zebra: ZEBRA_HELLO and mopping up routes (BZ#448)

ZEBRA_HELLO message is used by routing daemons to inform zebra
what type of routes daemon will be announcing to zebra. Also
zebra uses route_type_oaths array to track which daemon announces
which protocol. Zebra mops up routes if daemon didn't for some
reason.
This commit is contained in:
Vyacheslav Trushkin 2011-12-11 18:48:47 +04:00 committed by Denis Ovsienko
parent 2654e43ca2
commit 2ea1ab1c30
5 changed files with 118 additions and 2 deletions

View file

@ -318,6 +318,25 @@ zebra_message_send (struct zclient *zclient, int command)
return zclient_send_message(zclient);
}
static int
zebra_hello_send (struct zclient *zclient)
{
struct stream *s;
if (zclient->redist_default)
{
s = zclient->obuf;
stream_reset (s);
zclient_create_header (s, ZEBRA_HELLO);
stream_putc (s, zclient->redist_default);
stream_putw_at (s, 0, stream_get_endp (s));
return zclient_send_message(zclient);
}
return 0;
}
/* Make connection to zebra daemon. */
int
zclient_start (struct zclient *zclient)
@ -359,6 +378,8 @@ zclient_start (struct zclient *zclient)
/* Create read thread. */
zclient_event (ZCLIENT_READ, zclient);
zebra_hello_send (zclient);
/* We need router-id information. */
zebra_message_send (zclient, ZEBRA_ROUTER_ID_ADD);

View file

@ -417,7 +417,8 @@ struct in_pktinfo
#define ZEBRA_ROUTER_ID_ADD 20
#define ZEBRA_ROUTER_ID_DELETE 21
#define ZEBRA_ROUTER_ID_UPDATE 22
#define ZEBRA_MESSAGE_MAX 23
#define ZEBRA_HELLO 23
#define ZEBRA_MESSAGE_MAX 24
/* Marker value used in new Zserv, in the byte location corresponding
* the command value in the old zserv header. To allow old and new

View file

@ -266,6 +266,7 @@ extern void rib_weed_tables (void);
extern void rib_sweep_route (void);
extern void rib_close (void);
extern void rib_init (void);
extern unsigned long rib_score_proto (u_char proto);
extern int
static_add_ipv4 (struct prefix *p, struct in_addr *gate, const char *ifname,

View file

@ -2881,7 +2881,41 @@ rib_sweep_route (void)
rib_sweep_table (vrf_table (AFI_IP, SAFI_UNICAST, 0));
rib_sweep_table (vrf_table (AFI_IP6, SAFI_UNICAST, 0));
}
/* Remove specific by protocol routes from 'table'. */
static unsigned long
rib_score_proto_table (u_char proto, struct route_table *table)
{
struct route_node *rn;
struct rib *rib;
struct rib *next;
unsigned long n = 0;
if (table)
for (rn = route_top (table); rn; rn = route_next (rn))
for (rib = rn->info; rib; rib = next)
{
next = rib->next;
if (CHECK_FLAG (rib->status, RIB_ENTRY_REMOVED))
continue;
if (rib->type == proto)
{
rib_delnode (rn, rib);
n++;
}
}
return n;
}
/* Remove specific by protocol routes. */
unsigned long
rib_score_proto (u_char proto)
{
return rib_score_proto_table (proto, vrf_table (AFI_IP, SAFI_UNICAST, 0))
+rib_score_proto_table (proto, vrf_table (AFI_IP6, SAFI_UNICAST, 0));
}
/* Close RIB and clean up kernel routes. */
static void
rib_close_table (struct route_table *table)

View file

@ -64,6 +64,15 @@ zserv_delayed_close(struct thread *thread)
return 0;
}
/* When client connects, it sends hello message
* with promise to send zebra routes of specific type.
* Zebra stores a socket fd of the client into
* this array. And use it to clean up routes that
* client didn't remove for some reasons after closing
* connection.
*/
static int route_type_oaths[ZEBRA_ROUTE_MAX];
static int
zserv_flush_data(struct thread *thread)
{
@ -1071,6 +1080,49 @@ zread_router_id_delete (struct zserv *client, u_short length)
return 0;
}
/* Tie up route-type and client->sock */
static void
zread_hello (struct zserv *client)
{
/* type of protocol (lib/zebra.h) */
u_char proto;
proto = stream_getc (client->ibuf);
/* accept only dynamic routing protocols */
if ((proto < ZEBRA_ROUTE_MAX)
&& (proto > ZEBRA_ROUTE_STATIC))
{
zlog_notice ("client %d says hello and bids fair to announce only %s routes",
client->sock, zebra_route_string(proto));
/* if route-type was binded by other client */
if (route_type_oaths[proto])
zlog_warn ("sender of %s routes changed %c->%c",
zebra_route_string(proto), route_type_oaths[proto],
client->sock);
route_type_oaths[proto] = client->sock;
}
}
/* If client sent routes of specific type, zebra removes it
* and returns number of deleted routes.
*/
static void
zebra_score_rib (int client_sock)
{
int i;
for (i = ZEBRA_ROUTE_RIP; i < ZEBRA_ROUTE_MAX; i++)
if (client_sock == route_type_oaths[i])
{
zlog_notice ("client %d disconnected. %lu %s routes removed from the rib",
client_sock, rib_score_proto (i), zebra_route_string (i));
route_type_oaths[i] = 0;
break;
}
}
/* Close zebra client. */
static void
zebra_client_close (struct zserv *client)
@ -1079,6 +1131,7 @@ zebra_client_close (struct zserv *client)
if (client->sock)
{
close (client->sock);
zebra_score_rib (client->sock);
client->sock = -1;
}
@ -1283,6 +1336,9 @@ zebra_client_read (struct thread *thread)
case ZEBRA_IPV4_IMPORT_LOOKUP:
zread_ipv4_import_lookup (client, length);
break;
case ZEBRA_HELLO:
zread_hello (client);
break;
default:
zlog_info ("Zebra received unknown command %d", command);
break;
@ -1352,6 +1408,7 @@ zebra_serv ()
return;
}
memset (&route_type_oaths, 0, sizeof (route_type_oaths));
memset (&addr, 0, sizeof (struct sockaddr_in));
addr.sin_family = AF_INET;
addr.sin_port = htons (ZEBRA_PORT);
@ -1422,6 +1479,8 @@ zebra_serv_un (const char *path)
return;
}
memset (&route_type_oaths, 0, sizeof (route_type_oaths));
/* Make server socket. */
memset (&serv, 0, sizeof (struct sockaddr_un));
serv.sun_family = AF_UNIX;