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The API messages are used by zebra to exchange the interfaces, addresses, routes and router-id information with its clients. To distinguish which VRF the information belongs to, a new field "VRF ID" is added in the message header. And hence the message version is increased to 3. * The new field "VRF ID" in the message header: Length (2 bytes) Marker (1 byte) Version (1 byte) VRF ID (2 bytes, newly added) Command (2 bytes) - Client side: - zclient_create_header() adds the VRF ID in the message header. - zclient_read() extracts and validates the VRF ID from the header, and passes the VRF ID to the callback functions registered to the API messages. - All relative functions are appended with a new parameter "vrf_id", including all the callback functions. - "vrf_id" is also added to "struct zapi_ipv4" and "struct zapi_ipv6". Clients need to correctly set the VRF ID when using the API functions zapi_ipv4_route() and zapi_ipv6_route(). - Till now all messages sent from a client have the default VRF ID "0" in the header. - The HELLO message is special, which is used as the heart-beat of a client, and has no relation with VRF. The VRF ID in the HELLO message header will always be 0 and ignored by zebra. - Zebra side: - zserv_create_header() adds the VRF ID in the message header. - zebra_client_read() extracts and validates the VRF ID from the header, and passes the VRF ID to the functions which process the received messages. - All relative functions are appended with a new parameter "vrf_id". * Suppress the messages in a VRF which a client does not care: Some clients may not care about the information in the VRF X, and zebra should not send the messages in the VRF X to those clients. Extra flags are used to indicate which VRF is registered by a client, and a new message ZEBRA_VRF_UNREGISTER is introduced to let a client can unregister a VRF when it does not need any information in that VRF. A client sends any message other than ZEBRA_VRF_UNREGISTER in a VRF will automatically register to that VRF. - lib/vrf: A new utility "VRF bit-map" is provided to manage the flags for VRFs, one bit per VRF ID. - Use vrf_bitmap_init()/vrf_bitmap_free() to initialize/free a bit-map; - Use vrf_bitmap_set()/vrf_bitmap_unset() to set/unset a flag in the given bit-map, corresponding to the given VRF ID; - Use vrf_bitmap_check() to test whether the flag, in the given bit-map and for the given VRF ID, is set. - Client side: - In "struct zclient", the following flags are changed from "u_char" to "vrf_bitmap_t": redist[ZEBRA_ROUTE_MAX] default_information These flags are extended for each VRF, and controlled by the clients themselves (or with the help of zclient_redistribute() and zclient_redistribute_default()). - Zebra side: - In "struct zserv", the following flags are changed from "u_char" to "vrf_bitmap_t": redist[ZEBRA_ROUTE_MAX] redist_default ifinfo ridinfo These flags are extended for each VRF, as the VRF registration flags. They are maintained on receiving a ZEBRA_XXX_ADD or ZEBRA_XXX_DELETE message. When sending an interface/address/route/router-id message in a VRF to a client, if the corresponding VRF registration flag is not set, this message will not be dropped by zebra. - A new function zread_vrf_unregister() is introduced to process the new command ZEBRA_VRF_UNREGISTER. All the VRF registration flags are cleared for the requested VRF. Those clients, who support only the default VRF, will never receive a message in a non-default VRF, thanks to the filter in zebra. * New callback for the event of successful connection to zebra: - zclient_start() is splitted, keeping only the code of connecting to zebra. - Now zclient_init()=>zclient_connect()=>zclient_start() operations are purely dealing with the connection to zbera. - Once zebra is successfully connected, at the end of zclient_start(), a new callback is used to inform the client about connection. - Till now, in the callback of connect-to-zebra event, all clients send messages to zebra to request the router-id/interface/routes information in the default VRF. Of corse in future the client can do anything it wants in this callback. For example, it may send requests for both default VRF and some non-default VRFs. Signed-off-by: Feng Lu <lu.feng@6wind.com> Reviewed-by: Alain Ritoux <alain.ritoux@6wind.com> Signed-off-by: Nicolas Dichtel <nicolas.dichtel@6wind.com> Acked-by: Donald Sharp <sharpd@cumulusnetworks.com> Conflicts: lib/zclient.h lib/zebra.h zebra/zserv.c zebra/zserv.h Conflicts: bgpd/bgp_nexthop.c bgpd/bgp_nht.c bgpd/bgp_zebra.c isisd/isis_zebra.c lib/zclient.c lib/zclient.h lib/zebra.h nhrpd/nhrp_interface.c nhrpd/nhrp_route.c nhrpd/nhrpd.h ospf6d/ospf6_zebra.c ospf6d/ospf6_zebra.h ospfd/ospf_vty.c ospfd/ospf_zebra.c pimd/pim_zebra.c pimd/pim_zlookup.c ripd/rip_zebra.c ripngd/ripng_zebra.c zebra/redistribute.c zebra/rt_netlink.c zebra/zebra_rnh.c zebra/zebra_rnh.h zebra/zserv.c zebra/zserv.h
419 lines
11 KiB
C
419 lines
11 KiB
C
/**
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* ospf6_bfd.c: IPv6 OSPF BFD handling routines
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*
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* @copyright Copyright (C) 2015 Cumulus Networks, Inc.
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*
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* This file is part of GNU Zebra.
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*
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* GNU Zebra is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2, or (at your option) any
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* later version.
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*
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* GNU Zebra is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with GNU Zebra; see the file COPYING. If not, write to the Free
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* Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
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* 02111-1307, USA.
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*/
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#include <zebra.h>
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#include "command.h"
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#include "linklist.h"
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#include "memory.h"
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#include "prefix.h"
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#include "thread.h"
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#include "buffer.h"
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#include "stream.h"
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#include "zclient.h"
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#include "vty.h"
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#include "table.h"
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#include "bfd.h"
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#include "if.h"
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#include "ospf6d.h"
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#include "ospf6_message.h"
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#include "ospf6_neighbor.h"
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#include "ospf6_interface.h"
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#include "ospf6_route.h"
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#include "ospf6_zebra.h"
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#include "ospf6_bfd.h"
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extern struct zclient *zclient;
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/*
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* ospf6_bfd_info_free - Free BFD info structure
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*/
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void
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ospf6_bfd_info_free(void **bfd_info)
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{
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bfd_info_free((struct bfd_info **) bfd_info);
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}
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/*
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* ospf6_bfd_show_info - Show BFD info structure
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*/
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void
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ospf6_bfd_show_info(struct vty *vty, void *bfd_info, int param_only)
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{
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if (param_only)
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bfd_show_param(vty, bfd_info, 1, 0, 0, NULL);
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else
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bfd_show_info(vty, bfd_info, 0, 1, 0, NULL);
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}
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/*
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* ospf6_bfd_reg_dereg_nbr - Register/Deregister a neighbor with BFD through
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* zebra for starting/stopping the monitoring of
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* the neighbor rechahability.
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*/
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void
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ospf6_bfd_reg_dereg_nbr (struct ospf6_neighbor *on, int command)
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{
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struct ospf6_interface *oi = on->ospf6_if;
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struct interface *ifp = oi->interface;
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struct bfd_info *bfd_info;
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char src[64];
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if (!oi->bfd_info || !on->bfd_info)
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return;
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bfd_info = (struct bfd_info *)oi->bfd_info;
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if (IS_OSPF6_DEBUG_ZEBRA(SEND))
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{
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inet_ntop (AF_INET6, &on->linklocal_addr, src, sizeof (src));
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zlog_debug ("%s nbr (%s) with BFD",
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bfd_get_command_dbg_str(command), src);
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}
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bfd_peer_sendmsg (zclient, bfd_info, AF_INET6, &on->linklocal_addr,
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on->ospf6_if->linklocal_addr, ifp->name,
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0, 0, command, 0, VRF_DEFAULT);
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if (command == ZEBRA_BFD_DEST_DEREGISTER)
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bfd_info_free((struct bfd_info **)&on->bfd_info);
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}
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/*
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* ospf6_bfd_trigger_event - Neighbor is registered/deregistered with BFD when
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* neighbor state is changed to/from 2way.
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*/
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void
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ospf6_bfd_trigger_event(struct ospf6_neighbor *on, int old_state, int state)
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{
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if ((old_state < OSPF6_NEIGHBOR_TWOWAY) && (state >= OSPF6_NEIGHBOR_TWOWAY))
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ospf6_bfd_reg_dereg_nbr(on, ZEBRA_BFD_DEST_REGISTER);
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else if ((old_state >= OSPF6_NEIGHBOR_TWOWAY) &&
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(state < OSPF6_NEIGHBOR_TWOWAY))
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ospf6_bfd_reg_dereg_nbr(on, ZEBRA_BFD_DEST_DEREGISTER);
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}
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/*
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* ospf6_bfd_reg_dereg_all_nbr - Register/Deregister all neighbors associated
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* with a interface with BFD through
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* zebra for starting/stopping the monitoring of
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* the neighbor rechahability.
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*/
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static void
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ospf6_bfd_reg_dereg_all_nbr (struct ospf6_interface *oi, int command)
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{
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struct ospf6_neighbor *on;
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struct listnode *node;
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for (ALL_LIST_ELEMENTS_RO (oi->neighbor_list, node, on))
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{
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if (command == ZEBRA_BFD_DEST_REGISTER)
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ospf6_bfd_info_nbr_create(oi, on);
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if (on->state < OSPF6_NEIGHBOR_TWOWAY)
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{
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if (command == ZEBRA_BFD_DEST_DEREGISTER)
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bfd_info_free((struct bfd_info **)&on->bfd_info);
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continue;
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}
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ospf6_bfd_reg_dereg_nbr(on, command);
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}
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}
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/*
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* ospf6_bfd_nbr_replay - Replay all the neighbors that have BFD enabled
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* to zebra
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*/
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static int
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ospf6_bfd_nbr_replay (int command, struct zclient *client, zebra_size_t length,
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vrf_id_t vrf_id)
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{
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struct listnode *inode, *nnode;
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struct interface *ifp;
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struct ospf6_interface *oi;
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struct ospf6_neighbor *on;
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char dst[64];
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if (IS_OSPF6_DEBUG_ZEBRA(RECV))
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zlog_debug("Zebra: BFD Dest replay request");
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/* Replay the neighbor, if BFD is enabled on the interface*/
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for (ALL_LIST_ELEMENTS_RO (iflist, inode, ifp))
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{
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oi = (struct ospf6_interface *) ifp->info;
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if (!oi || !oi->bfd_info)
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continue;
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for (ALL_LIST_ELEMENTS_RO (oi->neighbor_list, nnode, on))
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{
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if (on->state < OSPF6_NEIGHBOR_TWOWAY)
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continue;
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if (IS_OSPF6_DEBUG_ZEBRA(SEND))
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{
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inet_ntop (AF_INET6, &on->linklocal_addr, dst, sizeof (dst));
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zlog_debug ("Replaying nbr (%s) to BFD", dst);
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}
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ospf6_bfd_reg_dereg_nbr(on, ZEBRA_BFD_DEST_UPDATE);
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}
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}
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return 0;
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}
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/*
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* ospf6_bfd_interface_dest_update - Find the neighbor for which the BFD status
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* has changed and bring down the neighbor
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* connectivity if BFD down is received.
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*/
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static int
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ospf6_bfd_interface_dest_update (int command, struct zclient *zclient,
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zebra_size_t length, vrf_id_t vrf_id)
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{
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struct interface *ifp;
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struct ospf6_interface *oi;
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struct ospf6_neighbor *on;
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struct prefix dp;
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struct prefix sp;
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struct listnode *node, *nnode;
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char dst[64];
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int status;
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int old_status;
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struct bfd_info *bfd_info;
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struct timeval tv;
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ifp = bfd_get_peer_info(zclient->ibuf, &dp, &sp, &status);
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if ((ifp == NULL) || (dp.family != AF_INET6))
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return 0;
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if (IS_OSPF6_DEBUG_ZEBRA (RECV))
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{
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char buf[128];
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prefix2str(&dp, buf, sizeof(buf));
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zlog_debug("Zebra: interface %s bfd destination %s %s", ifp->name, buf,
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bfd_get_status_str(status));
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}
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oi = (struct ospf6_interface *) ifp->info;
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if (!oi || !oi->bfd_info)
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return 0;
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for (ALL_LIST_ELEMENTS (oi->neighbor_list, node, nnode, on))
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{
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if (memcmp(&(on->linklocal_addr), &dp.u.prefix6, sizeof(struct in6_addr)))
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continue;
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if (IS_OSPF6_DEBUG_NEIGHBOR (EVENT))
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{
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inet_ntop (AF_INET6, &on->linklocal_addr, dst, sizeof (dst));
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zlog_debug ("[%s:%s]: BFD %s", ifp->name, dst,
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bfd_get_status_str(status));
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}
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if (!on->bfd_info)
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continue;
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bfd_info = (struct bfd_info *)on->bfd_info;
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if (bfd_info->status == status)
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continue;
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old_status = bfd_info->status;
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bfd_info->status = status;
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quagga_gettime (QUAGGA_CLK_MONOTONIC, &tv);
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bfd_info->last_update = tv.tv_sec;
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if ((status == BFD_STATUS_DOWN) && (old_status == BFD_STATUS_UP))
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{
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THREAD_OFF (on->inactivity_timer);
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thread_add_event (master, inactivity_timer, on, 0);
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}
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}
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return 0;
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}
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/*
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* ospf6_bfd_info_nbr_create - Create/update BFD information for a neighbor.
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*/
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void
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ospf6_bfd_info_nbr_create (struct ospf6_interface *oi,
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struct ospf6_neighbor *on)
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{
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struct bfd_info *oi_bfd_info;
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struct bfd_info *on_bfd_info;
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if (!oi->bfd_info)
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return;
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oi_bfd_info = (struct bfd_info *)oi->bfd_info;
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if (!on->bfd_info)
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on->bfd_info = bfd_info_create();
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on_bfd_info = (struct bfd_info *)on->bfd_info;
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on_bfd_info->detect_mult = oi_bfd_info->detect_mult;
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on_bfd_info->desired_min_tx = oi_bfd_info->desired_min_tx;
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on_bfd_info->required_min_rx = oi_bfd_info->required_min_rx;
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}
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/*
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* ospf6_bfd_write_config - Write the interface BFD configuration.
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*/
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void
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ospf6_bfd_write_config(struct vty *vty, struct ospf6_interface *oi)
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{
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struct bfd_info *bfd_info;
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if (!oi->bfd_info)
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return;
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bfd_info = (struct bfd_info *)oi->bfd_info;
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if (CHECK_FLAG(bfd_info->flags, BFD_FLAG_PARAM_CFG))
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vty_out (vty, " ipv6 ospf6 bfd %d %d %d%s",
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bfd_info->detect_mult, bfd_info->required_min_rx,
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bfd_info->desired_min_tx, VTY_NEWLINE);
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else
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vty_out (vty, " ipv6 ospf6 bfd%s", VTY_NEWLINE);
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}
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/*
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* ospf6_bfd_if_param_set - Set the configured BFD paramter values for
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* interface.
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*/
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static void
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ospf6_bfd_if_param_set (struct ospf6_interface *oi, u_int32_t min_rx,
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u_int32_t min_tx, u_int8_t detect_mult,
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int defaults)
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{
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int command = 0;
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bfd_set_param((struct bfd_info **)&(oi->bfd_info), min_rx, min_tx, detect_mult,
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defaults, &command);
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if (command)
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ospf6_bfd_reg_dereg_all_nbr(oi, command);
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}
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DEFUN (ipv6_ospf6_bfd,
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ipv6_ospf6_bfd_cmd,
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"ipv6 ospf6 bfd",
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IP6_STR
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OSPF6_STR
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"Enables BFD support\n"
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)
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{
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struct ospf6_interface *oi;
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struct interface *ifp;
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ifp = (struct interface *) vty->index;
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assert (ifp);
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oi = (struct ospf6_interface *) ifp->info;
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if (oi == NULL)
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oi = ospf6_interface_create (ifp);
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assert (oi);
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ospf6_bfd_if_param_set (oi, BFD_DEF_MIN_RX, BFD_DEF_MIN_TX,
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BFD_DEF_DETECT_MULT, 1);
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return CMD_SUCCESS;
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}
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DEFUN (ipv6_ospf6_bfd_param,
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ipv6_ospf6_bfd_param_cmd,
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"ipv6 ospf6 bfd " BFD_CMD_DETECT_MULT_RANGE BFD_CMD_MIN_RX_RANGE BFD_CMD_MIN_TX_RANGE,
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IP6_STR
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OSPF6_STR
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"Enables BFD support\n"
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"Detect Multiplier\n"
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"Required min receive interval\n"
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"Desired min transmit interval\n")
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{
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struct ospf6_interface *oi;
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struct interface *ifp;
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u_int32_t rx_val;
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u_int32_t tx_val;
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u_int8_t dm_val;
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int ret;
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ifp = (struct interface *) vty->index;
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assert (ifp);
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oi = (struct ospf6_interface *) ifp->info;
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if (oi == NULL)
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oi = ospf6_interface_create (ifp);
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assert (oi);
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if ((ret = bfd_validate_param (vty, argv[0], argv[1], argv[2], &dm_val,
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&rx_val, &tx_val)) != CMD_SUCCESS)
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return ret;
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ospf6_bfd_if_param_set (oi, rx_val, tx_val, dm_val, 0);
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return CMD_SUCCESS;
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}
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DEFUN (no_ipv6_ospf6_bfd,
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no_ipv6_ospf6_bfd_cmd,
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"no ipv6 ospf6 bfd",
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NO_STR
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IP6_STR
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OSPF6_STR
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"Disables BFD support\n"
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)
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{
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struct ospf6_interface *oi;
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struct interface *ifp;
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ifp = (struct interface *) vty->index;
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assert (ifp);
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oi = (struct ospf6_interface *) ifp->info;
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if (oi == NULL)
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oi = ospf6_interface_create (ifp);
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assert (oi);
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if (oi->bfd_info)
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{
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ospf6_bfd_reg_dereg_all_nbr(oi, ZEBRA_BFD_DEST_DEREGISTER);
|
|
bfd_info_free((struct bfd_info **)&(oi->bfd_info));
|
|
}
|
|
|
|
return CMD_SUCCESS;
|
|
}
|
|
|
|
void
|
|
ospf6_bfd_init(void)
|
|
{
|
|
/* Initialize BFD client functions */
|
|
zclient->interface_bfd_dest_update = ospf6_bfd_interface_dest_update;
|
|
zclient->bfd_dest_replay = ospf6_bfd_nbr_replay;
|
|
|
|
/* Install BFD command */
|
|
install_element (INTERFACE_NODE, &ipv6_ospf6_bfd_cmd);
|
|
install_element (INTERFACE_NODE, &ipv6_ospf6_bfd_param_cmd);
|
|
install_element (INTERFACE_NODE, &no_ipv6_ospf6_bfd_cmd);
|
|
}
|