net_sched: add struct net pointer to tcf_proto_ops->dump
[pandora-kernel.git] / net / sched / cls_u32.c
1 /*
2  * net/sched/cls_u32.c  Ugly (or Universal) 32bit key Packet Classifier.
3  *
4  *              This program is free software; you can redistribute it and/or
5  *              modify it under the terms of the GNU General Public License
6  *              as published by the Free Software Foundation; either version
7  *              2 of the License, or (at your option) any later version.
8  *
9  * Authors:     Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
10  *
11  *      The filters are packed to hash tables of key nodes
12  *      with a set of 32bit key/mask pairs at every node.
13  *      Nodes reference next level hash tables etc.
14  *
15  *      This scheme is the best universal classifier I managed to
16  *      invent; it is not super-fast, but it is not slow (provided you
17  *      program it correctly), and general enough.  And its relative
18  *      speed grows as the number of rules becomes larger.
19  *
20  *      It seems that it represents the best middle point between
21  *      speed and manageability both by human and by machine.
22  *
23  *      It is especially useful for link sharing combined with QoS;
24  *      pure RSVP doesn't need such a general approach and can use
25  *      much simpler (and faster) schemes, sort of cls_rsvp.c.
26  *
27  *      JHS: We should remove the CONFIG_NET_CLS_IND from here
28  *      eventually when the meta match extension is made available
29  *
30  *      nfmark match added by Catalin(ux aka Dino) BOIE <catab at umbrella.ro>
31  */
32
33 #include <linux/module.h>
34 #include <linux/slab.h>
35 #include <linux/types.h>
36 #include <linux/kernel.h>
37 #include <linux/string.h>
38 #include <linux/errno.h>
39 #include <linux/rtnetlink.h>
40 #include <linux/skbuff.h>
41 #include <net/netlink.h>
42 #include <net/act_api.h>
43 #include <net/pkt_cls.h>
44
45 struct tc_u_knode {
46         struct tc_u_knode       *next;
47         u32                     handle;
48         struct tc_u_hnode       *ht_up;
49         struct tcf_exts         exts;
50 #ifdef CONFIG_NET_CLS_IND
51         char                     indev[IFNAMSIZ];
52 #endif
53         u8                      fshift;
54         struct tcf_result       res;
55         struct tc_u_hnode       *ht_down;
56 #ifdef CONFIG_CLS_U32_PERF
57         struct tc_u32_pcnt      *pf;
58 #endif
59 #ifdef CONFIG_CLS_U32_MARK
60         struct tc_u32_mark      mark;
61 #endif
62         struct tc_u32_sel       sel;
63 };
64
65 struct tc_u_hnode {
66         struct tc_u_hnode       *next;
67         u32                     handle;
68         u32                     prio;
69         struct tc_u_common      *tp_c;
70         int                     refcnt;
71         unsigned int            divisor;
72         struct tc_u_knode       *ht[1];
73 };
74
75 struct tc_u_common {
76         struct tc_u_hnode       *hlist;
77         struct Qdisc            *q;
78         int                     refcnt;
79         u32                     hgenerator;
80 };
81
82 static inline unsigned int u32_hash_fold(__be32 key,
83                                          const struct tc_u32_sel *sel,
84                                          u8 fshift)
85 {
86         unsigned int h = ntohl(key & sel->hmask) >> fshift;
87
88         return h;
89 }
90
91 static int u32_classify(struct sk_buff *skb, const struct tcf_proto *tp, struct tcf_result *res)
92 {
93         struct {
94                 struct tc_u_knode *knode;
95                 unsigned int      off;
96         } stack[TC_U32_MAXDEPTH];
97
98         struct tc_u_hnode *ht = (struct tc_u_hnode *)tp->root;
99         unsigned int off = skb_network_offset(skb);
100         struct tc_u_knode *n;
101         int sdepth = 0;
102         int off2 = 0;
103         int sel = 0;
104 #ifdef CONFIG_CLS_U32_PERF
105         int j;
106 #endif
107         int i, r;
108
109 next_ht:
110         n = ht->ht[sel];
111
112 next_knode:
113         if (n) {
114                 struct tc_u32_key *key = n->sel.keys;
115
116 #ifdef CONFIG_CLS_U32_PERF
117                 n->pf->rcnt += 1;
118                 j = 0;
119 #endif
120
121 #ifdef CONFIG_CLS_U32_MARK
122                 if ((skb->mark & n->mark.mask) != n->mark.val) {
123                         n = n->next;
124                         goto next_knode;
125                 } else {
126                         n->mark.success++;
127                 }
128 #endif
129
130                 for (i = n->sel.nkeys; i > 0; i--, key++) {
131                         int toff = off + key->off + (off2 & key->offmask);
132                         __be32 *data, hdata;
133
134                         if (skb_headroom(skb) + toff > INT_MAX)
135                                 goto out;
136
137                         data = skb_header_pointer(skb, toff, 4, &hdata);
138                         if (!data)
139                                 goto out;
140                         if ((*data ^ key->val) & key->mask) {
141                                 n = n->next;
142                                 goto next_knode;
143                         }
144 #ifdef CONFIG_CLS_U32_PERF
145                         n->pf->kcnts[j] += 1;
146                         j++;
147 #endif
148                 }
149                 if (n->ht_down == NULL) {
150 check_terminal:
151                         if (n->sel.flags & TC_U32_TERMINAL) {
152
153                                 *res = n->res;
154 #ifdef CONFIG_NET_CLS_IND
155                                 if (!tcf_match_indev(skb, n->indev)) {
156                                         n = n->next;
157                                         goto next_knode;
158                                 }
159 #endif
160 #ifdef CONFIG_CLS_U32_PERF
161                                 n->pf->rhit += 1;
162 #endif
163                                 r = tcf_exts_exec(skb, &n->exts, res);
164                                 if (r < 0) {
165                                         n = n->next;
166                                         goto next_knode;
167                                 }
168
169                                 return r;
170                         }
171                         n = n->next;
172                         goto next_knode;
173                 }
174
175                 /* PUSH */
176                 if (sdepth >= TC_U32_MAXDEPTH)
177                         goto deadloop;
178                 stack[sdepth].knode = n;
179                 stack[sdepth].off = off;
180                 sdepth++;
181
182                 ht = n->ht_down;
183                 sel = 0;
184                 if (ht->divisor) {
185                         __be32 *data, hdata;
186
187                         data = skb_header_pointer(skb, off + n->sel.hoff, 4,
188                                                   &hdata);
189                         if (!data)
190                                 goto out;
191                         sel = ht->divisor & u32_hash_fold(*data, &n->sel,
192                                                           n->fshift);
193                 }
194                 if (!(n->sel.flags & (TC_U32_VAROFFSET | TC_U32_OFFSET | TC_U32_EAT)))
195                         goto next_ht;
196
197                 if (n->sel.flags & (TC_U32_OFFSET | TC_U32_VAROFFSET)) {
198                         off2 = n->sel.off + 3;
199                         if (n->sel.flags & TC_U32_VAROFFSET) {
200                                 __be16 *data, hdata;
201
202                                 data = skb_header_pointer(skb,
203                                                           off + n->sel.offoff,
204                                                           2, &hdata);
205                                 if (!data)
206                                         goto out;
207                                 off2 += ntohs(n->sel.offmask & *data) >>
208                                         n->sel.offshift;
209                         }
210                         off2 &= ~3;
211                 }
212                 if (n->sel.flags & TC_U32_EAT) {
213                         off += off2;
214                         off2 = 0;
215                 }
216
217                 if (off < skb->len)
218                         goto next_ht;
219         }
220
221         /* POP */
222         if (sdepth--) {
223                 n = stack[sdepth].knode;
224                 ht = n->ht_up;
225                 off = stack[sdepth].off;
226                 goto check_terminal;
227         }
228 out:
229         return -1;
230
231 deadloop:
232         net_warn_ratelimited("cls_u32: dead loop\n");
233         return -1;
234 }
235
236 static struct tc_u_hnode *
237 u32_lookup_ht(struct tc_u_common *tp_c, u32 handle)
238 {
239         struct tc_u_hnode *ht;
240
241         for (ht = tp_c->hlist; ht; ht = ht->next)
242                 if (ht->handle == handle)
243                         break;
244
245         return ht;
246 }
247
248 static struct tc_u_knode *
249 u32_lookup_key(struct tc_u_hnode *ht, u32 handle)
250 {
251         unsigned int sel;
252         struct tc_u_knode *n = NULL;
253
254         sel = TC_U32_HASH(handle);
255         if (sel > ht->divisor)
256                 goto out;
257
258         for (n = ht->ht[sel]; n; n = n->next)
259                 if (n->handle == handle)
260                         break;
261 out:
262         return n;
263 }
264
265
266 static unsigned long u32_get(struct tcf_proto *tp, u32 handle)
267 {
268         struct tc_u_hnode *ht;
269         struct tc_u_common *tp_c = tp->data;
270
271         if (TC_U32_HTID(handle) == TC_U32_ROOT)
272                 ht = tp->root;
273         else
274                 ht = u32_lookup_ht(tp_c, TC_U32_HTID(handle));
275
276         if (!ht)
277                 return 0;
278
279         if (TC_U32_KEY(handle) == 0)
280                 return (unsigned long)ht;
281
282         return (unsigned long)u32_lookup_key(ht, handle);
283 }
284
285 static void u32_put(struct tcf_proto *tp, unsigned long f)
286 {
287 }
288
289 static u32 gen_new_htid(struct tc_u_common *tp_c)
290 {
291         int i = 0x800;
292
293         do {
294                 if (++tp_c->hgenerator == 0x7FF)
295                         tp_c->hgenerator = 1;
296         } while (--i > 0 && u32_lookup_ht(tp_c, (tp_c->hgenerator|0x800)<<20));
297
298         return i > 0 ? (tp_c->hgenerator|0x800)<<20 : 0;
299 }
300
301 static int u32_init(struct tcf_proto *tp)
302 {
303         struct tc_u_hnode *root_ht;
304         struct tc_u_common *tp_c;
305
306         tp_c = tp->q->u32_node;
307
308         root_ht = kzalloc(sizeof(*root_ht), GFP_KERNEL);
309         if (root_ht == NULL)
310                 return -ENOBUFS;
311
312         root_ht->divisor = 0;
313         root_ht->refcnt++;
314         root_ht->handle = tp_c ? gen_new_htid(tp_c) : 0x80000000;
315         root_ht->prio = tp->prio;
316
317         if (tp_c == NULL) {
318                 tp_c = kzalloc(sizeof(*tp_c), GFP_KERNEL);
319                 if (tp_c == NULL) {
320                         kfree(root_ht);
321                         return -ENOBUFS;
322                 }
323                 tp_c->q = tp->q;
324                 tp->q->u32_node = tp_c;
325         }
326
327         tp_c->refcnt++;
328         root_ht->next = tp_c->hlist;
329         tp_c->hlist = root_ht;
330         root_ht->tp_c = tp_c;
331
332         tp->root = root_ht;
333         tp->data = tp_c;
334         return 0;
335 }
336
337 static int u32_destroy_key(struct tcf_proto *tp, struct tc_u_knode *n)
338 {
339         tcf_unbind_filter(tp, &n->res);
340         tcf_exts_destroy(tp, &n->exts);
341         if (n->ht_down)
342                 n->ht_down->refcnt--;
343 #ifdef CONFIG_CLS_U32_PERF
344         kfree(n->pf);
345 #endif
346         kfree(n);
347         return 0;
348 }
349
350 static int u32_delete_key(struct tcf_proto *tp, struct tc_u_knode *key)
351 {
352         struct tc_u_knode **kp;
353         struct tc_u_hnode *ht = key->ht_up;
354
355         if (ht) {
356                 for (kp = &ht->ht[TC_U32_HASH(key->handle)]; *kp; kp = &(*kp)->next) {
357                         if (*kp == key) {
358                                 tcf_tree_lock(tp);
359                                 *kp = key->next;
360                                 tcf_tree_unlock(tp);
361
362                                 u32_destroy_key(tp, key);
363                                 return 0;
364                         }
365                 }
366         }
367         WARN_ON(1);
368         return 0;
369 }
370
371 static void u32_clear_hnode(struct tcf_proto *tp, struct tc_u_hnode *ht)
372 {
373         struct tc_u_knode *n;
374         unsigned int h;
375
376         for (h = 0; h <= ht->divisor; h++) {
377                 while ((n = ht->ht[h]) != NULL) {
378                         ht->ht[h] = n->next;
379
380                         u32_destroy_key(tp, n);
381                 }
382         }
383 }
384
385 static int u32_destroy_hnode(struct tcf_proto *tp, struct tc_u_hnode *ht)
386 {
387         struct tc_u_common *tp_c = tp->data;
388         struct tc_u_hnode **hn;
389
390         WARN_ON(ht->refcnt);
391
392         u32_clear_hnode(tp, ht);
393
394         for (hn = &tp_c->hlist; *hn; hn = &(*hn)->next) {
395                 if (*hn == ht) {
396                         *hn = ht->next;
397                         kfree(ht);
398                         return 0;
399                 }
400         }
401
402         WARN_ON(1);
403         return -ENOENT;
404 }
405
406 static void u32_destroy(struct tcf_proto *tp)
407 {
408         struct tc_u_common *tp_c = tp->data;
409         struct tc_u_hnode *root_ht = tp->root;
410
411         WARN_ON(root_ht == NULL);
412
413         if (root_ht && --root_ht->refcnt == 0)
414                 u32_destroy_hnode(tp, root_ht);
415
416         if (--tp_c->refcnt == 0) {
417                 struct tc_u_hnode *ht;
418
419                 tp->q->u32_node = NULL;
420
421                 for (ht = tp_c->hlist; ht; ht = ht->next) {
422                         ht->refcnt--;
423                         u32_clear_hnode(tp, ht);
424                 }
425
426                 while ((ht = tp_c->hlist) != NULL) {
427                         tp_c->hlist = ht->next;
428
429                         WARN_ON(ht->refcnt != 0);
430
431                         kfree(ht);
432                 }
433
434                 kfree(tp_c);
435         }
436
437         tp->data = NULL;
438 }
439
440 static int u32_delete(struct tcf_proto *tp, unsigned long arg)
441 {
442         struct tc_u_hnode *ht = (struct tc_u_hnode *)arg;
443
444         if (ht == NULL)
445                 return 0;
446
447         if (TC_U32_KEY(ht->handle))
448                 return u32_delete_key(tp, (struct tc_u_knode *)ht);
449
450         if (tp->root == ht)
451                 return -EINVAL;
452
453         if (ht->refcnt == 1) {
454                 ht->refcnt--;
455                 u32_destroy_hnode(tp, ht);
456         } else {
457                 return -EBUSY;
458         }
459
460         return 0;
461 }
462
463 static u32 gen_new_kid(struct tc_u_hnode *ht, u32 handle)
464 {
465         struct tc_u_knode *n;
466         unsigned int i = 0x7FF;
467
468         for (n = ht->ht[TC_U32_HASH(handle)]; n; n = n->next)
469                 if (i < TC_U32_NODE(n->handle))
470                         i = TC_U32_NODE(n->handle);
471         i++;
472
473         return handle | (i > 0xFFF ? 0xFFF : i);
474 }
475
476 static const struct nla_policy u32_policy[TCA_U32_MAX + 1] = {
477         [TCA_U32_CLASSID]       = { .type = NLA_U32 },
478         [TCA_U32_HASH]          = { .type = NLA_U32 },
479         [TCA_U32_LINK]          = { .type = NLA_U32 },
480         [TCA_U32_DIVISOR]       = { .type = NLA_U32 },
481         [TCA_U32_SEL]           = { .len = sizeof(struct tc_u32_sel) },
482         [TCA_U32_INDEV]         = { .type = NLA_STRING, .len = IFNAMSIZ },
483         [TCA_U32_MARK]          = { .len = sizeof(struct tc_u32_mark) },
484 };
485
486 static int u32_set_parms(struct net *net, struct tcf_proto *tp,
487                          unsigned long base, struct tc_u_hnode *ht,
488                          struct tc_u_knode *n, struct nlattr **tb,
489                          struct nlattr *est)
490 {
491         int err;
492         struct tcf_exts e;
493
494         tcf_exts_init(&e, TCA_U32_ACT, TCA_U32_POLICE);
495         err = tcf_exts_validate(net, tp, tb, est, &e);
496         if (err < 0)
497                 return err;
498
499         err = -EINVAL;
500         if (tb[TCA_U32_LINK]) {
501                 u32 handle = nla_get_u32(tb[TCA_U32_LINK]);
502                 struct tc_u_hnode *ht_down = NULL, *ht_old;
503
504                 if (TC_U32_KEY(handle))
505                         goto errout;
506
507                 if (handle) {
508                         ht_down = u32_lookup_ht(ht->tp_c, handle);
509
510                         if (ht_down == NULL)
511                                 goto errout;
512                         ht_down->refcnt++;
513                 }
514
515                 tcf_tree_lock(tp);
516                 ht_old = n->ht_down;
517                 n->ht_down = ht_down;
518                 tcf_tree_unlock(tp);
519
520                 if (ht_old)
521                         ht_old->refcnt--;
522         }
523         if (tb[TCA_U32_CLASSID]) {
524                 n->res.classid = nla_get_u32(tb[TCA_U32_CLASSID]);
525                 tcf_bind_filter(tp, &n->res, base);
526         }
527
528 #ifdef CONFIG_NET_CLS_IND
529         if (tb[TCA_U32_INDEV]) {
530                 err = tcf_change_indev(tp, n->indev, tb[TCA_U32_INDEV]);
531                 if (err < 0)
532                         goto errout;
533         }
534 #endif
535         tcf_exts_change(tp, &n->exts, &e);
536
537         return 0;
538 errout:
539         tcf_exts_destroy(tp, &e);
540         return err;
541 }
542
543 static int u32_change(struct net *net, struct sk_buff *in_skb,
544                       struct tcf_proto *tp, unsigned long base, u32 handle,
545                       struct nlattr **tca,
546                       unsigned long *arg)
547 {
548         struct tc_u_common *tp_c = tp->data;
549         struct tc_u_hnode *ht;
550         struct tc_u_knode *n;
551         struct tc_u32_sel *s;
552         struct nlattr *opt = tca[TCA_OPTIONS];
553         struct nlattr *tb[TCA_U32_MAX + 1];
554         u32 htid;
555         int err;
556
557         if (opt == NULL)
558                 return handle ? -EINVAL : 0;
559
560         err = nla_parse_nested(tb, TCA_U32_MAX, opt, u32_policy);
561         if (err < 0)
562                 return err;
563
564         n = (struct tc_u_knode *)*arg;
565         if (n) {
566                 if (TC_U32_KEY(n->handle) == 0)
567                         return -EINVAL;
568
569                 return u32_set_parms(net, tp, base, n->ht_up, n, tb,
570                                      tca[TCA_RATE]);
571         }
572
573         if (tb[TCA_U32_DIVISOR]) {
574                 unsigned int divisor = nla_get_u32(tb[TCA_U32_DIVISOR]);
575
576                 if (--divisor > 0x100)
577                         return -EINVAL;
578                 if (TC_U32_KEY(handle))
579                         return -EINVAL;
580                 if (handle == 0) {
581                         handle = gen_new_htid(tp->data);
582                         if (handle == 0)
583                                 return -ENOMEM;
584                 }
585                 ht = kzalloc(sizeof(*ht) + divisor*sizeof(void *), GFP_KERNEL);
586                 if (ht == NULL)
587                         return -ENOBUFS;
588                 ht->tp_c = tp_c;
589                 ht->refcnt = 1;
590                 ht->divisor = divisor;
591                 ht->handle = handle;
592                 ht->prio = tp->prio;
593                 ht->next = tp_c->hlist;
594                 tp_c->hlist = ht;
595                 *arg = (unsigned long)ht;
596                 return 0;
597         }
598
599         if (tb[TCA_U32_HASH]) {
600                 htid = nla_get_u32(tb[TCA_U32_HASH]);
601                 if (TC_U32_HTID(htid) == TC_U32_ROOT) {
602                         ht = tp->root;
603                         htid = ht->handle;
604                 } else {
605                         ht = u32_lookup_ht(tp->data, TC_U32_HTID(htid));
606                         if (ht == NULL)
607                                 return -EINVAL;
608                 }
609         } else {
610                 ht = tp->root;
611                 htid = ht->handle;
612         }
613
614         if (ht->divisor < TC_U32_HASH(htid))
615                 return -EINVAL;
616
617         if (handle) {
618                 if (TC_U32_HTID(handle) && TC_U32_HTID(handle^htid))
619                         return -EINVAL;
620                 handle = htid | TC_U32_NODE(handle);
621         } else
622                 handle = gen_new_kid(ht, htid);
623
624         if (tb[TCA_U32_SEL] == NULL)
625                 return -EINVAL;
626
627         s = nla_data(tb[TCA_U32_SEL]);
628
629         n = kzalloc(sizeof(*n) + s->nkeys*sizeof(struct tc_u32_key), GFP_KERNEL);
630         if (n == NULL)
631                 return -ENOBUFS;
632
633 #ifdef CONFIG_CLS_U32_PERF
634         n->pf = kzalloc(sizeof(struct tc_u32_pcnt) + s->nkeys*sizeof(u64), GFP_KERNEL);
635         if (n->pf == NULL) {
636                 kfree(n);
637                 return -ENOBUFS;
638         }
639 #endif
640
641         memcpy(&n->sel, s, sizeof(*s) + s->nkeys*sizeof(struct tc_u32_key));
642         n->ht_up = ht;
643         n->handle = handle;
644         n->fshift = s->hmask ? ffs(ntohl(s->hmask)) - 1 : 0;
645         tcf_exts_init(&n->exts, TCA_U32_ACT, TCA_U32_POLICE);
646
647 #ifdef CONFIG_CLS_U32_MARK
648         if (tb[TCA_U32_MARK]) {
649                 struct tc_u32_mark *mark;
650
651                 mark = nla_data(tb[TCA_U32_MARK]);
652                 memcpy(&n->mark, mark, sizeof(struct tc_u32_mark));
653                 n->mark.success = 0;
654         }
655 #endif
656
657         err = u32_set_parms(net, tp, base, ht, n, tb, tca[TCA_RATE]);
658         if (err == 0) {
659                 struct tc_u_knode **ins;
660                 for (ins = &ht->ht[TC_U32_HASH(handle)]; *ins; ins = &(*ins)->next)
661                         if (TC_U32_NODE(handle) < TC_U32_NODE((*ins)->handle))
662                                 break;
663
664                 n->next = *ins;
665                 tcf_tree_lock(tp);
666                 *ins = n;
667                 tcf_tree_unlock(tp);
668
669                 *arg = (unsigned long)n;
670                 return 0;
671         }
672 #ifdef CONFIG_CLS_U32_PERF
673         kfree(n->pf);
674 #endif
675         kfree(n);
676         return err;
677 }
678
679 static void u32_walk(struct tcf_proto *tp, struct tcf_walker *arg)
680 {
681         struct tc_u_common *tp_c = tp->data;
682         struct tc_u_hnode *ht;
683         struct tc_u_knode *n;
684         unsigned int h;
685
686         if (arg->stop)
687                 return;
688
689         for (ht = tp_c->hlist; ht; ht = ht->next) {
690                 if (ht->prio != tp->prio)
691                         continue;
692                 if (arg->count >= arg->skip) {
693                         if (arg->fn(tp, (unsigned long)ht, arg) < 0) {
694                                 arg->stop = 1;
695                                 return;
696                         }
697                 }
698                 arg->count++;
699                 for (h = 0; h <= ht->divisor; h++) {
700                         for (n = ht->ht[h]; n; n = n->next) {
701                                 if (arg->count < arg->skip) {
702                                         arg->count++;
703                                         continue;
704                                 }
705                                 if (arg->fn(tp, (unsigned long)n, arg) < 0) {
706                                         arg->stop = 1;
707                                         return;
708                                 }
709                                 arg->count++;
710                         }
711                 }
712         }
713 }
714
715 static int u32_dump(struct net *net, struct tcf_proto *tp, unsigned long fh,
716                      struct sk_buff *skb, struct tcmsg *t)
717 {
718         struct tc_u_knode *n = (struct tc_u_knode *)fh;
719         struct nlattr *nest;
720
721         if (n == NULL)
722                 return skb->len;
723
724         t->tcm_handle = n->handle;
725
726         nest = nla_nest_start(skb, TCA_OPTIONS);
727         if (nest == NULL)
728                 goto nla_put_failure;
729
730         if (TC_U32_KEY(n->handle) == 0) {
731                 struct tc_u_hnode *ht = (struct tc_u_hnode *)fh;
732                 u32 divisor = ht->divisor + 1;
733
734                 if (nla_put_u32(skb, TCA_U32_DIVISOR, divisor))
735                         goto nla_put_failure;
736         } else {
737                 if (nla_put(skb, TCA_U32_SEL,
738                             sizeof(n->sel) + n->sel.nkeys*sizeof(struct tc_u32_key),
739                             &n->sel))
740                         goto nla_put_failure;
741                 if (n->ht_up) {
742                         u32 htid = n->handle & 0xFFFFF000;
743                         if (nla_put_u32(skb, TCA_U32_HASH, htid))
744                                 goto nla_put_failure;
745                 }
746                 if (n->res.classid &&
747                     nla_put_u32(skb, TCA_U32_CLASSID, n->res.classid))
748                         goto nla_put_failure;
749                 if (n->ht_down &&
750                     nla_put_u32(skb, TCA_U32_LINK, n->ht_down->handle))
751                         goto nla_put_failure;
752
753 #ifdef CONFIG_CLS_U32_MARK
754                 if ((n->mark.val || n->mark.mask) &&
755                     nla_put(skb, TCA_U32_MARK, sizeof(n->mark), &n->mark))
756                         goto nla_put_failure;
757 #endif
758
759                 if (tcf_exts_dump(skb, &n->exts) < 0)
760                         goto nla_put_failure;
761
762 #ifdef CONFIG_NET_CLS_IND
763                 if (strlen(n->indev) &&
764                     nla_put_string(skb, TCA_U32_INDEV, n->indev))
765                         goto nla_put_failure;
766 #endif
767 #ifdef CONFIG_CLS_U32_PERF
768                 if (nla_put(skb, TCA_U32_PCNT,
769                             sizeof(struct tc_u32_pcnt) + n->sel.nkeys*sizeof(u64),
770                             n->pf))
771                         goto nla_put_failure;
772 #endif
773         }
774
775         nla_nest_end(skb, nest);
776
777         if (TC_U32_KEY(n->handle))
778                 if (tcf_exts_dump_stats(skb, &n->exts) < 0)
779                         goto nla_put_failure;
780         return skb->len;
781
782 nla_put_failure:
783         nla_nest_cancel(skb, nest);
784         return -1;
785 }
786
787 static struct tcf_proto_ops cls_u32_ops __read_mostly = {
788         .kind           =       "u32",
789         .classify       =       u32_classify,
790         .init           =       u32_init,
791         .destroy        =       u32_destroy,
792         .get            =       u32_get,
793         .put            =       u32_put,
794         .change         =       u32_change,
795         .delete         =       u32_delete,
796         .walk           =       u32_walk,
797         .dump           =       u32_dump,
798         .owner          =       THIS_MODULE,
799 };
800
801 static int __init init_u32(void)
802 {
803         pr_info("u32 classifier\n");
804 #ifdef CONFIG_CLS_U32_PERF
805         pr_info("    Performance counters on\n");
806 #endif
807 #ifdef CONFIG_NET_CLS_IND
808         pr_info("    input device check on\n");
809 #endif
810 #ifdef CONFIG_NET_CLS_ACT
811         pr_info("    Actions configured\n");
812 #endif
813         return register_tcf_proto_ops(&cls_u32_ops);
814 }
815
816 static void __exit exit_u32(void)
817 {
818         unregister_tcf_proto_ops(&cls_u32_ops);
819 }
820
821 module_init(init_u32)
822 module_exit(exit_u32)
823 MODULE_LICENSE("GPL");