main.c revision 1.13 1 1.13 ad /* $NetBSD: main.c,v 1.13 2008/04/28 15:36:01 ad Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.9 ad * Copyright (c) 2006, 2007 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.1 ad * by Andrew Doran.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad * 3. All advertising materials mentioning features or use of this software
19 1.1 ad * must display the following acknowledgement:
20 1.1 ad * This product includes software developed by the NetBSD
21 1.1 ad * Foundation, Inc. and its contributors.
22 1.1 ad * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 ad * contributors may be used to endorse or promote products derived
24 1.1 ad * from this software without specific prior written permission.
25 1.1 ad *
26 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
37 1.1 ad */
38 1.1 ad
39 1.1 ad /*
40 1.1 ad * TODO:
41 1.1 ad *
42 1.7 ad * - Tracking of times for sleep locks is broken.
43 1.1 ad * - Need better analysis and tracking of events.
44 1.1 ad * - Shouldn't have to parse the namelist here. We should use something like
45 1.1 ad * FreeBSD's libelf.
46 1.1 ad * - The way the namelist is searched sucks, is it worth doing something
47 1.1 ad * better?
48 1.1 ad */
49 1.1 ad
50 1.1 ad #include <sys/cdefs.h>
51 1.1 ad #ifndef lint
52 1.13 ad __RCSID("$NetBSD: main.c,v 1.13 2008/04/28 15:36:01 ad Exp $");
53 1.1 ad #endif /* not lint */
54 1.1 ad
55 1.1 ad #include <sys/types.h>
56 1.1 ad #include <sys/param.h>
57 1.1 ad #include <sys/time.h>
58 1.1 ad #include <sys/fcntl.h>
59 1.1 ad #include <sys/ioctl.h>
60 1.1 ad #include <sys/wait.h>
61 1.1 ad #include <sys/signal.h>
62 1.1 ad #include <sys/sysctl.h>
63 1.1 ad
64 1.2 ad #include <dev/lockstat.h>
65 1.2 ad
66 1.1 ad #include <stdio.h>
67 1.1 ad #include <stdlib.h>
68 1.1 ad #include <string.h>
69 1.1 ad #include <limits.h>
70 1.1 ad #include <unistd.h>
71 1.1 ad #include <err.h>
72 1.1 ad #include <paths.h>
73 1.1 ad #include <util.h>
74 1.1 ad #include <ctype.h>
75 1.1 ad #include <errno.h>
76 1.9 ad #include <stdbool.h>
77 1.1 ad
78 1.1 ad #include "extern.h"
79 1.1 ad
80 1.1 ad #define _PATH_DEV_LOCKSTAT "/dev/lockstat"
81 1.1 ad
82 1.1 ad #define MILLI 1000.0
83 1.1 ad #define MICRO 1000000.0
84 1.1 ad #define NANO 1000000000.0
85 1.1 ad #define PICO 1000000000000.0
86 1.1 ad
87 1.1 ad TAILQ_HEAD(lock_head, lockstruct);
88 1.1 ad typedef struct lock_head locklist_t;
89 1.1 ad TAILQ_HEAD(buf_head, lsbuf);
90 1.1 ad typedef struct buf_head buflist_t;
91 1.1 ad
92 1.1 ad typedef struct lockstruct {
93 1.1 ad TAILQ_ENTRY(lockstruct) chain;
94 1.1 ad buflist_t bufs;
95 1.7 ad buflist_t tosort;
96 1.1 ad uintptr_t lock;
97 1.7 ad double time;
98 1.7 ad uint32_t count;
99 1.1 ad u_int flags;
100 1.5 ad u_int nbufs;
101 1.7 ad char name[NAME_SIZE];
102 1.1 ad } lock_t;
103 1.1 ad
104 1.1 ad typedef struct name {
105 1.1 ad const char *name;
106 1.1 ad int mask;
107 1.1 ad } name_t;
108 1.1 ad
109 1.1 ad const name_t locknames[] = {
110 1.1 ad { "adaptive_mutex", LB_ADAPTIVE_MUTEX },
111 1.1 ad { "spin_mutex", LB_SPIN_MUTEX },
112 1.7 ad { "rwlock", LB_RWLOCK },
113 1.6 ad { "kernel_lock", LB_KERNEL_LOCK },
114 1.13 ad { "preemption", LB_NOPREEMPT },
115 1.1 ad { NULL, 0 }
116 1.1 ad };
117 1.1 ad
118 1.1 ad const name_t eventnames[] = {
119 1.1 ad { "spin", LB_SPIN },
120 1.7 ad { "sleep_exclusive", LB_SLEEP1 },
121 1.7 ad { "sleep_shared", LB_SLEEP2 },
122 1.1 ad { NULL, 0 },
123 1.1 ad };
124 1.1 ad
125 1.1 ad const name_t alltypes[] = {
126 1.1 ad { "Adaptive mutex spin", LB_ADAPTIVE_MUTEX | LB_SPIN },
127 1.7 ad { "Adaptive mutex sleep", LB_ADAPTIVE_MUTEX | LB_SLEEP1 },
128 1.1 ad { "Spin mutex spin", LB_SPIN_MUTEX | LB_SPIN },
129 1.7 ad { "RW lock sleep (writer)", LB_RWLOCK | LB_SLEEP1 },
130 1.7 ad { "RW lock sleep (reader)", LB_RWLOCK | LB_SLEEP2 },
131 1.12 ad { "RW lock spin", LB_RWLOCK | LB_SPIN },
132 1.5 ad { "Kernel lock spin", LB_KERNEL_LOCK | LB_SPIN },
133 1.13 ad { "Kernel preemption defer", LB_NOPREEMPT | LB_SPIN },
134 1.1 ad { NULL, 0 }
135 1.1 ad };
136 1.1 ad
137 1.7 ad locklist_t locklist;
138 1.7 ad locklist_t freelist;
139 1.7 ad locklist_t sortlist;
140 1.1 ad
141 1.1 ad lsbuf_t *bufs;
142 1.1 ad lsdisable_t ld;
143 1.9 ad bool lflag;
144 1.9 ad bool fflag;
145 1.1 ad int nbufs;
146 1.9 ad bool cflag;
147 1.1 ad int lsfd;
148 1.1 ad int displayed;
149 1.1 ad int bin64;
150 1.1 ad double tscale;
151 1.1 ad double cscale;
152 1.1 ad double cpuscale[sizeof(ld.ld_freq) / sizeof(ld.ld_freq[0])];
153 1.1 ad FILE *outfp;
154 1.1 ad
155 1.9 ad void findsym(findsym_t, char *, uintptr_t *, uintptr_t *, bool);
156 1.1 ad void spawn(int, char **);
157 1.1 ad void display(int, const char *name);
158 1.1 ad void listnames(const name_t *);
159 1.9 ad void collapse(bool, bool);
160 1.9 ad int matchname(const name_t *, char *);
161 1.7 ad void makelists(int, int);
162 1.1 ad void nullsig(int);
163 1.1 ad void usage(void);
164 1.1 ad int ncpu(void);
165 1.7 ad lock_t *morelocks(void);
166 1.1 ad
167 1.1 ad int
168 1.1 ad main(int argc, char **argv)
169 1.1 ad {
170 1.9 ad int eventtype, locktype, ch, nlfd, fd, i;
171 1.9 ad bool sflag, pflag, mflag, Mflag;
172 1.1 ad const char *nlistf, *outf;
173 1.1 ad char *lockname, *funcname;
174 1.1 ad const name_t *name;
175 1.1 ad lsenable_t le;
176 1.1 ad double ms;
177 1.1 ad char *p;
178 1.1 ad
179 1.1 ad nlistf = NULL;
180 1.1 ad outf = NULL;
181 1.1 ad lockname = NULL;
182 1.1 ad funcname = NULL;
183 1.1 ad eventtype = -1;
184 1.1 ad locktype = -1;
185 1.1 ad nbufs = 0;
186 1.9 ad sflag = false;
187 1.9 ad pflag = false;
188 1.9 ad mflag = false;
189 1.9 ad Mflag = false;
190 1.1 ad
191 1.9 ad while ((ch = getopt(argc, argv, "E:F:L:MN:T:b:ceflmo:pst")) != -1)
192 1.1 ad switch (ch) {
193 1.1 ad case 'E':
194 1.1 ad eventtype = matchname(eventnames, optarg);
195 1.1 ad break;
196 1.1 ad case 'F':
197 1.1 ad funcname = optarg;
198 1.1 ad break;
199 1.1 ad case 'L':
200 1.1 ad lockname = optarg;
201 1.1 ad break;
202 1.1 ad case 'N':
203 1.1 ad nlistf = optarg;
204 1.1 ad break;
205 1.1 ad case 'T':
206 1.1 ad locktype = matchname(locknames, optarg);
207 1.1 ad break;
208 1.1 ad case 'b':
209 1.1 ad nbufs = (int)strtol(optarg, &p, 0);
210 1.1 ad if (!isdigit((u_int)*optarg) || *p != '\0')
211 1.1 ad usage();
212 1.1 ad break;
213 1.1 ad case 'c':
214 1.9 ad cflag = true;
215 1.1 ad break;
216 1.1 ad case 'e':
217 1.1 ad listnames(eventnames);
218 1.1 ad break;
219 1.9 ad case 'f':
220 1.9 ad fflag = true;
221 1.9 ad break;
222 1.1 ad case 'l':
223 1.9 ad lflag = true;
224 1.9 ad break;
225 1.9 ad case 'm':
226 1.9 ad mflag = true;
227 1.9 ad break;
228 1.9 ad case 'M':
229 1.9 ad Mflag = true;
230 1.1 ad break;
231 1.1 ad case 'o':
232 1.1 ad outf = optarg;
233 1.1 ad break;
234 1.1 ad case 'p':
235 1.9 ad pflag = true;
236 1.1 ad break;
237 1.1 ad case 's':
238 1.9 ad sflag = true;
239 1.1 ad break;
240 1.1 ad case 't':
241 1.1 ad listnames(locknames);
242 1.1 ad break;
243 1.1 ad default:
244 1.1 ad usage();
245 1.1 ad }
246 1.1 ad argc -= optind;
247 1.1 ad argv += optind;
248 1.1 ad
249 1.1 ad if (*argv == NULL)
250 1.1 ad usage();
251 1.1 ad
252 1.1 ad if (outf) {
253 1.5 ad fd = open(outf, O_WRONLY | O_CREAT | O_TRUNC, 0600);
254 1.5 ad if (fd == -1)
255 1.1 ad err(EXIT_FAILURE, "opening %s", outf);
256 1.1 ad outfp = fdopen(fd, "w");
257 1.1 ad } else
258 1.1 ad outfp = stdout;
259 1.1 ad
260 1.1 ad /*
261 1.1 ad * Find the name list for resolving symbol names, and load it into
262 1.1 ad * memory.
263 1.1 ad */
264 1.1 ad if (nlistf == NULL) {
265 1.1 ad nlfd = open(_PATH_KSYMS, O_RDONLY);
266 1.1 ad nlistf = getbootfile();
267 1.1 ad } else
268 1.1 ad nlfd = -1;
269 1.1 ad if (nlfd == -1) {
270 1.1 ad if ((nlfd = open(nlistf, O_RDONLY)) < 0)
271 1.1 ad err(EXIT_FAILURE, "cannot open " _PATH_KSYMS " or %s",
272 1.1 ad nlistf);
273 1.1 ad }
274 1.1 ad if (loadsym32(nlfd) != 0) {
275 1.1 ad if (loadsym64(nlfd) != 0)
276 1.1 ad errx(EXIT_FAILURE, "unable to load symbol table");
277 1.1 ad bin64 = 1;
278 1.1 ad }
279 1.1 ad close(nlfd);
280 1.1 ad
281 1.1 ad memset(&le, 0, sizeof(le));
282 1.1 ad le.le_nbufs = nbufs;
283 1.1 ad
284 1.1 ad /*
285 1.1 ad * Set up initial filtering.
286 1.1 ad */
287 1.1 ad if (lockname != NULL) {
288 1.7 ad findsym(LOCK_BYNAME, lockname, &le.le_lockstart,
289 1.9 ad &le.le_lockend, true);
290 1.1 ad le.le_flags |= LE_ONE_LOCK;
291 1.1 ad }
292 1.1 ad if (!lflag)
293 1.1 ad le.le_flags |= LE_CALLSITE;
294 1.9 ad if (!fflag)
295 1.9 ad le.le_flags |= LE_LOCK;
296 1.1 ad if (funcname != NULL) {
297 1.1 ad if (lflag)
298 1.1 ad usage();
299 1.9 ad findsym(FUNC_BYNAME, funcname, &le.le_csstart, &le.le_csend, true);
300 1.1 ad le.le_flags |= LE_ONE_CALLSITE;
301 1.1 ad }
302 1.1 ad le.le_mask = (eventtype & LB_EVENT_MASK) | (locktype & LB_LOCK_MASK);
303 1.1 ad
304 1.1 ad /*
305 1.1 ad * Start tracing.
306 1.1 ad */
307 1.1 ad if ((lsfd = open(_PATH_DEV_LOCKSTAT, O_RDONLY)) < 0)
308 1.1 ad err(EXIT_FAILURE, "cannot open " _PATH_DEV_LOCKSTAT);
309 1.1 ad if (ioctl(lsfd, IOC_LOCKSTAT_GVERSION, &ch) < 0)
310 1.1 ad err(EXIT_FAILURE, "ioctl");
311 1.1 ad if (ch != LS_VERSION)
312 1.7 ad errx(EXIT_FAILURE,
313 1.7 ad "incompatible lockstat interface version (%d, kernel %d)",
314 1.7 ad LS_VERSION, ch);
315 1.1 ad if (ioctl(lsfd, IOC_LOCKSTAT_ENABLE, &le))
316 1.1 ad err(EXIT_FAILURE, "cannot enable tracing");
317 1.1 ad
318 1.1 ad /*
319 1.1 ad * Execute the traced program.
320 1.1 ad */
321 1.1 ad spawn(argc, argv);
322 1.1 ad
323 1.1 ad /*
324 1.1 ad * Stop tracing, and read the trace buffers from the kernel.
325 1.1 ad */
326 1.1 ad if (ioctl(lsfd, IOC_LOCKSTAT_DISABLE, &ld) == -1) {
327 1.1 ad if (errno == EOVERFLOW) {
328 1.1 ad warnx("overflowed available kernel trace buffers");
329 1.1 ad exit(EXIT_FAILURE);
330 1.1 ad }
331 1.1 ad err(EXIT_FAILURE, "cannot disable tracing");
332 1.1 ad }
333 1.1 ad if ((bufs = malloc(ld.ld_size)) == NULL)
334 1.1 ad err(EXIT_FAILURE, "cannot allocate memory for user buffers");
335 1.1 ad if (read(lsfd, bufs, ld.ld_size) != ld.ld_size)
336 1.1 ad err(EXIT_FAILURE, "reading from " _PATH_DEV_LOCKSTAT);
337 1.1 ad if (close(lsfd))
338 1.1 ad err(EXIT_FAILURE, "close(" _PATH_DEV_LOCKSTAT ")");
339 1.1 ad
340 1.1 ad /*
341 1.7 ad * Figure out how to scale the results. For internal use we convert
342 1.7 ad * all times from CPU frequency based to picoseconds, and values are
343 1.7 ad * eventually displayed in ms.
344 1.1 ad */
345 1.1 ad for (i = 0; i < sizeof(ld.ld_freq) / sizeof(ld.ld_freq[0]); i++)
346 1.1 ad if (ld.ld_freq[i] != 0)
347 1.1 ad cpuscale[i] = PICO / ld.ld_freq[i];
348 1.1 ad ms = ld.ld_time.tv_sec * MILLI + ld.ld_time.tv_nsec / MICRO;
349 1.1 ad if (pflag)
350 1.1 ad cscale = 1.0 / ncpu();
351 1.1 ad else
352 1.1 ad cscale = 1.0;
353 1.1 ad cscale *= (sflag ? MILLI / ms : 1.0);
354 1.1 ad tscale = cscale / NANO;
355 1.1 ad nbufs = (int)(ld.ld_size / sizeof(lsbuf_t));
356 1.7 ad
357 1.7 ad TAILQ_INIT(&locklist);
358 1.7 ad TAILQ_INIT(&sortlist);
359 1.7 ad TAILQ_INIT(&freelist);
360 1.1 ad
361 1.9 ad if ((mflag | Mflag) != 0)
362 1.9 ad collapse(mflag, Mflag);
363 1.9 ad
364 1.1 ad /*
365 1.1 ad * Display the results.
366 1.1 ad */
367 1.1 ad fprintf(outfp, "Elapsed time: %.2f seconds.", ms / MILLI);
368 1.1 ad if (sflag || pflag) {
369 1.1 ad fprintf(outfp, " Displaying ");
370 1.1 ad if (pflag)
371 1.1 ad fprintf(outfp, "per-CPU ");
372 1.1 ad if (sflag)
373 1.1 ad fprintf(outfp, "per-second ");
374 1.1 ad fprintf(outfp, "averages.");
375 1.1 ad }
376 1.1 ad putc('\n', outfp);
377 1.1 ad
378 1.1 ad for (name = alltypes; name->name != NULL; name++) {
379 1.1 ad if (eventtype != -1 &&
380 1.1 ad (name->mask & LB_EVENT_MASK) != eventtype)
381 1.1 ad continue;
382 1.1 ad if (locktype != -1 &&
383 1.1 ad (name->mask & LB_LOCK_MASK) != locktype)
384 1.1 ad continue;
385 1.1 ad
386 1.1 ad display(name->mask, name->name);
387 1.1 ad }
388 1.1 ad
389 1.1 ad if (displayed == 0)
390 1.1 ad fprintf(outfp, "None of the selected events were recorded.\n");
391 1.1 ad exit(EXIT_SUCCESS);
392 1.1 ad }
393 1.1 ad
394 1.1 ad void
395 1.1 ad usage(void)
396 1.1 ad {
397 1.1 ad
398 1.1 ad fprintf(stderr,
399 1.1 ad "%s: usage:\n"
400 1.1 ad "%s [options] <command>\n\n"
401 1.1 ad "-b nbuf\t\tset number of event buffers to allocate\n"
402 1.1 ad "-c\t\treport percentage of total events by count, not time\n"
403 1.10 wiz "-E event\t\tdisplay only one type of event\n"
404 1.1 ad "-e\t\tlist event types\n"
405 1.10 wiz "-F func\t\tlimit trace to one function\n"
406 1.9 ad "-f\t\ttrace only by function\n"
407 1.4 wiz "-L lock\t\tlimit trace to one lock (name, or address)\n"
408 1.1 ad "-l\t\ttrace only by lock\n"
409 1.10 wiz "-M\t\tmerge lock addresses within unique objects\n"
410 1.9 ad "-m\t\tmerge call sites within unique functions\n"
411 1.4 wiz "-N nlist\tspecify name list file\n"
412 1.1 ad "-o file\t\tsend output to named file, not stdout\n"
413 1.1 ad "-p\t\tshow average count/time per CPU, not total\n"
414 1.1 ad "-s\t\tshow average count/time per second, not total\n"
415 1.4 wiz "-T type\t\tdisplay only one type of lock\n"
416 1.1 ad "-t\t\tlist lock types\n",
417 1.1 ad getprogname(), getprogname());
418 1.1 ad
419 1.1 ad exit(EXIT_FAILURE);
420 1.1 ad }
421 1.1 ad
422 1.1 ad void
423 1.1 ad nullsig(int junk)
424 1.1 ad {
425 1.1 ad
426 1.1 ad (void)junk;
427 1.1 ad }
428 1.1 ad
429 1.1 ad void
430 1.1 ad listnames(const name_t *name)
431 1.1 ad {
432 1.1 ad
433 1.1 ad for (; name->name != NULL; name++)
434 1.1 ad printf("%s\n", name->name);
435 1.1 ad
436 1.1 ad exit(EXIT_SUCCESS);
437 1.1 ad }
438 1.1 ad
439 1.1 ad int
440 1.9 ad matchname(const name_t *name, char *string)
441 1.1 ad {
442 1.9 ad int empty, mask;
443 1.9 ad char *sp;
444 1.9 ad
445 1.9 ad empty = 1;
446 1.9 ad mask = 0;
447 1.9 ad
448 1.9 ad while ((sp = strsep(&string, ",")) != NULL) {
449 1.9 ad if (*sp == '\0')
450 1.9 ad usage();
451 1.1 ad
452 1.9 ad for (; name->name != NULL; name++) {
453 1.9 ad if (strcasecmp(name->name, sp) == 0) {
454 1.9 ad mask |= name->mask;
455 1.9 ad break;
456 1.9 ad }
457 1.9 ad }
458 1.9 ad if (name->name == NULL)
459 1.9 ad errx(EXIT_FAILURE, "unknown identifier `%s'", sp);
460 1.9 ad empty = 0;
461 1.9 ad }
462 1.9 ad
463 1.9 ad if (empty)
464 1.9 ad usage();
465 1.1 ad
466 1.9 ad return mask;
467 1.1 ad }
468 1.1 ad
469 1.1 ad /*
470 1.1 ad * Return the number of CPUs in the running system.
471 1.1 ad */
472 1.1 ad int
473 1.1 ad ncpu(void)
474 1.1 ad {
475 1.1 ad int rv, mib[2];
476 1.1 ad size_t varlen;
477 1.1 ad
478 1.1 ad mib[0] = CTL_HW;
479 1.1 ad mib[1] = HW_NCPU;
480 1.1 ad varlen = sizeof(rv);
481 1.1 ad if (sysctl(mib, 2, &rv, &varlen, NULL, (size_t)0) < 0)
482 1.1 ad rv = 1;
483 1.1 ad
484 1.1 ad return (rv);
485 1.1 ad }
486 1.1 ad
487 1.1 ad /*
488 1.1 ad * Call into the ELF parser and look up a symbol by name or by address.
489 1.1 ad */
490 1.1 ad void
491 1.9 ad findsym(findsym_t find, char *name, uintptr_t *start, uintptr_t *end, bool chg)
492 1.1 ad {
493 1.9 ad uintptr_t tend, sa, ea;
494 1.1 ad char *p;
495 1.1 ad int rv;
496 1.1 ad
497 1.9 ad if (!chg) {
498 1.9 ad sa = *start;
499 1.9 ad start = &sa;
500 1.9 ad end = &ea;
501 1.9 ad }
502 1.9 ad
503 1.1 ad if (end == NULL)
504 1.1 ad end = &tend;
505 1.1 ad
506 1.1 ad if (find == LOCK_BYNAME) {
507 1.1 ad if (isdigit((u_int)name[0])) {
508 1.1 ad *start = (uintptr_t)strtoul(name, &p, 0);
509 1.1 ad if (*p == '\0')
510 1.1 ad return;
511 1.1 ad }
512 1.1 ad }
513 1.1 ad
514 1.1 ad if (bin64)
515 1.1 ad rv = findsym64(find, name, start, end);
516 1.1 ad else
517 1.1 ad rv = findsym32(find, name, start, end);
518 1.1 ad
519 1.1 ad if (find == FUNC_BYNAME || find == LOCK_BYNAME) {
520 1.1 ad if (rv == -1)
521 1.1 ad errx(EXIT_FAILURE, "unable to find symbol `%s'", name);
522 1.1 ad return;
523 1.1 ad }
524 1.1 ad
525 1.1 ad if (rv == -1)
526 1.7 ad snprintf(name, NAME_SIZE, "%016lx", (long)*start);
527 1.1 ad }
528 1.1 ad
529 1.1 ad /*
530 1.1 ad * Fork off the child process and wait for it to complete. We trap SIGINT
531 1.1 ad * so that the caller can use Ctrl-C to stop tracing early and still get
532 1.1 ad * useful results.
533 1.1 ad */
534 1.1 ad void
535 1.1 ad spawn(int argc, char **argv)
536 1.1 ad {
537 1.1 ad pid_t pid;
538 1.1 ad
539 1.1 ad switch (pid = fork()) {
540 1.1 ad case 0:
541 1.1 ad close(lsfd);
542 1.1 ad if (execvp(argv[0], argv) == -1)
543 1.1 ad err(EXIT_FAILURE, "cannot exec");
544 1.1 ad break;
545 1.1 ad case -1:
546 1.1 ad err(EXIT_FAILURE, "cannot fork to exec");
547 1.1 ad break;
548 1.1 ad default:
549 1.1 ad signal(SIGINT, nullsig);
550 1.1 ad wait(NULL);
551 1.1 ad signal(SIGINT, SIG_DFL);
552 1.1 ad break;
553 1.1 ad }
554 1.1 ad }
555 1.1 ad
556 1.1 ad /*
557 1.7 ad * Allocate a new block of lock_t structures.
558 1.7 ad */
559 1.7 ad lock_t *
560 1.7 ad morelocks(void)
561 1.7 ad {
562 1.7 ad const static int batch = 32;
563 1.7 ad lock_t *l, *lp, *max;
564 1.7 ad
565 1.7 ad l = (lock_t *)malloc(sizeof(*l) * batch);
566 1.7 ad
567 1.7 ad for (lp = l, max = l + batch; lp < max; lp++)
568 1.7 ad TAILQ_INSERT_TAIL(&freelist, lp, chain);
569 1.7 ad
570 1.7 ad return l;
571 1.7 ad }
572 1.7 ad
573 1.7 ad /*
574 1.9 ad * Collapse addresses from unique objects.
575 1.9 ad */
576 1.9 ad void
577 1.9 ad collapse(bool func, bool lock)
578 1.9 ad {
579 1.9 ad lsbuf_t *lb, *max;
580 1.9 ad
581 1.9 ad for (lb = bufs, max = bufs + nbufs; lb < max; lb++) {
582 1.9 ad if (func && lb->lb_callsite != 0) {
583 1.9 ad findsym(FUNC_BYADDR, NULL, &lb->lb_callsite, NULL,
584 1.9 ad true);
585 1.9 ad }
586 1.9 ad if (lock && lb->lb_lock != 0) {
587 1.9 ad findsym(LOCK_BYADDR, NULL, &lb->lb_lock, NULL,
588 1.9 ad true);
589 1.9 ad }
590 1.9 ad }
591 1.9 ad }
592 1.9 ad
593 1.9 ad /*
594 1.1 ad * From the kernel supplied data, construct two dimensional lists of locks
595 1.7 ad * and event buffers, indexed by lock type and sorted by event type.
596 1.1 ad */
597 1.1 ad void
598 1.7 ad makelists(int mask, int event)
599 1.1 ad {
600 1.1 ad lsbuf_t *lb, *lb2, *max;
601 1.7 ad lock_t *l, *l2;
602 1.7 ad int type;
603 1.7 ad
604 1.7 ad /*
605 1.7 ad * Recycle lock_t structures from the last run.
606 1.7 ad */
607 1.7 ad while ((l = TAILQ_FIRST(&locklist)) != NULL) {
608 1.7 ad TAILQ_REMOVE(&locklist, l, chain);
609 1.7 ad TAILQ_INSERT_HEAD(&freelist, l, chain);
610 1.7 ad }
611 1.1 ad
612 1.7 ad type = mask & LB_LOCK_MASK;
613 1.1 ad
614 1.1 ad for (lb = bufs, max = bufs + nbufs; lb < max; lb++) {
615 1.8 ad if ((lb->lb_flags & LB_LOCK_MASK) != type ||
616 1.8 ad lb->lb_counts[event] == 0)
617 1.1 ad continue;
618 1.1 ad
619 1.1 ad /*
620 1.1 ad * Look for a record descibing this lock, and allocate a
621 1.1 ad * new one if needed.
622 1.1 ad */
623 1.7 ad TAILQ_FOREACH(l, &sortlist, chain) {
624 1.1 ad if (l->lock == lb->lb_lock)
625 1.1 ad break;
626 1.1 ad }
627 1.1 ad if (l == NULL) {
628 1.7 ad if ((l = TAILQ_FIRST(&freelist)) == NULL)
629 1.7 ad l = morelocks();
630 1.7 ad TAILQ_REMOVE(&freelist, l, chain);
631 1.1 ad l->flags = lb->lb_flags;
632 1.1 ad l->lock = lb->lb_lock;
633 1.5 ad l->nbufs = 0;
634 1.7 ad l->name[0] = '\0';
635 1.7 ad l->count = 0;
636 1.7 ad l->time = 0;
637 1.7 ad TAILQ_INIT(&l->tosort);
638 1.1 ad TAILQ_INIT(&l->bufs);
639 1.7 ad TAILQ_INSERT_TAIL(&sortlist, l, chain);
640 1.1 ad }
641 1.1 ad
642 1.1 ad /*
643 1.1 ad * Scale the time values per buffer and summarise
644 1.1 ad * times+counts per lock.
645 1.1 ad */
646 1.7 ad lb->lb_times[event] *= cpuscale[lb->lb_cpu];
647 1.7 ad l->count += lb->lb_counts[event];
648 1.7 ad l->time += lb->lb_times[event];
649 1.1 ad
650 1.1 ad /*
651 1.1 ad * Merge same lock+callsite pairs from multiple CPUs
652 1.1 ad * together.
653 1.1 ad */
654 1.7 ad TAILQ_FOREACH(lb2, &l->tosort, lb_chain.tailq) {
655 1.1 ad if (lb->lb_callsite == lb2->lb_callsite)
656 1.1 ad break;
657 1.1 ad }
658 1.1 ad if (lb2 != NULL) {
659 1.7 ad lb2->lb_counts[event] += lb->lb_counts[event];
660 1.7 ad lb2->lb_times[event] += lb->lb_times[event];
661 1.5 ad } else {
662 1.7 ad TAILQ_INSERT_HEAD(&l->tosort, lb, lb_chain.tailq);
663 1.5 ad l->nbufs++;
664 1.5 ad }
665 1.1 ad }
666 1.1 ad
667 1.7 ad /*
668 1.7 ad * Now sort the lists.
669 1.7 ad */
670 1.7 ad while ((l = TAILQ_FIRST(&sortlist)) != NULL) {
671 1.7 ad TAILQ_REMOVE(&sortlist, l, chain);
672 1.1 ad
673 1.1 ad /*
674 1.1 ad * Sort the buffers into the per-lock list.
675 1.1 ad */
676 1.7 ad while ((lb = TAILQ_FIRST(&l->tosort)) != NULL) {
677 1.7 ad TAILQ_REMOVE(&l->tosort, lb, lb_chain.tailq);
678 1.1 ad
679 1.7 ad lb2 = TAILQ_FIRST(&l->bufs);
680 1.1 ad while (lb2 != NULL) {
681 1.1 ad if (cflag) {
682 1.1 ad if (lb->lb_counts[event] >
683 1.1 ad lb2->lb_counts[event])
684 1.1 ad break;
685 1.1 ad } else if (lb->lb_times[event] >
686 1.1 ad lb2->lb_times[event])
687 1.1 ad break;
688 1.1 ad lb2 = TAILQ_NEXT(lb2, lb_chain.tailq);
689 1.1 ad }
690 1.1 ad if (lb2 == NULL)
691 1.7 ad TAILQ_INSERT_TAIL(&l->bufs, lb,
692 1.7 ad lb_chain.tailq);
693 1.1 ad else
694 1.1 ad TAILQ_INSERT_BEFORE(lb2, lb, lb_chain.tailq);
695 1.1 ad }
696 1.1 ad
697 1.1 ad /*
698 1.1 ad * Sort this lock into the per-type list, based on the
699 1.1 ad * totals per lock.
700 1.1 ad */
701 1.7 ad l2 = TAILQ_FIRST(&locklist);
702 1.1 ad while (l2 != NULL) {
703 1.1 ad if (cflag) {
704 1.7 ad if (l->count > l2->count)
705 1.1 ad break;
706 1.7 ad } else if (l->time > l2->time)
707 1.1 ad break;
708 1.1 ad l2 = TAILQ_NEXT(l2, chain);
709 1.1 ad }
710 1.1 ad if (l2 == NULL)
711 1.7 ad TAILQ_INSERT_TAIL(&locklist, l, chain);
712 1.1 ad else
713 1.1 ad TAILQ_INSERT_BEFORE(l2, l, chain);
714 1.1 ad }
715 1.1 ad }
716 1.1 ad
717 1.1 ad /*
718 1.1 ad * Display a summary table for one lock type / event type pair.
719 1.1 ad */
720 1.1 ad void
721 1.1 ad display(int mask, const char *name)
722 1.1 ad {
723 1.1 ad lock_t *l;
724 1.1 ad lsbuf_t *lb;
725 1.1 ad double pcscale, metric;
726 1.7 ad char fname[NAME_SIZE];
727 1.7 ad int event;
728 1.1 ad
729 1.7 ad event = (mask & LB_EVENT_MASK) - 1;
730 1.7 ad makelists(mask, event);
731 1.7 ad
732 1.7 ad if (TAILQ_EMPTY(&locklist))
733 1.1 ad return;
734 1.1 ad
735 1.1 ad fprintf(outfp, "\n-- %s\n\n"
736 1.7 ad "Total%% Count Time/ms Lock Caller\n"
737 1.5 ad "------ ------- --------- ---------------------- ------------------------------\n",
738 1.1 ad name);
739 1.1 ad
740 1.1 ad /*
741 1.1 ad * Sum up all events for this type of lock + event.
742 1.1 ad */
743 1.1 ad pcscale = 0;
744 1.7 ad TAILQ_FOREACH(l, &locklist, chain) {
745 1.1 ad if (cflag)
746 1.7 ad pcscale += l->count;
747 1.1 ad else
748 1.7 ad pcscale += l->time;
749 1.1 ad displayed++;
750 1.1 ad }
751 1.1 ad if (pcscale == 0)
752 1.1 ad pcscale = 100;
753 1.1 ad else
754 1.1 ad pcscale = (100.0 / pcscale);
755 1.1 ad
756 1.1 ad /*
757 1.1 ad * For each lock, print a summary total, followed by a breakdown by
758 1.1 ad * caller.
759 1.1 ad */
760 1.7 ad TAILQ_FOREACH(l, &locklist, chain) {
761 1.1 ad if (cflag)
762 1.7 ad metric = l->count;
763 1.1 ad else
764 1.7 ad metric = l->time;
765 1.1 ad metric *= pcscale;
766 1.1 ad
767 1.7 ad if (l->name[0] == '\0')
768 1.9 ad findsym(LOCK_BYADDR, l->name, &l->lock, NULL, false);
769 1.1 ad
770 1.6 ad if (lflag || l->nbufs > 1)
771 1.7 ad fprintf(outfp, "%6.2f %7d %9.2f %-22s <all>\n",
772 1.7 ad metric, (int)(l->count * cscale),
773 1.7 ad l->time * tscale, l->name);
774 1.1 ad
775 1.1 ad if (lflag)
776 1.1 ad continue;
777 1.1 ad
778 1.1 ad TAILQ_FOREACH(lb, &l->bufs, lb_chain.tailq) {
779 1.1 ad if (cflag)
780 1.1 ad metric = lb->lb_counts[event];
781 1.1 ad else
782 1.1 ad metric = lb->lb_times[event];
783 1.1 ad metric *= pcscale;
784 1.1 ad
785 1.9 ad findsym(FUNC_BYADDR, fname, &lb->lb_callsite, NULL,
786 1.9 ad false);
787 1.7 ad fprintf(outfp, "%6.2f %7d %9.2f %-22s %s\n",
788 1.7 ad metric, (int)(lb->lb_counts[event] * cscale),
789 1.7 ad lb->lb_times[event] * tscale, l->name, fname);
790 1.1 ad }
791 1.1 ad }
792 1.1 ad }
793