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1 /*
2 * EIGRP Sending and Receiving EIGRP SIA-Reply Packets.
3 * Copyright (C) 2013-2014
4 * Authors:
5 * Donnie Savage
6 * Jan Janovic
7 * Matej Perina
8 * Peter Orsag
9 * Peter Paluch
10 *
11 * This file is part of GNU Zebra.
12 *
13 * GNU Zebra is free software; you can redistribute it and/or modify it
14 * under the terms of the GNU General Public License as published by the
15 * Free Software Foundation; either version 2, or (at your option) any
16 * later version.
17 *
18 * GNU Zebra is distributed in the hope that it will be useful, but
19 * WITHOUT ANY WARRANTY; without even the implied warranty of
20 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
21 * General Public License for more details.
22 *
23 * You should have received a copy of the GNU General Public License along
24 * with this program; see the file COPYING; if not, write to the Free Software
25 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
26 */
27 #include <zebra.h>
28
29 #include "thread.h"
30 #include "memory.h"
31 #include "linklist.h"
32 #include "prefix.h"
33 #include "if.h"
34 #include "table.h"
35 #include "sockunion.h"
36 #include "stream.h"
37 #include "log.h"
38 #include "sockopt.h"
39 #include "checksum.h"
40 #include "md5.h"
41 #include "vty.h"
42
43 #include "eigrpd/eigrp_structs.h"
44 #include "eigrpd/eigrpd.h"
45 #include "eigrpd/eigrp_interface.h"
46 #include "eigrpd/eigrp_neighbor.h"
47 #include "eigrpd/eigrp_packet.h"
48 #include "eigrpd/eigrp_zebra.h"
49 #include "eigrpd/eigrp_vty.h"
50 #include "eigrpd/eigrp_dump.h"
51 #include "eigrpd/eigrp_macros.h"
52 #include "eigrpd/eigrp_topology.h"
53 #include "eigrpd/eigrp_fsm.h"
54 #include "eigrpd/eigrp_memory.h"
55
56 /*EIGRP SIA-REPLY read function*/
57 void
58 eigrp_siareply_receive (struct eigrp *eigrp, struct ip *iph, struct eigrp_header *eigrph,
59 struct stream * s, struct eigrp_interface *ei, int size)
60 {
61 struct eigrp_neighbor *nbr;
62 struct TLV_IPv4_Internal_type *tlv;
63
64 u_int16_t type;
65
66 /* increment statistics. */
67 ei->siaReply_in++;
68
69 /* get neighbor struct */
70 nbr = eigrp_nbr_get(ei, eigrph, iph);
71
72 /* neighbor must be valid, eigrp_nbr_get creates if none existed */
73 assert(nbr);
74
75 nbr->recv_sequence_number = ntohl(eigrph->sequence);
76
77 while (s->endp > s->getp)
78 {
79 type = stream_getw(s);
80 if (type == EIGRP_TLV_IPv4_INT)
81 {
82 stream_set_getp(s, s->getp - sizeof(u_int16_t));
83
84 tlv = eigrp_read_ipv4_tlv(s);
85
86 struct prefix_ipv4 *dest_addr;
87 dest_addr = prefix_ipv4_new();
88 dest_addr->prefix = tlv->destination;
89 dest_addr->prefixlen = tlv->prefix_length;
90 struct eigrp_prefix_entry *dest =
91 eigrp_topology_table_lookup_ipv4(eigrp->topology_table, dest_addr);
92
93 /* If the destination exists (it should, but one never know)*/
94 if (dest != NULL)
95 {
96 struct eigrp_fsm_action_message *msg;
97 msg = XCALLOC(MTYPE_EIGRP_FSM_MSG,
98 sizeof(struct eigrp_fsm_action_message));
99 struct eigrp_neighbor_entry *entry =
100 eigrp_prefix_entry_lookup(dest->entries, nbr);
101 msg->packet_type = EIGRP_OPC_SIAQUERY;
102 msg->eigrp = eigrp;
103 msg->data_type = EIGRP_TLV_IPv4_INT;
104 msg->adv_router = nbr;
105 msg->data.ipv4_int_type = tlv;
106 msg->entry = entry;
107 msg->prefix = dest;
108 int event = eigrp_get_fsm_event(msg);
109 eigrp_fsm_event(msg, event);
110 }
111 eigrp_IPv4_InternalTLV_free (tlv);
112 }
113 }
114 eigrp_hello_send_ack(nbr);
115 }
116
117 void
118 eigrp_send_siareply (struct eigrp_neighbor *nbr, struct eigrp_prefix_entry *pe)
119 {
120 struct eigrp_packet *ep;
121 u_int16_t length = EIGRP_HEADER_LEN;
122
123 ep = eigrp_packet_new(nbr->ei->ifp->mtu);
124
125 /* Prepare EIGRP INIT UPDATE header */
126 eigrp_packet_header_init(EIGRP_OPC_SIAREPLY, nbr->ei, ep->s, 0,
127 nbr->ei->eigrp->sequence_number, 0);
128
129 // encode Authentication TLV, if needed
130 if((IF_DEF_PARAMS (nbr->ei->ifp)->auth_type == EIGRP_AUTH_TYPE_MD5) &&
131 (IF_DEF_PARAMS (nbr->ei->ifp)->auth_keychain != NULL))
132 {
133 length += eigrp_add_authTLV_MD5_to_stream(ep->s,nbr->ei);
134 }
135
136 length += eigrp_add_internalTLV_to_stream(ep->s, pe);
137
138 if((IF_DEF_PARAMS (nbr->ei->ifp)->auth_type == EIGRP_AUTH_TYPE_MD5) &&
139 (IF_DEF_PARAMS (nbr->ei->ifp)->auth_keychain != NULL))
140 {
141 eigrp_make_md5_digest(nbr->ei,ep->s, EIGRP_AUTH_UPDATE_FLAG);
142 }
143
144 /* EIGRP Checksum */
145 eigrp_packet_checksum(nbr->ei, ep->s, length);
146
147 ep->length = length;
148 ep->dst.s_addr = nbr->src.s_addr;
149
150 /*This ack number we await from neighbor*/
151 ep->sequence_number = nbr->ei->eigrp->sequence_number;
152
153 if (nbr->state == EIGRP_NEIGHBOR_UP)
154 {
155 /*Put packet to retransmission queue*/
156 eigrp_fifo_push_head(nbr->retrans_queue, ep);
157
158 if (nbr->retrans_queue->count == 1)
159 {
160 eigrp_send_packet_reliably(nbr);
161 }
162 }
163 }
164
165