bonding: use port_params in __update_lacpdu_from_port
[safe/jmp/linux-2.6] / drivers / net / bonding / bond_3ad.c
1 /*
2  * Copyright(c) 1999 - 2004 Intel Corporation. All rights reserved.
3  *
4  * This program is free software; you can redistribute it and/or modify it
5  * under the terms of the GNU General Public License as published by the Free
6  * Software Foundation; either version 2 of the License, or (at your option)
7  * any later version.
8  *
9  * This program is distributed in the hope that it will be useful, but WITHOUT
10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
12  * more details.
13  *
14  * You should have received a copy of the GNU General Public License along with
15  * this program; if not, write to the Free Software Foundation, Inc., 59
16  * Temple Place - Suite 330, Boston, MA  02111-1307, USA.
17  *
18  * The full GNU General Public License is included in this distribution in the
19  * file called LICENSE.
20  *
21  */
22
23 #include <linux/skbuff.h>
24 #include <linux/if_ether.h>
25 #include <linux/netdevice.h>
26 #include <linux/spinlock.h>
27 #include <linux/ethtool.h>
28 #include <linux/etherdevice.h>
29 #include <linux/if_bonding.h>
30 #include <linux/pkt_sched.h>
31 #include <net/net_namespace.h>
32 #include "bonding.h"
33 #include "bond_3ad.h"
34
35 // General definitions
36 #define AD_SHORT_TIMEOUT           1
37 #define AD_LONG_TIMEOUT            0
38 #define AD_STANDBY                 0x2
39 #define AD_MAX_TX_IN_SECOND        3
40 #define AD_COLLECTOR_MAX_DELAY     0
41
42 // Timer definitions(43.4.4 in the 802.3ad standard)
43 #define AD_FAST_PERIODIC_TIME      1
44 #define AD_SLOW_PERIODIC_TIME      30
45 #define AD_SHORT_TIMEOUT_TIME      (3*AD_FAST_PERIODIC_TIME)
46 #define AD_LONG_TIMEOUT_TIME       (3*AD_SLOW_PERIODIC_TIME)
47 #define AD_CHURN_DETECTION_TIME    60
48 #define AD_AGGREGATE_WAIT_TIME     2
49
50 // Port state definitions(43.4.2.2 in the 802.3ad standard)
51 #define AD_STATE_LACP_ACTIVITY   0x1
52 #define AD_STATE_LACP_TIMEOUT    0x2
53 #define AD_STATE_AGGREGATION     0x4
54 #define AD_STATE_SYNCHRONIZATION 0x8
55 #define AD_STATE_COLLECTING      0x10
56 #define AD_STATE_DISTRIBUTING    0x20
57 #define AD_STATE_DEFAULTED       0x40
58 #define AD_STATE_EXPIRED         0x80
59
60 // Port Variables definitions used by the State Machines(43.4.7 in the 802.3ad standard)
61 #define AD_PORT_BEGIN           0x1
62 #define AD_PORT_LACP_ENABLED    0x2
63 #define AD_PORT_ACTOR_CHURN     0x4
64 #define AD_PORT_PARTNER_CHURN   0x8
65 #define AD_PORT_READY           0x10
66 #define AD_PORT_READY_N         0x20
67 #define AD_PORT_MATCHED         0x40
68 #define AD_PORT_STANDBY         0x80
69 #define AD_PORT_SELECTED        0x100
70 #define AD_PORT_MOVED           0x200
71
72 // Port Key definitions
73 // key is determined according to the link speed, duplex and
74 // user key(which is yet not supported)
75 //              ------------------------------------------------------------
76 // Port key :   | User key                       |      Speed       |Duplex|
77 //              ------------------------------------------------------------
78 //              16                               6               1 0
79 #define  AD_DUPLEX_KEY_BITS    0x1
80 #define  AD_SPEED_KEY_BITS     0x3E
81 #define  AD_USER_KEY_BITS      0xFFC0
82
83 //dalloun
84 #define     AD_LINK_SPEED_BITMASK_1MBPS       0x1
85 #define     AD_LINK_SPEED_BITMASK_10MBPS      0x2
86 #define     AD_LINK_SPEED_BITMASK_100MBPS     0x4
87 #define     AD_LINK_SPEED_BITMASK_1000MBPS    0x8
88 #define     AD_LINK_SPEED_BITMASK_10000MBPS   0x10
89 //endalloun
90
91 // compare MAC addresses
92 #define MAC_ADDRESS_COMPARE(A, B) memcmp(A, B, ETH_ALEN)
93
94 static struct mac_addr null_mac_addr = {{0, 0, 0, 0, 0, 0}};
95 static u16 ad_ticks_per_sec;
96 static const int ad_delta_in_ticks = (AD_TIMER_INTERVAL * HZ) / 1000;
97
98 // ================= main 802.3ad protocol functions ==================
99 static int ad_lacpdu_send(struct port *port);
100 static int ad_marker_send(struct port *port, struct bond_marker *marker);
101 static void ad_mux_machine(struct port *port);
102 static void ad_rx_machine(struct lacpdu *lacpdu, struct port *port);
103 static void ad_tx_machine(struct port *port);
104 static void ad_periodic_machine(struct port *port);
105 static void ad_port_selection_logic(struct port *port);
106 static void ad_agg_selection_logic(struct aggregator *aggregator);
107 static void ad_clear_agg(struct aggregator *aggregator);
108 static void ad_initialize_agg(struct aggregator *aggregator);
109 static void ad_initialize_port(struct port *port, int lacp_fast);
110 static void ad_initialize_lacpdu(struct lacpdu *Lacpdu);
111 static void ad_enable_collecting_distributing(struct port *port);
112 static void ad_disable_collecting_distributing(struct port *port);
113 static void ad_marker_info_received(struct bond_marker *marker_info, struct port *port);
114 static void ad_marker_response_received(struct bond_marker *marker, struct port *port);
115
116
117 /////////////////////////////////////////////////////////////////////////////////
118 // ================= api to bonding and kernel code ==================
119 /////////////////////////////////////////////////////////////////////////////////
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  */
127 static inline struct bonding *__get_bond_by_port(struct port *port)
128 {
129         if (port->slave == NULL) {
130                 return NULL;
131         }
132
133         return bond_get_bond_by_slave(port->slave);
134 }
135
136 /**
137  * __get_first_port - get the first port in the bond
138  * @bond: the bond we're looking at
139  *
140  * Return the port of the first slave in @bond, or %NULL if it can't be found.
141  */
142 static inline struct port *__get_first_port(struct bonding *bond)
143 {
144         if (bond->slave_cnt == 0) {
145                 return NULL;
146         }
147
148         return &(SLAVE_AD_INFO(bond->first_slave).port);
149 }
150
151 /**
152  * __get_next_port - get the next port in the bond
153  * @port: the port we're looking at
154  *
155  * Return the port of the slave that is next in line of @port's slave in the
156  * bond, or %NULL if it can't be found.
157  */
158 static inline struct port *__get_next_port(struct port *port)
159 {
160         struct bonding *bond = __get_bond_by_port(port);
161         struct slave *slave = port->slave;
162
163         // If there's no bond for this port, or this is the last slave
164         if ((bond == NULL) || (slave->next == bond->first_slave)) {
165                 return NULL;
166         }
167
168         return &(SLAVE_AD_INFO(slave->next).port);
169 }
170
171 /**
172  * __get_first_agg - get the first aggregator in the bond
173  * @bond: the bond we're looking at
174  *
175  * Return the aggregator of the first slave in @bond, or %NULL if it can't be
176  * found.
177  */
178 static inline struct aggregator *__get_first_agg(struct port *port)
179 {
180         struct bonding *bond = __get_bond_by_port(port);
181
182         // If there's no bond for this port, or bond has no slaves
183         if ((bond == NULL) || (bond->slave_cnt == 0)) {
184                 return NULL;
185         }
186
187         return &(SLAVE_AD_INFO(bond->first_slave).aggregator);
188 }
189
190 /**
191  * __get_next_agg - get the next aggregator in the bond
192  * @aggregator: the aggregator we're looking at
193  *
194  * Return the aggregator of the slave that is next in line of @aggregator's
195  * slave in the bond, or %NULL if it can't be found.
196  */
197 static inline struct aggregator *__get_next_agg(struct aggregator *aggregator)
198 {
199         struct slave *slave = aggregator->slave;
200         struct bonding *bond = bond_get_bond_by_slave(slave);
201
202         // If there's no bond for this aggregator, or this is the last slave
203         if ((bond == NULL) || (slave->next == bond->first_slave)) {
204                 return NULL;
205         }
206
207         return &(SLAVE_AD_INFO(slave->next).aggregator);
208 }
209
210 /*
211  * __agg_has_partner
212  *
213  * Return nonzero if aggregator has a partner (denoted by a non-zero ether
214  * address for the partner).  Return 0 if not.
215  */
216 static inline int __agg_has_partner(struct aggregator *agg)
217 {
218         return !is_zero_ether_addr(agg->partner_system.mac_addr_value);
219 }
220
221 /**
222  * __disable_port - disable the port's slave
223  * @port: the port we're looking at
224  *
225  */
226 static inline void __disable_port(struct port *port)
227 {
228         bond_set_slave_inactive_flags(port->slave);
229 }
230
231 /**
232  * __enable_port - enable the port's slave, if it's up
233  * @port: the port we're looking at
234  *
235  */
236 static inline void __enable_port(struct port *port)
237 {
238         struct slave *slave = port->slave;
239
240         if ((slave->link == BOND_LINK_UP) && IS_UP(slave->dev)) {
241                 bond_set_slave_active_flags(slave);
242         }
243 }
244
245 /**
246  * __port_is_enabled - check if the port's slave is in active state
247  * @port: the port we're looking at
248  *
249  */
250 static inline int __port_is_enabled(struct port *port)
251 {
252         return(port->slave->state == BOND_STATE_ACTIVE);
253 }
254
255 /**
256  * __get_agg_selection_mode - get the aggregator selection mode
257  * @port: the port we're looking at
258  *
259  * Get the aggregator selection mode. Can be %STABLE, %BANDWIDTH or %COUNT.
260  */
261 static inline u32 __get_agg_selection_mode(struct port *port)
262 {
263         struct bonding *bond = __get_bond_by_port(port);
264
265         if (bond == NULL) {
266                 return BOND_AD_STABLE;
267         }
268
269         return BOND_AD_INFO(bond).agg_select_mode;
270 }
271
272 /**
273  * __check_agg_selection_timer - check if the selection timer has expired
274  * @port: the port we're looking at
275  *
276  */
277 static inline int __check_agg_selection_timer(struct port *port)
278 {
279         struct bonding *bond = __get_bond_by_port(port);
280
281         if (bond == NULL) {
282                 return 0;
283         }
284
285         return BOND_AD_INFO(bond).agg_select_timer ? 1 : 0;
286 }
287
288 /**
289  * __get_rx_machine_lock - lock the port's RX machine
290  * @port: the port we're looking at
291  *
292  */
293 static inline void __get_rx_machine_lock(struct port *port)
294 {
295         spin_lock_bh(&(SLAVE_AD_INFO(port->slave).rx_machine_lock));
296 }
297
298 /**
299  * __release_rx_machine_lock - unlock the port's RX machine
300  * @port: the port we're looking at
301  *
302  */
303 static inline void __release_rx_machine_lock(struct port *port)
304 {
305         spin_unlock_bh(&(SLAVE_AD_INFO(port->slave).rx_machine_lock));
306 }
307
308 /**
309  * __get_link_speed - get a port's speed
310  * @port: the port we're looking at
311  *
312  * Return @port's speed in 802.3ad bitmask format. i.e. one of:
313  *     0,
314  *     %AD_LINK_SPEED_BITMASK_10MBPS,
315  *     %AD_LINK_SPEED_BITMASK_100MBPS,
316  *     %AD_LINK_SPEED_BITMASK_1000MBPS,
317  *     %AD_LINK_SPEED_BITMASK_10000MBPS
318  */
319 static u16 __get_link_speed(struct port *port)
320 {
321         struct slave *slave = port->slave;
322         u16 speed;
323
324         /* this if covers only a special case: when the configuration starts with
325          * link down, it sets the speed to 0.
326          * This is done in spite of the fact that the e100 driver reports 0 to be
327          * compatible with MVT in the future.*/
328         if (slave->link != BOND_LINK_UP) {
329                 speed=0;
330         } else {
331                 switch (slave->speed) {
332                 case SPEED_10:
333                         speed = AD_LINK_SPEED_BITMASK_10MBPS;
334                         break;
335
336                 case SPEED_100:
337                         speed = AD_LINK_SPEED_BITMASK_100MBPS;
338                         break;
339
340                 case SPEED_1000:
341                         speed = AD_LINK_SPEED_BITMASK_1000MBPS;
342                         break;
343
344                 case SPEED_10000:
345                         speed = AD_LINK_SPEED_BITMASK_10000MBPS;
346                         break;
347
348                 default:
349                         speed = 0; // unknown speed value from ethtool. shouldn't happen
350                         break;
351                 }
352         }
353
354         pr_debug("Port %d Received link speed %d update from adapter\n", port->actor_port_number, speed);
355         return speed;
356 }
357
358 /**
359  * __get_duplex - get a port's duplex
360  * @port: the port we're looking at
361  *
362  * Return @port's duplex in 802.3ad bitmask format. i.e.:
363  *     0x01 if in full duplex
364  *     0x00 otherwise
365  */
366 static u8 __get_duplex(struct port *port)
367 {
368         struct slave *slave = port->slave;
369
370         u8 retval;
371
372         //  handling a special case: when the configuration starts with
373         // link down, it sets the duplex to 0.
374         if (slave->link != BOND_LINK_UP) {
375                 retval=0x0;
376         } else {
377                 switch (slave->duplex) {
378                 case DUPLEX_FULL:
379                         retval=0x1;
380                         pr_debug("Port %d Received status full duplex update from adapter\n", port->actor_port_number);
381                         break;
382                 case DUPLEX_HALF:
383                 default:
384                         retval=0x0;
385                         pr_debug("Port %d Received status NOT full duplex update from adapter\n", port->actor_port_number);
386                         break;
387                 }
388         }
389         return retval;
390 }
391
392 /**
393  * __initialize_port_locks - initialize a port's RX machine spinlock
394  * @port: the port we're looking at
395  *
396  */
397 static inline void __initialize_port_locks(struct port *port)
398 {
399         // make sure it isn't called twice
400         spin_lock_init(&(SLAVE_AD_INFO(port->slave).rx_machine_lock));
401 }
402
403 //conversions
404
405 /**
406  * __ad_timer_to_ticks - convert a given timer type to AD module ticks
407  * @timer_type: which timer to operate
408  * @par: timer parameter. see below
409  *
410  * If @timer_type is %current_while_timer, @par indicates long/short timer.
411  * If @timer_type is %periodic_timer, @par is one of %FAST_PERIODIC_TIME,
412  *                                                  %SLOW_PERIODIC_TIME.
413  */
414 static u16 __ad_timer_to_ticks(u16 timer_type, u16 par)
415 {
416         u16 retval=0;    //to silence the compiler
417
418         switch (timer_type) {
419         case AD_CURRENT_WHILE_TIMER:   // for rx machine usage
420                 if (par) {            // for short or long timeout
421                         retval = (AD_SHORT_TIMEOUT_TIME*ad_ticks_per_sec); // short timeout
422                 } else {
423                         retval = (AD_LONG_TIMEOUT_TIME*ad_ticks_per_sec); // long timeout
424                 }
425                 break;
426         case AD_ACTOR_CHURN_TIMER:          // for local churn machine
427                 retval = (AD_CHURN_DETECTION_TIME*ad_ticks_per_sec);
428                 break;
429         case AD_PERIODIC_TIMER:     // for periodic machine
430                 retval = (par*ad_ticks_per_sec); // long timeout
431                 break;
432         case AD_PARTNER_CHURN_TIMER:   // for remote churn machine
433                 retval = (AD_CHURN_DETECTION_TIME*ad_ticks_per_sec);
434                 break;
435         case AD_WAIT_WHILE_TIMER:           // for selection machine
436                 retval = (AD_AGGREGATE_WAIT_TIME*ad_ticks_per_sec);
437                 break;
438         }
439         return retval;
440 }
441
442
443 /////////////////////////////////////////////////////////////////////////////////
444 // ================= ad_rx_machine helper functions ==================
445 /////////////////////////////////////////////////////////////////////////////////
446
447 /**
448  * __record_pdu - record parameters from a received lacpdu
449  * @lacpdu: the lacpdu we've received
450  * @port: the port we're looking at
451  *
452  * Record the parameter values for the Actor carried in a received lacpdu as
453  * the current partner operational parameter values and sets
454  * actor_oper_port_state.defaulted to FALSE.
455  */
456 static void __record_pdu(struct lacpdu *lacpdu, struct port *port)
457 {
458         if (lacpdu && port) {
459                 struct port_params *partner = &port->partner_oper;
460
461                 // record the new parameter values for the partner operational
462                 partner->port_number = ntohs(lacpdu->actor_port);
463                 partner->port_priority = ntohs(lacpdu->actor_port_priority);
464                 partner->system = lacpdu->actor_system;
465                 partner->system_priority = ntohs(lacpdu->actor_system_priority);
466                 partner->key = ntohs(lacpdu->actor_key);
467                 partner->port_state = lacpdu->actor_state;
468
469                 // set actor_oper_port_state.defaulted to FALSE
470                 port->actor_oper_port_state &= ~AD_STATE_DEFAULTED;
471
472                 // set the partner sync. to on if the partner is sync. and the port is matched
473                 if ((port->sm_vars & AD_PORT_MATCHED) && (lacpdu->actor_state & AD_STATE_SYNCHRONIZATION)) {
474                         partner->port_state |= AD_STATE_SYNCHRONIZATION;
475                 } else {
476                         partner->port_state &= ~AD_STATE_SYNCHRONIZATION;
477                 }
478         }
479 }
480
481 /**
482  * __record_default - record default parameters
483  * @port: the port we're looking at
484  *
485  * This function records the default parameter values for the partner carried
486  * in the Partner Admin parameters as the current partner operational parameter
487  * values and sets actor_oper_port_state.defaulted to TRUE.
488  */
489 static void __record_default(struct port *port)
490 {
491         if (port) {
492                 // record the partner admin parameters
493                 memcpy(&port->partner_oper, &port->partner_admin,
494                        sizeof(struct port_params));
495
496                 // set actor_oper_port_state.defaulted to true
497                 port->actor_oper_port_state |= AD_STATE_DEFAULTED;
498         }
499 }
500
501 /**
502  * __update_selected - update a port's Selected variable from a received lacpdu
503  * @lacpdu: the lacpdu we've received
504  * @port: the port we're looking at
505  *
506  * Update the value of the selected variable, using parameter values from a
507  * newly received lacpdu. The parameter values for the Actor carried in the
508  * received PDU are compared with the corresponding operational parameter
509  * values for the ports partner. If one or more of the comparisons shows that
510  * the value(s) received in the PDU differ from the current operational values,
511  * then selected is set to FALSE and actor_oper_port_state.synchronization is
512  * set to out_of_sync. Otherwise, selected remains unchanged.
513  */
514 static void __update_selected(struct lacpdu *lacpdu, struct port *port)
515 {
516         if (lacpdu && port) {
517                 const struct port_params *partner = &port->partner_oper;
518
519                 // check if any parameter is different
520                 if (ntohs(lacpdu->actor_port) != partner->port_number
521                     || ntohs(lacpdu->actor_port_priority) != partner->port_priority
522                     || MAC_ADDRESS_COMPARE(&lacpdu->actor_system, &partner->system)
523                     || ntohs(lacpdu->actor_system_priority) != partner->system_priority
524                     || ntohs(lacpdu->actor_key) != partner->key
525                     || (lacpdu->actor_state & AD_STATE_AGGREGATION) != (partner->port_state & AD_STATE_AGGREGATION)) {
526                         // update the state machine Selected variable
527                         port->sm_vars &= ~AD_PORT_SELECTED;
528                 }
529         }
530 }
531
532 /**
533  * __update_default_selected - update a port's Selected variable from Partner
534  * @port: the port we're looking at
535  *
536  * This function updates the value of the selected variable, using the partner
537  * administrative parameter values. The administrative values are compared with
538  * the corresponding operational parameter values for the partner. If one or
539  * more of the comparisons shows that the administrative value(s) differ from
540  * the current operational values, then Selected is set to FALSE and
541  * actor_oper_port_state.synchronization is set to OUT_OF_SYNC. Otherwise,
542  * Selected remains unchanged.
543  */
544 static void __update_default_selected(struct port *port)
545 {
546         if (port) {
547                 const struct port_params *admin = &port->partner_admin;
548                 const struct port_params *oper = &port->partner_oper;
549
550                 // check if any parameter is different
551                 if (admin->port_number != oper->port_number
552                     || admin->port_priority != oper->port_priority
553                     || MAC_ADDRESS_COMPARE(&admin->system, &oper->system)
554                     || admin->system_priority != oper->system_priority
555                     || admin->key != oper->key
556                     || (admin->port_state & AD_STATE_AGGREGATION)
557                         != (oper->port_state & AD_STATE_AGGREGATION)) {
558                         // update the state machine Selected variable
559                         port->sm_vars &= ~AD_PORT_SELECTED;
560                 }
561         }
562 }
563
564 /**
565  * __choose_matched - update a port's matched variable from a received lacpdu
566  * @lacpdu: the lacpdu we've received
567  * @port: the port we're looking at
568  *
569  * Update the value of the matched variable, using parameter values from a
570  * newly received lacpdu. Parameter values for the partner carried in the
571  * received PDU are compared with the corresponding operational parameter
572  * values for the actor. Matched is set to TRUE if all of these parameters
573  * match and the PDU parameter partner_state.aggregation has the same value as
574  * actor_oper_port_state.aggregation and lacp will actively maintain the link
575  * in the aggregation. Matched is also set to TRUE if the value of
576  * actor_state.aggregation in the received PDU is set to FALSE, i.e., indicates
577  * an individual link and lacp will actively maintain the link. Otherwise,
578  * matched is set to FALSE. LACP is considered to be actively maintaining the
579  * link if either the PDU's actor_state.lacp_activity variable is TRUE or both
580  * the actor's actor_oper_port_state.lacp_activity and the PDU's
581  * partner_state.lacp_activity variables are TRUE.
582  */
583 static void __choose_matched(struct lacpdu *lacpdu, struct port *port)
584 {
585         // validate lacpdu and port
586         if (lacpdu && port) {
587                 // check if all parameters are alike
588                 if (((ntohs(lacpdu->partner_port) == port->actor_port_number) &&
589                      (ntohs(lacpdu->partner_port_priority) == port->actor_port_priority) &&
590                      !MAC_ADDRESS_COMPARE(&(lacpdu->partner_system), &(port->actor_system)) &&
591                      (ntohs(lacpdu->partner_system_priority) == port->actor_system_priority) &&
592                      (ntohs(lacpdu->partner_key) == port->actor_oper_port_key) &&
593                      ((lacpdu->partner_state & AD_STATE_AGGREGATION) == (port->actor_oper_port_state & AD_STATE_AGGREGATION))) ||
594                     // or this is individual link(aggregation == FALSE)
595                     ((lacpdu->actor_state & AD_STATE_AGGREGATION) == 0)
596                    ) {
597                         // update the state machine Matched variable
598                         port->sm_vars |= AD_PORT_MATCHED;
599                 } else {
600                         port->sm_vars &= ~AD_PORT_MATCHED;
601                 }
602         }
603 }
604
605 /**
606  * __update_ntt - update a port's ntt variable from a received lacpdu
607  * @lacpdu: the lacpdu we've received
608  * @port: the port we're looking at
609  *
610  * Updates the value of the ntt variable, using parameter values from a newly
611  * received lacpdu. The parameter values for the partner carried in the
612  * received PDU are compared with the corresponding operational parameter
613  * values for the Actor. If one or more of the comparisons shows that the
614  * value(s) received in the PDU differ from the current operational values,
615  * then ntt is set to TRUE. Otherwise, ntt remains unchanged.
616  */
617 static void __update_ntt(struct lacpdu *lacpdu, struct port *port)
618 {
619         // validate lacpdu and port
620         if (lacpdu && port) {
621                 // check if any parameter is different
622                 if ((ntohs(lacpdu->partner_port) != port->actor_port_number) ||
623                     (ntohs(lacpdu->partner_port_priority) != port->actor_port_priority) ||
624                     MAC_ADDRESS_COMPARE(&(lacpdu->partner_system), &(port->actor_system)) ||
625                     (ntohs(lacpdu->partner_system_priority) != port->actor_system_priority) ||
626                     (ntohs(lacpdu->partner_key) != port->actor_oper_port_key) ||
627                     ((lacpdu->partner_state & AD_STATE_LACP_ACTIVITY) != (port->actor_oper_port_state & AD_STATE_LACP_ACTIVITY)) ||
628                     ((lacpdu->partner_state & AD_STATE_LACP_TIMEOUT) != (port->actor_oper_port_state & AD_STATE_LACP_TIMEOUT)) ||
629                     ((lacpdu->partner_state & AD_STATE_SYNCHRONIZATION) != (port->actor_oper_port_state & AD_STATE_SYNCHRONIZATION)) ||
630                     ((lacpdu->partner_state & AD_STATE_AGGREGATION) != (port->actor_oper_port_state & AD_STATE_AGGREGATION))
631                    ) {
632                         // set ntt to be TRUE
633                         port->ntt = 1;
634                 }
635         }
636 }
637
638 /**
639  * __attach_bond_to_agg
640  * @port: the port we're looking at
641  *
642  * Handle the attaching of the port's control parser/multiplexer and the
643  * aggregator. This function does nothing since the parser/multiplexer of the
644  * receive and the parser/multiplexer of the aggregator are already combined.
645  */
646 static void __attach_bond_to_agg(struct port *port)
647 {
648         port=NULL; // just to satisfy the compiler
649         // This function does nothing since the parser/multiplexer of the receive
650         // and the parser/multiplexer of the aggregator are already combined
651 }
652
653 /**
654  * __detach_bond_from_agg
655  * @port: the port we're looking at
656  *
657  * Handle the detaching of the port's control parser/multiplexer from the
658  * aggregator. This function does nothing since the parser/multiplexer of the
659  * receive and the parser/multiplexer of the aggregator are already combined.
660  */
661 static void __detach_bond_from_agg(struct port *port)
662 {
663         port=NULL; // just to satisfy the compiler
664         // This function does nothing sience the parser/multiplexer of the receive
665         // and the parser/multiplexer of the aggregator are already combined
666 }
667
668 /**
669  * __agg_ports_are_ready - check if all ports in an aggregator are ready
670  * @aggregator: the aggregator we're looking at
671  *
672  */
673 static int __agg_ports_are_ready(struct aggregator *aggregator)
674 {
675         struct port *port;
676         int retval = 1;
677
678         if (aggregator) {
679                 // scan all ports in this aggregator to verfy if they are all ready
680                 for (port=aggregator->lag_ports; port; port=port->next_port_in_aggregator) {
681                         if (!(port->sm_vars & AD_PORT_READY_N)) {
682                                 retval = 0;
683                                 break;
684                         }
685                 }
686         }
687
688         return retval;
689 }
690
691 /**
692  * __set_agg_ports_ready - set value of Ready bit in all ports of an aggregator
693  * @aggregator: the aggregator we're looking at
694  * @val: Should the ports' ready bit be set on or off
695  *
696  */
697 static void __set_agg_ports_ready(struct aggregator *aggregator, int val)
698 {
699         struct port *port;
700
701         for (port=aggregator->lag_ports; port; port=port->next_port_in_aggregator) {
702                 if (val) {
703                         port->sm_vars |= AD_PORT_READY;
704                 } else {
705                         port->sm_vars &= ~AD_PORT_READY;
706                 }
707         }
708 }
709
710 /**
711  * __get_agg_bandwidth - get the total bandwidth of an aggregator
712  * @aggregator: the aggregator we're looking at
713  *
714  */
715 static u32 __get_agg_bandwidth(struct aggregator *aggregator)
716 {
717         u32 bandwidth=0;
718         u32 basic_speed;
719
720         if (aggregator->num_of_ports) {
721                 basic_speed = __get_link_speed(aggregator->lag_ports);
722                 switch (basic_speed) {
723                 case AD_LINK_SPEED_BITMASK_1MBPS:
724                         bandwidth = aggregator->num_of_ports;
725                         break;
726                 case AD_LINK_SPEED_BITMASK_10MBPS:
727                         bandwidth = aggregator->num_of_ports * 10;
728                         break;
729                 case AD_LINK_SPEED_BITMASK_100MBPS:
730                         bandwidth = aggregator->num_of_ports * 100;
731                         break;
732                 case AD_LINK_SPEED_BITMASK_1000MBPS:
733                         bandwidth = aggregator->num_of_ports * 1000;
734                         break;
735                 case AD_LINK_SPEED_BITMASK_10000MBPS:
736                         bandwidth = aggregator->num_of_ports * 10000;
737                         break;
738                 default:
739                         bandwidth=0; // to silent the compilor ....
740                 }
741         }
742         return bandwidth;
743 }
744
745 /**
746  * __get_active_agg - get the current active aggregator
747  * @aggregator: the aggregator we're looking at
748  *
749  */
750 static struct aggregator *__get_active_agg(struct aggregator *aggregator)
751 {
752         struct aggregator *retval = NULL;
753
754         for (; aggregator; aggregator = __get_next_agg(aggregator)) {
755                 if (aggregator->is_active) {
756                         retval = aggregator;
757                         break;
758                 }
759         }
760
761         return retval;
762 }
763
764 /**
765  * __update_lacpdu_from_port - update a port's lacpdu fields
766  * @port: the port we're looking at
767  *
768  */
769 static inline void __update_lacpdu_from_port(struct port *port)
770 {
771         struct lacpdu *lacpdu = &port->lacpdu;
772         const struct port_params *partner = &port->partner_oper;
773
774         /* update current actual Actor parameters */
775         /* lacpdu->subtype                   initialized
776          * lacpdu->version_number            initialized
777          * lacpdu->tlv_type_actor_info       initialized
778          * lacpdu->actor_information_length  initialized
779          */
780
781         lacpdu->actor_system_priority = htons(port->actor_system_priority);
782         lacpdu->actor_system = port->actor_system;
783         lacpdu->actor_key = htons(port->actor_oper_port_key);
784         lacpdu->actor_port_priority = htons(port->actor_port_priority);
785         lacpdu->actor_port = htons(port->actor_port_number);
786         lacpdu->actor_state = port->actor_oper_port_state;
787
788         /* lacpdu->reserved_3_1              initialized
789          * lacpdu->tlv_type_partner_info     initialized
790          * lacpdu->partner_information_length initialized
791          */
792
793         lacpdu->partner_system_priority = htons(partner->system_priority);
794         lacpdu->partner_system = partner->system;
795         lacpdu->partner_key = htons(partner->key);
796         lacpdu->partner_port_priority = htons(partner->port_priority);
797         lacpdu->partner_port = htons(partner->port_number);
798         lacpdu->partner_state = partner->port_state;
799
800         /* lacpdu->reserved_3_2              initialized
801          * lacpdu->tlv_type_collector_info   initialized
802          * lacpdu->collector_information_length initialized
803          * collector_max_delay                initialized
804          * reserved_12[12]                   initialized
805          * tlv_type_terminator               initialized
806          * terminator_length                 initialized
807          * reserved_50[50]                   initialized
808          */
809 }
810
811 //////////////////////////////////////////////////////////////////////////////////////
812 // ================= main 802.3ad protocol code ======================================
813 //////////////////////////////////////////////////////////////////////////////////////
814
815 /**
816  * ad_lacpdu_send - send out a lacpdu packet on a given port
817  * @port: the port we're looking at
818  *
819  * Returns:   0 on success
820  *          < 0 on error
821  */
822 static int ad_lacpdu_send(struct port *port)
823 {
824         struct slave *slave = port->slave;
825         struct sk_buff *skb;
826         struct lacpdu_header *lacpdu_header;
827         int length = sizeof(struct lacpdu_header);
828         struct mac_addr lacpdu_multicast_address = AD_MULTICAST_LACPDU_ADDR;
829
830         skb = dev_alloc_skb(length);
831         if (!skb) {
832                 return -ENOMEM;
833         }
834
835         skb->dev = slave->dev;
836         skb_reset_mac_header(skb);
837         skb->network_header = skb->mac_header + ETH_HLEN;
838         skb->protocol = PKT_TYPE_LACPDU;
839         skb->priority = TC_PRIO_CONTROL;
840
841         lacpdu_header = (struct lacpdu_header *)skb_put(skb, length);
842
843         lacpdu_header->ad_header.destination_address = lacpdu_multicast_address;
844         /* Note: source addres is set to be the member's PERMANENT address, because we use it
845            to identify loopback lacpdus in receive. */
846         lacpdu_header->ad_header.source_address = *((struct mac_addr *)(slave->perm_hwaddr));
847         lacpdu_header->ad_header.length_type = PKT_TYPE_LACPDU;
848
849         lacpdu_header->lacpdu = port->lacpdu; // struct copy
850
851         dev_queue_xmit(skb);
852
853         return 0;
854 }
855
856 /**
857  * ad_marker_send - send marker information/response on a given port
858  * @port: the port we're looking at
859  * @marker: marker data to send
860  *
861  * Returns:   0 on success
862  *          < 0 on error
863  */
864 static int ad_marker_send(struct port *port, struct bond_marker *marker)
865 {
866         struct slave *slave = port->slave;
867         struct sk_buff *skb;
868         struct bond_marker_header *marker_header;
869         int length = sizeof(struct bond_marker_header);
870         struct mac_addr lacpdu_multicast_address = AD_MULTICAST_LACPDU_ADDR;
871
872         skb = dev_alloc_skb(length + 16);
873         if (!skb) {
874                 return -ENOMEM;
875         }
876
877         skb_reserve(skb, 16);
878
879         skb->dev = slave->dev;
880         skb_reset_mac_header(skb);
881         skb->network_header = skb->mac_header + ETH_HLEN;
882         skb->protocol = PKT_TYPE_LACPDU;
883
884         marker_header = (struct bond_marker_header *)skb_put(skb, length);
885
886         marker_header->ad_header.destination_address = lacpdu_multicast_address;
887         /* Note: source addres is set to be the member's PERMANENT address, because we use it
888            to identify loopback MARKERs in receive. */
889         marker_header->ad_header.source_address = *((struct mac_addr *)(slave->perm_hwaddr));
890         marker_header->ad_header.length_type = PKT_TYPE_LACPDU;
891
892         marker_header->marker = *marker; // struct copy
893
894         dev_queue_xmit(skb);
895
896         return 0;
897 }
898
899 /**
900  * ad_mux_machine - handle a port's mux state machine
901  * @port: the port we're looking at
902  *
903  */
904 static void ad_mux_machine(struct port *port)
905 {
906         mux_states_t last_state;
907
908         // keep current State Machine state to compare later if it was changed
909         last_state = port->sm_mux_state;
910
911         if (port->sm_vars & AD_PORT_BEGIN) {
912                 port->sm_mux_state = AD_MUX_DETACHED;            // next state
913         } else {
914                 switch (port->sm_mux_state) {
915                 case AD_MUX_DETACHED:
916                         if ((port->sm_vars & AD_PORT_SELECTED) || (port->sm_vars & AD_PORT_STANDBY)) { // if SELECTED or STANDBY
917                                 port->sm_mux_state = AD_MUX_WAITING; // next state
918                         }
919                         break;
920                 case AD_MUX_WAITING:
921                         // if SELECTED == FALSE return to DETACH state
922                         if (!(port->sm_vars & AD_PORT_SELECTED)) { // if UNSELECTED
923                                 port->sm_vars &= ~AD_PORT_READY_N;
924                                 // in order to withhold the Selection Logic to check all ports READY_N value
925                                 // every callback cycle to update ready variable, we check READY_N and update READY here
926                                 __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
927                                 port->sm_mux_state = AD_MUX_DETACHED;    // next state
928                                 break;
929                         }
930
931                         // check if the wait_while_timer expired
932                         if (port->sm_mux_timer_counter && !(--port->sm_mux_timer_counter)) {
933                                 port->sm_vars |= AD_PORT_READY_N;
934                         }
935
936                         // in order to withhold the selection logic to check all ports READY_N value
937                         // every callback cycle to update ready variable, we check READY_N and update READY here
938                         __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
939
940                         // if the wait_while_timer expired, and the port is in READY state, move to ATTACHED state
941                         if ((port->sm_vars & AD_PORT_READY) && !port->sm_mux_timer_counter) {
942                                 port->sm_mux_state = AD_MUX_ATTACHED;    // next state
943                         }
944                         break;
945                 case AD_MUX_ATTACHED:
946                         // check also if agg_select_timer expired(so the edable port will take place only after this timer)
947                         if ((port->sm_vars & AD_PORT_SELECTED) && (port->partner_oper.port_state & AD_STATE_SYNCHRONIZATION) && !__check_agg_selection_timer(port)) {
948                                 port->sm_mux_state = AD_MUX_COLLECTING_DISTRIBUTING;// next state
949                         } else if (!(port->sm_vars & AD_PORT_SELECTED) || (port->sm_vars & AD_PORT_STANDBY)) {    // if UNSELECTED or STANDBY
950                                 port->sm_vars &= ~AD_PORT_READY_N;
951                                 // in order to withhold the selection logic to check all ports READY_N value
952                                 // every callback cycle to update ready variable, we check READY_N and update READY here
953                                 __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
954                                 port->sm_mux_state = AD_MUX_DETACHED;// next state
955                         }
956                         break;
957                 case AD_MUX_COLLECTING_DISTRIBUTING:
958                         if (!(port->sm_vars & AD_PORT_SELECTED) || (port->sm_vars & AD_PORT_STANDBY) ||
959                             !(port->partner_oper.port_state & AD_STATE_SYNCHRONIZATION)
960                            ) {
961                                 port->sm_mux_state = AD_MUX_ATTACHED;// next state
962
963                         } else {
964                                 // if port state hasn't changed make
965                                 // sure that a collecting distributing
966                                 // port in an active aggregator is enabled
967                                 if (port->aggregator &&
968                                     port->aggregator->is_active &&
969                                     !__port_is_enabled(port)) {
970
971                                         __enable_port(port);
972                                 }
973                         }
974                         break;
975                 default:    //to silence the compiler
976                         break;
977                 }
978         }
979
980         // check if the state machine was changed
981         if (port->sm_mux_state != last_state) {
982                 pr_debug("Mux Machine: Port=%d, Last State=%d, Curr State=%d\n", port->actor_port_number, last_state, port->sm_mux_state);
983                 switch (port->sm_mux_state) {
984                 case AD_MUX_DETACHED:
985                         __detach_bond_from_agg(port);
986                         port->actor_oper_port_state &= ~AD_STATE_SYNCHRONIZATION;
987                         ad_disable_collecting_distributing(port);
988                         port->actor_oper_port_state &= ~AD_STATE_COLLECTING;
989                         port->actor_oper_port_state &= ~AD_STATE_DISTRIBUTING;
990                         port->ntt = 1;
991                         break;
992                 case AD_MUX_WAITING:
993                         port->sm_mux_timer_counter = __ad_timer_to_ticks(AD_WAIT_WHILE_TIMER, 0);
994                         break;
995                 case AD_MUX_ATTACHED:
996                         __attach_bond_to_agg(port);
997                         port->actor_oper_port_state |= AD_STATE_SYNCHRONIZATION;
998                         port->actor_oper_port_state &= ~AD_STATE_COLLECTING;
999                         port->actor_oper_port_state &= ~AD_STATE_DISTRIBUTING;
1000                         ad_disable_collecting_distributing(port);
1001                         port->ntt = 1;
1002                         break;
1003                 case AD_MUX_COLLECTING_DISTRIBUTING:
1004                         port->actor_oper_port_state |= AD_STATE_COLLECTING;
1005                         port->actor_oper_port_state |= AD_STATE_DISTRIBUTING;
1006                         ad_enable_collecting_distributing(port);
1007                         port->ntt = 1;
1008                         break;
1009                 default:    //to silence the compiler
1010                         break;
1011                 }
1012         }
1013 }
1014
1015 /**
1016  * ad_rx_machine - handle a port's rx State Machine
1017  * @lacpdu: the lacpdu we've received
1018  * @port: the port we're looking at
1019  *
1020  * If lacpdu arrived, stop previous timer (if exists) and set the next state as
1021  * CURRENT. If timer expired set the state machine in the proper state.
1022  * In other cases, this function checks if we need to switch to other state.
1023  */
1024 static void ad_rx_machine(struct lacpdu *lacpdu, struct port *port)
1025 {
1026         rx_states_t last_state;
1027
1028         // Lock to prevent 2 instances of this function to run simultaneously(rx interrupt and periodic machine callback)
1029         __get_rx_machine_lock(port);
1030
1031         // keep current State Machine state to compare later if it was changed
1032         last_state = port->sm_rx_state;
1033
1034         // check if state machine should change state
1035         // first, check if port was reinitialized
1036         if (port->sm_vars & AD_PORT_BEGIN) {
1037                 port->sm_rx_state = AD_RX_INITIALIZE;               // next state
1038         }
1039         // check if port is not enabled
1040         else if (!(port->sm_vars & AD_PORT_BEGIN) && !port->is_enabled && !(port->sm_vars & AD_PORT_MOVED)) {
1041                 port->sm_rx_state = AD_RX_PORT_DISABLED;            // next state
1042         }
1043         // check if new lacpdu arrived
1044         else if (lacpdu && ((port->sm_rx_state == AD_RX_EXPIRED) || (port->sm_rx_state == AD_RX_DEFAULTED) || (port->sm_rx_state == AD_RX_CURRENT))) {
1045                 port->sm_rx_timer_counter = 0; // zero timer
1046                 port->sm_rx_state = AD_RX_CURRENT;
1047         } else {
1048                 // if timer is on, and if it is expired
1049                 if (port->sm_rx_timer_counter && !(--port->sm_rx_timer_counter)) {
1050                         switch (port->sm_rx_state) {
1051                         case AD_RX_EXPIRED:
1052                                 port->sm_rx_state = AD_RX_DEFAULTED;            // next state
1053                                 break;
1054                         case AD_RX_CURRENT:
1055                                 port->sm_rx_state = AD_RX_EXPIRED;          // next state
1056                                 break;
1057                         default:    //to silence the compiler
1058                                 break;
1059                         }
1060                 } else {
1061                         // if no lacpdu arrived and no timer is on
1062                         switch (port->sm_rx_state) {
1063                         case AD_RX_PORT_DISABLED:
1064                                 if (port->sm_vars & AD_PORT_MOVED) {
1065                                         port->sm_rx_state = AD_RX_INITIALIZE;       // next state
1066                                 } else if (port->is_enabled && (port->sm_vars & AD_PORT_LACP_ENABLED)) {
1067                                         port->sm_rx_state = AD_RX_EXPIRED;      // next state
1068                                 } else if (port->is_enabled && ((port->sm_vars & AD_PORT_LACP_ENABLED) == 0)) {
1069                                         port->sm_rx_state = AD_RX_LACP_DISABLED;    // next state
1070                                 }
1071                                 break;
1072                         default:    //to silence the compiler
1073                                 break;
1074
1075                         }
1076                 }
1077         }
1078
1079         // check if the State machine was changed or new lacpdu arrived
1080         if ((port->sm_rx_state != last_state) || (lacpdu)) {
1081                 pr_debug("Rx Machine: Port=%d, Last State=%d, Curr State=%d\n", port->actor_port_number, last_state, port->sm_rx_state);
1082                 switch (port->sm_rx_state) {
1083                 case AD_RX_INITIALIZE:
1084                         if (!(port->actor_oper_port_key & AD_DUPLEX_KEY_BITS)) {
1085                                 port->sm_vars &= ~AD_PORT_LACP_ENABLED;
1086                         } else {
1087                                 port->sm_vars |= AD_PORT_LACP_ENABLED;
1088                         }
1089                         port->sm_vars &= ~AD_PORT_SELECTED;
1090                         __record_default(port);
1091                         port->actor_oper_port_state &= ~AD_STATE_EXPIRED;
1092                         port->sm_vars &= ~AD_PORT_MOVED;
1093                         port->sm_rx_state = AD_RX_PORT_DISABLED;        // next state
1094
1095                         /*- Fall Through -*/
1096
1097                 case AD_RX_PORT_DISABLED:
1098                         port->sm_vars &= ~AD_PORT_MATCHED;
1099                         break;
1100                 case AD_RX_LACP_DISABLED:
1101                         port->sm_vars &= ~AD_PORT_SELECTED;
1102                         __record_default(port);
1103                         port->partner_oper.port_state &= ~AD_STATE_AGGREGATION;
1104                         port->sm_vars |= AD_PORT_MATCHED;
1105                         port->actor_oper_port_state &= ~AD_STATE_EXPIRED;
1106                         break;
1107                 case AD_RX_EXPIRED:
1108                         //Reset of the Synchronization flag. (Standard 43.4.12)
1109                         //This reset cause to disable this port in the COLLECTING_DISTRIBUTING state of the
1110                         //mux machine in case of EXPIRED even if LINK_DOWN didn't arrive for the port.
1111                         port->partner_oper.port_state &= ~AD_STATE_SYNCHRONIZATION;
1112                         port->sm_vars &= ~AD_PORT_MATCHED;
1113                         port->partner_oper.port_state |= AD_SHORT_TIMEOUT;
1114                         port->sm_rx_timer_counter = __ad_timer_to_ticks(AD_CURRENT_WHILE_TIMER, (u16)(AD_SHORT_TIMEOUT));
1115                         port->actor_oper_port_state |= AD_STATE_EXPIRED;
1116                         break;
1117                 case AD_RX_DEFAULTED:
1118                         __update_default_selected(port);
1119                         __record_default(port);
1120                         port->sm_vars |= AD_PORT_MATCHED;
1121                         port->actor_oper_port_state &= ~AD_STATE_EXPIRED;
1122                         break;
1123                 case AD_RX_CURRENT:
1124                         // detect loopback situation
1125                         if (!MAC_ADDRESS_COMPARE(&(lacpdu->actor_system), &(port->actor_system))) {
1126                                 // INFO_RECEIVED_LOOPBACK_FRAMES
1127                                 printk(KERN_ERR DRV_NAME ": %s: An illegal loopback occurred on "
1128                                        "adapter (%s). Check the configuration to verify that all "
1129                                        "Adapters are connected to 802.3ad compliant switch ports\n",
1130                                        port->slave->dev->master->name, port->slave->dev->name);
1131                                 __release_rx_machine_lock(port);
1132                                 return;
1133                         }
1134                         __update_selected(lacpdu, port);
1135                         __update_ntt(lacpdu, port);
1136                         __record_pdu(lacpdu, port);
1137                         __choose_matched(lacpdu, port);
1138                         port->sm_rx_timer_counter = __ad_timer_to_ticks(AD_CURRENT_WHILE_TIMER, (u16)(port->actor_oper_port_state & AD_STATE_LACP_TIMEOUT));
1139                         port->actor_oper_port_state &= ~AD_STATE_EXPIRED;
1140                         // verify that if the aggregator is enabled, the port is enabled too.
1141                         //(because if the link goes down for a short time, the 802.3ad will not
1142                         // catch it, and the port will continue to be disabled)
1143                         if (port->aggregator && port->aggregator->is_active && !__port_is_enabled(port)) {
1144                                 __enable_port(port);
1145                         }
1146                         break;
1147                 default:    //to silence the compiler
1148                         break;
1149                 }
1150         }
1151         __release_rx_machine_lock(port);
1152 }
1153
1154 /**
1155  * ad_tx_machine - handle a port's tx state machine
1156  * @port: the port we're looking at
1157  *
1158  */
1159 static void ad_tx_machine(struct port *port)
1160 {
1161         // check if tx timer expired, to verify that we do not send more than 3 packets per second
1162         if (port->sm_tx_timer_counter && !(--port->sm_tx_timer_counter)) {
1163                 // check if there is something to send
1164                 if (port->ntt && (port->sm_vars & AD_PORT_LACP_ENABLED)) {
1165                         __update_lacpdu_from_port(port);
1166                         // send the lacpdu
1167                         if (ad_lacpdu_send(port) >= 0) {
1168                                 pr_debug("Sent LACPDU on port %d\n", port->actor_port_number);
1169                                 // mark ntt as false, so it will not be sent again until demanded
1170                                 port->ntt = 0;
1171                         }
1172                 }
1173                 // restart tx timer(to verify that we will not exceed AD_MAX_TX_IN_SECOND
1174                 port->sm_tx_timer_counter=ad_ticks_per_sec/AD_MAX_TX_IN_SECOND;
1175         }
1176 }
1177
1178 /**
1179  * ad_periodic_machine - handle a port's periodic state machine
1180  * @port: the port we're looking at
1181  *
1182  * Turn ntt flag on priodically to perform periodic transmission of lacpdu's.
1183  */
1184 static void ad_periodic_machine(struct port *port)
1185 {
1186         periodic_states_t last_state;
1187
1188         // keep current state machine state to compare later if it was changed
1189         last_state = port->sm_periodic_state;
1190
1191         // check if port was reinitialized
1192         if (((port->sm_vars & AD_PORT_BEGIN) || !(port->sm_vars & AD_PORT_LACP_ENABLED) || !port->is_enabled) ||
1193             (!(port->actor_oper_port_state & AD_STATE_LACP_ACTIVITY) && !(port->partner_oper.port_state & AD_STATE_LACP_ACTIVITY))
1194            ) {
1195                 port->sm_periodic_state = AD_NO_PERIODIC;            // next state
1196         }
1197         // check if state machine should change state
1198         else if (port->sm_periodic_timer_counter) {
1199                 // check if periodic state machine expired
1200                 if (!(--port->sm_periodic_timer_counter)) {
1201                         // if expired then do tx
1202                         port->sm_periodic_state = AD_PERIODIC_TX;    // next state
1203                 } else {
1204                         // If not expired, check if there is some new timeout parameter from the partner state
1205                         switch (port->sm_periodic_state) {
1206                         case AD_FAST_PERIODIC:
1207                                 if (!(port->partner_oper.port_state & AD_STATE_LACP_TIMEOUT)) {
1208                                         port->sm_periodic_state = AD_SLOW_PERIODIC;  // next state
1209                                 }
1210                                 break;
1211                         case AD_SLOW_PERIODIC:
1212                                 if ((port->partner_oper.port_state & AD_STATE_LACP_TIMEOUT)) {
1213                                         // stop current timer
1214                                         port->sm_periodic_timer_counter = 0;
1215                                         port->sm_periodic_state = AD_PERIODIC_TX;        // next state
1216                                 }
1217                                 break;
1218                         default:    //to silence the compiler
1219                                 break;
1220                         }
1221                 }
1222         } else {
1223                 switch (port->sm_periodic_state) {
1224                 case AD_NO_PERIODIC:
1225                         port->sm_periodic_state = AD_FAST_PERIODIC;      // next state
1226                         break;
1227                 case AD_PERIODIC_TX:
1228                         if (!(port->partner_oper.port_state & AD_STATE_LACP_TIMEOUT)) {
1229                                 port->sm_periodic_state = AD_SLOW_PERIODIC;  // next state
1230                         } else {
1231                                 port->sm_periodic_state = AD_FAST_PERIODIC;  // next state
1232                         }
1233                         break;
1234                 default:    //to silence the compiler
1235                         break;
1236                 }
1237         }
1238
1239         // check if the state machine was changed
1240         if (port->sm_periodic_state != last_state) {
1241                 pr_debug("Periodic Machine: Port=%d, Last State=%d, Curr State=%d\n", port->actor_port_number, last_state, port->sm_periodic_state);
1242                 switch (port->sm_periodic_state) {
1243                 case AD_NO_PERIODIC:
1244                         port->sm_periodic_timer_counter = 0;       // zero timer
1245                         break;
1246                 case AD_FAST_PERIODIC:
1247                         port->sm_periodic_timer_counter = __ad_timer_to_ticks(AD_PERIODIC_TIMER, (u16)(AD_FAST_PERIODIC_TIME))-1; // decrement 1 tick we lost in the PERIODIC_TX cycle
1248                         break;
1249                 case AD_SLOW_PERIODIC:
1250                         port->sm_periodic_timer_counter = __ad_timer_to_ticks(AD_PERIODIC_TIMER, (u16)(AD_SLOW_PERIODIC_TIME))-1; // decrement 1 tick we lost in the PERIODIC_TX cycle
1251                         break;
1252                 case AD_PERIODIC_TX:
1253                         port->ntt = 1;
1254                         break;
1255                 default:    //to silence the compiler
1256                         break;
1257                 }
1258         }
1259 }
1260
1261 /**
1262  * ad_port_selection_logic - select aggregation groups
1263  * @port: the port we're looking at
1264  *
1265  * Select aggregation groups, and assign each port for it's aggregetor. The
1266  * selection logic is called in the inititalization (after all the handshkes),
1267  * and after every lacpdu receive (if selected is off).
1268  */
1269 static void ad_port_selection_logic(struct port *port)
1270 {
1271         struct aggregator *aggregator, *free_aggregator = NULL, *temp_aggregator;
1272         struct port *last_port = NULL, *curr_port;
1273         int found = 0;
1274
1275         // if the port is already Selected, do nothing
1276         if (port->sm_vars & AD_PORT_SELECTED) {
1277                 return;
1278         }
1279
1280         // if the port is connected to other aggregator, detach it
1281         if (port->aggregator) {
1282                 // detach the port from its former aggregator
1283                 temp_aggregator=port->aggregator;
1284                 for (curr_port=temp_aggregator->lag_ports; curr_port; last_port=curr_port, curr_port=curr_port->next_port_in_aggregator) {
1285                         if (curr_port == port) {
1286                                 temp_aggregator->num_of_ports--;
1287                                 if (!last_port) {// if it is the first port attached to the aggregator
1288                                         temp_aggregator->lag_ports=port->next_port_in_aggregator;
1289                                 } else {// not the first port attached to the aggregator
1290                                         last_port->next_port_in_aggregator=port->next_port_in_aggregator;
1291                                 }
1292
1293                                 // clear the port's relations to this aggregator
1294                                 port->aggregator = NULL;
1295                                 port->next_port_in_aggregator=NULL;
1296                                 port->actor_port_aggregator_identifier=0;
1297
1298                                 pr_debug("Port %d left LAG %d\n", port->actor_port_number, temp_aggregator->aggregator_identifier);
1299                                 // if the aggregator is empty, clear its parameters, and set it ready to be attached
1300                                 if (!temp_aggregator->lag_ports) {
1301                                         ad_clear_agg(temp_aggregator);
1302                                 }
1303                                 break;
1304                         }
1305                 }
1306                 if (!curr_port) { // meaning: the port was related to an aggregator but was not on the aggregator port list
1307                         printk(KERN_WARNING DRV_NAME ": %s: Warning: Port %d (on %s) was "
1308                                "related to aggregator %d but was not on its port list\n",
1309                                port->slave->dev->master->name,
1310                                port->actor_port_number, port->slave->dev->name,
1311                                port->aggregator->aggregator_identifier);
1312                 }
1313         }
1314         // search on all aggregators for a suitable aggregator for this port
1315         for (aggregator = __get_first_agg(port); aggregator;
1316              aggregator = __get_next_agg(aggregator)) {
1317
1318                 // keep a free aggregator for later use(if needed)
1319                 if (!aggregator->lag_ports) {
1320                         if (!free_aggregator) {
1321                                 free_aggregator=aggregator;
1322                         }
1323                         continue;
1324                 }
1325                 // check if current aggregator suits us
1326                 if (((aggregator->actor_oper_aggregator_key == port->actor_oper_port_key) && // if all parameters match AND
1327                      !MAC_ADDRESS_COMPARE(&(aggregator->partner_system), &(port->partner_oper.system)) &&
1328                      (aggregator->partner_system_priority == port->partner_oper.system_priority) &&
1329                      (aggregator->partner_oper_aggregator_key == port->partner_oper.key)
1330                     ) &&
1331                     ((MAC_ADDRESS_COMPARE(&(port->partner_oper.system), &(null_mac_addr)) && // partner answers
1332                       !aggregator->is_individual)  // but is not individual OR
1333                     )
1334                    ) {
1335                         // attach to the founded aggregator
1336                         port->aggregator = aggregator;
1337                         port->actor_port_aggregator_identifier=port->aggregator->aggregator_identifier;
1338                         port->next_port_in_aggregator=aggregator->lag_ports;
1339                         port->aggregator->num_of_ports++;
1340                         aggregator->lag_ports=port;
1341                         pr_debug("Port %d joined LAG %d(existing LAG)\n", port->actor_port_number, port->aggregator->aggregator_identifier);
1342
1343                         // mark this port as selected
1344                         port->sm_vars |= AD_PORT_SELECTED;
1345                         found = 1;
1346                         break;
1347                 }
1348         }
1349
1350         // the port couldn't find an aggregator - attach it to a new aggregator
1351         if (!found) {
1352                 if (free_aggregator) {
1353                         // assign port a new aggregator
1354                         port->aggregator = free_aggregator;
1355                         port->actor_port_aggregator_identifier=port->aggregator->aggregator_identifier;
1356
1357                         // update the new aggregator's parameters
1358                         // if port was responsed from the end-user
1359                         if (port->actor_oper_port_key & AD_DUPLEX_KEY_BITS) {// if port is full duplex
1360                                 port->aggregator->is_individual = 0;
1361                         } else {
1362                                 port->aggregator->is_individual = 1;
1363                         }
1364
1365                         port->aggregator->actor_admin_aggregator_key = port->actor_admin_port_key;
1366                         port->aggregator->actor_oper_aggregator_key = port->actor_oper_port_key;
1367                         port->aggregator->partner_system=port->partner_oper.system;
1368                         port->aggregator->partner_system_priority = port->partner_oper.system_priority;
1369                         port->aggregator->partner_oper_aggregator_key = port->partner_oper.key;
1370                         port->aggregator->receive_state = 1;
1371                         port->aggregator->transmit_state = 1;
1372                         port->aggregator->lag_ports = port;
1373                         port->aggregator->num_of_ports++;
1374
1375                         // mark this port as selected
1376                         port->sm_vars |= AD_PORT_SELECTED;
1377
1378                         pr_debug("Port %d joined LAG %d(new LAG)\n", port->actor_port_number, port->aggregator->aggregator_identifier);
1379                 } else {
1380                         printk(KERN_ERR DRV_NAME ": %s: Port %d (on %s) did not find a suitable aggregator\n",
1381                                port->slave->dev->master->name,
1382                                port->actor_port_number, port->slave->dev->name);
1383                 }
1384         }
1385         // if all aggregator's ports are READY_N == TRUE, set ready=TRUE in all aggregator's ports
1386         // else set ready=FALSE in all aggregator's ports
1387         __set_agg_ports_ready(port->aggregator, __agg_ports_are_ready(port->aggregator));
1388
1389         aggregator = __get_first_agg(port);
1390         ad_agg_selection_logic(aggregator);
1391 }
1392
1393 /*
1394  * Decide if "agg" is a better choice for the new active aggregator that
1395  * the current best, according to the ad_select policy.
1396  */
1397 static struct aggregator *ad_agg_selection_test(struct aggregator *best,
1398                                                 struct aggregator *curr)
1399 {
1400         /*
1401          * 0. If no best, select current.
1402          *
1403          * 1. If the current agg is not individual, and the best is
1404          *    individual, select current.
1405          *
1406          * 2. If current agg is individual and the best is not, keep best.
1407          *
1408          * 3. Therefore, current and best are both individual or both not
1409          *    individual, so:
1410          *
1411          * 3a. If current agg partner replied, and best agg partner did not,
1412          *     select current.
1413          *
1414          * 3b. If current agg partner did not reply and best agg partner
1415          *     did reply, keep best.
1416          *
1417          * 4.  Therefore, current and best both have partner replies or
1418          *     both do not, so perform selection policy:
1419          *
1420          * BOND_AD_COUNT: Select by count of ports.  If count is equal,
1421          *     select by bandwidth.
1422          *
1423          * BOND_AD_STABLE, BOND_AD_BANDWIDTH: Select by bandwidth.
1424          */
1425         if (!best)
1426                 return curr;
1427
1428         if (!curr->is_individual && best->is_individual)
1429                 return curr;
1430
1431         if (curr->is_individual && !best->is_individual)
1432                 return best;
1433
1434         if (__agg_has_partner(curr) && !__agg_has_partner(best))
1435                 return curr;
1436
1437         if (!__agg_has_partner(curr) && __agg_has_partner(best))
1438                 return best;
1439
1440         switch (__get_agg_selection_mode(curr->lag_ports)) {
1441         case BOND_AD_COUNT:
1442                 if (curr->num_of_ports > best->num_of_ports)
1443                         return curr;
1444
1445                 if (curr->num_of_ports < best->num_of_ports)
1446                         return best;
1447
1448                 /*FALLTHROUGH*/
1449         case BOND_AD_STABLE:
1450         case BOND_AD_BANDWIDTH:
1451                 if (__get_agg_bandwidth(curr) > __get_agg_bandwidth(best))
1452                         return curr;
1453
1454                 break;
1455
1456         default:
1457                 printk(KERN_WARNING DRV_NAME
1458                        ": %s: Impossible agg select mode %d\n",
1459                        curr->slave->dev->master->name,
1460                        __get_agg_selection_mode(curr->lag_ports));
1461                 break;
1462         }
1463
1464         return best;
1465 }
1466
1467 /**
1468  * ad_agg_selection_logic - select an aggregation group for a team
1469  * @aggregator: the aggregator we're looking at
1470  *
1471  * It is assumed that only one aggregator may be selected for a team.
1472  *
1473  * The logic of this function is to select the aggregator according to
1474  * the ad_select policy:
1475  *
1476  * BOND_AD_STABLE: select the aggregator with the most ports attached to
1477  * it, and to reselect the active aggregator only if the previous
1478  * aggregator has no more ports related to it.
1479  *
1480  * BOND_AD_BANDWIDTH: select the aggregator with the highest total
1481  * bandwidth, and reselect whenever a link state change takes place or the
1482  * set of slaves in the bond changes.
1483  *
1484  * BOND_AD_COUNT: select the aggregator with largest number of ports
1485  * (slaves), and reselect whenever a link state change takes place or the
1486  * set of slaves in the bond changes.
1487  *
1488  * FIXME: this function MUST be called with the first agg in the bond, or
1489  * __get_active_agg() won't work correctly. This function should be better
1490  * called with the bond itself, and retrieve the first agg from it.
1491  */
1492 static void ad_agg_selection_logic(struct aggregator *agg)
1493 {
1494         struct aggregator *best, *active, *origin;
1495         struct port *port;
1496
1497         origin = agg;
1498
1499         active = __get_active_agg(agg);
1500         best = active;
1501
1502         do {
1503                 agg->is_active = 0;
1504
1505                 if (agg->num_of_ports)
1506                         best = ad_agg_selection_test(best, agg);
1507
1508         } while ((agg = __get_next_agg(agg)));
1509
1510         if (best &&
1511             __get_agg_selection_mode(best->lag_ports) == BOND_AD_STABLE) {
1512                 /*
1513                  * For the STABLE policy, don't replace the old active
1514                  * aggregator if it's still active (it has an answering
1515                  * partner) or if both the best and active don't have an
1516                  * answering partner.
1517                  */
1518                 if (active && active->lag_ports &&
1519                     active->lag_ports->is_enabled &&
1520                     (__agg_has_partner(active) ||
1521                      (!__agg_has_partner(active) && !__agg_has_partner(best)))) {
1522                         if (!(!active->actor_oper_aggregator_key &&
1523                               best->actor_oper_aggregator_key)) {
1524                                 best = NULL;
1525                                 active->is_active = 1;
1526                         }
1527                 }
1528         }
1529
1530         if (best && (best == active)) {
1531                 best = NULL;
1532                 active->is_active = 1;
1533         }
1534
1535         // if there is new best aggregator, activate it
1536         if (best) {
1537                 pr_debug("best Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1538                        best->aggregator_identifier, best->num_of_ports,
1539                        best->actor_oper_aggregator_key,
1540                        best->partner_oper_aggregator_key,
1541                        best->is_individual, best->is_active);
1542                 pr_debug("best ports %p slave %p %s\n",
1543                        best->lag_ports, best->slave,
1544                        best->slave ? best->slave->dev->name : "NULL");
1545
1546                 for (agg = __get_first_agg(best->lag_ports); agg;
1547                      agg = __get_next_agg(agg)) {
1548
1549                         pr_debug("Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1550                                 agg->aggregator_identifier, agg->num_of_ports,
1551                                 agg->actor_oper_aggregator_key,
1552                                 agg->partner_oper_aggregator_key,
1553                                 agg->is_individual, agg->is_active);
1554                 }
1555
1556                 // check if any partner replys
1557                 if (best->is_individual) {
1558                         printk(KERN_WARNING DRV_NAME ": %s: Warning: No 802.3ad"
1559                                " response from the link partner for any"
1560                                " adapters in the bond\n",
1561                                best->slave->dev->master->name);
1562                 }
1563
1564                 best->is_active = 1;
1565                 pr_debug("LAG %d chosen as the active LAG\n",
1566                         best->aggregator_identifier);
1567                 pr_debug("Agg=%d; P=%d; a k=%d; p k=%d; Ind=%d; Act=%d\n",
1568                         best->aggregator_identifier, best->num_of_ports,
1569                         best->actor_oper_aggregator_key,
1570                         best->partner_oper_aggregator_key,
1571                         best->is_individual, best->is_active);
1572
1573                 // disable the ports that were related to the former active_aggregator
1574                 if (active) {
1575                         for (port = active->lag_ports; port;
1576                              port = port->next_port_in_aggregator) {
1577                                 __disable_port(port);
1578                         }
1579                 }
1580         }
1581
1582         /*
1583          * if the selected aggregator is of join individuals
1584          * (partner_system is NULL), enable their ports
1585          */
1586         active = __get_active_agg(origin);
1587
1588         if (active) {
1589                 if (!__agg_has_partner(active)) {
1590                         for (port = active->lag_ports; port;
1591                              port = port->next_port_in_aggregator) {
1592                                 __enable_port(port);
1593                         }
1594                 }
1595         }
1596
1597         if (origin->slave) {
1598                 struct bonding *bond;
1599
1600                 bond = bond_get_bond_by_slave(origin->slave);
1601                 if (bond)
1602                         bond_3ad_set_carrier(bond);
1603         }
1604 }
1605
1606 /**
1607  * ad_clear_agg - clear a given aggregator's parameters
1608  * @aggregator: the aggregator we're looking at
1609  *
1610  */
1611 static void ad_clear_agg(struct aggregator *aggregator)
1612 {
1613         if (aggregator) {
1614                 aggregator->is_individual = 0;
1615                 aggregator->actor_admin_aggregator_key = 0;
1616                 aggregator->actor_oper_aggregator_key = 0;
1617                 aggregator->partner_system = null_mac_addr;
1618                 aggregator->partner_system_priority = 0;
1619                 aggregator->partner_oper_aggregator_key = 0;
1620                 aggregator->receive_state = 0;
1621                 aggregator->transmit_state = 0;
1622                 aggregator->lag_ports = NULL;
1623                 aggregator->is_active = 0;
1624                 aggregator->num_of_ports = 0;
1625                 pr_debug("LAG %d was cleared\n", aggregator->aggregator_identifier);
1626         }
1627 }
1628
1629 /**
1630  * ad_initialize_agg - initialize a given aggregator's parameters
1631  * @aggregator: the aggregator we're looking at
1632  *
1633  */
1634 static void ad_initialize_agg(struct aggregator *aggregator)
1635 {
1636         if (aggregator) {
1637                 ad_clear_agg(aggregator);
1638
1639                 aggregator->aggregator_mac_address = null_mac_addr;
1640                 aggregator->aggregator_identifier = 0;
1641                 aggregator->slave = NULL;
1642         }
1643 }
1644
1645 /**
1646  * ad_initialize_port - initialize a given port's parameters
1647  * @aggregator: the aggregator we're looking at
1648  * @lacp_fast: boolean. whether fast periodic should be used
1649  *
1650  */
1651 static void ad_initialize_port(struct port *port, int lacp_fast)
1652 {
1653         static const struct port_params tmpl = {
1654                 .system_priority = 0xffff,
1655                 .key             = 1,
1656                 .port_number     = 1,
1657                 .port_priority   = 0xff,
1658                 .port_state      = 1,
1659         };
1660
1661         if (port) {
1662                 port->actor_port_number = 1;
1663                 port->actor_port_priority = 0xff;
1664                 port->actor_system = null_mac_addr;
1665                 port->actor_system_priority = 0xffff;
1666                 port->actor_port_aggregator_identifier = 0;
1667                 port->ntt = 0;
1668                 port->actor_admin_port_key = 1;
1669                 port->actor_oper_port_key  = 1;
1670                 port->actor_admin_port_state = AD_STATE_AGGREGATION | AD_STATE_LACP_ACTIVITY;
1671                 port->actor_oper_port_state  = AD_STATE_AGGREGATION | AD_STATE_LACP_ACTIVITY;
1672
1673                 if (lacp_fast) {
1674                         port->actor_oper_port_state |= AD_STATE_LACP_TIMEOUT;
1675                 }
1676
1677                 memcpy(&port->partner_admin, &tmpl, sizeof(tmpl));
1678                 memcpy(&port->partner_oper, &tmpl, sizeof(tmpl));
1679
1680                 port->is_enabled = 1;
1681                 // ****** private parameters ******
1682                 port->sm_vars = 0x3;
1683                 port->sm_rx_state = 0;
1684                 port->sm_rx_timer_counter = 0;
1685                 port->sm_periodic_state = 0;
1686                 port->sm_periodic_timer_counter = 0;
1687                 port->sm_mux_state = 0;
1688                 port->sm_mux_timer_counter = 0;
1689                 port->sm_tx_state = 0;
1690                 port->sm_tx_timer_counter = 0;
1691                 port->slave = NULL;
1692                 port->aggregator = NULL;
1693                 port->next_port_in_aggregator = NULL;
1694                 port->transaction_id = 0;
1695
1696                 ad_initialize_lacpdu(&(port->lacpdu));
1697         }
1698 }
1699
1700 /**
1701  * ad_enable_collecting_distributing - enable a port's transmit/receive
1702  * @port: the port we're looking at
1703  *
1704  * Enable @port if it's in an active aggregator
1705  */
1706 static void ad_enable_collecting_distributing(struct port *port)
1707 {
1708         if (port->aggregator->is_active) {
1709                 pr_debug("Enabling port %d(LAG %d)\n", port->actor_port_number, port->aggregator->aggregator_identifier);
1710                 __enable_port(port);
1711         }
1712 }
1713
1714 /**
1715  * ad_disable_collecting_distributing - disable a port's transmit/receive
1716  * @port: the port we're looking at
1717  *
1718  */
1719 static void ad_disable_collecting_distributing(struct port *port)
1720 {
1721         if (port->aggregator && MAC_ADDRESS_COMPARE(&(port->aggregator->partner_system), &(null_mac_addr))) {
1722                 pr_debug("Disabling port %d(LAG %d)\n", port->actor_port_number, port->aggregator->aggregator_identifier);
1723                 __disable_port(port);
1724         }
1725 }
1726
1727 #if 0
1728 /**
1729  * ad_marker_info_send - send a marker information frame
1730  * @port: the port we're looking at
1731  *
1732  * This function does nothing since we decided not to implement send and handle
1733  * response for marker PDU's, in this stage, but only to respond to marker
1734  * information.
1735  */
1736 static void ad_marker_info_send(struct port *port)
1737 {
1738         struct bond_marker marker;
1739         u16 index;
1740
1741         // fill the marker PDU with the appropriate values
1742         marker.subtype = 0x02;
1743         marker.version_number = 0x01;
1744         marker.tlv_type = AD_MARKER_INFORMATION_SUBTYPE;
1745         marker.marker_length = 0x16;
1746         // convert requester_port to Big Endian
1747         marker.requester_port = (((port->actor_port_number & 0xFF) << 8) |((u16)(port->actor_port_number & 0xFF00) >> 8));
1748         marker.requester_system = port->actor_system;
1749         // convert requester_port(u32) to Big Endian
1750         marker.requester_transaction_id = (((++port->transaction_id & 0xFF) << 24) |((port->transaction_id & 0xFF00) << 8) |((port->transaction_id & 0xFF0000) >> 8) |((port->transaction_id & 0xFF000000) >> 24));
1751         marker.pad = 0;
1752         marker.tlv_type_terminator = 0x00;
1753         marker.terminator_length = 0x00;
1754         for (index=0; index<90; index++) {
1755                 marker.reserved_90[index]=0;
1756         }
1757
1758         // send the marker information
1759         if (ad_marker_send(port, &marker) >= 0) {
1760                 pr_debug("Sent Marker Information on port %d\n", port->actor_port_number);
1761         }
1762 }
1763 #endif
1764
1765 /**
1766  * ad_marker_info_received - handle receive of a Marker information frame
1767  * @marker_info: Marker info received
1768  * @port: the port we're looking at
1769  *
1770  */
1771 static void ad_marker_info_received(struct bond_marker *marker_info,
1772         struct port *port)
1773 {
1774         struct bond_marker marker;
1775
1776         // copy the received marker data to the response marker
1777         //marker = *marker_info;
1778         memcpy(&marker, marker_info, sizeof(struct bond_marker));
1779         // change the marker subtype to marker response
1780         marker.tlv_type=AD_MARKER_RESPONSE_SUBTYPE;
1781         // send the marker response
1782
1783         if (ad_marker_send(port, &marker) >= 0) {
1784                 pr_debug("Sent Marker Response on port %d\n", port->actor_port_number);
1785         }
1786 }
1787
1788 /**
1789  * ad_marker_response_received - handle receive of a marker response frame
1790  * @marker: marker PDU received
1791  * @port: the port we're looking at
1792  *
1793  * This function does nothing since we decided not to implement send and handle
1794  * response for marker PDU's, in this stage, but only to respond to marker
1795  * information.
1796  */
1797 static void ad_marker_response_received(struct bond_marker *marker,
1798         struct port *port)
1799 {
1800         marker=NULL; // just to satisfy the compiler
1801         port=NULL;  // just to satisfy the compiler
1802         // DO NOTHING, SINCE WE DECIDED NOT TO IMPLEMENT THIS FEATURE FOR NOW
1803 }
1804
1805 /**
1806  * ad_initialize_lacpdu - initialize a given lacpdu structure
1807  * @lacpdu: lacpdu structure to initialize
1808  *
1809  */
1810 static void ad_initialize_lacpdu(struct lacpdu *lacpdu)
1811 {
1812         u16 index;
1813
1814         // initialize lacpdu data
1815         lacpdu->subtype = 0x01;
1816         lacpdu->version_number = 0x01;
1817         lacpdu->tlv_type_actor_info = 0x01;
1818         lacpdu->actor_information_length = 0x14;
1819         // lacpdu->actor_system_priority    updated on send
1820         // lacpdu->actor_system             updated on send
1821         // lacpdu->actor_key                updated on send
1822         // lacpdu->actor_port_priority      updated on send
1823         // lacpdu->actor_port               updated on send
1824         // lacpdu->actor_state              updated on send
1825         lacpdu->tlv_type_partner_info = 0x02;
1826         lacpdu->partner_information_length = 0x14;
1827         for (index=0; index<=2; index++) {
1828                 lacpdu->reserved_3_1[index]=0;
1829         }
1830         // lacpdu->partner_system_priority  updated on send
1831         // lacpdu->partner_system           updated on send
1832         // lacpdu->partner_key              updated on send
1833         // lacpdu->partner_port_priority    updated on send
1834         // lacpdu->partner_port             updated on send
1835         // lacpdu->partner_state            updated on send
1836         for (index=0; index<=2; index++) {
1837                 lacpdu->reserved_3_2[index]=0;
1838         }
1839         lacpdu->tlv_type_collector_info = 0x03;
1840         lacpdu->collector_information_length= 0x10;
1841         lacpdu->collector_max_delay = htons(AD_COLLECTOR_MAX_DELAY);
1842         for (index=0; index<=11; index++) {
1843                 lacpdu->reserved_12[index]=0;
1844         }
1845         lacpdu->tlv_type_terminator = 0x00;
1846         lacpdu->terminator_length = 0;
1847         for (index=0; index<=49; index++) {
1848                 lacpdu->reserved_50[index]=0;
1849         }
1850 }
1851
1852 //////////////////////////////////////////////////////////////////////////////////////
1853 // ================= AD exported functions to the main bonding code ==================
1854 //////////////////////////////////////////////////////////////////////////////////////
1855
1856 // Check aggregators status in team every T seconds
1857 #define AD_AGGREGATOR_SELECTION_TIMER  8
1858
1859 /*
1860  * bond_3ad_initiate_agg_selection(struct bonding *bond)
1861  *
1862  * Set the aggregation selection timer, to initiate an agg selection in
1863  * the very near future.  Called during first initialization, and during
1864  * any down to up transitions of the bond.
1865  */
1866 void bond_3ad_initiate_agg_selection(struct bonding *bond, int timeout)
1867 {
1868         BOND_AD_INFO(bond).agg_select_timer = timeout;
1869         BOND_AD_INFO(bond).agg_select_mode = bond->params.ad_select;
1870 }
1871
1872 static u16 aggregator_identifier;
1873
1874 /**
1875  * bond_3ad_initialize - initialize a bond's 802.3ad parameters and structures
1876  * @bond: bonding struct to work on
1877  * @tick_resolution: tick duration (millisecond resolution)
1878  * @lacp_fast: boolean. whether fast periodic should be used
1879  *
1880  * Can be called only after the mac address of the bond is set.
1881  */
1882 void bond_3ad_initialize(struct bonding *bond, u16 tick_resolution, int lacp_fast)
1883 {                         
1884         // check that the bond is not initialized yet
1885         if (MAC_ADDRESS_COMPARE(&(BOND_AD_INFO(bond).system.sys_mac_addr), &(bond->dev->dev_addr))) {
1886
1887                 aggregator_identifier = 0;
1888
1889                 BOND_AD_INFO(bond).lacp_fast = lacp_fast;
1890                 BOND_AD_INFO(bond).system.sys_priority = 0xFFFF;
1891                 BOND_AD_INFO(bond).system.sys_mac_addr = *((struct mac_addr *)bond->dev->dev_addr);
1892
1893                 // initialize how many times this module is called in one second(should be about every 100ms)
1894                 ad_ticks_per_sec = tick_resolution;
1895
1896                 bond_3ad_initiate_agg_selection(bond,
1897                                                 AD_AGGREGATOR_SELECTION_TIMER *
1898                                                 ad_ticks_per_sec);
1899         }
1900 }
1901
1902 /**
1903  * bond_3ad_bind_slave - initialize a slave's port
1904  * @slave: slave struct to work on
1905  *
1906  * Returns:   0 on success
1907  *          < 0 on error
1908  */
1909 int bond_3ad_bind_slave(struct slave *slave)
1910 {
1911         struct bonding *bond = bond_get_bond_by_slave(slave);
1912         struct port *port;
1913         struct aggregator *aggregator;
1914
1915         if (bond == NULL) {
1916                 printk(KERN_ERR DRV_NAME ": %s: The slave %s is not attached to its bond\n",
1917                        slave->dev->master->name, slave->dev->name);
1918                 return -1;
1919         }
1920
1921         //check that the slave has not been intialized yet.
1922         if (SLAVE_AD_INFO(slave).port.slave != slave) {
1923
1924                 // port initialization
1925                 port = &(SLAVE_AD_INFO(slave).port);
1926
1927                 ad_initialize_port(port, BOND_AD_INFO(bond).lacp_fast);
1928
1929                 port->slave = slave;
1930                 port->actor_port_number = SLAVE_AD_INFO(slave).id;
1931                 // key is determined according to the link speed, duplex and user key(which is yet not supported)
1932                 //              ------------------------------------------------------------
1933                 // Port key :   | User key                       |      Speed       |Duplex|
1934                 //              ------------------------------------------------------------
1935                 //              16                               6               1 0
1936                 port->actor_admin_port_key = 0; // initialize this parameter
1937                 port->actor_admin_port_key |= __get_duplex(port);
1938                 port->actor_admin_port_key |= (__get_link_speed(port) << 1);
1939                 port->actor_oper_port_key = port->actor_admin_port_key;
1940                 // if the port is not full duplex, then the port should be not lacp Enabled
1941                 if (!(port->actor_oper_port_key & AD_DUPLEX_KEY_BITS)) {
1942                         port->sm_vars &= ~AD_PORT_LACP_ENABLED;
1943                 }
1944                 // actor system is the bond's system
1945                 port->actor_system = BOND_AD_INFO(bond).system.sys_mac_addr;
1946                 // tx timer(to verify that no more than MAX_TX_IN_SECOND lacpdu's are sent in one second)
1947                 port->sm_tx_timer_counter = ad_ticks_per_sec/AD_MAX_TX_IN_SECOND;
1948                 port->aggregator = NULL;
1949                 port->next_port_in_aggregator = NULL;
1950
1951                 __disable_port(port);
1952                 __initialize_port_locks(port);
1953
1954
1955                 // aggregator initialization
1956                 aggregator = &(SLAVE_AD_INFO(slave).aggregator);
1957
1958                 ad_initialize_agg(aggregator);
1959
1960                 aggregator->aggregator_mac_address = *((struct mac_addr *)bond->dev->dev_addr);
1961                 aggregator->aggregator_identifier = (++aggregator_identifier);
1962                 aggregator->slave = slave;
1963                 aggregator->is_active = 0;
1964                 aggregator->num_of_ports = 0;
1965         }
1966
1967         return 0;
1968 }
1969
1970 /**
1971  * bond_3ad_unbind_slave - deinitialize a slave's port
1972  * @slave: slave struct to work on
1973  *
1974  * Search for the aggregator that is related to this port, remove the
1975  * aggregator and assign another aggregator for other port related to it
1976  * (if any), and remove the port.
1977  */
1978 void bond_3ad_unbind_slave(struct slave *slave)
1979 {
1980         struct port *port, *prev_port, *temp_port;
1981         struct aggregator *aggregator, *new_aggregator, *temp_aggregator;
1982         int select_new_active_agg = 0;
1983         
1984         // find the aggregator related to this slave
1985         aggregator = &(SLAVE_AD_INFO(slave).aggregator);
1986
1987         // find the port related to this slave
1988         port = &(SLAVE_AD_INFO(slave).port);
1989
1990         // if slave is null, the whole port is not initialized
1991         if (!port->slave) {
1992                 printk(KERN_WARNING DRV_NAME ": Warning: %s: Trying to "
1993                        "unbind an uninitialized port on %s\n",
1994                        slave->dev->master->name, slave->dev->name);
1995                 return;
1996         }
1997
1998         pr_debug("Unbinding Link Aggregation Group %d\n", aggregator->aggregator_identifier);
1999
2000         /* Tell the partner that this port is not suitable for aggregation */
2001         port->actor_oper_port_state &= ~AD_STATE_AGGREGATION;
2002         __update_lacpdu_from_port(port);
2003         ad_lacpdu_send(port);
2004
2005         // check if this aggregator is occupied
2006         if (aggregator->lag_ports) {
2007                 // check if there are other ports related to this aggregator except
2008                 // the port related to this slave(thats ensure us that there is a
2009                 // reason to search for new aggregator, and that we will find one
2010                 if ((aggregator->lag_ports != port) || (aggregator->lag_ports->next_port_in_aggregator)) {
2011                         // find new aggregator for the related port(s)
2012                         new_aggregator = __get_first_agg(port);
2013                         for (; new_aggregator; new_aggregator = __get_next_agg(new_aggregator)) {
2014                                 // if the new aggregator is empty, or it connected to to our port only
2015                                 if (!new_aggregator->lag_ports || ((new_aggregator->lag_ports == port) && !new_aggregator->lag_ports->next_port_in_aggregator)) {
2016                                         break;
2017                                 }
2018                         }
2019                         // if new aggregator found, copy the aggregator's parameters
2020                         // and connect the related lag_ports to the new aggregator
2021                         if ((new_aggregator) && ((!new_aggregator->lag_ports) || ((new_aggregator->lag_ports == port) && !new_aggregator->lag_ports->next_port_in_aggregator))) {
2022                                 pr_debug("Some port(s) related to LAG %d - replaceing with LAG %d\n", aggregator->aggregator_identifier, new_aggregator->aggregator_identifier);
2023
2024                                 if ((new_aggregator->lag_ports == port) && new_aggregator->is_active) {
2025                                         printk(KERN_INFO DRV_NAME ": %s: Removing an active aggregator\n",
2026                                                aggregator->slave->dev->master->name);
2027                                         // select new active aggregator
2028                                          select_new_active_agg = 1;
2029                                 }
2030
2031                                 new_aggregator->is_individual = aggregator->is_individual;
2032                                 new_aggregator->actor_admin_aggregator_key = aggregator->actor_admin_aggregator_key;
2033                                 new_aggregator->actor_oper_aggregator_key = aggregator->actor_oper_aggregator_key;
2034                                 new_aggregator->partner_system = aggregator->partner_system;
2035                                 new_aggregator->partner_system_priority = aggregator->partner_system_priority;
2036                                 new_aggregator->partner_oper_aggregator_key = aggregator->partner_oper_aggregator_key;
2037                                 new_aggregator->receive_state = aggregator->receive_state;
2038                                 new_aggregator->transmit_state = aggregator->transmit_state;
2039                                 new_aggregator->lag_ports = aggregator->lag_ports;
2040                                 new_aggregator->is_active = aggregator->is_active;
2041                                 new_aggregator->num_of_ports = aggregator->num_of_ports;
2042
2043                                 // update the information that is written on the ports about the aggregator
2044                                 for (temp_port=aggregator->lag_ports; temp_port; temp_port=temp_port->next_port_in_aggregator) {
2045                                         temp_port->aggregator=new_aggregator;
2046                                         temp_port->actor_port_aggregator_identifier = new_aggregator->aggregator_identifier;
2047                                 }
2048
2049                                 // clear the aggregator
2050                                 ad_clear_agg(aggregator);
2051                                 
2052                                 if (select_new_active_agg) {
2053                                         ad_agg_selection_logic(__get_first_agg(port));
2054                                 }
2055                         } else {
2056                                 printk(KERN_WARNING DRV_NAME ": %s: Warning: unbinding aggregator, "
2057                                        "and could not find a new aggregator for its ports\n",
2058                                        slave->dev->master->name);
2059                         }
2060                 } else { // in case that the only port related to this aggregator is the one we want to remove
2061                         select_new_active_agg = aggregator->is_active;
2062                         // clear the aggregator
2063                         ad_clear_agg(aggregator);
2064                         if (select_new_active_agg) {
2065                                 printk(KERN_INFO DRV_NAME ": %s: Removing an active aggregator\n",
2066                                        slave->dev->master->name);
2067                                 // select new active aggregator
2068                                 ad_agg_selection_logic(__get_first_agg(port));
2069                         }
2070                 }
2071         }
2072
2073         pr_debug("Unbinding port %d\n", port->actor_port_number);
2074         // find the aggregator that this port is connected to
2075         temp_aggregator = __get_first_agg(port);
2076         for (; temp_aggregator; temp_aggregator = __get_next_agg(temp_aggregator)) {
2077                 prev_port = NULL;
2078                 // search the port in the aggregator's related ports
2079                 for (temp_port=temp_aggregator->lag_ports; temp_port; prev_port=temp_port, temp_port=temp_port->next_port_in_aggregator) {
2080                         if (temp_port == port) { // the aggregator found - detach the port from this aggregator
2081                                 if (prev_port) {
2082                                         prev_port->next_port_in_aggregator = temp_port->next_port_in_aggregator;
2083                                 } else {
2084                                         temp_aggregator->lag_ports = temp_port->next_port_in_aggregator;
2085                                 }
2086                                 temp_aggregator->num_of_ports--;
2087                                 if (temp_aggregator->num_of_ports==0) {
2088                                         select_new_active_agg = temp_aggregator->is_active;
2089                                         // clear the aggregator
2090                                         ad_clear_agg(temp_aggregator);
2091                                         if (select_new_active_agg) {
2092                                                 printk(KERN_INFO DRV_NAME ": %s: Removing an active aggregator\n",
2093                                                        slave->dev->master->name);
2094                                                 // select new active aggregator
2095                                                 ad_agg_selection_logic(__get_first_agg(port));
2096                                         }
2097                                 }
2098                                 break;
2099                         }
2100                 }
2101         }
2102         port->slave=NULL;       
2103 }
2104
2105 /**
2106  * bond_3ad_state_machine_handler - handle state machines timeout
2107  * @bond: bonding struct to work on
2108  *
2109  * The state machine handling concept in this module is to check every tick
2110  * which state machine should operate any function. The execution order is
2111  * round robin, so when we have an interaction between state machines, the
2112  * reply of one to each other might be delayed until next tick.
2113  *
2114  * This function also complete the initialization when the agg_select_timer
2115  * times out, and it selects an aggregator for the ports that are yet not
2116  * related to any aggregator, and selects the active aggregator for a bond.
2117  */
2118 void bond_3ad_state_machine_handler(struct work_struct *work)
2119 {
2120         struct bonding *bond = container_of(work, struct bonding,
2121                                             ad_work.work);
2122         struct port *port;
2123         struct aggregator *aggregator;
2124
2125         read_lock(&bond->lock);
2126
2127         if (bond->kill_timers) {
2128                 goto out;
2129         }
2130
2131         //check if there are any slaves
2132         if (bond->slave_cnt == 0) {
2133                 goto re_arm;
2134         }
2135
2136         // check if agg_select_timer timer after initialize is timed out
2137         if (BOND_AD_INFO(bond).agg_select_timer && !(--BOND_AD_INFO(bond).agg_select_timer)) {
2138                 // select the active aggregator for the bond
2139                 if ((port = __get_first_port(bond))) {
2140                         if (!port->slave) {
2141                                 printk(KERN_WARNING DRV_NAME ": %s: Warning: bond's first port is "
2142                                        "uninitialized\n", bond->dev->name);
2143                                 goto re_arm;
2144                         }
2145
2146                         aggregator = __get_first_agg(port);
2147                         ad_agg_selection_logic(aggregator);
2148                 }
2149                 bond_3ad_set_carrier(bond);
2150         }
2151
2152         // for each port run the state machines
2153         for (port = __get_first_port(bond); port; port = __get_next_port(port)) {
2154                 if (!port->slave) {
2155                         printk(KERN_WARNING DRV_NAME ": %s: Warning: Found an uninitialized "
2156                                "port\n", bond->dev->name);
2157                         goto re_arm;
2158                 }
2159
2160                 ad_rx_machine(NULL, port);
2161                 ad_periodic_machine(port);
2162                 ad_port_selection_logic(port);
2163                 ad_mux_machine(port);
2164                 ad_tx_machine(port);
2165
2166                 // turn off the BEGIN bit, since we already handled it
2167                 if (port->sm_vars & AD_PORT_BEGIN) {
2168                         port->sm_vars &= ~AD_PORT_BEGIN;
2169                 }
2170         }
2171
2172 re_arm:
2173         queue_delayed_work(bond->wq, &bond->ad_work, ad_delta_in_ticks);
2174 out:
2175         read_unlock(&bond->lock);
2176 }
2177
2178 /**
2179  * bond_3ad_rx_indication - handle a received frame
2180  * @lacpdu: received lacpdu
2181  * @slave: slave struct to work on
2182  * @length: length of the data received
2183  *
2184  * It is assumed that frames that were sent on this NIC don't returned as new
2185  * received frames (loopback). Since only the payload is given to this
2186  * function, it check for loopback.
2187  */
2188 static void bond_3ad_rx_indication(struct lacpdu *lacpdu, struct slave *slave, u16 length)
2189 {
2190         struct port *port;
2191
2192         if (length >= sizeof(struct lacpdu)) {
2193
2194                 port = &(SLAVE_AD_INFO(slave).port);
2195
2196                 if (!port->slave) {
2197                         printk(KERN_WARNING DRV_NAME ": %s: Warning: port of slave %s is "
2198                                "uninitialized\n", slave->dev->name, slave->dev->master->name);
2199                         return;
2200                 }
2201
2202                 switch (lacpdu->subtype) {
2203                 case AD_TYPE_LACPDU:
2204                         pr_debug("Received LACPDU on port %d\n", port->actor_port_number);
2205                         ad_rx_machine(lacpdu, port);
2206                         break;
2207
2208                 case AD_TYPE_MARKER:
2209                         // No need to convert fields to Little Endian since we don't use the marker's fields.
2210
2211                         switch (((struct bond_marker *)lacpdu)->tlv_type) {
2212                         case AD_MARKER_INFORMATION_SUBTYPE:
2213                                 pr_debug("Received Marker Information on port %d\n", port->actor_port_number);
2214                                 ad_marker_info_received((struct bond_marker *)lacpdu, port);
2215                                 break;
2216
2217                         case AD_MARKER_RESPONSE_SUBTYPE:
2218                                 pr_debug("Received Marker Response on port %d\n", port->actor_port_number);
2219                                 ad_marker_response_received((struct bond_marker *)lacpdu, port);
2220                                 break;
2221
2222                         default:
2223                                 pr_debug("Received an unknown Marker subtype on slot %d\n", port->actor_port_number);
2224                         }
2225                 }
2226         }
2227 }
2228
2229 /**
2230  * bond_3ad_adapter_speed_changed - handle a slave's speed change indication
2231  * @slave: slave struct to work on
2232  *
2233  * Handle reselection of aggregator (if needed) for this port.
2234  */
2235 void bond_3ad_adapter_speed_changed(struct slave *slave)
2236 {
2237         struct port *port;
2238
2239         port = &(SLAVE_AD_INFO(slave).port);
2240
2241         // if slave is null, the whole port is not initialized
2242         if (!port->slave) {
2243                 printk(KERN_WARNING DRV_NAME ": Warning: %s: speed "
2244                        "changed for uninitialized port on %s\n",
2245                        slave->dev->master->name, slave->dev->name);
2246                 return;
2247         }
2248
2249         port->actor_admin_port_key &= ~AD_SPEED_KEY_BITS;
2250         port->actor_oper_port_key=port->actor_admin_port_key |= (__get_link_speed(port) << 1);
2251         pr_debug("Port %d changed speed\n", port->actor_port_number);
2252         // there is no need to reselect a new aggregator, just signal the
2253         // state machines to reinitialize
2254         port->sm_vars |= AD_PORT_BEGIN;
2255 }
2256
2257 /**
2258  * bond_3ad_adapter_duplex_changed - handle a slave's duplex change indication
2259  * @slave: slave struct to work on
2260  *
2261  * Handle reselection of aggregator (if needed) for this port.
2262  */
2263 void bond_3ad_adapter_duplex_changed(struct slave *slave)
2264 {
2265         struct port *port;
2266
2267         port=&(SLAVE_AD_INFO(slave).port);
2268
2269         // if slave is null, the whole port is not initialized
2270         if (!port->slave) {
2271                 printk(KERN_WARNING DRV_NAME ": %s: Warning: duplex changed "
2272                        "for uninitialized port on %s\n",
2273                        slave->dev->master->name, slave->dev->name);
2274                 return;
2275         }
2276
2277         port->actor_admin_port_key &= ~AD_DUPLEX_KEY_BITS;
2278         port->actor_oper_port_key=port->actor_admin_port_key |= __get_duplex(port);
2279         pr_debug("Port %d changed duplex\n", port->actor_port_number);
2280         // there is no need to reselect a new aggregator, just signal the
2281         // state machines to reinitialize
2282         port->sm_vars |= AD_PORT_BEGIN;
2283 }
2284
2285 /**
2286  * bond_3ad_handle_link_change - handle a slave's link status change indication
2287  * @slave: slave struct to work on
2288  * @status: whether the link is now up or down
2289  *
2290  * Handle reselection of aggregator (if needed) for this port.
2291  */
2292 void bond_3ad_handle_link_change(struct slave *slave, char link)
2293 {
2294         struct port *port;
2295
2296         port = &(SLAVE_AD_INFO(slave).port);
2297
2298         // if slave is null, the whole port is not initialized
2299         if (!port->slave) {
2300                 printk(KERN_WARNING DRV_NAME ": Warning: %s: link status changed for "
2301                        "uninitialized port on %s\n",
2302                         slave->dev->master->name, slave->dev->name);
2303                 return;
2304         }
2305
2306         // on link down we are zeroing duplex and speed since some of the adaptors(ce1000.lan) report full duplex/speed instead of N/A(duplex) / 0(speed)
2307         // on link up we are forcing recheck on the duplex and speed since some of he adaptors(ce1000.lan) report
2308         if (link == BOND_LINK_UP) {
2309                 port->is_enabled = 1;
2310                 port->actor_admin_port_key &= ~AD_DUPLEX_KEY_BITS;
2311                 port->actor_oper_port_key=port->actor_admin_port_key |= __get_duplex(port);
2312                 port->actor_admin_port_key &= ~AD_SPEED_KEY_BITS;
2313                 port->actor_oper_port_key=port->actor_admin_port_key |= (__get_link_speed(port) << 1);
2314         } else {
2315                 /* link has failed */
2316                 port->is_enabled = 0;
2317                 port->actor_admin_port_key &= ~AD_DUPLEX_KEY_BITS;
2318                 port->actor_oper_port_key= (port->actor_admin_port_key &= ~AD_SPEED_KEY_BITS);
2319         }
2320         //BOND_PRINT_DBG(("Port %d changed link status to %s", port->actor_port_number, ((link == BOND_LINK_UP)?"UP":"DOWN")));
2321         // there is no need to reselect a new aggregator, just signal the
2322         // state machines to reinitialize
2323         port->sm_vars |= AD_PORT_BEGIN;
2324 }
2325
2326 /*
2327  * set link state for bonding master: if we have an active 
2328  * aggregator, we're up, if not, we're down.  Presumes that we cannot
2329  * have an active aggregator if there are no slaves with link up.
2330  *
2331  * This behavior complies with IEEE 802.3 section 43.3.9.
2332  *
2333  * Called by bond_set_carrier(). Return zero if carrier state does not
2334  * change, nonzero if it does.
2335  */
2336 int bond_3ad_set_carrier(struct bonding *bond)
2337 {
2338         if (__get_active_agg(&(SLAVE_AD_INFO(bond->first_slave).aggregator))) {
2339                 if (!netif_carrier_ok(bond->dev)) {
2340                         netif_carrier_on(bond->dev);
2341                         return 1;
2342                 }
2343                 return 0;
2344         }
2345
2346         if (netif_carrier_ok(bond->dev)) {
2347                 netif_carrier_off(bond->dev);
2348                 return 1;
2349         }
2350         return 0;
2351 }
2352
2353 /**
2354  * bond_3ad_get_active_agg_info - get information of the active aggregator
2355  * @bond: bonding struct to work on
2356  * @ad_info: ad_info struct to fill with the bond's info
2357  *
2358  * Returns:   0 on success
2359  *          < 0 on error
2360  */
2361 int bond_3ad_get_active_agg_info(struct bonding *bond, struct ad_info *ad_info)
2362 {
2363         struct aggregator *aggregator = NULL;
2364         struct port *port;
2365
2366         for (port = __get_first_port(bond); port; port = __get_next_port(port)) {
2367                 if (port->aggregator && port->aggregator->is_active) {
2368                         aggregator = port->aggregator;
2369                         break;
2370                 }
2371         }
2372
2373         if (aggregator) {
2374                 ad_info->aggregator_id = aggregator->aggregator_identifier;
2375                 ad_info->ports = aggregator->num_of_ports;
2376                 ad_info->actor_key = aggregator->actor_oper_aggregator_key;
2377                 ad_info->partner_key = aggregator->partner_oper_aggregator_key;
2378                 memcpy(ad_info->partner_system, aggregator->partner_system.mac_addr_value, ETH_ALEN);
2379                 return 0;
2380         }
2381
2382         return -1;
2383 }
2384
2385 int bond_3ad_xmit_xor(struct sk_buff *skb, struct net_device *dev)
2386 {
2387         struct slave *slave, *start_at;
2388         struct bonding *bond = netdev_priv(dev);
2389         int slave_agg_no;
2390         int slaves_in_agg;
2391         int agg_id;
2392         int i;
2393         struct ad_info ad_info;
2394         int res = 1;
2395
2396         /* make sure that the slaves list will
2397          * not change during tx
2398          */
2399         read_lock(&bond->lock);
2400
2401         if (!BOND_IS_OK(bond)) {
2402                 goto out;
2403         }
2404
2405         if (bond_3ad_get_active_agg_info(bond, &ad_info)) {
2406                 printk(KERN_DEBUG DRV_NAME ": %s: Error: "
2407                        "bond_3ad_get_active_agg_info failed\n", dev->name);
2408                 goto out;
2409         }
2410
2411         slaves_in_agg = ad_info.ports;
2412         agg_id = ad_info.aggregator_id;
2413
2414         if (slaves_in_agg == 0) {
2415                 /*the aggregator is empty*/
2416                 printk(KERN_DEBUG DRV_NAME ": %s: Error: active "
2417                        "aggregator is empty\n",
2418                        dev->name);
2419                 goto out;
2420         }
2421
2422         slave_agg_no = bond->xmit_hash_policy(skb, dev, slaves_in_agg);
2423
2424         bond_for_each_slave(bond, slave, i) {
2425                 struct aggregator *agg = SLAVE_AD_INFO(slave).port.aggregator;
2426
2427                 if (agg && (agg->aggregator_identifier == agg_id)) {
2428                         slave_agg_no--;
2429                         if (slave_agg_no < 0) {
2430                                 break;
2431                         }
2432                 }
2433         }
2434
2435         if (slave_agg_no >= 0) {
2436                 printk(KERN_ERR DRV_NAME ": %s: Error: Couldn't find a slave to tx on "
2437                        "for aggregator ID %d\n", dev->name, agg_id);
2438                 goto out;
2439         }
2440
2441         start_at = slave;
2442
2443         bond_for_each_slave_from(bond, slave, i, start_at) {
2444                 int slave_agg_id = 0;
2445                 struct aggregator *agg = SLAVE_AD_INFO(slave).port.aggregator;
2446
2447                 if (agg) {
2448                         slave_agg_id = agg->aggregator_identifier;
2449                 }
2450
2451                 if (SLAVE_IS_OK(slave) && agg && (slave_agg_id == agg_id)) {
2452                         res = bond_dev_queue_xmit(bond, skb, slave->dev);
2453                         break;
2454                 }
2455         }
2456
2457 out:
2458         if (res) {
2459                 /* no suitable interface, frame not sent */
2460                 dev_kfree_skb(skb);
2461         }
2462         read_unlock(&bond->lock);
2463         return 0;
2464 }
2465
2466 int bond_3ad_lacpdu_recv(struct sk_buff *skb, struct net_device *dev, struct packet_type* ptype, struct net_device *orig_dev)
2467 {
2468         struct bonding *bond = netdev_priv(dev);
2469         struct slave *slave = NULL;
2470         int ret = NET_RX_DROP;
2471
2472         if (dev_net(dev) != &init_net)
2473                 goto out;
2474
2475         if (!(dev->flags & IFF_MASTER))
2476                 goto out;
2477
2478         read_lock(&bond->lock);
2479         slave = bond_get_slave_by_dev((struct bonding *)netdev_priv(dev),
2480                                         orig_dev);
2481         if (!slave)
2482                 goto out_unlock;
2483
2484         bond_3ad_rx_indication((struct lacpdu *) skb->data, slave, skb->len);
2485
2486         ret = NET_RX_SUCCESS;
2487
2488 out_unlock:
2489         read_unlock(&bond->lock);
2490 out:
2491         dev_kfree_skb(skb);
2492
2493         return ret;
2494 }
2495