OSPF: Use message authentication interface
Based on former commit from Pavel Tvrdik
This commit is contained in:
parent
390601f038
commit
29239ba2bb
4 changed files with 94 additions and 73 deletions
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@ -42,6 +42,20 @@ ospf_iface_finish(void)
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if ((ip->autype == OSPF_AUTH_NONE) && (ip->passwords != NULL))
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log(L_WARN "Password option without authentication option does not make sense");
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if (ip->passwords)
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{
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struct password_item *pass;
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WALK_LIST(pass, *ip->passwords)
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{
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if (pass->alg && (ip->autype != OSPF_AUTH_CRYPT))
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cf_error("Password algorithm option requires cryptographic authentication");
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/* Set default OSPF crypto algorithms */
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if (!pass->alg && (ip->autype == OSPF_AUTH_CRYPT))
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pass->alg = ospf_cfg_is_v2() ? ALG_MD5 : ALG_HMAC_SHA256;
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}
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}
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}
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static void
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@ -9,6 +9,7 @@
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*/
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#include "ospf.h"
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#include "nest/password.h"
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const char *ospf_is_names[] = {
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@ -51,6 +52,18 @@ ifa_tx_length(struct ospf_iface *ifa)
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return ifa->cf->tx_length ?: ifa->iface->mtu;
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}
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static inline uint
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ifa_tx_hdrlen(struct ospf_iface *ifa)
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{
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uint hlen = SIZE_OF_IP_HEADER;
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/* Relevant just for OSPFv2 */
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if (ifa->autype == OSPF_AUTH_CRYPT)
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hlen += max_mac_length(ifa->passwords);
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return hlen;
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}
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static inline uint
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ifa_bufsize(struct ospf_iface *ifa)
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{
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@ -67,11 +80,7 @@ ifa_flood_queue_size(struct ospf_iface *ifa)
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int
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ospf_iface_assure_bufsize(struct ospf_iface *ifa, uint plen)
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{
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plen += SIZE_OF_IP_HEADER;
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/* This is relevant just for OSPFv2 */
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if (ifa->autype == OSPF_AUTH_CRYPT)
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plen += OSPF_AUTH_CRYPT_SIZE;
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plen += ifa->tx_hdrlen;
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if (plen <= ifa->sk->tbsize)
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return 0;
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@ -574,6 +583,7 @@ ospf_iface_new(struct ospf_area *oa, struct ifa *addr, struct ospf_iface_patt *i
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ifa->stub = ospf_iface_stubby(ip, addr);
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ifa->ioprob = OSPF_I_OK;
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ifa->tx_length = ifa_tx_length(ifa);
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ifa->tx_hdrlen = ifa_tx_hdrlen(ifa);
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ifa->check_link = ip->check_link;
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ifa->ecmp_weight = ip->ecmp_weight;
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ifa->check_ttl = (ip->ttl_security == 1);
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@ -684,6 +694,7 @@ ospf_iface_new_vlink(struct ospf_proto *p, struct ospf_iface_patt *ip)
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ifa->deadint = ip->deadint;
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ifa->inftransdelay = ip->inftransdelay;
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ifa->tx_length = ospf_is_v2(p) ? IP4_MIN_MTU : IP6_MIN_MTU;
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ifa->tx_hdrlen = ifa_tx_hdrlen(ifa);
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ifa->autype = ip->autype;
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ifa->passwords = ip->passwords;
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ifa->instance_id = ip->instance_id;
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@ -824,6 +835,9 @@ ospf_iface_reconfigure(struct ospf_iface *ifa, struct ospf_iface_patt *new)
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/* Update passwords */
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ifa->passwords = new->passwords;
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/* Update header length */
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ifa->tx_hdrlen = ifa_tx_hdrlen(ifa);
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/* Remaining options are just for proper interfaces */
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if (ifa->type == OSPF_IT_VLINK)
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return 1;
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@ -180,11 +180,7 @@ struct ospf_iface_patt
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#define OSPF_RXBUF_MINSIZE 256 /* Minimal allowed size */
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u8 instance_id;
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u8 autype; /* Not really used in OSPFv3 */
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#define OSPF_AUTH_NONE 0
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#define OSPF_AUTH_SIMPLE 1
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#define OSPF_AUTH_CRYPT 2
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#define OSPF_AUTH_CRYPT_SIZE 16
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u8 autype; /* OSPF_AUTH_*, not really used in OSPFv3 */
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u8 strictnbma;
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u8 check_link;
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u8 ecmp_weight;
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@ -334,6 +330,7 @@ struct ospf_iface
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u8 marked; /* Used in OSPF reconfigure, 2 for force restart */
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u16 rxbuf; /* Buffer size */
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u16 tx_length; /* Soft TX packet length limit, usually MTU */
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u16 tx_hdrlen; /* Expected packet header length, less than tx_length */
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u8 check_link; /* Whether iface link change is used */
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u8 ecmp_weight; /* Weight used for ECMP */
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u8 link_lsa_suppression; /* Suppression of Link-LSA origination */
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@ -424,6 +421,11 @@ struct ospf_neighbor
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#define ISM_UNLOOP 5 /* Link up */
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#define ISM_DOWN 6 /* Interface down */
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/* OSPF authentication types */
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#define OSPF_AUTH_NONE 0
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#define OSPF_AUTH_SIMPLE 1
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#define OSPF_AUTH_CRYPT 2
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/* OSPF neighbor states */
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#define NEIGHBOR_DOWN 0
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@ -455,7 +457,6 @@ struct ospf_neighbor
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#define TRANS_WAIT 2 /* Waiting before the end of translation */
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/* Generic option flags */
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#define OPT_V6 0x01 /* OSPFv3, LSA relevant for IPv6 routing calculation */
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#define OPT_E 0x02 /* Related to AS-external LSAs */
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@ -491,7 +492,7 @@ struct ospf_packet
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u8 autype; /* Undefined for OSPFv3 */
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};
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struct ospf_md5
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struct ospf_auth_crypto
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{
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u16 zero;
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u8 keyid;
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@ -502,7 +503,7 @@ struct ospf_md5
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union ospf_auth
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{
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u8 password[8];
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struct ospf_md5 md5;
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struct ospf_auth_crypto c32;
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};
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/* Packet types */
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@ -896,7 +897,6 @@ void ospf_sh_neigh_info(struct ospf_neighbor *n);
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/* packet.c */
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void ospf_pkt_fill_hdr(struct ospf_iface *ifa, void *buf, u8 h_type);
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uint ospf_pkt_maxsize(struct ospf_iface *ifa);
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int ospf_rx_hook(sock * sk, uint size);
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// void ospf_tx_hook(sock * sk);
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void ospf_err_hook(sock * sk, int err);
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@ -905,6 +905,9 @@ void ospf_send_to(struct ospf_iface *ifa, ip_addr ip);
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void ospf_send_to_agt(struct ospf_iface *ifa, u8 state);
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void ospf_send_to_bdr(struct ospf_iface *ifa);
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static inline uint ospf_pkt_maxsize(struct ospf_iface *ifa)
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{ return ifa->tx_length - ifa->tx_hdrlen; }
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static inline void ospf_send_to_all(struct ospf_iface *ifa)
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{ ospf_send_to(ifa, ifa->all_routers); }
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@ -32,25 +32,12 @@ ospf_pkt_fill_hdr(struct ospf_iface *ifa, void *buf, u8 h_type)
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pkt->autype = ifa->autype;
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}
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uint
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ospf_pkt_maxsize(struct ospf_iface *ifa)
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{
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uint headers = SIZE_OF_IP_HEADER;
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/* Relevant just for OSPFv2 */
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if (ifa->autype == OSPF_AUTH_CRYPT)
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headers += OSPF_AUTH_CRYPT_SIZE;
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return ifa->tx_length - headers;
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}
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/* We assume OSPFv2 in ospf_pkt_finalize() */
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static void
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ospf_pkt_finalize(struct ospf_iface *ifa, struct ospf_packet *pkt)
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ospf_pkt_finalize(struct ospf_iface *ifa, struct ospf_packet *pkt, uint *plen)
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{
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struct password_item *passwd = NULL;
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struct password_item *pass = NULL;
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union ospf_auth *auth = (void *) (pkt + 1);
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uint plen = ntohs(pkt->length);
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pkt->checksum = 0;
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pkt->autype = ifa->autype;
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@ -62,25 +49,25 @@ ospf_pkt_finalize(struct ospf_iface *ifa, struct ospf_packet *pkt)
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switch (ifa->autype)
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{
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case OSPF_AUTH_SIMPLE:
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passwd = password_find(ifa->passwords, 1);
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if (!passwd)
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pass = password_find(ifa->passwords, 1);
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if (!pass)
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{
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log(L_ERR "No suitable password found for authentication");
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return;
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}
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strncpy(auth->password, passwd->password, sizeof(auth->password));
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strncpy(auth->password, pass->password, sizeof(auth->password));
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case OSPF_AUTH_NONE:
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{
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void *body = (void *) (auth + 1);
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uint blen = plen - sizeof(struct ospf_packet) - sizeof(union ospf_auth);
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uint blen = *plen - sizeof(struct ospf_packet) - sizeof(union ospf_auth);
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pkt->checksum = ipsum_calculate(pkt, sizeof(struct ospf_packet), body, blen, NULL);
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}
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break;
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case OSPF_AUTH_CRYPT:
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passwd = password_find(ifa->passwords, 0);
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if (!passwd)
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pass = password_find(ifa->passwords, 0);
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if (!pass)
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{
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log(L_ERR "No suitable password found for authentication");
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return;
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@ -101,20 +88,25 @@ ospf_pkt_finalize(struct ospf_iface *ifa, struct ospf_packet *pkt)
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ifa->csn_use = now;
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auth->md5.zero = 0;
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auth->md5.keyid = passwd->id;
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auth->md5.len = OSPF_AUTH_CRYPT_SIZE;
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auth->md5.csn = htonl(ifa->csn);
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uint auth_len = mac_type_length(pass->alg);
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byte *auth_tail = ((byte *) pkt + *plen);
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*plen += auth_len;
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void *tail = ((void *) pkt) + plen;
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char password[OSPF_AUTH_CRYPT_SIZE];
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strncpy(password, passwd->password, sizeof(password));
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ASSERT(*plen < ifa->sk->tbsize);
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struct hash_context ctx;
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md5_init(&ctx);
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md5_update(&ctx, (char *) pkt, plen);
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md5_update(&ctx, password, OSPF_AUTH_CRYPT_SIZE);
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memcpy((byte *) tail, md5_final(&ctx), MD5_SIZE);
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auth->c32.zero = 0;
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auth->c32.keyid = pass->id;
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auth->c32.len = auth_len;
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auth->c32.csn = htonl(ifa->csn);
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/* Append key for keyed hash, append padding for HMAC (RFC 5709 3.3) */
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if (pass->alg < ALG_HMAC)
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strncpy(auth_tail, pass->password, auth_len);
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else
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memset32(auth_tail, HMAC_MAGIC, auth_len / 4);
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mac_fill(pass->alg, pass->password, pass->length,
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(byte *) pkt, *plen, auth_tail);
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break;
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default:
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@ -155,13 +147,19 @@ ospf_pkt_checkauth(struct ospf_neighbor *n, struct ospf_iface *ifa, struct ospf_
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return 1;
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case OSPF_AUTH_CRYPT:
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if (auth->md5.len != OSPF_AUTH_CRYPT_SIZE)
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DROP("invalid MD5 digest length", auth->md5.len);
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pass = password_find_by_id(ifa->passwords, auth->c32.keyid);
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if (!pass)
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DROP("no suitable password found", auth->c32.keyid);
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if (plen + OSPF_AUTH_CRYPT_SIZE > len)
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DROP("length mismatch", len);
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uint auth_len = mac_type_length(pass->alg);
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u32 rcv_csn = ntohl(auth->md5.csn);
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if (plen + auth->c32.len > len)
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DROP("packet length mismatch", len);
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if (auth->c32.len != auth_len)
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DROP("wrong authentication length", auth->c32.len);
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u32 rcv_csn = ntohl(auth->c32.csn);
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if (n && (rcv_csn < n->csn))
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// DROP("lower sequence number", rcv_csn);
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{
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@ -172,22 +170,19 @@ ospf_pkt_checkauth(struct ospf_neighbor *n, struct ospf_iface *ifa, struct ospf_
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return 0;
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}
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pass = password_find_by_id(ifa->passwords, auth->md5.keyid);
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if (!pass)
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DROP("no suitable password found", auth->md5.keyid);
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byte *auth_tail = ((byte *) pkt) + plen;
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byte *auth_data = alloca(auth_len);
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memcpy(auth_data, auth_tail, auth_len);
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byte *tail = ((byte *) pkt) + plen;
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char received[OSPF_AUTH_CRYPT_SIZE];
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memcpy(received, tail, OSPF_AUTH_CRYPT_SIZE);
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strncpy(tail, pass->password, OSPF_AUTH_CRYPT_SIZE);
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/* Append key for keyed hash, append padding for HMAC (RFC 5709 3.3) */
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if (pass->alg < ALG_HMAC)
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strncpy(auth_tail, pass->password, auth_len);
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else
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memset32(auth_tail, HMAC_MAGIC, auth_len / 4);
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struct hash_context ctx;
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md5_init(&ctx);
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md5_update(&ctx, (byte *) pkt, plen + OSPF_AUTH_CRYPT_SIZE);
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char *computed = md5_final(&ctx);
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if (memcmp(received, computed, OSPF_AUTH_CRYPT_SIZE))
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DROP("wrong MD5 digest", pass->id);
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if (!mac_verify(pass->alg, pass->password, pass->length,
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(byte *) pkt, plen + auth_len, auth_data))
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DROP("wrong authentication code", pass->id);
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if (n)
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n->csn = rcv_csn;
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@ -473,15 +468,10 @@ ospf_send_to(struct ospf_iface *ifa, ip_addr dst)
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{
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sock *sk = ifa->sk;
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struct ospf_packet *pkt = (struct ospf_packet *) sk->tbuf;
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int plen = ntohs(pkt->length);
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uint plen = ntohs(pkt->length);
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if (ospf_is_v2(ifa->oa->po))
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{
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if (ifa->autype == OSPF_AUTH_CRYPT)
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plen += OSPF_AUTH_CRYPT_SIZE;
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ospf_pkt_finalize(ifa, pkt);
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}
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ospf_pkt_finalize(ifa, pkt, &plen);
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int done = sk_send_to(sk, plen, dst, 0);
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if (!done)
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