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Similarly how TCP_MD5SIG_FLAG_IFINDEX works for TCP-MD5, TCP_AO_KEYF_IFINDEX is an AO-key flag that binds that MKT to a specified by L3 ifinndex. Similarly, without this flag the key will work in the default VRF l3index = 0 for connections. To prevent AO-keys from overlapping, it's restricted to add key B for a socket that has key A, which have the same sndid/rcvid and one of the following is true: - !(A.keyflags & TCP_AO_KEYF_IFINDEX) or !(B.keyflags & TCP_AO_KEYF_IFINDEX) so that any key is non-bound to a VRF - A.l3index == B.l3index both want to work for the same VRF Additionally, it's restricted to match TCP-MD5 keys for the same peer the following way: |--------------|--------------------|----------------|---------------| | | MD5 key without | MD5 key | MD5 key | | | l3index | l3index=0 | l3index=N | |--------------|--------------------|----------------|---------------| | TCP-AO key | | | | | without | reject | reject | reject | | l3index | | | | |--------------|--------------------|----------------|---------------| | TCP-AO key | | | | | l3index=0 | reject | reject | allow | |--------------|--------------------|----------------|---------------| | TCP-AO key | | | | | l3index=N | reject | allow | reject | |--------------|--------------------|----------------|---------------| This is done with the help of tcp_md5_do_lookup_any_l3index() to reject adding AO key without TCP_AO_KEYF_IFINDEX if there's TCP-MD5 in any VRF. This is important for case where sysctl_tcp_l3mdev_accept = 1 Similarly, for TCP-AO lookups tcp_ao_do_lookup() may be used with l3index < 0, so that __tcp_ao_key_cmp() will match TCP-AO key in any VRF. Signed-off-by: Dmitry Safonov <dima@arista.com> Acked-by: David Ahern <dsahern@kernel.org> Signed-off-by: David S. Miller <davem@davemloft.net>
169 lines
4.4 KiB
C
169 lines
4.4 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* INET An implementation of the TCP Authentication Option (TCP-AO).
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* See RFC5925.
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*
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* Authors: Dmitry Safonov <dima@arista.com>
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* Francesco Ruggeri <fruggeri@arista.com>
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* Salam Noureddine <noureddine@arista.com>
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*/
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#include <crypto/hash.h>
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#include <linux/tcp.h>
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#include <net/tcp.h>
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#include <net/ipv6.h>
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static int tcp_v6_ao_calc_key(struct tcp_ao_key *mkt, u8 *key,
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const struct in6_addr *saddr,
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const struct in6_addr *daddr,
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__be16 sport, __be16 dport,
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__be32 sisn, __be32 disn)
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{
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struct kdf_input_block {
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u8 counter;
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u8 label[6];
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struct tcp6_ao_context ctx;
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__be16 outlen;
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} __packed * tmp;
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struct tcp_sigpool hp;
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int err;
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err = tcp_sigpool_start(mkt->tcp_sigpool_id, &hp);
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if (err)
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return err;
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tmp = hp.scratch;
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tmp->counter = 1;
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memcpy(tmp->label, "TCP-AO", 6);
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tmp->ctx.saddr = *saddr;
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tmp->ctx.daddr = *daddr;
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tmp->ctx.sport = sport;
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tmp->ctx.dport = dport;
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tmp->ctx.sisn = sisn;
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tmp->ctx.disn = disn;
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tmp->outlen = htons(tcp_ao_digest_size(mkt) * 8); /* in bits */
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err = tcp_ao_calc_traffic_key(mkt, key, tmp, sizeof(*tmp), &hp);
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tcp_sigpool_end(&hp);
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return err;
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}
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int tcp_v6_ao_calc_key_skb(struct tcp_ao_key *mkt, u8 *key,
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const struct sk_buff *skb,
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__be32 sisn, __be32 disn)
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{
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const struct ipv6hdr *iph = ipv6_hdr(skb);
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const struct tcphdr *th = tcp_hdr(skb);
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return tcp_v6_ao_calc_key(mkt, key, &iph->saddr,
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&iph->daddr, th->source,
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th->dest, sisn, disn);
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}
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int tcp_v6_ao_calc_key_sk(struct tcp_ao_key *mkt, u8 *key,
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const struct sock *sk, __be32 sisn,
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__be32 disn, bool send)
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{
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if (send)
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return tcp_v6_ao_calc_key(mkt, key, &sk->sk_v6_rcv_saddr,
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&sk->sk_v6_daddr, htons(sk->sk_num),
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sk->sk_dport, sisn, disn);
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else
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return tcp_v6_ao_calc_key(mkt, key, &sk->sk_v6_daddr,
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&sk->sk_v6_rcv_saddr, sk->sk_dport,
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htons(sk->sk_num), disn, sisn);
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}
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int tcp_v6_ao_calc_key_rsk(struct tcp_ao_key *mkt, u8 *key,
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struct request_sock *req)
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{
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struct inet_request_sock *ireq = inet_rsk(req);
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return tcp_v6_ao_calc_key(mkt, key,
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&ireq->ir_v6_loc_addr, &ireq->ir_v6_rmt_addr,
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htons(ireq->ir_num), ireq->ir_rmt_port,
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htonl(tcp_rsk(req)->snt_isn),
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htonl(tcp_rsk(req)->rcv_isn));
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}
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struct tcp_ao_key *tcp_v6_ao_lookup(const struct sock *sk,
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struct sock *addr_sk,
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int sndid, int rcvid)
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{
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int l3index = l3mdev_master_ifindex_by_index(sock_net(sk),
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addr_sk->sk_bound_dev_if);
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struct in6_addr *addr = &addr_sk->sk_v6_daddr;
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return tcp_ao_do_lookup(sk, l3index, (union tcp_ao_addr *)addr,
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AF_INET6, sndid, rcvid);
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}
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struct tcp_ao_key *tcp_v6_ao_lookup_rsk(const struct sock *sk,
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struct request_sock *req,
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int sndid, int rcvid)
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{
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struct inet_request_sock *ireq = inet_rsk(req);
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struct in6_addr *addr = &ireq->ir_v6_rmt_addr;
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int l3index;
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l3index = l3mdev_master_ifindex_by_index(sock_net(sk), ireq->ir_iif);
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return tcp_ao_do_lookup(sk, l3index, (union tcp_ao_addr *)addr,
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AF_INET6, sndid, rcvid);
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}
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int tcp_v6_ao_hash_pseudoheader(struct tcp_sigpool *hp,
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const struct in6_addr *daddr,
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const struct in6_addr *saddr, int nbytes)
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{
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struct tcp6_pseudohdr *bp;
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struct scatterlist sg;
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bp = hp->scratch;
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/* 1. TCP pseudo-header (RFC2460) */
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bp->saddr = *saddr;
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bp->daddr = *daddr;
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bp->len = cpu_to_be32(nbytes);
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bp->protocol = cpu_to_be32(IPPROTO_TCP);
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sg_init_one(&sg, bp, sizeof(*bp));
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ahash_request_set_crypt(hp->req, &sg, NULL, sizeof(*bp));
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return crypto_ahash_update(hp->req);
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}
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int tcp_v6_ao_hash_skb(char *ao_hash, struct tcp_ao_key *key,
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const struct sock *sk, const struct sk_buff *skb,
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const u8 *tkey, int hash_offset, u32 sne)
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{
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return tcp_ao_hash_skb(AF_INET6, ao_hash, key, sk, skb, tkey,
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hash_offset, sne);
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}
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int tcp_v6_parse_ao(struct sock *sk, int cmd,
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sockptr_t optval, int optlen)
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{
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return tcp_parse_ao(sk, cmd, AF_INET6, optval, optlen);
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}
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int tcp_v6_ao_synack_hash(char *ao_hash, struct tcp_ao_key *ao_key,
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struct request_sock *req, const struct sk_buff *skb,
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int hash_offset, u32 sne)
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{
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void *hash_buf = NULL;
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int err;
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hash_buf = kmalloc(tcp_ao_digest_size(ao_key), GFP_ATOMIC);
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if (!hash_buf)
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return -ENOMEM;
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err = tcp_v6_ao_calc_key_rsk(ao_key, hash_buf, req);
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if (err)
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goto out;
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err = tcp_ao_hash_skb(AF_INET6, ao_hash, ao_key, req_to_sk(req), skb,
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hash_buf, hash_offset, sne);
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out:
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kfree(hash_buf);
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return err;
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}
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