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1 /*
2 * Copyright (c) 2008, 2009, 2010, 2011 Nicira Networks.
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at:
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include <config.h>
18
19 #include "bond.h"
20
21 #include <limits.h>
22 #include <stdint.h>
23 #include <stdlib.h>
24
25 #include "coverage.h"
26 #include "dynamic-string.h"
27 #include "flow.h"
28 #include "hmap.h"
29 #include "list.h"
30 #include "netdev.h"
31 #include "odp-util.h"
32 #include "ofpbuf.h"
33 #include "packets.h"
34 #include "poll-loop.h"
35 #include "tag.h"
36 #include "timeval.h"
37 #include "unixctl.h"
38 #include "vlog.h"
39
40 VLOG_DEFINE_THIS_MODULE(bond);
41
42 /* Bit-mask for hashing a flow down to a bucket.
43 * There are (BOND_MASK + 1) buckets. */
44 #define BOND_MASK 0xff
45
46 /* A hash bucket for mapping a flow to a slave.
47 * "struct bond" has an array of (BOND_MASK + 1) of these. */
48 struct bond_entry {
49 struct bond_slave *slave; /* Assigned slave, NULL if unassigned. */
50 uint64_t tx_bytes; /* Count of bytes recently transmitted. */
51 tag_type tag; /* Tag for entry<->slave association. */
52 struct list list_node; /* In bond_slave's 'entries' list. */
53 };
54
55 /* A bond slave, that is, one of the links comprising a bond. */
56 struct bond_slave {
57 struct hmap_node hmap_node; /* In struct bond's slaves hmap. */
58 struct bond *bond; /* The bond that contains this slave. */
59 void *aux; /* Client-provided handle for this slave. */
60
61 struct netdev *netdev; /* Network device, owned by the client. */
62 unsigned int change_seq; /* Tracks changes in 'netdev'. */
63 char *name; /* Name (a copy of netdev_get_name(netdev)). */
64
65 /* Link status. */
66 long long delay_expires; /* Time after which 'enabled' may change. */
67 bool enabled; /* May be chosen for flows? */
68 bool may_enable; /* Client considers this slave bondable. */
69 tag_type tag; /* Tag associated with this slave. */
70
71 /* Rebalancing info. Used only by bond_rebalance(). */
72 struct list bal_node; /* In bond_rebalance()'s 'bals' list. */
73 struct list entries; /* 'struct bond_entry's assigned here. */
74 uint64_t tx_bytes; /* Sum across 'tx_bytes' of entries. */
75
76 /* BM_STABLE specific bonding info. */
77 uint32_t stb_id; /* ID used for 'stb_slaves' ordering. */
78 };
79
80 /* A bond, that is, a set of network devices grouped to improve performance or
81 * robustness. */
82 struct bond {
83 struct hmap_node hmap_node; /* In 'all_bonds' hmap. */
84 char *name; /* Name provided by client. */
85
86 /* Slaves. */
87 struct hmap slaves;
88
89 /* Bonding info. */
90 enum bond_mode balance; /* Balancing mode, one of BM_*. */
91 struct bond_slave *active_slave;
92 tag_type no_slaves_tag; /* Tag for flows when all slaves disabled. */
93 int updelay, downdelay; /* Delay before slave goes up/down, in ms. */
94 bool lacp_negotiated; /* LACP negotiations were successful. */
95 bool bond_revalidate; /* True if flows need revalidation. */
96 uint32_t basis; /* Basis for flow hash function. */
97
98 /* SLB specific bonding info. */
99 struct bond_entry *hash; /* An array of (BOND_MASK + 1) elements. */
100 int rebalance_interval; /* Interval between rebalances, in ms. */
101 long long int next_rebalance; /* Next rebalancing time. */
102 bool send_learning_packets;
103
104 /* BM_STABLE specific bonding info. */
105 tag_type stb_tag; /* Tag associated with this bond. */
106
107 /* Legacy compatibility. */
108 long long int next_fake_iface_update; /* LLONG_MAX if disabled. */
109
110 /* Tag set saved for next bond_run(). This tag set is a kluge for cases
111 * where we can't otherwise provide revalidation feedback to the client.
112 * That's only unixctl commands now; I hope no other cases will arise. */
113 struct tag_set unixctl_tags;
114 };
115
116 static struct hmap all_bonds = HMAP_INITIALIZER(&all_bonds);
117
118 static void bond_entry_reset(struct bond *);
119 static struct bond_slave *bond_slave_lookup(struct bond *, const void *slave_);
120 static void bond_enable_slave(struct bond_slave *, bool enable,
121 struct tag_set *);
122 static void bond_link_status_update(struct bond_slave *, struct tag_set *);
123 static void bond_choose_active_slave(struct bond *, struct tag_set *);
124 static bool bond_is_tcp_hash(const struct bond *);
125 static unsigned int bond_hash_src(const uint8_t mac[ETH_ADDR_LEN],
126 uint16_t vlan, uint32_t basis);
127 static unsigned int bond_hash_tcp(const struct flow *, uint16_t vlan,
128 uint32_t basis);
129 static struct bond_entry *lookup_bond_entry(const struct bond *,
130 const struct flow *,
131 uint16_t vlan);
132 static tag_type bond_get_active_slave_tag(const struct bond *);
133 static struct bond_slave *choose_output_slave(const struct bond *,
134 const struct flow *,
135 uint16_t vlan);
136 static void bond_update_fake_slave_stats(struct bond *);
137
138 /* Attempts to parse 's' as the name of a bond balancing mode. If successful,
139 * stores the mode in '*balance' and returns true. Otherwise returns false
140 * without modifying '*balance'. */
141 bool
142 bond_mode_from_string(enum bond_mode *balance, const char *s)
143 {
144 if (!strcmp(s, bond_mode_to_string(BM_TCP))) {
145 *balance = BM_TCP;
146 } else if (!strcmp(s, bond_mode_to_string(BM_SLB))) {
147 *balance = BM_SLB;
148 } else if (!strcmp(s, bond_mode_to_string(BM_STABLE))) {
149 *balance = BM_STABLE;
150 } else if (!strcmp(s, bond_mode_to_string(BM_AB))) {
151 *balance = BM_AB;
152 } else {
153 return false;
154 }
155 return true;
156 }
157
158 /* Returns a string representing 'balance'. */
159 const char *
160 bond_mode_to_string(enum bond_mode balance) {
161 switch (balance) {
162 case BM_TCP:
163 return "balance-tcp";
164 case BM_SLB:
165 return "balance-slb";
166 case BM_STABLE:
167 return "stable";
168 case BM_AB:
169 return "active-backup";
170 }
171 NOT_REACHED();
172 }
173
174 \f
175 /* Creates and returns a new bond whose configuration is initially taken from
176 * 's'.
177 *
178 * The caller should register each slave on the new bond by calling
179 * bond_slave_register(). */
180 struct bond *
181 bond_create(const struct bond_settings *s)
182 {
183 struct bond *bond;
184
185 bond = xzalloc(sizeof *bond);
186 hmap_init(&bond->slaves);
187 bond->no_slaves_tag = tag_create_random();
188 bond->stb_tag = tag_create_random();
189 bond->next_fake_iface_update = LLONG_MAX;
190
191 bond_reconfigure(bond, s);
192
193 tag_set_init(&bond->unixctl_tags);
194
195 return bond;
196 }
197
198 /* Frees 'bond'. */
199 void
200 bond_destroy(struct bond *bond)
201 {
202 struct bond_slave *slave, *next_slave;
203
204 if (!bond) {
205 return;
206 }
207
208 hmap_remove(&all_bonds, &bond->hmap_node);
209
210 HMAP_FOR_EACH_SAFE (slave, next_slave, hmap_node, &bond->slaves) {
211 hmap_remove(&bond->slaves, &slave->hmap_node);
212 /* Client owns 'slave->netdev'. */
213 free(slave->name);
214 free(slave);
215 }
216 hmap_destroy(&bond->slaves);
217
218 free(bond->hash);
219 free(bond->name);
220 free(bond);
221 }
222
223 /* Updates 'bond''s overall configuration to 's'.
224 *
225 * The caller should register each slave on 'bond' by calling
226 * bond_slave_register(). This is optional if none of the slaves'
227 * configuration has changed. In any case it can't hurt.
228 *
229 * Returns true if the configuration has changed in such a way that requires
230 * flow revalidation.
231 * */
232 bool
233 bond_reconfigure(struct bond *bond, const struct bond_settings *s)
234 {
235 bool revalidate = false;
236
237 if (!bond->name || strcmp(bond->name, s->name)) {
238 if (bond->name) {
239 hmap_remove(&all_bonds, &bond->hmap_node);
240 free(bond->name);
241 }
242 bond->name = xstrdup(s->name);
243 hmap_insert(&all_bonds, &bond->hmap_node, hash_string(bond->name, 0));
244 }
245
246 bond->updelay = s->up_delay;
247 bond->downdelay = s->down_delay;
248 bond->rebalance_interval = s->rebalance_interval;
249
250 if (bond->balance != s->balance) {
251 bond->balance = s->balance;
252 revalidate = true;
253 }
254
255 if (bond->basis != s->basis) {
256 bond->basis = s->basis;
257 revalidate = true;
258 }
259
260 if (s->fake_iface) {
261 if (bond->next_fake_iface_update == LLONG_MAX) {
262 bond->next_fake_iface_update = time_msec();
263 }
264 } else {
265 bond->next_fake_iface_update = LLONG_MAX;
266 }
267
268 if (bond->bond_revalidate) {
269 revalidate = true;
270 bond->bond_revalidate = false;
271 }
272
273 if (bond->balance == BM_AB || !bond->hash || revalidate) {
274 bond_entry_reset(bond);
275 }
276
277 return revalidate;
278 }
279
280 static void
281 bond_slave_set_netdev__(struct bond_slave *slave, struct netdev *netdev)
282 {
283 if (slave->netdev != netdev) {
284 slave->netdev = netdev;
285 slave->change_seq = 0;
286 }
287 }
288
289 /* Registers 'slave_' as a slave of 'bond'. The 'slave_' pointer is an
290 * arbitrary client-provided pointer that uniquely identifies a slave within a
291 * bond. If 'slave_' already exists within 'bond' then this function
292 * reconfigures the existing slave.
293 *
294 * 'stb_id' is used in BM_STABLE bonds to guarantee consistent slave choices
295 * across restarts and distributed vswitch instances. It should be unique per
296 * slave, and preferably consistent across restarts and reconfigurations.
297 *
298 * 'netdev' must be the network device that 'slave_' represents. It is owned
299 * by the client, so the client must not close it before either unregistering
300 * 'slave_' or destroying 'bond'.
301 */
302 void
303 bond_slave_register(struct bond *bond, void *slave_, uint32_t stb_id,
304 struct netdev *netdev)
305 {
306 struct bond_slave *slave = bond_slave_lookup(bond, slave_);
307
308 if (!slave) {
309 slave = xzalloc(sizeof *slave);
310
311 hmap_insert(&bond->slaves, &slave->hmap_node, hash_pointer(slave_, 0));
312 slave->bond = bond;
313 slave->aux = slave_;
314 slave->delay_expires = LLONG_MAX;
315 slave->name = xstrdup(netdev_get_name(netdev));
316 bond->bond_revalidate = true;
317
318 slave->enabled = false;
319 bond_enable_slave(slave, netdev_get_carrier(netdev), NULL);
320 }
321
322 if (slave->stb_id != stb_id) {
323 slave->stb_id = stb_id;
324 bond->bond_revalidate = true;
325 }
326
327 bond_slave_set_netdev__(slave, netdev);
328
329 free(slave->name);
330 slave->name = xstrdup(netdev_get_name(netdev));
331 }
332
333 /* Updates the network device to be used with 'slave_' to 'netdev'.
334 *
335 * This is useful if the caller closes and re-opens the network device
336 * registered with bond_slave_register() but doesn't need to change anything
337 * else. */
338 void
339 bond_slave_set_netdev(struct bond *bond, void *slave_, struct netdev *netdev)
340 {
341 struct bond_slave *slave = bond_slave_lookup(bond, slave_);
342 if (slave) {
343 bond_slave_set_netdev__(slave, netdev);
344 }
345 }
346
347 /* Unregisters 'slave_' from 'bond'. If 'bond' does not contain such a slave
348 * then this function has no effect.
349 *
350 * Unregistering a slave invalidates all flows. */
351 void
352 bond_slave_unregister(struct bond *bond, const void *slave_)
353 {
354 struct bond_slave *slave = bond_slave_lookup(bond, slave_);
355 bool del_active;
356
357 if (!slave) {
358 return;
359 }
360
361 bond_enable_slave(slave, false, NULL);
362
363 del_active = bond->active_slave == slave;
364 if (bond->hash) {
365 struct bond_entry *e;
366 for (e = bond->hash; e <= &bond->hash[BOND_MASK]; e++) {
367 if (e->slave == slave) {
368 e->slave = NULL;
369 }
370 }
371 }
372
373 free(slave->name);
374
375 hmap_remove(&bond->slaves, &slave->hmap_node);
376 /* Client owns 'slave->netdev'. */
377 free(slave);
378
379 if (del_active) {
380 struct tag_set tags;
381
382 tag_set_init(&tags);
383 bond_choose_active_slave(bond, &tags);
384 bond->send_learning_packets = true;
385 }
386 }
387
388 /* Should be called on each slave in 'bond' before bond_run() to indicate
389 * whether or not 'slave_' may be enabled. This function is intended to allow
390 * other protocols to have some impact on bonding decisions. For example LACP
391 * or high level link monitoring protocols may decide that a given slave should
392 * not be able to send traffic. */
393 void
394 bond_slave_set_may_enable(struct bond *bond, void *slave_, bool may_enable)
395 {
396 bond_slave_lookup(bond, slave_)->may_enable = may_enable;
397 }
398
399 /* Performs periodic maintenance on 'bond'. The caller must provide 'tags' to
400 * allow tagged flows to be invalidated.
401 *
402 * The caller should check bond_should_send_learning_packets() afterward. */
403 void
404 bond_run(struct bond *bond, struct tag_set *tags, bool lacp_negotiated)
405 {
406 struct bond_slave *slave;
407 bool is_tcp_hash = bond_is_tcp_hash(bond);
408
409 bond->lacp_negotiated = lacp_negotiated;
410
411 /* Enable slaves based on link status and LACP feedback. */
412 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
413 bond_link_status_update(slave, tags);
414 slave->change_seq = netdev_change_seq(slave->netdev);
415 }
416 if (!bond->active_slave || !bond->active_slave->enabled) {
417 bond_choose_active_slave(bond, tags);
418 }
419
420 /* Update fake bond interface stats. */
421 if (time_msec() >= bond->next_fake_iface_update) {
422 bond_update_fake_slave_stats(bond);
423 bond->next_fake_iface_update = time_msec() + 1000;
424 }
425
426 if (is_tcp_hash != bond_is_tcp_hash(bond)) {
427 bond->bond_revalidate = true;
428 }
429
430 if (bond->bond_revalidate) {
431 bond->bond_revalidate = false;
432
433 bond_entry_reset(bond);
434 if (bond->balance != BM_STABLE) {
435 struct bond_slave *slave;
436
437 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
438 tag_set_add(tags, slave->tag);
439 }
440 } else {
441 tag_set_add(tags, bond->stb_tag);
442 }
443 tag_set_add(tags, bond->no_slaves_tag);
444 }
445
446 /* Invalidate any tags required by */
447 tag_set_union(tags, &bond->unixctl_tags);
448 tag_set_init(&bond->unixctl_tags);
449 }
450
451 /* Causes poll_block() to wake up when 'bond' needs something to be done. */
452 void
453 bond_wait(struct bond *bond)
454 {
455 struct bond_slave *slave;
456
457 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
458 if (slave->delay_expires != LLONG_MAX) {
459 poll_timer_wait_until(slave->delay_expires);
460 }
461
462 if (slave->change_seq != netdev_change_seq(slave->netdev)) {
463 poll_immediate_wake();
464 }
465 }
466
467 if (bond->next_fake_iface_update != LLONG_MAX) {
468 poll_timer_wait_until(bond->next_fake_iface_update);
469 }
470
471 /* Ensure that any saved tags get revalidated right away. */
472 if (!tag_set_is_empty(&bond->unixctl_tags)) {
473 poll_immediate_wake();
474 }
475
476 /* We don't wait for bond->next_rebalance because rebalancing can only run
477 * at a flow account checkpoint. ofproto does checkpointing on its own
478 * schedule and bond_rebalance() gets called afterward, so we'd just be
479 * waking up for no purpose. */
480 }
481 \f
482 /* MAC learning table interaction. */
483
484 static bool
485 may_send_learning_packets(const struct bond *bond)
486 {
487 return !bond->lacp_negotiated && bond->balance != BM_AB;
488 }
489
490 /* Returns true if 'bond' needs the client to send out packets to assist with
491 * MAC learning on 'bond'. If this function returns true, then the client
492 * should iterate through its MAC learning table for the bridge on which 'bond'
493 * is located. For each MAC that has been learned on a port other than 'bond',
494 * it should call bond_send_learning_packet().
495 *
496 * This function will only return true if 'bond' is in SLB mode and LACP is not
497 * negotiated. Otherwise sending learning packets isn't necessary.
498 *
499 * Calling this function resets the state that it checks. */
500 bool
501 bond_should_send_learning_packets(struct bond *bond)
502 {
503 bool send = bond->send_learning_packets && may_send_learning_packets(bond);
504 bond->send_learning_packets = false;
505 return send;
506 }
507
508 /* Sends a gratuitous learning packet on 'bond' from 'eth_src' on 'vlan'.
509 *
510 * See bond_should_send_learning_packets() for description of usage. */
511 int
512 bond_send_learning_packet(struct bond *bond,
513 const uint8_t eth_src[ETH_ADDR_LEN],
514 uint16_t vlan)
515 {
516 struct bond_slave *slave;
517 struct ofpbuf packet;
518 struct flow flow;
519 int error;
520
521 assert(may_send_learning_packets(bond));
522 if (!bond->active_slave) {
523 /* Nowhere to send the learning packet. */
524 return 0;
525 }
526
527 memset(&flow, 0, sizeof flow);
528 memcpy(flow.dl_src, eth_src, ETH_ADDR_LEN);
529 slave = choose_output_slave(bond, &flow, vlan);
530
531 ofpbuf_init(&packet, 0);
532 compose_benign_packet(&packet, "Open vSwitch Bond Failover", 0xf177,
533 eth_src);
534 if (vlan) {
535 eth_set_vlan_tci(&packet, htons(vlan));
536 }
537 error = netdev_send(slave->netdev, &packet);
538 ofpbuf_uninit(&packet);
539
540 return error;
541 }
542 \f
543 /* Checks whether a packet that arrived on 'slave_' within 'bond', with an
544 * Ethernet destination address of 'eth_dst', should be admitted.
545 *
546 * The return value is one of the following:
547 *
548 * - BV_ACCEPT: Admit the packet.
549 *
550 * - BV_DROP: Drop the packet.
551 *
552 * - BV_DROP_IF_MOVED: Consult the MAC learning table for the packet's
553 * Ethernet source address and VLAN. If there is none, or if the packet
554 * is on the learned port, then admit the packet. If a different port has
555 * been learned, however, drop the packet (and do not use it for MAC
556 * learning).
557 */
558 enum bond_verdict
559 bond_check_admissibility(struct bond *bond, const void *slave_,
560 const uint8_t eth_dst[ETH_ADDR_LEN], tag_type *tags)
561 {
562 struct bond_slave *slave = bond_slave_lookup(bond, slave_);
563
564 /* LACP bonds have very loose admissibility restrictions because we can
565 * assume the remote switch is aware of the bond and will "do the right
566 * thing". However, as a precaution we drop packets on disabled slaves
567 * because no correctly implemented partner switch should be sending
568 * packets to them. */
569 if (bond->lacp_negotiated) {
570 return slave->enabled ? BV_ACCEPT : BV_DROP;
571 }
572
573 /* Drop all multicast packets on inactive slaves. */
574 if (eth_addr_is_multicast(eth_dst)) {
575 *tags |= bond_get_active_slave_tag(bond);
576 if (bond->active_slave != bond_slave_lookup(bond, slave_)) {
577 return BV_DROP;
578 }
579 }
580
581 /* Drop all packets which arrive on backup slaves. This is similar to how
582 * Linux bonding handles active-backup bonds. */
583 if (bond->balance == BM_AB) {
584 *tags |= bond_get_active_slave_tag(bond);
585 if (bond->active_slave != slave) {
586 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
587
588 VLOG_WARN_RL(&rl, "active-backup bond received packet on backup"
589 " slave (%s) destined for " ETH_ADDR_FMT,
590 slave->name, ETH_ADDR_ARGS(eth_dst));
591 return BV_DROP;
592 }
593 }
594
595 /* Drop all packets for which we have learned a different input port,
596 * because we probably sent the packet on one slave and got it back on the
597 * other. Gratuitous ARP packets are an exception to this rule: the host
598 * has moved to another switch. The exception to the exception is if we
599 * locked the learning table to avoid reflections on bond slaves. */
600 return BV_DROP_IF_MOVED;
601 }
602
603 /* Returns the slave (registered on 'bond' by bond_slave_register()) to which
604 * a packet with the given 'flow' and 'vlan' should be forwarded. Returns
605 * NULL if the packet should be dropped because no slaves are enabled.
606 *
607 * 'vlan' is not necessarily the same as 'flow->vlan_tci'. First, 'vlan'
608 * should be a VID only (i.e. excluding the PCP bits). Second,
609 * 'flow->vlan_tci' is the VLAN TCI that appeared on the packet (so it will be
610 * nonzero only for trunk ports), whereas 'vlan' is the logical VLAN that the
611 * packet belongs to (so for an access port it will be the access port's VLAN).
612 *
613 * Adds a tag to '*tags' that associates the flow with the returned slave.
614 */
615 void *
616 bond_choose_output_slave(struct bond *bond, const struct flow *flow,
617 uint16_t vlan, tag_type *tags)
618 {
619 struct bond_slave *slave = choose_output_slave(bond, flow, vlan);
620 if (slave) {
621 *tags |= bond->balance == BM_STABLE ? bond->stb_tag : slave->tag;
622 return slave->aux;
623 } else {
624 *tags |= bond->no_slaves_tag;
625 return NULL;
626 }
627 }
628 \f
629 /* Rebalancing. */
630
631 static bool
632 bond_is_balanced(const struct bond *bond)
633 {
634 return bond->balance == BM_SLB || bond->balance == BM_TCP;
635 }
636
637 /* Notifies 'bond' that 'n_bytes' bytes were sent in 'flow' within 'vlan'. */
638 void
639 bond_account(struct bond *bond, const struct flow *flow, uint16_t vlan,
640 uint64_t n_bytes)
641 {
642
643 if (bond_is_balanced(bond)) {
644 lookup_bond_entry(bond, flow, vlan)->tx_bytes += n_bytes;
645 }
646 }
647
648 static struct bond_slave *
649 bond_slave_from_bal_node(struct list *bal)
650 {
651 return CONTAINER_OF(bal, struct bond_slave, bal_node);
652 }
653
654 static void
655 log_bals(struct bond *bond, const struct list *bals)
656 {
657 if (VLOG_IS_DBG_ENABLED()) {
658 struct ds ds = DS_EMPTY_INITIALIZER;
659 const struct bond_slave *slave;
660
661 LIST_FOR_EACH (slave, bal_node, bals) {
662 if (ds.length) {
663 ds_put_char(&ds, ',');
664 }
665 ds_put_format(&ds, " %s %"PRIu64"kB",
666 slave->name, slave->tx_bytes / 1024);
667
668 if (!slave->enabled) {
669 ds_put_cstr(&ds, " (disabled)");
670 }
671 if (!list_is_empty(&slave->entries)) {
672 struct bond_entry *e;
673
674 ds_put_cstr(&ds, " (");
675 LIST_FOR_EACH (e, list_node, &slave->entries) {
676 if (&e->list_node != list_front(&slave->entries)) {
677 ds_put_cstr(&ds, " + ");
678 }
679 ds_put_format(&ds, "h%td: %"PRIu64"kB",
680 e - bond->hash, e->tx_bytes / 1024);
681 }
682 ds_put_cstr(&ds, ")");
683 }
684 }
685 VLOG_DBG("bond %s:%s", bond->name, ds_cstr(&ds));
686 ds_destroy(&ds);
687 }
688 }
689
690 /* Shifts 'hash' from its current slave to 'to'. */
691 static void
692 bond_shift_load(struct bond_entry *hash, struct bond_slave *to,
693 struct tag_set *set)
694 {
695 struct bond_slave *from = hash->slave;
696 struct bond *bond = from->bond;
697 uint64_t delta = hash->tx_bytes;
698
699 VLOG_INFO("bond %s: shift %"PRIu64"kB of load (with hash %td) "
700 "from %s to %s (now carrying %"PRIu64"kB and "
701 "%"PRIu64"kB load, respectively)",
702 bond->name, delta / 1024, hash - bond->hash,
703 from->name, to->name,
704 (from->tx_bytes - delta) / 1024,
705 (to->tx_bytes + delta) / 1024);
706
707 /* Shift load away from 'from' to 'to'. */
708 from->tx_bytes -= delta;
709 to->tx_bytes += delta;
710
711 /* Arrange for flows to be revalidated. */
712 tag_set_add(set, hash->tag);
713 hash->slave = to;
714 hash->tag = tag_create_random();
715 }
716
717 /* Pick and returns a bond_entry to migrate to 'to' (the least-loaded slave),
718 * given that doing so must decrease the ratio of the load on the two slaves by
719 * at least 0.1. Returns NULL if there is no appropriate entry.
720 *
721 * The list of entries isn't sorted. I don't know of a reason to prefer to
722 * shift away small hashes or large hashes. */
723 static struct bond_entry *
724 choose_entry_to_migrate(const struct bond_slave *from, uint64_t to_tx_bytes)
725 {
726 struct bond_entry *e;
727
728 if (list_is_short(&from->entries)) {
729 /* 'from' carries no more than one MAC hash, so shifting load away from
730 * it would be pointless. */
731 return NULL;
732 }
733
734 LIST_FOR_EACH (e, list_node, &from->entries) {
735 double old_ratio, new_ratio;
736 uint64_t delta;
737
738 if (to_tx_bytes == 0) {
739 /* Nothing on the new slave, move it. */
740 return e;
741 }
742
743 delta = e->tx_bytes;
744 old_ratio = (double)from->tx_bytes / to_tx_bytes;
745 new_ratio = (double)(from->tx_bytes - delta) / (to_tx_bytes + delta);
746 if (old_ratio - new_ratio > 0.1) {
747 /* Would decrease the ratio, move it. */
748 return e;
749 }
750 }
751
752 return NULL;
753 }
754
755 /* Inserts 'slave' into 'bals' so that descending order of 'tx_bytes' is
756 * maintained. */
757 static void
758 insert_bal(struct list *bals, struct bond_slave *slave)
759 {
760 struct bond_slave *pos;
761
762 LIST_FOR_EACH (pos, bal_node, bals) {
763 if (slave->tx_bytes > pos->tx_bytes) {
764 break;
765 }
766 }
767 list_insert(&pos->bal_node, &slave->bal_node);
768 }
769
770 /* Removes 'slave' from its current list and then inserts it into 'bals' so
771 * that descending order of 'tx_bytes' is maintained. */
772 static void
773 reinsert_bal(struct list *bals, struct bond_slave *slave)
774 {
775 list_remove(&slave->bal_node);
776 insert_bal(bals, slave);
777 }
778
779 /* If 'bond' needs rebalancing, does so.
780 *
781 * The caller should have called bond_account() for each active flow, to ensure
782 * that flow data is consistently accounted at this point. */
783 void
784 bond_rebalance(struct bond *bond, struct tag_set *tags)
785 {
786 struct bond_slave *slave;
787 struct bond_entry *e;
788 struct list bals;
789
790 if (!bond_is_balanced(bond) || time_msec() < bond->next_rebalance) {
791 return;
792 }
793 bond->next_rebalance = time_msec() + bond->rebalance_interval;
794
795 /* Add each bond_entry to its slave's 'entries' list.
796 * Compute each slave's tx_bytes as the sum of its entries' tx_bytes. */
797 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
798 slave->tx_bytes = 0;
799 list_init(&slave->entries);
800 }
801 for (e = &bond->hash[0]; e <= &bond->hash[BOND_MASK]; e++) {
802 if (e->slave && e->tx_bytes) {
803 e->slave->tx_bytes += e->tx_bytes;
804 list_push_back(&e->slave->entries, &e->list_node);
805 }
806 }
807
808 /* Add enabled slaves to 'bals' in descending order of tx_bytes.
809 *
810 * XXX This is O(n**2) in the number of slaves but it could be O(n lg n)
811 * with a proper list sort algorithm. */
812 list_init(&bals);
813 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
814 if (slave->enabled) {
815 insert_bal(&bals, slave);
816 }
817 }
818 log_bals(bond, &bals);
819
820 /* Shift load from the most-loaded slaves to the least-loaded slaves. */
821 while (!list_is_short(&bals)) {
822 struct bond_slave *from = bond_slave_from_bal_node(list_front(&bals));
823 struct bond_slave *to = bond_slave_from_bal_node(list_back(&bals));
824 uint64_t overload;
825
826 overload = from->tx_bytes - to->tx_bytes;
827 if (overload < to->tx_bytes >> 5 || overload < 100000) {
828 /* The extra load on 'from' (and all less-loaded slaves), compared
829 * to that of 'to' (the least-loaded slave), is less than ~3%, or
830 * it is less than ~1Mbps. No point in rebalancing. */
831 break;
832 }
833
834 /* 'from' is carrying significantly more load than 'to', and that load
835 * is split across at least two different hashes. */
836 e = choose_entry_to_migrate(from, to->tx_bytes);
837 if (e) {
838 bond_shift_load(e, to, tags);
839
840 /* Delete element from from->entries.
841 *
842 * We don't add the element to to->hashes. That would only allow
843 * 'e' to be migrated to another slave in this rebalancing run, and
844 * there is no point in doing that. */
845 list_remove(&e->list_node);
846
847 /* Re-sort 'bals'. */
848 reinsert_bal(&bals, from);
849 reinsert_bal(&bals, to);
850 } else {
851 /* Can't usefully migrate anything away from 'from'.
852 * Don't reconsider it. */
853 list_remove(&from->bal_node);
854 }
855 }
856
857 /* Implement exponentially weighted moving average. A weight of 1/2 causes
858 * historical data to decay to <1% in 7 rebalancing runs. 1,000,000 bytes
859 * take 20 rebalancing runs to decay to 0 and get deleted entirely. */
860 for (e = &bond->hash[0]; e <= &bond->hash[BOND_MASK]; e++) {
861 e->tx_bytes /= 2;
862 if (!e->tx_bytes) {
863 e->slave = NULL;
864 }
865 }
866 }
867 \f
868 /* Bonding unixctl user interface functions. */
869
870 static struct bond *
871 bond_find(const char *name)
872 {
873 struct bond *bond;
874
875 HMAP_FOR_EACH_WITH_HASH (bond, hmap_node, hash_string(name, 0),
876 &all_bonds) {
877 if (!strcmp(bond->name, name)) {
878 return bond;
879 }
880 }
881 return NULL;
882 }
883
884 static struct bond_slave *
885 bond_lookup_slave(struct bond *bond, const char *slave_name)
886 {
887 struct bond_slave *slave;
888
889 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
890 if (!strcmp(slave->name, slave_name)) {
891 return slave;
892 }
893 }
894 return NULL;
895 }
896
897 static void
898 bond_unixctl_list(struct unixctl_conn *conn,
899 const char *args OVS_UNUSED, void *aux OVS_UNUSED)
900 {
901 struct ds ds = DS_EMPTY_INITIALIZER;
902 const struct bond *bond;
903
904 ds_put_cstr(&ds, "bond\ttype\tslaves\n");
905
906 HMAP_FOR_EACH (bond, hmap_node, &all_bonds) {
907 const struct bond_slave *slave;
908 size_t i;
909
910 ds_put_format(&ds, "%s\t%s\t",
911 bond->name, bond_mode_to_string(bond->balance));
912
913 i = 0;
914 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
915 if (i++ > 0) {
916 ds_put_cstr(&ds, ", ");
917 }
918 ds_put_cstr(&ds, slave->name);
919 }
920 ds_put_char(&ds, '\n');
921 }
922 unixctl_command_reply(conn, 200, ds_cstr(&ds));
923 ds_destroy(&ds);
924 }
925
926 static void
927 bond_unixctl_show(struct unixctl_conn *conn,
928 const char *args, void *aux OVS_UNUSED)
929 {
930 struct ds ds = DS_EMPTY_INITIALIZER;
931 const struct bond_slave *slave;
932 const struct bond *bond;
933
934 bond = bond_find(args);
935 if (!bond) {
936 unixctl_command_reply(conn, 501, "no such bond");
937 return;
938 }
939
940 ds_put_format(&ds, "bond_mode: %s\n",
941 bond_mode_to_string(bond->balance));
942
943 if (bond->balance != BM_AB) {
944 ds_put_format(&ds, "bond-hash-algorithm: %s\n",
945 bond_is_tcp_hash(bond) ? "balance-tcp" : "balance-slb");
946 }
947
948 ds_put_format(&ds, "bond-hash-basis: %"PRIu32"\n", bond->basis);
949
950 ds_put_format(&ds, "updelay: %d ms\n", bond->updelay);
951 ds_put_format(&ds, "downdelay: %d ms\n", bond->downdelay);
952
953 if (bond_is_balanced(bond)) {
954 ds_put_format(&ds, "next rebalance: %lld ms\n",
955 bond->next_rebalance - time_msec());
956 }
957
958 ds_put_format(&ds, "lacp_negotiated: %s\n",
959 bond->lacp_negotiated ? "true" : "false");
960
961 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
962 struct bond_entry *be;
963
964 /* Basic info. */
965 ds_put_format(&ds, "\nslave %s: %s\n",
966 slave->name, slave->enabled ? "enabled" : "disabled");
967 if (slave == bond->active_slave) {
968 ds_put_cstr(&ds, "\tactive slave\n");
969 }
970 if (slave->delay_expires != LLONG_MAX) {
971 ds_put_format(&ds, "\t%s expires in %lld ms\n",
972 slave->enabled ? "downdelay" : "updelay",
973 slave->delay_expires - time_msec());
974 }
975
976 ds_put_format(&ds, "\tmay_enable: %s\n",
977 slave->may_enable ? "true" : "false");
978
979 if (!bond_is_balanced(bond)) {
980 continue;
981 }
982
983 /* Hashes. */
984 for (be = bond->hash; be <= &bond->hash[BOND_MASK]; be++) {
985 int hash = be - bond->hash;
986
987 if (be->slave != slave) {
988 continue;
989 }
990
991 ds_put_format(&ds, "\thash %d: %"PRIu64" kB load\n",
992 hash, be->tx_bytes / 1024);
993
994 if (bond->balance != BM_SLB) {
995 continue;
996 }
997
998 /* XXX How can we list the MACs assigned to hashes? */
999 }
1000 }
1001 unixctl_command_reply(conn, 200, ds_cstr(&ds));
1002 ds_destroy(&ds);
1003 }
1004
1005 static void
1006 bond_unixctl_migrate(struct unixctl_conn *conn, const char *args_,
1007 void *aux OVS_UNUSED)
1008 {
1009 char *args = (char *) args_;
1010 char *save_ptr = NULL;
1011 char *bond_s, *hash_s, *slave_s;
1012 struct bond *bond;
1013 struct bond_slave *slave;
1014 struct bond_entry *entry;
1015 int hash;
1016
1017 bond_s = strtok_r(args, " ", &save_ptr);
1018 hash_s = strtok_r(NULL, " ", &save_ptr);
1019 slave_s = strtok_r(NULL, " ", &save_ptr);
1020 if (!slave_s) {
1021 unixctl_command_reply(conn, 501,
1022 "usage: bond/migrate BOND HASH SLAVE");
1023 return;
1024 }
1025
1026 bond = bond_find(bond_s);
1027 if (!bond) {
1028 unixctl_command_reply(conn, 501, "no such bond");
1029 return;
1030 }
1031
1032 if (bond->balance != BM_SLB) {
1033 unixctl_command_reply(conn, 501, "not an SLB bond");
1034 return;
1035 }
1036
1037 if (strspn(hash_s, "0123456789") == strlen(hash_s)) {
1038 hash = atoi(hash_s) & BOND_MASK;
1039 } else {
1040 unixctl_command_reply(conn, 501, "bad hash");
1041 return;
1042 }
1043
1044 slave = bond_lookup_slave(bond, slave_s);
1045 if (!slave) {
1046 unixctl_command_reply(conn, 501, "no such slave");
1047 return;
1048 }
1049
1050 if (!slave->enabled) {
1051 unixctl_command_reply(conn, 501, "cannot migrate to disabled slave");
1052 return;
1053 }
1054
1055 entry = &bond->hash[hash];
1056 tag_set_add(&bond->unixctl_tags, entry->tag);
1057 entry->slave = slave;
1058 entry->tag = tag_create_random();
1059 unixctl_command_reply(conn, 200, "migrated");
1060 }
1061
1062 static void
1063 bond_unixctl_set_active_slave(struct unixctl_conn *conn, const char *args_,
1064 void *aux OVS_UNUSED)
1065 {
1066 char *args = (char *) args_;
1067 char *save_ptr = NULL;
1068 char *bond_s, *slave_s;
1069 struct bond *bond;
1070 struct bond_slave *slave;
1071
1072 bond_s = strtok_r(args, " ", &save_ptr);
1073 slave_s = strtok_r(NULL, " ", &save_ptr);
1074 if (!slave_s) {
1075 unixctl_command_reply(conn, 501,
1076 "usage: bond/set-active-slave BOND SLAVE");
1077 return;
1078 }
1079
1080 bond = bond_find(bond_s);
1081 if (!bond) {
1082 unixctl_command_reply(conn, 501, "no such bond");
1083 return;
1084 }
1085
1086 slave = bond_lookup_slave(bond, slave_s);
1087 if (!slave) {
1088 unixctl_command_reply(conn, 501, "no such slave");
1089 return;
1090 }
1091
1092 if (!slave->enabled) {
1093 unixctl_command_reply(conn, 501, "cannot make disabled slave active");
1094 return;
1095 }
1096
1097 if (bond->active_slave != slave) {
1098 tag_set_add(&bond->unixctl_tags, bond_get_active_slave_tag(bond));
1099 bond->active_slave = slave;
1100 bond->active_slave->tag = tag_create_random();
1101 VLOG_INFO("bond %s: active interface is now %s",
1102 bond->name, slave->name);
1103 bond->send_learning_packets = true;
1104 unixctl_command_reply(conn, 200, "done");
1105 } else {
1106 unixctl_command_reply(conn, 200, "no change");
1107 }
1108 }
1109
1110 static void
1111 enable_slave(struct unixctl_conn *conn, const char *args_, bool enable)
1112 {
1113 char *args = (char *) args_;
1114 char *save_ptr = NULL;
1115 char *bond_s, *slave_s;
1116 struct bond *bond;
1117 struct bond_slave *slave;
1118
1119 bond_s = strtok_r(args, " ", &save_ptr);
1120 slave_s = strtok_r(NULL, " ", &save_ptr);
1121 if (!slave_s) {
1122 char *usage = xasprintf("usage: bond/%s-slave BOND SLAVE",
1123 enable ? "enable" : "disable");
1124 unixctl_command_reply(conn, 501, usage);
1125 free(usage);
1126 return;
1127 }
1128
1129 bond = bond_find(bond_s);
1130 if (!bond) {
1131 unixctl_command_reply(conn, 501, "no such bond");
1132 return;
1133 }
1134
1135 slave = bond_lookup_slave(bond, slave_s);
1136 if (!slave) {
1137 unixctl_command_reply(conn, 501, "no such slave");
1138 return;
1139 }
1140
1141 bond_enable_slave(slave, enable, &bond->unixctl_tags);
1142 unixctl_command_reply(conn, 501, enable ? "enabled" : "disabled");
1143 }
1144
1145 static void
1146 bond_unixctl_enable_slave(struct unixctl_conn *conn, const char *args,
1147 void *aux OVS_UNUSED)
1148 {
1149 enable_slave(conn, args, true);
1150 }
1151
1152 static void
1153 bond_unixctl_disable_slave(struct unixctl_conn *conn, const char *args,
1154 void *aux OVS_UNUSED)
1155 {
1156 enable_slave(conn, args, false);
1157 }
1158
1159 static void
1160 bond_unixctl_hash(struct unixctl_conn *conn, const char *args_,
1161 void *aux OVS_UNUSED)
1162 {
1163 char *args = (char *) args_;
1164 uint8_t mac[ETH_ADDR_LEN];
1165 uint8_t hash;
1166 char *hash_cstr;
1167 unsigned int vlan;
1168 uint32_t basis;
1169 char *mac_s, *vlan_s, *basis_s;
1170 char *save_ptr = NULL;
1171
1172 mac_s = strtok_r(args, " ", &save_ptr);
1173 vlan_s = strtok_r(NULL, " ", &save_ptr);
1174 basis_s = strtok_r(NULL, " ", &save_ptr);
1175
1176 if (vlan_s) {
1177 if (sscanf(vlan_s, "%u", &vlan) != 1) {
1178 unixctl_command_reply(conn, 501, "invalid vlan");
1179 return;
1180 }
1181 } else {
1182 vlan = OFP_VLAN_NONE;
1183 }
1184
1185 if (basis_s) {
1186 if (sscanf(basis_s, "%"PRIu32, &basis) != 1) {
1187 unixctl_command_reply(conn, 501, "invalid basis");
1188 return;
1189 }
1190 } else {
1191 basis = 0;
1192 }
1193
1194 if (sscanf(mac_s, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(mac))
1195 == ETH_ADDR_SCAN_COUNT) {
1196 hash = bond_hash_src(mac, vlan, basis) & BOND_MASK;
1197
1198 hash_cstr = xasprintf("%u", hash);
1199 unixctl_command_reply(conn, 200, hash_cstr);
1200 free(hash_cstr);
1201 } else {
1202 unixctl_command_reply(conn, 501, "invalid mac");
1203 }
1204 }
1205
1206 void
1207 bond_init(void)
1208 {
1209 unixctl_command_register("bond/list", bond_unixctl_list, NULL);
1210 unixctl_command_register("bond/show", bond_unixctl_show, NULL);
1211 unixctl_command_register("bond/migrate", bond_unixctl_migrate, NULL);
1212 unixctl_command_register("bond/set-active-slave",
1213 bond_unixctl_set_active_slave, NULL);
1214 unixctl_command_register("bond/enable-slave", bond_unixctl_enable_slave,
1215 NULL);
1216 unixctl_command_register("bond/disable-slave", bond_unixctl_disable_slave,
1217 NULL);
1218 unixctl_command_register("bond/hash", bond_unixctl_hash, NULL);
1219 }
1220 \f
1221 static void
1222 bond_entry_reset(struct bond *bond)
1223 {
1224 if (bond->balance != BM_AB) {
1225 size_t hash_len = (BOND_MASK + 1) * sizeof *bond->hash;
1226
1227 if (!bond->hash) {
1228 bond->hash = xmalloc(hash_len);
1229 }
1230 memset(bond->hash, 0, hash_len);
1231
1232 bond->next_rebalance = time_msec() + bond->rebalance_interval;
1233 } else {
1234 free(bond->hash);
1235 bond->hash = NULL;
1236 }
1237 }
1238
1239 static struct bond_slave *
1240 bond_slave_lookup(struct bond *bond, const void *slave_)
1241 {
1242 struct bond_slave *slave;
1243
1244 HMAP_FOR_EACH_IN_BUCKET (slave, hmap_node, hash_pointer(slave_, 0),
1245 &bond->slaves) {
1246 if (slave->aux == slave_) {
1247 return slave;
1248 }
1249 }
1250
1251 return NULL;
1252 }
1253
1254 static void
1255 bond_enable_slave(struct bond_slave *slave, bool enable, struct tag_set *tags)
1256 {
1257 struct bond *bond = slave->bond;
1258 slave->delay_expires = LLONG_MAX;
1259 if (enable != slave->enabled) {
1260 slave->enabled = enable;
1261 if (!slave->enabled) {
1262 VLOG_WARN("interface %s: disabled", slave->name);
1263 if (tags) {
1264 tag_set_add(tags, slave->tag);
1265 }
1266 } else {
1267 VLOG_WARN("interface %s: enabled", slave->name);
1268 slave->tag = tag_create_random();
1269 }
1270
1271 if (bond->balance == BM_STABLE) {
1272 bond->bond_revalidate = true;
1273 }
1274 }
1275 }
1276
1277 static void
1278 bond_link_status_update(struct bond_slave *slave, struct tag_set *tags)
1279 {
1280 struct bond *bond = slave->bond;
1281 bool up;
1282
1283 up = netdev_get_carrier(slave->netdev) && slave->may_enable;
1284 if ((up == slave->enabled) != (slave->delay_expires == LLONG_MAX)) {
1285 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(5, 20);
1286 VLOG_INFO_RL(&rl, "interface %s: link state %s",
1287 slave->name, up ? "up" : "down");
1288 if (up == slave->enabled) {
1289 slave->delay_expires = LLONG_MAX;
1290 VLOG_INFO_RL(&rl, "interface %s: will not be %s",
1291 slave->name, up ? "disabled" : "enabled");
1292 } else {
1293 int delay = (bond->lacp_negotiated ? 0
1294 : up ? bond->updelay : bond->downdelay);
1295 slave->delay_expires = time_msec() + delay;
1296 if (delay) {
1297 VLOG_INFO_RL(&rl, "interface %s: will be %s if it stays %s "
1298 "for %d ms",
1299 slave->name,
1300 up ? "enabled" : "disabled",
1301 up ? "up" : "down",
1302 delay);
1303 }
1304 }
1305 }
1306
1307 if (time_msec() >= slave->delay_expires) {
1308 bond_enable_slave(slave, up, tags);
1309 }
1310 }
1311
1312 static bool
1313 bond_is_tcp_hash(const struct bond *bond)
1314 {
1315 return (bond->balance == BM_TCP && bond->lacp_negotiated)
1316 || bond->balance == BM_STABLE;
1317 }
1318
1319 static unsigned int
1320 bond_hash_src(const uint8_t mac[ETH_ADDR_LEN], uint16_t vlan, uint32_t basis)
1321 {
1322 return hash_3words(hash_bytes(mac, ETH_ADDR_LEN, 0), vlan, basis);
1323 }
1324
1325 static unsigned int
1326 bond_hash_tcp(const struct flow *flow, uint16_t vlan, uint32_t basis)
1327 {
1328 struct flow hash_flow = *flow;
1329 hash_flow.vlan_tci = htons(vlan);
1330
1331 /* The symmetric quality of this hash function is not required, but
1332 * flow_hash_symmetric_l4 already exists, and is sufficient for our
1333 * purposes, so we use it out of convenience. */
1334 return flow_hash_symmetric_l4(&hash_flow, basis);
1335 }
1336
1337 static unsigned int
1338 bond_hash(const struct bond *bond, const struct flow *flow, uint16_t vlan)
1339 {
1340 assert(bond->balance != BM_AB);
1341
1342 return (bond_is_tcp_hash(bond)
1343 ? bond_hash_tcp(flow, vlan, bond->basis)
1344 : bond_hash_src(flow->dl_src, vlan, bond->basis));
1345 }
1346
1347 static struct bond_entry *
1348 lookup_bond_entry(const struct bond *bond, const struct flow *flow,
1349 uint16_t vlan)
1350 {
1351 return &bond->hash[bond_hash(bond, flow, vlan) & BOND_MASK];
1352 }
1353
1354 /* This function uses Highest Random Weight hashing to choose an output slave.
1355 * This approach only reassigns a minimal number of flows when slaves are
1356 * enabled or disabled. Unfortunately, it has O(n) performance against the
1357 * number of slaves. There exist algorithms which are O(1), but have slightly
1358 * more complex implementations and require the use of memory. This may need
1359 * to be reimplemented if it becomes a performance bottleneck. */
1360 static struct bond_slave *
1361 choose_stb_slave(const struct bond *bond, const struct flow *flow,
1362 uint16_t vlan)
1363 {
1364 struct bond_slave *best, *slave;
1365 uint32_t best_hash, flow_hash;
1366
1367 best = NULL;
1368 best_hash = 0;
1369 flow_hash = bond_hash(bond, flow, vlan);
1370 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
1371 if (slave->enabled) {
1372 uint32_t hash;
1373
1374 hash = hash_2words(flow_hash, slave->stb_id);
1375 if (!best || hash > best_hash) {
1376 best = slave;
1377 best_hash = hash;
1378 }
1379 }
1380 }
1381
1382 return best;
1383 }
1384
1385 static struct bond_slave *
1386 choose_output_slave(const struct bond *bond, const struct flow *flow,
1387 uint16_t vlan)
1388 {
1389 struct bond_entry *e;
1390
1391 switch (bond->balance) {
1392 case BM_AB:
1393 return bond->active_slave;
1394
1395 case BM_STABLE:
1396 return choose_stb_slave(bond, flow, vlan);
1397 case BM_SLB:
1398 case BM_TCP:
1399 e = lookup_bond_entry(bond, flow, vlan);
1400 if (!e->slave || !e->slave->enabled) {
1401 e->slave = CONTAINER_OF(hmap_random_node(&bond->slaves),
1402 struct bond_slave, hmap_node);
1403 if (!e->slave->enabled) {
1404 e->slave = bond->active_slave;
1405 }
1406 e->tag = tag_create_random();
1407 }
1408 return e->slave;
1409
1410 default:
1411 NOT_REACHED();
1412 }
1413 }
1414
1415 static struct bond_slave *
1416 bond_choose_slave(const struct bond *bond)
1417 {
1418 struct bond_slave *slave, *best;
1419
1420 /* Find an enabled slave. */
1421 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
1422 if (slave->enabled) {
1423 return slave;
1424 }
1425 }
1426
1427 /* All interfaces are disabled. Find an interface that will be enabled
1428 * after its updelay expires. */
1429 best = NULL;
1430 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
1431 if (slave->delay_expires != LLONG_MAX
1432 && slave->may_enable
1433 && (!best || slave->delay_expires < best->delay_expires)) {
1434 best = slave;
1435 }
1436 }
1437 return best;
1438 }
1439
1440 static void
1441 bond_choose_active_slave(struct bond *bond, struct tag_set *tags)
1442 {
1443 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(5, 20);
1444 struct bond_slave *old_active_slave = bond->active_slave;
1445
1446 bond->active_slave = bond_choose_slave(bond);
1447 if (bond->active_slave) {
1448 if (bond->active_slave->enabled) {
1449 VLOG_INFO_RL(&rl, "bond %s: active interface is now %s",
1450 bond->name, bond->active_slave->name);
1451 } else {
1452 VLOG_INFO_RL(&rl, "bond %s: active interface is now %s, skipping "
1453 "remaining %lld ms updelay (since no interface was "
1454 "enabled)", bond->name, bond->active_slave->name,
1455 bond->active_slave->delay_expires - time_msec());
1456 bond_enable_slave(bond->active_slave, true, tags);
1457 }
1458
1459 if (!old_active_slave) {
1460 tag_set_add(tags, bond->no_slaves_tag);
1461 }
1462
1463 bond->send_learning_packets = true;
1464 } else if (old_active_slave) {
1465 VLOG_WARN_RL(&rl, "bond %s: all interfaces disabled", bond->name);
1466 }
1467 }
1468
1469 /* Returns the tag for 'bond''s active slave, or 'bond''s no_slaves_tag if
1470 * there is no active slave. */
1471 static tag_type
1472 bond_get_active_slave_tag(const struct bond *bond)
1473 {
1474 return (bond->active_slave
1475 ? bond->active_slave->tag
1476 : bond->no_slaves_tag);
1477 }
1478
1479 /* Attempts to make the sum of the bond slaves' statistics appear on the fake
1480 * bond interface. */
1481 static void
1482 bond_update_fake_slave_stats(struct bond *bond)
1483 {
1484 struct netdev_stats bond_stats;
1485 struct bond_slave *slave;
1486 struct netdev *bond_dev;
1487
1488 memset(&bond_stats, 0, sizeof bond_stats);
1489
1490 HMAP_FOR_EACH (slave, hmap_node, &bond->slaves) {
1491 struct netdev_stats slave_stats;
1492
1493 if (!netdev_get_stats(slave->netdev, &slave_stats)) {
1494 /* XXX: We swap the stats here because they are swapped back when
1495 * reported by the internal device. The reason for this is
1496 * internal devices normally represent packets going into the
1497 * system but when used as fake bond device they represent packets
1498 * leaving the system. We really should do this in the internal
1499 * device itself because changing it here reverses the counts from
1500 * the perspective of the switch. However, the internal device
1501 * doesn't know what type of device it represents so we have to do
1502 * it here for now. */
1503 bond_stats.tx_packets += slave_stats.rx_packets;
1504 bond_stats.tx_bytes += slave_stats.rx_bytes;
1505 bond_stats.rx_packets += slave_stats.tx_packets;
1506 bond_stats.rx_bytes += slave_stats.tx_bytes;
1507 }
1508 }
1509
1510 if (!netdev_open_default(bond->name, &bond_dev)) {
1511 netdev_set_stats(bond_dev, &bond_stats);
1512 netdev_close(bond_dev);
1513 }
1514 }