blob: ff8f739d76f1401afb6122e09981a82f629a3079 [file] [log] [blame]
paul718e3742002-12-13 20:15:29 +00001/* Thread management routine
2 * Copyright (C) 1998, 2000 Kunihiro Ishiguro <kunihiro@zebra.org>
3 *
4 * This file is part of GNU Zebra.
5 *
6 * GNU Zebra is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; either version 2, or (at your option) any
9 * later version.
10 *
11 * GNU Zebra is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with GNU Zebra; see the file COPYING. If not, write to the Free
18 * Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
19 * 02111-1307, USA.
20 */
21
22/* #define DEBUG */
23
24#include <zebra.h>
25
26#include "thread.h"
27#include "memory.h"
28#include "log.h"
paule04ab742003-01-17 23:47:00 +000029#include "hash.h"
30#include "command.h"
31
32static struct hash *cpu_record = NULL;
paul718e3742002-12-13 20:15:29 +000033
34/* Struct timeval's tv_usec one second value. */
35#define TIMER_SECOND_MICRO 1000000L
36
37struct timeval
38timeval_adjust (struct timeval a)
39{
40 while (a.tv_usec >= TIMER_SECOND_MICRO)
41 {
42 a.tv_usec -= TIMER_SECOND_MICRO;
43 a.tv_sec++;
44 }
45
46 while (a.tv_usec < 0)
47 {
48 a.tv_usec += TIMER_SECOND_MICRO;
49 a.tv_sec--;
50 }
51
52 if (a.tv_sec < 0)
53 {
54 a.tv_sec = 0;
55 a.tv_usec = 10;
56 }
57
58 if (a.tv_sec > TIMER_SECOND_MICRO)
59 a.tv_sec = TIMER_SECOND_MICRO;
60
61 return a;
62}
63
64static struct timeval
65timeval_subtract (struct timeval a, struct timeval b)
66{
67 struct timeval ret;
68
69 ret.tv_usec = a.tv_usec - b.tv_usec;
70 ret.tv_sec = a.tv_sec - b.tv_sec;
71
72 return timeval_adjust (ret);
73}
74
75static int
76timeval_cmp (struct timeval a, struct timeval b)
77{
78 return (a.tv_sec == b.tv_sec
79 ? a.tv_usec - b.tv_usec : a.tv_sec - b.tv_sec);
80}
81
82static unsigned long
83timeval_elapsed (struct timeval a, struct timeval b)
84{
85 return (((a.tv_sec - b.tv_sec) * TIMER_SECOND_MICRO)
86 + (a.tv_usec - b.tv_usec));
87}
88
paule04ab742003-01-17 23:47:00 +000089static unsigned int
90cpu_record_hash_key (struct cpu_thread_history *a)
91{
92 return (unsigned int) a->func;
93}
94
95static int
96cpu_record_hash_cmp (struct cpu_thread_history *a,
97 struct cpu_thread_history *b)
98{
99 return a->func == b->func;
100}
101
102static void*
103cpu_record_hash_alloc (struct cpu_thread_history *a)
104{
105 struct cpu_thread_history *new;
106 new = XMALLOC( MTYPE_TMP/*XXX*/, sizeof *new);
107 memset(new, 0, sizeof *new);
108 new->func = a->func;
109 new->funcname = XSTRDUP(MTYPE_TMP/*XXX*/,a->funcname);
110 return new;
111}
112
113static inline void
114vty_out_cpu_thread_history(struct vty* vty,
115 struct cpu_thread_history *a)
116{
117 vty_out(vty, " %7ld.%03ld %9d %8ld %10ld %c%c%c%c%c %s%s",
118 a->total/1000, a->total%1000, a->total_calls,
119 a->total/a->total_calls, a->max,
120 a->types & (1 << THREAD_READ) ? 'R':' ',
121 a->types & (1 << THREAD_WRITE) ? 'W':' ',
122 a->types & (1 << THREAD_TIMER) ? 'T':' ',
123 a->types & (1 << THREAD_EVENT) ? 'E':' ',
124 a->types & (1 << THREAD_EXECUTE) ? 'X':' ',
125 a->funcname, VTY_NEWLINE);
126}
127
128static void
129cpu_record_hash_print(struct hash_backet *bucket,
130 void *args[])
131{
132 struct cpu_thread_history *totals = args[0];
133 struct vty *vty = args[1];
134 unsigned char *filter = args[2];
135 struct cpu_thread_history *a = bucket->data;
136
137
138 a = bucket->data;
139 if ( !(a->types & *filter) )
140 return;
141 vty_out_cpu_thread_history(vty,a);
142 totals->total += a->total;
143 totals->total_calls += a->total_calls;
144 if (totals->max < a->max)
145 totals->max = a->max;
146}
147
148static void
149cpu_record_print(struct vty *vty, unsigned char filter)
150{
151 struct cpu_thread_history tmp;
152 void *args[3] = {&tmp, vty, &filter};
153
154 memset(&tmp, 0, sizeof tmp);
155 tmp.funcname = "TOTAL";
156 tmp.types = filter;
157
158 vty_out(vty,
159 " Runtime(ms) Invoked Avg uSecs Max uSecs Type Thread%s",
160 VTY_NEWLINE);
161 hash_iterate(cpu_record,
162 (void(*)(struct hash_backet*,void*))cpu_record_hash_print,
163 args);
164
165 if (tmp.total_calls > 0)
166 vty_out_cpu_thread_history(vty, &tmp);
167}
168
169DEFUN(show_thread_cpu,
170 show_thread_cpu_cmd,
171 "show thread cpu [FILTER]",
172 SHOW_STR
173 "Thread information\n"
174 "Thread CPU usage\n"
175 "Display filter (rwtex)\n")
176{
177 int i = 0;
178 unsigned char filter = 0xff;
179
180 if (argc > 0)
181 {
182 filter = 0;
183 while (argv[0][i] != '\0')
184 {
185 switch ( argv[0][i] )
186 {
187 case 'r':
188 case 'R':
189 filter |= (1 << THREAD_READ);
190 break;
191 case 'w':
192 case 'W':
193 filter |= (1 << THREAD_WRITE);
194 break;
195 case 't':
196 case 'T':
197 filter |= (1 << THREAD_TIMER);
198 break;
199 case 'e':
200 case 'E':
201 filter |= (1 << THREAD_EVENT);
202 break;
203 case 'x':
204 case 'X':
205 filter |= (1 << THREAD_EXECUTE);
206 break;
207 default:
208 break;
209 }
210 ++i;
211 }
212 if (filter == 0)
213 {
214 vty_out(vty, "Invalid filter \"%s\" specified, must contain at least one of 'RWTEX'%s",
215 argv[0], VTY_NEWLINE);
216 return CMD_WARNING;
217 }
218 }
219
220 cpu_record_print(vty, filter);
221 return CMD_SUCCESS;
222}
223
paul718e3742002-12-13 20:15:29 +0000224/* List allocation and head/tail print out. */
225static void
226thread_list_debug (struct thread_list *list)
227{
228 printf ("count [%d] head [%p] tail [%p]\n",
229 list->count, list->head, list->tail);
230}
231
232/* Debug print for thread_master. */
233void
234thread_master_debug (struct thread_master *m)
235{
236 printf ("-----------\n");
237 printf ("readlist : ");
238 thread_list_debug (&m->read);
239 printf ("writelist : ");
240 thread_list_debug (&m->write);
241 printf ("timerlist : ");
242 thread_list_debug (&m->timer);
243 printf ("eventlist : ");
244 thread_list_debug (&m->event);
245 printf ("unuselist : ");
246 thread_list_debug (&m->unuse);
247 printf ("total alloc: [%ld]\n", m->alloc);
248 printf ("-----------\n");
249}
250
251/* Allocate new thread master. */
252struct thread_master *
253thread_master_create ()
254{
paule04ab742003-01-17 23:47:00 +0000255 if (cpu_record == NULL)
256 {
257 cpu_record = hash_create_size( 1011, cpu_record_hash_key, cpu_record_hash_cmp);
258 }
paul718e3742002-12-13 20:15:29 +0000259 return (struct thread_master *) XCALLOC (MTYPE_THREAD_MASTER,
260 sizeof (struct thread_master));
261}
262
263/* Add a new thread to the list. */
264static void
265thread_list_add (struct thread_list *list, struct thread *thread)
266{
267 thread->next = NULL;
268 thread->prev = list->tail;
269 if (list->tail)
270 list->tail->next = thread;
271 else
272 list->head = thread;
273 list->tail = thread;
274 list->count++;
275}
276
277/* Add a new thread just before the point. */
278static void
279thread_list_add_before (struct thread_list *list,
280 struct thread *point,
281 struct thread *thread)
282{
283 thread->next = point;
284 thread->prev = point->prev;
285 if (point->prev)
286 point->prev->next = thread;
287 else
288 list->head = thread;
289 point->prev = thread;
290 list->count++;
291}
292
293/* Delete a thread from the list. */
294static struct thread *
295thread_list_delete (struct thread_list *list, struct thread *thread)
296{
297 if (thread->next)
298 thread->next->prev = thread->prev;
299 else
300 list->tail = thread->prev;
301 if (thread->prev)
302 thread->prev->next = thread->next;
303 else
304 list->head = thread->next;
305 thread->next = thread->prev = NULL;
306 list->count--;
307 return thread;
308}
309
310/* Move thread to unuse list. */
311static void
312thread_add_unuse (struct thread_master *m, struct thread *thread)
313{
314 assert (m != NULL);
315 assert (thread->next == NULL);
316 assert (thread->prev == NULL);
317 assert (thread->type == THREAD_UNUSED);
318 thread_list_add (&m->unuse, thread);
319}
320
321/* Free all unused thread. */
322static void
323thread_list_free (struct thread_master *m, struct thread_list *list)
324{
325 struct thread *t;
326 struct thread *next;
327
328 for (t = list->head; t; t = next)
329 {
330 next = t->next;
331 XFREE (MTYPE_THREAD, t);
332 list->count--;
333 m->alloc--;
334 }
335}
336
337/* Stop thread scheduler. */
338void
339thread_master_free (struct thread_master *m)
340{
341 thread_list_free (m, &m->read);
342 thread_list_free (m, &m->write);
343 thread_list_free (m, &m->timer);
344 thread_list_free (m, &m->event);
345 thread_list_free (m, &m->ready);
346 thread_list_free (m, &m->unuse);
347
348 XFREE (MTYPE_THREAD_MASTER, m);
349}
350
351/* Delete top of the list and return it. */
352static struct thread *
353thread_trim_head (struct thread_list *list)
354{
355 if (list->head)
356 return thread_list_delete (list, list->head);
357 return NULL;
358}
359
360/* Thread list is empty or not. */
361int
362thread_empty (struct thread_list *list)
363{
364 return list->head ? 0 : 1;
365}
366
367/* Return remain time in second. */
368unsigned long
369thread_timer_remain_second (struct thread *thread)
370{
371 struct timeval timer_now;
372
373 gettimeofday (&timer_now, NULL);
374
375 if (thread->u.sands.tv_sec - timer_now.tv_sec > 0)
376 return thread->u.sands.tv_sec - timer_now.tv_sec;
377 else
378 return 0;
379}
380
paule04ab742003-01-17 23:47:00 +0000381/* Trim blankspace and "()"s */
382static char *
383strip_funcname (char *funcname)
384{
385 char buff[100];
386 char tmp, *ret, *e, *b = buff;
387
388 strncpy(buff, funcname, sizeof(buff));
389 buff[ sizeof(buff) -1] = '\0';
390 e = buff +strlen(buff) -1;
391
392 /* Wont work for funcname == "Word (explanation)" */
393
394 while (*b == ' ' || *b == '(')
395 ++b;
396 while (*e == ' ' || *e == ')')
397 --e;
398 e++;
399
400 tmp = *e;
401 *e = '\0';
402 ret = XSTRDUP (MTYPE_TMP, b);
403 *e = tmp;
404
405 return ret;
406}
407
paul718e3742002-12-13 20:15:29 +0000408/* Get new thread. */
409static struct thread *
410thread_get (struct thread_master *m, u_char type,
paule04ab742003-01-17 23:47:00 +0000411 int (*func) (struct thread *), void *arg, char* funcname)
paul718e3742002-12-13 20:15:29 +0000412{
413 struct thread *thread;
414
415 if (m->unuse.head)
416 thread = thread_trim_head (&m->unuse);
417 else
418 {
419 thread = XCALLOC (MTYPE_THREAD, sizeof (struct thread));
420 m->alloc++;
421 }
422 thread->type = type;
paule04ab742003-01-17 23:47:00 +0000423 thread->add_type = type;
paul718e3742002-12-13 20:15:29 +0000424 thread->master = m;
425 thread->func = func;
426 thread->arg = arg;
427
paule04ab742003-01-17 23:47:00 +0000428 thread->funcname = strip_funcname(funcname);
429
paul718e3742002-12-13 20:15:29 +0000430 return thread;
431}
432
433/* Add new read thread. */
434struct thread *
paule04ab742003-01-17 23:47:00 +0000435funcname_thread_add_read (struct thread_master *m,
436 int (*func) (struct thread *), void *arg, int fd, char* funcname)
paul718e3742002-12-13 20:15:29 +0000437{
438 struct thread *thread;
439
440 assert (m != NULL);
441
442 if (FD_ISSET (fd, &m->readfd))
443 {
444 zlog (NULL, LOG_WARNING, "There is already read fd [%d]", fd);
445 return NULL;
446 }
447
paule04ab742003-01-17 23:47:00 +0000448 thread = thread_get (m, THREAD_READ, func, arg, funcname);
paul718e3742002-12-13 20:15:29 +0000449 FD_SET (fd, &m->readfd);
450 thread->u.fd = fd;
451 thread_list_add (&m->read, thread);
452
453 return thread;
454}
455
456/* Add new write thread. */
457struct thread *
paule04ab742003-01-17 23:47:00 +0000458funcname_thread_add_write (struct thread_master *m,
459 int (*func) (struct thread *), void *arg, int fd, char* funcname)
paul718e3742002-12-13 20:15:29 +0000460{
461 struct thread *thread;
462
463 assert (m != NULL);
464
465 if (FD_ISSET (fd, &m->writefd))
466 {
467 zlog (NULL, LOG_WARNING, "There is already write fd [%d]", fd);
468 return NULL;
469 }
470
paule04ab742003-01-17 23:47:00 +0000471 thread = thread_get (m, THREAD_WRITE, func, arg, funcname);
paul718e3742002-12-13 20:15:29 +0000472 FD_SET (fd, &m->writefd);
473 thread->u.fd = fd;
474 thread_list_add (&m->write, thread);
475
476 return thread;
477}
478
479/* Add timer event thread. */
480struct thread *
paule04ab742003-01-17 23:47:00 +0000481funcname_thread_add_timer (struct thread_master *m,
482 int (*func) (struct thread *), void *arg, long timer, char* funcname)
paul718e3742002-12-13 20:15:29 +0000483{
484 struct timeval timer_now;
485 struct thread *thread;
486#ifndef TIMER_NO_SORT
487 struct thread *tt;
488#endif /* TIMER_NO_SORT */
489
490 assert (m != NULL);
491
paule04ab742003-01-17 23:47:00 +0000492 thread = thread_get (m, THREAD_TIMER, func, arg, funcname);
paul718e3742002-12-13 20:15:29 +0000493
494 /* Do we need jitter here? */
495 gettimeofday (&timer_now, NULL);
496 timer_now.tv_sec += timer;
497 thread->u.sands = timer_now;
498
499 /* Sort by timeval. */
500#ifdef TIMER_NO_SORT
501 thread_list_add (&m->timer, thread);
502#else
503 for (tt = m->timer.head; tt; tt = tt->next)
504 if (timeval_cmp (thread->u.sands, tt->u.sands) <= 0)
505 break;
506
507 if (tt)
508 thread_list_add_before (&m->timer, tt, thread);
509 else
510 thread_list_add (&m->timer, thread);
511#endif /* TIMER_NO_SORT */
512
513 return thread;
514}
515
516/* Add simple event thread. */
517struct thread *
paule04ab742003-01-17 23:47:00 +0000518funcname_thread_add_event (struct thread_master *m,
519 int (*func) (struct thread *), void *arg, int val, char* funcname)
paul718e3742002-12-13 20:15:29 +0000520{
521 struct thread *thread;
522
523 assert (m != NULL);
524
paule04ab742003-01-17 23:47:00 +0000525 thread = thread_get (m, THREAD_EVENT, func, arg, funcname);
paul718e3742002-12-13 20:15:29 +0000526 thread->u.val = val;
527 thread_list_add (&m->event, thread);
528
529 return thread;
530}
531
532/* Cancel thread from scheduler. */
533void
534thread_cancel (struct thread *thread)
535{
536 switch (thread->type)
537 {
538 case THREAD_READ:
539 assert (FD_ISSET (thread->u.fd, &thread->master->readfd));
540 FD_CLR (thread->u.fd, &thread->master->readfd);
541 thread_list_delete (&thread->master->read, thread);
542 break;
543 case THREAD_WRITE:
544 assert (FD_ISSET (thread->u.fd, &thread->master->writefd));
545 FD_CLR (thread->u.fd, &thread->master->writefd);
546 thread_list_delete (&thread->master->write, thread);
547 break;
548 case THREAD_TIMER:
549 thread_list_delete (&thread->master->timer, thread);
550 break;
551 case THREAD_EVENT:
552 thread_list_delete (&thread->master->event, thread);
553 break;
554 case THREAD_READY:
555 thread_list_delete (&thread->master->ready, thread);
556 break;
557 default:
558 break;
559 }
560 thread->type = THREAD_UNUSED;
561 thread_add_unuse (thread->master, thread);
562}
563
564/* Delete all events which has argument value arg. */
565void
566thread_cancel_event (struct thread_master *m, void *arg)
567{
568 struct thread *thread;
569
570 thread = m->event.head;
571 while (thread)
572 {
573 struct thread *t;
574
575 t = thread;
576 thread = t->next;
577
578 if (t->arg == arg)
579 {
580 thread_list_delete (&m->event, t);
581 t->type = THREAD_UNUSED;
582 thread_add_unuse (m, t);
583 }
584 }
585}
586
587#ifdef TIMER_NO_SORT
588struct timeval *
589thread_timer_wait (struct thread_master *m, struct timeval *timer_val)
590{
591 struct timeval timer_now;
592 struct timeval timer_min;
593 struct timeval *timer_wait;
594
595 gettimeofday (&timer_now, NULL);
596
597 timer_wait = NULL;
598 for (thread = m->timer.head; thread; thread = thread->next)
599 {
600 if (! timer_wait)
601 timer_wait = &thread->u.sands;
602 else if (timeval_cmp (thread->u.sands, *timer_wait) < 0)
603 timer_wait = &thread->u.sands;
604 }
605
606 if (m->timer.head)
607 {
608 timer_min = *timer_wait;
609 timer_min = timeval_subtract (timer_min, timer_now);
610 if (timer_min.tv_sec < 0)
611 {
612 timer_min.tv_sec = 0;
613 timer_min.tv_usec = 10;
614 }
615 timer_wait = &timer_min;
616 }
617 else
618 timer_wait = NULL;
619
620 if (timer_wait)
621 {
622 *timer_val = timer_wait;
623 return timer_val;
624 }
625 return NULL;
626}
627#else /* ! TIMER_NO_SORT */
628struct timeval *
629thread_timer_wait (struct thread_master *m, struct timeval *timer_val)
630{
631 struct timeval timer_now;
632 struct timeval timer_min;
633
634 if (m->timer.head)
635 {
636 gettimeofday (&timer_now, NULL);
637 timer_min = m->timer.head->u.sands;
638 timer_min = timeval_subtract (timer_min, timer_now);
639 if (timer_min.tv_sec < 0)
640 {
641 timer_min.tv_sec = 0;
642 timer_min.tv_usec = 10;
643 }
644 *timer_val = timer_min;
645 return timer_val;
646 }
647 return NULL;
648}
649#endif /* TIMER_NO_SORT */
650
651struct thread *
652thread_run (struct thread_master *m, struct thread *thread,
653 struct thread *fetch)
654{
655 *fetch = *thread;
656 thread->type = THREAD_UNUSED;
657 thread_add_unuse (m, thread);
658 return fetch;
659}
660
661int
662thread_process_fd (struct thread_master *m, struct thread_list *list,
663 fd_set *fdset, fd_set *mfdset)
664{
665 struct thread *thread;
666 struct thread *next;
667 int ready = 0;
668
669 for (thread = list->head; thread; thread = next)
670 {
671 next = thread->next;
672
673 if (FD_ISSET (THREAD_FD (thread), fdset))
674 {
675 assert (FD_ISSET (THREAD_FD (thread), mfdset));
676 FD_CLR(THREAD_FD (thread), mfdset);
677 thread_list_delete (list, thread);
678 thread_list_add (&m->ready, thread);
679 thread->type = THREAD_READY;
680 ready++;
681 }
682 }
683 return ready;
684}
685
686/* Fetch next ready thread. */
687struct thread *
688thread_fetch (struct thread_master *m, struct thread *fetch)
689{
690 int num;
691 int ready;
692 struct thread *thread;
693 fd_set readfd;
694 fd_set writefd;
695 fd_set exceptfd;
696 struct timeval timer_now;
697 struct timeval timer_val;
698 struct timeval *timer_wait;
699 struct timeval timer_nowait;
700
701 timer_nowait.tv_sec = 0;
702 timer_nowait.tv_usec = 0;
703
704 while (1)
705 {
706 /* Normal event is the highest priority. */
707 if ((thread = thread_trim_head (&m->event)) != NULL)
708 return thread_run (m, thread, fetch);
709
710 /* Execute timer. */
711 gettimeofday (&timer_now, NULL);
712
713 for (thread = m->timer.head; thread; thread = thread->next)
714 if (timeval_cmp (timer_now, thread->u.sands) >= 0)
715 {
716 thread_list_delete (&m->timer, thread);
717 return thread_run (m, thread, fetch);
718 }
719
720 /* If there are any ready threads, process top of them. */
721 if ((thread = thread_trim_head (&m->ready)) != NULL)
722 return thread_run (m, thread, fetch);
723
724 /* Structure copy. */
725 readfd = m->readfd;
726 writefd = m->writefd;
727 exceptfd = m->exceptfd;
728
729 /* Calculate select wait timer. */
730 timer_wait = thread_timer_wait (m, &timer_val);
731
732 num = select (FD_SETSIZE, &readfd, &writefd, &exceptfd, timer_wait);
733
734 if (num == 0)
735 continue;
736
737 if (num < 0)
738 {
739 if (errno == EINTR)
740 continue;
741
742 zlog_warn ("select() error: %s", strerror (errno));
743 return NULL;
744 }
745
746 /* Normal priority read thead. */
747 ready = thread_process_fd (m, &m->read, &readfd, &m->readfd);
748
749 /* Write thead. */
750 ready = thread_process_fd (m, &m->write, &writefd, &m->writefd);
751
752 if ((thread = thread_trim_head (&m->ready)) != NULL)
753 return thread_run (m, thread, fetch);
754 }
755}
756
757static unsigned long
758thread_consumed_time (RUSAGE_T *now, RUSAGE_T *start)
759{
760 unsigned long thread_time;
761
762#ifdef HAVE_RUSAGE
763 /* This is 'user + sys' time. */
764 thread_time = timeval_elapsed (now->ru_utime, start->ru_utime);
765 thread_time += timeval_elapsed (now->ru_stime, start->ru_stime);
766#else
767 /* When rusage is not available, simple elapsed time is used. */
768 thread_time = timeval_elapsed (*now, *start);
769#endif /* HAVE_RUSAGE */
770
771 return thread_time;
772}
773
774/* We should aim to yield after THREAD_YIELD_TIME_SLOT
775 milliseconds. */
776int
777thread_should_yield (struct thread *thread)
778{
779 RUSAGE_T ru;
780
781 GETRUSAGE (&ru);
782
783 if (thread_consumed_time (&ru, &thread->ru) > THREAD_YIELD_TIME_SLOT)
784 return 1;
785 else
786 return 0;
787}
788
789/* We check thread consumed time. If the system has getrusage, we'll
790 use that to get indepth stats on the performance of the thread. If
791 not - we'll use gettimeofday for some guestimation. */
792void
793thread_call (struct thread *thread)
794{
795 unsigned long thread_time;
796 RUSAGE_T ru;
paule04ab742003-01-17 23:47:00 +0000797 struct cpu_thread_history tmp, *cpu;
798
799 tmp.func = thread->func;
800 tmp.funcname = thread->funcname;
801 cpu = hash_get(cpu_record, &tmp, cpu_record_hash_alloc);
paul718e3742002-12-13 20:15:29 +0000802
803 GETRUSAGE (&thread->ru);
804
805 (*thread->func) (thread);
806
807 GETRUSAGE (&ru);
808
809 thread_time = thread_consumed_time (&ru, &thread->ru);
paule04ab742003-01-17 23:47:00 +0000810 cpu->total += thread_time;
811 if (cpu->max < thread_time)
812 cpu->max = thread_time;
813
814 ++cpu->total_calls;
815 cpu->types |= (1 << thread->add_type);
paul718e3742002-12-13 20:15:29 +0000816
817#ifdef THREAD_CONSUMED_TIME_CHECK
818 if (thread_time > 200000L)
819 {
820 /*
821 * We have a CPU Hog on our hands.
822 * Whinge about it now, so we're aware this is yet another task
823 * to fix.
824 */
paule04ab742003-01-17 23:47:00 +0000825 zlog_err ("CPU HOG task %s (%lx) ran for %ldms",
826 thread->funcname,
paul718e3742002-12-13 20:15:29 +0000827 (unsigned long) thread->func,
828 thread_time / 1000L);
829 }
830#endif /* THREAD_CONSUMED_TIME_CHECK */
831}
832
833/* Execute thread */
834struct thread *
paule04ab742003-01-17 23:47:00 +0000835funcname_thread_execute (struct thread_master *m,
paul718e3742002-12-13 20:15:29 +0000836 int (*func)(struct thread *),
837 void *arg,
paule04ab742003-01-17 23:47:00 +0000838 int val,
839 char* funcname)
paul718e3742002-12-13 20:15:29 +0000840{
841 struct thread dummy;
842
843 memset (&dummy, 0, sizeof (struct thread));
844
845 dummy.type = THREAD_EVENT;
paule04ab742003-01-17 23:47:00 +0000846 dummy.add_type = THREAD_EXECUTE;
paul718e3742002-12-13 20:15:29 +0000847 dummy.master = NULL;
848 dummy.func = func;
849 dummy.arg = arg;
850 dummy.u.val = val;
paule04ab742003-01-17 23:47:00 +0000851 dummy.funcname = strip_funcname (funcname);
paul718e3742002-12-13 20:15:29 +0000852 thread_call (&dummy);
853
854 return NULL;
855}