
289 1.73 simonb long pct(long, long);
290 1.73 simonb void usage(void);
291 1.73 simonb void doforkst(void);
292 1.73 simonb
293 1.73 simonb void hist_traverse(int, const char *);
294 1.73 simonb void hist_dodump(struct uvm_history *);
295 1.73 simonb
296 1.73 simonb int main(int, char **);
297 1.73 simonb char **choosedrives(char **);
298 1.38 mrg
299 1.29 thorpej /* Namelist and memory file names. */
300 1.29 thorpej char *nlistf, *memf;
301 1.29 thorpej
302 1.47 mrg /* allow old usage [vmstat 1] */
303 1.47 mrg #define BACKWARD_COMPATIBILITY
304 1.47 mrg
305 1.38 mrg int
306 1.75 enami main(int argc, char *argv[])
307 1.1 cgd {
308 1.126 simonb int c, todo, verbose, wide;
309 1.103 mycroft struct timespec interval;
310 1.1 cgd int reps;
311 1.75 enami char errbuf[_POSIX2_LINE_MAX];
312 1.75 enami gid_t egid = getegid();
313 1.88 lukem const char *histname, *hashname;
314 1.1 cgd
315 1.88 lukem histname = hashname = NULL;
316 1.48 mrg (void)setegid(getgid());
317 1.13 cgd memf = nlistf = NULL;
318 1.126 simonb reps = todo = verbose = wide = 0;
319 1.103 mycroft interval.tv_sec = 0;
320 1.103 mycroft interval.tv_nsec = 0;
321 1.130 he while ((c = getopt(argc, argv, "c:efh:HilLM:mN:stu:UvWw:")) != -1) {
322 1.1 cgd switch (c) {
323 1.1 cgd case 'c':
324 1.1 cgd reps = atoi(optarg);
325 1.1 cgd break;
326 1.66 cgd case 'e':
327 1.66 cgd todo |= EVCNTSTAT;
328 1.66 cgd break;
329 1.1 cgd case 'f':
330 1.1 cgd todo |= FORKSTAT;
331 1.1 cgd break;
332 1.45 thorpej case 'h':
333 1.88 lukem hashname = optarg;
334 1.88 lukem /* FALLTHROUGH */
335 1.88 lukem case 'H':
336 1.87 lukem todo |= HASHSTAT;
337 1.45 thorpej break;
338 1.1 cgd case 'i':
339 1.1 cgd todo |= INTRSTAT;
340 1.1 cgd break;
341 1.45 thorpej case 'l':
342 1.45 thorpej todo |= HISTLIST;
343 1.45 thorpej break;
344 1.88 lukem case 'L':
345 1.88 lukem todo |= HASHLIST;
346 1.88 lukem break;
347 1.1 cgd case 'M':
348 1.13 cgd memf = optarg;
349 1.1 cgd break;
350 1.1 cgd case 'm':
351 1.1 cgd todo |= MEMSTAT;
352 1.1 cgd break;
353 1.1 cgd case 'N':
354 1.13 cgd nlistf = optarg;
355 1.1 cgd break;
356 1.1 cgd case 's':
357 1.1 cgd todo |= SUMSTAT;
358 1.1 cgd break;
359 1.130 he case 't':
360 1.130 he todo |= VMTOTAL;
361 1.130 he break;
362 1.87 lukem case 'u':
363 1.87 lukem histname = optarg;
364 1.87 lukem /* FALLTHROUGH */
365 1.87 lukem case 'U':
366 1.87 lukem todo |= HISTDUMP;
367 1.87 lukem break;
368 1.66 cgd case 'v':
369 1.87 lukem verbose++;
370 1.66 cgd break;
371 1.126 simonb case 'W':
372 1.126 simonb wide++;
373 1.126 simonb break;
374 1.1 cgd case 'w':
375 1.103 mycroft interval.tv_sec = atol(optarg);
376 1.1 cgd break;
377 1.1 cgd case '?':
378 1.1 cgd default:
379 1.1 cgd usage();
380 1.1 cgd }
381 1.1 cgd }
382 1.1 cgd argc -= optind;
383 1.1 cgd argv += optind;
384 1.1 cgd
385 1.1 cgd if (todo == 0)
386 1.1 cgd todo = VMSTAT;
387 1.1 cgd
388 1.13 cgd /*
389 1.48 mrg * Discard setgid privileges. If not the running kernel, we toss
390 1.48 mrg * them away totally so that bad guys can't print interesting stuff
391 1.48 mrg * from kernel memory, otherwise switch back to kmem for the
392 1.48 mrg * duration of the kvm_openfiles() call.
393 1.13 cgd */
394 1.13 cgd if (nlistf != NULL || memf != NULL)
395 1.48 mrg (void)setgid(getgid());
396 1.48 mrg else
397 1.48 mrg (void)setegid(egid);
398 1.13 cgd
399 1.75 enami kd = kvm_openfiles(nlistf, memf, NULL, O_RDONLY, errbuf);
400 1.75 enami if (kd == NULL)
401 1.87 lukem errx(1, "kvm_openfiles: %s", errbuf);
402 1.48 mrg
403 1.95 simonb if (nlistf == NULL && memf == NULL)
404 1.95 simonb (void)setgid(getgid());
405 1.1 cgd
406 1.13 cgd if ((c = kvm_nlist(kd, namelist)) != 0) {
407 1.147 kardel int doexit = 0;
408 1.90 lukem if (c == -1)
409 1.90 lukem errx(1, "kvm_nlist: %s %s", "namelist", kvm_geterr(kd));
410 1.110 matt for (c = 0; c < sizeof(namelist) / sizeof(namelist[0])-1; c++)
411 1.147 kardel if (namelist[c].n_type == 0 &&
412 1.147 kardel c != X_TIME_SECOND &&
413 1.147 kardel c != X_TIME) {
414 1.147 kardel if (doexit++ == 0)
415 1.147 kardel (void)fprintf(stderr, "vmstat: undefined symbols:");
416 1.153 christos (void)fprintf(stderr, " %s",
417 1.153 christos namelist[c].n_name);
418 1.147 kardel }
419 1.147 kardel if (doexit) {
420 1.147 kardel (void)fputc('\n', stderr);
421 1.147 kardel exit(1);
422 1.147 kardel }
423 1.1 cgd }
424 1.133 chs if (todo & INTRSTAT)
425 1.133 chs (void) kvm_nlist(kd, intrnl);
426 1.90 lukem if ((c = kvm_nlist(kd, hashnl)) == -1 || c == X_HASHNL_SIZE)
427 1.90 lukem errx(1, "kvm_nlist: %s %s", "hashnl", kvm_geterr(kd));
428 1.90 lukem if (kvm_nlist(kd, histnl) == -1)
429 1.90 lukem errx(1, "kvm_nlist: %s %s", "histnl", kvm_geterr(kd));
430 1.1 cgd
431 1.1 cgd if (todo & VMSTAT) {
432 1.1 cgd struct winsize winsize;
433 1.1 cgd
434 1.153 christos (void)drvinit(0);/* Initialize disk stats, no disks selected. */
435 1.49 drochner
436 1.49 drochner (void)setgid(getgid()); /* don't need privs anymore */
437 1.49 drochner
438 1.29 thorpej argv = choosedrives(argv); /* Select disks. */
439 1.1 cgd winsize.ws_row = 0;
440 1.115 simonb (void)ioctl(STDOUT_FILENO, TIOCGWINSZ, &winsize);
441 1.1 cgd if (winsize.ws_row > 0)
442 1.1 cgd winlines = winsize.ws_row;
443 1.1 cgd
444 1.1 cgd }
445 1.1 cgd
446 1.1 cgd #ifdef BACKWARD_COMPATIBILITY
447 1.1 cgd if (*argv) {
448 1.103 mycroft interval.tv_sec = atol(*argv);
449 1.1 cgd if (*++argv)
450 1.1 cgd reps = atoi(*argv);
451 1.1 cgd }
452 1.1 cgd #endif
453 1.1 cgd
454 1.103 mycroft if (interval.tv_sec) {
455 1.1 cgd if (!reps)
456 1.1 cgd reps = -1;
457 1.1 cgd } else if (reps)
458 1.103 mycroft interval.tv_sec = 1;
459 1.1 cgd
460 1.78 jhawk
461 1.78 jhawk /*
462 1.78 jhawk * Statistics dumping is incompatible with the default
463 1.78 jhawk * VMSTAT/dovmstat() output. So perform the interval/reps handling
464 1.78 jhawk * for it here.
465 1.78 jhawk */
466 1.130 he if ((todo & (VMSTAT|VMTOTAL)) == 0) {
467 1.99 enami for (;;) {
468 1.99 enami if (todo & (HISTLIST|HISTDUMP)) {
469 1.99 enami if ((todo & (HISTLIST|HISTDUMP)) ==
470 1.99 enami (HISTLIST|HISTDUMP))
471 1.99 enami errx(1, "you may list or dump,"
472 1.99 enami " but not both!");
473 1.99 enami hist_traverse(todo, histname);
474 1.153 christos (void)putchar('\n');
475 1.99 enami }
476 1.99 enami if (todo & FORKSTAT) {
477 1.99 enami doforkst();
478 1.153 christos (void)putchar('\n');
479 1.99 enami }
480 1.99 enami if (todo & MEMSTAT) {
481 1.99 enami domem();
482 1.126 simonb dopool(verbose, wide);
483 1.153 christos (void)putchar('\n');
484 1.99 enami }
485 1.99 enami if (todo & SUMSTAT) {
486 1.99 enami dosum();
487 1.153 christos (void)putchar('\n');
488 1.99 enami }
489 1.99 enami if (todo & INTRSTAT) {
490 1.99 enami dointr(verbose);
491 1.153 christos (void)putchar('\n');
492 1.99 enami }
493 1.99 enami if (todo & EVCNTSTAT) {
494 1.99 enami doevcnt(verbose);
495 1.153 christos (void)putchar('\n');
496 1.99 enami }
497 1.99 enami if (todo & (HASHLIST|HASHSTAT)) {
498 1.99 enami if ((todo & (HASHLIST|HASHSTAT)) ==
499 1.99 enami (HASHLIST|HASHSTAT))
500 1.99 enami errx(1, "you may list or display,"
501 1.99 enami " but not both!");
502 1.99 enami dohashstat(verbose, todo, hashname);
503 1.153 christos (void)putchar('\n');
504 1.99 enami }
505 1.101 sommerfe
506 1.101 sommerfe if (reps >= 0 && --reps <=0)
507 1.99 enami break;
508 1.153 christos (void)nanosleep(&interval, NULL);
509 1.87 lukem }
510 1.130 he } else {
511 1.130 he if ((todo & (VMSTAT|VMTOTAL)) == (VMSTAT|VMTOTAL)) {
512 1.130 he errx(1, "you may not both do vmstat and vmtotal");
513 1.130 he }
514 1.130 he if (todo & VMSTAT)
515 1.130 he dovmstat(&interval, reps);
516 1.130 he if (todo & VMTOTAL)
517 1.130 he dovmtotal(&interval, reps);
518 1.130 he }
519 1.153 christos return 0;
520 1.1 cgd }
521 1.1 cgd
522 1.1 cgd char **
523 1.73 simonb choosedrives(char **argv)
524 1.1 cgd {
525 1.38 mrg int i;
526 1.1 cgd
527 1.1 cgd /*
528 1.1 cgd * Choose drives to be displayed. Priority goes to (in order) drives
529 1.1 cgd * supplied as arguments, default drives. If everything isn't filled
530 1.1 cgd * in and there are drives not taken care of, display the first few
531 1.1 cgd * that fit.
532 1.1 cgd */
533 1.75 enami #define BACKWARD_COMPATIBILITY
534 1.1 cgd for (ndrives = 0; *argv; ++argv) {
535 1.1 cgd #ifdef BACKWARD_COMPATIBILITY
536 1.124 dsl if (isdigit((unsigned char)**argv))
537 1.1 cgd break;
538 1.1 cgd #endif
539 1.140 blymn for (i = 0; i < ndrive; i++) {
540 1.1 cgd if (strcmp(dr_name[i], *argv))
541 1.1 cgd continue;
542 1.140 blymn drv_select[i] = 1;
543 1.136 blymn ++ndrives;
544 1.136 blymn break;
545 1.136 blymn }
546 1.1 cgd }
547 1.151 yamt for (i = 0; i < ndrive && ndrives < 2; i++) {
548 1.140 blymn if (drv_select[i])
549 1.1 cgd continue;
550 1.140 blymn drv_select[i] = 1;
551 1.1 cgd ++ndrives;
552 1.1 cgd }
553 1.140 blymn
554 1.75 enami return (argv);
555 1.1 cgd }
556 1.1 cgd
557 1.1 cgd long
558 1.73 simonb getuptime(void)
559 1.1 cgd {
560 1.30 cgd static struct timeval boottime;
561 1.145 kardel struct timeval now;
562 1.149 kardel time_t uptime, nowsec;
563 1.1 cgd
564 1.30 cgd if (boottime.tv_sec == 0)
565 1.133 chs kread(namelist, X_BOOTTIME, &boottime, sizeof(boottime));
566 1.149 kardel if (kreadc(namelist, X_TIME_SECOND, &nowsec, sizeof(nowsec))) {
567 1.149 kardel /*
568 1.149 kardel * XXX this assignment dance can be removed once timeval tv_sec
569 1.149 kardel * is SUS mandated time_t
570 1.149 kardel */
571 1.149 kardel now.tv_sec = nowsec;
572 1.147 kardel now.tv_usec = 0;
573 1.147 kardel } else {
574 1.147 kardel kread(namelist, X_TIME, &now, sizeof(now));
575 1.147 kardel }
576 1.145 kardel uptime = now.tv_sec - boottime.tv_sec;
577 1.87 lukem if (uptime <= 0 || uptime > 60*60*24*365*10)
578 1.87 lukem errx(1, "time makes no sense; namelist must be wrong.");
579 1.75 enami return (uptime);
580 1.1 cgd }
581 1.1 cgd
582 1.1 cgd int hz, hdrcnt;
583 1.1 cgd
584 1.1 cgd void
585 1.130 he print_total_hdr()
586 1.130 he {
587 1.130 he
588 1.130 he (void)printf("procs memory\n");
589 1.130 he (void)printf("ru dw pw sl sw");
590 1.130 he (void)printf(" total-v active-v active-r");
591 1.130 he (void)printf(" vm-sh avm-sh rm-sh arm-sh free\n");
592 1.130 he hdrcnt = winlines - 2;
593 1.130 he }
594 1.130 he
595 1.130 he void
596 1.130 he dovmtotal(struct timespec *interval, int reps)
597 1.130 he {
598 1.130 he struct vmtotal total;
599 1.130 he int mib[2];
600 1.130 he size_t size;
601 1.130 he
602 1.130 he (void)signal(SIGCONT, needhdr);
603 1.130 he
604 1.130 he for (hdrcnt = 1;;) {
605 1.130 he if (!--hdrcnt)
606 1.130 he print_total_hdr();
607 1.130 he if (memf != NULL) {
608 1.153 christos (void)printf(
609 1.153 christos "Unable to get vmtotals from crash dump.\n");
610 1.153 christos (void)memset(&total, 0, sizeof(total));
611 1.130 he } else {
612 1.130 he size = sizeof(total);
613 1.130 he mib[0] = CTL_VM;
614 1.130 he mib[1] = VM_METER;
615 1.130 he if (sysctl(mib, 2, &total, &size, NULL, 0) < 0) {
616 1.153 christos (void)printf("Can't get vmtotals: %s\n",
617 1.130 he strerror(errno));
618 1.153 christos (void)memset(&total, 0, sizeof(total));
619 1.130 he }
620 1.130 he }
621 1.153 christos (void)printf("%2d ", total.t_rq);
622 1.153 christos (void)printf("%2d ", total.t_dw);
623 1.153 christos (void)printf("%2d ", total.t_pw);
624 1.153 christos (void)printf("%2d ", total.t_sl);
625 1.153 christos (void)printf("%2d ", total.t_sw);
626 1.153 christos
627 1.153 christos (void)printf("%9d ", total.t_vm);
628 1.153 christos (void)printf("%9d ", total.t_avm);
629 1.153 christos (void)printf("%9d ", total.t_arm);
630 1.153 christos (void)printf("%5d ", total.t_vmshr);
631 1.153 christos (void)printf("%6d ", total.t_avmshr);
632 1.153 christos (void)printf("%5d ", total.t_rmshr);
633 1.153 christos (void)printf("%6d ", total.t_armshr);
634 1.153 christos (void)printf("%5d", total.t_free);
635 1.130 he
636 1.153 christos (void)putchar('\n');
637 1.130 he
638 1.130 he (void)fflush(stdout);
639 1.130 he if (reps >= 0 && --reps <= 0)
640 1.130 he break;
641 1.130 he
642 1.153 christos (void)nanosleep(interval, NULL);
643 1.130 he }
644 1.130 he }
645 1.130 he
646 1.130 he void
647 1.103 mycroft dovmstat(struct timespec *interval, int reps)
648 1.1 cgd {
649 1.1 cgd struct vmtotal total;
650 1.1 cgd time_t uptime, halfuptime;
651 1.17 cgd int mib[2];
652 1.17 cgd size_t size;
653 1.41 mrg int pagesize = getpagesize();
654 1.151 yamt int ovflw;
655 1.1 cgd
656 1.1 cgd uptime = getuptime();
657 1.1 cgd halfuptime = uptime / 2;
658 1.1 cgd (void)signal(SIGCONT, needhdr);
659 1.1 cgd
660 1.13 cgd if (namelist[X_STATHZ].n_type != 0 && namelist[X_STATHZ].n_value != 0)
661 1.133 chs kread(namelist, X_STATHZ, &hz, sizeof(hz));
662 1.1 cgd if (!hz)
663 1.133 chs kread(namelist, X_HZ, &hz, sizeof(hz));
664 1.1 cgd
665 1.1 cgd for (hdrcnt = 1;;) {
666 1.1 cgd if (!--hdrcnt)
667 1.1 cgd printhdr();
668 1.29 thorpej /* Read new disk statistics */
669 1.139 dsl cpureadstats();
670 1.140 blymn drvreadstats();
671 1.139 dsl tkreadstats();
672 1.133 chs kread(namelist, X_UVMEXP, &uvmexp, sizeof(uvmexp));
673 1.58 thorpej if (memf != NULL) {
674 1.58 thorpej /*
675 1.58 thorpej * XXX Can't do this if we're reading a crash
676 1.58 thorpej * XXX dump because they're lazily-calculated.
677 1.58 thorpej */
678 1.153 christos (void)printf(
679 1.153 christos "Unable to get vmtotals from crash dump.\n");
680 1.153 christos (void)memset(&total, 0, sizeof(total));
681 1.58 thorpej } else {
682 1.58 thorpej size = sizeof(total);
683 1.58 thorpej mib[0] = CTL_VM;
684 1.58 thorpej mib[1] = VM_METER;
685 1.58 thorpej if (sysctl(mib, 2, &total, &size, NULL, 0) < 0) {
686 1.153 christos (void)printf("Can't get vmtotals: %s\n",
687 1.58 thorpej strerror(errno));
688 1.153 christos (void)memset(&total, 0, sizeof(total));
689 1.58 thorpej }
690 1.13 cgd }
691 1.151 yamt ovflw = 0;
692 1.151 yamt PRWORD(ovflw, " %*d", 2, 1, total.t_rq - 1);
693 1.151 yamt PRWORD(ovflw, " %*d", 2, 1, total.t_dw + total.t_pw);
694 1.151 yamt PRWORD(ovflw, " %*d", 2, 1, total.t_sw);
695 1.153 christos #define pgtok(a) (long)((a) * ((uint32_t)pagesize >> 10))
696 1.38 mrg #define rate(x) (u_long)(((x) + halfuptime) / uptime) /* round */
697 1.151 yamt PRWORD(ovflw, " %*ld", 7, 1, pgtok(total.t_avm));
698 1.151 yamt PRWORD(ovflw, " %*ld", 7, 1, pgtok(total.t_free));
699 1.151 yamt PRWORD(ovflw, " %*ld", 5, 1,
700 1.151 yamt rate(uvmexp.faults - ouvmexp.faults));
701 1.151 yamt PRWORD(ovflw, " %*ld", 4, 1,
702 1.151 yamt rate(uvmexp.pdreact - ouvmexp.pdreact));
703 1.151 yamt PRWORD(ovflw, " %*ld", 4, 1,
704 1.151 yamt rate(uvmexp.pageins - ouvmexp.pageins));
705 1.151 yamt PRWORD(ovflw, " %*ld", 5, 1,
706 1.44 mrg rate(uvmexp.pgswapout - ouvmexp.pgswapout));
707 1.151 yamt PRWORD(ovflw, " %*ld", 5, 1,
708 1.151 yamt rate(uvmexp.pdfreed - ouvmexp.pdfreed));
709 1.151 yamt PRWORD(ovflw, " %*ld", 6, 2,
710 1.151 yamt rate(uvmexp.pdscans - ouvmexp.pdscans));
711 1.151 yamt drvstats(&ovflw);
712 1.151 yamt PRWORD(ovflw, " %*ld", 5, 1,
713 1.151 yamt rate(uvmexp.intrs - ouvmexp.intrs));
714 1.151 yamt PRWORD(ovflw, " %*ld", 5, 1,
715 1.151 yamt rate(uvmexp.syscalls - ouvmexp.syscalls));
716 1.151 yamt PRWORD(ovflw, " %*ld", 4, 1,
717 1.42 mrg rate(uvmexp.swtch - ouvmexp.swtch));
718 1.151 yamt cpustats(&ovflw);
719 1.153 christos (void)putchar('\n');
720 1.42 mrg (void)fflush(stdout);
721 1.42 mrg if (reps >= 0 && --reps <= 0)
722 1.42 mrg break;
723 1.42 mrg ouvmexp = uvmexp;
724 1.103 mycroft uptime = interval->tv_sec;
725 1.1 cgd /*
726 1.1 cgd * We round upward to avoid losing low-frequency events
727 1.1 cgd * (i.e., >= 1 per interval but < 1 per second).
728 1.1 cgd */
729 1.33 thorpej halfuptime = uptime == 1 ? 0 : (uptime + 1) / 2;
730 1.153 christos (void)nanosleep(interval, NULL);
731 1.1 cgd }
732 1.1 cgd }
733 1.1 cgd
734 1.38 mrg void
735 1.73 simonb printhdr(void)
736 1.1 cgd {
737 1.38 mrg int i;
738 1.1 cgd
739 1.104 mrg (void)printf(" procs memory page%*s", 23, "");
740 1.29 thorpej if (ndrives > 0)
741 1.70 sommerfe (void)printf("%s %*sfaults cpu\n",
742 1.75 enami ((ndrives > 1) ? "disks" : "disk"),
743 1.75 enami ((ndrives > 1) ? ndrives * 3 - 4 : 0), "");
744 1.1 cgd else
745 1.29 thorpej (void)printf("%*s faults cpu\n",
746 1.75 enami ndrives * 3, "");
747 1.29 thorpej
748 1.104 mrg (void)printf(" r b w avm fre flt re pi po fr sr ");
749 1.140 blymn for (i = 0; i < ndrive; i++)
750 1.140 blymn if (drv_select[i])
751 1.1 cgd (void)printf("%c%c ", dr_name[i][0],
752 1.1 cgd dr_name[i][strlen(dr_name[i]) - 1]);
753 1.1 cgd (void)printf(" in sy cs us sy id\n");
754 1.1 cgd hdrcnt = winlines - 2;
755 1.1 cgd }
756 1.1 cgd
757 1.1 cgd /*
758 1.1 cgd * Force a header to be prepended to the next output.
759 1.1 cgd */
760 1.1 cgd void
761 1.153 christos /*ARGSUSED*/
762 1.73 simonb needhdr(int dummy)
763 1.1 cgd {
764 1.1 cgd
765 1.1 cgd hdrcnt = 1;
766 1.1 cgd }
767 1.1 cgd
768 1.38 mrg long
769 1.73 simonb pct(long top, long bot)
770 1.1 cgd {
771 1.13 cgd long ans;
772 1.13 cgd
773 1.1 cgd if (bot == 0)
774 1.75 enami return (0);
775 1.153 christos ans = (long)((quad_t)top * 100 / bot);
776 1.13 cgd return (ans);
777 1.1 cgd }
778 1.1 cgd
779 1.38 mrg #define PCT(top, bot) (int)pct((long)(top), (long)(bot))
780 1.1 cgd
781 1.1 cgd void
782 1.73 simonb dosum(void)
783 1.1 cgd {
784 1.1 cgd struct nchstats nchstats;
785 1.123 enami u_long nchtotal;
786 1.1 cgd
787 1.133 chs kread(namelist, X_UVMEXP, &uvmexp, sizeof(uvmexp));
788 1.41 mrg
789 1.44 mrg (void)printf("%9u bytes per page\n", uvmexp.pagesize);
790 1.44 mrg
791 1.81 thorpej (void)printf("%9u page color%s\n",
792 1.81 thorpej uvmexp.ncolors, uvmexp.ncolors == 1 ? "" : "s");
793 1.81 thorpej
794 1.44 mrg (void)printf("%9u pages managed\n", uvmexp.npages);
795 1.44 mrg (void)printf("%9u pages free\n", uvmexp.free);
796 1.44 mrg (void)printf("%9u pages paging\n", uvmexp.paging);
797 1.44 mrg (void)printf("%9u pages wired\n", uvmexp.wired);
798 1.63 thorpej (void)printf("%9u zero pages\n", uvmexp.zeropages);
799 1.44 mrg (void)printf("%9u reserve pagedaemon pages\n",
800 1.44 mrg uvmexp.reserve_pagedaemon);
801 1.44 mrg (void)printf("%9u reserve kernel pages\n", uvmexp.reserve_kernel);
802 1.94 chs (void)printf("%9u anonymous pages\n", uvmexp.anonpages);
803 1.94 chs (void)printf("%9u cached file pages\n", uvmexp.filepages);
804 1.94 chs (void)printf("%9u cached executable pages\n", uvmexp.execpages);
805 1.44 mrg
806 1.44 mrg (void)printf("%9u minimum free pages\n", uvmexp.freemin);
807 1.44 mrg (void)printf("%9u target free pages\n", uvmexp.freetarg);
808 1.44 mrg (void)printf("%9u maximum wired pages\n", uvmexp.wiredmax);
809 1.44 mrg
810 1.44 mrg (void)printf("%9u swap devices\n", uvmexp.nswapdev);
811 1.44 mrg (void)printf("%9u swap pages\n", uvmexp.swpages);
812 1.44 mrg (void)printf("%9u swap pages in use\n", uvmexp.swpginuse);
813 1.44 mrg (void)printf("%9u swap allocations\n", uvmexp.nswget);
814 1.44 mrg
815 1.43 mrg (void)printf("%9u total faults taken\n", uvmexp.faults);
816 1.43 mrg (void)printf("%9u traps\n", uvmexp.traps);
817 1.43 mrg (void)printf("%9u device interrupts\n", uvmexp.intrs);
818 1.121 wiz (void)printf("%9u CPU context switches\n", uvmexp.swtch);
819 1.43 mrg (void)printf("%9u software interrupts\n", uvmexp.softs);
820 1.43 mrg (void)printf("%9u system calls\n", uvmexp.syscalls);
821 1.60 fredb (void)printf("%9u pagein requests\n", uvmexp.pageins);
822 1.60 fredb (void)printf("%9u pageout requests\n", uvmexp.pdpageouts);
823 1.43 mrg (void)printf("%9u swap ins\n", uvmexp.swapins);
824 1.43 mrg (void)printf("%9u swap outs\n", uvmexp.swapouts);
825 1.60 fredb (void)printf("%9u pages swapped in\n", uvmexp.pgswapin);
826 1.60 fredb (void)printf("%9u pages swapped out\n", uvmexp.pgswapout);
827 1.43 mrg (void)printf("%9u forks total\n", uvmexp.forks);
828 1.43 mrg (void)printf("%9u forks blocked parent\n", uvmexp.forks_ppwait);
829 1.43 mrg (void)printf("%9u forks shared address space with parent\n",
830 1.43 mrg uvmexp.forks_sharevm);
831 1.63 thorpej (void)printf("%9u pagealloc zero wanted and avail\n",
832 1.63 thorpej uvmexp.pga_zerohit);
833 1.63 thorpej (void)printf("%9u pagealloc zero wanted and not avail\n",
834 1.63 thorpej uvmexp.pga_zeromiss);
835 1.68 thorpej (void)printf("%9u aborts of idle page zeroing\n",
836 1.68 thorpej uvmexp.zeroaborts);
837 1.79 thorpej (void)printf("%9u pagealloc desired color avail\n",
838 1.79 thorpej uvmexp.colorhit);
839 1.79 thorpej (void)printf("%9u pagealloc desired color not avail\n",
840 1.79 thorpej uvmexp.colormiss);
841 1.44 mrg
842 1.44 mrg (void)printf("%9u faults with no memory\n", uvmexp.fltnoram);
843 1.44 mrg (void)printf("%9u faults with no anons\n", uvmexp.fltnoanon);
844 1.43 mrg (void)printf("%9u faults had to wait on pages\n", uvmexp.fltpgwait);
845 1.43 mrg (void)printf("%9u faults found released page\n", uvmexp.fltpgrele);
846 1.43 mrg (void)printf("%9u faults relock (%u ok)\n", uvmexp.fltrelck,
847 1.43 mrg uvmexp.fltrelckok);
848 1.43 mrg (void)printf("%9u anon page faults\n", uvmexp.fltanget);
849 1.43 mrg (void)printf("%9u anon retry faults\n", uvmexp.fltanretry);
850 1.43 mrg (void)printf("%9u amap copy faults\n", uvmexp.fltamcopy);
851 1.43 mrg (void)printf("%9u neighbour anon page faults\n", uvmexp.fltnamap);
852 1.43 mrg (void)printf("%9u neighbour object page faults\n", uvmexp.fltnomap);
853 1.43 mrg (void)printf("%9u locked pager get faults\n", uvmexp.fltlget);
854 1.43 mrg (void)printf("%9u unlocked pager get faults\n", uvmexp.fltget);
855 1.43 mrg (void)printf("%9u anon faults\n", uvmexp.flt_anon);
856 1.43 mrg (void)printf("%9u anon copy on write faults\n", uvmexp.flt_acow);
857 1.43 mrg (void)printf("%9u object faults\n", uvmexp.flt_obj);
858 1.43 mrg (void)printf("%9u promote copy faults\n", uvmexp.flt_prcopy);
859 1.43 mrg (void)printf("%9u promote zero fill faults\n", uvmexp.flt_przero);
860 1.44 mrg
861 1.44 mrg (void)printf("%9u times daemon wokeup\n",uvmexp.pdwoke);
862 1.44 mrg (void)printf("%9u revolutions of the clock hand\n", uvmexp.pdrevs);
863 1.44 mrg (void)printf("%9u times daemon attempted swapout\n", uvmexp.pdswout);
864 1.44 mrg (void)printf("%9u pages freed by daemon\n", uvmexp.pdfreed);
865 1.44 mrg (void)printf("%9u pages scanned by daemon\n", uvmexp.pdscans);
866 1.75 enami (void)printf("%9u anonymous pages scanned by daemon\n",
867 1.75 enami uvmexp.pdanscan);
868 1.44 mrg (void)printf("%9u object pages scanned by daemon\n", uvmexp.pdobscan);
869 1.44 mrg (void)printf("%9u pages reactivated\n", uvmexp.pdreact);
870 1.44 mrg (void)printf("%9u pages found busy by daemon\n", uvmexp.pdbusy);
871 1.44 mrg (void)printf("%9u total pending pageouts\n", uvmexp.pdpending);
872 1.44 mrg (void)printf("%9u pages deactivated\n", uvmexp.pddeact);
873 1.123 enami
874 1.133 chs kread(namelist, X_NCHSTATS, &nchstats, sizeof(nchstats));
875 1.1 cgd nchtotal = nchstats.ncs_goodhits + nchstats.ncs_neghits +
876 1.1 cgd nchstats.ncs_badhits + nchstats.ncs_falsehits +
877 1.1 cgd nchstats.ncs_miss + nchstats.ncs_long;
878 1.123 enami (void)printf("%9lu total name lookups\n", nchtotal);
879 1.123 enami (void)printf("%9lu good hits\n", nchstats.ncs_goodhits);
880 1.123 enami (void)printf("%9lu negative hits\n", nchstats.ncs_neghits);
881 1.123 enami (void)printf("%9lu bad hits\n", nchstats.ncs_badhits);
882 1.123 enami (void)printf("%9lu false hits\n", nchstats.ncs_falsehits);
883 1.123 enami (void)printf("%9lu miss\n", nchstats.ncs_miss);
884 1.123 enami (void)printf("%9lu too long\n", nchstats.ncs_long);
885 1.123 enami (void)printf("%9lu pass2 hits\n", nchstats.ncs_pass2);
886 1.123 enami (void)printf("%9lu 2passes\n", nchstats.ncs_2passes);
887 1.1 cgd (void)printf(
888 1.1 cgd "%9s cache hits (%d%% pos + %d%% neg) system %d%% per-process\n",
889 1.1 cgd "", PCT(nchstats.ncs_goodhits, nchtotal),
890 1.1 cgd PCT(nchstats.ncs_neghits, nchtotal),
891 1.1 cgd PCT(nchstats.ncs_pass2, nchtotal));
892 1.1 cgd (void)printf("%9s deletions %d%%, falsehits %d%%, toolong %d%%\n", "",
893 1.1 cgd PCT(nchstats.ncs_badhits, nchtotal),
894 1.1 cgd PCT(nchstats.ncs_falsehits, nchtotal),
895 1.1 cgd PCT(nchstats.ncs_long, nchtotal));
896 1.1 cgd }
897 1.1 cgd
898 1.1 cgd void
899 1.73 simonb doforkst(void)
900 1.1 cgd {
901 1.41 mrg
902 1.133 chs kread(namelist, X_UVMEXP, &uvmexp, sizeof(uvmexp));
903 1.58 thorpej
904 1.41 mrg (void)printf("%u forks total\n", uvmexp.forks);
905 1.41 mrg (void)printf("%u forks blocked parent\n", uvmexp.forks_ppwait);
906 1.41 mrg (void)printf("%u forks shared address space with parent\n",
907 1.41 mrg uvmexp.forks_sharevm);
908 1.1 cgd }
909 1.1 cgd
910 1.1 cgd void
911 1.151 yamt drvstats(int *ovflwp)
912 1.1 cgd {
913 1.101 sommerfe int dn;
914 1.1 cgd double etime;
915 1.151 yamt int ovflw = *ovflwp;
916 1.1 cgd
917 1.29 thorpej /* Calculate disk stat deltas. */
918 1.139 dsl cpuswap();
919 1.140 blymn drvswap();
920 1.139 dsl tkswap();
921 1.101 sommerfe etime = cur.cp_etime;
922 1.101 sommerfe
923 1.140 blymn for (dn = 0; dn < ndrive; ++dn) {
924 1.140 blymn if (!drv_select[dn])
925 1.151 yamt continue;
926 1.151 yamt PRWORD(ovflw, " %*.0f", 3, 1,
927 1.151 yamt (cur.rxfer[dn] + cur.wxfer[dn]) / etime);
928 1.136 blymn }
929 1.151 yamt *ovflwp = ovflw;
930 1.136 blymn }
931 1.136 blymn
932 1.136 blymn void
933 1.151 yamt cpustats(int *ovflwp)
934 1.1 cgd {
935 1.38 mrg int state;
936 1.129 dsl double pcnt, total;
937 1.120 dbj double stat_us, stat_sy, stat_id;
938 1.151 yamt int ovflw = *ovflwp;
939 1.1 cgd
940 1.1 cgd total = 0;
941 1.1 cgd for (state = 0; state < CPUSTATES; ++state)
942 1.29 thorpej total += cur.cp_time[state];
943 1.1 cgd if (total)
944 1.129 dsl pcnt = 100 / total;
945 1.1 cgd else
946 1.129 dsl pcnt = 0;
947 1.129 dsl stat_us = (cur.cp_time[CP_USER] + cur.cp_time[CP_NICE]) * pcnt;
948 1.129 dsl stat_sy = (cur.cp_time[CP_SYS] + cur.cp_time[CP_INTR]) * pcnt;
949 1.129 dsl stat_id = cur.cp_time[CP_IDLE] * pcnt;
950 1.151 yamt PRWORD(ovflw, " %*.0f", ((stat_sy >= 100) ? 2 : 3), 1, stat_us);
951 1.151 yamt PRWORD(ovflw, " %*.0f", ((stat_us >= 100 || stat_id >= 100) ? 2 : 3), 1,
952 1.151 yamt stat_sy);
953 1.151 yamt PRWORD(ovflw, " %*.0f", 3, 1, stat_id);
954 1.151 yamt *ovflwp = ovflw;
955 1.1 cgd }
956 1.1 cgd
957 1.1 cgd void
958 1.66 cgd dointr(int verbose)
959 1.1 cgd {
960 1.138 nonaka unsigned long *intrcnt, *ointrcnt;
961 1.85 enami unsigned long long inttotal, uptime;
962 1.38 mrg int nintr, inamlen;
963 1.138 nonaka char *intrname, *ointrname;
964 1.28 cgd struct evcntlist allevents;
965 1.28 cgd struct evcnt evcnt, *evptr;
966 1.66 cgd char evgroup[EVCNT_STRING_MAX], evname[EVCNT_STRING_MAX];
967 1.1 cgd
968 1.133 chs inttotal = 0;
969 1.1 cgd uptime = getuptime();
970 1.83 matt (void)printf("%-34s %16s %8s\n", "interrupt", "total", "rate");
971 1.133 chs nintr = intrnl[X_EINTRCNT].n_value - intrnl[X_INTRCNT].n_value;
972 1.133 chs inamlen = intrnl[X_EINTRNAMES].n_value - intrnl[X_INTRNAMES].n_value;
973 1.133 chs if (nintr != 0 && inamlen != 0) {
974 1.138 nonaka ointrcnt = intrcnt = malloc((size_t)nintr);
975 1.138 nonaka ointrname = intrname = malloc((size_t)inamlen);
976 1.133 chs if (intrcnt == NULL || intrname == NULL)
977 1.133 chs errx(1, "%s", "");
978 1.133 chs kread(intrnl, X_INTRCNT, intrcnt, (size_t)nintr);
979 1.133 chs kread(intrnl, X_INTRNAMES, intrname, (size_t)inamlen);
980 1.133 chs nintr /= sizeof(long);
981 1.133 chs while (--nintr >= 0) {
982 1.133 chs if (*intrcnt || verbose)
983 1.133 chs (void)printf("%-34s %16llu %8llu\n", intrname,
984 1.133 chs (unsigned long long)*intrcnt,
985 1.133 chs (unsigned long long)
986 1.133 chs (*intrcnt / uptime));
987 1.133 chs intrname += strlen(intrname) + 1;
988 1.133 chs inttotal += *intrcnt++;
989 1.133 chs }
990 1.138 nonaka free(ointrcnt);
991 1.138 nonaka free(ointrname);
992 1.1 cgd }
993 1.133 chs
994 1.133 chs kread(namelist, X_ALLEVENTS, &allevents, sizeof allevents);
995 1.133 chs evptr = TAILQ_FIRST(&allevents);
996 1.28 cgd while (evptr) {
997 1.87 lukem deref_kptr(evptr, &evcnt, sizeof(evcnt), "event chain trashed");
998 1.133 chs evptr = TAILQ_NEXT(&evcnt, ev_list);
999 1.66 cgd if (evcnt.ev_type != EVCNT_TYPE_INTR)
1000 1.66 cgd continue;
1001 1.66 cgd
1002 1.66 cgd if (evcnt.ev_count == 0 && !verbose)
1003 1.66 cgd continue;
1004 1.66 cgd
1005 1.153 christos deref_kptr(evcnt.ev_group, evgroup,
1006 1.153 christos (size_t)evcnt.ev_grouplen + 1, "event chain trashed");
1007 1.153 christos deref_kptr(evcnt.ev_name, evname,
1008 1.153 christos (size_t)evcnt.ev_namelen + 1, "event chain trashed");
1009 1.66 cgd
1010 1.85 enami (void)printf("%s %s%*s %16llu %8llu\n", evgroup, evname,
1011 1.83 matt 34 - (evcnt.ev_grouplen + 1 + evcnt.ev_namelen), "",
1012 1.85 enami (unsigned long long)evcnt.ev_count,
1013 1.85 enami (unsigned long long)(evcnt.ev_count / uptime));
1014 1.66 cgd
1015 1.66 cgd inttotal += evcnt.ev_count++;
1016 1.66 cgd }
1017 1.85 enami (void)printf("%-34s %16llu %8llu\n", "Total", inttotal,
1018 1.85 enami (unsigned long long)(inttotal / uptime));
1019 1.66 cgd }
1020 1.66 cgd
1021 1.66 cgd void
1022 1.66 cgd doevcnt(int verbose)
1023 1.66 cgd {
1024 1.83 matt static const char * evtypes [] = { "misc", "intr", "trap" };
1025 1.85 enami unsigned long long uptime;
1026 1.66 cgd struct evcntlist allevents;
1027 1.66 cgd struct evcnt evcnt, *evptr;
1028 1.66 cgd char evgroup[EVCNT_STRING_MAX], evname[EVCNT_STRING_MAX];
1029 1.66 cgd
1030 1.66 cgd /* XXX should print type! */
1031 1.66 cgd
1032 1.66 cgd uptime = getuptime();
1033 1.83 matt (void)printf("%-34s %16s %8s %s\n", "event", "total", "rate", "type");
1034 1.133 chs kread(namelist, X_ALLEVENTS, &allevents, sizeof allevents);
1035 1.133 chs evptr = TAILQ_FIRST(&allevents);
1036 1.66 cgd while (evptr) {
1037 1.87 lukem deref_kptr(evptr, &evcnt, sizeof(evcnt), "event chain trashed");
1038 1.32 cgd
1039 1.133 chs evptr = TAILQ_NEXT(&evcnt, ev_list);
1040 1.66 cgd if (evcnt.ev_count == 0 && !verbose)
1041 1.66 cgd continue;
1042 1.66 cgd
1043 1.153 christos deref_kptr(evcnt.ev_group, evgroup,
1044 1.153 christos (size_t)evcnt.ev_grouplen + 1, "event chain trashed");
1045 1.153 christos deref_kptr(evcnt.ev_name, evname,
1046 1.153 christos (size_t)evcnt.ev_namelen + 1, "event chain trashed");
1047 1.66 cgd
1048 1.85 enami (void)printf("%s %s%*s %16llu %8llu %s\n", evgroup, evname,
1049 1.83 matt 34 - (evcnt.ev_grouplen + 1 + evcnt.ev_namelen), "",
1050 1.85 enami (unsigned long long)evcnt.ev_count,
1051 1.85 enami (unsigned long long)(evcnt.ev_count / uptime),
1052 1.86 enami (evcnt.ev_type < sizeof(evtypes)/sizeof(evtypes[0]) ?
1053 1.86 enami evtypes[evcnt.ev_type] : "?"));
1054 1.18 pk }
1055 1.1 cgd }
1056 1.1 cgd
1057 1.109 thorpej static char memname[64];
1058 1.1 cgd
1059 1.1 cgd void
1060 1.73 simonb domem(void)
1061 1.1 cgd {
1062 1.38 mrg struct kmembuckets *kp;
1063 1.109 thorpej struct malloc_type ks, *ksp;
1064 1.38 mrg int i, j;
1065 1.13 cgd int len, size, first;
1066 1.13 cgd long totuse = 0, totfree = 0, totreq = 0;
1067 1.1 cgd struct kmembuckets buckets[MINBUCKET + 16];
1068 1.1 cgd
1069 1.133 chs kread(namelist, X_KMEMBUCKETS, buckets, sizeof(buckets));
1070 1.34 thorpej for (first = 1, i = MINBUCKET, kp = &buckets[i]; i < MINBUCKET + 16;
1071 1.34 thorpej i++, kp++) {
1072 1.1 cgd if (kp->kb_calls == 0)
1073 1.1 cgd continue;
1074 1.34 thorpej if (first) {
1075 1.34 thorpej (void)printf("Memory statistics by bucket size\n");
1076 1.34 thorpej (void)printf(
1077 1.34 thorpej " Size In Use Free Requests HighWater Couldfree\n");
1078 1.34 thorpej first = 0;
1079 1.34 thorpej }
1080 1.1 cgd size = 1 << i;
1081 1.75 enami (void)printf("%8d %8ld %6ld %10ld %7ld %10ld\n", size,
1082 1.75 enami kp->kb_total - kp->kb_totalfree,
1083 1.75 enami kp->kb_totalfree, kp->kb_calls,
1084 1.75 enami kp->kb_highwat, kp->kb_couldfree);
1085 1.1 cgd totfree += size * kp->kb_totalfree;
1086 1.34 thorpej }
1087 1.34 thorpej
1088 1.34 thorpej /*
1089 1.34 thorpej * If kmem statistics are not being gathered by the kernel,
1090 1.34 thorpej * first will still be 1.
1091 1.34 thorpej */
1092 1.34 thorpej if (first) {
1093 1.87 lukem warnx("Kmem statistics are not being gathered by the kernel.");
1094 1.34 thorpej return;
1095 1.1 cgd }
1096 1.1 cgd
1097 1.13 cgd (void)printf("\nMemory usage type by bucket size\n");
1098 1.13 cgd (void)printf(" Size Type(s)\n");
1099 1.13 cgd kp = &buckets[MINBUCKET];
1100 1.13 cgd for (j = 1 << MINBUCKET; j < 1 << (MINBUCKET + 16); j <<= 1, kp++) {
1101 1.13 cgd if (kp->kb_calls == 0)
1102 1.13 cgd continue;
1103 1.13 cgd first = 1;
1104 1.13 cgd len = 8;
1105 1.133 chs for (kread(namelist, X_KMEMSTAT, &ksp, sizeof(ksp));
1106 1.109 thorpej ksp != NULL; ksp = ks.ks_next) {
1107 1.109 thorpej deref_kptr(ksp, &ks, sizeof(ks), "malloc type");
1108 1.109 thorpej if (ks.ks_calls == 0)
1109 1.13 cgd continue;
1110 1.109 thorpej if ((ks.ks_size & j) == 0)
1111 1.13 cgd continue;
1112 1.109 thorpej deref_kptr(ks.ks_shortdesc, memname,
1113 1.109 thorpej sizeof(memname), "malloc type name");
1114 1.109 thorpej len += 2 + strlen(memname);
1115 1.13 cgd if (first)
1116 1.153 christos (void)printf("%8d %s", j, memname);
1117 1.13 cgd else
1118 1.153 christos (void)printf(",");
1119 1.13 cgd if (len >= 80) {
1120 1.153 christos (void)printf("\n\t ");
1121 1.109 thorpej len = 10 + strlen(memname);
1122 1.13 cgd }
1123 1.13 cgd if (!first)
1124 1.153 christos (void)printf(" %s", memname);
1125 1.13 cgd first = 0;
1126 1.13 cgd }
1127 1.153 christos (void)putchar('\n');
1128 1.13 cgd }
1129 1.13 cgd
1130 1.1 cgd (void)printf(
1131 1.119 simonb "\nMemory statistics by type Type Kern\n");
1132 1.13 cgd (void)printf(
1133 1.148 simonb " Type InUse MemUse HighUse Limit Requests Limit Limit Size(s)\n");
1134 1.133 chs for (kread(namelist, X_KMEMSTAT, &ksp, sizeof(ksp));
1135 1.109 thorpej ksp != NULL; ksp = ks.ks_next) {
1136 1.109 thorpej deref_kptr(ksp, &ks, sizeof(ks), "malloc type");
1137 1.109 thorpej if (ks.ks_calls == 0)
1138 1.1 cgd continue;
1139 1.109 thorpej deref_kptr(ks.ks_shortdesc, memname,
1140 1.109 thorpej sizeof(memname), "malloc type name");
1141 1.148 simonb (void)printf("%14s%6ld%6ldK%7ldK%6ldK%10ld%5u%6u",
1142 1.109 thorpej memname,
1143 1.152 christos ks.ks_inuse, howmany(ks.ks_memuse, KILO),
1144 1.152 christos howmany(ks.ks_maxused, KILO),
1145 1.152 christos howmany(ks.ks_limit, KILO), ks.ks_calls,
1146 1.109 thorpej ks.ks_limblocks, ks.ks_mapblocks);
1147 1.13 cgd first = 1;
1148 1.13 cgd for (j = 1 << MINBUCKET; j < 1 << (MINBUCKET + 16); j <<= 1) {
1149 1.109 thorpej if ((ks.ks_size & j) == 0)
1150 1.13 cgd continue;
1151 1.13 cgd if (first)
1152 1.153 christos (void)printf(" %d", j);
1153 1.13 cgd else
1154 1.153 christos (void)printf(",%d", j);
1155 1.13 cgd first = 0;
1156 1.13 cgd }
1157 1.153 christos (void)printf("\n");
1158 1.109 thorpej totuse += ks.ks_memuse;
1159 1.109 thorpej totreq += ks.ks_calls;
1160 1.1 cgd }
1161 1.102 soren (void)printf("\nMemory totals: In Use Free Requests\n");
1162 1.102 soren (void)printf(" %7ldK %6ldK %8ld\n\n",
1163 1.152 christos howmany(totuse, KILO), howmany(totfree, KILO), totreq);
1164 1.51 pk }
1165 1.51 pk
1166 1.51 pk void
1167 1.126 simonb dopool(int verbose, int wide)
1168 1.51 pk {
1169 1.69 enami int first, ovflw;
1170 1.87 lukem void *addr;
1171 1.126 simonb long total, inuse, this_total, this_inuse;
1172 1.137 chs LIST_HEAD(,pool) pool_head;
1173 1.51 pk struct pool pool, *pp = &pool;
1174 1.98 christos struct pool_allocator pa;
1175 1.87 lukem char name[32], maxp[32];
1176 1.51 pk
1177 1.133 chs kread(namelist, X_POOLHEAD, &pool_head, sizeof(pool_head));
1178 1.137 chs addr = LIST_FIRST(&pool_head);
1179 1.51 pk
1180 1.126 simonb total = inuse = 0;
1181 1.126 simonb
1182 1.137 chs for (first = 1; addr != NULL; addr = LIST_NEXT(pp, pr_poollist) ) {
1183 1.87 lukem deref_kptr(addr, pp, sizeof(*pp), "pool chain trashed");
1184 1.98 christos deref_kptr(pp->pr_alloc, &pa, sizeof(pa),
1185 1.125 dsainty "pool allocator trashed");
1186 1.87 lukem deref_kptr(pp->pr_wchan, name, sizeof(name),
1187 1.98 christos "pool wait channel trashed");
1188 1.87 lukem name[sizeof(name)-1] = '\0';
1189 1.51 pk
1190 1.51 pk if (first) {
1191 1.51 pk (void)printf("Memory resource pool statistics\n");
1192 1.51 pk (void)printf(
1193 1.126 simonb "%-*s%*s%*s%5s%*s%s%s%*s%*s%6s%s%6s%6s%6s%5s%s%s\n",
1194 1.126 simonb wide ? 16 : 11, "Name",
1195 1.126 simonb wide ? 6 : 5, "Size",
1196 1.126 simonb wide ? 12 : 9, "Requests",
1197 1.75 enami "Fail",
1198 1.126 simonb wide ? 12 : 9, "Releases",
1199 1.148 simonb wide ? " InUse" : "",
1200 1.126 simonb wide ? " Avail" : "",
1201 1.126 simonb wide ? 7 : 6, "Pgreq",
1202 1.126 simonb wide ? 7 : 6, "Pgrel",
1203 1.75 enami "Npage",
1204 1.126 simonb wide ? " PageSz" : "",
1205 1.75 enami "Hiwat",
1206 1.75 enami "Minpg",
1207 1.75 enami "Maxpg",
1208 1.126 simonb "Idle",
1209 1.126 simonb wide ? " Flags" : "",
1210 1.126 simonb wide ? " Util" : "");
1211 1.51 pk first = 0;
1212 1.51 pk }
1213 1.113 dsl if (pp->pr_nget == 0 && !verbose)
1214 1.113 dsl continue;
1215 1.51 pk if (pp->pr_maxpages == UINT_MAX)
1216 1.153 christos (void)snprintf(maxp, sizeof(maxp), "inf");
1217 1.51 pk else
1218 1.153 christos (void)snprintf(maxp, sizeof(maxp), "%u",
1219 1.153 christos pp->pr_maxpages);
1220 1.69 enami ovflw = 0;
1221 1.126 simonb PRWORD(ovflw, "%-*s", wide ? 16 : 11, 0, name);
1222 1.126 simonb PRWORD(ovflw, " %*u", wide ? 6 : 5, 1, pp->pr_size);
1223 1.126 simonb PRWORD(ovflw, " %*lu", wide ? 12 : 9, 1, pp->pr_nget);
1224 1.69 enami PRWORD(ovflw, " %*lu", 5, 1, pp->pr_nfail);
1225 1.126 simonb PRWORD(ovflw, " %*lu", wide ? 12 : 9, 1, pp->pr_nput);
1226 1.126 simonb if (wide)
1227 1.148 simonb PRWORD(ovflw, " %*u", 7, 1, pp->pr_nout);
1228 1.126 simonb if (wide)
1229 1.126 simonb PRWORD(ovflw, " %*u", 6, 1, pp->pr_nitems);
1230 1.126 simonb PRWORD(ovflw, " %*lu", wide ? 7 : 6, 1, pp->pr_npagealloc);
1231 1.126 simonb PRWORD(ovflw, " %*lu", wide ? 7 : 6, 1, pp->pr_npagefree);
1232 1.126 simonb PRWORD(ovflw, " %*u", 6, 1, pp->pr_npages);
1233 1.126 simonb if (wide)
1234 1.126 simonb PRWORD(ovflw, " %*u", 7, 1, pa.pa_pagesz);
1235 1.126 simonb PRWORD(ovflw, " %*u", 6, 1, pp->pr_hiwat);
1236 1.126 simonb PRWORD(ovflw, " %*u", 6, 1, pp->pr_minpages);
1237 1.69 enami PRWORD(ovflw, " %*s", 6, 1, maxp);
1238 1.126 simonb PRWORD(ovflw, " %*lu", 5, 1, pp->pr_nidle);
1239 1.126 simonb if (wide)
1240 1.126 simonb PRWORD(ovflw, " 0x%0*x", 4, 1,
1241 1.126 simonb pp->pr_flags | pp->pr_roflags);
1242 1.51 pk
1243 1.126 simonb this_inuse = pp->pr_nout * pp->pr_size;
1244 1.126 simonb this_total = pp->pr_npages * pa.pa_pagesz;
1245 1.84 bjh21 if (pp->pr_roflags & PR_RECURSIVE) {
1246 1.84 bjh21 /*
1247 1.84 bjh21 * Don't count in-use memory, since it's part
1248 1.84 bjh21 * of another pool and will be accounted for
1249 1.84 bjh21 * there.
1250 1.84 bjh21 */
1251 1.126 simonb total += (this_total - this_inuse);
1252 1.84 bjh21 } else {
1253 1.126 simonb inuse += this_inuse;
1254 1.126 simonb total += this_total;
1255 1.84 bjh21 }
1256 1.126 simonb if (wide) {
1257 1.126 simonb if (this_total == 0)
1258 1.153 christos (void)printf(" ---");
1259 1.126 simonb else
1260 1.153 christos (void)printf(" %5.1f%%",
1261 1.126 simonb (100.0 * this_inuse) / this_total);
1262 1.126 simonb }
1263 1.153 christos (void)printf("\n");
1264 1.96 enami dopoolcache(pp, verbose);
1265 1.51 pk }
1266 1.51 pk
1267 1.152 christos inuse /= KILO;
1268 1.152 christos total /= KILO;
1269 1.153 christos (void)printf(
1270 1.153 christos "\nIn use %ldK, total allocated %ldK; utilization %.1f%%\n",
1271 1.126 simonb inuse, total, (100.0 * inuse) / total);
1272 1.1 cgd }
1273 1.96 enami
1274 1.96 enami void
1275 1.96 enami dopoolcache(struct pool *pp, int verbose)
1276 1.96 enami {
1277 1.96 enami struct pool_cache pool_cache, *pc = &pool_cache;
1278 1.96 enami struct pool_cache_group pool_cache_group, *pcg = &pool_cache_group;
1279 1.96 enami void *addr, *pcg_addr;
1280 1.96 enami int i;
1281 1.96 enami
1282 1.96 enami if (verbose < 1)
1283 1.96 enami return;
1284 1.96 enami
1285 1.137 chs #define PR_GROUPLIST \
1286 1.137 chs deref_kptr(pcg_addr, pcg, sizeof(*pcg), \
1287 1.137 chs "pool cache group trashed"); \
1288 1.153 christos (void)printf("\t\tgroup %p: avail %d\n", pcg_addr, \
1289 1.137 chs pcg->pcg_avail); \
1290 1.137 chs for (i = 0; i < PCG_NOBJECTS; i++) { \
1291 1.137 chs if (pcg->pcg_objects[i].pcgo_pa != \
1292 1.137 chs POOL_PADDR_INVALID) { \
1293 1.153 christos (void)printf("\t\t\t%p, 0x%llx\n", \
1294 1.137 chs pcg->pcg_objects[i].pcgo_va, \
1295 1.137 chs (unsigned long long) \
1296 1.137 chs pcg->pcg_objects[i].pcgo_pa); \
1297 1.137 chs } else { \
1298 1.153 christos (void)printf("\t\t\t%p\n", \
1299 1.137 chs pcg->pcg_objects[i].pcgo_va); \
1300 1.137 chs } \
1301 1.137 chs }
1302 1.137 chs
1303 1.137 chs for (addr = LIST_FIRST(&pp->pr_cachelist); addr != NULL;
1304 1.137 chs addr = LIST_NEXT(pc, pc_poollist)) {
1305 1.96 enami deref_kptr(addr, pc, sizeof(*pc), "pool cache trashed");
1306 1.153 christos (void)printf(
1307 1.153 christos "\t hits %lu misses %lu ngroups %lu nitems %lu\n",
1308 1.96 enami pc->pc_hits, pc->pc_misses, pc->pc_ngroups, pc->pc_nitems);
1309 1.96 enami if (verbose < 2)
1310 1.96 enami continue;
1311 1.153 christos (void)printf("\t full groups:\n");
1312 1.137 chs for (pcg_addr = LIST_FIRST(&pc->pc_fullgroups);
1313 1.137 chs pcg_addr != NULL; pcg_addr = LIST_NEXT(pcg, pcg_list)) {
1314 1.137 chs PR_GROUPLIST;
1315 1.137 chs }
1316 1.153 christos (void)printf("\t partial groups:\n");
1317 1.137 chs for (pcg_addr = LIST_FIRST(&pc->pc_partgroups);
1318 1.137 chs pcg_addr != NULL; pcg_addr = LIST_NEXT(pcg, pcg_list)) {
1319 1.137 chs PR_GROUPLIST;
1320 1.137 chs }
1321 1.153 christos (void)printf("\t empty groups:\n");
1322 1.137 chs for (pcg_addr = LIST_FIRST(&pc->pc_emptygroups);
1323 1.137 chs pcg_addr != NULL; pcg_addr = LIST_NEXT(pcg, pcg_list)) {
1324 1.137 chs PR_GROUPLIST;
1325 1.96 enami }
1326 1.96 enami }
1327 1.96 enami
1328 1.137 chs #undef PR_GROUPLIST
1329 1.137 chs
1330 1.96 enami }
1331 1.90 lukem
1332 1.87 lukem enum hashtype { /* from <sys/systm.h> */
1333 1.87 lukem HASH_LIST,
1334 1.87 lukem HASH_TAILQ
1335 1.87 lukem };
1336 1.87 lukem
1337 1.87 lukem struct uidinfo { /* XXX: no kernel header file */
1338 1.87 lukem LIST_ENTRY(uidinfo) ui_hash;
1339 1.87 lukem uid_t ui_uid;
1340 1.87 lukem long ui_proccnt;
1341 1.87 lukem };
1342 1.87 lukem
1343 1.87 lukem struct kernel_hash {
1344 1.90 lukem const char * description; /* description */
1345 1.90 lukem int hashsize; /* nlist index for hash size */
1346 1.90 lukem int hashtbl; /* nlist index for hash table */
1347 1.90 lukem enum hashtype type; /* type of hash table */
1348 1.101 sommerfe size_t offset; /* offset of {LIST,TAILQ}_NEXT */
1349 1.87 lukem } khashes[] =
1350 1.87 lukem {
1351 1.87 lukem {
1352 1.90 lukem "buffer hash",
1353 1.90 lukem X_BUFHASH, X_BUFHASHTBL,
1354 1.90 lukem HASH_LIST, offsetof(struct buf, b_hash)
1355 1.90 lukem }, {
1356 1.90 lukem "inode cache (ihash)",
1357 1.87 lukem X_IHASH, X_IHASHTBL,
1358 1.87 lukem HASH_LIST, offsetof(struct inode, i_hash)
1359 1.90 lukem }, {
1360 1.90 lukem "ipv4 address -> interface hash",
1361 1.87 lukem X_IFADDRHASH, X_IFADDRHASHTBL,
1362 1.87 lukem HASH_LIST, offsetof(struct in_ifaddr, ia_hash),
1363 1.90 lukem }, {
1364 1.90 lukem "name cache hash",
1365 1.89 lukem X_NCHASH, X_NCHASHTBL,
1366 1.89 lukem HASH_LIST, offsetof(struct namecache, nc_hash),
1367 1.90 lukem }, {
1368 1.90 lukem "name cache directory hash",
1369 1.89 lukem X_NCVHASH, X_NCVHASHTBL,
1370 1.89 lukem HASH_LIST, offsetof(struct namecache, nc_vhash),
1371 1.90 lukem }, {
1372 1.90 lukem "nfs client node cache",
1373 1.90 lukem X_NFSNODE, X_NFSNODETBL,
1374 1.90 lukem HASH_LIST, offsetof(struct nfsnode, n_hash)
1375 1.90 lukem }, {
1376 1.90 lukem "user info (uid -> used processes) hash",
1377 1.90 lukem X_UIHASH, X_UIHASHTBL,
1378 1.90 lukem HASH_LIST, offsetof(struct uidinfo, ui_hash),
1379 1.90 lukem }, {
1380 1.90 lukem NULL, -1, -1, 0, 0,
1381 1.87 lukem }
1382 1.87 lukem };
1383 1.87 lukem
1384 1.87 lukem void
1385 1.88 lukem dohashstat(int verbose, int todo, const char *hashname)
1386 1.101 sommerfe {
1387 1.87 lukem LIST_HEAD(, generic) *hashtbl_list;
1388 1.87 lukem TAILQ_HEAD(, generic) *hashtbl_tailq;
1389 1.87 lukem struct kernel_hash *curhash;
1390 1.118 itojun void *hashaddr, *hashbuf, *nhashbuf, *nextaddr;
1391 1.87 lukem size_t elemsize, hashbufsize, thissize;
1392 1.87 lukem u_long hashsize;
1393 1.87 lukem int i, used, items, chain, maxchain;
1394 1.87 lukem
1395 1.87 lukem hashbuf = NULL;
1396 1.87 lukem hashbufsize = 0;
1397 1.88 lukem
1398 1.88 lukem if (todo & HASHLIST) {
1399 1.153 christos (void)printf("Supported hashes:\n");
1400 1.90 lukem for (curhash = khashes; curhash->description; curhash++) {
1401 1.101 sommerfe if (hashnl[curhash->hashsize].n_value == 0 ||
1402 1.90 lukem hashnl[curhash->hashtbl].n_value == 0)
1403 1.90 lukem continue;
1404 1.153 christos (void)printf("\t%-16s%s\n",
1405 1.90 lukem hashnl[curhash->hashsize].n_name + 1,
1406 1.90 lukem curhash->description);
1407 1.88 lukem }
1408 1.88 lukem return;
1409 1.88 lukem }
1410 1.88 lukem
1411 1.88 lukem if (hashname != NULL) {
1412 1.90 lukem for (curhash = khashes; curhash->description; curhash++) {
1413 1.90 lukem if (strcmp(hashnl[curhash->hashsize].n_name + 1,
1414 1.90 lukem hashname) == 0 &&
1415 1.101 sommerfe hashnl[curhash->hashsize].n_value != 0 &&
1416 1.90 lukem hashnl[curhash->hashtbl].n_value != 0)
1417 1.88 lukem break;
1418 1.88 lukem }
1419 1.90 lukem if (curhash->description == NULL) {
1420 1.90 lukem warnx("%s: no such hash", hashname);
1421 1.90 lukem return;
1422 1.90 lukem }
1423 1.88 lukem }
1424 1.88 lukem
1425 1.153 christos (void)printf(
1426 1.88 lukem "%-16s %8s %8s %8s %8s %8s %8s\n"
1427 1.88 lukem "%-16s %8s %8s %8s %8s %8s %8s\n",
1428 1.88 lukem "", "total", "used", "util", "num", "average", "maximum",
1429 1.88 lukem "hash table", "buckets", "buckets", "%", "items", "chain",
1430 1.88 lukem "chain");
1431 1.87 lukem
1432 1.90 lukem for (curhash = khashes; curhash->description; curhash++) {
1433 1.101 sommerfe if (hashnl[curhash->hashsize].n_value == 0 ||
1434 1.90 lukem hashnl[curhash->hashtbl].n_value == 0)
1435 1.90 lukem continue;
1436 1.88 lukem if (hashname != NULL &&
1437 1.90 lukem strcmp(hashnl[curhash->hashsize].n_name + 1, hashname))
1438 1.88 lukem continue;
1439 1.87 lukem elemsize = curhash->type == HASH_LIST ?
1440 1.87 lukem sizeof(*hashtbl_list) : sizeof(*hashtbl_tailq);
1441 1.90 lukem deref_kptr((void *)hashnl[curhash->hashsize].n_value,
1442 1.90 lukem &hashsize, sizeof(hashsize),
1443 1.90 lukem hashnl[curhash->hashsize].n_name);
1444 1.87 lukem hashsize++;
1445 1.90 lukem deref_kptr((void *)hashnl[curhash->hashtbl].n_value,
1446 1.90 lukem &hashaddr, sizeof(hashaddr),
1447 1.90 lukem hashnl[curhash->hashtbl].n_name);
1448 1.87 lukem if (verbose)
1449 1.153 christos (void)printf(
1450 1.153 christos "%s %lu, %s %p, offset %ld, elemsize %llu\n",
1451 1.90 lukem hashnl[curhash->hashsize].n_name + 1, hashsize,
1452 1.90 lukem hashnl[curhash->hashtbl].n_name + 1, hashaddr,
1453 1.101 sommerfe (long)curhash->offset,
1454 1.91 jmc (unsigned long long)elemsize);
1455 1.87 lukem thissize = hashsize * elemsize;
1456 1.144 christos if (hashbuf == NULL || thissize > hashbufsize) {
1457 1.118 itojun if ((nhashbuf = realloc(hashbuf, thissize)) == NULL)
1458 1.101 sommerfe errx(1, "malloc hashbuf %llu",
1459 1.91 jmc (unsigned long long)hashbufsize);
1460 1.118 itojun hashbuf = nhashbuf;
1461 1.118 itojun hashbufsize = thissize;
1462 1.87 lukem }
1463 1.87 lukem deref_kptr(hashaddr, hashbuf, thissize,
1464 1.90 lukem hashnl[curhash->hashtbl].n_name);
1465 1.87 lukem used = 0;
1466 1.87 lukem items = maxchain = 0;
1467 1.135 lukem if (curhash->type == HASH_LIST) {
1468 1.87 lukem hashtbl_list = hashbuf;
1469 1.135 lukem hashtbl_tailq = NULL;
1470 1.135 lukem } else {
1471 1.135 lukem hashtbl_list = NULL;
1472 1.87 lukem hashtbl_tailq = hashbuf;
1473 1.135 lukem }
1474 1.87 lukem for (i = 0; i < hashsize; i++) {
1475 1.87 lukem if (curhash->type == HASH_LIST)
1476 1.87 lukem nextaddr = LIST_FIRST(&hashtbl_list[i]);
1477 1.87 lukem else
1478 1.87 lukem nextaddr = TAILQ_FIRST(&hashtbl_tailq[i]);
1479 1.87 lukem if (nextaddr == NULL)
1480 1.87 lukem continue;
1481 1.87 lukem if (verbose)
1482 1.153 christos (void)printf("%5d: %p\n", i, nextaddr);
1483 1.87 lukem used++;
1484 1.87 lukem chain = 0;
1485 1.87 lukem do {
1486 1.87 lukem chain++;
1487 1.87 lukem deref_kptr((char *)nextaddr + curhash->offset,
1488 1.87 lukem &nextaddr, sizeof(void *),
1489 1.87 lukem "hash chain corrupted");
1490 1.87 lukem if (verbose > 1)
1491 1.153 christos (void)printf("got nextaddr as %p\n",
1492 1.87 lukem nextaddr);
1493 1.87 lukem } while (nextaddr != NULL);
1494 1.87 lukem items += chain;
1495 1.87 lukem if (verbose && chain > 1)
1496 1.153 christos (void)printf("\tchain = %d\n", chain);
1497 1.87 lukem if (chain > maxchain)
1498 1.87 lukem maxchain = chain;
1499 1.87 lukem }
1500 1.153 christos (void)printf("%-16s %8ld %8d %8.2f %8d %8.2f %8d\n",
1501 1.90 lukem hashnl[curhash->hashsize].n_name + 1,
1502 1.87 lukem hashsize, used, used * 100.0 / hashsize,
1503 1.93 lukem items, used ? (double)items / used : 0.0, maxchain);
1504 1.87 lukem }
1505 1.87 lukem }
1506 1.87 lukem
1507 1.1 cgd /*
1508 1.147 kardel * kreadc like kread but returns 1 if sucessful, 0 otherwise
1509 1.147 kardel */
1510 1.147 kardel int
1511 1.147 kardel kreadc(struct nlist *nl, int nlx, void *addr, size_t size)
1512 1.147 kardel {
1513 1.147 kardel const char *sym;
1514 1.147 kardel
1515 1.147 kardel sym = nl[nlx].n_name;
1516 1.147 kardel if (*sym == '_')
1517 1.147 kardel ++sym;
1518 1.147 kardel if (nl[nlx].n_type == 0 || nl[nlx].n_value == 0)
1519 1.147 kardel return 0;
1520 1.147 kardel deref_kptr((void *)nl[nlx].n_value, addr, size, sym);
1521 1.147 kardel return 1;
1522 1.147 kardel }
1523 1.147 kardel
1524 1.147 kardel /*
1525 1.90 lukem * kread reads something from the kernel, given its nlist index in namelist[].
1526 1.1 cgd */
1527 1.1 cgd void
1528 1.133 chs kread(struct nlist *nl, int nlx, void *addr, size_t size)
1529 1.1 cgd {
1530 1.50 mycroft const char *sym;
1531 1.1 cgd
1532 1.133 chs sym = nl[nlx].n_name;
1533 1.87 lukem if (*sym == '_')
1534 1.87 lukem ++sym;
1535 1.133 chs if (nl[nlx].n_type == 0 || nl[nlx].n_value == 0)
1536 1.87 lukem errx(1, "symbol %s not defined", sym);
1537 1.133 chs deref_kptr((void *)nl[nlx].n_value, addr, size, sym);
1538 1.87 lukem }
1539 1.87 lukem
1540 1.87 lukem /*
1541 1.101 sommerfe * Dereference the kernel pointer `kptr' and fill in the local copy
1542 1.87 lukem * pointed to by `ptr'. The storage space must be pre-allocated,
1543 1.87 lukem * and the size of the copy passed in `len'.
1544 1.87 lukem */
1545 1.87 lukem void
1546 1.87 lukem deref_kptr(const void *kptr, void *ptr, size_t len, const char *msg)
1547 1.87 lukem {
1548 1.87 lukem
1549 1.87 lukem if (*msg == '_')
1550 1.87 lukem msg++;
1551 1.87 lukem if (kvm_read(kd, (u_long)kptr, (char *)ptr, len) != len)
1552 1.87 lukem errx(1, "kptr %lx: %s: %s", (u_long)kptr, msg, kvm_geterr(kd));
1553 1.1 cgd }
1554 1.1 cgd
1555 1.45 thorpej /*
1556 1.45 thorpej * Traverse the UVM history buffers, performing the requested action.
1557 1.45 thorpej *
1558 1.45 thorpej * Note, we assume that if we're not listing, we're dumping.
1559 1.45 thorpej */
1560 1.45 thorpej void
1561 1.73 simonb hist_traverse(int todo, const char *histname)
1562 1.45 thorpej {
1563 1.45 thorpej struct uvm_history_head histhead;
1564 1.45 thorpej struct uvm_history hist, *histkva;
1565 1.45 thorpej char *name = NULL;
1566 1.45 thorpej size_t namelen = 0;
1567 1.45 thorpej
1568 1.90 lukem if (histnl[0].n_value == 0) {
1569 1.87 lukem warnx("UVM history is not compiled into the kernel.");
1570 1.45 thorpej return;
1571 1.45 thorpej }
1572 1.45 thorpej
1573 1.87 lukem deref_kptr((void *)histnl[X_UVM_HISTORIES].n_value, &histhead,
1574 1.87 lukem sizeof(histhead), histnl[X_UVM_HISTORIES].n_name);
1575 1.45 thorpej
1576 1.45 thorpej if (histhead.lh_first == NULL) {
1577 1.87 lukem warnx("No active UVM history logs.");
1578 1.45 thorpej return;
1579 1.45 thorpej }
1580 1.45 thorpej
1581 1.45 thorpej if (todo & HISTLIST)
1582 1.153 christos (void)printf("Active UVM histories:");
1583 1.45 thorpej
1584 1.75 enami for (histkva = LIST_FIRST(&histhead); histkva != NULL;
1585 1.75 enami histkva = LIST_NEXT(&hist, list)) {
1586 1.87 lukem deref_kptr(histkva, &hist, sizeof(hist), "histkva");
1587 1.142 christos if (name == NULL || hist.namelen > namelen) {
1588 1.45 thorpej if (name != NULL)
1589 1.45 thorpej free(name);
1590 1.45 thorpej namelen = hist.namelen;
1591 1.45 thorpej if ((name = malloc(namelen + 1)) == NULL)
1592 1.45 thorpej err(1, "malloc history name");
1593 1.45 thorpej }
1594 1.45 thorpej
1595 1.87 lukem deref_kptr(hist.name, name, namelen, "history name");
1596 1.45 thorpej name[namelen] = '\0';
1597 1.45 thorpej if (todo & HISTLIST)
1598 1.153 christos (void)printf(" %s", name);
1599 1.45 thorpej else {
1600 1.45 thorpej /*
1601 1.45 thorpej * If we're dumping all histories, do it, else
1602 1.45 thorpej * check to see if this is the one we want.
1603 1.45 thorpej */
1604 1.45 thorpej if (histname == NULL || strcmp(histname, name) == 0) {
1605 1.45 thorpej if (histname == NULL)
1606 1.153 christos (void)printf(
1607 1.153 christos "\nUVM history `%s':\n", name);
1608 1.45 thorpej hist_dodump(&hist);
1609 1.45 thorpej }
1610 1.45 thorpej }
1611 1.45 thorpej }
1612 1.45 thorpej
1613 1.45 thorpej if (todo & HISTLIST)
1614 1.153 christos (void)putchar('\n');
1615 1.45 thorpej
1616 1.45 thorpej if (name != NULL)
1617 1.45 thorpej free(name);
1618 1.45 thorpej }
1619 1.45 thorpej
1620 1.45 thorpej /*
1621 1.45 thorpej * Actually dump the history buffer at the specified KVA.
1622 1.45 thorpej */
1623 1.45 thorpej void
1624 1.73 simonb hist_dodump(struct uvm_history *histp)
1625 1.45 thorpej {
1626 1.45 thorpej struct uvm_history_ent *histents, *e;
1627 1.45 thorpej size_t histsize;
1628 1.45 thorpej char *fmt = NULL, *fn = NULL;
1629 1.45 thorpej size_t fmtlen = 0, fnlen = 0;
1630 1.45 thorpej int i;
1631 1.45 thorpej
1632 1.45 thorpej histsize = sizeof(struct uvm_history_ent) * histp->n;
1633 1.45 thorpej
1634 1.45 thorpej if ((histents = malloc(histsize)) == NULL)
1635 1.45 thorpej err(1, "malloc history entries");
1636 1.45 thorpej
1637 1.153 christos (void)memset(histents, 0, histsize);
1638 1.45 thorpej
1639 1.87 lukem deref_kptr(histp->e, histents, histsize, "history entries");
1640 1.45 thorpej i = histp->f;
1641 1.45 thorpej do {
1642 1.45 thorpej e = &histents[i];
1643 1.45 thorpej if (e->fmt != NULL) {
1644 1.143 christos if (fmt == NULL || e->fmtlen > fmtlen) {
1645 1.45 thorpej if (fmt != NULL)
1646 1.45 thorpej free(fmt);
1647 1.45 thorpej fmtlen = e->fmtlen;
1648 1.45 thorpej if ((fmt = malloc(fmtlen + 1)) == NULL)
1649 1.45 thorpej err(1, "malloc printf format");
1650 1.45 thorpej }
1651 1.143 christos if (fn == NULL || e->fnlen > fnlen) {
1652 1.45 thorpej if (fn != NULL)
1653 1.45 thorpej free(fn);
1654 1.45 thorpej fnlen = e->fnlen;
1655 1.45 thorpej if ((fn = malloc(fnlen + 1)) == NULL)
1656 1.45 thorpej err(1, "malloc function name");
1657 1.45 thorpej }
1658 1.45 thorpej
1659 1.87 lukem deref_kptr(e->fmt, fmt, fmtlen, "printf format");
1660 1.45 thorpej fmt[fmtlen] = '\0';
1661 1.45 thorpej
1662 1.87 lukem deref_kptr(e->fn, fn, fnlen, "function name");
1663 1.45 thorpej fn[fnlen] = '\0';
1664 1.45 thorpej
1665 1.153 christos (void)printf("%06ld.%06ld ", (long int)e->tv.tv_sec,
1666 1.61 kleink (long int)e->tv.tv_usec);
1667 1.153 christos (void)printf("%s#%ld: ", fn, e->call);
1668 1.153 christos (void)printf(fmt, e->v[0], e->v[1], e->v[2], e->v[3]);
1669 1.153 christos (void)putchar('\n');
1670 1.45 thorpej }
1671 1.45 thorpej i = (i + 1) % histp->n;
1672 1.45 thorpej } while (i != histp->f);
1673 1.45 thorpej
1674 1.45 thorpej free(histents);
1675 1.45 thorpej if (fmt != NULL)
1676 1.45 thorpej free(fmt);
1677 1.45 thorpej if (fn != NULL)
1678 1.45 thorpej free(fn);
1679 1.45 thorpej }
1680 1.45 thorpej
1681 1.1 cgd void
1682 1.73 simonb usage(void)
1683 1.1 cgd {
1684 1.47 mrg
1685 1.1 cgd (void)fprintf(stderr,
1686 1.131 wiz "usage: %s [-efHiLlmstUvW] [-c count] [-h hashname] [-M core] [-N system]\n"
1687 1.127 wiz "\t\t[-u histname] [-w wait] [disks]\n", getprogname());
1688 1.1 cgd exit(1);
1689 1.1 cgd }
1690