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	Gateway IP overlay index of the remote type-5 route is resolved recursively using remote type-2 route. For the purpose of this recursive resolution, for each L2VNI, we build a hash table of the remote IP addresses received by remote type-2 routes. For the topologies where overlay index resolution is not needed, we do not need to build this remote-ip-hash. Thus, make the recursive resolution of the overlay index conditional on "enable-resolve-overlay-index" configuration. router bgp 65001 bgp router-id 192.168.100.1 neighbor 10.0.1.2 remote-as 65002 ! address-family l2vpn evpn neighbor 10.0.1.2 activate advertise-all-vni enable-resolve-overlay-index----------> New configuration exit-address-family Gateway IP overlay index will be resolved only if this configuration is present. Signed-off-by: Ameya Dharkar <adharkar@vmware.com>
		
			
				
	
	
		
			234 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			234 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* E-VPN header for packet handling
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 * Copyright (C) 2016 6WIND
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 *
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 * This file is part of FRRouting.
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 *
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 * FRRouting 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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 * FRRouting 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 along
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 * with this program; see the file COPYING; if not, write to the Free Software
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 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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 */
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#ifndef _QUAGGA_BGP_EVPN_H
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#define _QUAGGA_BGP_EVPN_H
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#include "vxlan.h"
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#include "bgpd.h"
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#define EVPN_ROUTE_STRLEN 200 /* Must be >> MAC + IPv6 strings. */
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#define EVPN_AUTORT_VXLAN 0x10000000
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#define EVPN_ENABLED(bgp)  (bgp)->advertise_all_vni
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static inline int is_evpn_enabled(void)
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{
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	struct bgp *bgp = NULL;
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	bgp = bgp_get_evpn();
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	return bgp ? EVPN_ENABLED(bgp) : 0;
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}
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static inline void vni2label(vni_t vni, mpls_label_t *label)
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{
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	uint8_t *tag = (uint8_t *)label;
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	tag[0] = (vni >> 16) & 0xFF;
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	tag[1] = (vni >> 8) & 0xFF;
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	tag[2] = vni & 0xFF;
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}
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static inline vni_t label2vni(mpls_label_t *label)
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{
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	uint8_t *tag = (uint8_t *)label;
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	vni_t vni;
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	vni = ((uint32_t)*tag++ << 16);
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	vni |= (uint32_t)*tag++ << 8;
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	vni |= (uint32_t)(*tag & 0xFF);
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	return vni;
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}
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static inline int advertise_type5_routes(struct bgp *bgp_vrf,
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					 afi_t afi)
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{
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	if (!bgp_vrf->l3vni)
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		return 0;
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	if ((afi == AFI_IP)
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	    && ((CHECK_FLAG(bgp_vrf->af_flags[AFI_L2VPN][SAFI_EVPN],
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			    BGP_L2VPN_EVPN_ADV_IPV4_UNICAST))
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		|| (CHECK_FLAG(bgp_vrf->af_flags[AFI_L2VPN][SAFI_EVPN],
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			       BGP_L2VPN_EVPN_ADV_IPV4_UNICAST_GW_IP))))
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		return 1;
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	if ((afi == AFI_IP6)
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	    && ((CHECK_FLAG(bgp_vrf->af_flags[AFI_L2VPN][SAFI_EVPN],
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			    BGP_L2VPN_EVPN_ADV_IPV6_UNICAST))
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		|| (CHECK_FLAG(bgp_vrf->af_flags[AFI_L2VPN][SAFI_EVPN],
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			       BGP_L2VPN_EVPN_ADV_IPV6_UNICAST_GW_IP))))
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		return 1;
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	return 0;
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}
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/* Flag if the route's parent is a EVPN route. */
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static inline struct bgp_path_info *
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get_route_parent_evpn(struct bgp_path_info *ri)
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{
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	struct bgp_path_info *parent_ri;
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	/* If not imported (or doesn't have a parent), bail. */
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	if (ri->sub_type != BGP_ROUTE_IMPORTED ||
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	    !ri->extra ||
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	    !ri->extra->parent)
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		return NULL;
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	/* Determine parent recursively */
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	for (parent_ri = ri->extra->parent;
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	     parent_ri->extra && parent_ri->extra->parent;
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	     parent_ri = parent_ri->extra->parent)
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		;
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	return parent_ri;
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}
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/* Flag if the route's parent is a EVPN route. */
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static inline int is_route_parent_evpn(struct bgp_path_info *ri)
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{
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	struct bgp_path_info *parent_ri;
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	struct bgp_table *table;
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	struct bgp_dest *dest;
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	parent_ri = get_route_parent_evpn(ri);
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	if (!parent_ri)
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		return 0;
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	/* See if of family L2VPN/EVPN */
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	dest = parent_ri->net;
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	if (!dest)
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		return 0;
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	table = bgp_dest_table(dest);
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	if (table &&
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	    table->afi == AFI_L2VPN &&
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	    table->safi == SAFI_EVPN)
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		return 1;
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	return 0;
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}
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/* Flag if the route path's family is EVPN. */
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static inline bool is_pi_family_evpn(struct bgp_path_info *pi)
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{
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	return is_pi_family_matching(pi, AFI_L2VPN, SAFI_EVPN);
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}
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/* Flag if the route is injectable into EVPN. This would be either a
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 * non-imported route or a non-EVPN imported route.
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 */
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static inline bool is_route_injectable_into_evpn(struct bgp_path_info *pi)
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{
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	struct bgp_path_info *parent_pi;
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	struct bgp_table *table;
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	struct bgp_dest *dest;
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	if (pi->sub_type != BGP_ROUTE_IMPORTED ||
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	    !pi->extra ||
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	    !pi->extra->parent)
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		return true;
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	parent_pi = (struct bgp_path_info *)pi->extra->parent;
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	dest = parent_pi->net;
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	if (!dest)
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		return true;
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	table = bgp_dest_table(dest);
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	if (table &&
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	    table->afi == AFI_L2VPN &&
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	    table->safi == SAFI_EVPN)
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		return false;
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	return true;
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}
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static inline bool evpn_resolve_overlay_index(void)
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{
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	struct bgp *bgp = NULL;
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	bgp = bgp_get_evpn();
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	return bgp ? bgp->resolve_overlay_index : false;
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}
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extern void bgp_evpn_advertise_type5_route(struct bgp *bgp_vrf,
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					   const struct prefix *p,
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					   struct attr *src_attr, afi_t afi,
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					   safi_t safi);
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extern void bgp_evpn_withdraw_type5_route(struct bgp *bgp_vrf,
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					  const struct prefix *p, afi_t afi,
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					  safi_t safi);
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extern void bgp_evpn_withdraw_type5_routes(struct bgp *bgp_vrf, afi_t afi,
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					   safi_t safi);
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extern void bgp_evpn_advertise_type5_routes(struct bgp *bgp_vrf, afi_t afi,
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					    safi_t safi);
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extern void bgp_evpn_vrf_delete(struct bgp *bgp_vrf);
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extern void bgp_evpn_handle_router_id_update(struct bgp *bgp, int withdraw);
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extern char *bgp_evpn_label2str(mpls_label_t *label, uint32_t num_labels,
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				char *buf, int len);
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extern void bgp_evpn_route2json(const struct prefix_evpn *p, json_object *json);
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extern void bgp_evpn_encode_prefix(struct stream *s, const struct prefix *p,
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				   const struct prefix_rd *prd,
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				   mpls_label_t *label, uint32_t num_labels,
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				   struct attr *attr, int addpath_encode,
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				   uint32_t addpath_tx_id);
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extern int bgp_nlri_parse_evpn(struct peer *peer, struct attr *attr,
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			       struct bgp_nlri *packet, int withdraw);
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extern int bgp_evpn_import_route(struct bgp *bgp, afi_t afi, safi_t safi,
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				 const struct prefix *p,
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				 struct bgp_path_info *ri);
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extern int bgp_evpn_unimport_route(struct bgp *bgp, afi_t afi, safi_t safi,
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				   const struct prefix *p,
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				   struct bgp_path_info *ri);
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extern int bgp_filter_evpn_routes_upon_martian_nh_change(struct bgp *bgp);
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extern int bgp_evpn_local_macip_del(struct bgp *bgp, vni_t vni,
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				    struct ethaddr *mac, struct ipaddr *ip,
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					int state);
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extern int bgp_evpn_local_macip_add(struct bgp *bgp, vni_t vni,
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				    struct ethaddr *mac, struct ipaddr *ip,
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				    uint8_t flags, uint32_t seq, esi_t *esi);
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extern int bgp_evpn_local_l3vni_add(vni_t vni, vrf_id_t vrf_id,
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				    struct ethaddr *rmac,
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				    struct ethaddr *vrr_rmac,
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				    struct in_addr originator_ip, int filter,
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				    ifindex_t svi_ifindex, bool is_anycast_mac);
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extern int bgp_evpn_local_l3vni_del(vni_t vni, vrf_id_t vrf_id);
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extern int bgp_evpn_local_vni_del(struct bgp *bgp, vni_t vni);
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extern int bgp_evpn_local_vni_add(struct bgp *bgp, vni_t vni,
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				  struct in_addr originator_ip,
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				  vrf_id_t tenant_vrf_id,
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				  struct in_addr mcast_grp,
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				  ifindex_t svi_ifindex);
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extern void bgp_evpn_flood_control_change(struct bgp *bgp);
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extern void bgp_evpn_cleanup_on_disable(struct bgp *bgp);
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extern void bgp_evpn_cleanup(struct bgp *bgp);
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extern void bgp_evpn_init(struct bgp *bgp);
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extern int bgp_evpn_get_type5_prefixlen(const struct prefix *pfx);
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extern bool bgp_evpn_is_prefix_nht_supported(const struct prefix *pfx);
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extern void update_advertise_vrf_routes(struct bgp *bgp_vrf);
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extern void bgp_evpn_show_remote_ip_hash(struct hash_bucket *bucket,
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					 void *args);
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extern void bgp_evpn_show_vni_svi_hash(struct hash_bucket *bucket, void *args);
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extern bool bgp_evpn_is_gateway_ip_resolved(struct bgp_nexthop_cache *bnc);
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extern void
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bgp_evpn_handle_resolve_overlay_index_set(struct hash_bucket *bucket,
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					  void *arg);
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extern void
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bgp_evpn_handle_resolve_overlay_index_unset(struct hash_bucket *bucket,
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					    void *arg);
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#endif /* _QUAGGA_BGP_EVPN_H */
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