blob: 41c362b028f3582d40bccb3f5ca436fda4e4e650 [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>
Denil Vira4ab273b2016-03-04 15:28:54 -050025#include <sys/resource.h>
paul718e3742002-12-13 20:15:29 +000026
27#include "thread.h"
28#include "memory.h"
29#include "log.h"
paule04ab742003-01-17 23:47:00 +000030#include "hash.h"
Christian Franke4becea72013-11-19 14:11:42 +000031#include "pqueue.h"
paule04ab742003-01-17 23:47:00 +000032#include "command.h"
paul05c447d2004-07-22 19:14:27 +000033#include "sigevent.h"
Vincent Bernatd6be5fb2012-05-24 09:44:43 +020034
35#if defined HAVE_SNMP && defined SNMP_AGENTX
36#include <net-snmp/net-snmp-config.h>
37#include <net-snmp/net-snmp-includes.h>
38#include <net-snmp/agent/net-snmp-agent-includes.h>
39#include <net-snmp/agent/snmp_vars.h>
40
41extern int agentx_enabled;
42#endif
43
Hasso Tepper3b96b782012-10-11 11:31:54 +000044#if defined(__APPLE__)
45#include <mach/mach.h>
46#include <mach/mach_time.h>
47#endif
48
Paul Jakmadb9c0df2006-08-27 06:44:02 +000049/* Recent absolute time of day */
ajs8b70d0b2005-04-28 01:31:13 +000050struct timeval recent_time;
Paul Jakmadb9c0df2006-08-27 06:44:02 +000051static struct timeval last_recent_time;
52/* Relative time, since startup */
53static struct timeval relative_time;
54static struct timeval relative_time_base;
55/* init flag */
56static unsigned short timers_inited;
David Lamparter6b0655a2014-06-04 06:53:35 +020057
paule04ab742003-01-17 23:47:00 +000058static struct hash *cpu_record = NULL;
David Lamparter6b0655a2014-06-04 06:53:35 +020059
paul718e3742002-12-13 20:15:29 +000060/* Struct timeval's tv_usec one second value. */
61#define TIMER_SECOND_MICRO 1000000L
62
ajs8b70d0b2005-04-28 01:31:13 +000063/* Adjust so that tv_usec is in the range [0,TIMER_SECOND_MICRO).
64 And change negative values to 0. */
paula48b4e62005-04-22 00:43:47 +000065static struct timeval
paul718e3742002-12-13 20:15:29 +000066timeval_adjust (struct timeval a)
67{
68 while (a.tv_usec >= TIMER_SECOND_MICRO)
69 {
70 a.tv_usec -= TIMER_SECOND_MICRO;
71 a.tv_sec++;
72 }
73
74 while (a.tv_usec < 0)
75 {
76 a.tv_usec += TIMER_SECOND_MICRO;
77 a.tv_sec--;
78 }
79
80 if (a.tv_sec < 0)
ajs8b70d0b2005-04-28 01:31:13 +000081 /* Change negative timeouts to 0. */
82 a.tv_sec = a.tv_usec = 0;
paul718e3742002-12-13 20:15:29 +000083
84 return a;
85}
86
87static struct timeval
88timeval_subtract (struct timeval a, struct timeval b)
89{
90 struct timeval ret;
91
92 ret.tv_usec = a.tv_usec - b.tv_usec;
93 ret.tv_sec = a.tv_sec - b.tv_sec;
94
95 return timeval_adjust (ret);
96}
97
ajs8b70d0b2005-04-28 01:31:13 +000098static long
paul718e3742002-12-13 20:15:29 +000099timeval_cmp (struct timeval a, struct timeval b)
100{
101 return (a.tv_sec == b.tv_sec
102 ? a.tv_usec - b.tv_usec : a.tv_sec - b.tv_sec);
103}
104
Dinesh G Dutt50f38b32014-09-30 12:53:28 -0700105unsigned long
paul718e3742002-12-13 20:15:29 +0000106timeval_elapsed (struct timeval a, struct timeval b)
107{
108 return (((a.tv_sec - b.tv_sec) * TIMER_SECOND_MICRO)
109 + (a.tv_usec - b.tv_usec));
110}
David Lamparter6b0655a2014-06-04 06:53:35 +0200111
Hasso Tepper3b96b782012-10-11 11:31:54 +0000112#if !defined(HAVE_CLOCK_MONOTONIC) && !defined(__APPLE__)
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000113static void
114quagga_gettimeofday_relative_adjust (void)
115{
116 struct timeval diff;
117 if (timeval_cmp (recent_time, last_recent_time) < 0)
118 {
119 relative_time.tv_sec++;
120 relative_time.tv_usec = 0;
121 }
122 else
123 {
124 diff = timeval_subtract (recent_time, last_recent_time);
125 relative_time.tv_sec += diff.tv_sec;
126 relative_time.tv_usec += diff.tv_usec;
127 relative_time = timeval_adjust (relative_time);
128 }
129 last_recent_time = recent_time;
130}
Hasso Tepper3b96b782012-10-11 11:31:54 +0000131#endif /* !HAVE_CLOCK_MONOTONIC && !__APPLE__ */
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000132
133/* gettimeofday wrapper, to keep recent_time updated */
134static int
135quagga_gettimeofday (struct timeval *tv)
136{
137 int ret;
138
139 assert (tv);
140
141 if (!(ret = gettimeofday (&recent_time, NULL)))
142 {
143 /* init... */
144 if (!timers_inited)
145 {
146 relative_time_base = last_recent_time = recent_time;
147 timers_inited = 1;
148 }
149 /* avoid copy if user passed recent_time pointer.. */
150 if (tv != &recent_time)
151 *tv = recent_time;
152 return 0;
153 }
154 return ret;
155}
156
157static int
158quagga_get_relative (struct timeval *tv)
159{
160 int ret;
161
162#ifdef HAVE_CLOCK_MONOTONIC
163 {
164 struct timespec tp;
165 if (!(ret = clock_gettime (CLOCK_MONOTONIC, &tp)))
166 {
167 relative_time.tv_sec = tp.tv_sec;
168 relative_time.tv_usec = tp.tv_nsec / 1000;
169 }
170 }
Hasso Tepper3b96b782012-10-11 11:31:54 +0000171#elif defined(__APPLE__)
172 {
173 uint64_t ticks;
174 uint64_t useconds;
175 static mach_timebase_info_data_t timebase_info;
176
177 ticks = mach_absolute_time();
178 if (timebase_info.denom == 0)
179 mach_timebase_info(&timebase_info);
180
181 useconds = ticks * timebase_info.numer / timebase_info.denom / 1000;
182 relative_time.tv_sec = useconds / 1000000;
183 relative_time.tv_usec = useconds % 1000000;
184
185 return 0;
186 }
187#else /* !HAVE_CLOCK_MONOTONIC && !__APPLE__ */
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000188 if (!(ret = quagga_gettimeofday (&recent_time)))
189 quagga_gettimeofday_relative_adjust();
190#endif /* HAVE_CLOCK_MONOTONIC */
191
192 if (tv)
193 *tv = relative_time;
194
195 return ret;
196}
197
198/* Get absolute time stamp, but in terms of the internal timer
199 * Could be wrong, but at least won't go back.
200 */
201static void
202quagga_real_stabilised (struct timeval *tv)
203{
204 *tv = relative_time_base;
205 tv->tv_sec += relative_time.tv_sec;
206 tv->tv_usec += relative_time.tv_usec;
207 *tv = timeval_adjust (*tv);
208}
209
210/* Exported Quagga timestamp function.
211 * Modelled on POSIX clock_gettime.
212 */
213int
214quagga_gettime (enum quagga_clkid clkid, struct timeval *tv)
215{
216 switch (clkid)
217 {
218 case QUAGGA_CLK_REALTIME:
219 return quagga_gettimeofday (tv);
220 case QUAGGA_CLK_MONOTONIC:
221 return quagga_get_relative (tv);
222 case QUAGGA_CLK_REALTIME_STABILISED:
223 quagga_real_stabilised (tv);
224 return 0;
225 default:
226 errno = EINVAL;
227 return -1;
228 }
229}
230
231/* time_t value in terms of stabilised absolute time.
232 * replacement for POSIX time()
233 */
234time_t
235quagga_time (time_t *t)
236{
237 struct timeval tv;
238 quagga_real_stabilised (&tv);
239 if (t)
240 *t = tv.tv_sec;
241 return tv.tv_sec;
242}
243
244/* Public export of recent_relative_time by value */
245struct timeval
246recent_relative_time (void)
247{
248 return relative_time;
249}
David Lamparter6b0655a2014-06-04 06:53:35 +0200250
paula48b4e62005-04-22 00:43:47 +0000251static unsigned int
paule04ab742003-01-17 23:47:00 +0000252cpu_record_hash_key (struct cpu_thread_history *a)
253{
paul8cc41982005-05-06 21:25:49 +0000254 return (uintptr_t) a->func;
paule04ab742003-01-17 23:47:00 +0000255}
256
257static int
Stephen Hemmingerffe11cf2008-08-14 16:25:25 +0100258cpu_record_hash_cmp (const struct cpu_thread_history *a,
259 const struct cpu_thread_history *b)
paule04ab742003-01-17 23:47:00 +0000260{
261 return a->func == b->func;
262}
263
paul8cc41982005-05-06 21:25:49 +0000264static void *
paule04ab742003-01-17 23:47:00 +0000265cpu_record_hash_alloc (struct cpu_thread_history *a)
266{
267 struct cpu_thread_history *new;
paul039b9572004-10-31 16:43:17 +0000268 new = XCALLOC (MTYPE_THREAD_STATS, sizeof (struct cpu_thread_history));
paule04ab742003-01-17 23:47:00 +0000269 new->func = a->func;
David Lamparter3493b772013-11-18 23:04:27 +0100270 new->funcname = a->funcname;
paule04ab742003-01-17 23:47:00 +0000271 return new;
272}
273
Chris Caputo228da422009-07-18 05:44:03 +0000274static void
275cpu_record_hash_free (void *a)
276{
277 struct cpu_thread_history *hist = a;
278
Chris Caputo228da422009-07-18 05:44:03 +0000279 XFREE (MTYPE_THREAD_STATS, hist);
280}
281
Paul Jakmaf63f06d2011-04-08 12:44:43 +0100282static void
paule04ab742003-01-17 23:47:00 +0000283vty_out_cpu_thread_history(struct vty* vty,
284 struct cpu_thread_history *a)
285{
ajs8b70d0b2005-04-28 01:31:13 +0000286#ifdef HAVE_RUSAGE
287 vty_out(vty, "%7ld.%03ld %9d %8ld %9ld %8ld %9ld",
288 a->cpu.total/1000, a->cpu.total%1000, a->total_calls,
289 a->cpu.total/a->total_calls, a->cpu.max,
290 a->real.total/a->total_calls, a->real.max);
291#else
292 vty_out(vty, "%7ld.%03ld %9d %8ld %9ld",
293 a->real.total/1000, a->real.total%1000, a->total_calls,
294 a->real.total/a->total_calls, a->real.max);
295#endif
296 vty_out(vty, " %c%c%c%c%c%c %s%s",
paule04ab742003-01-17 23:47:00 +0000297 a->types & (1 << THREAD_READ) ? 'R':' ',
298 a->types & (1 << THREAD_WRITE) ? 'W':' ',
299 a->types & (1 << THREAD_TIMER) ? 'T':' ',
300 a->types & (1 << THREAD_EVENT) ? 'E':' ',
301 a->types & (1 << THREAD_EXECUTE) ? 'X':' ',
paula48b4e62005-04-22 00:43:47 +0000302 a->types & (1 << THREAD_BACKGROUND) ? 'B' : ' ',
paule04ab742003-01-17 23:47:00 +0000303 a->funcname, VTY_NEWLINE);
304}
305
306static void
307cpu_record_hash_print(struct hash_backet *bucket,
308 void *args[])
309{
310 struct cpu_thread_history *totals = args[0];
311 struct vty *vty = args[1];
Paul Jakma41b23732009-06-30 16:12:49 +0100312 thread_type *filter = args[2];
paule04ab742003-01-17 23:47:00 +0000313 struct cpu_thread_history *a = bucket->data;
paula48b4e62005-04-22 00:43:47 +0000314
paule04ab742003-01-17 23:47:00 +0000315 a = bucket->data;
316 if ( !(a->types & *filter) )
317 return;
318 vty_out_cpu_thread_history(vty,a);
paule04ab742003-01-17 23:47:00 +0000319 totals->total_calls += a->total_calls;
ajs8b70d0b2005-04-28 01:31:13 +0000320 totals->real.total += a->real.total;
321 if (totals->real.max < a->real.max)
322 totals->real.max = a->real.max;
323#ifdef HAVE_RUSAGE
324 totals->cpu.total += a->cpu.total;
325 if (totals->cpu.max < a->cpu.max)
326 totals->cpu.max = a->cpu.max;
327#endif
paule04ab742003-01-17 23:47:00 +0000328}
329
330static void
Paul Jakma41b23732009-06-30 16:12:49 +0100331cpu_record_print(struct vty *vty, thread_type filter)
paule04ab742003-01-17 23:47:00 +0000332{
333 struct cpu_thread_history tmp;
334 void *args[3] = {&tmp, vty, &filter};
335
336 memset(&tmp, 0, sizeof tmp);
David Lamparter3493b772013-11-18 23:04:27 +0100337 tmp.funcname = "TOTAL";
paule04ab742003-01-17 23:47:00 +0000338 tmp.types = filter;
339
ajs8b70d0b2005-04-28 01:31:13 +0000340#ifdef HAVE_RUSAGE
341 vty_out(vty, "%21s %18s %18s%s",
342 "", "CPU (user+system):", "Real (wall-clock):", VTY_NEWLINE);
343#endif
344 vty_out(vty, "Runtime(ms) Invoked Avg uSec Max uSecs");
345#ifdef HAVE_RUSAGE
346 vty_out(vty, " Avg uSec Max uSecs");
347#endif
348 vty_out(vty, " Type Thread%s", VTY_NEWLINE);
paule04ab742003-01-17 23:47:00 +0000349 hash_iterate(cpu_record,
350 (void(*)(struct hash_backet*,void*))cpu_record_hash_print,
351 args);
352
353 if (tmp.total_calls > 0)
354 vty_out_cpu_thread_history(vty, &tmp);
355}
356
357DEFUN(show_thread_cpu,
358 show_thread_cpu_cmd,
359 "show thread cpu [FILTER]",
360 SHOW_STR
361 "Thread information\n"
362 "Thread CPU usage\n"
paula48b4e62005-04-22 00:43:47 +0000363 "Display filter (rwtexb)\n")
paule04ab742003-01-17 23:47:00 +0000364{
365 int i = 0;
Paul Jakma41b23732009-06-30 16:12:49 +0100366 thread_type filter = (thread_type) -1U;
paule04ab742003-01-17 23:47:00 +0000367
368 if (argc > 0)
369 {
370 filter = 0;
371 while (argv[0][i] != '\0')
372 {
373 switch ( argv[0][i] )
374 {
375 case 'r':
376 case 'R':
377 filter |= (1 << THREAD_READ);
378 break;
379 case 'w':
380 case 'W':
381 filter |= (1 << THREAD_WRITE);
382 break;
383 case 't':
384 case 'T':
385 filter |= (1 << THREAD_TIMER);
386 break;
387 case 'e':
388 case 'E':
389 filter |= (1 << THREAD_EVENT);
390 break;
391 case 'x':
392 case 'X':
393 filter |= (1 << THREAD_EXECUTE);
394 break;
paula48b4e62005-04-22 00:43:47 +0000395 case 'b':
396 case 'B':
397 filter |= (1 << THREAD_BACKGROUND);
398 break;
paule04ab742003-01-17 23:47:00 +0000399 default:
400 break;
401 }
402 ++i;
403 }
404 if (filter == 0)
405 {
paula48b4e62005-04-22 00:43:47 +0000406 vty_out(vty, "Invalid filter \"%s\" specified,"
407 " must contain at least one of 'RWTEXB'%s",
paule04ab742003-01-17 23:47:00 +0000408 argv[0], VTY_NEWLINE);
409 return CMD_WARNING;
410 }
411 }
412
413 cpu_record_print(vty, filter);
414 return CMD_SUCCESS;
415}
Paul Jakmae276eb82010-01-09 16:15:00 +0000416
417static void
418cpu_record_hash_clear (struct hash_backet *bucket,
419 void *args)
420{
421 thread_type *filter = args;
422 struct cpu_thread_history *a = bucket->data;
423
424 a = bucket->data;
425 if ( !(a->types & *filter) )
426 return;
427
428 hash_release (cpu_record, bucket->data);
429}
430
431static void
432cpu_record_clear (thread_type filter)
433{
434 thread_type *tmp = &filter;
435 hash_iterate (cpu_record,
436 (void (*) (struct hash_backet*,void*)) cpu_record_hash_clear,
437 tmp);
438}
439
440DEFUN(clear_thread_cpu,
441 clear_thread_cpu_cmd,
442 "clear thread cpu [FILTER]",
443 "Clear stored data\n"
444 "Thread information\n"
445 "Thread CPU usage\n"
446 "Display filter (rwtexb)\n")
447{
448 int i = 0;
449 thread_type filter = (thread_type) -1U;
450
451 if (argc > 0)
452 {
453 filter = 0;
454 while (argv[0][i] != '\0')
455 {
456 switch ( argv[0][i] )
457 {
458 case 'r':
459 case 'R':
460 filter |= (1 << THREAD_READ);
461 break;
462 case 'w':
463 case 'W':
464 filter |= (1 << THREAD_WRITE);
465 break;
466 case 't':
467 case 'T':
468 filter |= (1 << THREAD_TIMER);
469 break;
470 case 'e':
471 case 'E':
472 filter |= (1 << THREAD_EVENT);
473 break;
474 case 'x':
475 case 'X':
476 filter |= (1 << THREAD_EXECUTE);
477 break;
478 case 'b':
479 case 'B':
480 filter |= (1 << THREAD_BACKGROUND);
481 break;
482 default:
483 break;
484 }
485 ++i;
486 }
487 if (filter == 0)
488 {
489 vty_out(vty, "Invalid filter \"%s\" specified,"
490 " must contain at least one of 'RWTEXB'%s",
491 argv[0], VTY_NEWLINE);
492 return CMD_WARNING;
493 }
494 }
495
496 cpu_record_clear (filter);
497 return CMD_SUCCESS;
498}
David Lamparter6b0655a2014-06-04 06:53:35 +0200499
Christian Franke4becea72013-11-19 14:11:42 +0000500static int
501thread_timer_cmp(void *a, void *b)
502{
503 struct thread *thread_a = a;
504 struct thread *thread_b = b;
505
506 long cmp = timeval_cmp(thread_a->u.sands, thread_b->u.sands);
507
508 if (cmp < 0)
509 return -1;
510 if (cmp > 0)
511 return 1;
512 return 0;
513}
514
515static void
516thread_timer_update(void *node, int actual_position)
517{
518 struct thread *thread = node;
519
520 thread->index = actual_position;
521}
522
paul718e3742002-12-13 20:15:29 +0000523/* Allocate new thread master. */
524struct thread_master *
525thread_master_create ()
526{
Christian Franke4becea72013-11-19 14:11:42 +0000527 struct thread_master *rv;
Denil Vira4ab273b2016-03-04 15:28:54 -0500528 struct rlimit limit;
529
530 getrlimit(RLIMIT_NOFILE, &limit);
Christian Franke4becea72013-11-19 14:11:42 +0000531
paule04ab742003-01-17 23:47:00 +0000532 if (cpu_record == NULL)
paul8cc41982005-05-06 21:25:49 +0000533 cpu_record
Stephen Hemminger90645f52013-01-04 22:29:21 +0000534 = hash_create ((unsigned int (*) (void *))cpu_record_hash_key,
535 (int (*) (const void *, const void *))cpu_record_hash_cmp);
Christian Franke4becea72013-11-19 14:11:42 +0000536
537 rv = XCALLOC (MTYPE_THREAD_MASTER, sizeof (struct thread_master));
Denil Vira4ab273b2016-03-04 15:28:54 -0500538 if (rv == NULL)
539 {
540 return NULL;
541 }
542
543 rv->fd_limit = (int)limit.rlim_cur;
544 rv->read = XCALLOC (MTYPE_THREAD, sizeof (struct thread *) * rv->fd_limit);
545 if (rv->read == NULL)
546 {
547 XFREE (MTYPE_THREAD_MASTER, rv);
548 return NULL;
549 }
550
551 rv->write = XCALLOC (MTYPE_THREAD, sizeof (struct thread *) * rv->fd_limit);
552 if (rv->write == NULL)
553 {
554 XFREE (MTYPE_THREAD, rv->read);
555 XFREE (MTYPE_THREAD_MASTER, rv);
556 return NULL;
557 }
Christian Franke4becea72013-11-19 14:11:42 +0000558
559 /* Initialize the timer queues */
560 rv->timer = pqueue_create();
561 rv->background = pqueue_create();
562 rv->timer->cmp = rv->background->cmp = thread_timer_cmp;
563 rv->timer->update = rv->background->update = thread_timer_update;
564
565 return rv;
paul718e3742002-12-13 20:15:29 +0000566}
567
568/* Add a new thread to the list. */
569static void
570thread_list_add (struct thread_list *list, struct thread *thread)
571{
572 thread->next = NULL;
573 thread->prev = list->tail;
574 if (list->tail)
575 list->tail->next = thread;
576 else
577 list->head = thread;
578 list->tail = thread;
579 list->count++;
580}
581
paul718e3742002-12-13 20:15:29 +0000582/* Delete a thread from the list. */
583static struct thread *
584thread_list_delete (struct thread_list *list, struct thread *thread)
585{
586 if (thread->next)
587 thread->next->prev = thread->prev;
588 else
589 list->tail = thread->prev;
590 if (thread->prev)
591 thread->prev->next = thread->next;
592 else
593 list->head = thread->next;
594 thread->next = thread->prev = NULL;
595 list->count--;
596 return thread;
597}
598
Denil Vira4ab273b2016-03-04 15:28:54 -0500599static void
600thread_delete_fd (struct thread **thread_array, struct thread *thread)
601{
602 thread_array[thread->u.fd] = NULL;
603}
604
605static void
606thread_add_fd (struct thread **thread_array, struct thread *thread)
607{
608 thread_array[thread->u.fd] = thread;
609}
610
paul718e3742002-12-13 20:15:29 +0000611/* Move thread to unuse list. */
612static void
613thread_add_unuse (struct thread_master *m, struct thread *thread)
614{
paula48b4e62005-04-22 00:43:47 +0000615 assert (m != NULL && thread != NULL);
paul718e3742002-12-13 20:15:29 +0000616 assert (thread->next == NULL);
617 assert (thread->prev == NULL);
618 assert (thread->type == THREAD_UNUSED);
619 thread_list_add (&m->unuse, thread);
620}
621
622/* Free all unused thread. */
623static void
624thread_list_free (struct thread_master *m, struct thread_list *list)
625{
626 struct thread *t;
627 struct thread *next;
628
629 for (t = list->head; t; t = next)
630 {
631 next = t->next;
632 XFREE (MTYPE_THREAD, t);
633 list->count--;
634 m->alloc--;
635 }
636}
637
Christian Franke4becea72013-11-19 14:11:42 +0000638static void
Denil Vira4ab273b2016-03-04 15:28:54 -0500639thread_array_free (struct thread_master *m, struct thread **thread_array)
640{
641 struct thread *t;
642 int index;
643
644 for (index = 0; index < m->fd_limit; ++index)
645 {
646 t = thread_array[index];
647 if (t)
648 {
649 thread_array[index] = NULL;
650 XFREE (MTYPE_THREAD, t);
651 m->alloc--;
652 }
653 }
654 XFREE (MTYPE_THREAD, thread_array);
655}
656
657static void
Christian Franke4becea72013-11-19 14:11:42 +0000658thread_queue_free (struct thread_master *m, struct pqueue *queue)
659{
660 int i;
661
662 for (i = 0; i < queue->size; i++)
663 XFREE(MTYPE_THREAD, queue->array[i]);
664
665 m->alloc -= queue->size;
666 pqueue_delete(queue);
667}
668
paul718e3742002-12-13 20:15:29 +0000669/* Stop thread scheduler. */
670void
671thread_master_free (struct thread_master *m)
672{
Denil Vira4ab273b2016-03-04 15:28:54 -0500673 thread_array_free (m, m->read);
674 thread_array_free (m, m->write);
Christian Franke4becea72013-11-19 14:11:42 +0000675 thread_queue_free (m, m->timer);
paul718e3742002-12-13 20:15:29 +0000676 thread_list_free (m, &m->event);
677 thread_list_free (m, &m->ready);
678 thread_list_free (m, &m->unuse);
Christian Franke4becea72013-11-19 14:11:42 +0000679 thread_queue_free (m, m->background);
paula48b4e62005-04-22 00:43:47 +0000680
paul718e3742002-12-13 20:15:29 +0000681 XFREE (MTYPE_THREAD_MASTER, m);
Chris Caputo228da422009-07-18 05:44:03 +0000682
683 if (cpu_record)
684 {
685 hash_clean (cpu_record, cpu_record_hash_free);
686 hash_free (cpu_record);
687 cpu_record = NULL;
688 }
paul718e3742002-12-13 20:15:29 +0000689}
690
paul8cc41982005-05-06 21:25:49 +0000691/* Thread list is empty or not. */
Paul Jakmaf63f06d2011-04-08 12:44:43 +0100692static int
paul8cc41982005-05-06 21:25:49 +0000693thread_empty (struct thread_list *list)
694{
695 return list->head ? 0 : 1;
696}
697
paul718e3742002-12-13 20:15:29 +0000698/* Delete top of the list and return it. */
699static struct thread *
700thread_trim_head (struct thread_list *list)
701{
paul8cc41982005-05-06 21:25:49 +0000702 if (!thread_empty (list))
paul718e3742002-12-13 20:15:29 +0000703 return thread_list_delete (list, list->head);
704 return NULL;
705}
706
paul718e3742002-12-13 20:15:29 +0000707/* Return remain time in second. */
708unsigned long
709thread_timer_remain_second (struct thread *thread)
710{
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000711 quagga_get_relative (NULL);
712
713 if (thread->u.sands.tv_sec - relative_time.tv_sec > 0)
714 return thread->u.sands.tv_sec - relative_time.tv_sec;
paul718e3742002-12-13 20:15:29 +0000715 else
716 return 0;
717}
718
Christian Franke76fbc642015-11-10 18:04:41 +0100719struct timeval
720thread_timer_remain(struct thread *thread)
721{
722 quagga_get_relative(NULL);
723
724 return timeval_subtract(thread->u.sands, relative_time);
725}
726
David Lamparter3493b772013-11-18 23:04:27 +0100727#define debugargdef const char *funcname, const char *schedfrom, int fromln
728#define debugargpass funcname, schedfrom, fromln
paule04ab742003-01-17 23:47:00 +0000729
paul718e3742002-12-13 20:15:29 +0000730/* Get new thread. */
731static struct thread *
732thread_get (struct thread_master *m, u_char type,
David Lamparter3493b772013-11-18 23:04:27 +0100733 int (*func) (struct thread *), void *arg, debugargdef)
paul718e3742002-12-13 20:15:29 +0000734{
Jorge Boncompte [DTI2]64018322012-05-07 16:53:13 +0000735 struct thread *thread = thread_trim_head (&m->unuse);
paul718e3742002-12-13 20:15:29 +0000736
Jorge Boncompte [DTI2]22714f92012-05-07 16:53:14 +0000737 if (! thread)
paul718e3742002-12-13 20:15:29 +0000738 {
739 thread = XCALLOC (MTYPE_THREAD, sizeof (struct thread));
740 m->alloc++;
741 }
742 thread->type = type;
paule04ab742003-01-17 23:47:00 +0000743 thread->add_type = type;
paul718e3742002-12-13 20:15:29 +0000744 thread->master = m;
745 thread->func = func;
746 thread->arg = arg;
Christian Franke4becea72013-11-19 14:11:42 +0000747 thread->index = -1;
748
David Lamparter3493b772013-11-18 23:04:27 +0100749 thread->funcname = funcname;
750 thread->schedfrom = schedfrom;
751 thread->schedfrom_line = fromln;
paule04ab742003-01-17 23:47:00 +0000752
paul718e3742002-12-13 20:15:29 +0000753 return thread;
754}
755
Donald Sharp19be18a2016-03-04 15:28:55 -0500756#define fd_copy_fd_set(X) (X)
757
758static int
759fd_select (int size, thread_fd_set *read, thread_fd_set *write, thread_fd_set *except, struct timeval *t)
760{
761 return(select(size, read, write, except, t));
762}
763
764static int
765fd_is_set (int fd, thread_fd_set *fdset)
766{
767 return FD_ISSET (fd, fdset);
768}
769
770static int
Donald Sharp19be18a2016-03-04 15:28:55 -0500771fd_clear_read_write (int fd, thread_fd_set *fdset)
772{
773 if (!FD_ISSET (fd, fdset))
774 return 0;
775
776 FD_CLR (fd, fdset);
777 return 1;
778}
779
Donald Sharpe0b83242016-03-04 15:28:56 -0500780static struct thread *
781funcname_thread_add_read_write (int dir, struct thread_master *m,
782 int (*func) (struct thread *), void *arg, int fd,
783 debugargdef)
784{
785 struct thread *thread = NULL;
786 thread_fd_set *fdset = NULL;
787
788 if (dir == THREAD_READ)
789 fdset = &m->readfd;
790 else
791 fdset = &m->writefd;
792
Donald Sharp1ad00b02016-07-13 11:02:38 -0400793 if (FD_ISSET (fd, fdset))
Donald Sharpe0b83242016-03-04 15:28:56 -0500794 {
795 zlog (NULL, LOG_WARNING, "There is already %s fd [%d]",
796 (dir = THREAD_READ) ? "read" : "write", fd);
797 return NULL;
798 }
799
800 FD_SET (fd, fdset);
801
802 thread = thread_get (m, dir, func, arg, debugargpass);
803 thread->u.fd = fd;
804 if (dir == THREAD_READ)
805 thread_add_fd (m->read, thread);
806 else
807 thread_add_fd (m->write, thread);
808
809 return thread;
810}
811
paul718e3742002-12-13 20:15:29 +0000812/* Add new read thread. */
813struct thread *
paule04ab742003-01-17 23:47:00 +0000814funcname_thread_add_read (struct thread_master *m,
David Lamparter3493b772013-11-18 23:04:27 +0100815 int (*func) (struct thread *), void *arg, int fd,
816 debugargdef)
paul718e3742002-12-13 20:15:29 +0000817{
Donald Sharpe0b83242016-03-04 15:28:56 -0500818 return funcname_thread_add_read_write (THREAD_READ, m, func,
819 arg, fd, debugargpass);
paul718e3742002-12-13 20:15:29 +0000820}
821
822/* Add new write thread. */
823struct thread *
paule04ab742003-01-17 23:47:00 +0000824funcname_thread_add_write (struct thread_master *m,
David Lamparter3493b772013-11-18 23:04:27 +0100825 int (*func) (struct thread *), void *arg, int fd,
826 debugargdef)
paul718e3742002-12-13 20:15:29 +0000827{
Donald Sharpe0b83242016-03-04 15:28:56 -0500828 return funcname_thread_add_read_write (THREAD_WRITE, m, func,
829 arg, fd, debugargpass);
paul718e3742002-12-13 20:15:29 +0000830}
831
paul98c91ac2004-10-05 14:57:50 +0000832static struct thread *
833funcname_thread_add_timer_timeval (struct thread_master *m,
834 int (*func) (struct thread *),
paula48b4e62005-04-22 00:43:47 +0000835 int type,
paul98c91ac2004-10-05 14:57:50 +0000836 void *arg,
David Lamparter3493b772013-11-18 23:04:27 +0100837 struct timeval *time_relative,
838 debugargdef)
paul718e3742002-12-13 20:15:29 +0000839{
paul718e3742002-12-13 20:15:29 +0000840 struct thread *thread;
Christian Franke4becea72013-11-19 14:11:42 +0000841 struct pqueue *queue;
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000842 struct timeval alarm_time;
paul718e3742002-12-13 20:15:29 +0000843
844 assert (m != NULL);
845
ajs8b70d0b2005-04-28 01:31:13 +0000846 assert (type == THREAD_TIMER || type == THREAD_BACKGROUND);
paula48b4e62005-04-22 00:43:47 +0000847 assert (time_relative);
848
Christian Franke4becea72013-11-19 14:11:42 +0000849 queue = ((type == THREAD_TIMER) ? m->timer : m->background);
David Lamparter3493b772013-11-18 23:04:27 +0100850 thread = thread_get (m, type, func, arg, debugargpass);
paul718e3742002-12-13 20:15:29 +0000851
852 /* Do we need jitter here? */
Joakim Tjernlundb8192762008-11-10 09:33:30 +0100853 quagga_get_relative (NULL);
Paul Jakmadb9c0df2006-08-27 06:44:02 +0000854 alarm_time.tv_sec = relative_time.tv_sec + time_relative->tv_sec;
855 alarm_time.tv_usec = relative_time.tv_usec + time_relative->tv_usec;
ajs8b70d0b2005-04-28 01:31:13 +0000856 thread->u.sands = timeval_adjust(alarm_time);
paul718e3742002-12-13 20:15:29 +0000857
Christian Franke4becea72013-11-19 14:11:42 +0000858 pqueue_enqueue(thread, queue);
paul718e3742002-12-13 20:15:29 +0000859 return thread;
860}
861
paul98c91ac2004-10-05 14:57:50 +0000862
863/* Add timer event thread. */
jardin9e867fe2003-12-23 08:56:18 +0000864struct thread *
paul98c91ac2004-10-05 14:57:50 +0000865funcname_thread_add_timer (struct thread_master *m,
866 int (*func) (struct thread *),
David Lamparter3493b772013-11-18 23:04:27 +0100867 void *arg, long timer,
868 debugargdef)
jardin9e867fe2003-12-23 08:56:18 +0000869{
paul98c91ac2004-10-05 14:57:50 +0000870 struct timeval trel;
jardin9e867fe2003-12-23 08:56:18 +0000871
872 assert (m != NULL);
873
paul9076fbd2004-10-11 09:40:58 +0000874 trel.tv_sec = timer;
paul98c91ac2004-10-05 14:57:50 +0000875 trel.tv_usec = 0;
876
paula48b4e62005-04-22 00:43:47 +0000877 return funcname_thread_add_timer_timeval (m, func, THREAD_TIMER, arg,
David Lamparter3493b772013-11-18 23:04:27 +0100878 &trel, debugargpass);
paul98c91ac2004-10-05 14:57:50 +0000879}
880
881/* Add timer event thread with "millisecond" resolution */
882struct thread *
883funcname_thread_add_timer_msec (struct thread_master *m,
884 int (*func) (struct thread *),
David Lamparter3493b772013-11-18 23:04:27 +0100885 void *arg, long timer,
886 debugargdef)
paul98c91ac2004-10-05 14:57:50 +0000887{
888 struct timeval trel;
889
890 assert (m != NULL);
jardin9e867fe2003-12-23 08:56:18 +0000891
ajsaf04bd72004-12-28 17:00:12 +0000892 trel.tv_sec = timer / 1000;
893 trel.tv_usec = 1000*(timer % 1000);
jardin9e867fe2003-12-23 08:56:18 +0000894
paula48b4e62005-04-22 00:43:47 +0000895 return funcname_thread_add_timer_timeval (m, func, THREAD_TIMER,
David Lamparter3493b772013-11-18 23:04:27 +0100896 arg, &trel, debugargpass);
paula48b4e62005-04-22 00:43:47 +0000897}
898
899/* Add a background thread, with an optional millisec delay */
900struct thread *
901funcname_thread_add_background (struct thread_master *m,
902 int (*func) (struct thread *),
David Lamparter3493b772013-11-18 23:04:27 +0100903 void *arg, long delay,
904 debugargdef)
paula48b4e62005-04-22 00:43:47 +0000905{
906 struct timeval trel;
907
908 assert (m != NULL);
909
910 if (delay)
911 {
912 trel.tv_sec = delay / 1000;
913 trel.tv_usec = 1000*(delay % 1000);
914 }
915 else
916 {
917 trel.tv_sec = 0;
918 trel.tv_usec = 0;
919 }
920
921 return funcname_thread_add_timer_timeval (m, func, THREAD_BACKGROUND,
David Lamparter3493b772013-11-18 23:04:27 +0100922 arg, &trel, debugargpass);
jardin9e867fe2003-12-23 08:56:18 +0000923}
924
paul718e3742002-12-13 20:15:29 +0000925/* Add simple event thread. */
926struct thread *
paule04ab742003-01-17 23:47:00 +0000927funcname_thread_add_event (struct thread_master *m,
David Lamparter3493b772013-11-18 23:04:27 +0100928 int (*func) (struct thread *), void *arg, int val,
929 debugargdef)
paul718e3742002-12-13 20:15:29 +0000930{
931 struct thread *thread;
932
933 assert (m != NULL);
934
David Lamparter3493b772013-11-18 23:04:27 +0100935 thread = thread_get (m, THREAD_EVENT, func, arg, debugargpass);
paul718e3742002-12-13 20:15:29 +0000936 thread->u.val = val;
937 thread_list_add (&m->event, thread);
938
939 return thread;
940}
941
942/* Cancel thread from scheduler. */
943void
944thread_cancel (struct thread *thread)
945{
Christian Franke4becea72013-11-19 14:11:42 +0000946 struct thread_list *list = NULL;
947 struct pqueue *queue = NULL;
Denil Vira4ab273b2016-03-04 15:28:54 -0500948 struct thread **thread_array = NULL;
paula48b4e62005-04-22 00:43:47 +0000949
paul718e3742002-12-13 20:15:29 +0000950 switch (thread->type)
951 {
952 case THREAD_READ:
Donald Sharp19be18a2016-03-04 15:28:55 -0500953 assert (fd_clear_read_write (thread->u.fd, &thread->master->readfd));
Denil Vira4ab273b2016-03-04 15:28:54 -0500954 thread_array = thread->master->read;
paul718e3742002-12-13 20:15:29 +0000955 break;
956 case THREAD_WRITE:
Donald Sharp19be18a2016-03-04 15:28:55 -0500957 assert (fd_clear_read_write (thread->u.fd, &thread->master->writefd));
Denil Vira4ab273b2016-03-04 15:28:54 -0500958 thread_array = thread->master->write;
paul718e3742002-12-13 20:15:29 +0000959 break;
960 case THREAD_TIMER:
Christian Franke4becea72013-11-19 14:11:42 +0000961 queue = thread->master->timer;
paul718e3742002-12-13 20:15:29 +0000962 break;
963 case THREAD_EVENT:
paula48b4e62005-04-22 00:43:47 +0000964 list = &thread->master->event;
paul718e3742002-12-13 20:15:29 +0000965 break;
966 case THREAD_READY:
paula48b4e62005-04-22 00:43:47 +0000967 list = &thread->master->ready;
paul718e3742002-12-13 20:15:29 +0000968 break;
paula48b4e62005-04-22 00:43:47 +0000969 case THREAD_BACKGROUND:
Christian Franke4becea72013-11-19 14:11:42 +0000970 queue = thread->master->background;
ajs8b70d0b2005-04-28 01:31:13 +0000971 break;
paul718e3742002-12-13 20:15:29 +0000972 default:
paula48b4e62005-04-22 00:43:47 +0000973 return;
paul718e3742002-12-13 20:15:29 +0000974 break;
975 }
Christian Franke4becea72013-11-19 14:11:42 +0000976
977 if (queue)
978 {
979 assert(thread->index >= 0);
980 assert(thread == queue->array[thread->index]);
981 pqueue_remove_at(thread->index, queue);
982 }
983 else if (list)
984 {
985 thread_list_delete (list, thread);
986 }
Denil Vira4ab273b2016-03-04 15:28:54 -0500987 else if (thread_array)
988 {
989 thread_delete_fd (thread_array, thread);
990 }
Christian Franke4becea72013-11-19 14:11:42 +0000991 else
992 {
Denil Vira4ab273b2016-03-04 15:28:54 -0500993 assert(!"Thread should be either in queue or list or array!");
Christian Franke4becea72013-11-19 14:11:42 +0000994 }
995
paul718e3742002-12-13 20:15:29 +0000996 thread->type = THREAD_UNUSED;
997 thread_add_unuse (thread->master, thread);
998}
999
1000/* Delete all events which has argument value arg. */
pauldc818072005-05-19 01:30:53 +00001001unsigned int
paul718e3742002-12-13 20:15:29 +00001002thread_cancel_event (struct thread_master *m, void *arg)
1003{
pauldc818072005-05-19 01:30:53 +00001004 unsigned int ret = 0;
paul718e3742002-12-13 20:15:29 +00001005 struct thread *thread;
1006
1007 thread = m->event.head;
1008 while (thread)
1009 {
1010 struct thread *t;
1011
1012 t = thread;
1013 thread = t->next;
1014
1015 if (t->arg == arg)
paula48b4e62005-04-22 00:43:47 +00001016 {
pauldc818072005-05-19 01:30:53 +00001017 ret++;
paula48b4e62005-04-22 00:43:47 +00001018 thread_list_delete (&m->event, t);
1019 t->type = THREAD_UNUSED;
1020 thread_add_unuse (m, t);
1021 }
paul718e3742002-12-13 20:15:29 +00001022 }
Jorge Boncompte [DTI2]1b79fcb2012-05-07 15:17:31 +00001023
1024 /* thread can be on the ready list too */
1025 thread = m->ready.head;
1026 while (thread)
1027 {
1028 struct thread *t;
1029
1030 t = thread;
1031 thread = t->next;
1032
1033 if (t->arg == arg)
1034 {
1035 ret++;
1036 thread_list_delete (&m->ready, t);
1037 t->type = THREAD_UNUSED;
1038 thread_add_unuse (m, t);
1039 }
1040 }
pauldc818072005-05-19 01:30:53 +00001041 return ret;
paul718e3742002-12-13 20:15:29 +00001042}
1043
paula48b4e62005-04-22 00:43:47 +00001044static struct timeval *
Christian Franke4becea72013-11-19 14:11:42 +00001045thread_timer_wait (struct pqueue *queue, struct timeval *timer_val)
paul718e3742002-12-13 20:15:29 +00001046{
Christian Franke4becea72013-11-19 14:11:42 +00001047 if (queue->size)
paul718e3742002-12-13 20:15:29 +00001048 {
Christian Franke4becea72013-11-19 14:11:42 +00001049 struct thread *next_timer = queue->array[0];
1050 *timer_val = timeval_subtract (next_timer->u.sands, relative_time);
paul718e3742002-12-13 20:15:29 +00001051 return timer_val;
1052 }
1053 return NULL;
1054}
paul718e3742002-12-13 20:15:29 +00001055
paul8cc41982005-05-06 21:25:49 +00001056static struct thread *
paul718e3742002-12-13 20:15:29 +00001057thread_run (struct thread_master *m, struct thread *thread,
1058 struct thread *fetch)
1059{
1060 *fetch = *thread;
1061 thread->type = THREAD_UNUSED;
1062 thread_add_unuse (m, thread);
1063 return fetch;
1064}
1065
paula48b4e62005-04-22 00:43:47 +00001066static int
Donald Sharp19be18a2016-03-04 15:28:55 -05001067thread_process_fd (struct thread **thread_array, thread_fd_set *fdset,
1068 thread_fd_set *mfdset, int num, int fd_limit)
paul718e3742002-12-13 20:15:29 +00001069{
1070 struct thread *thread;
Denil Vira4ab273b2016-03-04 15:28:54 -05001071 int ready = 0, index;
paul718e3742002-12-13 20:15:29 +00001072
Denil Vira4ab273b2016-03-04 15:28:54 -05001073 assert (thread_array);
1074
1075 for (index = 0; index < fd_limit && ready < num; ++index)
1076 {
1077 thread = thread_array[index];
Donald Sharp19be18a2016-03-04 15:28:55 -05001078 if (thread && fd_is_set (THREAD_FD (thread), fdset))
paula48b4e62005-04-22 00:43:47 +00001079 {
Donald Sharp19be18a2016-03-04 15:28:55 -05001080 assert (fd_clear_read_write (THREAD_FD (thread), mfdset));
Denil Vira4ab273b2016-03-04 15:28:54 -05001081 thread_delete_fd (thread_array, thread);
paula48b4e62005-04-22 00:43:47 +00001082 thread_list_add (&thread->master->ready, thread);
1083 thread->type = THREAD_READY;
1084 ready++;
1085 }
paul718e3742002-12-13 20:15:29 +00001086 }
Denil Vira4ab273b2016-03-04 15:28:54 -05001087 return num - ready;
paul718e3742002-12-13 20:15:29 +00001088}
1089
ajs8b70d0b2005-04-28 01:31:13 +00001090/* Add all timers that have popped to the ready list. */
paula48b4e62005-04-22 00:43:47 +00001091static unsigned int
Christian Franke4becea72013-11-19 14:11:42 +00001092thread_timer_process (struct pqueue *queue, struct timeval *timenow)
paula48b4e62005-04-22 00:43:47 +00001093{
1094 struct thread *thread;
1095 unsigned int ready = 0;
1096
Christian Franke4becea72013-11-19 14:11:42 +00001097 while (queue->size)
ajs8b70d0b2005-04-28 01:31:13 +00001098 {
Christian Franke4becea72013-11-19 14:11:42 +00001099 thread = queue->array[0];
ajs8b70d0b2005-04-28 01:31:13 +00001100 if (timeval_cmp (*timenow, thread->u.sands) < 0)
1101 return ready;
Christian Franke4becea72013-11-19 14:11:42 +00001102 pqueue_dequeue(queue);
ajs8b70d0b2005-04-28 01:31:13 +00001103 thread->type = THREAD_READY;
1104 thread_list_add (&thread->master->ready, thread);
1105 ready++;
1106 }
paula48b4e62005-04-22 00:43:47 +00001107 return ready;
1108}
1109
Paul Jakma2613abe2010-01-11 16:33:07 +00001110/* process a list en masse, e.g. for event thread lists */
1111static unsigned int
1112thread_process (struct thread_list *list)
1113{
1114 struct thread *thread;
Paul Jakmab5043aa2012-02-28 18:32:56 +00001115 struct thread *next;
Paul Jakma2613abe2010-01-11 16:33:07 +00001116 unsigned int ready = 0;
1117
Paul Jakmab5043aa2012-02-28 18:32:56 +00001118 for (thread = list->head; thread; thread = next)
Paul Jakma2613abe2010-01-11 16:33:07 +00001119 {
Paul Jakmab5043aa2012-02-28 18:32:56 +00001120 next = thread->next;
Paul Jakma2613abe2010-01-11 16:33:07 +00001121 thread_list_delete (list, thread);
1122 thread->type = THREAD_READY;
1123 thread_list_add (&thread->master->ready, thread);
1124 ready++;
1125 }
1126 return ready;
1127}
1128
1129
paul718e3742002-12-13 20:15:29 +00001130/* Fetch next ready thread. */
1131struct thread *
1132thread_fetch (struct thread_master *m, struct thread *fetch)
1133{
paul718e3742002-12-13 20:15:29 +00001134 struct thread *thread;
Donald Sharp19be18a2016-03-04 15:28:55 -05001135 thread_fd_set readfd;
1136 thread_fd_set writefd;
1137 thread_fd_set exceptfd;
Paul Jakma2613abe2010-01-11 16:33:07 +00001138 struct timeval timer_val = { .tv_sec = 0, .tv_usec = 0 };
paula48b4e62005-04-22 00:43:47 +00001139 struct timeval timer_val_bg;
Paul Jakma2613abe2010-01-11 16:33:07 +00001140 struct timeval *timer_wait = &timer_val;
paula48b4e62005-04-22 00:43:47 +00001141 struct timeval *timer_wait_bg;
paul718e3742002-12-13 20:15:29 +00001142
1143 while (1)
1144 {
paula48b4e62005-04-22 00:43:47 +00001145 int num = 0;
Vincent Bernatd6be5fb2012-05-24 09:44:43 +02001146#if defined HAVE_SNMP && defined SNMP_AGENTX
1147 struct timeval snmp_timer_wait;
1148 int snmpblock = 0;
1149 int fdsetsize;
1150#endif
paula48b4e62005-04-22 00:43:47 +00001151
Paul Jakma2613abe2010-01-11 16:33:07 +00001152 /* Signals pre-empt everything */
paul05c447d2004-07-22 19:14:27 +00001153 quagga_sigevent_process ();
1154
Paul Jakma2613abe2010-01-11 16:33:07 +00001155 /* Drain the ready queue of already scheduled jobs, before scheduling
1156 * more.
paula48b4e62005-04-22 00:43:47 +00001157 */
paul718e3742002-12-13 20:15:29 +00001158 if ((thread = thread_trim_head (&m->ready)) != NULL)
paul05c447d2004-07-22 19:14:27 +00001159 return thread_run (m, thread, fetch);
paula48b4e62005-04-22 00:43:47 +00001160
Paul Jakma2613abe2010-01-11 16:33:07 +00001161 /* To be fair to all kinds of threads, and avoid starvation, we
1162 * need to be careful to consider all thread types for scheduling
1163 * in each quanta. I.e. we should not return early from here on.
1164 */
1165
1166 /* Normal event are the next highest priority. */
1167 thread_process (&m->event);
1168
paul718e3742002-12-13 20:15:29 +00001169 /* Structure copy. */
Donald Sharp19be18a2016-03-04 15:28:55 -05001170 readfd = fd_copy_fd_set(m->readfd);
1171 writefd = fd_copy_fd_set(m->writefd);
1172 exceptfd = fd_copy_fd_set(m->exceptfd);
paula48b4e62005-04-22 00:43:47 +00001173
1174 /* Calculate select wait timer if nothing else to do */
Paul Jakma2613abe2010-01-11 16:33:07 +00001175 if (m->ready.count == 0)
1176 {
1177 quagga_get_relative (NULL);
Christian Franke4becea72013-11-19 14:11:42 +00001178 timer_wait = thread_timer_wait (m->timer, &timer_val);
1179 timer_wait_bg = thread_timer_wait (m->background, &timer_val_bg);
Paul Jakma2613abe2010-01-11 16:33:07 +00001180
1181 if (timer_wait_bg &&
1182 (!timer_wait || (timeval_cmp (*timer_wait, *timer_wait_bg) > 0)))
1183 timer_wait = timer_wait_bg;
1184 }
paula48b4e62005-04-22 00:43:47 +00001185
Vincent Bernatd6be5fb2012-05-24 09:44:43 +02001186#if defined HAVE_SNMP && defined SNMP_AGENTX
1187 /* When SNMP is enabled, we may have to select() on additional
1188 FD. snmp_select_info() will add them to `readfd'. The trick
1189 with this function is its last argument. We need to set it to
1190 0 if timer_wait is not NULL and we need to use the provided
1191 new timer only if it is still set to 0. */
1192 if (agentx_enabled)
1193 {
1194 fdsetsize = FD_SETSIZE;
1195 snmpblock = 1;
1196 if (timer_wait)
1197 {
1198 snmpblock = 0;
1199 memcpy(&snmp_timer_wait, timer_wait, sizeof(struct timeval));
1200 }
1201 snmp_select_info(&fdsetsize, &readfd, &snmp_timer_wait, &snmpblock);
1202 if (snmpblock == 0)
1203 timer_wait = &snmp_timer_wait;
1204 }
1205#endif
Donald Sharp19be18a2016-03-04 15:28:55 -05001206 num = fd_select (FD_SETSIZE, &readfd, &writefd, &exceptfd, timer_wait);
paula48b4e62005-04-22 00:43:47 +00001207
1208 /* Signals should get quick treatment */
paul718e3742002-12-13 20:15:29 +00001209 if (num < 0)
paul05c447d2004-07-22 19:14:27 +00001210 {
1211 if (errno == EINTR)
paula48b4e62005-04-22 00:43:47 +00001212 continue; /* signal received - process it */
ajs6099b3b2004-11-20 02:06:59 +00001213 zlog_warn ("select() error: %s", safe_strerror (errno));
paul05c447d2004-07-22 19:14:27 +00001214 return NULL;
1215 }
ajs8b70d0b2005-04-28 01:31:13 +00001216
Vincent Bernatd6be5fb2012-05-24 09:44:43 +02001217#if defined HAVE_SNMP && defined SNMP_AGENTX
1218 if (agentx_enabled)
1219 {
1220 if (num > 0)
1221 snmp_read(&readfd);
1222 else if (num == 0)
1223 {
1224 snmp_timeout();
1225 run_alarms();
1226 }
1227 netsnmp_check_outstanding_agent_requests();
1228 }
1229#endif
1230
ajs8b70d0b2005-04-28 01:31:13 +00001231 /* Check foreground timers. Historically, they have had higher
1232 priority than I/O threads, so let's push them onto the ready
1233 list in front of the I/O threads. */
Paul Jakmadb9c0df2006-08-27 06:44:02 +00001234 quagga_get_relative (NULL);
Christian Franke4becea72013-11-19 14:11:42 +00001235 thread_timer_process (m->timer, &relative_time);
paula48b4e62005-04-22 00:43:47 +00001236
1237 /* Got IO, process it */
1238 if (num > 0)
1239 {
Denil Vira4ab273b2016-03-04 15:28:54 -05001240 /* Normal priority read thread. */
1241 num = thread_process_fd (m->read, &readfd, &m->readfd, num, m->fd_limit);
1242 /* Write thread. */
1243 num = thread_process_fd (m->write, &writefd, &m->writefd, num, m->fd_limit);
paula48b4e62005-04-22 00:43:47 +00001244 }
ajs8b70d0b2005-04-28 01:31:13 +00001245
1246#if 0
1247 /* If any threads were made ready above (I/O or foreground timer),
1248 perhaps we should avoid adding background timers to the ready
1249 list at this time. If this is code is uncommented, then background
1250 timer threads will not run unless there is nothing else to do. */
1251 if ((thread = thread_trim_head (&m->ready)) != NULL)
1252 return thread_run (m, thread, fetch);
1253#endif
1254
paula48b4e62005-04-22 00:43:47 +00001255 /* Background timer/events, lowest priority */
Christian Franke4becea72013-11-19 14:11:42 +00001256 thread_timer_process (m->background, &relative_time);
paula48b4e62005-04-22 00:43:47 +00001257
ajs8b70d0b2005-04-28 01:31:13 +00001258 if ((thread = thread_trim_head (&m->ready)) != NULL)
paul05c447d2004-07-22 19:14:27 +00001259 return thread_run (m, thread, fetch);
paul718e3742002-12-13 20:15:29 +00001260 }
1261}
1262
ajs924b9222005-04-16 17:11:24 +00001263unsigned long
ajs8b70d0b2005-04-28 01:31:13 +00001264thread_consumed_time (RUSAGE_T *now, RUSAGE_T *start, unsigned long *cputime)
paul718e3742002-12-13 20:15:29 +00001265{
paul718e3742002-12-13 20:15:29 +00001266#ifdef HAVE_RUSAGE
1267 /* This is 'user + sys' time. */
ajs8b70d0b2005-04-28 01:31:13 +00001268 *cputime = timeval_elapsed (now->cpu.ru_utime, start->cpu.ru_utime) +
1269 timeval_elapsed (now->cpu.ru_stime, start->cpu.ru_stime);
paul718e3742002-12-13 20:15:29 +00001270#else
ajs8b70d0b2005-04-28 01:31:13 +00001271 *cputime = 0;
paul718e3742002-12-13 20:15:29 +00001272#endif /* HAVE_RUSAGE */
ajs8b70d0b2005-04-28 01:31:13 +00001273 return timeval_elapsed (now->real, start->real);
paul718e3742002-12-13 20:15:29 +00001274}
1275
ajs8b70d0b2005-04-28 01:31:13 +00001276/* We should aim to yield after THREAD_YIELD_TIME_SLOT milliseconds.
1277 Note: we are using real (wall clock) time for this calculation.
1278 It could be argued that CPU time may make more sense in certain
1279 contexts. The things to consider are whether the thread may have
1280 blocked (in which case wall time increases, but CPU time does not),
1281 or whether the system is heavily loaded with other processes competing
1282 for CPU time. On balance, wall clock time seems to make sense.
1283 Plus it has the added benefit that gettimeofday should be faster
1284 than calling getrusage. */
paul718e3742002-12-13 20:15:29 +00001285int
1286thread_should_yield (struct thread *thread)
1287{
Paul Jakmadb9c0df2006-08-27 06:44:02 +00001288 quagga_get_relative (NULL);
Jorge Boncompte [DTI2]41af3382012-05-07 16:53:12 +00001289 return (timeval_elapsed(relative_time, thread->real) >
ajs8b70d0b2005-04-28 01:31:13 +00001290 THREAD_YIELD_TIME_SLOT);
paul718e3742002-12-13 20:15:29 +00001291}
1292
Paul Jakmadb9c0df2006-08-27 06:44:02 +00001293void
1294thread_getrusage (RUSAGE_T *r)
1295{
1296 quagga_get_relative (NULL);
1297#ifdef HAVE_RUSAGE
1298 getrusage(RUSAGE_SELF, &(r->cpu));
1299#endif
1300 r->real = relative_time;
1301
1302#ifdef HAVE_CLOCK_MONOTONIC
1303 /* quagga_get_relative() only updates recent_time if gettimeofday
1304 * based, not when using CLOCK_MONOTONIC. As we export recent_time
1305 * and guarantee to update it before threads are run...
1306 */
1307 quagga_gettimeofday(&recent_time);
1308#endif /* HAVE_CLOCK_MONOTONIC */
1309}
1310
David Lamparter615f9f12013-11-18 23:52:02 +01001311struct thread *thread_current = NULL;
1312
paul718e3742002-12-13 20:15:29 +00001313/* We check thread consumed time. If the system has getrusage, we'll
ajs8b70d0b2005-04-28 01:31:13 +00001314 use that to get in-depth stats on the performance of the thread in addition
1315 to wall clock time stats from gettimeofday. */
paul718e3742002-12-13 20:15:29 +00001316void
1317thread_call (struct thread *thread)
1318{
ajs8b70d0b2005-04-28 01:31:13 +00001319 unsigned long realtime, cputime;
Jorge Boncompte [DTI2]41af3382012-05-07 16:53:12 +00001320 RUSAGE_T before, after;
Paul Jakmacc8b13a2006-07-25 20:40:40 +00001321
1322 /* Cache a pointer to the relevant cpu history thread, if the thread
1323 * does not have it yet.
1324 *
1325 * Callers submitting 'dummy threads' hence must take care that
1326 * thread->cpu is NULL
1327 */
1328 if (!thread->hist)
1329 {
1330 struct cpu_thread_history tmp;
1331
1332 tmp.func = thread->func;
David Lamparter3493b772013-11-18 23:04:27 +01001333 tmp.funcname = thread->funcname;
Paul Jakmacc8b13a2006-07-25 20:40:40 +00001334
1335 thread->hist = hash_get (cpu_record, &tmp,
1336 (void * (*) (void *))cpu_record_hash_alloc);
1337 }
paul718e3742002-12-13 20:15:29 +00001338
Jorge Boncompte [DTI2]41af3382012-05-07 16:53:12 +00001339 GETRUSAGE (&before);
1340 thread->real = before.real;
paul718e3742002-12-13 20:15:29 +00001341
David Lamparter615f9f12013-11-18 23:52:02 +01001342 thread_current = thread;
paul718e3742002-12-13 20:15:29 +00001343 (*thread->func) (thread);
David Lamparter615f9f12013-11-18 23:52:02 +01001344 thread_current = NULL;
paul718e3742002-12-13 20:15:29 +00001345
Jorge Boncompte [DTI2]41af3382012-05-07 16:53:12 +00001346 GETRUSAGE (&after);
paul718e3742002-12-13 20:15:29 +00001347
Jorge Boncompte [DTI2]41af3382012-05-07 16:53:12 +00001348 realtime = thread_consumed_time (&after, &before, &cputime);
Paul Jakmacc8b13a2006-07-25 20:40:40 +00001349 thread->hist->real.total += realtime;
1350 if (thread->hist->real.max < realtime)
1351 thread->hist->real.max = realtime;
ajs8b70d0b2005-04-28 01:31:13 +00001352#ifdef HAVE_RUSAGE
Paul Jakmacc8b13a2006-07-25 20:40:40 +00001353 thread->hist->cpu.total += cputime;
1354 if (thread->hist->cpu.max < cputime)
1355 thread->hist->cpu.max = cputime;
ajs8b70d0b2005-04-28 01:31:13 +00001356#endif
paule04ab742003-01-17 23:47:00 +00001357
Paul Jakmacc8b13a2006-07-25 20:40:40 +00001358 ++(thread->hist->total_calls);
1359 thread->hist->types |= (1 << thread->add_type);
paul718e3742002-12-13 20:15:29 +00001360
ajs924b9222005-04-16 17:11:24 +00001361#ifdef CONSUMED_TIME_CHECK
ajs8b70d0b2005-04-28 01:31:13 +00001362 if (realtime > CONSUMED_TIME_CHECK)
paul718e3742002-12-13 20:15:29 +00001363 {
1364 /*
1365 * We have a CPU Hog on our hands.
1366 * Whinge about it now, so we're aware this is yet another task
1367 * to fix.
1368 */
ajs8b70d0b2005-04-28 01:31:13 +00001369 zlog_warn ("SLOW THREAD: task %s (%lx) ran for %lums (cpu time %lums)",
ajs924b9222005-04-16 17:11:24 +00001370 thread->funcname,
1371 (unsigned long) thread->func,
ajs8b70d0b2005-04-28 01:31:13 +00001372 realtime/1000, cputime/1000);
paul718e3742002-12-13 20:15:29 +00001373 }
ajs924b9222005-04-16 17:11:24 +00001374#endif /* CONSUMED_TIME_CHECK */
paul718e3742002-12-13 20:15:29 +00001375}
1376
1377/* Execute thread */
1378struct thread *
paule04ab742003-01-17 23:47:00 +00001379funcname_thread_execute (struct thread_master *m,
paul718e3742002-12-13 20:15:29 +00001380 int (*func)(struct thread *),
1381 void *arg,
paule04ab742003-01-17 23:47:00 +00001382 int val,
David Lamparter3493b772013-11-18 23:04:27 +01001383 debugargdef)
paul718e3742002-12-13 20:15:29 +00001384{
1385 struct thread dummy;
1386
1387 memset (&dummy, 0, sizeof (struct thread));
1388
1389 dummy.type = THREAD_EVENT;
paule04ab742003-01-17 23:47:00 +00001390 dummy.add_type = THREAD_EXECUTE;
paul718e3742002-12-13 20:15:29 +00001391 dummy.master = NULL;
1392 dummy.func = func;
1393 dummy.arg = arg;
1394 dummy.u.val = val;
David Lamparter3493b772013-11-18 23:04:27 +01001395
1396 dummy.funcname = funcname;
1397 dummy.schedfrom = schedfrom;
1398 dummy.schedfrom_line = fromln;
1399
paul718e3742002-12-13 20:15:29 +00001400 thread_call (&dummy);
1401
paul718e3742002-12-13 20:15:29 +00001402 return NULL;
1403}