1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Copyright(c) 1999 - 2004 Intel Corporation. All rights reserved.
4 */
5
6 #include <linux/skbuff.h>
7 #include <linux/if_ether.h>
8 #include <linux/netdevice.h>
9 #include <linux/spinlock.h>
10 #include <linux/ethtool.h>
11 #include <linux/etherdevice.h>
12 #include <linux/if_bonding.h>
13 #include <linux/pkt_sched.h>
14 #include <net/net_namespace.h>
15 #include <net/bonding.h>
16 #include <net/bond_3ad.h>
17 #include <net/netlink.h>
18
19 /* General definitions */
20 #define AD_SHORT_TIMEOUT 1
21 #define AD_LONG_TIMEOUT 0
22 #define AD_STANDBY 0x2
23 #define AD_MAX_TX_IN_SECOND 3
24 #define AD_COLLECTOR_MAX_DELAY 0
25
26 /* Timer definitions (43.4.4 in the 802.3ad standard) */
27 #define AD_FAST_PERIODIC_TIME 1
28 #define AD_SLOW_PERIODIC_TIME 30
29 #define AD_SHORT_TIMEOUT_TIME (3*AD_FAST_PERIODIC_TIME)
30 #define AD_LONG_TIMEOUT_TIME (3*AD_SLOW_PERIODIC_TIME)
31 #define AD_CHURN_DETECTION_TIME 60
32 #define AD_AGGREGATE_WAIT_TIME 2
33
34 /* Port Variables definitions used by the State Machines (43.4.7 in the
35 * 802.3ad standard)
36 */
37 #define AD_PORT_BEGIN 0x1
38 #define AD_PORT_LACP_ENABLED 0x2
39 #define AD_PORT_ACTOR_CHURN 0x4
40 #define AD_PORT_PARTNER_CHURN 0x8
41 #define AD_PORT_READY 0x10
42 #define AD_PORT_READY_N 0x20
43 #define AD_PORT_MATCHED 0x40
44 #define AD_PORT_STANDBY 0x80
45 #define AD_PORT_SELECTED 0x100
46 #define AD_PORT_MOVED 0x200
47 #define AD_PORT_CHURNED (AD_PORT_ACTOR_CHURN | AD_PORT_PARTNER_CHURN)
48
49 /* Port Key definitions
50 * key is determined according to the link speed, duplex and
51 * user key (which is yet not supported)
52 * --------------------------------------------------------------
53 * Port key | User key (10 bits) | Speed (5 bits) | Duplex|
54 * --------------------------------------------------------------
55 * |15 6|5 1|0
56 */
57 #define AD_DUPLEX_KEY_MASKS 0x1
58 #define AD_SPEED_KEY_MASKS 0x3E
59 #define AD_USER_KEY_MASKS 0xFFC0
60
61 enum ad_link_speed_type {
62 AD_LINK_SPEED_1MBPS = 1,
63 AD_LINK_SPEED_10MBPS,
64 AD_LINK_SPEED_100MBPS,
65 AD_LINK_SPEED_1000MBPS,
66 AD_LINK_SPEED_2500MBPS,
67 AD_LINK_SPEED_5000MBPS,
68 AD_LINK_SPEED_10000MBPS,
69 AD_LINK_SPEED_14000MBPS,
70 AD_LINK_SPEED_20000MBPS,
71 AD_LINK_SPEED_25000MBPS,
72 AD_LINK_SPEED_40000MBPS,
73 AD_LINK_SPEED_50000MBPS,
74 AD_LINK_SPEED_56000MBPS,
75 AD_LINK_SPEED_100000MBPS,
76 AD_LINK_SPEED_200000MBPS,
77 AD_LINK_SPEED_400000MBPS,
78 AD_LINK_SPEED_800000MBPS,
79 };
80
81 /* compare MAC addresses */
82 #define MAC_ADDRESS_EQUAL(A, B) \
83 ether_addr_equal_64bits((const u8 *)A, (const u8 *)B)
84
85 static const u16 ad_ticks_per_sec = 1000 / AD_TIMER_INTERVAL;
86 static const int ad_delta_in_ticks = (AD_TIMER_INTERVAL * HZ) / 1000;
87
88 const u8 lacpdu_mcast_addr[ETH_ALEN + 2] __long_aligned = {
89 0x01, 0x80, 0xC2, 0x00, 0x00, 0x02
90 };
91
92 /* ================= main 802.3ad protocol functions ================== */
93 static int ad_lacpdu_send(struct port *port);
94 static int ad_marker_send(struct port *port, struct bond_marker *marker);
95 static void ad_mux_machine(struct port *port, bool *update_slave_arr);
96 static void ad_rx_machine(struct lacpdu *lacpdu, struct port *port);
97 static void ad_tx_machine(struct port *port);
98 static void ad_periodic_machine(struct port *port);
99 static void ad_port_selection_logic(struct port *port, bool *update_slave_arr);
100 static void ad_agg_selection_logic(struct aggregator *aggregator,
101 bool *update_slave_arr);
102 static void ad_clear_agg(struct aggregator *aggregator);
103 static void ad_initialize_agg(struct aggregator *aggregator);
104 static void ad_initialize_port(struct port *port, const struct bond_params *bond_params);
105 static void ad_enable_collecting(struct port *port);
106 static void ad_disable_distributing(struct port *port,
107 bool *update_slave_arr);
108 static void ad_enable_collecting_distributing(struct port *port,
109 bool *update_slave_arr);
110 static void ad_disable_collecting_distributing(struct port *port,
111 bool *update_slave_arr);
112 static void ad_marker_info_received(struct bond_marker *marker_info,
113 struct port *port);
114 static void ad_marker_response_received(struct bond_marker *marker,
115 struct port *port);
116 static void ad_update_actor_keys(struct port *port, bool reset);
117
118
119 /* ================= api to bonding and kernel code ================== */
120
121 /**
122 * __get_bond_by_port - get the port's bonding struct
123 * @port: the port we're looking at
124 *
125 * Return @port's bonding struct, or %NULL if it can't be found.
126 */
__get_bond_by_port(struct port * port)127 static inline struct bonding *__get_bond_by_port(struct port *port)
128 {
129 if (port->slave == NULL)
130 return NULL;
131
132 return bond_get_bond_by_slave(port->slave);
133 }
134
135 /**
136 * __get_first_agg - get the first aggregator in the bond
137 * @port: the port we're looking at
138 *
139 * Return the aggregator of the first slave in @bond, or %NULL if it can't be
140 * found.
141 * The caller must hold RCU or RTNL lock.
142 */
__get_first_agg(struct port * port)143 static inline struct aggregator *__get_first_agg(struct port *port)
144 {
145 struct bonding *bond = __get_bond_by_port(port);
146 struct slave *first_slave;
147 struct aggregator *agg;
148
149 /* If there's no bond for this port, or bond has no slaves */
150 if (bond == NULL)
151 return NULL;
152
153 rcu_read_lock();
154 first_slave = bond_first_slave_rcu(bond);
155 agg = first_slave ? &(SLAVE_AD_INFO(first_slave)->aggregator) : NULL;
156 rcu_read_unlock();
157
158 return agg;
159 }
160
161 /**
162 * __agg_has_partner - see if we have a partner
163 * @agg: the agregator we're looking at
164 *
165 * Return nonzero if aggregator has a partner (denoted by a non-zero ether
166 * address for the partner). Return 0 if not.
167 */
__agg_has_partner(struct aggregator * agg)168 static inline int __agg_has_partner(struct aggregator *agg)
169 {
170 return !is_zero_ether_addr(agg->partner_system.mac_addr_value);
171 }
172
173 /**
174 * __disable_distributing_port - disable the port's slave for distributing.
175 * Port will still be able to collect.
176 * @port: the port we're looking at
177 *
178 * This will disable only distributing on the port's slave.
179 */
__disable_distributing_port(struct port * port)180 static void __disable_distributing_port(struct port *port)
181 {
182 bond_set_slave_tx_disabled_flags(port->slave, BOND_SLAVE_NOTIFY_LATER);
183 }
184
185 /**
186 * __enable_collecting_port - enable the port's slave for collecting,
187 * if it's up
188 * @port: the port we're looking at
189 *
190 * This will enable only collecting on the port's slave.
191 */
__enable_collecting_port(struct port * port)192 static void __enable_collecting_port(struct port *port)
193 {
194 struct slave *slave = port->slave;
195
196 if (slave->link == BOND_LINK_UP && bond_slave_is_up(slave))
197 bond_set_slave_rx_enabled_flags(slave, BOND_SLAVE_NOTIFY_LATER);
198 }
199
200 /**
201 * __disable_port - disable the port's slave
202 * @port: the port we're looking at
203 *
204 * This will disable both collecting and distributing on the port's slave.
205 */
__disable_port(struct port * port)206 static inline void __disable_port(struct port *port)
207 {
208 bond_set_slave_inactive_flags(port->slave, BOND_SLAVE_NOTIFY_LATER);
209 }
210
211 /**
212 * __enable_port - enable the port's slave, if it's up
213 * @port: the port we're looking at
214 *
215 * This will enable both collecting and distributing on the port's slave.
216 */
__enable_port(struct port * port)217 static inline void __enable_port(struct port *port)
218 {
219 struct slave *slave = port->slave;
220
221 if ((slave->link == BOND_LINK_UP) && bond_slave_is_up(slave))
222 bond_set_slave_active_flags(slave, BOND_SLAVE_NOTIFY_LATER);
223 }
224
225 /**
226 * __port_move_to_attached_state - check if port should transition back to attached
227 * state.
228 * @port: the port we're looking at
229 */
__port_move_to_attached_state(struct port * port)230 static bool __port_move_to_attached_state(struct port *port)
231 {
232 if (!(port->sm_vars & AD_PORT_SELECTED) ||
233 (port->sm_vars & AD_PORT_STANDBY) ||
234 !(port->partner_oper.port_state & LACP_STATE_SYNCHRONIZATION) ||
235 !(port->actor_oper_port_state & LACP_STATE_SYNCHRONIZATION))
236 port->sm_mux_state = AD_MUX_ATTACHED;
237
238 return port->sm_mux_state == AD_MUX_ATTACHED;
239 }
240
241 /**
242 * __port_is_collecting_distributing - check if the port's slave is in the
243 * combined collecting/distributing state
244 * @port: the port we're looking at
245 */
__port_is_collecting_distributing(struct port * port)246 static int __port_is_collecting_distributing(struct port *port)
247 {
248 return bond_is_active_slave(port->slave);
249 }
250
251 /**
252 * __get_agg_selection_mode - get the aggregator selection mode
253 * @port: the port we're looking at
254 *
255 * Get the aggregator selection mode. Can be %STABLE, %BANDWIDTH or %COUNT.
256 */
__get_agg_selection_mode(struct port * port)257 static inline u32 __get_agg_selection_mode(struct port *port)
258 {
259 struct bonding *bond = __get_bond_by_port(port);
260
261 if (bond == NULL)
262 return BOND_AD_STABLE;
263
264 return bond->params.ad_select;
265 }
266
267 /**
268 * __check_agg_selection_timer - check if the selection timer has expired
269 * @port: the port we're looking at
270 */
__check_agg_selection_timer(struct port * port)271 static inline int __check_agg_selection_timer(struct port *port)
272 {
273 struct bonding *bond = __get_bond_by_port(port);
274
275 if (bond == NULL)
276 return 0;
277
278 return atomic_read(&BOND_AD_INFO(bond).agg_select_timer) ? 1 : 0;
279 }
280
281 /**
282 * __get_link_speed - get a port's speed
283 * @port: the port we're looking at
284 *
285 * Return @port's speed in 802.3ad enum format. i.e. one of:
286 * 0,
287 * %AD_LINK_SPEED_10MBPS,
288 * %AD_LINK_SPEED_100MBPS,
289 * %AD_LINK_SPEED_1000MBPS,
290 * %AD_LINK_SPEED_2500MBPS,
291 * %AD_LINK_SPEED_5000MBPS,
292 * %AD_LINK_SPEED_10000MBPS
293 * %AD_LINK_SPEED_14000MBPS,
294 * %AD_LINK_SPEED_20000MBPS
295 * %AD_LINK_SPEED_25000MBPS
296 * %AD_LINK_SPEED_40000MBPS
297 * %AD_LINK_SPEED_50000MBPS
298 * %AD_LINK_SPEED_56000MBPS
299 * %AD_LINK_SPEED_100000MBPS
300 * %AD_LINK_SPEED_200000MBPS
301 * %AD_LINK_SPEED_400000MBPS
302 * %AD_LINK_SPEED_800000MBPS
303 */
__get_link_speed(struct port * port)304 static u16 __get_link_speed(struct port *port)
305 {
306 struct slave *slave = port->slave;
307 u16 speed;
308
309 /* this if covers only a special case: when the configuration starts
310 * with link down, it sets the speed to 0.
311 * This is done in spite of the fact that the e100 driver reports 0
312 * to be compatible with MVT in the future.
313 */
314 if (slave->link != BOND_LINK_UP)
315 speed = 0;
316 else {
317 switch (slave->speed) {
318 case SPEED_10:
319 speed = AD_LINK_SPEED_10MBPS;
320 break;
321
322 case SPEED_100:
323 speed = AD_LINK_SPEED_100MBPS;
324 break;
325
326 case SPEED_1000:
327 speed = AD_LINK_SPEED_1000MBPS;
328 break;
329
330 case SPEED_2500:
331 speed = AD_LINK_SPEED_2500MBPS;
332 break;
333
334 case SPEED_5000:
335 speed = AD_LINK_SPEED_5000MBPS;
336 break;
337
338 case SPEED_10000:
339 speed = AD_LINK_SPEED_10000MBPS;
340 break;
341
342 case SPEED_14000:
343 speed = AD_LINK_SPEED_14000MBPS;
344 break;
345
346 case SPEED_20000:
347 speed = AD_LINK_SPEED_20000MBPS;
348 break;
349
350 case SPEED_25000:
351 speed = AD_LINK_SPEED_25000MBPS;
352 break;
353
354 case SPEED_40000:
355 speed = AD_LINK_SPEED_40000MBPS;
356 break;
357
358 case SPEED_50000:
359 speed = AD_LINK_SPEED_50000MBPS;
360 break;
361
362 case SPEED_56000:
363 speed = AD_LINK_SPEED_56000MBPS;
364 break;
365
366 case SPEED_100000:
367 speed = AD_LINK_SPEED_100000MBPS;
368 break;
369
370 case SPEED_200000:
371 speed = AD_LINK_SPEED_200000MBPS;
372 break;
373
374 case SPEED_400000:
375 speed = AD_LINK_SPEED_400000MBPS;
376 break;
377
378 case SPEED_800000:
379 speed = AD_LINK_SPEED_800000MBPS;
380 break;
381
382 default:
383 /* unknown speed value from ethtool. shouldn't happen */
384 if (slave->speed != SPEED_UNKNOWN)
385 pr_err_once("%s: (slave %s): unknown ethtool speed (%d) for port %d (set it to 0)\n",
386 slave->bond->dev->name,
387 slave->dev->name, slave->speed,
388 port->actor_port_number);
389 speed = 0;
390 break;
391 }
392 }
393
394 slave_dbg(slave->bond->dev, slave->dev, "Port %d Received link speed %d update from adapter\n",
395 port->actor_port_number, speed);
396 return speed;
397 }
398
399 /**
400 * __get_duplex - get a port's duplex
401 * @port: the port we're looking at
402 *
403 * Return @port's duplex in 802.3ad bitmask format. i.e.:
404 * 0x01 if in full duplex
405 * 0x00 otherwise
406 */
__get_duplex(struct port * port)407 static u8 __get_duplex(struct port *port)
408 {
409 struct slave *slave = port->slave;
410 u8 retval = 0x0;
411
412 /* handling a special case: when the configuration starts with
413 * link down, it sets the duplex to 0.
414 */
415 if (slave->link == BOND_LINK_UP) {
416 switch (slave->duplex) {
417 case DUPLEX_FULL:
418 retval = 0x1;
419 slave_dbg(slave->bond->dev, slave->dev, "Port %d Received status full duplex update from adapter\n",
420 port->actor_port_number);
421 break;
422 case DUPLEX_HALF:
423 default:
424 retval = 0x0;
425 slave_dbg(slave->bond->dev, slave->dev, "Port %d Received status NOT full duplex update from adapter\n",
426 port->actor_port_number);
427 break;
428 }
429 }
430 return retval;
431 }
432
__ad_actor_update_port(struct port * port)433 static void __ad_actor_update_port(struct port *port)
434 {
435 const struct bonding *bond = bond_get_bond_by_slave(port->slave);
436
437 port->actor_system = BOND_AD_INFO(bond).system.sys_mac_addr;
438 port->actor_system_priority = BOND_AD_INFO(bond).system.sys_priority;
439 }
440
441 /* Conversions */
442
443 /**
444 * __ad_timer_to_ticks - convert a given timer type to AD module ticks
445 * @timer_type: which timer to operate
446 * @par: timer parameter. see below
447 *
448 * If @timer_type is %current_while_timer, @par indicates long/short timer.
449 * If @timer_type is %periodic_timer, @par is one of %FAST_PERIODIC_TIME,
450 * %SLOW_PERIODIC_TIME.
451 */
__ad_timer_to_ticks(u16 timer_type,u16 par)452 static u16 __ad_timer_to_ticks(u16 timer_type, u16 par)
453 {
454 u16 retval = 0; /* to silence the compiler */
455
456 switch (timer_type) {
457 case AD_CURRENT_WHILE_TIMER: /* for rx machine usage */
458 if (par)
459 retval = (AD_SHORT_TIMEOUT_TIME*ad_ticks_per_sec);
460 else
461 retval = (AD_LONG_TIMEOUT_TIME*ad_ticks_per_sec);
462 break;
463 case AD_ACTOR_CHURN_TIMER: /* for local churn machine */
464 retval = (AD_CHURN_DETECTION_TIME*ad_ticks_per_sec);
465 break;
466 case AD_PERIODIC_TIMER: /* for periodic machine */
467 retval = (par*ad_ticks_per_sec); /* long timeout */
468 break;
469 case AD_PARTNER_CHURN_TIMER: /* for remote churn machine */
470 retval = (AD_CHURN_DETECTION_TIME*ad_ticks_per_sec);
471 break;
472 case AD_WAIT_WHILE_TIMER: /* for selection machine */
473 retval = (AD_AGGREGATE_WAIT_TIME*ad_ticks_per_sec);
474 break;
475 }
476
477 return retval;
478 }
479
480
481 /* ================= ad_rx_machine helper functions ================== */
482
483 /**
484 * __choose_matched - update a port's matched variable from a received lacpdu
485 * @lacpdu: the lacpdu we've received
486 * @port: the port we're looking at
487 *
488 * Update the value of the matched variable, using parameter values from a
489 * newly received lacpdu. Parameter values for the partner carried in the
490 * received PDU are compared with the corresponding operational parameter
491 * values for the actor. Matched is set to TRUE if all of these parameters
492 * match and the PDU parameter partner_state.aggregation has the same value as
493 * actor_oper_port_state.aggregation and lacp will actively maintain the link
494 * in the aggregation. Matched is also set to TRUE if the value of
495 * actor_state.aggregation in the received PDU is set to FALSE, i.e., indicates
496 * an individual link and lacp will actively maintain the link. Otherwise,
497 * matched is set to FALSE. LACP is considered to be actively maintaining the
498 * link if either the PDU's actor_state.lacp_activity variable is TRUE or both
499 * the actor's actor_oper_port_state.lacp_activity and the PDU's
500 * partner_state.lacp_activity variables are TRUE.
501 *
502 * Note: the AD_PORT_MATCHED "variable" is not specified by 802.3ad; it is
503 * used here to implement the language from 802.3ad 43.4.9 that requires
504 * recordPDU to "match" the LACPDU parameters to the stored values.
505 */
__choose_matched(struct lacpdu * lacpdu,struct port * port)506 static void __choose_matched(struct lacpdu *lacpdu, struct port *port)
507 {
508 /* check if all parameters are alike
509 * or this is individual link(aggregation == FALSE)
510 * then update the state machine Matched variable.
511 */
512 if (((ntohs(lacpdu->partner_port) == port->actor_port_number) &&
513 (ntohs(lacpdu->partner_port_priority) == port->actor_port_priority) &&
514 MAC_ADDRESS_EQUAL(&(lacpdu->partner_system), &(port->actor_system)) &&
515 (ntohs(lacpdu->partner_system_priority) == port->actor_system_priority) &&
516 (ntohs(lacpdu->partner_key) == port->actor_oper_port_key) &&
517 ((lacpdu->partner_state & LACP_STATE_AGGREGATION) == (port->actor_oper_port_state & LACP_STATE_AGGREGATION))) ||
518 ((lacpdu->actor_state & LACP_STATE_AGGREGATION) == 0)
519 ) {
520 port->sm_vars |= AD_PORT_MATCHED;
521 } else {
522 port->sm_vars &= ~AD_PORT_MATCHED;
523 }
524 }
525
526 /**
527 * __record_pdu - record parameters from a received lacpdu
528 * @lacpdu: the lacpdu we've received
529 * @port: the port we're looking at
530 *
531 * Record the parameter values for the Actor carried in a received lacpdu as
532 * the current partner operational parameter values and sets
533 * actor_oper_port_state.defaulted to FALSE.
534 */
__record_pdu(struct lacpdu * lacpdu,struct port * port)535 static void __record_pdu(struct lacpdu *lacpdu, struct port *port)
536 {
537 if (lacpdu && port) {
538 struct port_params *partner = &port->partner_oper;
539
540 __choose_matched(lacpdu, port);
541 /* record the new parameter values for the partner
542 * operational
543 */
544 partner->port_number = ntohs(lacpdu->actor_port);
545 partner->port_priority = ntohs(lacpdu->actor_port_priority);
546 partner->system = lacpdu->actor_system;
547 partner->system_priority = ntohs(lacpdu->actor_system_priority);
548 partner->key = ntohs(lacpdu->actor_key);
549 partner->port_state = lacpdu->actor_state;
550
551 /* set actor_oper_port_state.defaulted to FALSE */
552 port->actor_oper_port_state &= ~LACP_STATE_DEFAULTED;
553
554 /* set the partner sync. to on if the partner is sync,
555 * and the port is matched
556 */
557 if ((port->sm_vars & AD_PORT_MATCHED) &&
558 (lacpdu->actor_state & LACP_STATE_SYNCHRONIZATION)) {
559 partner->port_state |= LACP_STATE_SYNCHRONIZATION;
560 slave_dbg(port->slave->bond->dev, port->slave->dev,
561 "partner sync=1\n");
562 } else {
563 partner->port_state &= ~LACP_STATE_SYNCHRONIZATION;
564 slave_dbg(port->slave->bond->dev, port->slave->dev,
565 "partner sync=0\n");
566 }
567 }
568 }
569
570 /**
571 * __record_default - record default parameters
572 * @port: the port we're looking at
573 *
574 * This function records the default parameter values for the partner carried
575 * in the Partner Admin parameters as the current partner operational parameter
576 * values and sets actor_oper_port_state.defaulted to TRUE.
577 */
__record_default(struct port * port)578 static void __record_default(struct port *port)
579 {
580 if (port) {
581 /* record the partner admin parameters */
582 memcpy(&port->partner_oper, &port->partner_admin,
583 sizeof(struct port_params));
584
585 /* set actor_oper_port_state.defaulted to true */
586 port->actor_oper_port_state |= LACP_STATE_DEFAULTED;
587 }
588 }
589
590 /**
591 * __update_selected - update a port's Selected variable from a received lacpdu
592 * @lacpdu: the lacpdu we've received
593 * @port: the port we're looking at
594 *
595 * Update the value of the selected variable, using parameter values from a
596 * newly received lacpdu. The parameter values for the Actor carried in the
597 * received PDU are compared with the corresponding operational parameter
598 * values for the ports partner. If one or more of the comparisons shows that
599 * the value(s) received in the PDU differ from the current operational values,
600 * then selected is set to FALSE and actor_oper_port_state.synchronization is
601 * set to out_of_sync. Otherwise, selected remains unchanged.
602 */
__update_selected(struct lacpdu * lacpdu,struct port * port)603 static void __update_selected(struct lacpdu *lacpdu, struct port *port)
604 {
605 if (lacpdu && port) {
606 const struct port_params *partner = &port->partner_oper;
607
608 /* check if any parameter is different then
609 * update the state machine selected variable.
610 */
611 if (ntohs(lacpdu->actor_port) != partner->port_number ||
612 ntohs(lacpdu->actor_port_priority) != partner->port_priority ||
613 !MAC_ADDRESS_EQUAL(&lacpdu->actor_system, &partner->system) ||
614 ntohs(lacpdu->actor_system_priority) != partner->system_priority ||
615 ntohs(lacpdu->actor_key) != partner->key ||
616 (lacpdu->actor_state & LACP_STATE_AGGREGATION) != (partner->port_state & LACP_STATE_AGGREGATION)) {
617 port->sm_vars &= ~AD_PORT_SELECTED;
618 }
619 }
620 }
621
622 /**
623 * __update_default_selected - update a port's Selected variable from Partner
624 * @port: the port we're looking at
625 *
626 * This function updates the value of the selected variable, using the partner
627 * administrative parameter values. The administrative values are compared with
628 * the corresponding operational parameter values for the partner. If one or
629 * more of the comparisons shows that the administrative value(s) differ from
630 * the current operational values, then Selected is set to FALSE and
631 * actor_oper_port_state.synchronization is set to OUT_OF_SYNC. Otherwise,
632 * Selected remains unchanged.
633 */
__update_default_selected(struct port * port)634 static void __update_default_selected(struct port *port)
635 {
636 if (port) {
637 const struct port_params *admin = &port->partner_admin;
638 const struct port_params *oper = &port->partner_oper;
639
640 /* check if any parameter is different then
641 * update the state machine selected variable.
642 */
643 if (admin->port_number != oper->port_number ||
644 admin->port_priority != oper->port_priority ||
645 !MAC_ADDRESS_EQUAL(&admin->system, &oper->system) ||
646 admin->system_priority != oper->system_priority ||
647 admin->key != oper->key ||
648 (admin->port_state & LACP_STATE_AGGREGATION)
649 != (oper->port_state & LACP_STATE_AGGREGATION)) {
650 port->sm_vars &= ~AD_PORT_SELECTED;
651 }
652 }
653 }
654
655 /**
656 * __update_ntt - update a port's ntt variable from a received lacpdu
657 * @lacpdu: the lacpdu we've received
658 * @port: the port we're looking at
659 *
660 * Updates the value of the ntt variable, using parameter values from a newly
661 * received lacpdu. The parameter values for the partner carried in the
662 * received PDU are compared with the corresponding operational parameter
663 * values for the Actor. If one or more of the comparisons shows that the
664 * value(s) received in the PDU differ from the current operational values,
665 * then ntt is set to TRUE. Otherwise, ntt remains unchanged.
666 */
__update_ntt(struct lacpdu * lacpdu,struct port * port)667 static void __update_ntt(struct lacpdu *lacpdu, struct port *port)
668 {
669 /* validate lacpdu and port */
670 if (lacpdu && port) {
671 /* check if any parameter is different then
672 * update the port->ntt.
673 */
674 if ((ntohs(lacpdu->partner_port) != port->actor_port_number) ||
675 (ntohs(lacpdu->partner_port_priority) != port->actor_port_priority) ||
676 !MAC_ADDRESS_EQUAL(&(lacpdu->partner_system), &(port->actor_system)) ||
677 (ntohs(lacpdu->partner_system_priority) != port->actor_system_priority) ||
678 (ntohs(lacpdu->partner_key) != port->actor_oper_port_key) ||
679 ((lacpdu->partner_state & LACP_STATE_LACP_ACTIVITY) != (port->actor_oper_port_state & LACP_STATE_LACP_ACTIVITY)) ||
680 ((lacpdu->partner_state & LACP_STATE_LACP_TIMEOUT) != (port->actor_oper_port_state & LACP_STATE_LACP_TIMEOUT)) ||
681 ((lacpdu->partner_state & LACP_STATE_SYNCHRONIZATION) != (port->actor_oper_port_state & LACP_STATE_SYNCHRONIZATION)) ||
682 ((lacpdu->partner_state & LACP_STATE_AGGREGATION) != (port->actor_oper_port_state & LACP_STATE_AGGREGATION))
683 ) {
684 port->ntt = true;
685 }
686 }
687 }
688
689 /**
690 * __agg_ports_are_ready - check if all ports in an aggregator are ready
691 * @aggregator: the aggregator we're looking at
692 *
693 */
__agg_ports_are_ready(struct aggregator * aggregator)694 static int __agg_ports_are_ready(struct aggregator *aggregator)
695 {
696 struct port *port;
697 int retval = 1;
698
699 if (aggregator) {
700 /* scan all ports in this aggregator to verfy if they are
701 * all ready.
702 */
703 for (port = aggregator->lag_ports;
704 port;
705 port = port->next_port_in_aggregator) {
706 if (!(port->sm_vars & AD_PORT_READY_N)) {
707 retval = 0;
708 break;
709 }
710 }
711 }
712
713 return retval;
714 }
715
716 /**
717 * __set_agg_ports_ready - set value of Ready bit in all ports of an aggregator
718 * @aggregator: the aggregator we're looking at
719 * @val: Should the ports' ready bit be set on or off
720 *
721 */
__set_agg_ports_ready(struct aggregator * aggregator,int val)722 static void __set_agg_ports_ready(struct aggregator *aggregator, int val)
723 {
724 struct port *port;
725
726 for (port = aggregator->lag_ports; port;
727 port = port->next_port_in_aggregator) {
728 if (val)
729 port->sm_vars |= AD_PORT_READY;
730 else
731 port->sm_vars &= ~AD_PORT_READY;
732 }
733 }
734
__agg_active_ports(struct aggregator * agg)735 static int __agg_active_ports(struct aggregator *agg)
736 {
737 struct port *port;
738 int active = 0;
739
740 for (port = agg->lag_ports; port;
741 port = port->next_port_in_aggregator) {
742 if (port->is_enabled)
743 active++;
744 }
745
746 return active;
747 }
748
749 /**
750 * __get_agg_bandwidth - get the total bandwidth of an aggregator
751 * @aggregator: the aggregator we're looking at
752 *
753 */
__get_agg_bandwidth(struct aggregator * aggregator)754 static u32 __get_agg_bandwidth(struct aggregator *aggregator)
755 {
756 int nports = __agg_active_ports(aggregator);
757 u32 bandwidth = 0;
758
759 if (nports) {
760 switch (__get_link_speed(aggregator->lag_ports)) {
761 case AD_LINK_SPEED_1MBPS:
762 bandwidth = nports;
763 break;
764 case AD_LINK_SPEED_10MBPS:
765 bandwidth = nports * 10;
766 break;
767 case AD_LINK_SPEED_100MBPS:
768 bandwidth = nports * 100;
769 break;
770 case AD_LINK_SPEED_1000MBPS:
771 bandwidth = nports * 1000;
772 break;
773 case AD_LINK_SPEED_2500MBPS:
774 bandwidth = nports * 2500;
775 break;
776 case AD_LINK_SPEED_5000MBPS:
777 bandwidth = nports * 5000;
778 break;
779 case AD_LINK_SPEED_10000MBPS:
780 bandwidth = nports * 10000;
781 break;
782 case AD_LINK_SPEED_14000MBPS:
783 bandwidth = nports * 14000;
784 break;
785 case AD_LINK_SPEED_20000MBPS:
786 bandwidth = nports * 20000;
787 break;
788 case AD_LINK_SPEED_25000MBPS:
789 bandwidth = nports * 25000;
790 break;
791 case AD_LINK_SPEED_40000MBPS:
792 bandwidth = nports * 40000;
793 break;
794 case AD_LINK_SPEED_50000MBPS:
795 bandwidth = nports * 50000;
796 break;
797 case AD_LINK_SPEED_56000MBPS:
798 bandwidth = nports * 56000;
799 break;
800 case AD_LINK_SPEED_100000MBPS:
801 bandwidth = nports * 100000;
802 break;
803 case AD_LINK_SPEED_200000MBPS:
804 bandwidth = nports * 200000;
805 break;
806 case AD_LINK_SPEED_400000MBPS:
807 bandwidth = nports * 400000;
808 break;
809 case AD_LINK_SPEED_800000MBPS:
810 bandwidth = nports * 800000;
811 break;
812 default:
813 bandwidth = 0; /* to silence the compiler */
814 }
815 }
816 return bandwidth;
817 }
818
819 /**
820 * __get_active_agg - get the current active aggregator
821 * @aggregator: the aggregator we're looking at
822 *
823 * Caller must hold RCU lock.
824 */
__get_active_agg(struct aggregator * aggregator)825 static struct aggregator *__get_active_agg(struct aggregator *aggregator)
826 {
827 struct bonding *bond = aggregator->slave->bond;
828 struct list_head *iter;
829 struct slave *slave;
830
831 bond_for_each_slave_rcu(bond, slave, iter)
832 if (SLAVE_AD_INFO(slave)->aggregator.is_active)
833 return &(SLAVE_AD_INFO(slave)->aggregator);
834
835 return NULL;
836 }
837
838 /**
839 * __update_lacpdu_from_port - update a port's lacpdu fields
840 * @port: the port we're looking at
841 */
__update_lacpdu_from_port(struct port * port)842 static inline void __update_lacpdu_from_port(struct port *port)
843 {
844 struct lacpdu *lacpdu = &port->lacpdu;
845 const struct port_params *partner = &port->partner_oper;
846
847 /* update current actual Actor parameters
848 * lacpdu->subtype initialized
849 * lacpdu->version_number initialized
850 * lacpdu->tlv_type_actor_info initialized
851 * lacpdu->actor_information_length initialized
852 */
853
854 lacpdu->actor_system_priority = htons(port->actor_system_priority);
855 lacpdu->actor_system = port->actor_system;
856 lacpdu->actor_key = htons(port->actor_oper_port_key);
857 lacpdu->actor_port_priority = htons(port->actor_port_priority);
858 lacpdu->actor_port = htons(port->actor_port_number);
859 lacpdu->actor_state = port->actor_oper_port_state;
860 slave_dbg(port->slave->bond->dev, port->slave->dev,
861 "update lacpdu: actor port state %x\n",
862 port->actor_oper_port_state);
863
864 /* lacpdu->reserved_3_1 initialized
865 * lacpdu->tlv_type_partner_info initialized
866 * lacpdu->partner_information_length initialized
867 */
868
869 lacpdu->partner_system_priority = htons(partner->system_priority);
870 lacpdu->partner_system = partner->system;
871 lacpdu->partner_key = htons(partner->key);
872 lacpdu->partner_port_priority = htons(partner->port_priority);
873 lacpdu->partner_port = htons(partner->port_number);
874 lacpdu->partner_state = partner->port_state;
875
876 /* lacpdu->reserved_3_2 initialized
877 * lacpdu->tlv_type_collector_info initialized
878 * lacpdu->collector_information_length initialized
879 * collector_max_delay initialized
880 * reserved_12[12] initialized
881 * tlv_type_terminator initialized
882 * terminator_length initialized
883 * reserved_50[50] initialized
884 */
885 }
886
887 /* ================= main 802.3ad protocol code ========================= */
888
889 /**
890 * ad_lacpdu_send - send out a lacpdu packet on a given port
891 * @port: the port we're looking at
892 *
893 * Returns: 0 on success
894 * < 0 on error
895 */
ad_lacpdu_send(struct port * port)896 static int ad_lacpdu_send(struct port *port)
897 {
898 struct slave *slave = port->slave;
899 struct sk_buff *skb;
900 struct lacpdu_header *lacpdu_header;
901 int length = sizeof(struct lacpdu_header);
902
903 skb = dev_alloc_skb(length);
904 if (!skb)
905 return -ENOMEM;
906
907 atomic64_inc(&SLAVE_AD_INFO(slave)->stats.lacpdu_tx);
908 atomic64_inc(&BOND_AD_INFO(slave->bond).stats.lacpdu_tx);
909
910 skb->dev = slave->dev;
911 skb_reset_mac_header(skb);
912 skb->network_header = skb->mac_header + ETH_HLEN;
913 skb->protocol = PKT_TYPE_LACPDU;
914 skb->priority = TC_PRIO_CONTROL;
915
916 lacpdu_header = skb_put(skb, length);
917
918 ether_addr_copy(lacpdu_header->hdr.h_dest, lacpdu_mcast_addr);
919 /* Note: source address is set to be the member's PERMANENT address,
920 * because we use it to identify loopback lacpdus in receive.
921 */
922 ether_addr_copy(lacpdu_header->hdr.h_source, slave->perm_hwaddr);
923 lacpdu_header->hdr.h_proto = PKT_TYPE_LACPDU;
924
925 lacpdu_header->lacpdu = port->lacpdu;
926
927 dev_queue_xmit(skb);
928
929 return 0;
930 }
931
932 /**
933 * ad_marker_send - send marker information/response on a given port
934 * @port: the port we're looking at
935 * @marker: marker data to send
936 *
937 * Returns: 0 on success
938 * < 0 on error
939 */
ad_marker_send(struct port * port,struct bond_marker * marker)940 static int ad_marker_send(struct port *port, struct bond_marker *marker)
941 {
942 struct slave *slave = port->slave;
943 struct sk_buff *skb;
944 struct bond_marker_header *marker_header;
945 int length = sizeof(struct bond_marker_header);
946
947 skb = dev_alloc_skb(length + 16);
948 if (!skb)
949 return -ENOMEM;
950
951 switch (marker->tlv_type) {
952 case AD_MARKER_INFORMATION_SUBTYPE:
953 atomic64_inc(&SLAVE_AD_INFO(slave)->stats.marker_tx);
954 atomic64_inc(&BOND_AD_INFO(slave->bond).stats.marker_tx);
955 break;
956 case AD_MARKER_RESPONSE_SUBTYPE:
957 atomic64_inc(&SLAVE_AD_INFO(slave)->stats.marker_resp_tx);
958 atomic64_inc(&BOND_AD_INFO(slave->bond).stats.marker_resp_tx);
959 break;
960 }
961
962 skb_reserve(skb, 16);
963
964 skb->dev = slave->dev;
965 skb_reset_mac_header(skb);
966 skb->network_header = skb->mac_header + ETH_HLEN;
967 skb->protocol = PKT_TYPE_LACPDU;
968
969 marker_header = skb_put(skb, length);
970
971 ether_addr_copy(marker_header->hdr.h_dest, lacpdu_mcast_addr);
972 /* Note: source address is set to be the member's PERMANENT address,
973 * because we use it to identify loopback MARKERs in receive.
974 */
975 ether_addr_copy(marker_header->hdr.h_source, slave->perm_hwaddr);
976 marker_header->hdr.h_proto = PKT_TYPE_LACPDU;
977
978 marker_header->marker = *marker;
979
980 dev_queue_xmit(skb);
981
982 return 0;
983 }
984
985 /**
986 * ad_mux_machine - handle a port's mux state machine
987 * @port: the port we're looking at
988 * @update_slave_arr: Does slave array need update?
989 */
ad_mux_machine(struct port * port,bool * update_slave_arr)990 static void ad_mux_machine(struct port *port, bool *update_slave_arr)
991 {
992 struct bonding *bond = __get_bond_by_port(port);
993 mux_states_t last_state;
994
995 /* keep current State Machine state to compare later if it was
996 * changed
997 */
998 last_state = port->sm_mux_state;
999
1000 if (port->sm_vars & AD_PORT_BEGIN) {
1001 port->sm_mux_state = AD_MUX_DETACHED;
1002 } else {
1003 switch (port->sm_mux_state) {
1004 case AD_MUX_DETACHED:
1005 if ((port->sm_vars & AD_PORT_SELECTED)
1006 || (port->sm_vars & AD_PORT_STANDBY))
1007 /* if SELECTED or STANDBY */
1008 port->sm_mux_state = AD_MUX_WAITING;
1009 break;
1010 case AD_MUX_WAITING:
1011 /* if SELECTED == FALSE return to DETACH state */
1012 if (!(port->sm_vars & AD_PORT_SELECTED)) {
1013 port->sm_vars &= ~AD_PORT_READY_N;
1014 /* in order to withhold the Selection Logic to
1015 * check all ports READY_N value every callback
1016 * cycle to update ready variable, we check
1017 * READY_N and update READY here
1018 */
1019 __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
1020 port->sm_mux_state = AD_MUX_DETACHED;
1021 break;
1022 }
1023
1024 /* check if the wait_while_timer expired */
1025 if (port->sm_mux_timer_counter
1026 && !(--port->sm_mux_timer_counter))
1027 port->sm_vars |= AD_PORT_READY_N;
1028
1029 /* in order to withhold the selection logic to check
1030 * all ports READY_N value every callback cycle to
1031 * update ready variable, we check READY_N and update
1032 * READY here
1033 */
1034 __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
1035
1036 /* if the wait_while_timer expired, and the port is
1037 * in READY state, move to ATTACHED state
1038 */
1039 if ((port->sm_vars & AD_PORT_READY)
1040 && !port->sm_mux_timer_counter)
1041 port->sm_mux_state = AD_MUX_ATTACHED;
1042 break;
1043 case AD_MUX_ATTACHED:
1044 /* check also if agg_select_timer expired (so the
1045 * edable port will take place only after this timer)
1046 */
1047 if ((port->sm_vars & AD_PORT_SELECTED) &&
1048 (port->partner_oper.port_state & LACP_STATE_SYNCHRONIZATION) &&
1049 !__check_agg_selection_timer(port)) {
1050 if (port->aggregator->is_active) {
1051 int state = AD_MUX_COLLECTING_DISTRIBUTING;
1052
1053 if (!bond->params.coupled_control)
1054 state = AD_MUX_COLLECTING;
1055 port->sm_mux_state = state;
1056 }
1057 } else if (!(port->sm_vars & AD_PORT_SELECTED) ||
1058 (port->sm_vars & AD_PORT_STANDBY)) {
1059 /* if UNSELECTED or STANDBY */
1060 port->sm_vars &= ~AD_PORT_READY_N;
1061 /* in order to withhold the selection logic to
1062 * check all ports READY_N value every callback
1063 * cycle to update ready variable, we check
1064 * READY_N and update READY here
1065 */
1066 __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
1067 port->sm_mux_state = AD_MUX_DETACHED;
1068 } else if (port->aggregator->is_active) {
1069 port->actor_oper_port_state |=
1070 LACP_STATE_SYNCHRONIZATION;
1071 }
1072 break;
1073 case AD_MUX_COLLECTING_DISTRIBUTING:
1074 if (!__port_move_to_attached_state(port)) {
1075 /* if port state hasn't changed make
1076 * sure that a collecting distributing
1077 * port in an active aggregator is enabled
1078 */
1079 if (port->aggregator->is_active &&
1080 !__port_is_collecting_distributing(port)) {
1081 __enable_port(port);
1082 *update_slave_arr = true;
1083 }
1084 }
1085 break;
1086 case AD_MUX_COLLECTING:
1087 if (!__port_move_to_attached_state(port)) {
1088 if ((port->sm_vars & AD_PORT_SELECTED) &&
1089 (port->partner_oper.port_state & LACP_STATE_SYNCHRONIZATION) &&
1090 (port->partner_oper.port_state & LACP_STATE_COLLECTING)) {
1091 port->sm_mux_state = AD_MUX_DISTRIBUTING;
1092 } else {
1093 /* If port state hasn't changed, make sure that a collecting
1094 * port is enabled for an active aggregator.
1095 */
1096 struct slave *slave = port->slave;
1097
1098 if (port->aggregator->is_active &&
1099 bond_is_slave_rx_disabled(slave)) {
1100 ad_enable_collecting(port);
1101 *update_slave_arr = true;
1102 }
1103 }
1104 }
1105 break;
1106 case AD_MUX_DISTRIBUTING:
1107 if (!(port->sm_vars & AD_PORT_SELECTED) ||
1108 (port->sm_vars & AD_PORT_STANDBY) ||
1109 !(port->partner_oper.port_state & LACP_STATE_COLLECTING) ||
1110 !(port->partner_oper.port_state & LACP_STATE_SYNCHRONIZATION) ||
1111 !(port->actor_oper_port_state & LACP_STATE_SYNCHRONIZATION)) {
1112 port->sm_mux_state = AD_MUX_COLLECTING;
1113 } else {
1114 /* if port state hasn't changed make
1115 * sure that a collecting distributing
1116 * port in an active aggregator is enabled
1117 */
1118 if (port->aggregator &&
1119 port->aggregator->is_active &&
1120 !__port_is_collecting_distributing(port)) {
1121 __enable_port(port);
1122 *update_slave_arr = true;
1123 }
1124 }
1125 break;
1126 default:
1127 break;
1128 }
1129 }
1130
1131 /* check if the state machine was changed */
1132 if (port->sm_mux_state != last_state) {
1133 slave_dbg(port->slave->bond->dev, port->slave->dev,
1134 "Mux Machine: Port=%d, Last State=%d, Curr State=%d\n",
1135 port->actor_port_number,
1136 last_state,
1137 port->sm_mux_state);
1138 switch (port->sm_mux_state) {
1139 case AD_MUX_DETACHED:
1140 port->actor_oper_port_state &= ~LACP_STATE_SYNCHRONIZATION;
1141 ad_disable_collecting_distributing(port,
1142 update_slave_arr);
1143 port->actor_oper_port_state &= ~LACP_STATE_COLLECTING;
1144 port->actor_oper_port_state &= ~LACP_STATE_DISTRIBUTING;
1145 port->ntt = true;
1146 break;
1147 case AD_MUX_WAITING:
1148 port->sm_mux_timer_counter = __ad_timer_to_ticks(AD_WAIT_WHILE_TIMER, 0);
1149 break;
1150 case AD_MUX_ATTACHED:
1151 if (port->aggregator->is_active)
1152 port->actor_oper_port_state |=
1153 LACP_STATE_SYNCHRONIZATION;
1154 else
1155 port->actor_oper_port_state &=
1156 ~LACP_STATE_SYNCHRONIZATION;
1157 port->actor_oper_port_state &= ~LACP_STATE_COLLECTING;
1158 port->actor_oper_port_state &= ~LACP_STATE_DISTRIBUTING;
1159 ad_disable_collecting_distributing(port,
1160 update_slave_arr);
1161 port->ntt = true;
1162 break;
1163 case AD_MUX_COLLECTING_DISTRIBUTING:
1164 port->actor_oper_port_state |= LACP_STATE_COLLECTING;
1165 port->actor_oper_port_state |= LACP_STATE_DISTRIBUTING;
1166 port->actor_oper_port_state |= LACP_STATE_SYNCHRONIZATION;
1167 ad_enable_collecting_distributing(port,
1168 update_slave_arr);
1169 port->ntt = true;
1170 break;
1171 case AD_MUX_COLLECTING:
1172 port->actor_oper_port_state |= LACP_STATE_COLLECTING;
1173 port->actor_oper_port_state &= ~LACP_STATE_DISTRIBUTING;
1174 port->actor_oper_port_state |= LACP_STATE_SYNCHRONIZATION;
1175 ad_enable_collecting(port);
1176 ad_disable_distributing(port, update_slave_arr);
1177 port->ntt = true;
1178 break;
1179 case AD_MUX_DISTRIBUTING:
1180 port->actor_oper_port_state |= LACP_STATE_DISTRIBUTING;
1181 port->actor_oper_port_state |= LACP_STATE_SYNCHRONIZATION;
1182 ad_enable_collecting_distributing(port,
1183 update_slave_arr);
1184 break;
1185 default:
1186 break;
1187 }
1188 }
1189 }
1190
1191 /**
1192 * ad_rx_machine - handle a port's rx State Machine
1193 * @lacpdu: the lacpdu we've received
1194 * @port: the port we're looking at
1195 *
1196 * If lacpdu arrived, stop previous timer (if exists) and set the next state as
1197 * CURRENT. If timer expired set the state machine in the proper state.
1198 * In other cases, this function checks if we need to switch to other state.
1199 */
ad_rx_machine(struct lacpdu * lacpdu,struct port * port)1200 static void ad_rx_machine(struct lacpdu *lacpdu, struct port *port)
1201 {
1202 rx_states_t last_state;
1203
1204 /* keep current State Machine state to compare later if it was
1205 * changed
1206 */
1207 last_state = port->sm_rx_state;
1208
1209 if (lacpdu) {
1210 atomic64_inc(&SLAVE_AD_INFO(port->slave)->stats.lacpdu_rx);
1211 atomic64_inc(&BOND_AD_INFO(port->slave->bond).stats.lacpdu_rx);
1212 }
1213 /* check if state machine should change state */
1214
1215 /* first, check if port was reinitialized */
1216 if (port->sm_vars & AD_PORT_BEGIN) {
1217 port->sm_rx_state = AD_RX_INITIALIZE;
1218 port->sm_vars |= AD_PORT_CHURNED;
1219 /* check if port is not enabled */
1220 } else if (!(port->sm_vars & AD_PORT_BEGIN) && !port->is_enabled)
1221 port->sm_rx_state = AD_RX_PORT_DISABLED;
1222 /* check if new lacpdu arrived */
1223 else if (lacpdu && ((port->sm_rx_state == AD_RX_EXPIRED) ||
1224 (port->sm_rx_state == AD_RX_DEFAULTED) ||
1225 (port->sm_rx_state == AD_RX_CURRENT))) {
1226 if (port->sm_rx_state != AD_RX_CURRENT)
1227 port->sm_vars |= AD_PORT_CHURNED;
1228 port->sm_rx_timer_counter = 0;
1229 port->sm_rx_state = AD_RX_CURRENT;
1230 } else {
1231 /* if timer is on, and if it is expired */
1232 if (port->sm_rx_timer_counter &&
1233 !(--port->sm_rx_timer_counter)) {
1234 switch (port->sm_rx_state) {
1235 case AD_RX_EXPIRED:
1236 port->sm_rx_state = AD_RX_DEFAULTED;
1237 break;
1238 case AD_RX_CURRENT:
1239 port->sm_rx_state = AD_RX_EXPIRED;
1240 break;
1241 default:
1242 break;
1243 }
1244 } else {
1245 /* if no lacpdu arrived and no timer is on */
1246 switch (port->sm_rx_state) {
1247 case AD_RX_PORT_DISABLED:
1248 if (port->is_enabled &&
1249 (port->sm_vars & AD_PORT_LACP_ENABLED))
1250 port->sm_rx_state = AD_RX_EXPIRED;
1251 else if (port->is_enabled
1252 && ((port->sm_vars
1253 & AD_PORT_LACP_ENABLED) == 0))
1254 port->sm_rx_state = AD_RX_LACP_DISABLED;
1255 break;
1256 default:
1257 break;
1258
1259 }
1260 }
1261 }
1262
1263 /* check if the State machine was changed or new lacpdu arrived */
1264 if ((port->sm_rx_state != last_state) || (lacpdu)) {
1265 slave_dbg(port->slave->bond->dev, port->slave->dev,
1266 "Rx Machine: Port=%d, Last State=%d, Curr State=%d\n",
1267 port->actor_port_number,
1268 last_state,
1269 port->sm_rx_state);
1270 switch (port->sm_rx_state) {
1271 case AD_RX_INITIALIZE:
1272 if (!(port->actor_oper_port_key & AD_DUPLEX_KEY_MASKS))
1273 port->sm_vars &= ~AD_PORT_LACP_ENABLED;
1274 else
1275 port->sm_vars |= AD_PORT_LACP_ENABLED;
1276 port->sm_vars &= ~AD_PORT_SELECTED;
1277 __record_default(port);
1278 port->actor_oper_port_state &= ~LACP_STATE_EXPIRED;
1279 port->sm_rx_state = AD_RX_PORT_DISABLED;
1280
1281 fallthrough;
1282 case AD_RX_PORT_DISABLED:
1283 port->sm_vars &= ~AD_PORT_MATCHED;
1284 break;
1285 case AD_RX_LACP_DISABLED:
1286 port->sm_vars &= ~AD_PORT_SELECTED;
1287 __record_default(port);
1288 port->partner_oper.port_state &= ~LACP_STATE_AGGREGATION;
1289 port->sm_vars |= AD_PORT_MATCHED;
1290 port->actor_oper_port_state &= ~LACP_STATE_EXPIRED;
1291 break;
1292 case AD_RX_EXPIRED:
1293 /* Reset of the Synchronization flag (Standard 43.4.12)
1294 * This reset cause to disable this port in the
1295 * COLLECTING_DISTRIBUTING state of the mux machine in
1296 * case of EXPIRED even if LINK_DOWN didn't arrive for
1297 * the port.
1298 */
1299 port->sm_vars &= ~AD_PORT_MATCHED;
1300 /* Based on IEEE 8021AX-2014, Figure 6-18 - Receive
1301 * machine state diagram, the statue should be
1302 * Partner_Oper_Port_State.Synchronization = FALSE;
1303 * Partner_Oper_Port_State.LACP_Timeout = Short Timeout;
1304 * start current_while_timer(Short Timeout);
1305 * Actor_Oper_Port_State.Expired = TRUE;
1306 */
1307 port->partner_oper.port_state &= ~LACP_STATE_SYNCHRONIZATION;
1308 port->partner_oper.port_state |= LACP_STATE_LACP_TIMEOUT;
1309 port->sm_rx_timer_counter = __ad_timer_to_ticks(AD_CURRENT_WHILE_TIMER, (u16)(AD_SHORT_TIMEOUT));
1310 port->actor_oper_port_state |= LACP_STATE_EXPIRED;
1311 port->sm_vars |= AD_PORT_CHURNED;
1312 break;
1313 case AD_RX_DEFAULTED:
1314 __update_default_selected(port);
1315 __record_default(port);
1316 port->sm_vars |= AD_PORT_MATCHED;
1317 port->actor_oper_port_state &= ~LACP_STATE_EXPIRED;
1318 break;
1319 case AD_RX_CURRENT:
1320 /* detect loopback situation */
1321 if (MAC_ADDRESS_EQUAL(&(lacpdu->actor_system),
1322 &(port->actor_system))) {
1323 slave_err(port->slave->bond->dev, port->slave->dev, "An illegal loopback occurred on slave\n"
1324 "Check the configuration to verify that all adapters are connected to 802.3ad compliant switch ports\n");
1325 return;
1326 }
1327 __update_selected(lacpdu, port);
1328 __update_ntt(lacpdu, port);
1329 __record_pdu(lacpdu, port);
1330 port->sm_rx_timer_counter = __ad_timer_to_ticks(AD_CURRENT_WHILE_TIMER, (u16)(port->actor_oper_port_state & LACP_STATE_LACP_TIMEOUT));
1331 port->actor_oper_port_state &= ~LACP_STATE_EXPIRED;
1332 break;
1333 default:
1334 break;
1335 }
1336 }
1337 }
1338
1339 /**
1340 * ad_churn_machine - handle port churn's state machine
1341 * @port: the port we're looking at
1342 *
1343 */
ad_churn_machine(struct port * port)1344 static void ad_churn_machine(struct port *port)
1345 {
1346 if (port->sm_vars & AD_PORT_CHURNED) {
1347 port->sm_vars &= ~AD_PORT_CHURNED;
1348 port->sm_churn_actor_state = AD_CHURN_MONITOR;
1349 port->sm_churn_partner_state = AD_CHURN_MONITOR;
1350 port->sm_churn_actor_timer_counter =
1351 __ad_timer_to_ticks(AD_ACTOR_CHURN_TIMER, 0);
1352 port->sm_churn_partner_timer_counter =
1353 __ad_timer_to_ticks(AD_PARTNER_CHURN_TIMER, 0);
1354 return;
1355 }
1356 if (port->sm_churn_actor_timer_counter &&
1357 !(--port->sm_churn_actor_timer_counter) &&
1358 port->sm_churn_actor_state == AD_CHURN_MONITOR) {
1359 if (port->actor_oper_port_state & LACP_STATE_SYNCHRONIZATION) {
1360 port->sm_churn_actor_state = AD_NO_CHURN;
1361 } else {
1362 port->churn_actor_count++;
1363 port->sm_churn_actor_state = AD_CHURN;
1364 }
1365 }
1366 if (port->sm_churn_partner_timer_counter &&
1367 !(--port->sm_churn_partner_timer_counter) &&
1368 port->sm_churn_partner_state == AD_CHURN_MONITOR) {
1369 if (port->partner_oper.port_state & LACP_STATE_SYNCHRONIZATION) {
1370 port->sm_churn_partner_state = AD_NO_CHURN;
1371 } else {
1372 port->churn_partner_count++;
1373 port->sm_churn_partner_state = AD_CHURN;
1374 }
1375 }
1376 }
1377
1378 /**
1379 * ad_tx_machine - handle a port's tx state machine
1380 * @port: the port we're looking at
1381 */
ad_tx_machine(struct port * port)1382 static void ad_tx_machine(struct port *port)
1383 {
1384 /* check if tx timer expired, to verify that we do not send more than
1385 * 3 packets per second
1386 */
1387 if (port->sm_tx_timer_counter && !(--port->sm_tx_timer_counter)) {
1388 /* check if there is something to send */
1389 if (port->ntt && (port->sm_vars & AD_PORT_LACP_ENABLED)) {
1390 __update_lacpdu_from_port(port);
1391
1392 if (ad_lacpdu_send(port) >= 0) {
1393 slave_dbg(port->slave->bond->dev,
1394 port->slave->dev,
1395 "Sent LACPDU on port %d\n",
1396 port->actor_port_number);
1397
1398 /* mark ntt as false, so it will not be sent
1399 * again until demanded
1400 */
1401 port->ntt = false;
1402 }
1403 }
1404 /* restart tx timer(to verify that we will not exceed
1405 * AD_MAX_TX_IN_SECOND
1406 */
1407 port->sm_tx_timer_counter = ad_ticks_per_sec/AD_MAX_TX_IN_SECOND;
1408 }
1409 }
1410
1411 /**
1412 * ad_periodic_machine - handle a port's periodic state machine
1413 * @port: the port we're looking at
1414 *
1415 * Turn ntt flag on priodically to perform periodic transmission of lacpdu's.
1416 */
ad_periodic_machine(struct port * port)1417 static void ad_periodic_machine(struct port *port)
1418 {
1419 periodic_states_t last_state;
1420
1421 /* keep current state machine state to compare later if it was changed */
1422 last_state = port->sm_periodic_state;
1423
1424 /* check if port was reinitialized */
1425 if (((port->sm_vars & AD_PORT_BEGIN) || !(port->sm_vars & AD_PORT_LACP_ENABLED) || !port->is_enabled) ||
1426 (!(port->actor_oper_port_state & LACP_STATE_LACP_ACTIVITY) && !(port->partner_oper.port_state & LACP_STATE_LACP_ACTIVITY))) {
1427 port->sm_periodic_state = AD_NO_PERIODIC;
1428 }
1429 /* check if state machine should change state */
1430 else if (port->sm_periodic_timer_counter) {
1431 /* check if periodic state machine expired */
1432 if (!(--port->sm_periodic_timer_counter)) {
1433 /* if expired then do tx */
1434 port->sm_periodic_state = AD_PERIODIC_TX;
1435 } else {
1436 /* If not expired, check if there is some new timeout
1437 * parameter from the partner state
1438 */
1439 switch (port->sm_periodic_state) {
1440 case AD_FAST_PERIODIC:
1441 if (!(port->partner_oper.port_state
1442 & LACP_STATE_LACP_TIMEOUT))
1443 port->sm_periodic_state = AD_SLOW_PERIODIC;
1444 break;
1445 case AD_SLOW_PERIODIC:
1446 if ((port->partner_oper.port_state & LACP_STATE_LACP_TIMEOUT)) {
1447 port->sm_periodic_timer_counter = 0;
1448 port->sm_periodic_state = AD_PERIODIC_TX;
1449 }
1450 break;
1451 default:
1452 break;
1453 }
1454 }
1455 } else {
1456 switch (port->sm_periodic_state) {
1457 case AD_NO_PERIODIC:
1458 port->sm_periodic_state = AD_FAST_PERIODIC;
1459 break;
1460 case AD_PERIODIC_TX:
1461 if (!(port->partner_oper.port_state &
1462 LACP_STATE_LACP_TIMEOUT))
1463 port->sm_periodic_state = AD_SLOW_PERIODIC;
1464 else
1465 port->sm_periodic_state = AD_FAST_PERIODIC;
1466 break;
1467 default:
1468 break;
1469 }
1470 }
1471
1472 /* check if the state machine was changed */
1473 if (port->sm_periodic_state != last_state) {
1474 slave_dbg(port->slave->bond->dev, port->slave->dev,
1475 "Periodic Machine: Port=%d, Last State=%d, Curr State=%d\n",
1476 port->actor_port_number, last_state,
1477 port->sm_periodic_state);
1478 switch (port->sm_periodic_state) {
1479 case AD_NO_PERIODIC:
1480 port->sm_periodic_timer_counter = 0;
1481 break;
1482 case AD_FAST_PERIODIC:
1483 /* decrement 1 tick we lost in the PERIODIC_TX cycle */
1484 port->sm_periodic_timer_counter = __ad_timer_to_ticks(AD_PERIODIC_TIMER, (u16)(AD_FAST_PERIODIC_TIME))-1;
1485 break;
1486 case AD_SLOW_PERIODIC:
1487 /* decrement 1 tick we lost in the PERIODIC_TX cycle */
1488 port->sm_periodic_timer_counter = __ad_timer_to_ticks(AD_PERIODIC_TIMER, (u16)(AD_SLOW_PERIODIC_TIME))-1;
1489 break;
1490 case AD_PERIODIC_TX:
1491 port->ntt = true;
1492 break;
1493 default:
1494 break;
1495 }
1496 }
1497 }
1498
1499 /**
1500 * ad_port_selection_logic - select aggregation groups
1501 * @port: the port we're looking at
1502 * @update_slave_arr: Does slave array need update?
1503 *
1504 * Select aggregation groups, and assign each port for it's aggregetor. The
1505 * selection logic is called in the inititalization (after all the handshkes),
1506 * and after every lacpdu receive (if selected is off).
1507 */
ad_port_selection_logic(struct port * port,bool * update_slave_arr)1508 static void ad_port_selection_logic(struct port *port, bool *update_slave_arr)
1509 {
1510 struct aggregator *aggregator, *free_aggregator = NULL, *temp_aggregator;
1511 struct port *last_port = NULL, *curr_port;
1512 struct list_head *iter;
1513 struct bonding *bond;
1514 struct slave *slave;
1515 int found = 0;
1516
1517 /* if the port is already Selected, do nothing */
1518 if (port->sm_vars & AD_PORT_SELECTED)
1519 return;
1520
1521 bond = __get_bond_by_port(port);
1522
1523 /* if the port is connected to other aggregator, detach it */
1524 if (port->aggregator) {
1525 /* detach the port from its former aggregator */
1526 temp_aggregator = port->aggregator;
1527 for (curr_port = temp_aggregator->lag_ports; curr_port;
1528 last_port = curr_port,
1529 curr_port = curr_port->next_port_in_aggregator) {
1530 if (curr_port == port) {
1531 temp_aggregator->num_of_ports--;
1532 /* if it is the first port attached to the
1533 * aggregator
1534 */
1535 if (!last_port) {
1536 temp_aggregator->lag_ports =
1537 port->next_port_in_aggregator;
1538 } else {
1539 /* not the first port attached to the
1540 * aggregator
1541 */
1542 last_port->next_port_in_aggregator =
1543 port->next_port_in_aggregator;
1544 }
1545
1546 /* clear the port's relations to this
1547 * aggregator
1548 */
1549 port->aggregator = NULL;
1550 port->next_port_in_aggregator = NULL;
1551 port->actor_port_aggregator_identifier = 0;
1552
1553 slave_dbg(bond->dev, port->slave->dev, "Port %d left LAG %d\n",
1554 port->actor_port_number,
1555 temp_aggregator->aggregator_identifier);
1556 /* if the aggregator is empty, clear its
1557 * parameters, and set it ready to be attached
1558 */
1559 if (!temp_aggregator->lag_ports)
1560 ad_clear_agg(temp_aggregator);
1561 break;
1562 }
1563 }
1564 if (!curr_port) {
1565 /* meaning: the port was related to an aggregator
1566 * but was not on the aggregator port list
1567 */
1568 net_warn_ratelimited("%s: (slave %s): Warning: Port %d was related to aggregator %d but was not on its port list\n",
1569 port->slave->bond->dev->name,
1570 port->slave->dev->name,
1571 port->actor_port_number,
1572 port->aggregator->aggregator_identifier);
1573 }
1574 }
1575 /* search on all aggregators for a suitable aggregator for this port */
1576 bond_for_each_slave(bond, slave, iter) {
1577 aggregator = &(SLAVE_AD_INFO(slave)->aggregator);
1578
1579 /* keep a free aggregator for later use(if needed) */
1580 if (!aggregator->lag_ports) {
1581 if (!free_aggregator)
1582 free_aggregator = aggregator;
1583 continue;
1584 }
1585 /* check if current aggregator suits us */
1586 if (((aggregator->actor_oper_aggregator_key == port->actor_oper_port_key) && /* if all parameters match AND */
1587 MAC_ADDRESS_EQUAL(&(aggregator->partner_system), &(port->partner_oper.system)) &&
1588 (aggregator->partner_system_priority == port->partner_oper.system_priority) &&
1589 (aggregator->partner_oper_aggregator_key == port->partner_oper.key)
1590 ) &&
1591 ((__agg_has_partner(aggregator) && /* partner answers */
1592 !aggregator->is_individual) /* but is not individual OR */
1593 )
1594 ) {
1595 /* attach to the founded aggregator */
1596 port->aggregator = aggregator;
1597 port->actor_port_aggregator_identifier =
1598 port->aggregator->aggregator_identifier;
1599 port->next_port_in_aggregator = aggregator->lag_ports;
1600 port->aggregator->num_of_ports++;
1601 aggregator->lag_ports = port;
1602 slave_dbg(bond->dev, slave->dev, "Port %d joined LAG %d (existing LAG)\n",
1603 port->actor_port_number,
1604 port->aggregator->aggregator_identifier);
1605
1606 /* mark this port as selected */
1607 port->sm_vars |= AD_PORT_SELECTED;
1608 found = 1;
1609 break;
1610 }
1611 }
1612
1613 /* the port couldn't find an aggregator - attach it to a new
1614 * aggregator
1615 */
1616 if (!found) {
1617 if (free_aggregator) {
1618 /* assign port a new aggregator */
1619 port->aggregator = free_aggregator;
1620 port->actor_port_aggregator_identifier =
1621 port->aggregator->aggregator_identifier;
1622
1623 /* update the new aggregator's parameters
1624 * if port was responsed from the end-user
1625 */
1626 if (port->actor_oper_port_key & AD_DUPLEX_KEY_MASKS)
1627 /* if port is full duplex */
1628 port->aggregator->is_individual = false;
1629 else
1630 port->aggregator->is_individual = true;
1631
1632 port->aggregator->actor_admin_aggregator_key =
1633 port->actor_admin_port_key;
1634 port->aggregator->actor_oper_aggregator_key =
1635 port->actor_oper_port_key;
1636 port->aggregator->partner_system =
1637 port->partner_oper.system;
1638 port->aggregator->partner_system_priority =
1639 port->partner_oper.system_priority;
1640 port->aggregator->partner_oper_aggregator_key = port->partner_oper.key;
1641 port->aggregator->receive_state = 1;
1642 port->aggregator->transmit_state = 1;
1643 port->aggregator->lag_ports = port;
1644 port->aggregator->num_of_ports++;
1645
1646 /* mark this port as selected */
1647 port->sm_vars |= AD_PORT_SELECTED;
1648
1649 slave_dbg(bond->dev, port->slave->dev, "Port %d joined LAG %d (new LAG)\n",
1650 port->actor_port_number,
1651 port->aggregator->aggregator_identifier);
1652 } else {
1653 slave_err(bond->dev, port->slave->dev,
1654 "Port %d did not find a suitable aggregator\n",
1655 port->actor_port_number);
1656 return;
1657 }
1658 }
1659 /* if all aggregator's ports are READY_N == TRUE, set ready=TRUE
1660 * in all aggregator's ports, else set ready=FALSE in all
1661 * aggregator's ports
1662 */
1663 __set_agg_ports_ready(port->aggregator,
1664 __agg_ports_are_ready(port->aggregator));
1665
1666 aggregator = __get_first_agg(port);
1667 ad_agg_selection_logic(aggregator, update_slave_arr);
1668
1669 if (!port->aggregator->is_active)
1670 port->actor_oper_port_state &= ~LACP_STATE_SYNCHRONIZATION;
1671 }
1672
1673 /* Decide if "agg" is a better choice for the new active aggregator that
1674 * the current best, according to the ad_select policy.
1675 */
ad_agg_selection_test(struct aggregator * best,struct aggregator * curr)1676 static struct aggregator *ad_agg_selection_test(struct aggregator *best,
1677 struct aggregator *curr)
1678 {
1679 /* 0. If no best, select current.
1680 *
1681 * 1. If the current agg is not individual, and the best is
1682 * individual, select current.
1683 *
1684 * 2. If current agg is individual and the best is not, keep best.
1685 *
1686 * 3. Therefore, current and best are both individual or both not
1687 * individual, so:
1688 *
1689 * 3a. If current agg partner replied, and best agg partner did not,
1690 * select current.
1691 *
1692 * 3b. If current agg partner did not reply and best agg partner
1693 * did reply, keep best.
1694 *
1695 * 4. Therefore, current and best both have partner replies or
1696 * both do not, so perform selection policy:
1697 *
1698 * BOND_AD_COUNT: Select by count of ports. If count is equal,
1699 * select by bandwidth.
1700 *
1701 * BOND_AD_STABLE, BOND_AD_BANDWIDTH: Select by bandwidth.
1702 */
1703 if (!best)
1704 return curr;
1705
1706 if (!curr->is_individual && best->is_individual)
1707 return curr;
1708
1709 if (curr->is_individual && !best->is_individual)
1710 return best;
1711
1712 if (__agg_has_partner(curr) && !__agg_has_partner(best))
1713 return curr;
1714
1715 if (!__agg_has_partner(curr) && __agg_has_partner(best))
1716 return best;
1717
1718 switch (__get_agg_selection_mode(curr->lag_ports)) {
1719 case BOND_AD_COUNT:
1720 if (__agg_active_ports(curr) > __agg_active_ports(best))
1721 return curr;
1722
1723 if (__agg_active_ports(curr) < __agg_active_ports(best))
1724 return best;
1725
1726 fallthrough;
1727 case BOND_AD_STABLE:
1728 case BOND_AD_BANDWIDTH:
1729 if (__get_agg_bandwidth(curr) > __get_agg_bandwidth(best))
1730 return curr;
1731
1732 break;
1733
1734 default:
1735 net_warn_ratelimited("%s: (slave %s): Impossible agg select mode %d\n",
1736 curr->slave->bond->dev->name,
1737 curr->slave->dev->name,
1738 __get_agg_selection_mode(curr->lag_ports));
1739 break;
1740 }
1741
1742 return best;
1743 }
1744
agg_device_up(const struct aggregator * agg)1745 static int agg_device_up(const struct aggregator *agg)
1746 {
1747 struct port *port = agg->lag_ports;
1748
1749 if (!port)
1750 return 0;
1751
1752 for (port = agg->lag_ports; port;
1753 port = port->next_port_in_aggregator) {
1754 if (netif_running(port->slave->dev) &&
1755 netif_carrier_ok(port->slave->dev))
1756 return 1;
1757 }
1758
1759 return 0;
1760 }
1761
1762 /**
1763 * ad_agg_selection_logic - select an aggregation group for a team
1764 * @agg: the aggregator we're looking at
1765 * @update_slave_arr: Does slave array need update?
1766 *
1767 * It is assumed that only one aggregator may be selected for a team.
1768 *
1769 * The logic of this function is to select the aggregator according to
1770 * the ad_select policy:
1771 *
1772 * BOND_AD_STABLE: select the aggregator with the most ports attached to
1773 * it, and to reselect the active aggregator only if the previous
1774 * aggregator has no more ports related to it.
1775 *
1776 * BOND_AD_BANDWIDTH: select the aggregator with the highest total
1777 * bandwidth, and reselect whenever a link state change takes place or the
1778 * set of slaves in the bond changes.
1779 *
1780 * BOND_AD_COUNT: select the aggregator with largest number of ports
1781 * (slaves), and reselect whenever a link state change takes place or the
1782 * set of slaves in the bond changes.
1783 *
1784 * FIXME: this function MUST be called with the first agg in the bond, or
1785 * __get_active_agg() won't work correctly. This function should be better
1786 * called with the bond itself, and retrieve the first agg from it.
1787 */
ad_agg_selection_logic(struct aggregator * agg,bool * update_slave_arr)1788 static void ad_agg_selection_logic(struct aggregator *agg,
1789 bool *update_slave_arr)
1790 {
1791 struct aggregator *best, *active, *origin;
1792 struct bonding *bond = agg->slave->bond;
1793 struct list_head *iter;
1794 struct slave *slave;
1795 struct port *port;
1796
1797 rcu_read_lock();
1798 origin = agg;
1799 active = __get_active_agg(agg);
1800 best = (active && agg_device_up(active)) ? active : NULL;
1801
1802 bond_for_each_slave_rcu(bond, slave, iter) {
1803 agg = &(SLAVE_AD_INFO(slave)->aggregator);
1804
1805 agg->is_active = 0;
1806
1807 if (__agg_active_ports(agg) && agg_device_up(agg))
1808 best = ad_agg_selection_test(best, agg);
1809 }
1810
1811 if (best &&
1812 __get_agg_selection_mode(best->lag_ports) == BOND_AD_STABLE) {
1813 /* For the STABLE policy, don't replace the old active
1814 * aggregator if it's still active (it has an answering
1815 * partner) or if both the best and active don't have an
1816 * answering partner.
1817 */
1818 if (active && active->lag_ports &&
1819 __agg_active_ports(active) &&
1820 (__agg_has_partner(active) ||
1821 (!__agg_has_partner(active) &&
1822 !__agg_has_partner(best)))) {
1823 if (!(!active->actor_oper_aggregator_key &&
1824 best->actor_oper_aggregator_key)) {
1825 best = NULL;
1826 active->is_active = 1;
1827 }
1828 }
1829 }
1830
1831 if (best && (best == active)) {
1832 best = NULL;
1833 active->is_active = 1;
1834 }
1835
1836 /* if there is new best aggregator, activate it */
1837 if (best) {
1838 netdev_dbg(bond->dev, "(slave %s): best Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1839 best->slave ? best->slave->dev->name : "NULL",
1840 best->aggregator_identifier, best->num_of_ports,
1841 best->actor_oper_aggregator_key,
1842 best->partner_oper_aggregator_key,
1843 best->is_individual, best->is_active);
1844 netdev_dbg(bond->dev, "(slave %s): best ports %p slave %p\n",
1845 best->slave ? best->slave->dev->name : "NULL",
1846 best->lag_ports, best->slave);
1847
1848 bond_for_each_slave_rcu(bond, slave, iter) {
1849 agg = &(SLAVE_AD_INFO(slave)->aggregator);
1850
1851 slave_dbg(bond->dev, slave->dev, "Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1852 agg->aggregator_identifier, agg->num_of_ports,
1853 agg->actor_oper_aggregator_key,
1854 agg->partner_oper_aggregator_key,
1855 agg->is_individual, agg->is_active);
1856 }
1857
1858 /* check if any partner replies */
1859 if (best->is_individual)
1860 net_warn_ratelimited("%s: Warning: No 802.3ad response from the link partner for any adapters in the bond\n",
1861 bond->dev->name);
1862
1863 best->is_active = 1;
1864 netdev_dbg(bond->dev, "(slave %s): LAG %d chosen as the active LAG\n",
1865 best->slave ? best->slave->dev->name : "NULL",
1866 best->aggregator_identifier);
1867 netdev_dbg(bond->dev, "(slave %s): Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1868 best->slave ? best->slave->dev->name : "NULL",
1869 best->aggregator_identifier, best->num_of_ports,
1870 best->actor_oper_aggregator_key,
1871 best->partner_oper_aggregator_key,
1872 best->is_individual, best->is_active);
1873
1874 /* disable the ports that were related to the former
1875 * active_aggregator
1876 */
1877 if (active) {
1878 for (port = active->lag_ports; port;
1879 port = port->next_port_in_aggregator) {
1880 __disable_port(port);
1881 }
1882 }
1883 /* Slave array needs update. */
1884 *update_slave_arr = true;
1885 }
1886
1887 /* if the selected aggregator is of join individuals
1888 * (partner_system is NULL), enable their ports
1889 */
1890 active = __get_active_agg(origin);
1891
1892 if (active) {
1893 if (!__agg_has_partner(active)) {
1894 for (port = active->lag_ports; port;
1895 port = port->next_port_in_aggregator) {
1896 __enable_port(port);
1897 }
1898 *update_slave_arr = true;
1899 }
1900 }
1901
1902 rcu_read_unlock();
1903
1904 bond_3ad_set_carrier(bond);
1905 }
1906
1907 /**
1908 * ad_clear_agg - clear a given aggregator's parameters
1909 * @aggregator: the aggregator we're looking at
1910 */
ad_clear_agg(struct aggregator * aggregator)1911 static void ad_clear_agg(struct aggregator *aggregator)
1912 {
1913 if (aggregator) {
1914 aggregator->is_individual = false;
1915 aggregator->actor_admin_aggregator_key = 0;
1916 aggregator->actor_oper_aggregator_key = 0;
1917 eth_zero_addr(aggregator->partner_system.mac_addr_value);
1918 aggregator->partner_system_priority = 0;
1919 aggregator->partner_oper_aggregator_key = 0;
1920 aggregator->receive_state = 0;
1921 aggregator->transmit_state = 0;
1922 aggregator->lag_ports = NULL;
1923 aggregator->is_active = 0;
1924 aggregator->num_of_ports = 0;
1925 pr_debug("%s: LAG %d was cleared\n",
1926 aggregator->slave ?
1927 aggregator->slave->dev->name : "NULL",
1928 aggregator->aggregator_identifier);
1929 }
1930 }
1931
1932 /**
1933 * ad_initialize_agg - initialize a given aggregator's parameters
1934 * @aggregator: the aggregator we're looking at
1935 */
ad_initialize_agg(struct aggregator * aggregator)1936 static void ad_initialize_agg(struct aggregator *aggregator)
1937 {
1938 if (aggregator) {
1939 ad_clear_agg(aggregator);
1940
1941 eth_zero_addr(aggregator->aggregator_mac_address.mac_addr_value);
1942 aggregator->aggregator_identifier = 0;
1943 aggregator->slave = NULL;
1944 }
1945 }
1946
1947 /**
1948 * ad_initialize_port - initialize a given port's parameters
1949 * @port: the port we're looking at
1950 * @bond_params: bond parameters we will use
1951 */
ad_initialize_port(struct port * port,const struct bond_params * bond_params)1952 static void ad_initialize_port(struct port *port, const struct bond_params *bond_params)
1953 {
1954 static const struct port_params tmpl = {
1955 .system_priority = 0xffff,
1956 .key = 1,
1957 .port_number = 1,
1958 .port_priority = 0xff,
1959 .port_state = 0,
1960 };
1961 static const struct lacpdu lacpdu = {
1962 .subtype = 0x01,
1963 .version_number = 0x01,
1964 .tlv_type_actor_info = 0x01,
1965 .actor_information_length = 0x14,
1966 .tlv_type_partner_info = 0x02,
1967 .partner_information_length = 0x14,
1968 .tlv_type_collector_info = 0x03,
1969 .collector_information_length = 0x10,
1970 .collector_max_delay = htons(AD_COLLECTOR_MAX_DELAY),
1971 };
1972
1973 if (port) {
1974 port->actor_port_priority = 0xff;
1975 port->actor_port_aggregator_identifier = 0;
1976 port->ntt = false;
1977 port->actor_admin_port_state = LACP_STATE_AGGREGATION;
1978 port->actor_oper_port_state = LACP_STATE_AGGREGATION;
1979 if (bond_params->lacp_active) {
1980 port->actor_admin_port_state |= LACP_STATE_LACP_ACTIVITY;
1981 port->actor_oper_port_state |= LACP_STATE_LACP_ACTIVITY;
1982 }
1983
1984 if (bond_params->lacp_fast)
1985 port->actor_oper_port_state |= LACP_STATE_LACP_TIMEOUT;
1986
1987 memcpy(&port->partner_admin, &tmpl, sizeof(tmpl));
1988 memcpy(&port->partner_oper, &tmpl, sizeof(tmpl));
1989
1990 port->is_enabled = true;
1991 /* private parameters */
1992 port->sm_vars = AD_PORT_BEGIN | AD_PORT_LACP_ENABLED;
1993 port->sm_rx_state = 0;
1994 port->sm_rx_timer_counter = 0;
1995 port->sm_periodic_state = 0;
1996 port->sm_periodic_timer_counter = 0;
1997 port->sm_mux_state = 0;
1998 port->sm_mux_timer_counter = 0;
1999 port->sm_tx_state = 0;
2000 port->aggregator = NULL;
2001 port->next_port_in_aggregator = NULL;
2002 port->transaction_id = 0;
2003
2004 port->sm_churn_actor_timer_counter = 0;
2005 port->sm_churn_actor_state = 0;
2006 port->churn_actor_count = 0;
2007 port->sm_churn_partner_timer_counter = 0;
2008 port->sm_churn_partner_state = 0;
2009 port->churn_partner_count = 0;
2010
2011 memcpy(&port->lacpdu, &lacpdu, sizeof(lacpdu));
2012 }
2013 }
2014
2015 /**
2016 * ad_enable_collecting - enable a port's receive
2017 * @port: the port we're looking at
2018 *
2019 * Enable @port if it's in an active aggregator
2020 */
ad_enable_collecting(struct port * port)2021 static void ad_enable_collecting(struct port *port)
2022 {
2023 if (port->aggregator->is_active) {
2024 struct slave *slave = port->slave;
2025
2026 slave_dbg(slave->bond->dev, slave->dev,
2027 "Enabling collecting on port %d (LAG %d)\n",
2028 port->actor_port_number,
2029 port->aggregator->aggregator_identifier);
2030 __enable_collecting_port(port);
2031 }
2032 }
2033
2034 /**
2035 * ad_disable_distributing - disable a port's transmit
2036 * @port: the port we're looking at
2037 * @update_slave_arr: Does slave array need update?
2038 */
ad_disable_distributing(struct port * port,bool * update_slave_arr)2039 static void ad_disable_distributing(struct port *port, bool *update_slave_arr)
2040 {
2041 if (port->aggregator && __agg_has_partner(port->aggregator)) {
2042 slave_dbg(port->slave->bond->dev, port->slave->dev,
2043 "Disabling distributing on port %d (LAG %d)\n",
2044 port->actor_port_number,
2045 port->aggregator->aggregator_identifier);
2046 __disable_distributing_port(port);
2047 /* Slave array needs an update */
2048 *update_slave_arr = true;
2049 }
2050 }
2051
2052 /**
2053 * ad_enable_collecting_distributing - enable a port's transmit/receive
2054 * @port: the port we're looking at
2055 * @update_slave_arr: Does slave array need update?
2056 *
2057 * Enable @port if it's in an active aggregator
2058 */
ad_enable_collecting_distributing(struct port * port,bool * update_slave_arr)2059 static void ad_enable_collecting_distributing(struct port *port,
2060 bool *update_slave_arr)
2061 {
2062 if (port->aggregator->is_active) {
2063 slave_dbg(port->slave->bond->dev, port->slave->dev,
2064 "Enabling port %d (LAG %d)\n",
2065 port->actor_port_number,
2066 port->aggregator->aggregator_identifier);
2067 __enable_port(port);
2068 /* Slave array needs update */
2069 *update_slave_arr = true;
2070 }
2071 }
2072
2073 /**
2074 * ad_disable_collecting_distributing - disable a port's transmit/receive
2075 * @port: the port we're looking at
2076 * @update_slave_arr: Does slave array need update?
2077 */
ad_disable_collecting_distributing(struct port * port,bool * update_slave_arr)2078 static void ad_disable_collecting_distributing(struct port *port,
2079 bool *update_slave_arr)
2080 {
2081 if (port->aggregator && __agg_has_partner(port->aggregator)) {
2082 slave_dbg(port->slave->bond->dev, port->slave->dev,
2083 "Disabling port %d (LAG %d)\n",
2084 port->actor_port_number,
2085 port->aggregator->aggregator_identifier);
2086 __disable_port(port);
2087 /* Slave array needs an update */
2088 *update_slave_arr = true;
2089 }
2090 }
2091
2092 /**
2093 * ad_marker_info_received - handle receive of a Marker information frame
2094 * @marker_info: Marker info received
2095 * @port: the port we're looking at
2096 */
ad_marker_info_received(struct bond_marker * marker_info,struct port * port)2097 static void ad_marker_info_received(struct bond_marker *marker_info,
2098 struct port *port)
2099 {
2100 struct bond_marker marker;
2101
2102 atomic64_inc(&SLAVE_AD_INFO(port->slave)->stats.marker_rx);
2103 atomic64_inc(&BOND_AD_INFO(port->slave->bond).stats.marker_rx);
2104
2105 /* copy the received marker data to the response marker */
2106 memcpy(&marker, marker_info, sizeof(struct bond_marker));
2107 /* change the marker subtype to marker response */
2108 marker.tlv_type = AD_MARKER_RESPONSE_SUBTYPE;
2109
2110 /* send the marker response */
2111 if (ad_marker_send(port, &marker) >= 0)
2112 slave_dbg(port->slave->bond->dev, port->slave->dev,
2113 "Sent Marker Response on port %d\n",
2114 port->actor_port_number);
2115 }
2116
2117 /**
2118 * ad_marker_response_received - handle receive of a marker response frame
2119 * @marker: marker PDU received
2120 * @port: the port we're looking at
2121 *
2122 * This function does nothing since we decided not to implement send and handle
2123 * response for marker PDU's, in this stage, but only to respond to marker
2124 * information.
2125 */
ad_marker_response_received(struct bond_marker * marker,struct port * port)2126 static void ad_marker_response_received(struct bond_marker *marker,
2127 struct port *port)
2128 {
2129 atomic64_inc(&SLAVE_AD_INFO(port->slave)->stats.marker_resp_rx);
2130 atomic64_inc(&BOND_AD_INFO(port->slave->bond).stats.marker_resp_rx);
2131
2132 /* DO NOTHING, SINCE WE DECIDED NOT TO IMPLEMENT THIS FEATURE FOR NOW */
2133 }
2134
2135 /* ========= AD exported functions to the main bonding code ========= */
2136
2137 /* Check aggregators status in team every T seconds */
2138 #define AD_AGGREGATOR_SELECTION_TIMER 8
2139
2140 /**
2141 * bond_3ad_initiate_agg_selection - initate aggregator selection
2142 * @bond: bonding struct
2143 * @timeout: timeout value to set
2144 *
2145 * Set the aggregation selection timer, to initiate an agg selection in
2146 * the very near future. Called during first initialization, and during
2147 * any down to up transitions of the bond.
2148 */
bond_3ad_initiate_agg_selection(struct bonding * bond,int timeout)2149 void bond_3ad_initiate_agg_selection(struct bonding *bond, int timeout)
2150 {
2151 atomic_set(&BOND_AD_INFO(bond).agg_select_timer, timeout);
2152 }
2153
2154 /**
2155 * bond_3ad_initialize - initialize a bond's 802.3ad parameters and structures
2156 * @bond: bonding struct to work on
2157 *
2158 * Can be called only after the mac address of the bond is set.
2159 */
bond_3ad_initialize(struct bonding * bond)2160 void bond_3ad_initialize(struct bonding *bond)
2161 {
2162 BOND_AD_INFO(bond).aggregator_identifier = 0;
2163 BOND_AD_INFO(bond).system.sys_priority =
2164 bond->params.ad_actor_sys_prio;
2165 if (is_zero_ether_addr(bond->params.ad_actor_system))
2166 BOND_AD_INFO(bond).system.sys_mac_addr =
2167 *((struct mac_addr *)bond->dev->dev_addr);
2168 else
2169 BOND_AD_INFO(bond).system.sys_mac_addr =
2170 *((struct mac_addr *)bond->params.ad_actor_system);
2171
2172 bond_3ad_initiate_agg_selection(bond,
2173 AD_AGGREGATOR_SELECTION_TIMER *
2174 ad_ticks_per_sec);
2175 }
2176
2177 /**
2178 * bond_3ad_bind_slave - initialize a slave's port
2179 * @slave: slave struct to work on
2180 *
2181 * Returns: 0 on success
2182 * < 0 on error
2183 */
bond_3ad_bind_slave(struct slave * slave)2184 void bond_3ad_bind_slave(struct slave *slave)
2185 {
2186 struct bonding *bond = bond_get_bond_by_slave(slave);
2187 struct port *port;
2188 struct aggregator *aggregator;
2189
2190 /* check that the slave has not been initialized yet. */
2191 if (SLAVE_AD_INFO(slave)->port.slave != slave) {
2192
2193 /* port initialization */
2194 port = &(SLAVE_AD_INFO(slave)->port);
2195
2196 ad_initialize_port(port, &bond->params);
2197
2198 port->slave = slave;
2199 port->actor_port_number = SLAVE_AD_INFO(slave)->id;
2200 /* key is determined according to the link speed, duplex and
2201 * user key
2202 */
2203 port->actor_admin_port_key = bond->params.ad_user_port_key << 6;
2204 ad_update_actor_keys(port, false);
2205 /* actor system is the bond's system */
2206 __ad_actor_update_port(port);
2207 /* tx timer(to verify that no more than MAX_TX_IN_SECOND
2208 * lacpdu's are sent in one second)
2209 */
2210 port->sm_tx_timer_counter = ad_ticks_per_sec/AD_MAX_TX_IN_SECOND;
2211
2212 __disable_port(port);
2213
2214 /* aggregator initialization */
2215 aggregator = &(SLAVE_AD_INFO(slave)->aggregator);
2216
2217 ad_initialize_agg(aggregator);
2218
2219 aggregator->aggregator_mac_address = *((struct mac_addr *)bond->dev->dev_addr);
2220 aggregator->aggregator_identifier = ++BOND_AD_INFO(bond).aggregator_identifier;
2221 aggregator->slave = slave;
2222 aggregator->is_active = 0;
2223 aggregator->num_of_ports = 0;
2224 }
2225 }
2226
2227 /**
2228 * bond_3ad_unbind_slave - deinitialize a slave's port
2229 * @slave: slave struct to work on
2230 *
2231 * Search for the aggregator that is related to this port, remove the
2232 * aggregator and assign another aggregator for other port related to it
2233 * (if any), and remove the port.
2234 */
bond_3ad_unbind_slave(struct slave * slave)2235 void bond_3ad_unbind_slave(struct slave *slave)
2236 {
2237 struct port *port, *prev_port, *temp_port;
2238 struct aggregator *aggregator, *new_aggregator, *temp_aggregator;
2239 int select_new_active_agg = 0;
2240 struct bonding *bond = slave->bond;
2241 struct slave *slave_iter;
2242 struct list_head *iter;
2243 bool dummy_slave_update; /* Ignore this value as caller updates array */
2244
2245 /* Sync against bond_3ad_state_machine_handler() */
2246 spin_lock_bh(&bond->mode_lock);
2247 aggregator = &(SLAVE_AD_INFO(slave)->aggregator);
2248 port = &(SLAVE_AD_INFO(slave)->port);
2249
2250 /* if slave is null, the whole port is not initialized */
2251 if (!port->slave) {
2252 slave_warn(bond->dev, slave->dev, "Trying to unbind an uninitialized port\n");
2253 goto out;
2254 }
2255
2256 slave_dbg(bond->dev, slave->dev, "Unbinding Link Aggregation Group %d\n",
2257 aggregator->aggregator_identifier);
2258
2259 /* Tell the partner that this port is not suitable for aggregation */
2260 port->actor_oper_port_state &= ~LACP_STATE_SYNCHRONIZATION;
2261 port->actor_oper_port_state &= ~LACP_STATE_COLLECTING;
2262 port->actor_oper_port_state &= ~LACP_STATE_DISTRIBUTING;
2263 port->actor_oper_port_state &= ~LACP_STATE_AGGREGATION;
2264 __update_lacpdu_from_port(port);
2265 ad_lacpdu_send(port);
2266
2267 /* check if this aggregator is occupied */
2268 if (aggregator->lag_ports) {
2269 /* check if there are other ports related to this aggregator
2270 * except the port related to this slave(thats ensure us that
2271 * there is a reason to search for new aggregator, and that we
2272 * will find one
2273 */
2274 if ((aggregator->lag_ports != port) ||
2275 (aggregator->lag_ports->next_port_in_aggregator)) {
2276 /* find new aggregator for the related port(s) */
2277 bond_for_each_slave(bond, slave_iter, iter) {
2278 new_aggregator = &(SLAVE_AD_INFO(slave_iter)->aggregator);
2279 /* if the new aggregator is empty, or it is
2280 * connected to our port only
2281 */
2282 if (!new_aggregator->lag_ports ||
2283 ((new_aggregator->lag_ports == port) &&
2284 !new_aggregator->lag_ports->next_port_in_aggregator))
2285 break;
2286 }
2287 if (!slave_iter)
2288 new_aggregator = NULL;
2289
2290 /* if new aggregator found, copy the aggregator's
2291 * parameters and connect the related lag_ports to the
2292 * new aggregator
2293 */
2294 if ((new_aggregator) && ((!new_aggregator->lag_ports) || ((new_aggregator->lag_ports == port) && !new_aggregator->lag_ports->next_port_in_aggregator))) {
2295 slave_dbg(bond->dev, slave->dev, "Some port(s) related to LAG %d - replacing with LAG %d\n",
2296 aggregator->aggregator_identifier,
2297 new_aggregator->aggregator_identifier);
2298
2299 if ((new_aggregator->lag_ports == port) &&
2300 new_aggregator->is_active) {
2301 slave_info(bond->dev, slave->dev, "Removing an active aggregator\n");
2302 select_new_active_agg = 1;
2303 }
2304
2305 new_aggregator->is_individual = aggregator->is_individual;
2306 new_aggregator->actor_admin_aggregator_key = aggregator->actor_admin_aggregator_key;
2307 new_aggregator->actor_oper_aggregator_key = aggregator->actor_oper_aggregator_key;
2308 new_aggregator->partner_system = aggregator->partner_system;
2309 new_aggregator->partner_system_priority = aggregator->partner_system_priority;
2310 new_aggregator->partner_oper_aggregator_key = aggregator->partner_oper_aggregator_key;
2311 new_aggregator->receive_state = aggregator->receive_state;
2312 new_aggregator->transmit_state = aggregator->transmit_state;
2313 new_aggregator->lag_ports = aggregator->lag_ports;
2314 new_aggregator->is_active = aggregator->is_active;
2315 new_aggregator->num_of_ports = aggregator->num_of_ports;
2316
2317 /* update the information that is written on
2318 * the ports about the aggregator
2319 */
2320 for (temp_port = aggregator->lag_ports; temp_port;
2321 temp_port = temp_port->next_port_in_aggregator) {
2322 temp_port->aggregator = new_aggregator;
2323 temp_port->actor_port_aggregator_identifier = new_aggregator->aggregator_identifier;
2324 }
2325
2326 ad_clear_agg(aggregator);
2327
2328 if (select_new_active_agg)
2329 ad_agg_selection_logic(__get_first_agg(port),
2330 &dummy_slave_update);
2331 } else {
2332 slave_warn(bond->dev, slave->dev, "unbinding aggregator, and could not find a new aggregator for its ports\n");
2333 }
2334 } else {
2335 /* in case that the only port related to this
2336 * aggregator is the one we want to remove
2337 */
2338 select_new_active_agg = aggregator->is_active;
2339 ad_clear_agg(aggregator);
2340 if (select_new_active_agg) {
2341 slave_info(bond->dev, slave->dev, "Removing an active aggregator\n");
2342 /* select new active aggregator */
2343 temp_aggregator = __get_first_agg(port);
2344 if (temp_aggregator)
2345 ad_agg_selection_logic(temp_aggregator,
2346 &dummy_slave_update);
2347 }
2348 }
2349 }
2350
2351 slave_dbg(bond->dev, slave->dev, "Unbinding port %d\n", port->actor_port_number);
2352
2353 /* find the aggregator that this port is connected to */
2354 bond_for_each_slave(bond, slave_iter, iter) {
2355 temp_aggregator = &(SLAVE_AD_INFO(slave_iter)->aggregator);
2356 prev_port = NULL;
2357 /* search the port in the aggregator's related ports */
2358 for (temp_port = temp_aggregator->lag_ports; temp_port;
2359 prev_port = temp_port,
2360 temp_port = temp_port->next_port_in_aggregator) {
2361 if (temp_port == port) {
2362 /* the aggregator found - detach the port from
2363 * this aggregator
2364 */
2365 if (prev_port)
2366 prev_port->next_port_in_aggregator = temp_port->next_port_in_aggregator;
2367 else
2368 temp_aggregator->lag_ports = temp_port->next_port_in_aggregator;
2369 temp_aggregator->num_of_ports--;
2370 if (__agg_active_ports(temp_aggregator) == 0) {
2371 select_new_active_agg = temp_aggregator->is_active;
2372 if (temp_aggregator->num_of_ports == 0)
2373 ad_clear_agg(temp_aggregator);
2374 if (select_new_active_agg) {
2375 slave_info(bond->dev, slave->dev, "Removing an active aggregator\n");
2376 /* select new active aggregator */
2377 ad_agg_selection_logic(__get_first_agg(port),
2378 &dummy_slave_update);
2379 }
2380 }
2381 break;
2382 }
2383 }
2384 }
2385 port->slave = NULL;
2386
2387 out:
2388 spin_unlock_bh(&bond->mode_lock);
2389 }
2390
2391 /**
2392 * bond_3ad_update_ad_actor_settings - reflect change of actor settings to ports
2393 * @bond: bonding struct to work on
2394 *
2395 * If an ad_actor setting gets changed we need to update the individual port
2396 * settings so the bond device will use the new values when it gets upped.
2397 */
bond_3ad_update_ad_actor_settings(struct bonding * bond)2398 void bond_3ad_update_ad_actor_settings(struct bonding *bond)
2399 {
2400 struct list_head *iter;
2401 struct slave *slave;
2402
2403 ASSERT_RTNL();
2404
2405 BOND_AD_INFO(bond).system.sys_priority = bond->params.ad_actor_sys_prio;
2406 if (is_zero_ether_addr(bond->params.ad_actor_system))
2407 BOND_AD_INFO(bond).system.sys_mac_addr =
2408 *((struct mac_addr *)bond->dev->dev_addr);
2409 else
2410 BOND_AD_INFO(bond).system.sys_mac_addr =
2411 *((struct mac_addr *)bond->params.ad_actor_system);
2412
2413 spin_lock_bh(&bond->mode_lock);
2414 bond_for_each_slave(bond, slave, iter) {
2415 struct port *port = &(SLAVE_AD_INFO(slave))->port;
2416
2417 __ad_actor_update_port(port);
2418 port->ntt = true;
2419 }
2420 spin_unlock_bh(&bond->mode_lock);
2421 }
2422
2423 /**
2424 * bond_agg_timer_advance - advance agg_select_timer
2425 * @bond: bonding structure
2426 *
2427 * Return true when agg_select_timer reaches 0.
2428 */
bond_agg_timer_advance(struct bonding * bond)2429 static bool bond_agg_timer_advance(struct bonding *bond)
2430 {
2431 int val, nval;
2432
2433 while (1) {
2434 val = atomic_read(&BOND_AD_INFO(bond).agg_select_timer);
2435 if (!val)
2436 return false;
2437 nval = val - 1;
2438 if (atomic_cmpxchg(&BOND_AD_INFO(bond).agg_select_timer,
2439 val, nval) == val)
2440 break;
2441 }
2442 return nval == 0;
2443 }
2444
2445 /**
2446 * bond_3ad_state_machine_handler - handle state machines timeout
2447 * @work: work context to fetch bonding struct to work on from
2448 *
2449 * The state machine handling concept in this module is to check every tick
2450 * which state machine should operate any function. The execution order is
2451 * round robin, so when we have an interaction between state machines, the
2452 * reply of one to each other might be delayed until next tick.
2453 *
2454 * This function also complete the initialization when the agg_select_timer
2455 * times out, and it selects an aggregator for the ports that are yet not
2456 * related to any aggregator, and selects the active aggregator for a bond.
2457 */
bond_3ad_state_machine_handler(struct work_struct * work)2458 void bond_3ad_state_machine_handler(struct work_struct *work)
2459 {
2460 struct bonding *bond = container_of(work, struct bonding,
2461 ad_work.work);
2462 struct aggregator *aggregator;
2463 struct list_head *iter;
2464 struct slave *slave;
2465 struct port *port;
2466 bool should_notify_rtnl = BOND_SLAVE_NOTIFY_LATER;
2467 bool update_slave_arr = false;
2468
2469 /* Lock to protect data accessed by all (e.g., port->sm_vars) and
2470 * against running with bond_3ad_unbind_slave. ad_rx_machine may run
2471 * concurrently due to incoming LACPDU as well.
2472 */
2473 spin_lock_bh(&bond->mode_lock);
2474 rcu_read_lock();
2475
2476 /* check if there are any slaves */
2477 if (!bond_has_slaves(bond))
2478 goto re_arm;
2479
2480 if (bond_agg_timer_advance(bond)) {
2481 slave = bond_first_slave_rcu(bond);
2482 port = slave ? &(SLAVE_AD_INFO(slave)->port) : NULL;
2483
2484 /* select the active aggregator for the bond */
2485 if (port) {
2486 if (!port->slave) {
2487 net_warn_ratelimited("%s: Warning: bond's first port is uninitialized\n",
2488 bond->dev->name);
2489 goto re_arm;
2490 }
2491
2492 aggregator = __get_first_agg(port);
2493 ad_agg_selection_logic(aggregator, &update_slave_arr);
2494 }
2495 bond_3ad_set_carrier(bond);
2496 }
2497
2498 /* for each port run the state machines */
2499 bond_for_each_slave_rcu(bond, slave, iter) {
2500 port = &(SLAVE_AD_INFO(slave)->port);
2501 if (!port->slave) {
2502 net_warn_ratelimited("%s: Warning: Found an uninitialized port\n",
2503 bond->dev->name);
2504 goto re_arm;
2505 }
2506
2507 ad_rx_machine(NULL, port);
2508 ad_periodic_machine(port);
2509 ad_port_selection_logic(port, &update_slave_arr);
2510 ad_mux_machine(port, &update_slave_arr);
2511 ad_tx_machine(port);
2512 ad_churn_machine(port);
2513
2514 /* turn off the BEGIN bit, since we already handled it */
2515 if (port->sm_vars & AD_PORT_BEGIN)
2516 port->sm_vars &= ~AD_PORT_BEGIN;
2517 }
2518
2519 re_arm:
2520 bond_for_each_slave_rcu(bond, slave, iter) {
2521 if (slave->should_notify) {
2522 should_notify_rtnl = BOND_SLAVE_NOTIFY_NOW;
2523 break;
2524 }
2525 }
2526 rcu_read_unlock();
2527 spin_unlock_bh(&bond->mode_lock);
2528
2529 if (update_slave_arr)
2530 bond_slave_arr_work_rearm(bond, 0);
2531
2532 if (should_notify_rtnl && rtnl_trylock()) {
2533 bond_slave_state_notify(bond);
2534 rtnl_unlock();
2535 }
2536 queue_delayed_work(bond->wq, &bond->ad_work, ad_delta_in_ticks);
2537 }
2538
2539 /**
2540 * bond_3ad_rx_indication - handle a received frame
2541 * @lacpdu: received lacpdu
2542 * @slave: slave struct to work on
2543 *
2544 * It is assumed that frames that were sent on this NIC don't returned as new
2545 * received frames (loopback). Since only the payload is given to this
2546 * function, it check for loopback.
2547 */
bond_3ad_rx_indication(struct lacpdu * lacpdu,struct slave * slave)2548 static int bond_3ad_rx_indication(struct lacpdu *lacpdu, struct slave *slave)
2549 {
2550 struct bonding *bond = slave->bond;
2551 int ret = RX_HANDLER_ANOTHER;
2552 struct bond_marker *marker;
2553 struct port *port;
2554 atomic64_t *stat;
2555
2556 port = &(SLAVE_AD_INFO(slave)->port);
2557 if (!port->slave) {
2558 net_warn_ratelimited("%s: Warning: port of slave %s is uninitialized\n",
2559 slave->dev->name, slave->bond->dev->name);
2560 return ret;
2561 }
2562
2563 switch (lacpdu->subtype) {
2564 case AD_TYPE_LACPDU:
2565 ret = RX_HANDLER_CONSUMED;
2566 slave_dbg(slave->bond->dev, slave->dev,
2567 "Received LACPDU on port %d\n",
2568 port->actor_port_number);
2569 /* Protect against concurrent state machines */
2570 spin_lock(&slave->bond->mode_lock);
2571 ad_rx_machine(lacpdu, port);
2572 spin_unlock(&slave->bond->mode_lock);
2573 break;
2574 case AD_TYPE_MARKER:
2575 ret = RX_HANDLER_CONSUMED;
2576 /* No need to convert fields to Little Endian since we
2577 * don't use the marker's fields.
2578 */
2579 marker = (struct bond_marker *)lacpdu;
2580 switch (marker->tlv_type) {
2581 case AD_MARKER_INFORMATION_SUBTYPE:
2582 slave_dbg(slave->bond->dev, slave->dev, "Received Marker Information on port %d\n",
2583 port->actor_port_number);
2584 ad_marker_info_received(marker, port);
2585 break;
2586 case AD_MARKER_RESPONSE_SUBTYPE:
2587 slave_dbg(slave->bond->dev, slave->dev, "Received Marker Response on port %d\n",
2588 port->actor_port_number);
2589 ad_marker_response_received(marker, port);
2590 break;
2591 default:
2592 slave_dbg(slave->bond->dev, slave->dev, "Received an unknown Marker subtype on port %d\n",
2593 port->actor_port_number);
2594 stat = &SLAVE_AD_INFO(slave)->stats.marker_unknown_rx;
2595 atomic64_inc(stat);
2596 stat = &BOND_AD_INFO(bond).stats.marker_unknown_rx;
2597 atomic64_inc(stat);
2598 }
2599 break;
2600 default:
2601 atomic64_inc(&SLAVE_AD_INFO(slave)->stats.lacpdu_unknown_rx);
2602 atomic64_inc(&BOND_AD_INFO(bond).stats.lacpdu_unknown_rx);
2603 }
2604
2605 return ret;
2606 }
2607
2608 /**
2609 * ad_update_actor_keys - Update the oper / admin keys for a port based on
2610 * its current speed and duplex settings.
2611 *
2612 * @port: the port we'are looking at
2613 * @reset: Boolean to just reset the speed and the duplex part of the key
2614 *
2615 * The logic to change the oper / admin keys is:
2616 * (a) A full duplex port can participate in LACP with partner.
2617 * (b) When the speed is changed, LACP need to be reinitiated.
2618 */
ad_update_actor_keys(struct port * port,bool reset)2619 static void ad_update_actor_keys(struct port *port, bool reset)
2620 {
2621 u8 duplex = 0;
2622 u16 ospeed = 0, speed = 0;
2623 u16 old_oper_key = port->actor_oper_port_key;
2624
2625 port->actor_admin_port_key &= ~(AD_SPEED_KEY_MASKS|AD_DUPLEX_KEY_MASKS);
2626 if (!reset) {
2627 speed = __get_link_speed(port);
2628 ospeed = (old_oper_key & AD_SPEED_KEY_MASKS) >> 1;
2629 duplex = __get_duplex(port);
2630 port->actor_admin_port_key |= (speed << 1) | duplex;
2631 }
2632 port->actor_oper_port_key = port->actor_admin_port_key;
2633
2634 if (old_oper_key != port->actor_oper_port_key) {
2635 /* Only 'duplex' port participates in LACP */
2636 if (duplex)
2637 port->sm_vars |= AD_PORT_LACP_ENABLED;
2638 else
2639 port->sm_vars &= ~AD_PORT_LACP_ENABLED;
2640
2641 if (!reset) {
2642 if (!speed) {
2643 slave_err(port->slave->bond->dev,
2644 port->slave->dev,
2645 "speed changed to 0 on port %d\n",
2646 port->actor_port_number);
2647 } else if (duplex && ospeed != speed) {
2648 /* Speed change restarts LACP state-machine */
2649 port->sm_vars |= AD_PORT_BEGIN;
2650 }
2651 }
2652 }
2653 }
2654
2655 /**
2656 * bond_3ad_adapter_speed_duplex_changed - handle a slave's speed / duplex
2657 * change indication
2658 *
2659 * @slave: slave struct to work on
2660 *
2661 * Handle reselection of aggregator (if needed) for this port.
2662 */
bond_3ad_adapter_speed_duplex_changed(struct slave * slave)2663 void bond_3ad_adapter_speed_duplex_changed(struct slave *slave)
2664 {
2665 struct port *port;
2666
2667 port = &(SLAVE_AD_INFO(slave)->port);
2668
2669 /* if slave is null, the whole port is not initialized */
2670 if (!port->slave) {
2671 slave_warn(slave->bond->dev, slave->dev,
2672 "speed/duplex changed for uninitialized port\n");
2673 return;
2674 }
2675
2676 spin_lock_bh(&slave->bond->mode_lock);
2677 ad_update_actor_keys(port, false);
2678 spin_unlock_bh(&slave->bond->mode_lock);
2679 slave_dbg(slave->bond->dev, slave->dev, "Port %d changed speed/duplex\n",
2680 port->actor_port_number);
2681 }
2682
2683 /**
2684 * bond_3ad_handle_link_change - handle a slave's link status change indication
2685 * @slave: slave struct to work on
2686 * @link: whether the link is now up or down
2687 *
2688 * Handle reselection of aggregator (if needed) for this port.
2689 */
bond_3ad_handle_link_change(struct slave * slave,char link)2690 void bond_3ad_handle_link_change(struct slave *slave, char link)
2691 {
2692 struct aggregator *agg;
2693 struct port *port;
2694 bool dummy;
2695
2696 port = &(SLAVE_AD_INFO(slave)->port);
2697
2698 /* if slave is null, the whole port is not initialized */
2699 if (!port->slave) {
2700 slave_warn(slave->bond->dev, slave->dev, "link status changed for uninitialized port\n");
2701 return;
2702 }
2703
2704 spin_lock_bh(&slave->bond->mode_lock);
2705 /* on link down we are zeroing duplex and speed since
2706 * some of the adaptors(ce1000.lan) report full duplex/speed
2707 * instead of N/A(duplex) / 0(speed).
2708 *
2709 * on link up we are forcing recheck on the duplex and speed since
2710 * some of he adaptors(ce1000.lan) report.
2711 */
2712 if (link == BOND_LINK_UP) {
2713 port->is_enabled = true;
2714 ad_update_actor_keys(port, false);
2715 } else {
2716 /* link has failed */
2717 port->is_enabled = false;
2718 ad_update_actor_keys(port, true);
2719 }
2720 agg = __get_first_agg(port);
2721 ad_agg_selection_logic(agg, &dummy);
2722
2723 spin_unlock_bh(&slave->bond->mode_lock);
2724
2725 slave_dbg(slave->bond->dev, slave->dev, "Port %d changed link status to %s\n",
2726 port->actor_port_number,
2727 link == BOND_LINK_UP ? "UP" : "DOWN");
2728
2729 /* RTNL is held and mode_lock is released so it's safe
2730 * to update slave_array here.
2731 */
2732 bond_update_slave_arr(slave->bond, NULL);
2733 }
2734
2735 /**
2736 * bond_3ad_set_carrier - set link state for bonding master
2737 * @bond: bonding structure
2738 *
2739 * if we have an active aggregator, we're up, if not, we're down.
2740 * Presumes that we cannot have an active aggregator if there are
2741 * no slaves with link up.
2742 *
2743 * This behavior complies with IEEE 802.3 section 43.3.9.
2744 *
2745 * Called by bond_set_carrier(). Return zero if carrier state does not
2746 * change, nonzero if it does.
2747 */
bond_3ad_set_carrier(struct bonding * bond)2748 int bond_3ad_set_carrier(struct bonding *bond)
2749 {
2750 struct aggregator *active;
2751 struct slave *first_slave;
2752 int ret = 1;
2753
2754 rcu_read_lock();
2755 first_slave = bond_first_slave_rcu(bond);
2756 if (!first_slave) {
2757 ret = 0;
2758 goto out;
2759 }
2760 active = __get_active_agg(&(SLAVE_AD_INFO(first_slave)->aggregator));
2761 if (active) {
2762 /* are enough slaves available to consider link up? */
2763 if (__agg_active_ports(active) < bond->params.min_links) {
2764 if (netif_carrier_ok(bond->dev)) {
2765 netif_carrier_off(bond->dev);
2766 goto out;
2767 }
2768 } else if (!netif_carrier_ok(bond->dev)) {
2769 netif_carrier_on(bond->dev);
2770 goto out;
2771 }
2772 } else if (netif_carrier_ok(bond->dev)) {
2773 netif_carrier_off(bond->dev);
2774 }
2775 out:
2776 rcu_read_unlock();
2777 return ret;
2778 }
2779
2780 /**
2781 * __bond_3ad_get_active_agg_info - get information of the active aggregator
2782 * @bond: bonding struct to work on
2783 * @ad_info: ad_info struct to fill with the bond's info
2784 *
2785 * Returns: 0 on success
2786 * < 0 on error
2787 */
__bond_3ad_get_active_agg_info(struct bonding * bond,struct ad_info * ad_info)2788 int __bond_3ad_get_active_agg_info(struct bonding *bond,
2789 struct ad_info *ad_info)
2790 {
2791 struct aggregator *aggregator = NULL;
2792 struct list_head *iter;
2793 struct slave *slave;
2794 struct port *port;
2795
2796 bond_for_each_slave_rcu(bond, slave, iter) {
2797 port = &(SLAVE_AD_INFO(slave)->port);
2798 if (port->aggregator && port->aggregator->is_active) {
2799 aggregator = port->aggregator;
2800 break;
2801 }
2802 }
2803
2804 if (!aggregator)
2805 return -1;
2806
2807 ad_info->aggregator_id = aggregator->aggregator_identifier;
2808 ad_info->ports = __agg_active_ports(aggregator);
2809 ad_info->actor_key = aggregator->actor_oper_aggregator_key;
2810 ad_info->partner_key = aggregator->partner_oper_aggregator_key;
2811 ether_addr_copy(ad_info->partner_system,
2812 aggregator->partner_system.mac_addr_value);
2813 return 0;
2814 }
2815
bond_3ad_get_active_agg_info(struct bonding * bond,struct ad_info * ad_info)2816 int bond_3ad_get_active_agg_info(struct bonding *bond, struct ad_info *ad_info)
2817 {
2818 int ret;
2819
2820 rcu_read_lock();
2821 ret = __bond_3ad_get_active_agg_info(bond, ad_info);
2822 rcu_read_unlock();
2823
2824 return ret;
2825 }
2826
bond_3ad_lacpdu_recv(const struct sk_buff * skb,struct bonding * bond,struct slave * slave)2827 int bond_3ad_lacpdu_recv(const struct sk_buff *skb, struct bonding *bond,
2828 struct slave *slave)
2829 {
2830 struct lacpdu *lacpdu, _lacpdu;
2831
2832 if (skb->protocol != PKT_TYPE_LACPDU)
2833 return RX_HANDLER_ANOTHER;
2834
2835 if (!MAC_ADDRESS_EQUAL(eth_hdr(skb)->h_dest, lacpdu_mcast_addr))
2836 return RX_HANDLER_ANOTHER;
2837
2838 lacpdu = skb_header_pointer(skb, 0, sizeof(_lacpdu), &_lacpdu);
2839 if (!lacpdu) {
2840 atomic64_inc(&SLAVE_AD_INFO(slave)->stats.lacpdu_illegal_rx);
2841 atomic64_inc(&BOND_AD_INFO(bond).stats.lacpdu_illegal_rx);
2842 return RX_HANDLER_ANOTHER;
2843 }
2844
2845 return bond_3ad_rx_indication(lacpdu, slave);
2846 }
2847
2848 /**
2849 * bond_3ad_update_lacp_rate - change the lacp rate
2850 * @bond: bonding struct
2851 *
2852 * When modify lacp_rate parameter via sysfs,
2853 * update actor_oper_port_state of each port.
2854 *
2855 * Hold bond->mode_lock,
2856 * so we can modify port->actor_oper_port_state,
2857 * no matter bond is up or down.
2858 */
bond_3ad_update_lacp_rate(struct bonding * bond)2859 void bond_3ad_update_lacp_rate(struct bonding *bond)
2860 {
2861 struct port *port = NULL;
2862 struct list_head *iter;
2863 struct slave *slave;
2864 int lacp_fast;
2865
2866 lacp_fast = bond->params.lacp_fast;
2867 spin_lock_bh(&bond->mode_lock);
2868 bond_for_each_slave(bond, slave, iter) {
2869 port = &(SLAVE_AD_INFO(slave)->port);
2870 if (lacp_fast)
2871 port->actor_oper_port_state |= LACP_STATE_LACP_TIMEOUT;
2872 else
2873 port->actor_oper_port_state &= ~LACP_STATE_LACP_TIMEOUT;
2874 }
2875 spin_unlock_bh(&bond->mode_lock);
2876 }
2877
2878 /**
2879 * bond_3ad_update_lacp_active - change the lacp active
2880 * @bond: bonding struct
2881 *
2882 * Update actor_oper_port_state when lacp_active is modified.
2883 */
bond_3ad_update_lacp_active(struct bonding * bond)2884 void bond_3ad_update_lacp_active(struct bonding *bond)
2885 {
2886 struct port *port = NULL;
2887 struct list_head *iter;
2888 struct slave *slave;
2889 int lacp_active;
2890
2891 lacp_active = bond->params.lacp_active;
2892 spin_lock_bh(&bond->mode_lock);
2893 bond_for_each_slave(bond, slave, iter) {
2894 port = &(SLAVE_AD_INFO(slave)->port);
2895 if (lacp_active)
2896 port->actor_oper_port_state |= LACP_STATE_LACP_ACTIVITY;
2897 else
2898 port->actor_oper_port_state &= ~LACP_STATE_LACP_ACTIVITY;
2899 }
2900 spin_unlock_bh(&bond->mode_lock);
2901 }
2902
bond_3ad_stats_size(void)2903 size_t bond_3ad_stats_size(void)
2904 {
2905 return nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_LACPDU_RX */
2906 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_LACPDU_TX */
2907 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_LACPDU_UNKNOWN_RX */
2908 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_LACPDU_ILLEGAL_RX */
2909 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_MARKER_RX */
2910 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_MARKER_TX */
2911 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_MARKER_RESP_RX */
2912 nla_total_size_64bit(sizeof(u64)) + /* BOND_3AD_STAT_MARKER_RESP_TX */
2913 nla_total_size_64bit(sizeof(u64)); /* BOND_3AD_STAT_MARKER_UNKNOWN_RX */
2914 }
2915
bond_3ad_stats_fill(struct sk_buff * skb,struct bond_3ad_stats * stats)2916 int bond_3ad_stats_fill(struct sk_buff *skb, struct bond_3ad_stats *stats)
2917 {
2918 u64 val;
2919
2920 val = atomic64_read(&stats->lacpdu_rx);
2921 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_LACPDU_RX, val,
2922 BOND_3AD_STAT_PAD))
2923 return -EMSGSIZE;
2924 val = atomic64_read(&stats->lacpdu_tx);
2925 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_LACPDU_TX, val,
2926 BOND_3AD_STAT_PAD))
2927 return -EMSGSIZE;
2928 val = atomic64_read(&stats->lacpdu_unknown_rx);
2929 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_LACPDU_UNKNOWN_RX, val,
2930 BOND_3AD_STAT_PAD))
2931 return -EMSGSIZE;
2932 val = atomic64_read(&stats->lacpdu_illegal_rx);
2933 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_LACPDU_ILLEGAL_RX, val,
2934 BOND_3AD_STAT_PAD))
2935 return -EMSGSIZE;
2936
2937 val = atomic64_read(&stats->marker_rx);
2938 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_MARKER_RX, val,
2939 BOND_3AD_STAT_PAD))
2940 return -EMSGSIZE;
2941 val = atomic64_read(&stats->marker_tx);
2942 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_MARKER_TX, val,
2943 BOND_3AD_STAT_PAD))
2944 return -EMSGSIZE;
2945 val = atomic64_read(&stats->marker_resp_rx);
2946 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_MARKER_RESP_RX, val,
2947 BOND_3AD_STAT_PAD))
2948 return -EMSGSIZE;
2949 val = atomic64_read(&stats->marker_resp_tx);
2950 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_MARKER_RESP_TX, val,
2951 BOND_3AD_STAT_PAD))
2952 return -EMSGSIZE;
2953 val = atomic64_read(&stats->marker_unknown_rx);
2954 if (nla_put_u64_64bit(skb, BOND_3AD_STAT_MARKER_UNKNOWN_RX, val,
2955 BOND_3AD_STAT_PAD))
2956 return -EMSGSIZE;
2957
2958 return 0;
2959 }
2960