/* $OpenBSD: trunklacp.c,v 1.4 2008/08/28 11:10:25 reyk Exp $ */ /* $NetBSD: ieee8023ad_lacp.c,v 1.3 2005/12/11 12:24:54 christos Exp $ */ /* $FreeBSD:ieee8023ad_lacp.c,v 1.15 2008/03/16 19:25:30 thompsa Exp $ */ /* * Copyright (c)2005 YAMAMOTO Takashi, * Copyright (c)2008 Andrew Thompson * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. */ #include #include #include #include #include #include /* hz */ #include /* for net/if.h */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include "if_trunk.h" #include "trunklacp.h" /* * actor system priority and port priority. * XXX should be configurable. */ #define LACP_SYSTEM_PRIO 0x8000 #define LACP_PORT_PRIO 0x8000 const u_int8_t ethermulticastaddr_slowprotocols[ETHER_ADDR_LEN] = { 0x01, 0x80, 0xc2, 0x00, 0x00, 0x02 }; const struct tlv_template lacp_info_tlv_template[] = { { LACP_TYPE_ACTORINFO, sizeof(struct tlvhdr) + sizeof(struct lacp_peerinfo) }, { LACP_TYPE_PARTNERINFO, sizeof(struct tlvhdr) + sizeof(struct lacp_peerinfo) }, { LACP_TYPE_COLLECTORINFO, sizeof(struct tlvhdr) + sizeof(struct lacp_collectorinfo) }, { 0, 0 }, }; const struct tlv_template marker_info_tlv_template[] = { { MARKER_TYPE_INFO, sizeof(struct tlvhdr) + sizeof(struct lacp_markerinfo) }, { 0, 0 }, }; const struct tlv_template marker_response_tlv_template[] = { { MARKER_TYPE_RESPONSE, sizeof(struct tlvhdr) + sizeof(struct lacp_markerinfo) }, { 0, 0 }, }; typedef void (*lacp_timer_func_t)(struct lacp_port *); void lacp_fill_actorinfo(struct lacp_port *, struct lacp_peerinfo *); void lacp_fill_markerinfo(struct lacp_port *, struct lacp_markerinfo *); u_int64_t lacp_aggregator_bandwidth(struct lacp_aggregator *); void lacp_suppress_distributing(struct lacp_softc *, struct lacp_aggregator *); void lacp_transit_expire(void *); void lacp_update_portmap(struct lacp_softc *); void lacp_select_active_aggregator(struct lacp_softc *); u_int16_t lacp_compose_key(struct lacp_port *); int tlv_check(const void *, size_t, const struct tlvhdr *, const struct tlv_template *, int); void lacp_tick(void *); void lacp_fill_aggregator_id(struct lacp_aggregator *, const struct lacp_port *); void lacp_fill_aggregator_id_peer(struct lacp_peerinfo *, const struct lacp_peerinfo *); int lacp_aggregator_is_compatible(const struct lacp_aggregator *, const struct lacp_port *); int lacp_peerinfo_is_compatible(const struct lacp_peerinfo *, const struct lacp_peerinfo *); struct lacp_aggregator *lacp_aggregator_get(struct lacp_softc *, struct lacp_port *); void lacp_aggregator_addref(struct lacp_softc *, struct lacp_aggregator *); void lacp_aggregator_delref(struct lacp_softc *, struct lacp_aggregator *); /* receive machine */ int lacp_pdu_input(struct lacp_port *, struct mbuf *); int lacp_marker_input(struct lacp_port *, struct mbuf *); void lacp_sm_rx(struct lacp_port *, const struct lacpdu *); void lacp_sm_rx_timer(struct lacp_port *); void lacp_sm_rx_set_expired(struct lacp_port *); void lacp_sm_rx_update_ntt(struct lacp_port *, const struct lacpdu *); void lacp_sm_rx_record_pdu(struct lacp_port *, const struct lacpdu *); void lacp_sm_rx_update_selected(struct lacp_port *, const struct lacpdu *); void lacp_sm_rx_record_default(struct lacp_port *); void lacp_sm_rx_update_default_selected(struct lacp_port *); void lacp_sm_rx_update_selected_from_peerinfo(struct lacp_port *, const struct lacp_peerinfo *); /* mux machine */ void lacp_sm_mux(struct lacp_port *); void lacp_set_mux(struct lacp_port *, enum lacp_mux_state); void lacp_sm_mux_timer(struct lacp_port *); /* periodic transmit machine */ void lacp_sm_ptx_update_timeout(struct lacp_port *, u_int8_t); void lacp_sm_ptx_tx_schedule(struct lacp_port *); void lacp_sm_ptx_timer(struct lacp_port *); /* transmit machine */ void lacp_sm_tx(struct lacp_port *); void lacp_sm_assert_ntt(struct lacp_port *); void lacp_run_timers(struct lacp_port *); int lacp_compare_peerinfo(const struct lacp_peerinfo *, const struct lacp_peerinfo *); int lacp_compare_systemid(const struct lacp_systemid *, const struct lacp_systemid *); void lacp_port_enable(struct lacp_port *); void lacp_port_disable(struct lacp_port *); void lacp_select(struct lacp_port *); void lacp_unselect(struct lacp_port *); void lacp_disable_collecting(struct lacp_port *); void lacp_enable_collecting(struct lacp_port *); void lacp_disable_distributing(struct lacp_port *); void lacp_enable_distributing(struct lacp_port *); int lacp_xmit_lacpdu(struct lacp_port *); int lacp_xmit_marker(struct lacp_port *); #if defined(LACP_DEBUG) void lacp_dump_lacpdu(const struct lacpdu *); const char *lacp_format_partner(const struct lacp_peerinfo *, char *, size_t); const char *lacp_format_lagid(const struct lacp_peerinfo *, const struct lacp_peerinfo *, char *, size_t); const char *lacp_format_lagid_aggregator(const struct lacp_aggregator *, char *, size_t); const char *lacp_format_state(u_int8_t, char *, size_t); const char *lacp_format_mac(const u_int8_t *, char *, size_t); const char *lacp_format_systemid(const struct lacp_systemid *, char *, size_t); const char *lacp_format_portid(const struct lacp_portid *, char *, size_t); void lacp_dprintf(const struct lacp_port *, const char *, ...) __attribute__((__format__(__printf__, 2, 3))); #define LACP_DPRINTF(a) lacp_dprintf a #else #define LACP_DPRINTF(a) /* nothing */ #endif /* * partner administration variables. * XXX should be configurable. */ const struct lacp_peerinfo lacp_partner_admin = { { 0xffff }, /* lip_systemid.lsi_prio */ 0, /* lip_key */ { 0xffff }, /* lip_portid.lpi_prio */ #if 1 /* optimistic lip_state */ LACP_STATE_SYNC | LACP_STATE_AGGREGATION | LACP_STATE_COLLECTING | LACP_STATE_DISTRIBUTING #else /* pessimistic lip_state */ 0 #endif }; const lacp_timer_func_t lacp_timer_funcs[LACP_NTIMER] = { [LACP_TIMER_CURRENT_WHILE] = lacp_sm_rx_timer, [LACP_TIMER_PERIODIC] = lacp_sm_ptx_timer, [LACP_TIMER_WAIT_WHILE] = lacp_sm_mux_timer, }; struct mbuf * lacp_input(struct trunk_port *tp, struct mbuf *m) { struct lacp_port *lp = LACP_PORT(tp); u_int8_t subtype; if (m->m_pkthdr.len < sizeof(struct ether_header) + sizeof(subtype)) { m_freem(m); return (NULL); } m_copydata(m, sizeof(struct ether_header), sizeof(subtype), &subtype); switch (subtype) { /* FALLTHROUGH */ case SLOWPROTOCOLS_SUBTYPE_LACP: lacp_pdu_input(lp, m); return (NULL); case SLOWPROTOCOLS_SUBTYPE_MARKER: lacp_marker_input(lp, m); return (NULL); } /* Not a subtype we are interested in */ return (m); } /* * lacp_pdu_input: process lacpdu */ int lacp_pdu_input(struct lacp_port *lp, struct mbuf *m) { struct lacpdu *du; int error = 0; if (m->m_pkthdr.len != sizeof(*du)) { goto bad; } if ((m->m_flags & M_MCAST) == 0) { goto bad; } if (m->m_len < sizeof(*du)) { m = m_pullup(m, sizeof(*du)); if (m == NULL) { return (ENOMEM); } } du = mtod(m, struct lacpdu *); if (memcmp(&du->ldu_eh.ether_dhost, ðermulticastaddr_slowprotocols, ETHER_ADDR_LEN)) { goto bad; } /* * ignore the version for compatibility with * the future protocol revisions. */ #if 0 if (du->ldu_sph.sph_version != 1) { goto bad; } #endif /* * ignore tlv types for compatibility with * the future protocol revisions. */ if (tlv_check(du, sizeof(*du), &du->ldu_tlv_actor, lacp_info_tlv_template, 0)) { goto bad; } #if defined(LACP_DEBUG) LACP_DPRINTF((lp, "lacpdu receive\n")); lacp_dump_lacpdu(du); #endif /* defined(LACP_DEBUG) */ lacp_sm_rx(lp, du); m_freem(m); return (error); bad: m_freem(m); return (EINVAL); } __inline int lacp_isactive(struct trunk_port *lgp) { struct lacp_port *lp = LACP_PORT(lgp); struct lacp_softc *lsc = lp->lp_lsc; struct lacp_aggregator *la = lp->lp_aggregator; /* This port is joined to the active aggregator */ if (la != NULL && la == lsc->lsc_active_aggregator) return (1); return (0); } __inline int lacp_iscollecting(struct trunk_port *lgp) { struct lacp_port *lp = LACP_PORT(lgp); return ((lp->lp_state & LACP_STATE_COLLECTING) != 0); } __inline int lacp_isdistributing(struct trunk_port *lgp) { struct lacp_port *lp = LACP_PORT(lgp); return ((lp->lp_state & LACP_STATE_DISTRIBUTING) != 0); } void lacp_fill_actorinfo(struct lacp_port *lp, struct lacp_peerinfo *info) { struct trunk_port *tp = lp->lp_trunk; struct trunk_softc *sc = tp->tp_trunk; info->lip_systemid.lsi_prio = htons(LACP_SYSTEM_PRIO); memcpy(&info->lip_systemid.lsi_mac, sc->tr_ac.ac_enaddr, ETHER_ADDR_LEN); info->lip_portid.lpi_prio = htons(LACP_PORT_PRIO); info->lip_portid.lpi_portno = htons(lp->lp_ifp->if_index); info->lip_state = lp->lp_state; } void lacp_fill_markerinfo(struct lacp_port *lp, struct lacp_markerinfo *info) { struct ifnet *ifp = lp->lp_ifp; /* Fill in the port index and system id (encoded as the MAC) */ info->mi_rq_port = htons(ifp->if_index); memcpy(&info->mi_rq_system, lp->lp_systemid.lsi_mac, ETHER_ADDR_LEN); info->mi_rq_xid = htonl(0); } int lacp_xmit_lacpdu(struct lacp_port *lp) { struct trunk_port *tp = lp->lp_trunk; struct mbuf *m; struct lacpdu *du; int error; m = m_gethdr(M_DONTWAIT, MT_DATA); if (m == NULL) { return (ENOMEM); } m->m_len = m->m_pkthdr.len = sizeof(*du); du = mtod(m, struct lacpdu *); memset(du, 0, sizeof(*du)); memcpy(&du->ldu_eh.ether_dhost, ethermulticastaddr_slowprotocols, ETHER_ADDR_LEN); memcpy(&du->ldu_eh.ether_shost, tp->tp_lladdr, ETHER_ADDR_LEN); du->ldu_eh.ether_type = htons(ETHERTYPE_SLOW); du->ldu_sph.sph_subtype = SLOWPROTOCOLS_SUBTYPE_LACP; du->ldu_sph.sph_version = 1; TLV_SET(&du->ldu_tlv_actor, LACP_TYPE_ACTORINFO, sizeof(du->ldu_actor)); du->ldu_actor = lp->lp_actor; TLV_SET(&du->ldu_tlv_partner, LACP_TYPE_PARTNERINFO, sizeof(du->ldu_partner)); du->ldu_partner = lp->lp_partner; TLV_SET(&du->ldu_tlv_collector, LACP_TYPE_COLLECTORINFO, sizeof(du->ldu_collector)); du->ldu_collector.lci_maxdelay = 0; #if defined(LACP_DEBUG) LACP_DPRINTF((lp, "lacpdu transmit\n")); lacp_dump_lacpdu(du); #endif /* defined(LACP_DEBUG) */ m->m_flags |= M_MCAST; /* * XXX should use higher priority queue. * otherwise network congestion can break aggregation. */ error = trunk_enqueue(lp->lp_ifp, m); return (error); } int lacp_xmit_marker(struct lacp_port *lp) { struct trunk_port *tp = lp->lp_trunk; struct mbuf *m; struct markerdu *mdu; int error; m = m_gethdr(M_DONTWAIT, MT_DATA); if (m == NULL) { return (ENOMEM); } m->m_len = m->m_pkthdr.len = sizeof(*mdu); mdu = mtod(m, struct markerdu *); memset(mdu, 0, sizeof(*mdu)); memcpy(&mdu->mdu_eh.ether_dhost, ethermulticastaddr_slowprotocols, ETHER_ADDR_LEN); memcpy(&mdu->mdu_eh.ether_shost, tp->tp_lladdr, ETHER_ADDR_LEN); mdu->mdu_eh.ether_type = htons(ETHERTYPE_SLOW); mdu->mdu_sph.sph_subtype = SLOWPROTOCOLS_SUBTYPE_MARKER; mdu->mdu_sph.sph_version = 1; /* Bump the transaction id and copy over the marker info */ lp->lp_marker.mi_rq_xid = htonl(ntohl(lp->lp_marker.mi_rq_xid) + 1); TLV_SET(&mdu->mdu_tlv, MARKER_TYPE_INFO, sizeof(mdu->mdu_info)); mdu->mdu_info = lp->lp_marker; LACP_DPRINTF((lp, "marker transmit, port=%u, sys=%6D, id=%u\n", ntohs(mdu->mdu_info.mi_rq_port), mdu->mdu_info.mi_rq_system, ":", ntohl(mdu->mdu_info.mi_rq_xid))); m->m_flags |= M_MCAST; error = trunk_enqueue(lp->lp_ifp, m); return (error); } void lacp_linkstate(struct trunk_port *tp) { struct lacp_port *lp = LACP_PORT(tp); u_int8_t old_state; u_int16_t old_key; old_state = lp->lp_state; old_key = lp->lp_key; /* * If the port is not an active full duplex Ethernet link then it can * not be aggregated. */ if (tp->tp_link_state == LINK_STATE_UNKNOWN || tp->tp_link_state == LINK_STATE_FULL_DUPLEX) lacp_port_enable(lp); else lacp_port_disable(lp); lp->lp_key = lacp_compose_key(lp); if (old_state != lp->lp_state || old_key != lp->lp_key) { LACP_DPRINTF((lp, "-> UNSELECTED\n")); lp->lp_selected = LACP_UNSELECTED; } } void lacp_tick(void *arg) { struct lacp_softc *lsc = arg; struct lacp_port *lp; LIST_FOREACH(lp, &lsc->lsc_ports, lp_next) { if ((lp->lp_state & LACP_STATE_AGGREGATION) == 0) continue; lacp_run_timers(lp); lacp_select(lp); lacp_sm_mux(lp); lacp_sm_tx(lp); lacp_sm_ptx_tx_schedule(lp); } timeout_add(&lsc->lsc_callout, hz); } int lacp_port_create(struct trunk_port *tp) { struct trunk_softc *sc = tp->tp_trunk; struct lacp_softc *lsc = LACP_SOFTC(sc); struct lacp_port *lp; struct ifnet *ifp = tp->tp_if; struct ifreq ifr; int error; int active = 1; /* XXX should be configurable */ int fast = 0; /* XXX should be configurable */ bzero(&ifr, sizeof(ifr)); ifr.ifr_addr.sa_family = AF_UNSPEC; ifr.ifr_addr.sa_len = ETHER_ADDR_LEN; bcopy(ðermulticastaddr_slowprotocols, ifr.ifr_addr.sa_data, ETHER_ADDR_LEN); error = ether_addmulti(&ifr, (struct arpcom *)ifp); if (error && error != ENETRESET) { printf("%s: ADDMULTI failed on %s\n", __func__, tp->tp_ifname); return (error); } lp = malloc(sizeof(struct lacp_port), M_DEVBUF, M_NOWAIT|M_ZERO); if (lp == NULL) return (ENOMEM); tp->tp_psc = (caddr_t)lp; lp->lp_ifp = ifp; lp->lp_trunk = tp; lp->lp_lsc = lsc; LIST_INSERT_HEAD(&lsc->lsc_ports, lp, lp_next); lacp_fill_actorinfo(lp, &lp->lp_actor); lacp_fill_markerinfo(lp, &lp->lp_marker); lp->lp_state = (active ? LACP_STATE_ACTIVITY : 0) | (fast ? LACP_STATE_TIMEOUT : 0); lp->lp_aggregator = NULL; lacp_sm_rx_set_expired(lp); lacp_linkstate(tp); return (0); } void lacp_port_destroy(struct trunk_port *tp) { struct lacp_port *lp = LACP_PORT(tp); int i; for (i = 0; i < LACP_NTIMER; i++) { LACP_TIMER_DISARM(lp, i); } lacp_disable_collecting(lp); lacp_disable_distributing(lp); lacp_unselect(lp); LIST_REMOVE(lp, lp_next); free(lp, M_DEVBUF); } void lacp_req(struct trunk_softc *sc, caddr_t data) { struct lacp_opreq *req = (struct lacp_opreq *)data; struct lacp_softc *lsc = LACP_SOFTC(sc); struct lacp_aggregator *la = lsc->lsc_active_aggregator; bzero(req, sizeof(struct lacp_opreq)); if (la != NULL) { req->actor_prio = ntohs(la->la_actor.lip_systemid.lsi_prio); memcpy(&req->actor_mac, &la->la_actor.lip_systemid.lsi_mac, ETHER_ADDR_LEN); req->actor_key = ntohs(la->la_actor.lip_key); req->actor_portprio = ntohs(la->la_actor.lip_portid.lpi_prio); req->actor_portno = ntohs(la->la_actor.lip_portid.lpi_portno); req->actor_state = la->la_actor.lip_state; req->partner_prio = ntohs(la->la_partner.lip_systemid.lsi_prio); memcpy(&req->partner_mac, &la->la_partner.lip_systemid.lsi_mac, ETHER_ADDR_LEN); req->partner_key = ntohs(la->la_partner.lip_key); req->partner_portprio = ntohs(la->la_partner.lip_portid.lpi_prio); req->partner_portno = ntohs(la->la_partner.lip_portid.lpi_portno); req->partner_state = la->la_partner.lip_state; } } void lacp_portreq(struct trunk_port *tp, caddr_t data) { struct lacp_opreq *req = (struct lacp_opreq *)data; struct lacp_port *lp = LACP_PORT(tp); req->actor_prio = ntohs(lp->lp_actor.lip_systemid.lsi_prio); memcpy(&req->actor_mac, &lp->lp_actor.lip_systemid.lsi_mac, ETHER_ADDR_LEN); req->actor_key = ntohs(lp->lp_actor.lip_key); req->actor_portprio = ntohs(lp->lp_actor.lip_portid.lpi_prio); req->actor_portno = ntohs(lp->lp_actor.lip_portid.lpi_portno); req->actor_state = lp->lp_actor.lip_state; req->partner_prio = ntohs(lp->lp_partner.lip_systemid.lsi_prio); memcpy(&req->partner_mac, &lp->lp_partner.lip_systemid.lsi_mac, ETHER_ADDR_LEN); req->partner_key = ntohs(lp->lp_partner.lip_key); req->partner_portprio = ntohs(lp->lp_partner.lip_portid.lpi_prio); req->partner_portno = ntohs(lp->lp_partner.lip_portid.lpi_portno); req->partner_state = lp->lp_partner.lip_state; } void lacp_disable_collecting(struct lacp_port *lp) { LACP_DPRINTF((lp, "collecting disabled\n")); lp->lp_state &= ~LACP_STATE_COLLECTING; } void lacp_enable_collecting(struct lacp_port *lp) { LACP_DPRINTF((lp, "collecting enabled\n")); lp->lp_state |= LACP_STATE_COLLECTING; } void lacp_disable_distributing(struct lacp_port *lp) { struct lacp_aggregator *la = lp->lp_aggregator; struct lacp_softc *lsc = lp->lp_lsc; #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif /* defined(LACP_DEBUG) */ if (la == NULL || (lp->lp_state & LACP_STATE_DISTRIBUTING) == 0) { return; } KASSERT(!TAILQ_EMPTY(&la->la_ports)); KASSERT(la->la_nports > 0); KASSERT(la->la_refcnt >= la->la_nports); LACP_DPRINTF((lp, "disable distributing on aggregator %s, " "nports %d -> %d\n", lacp_format_lagid_aggregator(la, buf, sizeof(buf)), la->la_nports, la->la_nports - 1)); TAILQ_REMOVE(&la->la_ports, lp, lp_dist_q); la->la_nports--; if (lsc->lsc_active_aggregator == la) { lacp_suppress_distributing(lsc, la); lacp_select_active_aggregator(lsc); /* regenerate the port map, the active aggregator has changed */ lacp_update_portmap(lsc); } lp->lp_state &= ~LACP_STATE_DISTRIBUTING; } void lacp_enable_distributing(struct lacp_port *lp) { struct lacp_aggregator *la = lp->lp_aggregator; struct lacp_softc *lsc = lp->lp_lsc; #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif /* defined(LACP_DEBUG) */ if ((lp->lp_state & LACP_STATE_DISTRIBUTING) != 0) { return; } LACP_DPRINTF((lp, "enable distributing on aggregator %s, " "nports %d -> %d\n", lacp_format_lagid_aggregator(la, buf, sizeof(buf)), la->la_nports, la->la_nports + 1)); KASSERT(la->la_refcnt > la->la_nports); TAILQ_INSERT_HEAD(&la->la_ports, lp, lp_dist_q); la->la_nports++; lp->lp_state |= LACP_STATE_DISTRIBUTING; if (lsc->lsc_active_aggregator == la) { lacp_suppress_distributing(lsc, la); lacp_update_portmap(lsc); } else /* try to become the active aggregator */ lacp_select_active_aggregator(lsc); } void lacp_transit_expire(void *vp) { struct lacp_softc *lsc = vp; LACP_DPRINTF((NULL, "%s\n", __func__)); lsc->lsc_suppress_distributing = 0; } int lacp_attach(struct trunk_softc *sc) { struct lacp_softc *lsc; lsc = malloc(sizeof(struct lacp_softc), M_DEVBUF, M_NOWAIT|M_ZERO); if (lsc == NULL) return (ENOMEM); sc->tr_psc = (caddr_t)lsc; lsc->lsc_softc = sc; lsc->lsc_hashkey = arc4random(); lsc->lsc_active_aggregator = NULL; TAILQ_INIT(&lsc->lsc_aggregators); LIST_INIT(&lsc->lsc_ports); timeout_set(&lsc->lsc_transit_callout, lacp_transit_expire, lsc); timeout_set(&lsc->lsc_callout, lacp_tick, lsc); /* if the trunk is already up then do the same */ if (sc->tr_ac.ac_if.if_flags & IFF_RUNNING) lacp_init(sc); return (0); } int lacp_detach(struct trunk_softc *sc) { struct lacp_softc *lsc = LACP_SOFTC(sc); KASSERT(TAILQ_EMPTY(&lsc->lsc_aggregators)); KASSERT(lsc->lsc_active_aggregator == NULL); sc->tr_psc = NULL; timeout_del(&lsc->lsc_transit_callout); timeout_del(&lsc->lsc_callout); free(lsc, M_DEVBUF); return (0); } void lacp_init(struct trunk_softc *sc) { struct lacp_softc *lsc = LACP_SOFTC(sc); timeout_add(&lsc->lsc_callout, hz); } void lacp_stop(struct trunk_softc *sc) { struct lacp_softc *lsc = LACP_SOFTC(sc); timeout_del(&lsc->lsc_transit_callout); timeout_del(&lsc->lsc_callout); } struct trunk_port * lacp_select_tx_port(struct trunk_softc *sc, struct mbuf *m) { struct lacp_softc *lsc = LACP_SOFTC(sc); struct lacp_portmap *pm; struct lacp_port *lp; u_int32_t hash; if (__predict_false(lsc->lsc_suppress_distributing)) { LACP_DPRINTF((NULL, "%s: waiting transit\n", __func__)); return (NULL); } pm = &lsc->lsc_pmap[lsc->lsc_activemap]; if (pm->pm_count == 0) { LACP_DPRINTF((NULL, "%s: no active aggregator\n", __func__)); return (NULL); } hash = trunk_hashmbuf(m, lsc->lsc_hashkey); hash %= pm->pm_count; lp = pm->pm_map[hash]; KASSERT((lp->lp_state & LACP_STATE_DISTRIBUTING) != 0); return (lp->lp_trunk); } /* * lacp_suppress_distributing: drop transmit packets for a while * to preserve packet ordering. */ void lacp_suppress_distributing(struct lacp_softc *lsc, struct lacp_aggregator *la) { struct lacp_port *lp; if (lsc->lsc_active_aggregator != la) { return; } LACP_DPRINTF((NULL, "%s\n", __func__)); lsc->lsc_suppress_distributing = 1; /* send a marker frame down each port to verify the queues are empty */ LIST_FOREACH(lp, &lsc->lsc_ports, lp_next) { lp->lp_flags |= LACP_PORT_MARK; lacp_xmit_marker(lp); } /* set a timeout for the marker frames */ timeout_add(&lsc->lsc_transit_callout, LACP_TRANSIT_DELAY * hz / 1000); } int lacp_compare_peerinfo(const struct lacp_peerinfo *a, const struct lacp_peerinfo *b) { return (memcmp(a, b, offsetof(struct lacp_peerinfo, lip_state))); } int lacp_compare_systemid(const struct lacp_systemid *a, const struct lacp_systemid *b) { return (memcmp(a, b, sizeof(*a))); } #if 0 /* unused */ int lacp_compare_portid(const struct lacp_portid *a, const struct lacp_portid *b) { return (memcmp(a, b, sizeof(*a))); } #endif u_int64_t lacp_aggregator_bandwidth(struct lacp_aggregator *la) { struct lacp_port *lp; u_int64_t speed; lp = TAILQ_FIRST(&la->la_ports); if (lp == NULL) { return (0); } speed = lp->lp_ifp->if_baudrate; speed *= la->la_nports; if (speed == 0) { LACP_DPRINTF((lp, "speed 0? media=0x%x nports=%d\n", lp->lp_media, la->la_nports)); } return (speed); } /* * lacp_select_active_aggregator: select an aggregator to be used to transmit * packets from trunk(4) interface. */ void lacp_select_active_aggregator(struct lacp_softc *lsc) { struct lacp_aggregator *la; struct lacp_aggregator *best_la = NULL; u_int64_t best_speed = 0; #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif /* defined(LACP_DEBUG) */ LACP_DPRINTF((NULL, "%s:\n", __func__)); TAILQ_FOREACH(la, &lsc->lsc_aggregators, la_q) { u_int64_t speed; if (la->la_nports == 0) { continue; } speed = lacp_aggregator_bandwidth(la); LACP_DPRINTF((NULL, "%s, speed=%jd, nports=%d\n", lacp_format_lagid_aggregator(la, buf, sizeof(buf)), speed, la->la_nports)); /* This aggregator is chosen if * the partner has a better system priority * or, the total aggregated speed is higher * or, it is already the chosen aggregator */ if ((best_la != NULL && LACP_SYS_PRI(la->la_partner) < LACP_SYS_PRI(best_la->la_partner)) || speed > best_speed || (speed == best_speed && la == lsc->lsc_active_aggregator)) { best_la = la; best_speed = speed; } } KASSERT(best_la == NULL || best_la->la_nports > 0); KASSERT(best_la == NULL || !TAILQ_EMPTY(&best_la->la_ports)); #if defined(LACP_DEBUG) if (lsc->lsc_active_aggregator != best_la) { LACP_DPRINTF((NULL, "active aggregator changed\n")); LACP_DPRINTF((NULL, "old %s\n", lacp_format_lagid_aggregator(lsc->lsc_active_aggregator, buf, sizeof(buf)))); } else { LACP_DPRINTF((NULL, "active aggregator not changed\n")); } LACP_DPRINTF((NULL, "new %s\n", lacp_format_lagid_aggregator(best_la, buf, sizeof(buf)))); #endif /* defined(LACP_DEBUG) */ if (lsc->lsc_active_aggregator != best_la) { lsc->lsc_active_aggregator = best_la; lacp_update_portmap(lsc); if (best_la) { lacp_suppress_distributing(lsc, best_la); } } } /* * Updated the inactive portmap array with the new list of ports and * make it live. */ void lacp_update_portmap(struct lacp_softc *lsc) { struct lacp_aggregator *la; struct lacp_portmap *p; struct lacp_port *lp; u_int newmap; int i; newmap = lsc->lsc_activemap == 0 ? 1 : 0; p = &lsc->lsc_pmap[newmap]; la = lsc->lsc_active_aggregator; bzero(p, sizeof(struct lacp_portmap)); if (la != NULL && la->la_nports > 0) { p->pm_count = la->la_nports; i = 0; TAILQ_FOREACH(lp, &la->la_ports, lp_dist_q) p->pm_map[i++] = lp; KASSERT(i == p->pm_count); } /* switch the active portmap over */ lsc->lsc_activemap = newmap; LACP_DPRINTF((NULL, "Set table %d with %d ports\n", lsc->lsc_activemap, lsc->lsc_pmap[lsc->lsc_activemap].pm_count)); } u_int16_t lacp_compose_key(struct lacp_port *lp) { struct trunk_port *tp = lp->lp_trunk; struct trunk_softc *sc = tp->tp_trunk; u_int64_t speed; u_int16_t key; if ((lp->lp_state & LACP_STATE_AGGREGATION) == 0) { /* bit 0..14: (some bits of) if_index of this port */ key = lp->lp_ifp->if_index; /* non-aggregatable */ key |= 0x8000; } else { /* bit 0..2: speed indication */ speed = lp->lp_ifp->if_baudrate; if (speed == 0) key = 0; else if (speed <= IF_Mbps(1)) key = 1; else if (speed <= IF_Mbps(10)) key = 2; else if (speed <= IF_Mbps(100)) key = 3; else if (speed <= IF_Gbps(1)) key = 4; else if (speed <= IF_Gbps(10)) key = 5; else if (speed <= IF_Gbps(100)) key = 6; else key = 7; /* bit 3..13: (some bits of) if_index of the trunk device */ key |= sc->tr_ac.ac_if.if_index << 3; /* bit 14: the port active flag (includes link state) */ if (TRUNK_PORTACTIVE(tp)) key |= 0x4000; else key &= ~0x4000; /* clear the non-aggregatable bit */ key &= ~0x8000; } return (htons(key)); } void lacp_aggregator_addref(struct lacp_softc *lsc, struct lacp_aggregator *la) { #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif LACP_DPRINTF((NULL, "%s: lagid=%s, refcnt %d -> %d\n", __func__, lacp_format_lagid(&la->la_actor, &la->la_partner, buf, sizeof(buf)), la->la_refcnt, la->la_refcnt + 1)); KASSERT(la->la_refcnt > 0); la->la_refcnt++; KASSERT(la->la_refcnt > la->la_nports); } void lacp_aggregator_delref(struct lacp_softc *lsc, struct lacp_aggregator *la) { #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif LACP_DPRINTF((NULL, "%s: lagid=%s, refcnt %d -> %d\n", __func__, lacp_format_lagid(&la->la_actor, &la->la_partner, buf, sizeof(buf)), la->la_refcnt, la->la_refcnt - 1)); KASSERT(la->la_refcnt > la->la_nports); la->la_refcnt--; if (la->la_refcnt > 0) { return; } KASSERT(la->la_refcnt == 0); KASSERT(lsc->lsc_active_aggregator != la); TAILQ_REMOVE(&lsc->lsc_aggregators, la, la_q); free(la, M_DEVBUF); } /* * lacp_aggregator_get: allocate an aggregator. */ struct lacp_aggregator * lacp_aggregator_get(struct lacp_softc *lsc, struct lacp_port *lp) { struct lacp_aggregator *la; la = malloc(sizeof(*la), M_DEVBUF, M_NOWAIT); if (la) { la->la_refcnt = 1; la->la_nports = 0; TAILQ_INIT(&la->la_ports); la->la_pending = 0; TAILQ_INSERT_TAIL(&lsc->lsc_aggregators, la, la_q); } return (la); } /* * lacp_fill_aggregator_id: setup a newly allocated aggregator from a port. */ void lacp_fill_aggregator_id(struct lacp_aggregator *la, const struct lacp_port *lp) { lacp_fill_aggregator_id_peer(&la->la_partner, &lp->lp_partner); lacp_fill_aggregator_id_peer(&la->la_actor, &lp->lp_actor); la->la_actor.lip_state = lp->lp_state & LACP_STATE_AGGREGATION; } void lacp_fill_aggregator_id_peer(struct lacp_peerinfo *lpi_aggr, const struct lacp_peerinfo *lpi_port) { memset(lpi_aggr, 0, sizeof(*lpi_aggr)); lpi_aggr->lip_systemid = lpi_port->lip_systemid; lpi_aggr->lip_key = lpi_port->lip_key; } /* * lacp_aggregator_is_compatible: check if a port can join to an aggregator. */ int lacp_aggregator_is_compatible(const struct lacp_aggregator *la, const struct lacp_port *lp) { if (!(lp->lp_state & LACP_STATE_AGGREGATION) || !(lp->lp_partner.lip_state & LACP_STATE_AGGREGATION)) { return (0); } if (!(la->la_actor.lip_state & LACP_STATE_AGGREGATION)) { return (0); } if (!lacp_peerinfo_is_compatible(&la->la_partner, &lp->lp_partner)) { return (0); } if (!lacp_peerinfo_is_compatible(&la->la_actor, &lp->lp_actor)) { return (0); } return (1); } int lacp_peerinfo_is_compatible(const struct lacp_peerinfo *a, const struct lacp_peerinfo *b) { if (memcmp(&a->lip_systemid, &b->lip_systemid, sizeof(a->lip_systemid))) { return (0); } if (memcmp(&a->lip_key, &b->lip_key, sizeof(a->lip_key))) { return (0); } return (1); } void lacp_port_enable(struct lacp_port *lp) { lp->lp_state |= LACP_STATE_AGGREGATION; } void lacp_port_disable(struct lacp_port *lp) { lacp_set_mux(lp, LACP_MUX_DETACHED); lp->lp_state &= ~LACP_STATE_AGGREGATION; lp->lp_selected = LACP_UNSELECTED; lacp_sm_rx_record_default(lp); lp->lp_partner.lip_state &= ~LACP_STATE_AGGREGATION; lp->lp_state &= ~LACP_STATE_EXPIRED; } /* * lacp_select: select an aggregator. create one if necessary. */ void lacp_select(struct lacp_port *lp) { struct lacp_softc *lsc = lp->lp_lsc; struct lacp_aggregator *la; #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif if (lp->lp_aggregator) { return; } KASSERT(!LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE)); LACP_DPRINTF((lp, "port lagid=%s\n", lacp_format_lagid(&lp->lp_actor, &lp->lp_partner, buf, sizeof(buf)))); TAILQ_FOREACH(la, &lsc->lsc_aggregators, la_q) { if (lacp_aggregator_is_compatible(la, lp)) { break; } } if (la == NULL) { la = lacp_aggregator_get(lsc, lp); if (la == NULL) { LACP_DPRINTF((lp, "aggregator creation failed\n")); /* * will retry on the next tick. */ return; } lacp_fill_aggregator_id(la, lp); LACP_DPRINTF((lp, "aggregator created\n")); } else { LACP_DPRINTF((lp, "compatible aggregator found\n")); if (la->la_refcnt == LACP_MAX_PORTS) return; lacp_aggregator_addref(lsc, la); } LACP_DPRINTF((lp, "aggregator lagid=%s\n", lacp_format_lagid(&la->la_actor, &la->la_partner, buf, sizeof(buf)))); lp->lp_aggregator = la; lp->lp_selected = LACP_SELECTED; } /* * lacp_unselect: finish unselect/detach process. */ void lacp_unselect(struct lacp_port *lp) { struct lacp_softc *lsc = lp->lp_lsc; struct lacp_aggregator *la = lp->lp_aggregator; KASSERT(!LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE)); if (la == NULL) { return; } lp->lp_aggregator = NULL; lacp_aggregator_delref(lsc, la); } /* mux machine */ void lacp_sm_mux(struct lacp_port *lp) { enum lacp_mux_state new_state; int p_sync = (lp->lp_partner.lip_state & LACP_STATE_SYNC) != 0; int p_collecting = (lp->lp_partner.lip_state & LACP_STATE_COLLECTING) != 0; enum lacp_selected selected = lp->lp_selected; struct lacp_aggregator *la; /* LACP_DPRINTF((lp, "%s: state %d\n", __func__, lp->lp_mux_state)); */ re_eval: la = lp->lp_aggregator; KASSERT(lp->lp_mux_state == LACP_MUX_DETACHED || la != NULL); new_state = lp->lp_mux_state; switch (lp->lp_mux_state) { case LACP_MUX_DETACHED: if (selected != LACP_UNSELECTED) { new_state = LACP_MUX_WAITING; } break; case LACP_MUX_WAITING: KASSERT(la->la_pending > 0 || !LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE)); if (selected == LACP_SELECTED && la->la_pending == 0) { new_state = LACP_MUX_ATTACHED; } else if (selected == LACP_UNSELECTED) { new_state = LACP_MUX_DETACHED; } break; case LACP_MUX_ATTACHED: if (selected == LACP_SELECTED && p_sync) { new_state = LACP_MUX_COLLECTING; } else if (selected != LACP_SELECTED) { new_state = LACP_MUX_DETACHED; } break; case LACP_MUX_COLLECTING: if (selected == LACP_SELECTED && p_sync && p_collecting) { new_state = LACP_MUX_DISTRIBUTING; } else if (selected != LACP_SELECTED || !p_sync) { new_state = LACP_MUX_ATTACHED; } break; case LACP_MUX_DISTRIBUTING: if (selected != LACP_SELECTED || !p_sync || !p_collecting) { new_state = LACP_MUX_COLLECTING; } break; default: panic("%s: unknown state", __func__); } if (lp->lp_mux_state == new_state) { return; } lacp_set_mux(lp, new_state); goto re_eval; } void lacp_set_mux(struct lacp_port *lp, enum lacp_mux_state new_state) { struct lacp_aggregator *la = lp->lp_aggregator; if (lp->lp_mux_state == new_state) { return; } switch (new_state) { case LACP_MUX_DETACHED: lp->lp_state &= ~LACP_STATE_SYNC; lacp_disable_distributing(lp); lacp_disable_collecting(lp); lacp_sm_assert_ntt(lp); /* cancel timer */ if (LACP_TIMER_ISARMED(lp, LACP_TIMER_WAIT_WHILE)) { KASSERT(la->la_pending > 0); la->la_pending--; } LACP_TIMER_DISARM(lp, LACP_TIMER_WAIT_WHILE); lacp_unselect(lp); break; case LACP_MUX_WAITING: LACP_TIMER_ARM(lp, LACP_TIMER_WAIT_WHILE, LACP_AGGREGATE_WAIT_TIME); la->la_pending++; break; case LACP_MUX_ATTACHED: lp->lp_state |= LACP_STATE_SYNC; lacp_disable_collecting(lp); lacp_sm_assert_ntt(lp); break; case LACP_MUX_COLLECTING: lacp_enable_collecting(lp); lacp_disable_distributing(lp); lacp_sm_assert_ntt(lp); break; case LACP_MUX_DISTRIBUTING: lacp_enable_distributing(lp); break; default: panic("%s: unknown state", __func__); } LACP_DPRINTF((lp, "mux_state %d -> %d\n", lp->lp_mux_state, new_state)); lp->lp_mux_state = new_state; } void lacp_sm_mux_timer(struct lacp_port *lp) { struct lacp_aggregator *la = lp->lp_aggregator; #if defined(LACP_DEBUG) char buf[LACP_LAGIDSTR_MAX+1]; #endif KASSERT(la->la_pending > 0); LACP_DPRINTF((lp, "%s: aggregator %s, pending %d -> %d\n", __func__, lacp_format_lagid(&la->la_actor, &la->la_partner, buf, sizeof(buf)), la->la_pending, la->la_pending - 1)); la->la_pending--; } /* periodic transmit machine */ void lacp_sm_ptx_update_timeout(struct lacp_port *lp, u_int8_t oldpstate) { if (LACP_STATE_EQ(oldpstate, lp->lp_partner.lip_state, LACP_STATE_TIMEOUT)) { return; } LACP_DPRINTF((lp, "partner timeout changed\n")); /* * FAST_PERIODIC -> SLOW_PERIODIC * or * SLOW_PERIODIC (-> PERIODIC_TX) -> FAST_PERIODIC * * let lacp_sm_ptx_tx_schedule to update timeout. */ LACP_TIMER_DISARM(lp, LACP_TIMER_PERIODIC); /* * if timeout has been shortened, assert NTT. */ if ((lp->lp_partner.lip_state & LACP_STATE_TIMEOUT)) { lacp_sm_assert_ntt(lp); } } void lacp_sm_ptx_tx_schedule(struct lacp_port *lp) { int timeout; if (!(lp->lp_state & LACP_STATE_ACTIVITY) && !(lp->lp_partner.lip_state & LACP_STATE_ACTIVITY)) { /* * NO_PERIODIC */ LACP_TIMER_DISARM(lp, LACP_TIMER_PERIODIC); return; } if (LACP_TIMER_ISARMED(lp, LACP_TIMER_PERIODIC)) { return; } timeout = (lp->lp_partner.lip_state & LACP_STATE_TIMEOUT) ? LACP_FAST_PERIODIC_TIME : LACP_SLOW_PERIODIC_TIME; LACP_TIMER_ARM(lp, LACP_TIMER_PERIODIC, timeout); } void lacp_sm_ptx_timer(struct lacp_port *lp) { lacp_sm_assert_ntt(lp); } void lacp_sm_rx(struct lacp_port *lp, const struct lacpdu *du) { int timeout; /* * check LACP_DISABLED first */ if (!(lp->lp_state & LACP_STATE_AGGREGATION)) { return; } /* * check loopback condition. */ if (!lacp_compare_systemid(&du->ldu_actor.lip_systemid, &lp->lp_actor.lip_systemid)) { return; } /* * EXPIRED, DEFAULTED, CURRENT -> CURRENT */ lacp_sm_rx_update_selected(lp, du); lacp_sm_rx_update_ntt(lp, du); lacp_sm_rx_record_pdu(lp, du); timeout = (lp->lp_state & LACP_STATE_TIMEOUT) ? LACP_SHORT_TIMEOUT_TIME : LACP_LONG_TIMEOUT_TIME; LACP_TIMER_ARM(lp, LACP_TIMER_CURRENT_WHILE, timeout); lp->lp_state &= ~LACP_STATE_EXPIRED; /* * kick transmit machine without waiting the next tick. */ lacp_sm_tx(lp); } void lacp_sm_rx_set_expired(struct lacp_port *lp) { lp->lp_partner.lip_state &= ~LACP_STATE_SYNC; lp->lp_partner.lip_state |= LACP_STATE_TIMEOUT; LACP_TIMER_ARM(lp, LACP_TIMER_CURRENT_WHILE, LACP_SHORT_TIMEOUT_TIME); lp->lp_state |= LACP_STATE_EXPIRED; } void lacp_sm_rx_timer(struct lacp_port *lp) { if ((lp->lp_state & LACP_STATE_EXPIRED) == 0) { /* CURRENT -> EXPIRED */ LACP_DPRINTF((lp, "%s: CURRENT -> EXPIRED\n", __func__)); lacp_sm_rx_set_expired(lp); } else { /* EXPIRED -> DEFAULTED */ LACP_DPRINTF((lp, "%s: EXPIRED -> DEFAULTED\n", __func__)); lacp_sm_rx_update_default_selected(lp); lacp_sm_rx_record_default(lp); lp->lp_state &= ~LACP_STATE_EXPIRED; } } void lacp_sm_rx_record_pdu(struct lacp_port *lp, const struct lacpdu *du) { int active; u_int8_t oldpstate; #if defined(LACP_DEBUG) char buf[LACP_STATESTR_MAX+1]; #endif /* LACP_DPRINTF((lp, "%s\n", __func__)); */ oldpstate = lp->lp_partner.lip_state; active = (du->ldu_actor.lip_state & LACP_STATE_ACTIVITY) || ((lp->lp_state & LACP_STATE_ACTIVITY) && (du->ldu_partner.lip_state & LACP_STATE_ACTIVITY)); lp->lp_partner = du->ldu_actor; if (active && ((LACP_STATE_EQ(lp->lp_state, du->ldu_partner.lip_state, LACP_STATE_AGGREGATION) && !lacp_compare_peerinfo(&lp->lp_actor, &du->ldu_partner)) || (du->ldu_partner.lip_state & LACP_STATE_AGGREGATION) == 0)) { /* XXX nothing? */ } else { lp->lp_partner.lip_state &= ~LACP_STATE_SYNC; } lp->lp_state &= ~LACP_STATE_DEFAULTED; if (oldpstate != lp->lp_partner.lip_state) { LACP_DPRINTF((lp, "old pstate %s\n", lacp_format_state(oldpstate, buf, sizeof(buf)))); LACP_DPRINTF((lp, "new pstate %s\n", lacp_format_state(lp->lp_partner.lip_state, buf, sizeof(buf)))); } lacp_sm_ptx_update_timeout(lp, oldpstate); } void lacp_sm_rx_update_ntt(struct lacp_port *lp, const struct lacpdu *du) { /* LACP_DPRINTF((lp, "%s\n", __func__)); */ if (lacp_compare_peerinfo(&lp->lp_actor, &du->ldu_partner) || !LACP_STATE_EQ(lp->lp_state, du->ldu_partner.lip_state, LACP_STATE_ACTIVITY | LACP_STATE_SYNC | LACP_STATE_AGGREGATION)) { LACP_DPRINTF((lp, "%s: assert ntt\n", __func__)); lacp_sm_assert_ntt(lp); } } void lacp_sm_rx_record_default(struct lacp_port *lp) { u_int8_t oldpstate; /* LACP_DPRINTF((lp, "%s\n", __func__)); */ oldpstate = lp->lp_partner.lip_state; lp->lp_partner = lacp_partner_admin; lp->lp_state |= LACP_STATE_DEFAULTED; lacp_sm_ptx_update_timeout(lp, oldpstate); } void lacp_sm_rx_update_selected_from_peerinfo(struct lacp_port *lp, const struct lacp_peerinfo *info) { /* LACP_DPRINTF((lp, "%s\n", __func__)); */ if (lacp_compare_peerinfo(&lp->lp_partner, info) || !LACP_STATE_EQ(lp->lp_partner.lip_state, info->lip_state, LACP_STATE_AGGREGATION)) { lp->lp_selected = LACP_UNSELECTED; /* mux machine will clean up lp->lp_aggregator */ } } void lacp_sm_rx_update_selected(struct lacp_port *lp, const struct lacpdu *du) { /* LACP_DPRINTF((lp, "%s\n", __func__)); */ lacp_sm_rx_update_selected_from_peerinfo(lp, &du->ldu_actor); } void lacp_sm_rx_update_default_selected(struct lacp_port *lp) { /* LACP_DPRINTF((lp, "%s\n", __func__)); */ lacp_sm_rx_update_selected_from_peerinfo(lp, &lacp_partner_admin); } /* transmit machine */ void lacp_sm_tx(struct lacp_port *lp) { int error; if (!(lp->lp_state & LACP_STATE_AGGREGATION) #if 1 || (!(lp->lp_state & LACP_STATE_ACTIVITY) && !(lp->lp_partner.lip_state & LACP_STATE_ACTIVITY)) #endif ) { lp->lp_flags &= ~LACP_PORT_NTT; } if (!(lp->lp_flags & LACP_PORT_NTT)) { return; } /* Rate limit to 3 PDUs per LACP_FAST_PERIODIC_TIME */ if (ppsratecheck(&lp->lp_last_lacpdu, &lp->lp_lacpdu_sent, (3 / LACP_FAST_PERIODIC_TIME)) == 0) { LACP_DPRINTF((lp, "rate limited pdu\n")); return; } error = lacp_xmit_lacpdu(lp); if (error == 0) { lp->lp_flags &= ~LACP_PORT_NTT; } else { LACP_DPRINTF((lp, "lacpdu transmit failure, error %d\n", error)); } } void lacp_sm_assert_ntt(struct lacp_port *lp) { lp->lp_flags |= LACP_PORT_NTT; } void lacp_run_timers(struct lacp_port *lp) { int i; for (i = 0; i < LACP_NTIMER; i++) { KASSERT(lp->lp_timer[i] >= 0); if (lp->lp_timer[i] == 0) { continue; } else if (--lp->lp_timer[i] <= 0) { if (lacp_timer_funcs[i]) { (*lacp_timer_funcs[i])(lp); } } } } int lacp_marker_input(struct lacp_port *lp, struct mbuf *m) { struct lacp_softc *lsc = lp->lp_lsc; struct trunk_port *tp = lp->lp_trunk; struct lacp_port *lp2; struct markerdu *mdu; int error = 0; int pending = 0; if (m->m_pkthdr.len != sizeof(*mdu)) { goto bad; } if ((m->m_flags & M_MCAST) == 0) { goto bad; } if (m->m_len < sizeof(*mdu)) { m = m_pullup(m, sizeof(*mdu)); if (m == NULL) { return (ENOMEM); } } mdu = mtod(m, struct markerdu *); if (memcmp(&mdu->mdu_eh.ether_dhost, ðermulticastaddr_slowprotocols, ETHER_ADDR_LEN)) { goto bad; } if (mdu->mdu_sph.sph_version != 1) { goto bad; } switch (mdu->mdu_tlv.tlv_type) { case MARKER_TYPE_INFO: if (tlv_check(mdu, sizeof(*mdu), &mdu->mdu_tlv, marker_info_tlv_template, 1)) { goto bad; } mdu->mdu_tlv.tlv_type = MARKER_TYPE_RESPONSE; memcpy(&mdu->mdu_eh.ether_dhost, ðermulticastaddr_slowprotocols, ETHER_ADDR_LEN); memcpy(&mdu->mdu_eh.ether_shost, tp->tp_lladdr, ETHER_ADDR_LEN); error = trunk_enqueue(lp->lp_ifp, m); break; case MARKER_TYPE_RESPONSE: if (tlv_check(mdu, sizeof(*mdu), &mdu->mdu_tlv, marker_response_tlv_template, 1)) { goto bad; } LACP_DPRINTF((lp, "marker response, port=%u, sys=%6D, id=%u\n", ntohs(mdu->mdu_info.mi_rq_port), mdu->mdu_info.mi_rq_system, ":", ntohl(mdu->mdu_info.mi_rq_xid))); /* Verify that it is the last marker we sent out */ if (memcmp(&mdu->mdu_info, &lp->lp_marker, sizeof(struct lacp_markerinfo))) goto bad; lp->lp_flags &= ~LACP_PORT_MARK; if (lsc->lsc_suppress_distributing) { /* Check if any ports are waiting for a response */ LIST_FOREACH(lp2, &lsc->lsc_ports, lp_next) { if (lp2->lp_flags & LACP_PORT_MARK) { pending = 1; break; } } if (pending == 0) { /* All interface queues are clear */ LACP_DPRINTF((NULL, "queue flush complete\n")); lsc->lsc_suppress_distributing = 0; } } m_freem(m); break; default: goto bad; } return (error); bad: LACP_DPRINTF((lp, "bad marker frame\n")); m_freem(m); return (EINVAL); } int tlv_check(const void *p, size_t size, const struct tlvhdr *tlv, const struct tlv_template *tmpl, int check_type) { while (/* CONSTCOND */ 1) { if ((const char *)tlv - (const char *)p + sizeof(*tlv) > size) { return (EINVAL); } if ((check_type && tlv->tlv_type != tmpl->tmpl_type) || tlv->tlv_length != tmpl->tmpl_length) { return (EINVAL); } if (tmpl->tmpl_type == 0) { break; } tlv = (const struct tlvhdr *) ((const char *)tlv + tlv->tlv_length); tmpl++; } return (0); } #if defined(LACP_DEBUG) const char * lacp_format_mac(const u_int8_t *mac, char *buf, size_t buflen) { snprintf(buf, buflen, "%02X-%02X-%02X-%02X-%02X-%02X", (int)mac[0], (int)mac[1], (int)mac[2], (int)mac[3], (int)mac[4], (int)mac[5]); return (buf); } const char * lacp_format_systemid(const struct lacp_systemid *sysid, char *buf, size_t buflen) { char macbuf[LACP_MACSTR_MAX+1]; snprintf(buf, buflen, "%04X,%s", ntohs(sysid->lsi_prio), lacp_format_mac(sysid->lsi_mac, macbuf, sizeof(macbuf))); return (buf); } const char * lacp_format_portid(const struct lacp_portid *portid, char *buf, size_t buflen) { snprintf(buf, buflen, "%04X,%04X", ntohs(portid->lpi_prio), ntohs(portid->lpi_portno)); return (buf); } const char * lacp_format_partner(const struct lacp_peerinfo *peer, char *buf, size_t buflen) { char sysid[LACP_SYSTEMIDSTR_MAX+1]; char portid[LACP_PORTIDSTR_MAX+1]; snprintf(buf, buflen, "(%s,%04X,%s)", lacp_format_systemid(&peer->lip_systemid, sysid, sizeof(sysid)), ntohs(peer->lip_key), lacp_format_portid(&peer->lip_portid, portid, sizeof(portid))); return (buf); } const char * lacp_format_lagid(const struct lacp_peerinfo *a, const struct lacp_peerinfo *b, char *buf, size_t buflen) { char astr[LACP_PARTNERSTR_MAX+1]; char bstr[LACP_PARTNERSTR_MAX+1]; #if 0 /* * there's a convention to display small numbered peer * in the left. */ if (lacp_compare_peerinfo(a, b) > 0) { const struct lacp_peerinfo *t; t = a; a = b; b = t; } #endif snprintf(buf, buflen, "[%s,%s]", lacp_format_partner(a, astr, sizeof(astr)), lacp_format_partner(b, bstr, sizeof(bstr))); return (buf); } const char * lacp_format_lagid_aggregator(const struct lacp_aggregator *la, char *buf, size_t buflen) { if (la == NULL) { return ("(none)"); } return (lacp_format_lagid(&la->la_actor, &la->la_partner, buf, buflen)); } const char * lacp_format_state(u_int8_t state, char *buf, size_t buflen) { snprintf(buf, buflen, "%b", state, LACP_STATE_BITS); return (buf); } void lacp_dump_lacpdu(const struct lacpdu *du) { char buf[LACP_PARTNERSTR_MAX+1]; char buf2[LACP_STATESTR_MAX+1]; printf("actor=%s\n", lacp_format_partner(&du->ldu_actor, buf, sizeof(buf))); printf("actor.state=%s\n", lacp_format_state(du->ldu_actor.lip_state, buf2, sizeof(buf2))); printf("partner=%s\n", lacp_format_partner(&du->ldu_partner, buf, sizeof(buf))); printf("partner.state=%s\n", lacp_format_state(du->ldu_partner.lip_state, buf2, sizeof(buf2))); printf("maxdelay=%d\n", ntohs(du->ldu_collector.lci_maxdelay)); } void lacp_dprintf(const struct lacp_port *lp, const char *fmt, ...) { va_list va; if (lp) { printf("%s: ", lp->tp_if->if_xname); } va_start(va, fmt); vprintf(fmt, va); va_end(va); } #endif