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	Fixes style nits introduced by recent pull requests. Signed-off-by: Quentin Young <qlyoung@cumulusnetworks.com>
		
			
				
	
	
		
			219 lines
		
	
	
		
			6.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			219 lines
		
	
	
		
			6.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* BGP EVPN internal definitions
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 * Copyright (C) 2017 Cumulus Networks, Inc.
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 *
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 * This file is part of FRR.
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 *
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 * FRR 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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 * FRR 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 FRR; 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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#ifndef _BGP_EVPN_PRIVATE_H
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#define _BGP_EVPN_PRIVATE_H
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#include "vxlan.h"
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#include "zebra.h"
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#include "bgpd/bgpd.h"
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#include "bgpd/bgp_ecommunity.h"
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#define RT_ADDRSTRLEN 28
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/* EVPN prefix lengths. */
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#define EVPN_TYPE_2_ROUTE_PREFIXLEN      224
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#define EVPN_TYPE_3_ROUTE_PREFIXLEN      224
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/* EVPN route types. */
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typedef enum {
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	BGP_EVPN_AD_ROUTE = 1,    /* Ethernet Auto-Discovery (A-D) route */
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	BGP_EVPN_MAC_IP_ROUTE,    /* MAC/IP Advertisement route */
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	BGP_EVPN_IMET_ROUTE,      /* Inclusive Multicast Ethernet Tag route */
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	BGP_EVPN_ES_ROUTE,	/* Ethernet Segment route */
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	BGP_EVPN_IP_PREFIX_ROUTE, /* IP Prefix route */
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} bgp_evpn_route_type;
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/*
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 * Hash table of EVIs. Right now, the only type of EVI supported is with
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 * VxLAN encapsulation, hence each EVI corresponds to a L2 VNI.
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 * The VNIs are not "created" through BGP but through some other interface
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 * on the system. This table stores VNIs that BGP comes to know as present
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 * on the system (through interaction with zebra) as well as pre-configured
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 * VNIs (which need to be defined in the system to become "live").
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 */
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struct bgpevpn {
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	vni_t vni;
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	u_int32_t flags;
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#define VNI_FLAG_CFGD              0x1  /* VNI is user configured */
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#define VNI_FLAG_LIVE              0x2  /* VNI is "live" */
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#define VNI_FLAG_RD_CFGD           0x4  /* RD is user configured. */
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#define VNI_FLAG_IMPRT_CFGD        0x8  /* Import RT is user configured */
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#define VNI_FLAG_EXPRT_CFGD        0x10 /* Export RT is user configured */
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	/* Flag to indicate if we are advertising the g/w mac ip for this VNI*/
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	u_int8_t advertise_gw_macip;
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	/* Id for deriving the RD automatically for this VNI */
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	u_int16_t rd_id;
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	/* RD for this VNI. */
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	struct prefix_rd prd;
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	/* Route type 3 field */
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	struct in_addr originator_ip;
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	/* Import and Export RTs. */
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	struct list *import_rtl;
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	struct list *export_rtl;
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	/* Route table for EVPN routes for this VNI. */
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	struct bgp_table *route_table;
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	QOBJ_FIELDS
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};
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DECLARE_QOBJ_TYPE(bgpevpn)
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/* Mapping of Import RT to VNIs.
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 * The Import RTs of all VNIs are maintained in a hash table with each
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 * RT linking to all VNIs that will import routes matching this RT.
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 */
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struct irt_node {
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	/* RT */
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	struct ecommunity_val rt;
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	/* List of VNIs importing routes matching this RT. */
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	struct list *vnis;
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};
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#define RT_TYPE_IMPORT 1
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#define RT_TYPE_EXPORT 2
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#define RT_TYPE_BOTH   3
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static inline int is_vni_configured(struct bgpevpn *vpn)
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{
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	return (CHECK_FLAG(vpn->flags, VNI_FLAG_CFGD));
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}
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static inline int is_vni_live(struct bgpevpn *vpn)
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{
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	return (CHECK_FLAG(vpn->flags, VNI_FLAG_LIVE));
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}
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static inline int is_rd_configured(struct bgpevpn *vpn)
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{
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	return (CHECK_FLAG(vpn->flags, VNI_FLAG_RD_CFGD));
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}
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static inline int bgp_evpn_rd_matches_existing(struct bgpevpn *vpn,
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					       struct prefix_rd *prd)
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{
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	return (memcmp(&vpn->prd.val, prd->val, ECOMMUNITY_SIZE) == 0);
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}
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static inline int is_import_rt_configured(struct bgpevpn *vpn)
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{
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	return (CHECK_FLAG(vpn->flags, VNI_FLAG_IMPRT_CFGD));
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}
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static inline int is_export_rt_configured(struct bgpevpn *vpn)
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{
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	return (CHECK_FLAG(vpn->flags, VNI_FLAG_EXPRT_CFGD));
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}
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static inline int is_vni_param_configured(struct bgpevpn *vpn)
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{
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	return (is_rd_configured(vpn) || is_import_rt_configured(vpn)
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		|| is_export_rt_configured(vpn));
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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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	u_char *tag = (u_char *)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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	u_char *tag = (u_char *)label;
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	vni_t vni;
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	vni = ((u_int32_t)*tag++ << 16);
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	vni |= (u_int32_t)*tag++ << 8;
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	vni |= (u_int32_t)(*tag & 0xFF);
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	return vni;
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}
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static inline void encode_mac_mobility_extcomm(int static_mac, u_int32_t seq,
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					       struct ecommunity_val *eval)
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{
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	memset(eval, 0, sizeof(*eval));
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	eval->val[0] = ECOMMUNITY_ENCODE_EVPN;
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	eval->val[1] = ECOMMUNITY_EVPN_SUBTYPE_MACMOBILITY;
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	if (static_mac)
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		eval->val[2] = ECOMMUNITY_EVPN_SUBTYPE_MACMOBILITY_FLAG_STICKY;
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	eval->val[4] = (seq >> 24) & 0xff;
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	eval->val[5] = (seq >> 16) & 0xff;
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	eval->val[6] = (seq >> 8) & 0xff;
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	eval->val[7] = seq & 0xff;
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}
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static inline void build_evpn_type2_prefix(struct prefix_evpn *p,
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					   struct ethaddr *mac,
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					   struct ipaddr *ip)
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{
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	memset(p, 0, sizeof(struct prefix_evpn));
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	p->family = AF_EVPN;
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	p->prefixlen = EVPN_TYPE_2_ROUTE_PREFIXLEN;
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	p->prefix.route_type = BGP_EVPN_MAC_IP_ROUTE;
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	memcpy(&p->prefix.mac.octet, mac->octet, ETH_ALEN);
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	p->prefix.ip.ipa_type = IPADDR_NONE;
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	if (ip)
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		memcpy(&p->prefix.ip, ip, sizeof(*ip));
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}
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static inline void build_evpn_type3_prefix(struct prefix_evpn *p,
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					   struct in_addr originator_ip)
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{
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	memset(p, 0, sizeof(struct prefix_evpn));
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	p->family = AF_EVPN;
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	p->prefixlen = EVPN_TYPE_3_ROUTE_PREFIXLEN;
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	p->prefix.route_type = BGP_EVPN_IMET_ROUTE;
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	p->prefix.ip.ipa_type = IPADDR_V4;
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	p->prefix.ip.ipaddr_v4 = originator_ip;
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}
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extern int bgp_evpn_handle_export_rt_change(struct bgp *bgp,
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					    struct bgpevpn *vpn);
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extern void bgp_evpn_handle_rd_change(struct bgp *bgp, struct bgpevpn *vpn,
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				      int withdraw);
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extern int bgp_evpn_install_routes(struct bgp *bgp, struct bgpevpn *vpn);
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extern int bgp_evpn_uninstall_routes(struct bgp *bgp, struct bgpevpn *vpn);
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extern void bgp_evpn_map_vni_to_its_rts(struct bgp *bgp, struct bgpevpn *vpn);
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extern void bgp_evpn_unmap_vni_from_its_rts(struct bgp *bgp,
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					    struct bgpevpn *vpn);
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extern void bgp_evpn_derive_auto_rt_import(struct bgp *bgp,
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					   struct bgpevpn *vpn);
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extern void bgp_evpn_derive_auto_rt_export(struct bgp *bgp,
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					   struct bgpevpn *vpn);
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extern void bgp_evpn_derive_auto_rd(struct bgp *bgp, struct bgpevpn *vpn);
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extern struct bgpevpn *bgp_evpn_lookup_vni(struct bgp *bgp, vni_t vni);
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extern struct bgpevpn *bgp_evpn_new(struct bgp *bgp, vni_t vni,
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				    struct in_addr originator_ip);
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extern void bgp_evpn_free(struct bgp *bgp, struct bgpevpn *vpn);
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#endif /* _BGP_EVPN_PRIVATE_H */
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