2 * Implements a producer thread to generate BGP keepalives for peers.
3 * Copyright (C) 2017 Cumulus Networks, Inc.
6 * This file is part of FRRouting.
8 * FRRouting is free software; you can redistribute it and/or modify it under
9 * the terms of the GNU General Public License as published by the Free
10 * Software Foundation; either version 2, or (at your option) any later
13 * FRRouting is distributed in the hope that it will be useful, but WITHOUT ANY
14 * WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
15 * FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
18 * You should have received a copy of the GNU General Public License along
19 * with this program; see the file COPYING; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
23 /* clang-format off */
25 #include <pthread.h> // for pthread_mutex_lock, pthread_mutex_unlock
27 #include "frr_pthread.h" // for frr_pthread
28 #include "hash.h" // for hash, hash_clean, hash_create_size...
29 #include "log.h" // for zlog_debug
30 #include "memory.h" // for MTYPE_TMP, XFREE, XCALLOC, XMALLOC
31 #include "monotime.h" // for monotime, monotime_since
33 #include "bgpd/bgpd.h" // for peer, PEER_THREAD_KEEPALIVES_ON, peer...
34 #include "bgpd/bgp_debug.h" // for bgp_debug_neighbor_events
35 #include "bgpd/bgp_packet.h" // for bgp_keepalive_send
36 #include "bgpd/bgp_keepalives.h"
40 * Peer KeepAlive Timer.
41 * Associates a peer with the time of its last keepalive.
44 /* the peer to send keepalives to */
46 /* absolute time of last keepalive sent */
50 /* List of peers we are sending keepalives for, and associated mutex. */
51 static pthread_mutex_t
*peerhash_mtx
;
52 static pthread_cond_t
*peerhash_cond
;
53 static struct hash
*peerhash
;
55 static struct pkat
*pkat_new(struct peer
*peer
)
57 struct pkat
*pkat
= XMALLOC(MTYPE_TMP
, sizeof(struct pkat
));
59 monotime(&pkat
->last
);
63 static void pkat_del(void *pkat
)
65 XFREE(MTYPE_TMP
, pkat
);
70 * Callback for hash_iterate. Determines if a peer needs a keepalive and if so,
71 * generates and sends it.
73 * For any given peer, if the elapsed time since its last keepalive exceeds its
74 * configured keepalive timer, a keepalive is sent to the peer and its
75 * last-sent time is reset. Additionally, If the elapsed time does not exceed
76 * the configured keepalive timer, but the time until the next keepalive is due
77 * is within a hardcoded tolerance, a keepalive is sent as if the configured
78 * timer was exceeded. Doing this helps alleviate nanosecond sleeps between
79 * ticks by grouping together peers who are due for keepalives at roughly the
80 * same time. This tolerance value is arbitrarily chosen to be 100ms.
82 * In addition, this function calculates the maximum amount of time that the
83 * keepalive thread can sleep before another tick needs to take place. This is
84 * equivalent to shortest time until a keepalive is due for any one peer.
86 * @return maximum time to wait until next update (0 if infinity)
88 static void peer_process(struct hash_bucket
*hb
, void *arg
)
90 struct pkat
*pkat
= hb
->data
;
92 struct timeval
*next_update
= arg
;
94 static struct timeval elapsed
; // elapsed time since keepalive
95 static struct timeval ka
= {0}; // peer->v_keepalive as a timeval
96 static struct timeval diff
; // ka - elapsed
98 static struct timeval tolerance
= {0, 100000};
100 /* calculate elapsed time since last keepalive */
101 monotime_since(&pkat
->last
, &elapsed
);
103 /* calculate difference between elapsed time and configured time */
104 ka
.tv_sec
= pkat
->peer
->v_keepalive
;
105 timersub(&ka
, &elapsed
, &diff
);
108 elapsed
.tv_sec
>= ka
.tv_sec
|| timercmp(&diff
, &tolerance
, <);
110 if (send_keepalive
) {
111 if (bgp_debug_neighbor_events(pkat
->peer
))
112 zlog_debug("%s [FSM] Timer (keepalive timer expire)",
115 bgp_keepalive_send(pkat
->peer
);
116 monotime(&pkat
->last
);
117 memset(&elapsed
, 0x00, sizeof(struct timeval
));
121 /* if calculated next update for this peer < current delay, use it */
122 if (next_update
->tv_sec
< 0 || timercmp(&diff
, next_update
, <))
126 static bool peer_hash_cmp(const void *f
, const void *s
)
128 const struct pkat
*p1
= f
;
129 const struct pkat
*p2
= s
;
131 return p1
->peer
== p2
->peer
;
134 static unsigned int peer_hash_key(const void *arg
)
136 const struct pkat
*pkat
= arg
;
137 return (uintptr_t)pkat
->peer
;
140 /* Cleanup handler / deinitializer. */
141 static void bgp_keepalives_finish(void *arg
)
144 hash_clean(peerhash
, pkat_del
);
150 pthread_mutex_unlock(peerhash_mtx
);
151 pthread_mutex_destroy(peerhash_mtx
);
152 pthread_cond_destroy(peerhash_cond
);
154 XFREE(MTYPE_TMP
, peerhash_mtx
);
155 XFREE(MTYPE_TMP
, peerhash_cond
);
159 * Entry function for peer keepalive generation pthread.
161 void *bgp_keepalives_start(void *arg
)
163 struct frr_pthread
*fpt
= arg
;
164 fpt
->master
->owner
= pthread_self();
166 struct timeval currtime
= {0, 0};
167 struct timeval aftertime
= {0, 0};
168 struct timeval next_update
= {0, 0};
169 struct timespec next_update_ts
= {0, 0};
171 peerhash_mtx
= XCALLOC(MTYPE_TMP
, sizeof(pthread_mutex_t
));
172 peerhash_cond
= XCALLOC(MTYPE_TMP
, sizeof(pthread_cond_t
));
174 /* initialize mutex */
175 pthread_mutex_init(peerhash_mtx
, NULL
);
177 /* use monotonic clock with condition variable */
178 pthread_condattr_t attrs
;
179 pthread_condattr_init(&attrs
);
180 pthread_condattr_setclock(&attrs
, CLOCK_MONOTONIC
);
181 pthread_cond_init(peerhash_cond
, &attrs
);
182 pthread_condattr_destroy(&attrs
);
185 * We are not using normal FRR pthread mechanics and are
188 frr_pthread_set_name(fpt
);
190 /* initialize peer hashtable */
191 peerhash
= hash_create_size(2048, peer_hash_key
, peer_hash_cmp
, NULL
);
192 pthread_mutex_lock(peerhash_mtx
);
194 /* register cleanup handler */
195 pthread_cleanup_push(&bgp_keepalives_finish
, NULL
);
197 /* notify anybody waiting on us that we are done starting up */
198 frr_pthread_notify_running(fpt
);
200 while (atomic_load_explicit(&fpt
->running
, memory_order_relaxed
)) {
201 if (peerhash
->count
> 0)
202 pthread_cond_timedwait(peerhash_cond
, peerhash_mtx
,
205 while (peerhash
->count
== 0
206 && atomic_load_explicit(&fpt
->running
,
207 memory_order_relaxed
))
208 pthread_cond_wait(peerhash_cond
, peerhash_mtx
);
212 next_update
.tv_sec
= -1;
214 hash_iterate(peerhash
, peer_process
, &next_update
);
215 if (next_update
.tv_sec
== -1)
216 memset(&next_update
, 0x00, sizeof(next_update
));
218 monotime_since(&currtime
, &aftertime
);
220 timeradd(&currtime
, &next_update
, &next_update
);
221 TIMEVAL_TO_TIMESPEC(&next_update
, &next_update_ts
);
225 pthread_cleanup_pop(1);
230 /* --- thread external functions ------------------------------------------- */
232 void bgp_keepalives_on(struct peer
*peer
)
234 if (CHECK_FLAG(peer
->thread_flags
, PEER_THREAD_KEEPALIVES_ON
))
237 struct frr_pthread
*fpt
= bgp_pth_ka
;
238 assert(fpt
->running
);
240 /* placeholder bucket data to use for fast key lookups */
241 static struct pkat holder
= {0};
244 * We need to ensure that bgp_keepalives_init was called first
246 assert(peerhash_mtx
);
248 pthread_mutex_lock(peerhash_mtx
);
251 if (!hash_lookup(peerhash
, &holder
)) {
252 struct pkat
*pkat
= pkat_new(peer
);
253 hash_get(peerhash
, pkat
, hash_alloc_intern
);
256 SET_FLAG(peer
->thread_flags
, PEER_THREAD_KEEPALIVES_ON
);
258 pthread_mutex_unlock(peerhash_mtx
);
259 bgp_keepalives_wake();
262 void bgp_keepalives_off(struct peer
*peer
)
264 if (!CHECK_FLAG(peer
->thread_flags
, PEER_THREAD_KEEPALIVES_ON
))
267 struct frr_pthread
*fpt
= bgp_pth_ka
;
268 assert(fpt
->running
);
270 /* placeholder bucket data to use for fast key lookups */
271 static struct pkat holder
= {0};
274 * We need to ensure that bgp_keepalives_init was called first
276 assert(peerhash_mtx
);
278 pthread_mutex_lock(peerhash_mtx
);
281 struct pkat
*res
= hash_release(peerhash
, &holder
);
286 UNSET_FLAG(peer
->thread_flags
, PEER_THREAD_KEEPALIVES_ON
);
288 pthread_mutex_unlock(peerhash_mtx
);
291 void bgp_keepalives_wake(void)
293 pthread_mutex_lock(peerhash_mtx
);
295 pthread_cond_signal(peerhash_cond
);
297 pthread_mutex_unlock(peerhash_mtx
);
300 int bgp_keepalives_stop(struct frr_pthread
*fpt
, void **result
)
302 assert(fpt
->running
);
304 atomic_store_explicit(&fpt
->running
, false, memory_order_relaxed
);
305 bgp_keepalives_wake();
307 pthread_join(fpt
->thread
, result
);