1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * INET An implementation of the TCP/IP protocol suite for the LINUX
4 * operating system. INET is implemented using the BSD Socket
5 * interface as the means of communication with the user level.
7 * IPv4 Forwarding Information Base: FIB frontend.
9 * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
12 #include <linux/module.h>
13 #include <linux/uaccess.h>
14 #include <linux/bitops.h>
15 #include <linux/capability.h>
16 #include <linux/types.h>
17 #include <linux/kernel.h>
19 #include <linux/string.h>
20 #include <linux/socket.h>
21 #include <linux/sockios.h>
22 #include <linux/errno.h>
24 #include <linux/inet.h>
25 #include <linux/inetdevice.h>
26 #include <linux/netdevice.h>
27 #include <linux/if_addr.h>
28 #include <linux/if_arp.h>
29 #include <linux/skbuff.h>
30 #include <linux/cache.h>
31 #include <linux/init.h>
32 #include <linux/list.h>
33 #include <linux/slab.h>
36 #include <net/protocol.h>
37 #include <net/route.h>
41 #include <net/ip_fib.h>
42 #include <net/nexthop.h>
43 #include <net/rtnetlink.h>
45 #include <net/l3mdev.h>
46 #include <net/lwtunnel.h>
47 #include <trace/events/fib.h>
49 #ifndef CONFIG_IP_MULTIPLE_TABLES
51 static int __net_init
fib4_rules_init(struct net
*net
)
53 struct fib_table
*local_table
, *main_table
;
55 main_table
= fib_trie_table(RT_TABLE_MAIN
, NULL
);
59 local_table
= fib_trie_table(RT_TABLE_LOCAL
, main_table
);
63 hlist_add_head_rcu(&local_table
->tb_hlist
,
64 &net
->ipv4
.fib_table_hash
[TABLE_LOCAL_INDEX
]);
65 hlist_add_head_rcu(&main_table
->tb_hlist
,
66 &net
->ipv4
.fib_table_hash
[TABLE_MAIN_INDEX
]);
70 fib_free_table(main_table
);
75 struct fib_table
*fib_new_table(struct net
*net
, u32 id
)
77 struct fib_table
*tb
, *alias
= NULL
;
82 tb
= fib_get_table(net
, id
);
86 if (id
== RT_TABLE_LOCAL
&& !net
->ipv4
.fib_has_custom_rules
)
87 alias
= fib_new_table(net
, RT_TABLE_MAIN
);
89 tb
= fib_trie_table(id
, alias
);
95 rcu_assign_pointer(net
->ipv4
.fib_main
, tb
);
97 case RT_TABLE_DEFAULT
:
98 rcu_assign_pointer(net
->ipv4
.fib_default
, tb
);
104 h
= id
& (FIB_TABLE_HASHSZ
- 1);
105 hlist_add_head_rcu(&tb
->tb_hlist
, &net
->ipv4
.fib_table_hash
[h
]);
108 EXPORT_SYMBOL_GPL(fib_new_table
);
110 /* caller must hold either rtnl or rcu read lock */
111 struct fib_table
*fib_get_table(struct net
*net
, u32 id
)
113 struct fib_table
*tb
;
114 struct hlist_head
*head
;
119 h
= id
& (FIB_TABLE_HASHSZ
- 1);
121 head
= &net
->ipv4
.fib_table_hash
[h
];
122 hlist_for_each_entry_rcu(tb
, head
, tb_hlist
,
123 lockdep_rtnl_is_held()) {
129 #endif /* CONFIG_IP_MULTIPLE_TABLES */
131 static void fib_replace_table(struct net
*net
, struct fib_table
*old
,
132 struct fib_table
*new)
134 #ifdef CONFIG_IP_MULTIPLE_TABLES
135 switch (new->tb_id
) {
137 rcu_assign_pointer(net
->ipv4
.fib_main
, new);
139 case RT_TABLE_DEFAULT
:
140 rcu_assign_pointer(net
->ipv4
.fib_default
, new);
147 /* replace the old table in the hlist */
148 hlist_replace_rcu(&old
->tb_hlist
, &new->tb_hlist
);
151 int fib_unmerge(struct net
*net
)
153 struct fib_table
*old
, *new, *main_table
;
155 /* attempt to fetch local table if it has been allocated */
156 old
= fib_get_table(net
, RT_TABLE_LOCAL
);
160 new = fib_trie_unmerge(old
);
164 /* table is already unmerged */
168 /* replace merged table with clean table */
169 fib_replace_table(net
, old
, new);
172 /* attempt to fetch main table if it has been allocated */
173 main_table
= fib_get_table(net
, RT_TABLE_MAIN
);
177 /* flush local entries from main table */
178 fib_table_flush_external(main_table
);
183 void fib_flush(struct net
*net
)
188 for (h
= 0; h
< FIB_TABLE_HASHSZ
; h
++) {
189 struct hlist_head
*head
= &net
->ipv4
.fib_table_hash
[h
];
190 struct hlist_node
*tmp
;
191 struct fib_table
*tb
;
193 hlist_for_each_entry_safe(tb
, tmp
, head
, tb_hlist
)
194 flushed
+= fib_table_flush(net
, tb
, false);
202 * Find address type as if only "dev" was present in the system. If
203 * on_dev is NULL then all interfaces are taken into consideration.
205 static inline unsigned int __inet_dev_addr_type(struct net
*net
,
206 const struct net_device
*dev
,
207 __be32 addr
, u32 tb_id
)
209 struct flowi4 fl4
= { .daddr
= addr
};
210 struct fib_result res
;
211 unsigned int ret
= RTN_BROADCAST
;
212 struct fib_table
*table
;
214 if (ipv4_is_zeronet(addr
) || ipv4_is_lbcast(addr
))
215 return RTN_BROADCAST
;
216 if (ipv4_is_multicast(addr
))
217 return RTN_MULTICAST
;
221 table
= fib_get_table(net
, tb_id
);
224 if (!fib_table_lookup(table
, &fl4
, &res
, FIB_LOOKUP_NOREF
)) {
225 struct fib_nh_common
*nhc
= fib_info_nhc(res
.fi
, 0);
227 if (!dev
|| dev
== nhc
->nhc_dev
)
236 unsigned int inet_addr_type_table(struct net
*net
, __be32 addr
, u32 tb_id
)
238 return __inet_dev_addr_type(net
, NULL
, addr
, tb_id
);
240 EXPORT_SYMBOL(inet_addr_type_table
);
242 unsigned int inet_addr_type(struct net
*net
, __be32 addr
)
244 return __inet_dev_addr_type(net
, NULL
, addr
, RT_TABLE_LOCAL
);
246 EXPORT_SYMBOL(inet_addr_type
);
248 unsigned int inet_dev_addr_type(struct net
*net
, const struct net_device
*dev
,
251 u32 rt_table
= l3mdev_fib_table(dev
) ? : RT_TABLE_LOCAL
;
253 return __inet_dev_addr_type(net
, dev
, addr
, rt_table
);
255 EXPORT_SYMBOL(inet_dev_addr_type
);
257 /* inet_addr_type with dev == NULL but using the table from a dev
258 * if one is associated
260 unsigned int inet_addr_type_dev_table(struct net
*net
,
261 const struct net_device
*dev
,
264 u32 rt_table
= l3mdev_fib_table(dev
) ? : RT_TABLE_LOCAL
;
266 return __inet_dev_addr_type(net
, NULL
, addr
, rt_table
);
268 EXPORT_SYMBOL(inet_addr_type_dev_table
);
270 __be32
fib_compute_spec_dst(struct sk_buff
*skb
)
272 struct net_device
*dev
= skb
->dev
;
273 struct in_device
*in_dev
;
274 struct fib_result res
;
279 rt
= skb_rtable(skb
);
280 if ((rt
->rt_flags
& (RTCF_BROADCAST
| RTCF_MULTICAST
| RTCF_LOCAL
)) ==
282 return ip_hdr(skb
)->daddr
;
284 in_dev
= __in_dev_get_rcu(dev
);
288 scope
= RT_SCOPE_UNIVERSE
;
289 if (!ipv4_is_zeronet(ip_hdr(skb
)->saddr
)) {
290 bool vmark
= in_dev
&& IN_DEV_SRC_VMARK(in_dev
);
291 struct flowi4 fl4
= {
292 .flowi4_iif
= LOOPBACK_IFINDEX
,
293 .flowi4_oif
= l3mdev_master_ifindex_rcu(dev
),
294 .daddr
= ip_hdr(skb
)->saddr
,
295 .flowi4_tos
= ip_hdr(skb
)->tos
& IPTOS_RT_MASK
,
296 .flowi4_scope
= scope
,
297 .flowi4_mark
= vmark
? skb
->mark
: 0,
299 if (!fib_lookup(net
, &fl4
, &res
, 0))
300 return fib_result_prefsrc(net
, &res
);
302 scope
= RT_SCOPE_LINK
;
305 return inet_select_addr(dev
, ip_hdr(skb
)->saddr
, scope
);
308 bool fib_info_nh_uses_dev(struct fib_info
*fi
, const struct net_device
*dev
)
310 bool dev_match
= false;
311 #ifdef CONFIG_IP_ROUTE_MULTIPATH
312 if (unlikely(fi
->nh
)) {
313 dev_match
= nexthop_uses_dev(fi
->nh
, dev
);
317 for (ret
= 0; ret
< fib_info_num_path(fi
); ret
++) {
318 const struct fib_nh_common
*nhc
= fib_info_nhc(fi
, ret
);
320 if (nhc_l3mdev_matches_dev(nhc
, dev
)) {
327 if (fib_info_nhc(fi
, 0)->nhc_dev
== dev
)
333 EXPORT_SYMBOL_GPL(fib_info_nh_uses_dev
);
335 /* Given (packet source, input interface) and optional (dst, oif, tos):
336 * - (main) check, that source is valid i.e. not broadcast or our local
338 * - figure out what "logical" interface this packet arrived
339 * and calculate "specific destination" address.
340 * - check, that packet arrived from expected physical interface.
341 * called with rcu_read_lock()
343 static int __fib_validate_source(struct sk_buff
*skb
, __be32 src
, __be32 dst
,
344 u8 tos
, int oif
, struct net_device
*dev
,
345 int rpf
, struct in_device
*idev
, u32
*itag
)
347 struct net
*net
= dev_net(dev
);
348 struct flow_keys flkeys
;
350 struct fib_result res
;
355 fl4
.flowi4_iif
= l3mdev_master_ifindex_rcu(dev
);
357 fl4
.flowi4_iif
= oif
? : LOOPBACK_IFINDEX
;
360 fl4
.flowi4_tos
= tos
;
361 fl4
.flowi4_scope
= RT_SCOPE_UNIVERSE
;
362 fl4
.flowi4_tun_key
.tun_id
= 0;
363 fl4
.flowi4_flags
= 0;
364 fl4
.flowi4_uid
= sock_net_uid(net
, NULL
);
365 fl4
.flowi4_multipath_hash
= 0;
367 no_addr
= idev
->ifa_list
== NULL
;
369 fl4
.flowi4_mark
= IN_DEV_SRC_VMARK(idev
) ? skb
->mark
: 0;
370 if (!fib4_rules_early_flow_dissect(net
, skb
, &fl4
, &flkeys
)) {
371 fl4
.flowi4_proto
= 0;
376 if (fib_lookup(net
, &fl4
, &res
, 0))
378 if (res
.type
!= RTN_UNICAST
&&
379 (res
.type
!= RTN_LOCAL
|| !IN_DEV_ACCEPT_LOCAL(idev
)))
381 fib_combine_itag(itag
, &res
);
383 dev_match
= fib_info_nh_uses_dev(res
.fi
, dev
);
384 /* This is not common, loopback packets retain skb_dst so normally they
385 * would not even hit this slow path.
387 dev_match
= dev_match
|| (res
.type
== RTN_LOCAL
&&
388 dev
== net
->loopback_dev
);
390 ret
= FIB_RES_NHC(res
)->nhc_scope
>= RT_SCOPE_HOST
;
397 fl4
.flowi4_oif
= dev
->ifindex
;
400 if (fib_lookup(net
, &fl4
, &res
, FIB_LOOKUP_IGNORE_LINKSTATE
) == 0) {
401 if (res
.type
== RTN_UNICAST
)
402 ret
= FIB_RES_NHC(res
)->nhc_scope
>= RT_SCOPE_HOST
;
418 /* Ignore rp_filter for packets protected by IPsec. */
419 int fib_validate_source(struct sk_buff
*skb
, __be32 src
, __be32 dst
,
420 u8 tos
, int oif
, struct net_device
*dev
,
421 struct in_device
*idev
, u32
*itag
)
423 int r
= secpath_exists(skb
) ? 0 : IN_DEV_RPFILTER(idev
);
424 struct net
*net
= dev_net(dev
);
426 if (!r
&& !fib_num_tclassid_users(net
) &&
427 (dev
->ifindex
!= oif
|| !IN_DEV_TX_REDIRECTS(idev
))) {
428 if (IN_DEV_ACCEPT_LOCAL(idev
))
430 /* with custom local routes in place, checking local addresses
431 * only will be too optimistic, with custom rules, checking
432 * local addresses only can be too strict, e.g. due to vrf
434 if (net
->ipv4
.fib_has_custom_local_routes
||
435 fib4_has_custom_rules(net
))
437 if (inet_lookup_ifaddr_rcu(net
, src
))
446 return __fib_validate_source(skb
, src
, dst
, tos
, oif
, dev
, r
, idev
, itag
);
449 static inline __be32
sk_extract_addr(struct sockaddr
*addr
)
451 return ((struct sockaddr_in
*) addr
)->sin_addr
.s_addr
;
454 static int put_rtax(struct nlattr
*mx
, int len
, int type
, u32 value
)
458 nla
= (struct nlattr
*) ((char *) mx
+ len
);
459 nla
->nla_type
= type
;
460 nla
->nla_len
= nla_attr_size(4);
461 *(u32
*) nla_data(nla
) = value
;
463 return len
+ nla_total_size(4);
466 static int rtentry_to_fib_config(struct net
*net
, int cmd
, struct rtentry
*rt
,
467 struct fib_config
*cfg
)
472 memset(cfg
, 0, sizeof(*cfg
));
473 cfg
->fc_nlinfo
.nl_net
= net
;
475 if (rt
->rt_dst
.sa_family
!= AF_INET
)
476 return -EAFNOSUPPORT
;
479 * Check mask for validity:
480 * a) it must be contiguous.
481 * b) destination must have all host bits clear.
482 * c) if application forgot to set correct family (AF_INET),
483 * reject request unless it is absolutely clear i.e.
484 * both family and mask are zero.
487 addr
= sk_extract_addr(&rt
->rt_dst
);
488 if (!(rt
->rt_flags
& RTF_HOST
)) {
489 __be32 mask
= sk_extract_addr(&rt
->rt_genmask
);
491 if (rt
->rt_genmask
.sa_family
!= AF_INET
) {
492 if (mask
|| rt
->rt_genmask
.sa_family
)
493 return -EAFNOSUPPORT
;
496 if (bad_mask(mask
, addr
))
499 plen
= inet_mask_len(mask
);
502 cfg
->fc_dst_len
= plen
;
505 if (cmd
!= SIOCDELRT
) {
506 cfg
->fc_nlflags
= NLM_F_CREATE
;
507 cfg
->fc_protocol
= RTPROT_BOOT
;
511 cfg
->fc_priority
= rt
->rt_metric
- 1;
513 if (rt
->rt_flags
& RTF_REJECT
) {
514 cfg
->fc_scope
= RT_SCOPE_HOST
;
515 cfg
->fc_type
= RTN_UNREACHABLE
;
519 cfg
->fc_scope
= RT_SCOPE_NOWHERE
;
520 cfg
->fc_type
= RTN_UNICAST
;
524 struct net_device
*dev
;
525 char devname
[IFNAMSIZ
];
527 if (copy_from_user(devname
, rt
->rt_dev
, IFNAMSIZ
-1))
530 devname
[IFNAMSIZ
-1] = 0;
531 colon
= strchr(devname
, ':');
534 dev
= __dev_get_by_name(net
, devname
);
537 cfg
->fc_oif
= dev
->ifindex
;
538 cfg
->fc_table
= l3mdev_fib_table(dev
);
540 const struct in_ifaddr
*ifa
;
541 struct in_device
*in_dev
;
543 in_dev
= __in_dev_get_rtnl(dev
);
550 in_dev_for_each_ifa_rcu(ifa
, in_dev
) {
551 if (strcmp(ifa
->ifa_label
, devname
) == 0)
558 cfg
->fc_prefsrc
= ifa
->ifa_local
;
562 addr
= sk_extract_addr(&rt
->rt_gateway
);
563 if (rt
->rt_gateway
.sa_family
== AF_INET
&& addr
) {
564 unsigned int addr_type
;
567 cfg
->fc_gw_family
= AF_INET
;
568 addr_type
= inet_addr_type_table(net
, addr
, cfg
->fc_table
);
569 if (rt
->rt_flags
& RTF_GATEWAY
&&
570 addr_type
== RTN_UNICAST
)
571 cfg
->fc_scope
= RT_SCOPE_UNIVERSE
;
574 if (cmd
== SIOCDELRT
)
577 if (rt
->rt_flags
& RTF_GATEWAY
&& !cfg
->fc_gw_family
)
580 if (cfg
->fc_scope
== RT_SCOPE_NOWHERE
)
581 cfg
->fc_scope
= RT_SCOPE_LINK
;
583 if (rt
->rt_flags
& (RTF_MTU
| RTF_WINDOW
| RTF_IRTT
)) {
587 mx
= kcalloc(3, nla_total_size(4), GFP_KERNEL
);
591 if (rt
->rt_flags
& RTF_MTU
)
592 len
= put_rtax(mx
, len
, RTAX_ADVMSS
, rt
->rt_mtu
- 40);
594 if (rt
->rt_flags
& RTF_WINDOW
)
595 len
= put_rtax(mx
, len
, RTAX_WINDOW
, rt
->rt_window
);
597 if (rt
->rt_flags
& RTF_IRTT
)
598 len
= put_rtax(mx
, len
, RTAX_RTT
, rt
->rt_irtt
<< 3);
601 cfg
->fc_mx_len
= len
;
608 * Handle IP routing ioctl calls.
609 * These are used to manipulate the routing tables
611 int ip_rt_ioctl(struct net
*net
, unsigned int cmd
, struct rtentry
*rt
)
613 struct fib_config cfg
;
617 case SIOCADDRT
: /* Add a route */
618 case SIOCDELRT
: /* Delete a route */
619 if (!ns_capable(net
->user_ns
, CAP_NET_ADMIN
))
623 err
= rtentry_to_fib_config(net
, cmd
, rt
, &cfg
);
625 struct fib_table
*tb
;
627 if (cmd
== SIOCDELRT
) {
628 tb
= fib_get_table(net
, cfg
.fc_table
);
630 err
= fib_table_delete(net
, tb
, &cfg
,
635 tb
= fib_new_table(net
, cfg
.fc_table
);
637 err
= fib_table_insert(net
, tb
,
643 /* allocated by rtentry_to_fib_config() */
652 const struct nla_policy rtm_ipv4_policy
[RTA_MAX
+ 1] = {
653 [RTA_UNSPEC
] = { .strict_start_type
= RTA_DPORT
+ 1 },
654 [RTA_DST
] = { .type
= NLA_U32
},
655 [RTA_SRC
] = { .type
= NLA_U32
},
656 [RTA_IIF
] = { .type
= NLA_U32
},
657 [RTA_OIF
] = { .type
= NLA_U32
},
658 [RTA_GATEWAY
] = { .type
= NLA_U32
},
659 [RTA_PRIORITY
] = { .type
= NLA_U32
},
660 [RTA_PREFSRC
] = { .type
= NLA_U32
},
661 [RTA_METRICS
] = { .type
= NLA_NESTED
},
662 [RTA_MULTIPATH
] = { .len
= sizeof(struct rtnexthop
) },
663 [RTA_FLOW
] = { .type
= NLA_U32
},
664 [RTA_ENCAP_TYPE
] = { .type
= NLA_U16
},
665 [RTA_ENCAP
] = { .type
= NLA_NESTED
},
666 [RTA_UID
] = { .type
= NLA_U32
},
667 [RTA_MARK
] = { .type
= NLA_U32
},
668 [RTA_TABLE
] = { .type
= NLA_U32
},
669 [RTA_IP_PROTO
] = { .type
= NLA_U8
},
670 [RTA_SPORT
] = { .type
= NLA_U16
},
671 [RTA_DPORT
] = { .type
= NLA_U16
},
672 [RTA_NH_ID
] = { .type
= NLA_U32
},
675 int fib_gw_from_via(struct fib_config
*cfg
, struct nlattr
*nla
,
676 struct netlink_ext_ack
*extack
)
681 if (nla_len(nla
) < offsetof(struct rtvia
, rtvia_addr
)) {
682 NL_SET_ERR_MSG(extack
, "Invalid attribute length for RTA_VIA");
687 alen
= nla_len(nla
) - offsetof(struct rtvia
, rtvia_addr
);
689 switch (via
->rtvia_family
) {
691 if (alen
!= sizeof(__be32
)) {
692 NL_SET_ERR_MSG(extack
, "Invalid IPv4 address in RTA_VIA");
695 cfg
->fc_gw_family
= AF_INET
;
696 cfg
->fc_gw4
= *((__be32
*)via
->rtvia_addr
);
699 #if IS_ENABLED(CONFIG_IPV6)
700 if (alen
!= sizeof(struct in6_addr
)) {
701 NL_SET_ERR_MSG(extack
, "Invalid IPv6 address in RTA_VIA");
704 cfg
->fc_gw_family
= AF_INET6
;
705 cfg
->fc_gw6
= *((struct in6_addr
*)via
->rtvia_addr
);
707 NL_SET_ERR_MSG(extack
, "IPv6 support not enabled in kernel");
712 NL_SET_ERR_MSG(extack
, "Unsupported address family in RTA_VIA");
719 static int rtm_to_fib_config(struct net
*net
, struct sk_buff
*skb
,
720 struct nlmsghdr
*nlh
, struct fib_config
*cfg
,
721 struct netlink_ext_ack
*extack
)
723 bool has_gw
= false, has_via
= false;
728 err
= nlmsg_validate_deprecated(nlh
, sizeof(*rtm
), RTA_MAX
,
729 rtm_ipv4_policy
, extack
);
733 memset(cfg
, 0, sizeof(*cfg
));
735 rtm
= nlmsg_data(nlh
);
736 cfg
->fc_dst_len
= rtm
->rtm_dst_len
;
737 cfg
->fc_tos
= rtm
->rtm_tos
;
738 cfg
->fc_table
= rtm
->rtm_table
;
739 cfg
->fc_protocol
= rtm
->rtm_protocol
;
740 cfg
->fc_scope
= rtm
->rtm_scope
;
741 cfg
->fc_type
= rtm
->rtm_type
;
742 cfg
->fc_flags
= rtm
->rtm_flags
;
743 cfg
->fc_nlflags
= nlh
->nlmsg_flags
;
745 cfg
->fc_nlinfo
.portid
= NETLINK_CB(skb
).portid
;
746 cfg
->fc_nlinfo
.nlh
= nlh
;
747 cfg
->fc_nlinfo
.nl_net
= net
;
749 if (cfg
->fc_type
> RTN_MAX
) {
750 NL_SET_ERR_MSG(extack
, "Invalid route type");
755 nlmsg_for_each_attr(attr
, nlh
, sizeof(struct rtmsg
), remaining
) {
756 switch (nla_type(attr
)) {
758 cfg
->fc_dst
= nla_get_be32(attr
);
761 cfg
->fc_oif
= nla_get_u32(attr
);
765 cfg
->fc_gw4
= nla_get_be32(attr
);
767 cfg
->fc_gw_family
= AF_INET
;
771 err
= fib_gw_from_via(cfg
, attr
, extack
);
776 cfg
->fc_priority
= nla_get_u32(attr
);
779 cfg
->fc_prefsrc
= nla_get_be32(attr
);
782 cfg
->fc_mx
= nla_data(attr
);
783 cfg
->fc_mx_len
= nla_len(attr
);
786 err
= lwtunnel_valid_encap_type_attr(nla_data(attr
),
791 cfg
->fc_mp
= nla_data(attr
);
792 cfg
->fc_mp_len
= nla_len(attr
);
795 cfg
->fc_flow
= nla_get_u32(attr
);
798 cfg
->fc_table
= nla_get_u32(attr
);
801 cfg
->fc_encap
= attr
;
804 cfg
->fc_encap_type
= nla_get_u16(attr
);
805 err
= lwtunnel_valid_encap_type(cfg
->fc_encap_type
,
811 cfg
->fc_nh_id
= nla_get_u32(attr
);
817 if (cfg
->fc_oif
|| cfg
->fc_gw_family
||
818 cfg
->fc_encap
|| cfg
->fc_mp
) {
819 NL_SET_ERR_MSG(extack
,
820 "Nexthop specification and nexthop id are mutually exclusive");
825 if (has_gw
&& has_via
) {
826 NL_SET_ERR_MSG(extack
,
827 "Nexthop configuration can not contain both GATEWAY and VIA");
836 static int inet_rtm_delroute(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
837 struct netlink_ext_ack
*extack
)
839 struct net
*net
= sock_net(skb
->sk
);
840 struct fib_config cfg
;
841 struct fib_table
*tb
;
844 err
= rtm_to_fib_config(net
, skb
, nlh
, &cfg
, extack
);
848 if (cfg
.fc_nh_id
&& !nexthop_find_by_id(net
, cfg
.fc_nh_id
)) {
849 NL_SET_ERR_MSG(extack
, "Nexthop id does not exist");
854 tb
= fib_get_table(net
, cfg
.fc_table
);
856 NL_SET_ERR_MSG(extack
, "FIB table does not exist");
861 err
= fib_table_delete(net
, tb
, &cfg
, extack
);
866 static int inet_rtm_newroute(struct sk_buff
*skb
, struct nlmsghdr
*nlh
,
867 struct netlink_ext_ack
*extack
)
869 struct net
*net
= sock_net(skb
->sk
);
870 struct fib_config cfg
;
871 struct fib_table
*tb
;
874 err
= rtm_to_fib_config(net
, skb
, nlh
, &cfg
, extack
);
878 tb
= fib_new_table(net
, cfg
.fc_table
);
884 err
= fib_table_insert(net
, tb
, &cfg
, extack
);
885 if (!err
&& cfg
.fc_type
== RTN_LOCAL
)
886 net
->ipv4
.fib_has_custom_local_routes
= true;
891 int ip_valid_fib_dump_req(struct net
*net
, const struct nlmsghdr
*nlh
,
892 struct fib_dump_filter
*filter
,
893 struct netlink_callback
*cb
)
895 struct netlink_ext_ack
*extack
= cb
->extack
;
896 struct nlattr
*tb
[RTA_MAX
+ 1];
902 if (nlh
->nlmsg_len
< nlmsg_msg_size(sizeof(*rtm
))) {
903 NL_SET_ERR_MSG(extack
, "Invalid header for FIB dump request");
907 rtm
= nlmsg_data(nlh
);
908 if (rtm
->rtm_dst_len
|| rtm
->rtm_src_len
|| rtm
->rtm_tos
||
910 NL_SET_ERR_MSG(extack
, "Invalid values in header for FIB dump request");
914 if (rtm
->rtm_flags
& ~(RTM_F_CLONED
| RTM_F_PREFIX
)) {
915 NL_SET_ERR_MSG(extack
, "Invalid flags for FIB dump request");
918 if (rtm
->rtm_flags
& RTM_F_CLONED
)
919 filter
->dump_routes
= false;
921 filter
->dump_exceptions
= false;
923 filter
->flags
= rtm
->rtm_flags
;
924 filter
->protocol
= rtm
->rtm_protocol
;
925 filter
->rt_type
= rtm
->rtm_type
;
926 filter
->table_id
= rtm
->rtm_table
;
928 err
= nlmsg_parse_deprecated_strict(nlh
, sizeof(*rtm
), tb
, RTA_MAX
,
929 rtm_ipv4_policy
, extack
);
933 for (i
= 0; i
<= RTA_MAX
; ++i
) {
941 filter
->table_id
= nla_get_u32(tb
[i
]);
944 ifindex
= nla_get_u32(tb
[i
]);
945 filter
->dev
= __dev_get_by_index(net
, ifindex
);
950 NL_SET_ERR_MSG(extack
, "Unsupported attribute in dump request");
955 if (filter
->flags
|| filter
->protocol
|| filter
->rt_type
||
956 filter
->table_id
|| filter
->dev
) {
957 filter
->filter_set
= 1;
958 cb
->answer_flags
= NLM_F_DUMP_FILTERED
;
963 EXPORT_SYMBOL_GPL(ip_valid_fib_dump_req
);
965 static int inet_dump_fib(struct sk_buff
*skb
, struct netlink_callback
*cb
)
967 struct fib_dump_filter filter
= { .dump_routes
= true,
968 .dump_exceptions
= true };
969 const struct nlmsghdr
*nlh
= cb
->nlh
;
970 struct net
*net
= sock_net(skb
->sk
);
972 unsigned int e
= 0, s_e
;
973 struct fib_table
*tb
;
974 struct hlist_head
*head
;
977 if (cb
->strict_check
) {
978 err
= ip_valid_fib_dump_req(net
, nlh
, &filter
, cb
);
981 } else if (nlmsg_len(nlh
) >= sizeof(struct rtmsg
)) {
982 struct rtmsg
*rtm
= nlmsg_data(nlh
);
984 filter
.flags
= rtm
->rtm_flags
& (RTM_F_PREFIX
| RTM_F_CLONED
);
987 /* ipv4 does not use prefix flag */
988 if (filter
.flags
& RTM_F_PREFIX
)
991 if (filter
.table_id
) {
992 tb
= fib_get_table(net
, filter
.table_id
);
994 if (rtnl_msg_family(cb
->nlh
) != PF_INET
)
997 NL_SET_ERR_MSG(cb
->extack
, "ipv4: FIB table does not exist");
1002 err
= fib_table_dump(tb
, skb
, cb
, &filter
);
1004 return skb
->len
? : err
;
1012 for (h
= s_h
; h
< FIB_TABLE_HASHSZ
; h
++, s_e
= 0) {
1014 head
= &net
->ipv4
.fib_table_hash
[h
];
1015 hlist_for_each_entry_rcu(tb
, head
, tb_hlist
) {
1019 memset(&cb
->args
[2], 0, sizeof(cb
->args
) -
1020 2 * sizeof(cb
->args
[0]));
1021 err
= fib_table_dump(tb
, skb
, cb
, &filter
);
1023 if (likely(skb
->len
))
1044 /* Prepare and feed intra-kernel routing request.
1045 * Really, it should be netlink message, but :-( netlink
1046 * can be not configured, so that we feed it directly
1047 * to fib engine. It is legal, because all events occur
1048 * only when netlink is already locked.
1050 static void fib_magic(int cmd
, int type
, __be32 dst
, int dst_len
,
1051 struct in_ifaddr
*ifa
, u32 rt_priority
)
1053 struct net
*net
= dev_net(ifa
->ifa_dev
->dev
);
1054 u32 tb_id
= l3mdev_fib_table(ifa
->ifa_dev
->dev
);
1055 struct fib_table
*tb
;
1056 struct fib_config cfg
= {
1057 .fc_protocol
= RTPROT_KERNEL
,
1060 .fc_dst_len
= dst_len
,
1061 .fc_priority
= rt_priority
,
1062 .fc_prefsrc
= ifa
->ifa_local
,
1063 .fc_oif
= ifa
->ifa_dev
->dev
->ifindex
,
1064 .fc_nlflags
= NLM_F_CREATE
| NLM_F_APPEND
,
1071 tb_id
= (type
== RTN_UNICAST
) ? RT_TABLE_MAIN
: RT_TABLE_LOCAL
;
1073 tb
= fib_new_table(net
, tb_id
);
1077 cfg
.fc_table
= tb
->tb_id
;
1079 if (type
!= RTN_LOCAL
)
1080 cfg
.fc_scope
= RT_SCOPE_LINK
;
1082 cfg
.fc_scope
= RT_SCOPE_HOST
;
1084 if (cmd
== RTM_NEWROUTE
)
1085 fib_table_insert(net
, tb
, &cfg
, NULL
);
1087 fib_table_delete(net
, tb
, &cfg
, NULL
);
1090 void fib_add_ifaddr(struct in_ifaddr
*ifa
)
1092 struct in_device
*in_dev
= ifa
->ifa_dev
;
1093 struct net_device
*dev
= in_dev
->dev
;
1094 struct in_ifaddr
*prim
= ifa
;
1095 __be32 mask
= ifa
->ifa_mask
;
1096 __be32 addr
= ifa
->ifa_local
;
1097 __be32 prefix
= ifa
->ifa_address
& mask
;
1099 if (ifa
->ifa_flags
& IFA_F_SECONDARY
) {
1100 prim
= inet_ifa_byprefix(in_dev
, prefix
, mask
);
1102 pr_warn("%s: bug: prim == NULL\n", __func__
);
1107 fib_magic(RTM_NEWROUTE
, RTN_LOCAL
, addr
, 32, prim
, 0);
1109 if (!(dev
->flags
& IFF_UP
))
1112 /* Add broadcast address, if it is explicitly assigned. */
1113 if (ifa
->ifa_broadcast
&& ifa
->ifa_broadcast
!= htonl(0xFFFFFFFF))
1114 fib_magic(RTM_NEWROUTE
, RTN_BROADCAST
, ifa
->ifa_broadcast
, 32,
1117 if (!ipv4_is_zeronet(prefix
) && !(ifa
->ifa_flags
& IFA_F_SECONDARY
) &&
1118 (prefix
!= addr
|| ifa
->ifa_prefixlen
< 32)) {
1119 if (!(ifa
->ifa_flags
& IFA_F_NOPREFIXROUTE
))
1120 fib_magic(RTM_NEWROUTE
,
1121 dev
->flags
& IFF_LOOPBACK
? RTN_LOCAL
: RTN_UNICAST
,
1122 prefix
, ifa
->ifa_prefixlen
, prim
,
1123 ifa
->ifa_rt_priority
);
1125 /* Add network specific broadcasts, when it takes a sense */
1126 if (ifa
->ifa_prefixlen
< 31) {
1127 fib_magic(RTM_NEWROUTE
, RTN_BROADCAST
, prefix
, 32,
1129 fib_magic(RTM_NEWROUTE
, RTN_BROADCAST
, prefix
| ~mask
,
1135 void fib_modify_prefix_metric(struct in_ifaddr
*ifa
, u32 new_metric
)
1137 __be32 prefix
= ifa
->ifa_address
& ifa
->ifa_mask
;
1138 struct in_device
*in_dev
= ifa
->ifa_dev
;
1139 struct net_device
*dev
= in_dev
->dev
;
1141 if (!(dev
->flags
& IFF_UP
) ||
1142 ifa
->ifa_flags
& (IFA_F_SECONDARY
| IFA_F_NOPREFIXROUTE
) ||
1143 ipv4_is_zeronet(prefix
) ||
1144 (prefix
== ifa
->ifa_local
&& ifa
->ifa_prefixlen
== 32))
1148 fib_magic(RTM_NEWROUTE
,
1149 dev
->flags
& IFF_LOOPBACK
? RTN_LOCAL
: RTN_UNICAST
,
1150 prefix
, ifa
->ifa_prefixlen
, ifa
, new_metric
);
1152 /* delete the old */
1153 fib_magic(RTM_DELROUTE
,
1154 dev
->flags
& IFF_LOOPBACK
? RTN_LOCAL
: RTN_UNICAST
,
1155 prefix
, ifa
->ifa_prefixlen
, ifa
, ifa
->ifa_rt_priority
);
1158 /* Delete primary or secondary address.
1159 * Optionally, on secondary address promotion consider the addresses
1160 * from subnet iprim as deleted, even if they are in device list.
1161 * In this case the secondary ifa can be in device list.
1163 void fib_del_ifaddr(struct in_ifaddr
*ifa
, struct in_ifaddr
*iprim
)
1165 struct in_device
*in_dev
= ifa
->ifa_dev
;
1166 struct net_device
*dev
= in_dev
->dev
;
1167 struct in_ifaddr
*ifa1
;
1168 struct in_ifaddr
*prim
= ifa
, *prim1
= NULL
;
1169 __be32 brd
= ifa
->ifa_address
| ~ifa
->ifa_mask
;
1170 __be32 any
= ifa
->ifa_address
& ifa
->ifa_mask
;
1175 unsigned int ok
= 0;
1176 int subnet
= 0; /* Primary network */
1177 int gone
= 1; /* Address is missing */
1178 int same_prefsrc
= 0; /* Another primary with same IP */
1180 if (ifa
->ifa_flags
& IFA_F_SECONDARY
) {
1181 prim
= inet_ifa_byprefix(in_dev
, any
, ifa
->ifa_mask
);
1183 /* if the device has been deleted, we don't perform
1187 pr_warn("%s: bug: prim == NULL\n", __func__
);
1190 if (iprim
&& iprim
!= prim
) {
1191 pr_warn("%s: bug: iprim != prim\n", __func__
);
1194 } else if (!ipv4_is_zeronet(any
) &&
1195 (any
!= ifa
->ifa_local
|| ifa
->ifa_prefixlen
< 32)) {
1196 if (!(ifa
->ifa_flags
& IFA_F_NOPREFIXROUTE
))
1197 fib_magic(RTM_DELROUTE
,
1198 dev
->flags
& IFF_LOOPBACK
? RTN_LOCAL
: RTN_UNICAST
,
1199 any
, ifa
->ifa_prefixlen
, prim
, 0);
1206 /* Deletion is more complicated than add.
1207 * We should take care of not to delete too much :-)
1209 * Scan address list to be sure that addresses are really gone.
1212 in_dev_for_each_ifa_rcu(ifa1
, in_dev
) {
1214 /* promotion, keep the IP */
1218 /* Ignore IFAs from our subnet */
1219 if (iprim
&& ifa1
->ifa_mask
== iprim
->ifa_mask
&&
1220 inet_ifa_match(ifa1
->ifa_address
, iprim
))
1223 /* Ignore ifa1 if it uses different primary IP (prefsrc) */
1224 if (ifa1
->ifa_flags
& IFA_F_SECONDARY
) {
1225 /* Another address from our subnet? */
1226 if (ifa1
->ifa_mask
== prim
->ifa_mask
&&
1227 inet_ifa_match(ifa1
->ifa_address
, prim
))
1230 /* We reached the secondaries, so
1231 * same_prefsrc should be determined.
1235 /* Search new prim1 if ifa1 is not
1236 * using the current prim1
1239 ifa1
->ifa_mask
!= prim1
->ifa_mask
||
1240 !inet_ifa_match(ifa1
->ifa_address
, prim1
))
1241 prim1
= inet_ifa_byprefix(in_dev
,
1246 if (prim1
->ifa_local
!= prim
->ifa_local
)
1250 if (prim
->ifa_local
!= ifa1
->ifa_local
)
1256 if (ifa
->ifa_local
== ifa1
->ifa_local
)
1258 if (ifa
->ifa_broadcast
== ifa1
->ifa_broadcast
)
1260 if (brd
== ifa1
->ifa_broadcast
)
1262 if (any
== ifa1
->ifa_broadcast
)
1264 /* primary has network specific broadcasts */
1265 if (prim1
== ifa1
&& ifa1
->ifa_prefixlen
< 31) {
1266 __be32 brd1
= ifa1
->ifa_address
| ~ifa1
->ifa_mask
;
1267 __be32 any1
= ifa1
->ifa_address
& ifa1
->ifa_mask
;
1269 if (!ipv4_is_zeronet(any1
)) {
1270 if (ifa
->ifa_broadcast
== brd1
||
1271 ifa
->ifa_broadcast
== any1
)
1273 if (brd
== brd1
|| brd
== any1
)
1275 if (any
== brd1
|| any
== any1
)
1284 fib_magic(RTM_DELROUTE
, RTN_BROADCAST
, ifa
->ifa_broadcast
, 32,
1286 if (subnet
&& ifa
->ifa_prefixlen
< 31) {
1287 if (!(ok
& BRD1_OK
))
1288 fib_magic(RTM_DELROUTE
, RTN_BROADCAST
, brd
, 32,
1290 if (!(ok
& BRD0_OK
))
1291 fib_magic(RTM_DELROUTE
, RTN_BROADCAST
, any
, 32,
1294 if (!(ok
& LOCAL_OK
)) {
1295 unsigned int addr_type
;
1297 fib_magic(RTM_DELROUTE
, RTN_LOCAL
, ifa
->ifa_local
, 32, prim
, 0);
1299 /* Check, that this local address finally disappeared. */
1300 addr_type
= inet_addr_type_dev_table(dev_net(dev
), dev
,
1302 if (gone
&& addr_type
!= RTN_LOCAL
) {
1303 /* And the last, but not the least thing.
1304 * We must flush stray FIB entries.
1306 * First of all, we scan fib_info list searching
1307 * for stray nexthop entries, then ignite fib_flush.
1309 if (fib_sync_down_addr(dev
, ifa
->ifa_local
))
1310 fib_flush(dev_net(dev
));
1319 static void nl_fib_lookup(struct net
*net
, struct fib_result_nl
*frn
)
1322 struct fib_result res
;
1323 struct flowi4 fl4
= {
1324 .flowi4_mark
= frn
->fl_mark
,
1325 .daddr
= frn
->fl_addr
,
1326 .flowi4_tos
= frn
->fl_tos
,
1327 .flowi4_scope
= frn
->fl_scope
,
1329 struct fib_table
*tb
;
1333 tb
= fib_get_table(net
, frn
->tb_id_in
);
1339 frn
->tb_id
= tb
->tb_id
;
1340 frn
->err
= fib_table_lookup(tb
, &fl4
, &res
, FIB_LOOKUP_NOREF
);
1343 frn
->prefixlen
= res
.prefixlen
;
1344 frn
->nh_sel
= res
.nh_sel
;
1345 frn
->type
= res
.type
;
1346 frn
->scope
= res
.scope
;
1354 static void nl_fib_input(struct sk_buff
*skb
)
1357 struct fib_result_nl
*frn
;
1358 struct nlmsghdr
*nlh
;
1361 net
= sock_net(skb
->sk
);
1362 nlh
= nlmsg_hdr(skb
);
1363 if (skb
->len
< nlmsg_total_size(sizeof(*frn
)) ||
1364 skb
->len
< nlh
->nlmsg_len
||
1365 nlmsg_len(nlh
) < sizeof(*frn
))
1368 skb
= netlink_skb_clone(skb
, GFP_KERNEL
);
1371 nlh
= nlmsg_hdr(skb
);
1373 frn
= (struct fib_result_nl
*) nlmsg_data(nlh
);
1374 nl_fib_lookup(net
, frn
);
1376 portid
= NETLINK_CB(skb
).portid
; /* netlink portid */
1377 NETLINK_CB(skb
).portid
= 0; /* from kernel */
1378 NETLINK_CB(skb
).dst_group
= 0; /* unicast */
1379 netlink_unicast(net
->ipv4
.fibnl
, skb
, portid
, MSG_DONTWAIT
);
1382 static int __net_init
nl_fib_lookup_init(struct net
*net
)
1385 struct netlink_kernel_cfg cfg
= {
1386 .input
= nl_fib_input
,
1389 sk
= netlink_kernel_create(net
, NETLINK_FIB_LOOKUP
, &cfg
);
1391 return -EAFNOSUPPORT
;
1392 net
->ipv4
.fibnl
= sk
;
1396 static void nl_fib_lookup_exit(struct net
*net
)
1398 netlink_kernel_release(net
->ipv4
.fibnl
);
1399 net
->ipv4
.fibnl
= NULL
;
1402 static void fib_disable_ip(struct net_device
*dev
, unsigned long event
,
1405 if (fib_sync_down_dev(dev
, event
, force
))
1406 fib_flush(dev_net(dev
));
1408 rt_cache_flush(dev_net(dev
));
1412 static int fib_inetaddr_event(struct notifier_block
*this, unsigned long event
, void *ptr
)
1414 struct in_ifaddr
*ifa
= (struct in_ifaddr
*)ptr
;
1415 struct net_device
*dev
= ifa
->ifa_dev
->dev
;
1416 struct net
*net
= dev_net(dev
);
1420 fib_add_ifaddr(ifa
);
1421 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1422 fib_sync_up(dev
, RTNH_F_DEAD
);
1424 atomic_inc(&net
->ipv4
.dev_addr_genid
);
1425 rt_cache_flush(dev_net(dev
));
1428 fib_del_ifaddr(ifa
, NULL
);
1429 atomic_inc(&net
->ipv4
.dev_addr_genid
);
1430 if (!ifa
->ifa_dev
->ifa_list
) {
1431 /* Last address was deleted from this interface.
1434 fib_disable_ip(dev
, event
, true);
1436 rt_cache_flush(dev_net(dev
));
1443 static int fib_netdev_event(struct notifier_block
*this, unsigned long event
, void *ptr
)
1445 struct net_device
*dev
= netdev_notifier_info_to_dev(ptr
);
1446 struct netdev_notifier_changeupper_info
*upper_info
= ptr
;
1447 struct netdev_notifier_info_ext
*info_ext
= ptr
;
1448 struct in_device
*in_dev
;
1449 struct net
*net
= dev_net(dev
);
1450 struct in_ifaddr
*ifa
;
1453 if (event
== NETDEV_UNREGISTER
) {
1454 fib_disable_ip(dev
, event
, true);
1459 in_dev
= __in_dev_get_rtnl(dev
);
1465 in_dev_for_each_ifa_rtnl(ifa
, in_dev
) {
1466 fib_add_ifaddr(ifa
);
1468 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1469 fib_sync_up(dev
, RTNH_F_DEAD
);
1471 atomic_inc(&net
->ipv4
.dev_addr_genid
);
1472 rt_cache_flush(net
);
1475 fib_disable_ip(dev
, event
, false);
1478 flags
= dev_get_flags(dev
);
1479 if (flags
& (IFF_RUNNING
| IFF_LOWER_UP
))
1480 fib_sync_up(dev
, RTNH_F_LINKDOWN
);
1482 fib_sync_down_dev(dev
, event
, false);
1483 rt_cache_flush(net
);
1485 case NETDEV_CHANGEMTU
:
1486 fib_sync_mtu(dev
, info_ext
->ext
.mtu
);
1487 rt_cache_flush(net
);
1489 case NETDEV_CHANGEUPPER
:
1491 /* flush all routes if dev is linked to or unlinked from
1492 * an L3 master device (e.g., VRF)
1494 if (upper_info
->upper_dev
&&
1495 netif_is_l3_master(upper_info
->upper_dev
))
1496 fib_disable_ip(dev
, NETDEV_DOWN
, true);
1502 static struct notifier_block fib_inetaddr_notifier
= {
1503 .notifier_call
= fib_inetaddr_event
,
1506 static struct notifier_block fib_netdev_notifier
= {
1507 .notifier_call
= fib_netdev_event
,
1510 static int __net_init
ip_fib_net_init(struct net
*net
)
1513 size_t size
= sizeof(struct hlist_head
) * FIB_TABLE_HASHSZ
;
1515 err
= fib4_notifier_init(net
);
1519 /* Avoid false sharing : Use at least a full cache line */
1520 size
= max_t(size_t, size
, L1_CACHE_BYTES
);
1522 net
->ipv4
.fib_table_hash
= kzalloc(size
, GFP_KERNEL
);
1523 if (!net
->ipv4
.fib_table_hash
) {
1525 goto err_table_hash_alloc
;
1528 err
= fib4_rules_init(net
);
1530 goto err_rules_init
;
1534 kfree(net
->ipv4
.fib_table_hash
);
1535 err_table_hash_alloc
:
1536 fib4_notifier_exit(net
);
1540 static void ip_fib_net_exit(struct net
*net
)
1545 #ifdef CONFIG_IP_MULTIPLE_TABLES
1546 RCU_INIT_POINTER(net
->ipv4
.fib_main
, NULL
);
1547 RCU_INIT_POINTER(net
->ipv4
.fib_default
, NULL
);
1549 /* Destroy the tables in reverse order to guarantee that the
1550 * local table, ID 255, is destroyed before the main table, ID
1551 * 254. This is necessary as the local table may contain
1552 * references to data contained in the main table.
1554 for (i
= FIB_TABLE_HASHSZ
- 1; i
>= 0; i
--) {
1555 struct hlist_head
*head
= &net
->ipv4
.fib_table_hash
[i
];
1556 struct hlist_node
*tmp
;
1557 struct fib_table
*tb
;
1559 hlist_for_each_entry_safe(tb
, tmp
, head
, tb_hlist
) {
1560 hlist_del(&tb
->tb_hlist
);
1561 fib_table_flush(net
, tb
, true);
1566 #ifdef CONFIG_IP_MULTIPLE_TABLES
1567 fib4_rules_exit(net
);
1570 kfree(net
->ipv4
.fib_table_hash
);
1571 fib4_notifier_exit(net
);
1574 static int __net_init
fib_net_init(struct net
*net
)
1578 #ifdef CONFIG_IP_ROUTE_CLASSID
1579 net
->ipv4
.fib_num_tclassid_users
= 0;
1581 error
= ip_fib_net_init(net
);
1584 error
= nl_fib_lookup_init(net
);
1587 error
= fib_proc_init(net
);
1594 nl_fib_lookup_exit(net
);
1596 ip_fib_net_exit(net
);
1600 static void __net_exit
fib_net_exit(struct net
*net
)
1603 nl_fib_lookup_exit(net
);
1604 ip_fib_net_exit(net
);
1607 static struct pernet_operations fib_net_ops
= {
1608 .init
= fib_net_init
,
1609 .exit
= fib_net_exit
,
1612 void __init
ip_fib_init(void)
1616 register_pernet_subsys(&fib_net_ops
);
1618 register_netdevice_notifier(&fib_netdev_notifier
);
1619 register_inetaddr_notifier(&fib_inetaddr_notifier
);
1621 rtnl_register(PF_INET
, RTM_NEWROUTE
, inet_rtm_newroute
, NULL
, 0);
1622 rtnl_register(PF_INET
, RTM_DELROUTE
, inet_rtm_delroute
, NULL
, 0);
1623 rtnl_register(PF_INET
, RTM_GETROUTE
, NULL
, inet_dump_fib
, 0);