Merge tag 'wireless-drivers-next-for-davem-2015-08-19' of git://git.kernel.org/pub...
[firefly-linux-kernel-4.4.55.git] / net / ipv4 / fib_semantics.c
1 /*
2  * INET         An implementation of the TCP/IP protocol suite for the LINUX
3  *              operating system.  INET is implemented using the  BSD Socket
4  *              interface as the means of communication with the user level.
5  *
6  *              IPv4 Forwarding Information Base: semantics.
7  *
8  * Authors:     Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
9  *
10  *              This program is free software; you can redistribute it and/or
11  *              modify it under the terms of the GNU General Public License
12  *              as published by the Free Software Foundation; either version
13  *              2 of the License, or (at your option) any later version.
14  */
15
16 #include <asm/uaccess.h>
17 #include <linux/bitops.h>
18 #include <linux/types.h>
19 #include <linux/kernel.h>
20 #include <linux/jiffies.h>
21 #include <linux/mm.h>
22 #include <linux/string.h>
23 #include <linux/socket.h>
24 #include <linux/sockios.h>
25 #include <linux/errno.h>
26 #include <linux/in.h>
27 #include <linux/inet.h>
28 #include <linux/inetdevice.h>
29 #include <linux/netdevice.h>
30 #include <linux/if_arp.h>
31 #include <linux/proc_fs.h>
32 #include <linux/skbuff.h>
33 #include <linux/init.h>
34 #include <linux/slab.h>
35
36 #include <net/arp.h>
37 #include <net/ip.h>
38 #include <net/protocol.h>
39 #include <net/route.h>
40 #include <net/tcp.h>
41 #include <net/sock.h>
42 #include <net/ip_fib.h>
43 #include <net/netlink.h>
44 #include <net/nexthop.h>
45 #include <net/lwtunnel.h>
46
47 #include "fib_lookup.h"
48
49 static DEFINE_SPINLOCK(fib_info_lock);
50 static struct hlist_head *fib_info_hash;
51 static struct hlist_head *fib_info_laddrhash;
52 static unsigned int fib_info_hash_size;
53 static unsigned int fib_info_cnt;
54
55 #define DEVINDEX_HASHBITS 8
56 #define DEVINDEX_HASHSIZE (1U << DEVINDEX_HASHBITS)
57 static struct hlist_head fib_info_devhash[DEVINDEX_HASHSIZE];
58
59 #ifdef CONFIG_IP_ROUTE_MULTIPATH
60
61 static DEFINE_SPINLOCK(fib_multipath_lock);
62
63 #define for_nexthops(fi) {                                              \
64         int nhsel; const struct fib_nh *nh;                             \
65         for (nhsel = 0, nh = (fi)->fib_nh;                              \
66              nhsel < (fi)->fib_nhs;                                     \
67              nh++, nhsel++)
68
69 #define change_nexthops(fi) {                                           \
70         int nhsel; struct fib_nh *nexthop_nh;                           \
71         for (nhsel = 0, nexthop_nh = (struct fib_nh *)((fi)->fib_nh);   \
72              nhsel < (fi)->fib_nhs;                                     \
73              nexthop_nh++, nhsel++)
74
75 #else /* CONFIG_IP_ROUTE_MULTIPATH */
76
77 /* Hope, that gcc will optimize it to get rid of dummy loop */
78
79 #define for_nexthops(fi) {                                              \
80         int nhsel; const struct fib_nh *nh = (fi)->fib_nh;              \
81         for (nhsel = 0; nhsel < 1; nhsel++)
82
83 #define change_nexthops(fi) {                                           \
84         int nhsel;                                                      \
85         struct fib_nh *nexthop_nh = (struct fib_nh *)((fi)->fib_nh);    \
86         for (nhsel = 0; nhsel < 1; nhsel++)
87
88 #endif /* CONFIG_IP_ROUTE_MULTIPATH */
89
90 #define endfor_nexthops(fi) }
91
92
93 const struct fib_prop fib_props[RTN_MAX + 1] = {
94         [RTN_UNSPEC] = {
95                 .error  = 0,
96                 .scope  = RT_SCOPE_NOWHERE,
97         },
98         [RTN_UNICAST] = {
99                 .error  = 0,
100                 .scope  = RT_SCOPE_UNIVERSE,
101         },
102         [RTN_LOCAL] = {
103                 .error  = 0,
104                 .scope  = RT_SCOPE_HOST,
105         },
106         [RTN_BROADCAST] = {
107                 .error  = 0,
108                 .scope  = RT_SCOPE_LINK,
109         },
110         [RTN_ANYCAST] = {
111                 .error  = 0,
112                 .scope  = RT_SCOPE_LINK,
113         },
114         [RTN_MULTICAST] = {
115                 .error  = 0,
116                 .scope  = RT_SCOPE_UNIVERSE,
117         },
118         [RTN_BLACKHOLE] = {
119                 .error  = -EINVAL,
120                 .scope  = RT_SCOPE_UNIVERSE,
121         },
122         [RTN_UNREACHABLE] = {
123                 .error  = -EHOSTUNREACH,
124                 .scope  = RT_SCOPE_UNIVERSE,
125         },
126         [RTN_PROHIBIT] = {
127                 .error  = -EACCES,
128                 .scope  = RT_SCOPE_UNIVERSE,
129         },
130         [RTN_THROW] = {
131                 .error  = -EAGAIN,
132                 .scope  = RT_SCOPE_UNIVERSE,
133         },
134         [RTN_NAT] = {
135                 .error  = -EINVAL,
136                 .scope  = RT_SCOPE_NOWHERE,
137         },
138         [RTN_XRESOLVE] = {
139                 .error  = -EINVAL,
140                 .scope  = RT_SCOPE_NOWHERE,
141         },
142 };
143
144 static void rt_fibinfo_free(struct rtable __rcu **rtp)
145 {
146         struct rtable *rt = rcu_dereference_protected(*rtp, 1);
147
148         if (!rt)
149                 return;
150
151         /* Not even needed : RCU_INIT_POINTER(*rtp, NULL);
152          * because we waited an RCU grace period before calling
153          * free_fib_info_rcu()
154          */
155
156         dst_free(&rt->dst);
157 }
158
159 static void free_nh_exceptions(struct fib_nh *nh)
160 {
161         struct fnhe_hash_bucket *hash;
162         int i;
163
164         hash = rcu_dereference_protected(nh->nh_exceptions, 1);
165         if (!hash)
166                 return;
167         for (i = 0; i < FNHE_HASH_SIZE; i++) {
168                 struct fib_nh_exception *fnhe;
169
170                 fnhe = rcu_dereference_protected(hash[i].chain, 1);
171                 while (fnhe) {
172                         struct fib_nh_exception *next;
173                         
174                         next = rcu_dereference_protected(fnhe->fnhe_next, 1);
175
176                         rt_fibinfo_free(&fnhe->fnhe_rth_input);
177                         rt_fibinfo_free(&fnhe->fnhe_rth_output);
178
179                         kfree(fnhe);
180
181                         fnhe = next;
182                 }
183         }
184         kfree(hash);
185 }
186
187 static void rt_fibinfo_free_cpus(struct rtable __rcu * __percpu *rtp)
188 {
189         int cpu;
190
191         if (!rtp)
192                 return;
193
194         for_each_possible_cpu(cpu) {
195                 struct rtable *rt;
196
197                 rt = rcu_dereference_protected(*per_cpu_ptr(rtp, cpu), 1);
198                 if (rt)
199                         dst_free(&rt->dst);
200         }
201         free_percpu(rtp);
202 }
203
204 /* Release a nexthop info record */
205 static void free_fib_info_rcu(struct rcu_head *head)
206 {
207         struct fib_info *fi = container_of(head, struct fib_info, rcu);
208
209         change_nexthops(fi) {
210                 if (nexthop_nh->nh_dev)
211                         dev_put(nexthop_nh->nh_dev);
212                 lwtstate_put(nexthop_nh->nh_lwtstate);
213                 free_nh_exceptions(nexthop_nh);
214                 rt_fibinfo_free_cpus(nexthop_nh->nh_pcpu_rth_output);
215                 rt_fibinfo_free(&nexthop_nh->nh_rth_input);
216         } endfor_nexthops(fi);
217
218         if (fi->fib_metrics != (u32 *) dst_default_metrics)
219                 kfree(fi->fib_metrics);
220         kfree(fi);
221 }
222
223 void free_fib_info(struct fib_info *fi)
224 {
225         if (fi->fib_dead == 0) {
226                 pr_warn("Freeing alive fib_info %p\n", fi);
227                 return;
228         }
229         fib_info_cnt--;
230 #ifdef CONFIG_IP_ROUTE_CLASSID
231         change_nexthops(fi) {
232                 if (nexthop_nh->nh_tclassid)
233                         fi->fib_net->ipv4.fib_num_tclassid_users--;
234         } endfor_nexthops(fi);
235 #endif
236         call_rcu(&fi->rcu, free_fib_info_rcu);
237 }
238
239 void fib_release_info(struct fib_info *fi)
240 {
241         spin_lock_bh(&fib_info_lock);
242         if (fi && --fi->fib_treeref == 0) {
243                 hlist_del(&fi->fib_hash);
244                 if (fi->fib_prefsrc)
245                         hlist_del(&fi->fib_lhash);
246                 change_nexthops(fi) {
247                         if (!nexthop_nh->nh_dev)
248                                 continue;
249                         hlist_del(&nexthop_nh->nh_hash);
250                 } endfor_nexthops(fi)
251                 fi->fib_dead = 1;
252                 fib_info_put(fi);
253         }
254         spin_unlock_bh(&fib_info_lock);
255 }
256
257 static inline int nh_comp(const struct fib_info *fi, const struct fib_info *ofi)
258 {
259         const struct fib_nh *onh = ofi->fib_nh;
260
261         for_nexthops(fi) {
262                 if (nh->nh_oif != onh->nh_oif ||
263                     nh->nh_gw  != onh->nh_gw ||
264                     nh->nh_scope != onh->nh_scope ||
265 #ifdef CONFIG_IP_ROUTE_MULTIPATH
266                     nh->nh_weight != onh->nh_weight ||
267 #endif
268 #ifdef CONFIG_IP_ROUTE_CLASSID
269                     nh->nh_tclassid != onh->nh_tclassid ||
270 #endif
271                     lwtunnel_cmp_encap(nh->nh_lwtstate, onh->nh_lwtstate) ||
272                     ((nh->nh_flags ^ onh->nh_flags) & ~RTNH_COMPARE_MASK))
273                         return -1;
274                 onh++;
275         } endfor_nexthops(fi);
276         return 0;
277 }
278
279 static inline unsigned int fib_devindex_hashfn(unsigned int val)
280 {
281         unsigned int mask = DEVINDEX_HASHSIZE - 1;
282
283         return (val ^
284                 (val >> DEVINDEX_HASHBITS) ^
285                 (val >> (DEVINDEX_HASHBITS * 2))) & mask;
286 }
287
288 static inline unsigned int fib_info_hashfn(const struct fib_info *fi)
289 {
290         unsigned int mask = (fib_info_hash_size - 1);
291         unsigned int val = fi->fib_nhs;
292
293         val ^= (fi->fib_protocol << 8) | fi->fib_scope;
294         val ^= (__force u32)fi->fib_prefsrc;
295         val ^= fi->fib_priority;
296         for_nexthops(fi) {
297                 val ^= fib_devindex_hashfn(nh->nh_oif);
298         } endfor_nexthops(fi)
299
300         return (val ^ (val >> 7) ^ (val >> 12)) & mask;
301 }
302
303 static struct fib_info *fib_find_info(const struct fib_info *nfi)
304 {
305         struct hlist_head *head;
306         struct fib_info *fi;
307         unsigned int hash;
308
309         hash = fib_info_hashfn(nfi);
310         head = &fib_info_hash[hash];
311
312         hlist_for_each_entry(fi, head, fib_hash) {
313                 if (!net_eq(fi->fib_net, nfi->fib_net))
314                         continue;
315                 if (fi->fib_nhs != nfi->fib_nhs)
316                         continue;
317                 if (nfi->fib_protocol == fi->fib_protocol &&
318                     nfi->fib_scope == fi->fib_scope &&
319                     nfi->fib_prefsrc == fi->fib_prefsrc &&
320                     nfi->fib_priority == fi->fib_priority &&
321                     nfi->fib_type == fi->fib_type &&
322                     memcmp(nfi->fib_metrics, fi->fib_metrics,
323                            sizeof(u32) * RTAX_MAX) == 0 &&
324                     !((nfi->fib_flags ^ fi->fib_flags) & ~RTNH_COMPARE_MASK) &&
325                     (nfi->fib_nhs == 0 || nh_comp(fi, nfi) == 0))
326                         return fi;
327         }
328
329         return NULL;
330 }
331
332 /* Check, that the gateway is already configured.
333  * Used only by redirect accept routine.
334  */
335 int ip_fib_check_default(__be32 gw, struct net_device *dev)
336 {
337         struct hlist_head *head;
338         struct fib_nh *nh;
339         unsigned int hash;
340
341         spin_lock(&fib_info_lock);
342
343         hash = fib_devindex_hashfn(dev->ifindex);
344         head = &fib_info_devhash[hash];
345         hlist_for_each_entry(nh, head, nh_hash) {
346                 if (nh->nh_dev == dev &&
347                     nh->nh_gw == gw &&
348                     !(nh->nh_flags & RTNH_F_DEAD)) {
349                         spin_unlock(&fib_info_lock);
350                         return 0;
351                 }
352         }
353
354         spin_unlock(&fib_info_lock);
355
356         return -1;
357 }
358
359 static inline size_t fib_nlmsg_size(struct fib_info *fi)
360 {
361         size_t payload = NLMSG_ALIGN(sizeof(struct rtmsg))
362                          + nla_total_size(4) /* RTA_TABLE */
363                          + nla_total_size(4) /* RTA_DST */
364                          + nla_total_size(4) /* RTA_PRIORITY */
365                          + nla_total_size(4) /* RTA_PREFSRC */
366                          + nla_total_size(TCP_CA_NAME_MAX); /* RTAX_CC_ALGO */
367
368         /* space for nested metrics */
369         payload += nla_total_size((RTAX_MAX * nla_total_size(4)));
370
371         if (fi->fib_nhs) {
372                 size_t nh_encapsize = 0;
373                 /* Also handles the special case fib_nhs == 1 */
374
375                 /* each nexthop is packed in an attribute */
376                 size_t nhsize = nla_total_size(sizeof(struct rtnexthop));
377
378                 /* may contain flow and gateway attribute */
379                 nhsize += 2 * nla_total_size(4);
380
381                 /* grab encap info */
382                 for_nexthops(fi) {
383                         if (nh->nh_lwtstate) {
384                                 /* RTA_ENCAP_TYPE */
385                                 nh_encapsize += lwtunnel_get_encap_size(
386                                                 nh->nh_lwtstate);
387                                 /* RTA_ENCAP */
388                                 nh_encapsize +=  nla_total_size(2);
389                         }
390                 } endfor_nexthops(fi);
391
392                 /* all nexthops are packed in a nested attribute */
393                 payload += nla_total_size((fi->fib_nhs * nhsize) +
394                                           nh_encapsize);
395
396         }
397
398         return payload;
399 }
400
401 void rtmsg_fib(int event, __be32 key, struct fib_alias *fa,
402                int dst_len, u32 tb_id, const struct nl_info *info,
403                unsigned int nlm_flags)
404 {
405         struct sk_buff *skb;
406         u32 seq = info->nlh ? info->nlh->nlmsg_seq : 0;
407         int err = -ENOBUFS;
408
409         skb = nlmsg_new(fib_nlmsg_size(fa->fa_info), GFP_KERNEL);
410         if (!skb)
411                 goto errout;
412
413         err = fib_dump_info(skb, info->portid, seq, event, tb_id,
414                             fa->fa_type, key, dst_len,
415                             fa->fa_tos, fa->fa_info, nlm_flags);
416         if (err < 0) {
417                 /* -EMSGSIZE implies BUG in fib_nlmsg_size() */
418                 WARN_ON(err == -EMSGSIZE);
419                 kfree_skb(skb);
420                 goto errout;
421         }
422         rtnl_notify(skb, info->nl_net, info->portid, RTNLGRP_IPV4_ROUTE,
423                     info->nlh, GFP_KERNEL);
424         return;
425 errout:
426         if (err < 0)
427                 rtnl_set_sk_err(info->nl_net, RTNLGRP_IPV4_ROUTE, err);
428 }
429
430 static int fib_detect_death(struct fib_info *fi, int order,
431                             struct fib_info **last_resort, int *last_idx,
432                             int dflt)
433 {
434         struct neighbour *n;
435         int state = NUD_NONE;
436
437         n = neigh_lookup(&arp_tbl, &fi->fib_nh[0].nh_gw, fi->fib_dev);
438         if (n) {
439                 state = n->nud_state;
440                 neigh_release(n);
441         } else {
442                 return 0;
443         }
444         if (state == NUD_REACHABLE)
445                 return 0;
446         if ((state & NUD_VALID) && order != dflt)
447                 return 0;
448         if ((state & NUD_VALID) ||
449             (*last_idx < 0 && order > dflt && state != NUD_INCOMPLETE)) {
450                 *last_resort = fi;
451                 *last_idx = order;
452         }
453         return 1;
454 }
455
456 #ifdef CONFIG_IP_ROUTE_MULTIPATH
457
458 static int fib_count_nexthops(struct rtnexthop *rtnh, int remaining)
459 {
460         int nhs = 0;
461
462         while (rtnh_ok(rtnh, remaining)) {
463                 nhs++;
464                 rtnh = rtnh_next(rtnh, &remaining);
465         }
466
467         /* leftover implies invalid nexthop configuration, discard it */
468         return remaining > 0 ? 0 : nhs;
469 }
470
471 static int fib_get_nhs(struct fib_info *fi, struct rtnexthop *rtnh,
472                        int remaining, struct fib_config *cfg)
473 {
474         struct net *net = cfg->fc_nlinfo.nl_net;
475         int ret;
476
477         change_nexthops(fi) {
478                 int attrlen;
479
480                 if (!rtnh_ok(rtnh, remaining))
481                         return -EINVAL;
482
483                 nexthop_nh->nh_flags =
484                         (cfg->fc_flags & ~0xFF) | rtnh->rtnh_flags;
485                 nexthop_nh->nh_oif = rtnh->rtnh_ifindex;
486                 nexthop_nh->nh_weight = rtnh->rtnh_hops + 1;
487
488                 attrlen = rtnh_attrlen(rtnh);
489                 if (attrlen > 0) {
490                         struct nlattr *nla, *attrs = rtnh_attrs(rtnh);
491
492                         nla = nla_find(attrs, attrlen, RTA_GATEWAY);
493                         nexthop_nh->nh_gw = nla ? nla_get_in_addr(nla) : 0;
494 #ifdef CONFIG_IP_ROUTE_CLASSID
495                         nla = nla_find(attrs, attrlen, RTA_FLOW);
496                         nexthop_nh->nh_tclassid = nla ? nla_get_u32(nla) : 0;
497                         if (nexthop_nh->nh_tclassid)
498                                 fi->fib_net->ipv4.fib_num_tclassid_users++;
499 #endif
500                         nla = nla_find(attrs, attrlen, RTA_ENCAP);
501                         if (nla) {
502                                 struct lwtunnel_state *lwtstate;
503                                 struct net_device *dev = NULL;
504                                 struct nlattr *nla_entype;
505
506                                 nla_entype = nla_find(attrs, attrlen,
507                                                       RTA_ENCAP_TYPE);
508                                 if (!nla_entype)
509                                         goto err_inval;
510                                 if (cfg->fc_oif)
511                                         dev = __dev_get_by_index(net, cfg->fc_oif);
512                                 ret = lwtunnel_build_state(dev, nla_get_u16(
513                                                            nla_entype),
514                                                            nla, &lwtstate);
515                                 if (ret)
516                                         goto errout;
517                                 nexthop_nh->nh_lwtstate =
518                                         lwtstate_get(lwtstate);
519                         }
520                 }
521
522                 rtnh = rtnh_next(rtnh, &remaining);
523         } endfor_nexthops(fi);
524
525         return 0;
526
527 err_inval:
528         ret = -EINVAL;
529
530 errout:
531         return ret;
532 }
533
534 #endif
535
536 static int fib_encap_match(struct net *net, u16 encap_type,
537                            struct nlattr *encap,
538                            int oif, const struct fib_nh *nh)
539 {
540         struct lwtunnel_state *lwtstate;
541         struct net_device *dev = NULL;
542         int ret, result = 0;
543
544         if (encap_type == LWTUNNEL_ENCAP_NONE)
545                 return 0;
546
547         if (oif)
548                 dev = __dev_get_by_index(net, oif);
549         ret = lwtunnel_build_state(dev, encap_type,
550                                    encap, &lwtstate);
551         if (!ret) {
552                 result = lwtunnel_cmp_encap(lwtstate, nh->nh_lwtstate);
553                 lwtstate_free(lwtstate);
554         }
555
556         return result;
557 }
558
559 int fib_nh_match(struct fib_config *cfg, struct fib_info *fi)
560 {
561         struct net *net = cfg->fc_nlinfo.nl_net;
562 #ifdef CONFIG_IP_ROUTE_MULTIPATH
563         struct rtnexthop *rtnh;
564         int remaining;
565 #endif
566
567         if (cfg->fc_priority && cfg->fc_priority != fi->fib_priority)
568                 return 1;
569
570         if (cfg->fc_oif || cfg->fc_gw) {
571                 if (cfg->fc_encap) {
572                         if (fib_encap_match(net, cfg->fc_encap_type,
573                                             cfg->fc_encap, cfg->fc_oif,
574                                             fi->fib_nh))
575                             return 1;
576                 }
577                 if ((!cfg->fc_oif || cfg->fc_oif == fi->fib_nh->nh_oif) &&
578                     (!cfg->fc_gw  || cfg->fc_gw == fi->fib_nh->nh_gw))
579                         return 0;
580                 return 1;
581         }
582
583 #ifdef CONFIG_IP_ROUTE_MULTIPATH
584         if (!cfg->fc_mp)
585                 return 0;
586
587         rtnh = cfg->fc_mp;
588         remaining = cfg->fc_mp_len;
589
590         for_nexthops(fi) {
591                 int attrlen;
592
593                 if (!rtnh_ok(rtnh, remaining))
594                         return -EINVAL;
595
596                 if (rtnh->rtnh_ifindex && rtnh->rtnh_ifindex != nh->nh_oif)
597                         return 1;
598
599                 attrlen = rtnh_attrlen(rtnh);
600                 if (attrlen > 0) {
601                         struct nlattr *nla, *attrs = rtnh_attrs(rtnh);
602
603                         nla = nla_find(attrs, attrlen, RTA_GATEWAY);
604                         if (nla && nla_get_in_addr(nla) != nh->nh_gw)
605                                 return 1;
606 #ifdef CONFIG_IP_ROUTE_CLASSID
607                         nla = nla_find(attrs, attrlen, RTA_FLOW);
608                         if (nla && nla_get_u32(nla) != nh->nh_tclassid)
609                                 return 1;
610 #endif
611                 }
612
613                 rtnh = rtnh_next(rtnh, &remaining);
614         } endfor_nexthops(fi);
615 #endif
616         return 0;
617 }
618
619
620 /*
621  * Picture
622  * -------
623  *
624  * Semantics of nexthop is very messy by historical reasons.
625  * We have to take into account, that:
626  * a) gateway can be actually local interface address,
627  *    so that gatewayed route is direct.
628  * b) gateway must be on-link address, possibly
629  *    described not by an ifaddr, but also by a direct route.
630  * c) If both gateway and interface are specified, they should not
631  *    contradict.
632  * d) If we use tunnel routes, gateway could be not on-link.
633  *
634  * Attempt to reconcile all of these (alas, self-contradictory) conditions
635  * results in pretty ugly and hairy code with obscure logic.
636  *
637  * I chose to generalized it instead, so that the size
638  * of code does not increase practically, but it becomes
639  * much more general.
640  * Every prefix is assigned a "scope" value: "host" is local address,
641  * "link" is direct route,
642  * [ ... "site" ... "interior" ... ]
643  * and "universe" is true gateway route with global meaning.
644  *
645  * Every prefix refers to a set of "nexthop"s (gw, oif),
646  * where gw must have narrower scope. This recursion stops
647  * when gw has LOCAL scope or if "nexthop" is declared ONLINK,
648  * which means that gw is forced to be on link.
649  *
650  * Code is still hairy, but now it is apparently logically
651  * consistent and very flexible. F.e. as by-product it allows
652  * to co-exists in peace independent exterior and interior
653  * routing processes.
654  *
655  * Normally it looks as following.
656  *
657  * {universe prefix}  -> (gw, oif) [scope link]
658  *                |
659  *                |-> {link prefix} -> (gw, oif) [scope local]
660  *                                      |
661  *                                      |-> {local prefix} (terminal node)
662  */
663 static int fib_check_nh(struct fib_config *cfg, struct fib_info *fi,
664                         struct fib_nh *nh)
665 {
666         int err;
667         struct net *net;
668         struct net_device *dev;
669
670         net = cfg->fc_nlinfo.nl_net;
671         if (nh->nh_gw) {
672                 struct fib_result res;
673
674                 if (nh->nh_flags & RTNH_F_ONLINK) {
675                         unsigned int addr_type;
676
677                         if (cfg->fc_scope >= RT_SCOPE_LINK)
678                                 return -EINVAL;
679                         dev = __dev_get_by_index(net, nh->nh_oif);
680                         if (!dev)
681                                 return -ENODEV;
682                         if (!(dev->flags & IFF_UP))
683                                 return -ENETDOWN;
684                         addr_type = inet_addr_type_dev_table(net, dev, nh->nh_gw);
685                         if (addr_type != RTN_UNICAST)
686                                 return -EINVAL;
687                         if (!netif_carrier_ok(dev))
688                                 nh->nh_flags |= RTNH_F_LINKDOWN;
689                         nh->nh_dev = dev;
690                         dev_hold(dev);
691                         nh->nh_scope = RT_SCOPE_LINK;
692                         return 0;
693                 }
694                 rcu_read_lock();
695                 {
696                         struct fib_table *tbl = NULL;
697                         struct flowi4 fl4 = {
698                                 .daddr = nh->nh_gw,
699                                 .flowi4_scope = cfg->fc_scope + 1,
700                                 .flowi4_oif = nh->nh_oif,
701                                 .flowi4_iif = LOOPBACK_IFINDEX,
702                         };
703
704                         /* It is not necessary, but requires a bit of thinking */
705                         if (fl4.flowi4_scope < RT_SCOPE_LINK)
706                                 fl4.flowi4_scope = RT_SCOPE_LINK;
707
708                         if (cfg->fc_table)
709                                 tbl = fib_get_table(net, cfg->fc_table);
710
711                         if (tbl)
712                                 err = fib_table_lookup(tbl, &fl4, &res,
713                                                        FIB_LOOKUP_IGNORE_LINKSTATE |
714                                                        FIB_LOOKUP_NOREF);
715                         else
716                                 err = fib_lookup(net, &fl4, &res,
717                                                  FIB_LOOKUP_IGNORE_LINKSTATE);
718                         if (err) {
719                                 rcu_read_unlock();
720                                 return err;
721                         }
722                 }
723                 err = -EINVAL;
724                 if (res.type != RTN_UNICAST && res.type != RTN_LOCAL)
725                         goto out;
726                 nh->nh_scope = res.scope;
727                 nh->nh_oif = FIB_RES_OIF(res);
728                 nh->nh_dev = dev = FIB_RES_DEV(res);
729                 if (!dev)
730                         goto out;
731                 dev_hold(dev);
732                 if (!netif_carrier_ok(dev))
733                         nh->nh_flags |= RTNH_F_LINKDOWN;
734                 err = (dev->flags & IFF_UP) ? 0 : -ENETDOWN;
735         } else {
736                 struct in_device *in_dev;
737
738                 if (nh->nh_flags & (RTNH_F_PERVASIVE | RTNH_F_ONLINK))
739                         return -EINVAL;
740
741                 rcu_read_lock();
742                 err = -ENODEV;
743                 in_dev = inetdev_by_index(net, nh->nh_oif);
744                 if (!in_dev)
745                         goto out;
746                 err = -ENETDOWN;
747                 if (!(in_dev->dev->flags & IFF_UP))
748                         goto out;
749                 nh->nh_dev = in_dev->dev;
750                 dev_hold(nh->nh_dev);
751                 nh->nh_scope = RT_SCOPE_HOST;
752                 if (!netif_carrier_ok(nh->nh_dev))
753                         nh->nh_flags |= RTNH_F_LINKDOWN;
754                 err = 0;
755         }
756 out:
757         rcu_read_unlock();
758         return err;
759 }
760
761 static inline unsigned int fib_laddr_hashfn(__be32 val)
762 {
763         unsigned int mask = (fib_info_hash_size - 1);
764
765         return ((__force u32)val ^
766                 ((__force u32)val >> 7) ^
767                 ((__force u32)val >> 14)) & mask;
768 }
769
770 static struct hlist_head *fib_info_hash_alloc(int bytes)
771 {
772         if (bytes <= PAGE_SIZE)
773                 return kzalloc(bytes, GFP_KERNEL);
774         else
775                 return (struct hlist_head *)
776                         __get_free_pages(GFP_KERNEL | __GFP_ZERO,
777                                          get_order(bytes));
778 }
779
780 static void fib_info_hash_free(struct hlist_head *hash, int bytes)
781 {
782         if (!hash)
783                 return;
784
785         if (bytes <= PAGE_SIZE)
786                 kfree(hash);
787         else
788                 free_pages((unsigned long) hash, get_order(bytes));
789 }
790
791 static void fib_info_hash_move(struct hlist_head *new_info_hash,
792                                struct hlist_head *new_laddrhash,
793                                unsigned int new_size)
794 {
795         struct hlist_head *old_info_hash, *old_laddrhash;
796         unsigned int old_size = fib_info_hash_size;
797         unsigned int i, bytes;
798
799         spin_lock_bh(&fib_info_lock);
800         old_info_hash = fib_info_hash;
801         old_laddrhash = fib_info_laddrhash;
802         fib_info_hash_size = new_size;
803
804         for (i = 0; i < old_size; i++) {
805                 struct hlist_head *head = &fib_info_hash[i];
806                 struct hlist_node *n;
807                 struct fib_info *fi;
808
809                 hlist_for_each_entry_safe(fi, n, head, fib_hash) {
810                         struct hlist_head *dest;
811                         unsigned int new_hash;
812
813                         new_hash = fib_info_hashfn(fi);
814                         dest = &new_info_hash[new_hash];
815                         hlist_add_head(&fi->fib_hash, dest);
816                 }
817         }
818         fib_info_hash = new_info_hash;
819
820         for (i = 0; i < old_size; i++) {
821                 struct hlist_head *lhead = &fib_info_laddrhash[i];
822                 struct hlist_node *n;
823                 struct fib_info *fi;
824
825                 hlist_for_each_entry_safe(fi, n, lhead, fib_lhash) {
826                         struct hlist_head *ldest;
827                         unsigned int new_hash;
828
829                         new_hash = fib_laddr_hashfn(fi->fib_prefsrc);
830                         ldest = &new_laddrhash[new_hash];
831                         hlist_add_head(&fi->fib_lhash, ldest);
832                 }
833         }
834         fib_info_laddrhash = new_laddrhash;
835
836         spin_unlock_bh(&fib_info_lock);
837
838         bytes = old_size * sizeof(struct hlist_head *);
839         fib_info_hash_free(old_info_hash, bytes);
840         fib_info_hash_free(old_laddrhash, bytes);
841 }
842
843 __be32 fib_info_update_nh_saddr(struct net *net, struct fib_nh *nh)
844 {
845         nh->nh_saddr = inet_select_addr(nh->nh_dev,
846                                         nh->nh_gw,
847                                         nh->nh_parent->fib_scope);
848         nh->nh_saddr_genid = atomic_read(&net->ipv4.dev_addr_genid);
849
850         return nh->nh_saddr;
851 }
852
853 static bool fib_valid_prefsrc(struct fib_config *cfg, __be32 fib_prefsrc)
854 {
855         if (cfg->fc_type != RTN_LOCAL || !cfg->fc_dst ||
856             fib_prefsrc != cfg->fc_dst) {
857                 int tb_id = cfg->fc_table;
858
859                 if (tb_id == RT_TABLE_MAIN)
860                         tb_id = RT_TABLE_LOCAL;
861
862                 if (inet_addr_type_table(cfg->fc_nlinfo.nl_net,
863                                          fib_prefsrc, tb_id) != RTN_LOCAL) {
864                         return false;
865                 }
866         }
867         return true;
868 }
869
870 struct fib_info *fib_create_info(struct fib_config *cfg)
871 {
872         int err;
873         struct fib_info *fi = NULL;
874         struct fib_info *ofi;
875         int nhs = 1;
876         struct net *net = cfg->fc_nlinfo.nl_net;
877
878         if (cfg->fc_type > RTN_MAX)
879                 goto err_inval;
880
881         /* Fast check to catch the most weird cases */
882         if (fib_props[cfg->fc_type].scope > cfg->fc_scope)
883                 goto err_inval;
884
885 #ifdef CONFIG_IP_ROUTE_MULTIPATH
886         if (cfg->fc_mp) {
887                 nhs = fib_count_nexthops(cfg->fc_mp, cfg->fc_mp_len);
888                 if (nhs == 0)
889                         goto err_inval;
890         }
891 #endif
892
893         err = -ENOBUFS;
894         if (fib_info_cnt >= fib_info_hash_size) {
895                 unsigned int new_size = fib_info_hash_size << 1;
896                 struct hlist_head *new_info_hash;
897                 struct hlist_head *new_laddrhash;
898                 unsigned int bytes;
899
900                 if (!new_size)
901                         new_size = 16;
902                 bytes = new_size * sizeof(struct hlist_head *);
903                 new_info_hash = fib_info_hash_alloc(bytes);
904                 new_laddrhash = fib_info_hash_alloc(bytes);
905                 if (!new_info_hash || !new_laddrhash) {
906                         fib_info_hash_free(new_info_hash, bytes);
907                         fib_info_hash_free(new_laddrhash, bytes);
908                 } else
909                         fib_info_hash_move(new_info_hash, new_laddrhash, new_size);
910
911                 if (!fib_info_hash_size)
912                         goto failure;
913         }
914
915         fi = kzalloc(sizeof(*fi)+nhs*sizeof(struct fib_nh), GFP_KERNEL);
916         if (!fi)
917                 goto failure;
918         fib_info_cnt++;
919         if (cfg->fc_mx) {
920                 fi->fib_metrics = kzalloc(sizeof(u32) * RTAX_MAX, GFP_KERNEL);
921                 if (!fi->fib_metrics)
922                         goto failure;
923         } else
924                 fi->fib_metrics = (u32 *) dst_default_metrics;
925
926         fi->fib_net = net;
927         fi->fib_protocol = cfg->fc_protocol;
928         fi->fib_scope = cfg->fc_scope;
929         fi->fib_flags = cfg->fc_flags;
930         fi->fib_priority = cfg->fc_priority;
931         fi->fib_prefsrc = cfg->fc_prefsrc;
932         fi->fib_type = cfg->fc_type;
933
934         fi->fib_nhs = nhs;
935         change_nexthops(fi) {
936                 nexthop_nh->nh_parent = fi;
937                 nexthop_nh->nh_pcpu_rth_output = alloc_percpu(struct rtable __rcu *);
938                 if (!nexthop_nh->nh_pcpu_rth_output)
939                         goto failure;
940         } endfor_nexthops(fi)
941
942         if (cfg->fc_mx) {
943                 struct nlattr *nla;
944                 int remaining;
945
946                 nla_for_each_attr(nla, cfg->fc_mx, cfg->fc_mx_len, remaining) {
947                         int type = nla_type(nla);
948
949                         if (type) {
950                                 u32 val;
951
952                                 if (type > RTAX_MAX)
953                                         goto err_inval;
954                                 if (type == RTAX_CC_ALGO) {
955                                         char tmp[TCP_CA_NAME_MAX];
956
957                                         nla_strlcpy(tmp, nla, sizeof(tmp));
958                                         val = tcp_ca_get_key_by_name(tmp);
959                                         if (val == TCP_CA_UNSPEC)
960                                                 goto err_inval;
961                                 } else {
962                                         val = nla_get_u32(nla);
963                                 }
964                                 if (type == RTAX_ADVMSS && val > 65535 - 40)
965                                         val = 65535 - 40;
966                                 if (type == RTAX_MTU && val > 65535 - 15)
967                                         val = 65535 - 15;
968                                 fi->fib_metrics[type - 1] = val;
969                         }
970                 }
971         }
972
973         if (cfg->fc_mp) {
974 #ifdef CONFIG_IP_ROUTE_MULTIPATH
975                 err = fib_get_nhs(fi, cfg->fc_mp, cfg->fc_mp_len, cfg);
976                 if (err != 0)
977                         goto failure;
978                 if (cfg->fc_oif && fi->fib_nh->nh_oif != cfg->fc_oif)
979                         goto err_inval;
980                 if (cfg->fc_gw && fi->fib_nh->nh_gw != cfg->fc_gw)
981                         goto err_inval;
982 #ifdef CONFIG_IP_ROUTE_CLASSID
983                 if (cfg->fc_flow && fi->fib_nh->nh_tclassid != cfg->fc_flow)
984                         goto err_inval;
985 #endif
986 #else
987                 goto err_inval;
988 #endif
989         } else {
990                 struct fib_nh *nh = fi->fib_nh;
991
992                 if (cfg->fc_encap) {
993                         struct lwtunnel_state *lwtstate;
994                         struct net_device *dev = NULL;
995
996                         if (cfg->fc_encap_type == LWTUNNEL_ENCAP_NONE)
997                                 goto err_inval;
998                         if (cfg->fc_oif)
999                                 dev = __dev_get_by_index(net, cfg->fc_oif);
1000                         err = lwtunnel_build_state(dev, cfg->fc_encap_type,
1001                                                    cfg->fc_encap, &lwtstate);
1002                         if (err)
1003                                 goto failure;
1004
1005                         nh->nh_lwtstate = lwtstate_get(lwtstate);
1006                 }
1007                 nh->nh_oif = cfg->fc_oif;
1008                 nh->nh_gw = cfg->fc_gw;
1009                 nh->nh_flags = cfg->fc_flags;
1010 #ifdef CONFIG_IP_ROUTE_CLASSID
1011                 nh->nh_tclassid = cfg->fc_flow;
1012                 if (nh->nh_tclassid)
1013                         fi->fib_net->ipv4.fib_num_tclassid_users++;
1014 #endif
1015 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1016                 nh->nh_weight = 1;
1017 #endif
1018         }
1019
1020         if (fib_props[cfg->fc_type].error) {
1021                 if (cfg->fc_gw || cfg->fc_oif || cfg->fc_mp)
1022                         goto err_inval;
1023                 goto link_it;
1024         } else {
1025                 switch (cfg->fc_type) {
1026                 case RTN_UNICAST:
1027                 case RTN_LOCAL:
1028                 case RTN_BROADCAST:
1029                 case RTN_ANYCAST:
1030                 case RTN_MULTICAST:
1031                         break;
1032                 default:
1033                         goto err_inval;
1034                 }
1035         }
1036
1037         if (cfg->fc_scope > RT_SCOPE_HOST)
1038                 goto err_inval;
1039
1040         if (cfg->fc_scope == RT_SCOPE_HOST) {
1041                 struct fib_nh *nh = fi->fib_nh;
1042
1043                 /* Local address is added. */
1044                 if (nhs != 1 || nh->nh_gw)
1045                         goto err_inval;
1046                 nh->nh_scope = RT_SCOPE_NOWHERE;
1047                 nh->nh_dev = dev_get_by_index(net, fi->fib_nh->nh_oif);
1048                 err = -ENODEV;
1049                 if (!nh->nh_dev)
1050                         goto failure;
1051         } else {
1052                 int linkdown = 0;
1053
1054                 change_nexthops(fi) {
1055                         err = fib_check_nh(cfg, fi, nexthop_nh);
1056                         if (err != 0)
1057                                 goto failure;
1058                         if (nexthop_nh->nh_flags & RTNH_F_LINKDOWN)
1059                                 linkdown++;
1060                 } endfor_nexthops(fi)
1061                 if (linkdown == fi->fib_nhs)
1062                         fi->fib_flags |= RTNH_F_LINKDOWN;
1063         }
1064
1065         if (fi->fib_prefsrc && !fib_valid_prefsrc(cfg, fi->fib_prefsrc))
1066                 goto err_inval;
1067
1068         change_nexthops(fi) {
1069                 fib_info_update_nh_saddr(net, nexthop_nh);
1070         } endfor_nexthops(fi)
1071
1072 link_it:
1073         ofi = fib_find_info(fi);
1074         if (ofi) {
1075                 fi->fib_dead = 1;
1076                 free_fib_info(fi);
1077                 ofi->fib_treeref++;
1078                 return ofi;
1079         }
1080
1081         fi->fib_treeref++;
1082         atomic_inc(&fi->fib_clntref);
1083         spin_lock_bh(&fib_info_lock);
1084         hlist_add_head(&fi->fib_hash,
1085                        &fib_info_hash[fib_info_hashfn(fi)]);
1086         if (fi->fib_prefsrc) {
1087                 struct hlist_head *head;
1088
1089                 head = &fib_info_laddrhash[fib_laddr_hashfn(fi->fib_prefsrc)];
1090                 hlist_add_head(&fi->fib_lhash, head);
1091         }
1092         change_nexthops(fi) {
1093                 struct hlist_head *head;
1094                 unsigned int hash;
1095
1096                 if (!nexthop_nh->nh_dev)
1097                         continue;
1098                 hash = fib_devindex_hashfn(nexthop_nh->nh_dev->ifindex);
1099                 head = &fib_info_devhash[hash];
1100                 hlist_add_head(&nexthop_nh->nh_hash, head);
1101         } endfor_nexthops(fi)
1102         spin_unlock_bh(&fib_info_lock);
1103         return fi;
1104
1105 err_inval:
1106         err = -EINVAL;
1107
1108 failure:
1109         if (fi) {
1110                 fi->fib_dead = 1;
1111                 free_fib_info(fi);
1112         }
1113
1114         return ERR_PTR(err);
1115 }
1116
1117 int fib_dump_info(struct sk_buff *skb, u32 portid, u32 seq, int event,
1118                   u32 tb_id, u8 type, __be32 dst, int dst_len, u8 tos,
1119                   struct fib_info *fi, unsigned int flags)
1120 {
1121         struct nlmsghdr *nlh;
1122         struct rtmsg *rtm;
1123
1124         nlh = nlmsg_put(skb, portid, seq, event, sizeof(*rtm), flags);
1125         if (!nlh)
1126                 return -EMSGSIZE;
1127
1128         rtm = nlmsg_data(nlh);
1129         rtm->rtm_family = AF_INET;
1130         rtm->rtm_dst_len = dst_len;
1131         rtm->rtm_src_len = 0;
1132         rtm->rtm_tos = tos;
1133         if (tb_id < 256)
1134                 rtm->rtm_table = tb_id;
1135         else
1136                 rtm->rtm_table = RT_TABLE_COMPAT;
1137         if (nla_put_u32(skb, RTA_TABLE, tb_id))
1138                 goto nla_put_failure;
1139         rtm->rtm_type = type;
1140         rtm->rtm_flags = fi->fib_flags;
1141         rtm->rtm_scope = fi->fib_scope;
1142         rtm->rtm_protocol = fi->fib_protocol;
1143
1144         if (rtm->rtm_dst_len &&
1145             nla_put_in_addr(skb, RTA_DST, dst))
1146                 goto nla_put_failure;
1147         if (fi->fib_priority &&
1148             nla_put_u32(skb, RTA_PRIORITY, fi->fib_priority))
1149                 goto nla_put_failure;
1150         if (rtnetlink_put_metrics(skb, fi->fib_metrics) < 0)
1151                 goto nla_put_failure;
1152
1153         if (fi->fib_prefsrc &&
1154             nla_put_in_addr(skb, RTA_PREFSRC, fi->fib_prefsrc))
1155                 goto nla_put_failure;
1156         if (fi->fib_nhs == 1) {
1157                 struct in_device *in_dev;
1158
1159                 if (fi->fib_nh->nh_gw &&
1160                     nla_put_in_addr(skb, RTA_GATEWAY, fi->fib_nh->nh_gw))
1161                         goto nla_put_failure;
1162                 if (fi->fib_nh->nh_oif &&
1163                     nla_put_u32(skb, RTA_OIF, fi->fib_nh->nh_oif))
1164                         goto nla_put_failure;
1165                 if (fi->fib_nh->nh_flags & RTNH_F_LINKDOWN) {
1166                         in_dev = __in_dev_get_rtnl(fi->fib_nh->nh_dev);
1167                         if (in_dev &&
1168                             IN_DEV_IGNORE_ROUTES_WITH_LINKDOWN(in_dev))
1169                                 rtm->rtm_flags |= RTNH_F_DEAD;
1170                 }
1171 #ifdef CONFIG_IP_ROUTE_CLASSID
1172                 if (fi->fib_nh[0].nh_tclassid &&
1173                     nla_put_u32(skb, RTA_FLOW, fi->fib_nh[0].nh_tclassid))
1174                         goto nla_put_failure;
1175 #endif
1176                 if (fi->fib_nh->nh_lwtstate)
1177                         lwtunnel_fill_encap(skb, fi->fib_nh->nh_lwtstate);
1178         }
1179 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1180         if (fi->fib_nhs > 1) {
1181                 struct rtnexthop *rtnh;
1182                 struct nlattr *mp;
1183
1184                 mp = nla_nest_start(skb, RTA_MULTIPATH);
1185                 if (!mp)
1186                         goto nla_put_failure;
1187
1188                 for_nexthops(fi) {
1189                         struct in_device *in_dev;
1190
1191                         rtnh = nla_reserve_nohdr(skb, sizeof(*rtnh));
1192                         if (!rtnh)
1193                                 goto nla_put_failure;
1194
1195                         rtnh->rtnh_flags = nh->nh_flags & 0xFF;
1196                         if (nh->nh_flags & RTNH_F_LINKDOWN) {
1197                                 in_dev = __in_dev_get_rtnl(nh->nh_dev);
1198                                 if (in_dev &&
1199                                     IN_DEV_IGNORE_ROUTES_WITH_LINKDOWN(in_dev))
1200                                         rtnh->rtnh_flags |= RTNH_F_DEAD;
1201                         }
1202                         rtnh->rtnh_hops = nh->nh_weight - 1;
1203                         rtnh->rtnh_ifindex = nh->nh_oif;
1204
1205                         if (nh->nh_gw &&
1206                             nla_put_in_addr(skb, RTA_GATEWAY, nh->nh_gw))
1207                                 goto nla_put_failure;
1208 #ifdef CONFIG_IP_ROUTE_CLASSID
1209                         if (nh->nh_tclassid &&
1210                             nla_put_u32(skb, RTA_FLOW, nh->nh_tclassid))
1211                                 goto nla_put_failure;
1212 #endif
1213                         if (nh->nh_lwtstate)
1214                                 lwtunnel_fill_encap(skb, nh->nh_lwtstate);
1215                         /* length of rtnetlink header + attributes */
1216                         rtnh->rtnh_len = nlmsg_get_pos(skb) - (void *) rtnh;
1217                 } endfor_nexthops(fi);
1218
1219                 nla_nest_end(skb, mp);
1220         }
1221 #endif
1222         nlmsg_end(skb, nlh);
1223         return 0;
1224
1225 nla_put_failure:
1226         nlmsg_cancel(skb, nlh);
1227         return -EMSGSIZE;
1228 }
1229
1230 /*
1231  * Update FIB if:
1232  * - local address disappeared -> we must delete all the entries
1233  *   referring to it.
1234  * - device went down -> we must shutdown all nexthops going via it.
1235  */
1236 int fib_sync_down_addr(struct net *net, __be32 local)
1237 {
1238         int ret = 0;
1239         unsigned int hash = fib_laddr_hashfn(local);
1240         struct hlist_head *head = &fib_info_laddrhash[hash];
1241         struct fib_info *fi;
1242
1243         if (!fib_info_laddrhash || local == 0)
1244                 return 0;
1245
1246         hlist_for_each_entry(fi, head, fib_lhash) {
1247                 if (!net_eq(fi->fib_net, net))
1248                         continue;
1249                 if (fi->fib_prefsrc == local) {
1250                         fi->fib_flags |= RTNH_F_DEAD;
1251                         ret++;
1252                 }
1253         }
1254         return ret;
1255 }
1256
1257 int fib_sync_down_dev(struct net_device *dev, unsigned long event)
1258 {
1259         int ret = 0;
1260         int scope = RT_SCOPE_NOWHERE;
1261         struct fib_info *prev_fi = NULL;
1262         unsigned int hash = fib_devindex_hashfn(dev->ifindex);
1263         struct hlist_head *head = &fib_info_devhash[hash];
1264         struct fib_nh *nh;
1265
1266         if (event == NETDEV_UNREGISTER ||
1267             event == NETDEV_DOWN)
1268                 scope = -1;
1269
1270         hlist_for_each_entry(nh, head, nh_hash) {
1271                 struct fib_info *fi = nh->nh_parent;
1272                 int dead;
1273
1274                 BUG_ON(!fi->fib_nhs);
1275                 if (nh->nh_dev != dev || fi == prev_fi)
1276                         continue;
1277                 prev_fi = fi;
1278                 dead = 0;
1279                 change_nexthops(fi) {
1280                         if (nexthop_nh->nh_flags & RTNH_F_DEAD)
1281                                 dead++;
1282                         else if (nexthop_nh->nh_dev == dev &&
1283                                  nexthop_nh->nh_scope != scope) {
1284                                 switch (event) {
1285                                 case NETDEV_DOWN:
1286                                 case NETDEV_UNREGISTER:
1287                                         nexthop_nh->nh_flags |= RTNH_F_DEAD;
1288                                         /* fall through */
1289                                 case NETDEV_CHANGE:
1290                                         nexthop_nh->nh_flags |= RTNH_F_LINKDOWN;
1291                                         break;
1292                                 }
1293 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1294                                 spin_lock_bh(&fib_multipath_lock);
1295                                 fi->fib_power -= nexthop_nh->nh_power;
1296                                 nexthop_nh->nh_power = 0;
1297                                 spin_unlock_bh(&fib_multipath_lock);
1298 #endif
1299                                 dead++;
1300                         }
1301 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1302                         if (event == NETDEV_UNREGISTER &&
1303                             nexthop_nh->nh_dev == dev) {
1304                                 dead = fi->fib_nhs;
1305                                 break;
1306                         }
1307 #endif
1308                 } endfor_nexthops(fi)
1309                 if (dead == fi->fib_nhs) {
1310                         switch (event) {
1311                         case NETDEV_DOWN:
1312                         case NETDEV_UNREGISTER:
1313                                 fi->fib_flags |= RTNH_F_DEAD;
1314                                 /* fall through */
1315                         case NETDEV_CHANGE:
1316                                 fi->fib_flags |= RTNH_F_LINKDOWN;
1317                                 break;
1318                         }
1319                         ret++;
1320                 }
1321         }
1322
1323         return ret;
1324 }
1325
1326 /* Must be invoked inside of an RCU protected region.  */
1327 void fib_select_default(const struct flowi4 *flp, struct fib_result *res)
1328 {
1329         struct fib_info *fi = NULL, *last_resort = NULL;
1330         struct hlist_head *fa_head = res->fa_head;
1331         struct fib_table *tb = res->table;
1332         u8 slen = 32 - res->prefixlen;
1333         int order = -1, last_idx = -1;
1334         struct fib_alias *fa, *fa1 = NULL;
1335         u32 last_prio = res->fi->fib_priority;
1336         u8 last_tos = 0;
1337
1338         hlist_for_each_entry_rcu(fa, fa_head, fa_list) {
1339                 struct fib_info *next_fi = fa->fa_info;
1340
1341                 if (fa->fa_slen != slen)
1342                         continue;
1343                 if (fa->fa_tos && fa->fa_tos != flp->flowi4_tos)
1344                         continue;
1345                 if (fa->tb_id != tb->tb_id)
1346                         continue;
1347                 if (next_fi->fib_priority > last_prio &&
1348                     fa->fa_tos == last_tos) {
1349                         if (last_tos)
1350                                 continue;
1351                         break;
1352                 }
1353                 if (next_fi->fib_flags & RTNH_F_DEAD)
1354                         continue;
1355                 last_tos = fa->fa_tos;
1356                 last_prio = next_fi->fib_priority;
1357
1358                 if (next_fi->fib_scope != res->scope ||
1359                     fa->fa_type != RTN_UNICAST)
1360                         continue;
1361                 if (!next_fi->fib_nh[0].nh_gw ||
1362                     next_fi->fib_nh[0].nh_scope != RT_SCOPE_LINK)
1363                         continue;
1364
1365                 fib_alias_accessed(fa);
1366
1367                 if (!fi) {
1368                         if (next_fi != res->fi)
1369                                 break;
1370                         fa1 = fa;
1371                 } else if (!fib_detect_death(fi, order, &last_resort,
1372                                              &last_idx, fa1->fa_default)) {
1373                         fib_result_assign(res, fi);
1374                         fa1->fa_default = order;
1375                         goto out;
1376                 }
1377                 fi = next_fi;
1378                 order++;
1379         }
1380
1381         if (order <= 0 || !fi) {
1382                 if (fa1)
1383                         fa1->fa_default = -1;
1384                 goto out;
1385         }
1386
1387         if (!fib_detect_death(fi, order, &last_resort, &last_idx,
1388                               fa1->fa_default)) {
1389                 fib_result_assign(res, fi);
1390                 fa1->fa_default = order;
1391                 goto out;
1392         }
1393
1394         if (last_idx >= 0)
1395                 fib_result_assign(res, last_resort);
1396         fa1->fa_default = last_idx;
1397 out:
1398         return;
1399 }
1400
1401 /*
1402  * Dead device goes up. We wake up dead nexthops.
1403  * It takes sense only on multipath routes.
1404  */
1405 int fib_sync_up(struct net_device *dev, unsigned int nh_flags)
1406 {
1407         struct fib_info *prev_fi;
1408         unsigned int hash;
1409         struct hlist_head *head;
1410         struct fib_nh *nh;
1411         int ret;
1412
1413         if (!(dev->flags & IFF_UP))
1414                 return 0;
1415
1416         prev_fi = NULL;
1417         hash = fib_devindex_hashfn(dev->ifindex);
1418         head = &fib_info_devhash[hash];
1419         ret = 0;
1420
1421         hlist_for_each_entry(nh, head, nh_hash) {
1422                 struct fib_info *fi = nh->nh_parent;
1423                 int alive;
1424
1425                 BUG_ON(!fi->fib_nhs);
1426                 if (nh->nh_dev != dev || fi == prev_fi)
1427                         continue;
1428
1429                 prev_fi = fi;
1430                 alive = 0;
1431                 change_nexthops(fi) {
1432                         if (!(nexthop_nh->nh_flags & nh_flags)) {
1433                                 alive++;
1434                                 continue;
1435                         }
1436                         if (!nexthop_nh->nh_dev ||
1437                             !(nexthop_nh->nh_dev->flags & IFF_UP))
1438                                 continue;
1439                         if (nexthop_nh->nh_dev != dev ||
1440                             !__in_dev_get_rtnl(dev))
1441                                 continue;
1442                         alive++;
1443 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1444                         spin_lock_bh(&fib_multipath_lock);
1445                         nexthop_nh->nh_power = 0;
1446                         nexthop_nh->nh_flags &= ~nh_flags;
1447                         spin_unlock_bh(&fib_multipath_lock);
1448 #else
1449                         nexthop_nh->nh_flags &= ~nh_flags;
1450 #endif
1451                 } endfor_nexthops(fi)
1452
1453                 if (alive > 0) {
1454                         fi->fib_flags &= ~nh_flags;
1455                         ret++;
1456                 }
1457         }
1458
1459         return ret;
1460 }
1461
1462 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1463
1464 /*
1465  * The algorithm is suboptimal, but it provides really
1466  * fair weighted route distribution.
1467  */
1468 void fib_select_multipath(struct fib_result *res)
1469 {
1470         struct fib_info *fi = res->fi;
1471         struct in_device *in_dev;
1472         int w;
1473
1474         spin_lock_bh(&fib_multipath_lock);
1475         if (fi->fib_power <= 0) {
1476                 int power = 0;
1477                 change_nexthops(fi) {
1478                         in_dev = __in_dev_get_rcu(nexthop_nh->nh_dev);
1479                         if (nexthop_nh->nh_flags & RTNH_F_DEAD)
1480                                 continue;
1481                         if (in_dev &&
1482                             IN_DEV_IGNORE_ROUTES_WITH_LINKDOWN(in_dev) &&
1483                             nexthop_nh->nh_flags & RTNH_F_LINKDOWN)
1484                                 continue;
1485                         power += nexthop_nh->nh_weight;
1486                         nexthop_nh->nh_power = nexthop_nh->nh_weight;
1487                 } endfor_nexthops(fi);
1488                 fi->fib_power = power;
1489                 if (power <= 0) {
1490                         spin_unlock_bh(&fib_multipath_lock);
1491                         /* Race condition: route has just become dead. */
1492                         res->nh_sel = 0;
1493                         return;
1494                 }
1495         }
1496
1497
1498         /* w should be random number [0..fi->fib_power-1],
1499          * it is pretty bad approximation.
1500          */
1501
1502         w = jiffies % fi->fib_power;
1503
1504         change_nexthops(fi) {
1505                 if (!(nexthop_nh->nh_flags & RTNH_F_DEAD) &&
1506                     nexthop_nh->nh_power) {
1507                         w -= nexthop_nh->nh_power;
1508                         if (w <= 0) {
1509                                 nexthop_nh->nh_power--;
1510                                 fi->fib_power--;
1511                                 res->nh_sel = nhsel;
1512                                 spin_unlock_bh(&fib_multipath_lock);
1513                                 return;
1514                         }
1515                 }
1516         } endfor_nexthops(fi);
1517
1518         /* Race condition: route has just become dead. */
1519         res->nh_sel = 0;
1520         spin_unlock_bh(&fib_multipath_lock);
1521 }
1522 #endif