syscall.c revision 1.3 1 1.3 dsl /* $NetBSD: syscall.c,v 1.3 2007/02/18 17:00:08 dsl Exp $ */
2 1.1 dsl
3 1.1 dsl /*-
4 1.1 dsl * Copyright (c) 2006 The NetBSD Foundation, Inc.
5 1.1 dsl * All rights reserved.
6 1.1 dsl *
7 1.1 dsl * This code is derived from software contributed to The NetBSD Foundation
8 1.1 dsl * by David Laight.
9 1.1 dsl *
10 1.1 dsl * Redistribution and use in source and binary forms, with or without
11 1.1 dsl * modification, are permitted provided that the following conditions
12 1.1 dsl * are met:
13 1.1 dsl * 1. Redistributions of source code must retain the above copyright
14 1.1 dsl * notice, this list of conditions and the following disclaimer.
15 1.1 dsl * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 dsl * notice, this list of conditions and the following disclaimer in the
17 1.1 dsl * documentation and/or other materials provided with the distribution.
18 1.1 dsl * 3. Neither the name of The NetBSD Foundation nor the names of its
19 1.1 dsl * contributors may be used to endorse or promote products derived
20 1.1 dsl * from this software without specific prior written permission.
21 1.1 dsl *
22 1.1 dsl * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
23 1.1 dsl * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
24 1.1 dsl * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
25 1.1 dsl * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
26 1.1 dsl * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
27 1.1 dsl * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
28 1.1 dsl * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
29 1.1 dsl * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
30 1.1 dsl * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
31 1.1 dsl * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
32 1.1 dsl * POSSIBILITY OF SUCH DAMAGE.
33 1.1 dsl */
34 1.1 dsl
35 1.1 dsl #include <sys/cdefs.h>
36 1.3 dsl __RCSID("$NetBSD: syscall.c,v 1.3 2007/02/18 17:00:08 dsl Exp $");
37 1.1 dsl
38 1.1 dsl /* System call stats */
39 1.1 dsl
40 1.1 dsl #include <sys/param.h>
41 1.1 dsl #include <sys/user.h>
42 1.1 dsl #include <sys/namei.h>
43 1.1 dsl #include <sys/sysctl.h>
44 1.1 dsl #include <sys/device.h>
45 1.1 dsl
46 1.1 dsl #include <uvm/uvm_extern.h>
47 1.1 dsl
48 1.2 dsl #include <errno.h>
49 1.1 dsl #include <stdlib.h>
50 1.1 dsl #include <string.h>
51 1.1 dsl #include <util.h>
52 1.1 dsl
53 1.1 dsl #include "systat.h"
54 1.1 dsl #include "extern.h"
55 1.2 dsl #include "drvstats.h"
56 1.1 dsl #include "utmpentry.h"
57 1.1 dsl #include "vmstat.h"
58 1.1 dsl
59 1.1 dsl #include <sys/syscall.h>
60 1.1 dsl #include <../../sys/kern/syscalls.c>
61 1.1 dsl
62 1.1 dsl #define nelem(x) (sizeof (x) / sizeof *(x))
63 1.1 dsl
64 1.1 dsl static struct Info {
65 1.2 dsl struct uvmexp_sysctl uvmexp;
66 1.2 dsl struct vmtotal Total;
67 1.2 dsl uint64_t counts[SYS_NSYSENT];
68 1.2 dsl uint64_t times[SYS_NSYSENT];
69 1.3 dsl } s, s1, s2;
70 1.3 dsl
71 1.3 dsl static uint64_t irf[SYS_NSYSENT], val[SYS_NSYSENT];
72 1.3 dsl static int irf_first = 1;
73 1.1 dsl
74 1.1 dsl int syscall_sort[SYS_NSYSENT];
75 1.1 dsl
76 1.1 dsl static enum sort_order { UNSORTED, NAMES, COUNTS } sort_order = NAMES;
77 1.1 dsl
78 1.2 dsl #define SHOW_COUNTS 1
79 1.2 dsl #define SHOW_TIMES 2
80 1.2 dsl static int show = SHOW_COUNTS;
81 1.2 dsl
82 1.2 dsl static void getinfo(struct Info *, int);
83 1.1 dsl
84 1.3 dsl static char buf[32];
85 1.1 dsl static float hertz;
86 1.1 dsl
87 1.2 dsl static size_t counts_mib_len, times_mib_len;
88 1.2 dsl static int counts_mib[4], times_mib[4];
89 1.1 dsl
90 1.1 dsl WINDOW *
91 1.1 dsl opensyscall(void)
92 1.1 dsl {
93 1.1 dsl return (stdscr);
94 1.1 dsl }
95 1.1 dsl
96 1.1 dsl void
97 1.1 dsl closesyscall(WINDOW *w)
98 1.1 dsl {
99 1.1 dsl
100 1.1 dsl if (w == NULL)
101 1.1 dsl return;
102 1.1 dsl wclear(w);
103 1.1 dsl wrefresh(w);
104 1.1 dsl }
105 1.1 dsl
106 1.1 dsl
107 1.1 dsl /*
108 1.1 dsl * These constants define where the major pieces are laid out
109 1.1 dsl */
110 1.1 dsl #define SYSCALLROW 9 /* Below the vmstat header */
111 1.1 dsl
112 1.1 dsl int
113 1.1 dsl initsyscall(void)
114 1.1 dsl {
115 1.1 dsl static char name[] = "name";
116 1.1 dsl
117 1.1 dsl hertz = stathz ? stathz : hz;
118 1.1 dsl
119 1.1 dsl syscall_order(name);
120 1.1 dsl
121 1.2 dsl /* drvinit gets number of cpus! */
122 1.2 dsl drvinit(1);
123 1.1 dsl
124 1.2 dsl counts_mib_len = nelem(counts_mib);
125 1.2 dsl if (sysctlnametomib("kern.syscalls.counts", counts_mib, &counts_mib_len))
126 1.2 dsl counts_mib_len = 0;
127 1.2 dsl
128 1.2 dsl times_mib_len = nelem(times_mib);
129 1.2 dsl if (sysctlnametomib("kern.syscalls.times", times_mib, ×_mib_len))
130 1.2 dsl times_mib_len = 0;
131 1.1 dsl
132 1.2 dsl getinfo(&s2, SHOW_COUNTS | SHOW_TIMES);
133 1.1 dsl s1 = s2;
134 1.2 dsl
135 1.1 dsl return(1);
136 1.1 dsl }
137 1.1 dsl
138 1.1 dsl void
139 1.1 dsl fetchsyscall(void)
140 1.1 dsl {
141 1.1 dsl time_t now;
142 1.1 dsl
143 1.1 dsl time(&now);
144 1.1 dsl strlcpy(buf, ctime(&now), sizeof(buf));
145 1.1 dsl buf[19] = '\0';
146 1.2 dsl getinfo(&s, show);
147 1.1 dsl }
148 1.1 dsl
149 1.1 dsl void
150 1.1 dsl labelsyscall(void)
151 1.1 dsl {
152 1.1 dsl labelvmstat_top();
153 1.1 dsl }
154 1.1 dsl
155 1.1 dsl #define MAXFAIL 5
156 1.1 dsl
157 1.3 dsl static void
158 1.3 dsl putuint64(uint64_t v, int row, int col, int width)
159 1.1 dsl {
160 1.3 dsl static const char suffix[] = "KMDT";
161 1.3 dsl int len, i;
162 1.1 dsl
163 1.3 dsl len = snprintf(buf, sizeof buf, "%" PRIu64, v);
164 1.3 dsl if (len > width) {
165 1.3 dsl i = (len - width) / 3;
166 1.3 dsl if (i >= sizeof suffix) {
167 1.3 dsl memset(buf, '*', width);
168 1.3 dsl len = width;
169 1.3 dsl } else {
170 1.3 dsl len -= (i + 1) * 3;
171 1.3 dsl buf[len++] = suffix[i];
172 1.3 dsl }
173 1.3 dsl buf[len] = 0;
174 1.3 dsl }
175 1.3 dsl mvprintw(row, col, "%*s", width, buf);
176 1.2 dsl }
177 1.2 dsl
178 1.2 dsl static int
179 1.3 dsl compare_irf(const void *a, const void *b)
180 1.2 dsl {
181 1.2 dsl int ia = *(const int *)a, ib = *(const int *)b;
182 1.2 dsl int64_t delta;
183 1.1 dsl
184 1.3 dsl delta = irf[ib] - irf[ia];
185 1.2 dsl return delta ? delta < 0 ? -1 : 1 : 0;
186 1.1 dsl }
187 1.1 dsl
188 1.1 dsl void
189 1.1 dsl showsyscall(void)
190 1.1 dsl {
191 1.1 dsl int i, ii, l, c;
192 1.3 dsl uint64_t v;
193 1.1 dsl static int failcnt = 0;
194 1.1 dsl static int relabel = 0;
195 1.1 dsl static char pigs[] = "pigs";
196 1.3 dsl uint64_t itime;
197 1.1 dsl
198 1.1 dsl if (relabel) {
199 1.1 dsl labelsyscall();
200 1.1 dsl relabel = 0;
201 1.1 dsl }
202 1.1 dsl
203 1.1 dsl cpuswap();
204 1.1 dsl if (display_mode == TIME) {
205 1.1 dsl etime = cur.cp_etime;
206 1.1 dsl /* < 5 ticks - ignore this trash */
207 1.1 dsl if ((etime * hertz) < 1.0) {
208 1.1 dsl if (failcnt++ > MAXFAIL)
209 1.1 dsl return;
210 1.1 dsl failcnt = 0;
211 1.1 dsl clear();
212 1.1 dsl mvprintw(2, 10, "The alternate system clock has died!");
213 1.1 dsl mvprintw(3, 10, "Reverting to ``pigs'' display.");
214 1.1 dsl move(CMDLINE, 0);
215 1.1 dsl refresh();
216 1.1 dsl failcnt = 0;
217 1.1 dsl sleep(5);
218 1.1 dsl command(pigs);
219 1.1 dsl return;
220 1.1 dsl }
221 1.1 dsl } else
222 1.1 dsl etime = 1.0;
223 1.3 dsl itime = etime * 100;
224 1.1 dsl
225 1.1 dsl failcnt = 0;
226 1.1 dsl
227 1.1 dsl show_vmstat_top(&s.Total, &s.uvmexp, &s1.uvmexp);
228 1.1 dsl
229 1.3 dsl /* Sort out the values we are going to display */
230 1.3 dsl for (i = 0; i < nelem(s.counts); i++) {
231 1.3 dsl switch (show) {
232 1.3 dsl default:
233 1.3 dsl case SHOW_COUNTS:
234 1.3 dsl v = s.counts[i] - s1.counts[i];
235 1.3 dsl break;
236 1.3 dsl case SHOW_TIMES:
237 1.3 dsl v = s.times[i] - s1.times[i];
238 1.3 dsl break;
239 1.3 dsl case SHOW_COUNTS | SHOW_TIMES: /* time/count */
240 1.3 dsl v = s.counts[i] - s1.counts[i];
241 1.3 dsl v = v ? (s.times[i] - s1.times[i]) / v : 0;
242 1.3 dsl }
243 1.3 dsl
244 1.3 dsl if (display_mode == TIME)
245 1.3 dsl v = (v * 100 + itime/2) / itime;
246 1.3 dsl
247 1.3 dsl val[i] = v;
248 1.3 dsl
249 1.1 dsl /*
250 1.1 dsl * We use an 'infinite response filter' in a vague
251 1.1 dsl * attempt to stop the data leaping around too much.
252 1.1 dsl * I suspect there are other/better methods in use.
253 1.1 dsl */
254 1.3 dsl if (irf_first) {
255 1.3 dsl irf[i] = v;
256 1.3 dsl irf_first = 0;
257 1.3 dsl } else {
258 1.3 dsl irf[i] = irf[i] * 7 / 8 + v;
259 1.1 dsl }
260 1.3 dsl }
261 1.1 dsl
262 1.3 dsl if (sort_order == COUNTS) {
263 1.1 dsl /* mergesort() doesn't swap equal values about... */
264 1.1 dsl mergesort(syscall_sort, nelem(syscall_sort),
265 1.3 dsl sizeof syscall_sort[0], compare_irf);
266 1.1 dsl }
267 1.1 dsl
268 1.1 dsl l = SYSCALLROW;
269 1.1 dsl c = 0;
270 1.1 dsl move(l, c);
271 1.2 dsl for (ii = 0; ii < nelem(s.counts); ii++) {
272 1.1 dsl i = syscall_sort[ii];
273 1.3 dsl if (val[i] == 0 && irf[i] == 0)
274 1.1 dsl continue;
275 1.1 dsl
276 1.1 dsl if (i < nelem(syscallnames)) {
277 1.1 dsl const char *name = syscallnames[i];
278 1.1 dsl while (name[0] == '_')
279 1.1 dsl name++;
280 1.1 dsl if (name[0] == 'c' && !strcmp(name + 1, "ompat_"))
281 1.1 dsl name += 7;
282 1.1 dsl mvprintw(l, c, "%17.17s", name);
283 1.1 dsl } else
284 1.1 dsl mvprintw(l, c, "syscall #%d ", i);
285 1.1 dsl
286 1.3 dsl putuint64(val[i], l, c + 18, 8);
287 1.1 dsl c += 27;
288 1.1 dsl if (c + 26 > COLS) {
289 1.1 dsl c = 0;
290 1.1 dsl l++;
291 1.1 dsl if (l >= LINES - 1)
292 1.1 dsl break;
293 1.1 dsl }
294 1.1 dsl }
295 1.2 dsl if (display_mode == TIME) {
296 1.2 dsl memcpy(s1.counts, s.counts, sizeof s1.counts);
297 1.2 dsl memcpy(s1.times, s.times, sizeof s1.times);
298 1.2 dsl }
299 1.1 dsl while (l < LINES - 1) {
300 1.1 dsl clrtoeol();
301 1.1 dsl move(++l, 0);
302 1.1 dsl }
303 1.1 dsl }
304 1.1 dsl
305 1.1 dsl void
306 1.1 dsl syscall_boot(char *args)
307 1.1 dsl {
308 1.1 dsl memset(&s1, 0, sizeof s1);
309 1.1 dsl display_mode = BOOT;
310 1.1 dsl }
311 1.1 dsl
312 1.1 dsl void
313 1.1 dsl syscall_run(char *args)
314 1.1 dsl {
315 1.1 dsl s1 = s2;
316 1.1 dsl display_mode = RUN;
317 1.1 dsl }
318 1.1 dsl
319 1.1 dsl void
320 1.1 dsl syscall_time(char *args)
321 1.1 dsl {
322 1.1 dsl display_mode = TIME;
323 1.1 dsl }
324 1.1 dsl
325 1.1 dsl void
326 1.1 dsl syscall_zero(char *args)
327 1.1 dsl {
328 1.1 dsl s1 = s;
329 1.1 dsl }
330 1.1 dsl
331 1.1 dsl static int
332 1.1 dsl compare_names(const void *a, const void *b)
333 1.1 dsl {
334 1.1 dsl const char *name_a = syscallnames[*(const int *)a];
335 1.1 dsl const char *name_b = syscallnames[*(const int *)b];
336 1.1 dsl
337 1.1 dsl while (*name_a == '_')
338 1.1 dsl name_a++;
339 1.1 dsl while (*name_b == '_')
340 1.1 dsl name_b++;
341 1.1 dsl
342 1.1 dsl return strcmp(name_a, name_b);
343 1.1 dsl }
344 1.1 dsl
345 1.1 dsl void
346 1.1 dsl syscall_order(char *args)
347 1.1 dsl {
348 1.1 dsl int i, len;
349 1.1 dsl
350 1.1 dsl if (args == NULL)
351 1.1 dsl goto usage;
352 1.1 dsl
353 1.1 dsl len = strcspn(args, " \t\r\n");
354 1.1 dsl
355 1.1 dsl if (args[len + strspn(args + len, " \t\r\n")])
356 1.1 dsl goto usage;
357 1.1 dsl
358 1.3 dsl if (memcmp(args, "count", len) == 0)
359 1.1 dsl sort_order = COUNTS;
360 1.3 dsl else if (memcmp(args, "name", len) == 0)
361 1.1 dsl sort_order = NAMES;
362 1.1 dsl else if (memcmp(args, "syscall", len) == 0)
363 1.1 dsl sort_order = UNSORTED;
364 1.1 dsl else
365 1.1 dsl goto usage;
366 1.1 dsl
367 1.1 dsl /* Undo all the sorting */
368 1.1 dsl for (i = 0; i < nelem(syscall_sort); i++)
369 1.1 dsl syscall_sort[i] = i;
370 1.1 dsl
371 1.1 dsl if (sort_order == NAMES) {
372 1.1 dsl /* Only sort the entries we have names for */
373 1.1 dsl qsort(syscall_sort, nelem(syscallnames), sizeof syscall_sort[0],
374 1.1 dsl compare_names);
375 1.1 dsl }
376 1.1 dsl return;
377 1.1 dsl
378 1.1 dsl usage:
379 1.1 dsl error("Usage: sort [count|name|syscall]");
380 1.1 dsl }
381 1.1 dsl
382 1.2 dsl void
383 1.2 dsl syscall_show(char *args)
384 1.2 dsl {
385 1.2 dsl int len;
386 1.2 dsl
387 1.2 dsl if (args == NULL)
388 1.2 dsl goto usage;
389 1.2 dsl
390 1.2 dsl len = strcspn(args, " \t\r\n");
391 1.2 dsl
392 1.2 dsl if (args[len + strspn(args + len, " \t\r\n")])
393 1.2 dsl goto usage;
394 1.2 dsl
395 1.2 dsl if (memcmp(args, "counts", len) == 0)
396 1.2 dsl show = SHOW_COUNTS;
397 1.2 dsl else if (memcmp(args, "times", len) == 0)
398 1.2 dsl show = SHOW_TIMES;
399 1.2 dsl else if (memcmp(args, "ratio", len) == 0)
400 1.2 dsl show = SHOW_COUNTS | SHOW_TIMES;
401 1.2 dsl else
402 1.2 dsl goto usage;
403 1.2 dsl
404 1.3 dsl memset(&irf, 0, sizeof irf);
405 1.3 dsl irf_first = 1;
406 1.3 dsl
407 1.2 dsl return;
408 1.2 dsl
409 1.2 dsl usage:
410 1.2 dsl error("Usage: show [counts|times|ratio]");
411 1.2 dsl }
412 1.2 dsl
413 1.1 dsl static void
414 1.2 dsl getinfo(struct Info *stats, int get_what)
415 1.1 dsl {
416 1.1 dsl int mib[2];
417 1.1 dsl size_t size;
418 1.1 dsl
419 1.1 dsl cpureadstats();
420 1.1 dsl
421 1.2 dsl if (get_what & SHOW_COUNTS) {
422 1.2 dsl size = sizeof stats->counts;
423 1.2 dsl if (!counts_mib_len ||
424 1.2 dsl sysctl(counts_mib, counts_mib_len, &stats->counts, &size,
425 1.2 dsl NULL, 0)) {
426 1.2 dsl error("can't get syscall counts: %s\n", strerror(errno));
427 1.2 dsl memset(&stats->counts, 0, sizeof stats->counts);
428 1.2 dsl }
429 1.2 dsl }
430 1.2 dsl
431 1.2 dsl if (get_what & SHOW_TIMES) {
432 1.2 dsl size = sizeof stats->times;
433 1.2 dsl if (!times_mib_len ||
434 1.2 dsl sysctl(times_mib, times_mib_len, &stats->times, &size,
435 1.2 dsl NULL, 0)) {
436 1.2 dsl error("can't get syscall times: %s\n", strerror(errno));
437 1.2 dsl memset(&stats->times, 0, sizeof stats->times);
438 1.2 dsl }
439 1.1 dsl }
440 1.1 dsl
441 1.1 dsl size = sizeof(stats->uvmexp);
442 1.1 dsl mib[0] = CTL_VM;
443 1.1 dsl mib[1] = VM_UVMEXP2;
444 1.1 dsl if (sysctl(mib, 2, &stats->uvmexp, &size, NULL, 0) < 0) {
445 1.1 dsl error("can't get uvmexp: %s\n", strerror(errno));
446 1.1 dsl memset(&stats->uvmexp, 0, sizeof(stats->uvmexp));
447 1.1 dsl }
448 1.1 dsl size = sizeof(stats->Total);
449 1.1 dsl mib[0] = CTL_VM;
450 1.1 dsl mib[1] = VM_METER;
451 1.1 dsl if (sysctl(mib, 2, &stats->Total, &size, NULL, 0) < 0) {
452 1.1 dsl error("Can't get kernel info: %s\n", strerror(errno));
453 1.1 dsl memset(&stats->Total, 0, sizeof(stats->Total));
454 1.1 dsl }
455 1.1 dsl }
456