net: allow binding socket in a VRF when there's an unbound socket
Change the inet socket lookup to avoid packets arriving on a device enslaved to an l3mdev from matching unbound sockets by removing the wildcard for non sk_bound_dev_if and instead relying on check against the secondary device index, which will be 0 when the input device is not enslaved to an l3mdev and so match against an unbound socket and not match when the input device is enslaved. Change the socket binding to take the l3mdev into account to allow an unbound socket to not conflict sockets bound to an l3mdev given the datapath isolation now guaranteed. Signed-off-by: Robert Shearman <rshearma@vyatta.att-mail.com> Signed-off-by: Mike Manning <mmanning@vyatta.att-mail.com> Reviewed-by: David Ahern <dsahern@gmail.com> Tested-by: David Ahern <dsahern@gmail.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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3c82a21f43
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@ -103,6 +103,11 @@ VRF device:
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or to specify the output device using cmsg and IP_PKTINFO.
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By default the scope of the port bindings for unbound sockets is
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limited to the default VRF. That is, it will not be matched by packets
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arriving on interfaces enslaved to an l3mdev and processes may bind to
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the same port if they bind to an l3mdev.
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TCP & UDP services running in the default VRF context (ie., not bound
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to any VRF device) can work across all VRF domains by enabling the
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tcp_l3mdev_accept and udp_l3mdev_accept sysctl options:
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@ -112,10 +117,6 @@ tcp_l3mdev_accept and udp_l3mdev_accept sysctl options:
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netfilter rules on the VRF device can be used to limit access to services
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running in the default VRF context as well.
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The default VRF does not have limited scope with respect to port bindings.
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That is, if a process does a wildcard bind to a port in the default VRF it
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owns the port across all VRF domains within the network namespace.
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################################################################################
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Using iproute2 for VRFs
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@ -115,9 +115,8 @@ int inet6_hash(struct sock *sk);
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((__sk)->sk_family == AF_INET6) && \
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ipv6_addr_equal(&(__sk)->sk_v6_daddr, (__saddr)) && \
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ipv6_addr_equal(&(__sk)->sk_v6_rcv_saddr, (__daddr)) && \
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(!(__sk)->sk_bound_dev_if || \
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((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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(((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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net_eq(sock_net(__sk), (__net)))
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#endif /* _INET6_HASHTABLES_H */
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@ -79,6 +79,7 @@ struct inet_ehash_bucket {
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struct inet_bind_bucket {
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possible_net_t ib_net;
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int l3mdev;
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unsigned short port;
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signed char fastreuse;
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signed char fastreuseport;
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@ -191,7 +192,7 @@ static inline void inet_ehash_locks_free(struct inet_hashinfo *hashinfo)
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struct inet_bind_bucket *
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inet_bind_bucket_create(struct kmem_cache *cachep, struct net *net,
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struct inet_bind_hashbucket *head,
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const unsigned short snum);
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const unsigned short snum, int l3mdev);
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void inet_bind_bucket_destroy(struct kmem_cache *cachep,
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struct inet_bind_bucket *tb);
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@ -282,9 +283,8 @@ static inline struct sock *inet_lookup_listener(struct net *net,
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#define INET_MATCH(__sk, __net, __cookie, __saddr, __daddr, __ports, __dif, __sdif) \
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(((__sk)->sk_portpair == (__ports)) && \
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((__sk)->sk_addrpair == (__cookie)) && \
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(!(__sk)->sk_bound_dev_if || \
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((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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(((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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net_eq(sock_net(__sk), (__net)))
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#else /* 32-bit arch */
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#define INET_ADDR_COOKIE(__name, __saddr, __daddr) \
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@ -294,9 +294,8 @@ static inline struct sock *inet_lookup_listener(struct net *net,
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(((__sk)->sk_portpair == (__ports)) && \
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((__sk)->sk_daddr == (__saddr)) && \
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((__sk)->sk_rcv_saddr == (__daddr)) && \
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(!(__sk)->sk_bound_dev_if || \
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((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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(((__sk)->sk_bound_dev_if == (__dif)) || \
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((__sk)->sk_bound_dev_if == (__sdif))) && \
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net_eq(sock_net(__sk), (__net)))
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#endif /* 64-bit arch */
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@ -130,6 +130,19 @@ static inline int inet_request_bound_dev_if(const struct sock *sk,
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return sk->sk_bound_dev_if;
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}
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static inline int inet_sk_bound_l3mdev(const struct sock *sk)
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{
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#ifdef CONFIG_NET_L3_MASTER_DEV
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struct net *net = sock_net(sk);
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if (!net->ipv4.sysctl_tcp_l3mdev_accept)
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return l3mdev_master_ifindex_by_index(net,
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sk->sk_bound_dev_if);
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#endif
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return 0;
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}
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struct inet_cork {
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unsigned int flags;
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__be32 addr;
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@ -183,7 +183,9 @@ inet_csk_find_open_port(struct sock *sk, struct inet_bind_bucket **tb_ret, int *
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int i, low, high, attempt_half;
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struct inet_bind_bucket *tb;
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u32 remaining, offset;
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int l3mdev;
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l3mdev = inet_sk_bound_l3mdev(sk);
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attempt_half = (sk->sk_reuse == SK_CAN_REUSE) ? 1 : 0;
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other_half_scan:
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inet_get_local_port_range(net, &low, &high);
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@ -219,7 +221,8 @@ other_parity_scan:
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hinfo->bhash_size)];
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spin_lock_bh(&head->lock);
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inet_bind_bucket_for_each(tb, &head->chain)
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if (net_eq(ib_net(tb), net) && tb->port == port) {
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if (net_eq(ib_net(tb), net) && tb->l3mdev == l3mdev &&
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tb->port == port) {
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if (!inet_csk_bind_conflict(sk, tb, false, false))
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goto success;
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goto next_port;
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@ -293,6 +296,9 @@ int inet_csk_get_port(struct sock *sk, unsigned short snum)
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struct net *net = sock_net(sk);
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struct inet_bind_bucket *tb = NULL;
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kuid_t uid = sock_i_uid(sk);
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int l3mdev;
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l3mdev = inet_sk_bound_l3mdev(sk);
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if (!port) {
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head = inet_csk_find_open_port(sk, &tb, &port);
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@ -306,11 +312,12 @@ int inet_csk_get_port(struct sock *sk, unsigned short snum)
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hinfo->bhash_size)];
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spin_lock_bh(&head->lock);
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inet_bind_bucket_for_each(tb, &head->chain)
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if (net_eq(ib_net(tb), net) && tb->port == port)
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if (net_eq(ib_net(tb), net) && tb->l3mdev == l3mdev &&
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tb->port == port)
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goto tb_found;
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tb_not_found:
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tb = inet_bind_bucket_create(hinfo->bind_bucket_cachep,
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net, head, port);
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net, head, port, l3mdev);
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if (!tb)
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goto fail_unlock;
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tb_found:
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@ -65,12 +65,14 @@ static u32 sk_ehashfn(const struct sock *sk)
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struct inet_bind_bucket *inet_bind_bucket_create(struct kmem_cache *cachep,
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struct net *net,
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struct inet_bind_hashbucket *head,
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const unsigned short snum)
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const unsigned short snum,
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int l3mdev)
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{
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struct inet_bind_bucket *tb = kmem_cache_alloc(cachep, GFP_ATOMIC);
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if (tb) {
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write_pnet(&tb->ib_net, net);
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tb->l3mdev = l3mdev;
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tb->port = snum;
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tb->fastreuse = 0;
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tb->fastreuseport = 0;
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@ -135,6 +137,7 @@ int __inet_inherit_port(const struct sock *sk, struct sock *child)
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table->bhash_size);
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struct inet_bind_hashbucket *head = &table->bhash[bhash];
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struct inet_bind_bucket *tb;
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int l3mdev;
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spin_lock(&head->lock);
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tb = inet_csk(sk)->icsk_bind_hash;
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return -ENOENT;
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}
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if (tb->port != port) {
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l3mdev = inet_sk_bound_l3mdev(sk);
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/* NOTE: using tproxy and redirecting skbs to a proxy
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* on a different listener port breaks the assumption
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* that the listener socket's icsk_bind_hash is the same
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* create a new bind bucket for the child here. */
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inet_bind_bucket_for_each(tb, &head->chain) {
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if (net_eq(ib_net(tb), sock_net(sk)) &&
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tb->port == port)
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tb->l3mdev == l3mdev && tb->port == port)
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break;
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}
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if (!tb) {
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tb = inet_bind_bucket_create(table->bind_bucket_cachep,
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sock_net(sk), head, port);
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sock_net(sk), head, port,
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l3mdev);
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if (!tb) {
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spin_unlock(&head->lock);
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return -ENOMEM;
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u32 remaining, offset;
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int ret, i, low, high;
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static u32 hint;
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int l3mdev;
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if (port) {
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head = &hinfo->bhash[inet_bhashfn(net, port,
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return ret;
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}
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l3mdev = inet_sk_bound_l3mdev(sk);
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inet_get_local_port_range(net, &low, &high);
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high++; /* [32768, 60999] -> [32768, 61000[ */
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remaining = high - low;
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* the established check is already unique enough.
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*/
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inet_bind_bucket_for_each(tb, &head->chain) {
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if (net_eq(ib_net(tb), net) && tb->port == port) {
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if (net_eq(ib_net(tb), net) && tb->l3mdev == l3mdev &&
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tb->port == port) {
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if (tb->fastreuse >= 0 ||
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tb->fastreuseport >= 0)
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goto next_port;
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}
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tb = inet_bind_bucket_create(hinfo->bind_bucket_cachep,
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net, head, port);
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net, head, port, l3mdev);
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if (!tb) {
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spin_unlock_bh(&head->lock);
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return -ENOMEM;
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