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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 FIB: lookup engine and maintenance routines.
7  *
8  * Version:     $Id: fib_hash.c,v 1.13 2001/10/31 21:55:54 davem Exp $
9  *
10  * Authors:     Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
11  *
12  *              This program is free software; you can redistribute it and/or
13  *              modify it under the terms of the GNU General Public License
14  *              as published by the Free Software Foundation; either version
15  *              2 of the License, or (at your option) any later version.
16  */
17
18 #include <asm/uaccess.h>
19 #include <asm/system.h>
20 #include <linux/bitops.h>
21 #include <linux/types.h>
22 #include <linux/kernel.h>
23 #include <linux/mm.h>
24 #include <linux/string.h>
25 #include <linux/socket.h>
26 #include <linux/sockios.h>
27 #include <linux/errno.h>
28 #include <linux/in.h>
29 #include <linux/inet.h>
30 #include <linux/inetdevice.h>
31 #include <linux/netdevice.h>
32 #include <linux/if_arp.h>
33 #include <linux/proc_fs.h>
34 #include <linux/skbuff.h>
35 #include <linux/netlink.h>
36 #include <linux/init.h>
37
38 #include <net/net_namespace.h>
39 #include <net/ip.h>
40 #include <net/protocol.h>
41 #include <net/route.h>
42 #include <net/tcp.h>
43 #include <net/sock.h>
44 #include <net/ip_fib.h>
45
46 #include "fib_lookup.h"
47
48 static struct kmem_cache *fn_hash_kmem __read_mostly;
49 static struct kmem_cache *fn_alias_kmem __read_mostly;
50
51 struct fib_node {
52         struct hlist_node       fn_hash;
53         struct list_head        fn_alias;
54         __be32                  fn_key;
55 };
56
57 struct fn_zone {
58         struct fn_zone          *fz_next;       /* Next not empty zone  */
59         struct hlist_head       *fz_hash;       /* Hash table pointer   */
60         int                     fz_nent;        /* Number of entries    */
61
62         int                     fz_divisor;     /* Hash divisor         */
63         u32                     fz_hashmask;    /* (fz_divisor - 1)     */
64 #define FZ_HASHMASK(fz)         ((fz)->fz_hashmask)
65
66         int                     fz_order;       /* Zone order           */
67         __be32                  fz_mask;
68 #define FZ_MASK(fz)             ((fz)->fz_mask)
69 };
70
71 /* NOTE. On fast computers evaluation of fz_hashmask and fz_mask
72  * can be cheaper than memory lookup, so that FZ_* macros are used.
73  */
74
75 struct fn_hash {
76         struct fn_zone  *fn_zones[33];
77         struct fn_zone  *fn_zone_list;
78 };
79
80 static inline u32 fn_hash(__be32 key, struct fn_zone *fz)
81 {
82         u32 h = ntohl(key)>>(32 - fz->fz_order);
83         h ^= (h>>20);
84         h ^= (h>>10);
85         h ^= (h>>5);
86         h &= FZ_HASHMASK(fz);
87         return h;
88 }
89
90 static inline __be32 fz_key(__be32 dst, struct fn_zone *fz)
91 {
92         return dst & FZ_MASK(fz);
93 }
94
95 static DEFINE_RWLOCK(fib_hash_lock);
96 static unsigned int fib_hash_genid;
97
98 #define FZ_MAX_DIVISOR ((PAGE_SIZE<<MAX_ORDER) / sizeof(struct hlist_head))
99
100 static struct hlist_head *fz_hash_alloc(int divisor)
101 {
102         unsigned long size = divisor * sizeof(struct hlist_head);
103
104         if (size <= PAGE_SIZE) {
105                 return kzalloc(size, GFP_KERNEL);
106         } else {
107                 return (struct hlist_head *)
108                         __get_free_pages(GFP_KERNEL | __GFP_ZERO, get_order(size));
109         }
110 }
111
112 /* The fib hash lock must be held when this is called. */
113 static inline void fn_rebuild_zone(struct fn_zone *fz,
114                                    struct hlist_head *old_ht,
115                                    int old_divisor)
116 {
117         int i;
118
119         for (i = 0; i < old_divisor; i++) {
120                 struct hlist_node *node, *n;
121                 struct fib_node *f;
122
123                 hlist_for_each_entry_safe(f, node, n, &old_ht[i], fn_hash) {
124                         struct hlist_head *new_head;
125
126                         hlist_del(&f->fn_hash);
127
128                         new_head = &fz->fz_hash[fn_hash(f->fn_key, fz)];
129                         hlist_add_head(&f->fn_hash, new_head);
130                 }
131         }
132 }
133
134 static void fz_hash_free(struct hlist_head *hash, int divisor)
135 {
136         unsigned long size = divisor * sizeof(struct hlist_head);
137
138         if (size <= PAGE_SIZE)
139                 kfree(hash);
140         else
141                 free_pages((unsigned long)hash, get_order(size));
142 }
143
144 static void fn_rehash_zone(struct fn_zone *fz)
145 {
146         struct hlist_head *ht, *old_ht;
147         int old_divisor, new_divisor;
148         u32 new_hashmask;
149
150         old_divisor = fz->fz_divisor;
151
152         switch (old_divisor) {
153         case 16:
154                 new_divisor = 256;
155                 break;
156         case 256:
157                 new_divisor = 1024;
158                 break;
159         default:
160                 if ((old_divisor << 1) > FZ_MAX_DIVISOR) {
161                         printk(KERN_CRIT "route.c: bad divisor %d!\n", old_divisor);
162                         return;
163                 }
164                 new_divisor = (old_divisor << 1);
165                 break;
166         }
167
168         new_hashmask = (new_divisor - 1);
169
170 #if RT_CACHE_DEBUG >= 2
171         printk(KERN_DEBUG "fn_rehash_zone: hash for zone %d grows from %d\n",
172                fz->fz_order, old_divisor);
173 #endif
174
175         ht = fz_hash_alloc(new_divisor);
176
177         if (ht) {
178                 write_lock_bh(&fib_hash_lock);
179                 old_ht = fz->fz_hash;
180                 fz->fz_hash = ht;
181                 fz->fz_hashmask = new_hashmask;
182                 fz->fz_divisor = new_divisor;
183                 fn_rebuild_zone(fz, old_ht, old_divisor);
184                 fib_hash_genid++;
185                 write_unlock_bh(&fib_hash_lock);
186
187                 fz_hash_free(old_ht, old_divisor);
188         }
189 }
190
191 static inline void fn_free_node(struct fib_node * f)
192 {
193         kmem_cache_free(fn_hash_kmem, f);
194 }
195
196 static inline void fn_free_alias(struct fib_alias *fa)
197 {
198         fib_release_info(fa->fa_info);
199         kmem_cache_free(fn_alias_kmem, fa);
200 }
201
202 static struct fn_zone *
203 fn_new_zone(struct fn_hash *table, int z)
204 {
205         int i;
206         struct fn_zone *fz = kzalloc(sizeof(struct fn_zone), GFP_KERNEL);
207         if (!fz)
208                 return NULL;
209
210         if (z) {
211                 fz->fz_divisor = 16;
212         } else {
213                 fz->fz_divisor = 1;
214         }
215         fz->fz_hashmask = (fz->fz_divisor - 1);
216         fz->fz_hash = fz_hash_alloc(fz->fz_divisor);
217         if (!fz->fz_hash) {
218                 kfree(fz);
219                 return NULL;
220         }
221         fz->fz_order = z;
222         fz->fz_mask = inet_make_mask(z);
223
224         /* Find the first not empty zone with more specific mask */
225         for (i=z+1; i<=32; i++)
226                 if (table->fn_zones[i])
227                         break;
228         write_lock_bh(&fib_hash_lock);
229         if (i>32) {
230                 /* No more specific masks, we are the first. */
231                 fz->fz_next = table->fn_zone_list;
232                 table->fn_zone_list = fz;
233         } else {
234                 fz->fz_next = table->fn_zones[i]->fz_next;
235                 table->fn_zones[i]->fz_next = fz;
236         }
237         table->fn_zones[z] = fz;
238         fib_hash_genid++;
239         write_unlock_bh(&fib_hash_lock);
240         return fz;
241 }
242
243 static int
244 fn_hash_lookup(struct fib_table *tb, const struct flowi *flp, struct fib_result *res)
245 {
246         int err;
247         struct fn_zone *fz;
248         struct fn_hash *t = (struct fn_hash*)tb->tb_data;
249
250         read_lock(&fib_hash_lock);
251         for (fz = t->fn_zone_list; fz; fz = fz->fz_next) {
252                 struct hlist_head *head;
253                 struct hlist_node *node;
254                 struct fib_node *f;
255                 __be32 k = fz_key(flp->fl4_dst, fz);
256
257                 head = &fz->fz_hash[fn_hash(k, fz)];
258                 hlist_for_each_entry(f, node, head, fn_hash) {
259                         if (f->fn_key != k)
260                                 continue;
261
262                         err = fib_semantic_match(&f->fn_alias,
263                                                  flp, res,
264                                                  f->fn_key, fz->fz_mask,
265                                                  fz->fz_order);
266                         if (err <= 0)
267                                 goto out;
268                 }
269         }
270         err = 1;
271 out:
272         read_unlock(&fib_hash_lock);
273         return err;
274 }
275
276 static void
277 fn_hash_select_default(struct fib_table *tb, const struct flowi *flp, struct fib_result *res)
278 {
279         int order, last_idx;
280         struct hlist_node *node;
281         struct fib_node *f;
282         struct fib_info *fi = NULL;
283         struct fib_info *last_resort;
284         struct fn_hash *t = (struct fn_hash*)tb->tb_data;
285         struct fn_zone *fz = t->fn_zones[0];
286
287         if (fz == NULL)
288                 return;
289
290         last_idx = -1;
291         last_resort = NULL;
292         order = -1;
293
294         read_lock(&fib_hash_lock);
295         hlist_for_each_entry(f, node, &fz->fz_hash[0], fn_hash) {
296                 struct fib_alias *fa;
297
298                 list_for_each_entry(fa, &f->fn_alias, fa_list) {
299                         struct fib_info *next_fi = fa->fa_info;
300
301                         if (fa->fa_scope != res->scope ||
302                             fa->fa_type != RTN_UNICAST)
303                                 continue;
304
305                         if (next_fi->fib_priority > res->fi->fib_priority)
306                                 break;
307                         if (!next_fi->fib_nh[0].nh_gw ||
308                             next_fi->fib_nh[0].nh_scope != RT_SCOPE_LINK)
309                                 continue;
310                         fa->fa_state |= FA_S_ACCESSED;
311
312                         if (fi == NULL) {
313                                 if (next_fi != res->fi)
314                                         break;
315                         } else if (!fib_detect_death(fi, order, &last_resort,
316                                                 &last_idx, tb->tb_default)) {
317                                 fib_result_assign(res, fi);
318                                 tb->tb_default = order;
319                                 goto out;
320                         }
321                         fi = next_fi;
322                         order++;
323                 }
324         }
325
326         if (order <= 0 || fi == NULL) {
327                 tb->tb_default = -1;
328                 goto out;
329         }
330
331         if (!fib_detect_death(fi, order, &last_resort, &last_idx,
332                                 tb->tb_default)) {
333                 fib_result_assign(res, fi);
334                 tb->tb_default = order;
335                 goto out;
336         }
337
338         if (last_idx >= 0)
339                 fib_result_assign(res, last_resort);
340         tb->tb_default = last_idx;
341 out:
342         read_unlock(&fib_hash_lock);
343 }
344
345 /* Insert node F to FZ. */
346 static inline void fib_insert_node(struct fn_zone *fz, struct fib_node *f)
347 {
348         struct hlist_head *head = &fz->fz_hash[fn_hash(f->fn_key, fz)];
349
350         hlist_add_head(&f->fn_hash, head);
351 }
352
353 /* Return the node in FZ matching KEY. */
354 static struct fib_node *fib_find_node(struct fn_zone *fz, __be32 key)
355 {
356         struct hlist_head *head = &fz->fz_hash[fn_hash(key, fz)];
357         struct hlist_node *node;
358         struct fib_node *f;
359
360         hlist_for_each_entry(f, node, head, fn_hash) {
361                 if (f->fn_key == key)
362                         return f;
363         }
364
365         return NULL;
366 }
367
368 static int fn_hash_insert(struct fib_table *tb, struct fib_config *cfg)
369 {
370         struct fn_hash *table = (struct fn_hash *) tb->tb_data;
371         struct fib_node *new_f, *f;
372         struct fib_alias *fa, *new_fa;
373         struct fn_zone *fz;
374         struct fib_info *fi;
375         u8 tos = cfg->fc_tos;
376         __be32 key;
377         int err;
378
379         if (cfg->fc_dst_len > 32)
380                 return -EINVAL;
381
382         fz = table->fn_zones[cfg->fc_dst_len];
383         if (!fz && !(fz = fn_new_zone(table, cfg->fc_dst_len)))
384                 return -ENOBUFS;
385
386         key = 0;
387         if (cfg->fc_dst) {
388                 if (cfg->fc_dst & ~FZ_MASK(fz))
389                         return -EINVAL;
390                 key = fz_key(cfg->fc_dst, fz);
391         }
392
393         fi = fib_create_info(cfg);
394         if (IS_ERR(fi))
395                 return PTR_ERR(fi);
396
397         if (fz->fz_nent > (fz->fz_divisor<<1) &&
398             fz->fz_divisor < FZ_MAX_DIVISOR &&
399             (cfg->fc_dst_len == 32 ||
400              (1 << cfg->fc_dst_len) > fz->fz_divisor))
401                 fn_rehash_zone(fz);
402
403         f = fib_find_node(fz, key);
404
405         if (!f)
406                 fa = NULL;
407         else
408                 fa = fib_find_alias(&f->fn_alias, tos, fi->fib_priority);
409
410         /* Now fa, if non-NULL, points to the first fib alias
411          * with the same keys [prefix,tos,priority], if such key already
412          * exists or to the node before which we will insert new one.
413          *
414          * If fa is NULL, we will need to allocate a new one and
415          * insert to the head of f.
416          *
417          * If f is NULL, no fib node matched the destination key
418          * and we need to allocate a new one of those as well.
419          */
420
421         if (fa && fa->fa_tos == tos &&
422             fa->fa_info->fib_priority == fi->fib_priority) {
423                 struct fib_alias *fa_orig;
424
425                 err = -EEXIST;
426                 if (cfg->fc_nlflags & NLM_F_EXCL)
427                         goto out;
428
429                 if (cfg->fc_nlflags & NLM_F_REPLACE) {
430                         struct fib_info *fi_drop;
431                         u8 state;
432
433                         if (fi->fib_treeref > 1)
434                                 goto out;
435
436                         write_lock_bh(&fib_hash_lock);
437                         fi_drop = fa->fa_info;
438                         fa->fa_info = fi;
439                         fa->fa_type = cfg->fc_type;
440                         fa->fa_scope = cfg->fc_scope;
441                         state = fa->fa_state;
442                         fa->fa_state &= ~FA_S_ACCESSED;
443                         fib_hash_genid++;
444                         write_unlock_bh(&fib_hash_lock);
445
446                         fib_release_info(fi_drop);
447                         if (state & FA_S_ACCESSED)
448                                 rt_cache_flush(-1);
449                         rtmsg_fib(RTM_NEWROUTE, key, fa, cfg->fc_dst_len, tb->tb_id,
450                                   &cfg->fc_nlinfo, NLM_F_REPLACE);
451                         return 0;
452                 }
453
454                 /* Error if we find a perfect match which
455                  * uses the same scope, type, and nexthop
456                  * information.
457                  */
458                 fa_orig = fa;
459                 fa = list_entry(fa->fa_list.prev, struct fib_alias, fa_list);
460                 list_for_each_entry_continue(fa, &f->fn_alias, fa_list) {
461                         if (fa->fa_tos != tos)
462                                 break;
463                         if (fa->fa_info->fib_priority != fi->fib_priority)
464                                 break;
465                         if (fa->fa_type == cfg->fc_type &&
466                             fa->fa_scope == cfg->fc_scope &&
467                             fa->fa_info == fi)
468                                 goto out;
469                 }
470                 if (!(cfg->fc_nlflags & NLM_F_APPEND))
471                         fa = fa_orig;
472         }
473
474         err = -ENOENT;
475         if (!(cfg->fc_nlflags & NLM_F_CREATE))
476                 goto out;
477
478         err = -ENOBUFS;
479         new_fa = kmem_cache_alloc(fn_alias_kmem, GFP_KERNEL);
480         if (new_fa == NULL)
481                 goto out;
482
483         new_f = NULL;
484         if (!f) {
485                 new_f = kmem_cache_alloc(fn_hash_kmem, GFP_KERNEL);
486                 if (new_f == NULL)
487                         goto out_free_new_fa;
488
489                 INIT_HLIST_NODE(&new_f->fn_hash);
490                 INIT_LIST_HEAD(&new_f->fn_alias);
491                 new_f->fn_key = key;
492                 f = new_f;
493         }
494
495         new_fa->fa_info = fi;
496         new_fa->fa_tos = tos;
497         new_fa->fa_type = cfg->fc_type;
498         new_fa->fa_scope = cfg->fc_scope;
499         new_fa->fa_state = 0;
500
501         /*
502          * Insert new entry to the list.
503          */
504
505         write_lock_bh(&fib_hash_lock);
506         if (new_f)
507                 fib_insert_node(fz, new_f);
508         list_add_tail(&new_fa->fa_list,
509                  (fa ? &fa->fa_list : &f->fn_alias));
510         fib_hash_genid++;
511         write_unlock_bh(&fib_hash_lock);
512
513         if (new_f)
514                 fz->fz_nent++;
515         rt_cache_flush(-1);
516
517         rtmsg_fib(RTM_NEWROUTE, key, new_fa, cfg->fc_dst_len, tb->tb_id,
518                   &cfg->fc_nlinfo, 0);
519         return 0;
520
521 out_free_new_fa:
522         kmem_cache_free(fn_alias_kmem, new_fa);
523 out:
524         fib_release_info(fi);
525         return err;
526 }
527
528
529 static int fn_hash_delete(struct fib_table *tb, struct fib_config *cfg)
530 {
531         struct fn_hash *table = (struct fn_hash*)tb->tb_data;
532         struct fib_node *f;
533         struct fib_alias *fa, *fa_to_delete;
534         struct fn_zone *fz;
535         __be32 key;
536
537         if (cfg->fc_dst_len > 32)
538                 return -EINVAL;
539
540         if ((fz  = table->fn_zones[cfg->fc_dst_len]) == NULL)
541                 return -ESRCH;
542
543         key = 0;
544         if (cfg->fc_dst) {
545                 if (cfg->fc_dst & ~FZ_MASK(fz))
546                         return -EINVAL;
547                 key = fz_key(cfg->fc_dst, fz);
548         }
549
550         f = fib_find_node(fz, key);
551
552         if (!f)
553                 fa = NULL;
554         else
555                 fa = fib_find_alias(&f->fn_alias, cfg->fc_tos, 0);
556         if (!fa)
557                 return -ESRCH;
558
559         fa_to_delete = NULL;
560         fa = list_entry(fa->fa_list.prev, struct fib_alias, fa_list);
561         list_for_each_entry_continue(fa, &f->fn_alias, fa_list) {
562                 struct fib_info *fi = fa->fa_info;
563
564                 if (fa->fa_tos != cfg->fc_tos)
565                         break;
566
567                 if ((!cfg->fc_type ||
568                      fa->fa_type == cfg->fc_type) &&
569                     (cfg->fc_scope == RT_SCOPE_NOWHERE ||
570                      fa->fa_scope == cfg->fc_scope) &&
571                     (!cfg->fc_protocol ||
572                      fi->fib_protocol == cfg->fc_protocol) &&
573                     fib_nh_match(cfg, fi) == 0) {
574                         fa_to_delete = fa;
575                         break;
576                 }
577         }
578
579         if (fa_to_delete) {
580                 int kill_fn;
581
582                 fa = fa_to_delete;
583                 rtmsg_fib(RTM_DELROUTE, key, fa, cfg->fc_dst_len,
584                           tb->tb_id, &cfg->fc_nlinfo, 0);
585
586                 kill_fn = 0;
587                 write_lock_bh(&fib_hash_lock);
588                 list_del(&fa->fa_list);
589                 if (list_empty(&f->fn_alias)) {
590                         hlist_del(&f->fn_hash);
591                         kill_fn = 1;
592                 }
593                 fib_hash_genid++;
594                 write_unlock_bh(&fib_hash_lock);
595
596                 if (fa->fa_state & FA_S_ACCESSED)
597                         rt_cache_flush(-1);
598                 fn_free_alias(fa);
599                 if (kill_fn) {
600                         fn_free_node(f);
601                         fz->fz_nent--;
602                 }
603
604                 return 0;
605         }
606         return -ESRCH;
607 }
608
609 static int fn_flush_list(struct fn_zone *fz, int idx)
610 {
611         struct hlist_head *head = &fz->fz_hash[idx];
612         struct hlist_node *node, *n;
613         struct fib_node *f;
614         int found = 0;
615
616         hlist_for_each_entry_safe(f, node, n, head, fn_hash) {
617                 struct fib_alias *fa, *fa_node;
618                 int kill_f;
619
620                 kill_f = 0;
621                 list_for_each_entry_safe(fa, fa_node, &f->fn_alias, fa_list) {
622                         struct fib_info *fi = fa->fa_info;
623
624                         if (fi && (fi->fib_flags&RTNH_F_DEAD)) {
625                                 write_lock_bh(&fib_hash_lock);
626                                 list_del(&fa->fa_list);
627                                 if (list_empty(&f->fn_alias)) {
628                                         hlist_del(&f->fn_hash);
629                                         kill_f = 1;
630                                 }
631                                 fib_hash_genid++;
632                                 write_unlock_bh(&fib_hash_lock);
633
634                                 fn_free_alias(fa);
635                                 found++;
636                         }
637                 }
638                 if (kill_f) {
639                         fn_free_node(f);
640                         fz->fz_nent--;
641                 }
642         }
643         return found;
644 }
645
646 static int fn_hash_flush(struct fib_table *tb)
647 {
648         struct fn_hash *table = (struct fn_hash *) tb->tb_data;
649         struct fn_zone *fz;
650         int found = 0;
651
652         for (fz = table->fn_zone_list; fz; fz = fz->fz_next) {
653                 int i;
654
655                 for (i = fz->fz_divisor - 1; i >= 0; i--)
656                         found += fn_flush_list(fz, i);
657         }
658         return found;
659 }
660
661
662 static inline int
663 fn_hash_dump_bucket(struct sk_buff *skb, struct netlink_callback *cb,
664                      struct fib_table *tb,
665                      struct fn_zone *fz,
666                      struct hlist_head *head)
667 {
668         struct hlist_node *node;
669         struct fib_node *f;
670         int i, s_i;
671
672         s_i = cb->args[4];
673         i = 0;
674         hlist_for_each_entry(f, node, head, fn_hash) {
675                 struct fib_alias *fa;
676
677                 list_for_each_entry(fa, &f->fn_alias, fa_list) {
678                         if (i < s_i)
679                                 goto next;
680
681                         if (fib_dump_info(skb, NETLINK_CB(cb->skb).pid,
682                                           cb->nlh->nlmsg_seq,
683                                           RTM_NEWROUTE,
684                                           tb->tb_id,
685                                           fa->fa_type,
686                                           fa->fa_scope,
687                                           f->fn_key,
688                                           fz->fz_order,
689                                           fa->fa_tos,
690                                           fa->fa_info,
691                                           NLM_F_MULTI) < 0) {
692                                 cb->args[4] = i;
693                                 return -1;
694                         }
695                 next:
696                         i++;
697                 }
698         }
699         cb->args[4] = i;
700         return skb->len;
701 }
702
703 static inline int
704 fn_hash_dump_zone(struct sk_buff *skb, struct netlink_callback *cb,
705                    struct fib_table *tb,
706                    struct fn_zone *fz)
707 {
708         int h, s_h;
709
710         if (fz->fz_hash == NULL)
711                 return skb->len;
712         s_h = cb->args[3];
713         for (h = s_h; h < fz->fz_divisor; h++) {
714                 if (hlist_empty(&fz->fz_hash[h]))
715                         continue;
716                 if (fn_hash_dump_bucket(skb, cb, tb, fz, &fz->fz_hash[h]) < 0) {
717                         cb->args[3] = h;
718                         return -1;
719                 }
720                 memset(&cb->args[4], 0,
721                        sizeof(cb->args) - 4*sizeof(cb->args[0]));
722         }
723         cb->args[3] = h;
724         return skb->len;
725 }
726
727 static int fn_hash_dump(struct fib_table *tb, struct sk_buff *skb, struct netlink_callback *cb)
728 {
729         int m, s_m;
730         struct fn_zone *fz;
731         struct fn_hash *table = (struct fn_hash*)tb->tb_data;
732
733         s_m = cb->args[2];
734         read_lock(&fib_hash_lock);
735         for (fz = table->fn_zone_list, m=0; fz; fz = fz->fz_next, m++) {
736                 if (m < s_m) continue;
737                 if (fn_hash_dump_zone(skb, cb, tb, fz) < 0) {
738                         cb->args[2] = m;
739                         read_unlock(&fib_hash_lock);
740                         return -1;
741                 }
742                 memset(&cb->args[3], 0,
743                        sizeof(cb->args) - 3*sizeof(cb->args[0]));
744         }
745         read_unlock(&fib_hash_lock);
746         cb->args[2] = m;
747         return skb->len;
748 }
749
750 void __init fib_hash_init(void)
751 {
752         fn_hash_kmem = kmem_cache_create("ip_fib_hash", sizeof(struct fib_node),
753                                          0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL);
754
755         fn_alias_kmem = kmem_cache_create("ip_fib_alias", sizeof(struct fib_alias),
756                                           0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL);
757
758 }
759
760 struct fib_table *fib_hash_table(u32 id)
761 {
762         struct fib_table *tb;
763
764         tb = kmalloc(sizeof(struct fib_table) + sizeof(struct fn_hash),
765                      GFP_KERNEL);
766         if (tb == NULL)
767                 return NULL;
768
769         tb->tb_id = id;
770         tb->tb_default = -1;
771         tb->tb_lookup = fn_hash_lookup;
772         tb->tb_insert = fn_hash_insert;
773         tb->tb_delete = fn_hash_delete;
774         tb->tb_flush = fn_hash_flush;
775         tb->tb_select_default = fn_hash_select_default;
776         tb->tb_dump = fn_hash_dump;
777         memset(tb->tb_data, 0, sizeof(struct fn_hash));
778         return tb;
779 }
780
781 /* ------------------------------------------------------------------------ */
782 #ifdef CONFIG_PROC_FS
783
784 struct fib_iter_state {
785         struct seq_net_private p;
786         struct fn_zone  *zone;
787         int             bucket;
788         struct hlist_head *hash_head;
789         struct fib_node *fn;
790         struct fib_alias *fa;
791         loff_t pos;
792         unsigned int genid;
793         int valid;
794 };
795
796 static struct fib_alias *fib_get_first(struct seq_file *seq)
797 {
798         struct fib_iter_state *iter = seq->private;
799         struct fib_table *main_table;
800         struct fn_hash *table;
801
802         main_table = fib_get_table(iter->p.net, RT_TABLE_MAIN);
803         table = (struct fn_hash *)main_table->tb_data;
804
805         iter->bucket    = 0;
806         iter->hash_head = NULL;
807         iter->fn        = NULL;
808         iter->fa        = NULL;
809         iter->pos       = 0;
810         iter->genid     = fib_hash_genid;
811         iter->valid     = 1;
812
813         for (iter->zone = table->fn_zone_list; iter->zone;
814              iter->zone = iter->zone->fz_next) {
815                 int maxslot;
816
817                 if (!iter->zone->fz_nent)
818                         continue;
819
820                 iter->hash_head = iter->zone->fz_hash;
821                 maxslot = iter->zone->fz_divisor;
822
823                 for (iter->bucket = 0; iter->bucket < maxslot;
824                      ++iter->bucket, ++iter->hash_head) {
825                         struct hlist_node *node;
826                         struct fib_node *fn;
827
828                         hlist_for_each_entry(fn,node,iter->hash_head,fn_hash) {
829                                 struct fib_alias *fa;
830
831                                 list_for_each_entry(fa,&fn->fn_alias,fa_list) {
832                                         iter->fn = fn;
833                                         iter->fa = fa;
834                                         goto out;
835                                 }
836                         }
837                 }
838         }
839 out:
840         return iter->fa;
841 }
842
843 static struct fib_alias *fib_get_next(struct seq_file *seq)
844 {
845         struct fib_iter_state *iter = seq->private;
846         struct fib_node *fn;
847         struct fib_alias *fa;
848
849         /* Advance FA, if any. */
850         fn = iter->fn;
851         fa = iter->fa;
852         if (fa) {
853                 BUG_ON(!fn);
854                 list_for_each_entry_continue(fa, &fn->fn_alias, fa_list) {
855                         iter->fa = fa;
856                         goto out;
857                 }
858         }
859
860         fa = iter->fa = NULL;
861
862         /* Advance FN. */
863         if (fn) {
864                 struct hlist_node *node = &fn->fn_hash;
865                 hlist_for_each_entry_continue(fn, node, fn_hash) {
866                         iter->fn = fn;
867
868                         list_for_each_entry(fa, &fn->fn_alias, fa_list) {
869                                 iter->fa = fa;
870                                 goto out;
871                         }
872                 }
873         }
874
875         fn = iter->fn = NULL;
876
877         /* Advance hash chain. */
878         if (!iter->zone)
879                 goto out;
880
881         for (;;) {
882                 struct hlist_node *node;
883                 int maxslot;
884
885                 maxslot = iter->zone->fz_divisor;
886
887                 while (++iter->bucket < maxslot) {
888                         iter->hash_head++;
889
890                         hlist_for_each_entry(fn, node, iter->hash_head, fn_hash) {
891                                 list_for_each_entry(fa, &fn->fn_alias, fa_list) {
892                                         iter->fn = fn;
893                                         iter->fa = fa;
894                                         goto out;
895                                 }
896                         }
897                 }
898
899                 iter->zone = iter->zone->fz_next;
900
901                 if (!iter->zone)
902                         goto out;
903
904                 iter->bucket = 0;
905                 iter->hash_head = iter->zone->fz_hash;
906
907                 hlist_for_each_entry(fn, node, iter->hash_head, fn_hash) {
908                         list_for_each_entry(fa, &fn->fn_alias, fa_list) {
909                                 iter->fn = fn;
910                                 iter->fa = fa;
911                                 goto out;
912                         }
913                 }
914         }
915 out:
916         iter->pos++;
917         return fa;
918 }
919
920 static struct fib_alias *fib_get_idx(struct seq_file *seq, loff_t pos)
921 {
922         struct fib_iter_state *iter = seq->private;
923         struct fib_alias *fa;
924
925         if (iter->valid && pos >= iter->pos && iter->genid == fib_hash_genid) {
926                 fa   = iter->fa;
927                 pos -= iter->pos;
928         } else
929                 fa = fib_get_first(seq);
930
931         if (fa)
932                 while (pos && (fa = fib_get_next(seq)))
933                         --pos;
934         return pos ? NULL : fa;
935 }
936
937 static void *fib_seq_start(struct seq_file *seq, loff_t *pos)
938         __acquires(fib_hash_lock)
939 {
940         struct fib_iter_state *iter = seq->private;
941         void *v = NULL;
942
943         read_lock(&fib_hash_lock);
944         if (fib_get_table(iter->p.net, RT_TABLE_MAIN))
945                 v = *pos ? fib_get_idx(seq, *pos - 1) : SEQ_START_TOKEN;
946         return v;
947 }
948
949 static void *fib_seq_next(struct seq_file *seq, void *v, loff_t *pos)
950 {
951         ++*pos;
952         return v == SEQ_START_TOKEN ? fib_get_first(seq) : fib_get_next(seq);
953 }
954
955 static void fib_seq_stop(struct seq_file *seq, void *v)
956         __releases(fib_hash_lock)
957 {
958         read_unlock(&fib_hash_lock);
959 }
960
961 static unsigned fib_flag_trans(int type, __be32 mask, struct fib_info *fi)
962 {
963         static const unsigned type2flags[RTN_MAX + 1] = {
964                 [7] = RTF_REJECT, [8] = RTF_REJECT,
965         };
966         unsigned flags = type2flags[type];
967
968         if (fi && fi->fib_nh->nh_gw)
969                 flags |= RTF_GATEWAY;
970         if (mask == htonl(0xFFFFFFFF))
971                 flags |= RTF_HOST;
972         flags |= RTF_UP;
973         return flags;
974 }
975
976 /*
977  *      This outputs /proc/net/route.
978  *
979  *      It always works in backward compatibility mode.
980  *      The format of the file is not supposed to be changed.
981  */
982 static int fib_seq_show(struct seq_file *seq, void *v)
983 {
984         struct fib_iter_state *iter;
985         char bf[128];
986         __be32 prefix, mask;
987         unsigned flags;
988         struct fib_node *f;
989         struct fib_alias *fa;
990         struct fib_info *fi;
991
992         if (v == SEQ_START_TOKEN) {
993                 seq_printf(seq, "%-127s\n", "Iface\tDestination\tGateway "
994                            "\tFlags\tRefCnt\tUse\tMetric\tMask\t\tMTU"
995                            "\tWindow\tIRTT");
996                 goto out;
997         }
998
999         iter    = seq->private;
1000         f       = iter->fn;
1001         fa      = iter->fa;
1002         fi      = fa->fa_info;
1003         prefix  = f->fn_key;
1004         mask    = FZ_MASK(iter->zone);
1005         flags   = fib_flag_trans(fa->fa_type, mask, fi);
1006         if (fi)
1007                 snprintf(bf, sizeof(bf),
1008                          "%s\t%08X\t%08X\t%04X\t%d\t%u\t%d\t%08X\t%d\t%u\t%u",
1009                          fi->fib_dev ? fi->fib_dev->name : "*", prefix,
1010                          fi->fib_nh->nh_gw, flags, 0, 0, fi->fib_priority,
1011                          mask, (fi->fib_advmss ? fi->fib_advmss + 40 : 0),
1012                          fi->fib_window,
1013                          fi->fib_rtt >> 3);
1014         else
1015                 snprintf(bf, sizeof(bf),
1016                          "*\t%08X\t%08X\t%04X\t%d\t%u\t%d\t%08X\t%d\t%u\t%u",
1017                          prefix, 0, flags, 0, 0, 0, mask, 0, 0, 0);
1018         seq_printf(seq, "%-127s\n", bf);
1019 out:
1020         return 0;
1021 }
1022
1023 static const struct seq_operations fib_seq_ops = {
1024         .start  = fib_seq_start,
1025         .next   = fib_seq_next,
1026         .stop   = fib_seq_stop,
1027         .show   = fib_seq_show,
1028 };
1029
1030 static int fib_seq_open(struct inode *inode, struct file *file)
1031 {
1032         return seq_open_net(inode, file, &fib_seq_ops,
1033                             sizeof(struct fib_iter_state));
1034 }
1035
1036 static const struct file_operations fib_seq_fops = {
1037         .owner          = THIS_MODULE,
1038         .open           = fib_seq_open,
1039         .read           = seq_read,
1040         .llseek         = seq_lseek,
1041         .release        = seq_release_net,
1042 };
1043
1044 int __net_init fib_proc_init(struct net *net)
1045 {
1046         if (!proc_net_fops_create(net, "route", S_IRUGO, &fib_seq_fops))
1047                 return -ENOMEM;
1048         return 0;
1049 }
1050
1051 void __net_exit fib_proc_exit(struct net *net)
1052 {
1053         proc_net_remove(net, "route");
1054 }
1055 #endif /* CONFIG_PROC_FS */