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https://gitlab.nic.cz/labs/bird.git
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Nest: VRF of protocol can be explicitly specified as 'default'
Protocol can have specified VRF, in such case it is restricted to a set of ifaces associated with the VRF, otherwise it can use all interfaces. The patch allows to specify VRF as 'default', in which case it is restricted to a set of iface not associated with any VRF.
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@ -65,7 +65,7 @@ proto_postconfig(void)
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CF_DECLS
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CF_KEYWORDS(ROUTER, ID, PROTOCOL, TEMPLATE, PREFERENCE, DISABLED, DEBUG, ALL, OFF, DIRECT)
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CF_KEYWORDS(INTERFACE, IMPORT, EXPORT, FILTER, NONE, VRF, TABLE, STATES, ROUTES, FILTERS)
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CF_KEYWORDS(INTERFACE, IMPORT, EXPORT, FILTER, NONE, VRF, DEFAULT, TABLE, STATES, ROUTES, FILTERS)
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CF_KEYWORDS(IPV4, IPV6, VPN4, VPN6, ROA4, ROA6, FLOW4, FLOW6, SADR, MPLS)
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CF_KEYWORDS(RECEIVE, LIMIT, ACTION, WARN, BLOCK, RESTART, DISABLE, KEEP, FILTERED)
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CF_KEYWORDS(PASSWORD, FROM, PASSIVE, TO, ID, EVENTS, PACKETS, PROTOCOLS, INTERFACES)
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@ -209,7 +209,8 @@ proto_item:
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| MRTDUMP mrtdump_mask { this_proto->mrtdump = $2; }
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| ROUTER ID idval { this_proto->router_id = $3; }
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| DESCRIPTION text { this_proto->dsc = $2; }
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| VRF text { this_proto->vrf = if_get_by_name($2); }
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| VRF text { this_proto->vrf = if_get_by_name($2); this_proto->vrf_set = 1; }
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| VRF DEFAULT { this_proto->vrf = NULL; this_proto->vrf_set = 1; }
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;
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@ -147,7 +147,7 @@ ifa_send_notify(struct proto *p, unsigned c, struct ifa *a)
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{
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if (p->ifa_notify &&
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(p->proto_state != PS_DOWN) &&
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(!p->vrf || p->vrf == a->iface->master))
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(!p->vrf_set || p->vrf == a->iface->master))
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{
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if (p->debug & D_IFACES)
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log(L_TRACE "%s < address %N on interface %s %s",
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@ -185,7 +185,7 @@ if_send_notify(struct proto *p, unsigned c, struct iface *i)
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{
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if (p->if_notify &&
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(p->proto_state != PS_DOWN) &&
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(!p->vrf || p->vrf == i->master))
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(!p->vrf_set || p->vrf == i->master))
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{
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if (p->debug & D_IFACES)
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log(L_TRACE "%s < interface %s %s", p->name, i->name,
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@ -116,7 +116,7 @@ if_connected(ip_addr a, struct iface *i, struct ifa **ap, uint flags)
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}
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static inline int
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if_connected_any(ip_addr a, struct iface *vrf, struct iface **iface, struct ifa **addr, uint flags)
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if_connected_any(ip_addr a, struct iface *vrf, uint vrf_set, struct iface **iface, struct ifa **addr, uint flags)
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{
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struct iface *i;
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struct ifa *b;
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@ -127,7 +127,7 @@ if_connected_any(ip_addr a, struct iface *vrf, struct iface **iface, struct ifa
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/* Get first match, but prefer SCOPE_HOST to other matches */
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WALK_LIST(i, iface_list)
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if ((!vrf || vrf == i->master) && ((s = if_connected(a, i, &b, flags)) >= 0))
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if ((!vrf_set || vrf == i->master) && ((s = if_connected(a, i, &b, flags)) >= 0))
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if ((scope < 0) || ((scope > SCOPE_HOST) && (s == SCOPE_HOST)))
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{
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*iface = i;
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@ -192,7 +192,7 @@ neigh_find(struct proto *p, ip_addr a, struct iface *iface, uint flags)
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iface = (scope < 0) ? NULL : iface;
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}
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else
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scope = if_connected_any(a, p->vrf, &iface, &addr, flags);
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scope = if_connected_any(a, p->vrf, p->vrf_set, &iface, &addr, flags);
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/* scope < 0 means i don't know neighbor */
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/* scope >= 0 <=> iface != NULL */
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@ -309,6 +309,7 @@ neigh_free(neighbor *n)
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void
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neigh_update(neighbor *n, struct iface *iface)
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{
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struct proto *p = n->proto;
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struct ifa *ifa = NULL;
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int scope = -1;
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@ -317,14 +318,14 @@ neigh_update(neighbor *n, struct iface *iface)
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return;
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/* VRF-bound neighbors ignore changes in other VRFs */
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if (n->proto->vrf && (n->proto->vrf != iface->master))
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if (p->vrf_set && (p->vrf != iface->master))
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return;
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scope = if_connected(n->addr, iface, &ifa, n->flags);
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/* When neighbor is going down, try to respawn it on other ifaces */
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if ((scope < 0) && (n->scope >= 0) && !n->ifreq && (n->flags & NEF_STICKY))
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scope = if_connected_any(n->addr, n->proto->vrf, &iface, &ifa, n->flags);
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scope = if_connected_any(n->addr, p->vrf, p->vrf_set, &iface, &ifa, n->flags);
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/* No change or minor change - ignore or notify */
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if ((scope == n->scope) && (iface == n->iface))
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@ -765,6 +765,7 @@ proto_init(struct proto_config *c, node *n)
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p->proto_state = PS_DOWN;
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p->last_state_change = current_time();
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p->vrf = c->vrf;
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p->vrf_set = c->vrf_set;
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insert_node(&p->n, n);
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p->event = ev_new_init(proto_pool, proto_event, p);
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@ -932,7 +933,8 @@ proto_reconfigure(struct proto *p, struct proto_config *oc, struct proto_config
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if ((nc->protocol != oc->protocol) ||
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(nc->net_type != oc->net_type) ||
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(nc->disabled != p->disabled) ||
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(nc->vrf != oc->vrf))
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(nc->vrf != oc->vrf) ||
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(nc->vrf_set != oc->vrf_set))
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return 0;
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p->name = nc->name;
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@ -1838,8 +1840,8 @@ proto_cmd_show(struct proto *p, uintptr_t verbose, int cnt)
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cli_msg(-1006, " Message: %s", p->message);
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if (p->cf->router_id)
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cli_msg(-1006, " Router ID: %R", p->cf->router_id);
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if (p->vrf)
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cli_msg(-1006, " VRF: %s", p->vrf->name);
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if (p->vrf_set)
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cli_msg(-1006, " VRF: %s", p->vrf ? p->vrf->name : "default");
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if (p->proto->show_proto_info)
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p->proto->show_proto_info(p);
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@ -120,6 +120,7 @@ struct proto_config {
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int class; /* SYM_PROTO or SYM_TEMPLATE */
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u8 net_type; /* Protocol network type (NET_*), 0 for undefined */
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u8 disabled; /* Protocol enabled/disabled by default */
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u8 vrf_set; /* Related VRF instance (below) is defined */
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u32 debug, mrtdump; /* Debugging bitfields, both use D_* constants */
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u32 router_id; /* Protocol specific router ID */
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@ -176,6 +177,7 @@ struct proto {
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uint active_channels; /* Number of active channels */
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byte net_type; /* Protocol network type (NET_*), 0 for undefined */
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byte disabled; /* Manually disabled */
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byte vrf_set; /* Related VRF instance (above) is defined */
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byte proto_state; /* Protocol state machine (PS_*, see below) */
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byte active; /* From PS_START to cleanup after PS_STOP */
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byte do_start; /* Start actions are scheduled */
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@ -624,7 +624,7 @@ bfd_request_notify(struct bfd_request *req, u8 state, u8 diag)
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static int
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bfd_add_request(struct bfd_proto *p, struct bfd_request *req)
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{
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if (p->p.vrf && (p->p.vrf != req->vrf))
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if (p->p.vrf_set && (p->p.vrf != req->vrf))
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return 0;
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struct bfd_session *s = bfd_find_session_by_addr(p, req->addr);
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