vmstat.c revision 1.49 1 1.49 dsl /* $NetBSD: vmstat.c,v 1.49 2003/02/18 14:55:05 dsl Exp $ */
2 1.2 jtc
3 1.1 jtc /*-
4 1.1 jtc * Copyright (c) 1983, 1989, 1992, 1993
5 1.1 jtc * The Regents of the University of California. All rights reserved.
6 1.1 jtc *
7 1.1 jtc * Redistribution and use in source and binary forms, with or without
8 1.1 jtc * modification, are permitted provided that the following conditions
9 1.1 jtc * are met:
10 1.1 jtc * 1. Redistributions of source code must retain the above copyright
11 1.1 jtc * notice, this list of conditions and the following disclaimer.
12 1.1 jtc * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 jtc * notice, this list of conditions and the following disclaimer in the
14 1.1 jtc * documentation and/or other materials provided with the distribution.
15 1.1 jtc * 3. All advertising materials mentioning features or use of this software
16 1.1 jtc * must display the following acknowledgement:
17 1.1 jtc * This product includes software developed by the University of
18 1.1 jtc * California, Berkeley and its contributors.
19 1.1 jtc * 4. Neither the name of the University nor the names of its contributors
20 1.1 jtc * may be used to endorse or promote products derived from this software
21 1.1 jtc * without specific prior written permission.
22 1.1 jtc *
23 1.1 jtc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 jtc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 jtc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 jtc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 jtc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 jtc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 jtc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 jtc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 jtc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 jtc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 jtc * SUCH DAMAGE.
34 1.1 jtc */
35 1.1 jtc
36 1.8 mrg #include <sys/cdefs.h>
37 1.1 jtc #ifndef lint
38 1.2 jtc #if 0
39 1.1 jtc static char sccsid[] = "@(#)vmstat.c 8.2 (Berkeley) 1/12/94";
40 1.2 jtc #endif
41 1.49 dsl __RCSID("$NetBSD: vmstat.c,v 1.49 2003/02/18 14:55:05 dsl Exp $");
42 1.1 jtc #endif /* not lint */
43 1.1 jtc
44 1.1 jtc /*
45 1.1 jtc * Cursed vmstat -- from Robert Elz.
46 1.1 jtc */
47 1.1 jtc
48 1.1 jtc #include <sys/param.h>
49 1.1 jtc #include <sys/dkstat.h>
50 1.1 jtc #include <sys/user.h>
51 1.1 jtc #include <sys/namei.h>
52 1.1 jtc #include <sys/sysctl.h>
53 1.44 dsl #include <sys/device.h>
54 1.1 jtc
55 1.11 mrg #include <uvm/uvm_extern.h>
56 1.11 mrg
57 1.3 mycroft #include <stdlib.h>
58 1.1 jtc #include <string.h>
59 1.41 abs #include <util.h>
60 1.3 mycroft
61 1.1 jtc #include "systat.h"
62 1.1 jtc #include "extern.h"
63 1.35 simonb #include "dkstats.h"
64 1.40 christos #include "utmpentry.h"
65 1.1 jtc
66 1.1 jtc static struct Info {
67 1.34 simonb struct uvmexp_sysctl uvmexp;
68 1.1 jtc struct vmtotal Total;
69 1.1 jtc struct nchstats nchstats;
70 1.1 jtc long nchcount;
71 1.1 jtc long *intrcnt;
72 1.44 dsl u_int64_t *evcnt;
73 1.1 jtc } s, s1, s2, z;
74 1.1 jtc
75 1.1 jtc #define cnt s.Cnt
76 1.1 jtc #define oldcnt s1.Cnt
77 1.1 jtc #define total s.Total
78 1.1 jtc #define nchtotal s.nchstats
79 1.1 jtc #define oldnchtotal s1.nchstats
80 1.1 jtc
81 1.1 jtc static enum state { BOOT, TIME, RUN } state = TIME;
82 1.1 jtc
83 1.33 ad static void allocinfo(struct Info *);
84 1.33 ad static void copyinfo(struct Info *, struct Info *);
85 1.33 ad static float cputime(int);
86 1.49 dsl static void dinfo(int, int, int);
87 1.33 ad static void getinfo(struct Info *, enum state);
88 1.33 ad static void putint(int, int, int, int);
89 1.33 ad static void putfloat(double, int, int, int, int, int);
90 1.33 ad static int ucount(void);
91 1.1 jtc
92 1.1 jtc static char buf[26];
93 1.25 simonb static u_int64_t t;
94 1.1 jtc static double etime;
95 1.1 jtc static float hertz;
96 1.1 jtc static int nintr;
97 1.1 jtc static long *intrloc;
98 1.1 jtc static char **intrname;
99 1.1 jtc static int nextintsrow;
100 1.49 dsl static int disk_horiz = 1;
101 1.1 jtc
102 1.1 jtc WINDOW *
103 1.33 ad openvmstat(void)
104 1.1 jtc {
105 1.1 jtc return (stdscr);
106 1.1 jtc }
107 1.1 jtc
108 1.1 jtc void
109 1.33 ad closevmstat(WINDOW *w)
110 1.1 jtc {
111 1.1 jtc
112 1.1 jtc if (w == NULL)
113 1.1 jtc return;
114 1.1 jtc wclear(w);
115 1.1 jtc wrefresh(w);
116 1.1 jtc }
117 1.1 jtc
118 1.1 jtc
119 1.1 jtc static struct nlist namelist[] = {
120 1.38 kleink #define X_NCHSTATS 0
121 1.1 jtc { "_nchstats" },
122 1.38 kleink #define X_INTRNAMES 1
123 1.1 jtc { "_intrnames" },
124 1.38 kleink #define X_EINTRNAMES 2
125 1.1 jtc { "_eintrnames" },
126 1.38 kleink #define X_INTRCNT 3
127 1.1 jtc { "_intrcnt" },
128 1.38 kleink #define X_EINTRCNT 4
129 1.1 jtc { "_eintrcnt" },
130 1.44 dsl #define X_ALLEVENTS 5
131 1.44 dsl { "_allevents" },
132 1.1 jtc { "" },
133 1.1 jtc };
134 1.1 jtc
135 1.1 jtc /*
136 1.1 jtc * These constants define where the major pieces are laid out
137 1.1 jtc */
138 1.1 jtc #define STATROW 0 /* uses 1 row and 68 cols */
139 1.1 jtc #define STATCOL 2
140 1.48 dsl #define MEMROW 9 /* uses 4 rows and 31 cols */
141 1.1 jtc #define MEMCOL 0
142 1.1 jtc #define PAGEROW 2 /* uses 4 rows and 26 cols */
143 1.48 dsl #define PAGECOL 54
144 1.48 dsl #define INTSROW 9 /* uses all rows to bottom and 17 cols */
145 1.48 dsl #define INTSCOL 40
146 1.48 dsl #define INTSCOLEND (VMSTATCOL - 0)
147 1.48 dsl #define PROCSROW 2 /* uses 2 rows and 20 cols */
148 1.1 jtc #define PROCSCOL 0
149 1.48 dsl #define GENSTATROW 2 /* uses 2 rows and 30 cols */
150 1.36 augustss #define GENSTATCOL 18
151 1.48 dsl #define VMSTATROW 7 /* uses 17 rows and 15 cols */
152 1.48 dsl #define VMSTATCOL 64
153 1.48 dsl #define GRAPHROW 5 /* uses 3 rows and 51 cols */
154 1.1 jtc #define GRAPHCOL 0
155 1.1 jtc #define NAMEIROW 14 /* uses 3 rows and 38 cols */
156 1.1 jtc #define NAMEICOL 0
157 1.1 jtc #define DISKROW 18 /* uses 5 rows and 50 cols (for 9 drives) */
158 1.1 jtc #define DISKCOL 0
159 1.49 dsl #define DISKCOLWIDTH 6
160 1.49 dsl #define DISKCOLEND INTSCOL
161 1.1 jtc
162 1.44 dsl typedef struct intr_evcnt intr_evcnt_t;
163 1.44 dsl struct intr_evcnt {
164 1.44 dsl char *ie_group;
165 1.44 dsl char *ie_name;
166 1.44 dsl u_int64_t *ie_count; /* kernel address... */
167 1.44 dsl int ie_loc; /* screen row */
168 1.44 dsl } *ie_head;
169 1.44 dsl int nevcnt;
170 1.44 dsl
171 1.44 dsl static void
172 1.44 dsl get_interrupt_events(void)
173 1.44 dsl {
174 1.44 dsl struct evcntlist allevents;
175 1.44 dsl struct evcnt evcnt, *evptr;
176 1.44 dsl intr_evcnt_t *ie;
177 1.44 dsl
178 1.44 dsl if (!NREAD(X_ALLEVENTS, &allevents, sizeof allevents))
179 1.44 dsl return;
180 1.44 dsl evptr = allevents.tqh_first;
181 1.44 dsl for (; evptr != NULL; evptr = evcnt.ev_list.tqe_next) {
182 1.44 dsl if (!KREAD(evptr, &evcnt, sizeof evcnt))
183 1.44 dsl return;
184 1.44 dsl if (evcnt.ev_type != EVCNT_TYPE_INTR)
185 1.44 dsl continue;
186 1.44 dsl ie_head = realloc(ie_head, sizeof *ie * (nevcnt + 1));
187 1.44 dsl if (ie_head == NULL) {
188 1.44 dsl error("realloc failed");
189 1.44 dsl die(0);
190 1.44 dsl }
191 1.44 dsl ie = ie_head + nevcnt;
192 1.44 dsl ie->ie_group = malloc(evcnt.ev_grouplen + 1);
193 1.44 dsl ie->ie_name = malloc(evcnt.ev_namelen + 1);
194 1.44 dsl if (ie->ie_group == NULL || ie->ie_name == NULL)
195 1.44 dsl return;
196 1.46 dsl if (!KREAD(evcnt.ev_group, ie->ie_group, evcnt.ev_grouplen + 1))
197 1.44 dsl return;
198 1.46 dsl if (!KREAD(evcnt.ev_name, ie->ie_name, evcnt.ev_namelen + 1))
199 1.44 dsl return;
200 1.44 dsl ie->ie_count = &evptr->ev_count;
201 1.44 dsl ie->ie_loc = 0;
202 1.44 dsl nevcnt++;
203 1.44 dsl }
204 1.44 dsl }
205 1.44 dsl
206 1.1 jtc int
207 1.33 ad initvmstat(void)
208 1.1 jtc {
209 1.1 jtc char *intrnamebuf, *cp;
210 1.1 jtc int i;
211 1.1 jtc
212 1.1 jtc if (namelist[0].n_type == 0) {
213 1.1 jtc if (kvm_nlist(kd, namelist)) {
214 1.1 jtc nlisterr(namelist);
215 1.1 jtc return(0);
216 1.1 jtc }
217 1.1 jtc if (namelist[0].n_type == 0) {
218 1.1 jtc error("No namelist");
219 1.1 jtc return(0);
220 1.1 jtc }
221 1.1 jtc }
222 1.1 jtc hertz = stathz ? stathz : hz;
223 1.44 dsl if (!dkinit(1))
224 1.44 dsl return(0);
225 1.44 dsl
226 1.44 dsl /* Old style interrupt counts - deprecated */
227 1.44 dsl nintr = (namelist[X_EINTRCNT].n_value -
228 1.44 dsl namelist[X_INTRCNT].n_value) / sizeof (long);
229 1.44 dsl intrloc = calloc(nintr, sizeof (long));
230 1.44 dsl intrname = calloc(nintr, sizeof (long));
231 1.44 dsl intrnamebuf = malloc(namelist[X_EINTRNAMES].n_value -
232 1.44 dsl namelist[X_INTRNAMES].n_value);
233 1.44 dsl if (intrnamebuf == NULL || intrname == 0 || intrloc == 0) {
234 1.44 dsl error("Out of memory\n");
235 1.44 dsl if (intrnamebuf)
236 1.44 dsl free(intrnamebuf);
237 1.44 dsl if (intrname)
238 1.44 dsl free(intrname);
239 1.44 dsl if (intrloc)
240 1.44 dsl free(intrloc);
241 1.44 dsl nintr = 0;
242 1.1 jtc return(0);
243 1.1 jtc }
244 1.44 dsl NREAD(X_INTRNAMES, intrnamebuf, NVAL(X_EINTRNAMES) -
245 1.44 dsl NVAL(X_INTRNAMES));
246 1.44 dsl for (cp = intrnamebuf, i = 0; i < nintr; i++) {
247 1.44 dsl intrname[i] = cp;
248 1.44 dsl cp += strlen(cp) + 1;
249 1.44 dsl }
250 1.44 dsl
251 1.44 dsl /* event counter interrupt counts */
252 1.44 dsl get_interrupt_events();
253 1.44 dsl
254 1.48 dsl nextintsrow = INTSROW + 1;
255 1.44 dsl allocinfo(&s);
256 1.44 dsl allocinfo(&s1);
257 1.44 dsl allocinfo(&s2);
258 1.44 dsl allocinfo(&z);
259 1.44 dsl
260 1.1 jtc getinfo(&s2, RUN);
261 1.1 jtc copyinfo(&s2, &s1);
262 1.1 jtc return(1);
263 1.1 jtc }
264 1.1 jtc
265 1.1 jtc void
266 1.33 ad fetchvmstat(void)
267 1.1 jtc {
268 1.1 jtc time_t now;
269 1.1 jtc
270 1.1 jtc time(&now);
271 1.1 jtc strcpy(buf, ctime(&now));
272 1.18 marc buf[19] = '\0';
273 1.1 jtc getinfo(&s, state);
274 1.1 jtc }
275 1.1 jtc
276 1.44 dsl static void
277 1.44 dsl print_ie_title(int i)
278 1.44 dsl {
279 1.44 dsl int width, name_width, group_width;
280 1.44 dsl
281 1.48 dsl width = INTSCOLEND - (INTSCOL + 9);
282 1.44 dsl if (width <= 0)
283 1.44 dsl return;
284 1.44 dsl
285 1.44 dsl move(ie_head[i].ie_loc, INTSCOL + 9);
286 1.44 dsl group_width = strlen(ie_head[i].ie_group);
287 1.44 dsl name_width = strlen(ie_head[i].ie_name);
288 1.44 dsl width -= group_width + 1 + name_width;
289 1.44 dsl if (width < 0) {
290 1.47 dsl /*
291 1.47 dsl * Screen to narrow for full strings
292 1.47 dsl * This is all rather horrid, in some cases there are a lot
293 1.47 dsl * of events in the same group, and in others the event
294 1.47 dsl * name is "intr". There are also names which need 7 or 8
295 1.47 dsl * columns before they become meaningful.
296 1.47 dsl * This is a bad compromise.
297 1.47 dsl */
298 1.44 dsl width = -width;
299 1.44 dsl group_width -= (width + 1) / 2;
300 1.44 dsl name_width -= width / 2;
301 1.47 dsl /* some have the 'useful' name "intr", display their group */
302 1.47 dsl if (strcasecmp(ie_head[i].ie_name, "intr") == 0) {
303 1.47 dsl group_width += name_width + 1;
304 1.47 dsl name_width = 0;
305 1.47 dsl } else {
306 1.47 dsl if (group_width <= 3 || name_width < 0) {
307 1.47 dsl /* don't display group */
308 1.47 dsl name_width += group_width + 1;
309 1.47 dsl group_width = 0;
310 1.47 dsl }
311 1.44 dsl }
312 1.44 dsl }
313 1.44 dsl
314 1.47 dsl if (group_width != 0) {
315 1.47 dsl printw("%-.*s", group_width, ie_head[i].ie_group);
316 1.47 dsl if (name_width != 0)
317 1.47 dsl printw(" ");
318 1.47 dsl }
319 1.47 dsl if (name_width != 0)
320 1.47 dsl printw("%-.*s", name_width, ie_head[i].ie_name);
321 1.44 dsl }
322 1.44 dsl
323 1.1 jtc void
324 1.33 ad labelvmstat(void)
325 1.1 jtc {
326 1.49 dsl int i;
327 1.1 jtc
328 1.1 jtc clear();
329 1.1 jtc mvprintw(STATROW, STATCOL + 4, "users Load");
330 1.42 christos mvprintw(MEMROW, MEMCOL, " memory totals (in kB)");
331 1.13 mrg mvprintw(MEMROW + 1, MEMCOL, " real virtual free");
332 1.13 mrg mvprintw(MEMROW + 2, MEMCOL, "Active");
333 1.13 mrg mvprintw(MEMROW + 3, MEMCOL, "All");
334 1.13 mrg
335 1.13 mrg mvprintw(PAGEROW, PAGECOL, " PAGING SWAPPING ");
336 1.13 mrg mvprintw(PAGEROW + 1, PAGECOL, " in out in out ");
337 1.13 mrg mvprintw(PAGEROW + 2, PAGECOL, "ops");
338 1.13 mrg mvprintw(PAGEROW + 3, PAGECOL, "pages");
339 1.1 jtc
340 1.48 dsl mvprintw(INTSROW, INTSCOL + 9, "Interrupts");
341 1.1 jtc
342 1.12 mrg mvprintw(VMSTATROW + 0, VMSTATCOL + 10, "forks");
343 1.12 mrg mvprintw(VMSTATROW + 1, VMSTATCOL + 10, "fkppw");
344 1.12 mrg mvprintw(VMSTATROW + 2, VMSTATCOL + 10, "fksvm");
345 1.12 mrg mvprintw(VMSTATROW + 3, VMSTATCOL + 10, "pwait");
346 1.12 mrg mvprintw(VMSTATROW + 4, VMSTATCOL + 10, "relck");
347 1.12 mrg mvprintw(VMSTATROW + 5, VMSTATCOL + 10, "rlkok");
348 1.12 mrg mvprintw(VMSTATROW + 6, VMSTATCOL + 10, "noram");
349 1.12 mrg mvprintw(VMSTATROW + 7, VMSTATCOL + 10, "ndcpy");
350 1.12 mrg mvprintw(VMSTATROW + 8, VMSTATCOL + 10, "fltcp");
351 1.12 mrg mvprintw(VMSTATROW + 9, VMSTATCOL + 10, "zfod");
352 1.12 mrg mvprintw(VMSTATROW + 10, VMSTATCOL + 10, "cow");
353 1.12 mrg mvprintw(VMSTATROW + 11, VMSTATCOL + 10, "fmin");
354 1.12 mrg mvprintw(VMSTATROW + 12, VMSTATCOL + 10, "ftarg");
355 1.12 mrg mvprintw(VMSTATROW + 13, VMSTATCOL + 10, "itarg");
356 1.12 mrg mvprintw(VMSTATROW + 14, VMSTATCOL + 10, "wired");
357 1.12 mrg mvprintw(VMSTATROW + 15, VMSTATCOL + 10, "pdfre");
358 1.12 mrg if (LINES - 1 > VMSTATROW + 16)
359 1.12 mrg mvprintw(VMSTATROW + 16, VMSTATCOL + 10, "pdscn");
360 1.1 jtc
361 1.36 augustss mvprintw(GENSTATROW, GENSTATCOL, " Csw Trp Sys Int Sof Flt");
362 1.1 jtc
363 1.1 jtc mvprintw(GRAPHROW, GRAPHCOL,
364 1.28 mycroft " . %% Sy . %% Us . %% Ni . %% In . %% Id");
365 1.13 mrg mvprintw(PROCSROW, PROCSCOL, "Proc:r d s w");
366 1.1 jtc mvprintw(GRAPHROW + 1, GRAPHCOL,
367 1.1 jtc "| | | | | | | | | | |");
368 1.1 jtc
369 1.1 jtc mvprintw(NAMEIROW, NAMEICOL, "Namei Sys-cache Proc-cache");
370 1.1 jtc mvprintw(NAMEIROW + 1, NAMEICOL,
371 1.1 jtc " Calls hits %% hits %%");
372 1.49 dsl mvprintw(DISKROW, DISKCOL, "Discs:");
373 1.49 dsl if (disk_horiz) {
374 1.49 dsl mvprintw(DISKROW + 1, DISKCOL + 1, "seeks");
375 1.49 dsl mvprintw(DISKROW + 2, DISKCOL + 1, "xfers");
376 1.49 dsl mvprintw(DISKROW + 3, DISKCOL + 1, "bytes");
377 1.49 dsl mvprintw(DISKROW + 4, DISKCOL + 1, "%%busy");
378 1.49 dsl } else {
379 1.49 dsl mvprintw(DISKROW, DISKCOL + 1 + 1 * DISKCOLWIDTH, "seeks");
380 1.49 dsl mvprintw(DISKROW, DISKCOL + 1 + 2 * DISKCOLWIDTH, "xfers");
381 1.49 dsl mvprintw(DISKROW, DISKCOL + 1 + 3 * DISKCOLWIDTH, "bytes");
382 1.49 dsl mvprintw(DISKROW, DISKCOL + 1 + 4 * DISKCOLWIDTH, "%%busy");
383 1.49 dsl }
384 1.1 jtc for (i = 0; i < nintr; i++) {
385 1.1 jtc if (intrloc[i] == 0)
386 1.1 jtc continue;
387 1.47 dsl mvprintw(intrloc[i], INTSCOL + 9, "%-.*s",
388 1.48 dsl INTSCOLEND - (INTSCOL + 9), intrname[i]);
389 1.1 jtc }
390 1.44 dsl for (i = 0; i < nevcnt; i++) {
391 1.44 dsl if (ie_head[i].ie_loc == 0)
392 1.44 dsl continue;
393 1.44 dsl print_ie_title(i);
394 1.44 dsl }
395 1.1 jtc }
396 1.1 jtc
397 1.1 jtc #define X(fld) {t=s.fld[i]; s.fld[i]-=s1.fld[i]; if(state==TIME) s1.fld[i]=t;}
398 1.1 jtc #define Y(fld) {t = s.fld; s.fld -= s1.fld; if(state == TIME) s1.fld = t;}
399 1.1 jtc #define Z(fld) {t = s.nchstats.fld; s.nchstats.fld -= s1.nchstats.fld; \
400 1.1 jtc if(state == TIME) s1.nchstats.fld = t;}
401 1.16 mycroft #define PUTRATE(fld, l, c, w) {Y(fld); putint((int)((float)s.fld/etime + 0.5), l, c, w);}
402 1.1 jtc #define MAXFAIL 5
403 1.1 jtc
404 1.25 simonb static char cpuchar[CPUSTATES] = { '=' , '>', '-', '%', ' ' };
405 1.25 simonb static char cpuorder[CPUSTATES] = { CP_SYS, CP_USER, CP_NICE, CP_INTR, CP_IDLE };
406 1.1 jtc
407 1.1 jtc void
408 1.33 ad showvmstat(void)
409 1.1 jtc {
410 1.1 jtc float f1, f2;
411 1.1 jtc int psiz, inttotal;
412 1.49 dsl int i, l, r, c;
413 1.1 jtc static int failcnt = 0;
414 1.49 dsl static int relabel = 0;
415 1.49 dsl static int last_disks = 0;
416 1.49 dsl
417 1.49 dsl if (relabel) {
418 1.49 dsl labelvmstat();
419 1.49 dsl relabel = 0;
420 1.49 dsl }
421 1.39 sommerfe
422 1.44 dsl if (state == TIME) {
423 1.5 thorpej dkswap();
424 1.44 dsl etime = cur.cp_etime;
425 1.44 dsl /* < 5 ticks - ignore this trash */
426 1.44 dsl if ((etime * hertz) < 1.0) {
427 1.44 dsl if (failcnt++ > MAXFAIL)
428 1.44 dsl return;
429 1.1 jtc clear();
430 1.1 jtc mvprintw(2, 10, "The alternate system clock has died!");
431 1.1 jtc mvprintw(3, 10, "Reverting to ``pigs'' display.");
432 1.1 jtc move(CMDLINE, 0);
433 1.1 jtc refresh();
434 1.1 jtc failcnt = 0;
435 1.1 jtc sleep(5);
436 1.1 jtc command("pigs");
437 1.44 dsl return;
438 1.1 jtc }
439 1.44 dsl } else
440 1.44 dsl etime = 1.0;
441 1.44 dsl
442 1.1 jtc failcnt = 0;
443 1.1 jtc inttotal = 0;
444 1.1 jtc for (i = 0; i < nintr; i++) {
445 1.1 jtc if (s.intrcnt[i] == 0)
446 1.1 jtc continue;
447 1.1 jtc if (intrloc[i] == 0) {
448 1.1 jtc if (nextintsrow == LINES)
449 1.1 jtc continue;
450 1.1 jtc intrloc[i] = nextintsrow++;
451 1.47 dsl mvprintw(intrloc[i], INTSCOL + 9, "%-.*s",
452 1.48 dsl INTSCOLEND - (INTSCOL + 9), intrname[i]);
453 1.1 jtc }
454 1.1 jtc X(intrcnt);
455 1.1 jtc l = (int)((float)s.intrcnt[i]/etime + 0.5);
456 1.1 jtc inttotal += l;
457 1.1 jtc putint(l, intrloc[i], INTSCOL, 8);
458 1.1 jtc }
459 1.44 dsl for (i = 0; i < nevcnt; i++) {
460 1.44 dsl if (s.evcnt[i] == 0)
461 1.44 dsl continue;
462 1.44 dsl if (ie_head[i].ie_loc == 0) {
463 1.44 dsl if (nextintsrow == LINES)
464 1.44 dsl continue;
465 1.44 dsl ie_head[i].ie_loc = nextintsrow++;
466 1.44 dsl print_ie_title(i);
467 1.44 dsl }
468 1.44 dsl X(evcnt);
469 1.44 dsl l = (int)((float)s.evcnt[i]/etime + 0.5);
470 1.44 dsl inttotal += l;
471 1.44 dsl putint(l, ie_head[i].ie_loc, INTSCOL, 8);
472 1.44 dsl }
473 1.48 dsl putint(inttotal, INTSROW, INTSCOL, 8);
474 1.1 jtc Z(ncs_goodhits); Z(ncs_badhits); Z(ncs_miss);
475 1.1 jtc Z(ncs_long); Z(ncs_pass2); Z(ncs_2passes);
476 1.1 jtc s.nchcount = nchtotal.ncs_goodhits + nchtotal.ncs_badhits +
477 1.1 jtc nchtotal.ncs_miss + nchtotal.ncs_long;
478 1.1 jtc if (state == TIME)
479 1.1 jtc s1.nchcount = s.nchcount;
480 1.1 jtc
481 1.1 jtc psiz = 0;
482 1.1 jtc f2 = 0.0;
483 1.1 jtc
484 1.39 sommerfe /*
485 1.1 jtc * Last CPU state not calculated yet.
486 1.1 jtc */
487 1.28 mycroft for (c = 0; c < CPUSTATES; c++) {
488 1.1 jtc i = cpuorder[c];
489 1.1 jtc f1 = cputime(i);
490 1.1 jtc f2 += f1;
491 1.1 jtc l = (int) ((f2 + 1.0) / 2.0) - psiz;
492 1.1 jtc if (c == 0)
493 1.1 jtc putfloat(f1, GRAPHROW, GRAPHCOL + 1, 5, 1, 0);
494 1.1 jtc else
495 1.28 mycroft putfloat(f1, GRAPHROW, GRAPHCOL + 10 * c + 1, 5, 1, 0);
496 1.28 mycroft mvhline(GRAPHROW + 2, psiz, cpuchar[c], l);
497 1.1 jtc psiz += l;
498 1.1 jtc }
499 1.1 jtc
500 1.1 jtc putint(ucount(), STATROW, STATCOL, 3);
501 1.1 jtc putfloat(avenrun[0], STATROW, STATCOL + 17, 6, 2, 0);
502 1.1 jtc putfloat(avenrun[1], STATROW, STATCOL + 23, 6, 2, 0);
503 1.1 jtc putfloat(avenrun[2], STATROW, STATCOL + 29, 6, 2, 0);
504 1.1 jtc mvaddstr(STATROW, STATCOL + 53, buf);
505 1.17 drochner #define pgtokb(pg) ((pg) * (s.uvmexp.pagesize / 1024))
506 1.11 mrg
507 1.13 mrg putint(pgtokb(s.uvmexp.active), MEMROW + 2, MEMCOL + 6, 7);
508 1.12 mrg putint(pgtokb(s.uvmexp.active + s.uvmexp.swpginuse), /* XXX */
509 1.13 mrg MEMROW + 2, MEMCOL + 16, 7);
510 1.13 mrg putint(pgtokb(s.uvmexp.npages - s.uvmexp.free), MEMROW + 3, MEMCOL + 6, 7);
511 1.12 mrg putint(pgtokb(s.uvmexp.npages - s.uvmexp.free + s.uvmexp.swpginuse),
512 1.13 mrg MEMROW + 3, MEMCOL + 16, 7);
513 1.13 mrg putint(pgtokb(s.uvmexp.free), MEMROW + 2, MEMCOL + 24, 7);
514 1.12 mrg putint(pgtokb(s.uvmexp.free + s.uvmexp.swpages - s.uvmexp.swpginuse),
515 1.13 mrg MEMROW + 3, MEMCOL + 24, 7);
516 1.1 jtc putint(total.t_rq - 1, PROCSROW + 1, PROCSCOL + 3, 3);
517 1.13 mrg putint(total.t_dw, PROCSROW + 1, PROCSCOL + 6, 3);
518 1.13 mrg putint(total.t_sl, PROCSROW + 1, PROCSCOL + 9, 3);
519 1.13 mrg putint(total.t_sw, PROCSROW + 1, PROCSCOL + 12, 3);
520 1.12 mrg PUTRATE(uvmexp.forks, VMSTATROW + 0, VMSTATCOL + 3, 6);
521 1.12 mrg PUTRATE(uvmexp.forks_ppwait, VMSTATROW + 1, VMSTATCOL + 3, 6);
522 1.12 mrg PUTRATE(uvmexp.forks_sharevm, VMSTATROW + 2, VMSTATCOL + 3, 6);
523 1.12 mrg PUTRATE(uvmexp.fltpgwait, VMSTATROW + 3, VMSTATCOL + 4, 5);
524 1.12 mrg PUTRATE(uvmexp.fltrelck, VMSTATROW + 4, VMSTATCOL + 3, 6);
525 1.12 mrg PUTRATE(uvmexp.fltrelckok, VMSTATROW + 5, VMSTATCOL + 3, 6);
526 1.12 mrg PUTRATE(uvmexp.fltnoram, VMSTATROW + 6, VMSTATCOL + 3, 6);
527 1.12 mrg PUTRATE(uvmexp.fltamcopy, VMSTATROW + 7, VMSTATCOL + 3, 6);
528 1.12 mrg PUTRATE(uvmexp.flt_prcopy, VMSTATROW + 8, VMSTATCOL + 3, 6);
529 1.12 mrg PUTRATE(uvmexp.flt_przero, VMSTATROW + 9, VMSTATCOL + 3, 6);
530 1.12 mrg PUTRATE(uvmexp.flt_acow, VMSTATROW + 10, VMSTATCOL, 9);
531 1.12 mrg putint(s.uvmexp.freemin, VMSTATROW + 11, VMSTATCOL, 9);
532 1.12 mrg putint(s.uvmexp.freetarg, VMSTATROW + 12, VMSTATCOL, 9);
533 1.12 mrg putint(s.uvmexp.inactarg, VMSTATROW + 13, VMSTATCOL, 9);
534 1.12 mrg putint(s.uvmexp.wired, VMSTATROW + 14, VMSTATCOL, 9);
535 1.12 mrg PUTRATE(uvmexp.pdfreed, VMSTATROW + 15, VMSTATCOL, 9);
536 1.11 mrg if (LINES - 1 > VMSTATROW + 16)
537 1.12 mrg PUTRATE(uvmexp.pdscans, VMSTATROW + 16, VMSTATCOL, 9);
538 1.12 mrg
539 1.12 mrg PUTRATE(uvmexp.pageins, PAGEROW + 2, PAGECOL + 5, 5);
540 1.11 mrg PUTRATE(uvmexp.pdpageouts, PAGEROW + 2, PAGECOL + 10, 5);
541 1.12 mrg PUTRATE(uvmexp.swapins, PAGEROW + 2, PAGECOL + 15, 5);
542 1.12 mrg PUTRATE(uvmexp.swapouts, PAGEROW + 2, PAGECOL + 20, 5);
543 1.12 mrg PUTRATE(uvmexp.pgswapin, PAGEROW + 3, PAGECOL + 5, 5);
544 1.12 mrg PUTRATE(uvmexp.pgswapout, PAGEROW + 3, PAGECOL + 10, 5);
545 1.12 mrg
546 1.36 augustss PUTRATE(uvmexp.swtch, GENSTATROW + 1, GENSTATCOL, 4);
547 1.36 augustss PUTRATE(uvmexp.traps, GENSTATROW + 1, GENSTATCOL + 4, 6);
548 1.36 augustss PUTRATE(uvmexp.syscalls, GENSTATROW + 1, GENSTATCOL + 10, 6);
549 1.36 augustss PUTRATE(uvmexp.intrs, GENSTATROW + 1, GENSTATCOL + 16, 5);
550 1.36 augustss PUTRATE(uvmexp.softs, GENSTATROW + 1, GENSTATCOL + 21, 5);
551 1.36 augustss PUTRATE(uvmexp.faults, GENSTATROW + 1, GENSTATCOL + 26, 6);
552 1.49 dsl for (l = 0, i = 0, r = DISKROW, c = DISKCOL; i < dk_ndrive; i++) {
553 1.49 dsl if (!dk_select[i])
554 1.49 dsl continue;
555 1.49 dsl if (disk_horiz)
556 1.49 dsl c += DISKCOLWIDTH;
557 1.49 dsl else
558 1.49 dsl r++;
559 1.49 dsl if (c + DISKCOLWIDTH > DISKCOLEND) {
560 1.49 dsl if (disk_horiz && LINES - 1 - DISKROW >
561 1.49 dsl (DISKCOLEND - DISKCOL) / DISKCOLWIDTH) {
562 1.49 dsl disk_horiz = 0;
563 1.49 dsl relabel = 1;
564 1.49 dsl }
565 1.49 dsl break;
566 1.1 jtc }
567 1.49 dsl if (r >= LINES - 1) {
568 1.49 dsl if (!disk_horiz && LINES - 1 - DISKROW <
569 1.49 dsl (DISKCOLEND - DISKCOL) / DISKCOLWIDTH) {
570 1.49 dsl disk_horiz = 1;
571 1.49 dsl relabel = 1;
572 1.49 dsl }
573 1.49 dsl break;
574 1.49 dsl }
575 1.49 dsl l++;
576 1.49 dsl
577 1.49 dsl dinfo(i, r, c);
578 1.49 dsl }
579 1.49 dsl /* blank out if we lost any disks */
580 1.49 dsl for (i = l; i < last_disks; i++) {
581 1.49 dsl int j;
582 1.49 dsl if (disk_horiz)
583 1.49 dsl c += DISKCOLWIDTH;
584 1.49 dsl else
585 1.49 dsl r++;
586 1.49 dsl for (j = 0; j < 5; j++) {
587 1.49 dsl mvprintw(r, c, "%*s", DISKCOLWIDTH, "");
588 1.49 dsl if (disk_horiz)
589 1.49 dsl r++;
590 1.49 dsl else
591 1.49 dsl c += DISKCOLWIDTH;
592 1.49 dsl }
593 1.49 dsl }
594 1.49 dsl last_disks = l;
595 1.1 jtc putint(s.nchcount, NAMEIROW + 2, NAMEICOL, 9);
596 1.1 jtc putint(nchtotal.ncs_goodhits, NAMEIROW + 2, NAMEICOL + 9, 9);
597 1.1 jtc #define nz(x) ((x) ? (x) : 1)
598 1.1 jtc putfloat(nchtotal.ncs_goodhits * 100.0 / nz(s.nchcount),
599 1.1 jtc NAMEIROW + 2, NAMEICOL + 19, 4, 0, 1);
600 1.1 jtc putint(nchtotal.ncs_pass2, NAMEIROW + 2, NAMEICOL + 23, 9);
601 1.1 jtc putfloat(nchtotal.ncs_pass2 * 100.0 / nz(s.nchcount),
602 1.1 jtc NAMEIROW + 2, NAMEICOL + 34, 4, 0, 1);
603 1.1 jtc #undef nz
604 1.1 jtc }
605 1.1 jtc
606 1.22 jwise void
607 1.33 ad vmstat_boot(char *args)
608 1.22 jwise {
609 1.22 jwise copyinfo(&z, &s1);
610 1.22 jwise state = BOOT;
611 1.22 jwise }
612 1.22 jwise
613 1.22 jwise void
614 1.33 ad vmstat_run(char *args)
615 1.22 jwise {
616 1.22 jwise copyinfo(&s1, &s2);
617 1.22 jwise state = RUN;
618 1.22 jwise }
619 1.22 jwise
620 1.22 jwise void
621 1.44 dsl vmstat_time(char *args)
622 1.1 jtc {
623 1.22 jwise state = TIME;
624 1.22 jwise }
625 1.1 jtc
626 1.22 jwise void
627 1.33 ad vmstat_zero(char *args)
628 1.22 jwise {
629 1.22 jwise if (state == RUN)
630 1.22 jwise getinfo(&s1, RUN);
631 1.1 jtc }
632 1.1 jtc
633 1.1 jtc /* calculate number of users on the system */
634 1.1 jtc static int
635 1.33 ad ucount(void)
636 1.1 jtc {
637 1.40 christos static int onusers = -1;
638 1.40 christos static struct utmpentry *oehead = NULL;
639 1.40 christos int nusers = 0;
640 1.40 christos struct utmpentry *ehead;
641 1.40 christos
642 1.40 christos nusers = getutentries(NULL, &ehead);
643 1.40 christos if (oehead != ehead) {
644 1.40 christos freeutentries(oehead);
645 1.40 christos oehead = ehead;
646 1.40 christos }
647 1.1 jtc
648 1.21 mrg if (nusers != onusers) {
649 1.21 mrg if (nusers == 1)
650 1.21 mrg mvprintw(STATROW, STATCOL + 8, " ");
651 1.21 mrg else
652 1.21 mrg mvprintw(STATROW, STATCOL + 8, "s");
653 1.21 mrg }
654 1.21 mrg onusers = nusers;
655 1.1 jtc return (nusers);
656 1.1 jtc }
657 1.1 jtc
658 1.1 jtc static float
659 1.33 ad cputime(int indx)
660 1.1 jtc {
661 1.1 jtc double t;
662 1.10 lukem int i;
663 1.1 jtc
664 1.1 jtc t = 0;
665 1.1 jtc for (i = 0; i < CPUSTATES; i++)
666 1.39 sommerfe t += cur.cp_time[i];
667 1.1 jtc if (t == 0.0)
668 1.1 jtc t = 1.0;
669 1.39 sommerfe return (cur.cp_time[indx] * 100.0 / t);
670 1.1 jtc }
671 1.1 jtc
672 1.1 jtc static void
673 1.44 dsl puthumanint(u_int64_t n, int l, int c, int w)
674 1.41 abs {
675 1.41 abs char b[128];
676 1.41 abs
677 1.48 dsl if (move(l, c) != OK)
678 1.48 dsl return;
679 1.41 abs if (n == 0) {
680 1.41 abs hline(' ', w);
681 1.41 abs return;
682 1.41 abs }
683 1.44 dsl if (humanize_number(b, w, n, "", HN_AUTOSCALE, HN_NOSPACE) == -1 ) {
684 1.41 abs hline('*', w);
685 1.41 abs return;
686 1.41 abs }
687 1.41 abs hline(' ', w - strlen(b));
688 1.48 dsl mvaddstr(l, c + w - strlen(b), b);
689 1.41 abs }
690 1.41 abs
691 1.41 abs static void
692 1.33 ad putint(int n, int l, int c, int w)
693 1.1 jtc {
694 1.1 jtc char b[128];
695 1.1 jtc
696 1.48 dsl if (move(l, c) != OK)
697 1.48 dsl return;
698 1.1 jtc if (n == 0) {
699 1.30 mycroft hline(' ', w);
700 1.1 jtc return;
701 1.1 jtc }
702 1.14 mrg (void)snprintf(b, sizeof b, "%*d", w, n);
703 1.1 jtc if (strlen(b) > w) {
704 1.30 mycroft hline('*', w);
705 1.1 jtc return;
706 1.1 jtc }
707 1.1 jtc addstr(b);
708 1.1 jtc }
709 1.1 jtc
710 1.1 jtc static void
711 1.33 ad putfloat(double f, int l, int c, int w, int d, int nz)
712 1.1 jtc {
713 1.1 jtc char b[128];
714 1.1 jtc
715 1.48 dsl if (move(l, c) != OK)
716 1.48 dsl return;
717 1.1 jtc if (nz && f == 0.0) {
718 1.30 mycroft hline(' ', w);
719 1.1 jtc return;
720 1.1 jtc }
721 1.14 mrg (void)snprintf(b, sizeof b, "%*.*f", w, d, f);
722 1.1 jtc if (strlen(b) > w) {
723 1.30 mycroft hline('*', w);
724 1.1 jtc return;
725 1.1 jtc }
726 1.1 jtc addstr(b);
727 1.1 jtc }
728 1.1 jtc
729 1.1 jtc static void
730 1.33 ad getinfo(struct Info *s, enum state st)
731 1.1 jtc {
732 1.4 cgd int mib[2];
733 1.4 cgd size_t size;
734 1.44 dsl int i;
735 1.1 jtc
736 1.5 thorpej dkreadstats();
737 1.1 jtc NREAD(X_NCHSTATS, &s->nchstats, sizeof s->nchstats);
738 1.1 jtc NREAD(X_INTRCNT, s->intrcnt, nintr * LONG);
739 1.44 dsl for (i = 0; i < nevcnt; i++)
740 1.44 dsl KREAD(ie_head[i].ie_count, &s->evcnt[i], sizeof s->evcnt[i]);
741 1.11 mrg size = sizeof(s->uvmexp);
742 1.11 mrg mib[0] = CTL_VM;
743 1.34 simonb mib[1] = VM_UVMEXP2;
744 1.11 mrg if (sysctl(mib, 2, &s->uvmexp, &size, NULL, 0) < 0) {
745 1.11 mrg error("can't get uvmexp: %s\n", strerror(errno));
746 1.11 mrg memset(&s->uvmexp, 0, sizeof(s->uvmexp));
747 1.11 mrg }
748 1.1 jtc size = sizeof(s->Total);
749 1.1 jtc mib[0] = CTL_VM;
750 1.1 jtc mib[1] = VM_METER;
751 1.1 jtc if (sysctl(mib, 2, &s->Total, &size, NULL, 0) < 0) {
752 1.1 jtc error("Can't get kernel info: %s\n", strerror(errno));
753 1.10 lukem memset(&s->Total, 0, sizeof(s->Total));
754 1.1 jtc }
755 1.1 jtc }
756 1.1 jtc
757 1.1 jtc static void
758 1.33 ad allocinfo(struct Info *s)
759 1.1 jtc {
760 1.1 jtc
761 1.44 dsl if ((s->intrcnt = calloc(nintr, sizeof(long))) == NULL) {
762 1.44 dsl error("calloc failed");
763 1.44 dsl die(0);
764 1.44 dsl }
765 1.44 dsl if ((s->evcnt = calloc(nevcnt, sizeof(u_int64_t))) == NULL) {
766 1.44 dsl error("calloc failed");
767 1.23 jwise die(0);
768 1.23 jwise }
769 1.1 jtc }
770 1.1 jtc
771 1.1 jtc static void
772 1.33 ad copyinfo(struct Info *from, struct Info *to)
773 1.1 jtc {
774 1.1 jtc long *intrcnt;
775 1.44 dsl u_int64_t *evcnt;
776 1.1 jtc
777 1.5 thorpej intrcnt = to->intrcnt;
778 1.44 dsl evcnt = to->evcnt;
779 1.1 jtc *to = *from;
780 1.10 lukem memmove(to->intrcnt = intrcnt, from->intrcnt, nintr * sizeof (int));
781 1.44 dsl memmove(to->evcnt = evcnt, from->evcnt, nevcnt * sizeof *evcnt);
782 1.1 jtc }
783 1.1 jtc
784 1.1 jtc static void
785 1.49 dsl dinfo(int dn, int r, int c)
786 1.1 jtc {
787 1.44 dsl double atime;
788 1.49 dsl #define ADV if (disk_horiz) r++; else c += DISKCOLWIDTH
789 1.49 dsl
790 1.49 dsl mvprintw(r, c, "%*.*s", DISKCOLWIDTH, DISKCOLWIDTH, dr_name[dn]);
791 1.49 dsl ADV;
792 1.1 jtc
793 1.49 dsl putint((int)(cur.dk_seek[dn]/etime+0.5), r, c, DISKCOLWIDTH);
794 1.49 dsl ADV;
795 1.49 dsl putint((int)((cur.dk_rxfer[dn]+cur.dk_wxfer[dn])/etime+0.5),
796 1.49 dsl r, c, DISKCOLWIDTH);
797 1.49 dsl ADV;
798 1.49 dsl puthumanint((cur.dk_rbytes[dn] + cur.dk_wbytes[dn]) / etime + 0.5,
799 1.49 dsl r, c, DISKCOLWIDTH);
800 1.49 dsl ADV;
801 1.5 thorpej
802 1.5 thorpej /* time busy in disk activity */
803 1.49 dsl atime = cur.dk_time[dn].tv_sec + cur.dk_time[dn].tv_usec / 1000000.0;
804 1.49 dsl atime = atime * 100.0 / etime;
805 1.49 dsl if (atime >= 100)
806 1.49 dsl putint(100, r, c, DISKCOLWIDTH);
807 1.41 abs else
808 1.49 dsl putfloat(atime, r, c, DISKCOLWIDTH, 1, 1);
809 1.49 dsl #undef ADV
810 1.1 jtc }
811