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Revive FIB and kernel MPLS code
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parent
fa5c09a2e7
commit
66acbc8d7f
@ -83,7 +83,7 @@ CF_DECLS
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%type <time> expr_us time
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%type <time> expr_us time
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%type <a> ipa
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%type <a> ipa
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%type <net> net_ip4_ net_ip6_ net_ip6 net_ip_ net_ip net_or_ipa
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%type <net> net_ip4_ net_ip6_ net_ip6 net_ip_ net_ip net_or_ipa
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%type <net_ptr> net_ net_any net_vpn4_ net_vpn6_ net_vpn_ net_roa4_ net_roa6_ net_roa_
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%type <net_ptr> net_ net_any net_vpn4_ net_vpn6_ net_vpn_ net_roa4_ net_roa6_ net_roa_ net_mpls_
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%type <mls> label_stack_start label_stack
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%type <mls> label_stack_start label_stack
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%type <t> text opttext
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%type <t> text opttext
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@ -96,7 +96,7 @@ CF_DECLS
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%left '!'
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%left '!'
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%nonassoc '.'
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%nonassoc '.'
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CF_KEYWORDS(DEFINE, ON, OFF, YES, NO, S, MS, US, PORT, VPN)
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CF_KEYWORDS(DEFINE, ON, OFF, YES, NO, S, MS, US, PORT, VPN, MPLS)
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CF_GRAMMAR
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CF_GRAMMAR
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@ -234,6 +234,12 @@ net_roa6_: net_ip6_ MAX NUM AS NUM
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cf_error("Invalid max prefix length %u", $3);
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cf_error("Invalid max prefix length %u", $3);
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};
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};
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net_mpls_: MPLS NUM
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{
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$$ = cfg_alloc(sizeof(net_addr_roa6));
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net_fill_mpls($$, $2);
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}
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net_ip_: net_ip4_ | net_ip6_ ;
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net_ip_: net_ip4_ | net_ip6_ ;
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net_vpn_: net_vpn4_ | net_vpn6_ ;
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net_vpn_: net_vpn4_ | net_vpn6_ ;
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net_roa_: net_roa4_ | net_roa6_ ;
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net_roa_: net_roa4_ | net_roa6_ ;
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@ -243,6 +249,7 @@ net_:
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| net_vpn_
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| net_vpn_
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| net_roa_
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| net_roa_
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| net_flow_
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| net_flow_
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| net_mpls_
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;
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;
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@ -140,6 +140,7 @@ net_type:
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| ROA6 { $$ = NET_ROA6; }
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| ROA6 { $$ = NET_ROA6; }
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| FLOW4{ $$ = NET_FLOW4; }
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| FLOW4{ $$ = NET_FLOW4; }
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| FLOW6{ $$ = NET_FLOW6; }
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| FLOW6{ $$ = NET_FLOW6; }
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| MPLS { $$ = NET_MPLS; }
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;
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;
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CF_ENUM(T_ENUM_NETTYPE, NET_, IP4, IP6, VPN4, VPN6, ROA4, ROA6, FLOW4, FLOW6)
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CF_ENUM(T_ENUM_NETTYPE, NET_, IP4, IP6, VPN4, VPN6, ROA4, ROA6, FLOW4, FLOW6)
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@ -213,6 +213,7 @@ fib_hash(struct fib *f, const net_addr *a)
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case NET_ROA6: return FIB_HASH(f, a, roa6);
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case NET_ROA6: return FIB_HASH(f, a, roa6);
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case NET_FLOW4: return FIB_HASH(f, a, flow4);
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case NET_FLOW4: return FIB_HASH(f, a, flow4);
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case NET_FLOW6: return FIB_HASH(f, a, flow6);
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case NET_FLOW6: return FIB_HASH(f, a, flow6);
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case NET_MPLS: return FIB_HASH(f, a, mpls);
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default: bug("invalid type");
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default: bug("invalid type");
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}
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}
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}
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}
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@ -249,6 +250,7 @@ fib_find(struct fib *f, const net_addr *a)
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case NET_ROA6: return FIB_FIND(f, a, roa6);
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case NET_ROA6: return FIB_FIND(f, a, roa6);
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case NET_FLOW4: return FIB_FIND(f, a, flow4);
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case NET_FLOW4: return FIB_FIND(f, a, flow4);
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case NET_FLOW6: return FIB_FIND(f, a, flow6);
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case NET_FLOW6: return FIB_FIND(f, a, flow6);
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case NET_MPLS: return FIB_FIND(f, a, mpls);
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default: bug("invalid type");
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default: bug("invalid type");
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}
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}
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}
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}
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@ -268,6 +270,7 @@ fib_insert(struct fib *f, const net_addr *a, struct fib_node *e)
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case NET_ROA6: FIB_INSERT(f, a, e, roa6); return;
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case NET_ROA6: FIB_INSERT(f, a, e, roa6); return;
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case NET_FLOW4: FIB_INSERT(f, a, e, flow4); return;
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case NET_FLOW4: FIB_INSERT(f, a, e, flow4); return;
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case NET_FLOW6: FIB_INSERT(f, a, e, flow6); return;
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case NET_FLOW6: FIB_INSERT(f, a, e, flow6); return;
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case NET_MPLS: FIB_INSERT(f, a, e, mpls); return;
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default: bug("invalid type");
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default: bug("invalid type");
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}
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}
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}
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}
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@ -561,25 +561,20 @@ nl_add_attr_mpls_encap(struct nlmsghdr *h, uint bufsize, int len, u32 *stack)
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static inline void
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static inline void
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nl_add_attr_via(struct nlmsghdr *h, uint bufsize, ip_addr ipa)
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nl_add_attr_via(struct nlmsghdr *h, uint bufsize, ip_addr ipa)
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{
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{
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struct rtattr *nest = nl_open_attr(h, bufsize, RTA_VIA);
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struct rtvia *via = alloca(sizeof(struct rtvia) + 16);
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struct rtvia *via = RTA_DATA(nest);
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h->nlmsg_len += sizeof(*via);
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if (ipa_is_ip4(ipa))
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if (ipa_is_ip4(ipa))
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{
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{
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via->rtvia_family = AF_INET;
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via->rtvia_family = AF_INET;
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put_ip4(via->rtvia_addr, ipa_to_ip4(ipa));
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put_ip4(via->rtvia_addr, ipa_to_ip4(ipa));
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h->nlmsg_len += sizeof(ip4_addr);
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nl_add_attr(h, bufsize, RTA_VIA, via, sizeof(struct rtvia) + 4);
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}
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}
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else
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else
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{
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{
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via->rtvia_family = AF_INET6;
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via->rtvia_family = AF_INET6;
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put_ip6(via->rtvia_addr, ipa_to_ip6(ipa));
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put_ip6(via->rtvia_addr, ipa_to_ip6(ipa));
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h->nlmsg_len += sizeof(ip6_addr);
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nl_add_attr(h, bufsize, RTA_VIA, via, sizeof(struct rtvia) + 16);
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}
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}
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nl_close_attr(h, nest);
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}
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}
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#endif
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#endif
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@ -1228,8 +1223,16 @@ nl_send_route(struct krt_proto *p, rte *e, struct ea_list *eattrs, int op, int d
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#ifdef HAVE_MPLS_KERNEL
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#ifdef HAVE_MPLS_KERNEL
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if (p->af == AF_MPLS)
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if (p->af == AF_MPLS)
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{
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{
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/*
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* Kernel MPLS code is a bit picky. We must:
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* 1) Always set RT_SCOPE_UNIVERSE and RTN_UNICAST (even for RTM_DELROUTE)
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* 2) Never use RTA_PRIORITY
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*/
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u32 label = net_mpls(net->n.addr);
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u32 label = net_mpls(net->n.addr);
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nl_add_attr_mpls(&r->h, rsize, RTA_DST, 1, &label);
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nl_add_attr_mpls(&r->h, rsize, RTA_DST, 1, &label);
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r->r.rtm_scope = RT_SCOPE_UNIVERSE;
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r->r.rtm_type = RTN_UNICAST;
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}
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}
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else
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else
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#endif
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#endif
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@ -1247,7 +1250,9 @@ nl_send_route(struct krt_proto *p, rte *e, struct ea_list *eattrs, int op, int d
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else
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else
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nl_add_attr_u32(&r->h, rsize, RTA_TABLE, krt_table_id(p));
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nl_add_attr_u32(&r->h, rsize, RTA_TABLE, krt_table_id(p));
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if (a->source == RTS_DUMMY)
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if (p->af == AF_MPLS)
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priority = 0;
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else if (a->source == RTS_DUMMY)
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priority = e->u.krt.metric;
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priority = e->u.krt.metric;
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else if (KRT_CF->sys.metric)
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else if (KRT_CF->sys.metric)
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priority = KRT_CF->sys.metric;
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priority = KRT_CF->sys.metric;
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@ -1262,7 +1267,9 @@ nl_send_route(struct krt_proto *p, rte *e, struct ea_list *eattrs, int op, int d
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goto dest;
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goto dest;
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/* Default scope is LINK for device routes, UNIVERSE otherwise */
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/* Default scope is LINK for device routes, UNIVERSE otherwise */
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if (ea = ea_find(eattrs, EA_KRT_SCOPE))
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if (p->af == AF_MPLS)
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r->r.rtm_scope = RT_SCOPE_UNIVERSE;
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else if (ea = ea_find(eattrs, EA_KRT_SCOPE))
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r->r.rtm_scope = ea->u.data;
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r->r.rtm_scope = ea->u.data;
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else
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else
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r->r.rtm_scope = (dest == RTD_UNICAST && ipa_zero(nh->gw)) ? RT_SCOPE_LINK : RT_SCOPE_UNIVERSE;
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r->r.rtm_scope = (dest == RTD_UNICAST && ipa_zero(nh->gw)) ? RT_SCOPE_LINK : RT_SCOPE_UNIVERSE;
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