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1 /*      $NetBSD: ieee8023ad_lacp.c,v 1.3 2005/12/11 12:24:54 christos Exp $     */
2
3 /*-
4  * SPDX-License-Identifier: BSD-2-Clause-NetBSD
5  *
6  * Copyright (c)2005 YAMAMOTO Takashi,
7  * Copyright (c)2008 Andrew Thompson <thompsa@FreeBSD.org>
8  * All rights reserved.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
20  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
23  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29  * SUCH DAMAGE.
30  */
31
32 #include <sys/cdefs.h>
33 __FBSDID("$FreeBSD$");
34
35 #include "opt_kern_tls.h"
36 #include "opt_ratelimit.h"
37
38 #include <sys/param.h>
39 #include <sys/callout.h>
40 #include <sys/eventhandler.h>
41 #include <sys/mbuf.h>
42 #include <sys/systm.h>
43 #include <sys/malloc.h>
44 #include <sys/kernel.h> /* hz */
45 #include <sys/socket.h> /* for net/if.h */
46 #include <sys/sockio.h>
47 #include <sys/sysctl.h>
48 #include <machine/stdarg.h>
49 #include <sys/lock.h>
50 #include <sys/rwlock.h>
51 #include <sys/taskqueue.h>
52
53 #include <net/if.h>
54 #include <net/if_var.h>
55 #include <net/if_dl.h>
56 #include <net/ethernet.h>
57 #include <net/if_media.h>
58 #include <net/if_types.h>
59
60 #include <net/if_lagg.h>
61 #include <net/ieee8023ad_lacp.h>
62
63 /*
64  * actor system priority and port priority.
65  * XXX should be configurable.
66  */
67
68 #define LACP_SYSTEM_PRIO        0x8000
69 #define LACP_PORT_PRIO          0x8000
70
71 const uint8_t ethermulticastaddr_slowprotocols[ETHER_ADDR_LEN] =
72     { 0x01, 0x80, 0xc2, 0x00, 0x00, 0x02 };
73
74 static const struct tlv_template lacp_info_tlv_template[] = {
75         { LACP_TYPE_ACTORINFO,
76             sizeof(struct tlvhdr) + sizeof(struct lacp_peerinfo) },
77         { LACP_TYPE_PARTNERINFO,
78             sizeof(struct tlvhdr) + sizeof(struct lacp_peerinfo) },
79         { LACP_TYPE_COLLECTORINFO,
80             sizeof(struct tlvhdr) + sizeof(struct lacp_collectorinfo) },
81         { 0, 0 },
82 };
83
84 static const struct tlv_template marker_info_tlv_template[] = {
85         { MARKER_TYPE_INFO,
86             sizeof(struct tlvhdr) + sizeof(struct lacp_markerinfo) },
87         { 0, 0 },
88 };
89
90 static const struct tlv_template marker_response_tlv_template[] = {
91         { MARKER_TYPE_RESPONSE,
92             sizeof(struct tlvhdr) + sizeof(struct lacp_markerinfo) },
93         { 0, 0 },
94 };
95
96 typedef void (*lacp_timer_func_t)(struct lacp_port *);
97
98 static void     lacp_fill_actorinfo(struct lacp_port *, struct lacp_peerinfo *);
99 static void     lacp_fill_markerinfo(struct lacp_port *,
100                     struct lacp_markerinfo *);
101
102 static uint64_t lacp_aggregator_bandwidth(struct lacp_aggregator *);
103 static void     lacp_suppress_distributing(struct lacp_softc *,
104                     struct lacp_aggregator *);
105 static void     lacp_transit_expire(void *);
106 static void     lacp_update_portmap(struct lacp_softc *);
107 static void     lacp_select_active_aggregator(struct lacp_softc *);
108 static uint16_t lacp_compose_key(struct lacp_port *);
109 static int      tlv_check(const void *, size_t, const struct tlvhdr *,
110                     const struct tlv_template *, boolean_t);
111 static void     lacp_tick(void *);
112
113 static void     lacp_fill_aggregator_id(struct lacp_aggregator *,
114                     const struct lacp_port *);
115 static void     lacp_fill_aggregator_id_peer(struct lacp_peerinfo *,
116                     const struct lacp_peerinfo *);
117 static int      lacp_aggregator_is_compatible(const struct lacp_aggregator *,
118                     const struct lacp_port *);
119 static int      lacp_peerinfo_is_compatible(const struct lacp_peerinfo *,
120                     const struct lacp_peerinfo *);
121
122 static struct lacp_aggregator *lacp_aggregator_get(struct lacp_softc *,
123                     struct lacp_port *);
124 static void     lacp_aggregator_addref(struct lacp_softc *,
125                     struct lacp_aggregator *);
126 static void     lacp_aggregator_delref(struct lacp_softc *,
127                     struct lacp_aggregator *);
128
129 /* receive machine */
130
131 static int      lacp_pdu_input(struct lacp_port *, struct mbuf *);
132 static int      lacp_marker_input(struct lacp_port *, struct mbuf *);
133 static void     lacp_sm_rx(struct lacp_port *, const struct lacpdu *);
134 static void     lacp_sm_rx_timer(struct lacp_port *);
135 static void     lacp_sm_rx_set_expired(struct lacp_port *);
136 static void     lacp_sm_rx_update_ntt(struct lacp_port *,
137                     const struct lacpdu *);
138 static void     lacp_sm_rx_record_pdu(struct lacp_port *,
139                     const struct lacpdu *);
140 static void     lacp_sm_rx_update_selected(struct lacp_port *,
141                     const struct lacpdu *);
142 static void     lacp_sm_rx_record_default(struct lacp_port *);
143 static void     lacp_sm_rx_update_default_selected(struct lacp_port *);
144 static void     lacp_sm_rx_update_selected_from_peerinfo(struct lacp_port *,
145                     const struct lacp_peerinfo *);
146
147 /* mux machine */
148
149 static void     lacp_sm_mux(struct lacp_port *);
150 static void     lacp_set_mux(struct lacp_port *, enum lacp_mux_state);
151 static void     lacp_sm_mux_timer(struct lacp_port *);
152
153 /* periodic transmit machine */
154
155 static void     lacp_sm_ptx_update_timeout(struct lacp_port *, uint8_t);
156 static void     lacp_sm_ptx_tx_schedule(struct lacp_port *);
157 static void     lacp_sm_ptx_timer(struct lacp_port *);
158
159 /* transmit machine */
160
161 static void     lacp_sm_tx(struct lacp_port *);
162 static void     lacp_sm_assert_ntt(struct lacp_port *);
163
164 static void     lacp_run_timers(struct lacp_port *);
165 static int      lacp_compare_peerinfo(const struct lacp_peerinfo *,
166                     const struct lacp_peerinfo *);
167 static int      lacp_compare_systemid(const struct lacp_systemid *,
168                     const struct lacp_systemid *);
169 static void     lacp_port_enable(struct lacp_port *);
170 static void     lacp_port_disable(struct lacp_port *);
171 static void     lacp_select(struct lacp_port *);
172 static void     lacp_unselect(struct lacp_port *);
173 static void     lacp_disable_collecting(struct lacp_port *);
174 static void     lacp_enable_collecting(struct lacp_port *);
175 static void     lacp_disable_distributing(struct lacp_port *);
176 static void     lacp_enable_distributing(struct lacp_port *);
177 static int      lacp_xmit_lacpdu(struct lacp_port *);
178 static int      lacp_xmit_marker(struct lacp_port *);
179
180 /* Debugging */
181
182 static void     lacp_dump_lacpdu(const struct lacpdu *);
183 static const char *lacp_format_partner(const struct lacp_peerinfo *, char *,
184                     size_t);
185 static const char *lacp_format_lagid(const struct lacp_peerinfo *,
186                     const struct lacp_peerinfo *, char *, size_t);
187 static const char *lacp_format_lagid_aggregator(const struct lacp_aggregator *,
188                     char *, size_t);
189 static const char *lacp_format_state(uint8_t, char *, size_t);
190 static const char *lacp_format_mac(const uint8_t *, char *, size_t);
191 static const char *lacp_format_systemid(const struct lacp_systemid *, char *,
192                     size_t);
193 static const char *lacp_format_portid(const struct lacp_portid *, char *,
194                     size_t);
195 static void     lacp_dprintf(const struct lacp_port *, const char *, ...)
196                     __attribute__((__format__(__printf__, 2, 3)));
197
198 VNET_DEFINE_STATIC(int, lacp_debug);
199 #define V_lacp_debug    VNET(lacp_debug)
200 SYSCTL_NODE(_net_link_lagg, OID_AUTO, lacp, CTLFLAG_RD | CTLFLAG_MPSAFE, 0,
201     "ieee802.3ad");
202 SYSCTL_INT(_net_link_lagg_lacp, OID_AUTO, debug, CTLFLAG_RWTUN | CTLFLAG_VNET,
203     &VNET_NAME(lacp_debug), 0, "Enable LACP debug logging (1=debug, 2=trace)");
204
205 VNET_DEFINE_STATIC(int, lacp_default_strict_mode) = 1;
206 SYSCTL_INT(_net_link_lagg_lacp, OID_AUTO, default_strict_mode,
207     CTLFLAG_RWTUN | CTLFLAG_VNET, &VNET_NAME(lacp_default_strict_mode), 0,
208     "LACP strict protocol compliance default");
209 #define LACP_DPRINTF(a) if (V_lacp_debug & 0x01) { lacp_dprintf a ; }
210 #define LACP_TRACE(a) if (V_lacp_debug & 0x02) { lacp_dprintf(a,"%s\n",__func__); }
211 #define LACP_TPRINTF(a) if (V_lacp_debug & 0x04) { lacp_dprintf a ; }
212
213 /*
214  * partner administration variables.
215  * XXX should be configurable.
216  */
217
218 static const struct lacp_peerinfo lacp_partner_admin_optimistic = {
219         .lip_systemid = { .lsi_prio = 0xffff },
220         .lip_portid = { .lpi_prio = 0xffff },
221         .lip_state = LACP_STATE_SYNC | LACP_STATE_AGGREGATION |
222             LACP_STATE_COLLECTING | LACP_STATE_DISTRIBUTING,
223 };
224
225 static const struct lacp_peerinfo lacp_partner_admin_strict = {
226         .lip_systemid = { .lsi_prio = 0xffff },
227         .lip_portid = { .lpi_prio = 0xffff },
228         .lip_state = 0,
229 };
230
231 static const lacp_timer_func_t lacp_timer_funcs[LACP_NTIMER] = {
232         [LACP_TIMER_CURRENT_WHILE] = lacp_sm_rx_timer,
233         [LACP_TIMER_PERIODIC] = lacp_sm_ptx_timer,
234         [LACP_TIMER_WAIT_WHILE] = lacp_sm_mux_timer,
235 };
236
237 struct mbuf *
238 lacp_input(struct lagg_port *lgp, struct mbuf *m)
239 {
240         struct lacp_port *lp = LACP_PORT(lgp);
241         uint8_t subtype;
242
243         if (m->m_pkthdr.len < sizeof(struct ether_header) + sizeof(subtype)) {
244                 m_freem(m);
245                 return (NULL);
246         }
247
248         m_copydata(m, sizeof(struct ether_header), sizeof(subtype), &subtype);
249         switch (subtype) {
250                 case SLOWPROTOCOLS_SUBTYPE_LACP:
251                         lacp_pdu_input(lp, m);
252                         return (NULL);
253
254                 case SLOWPROTOCOLS_SUBTYPE_MARKER:
255                         lacp_marker_input(lp, m);
256                         return (NULL);
257         }
258
259         /* Not a subtype we are interested in */
260         return (m);
261 }
262
263 /*
264  * lacp_pdu_input: process lacpdu
265  */
266 static int
267 lacp_pdu_input(struct lacp_port *lp, struct mbuf *m)
268 {
269         struct lacp_softc *lsc = lp->lp_lsc;
270         struct lacpdu *du;
271         int error = 0;
272
273         if (m->m_pkthdr.len != sizeof(*du)) {
274                 goto bad;
275         }
276
277         if ((m->m_flags & M_MCAST) == 0) {
278                 goto bad;
279         }
280
281         if (m->m_len < sizeof(*du)) {
282                 m = m_pullup(m, sizeof(*du));
283                 if (m == NULL) {
284                         return (ENOMEM);
285                 }
286         }
287
288         du = mtod(m, struct lacpdu *);
289
290         if (memcmp(&du->ldu_eh.ether_dhost,
291             &ethermulticastaddr_slowprotocols, ETHER_ADDR_LEN)) {
292                 goto bad;
293         }
294
295         /*
296          * ignore the version for compatibility with
297          * the future protocol revisions.
298          */
299 #if 0
300         if (du->ldu_sph.sph_version != 1) {
301                 goto bad;
302         }
303 #endif
304
305         /*
306          * ignore tlv types for compatibility with
307          * the future protocol revisions.
308          */
309         if (tlv_check(du, sizeof(*du), &du->ldu_tlv_actor,
310             lacp_info_tlv_template, FALSE)) {
311                 goto bad;
312         }
313
314         if (V_lacp_debug > 0) {
315                 lacp_dprintf(lp, "lacpdu receive\n");
316                 lacp_dump_lacpdu(du);
317         }
318
319         if ((1 << lp->lp_ifp->if_dunit) & lp->lp_lsc->lsc_debug.lsc_rx_test) {
320                 LACP_TPRINTF((lp, "Dropping RX PDU\n"));
321                 goto bad;
322         }
323
324         LACP_LOCK(lsc);
325         lacp_sm_rx(lp, du);
326         LACP_UNLOCK(lsc);
327
328         m_freem(m);
329         return (error);
330
331 bad:
332         m_freem(m);
333         return (EINVAL);
334 }
335
336 static void
337 lacp_fill_actorinfo(struct lacp_port *lp, struct lacp_peerinfo *info)
338 {
339         struct lagg_port *lgp = lp->lp_lagg;
340         struct lagg_softc *sc = lgp->lp_softc;
341
342         info->lip_systemid.lsi_prio = htons(LACP_SYSTEM_PRIO);
343         memcpy(&info->lip_systemid.lsi_mac,
344             IF_LLADDR(sc->sc_ifp), ETHER_ADDR_LEN);
345         info->lip_portid.lpi_prio = htons(LACP_PORT_PRIO);
346         info->lip_portid.lpi_portno = htons(lp->lp_ifp->if_index);
347         info->lip_state = lp->lp_state;
348 }
349
350 static void
351 lacp_fill_markerinfo(struct lacp_port *lp, struct lacp_markerinfo *info)
352 {
353         struct ifnet *ifp = lp->lp_ifp;
354
355         /* Fill in the port index and system id (encoded as the MAC) */
356         info->mi_rq_port = htons(ifp->if_index);
357         memcpy(&info->mi_rq_system, lp->lp_systemid.lsi_mac, ETHER_ADDR_LEN);
358         info->mi_rq_xid = htonl(0);
359 }
360
361 static int
362 lacp_xmit_lacpdu(struct lacp_port *lp)
363 {
364         struct lagg_port *lgp = lp->lp_lagg;
365         struct mbuf *m;
366         struct lacpdu *du;
367         int error;
368
369         LACP_LOCK_ASSERT(lp->lp_lsc);
370
371         m = m_gethdr(M_NOWAIT, MT_DATA);
372         if (m == NULL) {
373                 return (ENOMEM);
374         }
375         m->m_len = m->m_pkthdr.len = sizeof(*du);
376
377         du = mtod(m, struct lacpdu *);
378         memset(du, 0, sizeof(*du));
379
380         memcpy(&du->ldu_eh.ether_dhost, ethermulticastaddr_slowprotocols,
381             ETHER_ADDR_LEN);
382         memcpy(&du->ldu_eh.ether_shost, lgp->lp_lladdr, ETHER_ADDR_LEN);
383         du->ldu_eh.ether_type = htons(ETHERTYPE_SLOW);
384
385         du->ldu_sph.sph_subtype = SLOWPROTOCOLS_SUBTYPE_LACP;
386         du->ldu_sph.sph_version = 1;
387
388         TLV_SET(&du->ldu_tlv_actor, LACP_TYPE_ACTORINFO, sizeof(du->ldu_actor));
389         du->ldu_actor = lp->lp_actor;
390
391         TLV_SET(&du->ldu_tlv_partner, LACP_TYPE_PARTNERINFO,
392             sizeof(du->ldu_partner));
393         du->ldu_partner = lp->lp_partner;
394
395         TLV_SET(&du->ldu_tlv_collector, LACP_TYPE_COLLECTORINFO,
396             sizeof(du->ldu_collector));
397         du->ldu_collector.lci_maxdelay = 0;
398
399         if (V_lacp_debug > 0) {
400                 lacp_dprintf(lp, "lacpdu transmit\n");
401                 lacp_dump_lacpdu(du);
402         }
403
404         m->m_flags |= M_MCAST;
405
406         /*
407          * XXX should use higher priority queue.
408          * otherwise network congestion can break aggregation.
409          */
410
411         error = lagg_enqueue(lp->lp_ifp, m);
412         return (error);
413 }
414
415 static int
416 lacp_xmit_marker(struct lacp_port *lp)
417 {
418         struct lagg_port *lgp = lp->lp_lagg;
419         struct mbuf *m;
420         struct markerdu *mdu;
421         int error;
422
423         LACP_LOCK_ASSERT(lp->lp_lsc);
424
425         m = m_gethdr(M_NOWAIT, MT_DATA);
426         if (m == NULL) {
427                 return (ENOMEM);
428         }
429         m->m_len = m->m_pkthdr.len = sizeof(*mdu);
430
431         mdu = mtod(m, struct markerdu *);
432         memset(mdu, 0, sizeof(*mdu));
433
434         memcpy(&mdu->mdu_eh.ether_dhost, ethermulticastaddr_slowprotocols,
435             ETHER_ADDR_LEN);
436         memcpy(&mdu->mdu_eh.ether_shost, lgp->lp_lladdr, ETHER_ADDR_LEN);
437         mdu->mdu_eh.ether_type = htons(ETHERTYPE_SLOW);
438
439         mdu->mdu_sph.sph_subtype = SLOWPROTOCOLS_SUBTYPE_MARKER;
440         mdu->mdu_sph.sph_version = 1;
441
442         /* Bump the transaction id and copy over the marker info */
443         lp->lp_marker.mi_rq_xid = htonl(ntohl(lp->lp_marker.mi_rq_xid) + 1);
444         TLV_SET(&mdu->mdu_tlv, MARKER_TYPE_INFO, sizeof(mdu->mdu_info));
445         mdu->mdu_info = lp->lp_marker;
446
447         LACP_DPRINTF((lp, "marker transmit, port=%u, sys=%6D, id=%u\n",
448             ntohs(mdu->mdu_info.mi_rq_port), mdu->mdu_info.mi_rq_system, ":",
449             ntohl(mdu->mdu_info.mi_rq_xid)));
450
451         m->m_flags |= M_MCAST;
452         error = lagg_enqueue(lp->lp_ifp, m);
453         return (error);
454 }
455
456 void
457 lacp_linkstate(struct lagg_port *lgp)
458 {
459         struct lacp_port *lp = LACP_PORT(lgp);
460         struct lacp_softc *lsc = lp->lp_lsc;
461         struct ifnet *ifp = lgp->lp_ifp;
462         struct ifmediareq ifmr;
463         int error = 0;
464         u_int media;
465         uint8_t old_state;
466         uint16_t old_key;
467
468         bzero((char *)&ifmr, sizeof(ifmr));
469         error = (*ifp->if_ioctl)(ifp, SIOCGIFXMEDIA, (caddr_t)&ifmr);
470         if (error != 0) {
471                 bzero((char *)&ifmr, sizeof(ifmr));
472                 error = (*ifp->if_ioctl)(ifp, SIOCGIFMEDIA, (caddr_t)&ifmr);
473         }
474         if (error != 0)
475                 return;
476
477         LACP_LOCK(lsc);
478         media = ifmr.ifm_active;
479         LACP_DPRINTF((lp, "media changed 0x%x -> 0x%x, ether = %d, fdx = %d, "
480             "link = %d\n", lp->lp_media, media, IFM_TYPE(media) == IFM_ETHER,
481             (media & IFM_FDX) != 0, ifp->if_link_state == LINK_STATE_UP));
482         old_state = lp->lp_state;
483         old_key = lp->lp_key;
484
485         lp->lp_media = media;
486         /*
487          * If the port is not an active full duplex Ethernet link then it can
488          * not be aggregated.
489          */
490         if (IFM_TYPE(media) != IFM_ETHER || (media & IFM_FDX) == 0 ||
491             ifp->if_link_state != LINK_STATE_UP) {
492                 lacp_port_disable(lp);
493         } else {
494                 lacp_port_enable(lp);
495         }
496         lp->lp_key = lacp_compose_key(lp);
497
498         if (old_state != lp->lp_state || old_key != lp->lp_key) {
499                 LACP_DPRINTF((lp, "-> UNSELECTED\n"));
500                 lp->lp_selected = LACP_UNSELECTED;
501         }
502         LACP_UNLOCK(lsc);
503 }
504
505 static void
506 lacp_tick(void *arg)
507 {
508         struct lacp_softc *lsc = arg;
509         struct lacp_port *lp;
510
511         LIST_FOREACH(lp, &lsc->lsc_ports, lp_next) {
512                 if ((lp->lp_state & LACP_STATE_AGGREGATION) == 0)
513                         continue;
514
515                 CURVNET_SET(lp->lp_ifp->if_vnet);
516                 lacp_run_timers(lp);
517
518                 lacp_select(lp);
519                 lacp_sm_mux(lp);
520                 lacp_sm_tx(lp);
521                 lacp_sm_ptx_tx_schedule(lp);
522                 CURVNET_RESTORE();
523         }
524         callout_reset(&lsc->lsc_callout, hz, lacp_tick, lsc);
525 }
526
527 int
528 lacp_port_create(struct lagg_port *lgp)
529 {
530         struct lagg_softc *sc = lgp->lp_softc;
531         struct lacp_softc *lsc = LACP_SOFTC(sc);
532         struct lacp_port *lp;
533         struct ifnet *ifp = lgp->lp_ifp;
534         struct sockaddr_dl sdl;
535         struct ifmultiaddr *rifma = NULL;
536         int error;
537
538         link_init_sdl(ifp, (struct sockaddr *)&sdl, IFT_ETHER);
539         sdl.sdl_alen = ETHER_ADDR_LEN;
540
541         bcopy(&ethermulticastaddr_slowprotocols,
542             LLADDR(&sdl), ETHER_ADDR_LEN);
543         error = if_addmulti(ifp, (struct sockaddr *)&sdl, &rifma);
544         if (error) {
545                 printf("%s: ADDMULTI failed on %s\n", __func__,
546                     lgp->lp_ifp->if_xname);
547                 return (error);
548         }
549
550         lp = malloc(sizeof(struct lacp_port),
551             M_DEVBUF, M_NOWAIT|M_ZERO);
552         if (lp == NULL)
553                 return (ENOMEM);
554
555         LACP_LOCK(lsc);
556         lgp->lp_psc = lp;
557         lp->lp_ifp = ifp;
558         lp->lp_lagg = lgp;
559         lp->lp_lsc = lsc;
560         lp->lp_ifma = rifma;
561
562         LIST_INSERT_HEAD(&lsc->lsc_ports, lp, lp_next);
563
564         lacp_fill_actorinfo(lp, &lp->lp_actor);
565         lacp_fill_markerinfo(lp, &lp->lp_marker);
566         lp->lp_state = LACP_STATE_ACTIVITY;
567         lp->lp_aggregator = NULL;
568         lacp_sm_rx_set_expired(lp);
569         LACP_UNLOCK(lsc);
570         lacp_linkstate(lgp);
571
572         return (0);
573 }
574
575 void
576 lacp_port_destroy(struct lagg_port *lgp)
577 {
578         struct lacp_port *lp = LACP_PORT(lgp);
579         struct lacp_softc *lsc = lp->lp_lsc;
580         int i;
581
582         LACP_LOCK(lsc);
583         for (i = 0; i < LACP_NTIMER; i++) {
584                 LACP_TIMER_DISARM(lp, i);
585         }
586
587         lacp_disable_collecting(lp);
588         lacp_disable_distributing(lp);
589         lacp_unselect(lp);
590
591         LIST_REMOVE(lp, lp_next);
592         LACP_UNLOCK(lsc);
593
594         /* The address may have already been removed by if_purgemaddrs() */
595         if (!lgp->lp_detaching)
596                 if_delmulti_ifma(lp->lp_ifma);
597
598         free(lp, M_DEVBUF);
599 }
600
601 void
602 lacp_req(struct lagg_softc *sc, void *data)
603 {
604         struct lacp_opreq *req = (struct lacp_opreq *)data;
605         struct lacp_softc *lsc = LACP_SOFTC(sc);
606         struct lacp_aggregator *la;
607
608         bzero(req, sizeof(struct lacp_opreq));
609
610         /*
611          * If the LACP softc is NULL, return with the opreq structure full of
612          * zeros.  It is normal for the softc to be NULL while the lagg is
613          * being destroyed.
614          */
615         if (NULL == lsc)
616                 return;
617
618         la = lsc->lsc_active_aggregator;
619         LACP_LOCK(lsc);
620         if (la != NULL) {
621                 req->actor_prio = ntohs(la->la_actor.lip_systemid.lsi_prio);
622                 memcpy(&req->actor_mac, &la->la_actor.lip_systemid.lsi_mac,
623                     ETHER_ADDR_LEN);
624                 req->actor_key = ntohs(la->la_actor.lip_key);
625                 req->actor_portprio = ntohs(la->la_actor.lip_portid.lpi_prio);
626                 req->actor_portno = ntohs(la->la_actor.lip_portid.lpi_portno);
627                 req->actor_state = la->la_actor.lip_state;
628
629                 req->partner_prio = ntohs(la->la_partner.lip_systemid.lsi_prio);
630                 memcpy(&req->partner_mac, &la->la_partner.lip_systemid.lsi_mac,
631                     ETHER_ADDR_LEN);
632                 req->partner_key = ntohs(la->la_partner.lip_key);
633                 req->partner_portprio = ntohs(la->la_partner.lip_portid.lpi_prio);
634                 req->partner_portno = ntohs(la->la_partner.lip_portid.lpi_portno);
635                 req->partner_state = la->la_partner.lip_state;
636         }
637         LACP_UNLOCK(lsc);
638 }
639
640 void
641 lacp_portreq(struct lagg_port *lgp, void *data)
642 {
643         struct lacp_opreq *req = (struct lacp_opreq *)data;
644         struct lacp_port *lp = LACP_PORT(lgp);
645         struct lacp_softc *lsc = lp->lp_lsc;
646
647         LACP_LOCK(lsc);
648         req->actor_prio = ntohs(lp->lp_actor.lip_systemid.lsi_prio);
649         memcpy(&req->actor_mac, &lp->lp_actor.lip_systemid.lsi_mac,
650             ETHER_ADDR_LEN);
651         req->actor_key = ntohs(lp->lp_actor.lip_key);
652         req->actor_portprio = ntohs(lp->lp_actor.lip_portid.lpi_prio);
653         req->actor_portno = ntohs(lp->lp_actor.lip_portid.lpi_portno);
654         req->actor_state = lp->lp_actor.lip_state;
655
656         req->partner_prio = ntohs(lp->lp_partner.lip_systemid.lsi_prio);
657         memcpy(&req->partner_mac, &lp->lp_partner.lip_systemid.lsi_mac,
658             ETHER_ADDR_LEN);
659         req->partner_key = ntohs(lp->lp_partner.lip_key);
660         req->partner_portprio = ntohs(lp->lp_partner.lip_portid.lpi_prio);
661         req->partner_portno = ntohs(lp->lp_partner.lip_portid.lpi_portno);
662         req->partner_state = lp->lp_partner.lip_state;
663         LACP_UNLOCK(lsc);
664 }
665
666 static void
667 lacp_disable_collecting(struct lacp_port *lp)
668 {
669         LACP_DPRINTF((lp, "collecting disabled\n"));
670         lp->lp_state &= ~LACP_STATE_COLLECTING;
671 }
672
673 static void
674 lacp_enable_collecting(struct lacp_port *lp)
675 {
676         LACP_DPRINTF((lp, "collecting enabled\n"));
677         lp->lp_state |= LACP_STATE_COLLECTING;
678 }
679
680 static void
681 lacp_disable_distributing(struct lacp_port *lp)
682 {
683         struct lacp_aggregator *la = lp->lp_aggregator;
684         struct lacp_softc *lsc = lp->lp_lsc;
685         struct lagg_softc *sc = lsc->lsc_softc;
686         char buf[LACP_LAGIDSTR_MAX+1];
687
688         LACP_LOCK_ASSERT(lsc);
689
690         if (la == NULL || (lp->lp_state & LACP_STATE_DISTRIBUTING) == 0) {
691                 return;
692         }
693
694         KASSERT(!TAILQ_EMPTY(&la->la_ports), ("no aggregator ports"));
695         KASSERT(la->la_nports > 0, ("nports invalid (%d)", la->la_nports));
696         KASSERT(la->la_refcnt >= la->la_nports, ("aggregator refcnt invalid"));
697
698         LACP_DPRINTF((lp, "disable distributing on aggregator %s, "
699             "nports %d -> %d\n",
700             lacp_format_lagid_aggregator(la, buf, sizeof(buf)),
701             la->la_nports, la->la_nports - 1));
702
703         TAILQ_REMOVE(&la->la_ports, lp, lp_dist_q);
704         la->la_nports--;
705         sc->sc_active = la->la_nports;
706
707         if (lsc->lsc_active_aggregator == la) {
708                 lacp_suppress_distributing(lsc, la);
709                 lacp_select_active_aggregator(lsc);
710                 /* regenerate the port map, the active aggregator has changed */
711                 lacp_update_portmap(lsc);
712         }
713
714         lp->lp_state &= ~LACP_STATE_DISTRIBUTING;
715         if_link_state_change(sc->sc_ifp,
716             sc->sc_active ? LINK_STATE_UP : LINK_STATE_DOWN);
717 }
718
719 static void
720 lacp_enable_distributing(struct lacp_port *lp)
721 {
722         struct lacp_aggregator *la = lp->lp_aggregator;
723         struct lacp_softc *lsc = lp->lp_lsc;
724         struct lagg_softc *sc = lsc->lsc_softc;
725         char buf[LACP_LAGIDSTR_MAX+1];
726
727         LACP_LOCK_ASSERT(lsc);
728
729         if ((lp->lp_state & LACP_STATE_DISTRIBUTING) != 0) {
730                 return;
731         }
732
733         LACP_DPRINTF((lp, "enable distributing on aggregator %s, "
734             "nports %d -> %d\n",
735             lacp_format_lagid_aggregator(la, buf, sizeof(buf)),
736             la->la_nports, la->la_nports + 1));
737
738         KASSERT(la->la_refcnt > la->la_nports, ("aggregator refcnt invalid"));
739         TAILQ_INSERT_HEAD(&la->la_ports, lp, lp_dist_q);
740         la->la_nports++;
741         sc->sc_active = la->la_nports;
742
743         lp->lp_state |= LACP_STATE_DISTRIBUTING;
744
745         if (lsc->lsc_active_aggregator == la) {
746                 lacp_suppress_distributing(lsc, la);
747                 lacp_update_portmap(lsc);
748         } else
749                 /* try to become the active aggregator */
750                 lacp_select_active_aggregator(lsc);
751
752         if_link_state_change(sc->sc_ifp,
753             sc->sc_active ? LINK_STATE_UP : LINK_STATE_DOWN);
754 }
755
756 static void
757 lacp_transit_expire(void *vp)
758 {
759         struct lacp_softc *lsc = vp;
760
761         LACP_LOCK_ASSERT(lsc);
762
763         CURVNET_SET(lsc->lsc_softc->sc_ifp->if_vnet);
764         LACP_TRACE(NULL);
765         CURVNET_RESTORE();
766
767         lsc->lsc_suppress_distributing = FALSE;
768 }
769
770 void
771 lacp_attach(struct lagg_softc *sc)
772 {
773         struct lacp_softc *lsc;
774
775         lsc = malloc(sizeof(struct lacp_softc), M_DEVBUF, M_WAITOK | M_ZERO);
776
777         sc->sc_psc = lsc;
778         lsc->lsc_softc = sc;
779
780         lsc->lsc_hashkey = m_ether_tcpip_hash_init();
781         lsc->lsc_active_aggregator = NULL;
782         lsc->lsc_strict_mode = VNET(lacp_default_strict_mode);
783         LACP_LOCK_INIT(lsc);
784         TAILQ_INIT(&lsc->lsc_aggregators);
785         LIST_INIT(&lsc->lsc_ports);
786
787         callout_init_mtx(&lsc->lsc_transit_callout, &lsc->lsc_mtx, 0);
788         callout_init_mtx(&lsc->lsc_callout, &lsc->lsc_mtx, 0);
789
790         /* if the lagg is already up then do the same */
791         if (sc->sc_ifp->if_drv_flags & IFF_DRV_RUNNING)
792                 lacp_init(sc);
793 }
794
795 void
796 lacp_detach(void *psc)
797 {
798         struct lacp_softc *lsc = (struct lacp_softc *)psc;
799
800         KASSERT(TAILQ_EMPTY(&lsc->lsc_aggregators),
801             ("aggregators still active"));
802         KASSERT(lsc->lsc_active_aggregator == NULL,
803             ("aggregator still attached"));
804
805         callout_drain(&lsc->lsc_transit_callout);
806         callout_drain(&lsc->lsc_callout);
807
808         LACP_LOCK_DESTROY(lsc);
809         free(lsc, M_DEVBUF);
810 }
811
812 void
813 lacp_init(struct lagg_softc *sc)
814 {
815         struct lacp_softc *lsc = LACP_SOFTC(sc);
816
817         LACP_LOCK(lsc);
818         callout_reset(&lsc->lsc_callout, hz, lacp_tick, lsc);
819         LACP_UNLOCK(lsc);
820 }
821
822 void
823 lacp_stop(struct lagg_softc *sc)
824 {
825         struct lacp_softc *lsc = LACP_SOFTC(sc);
826
827         LACP_LOCK(lsc);
828         callout_stop(&lsc->lsc_transit_callout);
829         callout_stop(&lsc->lsc_callout);
830         LACP_UNLOCK(lsc);
831 }
832
833 struct lagg_port *
834 lacp_select_tx_port_by_hash(struct lagg_softc *sc, uint32_t hash, uint8_t numa_domain)
835 {
836         struct lacp_softc *lsc = LACP_SOFTC(sc);
837         struct lacp_portmap *pm;
838         struct lacp_port *lp;
839         struct lacp_port **map;
840         int count;
841
842         if (__predict_false(lsc->lsc_suppress_distributing)) {
843                 LACP_DPRINTF((NULL, "%s: waiting transit\n", __func__));
844                 return (NULL);
845         }
846
847         pm = &lsc->lsc_pmap[lsc->lsc_activemap];
848         if (pm->pm_count == 0) {
849                 LACP_DPRINTF((NULL, "%s: no active aggregator\n", __func__));
850                 return (NULL);
851         }
852
853 #ifdef NUMA
854         if ((sc->sc_opts & LAGG_OPT_USE_NUMA) &&
855             pm->pm_num_dom > 1 && numa_domain < MAXMEMDOM) {
856                 count = pm->pm_numa[numa_domain].count;
857                 if (count > 0) {
858                         map = pm->pm_numa[numa_domain].map;
859                 } else {
860                         /* No ports on this domain; use global hash. */
861                         map = pm->pm_map;
862                         count = pm->pm_count;
863                 }
864         } else
865 #endif
866         {
867                 map = pm->pm_map;
868                 count = pm->pm_count;
869         }
870
871         hash %= count;
872         lp = map[hash];
873
874         KASSERT((lp->lp_state & LACP_STATE_DISTRIBUTING) != 0,
875             ("aggregated port is not distributing"));
876
877         return (lp->lp_lagg);
878 }
879
880 struct lagg_port *
881 lacp_select_tx_port(struct lagg_softc *sc, struct mbuf *m)
882 {
883         struct lacp_softc *lsc = LACP_SOFTC(sc);
884         uint32_t hash;
885         uint8_t numa_domain;
886
887         if ((sc->sc_opts & LAGG_OPT_USE_FLOWID) &&
888             M_HASHTYPE_GET(m) != M_HASHTYPE_NONE)
889                 hash = m->m_pkthdr.flowid >> sc->flowid_shift;
890         else
891                 hash = m_ether_tcpip_hash(sc->sc_flags, m, lsc->lsc_hashkey);
892
893         numa_domain = m->m_pkthdr.numa_domain;
894         return (lacp_select_tx_port_by_hash(sc, hash, numa_domain));
895 }
896
897 /*
898  * lacp_suppress_distributing: drop transmit packets for a while
899  * to preserve packet ordering.
900  */
901
902 static void
903 lacp_suppress_distributing(struct lacp_softc *lsc, struct lacp_aggregator *la)
904 {
905         struct lacp_port *lp;
906
907         if (lsc->lsc_active_aggregator != la) {
908                 return;
909         }
910
911         LACP_TRACE(NULL);
912
913         lsc->lsc_suppress_distributing = TRUE;
914
915         /* send a marker frame down each port to verify the queues are empty */
916         LIST_FOREACH(lp, &lsc->lsc_ports, lp_next) {
917                 lp->lp_flags |= LACP_PORT_MARK;
918                 lacp_xmit_marker(lp);
919         }
920
921         /* set a timeout for the marker frames */
922         callout_reset(&lsc->lsc_transit_callout,
923             LACP_TRANSIT_DELAY * hz / 1000, lacp_transit_expire, lsc);
924 }
925
926 static int
927 lacp_compare_peerinfo(const struct lacp_peerinfo *a,
928     const struct lacp_peerinfo *b)
929 {
930         return (memcmp(a, b, offsetof(struct lacp_peerinfo, lip_state)));
931 }
932
933 static int
934 lacp_compare_systemid(const struct lacp_systemid *a,
935     const struct lacp_systemid *b)
936 {
937         return (memcmp(a, b, sizeof(*a)));
938 }
939
940 #if 0   /* unused */
941 static int
942 lacp_compare_portid(const struct lacp_portid *a,
943     const struct lacp_portid *b)
944 {
945         return (memcmp(a, b, sizeof(*a)));
946 }
947 #endif
948
949 static uint64_t
950 lacp_aggregator_bandwidth(struct lacp_aggregator *la)
951 {
952         struct lacp_port *lp;
953         uint64_t speed;
954
955         lp = TAILQ_FIRST(&la->la_ports);
956         if (lp == NULL) {
957                 return (0);
958         }
959
960         speed = ifmedia_baudrate(lp->lp_media);
961         speed *= la->la_nports;
962         if (speed == 0) {
963                 LACP_DPRINTF((lp, "speed 0? media=0x%x nports=%d\n",
964                     lp->lp_media, la->la_nports));
965         }
966
967         return (speed);
968 }
969
970 /*
971  * lacp_select_active_aggregator: select an aggregator to be used to transmit
972  * packets from lagg(4) interface.
973  */
974
975 static void
976 lacp_select_active_aggregator(struct lacp_softc *lsc)
977 {
978         struct lacp_aggregator *la;
979         struct lacp_aggregator *best_la = NULL;
980         uint64_t best_speed = 0;
981         char buf[LACP_LAGIDSTR_MAX+1];
982
983         LACP_TRACE(NULL);
984
985         TAILQ_FOREACH(la, &lsc->lsc_aggregators, la_q) {
986                 uint64_t speed;
987
988                 if (la->la_nports == 0) {
989                         continue;
990                 }
991
992                 speed = lacp_aggregator_bandwidth(la);
993                 LACP_DPRINTF((NULL, "%s, speed=%jd, nports=%d\n",
994                     lacp_format_lagid_aggregator(la, buf, sizeof(buf)),
995                     speed, la->la_nports));
996
997                 /*
998                  * This aggregator is chosen if the partner has a better
999                  * system priority or, the total aggregated speed is higher
1000                  * or, it is already the chosen aggregator
1001                  */
1002                 if ((best_la != NULL && LACP_SYS_PRI(la->la_partner) <
1003                     LACP_SYS_PRI(best_la->la_partner)) ||
1004                     speed > best_speed ||
1005                     (speed == best_speed &&
1006                     la == lsc->lsc_active_aggregator)) {
1007                         best_la = la;
1008                         best_speed = speed;
1009                 }
1010         }
1011
1012         KASSERT(best_la == NULL || best_la->la_nports > 0,
1013             ("invalid aggregator refcnt"));
1014         KASSERT(best_la == NULL || !TAILQ_EMPTY(&best_la->la_ports),
1015             ("invalid aggregator list"));
1016
1017         if (lsc->lsc_active_aggregator != best_la) {
1018                 LACP_DPRINTF((NULL, "active aggregator changed\n"));
1019                 LACP_DPRINTF((NULL, "old %s\n",
1020                     lacp_format_lagid_aggregator(lsc->lsc_active_aggregator,
1021                     buf, sizeof(buf))));
1022         } else {
1023                 LACP_DPRINTF((NULL, "active aggregator not changed\n"));
1024         }
1025         LACP_DPRINTF((NULL, "new %s\n",
1026             lacp_format_lagid_aggregator(best_la, buf, sizeof(buf))));
1027
1028         if (lsc->lsc_active_aggregator != best_la) {
1029                 lsc->lsc_active_aggregator = best_la;
1030                 lacp_update_portmap(lsc);
1031                 if (best_la) {
1032                         lacp_suppress_distributing(lsc, best_la);
1033                 }
1034         }
1035 }
1036
1037 /*
1038  * Updated the inactive portmap array with the new list of ports and
1039  * make it live.
1040  */
1041 static void
1042 lacp_update_portmap(struct lacp_softc *lsc)
1043 {
1044         struct lagg_softc *sc = lsc->lsc_softc;
1045         struct lacp_aggregator *la;
1046         struct lacp_portmap *p;
1047         struct lacp_port *lp;
1048         uint64_t speed;
1049         u_int newmap;
1050         int i;
1051 #ifdef NUMA
1052         int count;
1053         uint8_t domain;
1054 #endif
1055
1056         newmap = lsc->lsc_activemap == 0 ? 1 : 0;
1057         p = &lsc->lsc_pmap[newmap];
1058         la = lsc->lsc_active_aggregator;
1059         speed = 0;
1060         bzero(p, sizeof(struct lacp_portmap));
1061
1062         if (la != NULL && la->la_nports > 0) {
1063                 p->pm_count = la->la_nports;
1064                 i = 0;
1065                 TAILQ_FOREACH(lp, &la->la_ports, lp_dist_q) {
1066                         p->pm_map[i++] = lp;
1067 #ifdef NUMA
1068                         domain = lp->lp_ifp->if_numa_domain;
1069                         if (domain >= MAXMEMDOM)
1070                                 continue;
1071                         count = p->pm_numa[domain].count;
1072                         p->pm_numa[domain].map[count] = lp;
1073                         p->pm_numa[domain].count++;
1074 #endif
1075                 }
1076                 KASSERT(i == p->pm_count, ("Invalid port count"));
1077
1078 #ifdef NUMA
1079                 for (i = 0; i < MAXMEMDOM; i++) {
1080                         if (p->pm_numa[i].count != 0)
1081                                 p->pm_num_dom++;
1082                 }
1083 #endif
1084                 speed = lacp_aggregator_bandwidth(la);
1085         }
1086         sc->sc_ifp->if_baudrate = speed;
1087
1088         /* switch the active portmap over */
1089         atomic_store_rel_int(&lsc->lsc_activemap, newmap);
1090         LACP_DPRINTF((NULL, "Set table %d with %d ports\n",
1091                     lsc->lsc_activemap,
1092                     lsc->lsc_pmap[lsc->lsc_activemap].pm_count));
1093 }
1094
1095 static uint16_t
1096 lacp_compose_key(struct lacp_port *lp)
1097 {
1098         struct lagg_port *lgp = lp->lp_lagg;
1099         struct lagg_softc *sc = lgp->lp_softc;
1100         u_int media = lp->lp_media;
1101         uint16_t key;
1102
1103         if ((lp->lp_state & LACP_STATE_AGGREGATION) == 0) {
1104                 /*
1105                  * non-aggregatable links should have unique keys.
1106                  *
1107                  * XXX this isn't really unique as if_index is 16 bit.
1108                  */
1109
1110                 /* bit 0..14:   (some bits of) if_index of this port */
1111                 key = lp->lp_ifp->if_index;
1112                 /* bit 15:      1 */
1113                 key |= 0x8000;
1114         } else {
1115                 u_int subtype = IFM_SUBTYPE(media);
1116
1117                 KASSERT(IFM_TYPE(media) == IFM_ETHER, ("invalid media type"));
1118                 KASSERT((media & IFM_FDX) != 0, ("aggregating HDX interface"));
1119
1120                 /* bit 0..4:    IFM_SUBTYPE modulo speed */
1121                 switch (subtype) {
1122                 case IFM_10_T:
1123                 case IFM_10_2:
1124                 case IFM_10_5:
1125                 case IFM_10_STP:
1126                 case IFM_10_FL:
1127                         key = IFM_10_T;
1128                         break;
1129                 case IFM_100_TX:
1130                 case IFM_100_FX:
1131                 case IFM_100_T4:
1132                 case IFM_100_VG:
1133                 case IFM_100_T2:
1134                 case IFM_100_T:
1135                 case IFM_100_SGMII:
1136                         key = IFM_100_TX;
1137                         break;
1138                 case IFM_1000_SX:
1139                 case IFM_1000_LX:
1140                 case IFM_1000_CX:
1141                 case IFM_1000_T:
1142                 case IFM_1000_KX:
1143                 case IFM_1000_SGMII:
1144                 case IFM_1000_CX_SGMII:
1145                         key = IFM_1000_SX;
1146                         break;
1147                 case IFM_10G_LR:
1148                 case IFM_10G_SR:
1149                 case IFM_10G_CX4:
1150                 case IFM_10G_TWINAX:
1151                 case IFM_10G_TWINAX_LONG:
1152                 case IFM_10G_LRM:
1153                 case IFM_10G_T:
1154                 case IFM_10G_KX4:
1155                 case IFM_10G_KR:
1156                 case IFM_10G_CR1:
1157                 case IFM_10G_ER:
1158                 case IFM_10G_SFI:
1159                 case IFM_10G_AOC:
1160                         key = IFM_10G_LR;
1161                         break;
1162                 case IFM_20G_KR2:
1163                         key = IFM_20G_KR2;
1164                         break;
1165                 case IFM_2500_KX:
1166                 case IFM_2500_T:
1167                 case IFM_2500_X:
1168                         key = IFM_2500_KX;
1169                         break;
1170                 case IFM_5000_T:
1171                 case IFM_5000_KR:
1172                 case IFM_5000_KR_S:
1173                 case IFM_5000_KR1:
1174                         key = IFM_5000_T;
1175                         break;
1176                 case IFM_50G_PCIE:
1177                 case IFM_50G_CR2:
1178                 case IFM_50G_KR2:
1179                 case IFM_50G_KR4:
1180                 case IFM_50G_SR2:
1181                 case IFM_50G_LR2:
1182                 case IFM_50G_LAUI2_AC:
1183                 case IFM_50G_LAUI2:
1184                 case IFM_50G_AUI2_AC:
1185                 case IFM_50G_AUI2:
1186                 case IFM_50G_CP:
1187                 case IFM_50G_SR:
1188                 case IFM_50G_LR:
1189                 case IFM_50G_FR:
1190                 case IFM_50G_KR_PAM4:
1191                 case IFM_50G_AUI1_AC:
1192                 case IFM_50G_AUI1:
1193                         key = IFM_50G_PCIE;
1194                         break;
1195                 case IFM_56G_R4:
1196                         key = IFM_56G_R4;
1197                         break;
1198                 case IFM_25G_PCIE:
1199                 case IFM_25G_CR:
1200                 case IFM_25G_KR:
1201                 case IFM_25G_SR:
1202                 case IFM_25G_LR:
1203                 case IFM_25G_ACC:
1204                 case IFM_25G_AOC:
1205                 case IFM_25G_T:
1206                 case IFM_25G_CR_S:
1207                 case IFM_25G_CR1:
1208                 case IFM_25G_KR_S:
1209                 case IFM_25G_AUI:
1210                 case IFM_25G_KR1:
1211                         key = IFM_25G_PCIE;
1212                         break;
1213                 case IFM_40G_CR4:
1214                 case IFM_40G_SR4:
1215                 case IFM_40G_LR4:
1216                 case IFM_40G_LM4:
1217                 case IFM_40G_XLPPI:
1218                 case IFM_40G_KR4:
1219                 case IFM_40G_XLAUI:
1220                 case IFM_40G_XLAUI_AC:
1221                 case IFM_40G_ER4:
1222                         key = IFM_40G_CR4;
1223                         break;
1224                 case IFM_100G_CR4:
1225                 case IFM_100G_SR4:
1226                 case IFM_100G_KR4:
1227                 case IFM_100G_LR4:
1228                 case IFM_100G_CAUI4_AC:
1229                 case IFM_100G_CAUI4:
1230                 case IFM_100G_AUI4_AC:
1231                 case IFM_100G_AUI4:
1232                 case IFM_100G_CR_PAM4:
1233                 case IFM_100G_KR_PAM4:
1234                 case IFM_100G_CP2:
1235                 case IFM_100G_SR2:
1236                 case IFM_100G_DR:
1237                 case IFM_100G_KR2_PAM4:
1238                 case IFM_100G_CAUI2_AC:
1239                 case IFM_100G_CAUI2:
1240                 case IFM_100G_AUI2_AC:
1241                 case IFM_100G_AUI2:
1242                         key = IFM_100G_CR4;
1243                         break;
1244                 case IFM_200G_CR4_PAM4:
1245                 case IFM_200G_SR4:
1246                 case IFM_200G_FR4:
1247                 case IFM_200G_LR4:
1248                 case IFM_200G_DR4:
1249                 case IFM_200G_KR4_PAM4:
1250                 case IFM_200G_AUI4_AC:
1251                 case IFM_200G_AUI4:
1252                 case IFM_200G_AUI8_AC:
1253                 case IFM_200G_AUI8:
1254                         key = IFM_200G_CR4_PAM4;
1255                         break;
1256                 case IFM_400G_FR8:
1257                 case IFM_400G_LR8:
1258                 case IFM_400G_DR4:
1259                 case IFM_400G_AUI8_AC:
1260                 case IFM_400G_AUI8:
1261                         key = IFM_400G_FR8;
1262                         break;
1263                 default:
1264                         key = subtype;
1265                         break;
1266                 }
1267                 /* bit 5..14:   (some bits of) if_index of lagg device */
1268                 key |= 0x7fe0 & ((sc->sc_ifp->if_index) << 5);
1269                 /* bit 15:      0 */
1270         }
1271         return (htons(key));
1272 }
1273
1274 static void
1275 lacp_aggregator_addref(struct lacp_softc *lsc, struct lacp_aggregator *la)
1276 {
1277         char buf[LACP_LAGIDSTR_MAX+1];
1278
1279         LACP_DPRINTF((NULL, "%s: lagid=%s, refcnt %d -> %d\n",
1280             __func__,
1281             lacp_format_lagid(&la->la_actor, &la->la_partner,
1282             buf, sizeof(buf)),
1283             la->la_refcnt, la->la_refcnt + 1));
1284
1285         KASSERT(la->la_refcnt > 0, ("refcount <= 0"));
1286         la->la_refcnt++;
1287         KASSERT(la->la_refcnt > la->la_nports, ("invalid refcount"));
1288 }
1289
1290 static void
1291 lacp_aggregator_delref(struct lacp_softc *lsc, struct lacp_aggregator *la)
1292 {
1293         char buf[LACP_LAGIDSTR_MAX+1];
1294
1295         LACP_DPRINTF((NULL, "%s: lagid=%s, refcnt %d -> %d\n",
1296             __func__,
1297             lacp_format_lagid(&la->la_actor, &la->la_partner,
1298             buf, sizeof(buf)),
1299             la->la_refcnt, la->la_refcnt - 1));
1300
1301         KASSERT(la->la_refcnt > la->la_nports, ("invalid refcnt"));
1302         la->la_refcnt--;
1303         if (la->la_refcnt > 0) {
1304                 return;
1305         }
1306
1307         KASSERT(la->la_refcnt == 0, ("refcount not zero"));
1308         KASSERT(lsc->lsc_active_aggregator != la, ("aggregator active"));
1309
1310         TAILQ_REMOVE(&lsc->lsc_aggregators, la, la_q);
1311
1312         free(la, M_DEVBUF);
1313 }
1314
1315 /*
1316  * lacp_aggregator_get: allocate an aggregator.
1317  */
1318
1319 static struct lacp_aggregator *
1320 lacp_aggregator_get(struct lacp_softc *lsc, struct lacp_port *lp)
1321 {
1322         struct lacp_aggregator *la;
1323
1324         la = malloc(sizeof(*la), M_DEVBUF, M_NOWAIT);
1325         if (la) {
1326                 la->la_refcnt = 1;
1327                 la->la_nports = 0;
1328                 TAILQ_INIT(&la->la_ports);
1329                 la->la_pending = 0;
1330                 TAILQ_INSERT_TAIL(&lsc->lsc_aggregators, la, la_q);
1331         }
1332
1333         return (la);
1334 }
1335
1336 /*
1337  * lacp_fill_aggregator_id: setup a newly allocated aggregator from a port.
1338  */
1339
1340 static void
1341 lacp_fill_aggregator_id(struct lacp_aggregator *la, const struct lacp_port *lp)
1342 {
1343         lacp_fill_aggregator_id_peer(&la->la_partner, &lp->lp_partner);
1344         lacp_fill_aggregator_id_peer(&la->la_actor, &lp->lp_actor);
1345
1346         la->la_actor.lip_state = lp->lp_state & LACP_STATE_AGGREGATION;
1347 }
1348
1349 static void
1350 lacp_fill_aggregator_id_peer(struct lacp_peerinfo *lpi_aggr,
1351     const struct lacp_peerinfo *lpi_port)
1352 {
1353         memset(lpi_aggr, 0, sizeof(*lpi_aggr));
1354         lpi_aggr->lip_systemid = lpi_port->lip_systemid;
1355         lpi_aggr->lip_key = lpi_port->lip_key;
1356 }
1357
1358 /*
1359  * lacp_aggregator_is_compatible: check if a port can join to an aggregator.
1360  */
1361
1362 static int
1363 lacp_aggregator_is_compatible(const struct lacp_aggregator *la,
1364     const struct lacp_port *lp)
1365 {
1366         if (!(lp->lp_state & LACP_STATE_AGGREGATION) ||
1367             !(lp->lp_partner.lip_state & LACP_STATE_AGGREGATION)) {
1368                 return (0);
1369         }
1370
1371         if (!(la->la_actor.lip_state & LACP_STATE_AGGREGATION)) {
1372                 return (0);
1373         }
1374
1375         if (!lacp_peerinfo_is_compatible(&la->la_partner, &lp->lp_partner)) {
1376                 return (0);
1377         }
1378
1379         if (!lacp_peerinfo_is_compatible(&la->la_actor, &lp->lp_actor)) {
1380                 return (0);
1381         }
1382
1383         return (1);
1384 }
1385
1386 static int
1387 lacp_peerinfo_is_compatible(const struct lacp_peerinfo *a,
1388     const struct lacp_peerinfo *b)
1389 {
1390         if (memcmp(&a->lip_systemid, &b->lip_systemid,
1391             sizeof(a->lip_systemid))) {
1392                 return (0);
1393         }
1394
1395         if (memcmp(&a->lip_key, &b->lip_key, sizeof(a->lip_key))) {
1396                 return (0);
1397         }
1398
1399         return (1);
1400 }
1401
1402 static void
1403 lacp_port_enable(struct lacp_port *lp)
1404 {
1405         lp->lp_state |= LACP_STATE_AGGREGATION;
1406 }
1407
1408 static void
1409 lacp_port_disable(struct lacp_port *lp)
1410 {
1411         lacp_set_mux(lp, LACP_MUX_DETACHED);
1412
1413         lp->lp_state &= ~LACP_STATE_AGGREGATION;
1414         lp->lp_selected = LACP_UNSELECTED;
1415         lacp_sm_rx_record_default(lp);
1416         lp->lp_partner.lip_state &= ~LACP_STATE_AGGREGATION;
1417         lp->lp_state &= ~LACP_STATE_EXPIRED;
1418 }
1419
1420 /*
1421  * lacp_select: select an aggregator.  create one if necessary.
1422  */
1423 static void
1424 lacp_select(struct lacp_port *lp)
1425 {
1426         struct lacp_softc *lsc = lp->lp_lsc;
1427         struct lacp_aggregator *la;
1428         char buf[LACP_LAGIDSTR_MAX+1];
1429
1430         if (lp->lp_aggregator) {
1431                 return;
1432         }
1433
1434         /* If we haven't heard from our peer, skip this step. */
1435         if (lp->lp_state & LACP_STATE_DEFAULTED)
1436                 return;
1437
1438         KASSERT(!LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE),
1439             ("timer_wait_while still active"));
1440
1441         LACP_DPRINTF((lp, "port lagid=%s\n",
1442             lacp_format_lagid(&lp->lp_actor, &lp->lp_partner,
1443             buf, sizeof(buf))));
1444
1445         TAILQ_FOREACH(la, &lsc->lsc_aggregators, la_q) {
1446                 if (lacp_aggregator_is_compatible(la, lp)) {
1447                         break;
1448                 }
1449         }
1450
1451         if (la == NULL) {
1452                 la = lacp_aggregator_get(lsc, lp);
1453                 if (la == NULL) {
1454                         LACP_DPRINTF((lp, "aggregator creation failed\n"));
1455
1456                         /*
1457                          * will retry on the next tick.
1458                          */
1459
1460                         return;
1461                 }
1462                 lacp_fill_aggregator_id(la, lp);
1463                 LACP_DPRINTF((lp, "aggregator created\n"));
1464         } else {
1465                 LACP_DPRINTF((lp, "compatible aggregator found\n"));
1466                 if (la->la_refcnt == LACP_MAX_PORTS)
1467                         return;
1468                 lacp_aggregator_addref(lsc, la);
1469         }
1470
1471         LACP_DPRINTF((lp, "aggregator lagid=%s\n",
1472             lacp_format_lagid(&la->la_actor, &la->la_partner,
1473             buf, sizeof(buf))));
1474
1475         lp->lp_aggregator = la;
1476         lp->lp_selected = LACP_SELECTED;
1477 }
1478
1479 /*
1480  * lacp_unselect: finish unselect/detach process.
1481  */
1482
1483 static void
1484 lacp_unselect(struct lacp_port *lp)
1485 {
1486         struct lacp_softc *lsc = lp->lp_lsc;
1487         struct lacp_aggregator *la = lp->lp_aggregator;
1488
1489         KASSERT(!LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE),
1490             ("timer_wait_while still active"));
1491
1492         if (la == NULL) {
1493                 return;
1494         }
1495
1496         lp->lp_aggregator = NULL;
1497         lacp_aggregator_delref(lsc, la);
1498 }
1499
1500 /* mux machine */
1501
1502 static void
1503 lacp_sm_mux(struct lacp_port *lp)
1504 {
1505         struct lagg_port *lgp = lp->lp_lagg;
1506         struct lagg_softc *sc = lgp->lp_softc;
1507         enum lacp_mux_state new_state;
1508         boolean_t p_sync =
1509                     (lp->lp_partner.lip_state & LACP_STATE_SYNC) != 0;
1510         boolean_t p_collecting =
1511             (lp->lp_partner.lip_state & LACP_STATE_COLLECTING) != 0;
1512         enum lacp_selected selected = lp->lp_selected;
1513         struct lacp_aggregator *la;
1514
1515         if (V_lacp_debug > 1)
1516                 lacp_dprintf(lp, "%s: state= 0x%x, selected= 0x%x, "
1517                     "p_sync= 0x%x, p_collecting= 0x%x\n", __func__,
1518                     lp->lp_mux_state, selected, p_sync, p_collecting);
1519
1520 re_eval:
1521         la = lp->lp_aggregator;
1522         KASSERT(lp->lp_mux_state == LACP_MUX_DETACHED || la != NULL,
1523             ("MUX not detached"));
1524         new_state = lp->lp_mux_state;
1525         switch (lp->lp_mux_state) {
1526         case LACP_MUX_DETACHED:
1527                 if (selected != LACP_UNSELECTED) {
1528                         new_state = LACP_MUX_WAITING;
1529                 }
1530                 break;
1531         case LACP_MUX_WAITING:
1532                 KASSERT(la->la_pending > 0 ||
1533                     !LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE),
1534                     ("timer_wait_while still active"));
1535                 if (selected == LACP_SELECTED && la->la_pending == 0) {
1536                         new_state = LACP_MUX_ATTACHED;
1537                 } else if (selected == LACP_UNSELECTED) {
1538                         new_state = LACP_MUX_DETACHED;
1539                 }
1540                 break;
1541         case LACP_MUX_ATTACHED:
1542                 if (selected == LACP_SELECTED && p_sync) {
1543                         new_state = LACP_MUX_COLLECTING;
1544                 } else if (selected != LACP_SELECTED) {
1545                         new_state = LACP_MUX_DETACHED;
1546                 }
1547                 break;
1548         case LACP_MUX_COLLECTING:
1549                 if (selected == LACP_SELECTED && p_sync && p_collecting) {
1550                         new_state = LACP_MUX_DISTRIBUTING;
1551                 } else if (selected != LACP_SELECTED || !p_sync) {
1552                         new_state = LACP_MUX_ATTACHED;
1553                 }
1554                 break;
1555         case LACP_MUX_DISTRIBUTING:
1556                 if (selected != LACP_SELECTED || !p_sync || !p_collecting) {
1557                         new_state = LACP_MUX_COLLECTING;
1558                         lacp_dprintf(lp, "Interface stopped DISTRIBUTING, possible flapping\n");
1559                         sc->sc_flapping++;
1560                 }
1561                 break;
1562         default:
1563                 panic("%s: unknown state", __func__);
1564         }
1565
1566         if (lp->lp_mux_state == new_state) {
1567                 return;
1568         }
1569
1570         lacp_set_mux(lp, new_state);
1571         goto re_eval;
1572 }
1573
1574 static void
1575 lacp_set_mux(struct lacp_port *lp, enum lacp_mux_state new_state)
1576 {
1577         struct lacp_aggregator *la = lp->lp_aggregator;
1578
1579         if (lp->lp_mux_state == new_state) {
1580                 return;
1581         }
1582
1583         switch (new_state) {
1584         case LACP_MUX_DETACHED:
1585                 lp->lp_state &= ~LACP_STATE_SYNC;
1586                 lacp_disable_distributing(lp);
1587                 lacp_disable_collecting(lp);
1588                 lacp_sm_assert_ntt(lp);
1589                 /* cancel timer */
1590                 if (LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE)) {
1591                         KASSERT(la->la_pending > 0,
1592                             ("timer_wait_while not active"));
1593                         la->la_pending--;
1594                 }
1595                 LACP_TIMER_DISARM(lp, LACP_TIMER_WAIT_WHILE);
1596                 lacp_unselect(lp);
1597                 break;
1598         case LACP_MUX_WAITING:
1599                 LACP_TIMER_ARM(lp, LACP_TIMER_WAIT_WHILE,
1600                     LACP_AGGREGATE_WAIT_TIME);
1601                 la->la_pending++;
1602                 break;
1603         case LACP_MUX_ATTACHED:
1604                 lp->lp_state |= LACP_STATE_SYNC;
1605                 lacp_disable_collecting(lp);
1606                 lacp_sm_assert_ntt(lp);
1607                 break;
1608         case LACP_MUX_COLLECTING:
1609                 lacp_enable_collecting(lp);
1610                 lacp_disable_distributing(lp);
1611                 lacp_sm_assert_ntt(lp);
1612                 break;
1613         case LACP_MUX_DISTRIBUTING:
1614                 lacp_enable_distributing(lp);
1615                 break;
1616         default:
1617                 panic("%s: unknown state", __func__);
1618         }
1619
1620         LACP_DPRINTF((lp, "mux_state %d -> %d\n", lp->lp_mux_state, new_state));
1621
1622         lp->lp_mux_state = new_state;
1623 }
1624
1625 static void
1626 lacp_sm_mux_timer(struct lacp_port *lp)
1627 {
1628         struct lacp_aggregator *la = lp->lp_aggregator;
1629         char buf[LACP_LAGIDSTR_MAX+1];
1630
1631         KASSERT(la->la_pending > 0, ("no pending event"));
1632
1633         LACP_DPRINTF((lp, "%s: aggregator %s, pending %d -> %d\n", __func__,
1634             lacp_format_lagid(&la->la_actor, &la->la_partner,
1635             buf, sizeof(buf)),
1636             la->la_pending, la->la_pending - 1));
1637
1638         la->la_pending--;
1639 }
1640
1641 /* periodic transmit machine */
1642
1643 static void
1644 lacp_sm_ptx_update_timeout(struct lacp_port *lp, uint8_t oldpstate)
1645 {
1646         if (LACP_STATE_EQ(oldpstate, lp->lp_partner.lip_state,
1647             LACP_STATE_TIMEOUT)) {
1648                 return;
1649         }
1650
1651         LACP_DPRINTF((lp, "partner timeout changed\n"));
1652
1653         /*
1654          * FAST_PERIODIC -> SLOW_PERIODIC
1655          * or
1656          * SLOW_PERIODIC (-> PERIODIC_TX) -> FAST_PERIODIC
1657          *
1658          * let lacp_sm_ptx_tx_schedule to update timeout.
1659          */
1660
1661         LACP_TIMER_DISARM(lp, LACP_TIMER_PERIODIC);
1662
1663         /*
1664          * if timeout has been shortened, assert NTT.
1665          */
1666
1667         if ((lp->lp_partner.lip_state & LACP_STATE_TIMEOUT)) {
1668                 lacp_sm_assert_ntt(lp);
1669         }
1670 }
1671
1672 static void
1673 lacp_sm_ptx_tx_schedule(struct lacp_port *lp)
1674 {
1675         int timeout;
1676
1677         if (!(lp->lp_state & LACP_STATE_ACTIVITY) &&
1678             !(lp->lp_partner.lip_state & LACP_STATE_ACTIVITY)) {
1679                 /*
1680                  * NO_PERIODIC
1681                  */
1682
1683                 LACP_TIMER_DISARM(lp, LACP_TIMER_PERIODIC);
1684                 return;
1685         }
1686
1687         if (LACP_TIMER_ISARMED(lp, LACP_TIMER_PERIODIC)) {
1688                 return;
1689         }
1690
1691         timeout = (lp->lp_partner.lip_state & LACP_STATE_TIMEOUT) ?
1692             LACP_FAST_PERIODIC_TIME : LACP_SLOW_PERIODIC_TIME;
1693
1694         LACP_TIMER_ARM(lp, LACP_TIMER_PERIODIC, timeout);
1695 }
1696
1697 static void
1698 lacp_sm_ptx_timer(struct lacp_port *lp)
1699 {
1700         lacp_sm_assert_ntt(lp);
1701 }
1702
1703 static void
1704 lacp_sm_rx(struct lacp_port *lp, const struct lacpdu *du)
1705 {
1706         int timeout;
1707
1708         /*
1709          * check LACP_DISABLED first
1710          */
1711
1712         if (!(lp->lp_state & LACP_STATE_AGGREGATION)) {
1713                 return;
1714         }
1715
1716         /*
1717          * check loopback condition.
1718          */
1719
1720         if (!lacp_compare_systemid(&du->ldu_actor.lip_systemid,
1721             &lp->lp_actor.lip_systemid)) {
1722                 return;
1723         }
1724
1725         /*
1726          * EXPIRED, DEFAULTED, CURRENT -> CURRENT
1727          */
1728
1729         lacp_sm_rx_update_selected(lp, du);
1730         lacp_sm_rx_update_ntt(lp, du);
1731         lacp_sm_rx_record_pdu(lp, du);
1732
1733         timeout = (lp->lp_state & LACP_STATE_TIMEOUT) ?
1734             LACP_SHORT_TIMEOUT_TIME : LACP_LONG_TIMEOUT_TIME;
1735         LACP_TIMER_ARM(lp, LACP_TIMER_CURRENT_WHILE, timeout);
1736
1737         lp->lp_state &= ~LACP_STATE_EXPIRED;
1738
1739         /*
1740          * kick transmit machine without waiting the next tick.
1741          */
1742
1743         lacp_sm_tx(lp);
1744 }
1745
1746 static void
1747 lacp_sm_rx_set_expired(struct lacp_port *lp)
1748 {
1749         lp->lp_partner.lip_state &= ~LACP_STATE_SYNC;
1750         lp->lp_partner.lip_state |= LACP_STATE_TIMEOUT;
1751         LACP_TIMER_ARM(lp, LACP_TIMER_CURRENT_WHILE, LACP_SHORT_TIMEOUT_TIME);
1752         lp->lp_state |= LACP_STATE_EXPIRED;
1753 }
1754
1755 static void
1756 lacp_sm_rx_timer(struct lacp_port *lp)
1757 {
1758         if ((lp->lp_state & LACP_STATE_EXPIRED) == 0) {
1759                 /* CURRENT -> EXPIRED */
1760                 LACP_DPRINTF((lp, "%s: CURRENT -> EXPIRED\n", __func__));
1761                 lacp_sm_rx_set_expired(lp);
1762         } else {
1763                 /* EXPIRED -> DEFAULTED */
1764                 LACP_DPRINTF((lp, "%s: EXPIRED -> DEFAULTED\n", __func__));
1765                 lacp_sm_rx_update_default_selected(lp);
1766                 lacp_sm_rx_record_default(lp);
1767                 lp->lp_state &= ~LACP_STATE_EXPIRED;
1768         }
1769 }
1770
1771 static void
1772 lacp_sm_rx_record_pdu(struct lacp_port *lp, const struct lacpdu *du)
1773 {
1774         boolean_t active;
1775         uint8_t oldpstate;
1776         char buf[LACP_STATESTR_MAX+1];
1777
1778         LACP_TRACE(lp);
1779
1780         oldpstate = lp->lp_partner.lip_state;
1781
1782         active = (du->ldu_actor.lip_state & LACP_STATE_ACTIVITY)
1783             || ((lp->lp_state & LACP_STATE_ACTIVITY) &&
1784             (du->ldu_partner.lip_state & LACP_STATE_ACTIVITY));
1785
1786         lp->lp_partner = du->ldu_actor;
1787         if (active &&
1788             ((LACP_STATE_EQ(lp->lp_state, du->ldu_partner.lip_state,
1789             LACP_STATE_AGGREGATION) &&
1790             !lacp_compare_peerinfo(&lp->lp_actor, &du->ldu_partner))
1791             || (du->ldu_partner.lip_state & LACP_STATE_AGGREGATION) == 0)) {
1792                 /*
1793                  * XXX Maintain legacy behavior of leaving the
1794                  * LACP_STATE_SYNC bit unchanged from the partner's
1795                  * advertisement if lsc_strict_mode is false.
1796                  * TODO: We should re-examine the concept of the "strict mode"
1797                  * to ensure it makes sense to maintain a non-strict mode.
1798                  */
1799                 if (lp->lp_lsc->lsc_strict_mode)
1800                         lp->lp_partner.lip_state |= LACP_STATE_SYNC;
1801         } else {
1802                 lp->lp_partner.lip_state &= ~LACP_STATE_SYNC;
1803         }
1804
1805         lp->lp_state &= ~LACP_STATE_DEFAULTED;
1806
1807         if (oldpstate != lp->lp_partner.lip_state) {
1808                 LACP_DPRINTF((lp, "old pstate %s\n",
1809                     lacp_format_state(oldpstate, buf, sizeof(buf))));
1810                 LACP_DPRINTF((lp, "new pstate %s\n",
1811                     lacp_format_state(lp->lp_partner.lip_state, buf,
1812                     sizeof(buf))));
1813         }
1814
1815         lacp_sm_ptx_update_timeout(lp, oldpstate);
1816 }
1817
1818 static void
1819 lacp_sm_rx_update_ntt(struct lacp_port *lp, const struct lacpdu *du)
1820 {
1821
1822         LACP_TRACE(lp);
1823
1824         if (lacp_compare_peerinfo(&lp->lp_actor, &du->ldu_partner) ||
1825             !LACP_STATE_EQ(lp->lp_state, du->ldu_partner.lip_state,
1826             LACP_STATE_ACTIVITY | LACP_STATE_SYNC | LACP_STATE_AGGREGATION)) {
1827                 LACP_DPRINTF((lp, "%s: assert ntt\n", __func__));
1828                 lacp_sm_assert_ntt(lp);
1829         }
1830 }
1831
1832 static void
1833 lacp_sm_rx_record_default(struct lacp_port *lp)
1834 {
1835         uint8_t oldpstate;
1836
1837         LACP_TRACE(lp);
1838
1839         oldpstate = lp->lp_partner.lip_state;
1840         if (lp->lp_lsc->lsc_strict_mode)
1841                 lp->lp_partner = lacp_partner_admin_strict;
1842         else
1843                 lp->lp_partner = lacp_partner_admin_optimistic;
1844         lp->lp_state |= LACP_STATE_DEFAULTED;
1845         lacp_sm_ptx_update_timeout(lp, oldpstate);
1846 }
1847
1848 static void
1849 lacp_sm_rx_update_selected_from_peerinfo(struct lacp_port *lp,
1850     const struct lacp_peerinfo *info)
1851 {
1852
1853         LACP_TRACE(lp);
1854
1855         if (lacp_compare_peerinfo(&lp->lp_partner, info) ||
1856             !LACP_STATE_EQ(lp->lp_partner.lip_state, info->lip_state,
1857             LACP_STATE_AGGREGATION)) {
1858                 lp->lp_selected = LACP_UNSELECTED;
1859                 /* mux machine will clean up lp->lp_aggregator */
1860         }
1861 }
1862
1863 static void
1864 lacp_sm_rx_update_selected(struct lacp_port *lp, const struct lacpdu *du)
1865 {
1866
1867         LACP_TRACE(lp);
1868
1869         lacp_sm_rx_update_selected_from_peerinfo(lp, &du->ldu_actor);
1870 }
1871
1872 static void
1873 lacp_sm_rx_update_default_selected(struct lacp_port *lp)
1874 {
1875
1876         LACP_TRACE(lp);
1877
1878         if (lp->lp_lsc->lsc_strict_mode)
1879                 lacp_sm_rx_update_selected_from_peerinfo(lp,
1880                     &lacp_partner_admin_strict);
1881         else
1882                 lacp_sm_rx_update_selected_from_peerinfo(lp,
1883                     &lacp_partner_admin_optimistic);
1884 }
1885
1886 /* transmit machine */
1887
1888 static void
1889 lacp_sm_tx(struct lacp_port *lp)
1890 {
1891         int error = 0;
1892
1893         if (!(lp->lp_state & LACP_STATE_AGGREGATION)
1894 #if 1
1895             || (!(lp->lp_state & LACP_STATE_ACTIVITY)
1896             && !(lp->lp_partner.lip_state & LACP_STATE_ACTIVITY))
1897 #endif
1898             ) {
1899                 lp->lp_flags &= ~LACP_PORT_NTT;
1900         }
1901
1902         if (!(lp->lp_flags & LACP_PORT_NTT)) {
1903                 return;
1904         }
1905
1906         /* Rate limit to 3 PDUs per LACP_FAST_PERIODIC_TIME */
1907         if (ppsratecheck(&lp->lp_last_lacpdu, &lp->lp_lacpdu_sent,
1908                     (3 / LACP_FAST_PERIODIC_TIME)) == 0) {
1909                 LACP_DPRINTF((lp, "rate limited pdu\n"));
1910                 return;
1911         }
1912
1913         if (((1 << lp->lp_ifp->if_dunit) & lp->lp_lsc->lsc_debug.lsc_tx_test) == 0) {
1914                 error = lacp_xmit_lacpdu(lp);
1915         } else {
1916                 LACP_TPRINTF((lp, "Dropping TX PDU\n"));
1917         }
1918
1919         if (error == 0) {
1920                 lp->lp_flags &= ~LACP_PORT_NTT;
1921         } else {
1922                 LACP_DPRINTF((lp, "lacpdu transmit failure, error %d\n",
1923                     error));
1924         }
1925 }
1926
1927 static void
1928 lacp_sm_assert_ntt(struct lacp_port *lp)
1929 {
1930
1931         lp->lp_flags |= LACP_PORT_NTT;
1932 }
1933
1934 static void
1935 lacp_run_timers(struct lacp_port *lp)
1936 {
1937         int i;
1938
1939         for (i = 0; i < LACP_NTIMER; i++) {
1940                 KASSERT(lp->lp_timer[i] >= 0,
1941                     ("invalid timer value %d", lp->lp_timer[i]));
1942                 if (lp->lp_timer[i] == 0) {
1943                         continue;
1944                 } else if (--lp->lp_timer[i] <= 0) {
1945                         if (lacp_timer_funcs[i]) {
1946                                 (*lacp_timer_funcs[i])(lp);
1947                         }
1948                 }
1949         }
1950 }
1951
1952 int
1953 lacp_marker_input(struct lacp_port *lp, struct mbuf *m)
1954 {
1955         struct lacp_softc *lsc = lp->lp_lsc;
1956         struct lagg_port *lgp = lp->lp_lagg;
1957         struct lacp_port *lp2;
1958         struct markerdu *mdu;
1959         int error = 0;
1960         int pending = 0;
1961
1962         if (m->m_pkthdr.len != sizeof(*mdu)) {
1963                 goto bad;
1964         }
1965
1966         if ((m->m_flags & M_MCAST) == 0) {
1967                 goto bad;
1968         }
1969
1970         if (m->m_len < sizeof(*mdu)) {
1971                 m = m_pullup(m, sizeof(*mdu));
1972                 if (m == NULL) {
1973                         return (ENOMEM);
1974                 }
1975         }
1976
1977         mdu = mtod(m, struct markerdu *);
1978
1979         if (memcmp(&mdu->mdu_eh.ether_dhost,
1980             &ethermulticastaddr_slowprotocols, ETHER_ADDR_LEN)) {
1981                 goto bad;
1982         }
1983
1984         if (mdu->mdu_sph.sph_version != 1) {
1985                 goto bad;
1986         }
1987
1988         switch (mdu->mdu_tlv.tlv_type) {
1989         case MARKER_TYPE_INFO:
1990                 if (tlv_check(mdu, sizeof(*mdu), &mdu->mdu_tlv,
1991                     marker_info_tlv_template, TRUE)) {
1992                         goto bad;
1993                 }
1994                 mdu->mdu_tlv.tlv_type = MARKER_TYPE_RESPONSE;
1995                 memcpy(&mdu->mdu_eh.ether_dhost,
1996                     &ethermulticastaddr_slowprotocols, ETHER_ADDR_LEN);
1997                 memcpy(&mdu->mdu_eh.ether_shost,
1998                     lgp->lp_lladdr, ETHER_ADDR_LEN);
1999                 error = lagg_enqueue(lp->lp_ifp, m);
2000                 break;
2001
2002         case MARKER_TYPE_RESPONSE:
2003                 if (tlv_check(mdu, sizeof(*mdu), &mdu->mdu_tlv,
2004                     marker_response_tlv_template, TRUE)) {
2005                         goto bad;
2006                 }
2007                 LACP_DPRINTF((lp, "marker response, port=%u, sys=%6D, id=%u\n",
2008                     ntohs(mdu->mdu_info.mi_rq_port), mdu->mdu_info.mi_rq_system,
2009                     ":", ntohl(mdu->mdu_info.mi_rq_xid)));
2010
2011                 /* Verify that it is the last marker we sent out */
2012                 if (memcmp(&mdu->mdu_info, &lp->lp_marker,
2013                     sizeof(struct lacp_markerinfo)))
2014                         goto bad;
2015
2016                 LACP_LOCK(lsc);
2017                 lp->lp_flags &= ~LACP_PORT_MARK;
2018
2019                 if (lsc->lsc_suppress_distributing) {
2020                         /* Check if any ports are waiting for a response */
2021                         LIST_FOREACH(lp2, &lsc->lsc_ports, lp_next) {
2022                                 if (lp2->lp_flags & LACP_PORT_MARK) {
2023                                         pending = 1;
2024                                         break;
2025                                 }
2026                         }
2027
2028                         if (pending == 0) {
2029                                 /* All interface queues are clear */
2030                                 LACP_DPRINTF((NULL, "queue flush complete\n"));
2031                                 lsc->lsc_suppress_distributing = FALSE;
2032                         }
2033                 }
2034                 LACP_UNLOCK(lsc);
2035                 m_freem(m);
2036                 break;
2037
2038         default:
2039                 goto bad;
2040         }
2041
2042         return (error);
2043
2044 bad:
2045         LACP_DPRINTF((lp, "bad marker frame\n"));
2046         m_freem(m);
2047         return (EINVAL);
2048 }
2049
2050 static int
2051 tlv_check(const void *p, size_t size, const struct tlvhdr *tlv,
2052     const struct tlv_template *tmpl, boolean_t check_type)
2053 {
2054         while (/* CONSTCOND */ 1) {
2055                 if ((const char *)tlv - (const char *)p + sizeof(*tlv) > size) {
2056                         return (EINVAL);
2057                 }
2058                 if ((check_type && tlv->tlv_type != tmpl->tmpl_type) ||
2059                     tlv->tlv_length != tmpl->tmpl_length) {
2060                         return (EINVAL);
2061                 }
2062                 if (tmpl->tmpl_type == 0) {
2063                         break;
2064                 }
2065                 tlv = (const struct tlvhdr *)
2066                     ((const char *)tlv + tlv->tlv_length);
2067                 tmpl++;
2068         }
2069
2070         return (0);
2071 }
2072
2073 /* Debugging */
2074 const char *
2075 lacp_format_mac(const uint8_t *mac, char *buf, size_t buflen)
2076 {
2077         snprintf(buf, buflen, "%02X-%02X-%02X-%02X-%02X-%02X",
2078             (int)mac[0],
2079             (int)mac[1],
2080             (int)mac[2],
2081             (int)mac[3],
2082             (int)mac[4],
2083             (int)mac[5]);
2084
2085         return (buf);
2086 }
2087
2088 const char *
2089 lacp_format_systemid(const struct lacp_systemid *sysid,
2090     char *buf, size_t buflen)
2091 {
2092         char macbuf[LACP_MACSTR_MAX+1];
2093
2094         snprintf(buf, buflen, "%04X,%s",
2095             ntohs(sysid->lsi_prio),
2096             lacp_format_mac(sysid->lsi_mac, macbuf, sizeof(macbuf)));
2097
2098         return (buf);
2099 }
2100
2101 const char *
2102 lacp_format_portid(const struct lacp_portid *portid, char *buf, size_t buflen)
2103 {
2104         snprintf(buf, buflen, "%04X,%04X",
2105             ntohs(portid->lpi_prio),
2106             ntohs(portid->lpi_portno));
2107
2108         return (buf);
2109 }
2110
2111 const char *
2112 lacp_format_partner(const struct lacp_peerinfo *peer, char *buf, size_t buflen)
2113 {
2114         char sysid[LACP_SYSTEMIDSTR_MAX+1];
2115         char portid[LACP_PORTIDSTR_MAX+1];
2116
2117         snprintf(buf, buflen, "(%s,%04X,%s)",
2118             lacp_format_systemid(&peer->lip_systemid, sysid, sizeof(sysid)),
2119             ntohs(peer->lip_key),
2120             lacp_format_portid(&peer->lip_portid, portid, sizeof(portid)));
2121
2122         return (buf);
2123 }
2124
2125 const char *
2126 lacp_format_lagid(const struct lacp_peerinfo *a,
2127     const struct lacp_peerinfo *b, char *buf, size_t buflen)
2128 {
2129         char astr[LACP_PARTNERSTR_MAX+1];
2130         char bstr[LACP_PARTNERSTR_MAX+1];
2131
2132 #if 0
2133         /*
2134          * there's a convention to display small numbered peer
2135          * in the left.
2136          */
2137
2138         if (lacp_compare_peerinfo(a, b) > 0) {
2139                 const struct lacp_peerinfo *t;
2140
2141                 t = a;
2142                 a = b;
2143                 b = t;
2144         }
2145 #endif
2146
2147         snprintf(buf, buflen, "[%s,%s]",
2148             lacp_format_partner(a, astr, sizeof(astr)),
2149             lacp_format_partner(b, bstr, sizeof(bstr)));
2150
2151         return (buf);
2152 }
2153
2154 const char *
2155 lacp_format_lagid_aggregator(const struct lacp_aggregator *la,
2156     char *buf, size_t buflen)
2157 {
2158         if (la == NULL) {
2159                 return ("(none)");
2160         }
2161
2162         return (lacp_format_lagid(&la->la_actor, &la->la_partner, buf, buflen));
2163 }
2164
2165 const char *
2166 lacp_format_state(uint8_t state, char *buf, size_t buflen)
2167 {
2168         snprintf(buf, buflen, "%b", state, LACP_STATE_BITS);
2169         return (buf);
2170 }
2171
2172 static void
2173 lacp_dump_lacpdu(const struct lacpdu *du)
2174 {
2175         char buf[LACP_PARTNERSTR_MAX+1];
2176         char buf2[LACP_STATESTR_MAX+1];
2177
2178         printf("actor=%s\n",
2179             lacp_format_partner(&du->ldu_actor, buf, sizeof(buf)));
2180         printf("actor.state=%s\n",
2181             lacp_format_state(du->ldu_actor.lip_state, buf2, sizeof(buf2)));
2182         printf("partner=%s\n",
2183             lacp_format_partner(&du->ldu_partner, buf, sizeof(buf)));
2184         printf("partner.state=%s\n",
2185             lacp_format_state(du->ldu_partner.lip_state, buf2, sizeof(buf2)));
2186
2187         printf("maxdelay=%d\n", ntohs(du->ldu_collector.lci_maxdelay));
2188 }
2189
2190 static void
2191 lacp_dprintf(const struct lacp_port *lp, const char *fmt, ...)
2192 {
2193         va_list va;
2194
2195         if (lp) {
2196                 printf("%s: ", lp->lp_ifp->if_xname);
2197         }
2198
2199         va_start(va, fmt);
2200         vprintf(fmt, va);
2201         va_end(va);
2202 }