Home | History | Annotate | Line # | Download | only in ldpd
socketops.c revision 1.33.8.1
      1  1.33.8.1  pgoyette /* $NetBSD: socketops.c,v 1.33.8.1 2017/04/26 02:53:35 pgoyette Exp $ */
      2       1.1    kefren 
      3      1.17    kefren /*
      4       1.1    kefren  * Copyright (c) 2010 The NetBSD Foundation, Inc.
      5       1.1    kefren  * All rights reserved.
      6       1.1    kefren  *
      7       1.1    kefren  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1    kefren  * by Mihai Chelaru <kefren (at) NetBSD.org>
      9       1.1    kefren  *
     10       1.1    kefren  * Redistribution and use in source and binary forms, with or without
     11       1.1    kefren  * modification, are permitted provided that the following conditions
     12       1.1    kefren  * are met:
     13       1.1    kefren  * 1. Redistributions of source code must retain the above copyright
     14       1.1    kefren  *    notice, this list of conditions and the following disclaimer.
     15       1.1    kefren  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1    kefren  *    notice, this list of conditions and the following disclaimer in the
     17       1.1    kefren  *    documentation and/or other materials provided with the distribution.
     18       1.1    kefren  *
     19       1.1    kefren  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1    kefren  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1    kefren  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1    kefren  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1    kefren  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1    kefren  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1    kefren  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1    kefren  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1    kefren  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1    kefren  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1    kefren  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1    kefren  */
     31       1.1    kefren 
     32       1.1    kefren #include <sys/types.h>
     33       1.1    kefren #include <sys/stat.h>
     34       1.1    kefren #include <sys/socket.h>
     35       1.1    kefren #include <sys/ioctl.h>
     36       1.1    kefren #include <net/if.h>
     37       1.1    kefren #include <netinet/in.h>
     38       1.1    kefren #include <arpa/inet.h>
     39       1.1    kefren 
     40       1.7    kefren #include <assert.h>
     41       1.1    kefren #include <errno.h>
     42       1.7    kefren #include <ifaddrs.h>
     43       1.7    kefren #include <poll.h>
     44       1.1    kefren #include <signal.h>
     45       1.7    kefren #include <stdio.h>
     46       1.1    kefren #include <stdlib.h>
     47       1.7    kefren #include <strings.h>
     48       1.1    kefren #include <unistd.h>
     49       1.1    kefren 
     50      1.20    kefren #include "conffile.h"
     51       1.1    kefren #include "fsm.h"
     52       1.1    kefren #include "ldp.h"
     53       1.1    kefren #include "ldp_command.h"
     54       1.1    kefren #include "tlv.h"
     55       1.1    kefren #include "ldp_peer.h"
     56       1.1    kefren #include "notifications.h"
     57       1.1    kefren #include "tlv_stack.h"
     58       1.1    kefren #include "mpls_interface.h"
     59       1.1    kefren #include "label.h"
     60       1.1    kefren #include "mpls_routes.h"
     61       1.1    kefren #include "ldp_errors.h"
     62       1.1    kefren #include "socketops.h"
     63       1.1    kefren 
     64      1.12    kefren int ls;				/* TCP listening socket on port 646 */
     65      1.12    kefren int route_socket;		/* used to see when a route is added/deleted */
     66      1.12    kefren int command_socket;		/* Listening socket for interface command */
     67      1.12    kefren int current_msg_id = 0x233;
     68      1.12    kefren int command_port = LDP_COMMAND_PORT;
     69       1.1    kefren extern int      replay_index;
     70       1.1    kefren extern struct rt_msg replay_rt[REPLAY_MAX];
     71       1.1    kefren extern struct com_sock	csockets[MAX_COMMAND_SOCKETS];
     72       1.1    kefren 
     73       1.1    kefren int	ldp_hello_time = LDP_HELLO_TIME;
     74       1.3    kefren int	ldp_keepalive_time = LDP_KEEPALIVE_TIME;
     75       1.3    kefren int	ldp_holddown_time = LDP_HOLDTIME;
     76       1.7    kefren int	no_default_route = 1;
     77      1.12    kefren int	loop_detection = 0;
     78      1.24    kefren bool	may_connect;
     79       1.1    kefren 
     80       1.1    kefren void	recv_pdu(int);
     81       1.1    kefren void	send_hello_alarm(int);
     82      1.11     joerg __dead static void bail_out(int);
     83      1.29    kefren static void print_info(int);
     84      1.17    kefren static int bind_socket(int s, int stype);
     85      1.12    kefren static int set_tos(int);
     86      1.12    kefren static int socket_reuse_port(int);
     87       1.1    kefren static int get_local_addr(struct sockaddr_dl *, struct in_addr *);
     88      1.17    kefren static int is_hello_socket(int);
     89      1.28    kefren static int is_passive_if(const char *if_name);
     90       1.1    kefren 
     91       1.1    kefren int
     92      1.12    kefren create_hello_sockets()
     93       1.1    kefren {
     94       1.1    kefren 	struct ip_mreq  mcast_addr;
     95      1.17    kefren 	int s, joined_groups;
     96      1.18    kefren 	struct ifaddrs *ifa, *ifb;
     97      1.18    kefren 	uint lastifindex;
     98      1.12    kefren #ifdef INET6
     99      1.12    kefren 	struct ipv6_mreq mcast_addr6;
    100      1.17    kefren 	struct sockaddr_in6 *if_sa6;
    101      1.12    kefren #endif
    102      1.17    kefren 	struct hello_socket *hs;
    103      1.17    kefren 
    104      1.17    kefren 	SLIST_INIT(&hello_socket_head);
    105       1.1    kefren 
    106      1.12    kefren 	s = socket(PF_INET, SOCK_DGRAM, IPPROTO_UDP);
    107       1.1    kefren 	if (s < 0)
    108       1.1    kefren 		return s;
    109      1.17    kefren 	debugp("INET4 socket created (%d)\n", s);
    110       1.1    kefren 	/*
    111      1.12    kefren 	 * RFC5036 specifies we should listen to all subnet routers multicast
    112       1.1    kefren 	 * group
    113       1.1    kefren 	 */
    114      1.19    kefren 	mcast_addr.imr_multiaddr.s_addr = htonl(INADDR_ALLRTRS_GROUP);
    115      1.12    kefren 
    116      1.12    kefren 	if (socket_reuse_port(s) < 0)
    117      1.12    kefren 		goto chs_error;
    118      1.17    kefren 	/* Bind it to port 646 */
    119      1.17    kefren 	if (bind_socket(s, AF_INET) == -1) {
    120      1.12    kefren 		warnp("Cannot bind INET hello socket\n");
    121      1.12    kefren 		goto chs_error;
    122      1.12    kefren 	}
    123      1.12    kefren 
    124       1.1    kefren 	/* We don't need to receive back our messages */
    125      1.16    kefren 	if (setsockopt(s, IPPROTO_IP, IP_MULTICAST_LOOP, &(u_char){0},
    126      1.16    kefren 	    sizeof(u_char)) == -1) {
    127      1.12    kefren 		fatalp("INET setsockopt IP_MCAST_LOOP: %s\n", strerror(errno));
    128      1.12    kefren 		goto chs_error;
    129      1.12    kefren 	}
    130      1.17    kefren 	/* Finally join the group on all interfaces */
    131      1.17    kefren 	if (getifaddrs(&ifa) == -1) {
    132      1.17    kefren 		fatalp("Cannot iterate interfaces\n");
    133      1.17    kefren 		return -1;
    134      1.17    kefren 	}
    135      1.17    kefren 	lastifindex = UINT_MAX;
    136      1.17    kefren 	joined_groups = 0;
    137      1.17    kefren 	for (ifb = ifa; ifb; ifb = ifb->ifa_next) {
    138      1.17    kefren 		struct sockaddr_in *if_sa = (struct sockaddr_in *) ifb->ifa_addr;
    139      1.17    kefren 		if (if_sa->sin_family != AF_INET || (!(ifb->ifa_flags & IFF_UP)) ||
    140      1.17    kefren 		    (ifb->ifa_flags & IFF_LOOPBACK) ||
    141      1.20    kefren 		    (!(ifb->ifa_flags & IFF_MULTICAST)) ||
    142      1.17    kefren 		    (ntohl(if_sa->sin_addr.s_addr) >> 24 == IN_LOOPBACKNET) ||
    143      1.20    kefren 		    is_passive_if(ifb->ifa_name) ||
    144      1.17    kefren 		    lastifindex == if_nametoindex(ifb->ifa_name))
    145      1.17    kefren 			continue;
    146      1.17    kefren 		lastifindex = if_nametoindex(ifb->ifa_name);
    147      1.17    kefren 
    148      1.17    kefren 		mcast_addr.imr_interface.s_addr = if_sa->sin_addr.s_addr;
    149      1.17    kefren 		debugp("Join IPv4 mcast on %s\n", ifb->ifa_name);
    150      1.17    kefren         	if (setsockopt(s, IPPROTO_IP, IP_ADD_MEMBERSHIP, (char *) &mcast_addr,
    151      1.17    kefren 		    sizeof(mcast_addr)) == -1) {
    152      1.17    kefren         	        fatalp("setsockopt ADD_MEMBER: %s\n", strerror(errno));
    153      1.17    kefren 			goto chs_error;
    154      1.17    kefren         	}
    155      1.17    kefren 		joined_groups++;
    156      1.17    kefren 		if (joined_groups == IP_MAX_MEMBERSHIPS) {
    157      1.17    kefren 			warnp("Maximum group memberships reached for INET socket\n");
    158      1.17    kefren 			break;
    159      1.17    kefren 		}
    160      1.17    kefren 	}
    161      1.17    kefren 	/* TTL:1 for IPv4 */
    162      1.17    kefren 	if (setsockopt(s, IPPROTO_IP, IP_MULTICAST_TTL, &(int){1},
    163      1.17    kefren 	    sizeof(int)) == -1) {
    164      1.17    kefren 		fatalp("set mcast ttl: %s\n", strerror(errno));
    165      1.17    kefren 		goto chs_error;
    166      1.17    kefren 	}
    167      1.17    kefren 	/* TOS :0xc0 for IPv4 */
    168      1.17    kefren 	if (set_tos(s) == -1) {
    169      1.17    kefren 		fatalp("set_tos: %s", strerror(errno));
    170      1.17    kefren 		goto chs_error;
    171      1.17    kefren 	}
    172      1.17    kefren 	/* we need to get the input interface for message processing */
    173      1.17    kefren 	if (setsockopt(s, IPPROTO_IP, IP_RECVIF, &(uint32_t){1},
    174      1.12    kefren 	    sizeof(uint32_t)) == -1) {
    175      1.17    kefren 		fatalp("Cannot set IP_RECVIF\n");
    176      1.12    kefren 		goto chs_error;
    177       1.1    kefren 	}
    178      1.12    kefren 
    179      1.17    kefren 	hs = (struct hello_socket *)malloc(sizeof(*hs));
    180      1.17    kefren 	if (hs == NULL) {
    181      1.17    kefren 		fatalp("Cannot alloc hello_socket structure\n");
    182      1.12    kefren 		goto chs_error;
    183      1.17    kefren 	}
    184      1.17    kefren 	hs->type = AF_INET;
    185      1.17    kefren 	hs->socket = s;
    186      1.17    kefren 	SLIST_INSERT_HEAD(&hello_socket_head, hs, listentry);
    187      1.17    kefren 
    188      1.12    kefren #ifdef INET6
    189      1.17    kefren 	/*
    190      1.17    kefren 	 * Now we do the same for IPv6
    191      1.17    kefren 	 */
    192      1.17    kefren 	s = socket(PF_INET6, SOCK_DGRAM, IPPROTO_UDP);
    193      1.17    kefren 	if (s < 0) {
    194      1.17    kefren 		fatalp("Cannot create INET6 socket\n");
    195      1.17    kefren 		return -1;
    196      1.12    kefren 	}
    197      1.17    kefren 	debugp("INET6 socket created (%d)\n", s);
    198      1.17    kefren 
    199      1.17    kefren 	if (socket_reuse_port(s) < 0)
    200      1.12    kefren 		goto chs_error;
    201      1.17    kefren 
    202      1.17    kefren 	if (bind_socket(s, AF_INET6) == -1) {
    203      1.17    kefren 		fatalp("Cannot bind INET6 hello socket\n");
    204      1.12    kefren 		goto chs_error;
    205      1.17    kefren 	}
    206      1.17    kefren 
    207      1.17    kefren 	if (setsockopt(s, IPPROTO_IPV6, IPV6_MULTICAST_LOOP,
    208      1.17    kefren 	    &(uint){0}, sizeof(uint)) == -1) {
    209      1.17    kefren 		fatalp("INET6 setsocketopt IP_MCAST_LOOP: %s\n",
    210      1.17    kefren 		    strerror(errno));
    211      1.12    kefren 		goto chs_error;
    212       1.1    kefren 	}
    213      1.12    kefren 
    214      1.17    kefren 	lastifindex = UINT_MAX;
    215      1.19    kefren 	mcast_addr6.ipv6mr_multiaddr = in6addr_linklocal_allrouters;
    216      1.17    kefren 	for (ifb = ifa; ifb; ifb = ifb->ifa_next) {
    217      1.17    kefren 		if_sa6 = (struct sockaddr_in6 *) ifb->ifa_addr;
    218      1.17    kefren 		if (if_sa6->sin6_family != AF_INET6 ||
    219      1.17    kefren 		    (!(ifb->ifa_flags & IFF_UP)) ||
    220      1.20    kefren 		    (!(ifb->ifa_flags & IFF_MULTICAST)) ||
    221      1.17    kefren 		    (ifb->ifa_flags & IFF_LOOPBACK) ||
    222      1.20    kefren 		    is_passive_if(ifb->ifa_name) ||
    223      1.17    kefren 		    IN6_IS_ADDR_LOOPBACK(&if_sa6->sin6_addr))
    224      1.17    kefren 			continue;
    225      1.17    kefren 		/*
    226      1.17    kefren 		 * draft-ietf-mpls-ldp-ipv6-07 Section 5.1:
    227      1.17    kefren 		 * Additionally, the link-local
    228      1.17    kefren 		 * IPv6 address MUST be used as the source IP address in IPv6
    229      1.17    kefren 		 * LDP Link Hellos.
    230      1.17    kefren 		 */
    231      1.17    kefren 		if (IN6_IS_ADDR_LINKLOCAL(&if_sa6->sin6_addr) == 0)
    232      1.17    kefren 			continue;
    233      1.17    kefren 		/* We should have only one LLADDR per interface, but... */
    234      1.17    kefren 		if (lastifindex == if_nametoindex(ifb->ifa_name))
    235      1.17    kefren 			continue;
    236      1.17    kefren 		mcast_addr6.ipv6mr_interface = lastifindex =
    237      1.17    kefren 		    if_nametoindex(ifb->ifa_name);
    238      1.17    kefren 
    239      1.17    kefren 		debugp("Join IPv6 mcast on %s\n", ifb->ifa_name);
    240      1.17    kefren 		if (setsockopt(s, IPPROTO_IPV6, IPV6_JOIN_GROUP,
    241      1.17    kefren 		    (char *)&mcast_addr6, sizeof(mcast_addr6)) == -1) {
    242      1.17    kefren 			fatalp("INET6 setsockopt JOIN: %s\n", strerror(errno));
    243      1.17    kefren 			goto chs_error;
    244      1.17    kefren 		}
    245      1.17    kefren 	}
    246      1.17    kefren 	freeifaddrs(ifa);
    247      1.17    kefren 
    248      1.17    kefren 	/* TTL: 255 for IPv6 - draft-ietf-mpls-ldp-ipv6-07 Section 9 */
    249      1.17    kefren 	if (setsockopt(s, IPPROTO_IPV6, IPV6_MULTICAST_HOPS,
    250      1.17    kefren 	    &(int){255}, sizeof(int)) == -1) {
    251      1.17    kefren 		fatalp("set mcast hops: %s\n", strerror(errno));
    252      1.12    kefren 		goto chs_error;
    253       1.1    kefren 	}
    254      1.17    kefren 	if (setsockopt(s, IPPROTO_IPV6, IPV6_RECVPKTINFO,
    255      1.17    kefren 	    &(uint32_t){1}, sizeof(uint32_t)) == -1)
    256      1.17    kefren 		goto chs_error;
    257      1.17    kefren 
    258      1.17    kefren 	hs = (struct hello_socket *)malloc(sizeof(*hs));
    259      1.17    kefren 	if (hs == NULL) {
    260      1.17    kefren 		fatalp("Memory alloc problem: hs\n");
    261      1.12    kefren 		goto chs_error;
    262      1.17    kefren 	}
    263      1.17    kefren 
    264      1.17    kefren 	hs->type = AF_INET6;
    265      1.17    kefren 	hs->socket = s;
    266      1.17    kefren 	SLIST_INSERT_HEAD(&hello_socket_head, hs, listentry);
    267      1.12    kefren #endif
    268      1.12    kefren 	return 0;
    269      1.12    kefren chs_error:
    270      1.12    kefren 	close(s);
    271      1.12    kefren 	return -1;
    272       1.1    kefren }
    273       1.1    kefren 
    274      1.17    kefren /* Check if parameter is a hello socket */
    275      1.17    kefren int
    276      1.17    kefren is_hello_socket(int s)
    277      1.17    kefren {
    278      1.17    kefren 	struct hello_socket *hs;
    279      1.17    kefren 
    280      1.17    kefren 	SLIST_FOREACH(hs, &hello_socket_head, listentry)
    281      1.17    kefren 		if (hs->socket == s)
    282      1.17    kefren 			return 1;
    283      1.17    kefren 	return 0;
    284      1.17    kefren }
    285      1.17    kefren 
    286      1.20    kefren /* Check if interface is passive */
    287      1.20    kefren static int
    288      1.28    kefren is_passive_if(const char *if_name)
    289      1.20    kefren {
    290      1.32    kefren 	struct conf_interface *coif;
    291      1.20    kefren 
    292      1.32    kefren 	SLIST_FOREACH(coif, &coifs_head, iflist)
    293      1.32    kefren 		if (strncasecmp(if_name, coif->if_name, IF_NAMESIZE) == 0 &&
    294      1.32    kefren 		    coif->passive != 0)
    295      1.20    kefren 			return 1;
    296      1.20    kefren 	return 0;
    297      1.20    kefren }
    298      1.20    kefren 
    299       1.1    kefren /* Sets the TTL to 1 as we don't want to transmit outside this subnet */
    300      1.12    kefren int
    301       1.1    kefren set_ttl(int s)
    302       1.1    kefren {
    303       1.1    kefren 	int             ret;
    304       1.1    kefren 	if ((ret = setsockopt(s, IPPROTO_IP, IP_TTL, &(int){1}, sizeof(int)))
    305       1.1    kefren 	    == -1)
    306       1.1    kefren 		fatalp("set_ttl: %s", strerror(errno));
    307       1.1    kefren 	return ret;
    308       1.1    kefren }
    309       1.1    kefren 
    310       1.1    kefren /* Sets TOS to 0xc0 aka IP Precedence 6 */
    311      1.12    kefren static int
    312       1.1    kefren set_tos(int s)
    313       1.1    kefren {
    314       1.1    kefren 	int             ret;
    315       1.1    kefren 	if ((ret = setsockopt(s, IPPROTO_IP, IP_TOS, &(int){0xc0},
    316       1.1    kefren 	    sizeof(int))) == -1)
    317       1.1    kefren 		fatalp("set_tos: %s", strerror(errno));
    318       1.1    kefren 	return ret;
    319       1.1    kefren }
    320       1.1    kefren 
    321      1.12    kefren static int
    322       1.1    kefren socket_reuse_port(int s)
    323       1.1    kefren {
    324      1.12    kefren 	int ret;
    325       1.1    kefren 	if ((ret = setsockopt(s, SOL_SOCKET, SO_REUSEPORT, &(int){1},
    326       1.1    kefren 	    sizeof(int))) == -1)
    327       1.1    kefren 		fatalp("socket_reuse_port: %s", strerror(errno));
    328       1.1    kefren 	return ret;
    329       1.1    kefren }
    330       1.1    kefren 
    331       1.1    kefren /* binds an UDP socket */
    332      1.12    kefren static int
    333      1.17    kefren bind_socket(int s, int stype)
    334       1.1    kefren {
    335      1.16    kefren 	union sockunion su;
    336      1.12    kefren 
    337      1.17    kefren 	assert (stype == AF_INET || stype == AF_INET6);
    338       1.1    kefren 
    339      1.33       mrg 	memset(&su, 0, sizeof su);
    340      1.17    kefren 	if (stype == AF_INET) {
    341      1.16    kefren 		su.sin.sin_len = sizeof(su.sin);
    342      1.16    kefren 		su.sin.sin_family = AF_INET;
    343      1.17    kefren 		su.sin.sin_addr.s_addr = htonl(INADDR_ANY);
    344      1.16    kefren 		su.sin.sin_port = htons(LDP_PORT);
    345      1.12    kefren 	}
    346      1.12    kefren #ifdef INET6
    347      1.17    kefren 	else if (stype == AF_INET6) {
    348      1.16    kefren 		su.sin6.sin6_len = sizeof(su.sin6);
    349      1.16    kefren 		su.sin6.sin6_family = AF_INET6;
    350      1.16    kefren 		su.sin6.sin6_addr = in6addr_any;
    351      1.16    kefren 		su.sin6.sin6_port = htons(LDP_PORT);
    352      1.12    kefren 	}
    353      1.12    kefren #endif
    354      1.16    kefren 	if (bind(s, &su.sa, su.sa.sa_len)) {
    355      1.12    kefren 		fatalp("bind_socket: %s\n", strerror(errno));
    356       1.1    kefren 		return -1;
    357       1.1    kefren 	}
    358       1.1    kefren 	return 0;
    359       1.1    kefren }
    360       1.1    kefren 
    361       1.1    kefren /* Create / bind the TCP socket */
    362      1.12    kefren int
    363       1.1    kefren create_listening_socket(void)
    364       1.1    kefren {
    365       1.1    kefren 	struct sockaddr_in sa;
    366       1.1    kefren 	int             s;
    367       1.1    kefren 
    368       1.1    kefren 	sa.sin_len = sizeof(sa);
    369       1.1    kefren 	sa.sin_family = AF_INET;
    370       1.1    kefren 	sa.sin_port = htons(LDP_PORT);
    371       1.1    kefren 	sa.sin_addr.s_addr = htonl(INADDR_ANY);
    372       1.1    kefren 
    373      1.12    kefren 	s = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP);
    374       1.1    kefren 	if (s < 0)
    375       1.1    kefren 		return s;
    376       1.1    kefren 	if (bind(s, (struct sockaddr *) & sa, sizeof(sa))) {
    377       1.1    kefren 		fatalp("bind: %s", strerror(errno));
    378       1.1    kefren 		close(s);
    379       1.1    kefren 		return -1;
    380       1.1    kefren 	}
    381       1.1    kefren 	if (listen(s, 10) == -1) {
    382       1.1    kefren 		fatalp("listen: %s", strerror(errno));
    383       1.1    kefren 		close(s);
    384       1.1    kefren 		return -1;
    385       1.1    kefren 	}
    386       1.1    kefren /*	if (set_tos(s) == -1) {
    387       1.1    kefren 		fatalp("set_tos: %s", strerror(errno));
    388       1.1    kefren 		close(s);
    389       1.1    kefren 		return -1;
    390       1.1    kefren 	}
    391       1.1    kefren */	return s;
    392       1.1    kefren }
    393       1.1    kefren 
    394       1.1    kefren /*
    395       1.1    kefren  * It's ugly. We need a function to pass all tlvs and create pdu but since I
    396       1.1    kefren  * use UDP socket only to send hellos, I didn't bother
    397       1.1    kefren  */
    398       1.1    kefren void
    399       1.1    kefren send_hello(void)
    400       1.1    kefren {
    401       1.1    kefren 	struct hello_tlv *t;
    402       1.1    kefren 	struct common_hello_tlv *cht;
    403       1.1    kefren 	struct ldp_pdu  *spdu;
    404       1.1    kefren 	struct transport_address_tlv *trtlv;
    405       1.1    kefren 	void *v;
    406       1.1    kefren 	struct sockaddr_in sadest;	/* Destination ALL_ROUTERS */
    407      1.12    kefren 	ssize_t sb = 0;			/* sent bytes */
    408       1.1    kefren 	struct ifaddrs *ifa, *ifb;
    409       1.1    kefren 	struct sockaddr_in *if_sa;
    410      1.17    kefren 	int ip4socket = -1;
    411      1.17    kefren 	uint lastifindex;
    412      1.17    kefren 	struct hello_socket *hs;
    413      1.32    kefren 	struct conf_interface *coif;
    414      1.32    kefren 	bool bad_tr_addr;
    415      1.12    kefren #ifdef INET6
    416      1.12    kefren 	struct sockaddr_in6 sadest6;
    417      1.17    kefren 	int ip6socket = -1;
    418      1.12    kefren #endif
    419       1.1    kefren 
    420      1.12    kefren #define BASIC_HELLO_MSG_SIZE (sizeof(struct ldp_pdu) + 	/* PDU */	\
    421       1.1    kefren 			TLV_TYPE_LENGTH + MSGID_SIZE +	/* Hello TLV */	\
    422       1.1    kefren 			/* Common Hello TLV */				\
    423      1.12    kefren 			sizeof(struct common_hello_tlv))
    424      1.12    kefren #define GENERAL_HELLO_MSG_SIZE BASIC_HELLO_MSG_SIZE + 			\
    425      1.12    kefren 			/* Transport Address */				\
    426      1.12    kefren 			sizeof(struct transport_address_tlv)
    427      1.12    kefren #define IPV4_HELLO_MSG_SIZE BASIC_HELLO_MSG_SIZE + 4 + sizeof(struct in_addr)
    428      1.12    kefren #define IPV6_HELLO_MSG_SIZE BASIC_HELLO_MSG_SIZE + 4 + sizeof(struct in6_addr)
    429       1.1    kefren 
    430      1.12    kefren 	if ((v = calloc(1, GENERAL_HELLO_MSG_SIZE)) == NULL) {
    431      1.12    kefren 		fatalp("alloc problem in send_hello()\n");
    432       1.1    kefren 		return;
    433       1.1    kefren 	}
    434       1.1    kefren 
    435       1.1    kefren 	spdu = (struct ldp_pdu *)((char *)v);
    436       1.1    kefren 	t = (struct hello_tlv *)(spdu + 1);
    437       1.1    kefren 	cht = &t->ch;	/* Hello tlv struct includes CHT */
    438       1.1    kefren 	trtlv = (struct transport_address_tlv *)(t + 1);
    439       1.1    kefren 
    440       1.1    kefren 	/* Prepare PDU envelope */
    441       1.1    kefren 	spdu->version = htons(LDP_VERSION);
    442      1.12    kefren 	spdu->length = htons(IPV4_HELLO_MSG_SIZE - PDU_VER_LENGTH);
    443       1.1    kefren 	inet_aton(LDP_ID, &spdu->ldp_id);
    444       1.1    kefren 
    445       1.1    kefren 	/* Prepare Hello TLV */
    446       1.1    kefren 	t->type = htons(LDP_HELLO);
    447       1.1    kefren 	t->length = htons(MSGID_SIZE +
    448       1.1    kefren 			sizeof(struct common_hello_tlv) +
    449      1.12    kefren 			IPV4_HELLO_MSG_SIZE - BASIC_HELLO_MSG_SIZE);
    450       1.1    kefren 	/*
    451      1.28    kefren 	 * We used ID 0 instead of htonl(get_message_id()) because we've
    452      1.12    kefren 	 * seen hellos from Cisco routers doing the same thing
    453       1.1    kefren 	 */
    454       1.1    kefren 	t->messageid = 0;
    455       1.1    kefren 
    456       1.1    kefren 	/* Prepare Common Hello attributes */
    457       1.1    kefren 	cht->type = htons(TLV_COMMON_HELLO);
    458       1.1    kefren 	cht->length = htons(sizeof(cht->holdtime) + sizeof(cht->res));
    459       1.3    kefren 	cht->holdtime = htons(ldp_holddown_time);
    460       1.1    kefren 	cht->res = 0;
    461       1.1    kefren 
    462       1.1    kefren 	/*
    463      1.12    kefren 	 * Prepare Transport Address TLV RFC5036 says: "If this optional TLV
    464       1.1    kefren 	 * is not present the IPv4 source address for the UDP packet carrying
    465       1.1    kefren 	 * the Hello should be used." But we send it because everybody seems
    466       1.1    kefren 	 * to do so
    467       1.1    kefren 	 */
    468       1.1    kefren 	trtlv->type = htons(TLV_IPV4_TRANSPORT);
    469       1.1    kefren 	trtlv->length = htons(sizeof(struct in_addr));
    470       1.1    kefren 	/* trtlv->address will be set for each socket */
    471       1.1    kefren 
    472       1.1    kefren 	/* Destination sockaddr */
    473       1.1    kefren 	memset(&sadest, 0, sizeof(sadest));
    474       1.1    kefren 	sadest.sin_len = sizeof(sadest);
    475       1.1    kefren 	sadest.sin_family = AF_INET;
    476       1.1    kefren 	sadest.sin_port = htons(LDP_PORT);
    477      1.19    kefren 	sadest.sin_addr.s_addr = htonl(INADDR_ALLRTRS_GROUP);
    478       1.1    kefren 
    479      1.17    kefren 	/* Find our socket */
    480      1.17    kefren 	SLIST_FOREACH(hs, &hello_socket_head, listentry)
    481      1.17    kefren 		if (hs->type == AF_INET) {
    482      1.17    kefren 			ip4socket = hs->socket;
    483      1.17    kefren 			break;
    484      1.17    kefren 		}
    485      1.17    kefren 	assert(ip4socket >= 0);
    486      1.17    kefren 
    487       1.1    kefren 	if (getifaddrs(&ifa) == -1) {
    488       1.1    kefren 		free(v);
    489      1.17    kefren 		fatalp("Cannot enumerate interfaces\n");
    490       1.1    kefren 		return;
    491       1.1    kefren 	}
    492       1.1    kefren 
    493      1.17    kefren 	lastifindex = UINT_MAX;
    494      1.12    kefren 	/* Loop all interfaces in order to send IPv4 hellos */
    495       1.1    kefren 	for (ifb = ifa; ifb; ifb = ifb->ifa_next) {
    496       1.1    kefren 		if_sa = (struct sockaddr_in *) ifb->ifa_addr;
    497      1.20    kefren 		if (if_sa->sin_family != AF_INET ||
    498      1.20    kefren 		    (!(ifb->ifa_flags & IFF_UP)) ||
    499      1.20    kefren 		    (ifb->ifa_flags & IFF_LOOPBACK) ||
    500      1.20    kefren 		    (!(ifb->ifa_flags & IFF_MULTICAST)) ||
    501      1.20    kefren 		    is_passive_if(ifb->ifa_name) ||
    502      1.20    kefren 		    (ntohl(if_sa->sin_addr.s_addr) >> 24 == IN_LOOPBACKNET) ||
    503      1.20    kefren 		    lastifindex == if_nametoindex(ifb->ifa_name))
    504       1.1    kefren 			continue;
    505      1.12    kefren 
    506      1.12    kefren 		/* Send only once per interface, using primary address */
    507      1.17    kefren 		if (lastifindex == if_nametoindex(ifb->ifa_name))
    508       1.1    kefren 			continue;
    509      1.32    kefren 		/* Check if there is transport address set for this interface */
    510      1.32    kefren 		bad_tr_addr = false;
    511      1.32    kefren 		SLIST_FOREACH(coif, &coifs_head, iflist)
    512      1.32    kefren 			if (strncasecmp(coif->if_name, ifb->ifa_name,
    513      1.32    kefren 			    IF_NAMESIZE) == 0 &&
    514      1.32    kefren 			    coif->tr_addr.s_addr != 0 &&
    515      1.32    kefren 			    coif->tr_addr.s_addr != if_sa->sin_addr.s_addr)
    516      1.32    kefren 				bad_tr_addr = true;
    517      1.32    kefren 		if (bad_tr_addr == true)
    518      1.32    kefren 			continue;
    519      1.17    kefren 		lastifindex = if_nametoindex(ifb->ifa_name);
    520      1.17    kefren 
    521      1.17    kefren 		if (setsockopt(ip4socket, IPPROTO_IP, IP_MULTICAST_IF,
    522       1.1    kefren 		    &if_sa->sin_addr, sizeof(struct in_addr)) == -1) {
    523       1.1    kefren 			warnp("setsockopt failed: %s\n", strerror(errno));
    524       1.1    kefren 			continue;
    525       1.1    kefren 		}
    526      1.12    kefren 		trtlv->address.ip4addr.s_addr = if_sa->sin_addr.s_addr;
    527       1.1    kefren 
    528      1.17    kefren 		/* Put it on the wire */
    529      1.17    kefren 		sb = sendto(ip4socket, v, IPV4_HELLO_MSG_SIZE, 0,
    530      1.17    kefren 			    (struct sockaddr *) & sadest, sizeof(sadest));
    531      1.12    kefren 		if (sb < (ssize_t)(IPV4_HELLO_MSG_SIZE))
    532       1.1    kefren 		    fatalp("send: %s", strerror(errno));
    533       1.1    kefren 		else
    534      1.17    kefren 		    debugp("Sent (IPv4) %zd bytes on %s"
    535      1.17    kefren 			" (PDU: %d, Hello TLV: %d, CH: %d, TR: %d)\n",
    536      1.12    kefren 			sb, ifb->ifa_name,
    537      1.12    kefren 			ntohs(spdu->length), ntohs(t->length),
    538      1.12    kefren 			ntohs(cht->length), ntohs(trtlv->length));
    539      1.12    kefren 	}
    540      1.12    kefren #ifdef INET6
    541      1.12    kefren 	/* Adjust lengths */
    542      1.12    kefren 	spdu->length = htons(IPV6_HELLO_MSG_SIZE - PDU_VER_LENGTH);
    543      1.12    kefren 	t->length = htons(MSGID_SIZE +
    544      1.12    kefren 			sizeof(struct common_hello_tlv) +
    545      1.12    kefren 			IPV6_HELLO_MSG_SIZE - BASIC_HELLO_MSG_SIZE);
    546      1.12    kefren 	trtlv->length = htons(sizeof(struct in6_addr));
    547      1.12    kefren 	trtlv->type = htons(TLV_IPV6_TRANSPORT);
    548      1.12    kefren 
    549      1.12    kefren 	/* Prepare destination sockaddr */
    550      1.12    kefren 	memset(&sadest6, 0, sizeof(sadest6));
    551      1.12    kefren 	sadest6.sin6_len = sizeof(sadest6);
    552      1.12    kefren 	sadest6.sin6_family = AF_INET6;
    553      1.12    kefren 	sadest6.sin6_port = htons(LDP_PORT);
    554      1.19    kefren 	sadest6.sin6_addr = in6addr_linklocal_allrouters;
    555      1.12    kefren 
    556      1.17    kefren 	SLIST_FOREACH(hs, &hello_socket_head, listentry)
    557      1.17    kefren 		if (hs->type == AF_INET6) {
    558      1.17    kefren 			ip6socket = hs->socket;
    559      1.17    kefren 			break;
    560      1.17    kefren 		}
    561      1.17    kefren 
    562      1.17    kefren 	lastifindex = UINT_MAX;
    563      1.12    kefren 	for (ifb = ifa; ifb; ifb = ifb->ifa_next) {
    564      1.17    kefren 		struct sockaddr_in6 * if_sa6 =
    565      1.17    kefren 		    (struct sockaddr_in6 *) ifb->ifa_addr;
    566      1.17    kefren 		if (if_sa6->sin6_family != AF_INET6 ||
    567      1.17    kefren 		    (!(ifb->ifa_flags & IFF_UP)) ||
    568      1.20    kefren 		    (!(ifb->ifa_flags & IFF_MULTICAST)) ||
    569      1.17    kefren 		    (ifb->ifa_flags & IFF_LOOPBACK) ||
    570      1.20    kefren 		    is_passive_if(ifb->ifa_name) ||
    571      1.17    kefren 		    IN6_IS_ADDR_LOOPBACK(&if_sa6->sin6_addr))
    572      1.12    kefren 			continue;
    573      1.15    kefren 		/*
    574      1.15    kefren 		 * draft-ietf-mpls-ldp-ipv6-07 Section 5.1:
    575      1.15    kefren 		 * Additionally, the link-local
    576      1.15    kefren 		 * IPv6 address MUST be used as the source IP address in IPv6
    577      1.15    kefren 		 * LDP Link Hellos.
    578      1.15    kefren 		 */
    579      1.15    kefren 		if (IN6_IS_ADDR_LINKLOCAL(&if_sa6->sin6_addr) == 0)
    580      1.15    kefren 			continue;
    581      1.17    kefren 		/* We should have only one LLADDR per interface, but... */
    582      1.17    kefren 		if (lastifindex == if_nametoindex(ifb->ifa_name))
    583      1.17    kefren 			continue;
    584      1.17    kefren 		lastifindex = if_nametoindex(ifb->ifa_name);
    585      1.12    kefren 
    586      1.17    kefren 		if (setsockopt(ip6socket, IPPROTO_IPV6, IPV6_MULTICAST_IF,
    587      1.17    kefren 		    &lastifindex, sizeof(int)) == -1) {
    588      1.17    kefren 			fatalp("ssopt6 IPV6_MULTICAST_IF failed: %s for %s\n",
    589      1.17    kefren 			    strerror(errno), ifb->ifa_name);
    590      1.12    kefren 			continue;
    591      1.12    kefren 		}
    592      1.17    kefren 
    593      1.12    kefren 		memcpy(&trtlv->address.ip6addr, &if_sa6->sin6_addr,
    594      1.12    kefren 		    sizeof(struct in6_addr));
    595      1.12    kefren 
    596      1.12    kefren 		/* Put it on the wire */
    597      1.17    kefren 		sb = sendto(ip6socket, v, IPV6_HELLO_MSG_SIZE,
    598      1.12    kefren 			    0, (struct sockaddr *)&sadest6, sizeof(sadest6));
    599      1.12    kefren 		if (sb < (ssize_t)(IPV6_HELLO_MSG_SIZE))
    600      1.17    kefren 		    fatalp("send6: %s", strerror(errno));
    601      1.12    kefren 		else
    602      1.17    kefren 		    debugp("Sent (IPv6) %zd bytes on %s "
    603      1.12    kefren 			"(PDU: %d, Hello TLV: %d, CH: %d TR: %d)\n",
    604      1.17    kefren 			sb, ifb->ifa_name, htons(spdu->length),
    605      1.17    kefren 			htons(t->length), htons(cht->length),
    606      1.17    kefren 			htons(trtlv->length));
    607       1.1    kefren 	}
    608      1.12    kefren #endif
    609       1.1    kefren 	freeifaddrs(ifa);
    610       1.1    kefren 	free(v);
    611       1.1    kefren }
    612       1.1    kefren 
    613       1.1    kefren int
    614       1.1    kefren get_message_id(void)
    615       1.1    kefren {
    616       1.1    kefren 	current_msg_id++;
    617       1.1    kefren 	return current_msg_id;
    618       1.1    kefren }
    619       1.1    kefren 
    620       1.1    kefren static int
    621       1.1    kefren get_local_addr(struct sockaddr_dl *sdl, struct in_addr *sin)
    622       1.1    kefren {
    623       1.1    kefren 	struct ifaddrs *ifa, *ifb;
    624       1.1    kefren 	struct sockaddr_in *sinet;
    625       1.1    kefren 
    626       1.1    kefren 	if (sdl == NULL)
    627       1.1    kefren 		return -1;
    628       1.1    kefren 
    629       1.1    kefren 	if (getifaddrs(&ifa) == -1)
    630       1.1    kefren 		return -1;
    631       1.1    kefren 	for (ifb = ifa; ifb; ifb = ifb->ifa_next)
    632       1.1    kefren 		if (ifb->ifa_addr->sa_family == AF_INET) {
    633       1.1    kefren 			if (if_nametoindex(ifb->ifa_name) != sdl->sdl_index)
    634       1.1    kefren 				continue;
    635       1.1    kefren 			sinet = (struct sockaddr_in*) ifb->ifa_addr;
    636       1.1    kefren 			sin->s_addr = sinet->sin_addr.s_addr;
    637       1.1    kefren 			freeifaddrs(ifa);
    638       1.1    kefren 			return 0;
    639       1.1    kefren 		}
    640       1.1    kefren 	freeifaddrs(ifa);
    641       1.1    kefren 	return -1;
    642       1.1    kefren }
    643       1.1    kefren 
    644       1.1    kefren /* Receive PDUs on Multicast UDP socket */
    645       1.1    kefren void
    646       1.1    kefren recv_pdu(int sock)
    647       1.1    kefren {
    648       1.1    kefren 	struct ldp_pdu  rpdu;
    649       1.1    kefren 	int             c, i;
    650       1.1    kefren 	struct msghdr msg;
    651       1.1    kefren 	struct iovec iov[1];
    652       1.1    kefren 	unsigned char recvspace[MAX_PDU_SIZE];
    653       1.1    kefren 	struct hello_tlv *t;
    654      1.17    kefren 	union sockunion sender;
    655       1.1    kefren 	struct sockaddr_dl *sdl = NULL;
    656       1.1    kefren 	struct in_addr my_ldp_addr, local_addr;
    657       1.1    kefren 	struct cmsghdr *cmptr;
    658       1.1    kefren 	union {
    659       1.1    kefren 		struct cmsghdr cm;
    660       1.1    kefren 		char control[1024];
    661       1.1    kefren 	} control_un;
    662       1.1    kefren 
    663       1.1    kefren 	memset(&msg, 0, sizeof(msg));
    664       1.1    kefren 	msg.msg_control = control_un.control;
    665       1.1    kefren 	msg.msg_controllen = sizeof(control_un.control);
    666       1.1    kefren 	msg.msg_flags = 0;
    667      1.17    kefren 	msg.msg_name = &sender;
    668      1.17    kefren 	msg.msg_namelen = sizeof(sender);
    669       1.1    kefren 	iov[0].iov_base = recvspace;
    670       1.1    kefren 	iov[0].iov_len = sizeof(recvspace);
    671       1.1    kefren 	msg.msg_iov = iov;
    672       1.1    kefren 	msg.msg_iovlen = 1;
    673       1.1    kefren 
    674       1.1    kefren 	c = recvmsg(sock, &msg, MSG_WAITALL);
    675       1.1    kefren 
    676       1.1    kefren 	/* Check to see if this is larger than MIN_PDU_SIZE */
    677       1.1    kefren 	if (c < MIN_PDU_SIZE)
    678       1.1    kefren 		return;
    679       1.1    kefren 
    680       1.1    kefren 	/* Read the PDU */
    681       1.1    kefren 	i = get_pdu(recvspace, &rpdu);
    682       1.1    kefren 
    683      1.17    kefren 	debugp("recv_pdu(%d): PDU(size: %d) from: %s\n", sock,
    684      1.17    kefren 	    c, satos(&sender.sa));
    685      1.17    kefren 
    686       1.1    kefren 	/* We currently understand Version 1 */
    687       1.1    kefren 	if (rpdu.version != LDP_VERSION) {
    688      1.17    kefren 		warnp("recv_pdu: Version mismatch\n");
    689       1.1    kefren 		return;
    690       1.1    kefren 	}
    691       1.1    kefren 
    692      1.17    kefren 	/* Check if it's our hello */
    693       1.1    kefren 	inet_aton(LDP_ID, &my_ldp_addr);
    694       1.1    kefren 	if (rpdu.ldp_id.s_addr == my_ldp_addr.s_addr) {
    695      1.17    kefren 		/* It should not be looped. We set MULTICAST_LOOP 0 */
    696      1.17    kefren 		fatalp("Received our PDU. Ignoring it\n");
    697       1.1    kefren 		return;
    698       1.1    kefren 	}
    699       1.1    kefren 
    700       1.1    kefren 	if (msg.msg_controllen < (socklen_t)sizeof(struct cmsghdr) ||
    701       1.1    kefren 	    (msg.msg_flags & MSG_CTRUNC))
    702       1.1    kefren 		local_addr.s_addr = my_ldp_addr.s_addr;
    703       1.1    kefren 	else {
    704       1.1    kefren 		for (cmptr = CMSG_FIRSTHDR(&msg); cmptr != NULL;
    705       1.1    kefren 		    cmptr = CMSG_NXTHDR(&msg, cmptr))
    706       1.1    kefren 			if (cmptr->cmsg_level == IPPROTO_IP &&
    707       1.1    kefren 			    cmptr->cmsg_type == IP_RECVIF) {
    708       1.1    kefren 				sdl = (struct sockaddr_dl *) CMSG_DATA(cmptr);
    709       1.1    kefren 				break;
    710       1.1    kefren 			}
    711       1.1    kefren 		if (get_local_addr(sdl, &local_addr) != 0)
    712       1.1    kefren 			local_addr.s_addr = my_ldp_addr.s_addr;
    713       1.1    kefren 	}
    714       1.1    kefren 
    715       1.1    kefren 
    716       1.1    kefren 	debugp("Read %d bytes from address %s Length: %.4d Version: %d\n",
    717       1.1    kefren 	       c, inet_ntoa(rpdu.ldp_id), rpdu.length, rpdu.version);
    718       1.1    kefren 
    719       1.1    kefren 	/* Fill the TLV messages */
    720       1.1    kefren 	t = get_hello_tlv(recvspace + i, c - i);
    721      1.24    kefren 	run_ldp_hello(&rpdu, t, &sender.sa, &local_addr, sock, may_connect);
    722       1.1    kefren }
    723       1.1    kefren 
    724       1.1    kefren void
    725       1.1    kefren send_hello_alarm(int unused)
    726       1.1    kefren {
    727       1.4    kefren 	struct ldp_peer *p, *ptmp;
    728       1.3    kefren 	struct hello_info *hi, *hinext;
    729       1.1    kefren 	time_t          t = time(NULL);
    730       1.1    kefren 	int             olderrno = errno;
    731       1.1    kefren 
    732      1.24    kefren 	if (may_connect == false)
    733      1.24    kefren 		may_connect = true;
    734       1.1    kefren 	/* Send hellos */
    735       1.1    kefren 	if (!(t % ldp_hello_time))
    736       1.1    kefren 		send_hello();
    737       1.1    kefren 
    738       1.1    kefren 	/* Timeout -- */
    739       1.1    kefren 	SLIST_FOREACH(p, &ldp_peer_head, peers)
    740       1.1    kefren 		p->timeout--;
    741       1.1    kefren 
    742       1.1    kefren 	/* Check for timeout */
    743       1.4    kefren 	SLIST_FOREACH_SAFE(p, &ldp_peer_head, peers, ptmp)
    744       1.1    kefren 		if (p->timeout < 1)
    745       1.1    kefren 			switch (p->state) {
    746       1.1    kefren 			case LDP_PEER_HOLDDOWN:
    747       1.1    kefren 				debugp("LDP holddown expired for peer %s\n",
    748       1.1    kefren 				       inet_ntoa(p->ldp_id));
    749       1.1    kefren 				ldp_peer_delete(p);
    750       1.4    kefren 				break;
    751       1.1    kefren 			case LDP_PEER_ESTABLISHED:
    752       1.1    kefren 			case LDP_PEER_CONNECTED:
    753       1.1    kefren 				send_notification(p, 0,
    754      1.23    kefren 				    NOTIF_FATAL|NOTIF_KEEP_ALIVE_TIMER_EXPIRED);
    755       1.1    kefren 				warnp("Keepalive expired for %s\n",
    756       1.1    kefren 				    inet_ntoa(p->ldp_id));
    757       1.1    kefren 				ldp_peer_holddown(p);
    758       1.1    kefren 				break;
    759       1.1    kefren 			}	/* switch */
    760       1.1    kefren 
    761       1.1    kefren 	/* send keepalives */
    762       1.3    kefren 	if (!(t % ldp_keepalive_time)) {
    763       1.1    kefren 		SLIST_FOREACH(p, &ldp_peer_head, peers)
    764       1.1    kefren 		    if (p->state == LDP_PEER_ESTABLISHED) {
    765       1.1    kefren 			debugp("Sending KeepAlive to %s\n",
    766       1.1    kefren 			    inet_ntoa(p->ldp_id));
    767       1.1    kefren 			keep_alive(p);
    768       1.1    kefren 		    }
    769       1.1    kefren 	}
    770       1.1    kefren 
    771      1.21    kefren 	/* Decrement and Check hello keepalives */
    772      1.21    kefren 	SLIST_FOREACH_SAFE(hi, &hello_info_head, infos, hinext) {
    773      1.10    kefren 		if (hi->keepalive != 0xFFFF)
    774      1.10    kefren 			hi->keepalive--;
    775       1.3    kefren 		if (hi->keepalive < 1)
    776       1.1    kefren 			SLIST_REMOVE(&hello_info_head, hi, hello_info, infos);
    777      1.21    kefren 	}
    778       1.1    kefren 
    779       1.1    kefren 	/* Set the alarm again and bail out */
    780       1.1    kefren 	alarm(1);
    781       1.1    kefren 	errno = olderrno;
    782       1.1    kefren }
    783       1.1    kefren 
    784      1.11     joerg static void
    785       1.1    kefren bail_out(int x)
    786       1.1    kefren {
    787       1.1    kefren 	ldp_peer_holddown_all();
    788       1.1    kefren 	flush_mpls_routes();
    789       1.1    kefren 	exit(0);
    790       1.1    kefren }
    791       1.1    kefren 
    792      1.29    kefren static void
    793      1.29    kefren print_info(int x)
    794      1.29    kefren {
    795      1.29    kefren 	printf("Info for %s\n-------\n", LDP_ID);
    796      1.29    kefren 	printf("Neighbours:\n");
    797      1.29    kefren 	show_neighbours(1, NULL);
    798      1.29    kefren 	printf("Bindings:\n");
    799      1.29    kefren 	show_bindings(1, NULL);
    800      1.29    kefren 	printf("Labels:\n");
    801      1.29    kefren 	show_labels(1, NULL);
    802      1.29    kefren 	printf("--------\n");
    803      1.29    kefren }
    804      1.29    kefren 
    805       1.1    kefren /*
    806       1.1    kefren  * The big poll that catches every single event
    807       1.1    kefren  * on every socket.
    808       1.1    kefren  */
    809       1.7    kefren int
    810       1.1    kefren the_big_loop(void)
    811       1.1    kefren {
    812       1.1    kefren 	int		sock_error;
    813       1.1    kefren 	uint32_t	i;
    814       1.1    kefren 	socklen_t       sock_error_size = sizeof(int);
    815       1.1    kefren 	struct ldp_peer *p;
    816       1.1    kefren 	struct com_sock	*cs;
    817       1.1    kefren 	struct pollfd	pfd[MAX_POLL_FDS];
    818      1.17    kefren 	struct hello_socket *hs;
    819      1.17    kefren 	nfds_t pollsum;
    820  1.33.8.1  pgoyette #ifdef RO_MSGFILTER
    821  1.33.8.1  pgoyette 	unsigned char msgfilter[] = {
    822  1.33.8.1  pgoyette 		RTM_NEWADDR, RTM_DELADDR,
    823  1.33.8.1  pgoyette 		RTM_ADD, RTM_DELETE, RTM_CHANGE,
    824  1.33.8.1  pgoyette 	};
    825  1.33.8.1  pgoyette #endif
    826       1.1    kefren 
    827      1.17    kefren 	assert(MAX_POLL_FDS > 5);
    828       1.7    kefren 
    829       1.1    kefren 	SLIST_INIT(&hello_info_head);
    830       1.1    kefren 
    831       1.1    kefren 	signal(SIGALRM, send_hello_alarm);
    832       1.1    kefren 	signal(SIGPIPE, SIG_IGN);
    833      1.10    kefren 	signal(SIGINT, bail_out);
    834       1.1    kefren 	signal(SIGTERM, bail_out);
    835      1.29    kefren 	signal(SIGINFO, print_info);
    836      1.17    kefren 
    837      1.17    kefren 	/* Send first hellos in 5 seconds. Avoid No hello notifications */
    838      1.24    kefren 	may_connect = false;
    839      1.17    kefren 	alarm(5);
    840       1.1    kefren 
    841       1.1    kefren 	route_socket = socket(PF_ROUTE, SOCK_RAW, AF_UNSPEC);
    842      1.29    kefren 	setsockopt(route_socket, SOL_SOCKET, SO_USELOOPBACK, &(int){0},
    843      1.29    kefren 		sizeof(int));
    844  1.33.8.1  pgoyette #ifdef RO_MSGFILTER
    845  1.33.8.1  pgoyette 	setsockopt(route_socket, PF_ROUTE, RO_MSGFILTER, &msgfilter,
    846  1.33.8.1  pgoyette 		sizeof(msgfilter));
    847  1.33.8.1  pgoyette #endif
    848       1.1    kefren 
    849       1.7    kefren 	sock_error = bind_current_routes();
    850       1.7    kefren 	if (sock_error != LDP_E_OK) {
    851       1.1    kefren 		fatalp("Cannot get current routes\n");
    852       1.7    kefren 		return sock_error;
    853       1.7    kefren 	}
    854       1.1    kefren 
    855       1.1    kefren 	for (;;) {
    856       1.1    kefren 		pfd[0].fd = ls;
    857       1.1    kefren 		pfd[0].events = POLLRDNORM;
    858       1.1    kefren 		pfd[0].revents = 0;
    859       1.1    kefren 
    860       1.1    kefren 		pfd[1].fd = route_socket;
    861       1.1    kefren 		pfd[1].events = POLLRDNORM;
    862       1.1    kefren 		pfd[1].revents = 0;
    863       1.1    kefren 
    864       1.1    kefren 		pfd[2].fd = command_socket;
    865       1.1    kefren 		pfd[2].events = POLLRDNORM;
    866       1.1    kefren 		pfd[2].revents = 0;
    867       1.1    kefren 
    868      1.17    kefren 		/* Hello sockets */
    869      1.17    kefren 		pollsum = 3;
    870      1.17    kefren 		SLIST_FOREACH(hs, &hello_socket_head, listentry) {
    871      1.17    kefren 			pfd[pollsum].fd = hs->socket;
    872      1.17    kefren 			pfd[pollsum].events = POLLIN;
    873      1.17    kefren 			pfd[pollsum].revents = 0;
    874      1.17    kefren 			pollsum++;
    875      1.17    kefren 		}
    876       1.1    kefren 
    877       1.1    kefren 		/* Command sockets */
    878       1.1    kefren 		for (i=0; i < MAX_COMMAND_SOCKETS; i++)
    879       1.1    kefren 			if (csockets[i].socket != -1) {
    880       1.7    kefren 				if (pollsum >= MAX_POLL_FDS)
    881       1.7    kefren 					break;
    882       1.1    kefren 				pfd[pollsum].fd = csockets[i].socket;
    883       1.1    kefren 				pfd[pollsum].events = POLLIN;
    884       1.1    kefren 				pfd[pollsum].revents = 0;
    885       1.1    kefren 				pollsum++;
    886       1.1    kefren 			}
    887       1.1    kefren 
    888       1.1    kefren 		/* LDP Peer sockets */
    889       1.1    kefren 		SLIST_FOREACH(p, &ldp_peer_head, peers) {
    890       1.1    kefren 			if (p->socket < 1)
    891       1.1    kefren 				continue;
    892       1.1    kefren 			switch (p->state) {
    893       1.1    kefren 			    case LDP_PEER_CONNECTED:
    894       1.1    kefren 			    case LDP_PEER_ESTABLISHED:
    895       1.7    kefren 				if (pollsum >= MAX_POLL_FDS)
    896       1.7    kefren 					break;
    897       1.1    kefren 				pfd[pollsum].fd = p->socket;
    898       1.1    kefren 				pfd[pollsum].events = POLLRDNORM;
    899       1.1    kefren 				pfd[pollsum].revents = 0;
    900       1.1    kefren 				pollsum++;
    901       1.1    kefren 				break;
    902       1.1    kefren 			    case LDP_PEER_CONNECTING:
    903       1.7    kefren 				if (pollsum >= MAX_POLL_FDS)
    904       1.7    kefren 					break;
    905       1.1    kefren 				pfd[pollsum].fd = p->socket;
    906       1.1    kefren 				pfd[pollsum].events = POLLWRNORM;
    907       1.1    kefren 				pfd[pollsum].revents = 0;
    908       1.1    kefren 				pollsum++;
    909       1.1    kefren 				break;
    910       1.1    kefren 			}
    911       1.1    kefren 		}
    912       1.1    kefren 
    913       1.1    kefren 		if (pollsum >= MAX_POLL_FDS) {
    914       1.1    kefren 			fatalp("Too many sockets. Increase MAX_POLL_FDS\n");
    915       1.7    kefren 			return LDP_E_TOO_MANY_FDS;
    916       1.8    kefren 		}
    917       1.1    kefren 		if (poll(pfd, pollsum, INFTIM) < 0) {
    918       1.1    kefren 			if (errno != EINTR)
    919       1.1    kefren 				fatalp("poll: %s", strerror(errno));
    920       1.1    kefren 			continue;
    921       1.8    kefren 		}
    922       1.1    kefren 
    923       1.1    kefren 		for (i = 0; i < pollsum; i++) {
    924       1.1    kefren 			if ((pfd[i].revents & POLLRDNORM) ||
    925       1.1    kefren 			    (pfd[i].revents & POLLIN)) {
    926       1.8    kefren 				if(pfd[i].fd == ls)
    927       1.1    kefren 					new_peer_connection();
    928       1.8    kefren 				else if (pfd[i].fd == route_socket) {
    929       1.1    kefren 					struct rt_msg xbuf;
    930      1.31    kefren 					int l, rtmlen = sizeof(xbuf);
    931      1.31    kefren 					/* Read at least rtm_msglen */
    932      1.31    kefren 					l = recv(route_socket, &xbuf,
    933      1.31    kefren 					  sizeof(u_short), MSG_PEEK);
    934      1.31    kefren 					if (l == sizeof(u_short))
    935      1.31    kefren 						rtmlen = xbuf.m_rtm.rtm_msglen;
    936       1.1    kefren 					do {
    937      1.31    kefren 						l = recv(route_socket, &xbuf,
    938      1.31    kefren 						    rtmlen, MSG_WAITALL);
    939       1.1    kefren 					} while ((l == -1) && (errno == EINTR));
    940       1.1    kefren 
    941       1.1    kefren 					if (l == -1)
    942       1.1    kefren 						break;
    943       1.1    kefren 
    944       1.8    kefren 					check_route(&xbuf, l);
    945       1.1    kefren 
    946      1.17    kefren 				} else if (is_hello_socket(pfd[i].fd) == 1) {
    947       1.1    kefren 					/* Receiving hello socket */
    948       1.1    kefren 					recv_pdu(pfd[i].fd);
    949       1.1    kefren 				} else if (pfd[i].fd == command_socket) {
    950       1.1    kefren 					command_accept(command_socket);
    951       1.1    kefren 				} else if ((cs = is_command_socket(pfd[i].fd))
    952       1.1    kefren 						!= NULL) {
    953       1.1    kefren 					command_dispatch(cs);
    954       1.1    kefren 				} else {
    955       1.1    kefren 					/* ldp peer socket */
    956       1.1    kefren 					p = get_ldp_peer_by_socket(pfd[i].fd);
    957       1.1    kefren 					if (p)
    958       1.1    kefren 						recv_session_pdu(p);
    959       1.1    kefren 				}
    960       1.1    kefren 			} else if(pfd[i].revents & POLLWRNORM) {
    961       1.1    kefren 				p = get_ldp_peer_by_socket(pfd[i].fd);
    962       1.1    kefren 				if (!p)
    963       1.1    kefren 					continue;
    964      1.30    kefren 				assert(p->state == LDP_PEER_CONNECTING);
    965       1.9    kefren 				if (getsockopt(pfd[i].fd, SOL_SOCKET, SO_ERROR,
    966       1.9    kefren 				    &sock_error, &sock_error_size) != 0 ||
    967       1.9    kefren 				    sock_error != 0) {
    968       1.9    kefren 					ldp_peer_holddown(p);
    969       1.9    kefren 					sock_error = 0;
    970       1.9    kefren 				} else {
    971       1.9    kefren 					p->state = LDP_PEER_CONNECTED;
    972       1.9    kefren 					send_initialize(p);
    973       1.1    kefren 				}
    974       1.1    kefren 			}
    975       1.1    kefren 		}
    976       1.1    kefren 
    977       1.1    kefren 		for (int ri = 0; ri < replay_index; ri++) {
    978       1.1    kefren 			debugp("Replaying: PID %d, SEQ %d\n",
    979       1.1    kefren 				replay_rt[ri].m_rtm.rtm_pid,
    980       1.1    kefren 				replay_rt[ri].m_rtm.rtm_seq);
    981       1.1    kefren 			check_route(&replay_rt[ri], sizeof(struct rt_msg));
    982       1.1    kefren                 }
    983       1.1    kefren 		replay_index = 0;
    984       1.1    kefren 	}	/* for (;;) */
    985       1.1    kefren }
    986       1.1    kefren 
    987       1.1    kefren void
    988       1.1    kefren new_peer_connection()
    989       1.1    kefren {
    990      1.25    kefren 	union sockunion peer_address, my_address;
    991      1.25    kefren 	struct in_addr *peer_ldp_id = NULL;
    992      1.25    kefren 	struct hello_info *hi;
    993      1.28    kefren 	int s;
    994       1.1    kefren 
    995      1.25    kefren 	s = accept(ls, &peer_address.sa,
    996      1.25    kefren 		& (socklen_t) { sizeof(union sockunion) } );
    997       1.1    kefren 	if (s < 0) {
    998       1.1    kefren 		fatalp("accept: %s", strerror(errno));
    999       1.1    kefren 		return;
   1000       1.1    kefren 	}
   1001       1.1    kefren 
   1002      1.25    kefren 	if (getsockname(s, &my_address.sa,
   1003      1.25    kefren 	    & (socklen_t) { sizeof(union sockunion) } )) {
   1004       1.1    kefren 		fatalp("new_peer_connection(): cannot getsockname\n");
   1005       1.1    kefren 		close(s);
   1006       1.1    kefren 		return;
   1007       1.1    kefren 	}
   1008      1.26    kefren 
   1009      1.25    kefren 	if (peer_address.sa.sa_family == AF_INET)
   1010      1.25    kefren 		peer_address.sin.sin_port = 0;
   1011      1.25    kefren 	else if (peer_address.sa.sa_family == AF_INET6)
   1012      1.25    kefren 		peer_address.sin6.sin6_port = 0;
   1013      1.25    kefren 	else {
   1014      1.25    kefren 		fatalp("Unknown peer address family\n");
   1015      1.25    kefren 		close(s);
   1016      1.25    kefren 		return;
   1017      1.25    kefren 	}
   1018       1.1    kefren 
   1019      1.26    kefren 	/* Already peered or in holddown ? */
   1020      1.26    kefren 	if (get_ldp_peer(&peer_address.sa) != NULL) {
   1021      1.26    kefren 		close(s);
   1022      1.26    kefren 		return;
   1023      1.26    kefren 	}
   1024      1.26    kefren 
   1025      1.26    kefren 	warnp("Accepted a connection from %s\n", satos(&peer_address.sa));
   1026      1.26    kefren 
   1027      1.25    kefren 	/* Verify if it should connect - XXX: no check for INET6 */
   1028      1.25    kefren 	if (peer_address.sa.sa_family == AF_INET &&
   1029      1.25    kefren 	    ntohl(peer_address.sin.sin_addr.s_addr) <
   1030      1.25    kefren 	    ntohl(my_address.sin.sin_addr.s_addr)) {
   1031       1.1    kefren 		fatalp("Peer %s: connect from lower ID\n",
   1032      1.25    kefren 		    satos(&peer_address.sa));
   1033       1.1    kefren 		close(s);
   1034       1.1    kefren 		return;
   1035       1.1    kefren 	}
   1036      1.25    kefren 
   1037      1.25    kefren 	/* Match hello info in order to get ldp_id */
   1038      1.25    kefren 	SLIST_FOREACH(hi, &hello_info_head, infos) {
   1039      1.25    kefren 		if (sockaddr_cmp(&peer_address.sa,
   1040      1.25    kefren 		    &hi->transport_address.sa) == 0) {
   1041      1.25    kefren 			peer_ldp_id = &hi->ldp_id;
   1042      1.25    kefren 			break;
   1043      1.25    kefren 		}
   1044      1.25    kefren 	}
   1045      1.25    kefren 	if (peer_ldp_id == NULL) {
   1046      1.29    kefren 		warnp("Got connection from %s, but no hello info exists\n",
   1047      1.25    kefren 		    satos(&peer_address.sa));
   1048      1.25    kefren 		close(s);
   1049      1.25    kefren 		return;
   1050      1.25    kefren 	} else
   1051      1.25    kefren 		ldp_peer_new(peer_ldp_id, &peer_address.sa, NULL,
   1052      1.25    kefren 		    ldp_holddown_time, s);
   1053       1.1    kefren 
   1054       1.1    kefren }
   1055       1.1    kefren 
   1056       1.1    kefren void
   1057      1.28    kefren send_initialize(const struct ldp_peer * p)
   1058       1.1    kefren {
   1059       1.1    kefren 	struct init_tlv ti;
   1060       1.1    kefren 
   1061       1.1    kefren 	ti.type = htons(LDP_INITIALIZE);
   1062       1.1    kefren 	ti.length = htons(sizeof(struct init_tlv) - TLV_TYPE_LENGTH);
   1063       1.1    kefren 	ti.messageid = htonl(get_message_id());
   1064       1.1    kefren 	ti.cs_type = htons(TLV_COMMON_SESSION);
   1065       1.1    kefren 	ti.cs_len = htons(CS_LEN);
   1066       1.1    kefren 	ti.cs_version = htons(LDP_VERSION);
   1067       1.3    kefren 	ti.cs_keepalive = htons(2 * ldp_keepalive_time);
   1068       1.1    kefren 	ti.cs_adpvlim = 0;
   1069       1.1    kefren 	ti.cs_maxpdulen = htons(MAX_PDU_SIZE);
   1070       1.1    kefren 	ti.cs_peeraddress.s_addr = p->ldp_id.s_addr;
   1071       1.1    kefren 	ti.cs_peeraddrspace = 0;
   1072       1.1    kefren 
   1073       1.1    kefren 	send_tlv(p, (struct tlv *) (void *) &ti);
   1074       1.1    kefren }
   1075       1.1    kefren 
   1076       1.1    kefren void
   1077      1.28    kefren keep_alive(const struct ldp_peer * p)
   1078       1.1    kefren {
   1079       1.1    kefren 	struct ka_tlv   kt;
   1080       1.1    kefren 
   1081       1.1    kefren 	kt.type = htons(LDP_KEEPALIVE);
   1082       1.1    kefren 	kt.length = htons(sizeof(kt.messageid));
   1083       1.1    kefren 	kt.messageid = htonl(get_message_id());
   1084       1.1    kefren 
   1085       1.1    kefren 	send_tlv(p, (struct tlv *) (void *) &kt);
   1086       1.1    kefren }
   1087       1.1    kefren 
   1088      1.29    kefren /*
   1089      1.29    kefren  * Process a message received from a peer
   1090      1.29    kefren  */
   1091      1.29    kefren void
   1092       1.1    kefren recv_session_pdu(struct ldp_peer * p)
   1093       1.1    kefren {
   1094       1.1    kefren 	struct ldp_pdu *rpdu;
   1095       1.1    kefren 	struct address_tlv *atlv;
   1096       1.1    kefren 	struct al_tlv  *altlv;
   1097       1.1    kefren 	struct init_tlv	*itlv;
   1098       1.1    kefren 	struct label_map_tlv *lmtlv;
   1099       1.1    kefren 	struct fec_tlv *fectlv;
   1100       1.6     joerg 	struct label_tlv *labeltlv;
   1101       1.1    kefren 	struct notification_tlv *nottlv;
   1102       1.1    kefren 	struct hello_info *hi;
   1103       1.1    kefren 
   1104       1.1    kefren 	int             c;
   1105       1.1    kefren 	int32_t         wo = 0;
   1106       1.1    kefren 	struct tlv     *ttmp;
   1107       1.1    kefren 	unsigned char   recvspace[MAX_PDU_SIZE];
   1108       1.1    kefren 
   1109       1.1    kefren 	memset(recvspace, 0, MAX_PDU_SIZE);
   1110       1.1    kefren 
   1111      1.30    kefren 	do {
   1112      1.30    kefren 		c = recv(p->socket, (void *) recvspace, MAX_PDU_SIZE, MSG_PEEK);
   1113      1.30    kefren 	} while (c == -1 && errno == EINTR);
   1114       1.1    kefren 
   1115       1.1    kefren 	debugp("Ready to read %d bytes\n", c);
   1116       1.1    kefren 
   1117       1.1    kefren 	if (c < 1) {		/* Session closed */
   1118       1.1    kefren 		warnp("Error in connection with %s\n", inet_ntoa(p->ldp_id));
   1119       1.1    kefren 		ldp_peer_holddown(p);
   1120       1.1    kefren 		return;
   1121       1.1    kefren 	}
   1122       1.1    kefren 	if (c > MAX_PDU_SIZE) {
   1123       1.1    kefren 		debugp("Incoming PDU size exceeds MAX_PDU_SIZE !\n");
   1124       1.1    kefren 		return;
   1125       1.1    kefren 	}
   1126       1.1    kefren 	if (c < MIN_PDU_SIZE) {
   1127      1.28    kefren 		debugp("PDU too small received from peer %s\n",
   1128      1.28    kefren 		    inet_ntoa(p->ldp_id));
   1129       1.1    kefren 		return;
   1130       1.1    kefren 	}
   1131       1.1    kefren 	rpdu = (struct ldp_pdu *) recvspace;
   1132      1.30    kefren 	do {
   1133      1.30    kefren 		c = recv(p->socket, (void *) recvspace,
   1134      1.30    kefren 		    ntohs(rpdu->length) + PDU_VER_LENGTH, MSG_WAITALL);
   1135      1.30    kefren 	} while (c == -1 && errno == EINTR);
   1136       1.1    kefren 
   1137      1.30    kefren 	/* sanity check */
   1138       1.1    kefren 	if (check_recv_pdu(p, rpdu, c) != 0)
   1139       1.1    kefren 		return;
   1140       1.1    kefren 
   1141       1.1    kefren 	debugp("Read %d bytes, PDU size: %d bytes\n", c, ntohs(rpdu->length));
   1142       1.1    kefren 	wo = sizeof(struct ldp_pdu);
   1143       1.1    kefren 
   1144       1.1    kefren 	while (wo + TLV_TYPE_LENGTH < (uint)c) {
   1145       1.1    kefren 
   1146       1.1    kefren 		ttmp = (struct tlv *) (&recvspace[wo]);
   1147       1.1    kefren 
   1148       1.1    kefren 		if ((ntohs(ttmp->type) != LDP_KEEPALIVE) &&
   1149       1.1    kefren 		    (ntohs(ttmp->type) != LDP_LABEL_MAPPING)) {
   1150       1.1    kefren 			debugp("Got Type: 0x%.4X (Length: %d) from %s\n",
   1151       1.1    kefren 			    ntohs(ttmp->type), ntohs(ttmp->length),
   1152       1.1    kefren 			    inet_ntoa(p->ldp_id));
   1153       1.1    kefren 		} else
   1154       1.1    kefren 			debugp("Got Type: 0x%.4X (Length: %d) from %s\n",
   1155       1.1    kefren 			    ntohs(ttmp->type), ntohs(ttmp->length),
   1156       1.1    kefren 			    inet_ntoa(p->ldp_id));
   1157       1.1    kefren 
   1158       1.1    kefren 		/* Should we get the message ? */
   1159       1.1    kefren 		if (p->state != LDP_PEER_ESTABLISHED &&
   1160       1.1    kefren 		    ntohs(ttmp->type) != LDP_INITIALIZE &&
   1161      1.22    kefren 		    ntohs(ttmp->type) != LDP_KEEPALIVE &&
   1162      1.22    kefren 		    ntohs(ttmp->type) != LDP_NOTIFICATION)
   1163       1.1    kefren 			break;
   1164       1.1    kefren 		/* The big switch */
   1165       1.1    kefren 		switch (ntohs(ttmp->type)) {
   1166       1.1    kefren 		case LDP_INITIALIZE:
   1167       1.1    kefren 			itlv = (struct init_tlv *)ttmp;
   1168       1.1    kefren 			/* Check size */
   1169       1.1    kefren 			if (ntohs(itlv->length) <
   1170       1.1    kefren 			    sizeof(struct init_tlv) - TLV_TYPE_LENGTH) {
   1171      1.17    kefren 				debugp("Bad size\n");
   1172       1.1    kefren 				send_notification(p, 0,
   1173       1.1    kefren 				    NOTIF_BAD_PDU_LEN | NOTIF_FATAL);
   1174       1.1    kefren 				ldp_peer_holddown(p);
   1175       1.1    kefren 				break;
   1176       1.1    kefren 			}
   1177       1.1    kefren 			/* Check version */
   1178       1.1    kefren 			if (ntohs(itlv->cs_version) != LDP_VERSION) {
   1179      1.17    kefren 				debugp("Bad version");
   1180       1.1    kefren 				send_notification(p, ntohl(itlv->messageid),
   1181       1.1    kefren 					NOTIF_BAD_LDP_VER | NOTIF_FATAL);
   1182       1.1    kefren 				ldp_peer_holddown(p);
   1183       1.1    kefren 				break;
   1184       1.1    kefren 			}
   1185       1.1    kefren 			/* Check if we got any hello from this one */
   1186       1.1    kefren 			SLIST_FOREACH(hi, &hello_info_head, infos)
   1187       1.1    kefren 				if (hi->ldp_id.s_addr == rpdu->ldp_id.s_addr)
   1188       1.1    kefren 					break;
   1189       1.1    kefren 			if (hi == NULL) {
   1190      1.17    kefren 			    debugp("No hello. Moving peer to holddown\n");
   1191       1.1    kefren 			    send_notification(p, ntohl(itlv->messageid),
   1192       1.1    kefren 				NOTIF_SESSION_REJECTED_NO_HELLO | NOTIF_FATAL);
   1193       1.1    kefren 			    ldp_peer_holddown(p);
   1194       1.1    kefren 			    break;
   1195       1.1    kefren 			}
   1196       1.1    kefren 
   1197       1.1    kefren 			if (!p->master) {
   1198      1.27    kefren 				send_initialize(p);
   1199       1.1    kefren 				keep_alive(p);
   1200       1.1    kefren 			} else {
   1201       1.1    kefren 				p->state = LDP_PEER_ESTABLISHED;
   1202       1.1    kefren 				p->established_t = time(NULL);
   1203       1.1    kefren 				keep_alive(p);
   1204       1.1    kefren 
   1205       1.1    kefren 				/*
   1206       1.1    kefren 				 * Recheck here ldp id because we accepted
   1207       1.1    kefren 				 * connection without knowing who is it for sure
   1208       1.1    kefren 				 */
   1209       1.1    kefren 				p->ldp_id.s_addr = rpdu->ldp_id.s_addr;
   1210       1.1    kefren 
   1211       1.1    kefren 				fatalp("LDP neighbour %s is UP\n",
   1212       1.1    kefren 				    inet_ntoa(p->ldp_id));
   1213       1.1    kefren 				mpls_add_ldp_peer(p);
   1214       1.1    kefren 				send_addresses(p);
   1215       1.1    kefren 				send_all_bindings(p);
   1216       1.1    kefren 			}
   1217       1.1    kefren 			break;
   1218       1.1    kefren 		case LDP_KEEPALIVE:
   1219       1.1    kefren 			if ((p->state == LDP_PEER_CONNECTED) && (!p->master)) {
   1220       1.1    kefren 				p->state = LDP_PEER_ESTABLISHED;
   1221       1.1    kefren 				p->established_t = time(NULL);
   1222       1.1    kefren 				fatalp("LDP neighbour %s is UP\n",
   1223       1.1    kefren 				    inet_ntoa(p->ldp_id));
   1224       1.1    kefren 				mpls_add_ldp_peer(p);
   1225       1.1    kefren 				send_addresses(p);
   1226       1.1    kefren 				send_all_bindings(p);
   1227       1.1    kefren 			}
   1228       1.1    kefren 			p->timeout = p->holdtime;
   1229       1.1    kefren 			break;
   1230       1.1    kefren 		case LDP_ADDRESS:
   1231       1.1    kefren 			/* Add peer addresses */
   1232       1.1    kefren 			atlv = (struct address_tlv *) ttmp;
   1233       1.1    kefren 			altlv = (struct al_tlv *) (&atlv[1]);
   1234       1.1    kefren 			add_ifaddresses(p, altlv);
   1235      1.29    kefren 			/*
   1236      1.29    kefren 			 * try to see if we have labels with null peer that
   1237      1.29    kefren 			 * would match the new peer
   1238      1.29    kefren 			 */
   1239      1.29    kefren 			label_check_assoc(p);
   1240       1.1    kefren 			print_bounded_addresses(p);
   1241       1.1    kefren 			break;
   1242       1.1    kefren 		case LDP_ADDRESS_WITHDRAW:
   1243       1.1    kefren 			atlv = (struct address_tlv *) ttmp;
   1244       1.1    kefren 			altlv = (struct al_tlv *) (&atlv[1]);
   1245       1.1    kefren 			del_ifaddresses(p, altlv);
   1246       1.1    kefren 			break;
   1247       1.1    kefren 		case LDP_LABEL_MAPPING:
   1248       1.1    kefren 			lmtlv = (struct label_map_tlv *) ttmp;
   1249       1.1    kefren 			fectlv = (struct fec_tlv *) (&lmtlv[1]);
   1250       1.1    kefren 			labeltlv = (struct label_tlv *)((unsigned char *)fectlv
   1251       1.1    kefren 				+ ntohs(fectlv->length) + TLV_TYPE_LENGTH);
   1252       1.1    kefren 			map_label(p, fectlv, labeltlv);
   1253       1.1    kefren 			break;
   1254       1.1    kefren 		case LDP_LABEL_REQUEST:
   1255       1.1    kefren 			lmtlv = (struct label_map_tlv *) ttmp;
   1256       1.1    kefren 			fectlv = (struct fec_tlv *) (&lmtlv[1]);
   1257       1.1    kefren 			switch (request_respond(p, lmtlv, fectlv)) {
   1258       1.1    kefren 			case LDP_E_BAD_FEC:
   1259       1.1    kefren 				send_notification(p, ntohl(lmtlv->messageid),
   1260       1.1    kefren 					NOTIF_UNKNOWN_TLV);
   1261       1.1    kefren 				break;
   1262       1.1    kefren 			case LDP_E_BAD_AF:
   1263       1.1    kefren 				send_notification(p, ntohl(lmtlv->messageid),
   1264       1.1    kefren 					NOTIF_UNSUPPORTED_AF);
   1265       1.1    kefren 				break;
   1266       1.1    kefren 			case LDP_E_NO_SUCH_ROUTE:
   1267       1.1    kefren 				send_notification(p, ntohl(lmtlv->messageid),
   1268       1.1    kefren 					NOTIF_NO_ROUTE);
   1269       1.1    kefren 				break;
   1270       1.1    kefren 			}
   1271       1.1    kefren 			break;
   1272       1.1    kefren 		case LDP_LABEL_WITHDRAW:
   1273       1.1    kefren 			lmtlv = (struct label_map_tlv *) ttmp;
   1274       1.1    kefren 			fectlv = (struct fec_tlv *) (&lmtlv[1]);
   1275       1.1    kefren 			if (withdraw_label(p, fectlv) == LDP_E_OK) {
   1276       1.1    kefren 				/* Send RELEASE */
   1277       1.1    kefren 				prepare_release(ttmp);
   1278       1.1    kefren 				send_tlv(p, ttmp);
   1279       1.1    kefren 				}
   1280       1.1    kefren 			break;
   1281       1.1    kefren 		case LDP_LABEL_RELEASE:
   1282       1.1    kefren 			/*
   1283       1.1    kefren 			 * XXX: we need to make a timed queue...
   1284       1.1    kefren 			 * For now I just assume peers are processing messages
   1285       1.1    kefren 			 * correctly so I just ignore confirmations
   1286       1.1    kefren 			 */
   1287       1.1    kefren 			wo = -1;	/* Ignore rest of message */
   1288       1.1    kefren 			break;
   1289       1.1    kefren 		case LDP_LABEL_ABORT:
   1290       1.1    kefren 		/* XXX: For now I pretend I can process everything
   1291      1.12    kefren 		 * RFC 5036, Section 3.5.9.1
   1292       1.1    kefren 		 * If an LSR receives a Label Abort Request Message after it
   1293       1.1    kefren 		 * has responded to the Label Request in question with a Label
   1294       1.1    kefren 		 * Mapping message or a Notification message, it ignores the
   1295       1.1    kefren 		 * abort request.
   1296       1.1    kefren 		 */
   1297       1.1    kefren 			wo = -1;
   1298       1.1    kefren 			break;
   1299       1.1    kefren 		case LDP_NOTIFICATION:
   1300       1.1    kefren 			nottlv = (struct notification_tlv *) ttmp;
   1301       1.1    kefren 			nottlv->st_code = ntohl(nottlv->st_code);
   1302       1.1    kefren 			fatalp("Got notification 0x%X from peer %s\n",
   1303       1.1    kefren 			    nottlv->st_code, inet_ntoa(p->ldp_id));
   1304       1.1    kefren 			if (nottlv->st_code >> 31) {
   1305       1.1    kefren 				fatalp("LDP peer %s signalized %s\n",
   1306       1.1    kefren 				    inet_ntoa(p->ldp_id),
   1307       1.1    kefren 				    NOTIF_STR[(nottlv->st_code << 1) >> 1]);
   1308       1.1    kefren 				ldp_peer_holddown(p);
   1309       1.1    kefren 				wo = -1;
   1310       1.1    kefren 			}
   1311       1.1    kefren 			break;
   1312       1.1    kefren 		case LDP_HELLO:
   1313       1.1    kefren 			/* No hellos should came on tcp session */
   1314       1.1    kefren 			wo = -1;
   1315       1.1    kefren 			break;
   1316       1.1    kefren 		default:
   1317       1.1    kefren 			warnp("Unknown TLV received from %s\n",
   1318       1.1    kefren 			    inet_ntoa(p->ldp_id));
   1319       1.1    kefren 			debug_tlv(ttmp);
   1320       1.1    kefren 			wo = -1;/* discard the rest of the message */
   1321       1.1    kefren 			break;
   1322       1.1    kefren 		}
   1323       1.1    kefren 		if (wo < 0) {
   1324       1.1    kefren 			debugp("Discarding the rest of the message\n");
   1325       1.1    kefren 			break;
   1326       1.1    kefren 		} else {
   1327       1.1    kefren 			wo += ntohs(ttmp->length) + TLV_TYPE_LENGTH;
   1328       1.1    kefren 			debugp("WORKED ON %u bytes (Left %d)\n", wo, c - wo);
   1329       1.1    kefren 		}
   1330       1.1    kefren 	}			/* while */
   1331       1.1    kefren 
   1332       1.1    kefren }
   1333       1.1    kefren 
   1334       1.1    kefren /* Sends a pdu, tlv pair to a connected peer */
   1335       1.1    kefren int
   1336      1.28    kefren send_message(const struct ldp_peer * p, const struct ldp_pdu * pdu,
   1337      1.28    kefren 	const struct tlv * t)
   1338       1.1    kefren {
   1339       1.1    kefren 	unsigned char   sendspace[MAX_PDU_SIZE];
   1340       1.1    kefren 
   1341       1.1    kefren 	/* Check if peer is connected */
   1342       1.1    kefren 	switch (p->state) {
   1343       1.1    kefren 	case LDP_PEER_CONNECTED:
   1344       1.1    kefren 	case LDP_PEER_ESTABLISHED:
   1345       1.1    kefren 		break;
   1346       1.1    kefren 	default:
   1347       1.1    kefren 		return -1;
   1348       1.1    kefren 	}
   1349       1.1    kefren 
   1350       1.1    kefren 	/* Check length validity first */
   1351       1.1    kefren 	if (ntohs(pdu->length) !=
   1352       1.1    kefren 	    ntohs(t->length) + TLV_TYPE_LENGTH + PDU_PAYLOAD_LENGTH) {
   1353       1.1    kefren 		fatalp("LDP: TLV - PDU incompability. Message discarded\n");
   1354       1.1    kefren 		fatalp("LDP: TLV len %d - PDU len %d\n", ntohs(t->length),
   1355       1.1    kefren 		    ntohs(pdu->length));
   1356       1.1    kefren 		return -1;
   1357       1.1    kefren 	}
   1358       1.1    kefren 	if (ntohs(t->length) + PDU_VER_LENGTH > MAX_PDU_SIZE) {
   1359       1.1    kefren 		fatalp("Message to large discarded\n");
   1360       1.1    kefren 		return -1;
   1361       1.1    kefren 	}
   1362       1.1    kefren 	/* Arrange them in a buffer and send */
   1363       1.1    kefren 	memcpy(sendspace, pdu, sizeof(struct ldp_pdu));
   1364       1.1    kefren 	memcpy(sendspace + sizeof(struct ldp_pdu), t,
   1365       1.1    kefren 	    ntohs(t->length) + TLV_TYPE_LENGTH);
   1366       1.1    kefren 
   1367       1.1    kefren 	/* Report keepalives only for DEBUG */
   1368       1.1    kefren 	if ((ntohs(t->type) != 0x201) && (ntohs(t->type) != 0x400)) {
   1369       1.1    kefren 		debugp("Sending message type 0x%.4X to %s (size: %d)\n",
   1370       1.1    kefren 		    ntohs(t->type), inet_ntoa(p->ldp_id), ntohs(t->length));
   1371       1.1    kefren 	} else
   1372       1.1    kefren 	/* downgraded from warnp to debugp for now */
   1373       1.1    kefren 		debugp("Sending message type 0x%.4X to %s (size: %d)\n",
   1374       1.1    kefren 		    ntohs(t->type), inet_ntoa(p->ldp_id), ntohs(t->length));
   1375       1.1    kefren 
   1376       1.1    kefren 	/* Send it finally */
   1377       1.1    kefren 	return send(p->socket, sendspace,
   1378       1.1    kefren 		ntohs(pdu->length) + PDU_VER_LENGTH, 0);
   1379       1.1    kefren }
   1380       1.1    kefren 
   1381       1.1    kefren /*
   1382       1.1    kefren  * Encapsulates TLV into a PDU and sends it to a peer
   1383       1.1    kefren  */
   1384       1.1    kefren int
   1385      1.28    kefren send_tlv(const struct ldp_peer * p, const struct tlv * t)
   1386       1.1    kefren {
   1387       1.1    kefren 	struct ldp_pdu  pdu;
   1388       1.1    kefren 
   1389       1.1    kefren 	pdu.version = htons(LDP_VERSION);
   1390       1.1    kefren 	inet_aton(LDP_ID, &pdu.ldp_id);
   1391       1.1    kefren 	pdu.label_space = 0;
   1392       1.1    kefren 	pdu.length = htons(ntohs(t->length) + TLV_TYPE_LENGTH +
   1393       1.1    kefren 		PDU_PAYLOAD_LENGTH);
   1394       1.1    kefren 
   1395       1.1    kefren 	return send_message(p, &pdu, t);
   1396       1.1    kefren }
   1397       1.1    kefren 
   1398       1.1    kefren 
   1399       1.1    kefren int
   1400      1.28    kefren send_addresses(const struct ldp_peer * p)
   1401       1.1    kefren {
   1402       1.1    kefren 	struct address_list_tlv *t;
   1403       1.1    kefren 	int             ret;
   1404       1.1    kefren 
   1405       1.1    kefren 	t = build_address_list_tlv();
   1406       1.1    kefren 
   1407       1.1    kefren 	ret = send_tlv(p, (struct tlv *) t);
   1408       1.1    kefren 	free(t);
   1409       1.1    kefren 	return ret;
   1410       1.1    kefren 
   1411       1.1    kefren }
   1412